diff --git a/target/linux/s3c24xx/config-2.6.28 b/target/linux/s3c24xx/config-2.6.28 deleted file mode 100644 index ca9179512de51de2f3e509c760a755951d254c17..0000000000000000000000000000000000000000 --- a/target/linux/s3c24xx/config-2.6.28 +++ /dev/null @@ -1,522 +0,0 @@ -# CONFIG_AEABI is not set -CONFIG_ALIGNMENT_TRAP=y -CONFIG_ANDROID_BINDER_IPC=y -CONFIG_ANDROID_LOGGER=y -# CONFIG_ANDROID_PARANOID_NETWORK is not set -CONFIG_ANDROID_POWER=y -CONFIG_ANDROID_POWER_ALARM=y -CONFIG_ANDROID_POWER_STAT=y -# CONFIG_ANDROID_RAM_CONSOLE is not set -# CONFIG_ANDROID_TIMED_GPIO is not set -CONFIG_APM_EMULATION=y -CONFIG_APM_POWER=y -CONFIG_AR6000_WLAN=y -# CONFIG_ARCH_BAST is not set -# CONFIG_ARCH_CLPS7500 is not set -CONFIG_ARCH_FLATMEM_HAS_HOLES=y -# CONFIG_ARCH_H1940 is not set -# CONFIG_ARCH_HAS_ILOG2_U32 is not set -# CONFIG_ARCH_HAS_ILOG2_U64 is not set -CONFIG_ARCH_REQUIRE_GPIOLIB=y -CONFIG_ARCH_S3C2410=y -CONFIG_ARCH_S3C2440=y -# CONFIG_ARCH_SELECT_MEMORY_MODEL is not set -# CONFIG_ARCH_SMDK2410 is not set -# CONFIG_ARCH_SPARSEMEM_DEFAULT is not set -# CONFIG_ARCH_SUPPORTS_MSI is not set -CONFIG_ARCH_SUSPEND_POSSIBLE=y -CONFIG_ARM=y -CONFIG_ARM_THUMB=y -# CONFIG_ARPD is not set -# CONFIG_ARTHUR is not set -CONFIG_ASHMEM=y -CONFIG_ATAGS_PROC=y -CONFIG_BACKLIGHT_CLASS_DEVICE=y -CONFIG_BACKLIGHT_CORGI=y -CONFIG_BACKLIGHT_LCD_SUPPORT=y -# CONFIG_BACKLIGHT_PWM is not set -CONFIG_BASE_SMALL=0 -CONFIG_BATTERY_BQ27000_HDQ=y -# CONFIG_BATTERY_BQ27x00 is not set -# CONFIG_BATTERY_DS2760 is not set -# CONFIG_BINFMT_AOUT is not set -CONFIG_BITREVERSE=y -CONFIG_BLK_DEV_RAM=y -CONFIG_BLK_DEV_RAM_COUNT=16 -CONFIG_BLK_DEV_RAM_SIZE=4096 -# CONFIG_BLK_DEV_XIP is not set -CONFIG_BRIDGE_NETFILTER=y -# CONFIG_BSD_DISKLABEL is not set -# CONFIG_BSD_PROCESS_ACCT is not set -CONFIG_CHARGER_PCF50633=y -CONFIG_CLASSIC_RCU=y -CONFIG_CMDLINE="unused -- bootloader passes ATAG list" -CONFIG_COMPAT_BRK=y -CONFIG_CONSOLE_TRANSLATIONS=y -CONFIG_CPU_32=y -CONFIG_CPU_32v4T=y -CONFIG_CPU_ABRT_EV4T=y -CONFIG_CPU_ARM920T=y -CONFIG_CPU_CACHE_V4WT=y -CONFIG_CPU_CACHE_VIVT=y -CONFIG_CPU_COPY_V4WB=y -CONFIG_CPU_CP15=y -CONFIG_CPU_CP15_MMU=y -# CONFIG_CPU_DCACHE_WRITETHROUGH is not set -# CONFIG_CPU_ICACHE_DISABLE is not set -CONFIG_CPU_IDLE=y -CONFIG_CPU_IDLE_GOV_LADDER=y -CONFIG_CPU_LLSERIAL_S3C2410=y -CONFIG_CPU_LLSERIAL_S3C2440=y -CONFIG_CPU_PABRT_NOIFAR=y -CONFIG_CPU_S3C2410=y -CONFIG_CPU_S3C2410_DMA=y -CONFIG_CPU_S3C2440=y -CONFIG_CPU_S3C2442=y -CONFIG_CPU_S3C244X=y -CONFIG_CPU_TLB_V4WBI=y -CONFIG_CRC16=y -CONFIG_CRC_CCITT=y -CONFIG_CRC_T10DIF=y -CONFIG_CRYPTO_AEAD2=y -CONFIG_CRYPTO_AES=y -CONFIG_CRYPTO_ALGAPI=y -CONFIG_CRYPTO_ALGAPI2=y -CONFIG_CRYPTO_ANSI_CPRNG=y -CONFIG_CRYPTO_ARC4=y -CONFIG_CRYPTO_BLKCIPHER=y -CONFIG_CRYPTO_BLKCIPHER2=y -CONFIG_CRYPTO_CBC=y -CONFIG_CRYPTO_DES=y -CONFIG_CRYPTO_ECB=y -CONFIG_CRYPTO_FIPS=y -CONFIG_CRYPTO_HASH=y -CONFIG_CRYPTO_HASH2=y -CONFIG_CRYPTO_HMAC=y -CONFIG_CRYPTO_HW=y -CONFIG_CRYPTO_MANAGER=y -CONFIG_CRYPTO_MANAGER2=y -CONFIG_CRYPTO_MD5=y -CONFIG_CRYPTO_RNG=y -CONFIG_CRYPTO_RNG2=y -CONFIG_CRYPTO_SHA1=y -CONFIG_DAB=y -CONFIG_DEBUG_BUGVERBOSE=y -# CONFIG_DEBUG_FS is not set -CONFIG_DEBUG_MEMORY_INIT=y -CONFIG_DEBUG_S3C_UART=2 -# CONFIG_DEBUG_USER is not set -CONFIG_DISPLAY_JBT6K74=y -CONFIG_DISPLAY_SUPPORT=y -CONFIG_DMADEVICES=y -CONFIG_DUMMY_CONSOLE=y -CONFIG_ELF_CORE=y -# CONFIG_EMBEDDED is not set -# CONFIG_ENABLE_WARN_DEPRECATED is not set -CONFIG_FB=y -# CONFIG_FB_BACKLIGHT is not set -# CONFIG_FB_BOOT_VESA_SUPPORT is not set -CONFIG_FB_CFB_COPYAREA=y -CONFIG_FB_CFB_FILLRECT=y -CONFIG_FB_CFB_IMAGEBLIT=y -# CONFIG_FB_CFB_REV_PIXELS_IN_BYTE is not set -# CONFIG_FB_DDC is not set -# CONFIG_FB_FOREIGN_ENDIAN is not set -# CONFIG_FB_MACMODES is not set -# CONFIG_FB_MB862XX is not set -# CONFIG_FB_METRONOME is not set -# CONFIG_FB_MODE_HELPERS is not set -# CONFIG_FB_S1D13XXX is not set -CONFIG_FB_S3C2410=y -# CONFIG_FB_S3C2410_DEBUG is not set -# CONFIG_FB_SVGALIB is not set -# CONFIG_FB_SYS_COPYAREA is not set -# CONFIG_FB_SYS_FILLRECT is not set -# CONFIG_FB_SYS_FOPS is not set -# CONFIG_FB_SYS_IMAGEBLIT is not set -# CONFIG_FB_TILEBLITTING is not set -# CONFIG_FB_VIRTUAL is not set -CONFIG_FIQ=y -# CONFIG_FIRMWARE_EDID is not set -CONFIG_FONTS=y -# CONFIG_FONT_10x18 is not set -CONFIG_FONT_6x11=y -# CONFIG_FONT_7x14 is not set -# CONFIG_FONT_8x16 is not set -# CONFIG_FONT_8x8 is not set -# CONFIG_FONT_ACORN_8x8 is not set -# CONFIG_FONT_MINI_4x6 is not set -# CONFIG_FONT_PEARL_8x8 is not set -# CONFIG_FONT_SUN12x22 is not set -# CONFIG_FONT_SUN8x16 is not set -# CONFIG_FPE_FASTFPE is not set -CONFIG_FPE_NWFPE=y -# CONFIG_FPE_NWFPE_XP is not set -CONFIG_FRAMEBUFFER_CONSOLE=y -# CONFIG_FRAMEBUFFER_CONSOLE_DETECT_PRIMARY is not set -# CONFIG_FRAMEBUFFER_CONSOLE_ROTATION is not set -CONFIG_FRAME_POINTER=y -CONFIG_FREEZER=y -# CONFIG_GENERIC_CLOCKEVENTS is not set -CONFIG_GENERIC_GPIO=y -CONFIG_GENERIC_HARDIRQS_NO__DO_IRQ=y -# CONFIG_GENERIC_TIME is not set -CONFIG_GPIOLIB=y -CONFIG_GPIO_DEVICE=y -CONFIG_GPIO_SYSFS=y -CONFIG_GTA02_HDQ=y -# CONFIG_HAMRADIO is not set -CONFIG_HARDIRQS_SW_RESEND=y -CONFIG_HAS_DMA=y -CONFIG_HAS_IOMEM=y -CONFIG_HAVE_AOUT=y -CONFIG_HAVE_ARCH_KGDB=y -CONFIG_HAVE_CLK=y -CONFIG_HAVE_FUNCTION_TRACER=y -CONFIG_HAVE_GENERIC_DMA_COHERENT=y -CONFIG_HAVE_IDE=y -CONFIG_HAVE_KPROBES=y -CONFIG_HAVE_KRETPROBES=y -CONFIG_HAVE_LATENCYTOP_SUPPORT=y -CONFIG_HAVE_OPROFILE=y -CONFIG_HAVE_PWM=y -CONFIG_HID=y -CONFIG_HID_A4TECH=y -CONFIG_HID_APPLE=y -CONFIG_HID_BELKIN=y -CONFIG_HID_BRIGHT=y -CONFIG_HID_CHERRY=y -CONFIG_HID_CHICONY=y -CONFIG_HID_COMPAT=y -CONFIG_HID_CYPRESS=y -CONFIG_HID_DELL=y -CONFIG_HID_EZKEY=y -CONFIG_HID_GYRATION=y -CONFIG_HID_LOGITECH=y -CONFIG_HID_MICROSOFT=y -CONFIG_HID_MONTEREY=y -CONFIG_HID_PANTHERLORD=y -CONFIG_HID_PETALYNX=y -CONFIG_HID_PID=y -CONFIG_HID_SAMSUNG=y -CONFIG_HID_SONY=y -CONFIG_HID_SUNPLUS=y -CONFIG_HID_SUPPORT=y -CONFIG_HW_CONSOLE=y -# CONFIG_HW_RANDOM is not set -CONFIG_HZ=200 -CONFIG_I2C=y -CONFIG_I2C_BOARDINFO=y -CONFIG_I2C_CHARDEV=y -CONFIG_I2C_HELPER_AUTO=y -CONFIG_I2C_S3C2410=y -# CONFIG_IDE is not set -CONFIG_INET_DIAG=y -CONFIG_INET_TCP_DIAG=y -CONFIG_INITRAMFS_SOURCE="" -CONFIG_INOTIFY=y -CONFIG_INOTIFY_USER=y -CONFIG_INPUT=y -CONFIG_INPUT_EVDEV=y -# CONFIG_INPUT_GPIO_BUTTONS is not set -CONFIG_INPUT_KEYBOARD=y -CONFIG_INPUT_LIS302DL=y -CONFIG_INPUT_MISC=y -CONFIG_INPUT_MOUSE=y -CONFIG_INPUT_MOUSEDEV=y -# CONFIG_INPUT_MOUSEDEV_PSAUX is not set -CONFIG_INPUT_MOUSEDEV_SCREEN_X=480 -CONFIG_INPUT_MOUSEDEV_SCREEN_Y=640 -CONFIG_INPUT_PCF50633_PMU=y -CONFIG_INPUT_TOUCHSCREEN=y -# CONFIG_INPUT_YEALINK is not set -CONFIG_IP_PNP=y -# CONFIG_IP_PNP_BOOTP is not set -# CONFIG_IP_PNP_DHCP is not set -# CONFIG_IP_PNP_RARP is not set -# CONFIG_IP_ROUTE_MULTIPATH is not set -# CONFIG_IP_ROUTE_VERBOSE is not set -# CONFIG_ISDN is not set -# CONFIG_JFFS2_COMPRESSION_OPTIONS is not set -CONFIG_KALLSYMS=y -CONFIG_KEXEC=y -# CONFIG_KEYBOARD_ATKBD is not set -# CONFIG_KEYBOARD_GPIO is not set -# CONFIG_KEYBOARD_LKKBD is not set -CONFIG_KEYBOARD_NEO1973=y -# CONFIG_KEYBOARD_NEWTON is not set -CONFIG_KEYBOARD_QT2410=y -# CONFIG_KEYBOARD_STOWAWAY is not set -# CONFIG_KEYBOARD_SUNKBD is not set -# CONFIG_KEYBOARD_XTKBD is not set -CONFIG_LCD_CLASS_DEVICE=y -# CONFIG_LCD_ILI9320 is not set -CONFIG_LCD_LTV350QV=y -# CONFIG_LCD_PLATFORM is not set -# CONFIG_LCD_TDO24M is not set -# CONFIG_LCD_VGG2432A4 is not set -CONFIG_LEDS_GPIO=y -CONFIG_LEDS_NEO1973_GTA02=y -CONFIG_LEDS_NEO1973_VIBRATOR=y -# CONFIG_LEDS_S3C24XX is not set -CONFIG_LEDS_TRIGGER_BACKLIGHT=y -# CONFIG_LEDS_TRIGGER_DEFAULT_ON is not set -# CONFIG_LEDS_TRIGGER_HEARTBEAT is not set -CONFIG_LOCK_KERNEL=y -# CONFIG_LOGO is not set -CONFIG_LOG_BUF_SHIFT=18 -CONFIG_LOW_MEMORY_KILLER=y -# CONFIG_MACH_AML_M5900 is not set -# CONFIG_MACH_ANUBIS is not set -# CONFIG_MACH_AT2440EVB is not set -# CONFIG_MACH_JIVE is not set -# CONFIG_MACH_N30 is not set -CONFIG_MACH_NEO1973=y -# CONFIG_MACH_NEO1973_GTA01 is not set -CONFIG_MACH_NEO1973_GTA02=y -# CONFIG_MACH_NEXCODER_2440 is not set -# CONFIG_MACH_OSIRIS is not set -# CONFIG_MACH_OTOM is not set -CONFIG_MACH_QT2410=y -# CONFIG_MACH_RX3715 is not set -CONFIG_MACH_SMDK=y -# CONFIG_MACH_SMDK2412 is not set -# CONFIG_MACH_SMDK2413 is not set -# CONFIG_MACH_SMDK2443 is not set -# CONFIG_MACH_TCT_HAMMER is not set -# CONFIG_MACH_VR1000 is not set -# CONFIG_MACH_VSTMS is not set -CONFIG_MARKERS=y -CONFIG_MFD_GLAMO=y -CONFIG_MFD_GLAMO_FB=y -CONFIG_MFD_GLAMO_MCI=y -CONFIG_MFD_GLAMO_SPI_FB=y -CONFIG_MFD_GLAMO_SPI_GPIO=y -CONFIG_MFD_PCF50633=y -CONFIG_MMC=y -CONFIG_MMC_BLOCK=y -CONFIG_MMC_BLOCK_BOUNCE=y -# CONFIG_MMC_DEBUG is not set -CONFIG_MMC_S3C=y -CONFIG_MMC_SDHCI=y -CONFIG_MMC_SDHCI_S3C=y -# CONFIG_MMC_SPI is not set -CONFIG_MMC_UNSAFE_RESUME=y -CONFIG_MODULE_FORCE_UNLOAD=y -# CONFIG_MOUSE_BCM5974 is not set -# CONFIG_MOUSE_GPIO is not set -# CONFIG_MOUSE_PS2 is not set -# CONFIG_MOUSE_SERIAL is not set -# CONFIG_MOUSE_VSXXXAA is not set -CONFIG_MTD_ABSENT=y -# CONFIG_MTD_CFI_AMDSTD is not set -CONFIG_MTD_CMDLINE_PARTS=y -# CONFIG_MTD_COMPLEX_MAPPINGS is not set -CONFIG_MTD_CONCAT=y -CONFIG_MTD_NAND=y -# CONFIG_MTD_NAND_GPIO is not set -CONFIG_MTD_NAND_S3C2410=y -# CONFIG_MTD_NAND_S3C2410_CLKSTOP is not set -CONFIG_MTD_NAND_S3C2410_DEBUG=y -CONFIG_MTD_NAND_S3C2410_HWECC=y -CONFIG_MTD_NAND_VERIFY_WRITE=y -CONFIG_MTD_PHYSMAP=y -CONFIG_MTD_PHYSMAP_BANKWIDTH=2 -CONFIG_MTD_PHYSMAP_LEN=0 -CONFIG_MTD_PHYSMAP_START=0x0 -CONFIG_MTD_ROM=y -CONFIG_NAMESPACES=y -# CONFIG_NEO1973_GTA02_2440 is not set -# CONFIG_NETDEV_1000 is not set -# CONFIG_NET_CLS_ACT is not set -# CONFIG_NET_ETHERNET is not set -CONFIG_NF_CONNTRACK=y -CONFIG_NF_CONNTRACK_IPV4=y -# CONFIG_NF_CONNTRACK_MARK is not set -# CONFIG_NF_CONNTRACK_PROC_COMPAT is not set -CONFIG_NF_DEFRAG_IPV4=y -CONFIG_NO_IOPORT=y -CONFIG_NR_TTY_DEVICES=6 -# CONFIG_NVRAM is not set -# CONFIG_OUTER_CACHE is not set -CONFIG_PAGEFLAGS_EXTENDED=y -CONFIG_PAGE_OFFSET=0xC0000000 -CONFIG_PCA9632=y -CONFIG_PCF50633_ADC=y -CONFIG_PCF50633_GPIO=y -# CONFIG_PCI_SYSCALL is not set -CONFIG_PDA_POWER=y -CONFIG_PLAT_S3C=y -CONFIG_PLAT_S3C24XX=y -CONFIG_PM=y -# CONFIG_PM_DEBUG is not set -CONFIG_PM_SLEEP=y -CONFIG_POWER_SUPPLY=y -CONFIG_POWER_SUPPLY_DEBUG=y -CONFIG_PREEMPT=y -CONFIG_PROC_PAGE_MONITOR=y -CONFIG_REGULATOR=y -CONFIG_REGULATOR_DEBUG=y -CONFIG_REGULATOR_PCF50633=y -CONFIG_RTC_CLASS=y -CONFIG_RTC_DEBUG=y -# CONFIG_RTC_DRV_CMOS is not set -# CONFIG_RTC_DRV_PCF50606 is not set -CONFIG_RTC_DRV_PCF50633=y -CONFIG_RTC_DRV_S3C=y -CONFIG_S3C2410_CLOCK=y -CONFIG_S3C2410_DMA=y -# CONFIG_S3C2410_DMA_DEBUG is not set -CONFIG_S3C2410_GPIO=y -CONFIG_S3C2410_PM=y -# CONFIG_S3C2410_PM_CHECK is not set -# CONFIG_S3C2410_PM_DEBUG is not set -CONFIG_S3C2410_PWM=y -CONFIG_S3C2410_WATCHDOG=y -CONFIG_S3C2440_C_FIQ=y -CONFIG_S3C2440_DMA=y -CONFIG_S3C24XX_PWM=y -# CONFIG_S3C_BOOT_ERROR_RESET is not set -CONFIG_S3C_BOOT_UART_FORCE_FIFO=y -# CONFIG_S3C_BOOT_WATCHDOG is not set -CONFIG_S3C_GPIO_SPACE=0 -CONFIG_S3C_GPIO_TRACK=y -CONFIG_S3C_LOWLEVEL_UART_PORT=2 -CONFIG_SCSI=y -# CONFIG_SCSI_LOWLEVEL is not set -# CONFIG_SCSI_MULTI_LUN is not set -# CONFIG_SCSI_PROC_FS is not set -# CONFIG_SDIO_UART is not set -# CONFIG_SENSORS_PCF50606 is not set -# CONFIG_SENSORS_PCF50633 is not set -# CONFIG_SENSORS_TSL256X is not set -# CONFIG_SERIAL_8250 is not set -CONFIG_SERIAL_S3C2410=y -CONFIG_SERIAL_S3C2440=y -CONFIG_SERIAL_SAMSUNG=y -CONFIG_SERIAL_SAMSUNG_CONSOLE=y -CONFIG_SERIAL_SAMSUNG_UARTS=3 -CONFIG_SERIO=y -# CONFIG_SERIO_RAW is not set -# CONFIG_SERIO_SERPORT is not set -CONFIG_SMDK2440_CPU2440=y -CONFIG_SMDK2440_CPU2442=y -CONFIG_SND=m -# CONFIG_SND_ARM is not set -# CONFIG_SND_DRIVERS is not set -CONFIG_SND_PCM=m -CONFIG_SND_S3C24XX_SOC=m -CONFIG_SND_S3C24XX_SOC_I2S=m -# CONFIG_SND_S3C24XX_SOC_LN2440SBC_ALC650 is not set -CONFIG_SND_S3C24XX_SOC_NEO1973_GTA02_WM8753=m -CONFIG_SND_SOC=m -# CONFIG_SND_SOC_ALL_CODECS is not set -CONFIG_SND_SOC_WM8753=m -CONFIG_SND_TIMER=m -# CONFIG_SND_USB is not set -# CONFIG_SND_VERBOSE_PROCFS is not set -CONFIG_SOUND=m -# CONFIG_SOUND_OSS_CORE is not set -CONFIG_SPI=y -CONFIG_SPI_BITBANG=y -# CONFIG_SPI_GPIO is not set -CONFIG_SPI_MASTER=y -CONFIG_SPI_S3C24XX=y -CONFIG_SPI_S3C24XX_GPIO=y -# CONFIG_SPI_SPIDEV is not set -CONFIG_SPLIT_PTLOCK_CPUS=4096 -CONFIG_SUSPEND=y -CONFIG_SUSPEND_FREEZER=y -# CONFIG_SYSCTL_SYSCALL_CHECK is not set -CONFIG_SYSFS_DEPRECATED=y -CONFIG_SYSFS_DEPRECATED_V2=y -CONFIG_SYS_SUPPORTS_APM_EMULATION=y -CONFIG_TCP_MD5SIG=y -# CONFIG_TOUCHSCREEN_ADS7846 is not set -# CONFIG_TOUCHSCREEN_ELO is not set -CONFIG_TOUCHSCREEN_FILTER=y -CONFIG_TOUCHSCREEN_FILTER_GROUP=y -CONFIG_TOUCHSCREEN_FILTER_LINEAR=y -CONFIG_TOUCHSCREEN_FILTER_MEAN=y -CONFIG_TOUCHSCREEN_FILTER_MEDIAN=y -# CONFIG_TOUCHSCREEN_FUJITSU is not set -# CONFIG_TOUCHSCREEN_GUNZE is not set -# CONFIG_TOUCHSCREEN_INEXIO is not set -# CONFIG_TOUCHSCREEN_MK712 is not set -# CONFIG_TOUCHSCREEN_MTOUCH is not set -# CONFIG_TOUCHSCREEN_PCAP7200 is not set -# CONFIG_TOUCHSCREEN_PENMOUNT is not set -CONFIG_TOUCHSCREEN_S3C2410=y -# CONFIG_TOUCHSCREEN_S3C2410_DEBUG is not set -# CONFIG_TOUCHSCREEN_TOUCHIT213 is not set -# CONFIG_TOUCHSCREEN_TOUCHRIGHT is not set -# CONFIG_TOUCHSCREEN_TOUCHWIN is not set -# CONFIG_TOUCHSCREEN_USB_COMPOSITE is not set -CONFIG_UID16=y -CONFIG_UIO=y -CONFIG_UIO_PDRV=y -# CONFIG_UIO_PDRV_GENIRQ is not set -# CONFIG_UIO_SERCOS3 is not set -# CONFIG_UIO_SMX is not set -CONFIG_UNEVICTABLE_LRU=y -CONFIG_USB=y -CONFIG_USB_ACM=y -CONFIG_USB_ANNOUNCE_NEW_DEVICES=y -# CONFIG_USB_ARCH_HAS_EHCI is not set -# CONFIG_USB_CDC_COMPOSITE is not set -# CONFIG_USB_DEVICEFS is not set -CONFIG_USB_ETH=y -CONFIG_USB_ETH_RNDIS=y -# CONFIG_USB_FILE_STORAGE is not set -CONFIG_USB_GADGET=y -# CONFIG_USB_GADGETFS is not set -# CONFIG_USB_GADGET_AMD5536UDC is not set -# CONFIG_USB_GADGET_AT91 is not set -# CONFIG_USB_GADGET_ATMEL_USBA is not set -# CONFIG_USB_GADGET_DEBUG_FILES is not set -# CONFIG_USB_GADGET_DUALSPEED is not set -# CONFIG_USB_GADGET_DUMMY_HCD is not set -# CONFIG_USB_GADGET_FSL_QE is not set -# CONFIG_USB_GADGET_FSL_USB2 is not set -# CONFIG_USB_GADGET_GOKU is not set -# CONFIG_USB_GADGET_LH7A40X is not set -# CONFIG_USB_GADGET_M66592 is not set -# CONFIG_USB_GADGET_MUSB_HDRC is not set -# CONFIG_USB_GADGET_NET2280 is not set -# CONFIG_USB_GADGET_OMAP is not set -# CONFIG_USB_GADGET_PXA25X is not set -# CONFIG_USB_GADGET_PXA27X is not set -CONFIG_USB_GADGET_S3C2410=y -CONFIG_USB_GADGET_SELECTED=y -CONFIG_USB_GADGET_VBUS_DRAW=500 -# CONFIG_USB_G_PRINTER is not set -# CONFIG_USB_G_SERIAL is not set -CONFIG_USB_HID=y -# CONFIG_USB_MIDI_GADGET is not set -# CONFIG_USB_MUSB_HDRC is not set -# CONFIG_USB_OHCI_BIG_ENDIAN_DESC is not set -# CONFIG_USB_OHCI_BIG_ENDIAN_MMIO is not set -CONFIG_USB_OHCI_HCD=y -CONFIG_USB_S3C2410=y -# CONFIG_USB_S3C2410_DEBUG is not set -CONFIG_USB_SERIAL=y -CONFIG_USB_SERIAL_CONSOLE=y -CONFIG_USB_SERIAL_OPTION=y -CONFIG_USB_SUPPORT=y -CONFIG_USB_SUSPEND=y -# CONFIG_USB_ZERO is not set -# CONFIG_USER_NS is not set -CONFIG_VECTORS_BASE=0xffff0000 -# CONFIG_VGASTATE is not set -# CONFIG_VGA_CONSOLE is not set -CONFIG_VIDEO_OUTPUT_CONTROL=y -# CONFIG_VLAN_8021Q is not set -CONFIG_VM_EVENT_COUNTERS=y -CONFIG_VT=y -CONFIG_VT_CONSOLE=y -CONFIG_VT_HW_CONSOLE_BINDING=y -# CONFIG_WIRELESS_OLD_REGULATORY is not set -# CONFIG_WLAN_80211 is not set -CONFIG_ZBOOT_ROM_BSS=0x0 -CONFIG_ZBOOT_ROM_TEXT=0x0 -CONFIG_ZONE_DMA_FLAG=0 diff --git a/target/linux/s3c24xx/patches-2.6.28/001-merge-openmoko.patch b/target/linux/s3c24xx/patches-2.6.28/001-merge-openmoko.patch deleted file mode 100644 index 1092bc826a564d3e9664e449ce2cafa152740f63..0000000000000000000000000000000000000000 --- a/target/linux/s3c24xx/patches-2.6.28/001-merge-openmoko.patch +++ /dev/null @@ -1,149975 +0,0 @@ -Merge OpenMoko kernel patches -git://git.openmoko.org/git/kernel.git#andy-tracking - -mb@homer Thu Jan 1 22:58:51 UTC 2009 - ---- - ---- a/arch/arm/common/vic.c -+++ b/arch/arm/common/vic.c -@@ -69,12 +69,12 @@ void __init vic_init(void __iomem *base, - /* - * Make sure we clear all existing interrupts - */ -- writel(0, base + VIC_VECT_ADDR); -+ writel(0, base + VIC_PL190_VECT_ADDR); - for (i = 0; i < 19; i++) { - unsigned int value; - -- value = readl(base + VIC_VECT_ADDR); -- writel(value, base + VIC_VECT_ADDR); -+ value = readl(base + VIC_PL190_VECT_ADDR); -+ writel(value, base + VIC_PL190_VECT_ADDR); - } - - for (i = 0; i < 16; i++) { -@@ -82,7 +82,7 @@ void __init vic_init(void __iomem *base, - writel(VIC_VECT_CNTL_ENABLE | i, reg); - } - -- writel(32, base + VIC_DEF_VECT_ADDR); -+ writel(32, base + VIC_PL190_DEF_VECT_ADDR); - - for (i = 0; i < 32; i++) { - unsigned int irq = irq_start + i; ---- /dev/null -+++ b/arch/arm/configs/gta02-moredrivers-defconfig -@@ -0,0 +1,2107 @@ -+# -+# Automatically generated make config: don't edit -+# Linux kernel version: 2.6.28-rc4 -+# Mon Dec 29 12:13:48 2008 -+# -+CONFIG_ARM=y -+CONFIG_HAVE_PWM=y -+CONFIG_SYS_SUPPORTS_APM_EMULATION=y -+CONFIG_GENERIC_GPIO=y -+# CONFIG_GENERIC_TIME is not set -+# CONFIG_GENERIC_CLOCKEVENTS is not set -+CONFIG_MMU=y -+CONFIG_NO_IOPORT=y -+CONFIG_GENERIC_HARDIRQS=y -+CONFIG_STACKTRACE_SUPPORT=y -+CONFIG_HAVE_LATENCYTOP_SUPPORT=y -+CONFIG_LOCKDEP_SUPPORT=y -+CONFIG_TRACE_IRQFLAGS_SUPPORT=y -+CONFIG_HARDIRQS_SW_RESEND=y -+CONFIG_GENERIC_IRQ_PROBE=y -+CONFIG_RWSEM_GENERIC_SPINLOCK=y -+# CONFIG_ARCH_HAS_ILOG2_U32 is not set -+# CONFIG_ARCH_HAS_ILOG2_U64 is not set -+CONFIG_GENERIC_HWEIGHT=y -+CONFIG_GENERIC_CALIBRATE_DELAY=y -+CONFIG_FIQ=y -+CONFIG_GENERIC_HARDIRQS_NO__DO_IRQ=y -+CONFIG_VECTORS_BASE=0xffff0000 -+CONFIG_DEFCONFIG_LIST="/lib/modules/$UNAME_RELEASE/.config" -+ -+# -+# General setup -+# -+CONFIG_EXPERIMENTAL=y -+CONFIG_BROKEN_ON_SMP=y -+CONFIG_LOCK_KERNEL=y -+CONFIG_INIT_ENV_ARG_LIMIT=32 -+CONFIG_LOCALVERSION="-mokodev" -+# CONFIG_LOCALVERSION_AUTO is not set -+CONFIG_SWAP=y -+CONFIG_SYSVIPC=y -+CONFIG_SYSVIPC_SYSCTL=y -+# CONFIG_POSIX_MQUEUE is not set -+# CONFIG_BSD_PROCESS_ACCT is not set -+# CONFIG_TASKSTATS is not set -+# CONFIG_AUDIT is not set -+CONFIG_IKCONFIG=y -+CONFIG_IKCONFIG_PROC=y -+CONFIG_LOG_BUF_SHIFT=18 -+# CONFIG_CGROUPS is not set -+# CONFIG_GROUP_SCHED is not set -+CONFIG_SYSFS_DEPRECATED=y -+CONFIG_SYSFS_DEPRECATED_V2=y -+# CONFIG_RELAY is not set -+CONFIG_NAMESPACES=y -+# CONFIG_UTS_NS is not set -+# CONFIG_IPC_NS is not set -+# CONFIG_USER_NS is not set -+# CONFIG_PID_NS is not set -+CONFIG_BLK_DEV_INITRD=y -+CONFIG_INITRAMFS_SOURCE="" -+CONFIG_CC_OPTIMIZE_FOR_SIZE=y -+CONFIG_SYSCTL=y -+# CONFIG_EMBEDDED is not set -+CONFIG_UID16=y -+CONFIG_SYSCTL_SYSCALL=y -+CONFIG_KALLSYMS=y -+CONFIG_KALLSYMS_ALL=y -+# CONFIG_KALLSYMS_EXTRA_PASS is not set -+CONFIG_HOTPLUG=y -+CONFIG_PRINTK=y -+CONFIG_BUG=y -+CONFIG_ELF_CORE=y -+CONFIG_COMPAT_BRK=y -+CONFIG_BASE_FULL=y -+CONFIG_FUTEX=y -+CONFIG_ANON_INODES=y -+CONFIG_EPOLL=y -+CONFIG_SIGNALFD=y -+CONFIG_TIMERFD=y -+CONFIG_EVENTFD=y -+CONFIG_SHMEM=y -+CONFIG_AIO=y -+CONFIG_ASHMEM=y -+CONFIG_VM_EVENT_COUNTERS=y -+CONFIG_SLAB=y -+# CONFIG_SLUB is not set -+# CONFIG_SLOB is not set -+# CONFIG_PROFILING is not set -+CONFIG_MARKERS=y -+CONFIG_HAVE_OPROFILE=y -+# CONFIG_KPROBES is not set -+CONFIG_HAVE_KPROBES=y -+CONFIG_HAVE_KRETPROBES=y -+CONFIG_HAVE_CLK=y -+CONFIG_HAVE_GENERIC_DMA_COHERENT=y -+CONFIG_SLABINFO=y -+CONFIG_RT_MUTEXES=y -+# CONFIG_TINY_SHMEM is not set -+CONFIG_BASE_SMALL=0 -+CONFIG_MODULES=y -+# CONFIG_MODULE_FORCE_LOAD is not set -+CONFIG_MODULE_UNLOAD=y -+CONFIG_MODULE_FORCE_UNLOAD=y -+# CONFIG_MODVERSIONS is not set -+# CONFIG_MODULE_SRCVERSION_ALL is not set -+CONFIG_KMOD=y -+CONFIG_BLOCK=y -+# CONFIG_LBD is not set -+# CONFIG_BLK_DEV_IO_TRACE is not set -+# CONFIG_LSF is not set -+# CONFIG_BLK_DEV_BSG is not set -+# CONFIG_BLK_DEV_INTEGRITY is not set -+ -+# -+# IO Schedulers -+# -+CONFIG_IOSCHED_NOOP=y -+CONFIG_IOSCHED_AS=m -+CONFIG_IOSCHED_DEADLINE=y -+CONFIG_IOSCHED_CFQ=m -+# CONFIG_DEFAULT_AS is not set -+CONFIG_DEFAULT_DEADLINE=y -+# CONFIG_DEFAULT_CFQ is not set -+# CONFIG_DEFAULT_NOOP is not set -+CONFIG_DEFAULT_IOSCHED="deadline" -+CONFIG_CLASSIC_RCU=y -+CONFIG_FREEZER=y -+ -+# -+# System Type -+# -+# CONFIG_ARCH_AAEC2000 is not set -+# CONFIG_ARCH_INTEGRATOR is not set -+# CONFIG_ARCH_REALVIEW is not set -+# CONFIG_ARCH_VERSATILE is not set -+# CONFIG_ARCH_AT91 is not set -+# CONFIG_ARCH_CLPS7500 is not set -+# CONFIG_ARCH_CLPS711X is not set -+# CONFIG_ARCH_EBSA110 is not set -+# CONFIG_ARCH_EP93XX is not set -+# CONFIG_ARCH_FOOTBRIDGE is not set -+# CONFIG_ARCH_NETX is not set -+# CONFIG_ARCH_H720X is not set -+# CONFIG_ARCH_IMX is not set -+# CONFIG_ARCH_IOP13XX is not set -+# CONFIG_ARCH_IOP32X is not set -+# CONFIG_ARCH_IOP33X is not set -+# CONFIG_ARCH_IXP23XX is not set -+# CONFIG_ARCH_IXP2000 is not set -+# CONFIG_ARCH_IXP4XX is not set -+# CONFIG_ARCH_L7200 is not set -+# CONFIG_ARCH_KIRKWOOD is not set -+# CONFIG_ARCH_KS8695 is not set -+# CONFIG_ARCH_NS9XXX is not set -+# CONFIG_ARCH_LOKI is not set -+# CONFIG_ARCH_MV78XX0 is not set -+# CONFIG_ARCH_MXC is not set -+# CONFIG_ARCH_ORION5X is not set -+# CONFIG_ARCH_PNX4008 is not set -+# CONFIG_ARCH_PXA is not set -+# CONFIG_ARCH_RPC is not set -+# CONFIG_ARCH_SA1100 is not set -+CONFIG_ARCH_S3C2410=y -+# CONFIG_ARCH_S3C64XX is not set -+# CONFIG_ARCH_SHARK is not set -+# CONFIG_ARCH_LH7A40X is not set -+# CONFIG_ARCH_DAVINCI is not set -+# CONFIG_ARCH_OMAP is not set -+# CONFIG_ARCH_MSM is not set -+CONFIG_PLAT_S3C24XX=y -+CONFIG_S3C2410_CLOCK=y -+CONFIG_CPU_S3C244X=y -+CONFIG_S3C24XX_PWM=y -+CONFIG_S3C2410_DMA=y -+# CONFIG_S3C2410_DMA_DEBUG is not set -+CONFIG_MACH_SMDK=y -+CONFIG_MACH_NEO1973=y -+CONFIG_PLAT_S3C=y -+CONFIG_CPU_LLSERIAL_S3C2410=y -+CONFIG_CPU_LLSERIAL_S3C2440=y -+ -+# -+# Boot options -+# -+# CONFIG_S3C_BOOT_WATCHDOG is not set -+# CONFIG_S3C_BOOT_ERROR_RESET is not set -+CONFIG_S3C_BOOT_UART_FORCE_FIFO=y -+ -+# -+# Power management -+# -+# CONFIG_S3C2410_PM_DEBUG is not set -+# CONFIG_S3C2410_PM_CHECK is not set -+CONFIG_S3C_LOWLEVEL_UART_PORT=2 -+CONFIG_S3C_GPIO_SPACE=0 -+CONFIG_S3C_GPIO_TRACK=y -+ -+# -+# S3C2400 Machines -+# -+CONFIG_CPU_S3C2410=y -+CONFIG_CPU_S3C2410_DMA=y -+CONFIG_S3C2410_PM=y -+CONFIG_S3C2410_GPIO=y -+CONFIG_S3C2410_PWM=y -+ -+# -+# S3C2410 Machines -+# -+# CONFIG_ARCH_SMDK2410 is not set -+# CONFIG_ARCH_H1940 is not set -+# CONFIG_MACH_N30 is not set -+# CONFIG_ARCH_BAST is not set -+# CONFIG_MACH_OTOM is not set -+# CONFIG_MACH_AML_M5900 is not set -+# CONFIG_MACH_TCT_HAMMER is not set -+# CONFIG_MACH_VR1000 is not set -+CONFIG_MACH_QT2410=y -+# CONFIG_MACH_NEO1973_GTA01 is not set -+ -+# -+# S3C2412 Machines -+# -+# CONFIG_MACH_JIVE is not set -+# CONFIG_MACH_SMDK2413 is not set -+# CONFIG_MACH_SMDK2412 is not set -+# CONFIG_MACH_VSTMS is not set -+CONFIG_CPU_S3C2440=y -+CONFIG_S3C2440_DMA=y -+CONFIG_S3C2440_C_FIQ=y -+ -+# -+# S3C2440 Machines -+# -+# CONFIG_MACH_ANUBIS is not set -+# CONFIG_MACH_OSIRIS is not set -+# CONFIG_MACH_RX3715 is not set -+CONFIG_ARCH_S3C2440=y -+# CONFIG_MACH_NEXCODER_2440 is not set -+CONFIG_SMDK2440_CPU2440=y -+# CONFIG_MACH_AT2440EVB is not set -+CONFIG_MACH_NEO1973_GTA02=y -+# CONFIG_NEO1973_GTA02_2440 is not set -+CONFIG_CPU_S3C2442=y -+ -+# -+# S3C2442 Machines -+# -+CONFIG_SMDK2440_CPU2442=y -+ -+# -+# S3C2443 Machines -+# -+# CONFIG_MACH_SMDK2443 is not set -+ -+# -+# Processor Type -+# -+CONFIG_CPU_32=y -+CONFIG_CPU_ARM920T=y -+CONFIG_CPU_32v4T=y -+CONFIG_CPU_ABRT_EV4T=y -+CONFIG_CPU_PABRT_NOIFAR=y -+CONFIG_CPU_CACHE_V4WT=y -+CONFIG_CPU_CACHE_VIVT=y -+CONFIG_CPU_COPY_V4WB=y -+CONFIG_CPU_TLB_V4WBI=y -+CONFIG_CPU_CP15=y -+CONFIG_CPU_CP15_MMU=y -+ -+# -+# Processor Features -+# -+CONFIG_ARM_THUMB=y -+# CONFIG_CPU_ICACHE_DISABLE is not set -+# CONFIG_CPU_DCACHE_DISABLE is not set -+# CONFIG_CPU_DCACHE_WRITETHROUGH is not set -+# CONFIG_OUTER_CACHE is not set -+ -+# -+# Bus support -+# -+# CONFIG_PCI_SYSCALL is not set -+# CONFIG_ARCH_SUPPORTS_MSI is not set -+# CONFIG_PCCARD is not set -+ -+# -+# Kernel Features -+# -+CONFIG_VMSPLIT_3G=y -+# CONFIG_VMSPLIT_2G is not set -+# CONFIG_VMSPLIT_1G is not set -+CONFIG_PAGE_OFFSET=0xC0000000 -+CONFIG_PREEMPT=y -+CONFIG_HZ=200 -+CONFIG_AEABI=y -+CONFIG_OABI_COMPAT=y -+CONFIG_ARCH_FLATMEM_HAS_HOLES=y -+# CONFIG_ARCH_SPARSEMEM_DEFAULT is not set -+# CONFIG_ARCH_SELECT_MEMORY_MODEL is not set -+CONFIG_SELECT_MEMORY_MODEL=y -+CONFIG_FLATMEM_MANUAL=y -+# CONFIG_DISCONTIGMEM_MANUAL is not set -+# CONFIG_SPARSEMEM_MANUAL is not set -+CONFIG_FLATMEM=y -+CONFIG_FLAT_NODE_MEM_MAP=y -+CONFIG_PAGEFLAGS_EXTENDED=y -+CONFIG_SPLIT_PTLOCK_CPUS=4096 -+# CONFIG_RESOURCES_64BIT is not set -+# CONFIG_PHYS_ADDR_T_64BIT is not set -+CONFIG_ZONE_DMA_FLAG=0 -+CONFIG_VIRT_TO_BUS=y -+CONFIG_UNEVICTABLE_LRU=y -+CONFIG_ALIGNMENT_TRAP=y -+ -+# -+# Boot options -+# -+CONFIG_ZBOOT_ROM_TEXT=0x0 -+CONFIG_ZBOOT_ROM_BSS=0x0 -+CONFIG_CMDLINE="unused -- bootloader passes ATAG list" -+# CONFIG_XIP_KERNEL is not set -+CONFIG_KEXEC=y -+CONFIG_ATAGS_PROC=y -+ -+# -+# CPU Power Management -+# -+CONFIG_CPU_IDLE=y -+CONFIG_CPU_IDLE_GOV_LADDER=y -+ -+# -+# Floating point emulation -+# -+ -+# -+# At least one emulation must be selected -+# -+CONFIG_FPE_NWFPE=y -+# CONFIG_FPE_NWFPE_XP is not set -+# CONFIG_FPE_FASTFPE is not set -+ -+# -+# Userspace binary formats -+# -+CONFIG_BINFMT_ELF=y -+# CONFIG_CORE_DUMP_DEFAULT_ELF_HEADERS is not set -+CONFIG_HAVE_AOUT=y -+# CONFIG_BINFMT_AOUT is not set -+# CONFIG_BINFMT_MISC is not set -+ -+# -+# Power management options -+# -+CONFIG_PM=y -+# CONFIG_PM_DEBUG is not set -+CONFIG_PM_SLEEP=y -+CONFIG_SUSPEND=y -+CONFIG_SUSPEND_FREEZER=y -+CONFIG_APM_EMULATION=y -+CONFIG_ARCH_SUSPEND_POSSIBLE=y -+CONFIG_NET=y -+ -+# -+# Networking options -+# -+CONFIG_PACKET=y -+CONFIG_PACKET_MMAP=y -+CONFIG_UNIX=y -+CONFIG_XFRM=y -+# CONFIG_XFRM_USER is not set -+# CONFIG_XFRM_SUB_POLICY is not set -+CONFIG_XFRM_MIGRATE=y -+# CONFIG_XFRM_STATISTICS is not set -+CONFIG_XFRM_IPCOMP=m -+CONFIG_NET_KEY=m -+CONFIG_NET_KEY_MIGRATE=y -+CONFIG_INET=y -+CONFIG_IP_MULTICAST=y -+CONFIG_IP_ADVANCED_ROUTER=y -+CONFIG_ASK_IP_FIB_HASH=y -+# CONFIG_IP_FIB_TRIE is not set -+CONFIG_IP_FIB_HASH=y -+CONFIG_IP_MULTIPLE_TABLES=y -+# CONFIG_IP_ROUTE_MULTIPATH is not set -+# CONFIG_IP_ROUTE_VERBOSE is not set -+CONFIG_IP_PNP=y -+# CONFIG_IP_PNP_DHCP is not set -+# CONFIG_IP_PNP_BOOTP is not set -+# CONFIG_IP_PNP_RARP is not set -+CONFIG_NET_IPIP=m -+CONFIG_NET_IPGRE=m -+# CONFIG_NET_IPGRE_BROADCAST is not set -+# CONFIG_IP_MROUTE is not set -+# CONFIG_ARPD is not set -+CONFIG_SYN_COOKIES=y -+CONFIG_INET_AH=m -+CONFIG_INET_ESP=m -+CONFIG_INET_IPCOMP=m -+CONFIG_INET_XFRM_TUNNEL=m -+CONFIG_INET_TUNNEL=m -+CONFIG_INET_XFRM_MODE_TRANSPORT=m -+CONFIG_INET_XFRM_MODE_TUNNEL=m -+CONFIG_INET_XFRM_MODE_BEET=m -+# CONFIG_INET_LRO is not set -+CONFIG_INET_DIAG=y -+CONFIG_INET_TCP_DIAG=y -+# CONFIG_TCP_CONG_ADVANCED is not set -+CONFIG_TCP_CONG_CUBIC=y -+CONFIG_DEFAULT_TCP_CONG="cubic" -+CONFIG_TCP_MD5SIG=y -+CONFIG_IPV6=m -+# CONFIG_IPV6_PRIVACY is not set -+# CONFIG_IPV6_ROUTER_PREF is not set -+# CONFIG_IPV6_OPTIMISTIC_DAD is not set -+CONFIG_INET6_AH=m -+CONFIG_INET6_ESP=m -+CONFIG_INET6_IPCOMP=m -+# CONFIG_IPV6_MIP6 is not set -+CONFIG_INET6_XFRM_TUNNEL=m -+CONFIG_INET6_TUNNEL=m -+CONFIG_INET6_XFRM_MODE_TRANSPORT=m -+CONFIG_INET6_XFRM_MODE_TUNNEL=m -+CONFIG_INET6_XFRM_MODE_BEET=m -+# CONFIG_INET6_XFRM_MODE_ROUTEOPTIMIZATION is not set -+CONFIG_IPV6_SIT=m -+CONFIG_IPV6_NDISC_NODETYPE=y -+CONFIG_IPV6_TUNNEL=m -+# CONFIG_IPV6_MULTIPLE_TABLES is not set -+# CONFIG_IPV6_MROUTE is not set -+# CONFIG_NETWORK_SECMARK is not set -+CONFIG_NETFILTER=y -+# CONFIG_NETFILTER_DEBUG is not set -+CONFIG_NETFILTER_ADVANCED=y -+CONFIG_BRIDGE_NETFILTER=y -+ -+# -+# Core Netfilter Configuration -+# -+CONFIG_NETFILTER_NETLINK=m -+CONFIG_NETFILTER_NETLINK_QUEUE=m -+CONFIG_NETFILTER_NETLINK_LOG=m -+CONFIG_NF_CONNTRACK=y -+# CONFIG_NF_CT_ACCT is not set -+# CONFIG_NF_CONNTRACK_MARK is not set -+# CONFIG_NF_CONNTRACK_EVENTS is not set -+# CONFIG_NF_CT_PROTO_DCCP is not set -+# CONFIG_NF_CT_PROTO_SCTP is not set -+# CONFIG_NF_CT_PROTO_UDPLITE is not set -+# CONFIG_NF_CONNTRACK_AMANDA is not set -+# CONFIG_NF_CONNTRACK_FTP is not set -+# CONFIG_NF_CONNTRACK_H323 is not set -+# CONFIG_NF_CONNTRACK_IRC is not set -+# CONFIG_NF_CONNTRACK_NETBIOS_NS is not set -+# CONFIG_NF_CONNTRACK_PPTP is not set -+# CONFIG_NF_CONNTRACK_SANE is not set -+# CONFIG_NF_CONNTRACK_SIP is not set -+# CONFIG_NF_CONNTRACK_TFTP is not set -+# CONFIG_NF_CT_NETLINK is not set -+# CONFIG_NETFILTER_TPROXY is not set -+CONFIG_NETFILTER_XTABLES=m -+CONFIG_NETFILTER_XT_TARGET_CLASSIFY=m -+# CONFIG_NETFILTER_XT_TARGET_CONNMARK is not set -+CONFIG_NETFILTER_XT_TARGET_DSCP=m -+CONFIG_NETFILTER_XT_TARGET_MARK=m -+CONFIG_NETFILTER_XT_TARGET_NFLOG=m -+CONFIG_NETFILTER_XT_TARGET_NFQUEUE=m -+# CONFIG_NETFILTER_XT_TARGET_RATEEST is not set -+CONFIG_NETFILTER_XT_TARGET_TCPMSS=m -+# CONFIG_NETFILTER_XT_TARGET_TCPOPTSTRIP is not set -+# CONFIG_NETFILTER_XT_MATCH_COMMENT is not set -+# CONFIG_NETFILTER_XT_MATCH_CONNBYTES is not set -+# CONFIG_NETFILTER_XT_MATCH_CONNLIMIT is not set -+# CONFIG_NETFILTER_XT_MATCH_CONNMARK is not set -+CONFIG_NETFILTER_XT_MATCH_CONNTRACK=m -+CONFIG_NETFILTER_XT_MATCH_DCCP=m -+CONFIG_NETFILTER_XT_MATCH_DSCP=m -+CONFIG_NETFILTER_XT_MATCH_ESP=m -+CONFIG_NETFILTER_XT_MATCH_HASHLIMIT=m -+# CONFIG_NETFILTER_XT_MATCH_HELPER is not set -+# CONFIG_NETFILTER_XT_MATCH_IPRANGE is not set -+CONFIG_NETFILTER_XT_MATCH_LENGTH=m -+CONFIG_NETFILTER_XT_MATCH_LIMIT=m -+CONFIG_NETFILTER_XT_MATCH_MAC=m -+CONFIG_NETFILTER_XT_MATCH_MARK=m -+CONFIG_NETFILTER_XT_MATCH_MULTIPORT=m -+# CONFIG_NETFILTER_XT_MATCH_OWNER is not set -+CONFIG_NETFILTER_XT_MATCH_POLICY=m -+CONFIG_NETFILTER_XT_MATCH_PHYSDEV=m -+CONFIG_NETFILTER_XT_MATCH_PKTTYPE=m -+CONFIG_NETFILTER_XT_MATCH_QUOTA=m -+# CONFIG_NETFILTER_XT_MATCH_RATEEST is not set -+CONFIG_NETFILTER_XT_MATCH_REALM=m -+# CONFIG_NETFILTER_XT_MATCH_RECENT is not set -+CONFIG_NETFILTER_XT_MATCH_SCTP=m -+# CONFIG_NETFILTER_XT_MATCH_STATE is not set -+CONFIG_NETFILTER_XT_MATCH_STATISTIC=m -+CONFIG_NETFILTER_XT_MATCH_STRING=m -+CONFIG_NETFILTER_XT_MATCH_TCPMSS=m -+# CONFIG_NETFILTER_XT_MATCH_TIME is not set -+# CONFIG_NETFILTER_XT_MATCH_U32 is not set -+# CONFIG_IP_VS is not set -+ -+# -+# IP: Netfilter Configuration -+# -+CONFIG_NF_DEFRAG_IPV4=y -+CONFIG_NF_CONNTRACK_IPV4=y -+# CONFIG_NF_CONNTRACK_PROC_COMPAT is not set -+# CONFIG_IP_NF_QUEUE is not set -+CONFIG_IP_NF_IPTABLES=m -+CONFIG_IP_NF_MATCH_ADDRTYPE=m -+CONFIG_IP_NF_MATCH_AH=m -+CONFIG_IP_NF_MATCH_ECN=m -+CONFIG_IP_NF_MATCH_TTL=m -+CONFIG_IP_NF_FILTER=m -+CONFIG_IP_NF_TARGET_REJECT=m -+CONFIG_IP_NF_TARGET_LOG=m -+CONFIG_IP_NF_TARGET_ULOG=m -+CONFIG_NF_NAT=m -+CONFIG_NF_NAT_NEEDED=y -+CONFIG_IP_NF_TARGET_MASQUERADE=m -+# CONFIG_IP_NF_TARGET_NETMAP is not set -+# CONFIG_IP_NF_TARGET_REDIRECT is not set -+# CONFIG_NF_NAT_SNMP_BASIC is not set -+# CONFIG_NF_NAT_FTP is not set -+# CONFIG_NF_NAT_IRC is not set -+# CONFIG_NF_NAT_TFTP is not set -+# CONFIG_NF_NAT_AMANDA is not set -+# CONFIG_NF_NAT_PPTP is not set -+# CONFIG_NF_NAT_H323 is not set -+# CONFIG_NF_NAT_SIP is not set -+CONFIG_IP_NF_MANGLE=m -+# CONFIG_IP_NF_TARGET_CLUSTERIP is not set -+CONFIG_IP_NF_TARGET_ECN=m -+CONFIG_IP_NF_TARGET_TTL=m -+# CONFIG_IP_NF_RAW is not set -+# CONFIG_IP_NF_ARPTABLES is not set -+ -+# -+# IPv6: Netfilter Configuration -+# -+CONFIG_NF_CONNTRACK_IPV6=m -+# CONFIG_IP6_NF_QUEUE is not set -+CONFIG_IP6_NF_IPTABLES=m -+CONFIG_IP6_NF_MATCH_AH=m -+CONFIG_IP6_NF_MATCH_EUI64=m -+CONFIG_IP6_NF_MATCH_FRAG=m -+CONFIG_IP6_NF_MATCH_OPTS=m -+CONFIG_IP6_NF_MATCH_HL=m -+CONFIG_IP6_NF_MATCH_IPV6HEADER=m -+CONFIG_IP6_NF_MATCH_MH=m -+CONFIG_IP6_NF_MATCH_RT=m -+CONFIG_IP6_NF_TARGET_LOG=m -+CONFIG_IP6_NF_FILTER=m -+CONFIG_IP6_NF_TARGET_REJECT=m -+CONFIG_IP6_NF_MANGLE=m -+CONFIG_IP6_NF_TARGET_HL=m -+# CONFIG_IP6_NF_RAW is not set -+CONFIG_BRIDGE_NF_EBTABLES=m -+CONFIG_BRIDGE_EBT_BROUTE=m -+CONFIG_BRIDGE_EBT_T_FILTER=m -+CONFIG_BRIDGE_EBT_T_NAT=m -+CONFIG_BRIDGE_EBT_802_3=m -+CONFIG_BRIDGE_EBT_AMONG=m -+CONFIG_BRIDGE_EBT_ARP=m -+CONFIG_BRIDGE_EBT_IP=m -+# CONFIG_BRIDGE_EBT_IP6 is not set -+CONFIG_BRIDGE_EBT_LIMIT=m -+CONFIG_BRIDGE_EBT_MARK=m -+CONFIG_BRIDGE_EBT_PKTTYPE=m -+CONFIG_BRIDGE_EBT_STP=m -+CONFIG_BRIDGE_EBT_VLAN=m -+CONFIG_BRIDGE_EBT_ARPREPLY=m -+CONFIG_BRIDGE_EBT_DNAT=m -+CONFIG_BRIDGE_EBT_MARK_T=m -+CONFIG_BRIDGE_EBT_REDIRECT=m -+CONFIG_BRIDGE_EBT_SNAT=m -+CONFIG_BRIDGE_EBT_LOG=m -+CONFIG_BRIDGE_EBT_ULOG=m -+# CONFIG_BRIDGE_EBT_NFLOG is not set -+# CONFIG_IP_DCCP is not set -+# CONFIG_IP_SCTP is not set -+# CONFIG_TIPC is not set -+# CONFIG_ATM is not set -+CONFIG_STP=y -+CONFIG_BRIDGE=y -+# CONFIG_NET_DSA is not set -+# CONFIG_VLAN_8021Q is not set -+# CONFIG_DECNET is not set -+CONFIG_LLC=y -+# CONFIG_LLC2 is not set -+# CONFIG_IPX is not set -+# CONFIG_ATALK is not set -+# CONFIG_X25 is not set -+# CONFIG_LAPB is not set -+# CONFIG_ECONET is not set -+# CONFIG_WAN_ROUTER is not set -+CONFIG_NET_SCHED=y -+ -+# -+# Queueing/Scheduling -+# -+CONFIG_NET_SCH_CBQ=m -+CONFIG_NET_SCH_HTB=m -+CONFIG_NET_SCH_HFSC=m -+CONFIG_NET_SCH_PRIO=m -+# CONFIG_NET_SCH_MULTIQ is not set -+CONFIG_NET_SCH_RED=m -+CONFIG_NET_SCH_SFQ=m -+CONFIG_NET_SCH_TEQL=m -+CONFIG_NET_SCH_TBF=m -+CONFIG_NET_SCH_GRED=m -+CONFIG_NET_SCH_DSMARK=m -+CONFIG_NET_SCH_NETEM=m -+ -+# -+# Classification -+# -+CONFIG_NET_CLS=y -+CONFIG_NET_CLS_BASIC=m -+CONFIG_NET_CLS_TCINDEX=m -+CONFIG_NET_CLS_ROUTE4=m -+CONFIG_NET_CLS_ROUTE=y -+CONFIG_NET_CLS_FW=m -+CONFIG_NET_CLS_U32=m -+CONFIG_CLS_U32_PERF=y -+CONFIG_CLS_U32_MARK=y -+CONFIG_NET_CLS_RSVP=m -+CONFIG_NET_CLS_RSVP6=m -+# CONFIG_NET_CLS_FLOW is not set -+# CONFIG_NET_EMATCH is not set -+# CONFIG_NET_CLS_ACT is not set -+# CONFIG_NET_CLS_IND is not set -+CONFIG_NET_SCH_FIFO=y -+ -+# -+# Network testing -+# -+# CONFIG_NET_PKTGEN is not set -+# CONFIG_HAMRADIO is not set -+# CONFIG_CAN is not set -+# CONFIG_IRDA is not set -+CONFIG_BT=y -+CONFIG_BT_L2CAP=y -+CONFIG_BT_SCO=y -+CONFIG_BT_RFCOMM=y -+CONFIG_BT_RFCOMM_TTY=y -+CONFIG_BT_BNEP=y -+CONFIG_BT_BNEP_MC_FILTER=y -+CONFIG_BT_BNEP_PROTO_FILTER=y -+CONFIG_BT_HIDP=y -+ -+# -+# Bluetooth device drivers -+# -+CONFIG_BT_HCIBTUSB=y -+# CONFIG_BT_HCIBTSDIO is not set -+# CONFIG_BT_HCIUART is not set -+# CONFIG_BT_HCIBCM203X is not set -+# CONFIG_BT_HCIBPA10X is not set -+# CONFIG_BT_HCIBFUSB is not set -+# CONFIG_BT_HCIVHCI is not set -+# CONFIG_AF_RXRPC is not set -+# CONFIG_PHONET is not set -+CONFIG_FIB_RULES=y -+CONFIG_WIRELESS=y -+# CONFIG_CFG80211 is not set -+# CONFIG_WIRELESS_OLD_REGULATORY is not set -+CONFIG_WIRELESS_EXT=y -+CONFIG_WIRELESS_EXT_SYSFS=y -+# CONFIG_MAC80211 is not set -+# CONFIG_IEEE80211 is not set -+CONFIG_RFKILL=y -+CONFIG_RFKILL_INPUT=y -+CONFIG_RFKILL_LEDS=y -+# CONFIG_NET_9P is not set -+ -+# -+# Device Drivers -+# -+ -+# -+# Generic Driver Options -+# -+CONFIG_UEVENT_HELPER_PATH="/sbin/hotplug" -+CONFIG_STANDALONE=y -+CONFIG_PREVENT_FIRMWARE_BUILD=y -+CONFIG_FW_LOADER=y -+# CONFIG_FIRMWARE_IN_KERNEL is not set -+CONFIG_EXTRA_FIRMWARE="" -+# CONFIG_DEBUG_DRIVER is not set -+# CONFIG_DEBUG_DEVRES is not set -+# CONFIG_SYS_HYPERVISOR is not set -+CONFIG_CONNECTOR=m -+CONFIG_MTD=y -+# CONFIG_MTD_DEBUG is not set -+CONFIG_MTD_CONCAT=y -+CONFIG_MTD_PARTITIONS=y -+# CONFIG_MTD_REDBOOT_PARTS is not set -+CONFIG_MTD_CMDLINE_PARTS=y -+# CONFIG_MTD_AFS_PARTS is not set -+# CONFIG_MTD_AR7_PARTS is not set -+ -+# -+# User Modules And Translation Layers -+# -+CONFIG_MTD_CHAR=y -+CONFIG_MTD_BLKDEVS=y -+CONFIG_MTD_BLOCK=y -+# CONFIG_FTL is not set -+# CONFIG_NFTL is not set -+# CONFIG_INFTL is not set -+# CONFIG_RFD_FTL is not set -+# CONFIG_SSFDC is not set -+# CONFIG_MTD_OOPS is not set -+ -+# -+# RAM/ROM/Flash chip drivers -+# -+CONFIG_MTD_CFI=y -+# CONFIG_MTD_JEDECPROBE is not set -+CONFIG_MTD_GEN_PROBE=y -+# CONFIG_MTD_CFI_ADV_OPTIONS is not set -+CONFIG_MTD_MAP_BANK_WIDTH_1=y -+CONFIG_MTD_MAP_BANK_WIDTH_2=y -+CONFIG_MTD_MAP_BANK_WIDTH_4=y -+# CONFIG_MTD_MAP_BANK_WIDTH_8 is not set -+# CONFIG_MTD_MAP_BANK_WIDTH_16 is not set -+# CONFIG_MTD_MAP_BANK_WIDTH_32 is not set -+CONFIG_MTD_CFI_I1=y -+CONFIG_MTD_CFI_I2=y -+# CONFIG_MTD_CFI_I4 is not set -+# CONFIG_MTD_CFI_I8 is not set -+CONFIG_MTD_CFI_INTELEXT=y -+# CONFIG_MTD_CFI_AMDSTD is not set -+# CONFIG_MTD_CFI_STAA is not set -+CONFIG_MTD_CFI_UTIL=y -+# CONFIG_MTD_RAM is not set -+CONFIG_MTD_ROM=y -+CONFIG_MTD_ABSENT=y -+ -+# -+# Mapping drivers for chip access -+# -+# CONFIG_MTD_COMPLEX_MAPPINGS is not set -+CONFIG_MTD_PHYSMAP=y -+CONFIG_MTD_PHYSMAP_START=0x0 -+CONFIG_MTD_PHYSMAP_LEN=0 -+CONFIG_MTD_PHYSMAP_BANKWIDTH=2 -+# CONFIG_MTD_ARM_INTEGRATOR is not set -+# CONFIG_MTD_PLATRAM is not set -+ -+# -+# Self-contained MTD device drivers -+# -+# CONFIG_MTD_DATAFLASH is not set -+# CONFIG_MTD_M25P80 is not set -+# CONFIG_MTD_SLRAM is not set -+# CONFIG_MTD_PHRAM is not set -+# CONFIG_MTD_MTDRAM is not set -+# CONFIG_MTD_BLOCK2MTD is not set -+ -+# -+# Disk-On-Chip Device Drivers -+# -+# CONFIG_MTD_DOC2000 is not set -+# CONFIG_MTD_DOC2001 is not set -+# CONFIG_MTD_DOC2001PLUS is not set -+CONFIG_MTD_NAND=y -+CONFIG_MTD_NAND_VERIFY_WRITE=y -+# CONFIG_MTD_NAND_ECC_SMC is not set -+# CONFIG_MTD_NAND_MUSEUM_IDS is not set -+# CONFIG_MTD_NAND_GPIO is not set -+CONFIG_MTD_NAND_IDS=y -+CONFIG_MTD_NAND_S3C2410=y -+CONFIG_MTD_NAND_S3C2410_DEBUG=y -+CONFIG_MTD_NAND_S3C2410_HWECC=y -+# CONFIG_MTD_NAND_S3C2410_CLKSTOP is not set -+# CONFIG_MTD_NAND_DISKONCHIP is not set -+# CONFIG_MTD_NAND_NANDSIM is not set -+# CONFIG_MTD_NAND_PLATFORM is not set -+# CONFIG_MTD_ALAUDA is not set -+# CONFIG_MTD_ONENAND is not set -+ -+# -+# UBI - Unsorted block images -+# -+# CONFIG_MTD_UBI is not set -+# CONFIG_PARPORT is not set -+CONFIG_BLK_DEV=y -+# CONFIG_BLK_DEV_COW_COMMON is not set -+CONFIG_BLK_DEV_LOOP=m -+# CONFIG_BLK_DEV_CRYPTOLOOP is not set -+# CONFIG_BLK_DEV_NBD is not set -+CONFIG_BLK_DEV_UB=m -+CONFIG_BLK_DEV_RAM=y -+CONFIG_BLK_DEV_RAM_COUNT=16 -+CONFIG_BLK_DEV_RAM_SIZE=4096 -+# CONFIG_BLK_DEV_XIP is not set -+# CONFIG_CDROM_PKTCDVD is not set -+# CONFIG_ATA_OVER_ETH is not set -+CONFIG_MISC_DEVICES=y -+# CONFIG_EEPROM_93CX6 is not set -+CONFIG_LOW_MEMORY_KILLER=y -+# CONFIG_ENCLOSURE_SERVICES is not set -+CONFIG_HAVE_IDE=y -+# CONFIG_IDE is not set -+ -+# -+# SCSI device support -+# -+# CONFIG_RAID_ATTRS is not set -+CONFIG_SCSI=y -+CONFIG_SCSI_DMA=y -+# CONFIG_SCSI_TGT is not set -+# CONFIG_SCSI_NETLINK is not set -+CONFIG_SCSI_PROC_FS=y -+ -+# -+# SCSI support type (disk, tape, CD-ROM) -+# -+CONFIG_BLK_DEV_SD=y -+# CONFIG_CHR_DEV_ST is not set -+# CONFIG_CHR_DEV_OSST is not set -+CONFIG_BLK_DEV_SR=y -+# CONFIG_BLK_DEV_SR_VENDOR is not set -+CONFIG_CHR_DEV_SG=y -+# CONFIG_CHR_DEV_SCH is not set -+ -+# -+# Some SCSI devices (e.g. CD jukebox) support multiple LUNs -+# -+CONFIG_SCSI_MULTI_LUN=y -+# CONFIG_SCSI_CONSTANTS is not set -+# CONFIG_SCSI_LOGGING is not set -+CONFIG_SCSI_SCAN_ASYNC=y -+CONFIG_SCSI_WAIT_SCAN=m -+ -+# -+# SCSI Transports -+# -+# CONFIG_SCSI_SPI_ATTRS is not set -+# CONFIG_SCSI_FC_ATTRS is not set -+# CONFIG_SCSI_ISCSI_ATTRS is not set -+# CONFIG_SCSI_SAS_LIBSAS is not set -+# CONFIG_SCSI_SRP_ATTRS is not set -+CONFIG_SCSI_LOWLEVEL=y -+# CONFIG_ISCSI_TCP is not set -+# CONFIG_SCSI_DEBUG is not set -+# CONFIG_SCSI_DH is not set -+# CONFIG_ATA is not set -+CONFIG_MD=y -+# CONFIG_BLK_DEV_MD is not set -+CONFIG_BLK_DEV_DM=m -+# CONFIG_DM_DEBUG is not set -+CONFIG_DM_CRYPT=m -+CONFIG_DM_SNAPSHOT=m -+# CONFIG_DM_MIRROR is not set -+# CONFIG_DM_ZERO is not set -+# CONFIG_DM_MULTIPATH is not set -+# CONFIG_DM_DELAY is not set -+# CONFIG_DM_UEVENT is not set -+CONFIG_NETDEVICES=y -+# CONFIG_DUMMY is not set -+# CONFIG_BONDING is not set -+# CONFIG_MACVLAN is not set -+# CONFIG_EQUALIZER is not set -+CONFIG_TUN=y -+# CONFIG_VETH is not set -+# CONFIG_PHYLIB is not set -+CONFIG_NET_ETHERNET=y -+CONFIG_MII=y -+# CONFIG_AX88796 is not set -+# CONFIG_SMC91X is not set -+# CONFIG_DM9000 is not set -+# CONFIG_ENC28J60 is not set -+# CONFIG_SMC911X is not set -+# CONFIG_IBM_NEW_EMAC_ZMII is not set -+# CONFIG_IBM_NEW_EMAC_RGMII is not set -+# CONFIG_IBM_NEW_EMAC_TAH is not set -+# CONFIG_IBM_NEW_EMAC_EMAC4 is not set -+# CONFIG_IBM_NEW_EMAC_NO_FLOW_CTRL is not set -+# CONFIG_IBM_NEW_EMAC_MAL_CLR_ICINTSTAT is not set -+# CONFIG_IBM_NEW_EMAC_MAL_COMMON_ERR is not set -+# CONFIG_B44 is not set -+# CONFIG_NETDEV_1000 is not set -+# CONFIG_NETDEV_10000 is not set -+ -+# -+# Wireless LAN -+# -+# CONFIG_WLAN_PRE80211 is not set -+# CONFIG_WLAN_80211 is not set -+# CONFIG_IWLWIFI_LEDS is not set -+ -+# -+# USB Network Adapters -+# -+CONFIG_USB_CATC=m -+CONFIG_USB_KAWETH=m -+CONFIG_USB_PEGASUS=m -+CONFIG_USB_RTL8150=m -+CONFIG_USB_USBNET=y -+CONFIG_USB_NET_AX8817X=m -+CONFIG_USB_NET_CDCETHER=y -+CONFIG_USB_NET_DM9601=m -+# CONFIG_USB_NET_SMSC95XX is not set -+CONFIG_USB_NET_GL620A=m -+CONFIG_USB_NET_NET1080=m -+CONFIG_USB_NET_PLUSB=m -+CONFIG_USB_NET_MCS7830=m -+CONFIG_USB_NET_RNDIS_HOST=y -+CONFIG_USB_NET_CDC_SUBSET=m -+CONFIG_USB_ALI_M5632=y -+CONFIG_USB_AN2720=y -+CONFIG_USB_BELKIN=y -+CONFIG_USB_ARMLINUX=y -+CONFIG_USB_EPSON2888=y -+CONFIG_USB_KC2190=y -+CONFIG_USB_NET_ZAURUS=m -+# CONFIG_USB_HSO is not set -+# CONFIG_WAN is not set -+CONFIG_PPP=y -+CONFIG_PPP_MULTILINK=y -+CONFIG_PPP_FILTER=y -+CONFIG_PPP_ASYNC=y -+CONFIG_PPP_SYNC_TTY=y -+CONFIG_PPP_DEFLATE=y -+CONFIG_PPP_BSDCOMP=y -+CONFIG_PPP_MPPE=y -+# CONFIG_PPPOE is not set -+# CONFIG_PPPOL2TP is not set -+# CONFIG_SLIP is not set -+CONFIG_SLHC=y -+# CONFIG_NETCONSOLE is not set -+# CONFIG_NETPOLL is not set -+# CONFIG_NET_POLL_CONTROLLER is not set -+# CONFIG_ISDN is not set -+ -+# -+# Input device support -+# -+CONFIG_INPUT=y -+# CONFIG_INPUT_FF_MEMLESS is not set -+# CONFIG_INPUT_POLLDEV is not set -+ -+# -+# Userland interfaces -+# -+CONFIG_INPUT_MOUSEDEV=y -+# CONFIG_INPUT_MOUSEDEV_PSAUX is not set -+CONFIG_INPUT_MOUSEDEV_SCREEN_X=480 -+CONFIG_INPUT_MOUSEDEV_SCREEN_Y=640 -+# CONFIG_INPUT_JOYDEV is not set -+CONFIG_INPUT_EVDEV=y -+# CONFIG_INPUT_EVBUG is not set -+ -+# -+# Input Device Drivers -+# -+CONFIG_INPUT_KEYBOARD=y -+# CONFIG_KEYBOARD_ATKBD is not set -+# CONFIG_KEYBOARD_SUNKBD is not set -+# CONFIG_KEYBOARD_LKKBD is not set -+# CONFIG_KEYBOARD_XTKBD is not set -+# CONFIG_KEYBOARD_NEWTON is not set -+CONFIG_KEYBOARD_STOWAWAY=m -+CONFIG_KEYBOARD_GPIO=m -+CONFIG_KEYBOARD_NEO1973=y -+CONFIG_KEYBOARD_QT2410=y -+CONFIG_INPUT_MOUSE=y -+# CONFIG_MOUSE_PS2 is not set -+# CONFIG_MOUSE_SERIAL is not set -+# CONFIG_MOUSE_APPLETOUCH is not set -+# CONFIG_MOUSE_BCM5974 is not set -+# CONFIG_MOUSE_VSXXXAA is not set -+# CONFIG_MOUSE_GPIO is not set -+# CONFIG_INPUT_JOYSTICK is not set -+# CONFIG_INPUT_TABLET is not set -+CONFIG_INPUT_TOUCHSCREEN=y -+CONFIG_TOUCHSCREEN_FILTER=y -+CONFIG_TOUCHSCREEN_FILTER_GROUP=y -+CONFIG_TOUCHSCREEN_FILTER_MEDIAN=y -+CONFIG_TOUCHSCREEN_FILTER_MEAN=y -+CONFIG_TOUCHSCREEN_FILTER_LINEAR=y -+# CONFIG_TOUCHSCREEN_ADS7846 is not set -+# CONFIG_TOUCHSCREEN_FUJITSU is not set -+CONFIG_TOUCHSCREEN_S3C2410=y -+# CONFIG_TOUCHSCREEN_S3C2410_DEBUG is not set -+# CONFIG_TOUCHSCREEN_GUNZE is not set -+# CONFIG_TOUCHSCREEN_ELO is not set -+# CONFIG_TOUCHSCREEN_MTOUCH is not set -+# CONFIG_TOUCHSCREEN_INEXIO is not set -+# CONFIG_TOUCHSCREEN_MK712 is not set -+# CONFIG_TOUCHSCREEN_PENMOUNT is not set -+# CONFIG_TOUCHSCREEN_TOUCHRIGHT is not set -+# CONFIG_TOUCHSCREEN_TOUCHWIN is not set -+# CONFIG_TOUCHSCREEN_USB_COMPOSITE is not set -+# CONFIG_TOUCHSCREEN_TOUCHIT213 is not set -+# CONFIG_TOUCHSCREEN_PCAP7200 is not set -+CONFIG_INPUT_MISC=y -+# CONFIG_INPUT_ATI_REMOTE is not set -+# CONFIG_INPUT_ATI_REMOTE2 is not set -+# CONFIG_INPUT_KEYSPAN_REMOTE is not set -+# CONFIG_INPUT_POWERMATE is not set -+# CONFIG_INPUT_YEALINK is not set -+# CONFIG_INPUT_CM109 is not set -+CONFIG_INPUT_UINPUT=m -+CONFIG_INPUT_LIS302DL=y -+CONFIG_INPUT_PCF50633_PMU=y -+ -+# -+# Hardware I/O ports -+# -+CONFIG_SERIO=y -+# CONFIG_SERIO_SERPORT is not set -+# CONFIG_SERIO_RAW is not set -+# CONFIG_GAMEPORT is not set -+ -+# -+# Character devices -+# -+CONFIG_VT=y -+CONFIG_CONSOLE_TRANSLATIONS=y -+CONFIG_VT_CONSOLE=y -+CONFIG_NR_TTY_DEVICES=6 -+CONFIG_HW_CONSOLE=y -+CONFIG_VT_HW_CONSOLE_BINDING=y -+# CONFIG_DEVKMEM is not set -+# CONFIG_SERIAL_NONSTANDARD is not set -+ -+# -+# Serial drivers -+# -+# CONFIG_SERIAL_8250 is not set -+ -+# -+# Non-8250 serial port support -+# -+CONFIG_SERIAL_SAMSUNG=y -+CONFIG_SERIAL_SAMSUNG_UARTS=3 -+CONFIG_SERIAL_SAMSUNG_CONSOLE=y -+CONFIG_SERIAL_S3C2410=y -+CONFIG_SERIAL_S3C2440=y -+CONFIG_SERIAL_CORE=y -+CONFIG_SERIAL_CORE_CONSOLE=y -+CONFIG_UNIX98_PTYS=y -+# CONFIG_LEGACY_PTYS is not set -+# CONFIG_IPMI_HANDLER is not set -+# CONFIG_HW_RANDOM is not set -+# CONFIG_NVRAM is not set -+# CONFIG_R3964 is not set -+# CONFIG_RAW_DRIVER is not set -+# CONFIG_TCG_TPM is not set -+CONFIG_I2C=y -+CONFIG_I2C_BOARDINFO=y -+CONFIG_I2C_CHARDEV=y -+CONFIG_I2C_HELPER_AUTO=y -+ -+# -+# I2C Hardware Bus support -+# -+ -+# -+# I2C system bus drivers (mostly embedded / system-on-chip) -+# -+# CONFIG_I2C_GPIO is not set -+# CONFIG_I2C_OCORES is not set -+CONFIG_I2C_S3C2410=y -+# CONFIG_I2C_SIMTEC is not set -+ -+# -+# External I2C/SMBus adapter drivers -+# -+# CONFIG_I2C_PARPORT_LIGHT is not set -+# CONFIG_I2C_TAOS_EVM is not set -+# CONFIG_I2C_TINY_USB is not set -+ -+# -+# Other I2C/SMBus bus drivers -+# -+# CONFIG_I2C_PCA_PLATFORM is not set -+# CONFIG_I2C_STUB is not set -+ -+# -+# Miscellaneous I2C Chip support -+# -+# CONFIG_DS1682 is not set -+# CONFIG_AT24 is not set -+# CONFIG_SENSORS_EEPROM is not set -+# CONFIG_SENSORS_PCF50606 is not set -+# CONFIG_SENSORS_PCF50633 is not set -+# CONFIG_SENSORS_PCF8574 is not set -+# CONFIG_PCF8575 is not set -+# CONFIG_SENSORS_PCA9539 is not set -+# CONFIG_SENSORS_PCF8591 is not set -+# CONFIG_TPS65010 is not set -+# CONFIG_SENSORS_MAX6875 is not set -+# CONFIG_SENSORS_TSL2550 is not set -+# CONFIG_SENSORS_TSL256X is not set -+CONFIG_PCA9632=y -+# CONFIG_I2C_DEBUG_CORE is not set -+# CONFIG_I2C_DEBUG_ALGO is not set -+# CONFIG_I2C_DEBUG_BUS is not set -+# CONFIG_I2C_DEBUG_CHIP is not set -+CONFIG_SPI=y -+# CONFIG_SPI_DEBUG is not set -+CONFIG_SPI_MASTER=y -+ -+# -+# SPI Master Controller Drivers -+# -+CONFIG_SPI_BITBANG=y -+# CONFIG_SPI_S3C24XX is not set -+CONFIG_SPI_S3C24XX_GPIO=y -+ -+# -+# SPI Protocol Masters -+# -+# CONFIG_SPI_AT25 is not set -+# CONFIG_SPI_SPIDEV is not set -+# CONFIG_SPI_TLE62X0 is not set -+CONFIG_ARCH_REQUIRE_GPIOLIB=y -+CONFIG_GPIOLIB=y -+CONFIG_DEBUG_GPIO=y -+CONFIG_GPIO_SYSFS=y -+ -+# -+# I2C GPIO expanders: -+# -+# CONFIG_GPIO_MAX732X is not set -+# CONFIG_GPIO_PCA953X is not set -+# CONFIG_GPIO_PCF857X is not set -+ -+# -+# PCI GPIO expanders: -+# -+ -+# -+# SPI GPIO expanders: -+# -+# CONFIG_GPIO_MAX7301 is not set -+# CONFIG_GPIO_MCP23S08 is not set -+# CONFIG_W1 is not set -+CONFIG_POWER_SUPPLY=y -+CONFIG_POWER_SUPPLY_DEBUG=y -+CONFIG_PDA_POWER=y -+CONFIG_APM_POWER=y -+# CONFIG_BATTERY_DS2760 is not set -+# CONFIG_BATTERY_BQ27x00 is not set -+CONFIG_BATTERY_BQ27000_HDQ=y -+CONFIG_GTA02_HDQ=y -+CONFIG_CHARGER_PCF50633=y -+CONFIG_HWMON=y -+# CONFIG_HWMON_VID is not set -+# CONFIG_SENSORS_AD7414 is not set -+# CONFIG_SENSORS_AD7418 is not set -+# CONFIG_SENSORS_ADCXX is not set -+# CONFIG_SENSORS_ADM1021 is not set -+# CONFIG_SENSORS_ADM1025 is not set -+# CONFIG_SENSORS_ADM1026 is not set -+# CONFIG_SENSORS_ADM1029 is not set -+# CONFIG_SENSORS_ADM1031 is not set -+# CONFIG_SENSORS_ADM9240 is not set -+# CONFIG_SENSORS_ADT7470 is not set -+# CONFIG_SENSORS_ADT7473 is not set -+# CONFIG_SENSORS_ATXP1 is not set -+# CONFIG_SENSORS_DS1621 is not set -+# CONFIG_SENSORS_F71805F is not set -+# CONFIG_SENSORS_F71882FG is not set -+# CONFIG_SENSORS_F75375S is not set -+# CONFIG_SENSORS_GL518SM is not set -+# CONFIG_SENSORS_GL520SM is not set -+# CONFIG_SENSORS_IT87 is not set -+# CONFIG_SENSORS_LM63 is not set -+# CONFIG_SENSORS_LM70 is not set -+# CONFIG_SENSORS_LM75 is not set -+# CONFIG_SENSORS_LM77 is not set -+# CONFIG_SENSORS_LM78 is not set -+# CONFIG_SENSORS_LM80 is not set -+# CONFIG_SENSORS_LM83 is not set -+# CONFIG_SENSORS_LM85 is not set -+# CONFIG_SENSORS_LM87 is not set -+# CONFIG_SENSORS_LM90 is not set -+# CONFIG_SENSORS_LM92 is not set -+# CONFIG_SENSORS_LM93 is not set -+# CONFIG_SENSORS_MAX1111 is not set -+# CONFIG_SENSORS_MAX1619 is not set -+# CONFIG_SENSORS_MAX6650 is not set -+# CONFIG_SENSORS_PC87360 is not set -+# CONFIG_SENSORS_PC87427 is not set -+# CONFIG_SENSORS_DME1737 is not set -+# CONFIG_SENSORS_SMSC47M1 is not set -+# CONFIG_SENSORS_SMSC47M192 is not set -+# CONFIG_SENSORS_SMSC47B397 is not set -+# CONFIG_SENSORS_ADS7828 is not set -+# CONFIG_SENSORS_THMC50 is not set -+# CONFIG_SENSORS_VT1211 is not set -+# CONFIG_SENSORS_W83781D is not set -+# CONFIG_SENSORS_W83791D is not set -+# CONFIG_SENSORS_W83792D is not set -+# CONFIG_SENSORS_W83793 is not set -+# CONFIG_SENSORS_W83L785TS is not set -+# CONFIG_SENSORS_W83L786NG is not set -+# CONFIG_SENSORS_W83627HF is not set -+# CONFIG_SENSORS_W83627EHF is not set -+# CONFIG_HWMON_DEBUG_CHIP is not set -+# CONFIG_THERMAL is not set -+# CONFIG_THERMAL_HWMON is not set -+CONFIG_WATCHDOG=y -+# CONFIG_WATCHDOG_NOWAYOUT is not set -+ -+# -+# Watchdog Device Drivers -+# -+# CONFIG_SOFT_WATCHDOG is not set -+CONFIG_S3C2410_WATCHDOG=m -+ -+# -+# USB-based Watchdog Cards -+# -+# CONFIG_USBPCWATCHDOG is not set -+ -+# -+# Sonics Silicon Backplane -+# -+CONFIG_SSB_POSSIBLE=y -+# CONFIG_SSB is not set -+ -+# -+# Multifunction device drivers -+# -+# CONFIG_MFD_CORE is not set -+# CONFIG_MFD_SM501 is not set -+# CONFIG_MFD_ASIC3 is not set -+# CONFIG_HTC_EGPIO is not set -+# CONFIG_HTC_PASIC3 is not set -+# CONFIG_MFD_TMIO is not set -+# CONFIG_MFD_T7L66XB is not set -+# CONFIG_MFD_TC6387XB is not set -+# CONFIG_MFD_TC6393XB is not set -+# CONFIG_PMIC_DA903X is not set -+# CONFIG_MFD_WM8400 is not set -+# CONFIG_MFD_WM8350_I2C is not set -+CONFIG_MFD_PCF50633=y -+CONFIG_PCF50633_ADC=y -+CONFIG_PCF50633_GPIO=y -+# CONFIG_MFD_PCF50606 is not set -+CONFIG_MFD_GLAMO=y -+CONFIG_MFD_GLAMO_FB=y -+CONFIG_MFD_GLAMO_SPI_GPIO=y -+CONFIG_MFD_GLAMO_SPI_FB=y -+CONFIG_MFD_GLAMO_MCI=y -+ -+# -+# Multimedia devices -+# -+ -+# -+# Multimedia core support -+# -+# CONFIG_VIDEO_DEV is not set -+# CONFIG_DVB_CORE is not set -+# CONFIG_VIDEO_MEDIA is not set -+ -+# -+# Multimedia drivers -+# -+CONFIG_DAB=y -+# CONFIG_USB_DABUSB is not set -+ -+# -+# Graphics support -+# -+# CONFIG_VGASTATE is not set -+CONFIG_VIDEO_OUTPUT_CONTROL=y -+CONFIG_FB=y -+# CONFIG_FIRMWARE_EDID is not set -+# CONFIG_FB_DDC is not set -+# CONFIG_FB_BOOT_VESA_SUPPORT is not set -+CONFIG_FB_CFB_FILLRECT=y -+CONFIG_FB_CFB_COPYAREA=y -+CONFIG_FB_CFB_IMAGEBLIT=y -+# CONFIG_FB_CFB_REV_PIXELS_IN_BYTE is not set -+# CONFIG_FB_SYS_FILLRECT is not set -+# CONFIG_FB_SYS_COPYAREA is not set -+# CONFIG_FB_SYS_IMAGEBLIT is not set -+# CONFIG_FB_FOREIGN_ENDIAN is not set -+# CONFIG_FB_SYS_FOPS is not set -+# CONFIG_FB_SVGALIB is not set -+# CONFIG_FB_MACMODES is not set -+# CONFIG_FB_BACKLIGHT is not set -+# CONFIG_FB_MODE_HELPERS is not set -+# CONFIG_FB_TILEBLITTING is not set -+ -+# -+# Frame buffer hardware drivers -+# -+# CONFIG_FB_UVESA is not set -+# CONFIG_FB_S1D13XXX is not set -+CONFIG_FB_S3C2410=y -+# CONFIG_FB_S3C2410_DEBUG is not set -+# CONFIG_FB_VIRTUAL is not set -+# CONFIG_FB_METRONOME is not set -+# CONFIG_FB_MB862XX is not set -+CONFIG_BACKLIGHT_LCD_SUPPORT=y -+CONFIG_LCD_CLASS_DEVICE=y -+CONFIG_LCD_LTV350QV=y -+# CONFIG_LCD_ILI9320 is not set -+# CONFIG_LCD_TDO24M is not set -+# CONFIG_LCD_VGG2432A4 is not set -+# CONFIG_LCD_PLATFORM is not set -+CONFIG_BACKLIGHT_CLASS_DEVICE=y -+CONFIG_BACKLIGHT_CORGI=y -+# CONFIG_BACKLIGHT_PWM is not set -+ -+# -+# Display device support -+# -+CONFIG_DISPLAY_SUPPORT=y -+ -+# -+# Display hardware drivers -+# -+CONFIG_DISPLAY_JBT6K74=y -+ -+# -+# Console display driver support -+# -+# CONFIG_VGA_CONSOLE is not set -+CONFIG_DUMMY_CONSOLE=y -+CONFIG_FRAMEBUFFER_CONSOLE=y -+# CONFIG_FRAMEBUFFER_CONSOLE_DETECT_PRIMARY is not set -+# CONFIG_FRAMEBUFFER_CONSOLE_ROTATION is not set -+CONFIG_FONTS=y -+# CONFIG_FONT_8x8 is not set -+# CONFIG_FONT_8x16 is not set -+CONFIG_FONT_6x11=y -+# CONFIG_FONT_7x14 is not set -+# CONFIG_FONT_PEARL_8x8 is not set -+# CONFIG_FONT_ACORN_8x8 is not set -+# CONFIG_FONT_MINI_4x6 is not set -+# CONFIG_FONT_SUN8x16 is not set -+# CONFIG_FONT_SUN12x22 is not set -+# CONFIG_FONT_10x18 is not set -+# CONFIG_LOGO is not set -+CONFIG_SOUND=y -+CONFIG_SOUND_OSS_CORE=y -+CONFIG_SND=y -+CONFIG_SND_TIMER=y -+CONFIG_SND_PCM=y -+CONFIG_SND_HWDEP=m -+CONFIG_SND_RAWMIDI=m -+# CONFIG_SND_SEQUENCER is not set -+CONFIG_SND_OSSEMUL=y -+CONFIG_SND_MIXER_OSS=y -+CONFIG_SND_PCM_OSS=y -+CONFIG_SND_PCM_OSS_PLUGINS=y -+# CONFIG_SND_DYNAMIC_MINORS is not set -+CONFIG_SND_SUPPORT_OLD_API=y -+CONFIG_SND_VERBOSE_PROCFS=y -+# CONFIG_SND_VERBOSE_PRINTK is not set -+CONFIG_SND_DEBUG=y -+# CONFIG_SND_DEBUG_VERBOSE is not set -+CONFIG_SND_PCM_XRUN_DEBUG=y -+CONFIG_SND_DRIVERS=y -+# CONFIG_SND_DUMMY is not set -+# CONFIG_SND_MTPAV is not set -+# CONFIG_SND_SERIAL_U16550 is not set -+# CONFIG_SND_MPU401 is not set -+CONFIG_SND_ARM=y -+# CONFIG_SND_SPI is not set -+CONFIG_SND_USB=y -+CONFIG_SND_USB_AUDIO=m -+# CONFIG_SND_USB_CAIAQ is not set -+CONFIG_SND_SOC=y -+CONFIG_SND_S3C24XX_SOC=y -+CONFIG_SND_S3C24XX_SOC_I2S=y -+CONFIG_SND_S3C24XX_SOC_NEO1973_GTA02_WM8753=y -+# CONFIG_SND_S3C24XX_SOC_LN2440SBC_ALC650 is not set -+# CONFIG_SND_SOC_ALL_CODECS is not set -+CONFIG_SND_SOC_WM8753=y -+# CONFIG_SOUND_PRIME is not set -+CONFIG_HID_SUPPORT=y -+CONFIG_HID=y -+# CONFIG_HID_DEBUG is not set -+# CONFIG_HIDRAW is not set -+ -+# -+# USB Input Devices -+# -+CONFIG_USB_HID=y -+CONFIG_HID_PID=y -+# CONFIG_USB_HIDDEV is not set -+ -+# -+# Special HID drivers -+# -+CONFIG_HID_COMPAT=y -+CONFIG_HID_A4TECH=y -+CONFIG_HID_APPLE=y -+CONFIG_HID_BELKIN=y -+CONFIG_HID_BRIGHT=y -+CONFIG_HID_CHERRY=y -+CONFIG_HID_CHICONY=y -+CONFIG_HID_CYPRESS=y -+CONFIG_HID_DELL=y -+CONFIG_HID_EZKEY=y -+CONFIG_HID_GYRATION=y -+CONFIG_HID_LOGITECH=y -+# CONFIG_LOGITECH_FF is not set -+# CONFIG_LOGIRUMBLEPAD2_FF is not set -+CONFIG_HID_MICROSOFT=y -+CONFIG_HID_MONTEREY=y -+CONFIG_HID_PANTHERLORD=y -+# CONFIG_PANTHERLORD_FF is not set -+CONFIG_HID_PETALYNX=y -+CONFIG_HID_SAMSUNG=y -+CONFIG_HID_SONY=y -+CONFIG_HID_SUNPLUS=y -+# CONFIG_THRUSTMASTER_FF is not set -+# CONFIG_ZEROPLUS_FF is not set -+CONFIG_USB_SUPPORT=y -+CONFIG_USB_ARCH_HAS_HCD=y -+CONFIG_USB_ARCH_HAS_OHCI=y -+# CONFIG_USB_ARCH_HAS_EHCI is not set -+CONFIG_USB=y -+# CONFIG_USB_DEBUG is not set -+CONFIG_USB_ANNOUNCE_NEW_DEVICES=y -+ -+# -+# Miscellaneous USB options -+# -+CONFIG_USB_DEVICEFS=y -+CONFIG_USB_DEVICE_CLASS=y -+# CONFIG_USB_DYNAMIC_MINORS is not set -+CONFIG_USB_SUSPEND=y -+# CONFIG_USB_OTG is not set -+CONFIG_USB_MON=y -+# CONFIG_USB_WUSB is not set -+# CONFIG_USB_WUSB_CBAF is not set -+ -+# -+# USB Host Controller Drivers -+# -+# CONFIG_USB_C67X00_HCD is not set -+# CONFIG_USB_ISP116X_HCD is not set -+# CONFIG_USB_ISP1760_HCD is not set -+CONFIG_USB_OHCI_HCD=y -+# CONFIG_USB_OHCI_BIG_ENDIAN_DESC is not set -+# CONFIG_USB_OHCI_BIG_ENDIAN_MMIO is not set -+CONFIG_USB_OHCI_LITTLE_ENDIAN=y -+# CONFIG_USB_SL811_HCD is not set -+# CONFIG_USB_R8A66597_HCD is not set -+# CONFIG_USB_HWA_HCD is not set -+# CONFIG_USB_MUSB_HDRC is not set -+# CONFIG_USB_GADGET_MUSB_HDRC is not set -+ -+# -+# USB Device Class drivers -+# -+CONFIG_USB_ACM=y -+CONFIG_USB_PRINTER=m -+# CONFIG_USB_WDM is not set -+CONFIG_USB_TMC=m -+ -+# -+# NOTE: USB_STORAGE enables SCSI, and 'SCSI disk support' -+# -+ -+# -+# may also be needed; see USB_STORAGE Help for more information -+# -+CONFIG_USB_STORAGE=y -+# CONFIG_USB_STORAGE_DEBUG is not set -+CONFIG_USB_STORAGE_DATAFAB=y -+CONFIG_USB_STORAGE_FREECOM=y -+# CONFIG_USB_STORAGE_ISD200 is not set -+CONFIG_USB_STORAGE_DPCM=y -+CONFIG_USB_STORAGE_USBAT=y -+CONFIG_USB_STORAGE_SDDR09=y -+CONFIG_USB_STORAGE_SDDR55=y -+CONFIG_USB_STORAGE_JUMPSHOT=y -+CONFIG_USB_STORAGE_ALAUDA=y -+# CONFIG_USB_STORAGE_ONETOUCH is not set -+CONFIG_USB_STORAGE_KARMA=y -+# CONFIG_USB_STORAGE_CYPRESS_ATACB is not set -+CONFIG_USB_LIBUSUAL=y -+ -+# -+# USB Imaging devices -+# -+# CONFIG_USB_MDC800 is not set -+# CONFIG_USB_MICROTEK is not set -+ -+# -+# USB port drivers -+# -+CONFIG_USB_SERIAL=y -+CONFIG_USB_SERIAL_CONSOLE=y -+CONFIG_USB_EZUSB=y -+CONFIG_USB_SERIAL_GENERIC=y -+CONFIG_USB_SERIAL_AIRCABLE=m -+CONFIG_USB_SERIAL_ARK3116=m -+CONFIG_USB_SERIAL_BELKIN=m -+# CONFIG_USB_SERIAL_CH341 is not set -+CONFIG_USB_SERIAL_WHITEHEAT=m -+CONFIG_USB_SERIAL_DIGI_ACCELEPORT=m -+CONFIG_USB_SERIAL_CP2101=m -+CONFIG_USB_SERIAL_CYPRESS_M8=m -+CONFIG_USB_SERIAL_EMPEG=m -+CONFIG_USB_SERIAL_FTDI_SIO=m -+CONFIG_USB_SERIAL_FUNSOFT=m -+CONFIG_USB_SERIAL_VISOR=m -+CONFIG_USB_SERIAL_IPAQ=m -+CONFIG_USB_SERIAL_IR=m -+CONFIG_USB_SERIAL_EDGEPORT=m -+CONFIG_USB_SERIAL_EDGEPORT_TI=m -+CONFIG_USB_SERIAL_GARMIN=m -+CONFIG_USB_SERIAL_IPW=m -+# CONFIG_USB_SERIAL_IUU is not set -+CONFIG_USB_SERIAL_KEYSPAN_PDA=m -+CONFIG_USB_SERIAL_KEYSPAN=m -+CONFIG_USB_SERIAL_KLSI=m -+CONFIG_USB_SERIAL_KOBIL_SCT=m -+CONFIG_USB_SERIAL_MCT_U232=m -+CONFIG_USB_SERIAL_MOS7720=m -+CONFIG_USB_SERIAL_MOS7840=m -+# CONFIG_USB_SERIAL_MOTOROLA is not set -+CONFIG_USB_SERIAL_NAVMAN=m -+CONFIG_USB_SERIAL_PL2303=m -+# CONFIG_USB_SERIAL_OTI6858 is not set -+# CONFIG_USB_SERIAL_SPCP8X5 is not set -+CONFIG_USB_SERIAL_HP4X=m -+CONFIG_USB_SERIAL_SAFE=m -+CONFIG_USB_SERIAL_SAFE_PADDED=y -+CONFIG_USB_SERIAL_SIERRAWIRELESS=m -+CONFIG_USB_SERIAL_TI=m -+CONFIG_USB_SERIAL_CYBERJACK=m -+CONFIG_USB_SERIAL_XIRCOM=m -+CONFIG_USB_SERIAL_OPTION=y -+CONFIG_USB_SERIAL_OMNINET=m -+# CONFIG_USB_SERIAL_DEBUG is not set -+ -+# -+# USB Miscellaneous drivers -+# -+# CONFIG_USB_EMI62 is not set -+# CONFIG_USB_EMI26 is not set -+# CONFIG_USB_ADUTUX is not set -+# CONFIG_USB_SEVSEG is not set -+# CONFIG_USB_RIO500 is not set -+# CONFIG_USB_LEGOTOWER is not set -+# CONFIG_USB_LCD is not set -+CONFIG_USB_BERRY_CHARGE=m -+# CONFIG_USB_LED is not set -+# CONFIG_USB_CYPRESS_CY7C63 is not set -+# CONFIG_USB_CYTHERM is not set -+# CONFIG_USB_PHIDGET is not set -+# CONFIG_USB_IDMOUSE is not set -+# CONFIG_USB_FTDI_ELAN is not set -+# CONFIG_USB_APPLEDISPLAY is not set -+# CONFIG_USB_LD is not set -+CONFIG_USB_TRANCEVIBRATOR=m -+CONFIG_USB_IOWARRIOR=m -+# CONFIG_USB_TEST is not set -+# CONFIG_USB_ISIGHTFW is not set -+# CONFIG_USB_VST is not set -+CONFIG_USB_GADGET=y -+# CONFIG_USB_GADGET_DEBUG is not set -+# CONFIG_USB_GADGET_DEBUG_FILES is not set -+# CONFIG_USB_GADGET_DEBUG_FS is not set -+CONFIG_USB_GADGET_VBUS_DRAW=500 -+CONFIG_USB_GADGET_SELECTED=y -+# CONFIG_USB_GADGET_AT91 is not set -+# CONFIG_USB_GADGET_ATMEL_USBA is not set -+# CONFIG_USB_GADGET_FSL_USB2 is not set -+# CONFIG_USB_GADGET_LH7A40X is not set -+# CONFIG_USB_GADGET_OMAP is not set -+# CONFIG_USB_GADGET_PXA25X is not set -+# CONFIG_USB_GADGET_PXA27X is not set -+CONFIG_USB_GADGET_S3C2410=y -+CONFIG_USB_S3C2410=y -+CONFIG_USB_S3C2410_DEBUG=y -+# CONFIG_USB_GADGET_M66592 is not set -+# CONFIG_USB_GADGET_AMD5536UDC is not set -+# CONFIG_USB_GADGET_FSL_QE is not set -+# CONFIG_USB_GADGET_NET2280 is not set -+# CONFIG_USB_GADGET_GOKU is not set -+# CONFIG_USB_GADGET_DUMMY_HCD is not set -+# CONFIG_USB_GADGET_DUALSPEED is not set -+# CONFIG_USB_ZERO is not set -+CONFIG_USB_ETH=y -+CONFIG_USB_ETH_RNDIS=y -+# CONFIG_USB_GADGETFS is not set -+# CONFIG_USB_FILE_STORAGE is not set -+# CONFIG_USB_G_SERIAL is not set -+# CONFIG_USB_MIDI_GADGET is not set -+# CONFIG_USB_G_PRINTER is not set -+# CONFIG_USB_CDC_COMPOSITE is not set -+CONFIG_AR6000_WLAN=y -+CONFIG_MMC=y -+# CONFIG_MMC_DEBUG is not set -+CONFIG_MMC_UNSAFE_RESUME=y -+ -+# -+# MMC/SD/SDIO Card Drivers -+# -+CONFIG_MMC_BLOCK=y -+CONFIG_MMC_BLOCK_BOUNCE=y -+# CONFIG_SDIO_UART is not set -+# CONFIG_MMC_TEST is not set -+ -+# -+# MMC/SD/SDIO Host Controller Drivers -+# -+CONFIG_MMC_SDHCI=y -+CONFIG_MMC_SDHCI_S3C=y -+# CONFIG_MMC_SPI is not set -+CONFIG_MMC_S3C=y -+# CONFIG_MEMSTICK is not set -+# CONFIG_ACCESSIBILITY is not set -+CONFIG_NEW_LEDS=y -+CONFIG_LEDS_CLASS=y -+ -+# -+# LED drivers -+# -+CONFIG_LEDS_S3C24XX=m -+# CONFIG_LEDS_PCA9532 is not set -+CONFIG_LEDS_GPIO=y -+# CONFIG_LEDS_PCA955X is not set -+CONFIG_LEDS_NEO1973_VIBRATOR=y -+CONFIG_LEDS_NEO1973_GTA02=y -+ -+# -+# LED Triggers -+# -+CONFIG_LEDS_TRIGGERS=y -+CONFIG_LEDS_TRIGGER_TIMER=y -+# CONFIG_LEDS_TRIGGER_HEARTBEAT is not set -+CONFIG_LEDS_TRIGGER_BACKLIGHT=y -+# CONFIG_LEDS_TRIGGER_DEFAULT_ON is not set -+CONFIG_RTC_LIB=y -+CONFIG_RTC_CLASS=y -+CONFIG_RTC_HCTOSYS=y -+CONFIG_RTC_HCTOSYS_DEVICE="rtc0" -+CONFIG_RTC_DEBUG=y -+ -+# -+# RTC interfaces -+# -+CONFIG_RTC_INTF_SYSFS=y -+CONFIG_RTC_INTF_PROC=y -+CONFIG_RTC_INTF_DEV=y -+# CONFIG_RTC_INTF_DEV_UIE_EMUL is not set -+# CONFIG_RTC_DRV_TEST is not set -+ -+# -+# I2C RTC drivers -+# -+# CONFIG_RTC_DRV_DS1307 is not set -+# CONFIG_RTC_DRV_DS1374 is not set -+# CONFIG_RTC_DRV_DS1672 is not set -+# CONFIG_RTC_DRV_MAX6900 is not set -+# CONFIG_RTC_DRV_RS5C372 is not set -+# CONFIG_RTC_DRV_ISL1208 is not set -+# CONFIG_RTC_DRV_X1205 is not set -+# CONFIG_RTC_DRV_PCF8563 is not set -+# CONFIG_RTC_DRV_PCF8583 is not set -+CONFIG_RTC_DRV_PCF50633=y -+# CONFIG_RTC_DRV_PCF50606 is not set -+# CONFIG_RTC_DRV_M41T80 is not set -+# CONFIG_RTC_DRV_S35390A is not set -+# CONFIG_RTC_DRV_FM3130 is not set -+ -+# -+# SPI RTC drivers -+# -+# CONFIG_RTC_DRV_M41T94 is not set -+# CONFIG_RTC_DRV_DS1305 is not set -+# CONFIG_RTC_DRV_MAX6902 is not set -+# CONFIG_RTC_DRV_R9701 is not set -+# CONFIG_RTC_DRV_RS5C348 is not set -+# CONFIG_RTC_DRV_DS3234 is not set -+ -+# -+# Platform RTC drivers -+# -+# CONFIG_RTC_DRV_CMOS is not set -+# CONFIG_RTC_DRV_DS1286 is not set -+# CONFIG_RTC_DRV_DS1511 is not set -+# CONFIG_RTC_DRV_DS1553 is not set -+# CONFIG_RTC_DRV_DS1742 is not set -+# CONFIG_RTC_DRV_STK17TA8 is not set -+# CONFIG_RTC_DRV_M48T86 is not set -+# CONFIG_RTC_DRV_M48T35 is not set -+# CONFIG_RTC_DRV_M48T59 is not set -+# CONFIG_RTC_DRV_BQ4802 is not set -+# CONFIG_RTC_DRV_V3020 is not set -+ -+# -+# on-CPU RTC drivers -+# -+CONFIG_RTC_DRV_S3C=m -+CONFIG_DMADEVICES=y -+ -+# -+# DMA Devices -+# -+ -+# -+# Android -+# -+CONFIG_ANDROID_BINDER_IPC=y -+CONFIG_ANDROID_POWER=y -+CONFIG_ANDROID_POWER_STAT=y -+CONFIG_ANDROID_POWER_ALARM=y -+CONFIG_ANDROID_LOGGER=y -+# CONFIG_ANDROID_RAM_CONSOLE is not set -+# CONFIG_ANDROID_TIMED_GPIO is not set -+# CONFIG_ANDROID_PARANOID_NETWORK is not set -+CONFIG_REGULATOR=y -+CONFIG_REGULATOR_DEBUG=y -+# CONFIG_REGULATOR_FIXED_VOLTAGE is not set -+# CONFIG_REGULATOR_VIRTUAL_CONSUMER is not set -+# CONFIG_REGULATOR_BQ24022 is not set -+CONFIG_REGULATOR_PCF50633=y -+CONFIG_UIO=y -+CONFIG_UIO_PDRV=y -+# CONFIG_UIO_PDRV_GENIRQ is not set -+# CONFIG_UIO_SMX is not set -+# CONFIG_UIO_SERCOS3 is not set -+ -+# -+# File systems -+# -+CONFIG_EXT2_FS=y -+# CONFIG_EXT2_FS_XATTR is not set -+# CONFIG_EXT2_FS_XIP is not set -+CONFIG_EXT3_FS=y -+# CONFIG_EXT3_FS_XATTR is not set -+CONFIG_EXT4_FS=y -+CONFIG_EXT4DEV_COMPAT=y -+CONFIG_EXT4_FS_XATTR=y -+# CONFIG_EXT4_FS_POSIX_ACL is not set -+CONFIG_EXT4_FS_SECURITY=y -+CONFIG_JBD=y -+# CONFIG_JBD_DEBUG is not set -+CONFIG_JBD2=y -+# CONFIG_JBD2_DEBUG is not set -+CONFIG_FS_MBCACHE=y -+# CONFIG_REISERFS_FS is not set -+# CONFIG_JFS_FS is not set -+CONFIG_FS_POSIX_ACL=y -+CONFIG_FILE_LOCKING=y -+# CONFIG_XFS_FS is not set -+# CONFIG_OCFS2_FS is not set -+CONFIG_DNOTIFY=y -+CONFIG_INOTIFY=y -+CONFIG_INOTIFY_USER=y -+# CONFIG_QUOTA is not set -+# CONFIG_AUTOFS_FS is not set -+# CONFIG_AUTOFS4_FS is not set -+CONFIG_FUSE_FS=m -+ -+# -+# CD-ROM/DVD Filesystems -+# -+CONFIG_ISO9660_FS=m -+CONFIG_JOLIET=y -+# CONFIG_ZISOFS is not set -+# CONFIG_UDF_FS is not set -+ -+# -+# DOS/FAT/NT Filesystems -+# -+CONFIG_FAT_FS=y -+CONFIG_MSDOS_FS=y -+CONFIG_VFAT_FS=y -+CONFIG_FAT_DEFAULT_CODEPAGE=437 -+CONFIG_FAT_DEFAULT_IOCHARSET="iso8859-1" -+# CONFIG_NTFS_FS is not set -+ -+# -+# Pseudo filesystems -+# -+CONFIG_PROC_FS=y -+CONFIG_PROC_SYSCTL=y -+CONFIG_PROC_PAGE_MONITOR=y -+CONFIG_SYSFS=y -+CONFIG_TMPFS=y -+# CONFIG_TMPFS_POSIX_ACL is not set -+# CONFIG_HUGETLB_PAGE is not set -+CONFIG_CONFIGFS_FS=m -+ -+# -+# Miscellaneous filesystems -+# -+# CONFIG_ADFS_FS is not set -+# CONFIG_AFFS_FS is not set -+# CONFIG_HFS_FS is not set -+# CONFIG_HFSPLUS_FS is not set -+# CONFIG_BEFS_FS is not set -+# CONFIG_BFS_FS is not set -+# CONFIG_EFS_FS is not set -+CONFIG_JFFS2_FS=y -+CONFIG_JFFS2_FS_DEBUG=0 -+CONFIG_JFFS2_FS_WRITEBUFFER=y -+# CONFIG_JFFS2_FS_WBUF_VERIFY is not set -+CONFIG_JFFS2_SUMMARY=y -+# CONFIG_JFFS2_FS_XATTR is not set -+# CONFIG_JFFS2_COMPRESSION_OPTIONS is not set -+CONFIG_JFFS2_ZLIB=y -+# CONFIG_JFFS2_LZO is not set -+CONFIG_JFFS2_RTIME=y -+# CONFIG_JFFS2_RUBIN is not set -+CONFIG_CRAMFS=y -+# CONFIG_VXFS_FS is not set -+# CONFIG_MINIX_FS is not set -+# CONFIG_OMFS_FS is not set -+# CONFIG_HPFS_FS is not set -+# CONFIG_QNX4FS_FS is not set -+CONFIG_ROMFS_FS=y -+# CONFIG_SYSV_FS is not set -+# CONFIG_UFS_FS is not set -+CONFIG_NETWORK_FILESYSTEMS=y -+# CONFIG_NFS_FS is not set -+CONFIG_NFSD=y -+CONFIG_NFSD_V2_ACL=y -+CONFIG_NFSD_V3=y -+CONFIG_NFSD_V3_ACL=y -+# CONFIG_NFSD_V4 is not set -+CONFIG_LOCKD=y -+CONFIG_LOCKD_V4=y -+CONFIG_EXPORTFS=y -+CONFIG_NFS_ACL_SUPPORT=y -+CONFIG_NFS_COMMON=y -+CONFIG_SUNRPC=y -+# CONFIG_SUNRPC_REGISTER_V4 is not set -+# CONFIG_RPCSEC_GSS_KRB5 is not set -+# CONFIG_RPCSEC_GSS_SPKM3 is not set -+# CONFIG_SMB_FS is not set -+CONFIG_CIFS=m -+# CONFIG_CIFS_STATS is not set -+# CONFIG_CIFS_WEAK_PW_HASH is not set -+# CONFIG_CIFS_XATTR is not set -+# CONFIG_CIFS_DEBUG2 is not set -+# CONFIG_CIFS_EXPERIMENTAL is not set -+# CONFIG_NCP_FS is not set -+# CONFIG_CODA_FS is not set -+# CONFIG_AFS_FS is not set -+ -+# -+# Partition Types -+# -+CONFIG_PARTITION_ADVANCED=y -+# CONFIG_ACORN_PARTITION is not set -+# CONFIG_OSF_PARTITION is not set -+# CONFIG_AMIGA_PARTITION is not set -+# CONFIG_ATARI_PARTITION is not set -+# CONFIG_MAC_PARTITION is not set -+CONFIG_MSDOS_PARTITION=y -+# CONFIG_BSD_DISKLABEL is not set -+# CONFIG_MINIX_SUBPARTITION is not set -+# CONFIG_SOLARIS_X86_PARTITION is not set -+# CONFIG_UNIXWARE_DISKLABEL is not set -+# CONFIG_LDM_PARTITION is not set -+# CONFIG_SGI_PARTITION is not set -+# CONFIG_ULTRIX_PARTITION is not set -+# CONFIG_SUN_PARTITION is not set -+# CONFIG_KARMA_PARTITION is not set -+# CONFIG_EFI_PARTITION is not set -+# CONFIG_SYSV68_PARTITION is not set -+CONFIG_NLS=y -+CONFIG_NLS_DEFAULT="iso8859-1" -+CONFIG_NLS_CODEPAGE_437=y -+# CONFIG_NLS_CODEPAGE_737 is not set -+# CONFIG_NLS_CODEPAGE_775 is not set -+CONFIG_NLS_CODEPAGE_850=m -+# CONFIG_NLS_CODEPAGE_852 is not set -+# CONFIG_NLS_CODEPAGE_855 is not set -+# CONFIG_NLS_CODEPAGE_857 is not set -+# CONFIG_NLS_CODEPAGE_860 is not set -+# CONFIG_NLS_CODEPAGE_861 is not set -+# CONFIG_NLS_CODEPAGE_862 is not set -+# CONFIG_NLS_CODEPAGE_863 is not set -+# CONFIG_NLS_CODEPAGE_864 is not set -+# CONFIG_NLS_CODEPAGE_865 is not set -+# CONFIG_NLS_CODEPAGE_866 is not set -+# CONFIG_NLS_CODEPAGE_869 is not set -+CONFIG_NLS_CODEPAGE_936=m -+CONFIG_NLS_CODEPAGE_950=m -+# CONFIG_NLS_CODEPAGE_932 is not set -+# CONFIG_NLS_CODEPAGE_949 is not set -+# CONFIG_NLS_CODEPAGE_874 is not set -+# CONFIG_NLS_ISO8859_8 is not set -+# CONFIG_NLS_CODEPAGE_1250 is not set -+# CONFIG_NLS_CODEPAGE_1251 is not set -+# CONFIG_NLS_ASCII is not set -+CONFIG_NLS_ISO8859_1=y -+# CONFIG_NLS_ISO8859_2 is not set -+# CONFIG_NLS_ISO8859_3 is not set -+# CONFIG_NLS_ISO8859_4 is not set -+# CONFIG_NLS_ISO8859_5 is not set -+# CONFIG_NLS_ISO8859_6 is not set -+# CONFIG_NLS_ISO8859_7 is not set -+# CONFIG_NLS_ISO8859_9 is not set -+# CONFIG_NLS_ISO8859_13 is not set -+# CONFIG_NLS_ISO8859_14 is not set -+# CONFIG_NLS_ISO8859_15 is not set -+# CONFIG_NLS_KOI8_R is not set -+# CONFIG_NLS_KOI8_U is not set -+CONFIG_NLS_UTF8=m -+# CONFIG_DLM is not set -+ -+# -+# Kernel hacking -+# -+CONFIG_PRINTK_TIME=y -+CONFIG_ENABLE_WARN_DEPRECATED=y -+CONFIG_ENABLE_MUST_CHECK=y -+CONFIG_FRAME_WARN=1024 -+CONFIG_MAGIC_SYSRQ=y -+# CONFIG_UNUSED_SYMBOLS is not set -+CONFIG_DEBUG_FS=y -+# CONFIG_HEADERS_CHECK is not set -+CONFIG_DEBUG_KERNEL=y -+CONFIG_DEBUG_SHIRQ=y -+CONFIG_DETECT_SOFTLOCKUP=y -+CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC=y -+CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC_VALUE=1 -+CONFIG_SCHED_DEBUG=y -+CONFIG_SCHEDSTATS=y -+CONFIG_TIMER_STATS=y -+# CONFIG_DEBUG_OBJECTS is not set -+# CONFIG_DEBUG_SLAB is not set -+CONFIG_DEBUG_PREEMPT=y -+# CONFIG_DEBUG_RT_MUTEXES is not set -+# CONFIG_RT_MUTEX_TESTER is not set -+CONFIG_DEBUG_SPINLOCK=y -+CONFIG_DEBUG_MUTEXES=y -+CONFIG_DEBUG_LOCK_ALLOC=y -+# CONFIG_PROVE_LOCKING is not set -+CONFIG_LOCKDEP=y -+CONFIG_LOCK_STAT=y -+CONFIG_DEBUG_LOCKDEP=y -+CONFIG_DEBUG_SPINLOCK_SLEEP=y -+# CONFIG_DEBUG_LOCKING_API_SELFTESTS is not set -+CONFIG_STACKTRACE=y -+# CONFIG_DEBUG_KOBJECT is not set -+CONFIG_DEBUG_BUGVERBOSE=y -+CONFIG_DEBUG_INFO=y -+# CONFIG_DEBUG_VM is not set -+# CONFIG_DEBUG_WRITECOUNT is not set -+CONFIG_DEBUG_MEMORY_INIT=y -+# CONFIG_DEBUG_LIST is not set -+CONFIG_DEBUG_SG=y -+CONFIG_FRAME_POINTER=y -+# CONFIG_BOOT_PRINTK_DELAY is not set -+# CONFIG_RCU_TORTURE_TEST is not set -+CONFIG_RCU_CPU_STALL_DETECTOR=y -+# CONFIG_BACKTRACE_SELF_TEST is not set -+# CONFIG_DEBUG_BLOCK_EXT_DEVT is not set -+# CONFIG_FAULT_INJECTION is not set -+CONFIG_LATENCYTOP=y -+CONFIG_SYSCTL_SYSCALL_CHECK=y -+CONFIG_HAVE_FUNCTION_TRACER=y -+ -+# -+# Tracers -+# -+# CONFIG_FUNCTION_TRACER is not set -+# CONFIG_SCHED_TRACER is not set -+# CONFIG_CONTEXT_SWITCH_TRACER is not set -+# CONFIG_BOOT_TRACER is not set -+# CONFIG_STACK_TRACER is not set -+CONFIG_DYNAMIC_PRINTK_DEBUG=y -+# CONFIG_SAMPLES is not set -+CONFIG_HAVE_ARCH_KGDB=y -+# CONFIG_KGDB is not set -+# CONFIG_DEBUG_USER is not set -+CONFIG_DEBUG_ERRORS=y -+# CONFIG_DEBUG_STACK_USAGE is not set -+# CONFIG_DEBUG_LL is not set -+CONFIG_DEBUG_S3C_UART=2 -+ -+# -+# Security options -+# -+# CONFIG_KEYS is not set -+# CONFIG_SECURITY is not set -+CONFIG_SECURITYFS=y -+# CONFIG_SECURITY_FILE_CAPABILITIES is not set -+CONFIG_CRYPTO=y -+ -+# -+# Crypto core or helper -+# -+CONFIG_CRYPTO_FIPS=y -+CONFIG_CRYPTO_ALGAPI=y -+CONFIG_CRYPTO_AEAD=y -+CONFIG_CRYPTO_BLKCIPHER=y -+CONFIG_CRYPTO_HASH=y -+CONFIG_CRYPTO_RNG=y -+CONFIG_CRYPTO_MANAGER=y -+CONFIG_CRYPTO_GF128MUL=m -+CONFIG_CRYPTO_NULL=m -+# CONFIG_CRYPTO_CRYPTD is not set -+CONFIG_CRYPTO_AUTHENC=m -+CONFIG_CRYPTO_TEST=m -+ -+# -+# Authenticated Encryption with Associated Data -+# -+# CONFIG_CRYPTO_CCM is not set -+# CONFIG_CRYPTO_GCM is not set -+# CONFIG_CRYPTO_SEQIV is not set -+ -+# -+# Block modes -+# -+CONFIG_CRYPTO_CBC=y -+# CONFIG_CRYPTO_CTR is not set -+# CONFIG_CRYPTO_CTS is not set -+CONFIG_CRYPTO_ECB=y -+CONFIG_CRYPTO_LRW=m -+CONFIG_CRYPTO_PCBC=m -+# CONFIG_CRYPTO_XTS is not set -+ -+# -+# Hash modes -+# -+CONFIG_CRYPTO_HMAC=y -+CONFIG_CRYPTO_XCBC=m -+ -+# -+# Digest -+# -+CONFIG_CRYPTO_CRC32C=m -+CONFIG_CRYPTO_MD4=m -+CONFIG_CRYPTO_MD5=y -+CONFIG_CRYPTO_MICHAEL_MIC=m -+# CONFIG_CRYPTO_RMD128 is not set -+# CONFIG_CRYPTO_RMD160 is not set -+# CONFIG_CRYPTO_RMD256 is not set -+# CONFIG_CRYPTO_RMD320 is not set -+CONFIG_CRYPTO_SHA1=y -+CONFIG_CRYPTO_SHA256=m -+CONFIG_CRYPTO_SHA512=m -+CONFIG_CRYPTO_TGR192=m -+CONFIG_CRYPTO_WP512=m -+ -+# -+# Ciphers -+# -+CONFIG_CRYPTO_AES=y -+CONFIG_CRYPTO_ANUBIS=m -+CONFIG_CRYPTO_ARC4=y -+CONFIG_CRYPTO_BLOWFISH=m -+CONFIG_CRYPTO_CAMELLIA=m -+CONFIG_CRYPTO_CAST5=m -+CONFIG_CRYPTO_CAST6=m -+CONFIG_CRYPTO_DES=y -+CONFIG_CRYPTO_FCRYPT=m -+CONFIG_CRYPTO_KHAZAD=m -+# CONFIG_CRYPTO_SALSA20 is not set -+# CONFIG_CRYPTO_SEED is not set -+CONFIG_CRYPTO_SERPENT=m -+CONFIG_CRYPTO_TEA=m -+CONFIG_CRYPTO_TWOFISH=m -+CONFIG_CRYPTO_TWOFISH_COMMON=m -+ -+# -+# Compression -+# -+CONFIG_CRYPTO_DEFLATE=m -+# CONFIG_CRYPTO_LZO is not set -+ -+# -+# Random Number Generation -+# -+CONFIG_CRYPTO_ANSI_CPRNG=y -+CONFIG_CRYPTO_HW=y -+ -+# -+# Library routines -+# -+CONFIG_BITREVERSE=y -+CONFIG_CRC_CCITT=y -+CONFIG_CRC16=y -+CONFIG_CRC_T10DIF=y -+# CONFIG_CRC_ITU_T is not set -+CONFIG_CRC32=y -+# CONFIG_CRC7 is not set -+CONFIG_LIBCRC32C=m -+CONFIG_ZLIB_INFLATE=y -+CONFIG_ZLIB_DEFLATE=y -+CONFIG_TEXTSEARCH=y -+CONFIG_TEXTSEARCH_KMP=m -+CONFIG_TEXTSEARCH_BM=m -+CONFIG_TEXTSEARCH_FSM=m -+CONFIG_PLIST=y -+CONFIG_HAS_IOMEM=y -+CONFIG_HAS_DMA=y ---- /dev/null -+++ b/arch/arm/configs/gta02-packaging-defconfig -@@ -0,0 +1,2111 @@ -+# -+# Automatically generated make config: don't edit -+# Linux kernel version: 2.6.28-rc4 -+# Wed Dec 10 11:09:39 2008 -+# -+CONFIG_ARM=y -+CONFIG_HAVE_PWM=y -+CONFIG_SYS_SUPPORTS_APM_EMULATION=y -+CONFIG_GENERIC_GPIO=y -+# CONFIG_GENERIC_TIME is not set -+# CONFIG_GENERIC_CLOCKEVENTS is not set -+CONFIG_MMU=y -+CONFIG_NO_IOPORT=y -+CONFIG_GENERIC_HARDIRQS=y -+CONFIG_STACKTRACE_SUPPORT=y -+CONFIG_HAVE_LATENCYTOP_SUPPORT=y -+CONFIG_LOCKDEP_SUPPORT=y -+CONFIG_TRACE_IRQFLAGS_SUPPORT=y -+CONFIG_HARDIRQS_SW_RESEND=y -+CONFIG_GENERIC_IRQ_PROBE=y -+CONFIG_RWSEM_GENERIC_SPINLOCK=y -+# CONFIG_ARCH_HAS_ILOG2_U32 is not set -+# CONFIG_ARCH_HAS_ILOG2_U64 is not set -+CONFIG_GENERIC_HWEIGHT=y -+CONFIG_GENERIC_CALIBRATE_DELAY=y -+CONFIG_FIQ=y -+CONFIG_GENERIC_HARDIRQS_NO__DO_IRQ=y -+CONFIG_VECTORS_BASE=0xffff0000 -+CONFIG_DEFCONFIG_LIST="/lib/modules/$UNAME_RELEASE/.config" -+ -+# -+# General setup -+# -+CONFIG_EXPERIMENTAL=y -+CONFIG_BROKEN_ON_SMP=y -+CONFIG_LOCK_KERNEL=y -+CONFIG_INIT_ENV_ARG_LIMIT=32 -+CONFIG_LOCALVERSION="-mokodev" -+# CONFIG_LOCALVERSION_AUTO is not set -+CONFIG_SWAP=y -+CONFIG_SYSVIPC=y -+CONFIG_SYSVIPC_SYSCTL=y -+# CONFIG_POSIX_MQUEUE is not set -+# CONFIG_BSD_PROCESS_ACCT is not set -+# CONFIG_TASKSTATS is not set -+# CONFIG_AUDIT is not set -+CONFIG_IKCONFIG=y -+CONFIG_IKCONFIG_PROC=y -+CONFIG_LOG_BUF_SHIFT=18 -+# CONFIG_CGROUPS is not set -+# CONFIG_GROUP_SCHED is not set -+CONFIG_SYSFS_DEPRECATED=y -+CONFIG_SYSFS_DEPRECATED_V2=y -+# CONFIG_RELAY is not set -+CONFIG_NAMESPACES=y -+# CONFIG_UTS_NS is not set -+# CONFIG_IPC_NS is not set -+# CONFIG_USER_NS is not set -+# CONFIG_PID_NS is not set -+CONFIG_BLK_DEV_INITRD=y -+CONFIG_INITRAMFS_SOURCE="" -+CONFIG_CC_OPTIMIZE_FOR_SIZE=y -+CONFIG_SYSCTL=y -+# CONFIG_EMBEDDED is not set -+CONFIG_UID16=y -+CONFIG_SYSCTL_SYSCALL=y -+CONFIG_KALLSYMS=y -+CONFIG_KALLSYMS_ALL=y -+# CONFIG_KALLSYMS_EXTRA_PASS is not set -+CONFIG_HOTPLUG=y -+CONFIG_PRINTK=y -+CONFIG_BUG=y -+CONFIG_ELF_CORE=y -+CONFIG_COMPAT_BRK=y -+CONFIG_BASE_FULL=y -+CONFIG_FUTEX=y -+CONFIG_ANON_INODES=y -+CONFIG_EPOLL=y -+CONFIG_SIGNALFD=y -+CONFIG_TIMERFD=y -+CONFIG_EVENTFD=y -+CONFIG_SHMEM=y -+CONFIG_AIO=y -+CONFIG_ASHMEM=y -+CONFIG_VM_EVENT_COUNTERS=y -+CONFIG_SLAB=y -+# CONFIG_SLUB is not set -+# CONFIG_SLOB is not set -+# CONFIG_PROFILING is not set -+CONFIG_MARKERS=y -+CONFIG_HAVE_OPROFILE=y -+# CONFIG_KPROBES is not set -+CONFIG_HAVE_KPROBES=y -+CONFIG_HAVE_KRETPROBES=y -+CONFIG_HAVE_CLK=y -+CONFIG_HAVE_GENERIC_DMA_COHERENT=y -+CONFIG_SLABINFO=y -+CONFIG_RT_MUTEXES=y -+# CONFIG_TINY_SHMEM is not set -+CONFIG_BASE_SMALL=0 -+CONFIG_MODULES=y -+# CONFIG_MODULE_FORCE_LOAD is not set -+CONFIG_MODULE_UNLOAD=y -+CONFIG_MODULE_FORCE_UNLOAD=y -+# CONFIG_MODVERSIONS is not set -+# CONFIG_MODULE_SRCVERSION_ALL is not set -+CONFIG_KMOD=y -+CONFIG_BLOCK=y -+# CONFIG_LBD is not set -+# CONFIG_BLK_DEV_IO_TRACE is not set -+# CONFIG_LSF is not set -+# CONFIG_BLK_DEV_BSG is not set -+# CONFIG_BLK_DEV_INTEGRITY is not set -+ -+# -+# IO Schedulers -+# -+CONFIG_IOSCHED_NOOP=y -+CONFIG_IOSCHED_AS=m -+CONFIG_IOSCHED_DEADLINE=y -+CONFIG_IOSCHED_CFQ=m -+# CONFIG_DEFAULT_AS is not set -+CONFIG_DEFAULT_DEADLINE=y -+# CONFIG_DEFAULT_CFQ is not set -+# CONFIG_DEFAULT_NOOP is not set -+CONFIG_DEFAULT_IOSCHED="deadline" -+CONFIG_CLASSIC_RCU=y -+CONFIG_FREEZER=y -+ -+# -+# System Type -+# -+# CONFIG_ARCH_AAEC2000 is not set -+# CONFIG_ARCH_INTEGRATOR is not set -+# CONFIG_ARCH_REALVIEW is not set -+# CONFIG_ARCH_VERSATILE is not set -+# CONFIG_ARCH_AT91 is not set -+# CONFIG_ARCH_CLPS7500 is not set -+# CONFIG_ARCH_CLPS711X is not set -+# CONFIG_ARCH_EBSA110 is not set -+# CONFIG_ARCH_EP93XX is not set -+# CONFIG_ARCH_FOOTBRIDGE is not set -+# CONFIG_ARCH_NETX is not set -+# CONFIG_ARCH_H720X is not set -+# CONFIG_ARCH_IMX is not set -+# CONFIG_ARCH_IOP13XX is not set -+# CONFIG_ARCH_IOP32X is not set -+# CONFIG_ARCH_IOP33X is not set -+# CONFIG_ARCH_IXP23XX is not set -+# CONFIG_ARCH_IXP2000 is not set -+# CONFIG_ARCH_IXP4XX is not set -+# CONFIG_ARCH_L7200 is not set -+# CONFIG_ARCH_KIRKWOOD is not set -+# CONFIG_ARCH_KS8695 is not set -+# CONFIG_ARCH_NS9XXX is not set -+# CONFIG_ARCH_LOKI is not set -+# CONFIG_ARCH_MV78XX0 is not set -+# CONFIG_ARCH_MXC is not set -+# CONFIG_ARCH_ORION5X is not set -+# CONFIG_ARCH_PNX4008 is not set -+# CONFIG_ARCH_PXA is not set -+# CONFIG_ARCH_RPC is not set -+# CONFIG_ARCH_SA1100 is not set -+CONFIG_ARCH_S3C2410=y -+# CONFIG_ARCH_S3C64XX is not set -+# CONFIG_ARCH_SHARK is not set -+# CONFIG_ARCH_LH7A40X is not set -+# CONFIG_ARCH_DAVINCI is not set -+# CONFIG_ARCH_OMAP is not set -+# CONFIG_ARCH_MSM is not set -+CONFIG_PLAT_S3C24XX=y -+CONFIG_S3C2410_CLOCK=y -+CONFIG_CPU_S3C244X=y -+CONFIG_S3C24XX_PWM=y -+CONFIG_S3C2410_DMA=y -+# CONFIG_S3C2410_DMA_DEBUG is not set -+CONFIG_MACH_SMDK=y -+CONFIG_MACH_NEO1973=y -+CONFIG_PLAT_S3C=y -+CONFIG_CPU_LLSERIAL_S3C2410=y -+CONFIG_CPU_LLSERIAL_S3C2440=y -+ -+# -+# Boot options -+# -+# CONFIG_S3C_BOOT_WATCHDOG is not set -+# CONFIG_S3C_BOOT_ERROR_RESET is not set -+CONFIG_S3C_BOOT_UART_FORCE_FIFO=y -+ -+# -+# Power management -+# -+# CONFIG_S3C2410_PM_DEBUG is not set -+# CONFIG_S3C2410_PM_CHECK is not set -+CONFIG_S3C_LOWLEVEL_UART_PORT=2 -+CONFIG_S3C_GPIO_SPACE=0 -+CONFIG_S3C_GPIO_TRACK=y -+ -+# -+# S3C2400 Machines -+# -+CONFIG_CPU_S3C2410=y -+CONFIG_CPU_S3C2410_DMA=y -+CONFIG_S3C2410_PM=y -+CONFIG_S3C2410_GPIO=y -+CONFIG_S3C2410_PWM=y -+ -+# -+# S3C2410 Machines -+# -+# CONFIG_ARCH_SMDK2410 is not set -+# CONFIG_ARCH_H1940 is not set -+# CONFIG_MACH_N30 is not set -+# CONFIG_ARCH_BAST is not set -+# CONFIG_MACH_OTOM is not set -+# CONFIG_MACH_AML_M5900 is not set -+# CONFIG_MACH_TCT_HAMMER is not set -+# CONFIG_MACH_VR1000 is not set -+CONFIG_MACH_QT2410=y -+# CONFIG_MACH_NEO1973_GTA01 is not set -+ -+# -+# S3C2412 Machines -+# -+# CONFIG_MACH_JIVE is not set -+# CONFIG_MACH_SMDK2413 is not set -+# CONFIG_MACH_SMDK2412 is not set -+# CONFIG_MACH_VSTMS is not set -+CONFIG_CPU_S3C2440=y -+CONFIG_S3C2440_DMA=y -+CONFIG_S3C2440_C_FIQ=y -+ -+# -+# S3C2440 Machines -+# -+# CONFIG_MACH_ANUBIS is not set -+# CONFIG_MACH_OSIRIS is not set -+# CONFIG_MACH_RX3715 is not set -+CONFIG_ARCH_S3C2440=y -+# CONFIG_MACH_NEXCODER_2440 is not set -+CONFIG_SMDK2440_CPU2440=y -+# CONFIG_MACH_AT2440EVB is not set -+CONFIG_MACH_NEO1973_GTA02=y -+# CONFIG_NEO1973_GTA02_2440 is not set -+CONFIG_CPU_S3C2442=y -+ -+# -+# S3C2442 Machines -+# -+CONFIG_SMDK2440_CPU2442=y -+ -+# -+# S3C2443 Machines -+# -+# CONFIG_MACH_SMDK2443 is not set -+ -+# -+# Processor Type -+# -+CONFIG_CPU_32=y -+CONFIG_CPU_ARM920T=y -+CONFIG_CPU_32v4T=y -+CONFIG_CPU_ABRT_EV4T=y -+CONFIG_CPU_PABRT_NOIFAR=y -+CONFIG_CPU_CACHE_V4WT=y -+CONFIG_CPU_CACHE_VIVT=y -+CONFIG_CPU_COPY_V4WB=y -+CONFIG_CPU_TLB_V4WBI=y -+CONFIG_CPU_CP15=y -+CONFIG_CPU_CP15_MMU=y -+ -+# -+# Processor Features -+# -+CONFIG_ARM_THUMB=y -+# CONFIG_CPU_ICACHE_DISABLE is not set -+# CONFIG_CPU_DCACHE_DISABLE is not set -+# CONFIG_CPU_DCACHE_WRITETHROUGH is not set -+# CONFIG_OUTER_CACHE is not set -+ -+# -+# Bus support -+# -+# CONFIG_PCI_SYSCALL is not set -+# CONFIG_ARCH_SUPPORTS_MSI is not set -+# CONFIG_PCCARD is not set -+ -+# -+# Kernel Features -+# -+CONFIG_VMSPLIT_3G=y -+# CONFIG_VMSPLIT_2G is not set -+# CONFIG_VMSPLIT_1G is not set -+CONFIG_PAGE_OFFSET=0xC0000000 -+CONFIG_PREEMPT=y -+CONFIG_HZ=200 -+CONFIG_AEABI=y -+CONFIG_OABI_COMPAT=y -+CONFIG_ARCH_FLATMEM_HAS_HOLES=y -+# CONFIG_ARCH_SPARSEMEM_DEFAULT is not set -+# CONFIG_ARCH_SELECT_MEMORY_MODEL is not set -+CONFIG_SELECT_MEMORY_MODEL=y -+CONFIG_FLATMEM_MANUAL=y -+# CONFIG_DISCONTIGMEM_MANUAL is not set -+# CONFIG_SPARSEMEM_MANUAL is not set -+CONFIG_FLATMEM=y -+CONFIG_FLAT_NODE_MEM_MAP=y -+CONFIG_PAGEFLAGS_EXTENDED=y -+CONFIG_SPLIT_PTLOCK_CPUS=4096 -+# CONFIG_RESOURCES_64BIT is not set -+# CONFIG_PHYS_ADDR_T_64BIT is not set -+CONFIG_ZONE_DMA_FLAG=0 -+CONFIG_VIRT_TO_BUS=y -+CONFIG_UNEVICTABLE_LRU=y -+CONFIG_ALIGNMENT_TRAP=y -+ -+# -+# Boot options -+# -+CONFIG_ZBOOT_ROM_TEXT=0x0 -+CONFIG_ZBOOT_ROM_BSS=0x0 -+CONFIG_CMDLINE="unused -- bootloader passes ATAG list" -+# CONFIG_XIP_KERNEL is not set -+CONFIG_KEXEC=y -+CONFIG_ATAGS_PROC=y -+ -+# -+# CPU Power Management -+# -+CONFIG_CPU_IDLE=y -+CONFIG_CPU_IDLE_GOV_LADDER=y -+ -+# -+# Floating point emulation -+# -+ -+# -+# At least one emulation must be selected -+# -+CONFIG_FPE_NWFPE=y -+# CONFIG_FPE_NWFPE_XP is not set -+# CONFIG_FPE_FASTFPE is not set -+ -+# -+# Userspace binary formats -+# -+CONFIG_BINFMT_ELF=y -+# CONFIG_CORE_DUMP_DEFAULT_ELF_HEADERS is not set -+CONFIG_HAVE_AOUT=y -+# CONFIG_BINFMT_AOUT is not set -+# CONFIG_BINFMT_MISC is not set -+ -+# -+# Power management options -+# -+CONFIG_PM=y -+# CONFIG_PM_DEBUG is not set -+CONFIG_PM_SLEEP=y -+CONFIG_SUSPEND=y -+CONFIG_SUSPEND_FREEZER=y -+CONFIG_APM_EMULATION=y -+CONFIG_ARCH_SUSPEND_POSSIBLE=y -+CONFIG_NET=y -+ -+# -+# Networking options -+# -+CONFIG_PACKET=y -+CONFIG_PACKET_MMAP=y -+CONFIG_UNIX=y -+CONFIG_XFRM=y -+# CONFIG_XFRM_USER is not set -+# CONFIG_XFRM_SUB_POLICY is not set -+CONFIG_XFRM_MIGRATE=y -+# CONFIG_XFRM_STATISTICS is not set -+CONFIG_XFRM_IPCOMP=m -+CONFIG_NET_KEY=m -+CONFIG_NET_KEY_MIGRATE=y -+CONFIG_INET=y -+CONFIG_IP_MULTICAST=y -+CONFIG_IP_ADVANCED_ROUTER=y -+CONFIG_ASK_IP_FIB_HASH=y -+# CONFIG_IP_FIB_TRIE is not set -+CONFIG_IP_FIB_HASH=y -+CONFIG_IP_MULTIPLE_TABLES=y -+# CONFIG_IP_ROUTE_MULTIPATH is not set -+# CONFIG_IP_ROUTE_VERBOSE is not set -+CONFIG_IP_PNP=y -+# CONFIG_IP_PNP_DHCP is not set -+# CONFIG_IP_PNP_BOOTP is not set -+# CONFIG_IP_PNP_RARP is not set -+CONFIG_NET_IPIP=m -+CONFIG_NET_IPGRE=m -+# CONFIG_NET_IPGRE_BROADCAST is not set -+# CONFIG_IP_MROUTE is not set -+# CONFIG_ARPD is not set -+CONFIG_SYN_COOKIES=y -+CONFIG_INET_AH=m -+CONFIG_INET_ESP=m -+CONFIG_INET_IPCOMP=m -+CONFIG_INET_XFRM_TUNNEL=m -+CONFIG_INET_TUNNEL=m -+CONFIG_INET_XFRM_MODE_TRANSPORT=m -+CONFIG_INET_XFRM_MODE_TUNNEL=m -+CONFIG_INET_XFRM_MODE_BEET=m -+# CONFIG_INET_LRO is not set -+CONFIG_INET_DIAG=y -+CONFIG_INET_TCP_DIAG=y -+# CONFIG_TCP_CONG_ADVANCED is not set -+CONFIG_TCP_CONG_CUBIC=y -+CONFIG_DEFAULT_TCP_CONG="cubic" -+CONFIG_TCP_MD5SIG=y -+CONFIG_IPV6=m -+# CONFIG_IPV6_PRIVACY is not set -+# CONFIG_IPV6_ROUTER_PREF is not set -+# CONFIG_IPV6_OPTIMISTIC_DAD is not set -+CONFIG_INET6_AH=m -+CONFIG_INET6_ESP=m -+CONFIG_INET6_IPCOMP=m -+# CONFIG_IPV6_MIP6 is not set -+CONFIG_INET6_XFRM_TUNNEL=m -+CONFIG_INET6_TUNNEL=m -+CONFIG_INET6_XFRM_MODE_TRANSPORT=m -+CONFIG_INET6_XFRM_MODE_TUNNEL=m -+CONFIG_INET6_XFRM_MODE_BEET=m -+# CONFIG_INET6_XFRM_MODE_ROUTEOPTIMIZATION is not set -+CONFIG_IPV6_SIT=m -+CONFIG_IPV6_NDISC_NODETYPE=y -+CONFIG_IPV6_TUNNEL=m -+# CONFIG_IPV6_MULTIPLE_TABLES is not set -+# CONFIG_IPV6_MROUTE is not set -+# CONFIG_NETWORK_SECMARK is not set -+CONFIG_NETFILTER=y -+# CONFIG_NETFILTER_DEBUG is not set -+CONFIG_NETFILTER_ADVANCED=y -+CONFIG_BRIDGE_NETFILTER=y -+ -+# -+# Core Netfilter Configuration -+# -+CONFIG_NETFILTER_NETLINK=m -+CONFIG_NETFILTER_NETLINK_QUEUE=m -+CONFIG_NETFILTER_NETLINK_LOG=m -+CONFIG_NF_CONNTRACK=m -+CONFIG_NF_CT_ACCT=y -+CONFIG_NF_CONNTRACK_MARK=y -+# CONFIG_NF_CONNTRACK_EVENTS is not set -+# CONFIG_NF_CT_PROTO_DCCP is not set -+CONFIG_NF_CT_PROTO_GRE=m -+CONFIG_NF_CT_PROTO_SCTP=m -+# CONFIG_NF_CT_PROTO_UDPLITE is not set -+# CONFIG_NF_CONNTRACK_AMANDA is not set -+CONFIG_NF_CONNTRACK_FTP=m -+CONFIG_NF_CONNTRACK_H323=m -+CONFIG_NF_CONNTRACK_IRC=m -+CONFIG_NF_CONNTRACK_NETBIOS_NS=m -+CONFIG_NF_CONNTRACK_PPTP=m -+CONFIG_NF_CONNTRACK_SANE=m -+CONFIG_NF_CONNTRACK_SIP=m -+CONFIG_NF_CONNTRACK_TFTP=m -+CONFIG_NF_CT_NETLINK=m -+# CONFIG_NETFILTER_TPROXY is not set -+CONFIG_NETFILTER_XTABLES=m -+CONFIG_NETFILTER_XT_TARGET_CLASSIFY=m -+CONFIG_NETFILTER_XT_TARGET_CONNMARK=m -+CONFIG_NETFILTER_XT_TARGET_DSCP=m -+CONFIG_NETFILTER_XT_TARGET_MARK=m -+CONFIG_NETFILTER_XT_TARGET_NFLOG=m -+CONFIG_NETFILTER_XT_TARGET_NFQUEUE=m -+# CONFIG_NETFILTER_XT_TARGET_RATEEST is not set -+CONFIG_NETFILTER_XT_TARGET_TCPMSS=m -+# CONFIG_NETFILTER_XT_TARGET_TCPOPTSTRIP is not set -+# CONFIG_NETFILTER_XT_MATCH_COMMENT is not set -+CONFIG_NETFILTER_XT_MATCH_CONNBYTES=m -+# CONFIG_NETFILTER_XT_MATCH_CONNLIMIT is not set -+CONFIG_NETFILTER_XT_MATCH_CONNMARK=m -+CONFIG_NETFILTER_XT_MATCH_CONNTRACK=m -+CONFIG_NETFILTER_XT_MATCH_DCCP=m -+CONFIG_NETFILTER_XT_MATCH_DSCP=m -+CONFIG_NETFILTER_XT_MATCH_ESP=m -+CONFIG_NETFILTER_XT_MATCH_HASHLIMIT=m -+CONFIG_NETFILTER_XT_MATCH_HELPER=m -+# CONFIG_NETFILTER_XT_MATCH_IPRANGE is not set -+CONFIG_NETFILTER_XT_MATCH_LENGTH=m -+CONFIG_NETFILTER_XT_MATCH_LIMIT=m -+CONFIG_NETFILTER_XT_MATCH_MAC=m -+CONFIG_NETFILTER_XT_MATCH_MARK=m -+CONFIG_NETFILTER_XT_MATCH_MULTIPORT=m -+# CONFIG_NETFILTER_XT_MATCH_OWNER is not set -+CONFIG_NETFILTER_XT_MATCH_POLICY=m -+CONFIG_NETFILTER_XT_MATCH_PHYSDEV=m -+CONFIG_NETFILTER_XT_MATCH_PKTTYPE=m -+CONFIG_NETFILTER_XT_MATCH_QUOTA=m -+# CONFIG_NETFILTER_XT_MATCH_RATEEST is not set -+CONFIG_NETFILTER_XT_MATCH_REALM=m -+# CONFIG_NETFILTER_XT_MATCH_RECENT is not set -+CONFIG_NETFILTER_XT_MATCH_SCTP=m -+CONFIG_NETFILTER_XT_MATCH_STATE=m -+CONFIG_NETFILTER_XT_MATCH_STATISTIC=m -+CONFIG_NETFILTER_XT_MATCH_STRING=m -+CONFIG_NETFILTER_XT_MATCH_TCPMSS=m -+# CONFIG_NETFILTER_XT_MATCH_TIME is not set -+# CONFIG_NETFILTER_XT_MATCH_U32 is not set -+# CONFIG_IP_VS is not set -+ -+# -+# IP: Netfilter Configuration -+# -+CONFIG_NF_DEFRAG_IPV4=m -+CONFIG_NF_CONNTRACK_IPV4=m -+# CONFIG_NF_CONNTRACK_PROC_COMPAT is not set -+# CONFIG_IP_NF_QUEUE is not set -+CONFIG_IP_NF_IPTABLES=m -+CONFIG_IP_NF_MATCH_ADDRTYPE=m -+CONFIG_IP_NF_MATCH_AH=m -+CONFIG_IP_NF_MATCH_ECN=m -+CONFIG_IP_NF_MATCH_TTL=m -+CONFIG_IP_NF_FILTER=m -+CONFIG_IP_NF_TARGET_REJECT=m -+CONFIG_IP_NF_TARGET_LOG=m -+CONFIG_IP_NF_TARGET_ULOG=m -+CONFIG_NF_NAT=m -+CONFIG_NF_NAT_NEEDED=y -+CONFIG_IP_NF_TARGET_MASQUERADE=m -+CONFIG_IP_NF_TARGET_NETMAP=m -+CONFIG_IP_NF_TARGET_REDIRECT=m -+CONFIG_NF_NAT_SNMP_BASIC=m -+CONFIG_NF_NAT_PROTO_GRE=m -+CONFIG_NF_NAT_PROTO_SCTP=m -+CONFIG_NF_NAT_FTP=m -+CONFIG_NF_NAT_IRC=m -+CONFIG_NF_NAT_TFTP=m -+# CONFIG_NF_NAT_AMANDA is not set -+CONFIG_NF_NAT_PPTP=m -+CONFIG_NF_NAT_H323=m -+CONFIG_NF_NAT_SIP=m -+CONFIG_IP_NF_MANGLE=m -+CONFIG_IP_NF_TARGET_CLUSTERIP=m -+CONFIG_IP_NF_TARGET_ECN=m -+CONFIG_IP_NF_TARGET_TTL=m -+# CONFIG_IP_NF_RAW is not set -+# CONFIG_IP_NF_ARPTABLES is not set -+ -+# -+# IPv6: Netfilter Configuration -+# -+CONFIG_NF_CONNTRACK_IPV6=m -+# CONFIG_IP6_NF_QUEUE is not set -+CONFIG_IP6_NF_IPTABLES=m -+CONFIG_IP6_NF_MATCH_AH=m -+CONFIG_IP6_NF_MATCH_EUI64=m -+CONFIG_IP6_NF_MATCH_FRAG=m -+CONFIG_IP6_NF_MATCH_OPTS=m -+CONFIG_IP6_NF_MATCH_HL=m -+CONFIG_IP6_NF_MATCH_IPV6HEADER=m -+CONFIG_IP6_NF_MATCH_MH=m -+CONFIG_IP6_NF_MATCH_RT=m -+CONFIG_IP6_NF_TARGET_LOG=m -+CONFIG_IP6_NF_FILTER=m -+CONFIG_IP6_NF_TARGET_REJECT=m -+CONFIG_IP6_NF_MANGLE=m -+CONFIG_IP6_NF_TARGET_HL=m -+# CONFIG_IP6_NF_RAW is not set -+CONFIG_BRIDGE_NF_EBTABLES=m -+CONFIG_BRIDGE_EBT_BROUTE=m -+CONFIG_BRIDGE_EBT_T_FILTER=m -+CONFIG_BRIDGE_EBT_T_NAT=m -+CONFIG_BRIDGE_EBT_802_3=m -+CONFIG_BRIDGE_EBT_AMONG=m -+CONFIG_BRIDGE_EBT_ARP=m -+CONFIG_BRIDGE_EBT_IP=m -+# CONFIG_BRIDGE_EBT_IP6 is not set -+CONFIG_BRIDGE_EBT_LIMIT=m -+CONFIG_BRIDGE_EBT_MARK=m -+CONFIG_BRIDGE_EBT_PKTTYPE=m -+CONFIG_BRIDGE_EBT_STP=m -+CONFIG_BRIDGE_EBT_VLAN=m -+CONFIG_BRIDGE_EBT_ARPREPLY=m -+CONFIG_BRIDGE_EBT_DNAT=m -+CONFIG_BRIDGE_EBT_MARK_T=m -+CONFIG_BRIDGE_EBT_REDIRECT=m -+CONFIG_BRIDGE_EBT_SNAT=m -+CONFIG_BRIDGE_EBT_LOG=m -+CONFIG_BRIDGE_EBT_ULOG=m -+# CONFIG_BRIDGE_EBT_NFLOG is not set -+# CONFIG_IP_DCCP is not set -+# CONFIG_IP_SCTP is not set -+# CONFIG_TIPC is not set -+# CONFIG_ATM is not set -+CONFIG_STP=y -+CONFIG_BRIDGE=y -+# CONFIG_NET_DSA is not set -+# CONFIG_VLAN_8021Q is not set -+# CONFIG_DECNET is not set -+CONFIG_LLC=y -+# CONFIG_LLC2 is not set -+# CONFIG_IPX is not set -+# CONFIG_ATALK is not set -+# CONFIG_X25 is not set -+# CONFIG_LAPB is not set -+# CONFIG_ECONET is not set -+# CONFIG_WAN_ROUTER is not set -+CONFIG_NET_SCHED=y -+ -+# -+# Queueing/Scheduling -+# -+CONFIG_NET_SCH_CBQ=m -+CONFIG_NET_SCH_HTB=m -+CONFIG_NET_SCH_HFSC=m -+CONFIG_NET_SCH_PRIO=m -+# CONFIG_NET_SCH_MULTIQ is not set -+CONFIG_NET_SCH_RED=m -+CONFIG_NET_SCH_SFQ=m -+CONFIG_NET_SCH_TEQL=m -+CONFIG_NET_SCH_TBF=m -+CONFIG_NET_SCH_GRED=m -+CONFIG_NET_SCH_DSMARK=m -+CONFIG_NET_SCH_NETEM=m -+ -+# -+# Classification -+# -+CONFIG_NET_CLS=y -+CONFIG_NET_CLS_BASIC=m -+CONFIG_NET_CLS_TCINDEX=m -+CONFIG_NET_CLS_ROUTE4=m -+CONFIG_NET_CLS_ROUTE=y -+CONFIG_NET_CLS_FW=m -+CONFIG_NET_CLS_U32=m -+CONFIG_CLS_U32_PERF=y -+CONFIG_CLS_U32_MARK=y -+CONFIG_NET_CLS_RSVP=m -+CONFIG_NET_CLS_RSVP6=m -+# CONFIG_NET_CLS_FLOW is not set -+# CONFIG_NET_EMATCH is not set -+# CONFIG_NET_CLS_ACT is not set -+# CONFIG_NET_CLS_IND is not set -+CONFIG_NET_SCH_FIFO=y -+ -+# -+# Network testing -+# -+# CONFIG_NET_PKTGEN is not set -+# CONFIG_HAMRADIO is not set -+# CONFIG_CAN is not set -+# CONFIG_IRDA is not set -+CONFIG_BT=m -+CONFIG_BT_L2CAP=m -+CONFIG_BT_SCO=m -+CONFIG_BT_RFCOMM=m -+CONFIG_BT_RFCOMM_TTY=y -+CONFIG_BT_BNEP=m -+CONFIG_BT_BNEP_MC_FILTER=y -+CONFIG_BT_BNEP_PROTO_FILTER=y -+CONFIG_BT_HIDP=m -+ -+# -+# Bluetooth device drivers -+# -+CONFIG_BT_HCIBTUSB=m -+# CONFIG_BT_HCIBTSDIO is not set -+# CONFIG_BT_HCIUART is not set -+# CONFIG_BT_HCIBCM203X is not set -+# CONFIG_BT_HCIBPA10X is not set -+# CONFIG_BT_HCIBFUSB is not set -+# CONFIG_BT_HCIVHCI is not set -+# CONFIG_AF_RXRPC is not set -+# CONFIG_PHONET is not set -+CONFIG_FIB_RULES=y -+CONFIG_WIRELESS=y -+# CONFIG_CFG80211 is not set -+# CONFIG_WIRELESS_OLD_REGULATORY is not set -+CONFIG_WIRELESS_EXT=y -+CONFIG_WIRELESS_EXT_SYSFS=y -+# CONFIG_MAC80211 is not set -+# CONFIG_IEEE80211 is not set -+CONFIG_RFKILL=y -+CONFIG_RFKILL_INPUT=y -+CONFIG_RFKILL_LEDS=y -+# CONFIG_NET_9P is not set -+ -+# -+# Device Drivers -+# -+ -+# -+# Generic Driver Options -+# -+CONFIG_UEVENT_HELPER_PATH="/sbin/hotplug" -+CONFIG_STANDALONE=y -+CONFIG_PREVENT_FIRMWARE_BUILD=y -+CONFIG_FW_LOADER=y -+# CONFIG_FIRMWARE_IN_KERNEL is not set -+CONFIG_EXTRA_FIRMWARE="" -+# CONFIG_DEBUG_DRIVER is not set -+# CONFIG_DEBUG_DEVRES is not set -+# CONFIG_SYS_HYPERVISOR is not set -+CONFIG_CONNECTOR=m -+CONFIG_MTD=y -+# CONFIG_MTD_DEBUG is not set -+CONFIG_MTD_CONCAT=y -+CONFIG_MTD_PARTITIONS=y -+# CONFIG_MTD_REDBOOT_PARTS is not set -+CONFIG_MTD_CMDLINE_PARTS=y -+# CONFIG_MTD_AFS_PARTS is not set -+# CONFIG_MTD_AR7_PARTS is not set -+ -+# -+# User Modules And Translation Layers -+# -+CONFIG_MTD_CHAR=y -+CONFIG_MTD_BLKDEVS=y -+CONFIG_MTD_BLOCK=y -+# CONFIG_FTL is not set -+# CONFIG_NFTL is not set -+# CONFIG_INFTL is not set -+# CONFIG_RFD_FTL is not set -+# CONFIG_SSFDC is not set -+# CONFIG_MTD_OOPS is not set -+ -+# -+# RAM/ROM/Flash chip drivers -+# -+CONFIG_MTD_CFI=y -+# CONFIG_MTD_JEDECPROBE is not set -+CONFIG_MTD_GEN_PROBE=y -+# CONFIG_MTD_CFI_ADV_OPTIONS is not set -+CONFIG_MTD_MAP_BANK_WIDTH_1=y -+CONFIG_MTD_MAP_BANK_WIDTH_2=y -+CONFIG_MTD_MAP_BANK_WIDTH_4=y -+# CONFIG_MTD_MAP_BANK_WIDTH_8 is not set -+# CONFIG_MTD_MAP_BANK_WIDTH_16 is not set -+# CONFIG_MTD_MAP_BANK_WIDTH_32 is not set -+CONFIG_MTD_CFI_I1=y -+CONFIG_MTD_CFI_I2=y -+# CONFIG_MTD_CFI_I4 is not set -+# CONFIG_MTD_CFI_I8 is not set -+CONFIG_MTD_CFI_INTELEXT=y -+# CONFIG_MTD_CFI_AMDSTD is not set -+# CONFIG_MTD_CFI_STAA is not set -+CONFIG_MTD_CFI_UTIL=y -+# CONFIG_MTD_RAM is not set -+CONFIG_MTD_ROM=y -+CONFIG_MTD_ABSENT=y -+ -+# -+# Mapping drivers for chip access -+# -+# CONFIG_MTD_COMPLEX_MAPPINGS is not set -+CONFIG_MTD_PHYSMAP=y -+CONFIG_MTD_PHYSMAP_START=0x0 -+CONFIG_MTD_PHYSMAP_LEN=0 -+CONFIG_MTD_PHYSMAP_BANKWIDTH=2 -+# CONFIG_MTD_ARM_INTEGRATOR is not set -+# CONFIG_MTD_PLATRAM is not set -+ -+# -+# Self-contained MTD device drivers -+# -+# CONFIG_MTD_DATAFLASH is not set -+# CONFIG_MTD_M25P80 is not set -+# CONFIG_MTD_SLRAM is not set -+# CONFIG_MTD_PHRAM is not set -+# CONFIG_MTD_MTDRAM is not set -+# CONFIG_MTD_BLOCK2MTD is not set -+ -+# -+# Disk-On-Chip Device Drivers -+# -+# CONFIG_MTD_DOC2000 is not set -+# CONFIG_MTD_DOC2001 is not set -+# CONFIG_MTD_DOC2001PLUS is not set -+CONFIG_MTD_NAND=y -+CONFIG_MTD_NAND_VERIFY_WRITE=y -+# CONFIG_MTD_NAND_ECC_SMC is not set -+# CONFIG_MTD_NAND_MUSEUM_IDS is not set -+# CONFIG_MTD_NAND_GPIO is not set -+CONFIG_MTD_NAND_IDS=y -+CONFIG_MTD_NAND_S3C2410=y -+CONFIG_MTD_NAND_S3C2410_DEBUG=y -+CONFIG_MTD_NAND_S3C2410_HWECC=y -+# CONFIG_MTD_NAND_S3C2410_CLKSTOP is not set -+# CONFIG_MTD_NAND_DISKONCHIP is not set -+# CONFIG_MTD_NAND_NANDSIM is not set -+# CONFIG_MTD_NAND_PLATFORM is not set -+# CONFIG_MTD_ALAUDA is not set -+# CONFIG_MTD_ONENAND is not set -+ -+# -+# UBI - Unsorted block images -+# -+# CONFIG_MTD_UBI is not set -+# CONFIG_PARPORT is not set -+CONFIG_BLK_DEV=y -+# CONFIG_BLK_DEV_COW_COMMON is not set -+CONFIG_BLK_DEV_LOOP=m -+# CONFIG_BLK_DEV_CRYPTOLOOP is not set -+# CONFIG_BLK_DEV_NBD is not set -+CONFIG_BLK_DEV_UB=m -+CONFIG_BLK_DEV_RAM=y -+CONFIG_BLK_DEV_RAM_COUNT=16 -+CONFIG_BLK_DEV_RAM_SIZE=4096 -+# CONFIG_BLK_DEV_XIP is not set -+# CONFIG_CDROM_PKTCDVD is not set -+# CONFIG_ATA_OVER_ETH is not set -+CONFIG_MISC_DEVICES=y -+# CONFIG_EEPROM_93CX6 is not set -+CONFIG_LOW_MEMORY_KILLER=y -+# CONFIG_ENCLOSURE_SERVICES is not set -+CONFIG_HAVE_IDE=y -+# CONFIG_IDE is not set -+ -+# -+# SCSI device support -+# -+# CONFIG_RAID_ATTRS is not set -+CONFIG_SCSI=m -+CONFIG_SCSI_DMA=y -+# CONFIG_SCSI_TGT is not set -+# CONFIG_SCSI_NETLINK is not set -+CONFIG_SCSI_PROC_FS=y -+ -+# -+# SCSI support type (disk, tape, CD-ROM) -+# -+CONFIG_BLK_DEV_SD=m -+# CONFIG_CHR_DEV_ST is not set -+# CONFIG_CHR_DEV_OSST is not set -+CONFIG_BLK_DEV_SR=m -+# CONFIG_BLK_DEV_SR_VENDOR is not set -+CONFIG_CHR_DEV_SG=m -+# CONFIG_CHR_DEV_SCH is not set -+ -+# -+# Some SCSI devices (e.g. CD jukebox) support multiple LUNs -+# -+CONFIG_SCSI_MULTI_LUN=y -+# CONFIG_SCSI_CONSTANTS is not set -+# CONFIG_SCSI_LOGGING is not set -+CONFIG_SCSI_SCAN_ASYNC=y -+CONFIG_SCSI_WAIT_SCAN=m -+ -+# -+# SCSI Transports -+# -+# CONFIG_SCSI_SPI_ATTRS is not set -+# CONFIG_SCSI_FC_ATTRS is not set -+# CONFIG_SCSI_ISCSI_ATTRS is not set -+# CONFIG_SCSI_SAS_LIBSAS is not set -+# CONFIG_SCSI_SRP_ATTRS is not set -+CONFIG_SCSI_LOWLEVEL=y -+# CONFIG_ISCSI_TCP is not set -+# CONFIG_SCSI_DEBUG is not set -+# CONFIG_SCSI_DH is not set -+# CONFIG_ATA is not set -+CONFIG_MD=y -+# CONFIG_BLK_DEV_MD is not set -+CONFIG_BLK_DEV_DM=m -+# CONFIG_DM_DEBUG is not set -+CONFIG_DM_CRYPT=m -+CONFIG_DM_SNAPSHOT=m -+# CONFIG_DM_MIRROR is not set -+# CONFIG_DM_ZERO is not set -+# CONFIG_DM_MULTIPATH is not set -+# CONFIG_DM_DELAY is not set -+# CONFIG_DM_UEVENT is not set -+CONFIG_NETDEVICES=y -+# CONFIG_DUMMY is not set -+# CONFIG_BONDING is not set -+# CONFIG_MACVLAN is not set -+# CONFIG_EQUALIZER is not set -+CONFIG_TUN=m -+# CONFIG_VETH is not set -+# CONFIG_PHYLIB is not set -+CONFIG_NET_ETHERNET=y -+CONFIG_MII=y -+# CONFIG_AX88796 is not set -+# CONFIG_SMC91X is not set -+# CONFIG_DM9000 is not set -+# CONFIG_ENC28J60 is not set -+# CONFIG_SMC911X is not set -+# CONFIG_IBM_NEW_EMAC_ZMII is not set -+# CONFIG_IBM_NEW_EMAC_RGMII is not set -+# CONFIG_IBM_NEW_EMAC_TAH is not set -+# CONFIG_IBM_NEW_EMAC_EMAC4 is not set -+# CONFIG_IBM_NEW_EMAC_NO_FLOW_CTRL is not set -+# CONFIG_IBM_NEW_EMAC_MAL_CLR_ICINTSTAT is not set -+# CONFIG_IBM_NEW_EMAC_MAL_COMMON_ERR is not set -+# CONFIG_B44 is not set -+# CONFIG_NETDEV_1000 is not set -+# CONFIG_NETDEV_10000 is not set -+ -+# -+# Wireless LAN -+# -+# CONFIG_WLAN_PRE80211 is not set -+# CONFIG_WLAN_80211 is not set -+# CONFIG_IWLWIFI_LEDS is not set -+ -+# -+# USB Network Adapters -+# -+CONFIG_USB_CATC=m -+CONFIG_USB_KAWETH=m -+CONFIG_USB_PEGASUS=m -+CONFIG_USB_RTL8150=m -+CONFIG_USB_USBNET=y -+CONFIG_USB_NET_AX8817X=m -+CONFIG_USB_NET_CDCETHER=m -+CONFIG_USB_NET_DM9601=m -+# CONFIG_USB_NET_SMSC95XX is not set -+CONFIG_USB_NET_GL620A=m -+CONFIG_USB_NET_NET1080=m -+CONFIG_USB_NET_PLUSB=m -+CONFIG_USB_NET_MCS7830=m -+CONFIG_USB_NET_RNDIS_HOST=m -+CONFIG_USB_NET_CDC_SUBSET=m -+CONFIG_USB_ALI_M5632=y -+CONFIG_USB_AN2720=y -+CONFIG_USB_BELKIN=y -+CONFIG_USB_ARMLINUX=y -+CONFIG_USB_EPSON2888=y -+CONFIG_USB_KC2190=y -+CONFIG_USB_NET_ZAURUS=m -+# CONFIG_USB_HSO is not set -+# CONFIG_WAN is not set -+CONFIG_PPP=m -+CONFIG_PPP_MULTILINK=y -+CONFIG_PPP_FILTER=y -+CONFIG_PPP_ASYNC=m -+CONFIG_PPP_SYNC_TTY=m -+CONFIG_PPP_DEFLATE=m -+CONFIG_PPP_BSDCOMP=m -+CONFIG_PPP_MPPE=m -+# CONFIG_PPPOE is not set -+# CONFIG_PPPOL2TP is not set -+# CONFIG_SLIP is not set -+CONFIG_SLHC=m -+# CONFIG_NETCONSOLE is not set -+# CONFIG_NETPOLL is not set -+# CONFIG_NET_POLL_CONTROLLER is not set -+# CONFIG_ISDN is not set -+ -+# -+# Input device support -+# -+CONFIG_INPUT=y -+# CONFIG_INPUT_FF_MEMLESS is not set -+# CONFIG_INPUT_POLLDEV is not set -+ -+# -+# Userland interfaces -+# -+CONFIG_INPUT_MOUSEDEV=y -+# CONFIG_INPUT_MOUSEDEV_PSAUX is not set -+CONFIG_INPUT_MOUSEDEV_SCREEN_X=480 -+CONFIG_INPUT_MOUSEDEV_SCREEN_Y=640 -+# CONFIG_INPUT_JOYDEV is not set -+CONFIG_INPUT_EVDEV=y -+# CONFIG_INPUT_EVBUG is not set -+ -+# -+# Input Device Drivers -+# -+CONFIG_INPUT_KEYBOARD=y -+# CONFIG_KEYBOARD_ATKBD is not set -+# CONFIG_KEYBOARD_SUNKBD is not set -+# CONFIG_KEYBOARD_LKKBD is not set -+# CONFIG_KEYBOARD_XTKBD is not set -+# CONFIG_KEYBOARD_NEWTON is not set -+CONFIG_KEYBOARD_STOWAWAY=m -+CONFIG_KEYBOARD_GPIO=m -+CONFIG_KEYBOARD_NEO1973=y -+CONFIG_KEYBOARD_QT2410=y -+CONFIG_INPUT_MOUSE=y -+# CONFIG_MOUSE_PS2 is not set -+# CONFIG_MOUSE_SERIAL is not set -+# CONFIG_MOUSE_APPLETOUCH is not set -+# CONFIG_MOUSE_BCM5974 is not set -+# CONFIG_MOUSE_VSXXXAA is not set -+# CONFIG_MOUSE_GPIO is not set -+# CONFIG_INPUT_JOYSTICK is not set -+# CONFIG_INPUT_TABLET is not set -+CONFIG_INPUT_TOUCHSCREEN=y -+CONFIG_TOUCHSCREEN_FILTER=y -+CONFIG_TOUCHSCREEN_FILTER_GROUP=y -+CONFIG_TOUCHSCREEN_FILTER_MEDIAN=y -+CONFIG_TOUCHSCREEN_FILTER_MEAN=y -+CONFIG_TOUCHSCREEN_FILTER_LINEAR=y -+# CONFIG_TOUCHSCREEN_ADS7846 is not set -+# CONFIG_TOUCHSCREEN_FUJITSU is not set -+CONFIG_TOUCHSCREEN_S3C2410=y -+# CONFIG_TOUCHSCREEN_S3C2410_DEBUG is not set -+# CONFIG_TOUCHSCREEN_GUNZE is not set -+# CONFIG_TOUCHSCREEN_ELO is not set -+# CONFIG_TOUCHSCREEN_MTOUCH is not set -+# CONFIG_TOUCHSCREEN_INEXIO is not set -+# CONFIG_TOUCHSCREEN_MK712 is not set -+# CONFIG_TOUCHSCREEN_PENMOUNT is not set -+# CONFIG_TOUCHSCREEN_TOUCHRIGHT is not set -+# CONFIG_TOUCHSCREEN_TOUCHWIN is not set -+# CONFIG_TOUCHSCREEN_USB_COMPOSITE is not set -+# CONFIG_TOUCHSCREEN_TOUCHIT213 is not set -+# CONFIG_TOUCHSCREEN_PCAP7200 is not set -+CONFIG_INPUT_MISC=y -+# CONFIG_INPUT_ATI_REMOTE is not set -+# CONFIG_INPUT_ATI_REMOTE2 is not set -+# CONFIG_INPUT_KEYSPAN_REMOTE is not set -+# CONFIG_INPUT_POWERMATE is not set -+# CONFIG_INPUT_YEALINK is not set -+# CONFIG_INPUT_CM109 is not set -+CONFIG_INPUT_UINPUT=m -+CONFIG_INPUT_LIS302DL=y -+CONFIG_INPUT_PCF50633_PMU=y -+ -+# -+# Hardware I/O ports -+# -+CONFIG_SERIO=y -+# CONFIG_SERIO_SERPORT is not set -+# CONFIG_SERIO_RAW is not set -+# CONFIG_GAMEPORT is not set -+ -+# -+# Character devices -+# -+CONFIG_VT=y -+CONFIG_CONSOLE_TRANSLATIONS=y -+CONFIG_VT_CONSOLE=y -+CONFIG_NR_TTY_DEVICES=6 -+CONFIG_HW_CONSOLE=y -+CONFIG_VT_HW_CONSOLE_BINDING=y -+# CONFIG_DEVKMEM is not set -+# CONFIG_SERIAL_NONSTANDARD is not set -+ -+# -+# Serial drivers -+# -+# CONFIG_SERIAL_8250 is not set -+ -+# -+# Non-8250 serial port support -+# -+CONFIG_SERIAL_SAMSUNG=y -+CONFIG_SERIAL_SAMSUNG_UARTS=3 -+CONFIG_SERIAL_SAMSUNG_CONSOLE=y -+CONFIG_SERIAL_S3C2410=y -+CONFIG_SERIAL_S3C2440=y -+CONFIG_SERIAL_CORE=y -+CONFIG_SERIAL_CORE_CONSOLE=y -+CONFIG_UNIX98_PTYS=y -+# CONFIG_LEGACY_PTYS is not set -+# CONFIG_IPMI_HANDLER is not set -+# CONFIG_HW_RANDOM is not set -+# CONFIG_NVRAM is not set -+# CONFIG_R3964 is not set -+# CONFIG_RAW_DRIVER is not set -+# CONFIG_TCG_TPM is not set -+CONFIG_I2C=y -+CONFIG_I2C_BOARDINFO=y -+CONFIG_I2C_CHARDEV=y -+CONFIG_I2C_HELPER_AUTO=y -+ -+# -+# I2C Hardware Bus support -+# -+ -+# -+# I2C system bus drivers (mostly embedded / system-on-chip) -+# -+# CONFIG_I2C_GPIO is not set -+# CONFIG_I2C_OCORES is not set -+CONFIG_I2C_S3C2410=y -+# CONFIG_I2C_SIMTEC is not set -+ -+# -+# External I2C/SMBus adapter drivers -+# -+# CONFIG_I2C_PARPORT_LIGHT is not set -+# CONFIG_I2C_TAOS_EVM is not set -+# CONFIG_I2C_TINY_USB is not set -+ -+# -+# Other I2C/SMBus bus drivers -+# -+# CONFIG_I2C_PCA_PLATFORM is not set -+# CONFIG_I2C_STUB is not set -+ -+# -+# Miscellaneous I2C Chip support -+# -+# CONFIG_DS1682 is not set -+# CONFIG_AT24 is not set -+# CONFIG_SENSORS_EEPROM is not set -+# CONFIG_SENSORS_PCF50606 is not set -+# CONFIG_SENSORS_PCF50633 is not set -+# CONFIG_SENSORS_PCF8574 is not set -+# CONFIG_PCF8575 is not set -+# CONFIG_SENSORS_PCA9539 is not set -+# CONFIG_SENSORS_PCF8591 is not set -+# CONFIG_TPS65010 is not set -+# CONFIG_SENSORS_MAX6875 is not set -+# CONFIG_SENSORS_TSL2550 is not set -+# CONFIG_SENSORS_TSL256X is not set -+CONFIG_PCA9632=y -+# CONFIG_I2C_DEBUG_CORE is not set -+# CONFIG_I2C_DEBUG_ALGO is not set -+# CONFIG_I2C_DEBUG_BUS is not set -+# CONFIG_I2C_DEBUG_CHIP is not set -+CONFIG_SPI=y -+# CONFIG_SPI_DEBUG is not set -+CONFIG_SPI_MASTER=y -+ -+# -+# SPI Master Controller Drivers -+# -+CONFIG_SPI_BITBANG=y -+# CONFIG_SPI_S3C24XX is not set -+CONFIG_SPI_S3C24XX_GPIO=y -+ -+# -+# SPI Protocol Masters -+# -+# CONFIG_SPI_AT25 is not set -+# CONFIG_SPI_SPIDEV is not set -+# CONFIG_SPI_TLE62X0 is not set -+CONFIG_ARCH_REQUIRE_GPIOLIB=y -+CONFIG_GPIOLIB=y -+CONFIG_DEBUG_GPIO=y -+CONFIG_GPIO_SYSFS=y -+ -+# -+# I2C GPIO expanders: -+# -+# CONFIG_GPIO_MAX732X is not set -+# CONFIG_GPIO_PCA953X is not set -+# CONFIG_GPIO_PCF857X is not set -+ -+# -+# PCI GPIO expanders: -+# -+ -+# -+# SPI GPIO expanders: -+# -+# CONFIG_GPIO_MAX7301 is not set -+# CONFIG_GPIO_MCP23S08 is not set -+# CONFIG_W1 is not set -+CONFIG_POWER_SUPPLY=y -+CONFIG_POWER_SUPPLY_DEBUG=y -+CONFIG_PDA_POWER=y -+CONFIG_APM_POWER=y -+# CONFIG_BATTERY_DS2760 is not set -+# CONFIG_BATTERY_BQ27x00 is not set -+CONFIG_BATTERY_BQ27000_HDQ=y -+CONFIG_GTA02_HDQ=y -+CONFIG_CHARGER_PCF50633=y -+CONFIG_HWMON=y -+# CONFIG_HWMON_VID is not set -+# CONFIG_SENSORS_AD7414 is not set -+# CONFIG_SENSORS_AD7418 is not set -+# CONFIG_SENSORS_ADCXX is not set -+# CONFIG_SENSORS_ADM1021 is not set -+# CONFIG_SENSORS_ADM1025 is not set -+# CONFIG_SENSORS_ADM1026 is not set -+# CONFIG_SENSORS_ADM1029 is not set -+# CONFIG_SENSORS_ADM1031 is not set -+# CONFIG_SENSORS_ADM9240 is not set -+# CONFIG_SENSORS_ADT7470 is not set -+# CONFIG_SENSORS_ADT7473 is not set -+# CONFIG_SENSORS_ATXP1 is not set -+# CONFIG_SENSORS_DS1621 is not set -+# CONFIG_SENSORS_F71805F is not set -+# CONFIG_SENSORS_F71882FG is not set -+# CONFIG_SENSORS_F75375S is not set -+# CONFIG_SENSORS_GL518SM is not set -+# CONFIG_SENSORS_GL520SM is not set -+# CONFIG_SENSORS_IT87 is not set -+# CONFIG_SENSORS_LM63 is not set -+# CONFIG_SENSORS_LM70 is not set -+# CONFIG_SENSORS_LM75 is not set -+# CONFIG_SENSORS_LM77 is not set -+# CONFIG_SENSORS_LM78 is not set -+# CONFIG_SENSORS_LM80 is not set -+# CONFIG_SENSORS_LM83 is not set -+# CONFIG_SENSORS_LM85 is not set -+# CONFIG_SENSORS_LM87 is not set -+# CONFIG_SENSORS_LM90 is not set -+# CONFIG_SENSORS_LM92 is not set -+# CONFIG_SENSORS_LM93 is not set -+# CONFIG_SENSORS_MAX1111 is not set -+# CONFIG_SENSORS_MAX1619 is not set -+# CONFIG_SENSORS_MAX6650 is not set -+# CONFIG_SENSORS_PC87360 is not set -+# CONFIG_SENSORS_PC87427 is not set -+# CONFIG_SENSORS_DME1737 is not set -+# CONFIG_SENSORS_SMSC47M1 is not set -+# CONFIG_SENSORS_SMSC47M192 is not set -+# CONFIG_SENSORS_SMSC47B397 is not set -+# CONFIG_SENSORS_ADS7828 is not set -+# CONFIG_SENSORS_THMC50 is not set -+# CONFIG_SENSORS_VT1211 is not set -+# CONFIG_SENSORS_W83781D is not set -+# CONFIG_SENSORS_W83791D is not set -+# CONFIG_SENSORS_W83792D is not set -+# CONFIG_SENSORS_W83793 is not set -+# CONFIG_SENSORS_W83L785TS is not set -+# CONFIG_SENSORS_W83L786NG is not set -+# CONFIG_SENSORS_W83627HF is not set -+# CONFIG_SENSORS_W83627EHF is not set -+# CONFIG_HWMON_DEBUG_CHIP is not set -+# CONFIG_THERMAL is not set -+# CONFIG_THERMAL_HWMON is not set -+CONFIG_WATCHDOG=y -+# CONFIG_WATCHDOG_NOWAYOUT is not set -+ -+# -+# Watchdog Device Drivers -+# -+# CONFIG_SOFT_WATCHDOG is not set -+CONFIG_S3C2410_WATCHDOG=m -+ -+# -+# USB-based Watchdog Cards -+# -+# CONFIG_USBPCWATCHDOG is not set -+ -+# -+# Sonics Silicon Backplane -+# -+CONFIG_SSB_POSSIBLE=y -+# CONFIG_SSB is not set -+ -+# -+# Multifunction device drivers -+# -+# CONFIG_MFD_CORE is not set -+# CONFIG_MFD_SM501 is not set -+# CONFIG_MFD_ASIC3 is not set -+# CONFIG_HTC_EGPIO is not set -+# CONFIG_HTC_PASIC3 is not set -+# CONFIG_MFD_TMIO is not set -+# CONFIG_MFD_T7L66XB is not set -+# CONFIG_MFD_TC6387XB is not set -+# CONFIG_MFD_TC6393XB is not set -+# CONFIG_PMIC_DA903X is not set -+# CONFIG_MFD_WM8400 is not set -+# CONFIG_MFD_WM8350_I2C is not set -+CONFIG_MFD_PCF50633=y -+CONFIG_PCF50633_ADC=y -+CONFIG_PCF50633_GPIO=y -+# CONFIG_MFD_PCF50606 is not set -+CONFIG_MFD_GLAMO=y -+CONFIG_MFD_GLAMO_FB=y -+CONFIG_MFD_GLAMO_SPI_GPIO=y -+CONFIG_MFD_GLAMO_SPI_FB=y -+CONFIG_MFD_GLAMO_MCI=y -+ -+# -+# Multimedia devices -+# -+ -+# -+# Multimedia core support -+# -+# CONFIG_VIDEO_DEV is not set -+# CONFIG_DVB_CORE is not set -+# CONFIG_VIDEO_MEDIA is not set -+ -+# -+# Multimedia drivers -+# -+CONFIG_DAB=y -+# CONFIG_USB_DABUSB is not set -+ -+# -+# Graphics support -+# -+# CONFIG_VGASTATE is not set -+CONFIG_VIDEO_OUTPUT_CONTROL=y -+CONFIG_FB=y -+# CONFIG_FIRMWARE_EDID is not set -+# CONFIG_FB_DDC is not set -+# CONFIG_FB_BOOT_VESA_SUPPORT is not set -+CONFIG_FB_CFB_FILLRECT=y -+CONFIG_FB_CFB_COPYAREA=y -+CONFIG_FB_CFB_IMAGEBLIT=y -+# CONFIG_FB_CFB_REV_PIXELS_IN_BYTE is not set -+# CONFIG_FB_SYS_FILLRECT is not set -+# CONFIG_FB_SYS_COPYAREA is not set -+# CONFIG_FB_SYS_IMAGEBLIT is not set -+# CONFIG_FB_FOREIGN_ENDIAN is not set -+# CONFIG_FB_SYS_FOPS is not set -+# CONFIG_FB_SVGALIB is not set -+# CONFIG_FB_MACMODES is not set -+# CONFIG_FB_BACKLIGHT is not set -+# CONFIG_FB_MODE_HELPERS is not set -+# CONFIG_FB_TILEBLITTING is not set -+ -+# -+# Frame buffer hardware drivers -+# -+# CONFIG_FB_UVESA is not set -+# CONFIG_FB_S1D13XXX is not set -+CONFIG_FB_S3C2410=y -+# CONFIG_FB_S3C2410_DEBUG is not set -+# CONFIG_FB_VIRTUAL is not set -+# CONFIG_FB_METRONOME is not set -+# CONFIG_FB_MB862XX is not set -+CONFIG_BACKLIGHT_LCD_SUPPORT=y -+CONFIG_LCD_CLASS_DEVICE=y -+CONFIG_LCD_LTV350QV=y -+# CONFIG_LCD_ILI9320 is not set -+# CONFIG_LCD_TDO24M is not set -+# CONFIG_LCD_VGG2432A4 is not set -+# CONFIG_LCD_PLATFORM is not set -+CONFIG_BACKLIGHT_CLASS_DEVICE=y -+CONFIG_BACKLIGHT_CORGI=y -+# CONFIG_BACKLIGHT_PWM is not set -+ -+# -+# Display device support -+# -+CONFIG_DISPLAY_SUPPORT=y -+ -+# -+# Display hardware drivers -+# -+CONFIG_DISPLAY_JBT6K74=y -+ -+# -+# Console display driver support -+# -+# CONFIG_VGA_CONSOLE is not set -+CONFIG_DUMMY_CONSOLE=y -+CONFIG_FRAMEBUFFER_CONSOLE=y -+# CONFIG_FRAMEBUFFER_CONSOLE_DETECT_PRIMARY is not set -+# CONFIG_FRAMEBUFFER_CONSOLE_ROTATION is not set -+CONFIG_FONTS=y -+# CONFIG_FONT_8x8 is not set -+# CONFIG_FONT_8x16 is not set -+CONFIG_FONT_6x11=y -+# CONFIG_FONT_7x14 is not set -+# CONFIG_FONT_PEARL_8x8 is not set -+# CONFIG_FONT_ACORN_8x8 is not set -+# CONFIG_FONT_MINI_4x6 is not set -+# CONFIG_FONT_SUN8x16 is not set -+# CONFIG_FONT_SUN12x22 is not set -+# CONFIG_FONT_10x18 is not set -+# CONFIG_LOGO is not set -+CONFIG_SOUND=y -+CONFIG_SOUND_OSS_CORE=y -+CONFIG_SND=m -+CONFIG_SND_TIMER=m -+CONFIG_SND_PCM=m -+CONFIG_SND_HWDEP=m -+CONFIG_SND_RAWMIDI=m -+# CONFIG_SND_SEQUENCER is not set -+CONFIG_SND_OSSEMUL=y -+CONFIG_SND_MIXER_OSS=m -+CONFIG_SND_PCM_OSS=m -+CONFIG_SND_PCM_OSS_PLUGINS=y -+# CONFIG_SND_DYNAMIC_MINORS is not set -+CONFIG_SND_SUPPORT_OLD_API=y -+CONFIG_SND_VERBOSE_PROCFS=y -+# CONFIG_SND_VERBOSE_PRINTK is not set -+CONFIG_SND_DEBUG=y -+# CONFIG_SND_DEBUG_VERBOSE is not set -+CONFIG_SND_PCM_XRUN_DEBUG=y -+CONFIG_SND_DRIVERS=y -+# CONFIG_SND_DUMMY is not set -+# CONFIG_SND_MTPAV is not set -+# CONFIG_SND_SERIAL_U16550 is not set -+# CONFIG_SND_MPU401 is not set -+CONFIG_SND_ARM=y -+# CONFIG_SND_SPI is not set -+CONFIG_SND_USB=y -+CONFIG_SND_USB_AUDIO=m -+# CONFIG_SND_USB_CAIAQ is not set -+CONFIG_SND_SOC=m -+CONFIG_SND_S3C24XX_SOC=m -+CONFIG_SND_S3C24XX_SOC_I2S=m -+CONFIG_SND_S3C24XX_SOC_NEO1973_GTA02_WM8753=m -+# CONFIG_SND_S3C24XX_SOC_LN2440SBC_ALC650 is not set -+# CONFIG_SND_SOC_ALL_CODECS is not set -+CONFIG_SND_SOC_WM8753=m -+# CONFIG_SOUND_PRIME is not set -+CONFIG_HID_SUPPORT=y -+CONFIG_HID=y -+# CONFIG_HID_DEBUG is not set -+# CONFIG_HIDRAW is not set -+ -+# -+# USB Input Devices -+# -+CONFIG_USB_HID=y -+CONFIG_HID_PID=y -+# CONFIG_USB_HIDDEV is not set -+ -+# -+# Special HID drivers -+# -+CONFIG_HID_COMPAT=y -+CONFIG_HID_A4TECH=y -+CONFIG_HID_APPLE=y -+CONFIG_HID_BELKIN=y -+CONFIG_HID_BRIGHT=y -+CONFIG_HID_CHERRY=y -+CONFIG_HID_CHICONY=y -+CONFIG_HID_CYPRESS=y -+CONFIG_HID_DELL=y -+CONFIG_HID_EZKEY=y -+CONFIG_HID_GYRATION=y -+CONFIG_HID_LOGITECH=y -+# CONFIG_LOGITECH_FF is not set -+# CONFIG_LOGIRUMBLEPAD2_FF is not set -+CONFIG_HID_MICROSOFT=y -+CONFIG_HID_MONTEREY=y -+CONFIG_HID_PANTHERLORD=y -+# CONFIG_PANTHERLORD_FF is not set -+CONFIG_HID_PETALYNX=y -+CONFIG_HID_SAMSUNG=y -+CONFIG_HID_SONY=y -+CONFIG_HID_SUNPLUS=y -+# CONFIG_THRUSTMASTER_FF is not set -+# CONFIG_ZEROPLUS_FF is not set -+CONFIG_USB_SUPPORT=y -+CONFIG_USB_ARCH_HAS_HCD=y -+CONFIG_USB_ARCH_HAS_OHCI=y -+# CONFIG_USB_ARCH_HAS_EHCI is not set -+CONFIG_USB=y -+# CONFIG_USB_DEBUG is not set -+CONFIG_USB_ANNOUNCE_NEW_DEVICES=y -+ -+# -+# Miscellaneous USB options -+# -+CONFIG_USB_DEVICEFS=y -+CONFIG_USB_DEVICE_CLASS=y -+# CONFIG_USB_DYNAMIC_MINORS is not set -+CONFIG_USB_SUSPEND=y -+# CONFIG_USB_OTG is not set -+CONFIG_USB_MON=y -+# CONFIG_USB_WUSB is not set -+# CONFIG_USB_WUSB_CBAF is not set -+ -+# -+# USB Host Controller Drivers -+# -+# CONFIG_USB_C67X00_HCD is not set -+# CONFIG_USB_ISP116X_HCD is not set -+# CONFIG_USB_ISP1760_HCD is not set -+CONFIG_USB_OHCI_HCD=m -+# CONFIG_USB_OHCI_BIG_ENDIAN_DESC is not set -+# CONFIG_USB_OHCI_BIG_ENDIAN_MMIO is not set -+CONFIG_USB_OHCI_LITTLE_ENDIAN=y -+# CONFIG_USB_SL811_HCD is not set -+# CONFIG_USB_R8A66597_HCD is not set -+# CONFIG_USB_HWA_HCD is not set -+# CONFIG_USB_MUSB_HDRC is not set -+# CONFIG_USB_GADGET_MUSB_HDRC is not set -+ -+# -+# USB Device Class drivers -+# -+CONFIG_USB_ACM=m -+CONFIG_USB_PRINTER=m -+# CONFIG_USB_WDM is not set -+CONFIG_USB_TMC=m -+ -+# -+# NOTE: USB_STORAGE enables SCSI, and 'SCSI disk support' -+# -+ -+# -+# may also be needed; see USB_STORAGE Help for more information -+# -+CONFIG_USB_STORAGE=m -+# CONFIG_USB_STORAGE_DEBUG is not set -+CONFIG_USB_STORAGE_DATAFAB=y -+CONFIG_USB_STORAGE_FREECOM=y -+# CONFIG_USB_STORAGE_ISD200 is not set -+CONFIG_USB_STORAGE_DPCM=y -+CONFIG_USB_STORAGE_USBAT=y -+CONFIG_USB_STORAGE_SDDR09=y -+CONFIG_USB_STORAGE_SDDR55=y -+CONFIG_USB_STORAGE_JUMPSHOT=y -+CONFIG_USB_STORAGE_ALAUDA=y -+# CONFIG_USB_STORAGE_ONETOUCH is not set -+CONFIG_USB_STORAGE_KARMA=y -+# CONFIG_USB_STORAGE_CYPRESS_ATACB is not set -+CONFIG_USB_LIBUSUAL=y -+ -+# -+# USB Imaging devices -+# -+# CONFIG_USB_MDC800 is not set -+# CONFIG_USB_MICROTEK is not set -+ -+# -+# USB port drivers -+# -+CONFIG_USB_SERIAL=m -+CONFIG_USB_EZUSB=y -+CONFIG_USB_SERIAL_GENERIC=y -+CONFIG_USB_SERIAL_AIRCABLE=m -+CONFIG_USB_SERIAL_ARK3116=m -+CONFIG_USB_SERIAL_BELKIN=m -+# CONFIG_USB_SERIAL_CH341 is not set -+CONFIG_USB_SERIAL_WHITEHEAT=m -+CONFIG_USB_SERIAL_DIGI_ACCELEPORT=m -+CONFIG_USB_SERIAL_CP2101=m -+CONFIG_USB_SERIAL_CYPRESS_M8=m -+CONFIG_USB_SERIAL_EMPEG=m -+CONFIG_USB_SERIAL_FTDI_SIO=m -+CONFIG_USB_SERIAL_FUNSOFT=m -+CONFIG_USB_SERIAL_VISOR=m -+CONFIG_USB_SERIAL_IPAQ=m -+CONFIG_USB_SERIAL_IR=m -+CONFIG_USB_SERIAL_EDGEPORT=m -+CONFIG_USB_SERIAL_EDGEPORT_TI=m -+CONFIG_USB_SERIAL_GARMIN=m -+CONFIG_USB_SERIAL_IPW=m -+# CONFIG_USB_SERIAL_IUU is not set -+CONFIG_USB_SERIAL_KEYSPAN_PDA=m -+CONFIG_USB_SERIAL_KEYSPAN=m -+CONFIG_USB_SERIAL_KLSI=m -+CONFIG_USB_SERIAL_KOBIL_SCT=m -+CONFIG_USB_SERIAL_MCT_U232=m -+CONFIG_USB_SERIAL_MOS7720=m -+CONFIG_USB_SERIAL_MOS7840=m -+# CONFIG_USB_SERIAL_MOTOROLA is not set -+CONFIG_USB_SERIAL_NAVMAN=m -+CONFIG_USB_SERIAL_PL2303=m -+# CONFIG_USB_SERIAL_OTI6858 is not set -+# CONFIG_USB_SERIAL_SPCP8X5 is not set -+CONFIG_USB_SERIAL_HP4X=m -+CONFIG_USB_SERIAL_SAFE=m -+CONFIG_USB_SERIAL_SAFE_PADDED=y -+CONFIG_USB_SERIAL_SIERRAWIRELESS=m -+CONFIG_USB_SERIAL_TI=m -+CONFIG_USB_SERIAL_CYBERJACK=m -+CONFIG_USB_SERIAL_XIRCOM=m -+CONFIG_USB_SERIAL_OPTION=m -+CONFIG_USB_SERIAL_OMNINET=m -+# CONFIG_USB_SERIAL_DEBUG is not set -+ -+# -+# USB Miscellaneous drivers -+# -+# CONFIG_USB_EMI62 is not set -+# CONFIG_USB_EMI26 is not set -+# CONFIG_USB_ADUTUX is not set -+# CONFIG_USB_SEVSEG is not set -+# CONFIG_USB_RIO500 is not set -+# CONFIG_USB_LEGOTOWER is not set -+# CONFIG_USB_LCD is not set -+CONFIG_USB_BERRY_CHARGE=m -+# CONFIG_USB_LED is not set -+# CONFIG_USB_CYPRESS_CY7C63 is not set -+# CONFIG_USB_CYTHERM is not set -+# CONFIG_USB_PHIDGET is not set -+# CONFIG_USB_IDMOUSE is not set -+# CONFIG_USB_FTDI_ELAN is not set -+# CONFIG_USB_APPLEDISPLAY is not set -+# CONFIG_USB_LD is not set -+CONFIG_USB_TRANCEVIBRATOR=m -+CONFIG_USB_IOWARRIOR=m -+# CONFIG_USB_TEST is not set -+# CONFIG_USB_ISIGHTFW is not set -+# CONFIG_USB_VST is not set -+CONFIG_USB_GADGET=y -+# CONFIG_USB_GADGET_DEBUG is not set -+# CONFIG_USB_GADGET_DEBUG_FILES is not set -+# CONFIG_USB_GADGET_DEBUG_FS is not set -+CONFIG_USB_GADGET_VBUS_DRAW=500 -+CONFIG_USB_GADGET_SELECTED=y -+# CONFIG_USB_GADGET_AT91 is not set -+# CONFIG_USB_GADGET_ATMEL_USBA is not set -+# CONFIG_USB_GADGET_FSL_USB2 is not set -+# CONFIG_USB_GADGET_LH7A40X is not set -+# CONFIG_USB_GADGET_OMAP is not set -+# CONFIG_USB_GADGET_PXA25X is not set -+# CONFIG_USB_GADGET_PXA27X is not set -+CONFIG_USB_GADGET_S3C2410=y -+CONFIG_USB_S3C2410=y -+CONFIG_USB_S3C2410_DEBUG=y -+# CONFIG_USB_GADGET_M66592 is not set -+# CONFIG_USB_GADGET_AMD5536UDC is not set -+# CONFIG_USB_GADGET_FSL_QE is not set -+# CONFIG_USB_GADGET_NET2280 is not set -+# CONFIG_USB_GADGET_GOKU is not set -+# CONFIG_USB_GADGET_DUMMY_HCD is not set -+# CONFIG_USB_GADGET_DUALSPEED is not set -+# CONFIG_USB_ZERO is not set -+CONFIG_USB_ETH=m -+CONFIG_USB_ETH_RNDIS=y -+CONFIG_USB_GADGETFS=m -+CONFIG_USB_FILE_STORAGE=m -+# CONFIG_USB_FILE_STORAGE_TEST is not set -+CONFIG_USB_G_SERIAL=m -+CONFIG_USB_MIDI_GADGET=m -+# CONFIG_USB_G_PRINTER is not set -+# CONFIG_USB_CDC_COMPOSITE is not set -+CONFIG_AR6000_WLAN=y -+CONFIG_MMC=y -+# CONFIG_MMC_DEBUG is not set -+CONFIG_MMC_UNSAFE_RESUME=y -+ -+# -+# MMC/SD/SDIO Card Drivers -+# -+CONFIG_MMC_BLOCK=y -+CONFIG_MMC_BLOCK_BOUNCE=y -+# CONFIG_SDIO_UART is not set -+# CONFIG_MMC_TEST is not set -+ -+# -+# MMC/SD/SDIO Host Controller Drivers -+# -+CONFIG_MMC_SDHCI=y -+CONFIG_MMC_SDHCI_S3C=y -+# CONFIG_MMC_SPI is not set -+CONFIG_MMC_S3C=y -+# CONFIG_MEMSTICK is not set -+# CONFIG_ACCESSIBILITY is not set -+CONFIG_NEW_LEDS=y -+CONFIG_LEDS_CLASS=y -+ -+# -+# LED drivers -+# -+CONFIG_LEDS_S3C24XX=m -+# CONFIG_LEDS_PCA9532 is not set -+CONFIG_LEDS_GPIO=y -+# CONFIG_LEDS_PCA955X is not set -+CONFIG_LEDS_NEO1973_VIBRATOR=y -+CONFIG_LEDS_NEO1973_GTA02=y -+ -+# -+# LED Triggers -+# -+CONFIG_LEDS_TRIGGERS=y -+CONFIG_LEDS_TRIGGER_TIMER=y -+# CONFIG_LEDS_TRIGGER_HEARTBEAT is not set -+CONFIG_LEDS_TRIGGER_BACKLIGHT=y -+# CONFIG_LEDS_TRIGGER_DEFAULT_ON is not set -+CONFIG_RTC_LIB=y -+CONFIG_RTC_CLASS=y -+CONFIG_RTC_HCTOSYS=y -+CONFIG_RTC_HCTOSYS_DEVICE="rtc0" -+CONFIG_RTC_DEBUG=y -+ -+# -+# RTC interfaces -+# -+CONFIG_RTC_INTF_SYSFS=y -+CONFIG_RTC_INTF_PROC=y -+CONFIG_RTC_INTF_DEV=y -+# CONFIG_RTC_INTF_DEV_UIE_EMUL is not set -+# CONFIG_RTC_DRV_TEST is not set -+ -+# -+# I2C RTC drivers -+# -+# CONFIG_RTC_DRV_DS1307 is not set -+# CONFIG_RTC_DRV_DS1374 is not set -+# CONFIG_RTC_DRV_DS1672 is not set -+# CONFIG_RTC_DRV_MAX6900 is not set -+# CONFIG_RTC_DRV_RS5C372 is not set -+# CONFIG_RTC_DRV_ISL1208 is not set -+# CONFIG_RTC_DRV_X1205 is not set -+# CONFIG_RTC_DRV_PCF8563 is not set -+# CONFIG_RTC_DRV_PCF8583 is not set -+CONFIG_RTC_DRV_PCF50633=y -+# CONFIG_RTC_DRV_PCF50606 is not set -+# CONFIG_RTC_DRV_M41T80 is not set -+# CONFIG_RTC_DRV_S35390A is not set -+# CONFIG_RTC_DRV_FM3130 is not set -+ -+# -+# SPI RTC drivers -+# -+# CONFIG_RTC_DRV_M41T94 is not set -+# CONFIG_RTC_DRV_DS1305 is not set -+# CONFIG_RTC_DRV_MAX6902 is not set -+# CONFIG_RTC_DRV_R9701 is not set -+# CONFIG_RTC_DRV_RS5C348 is not set -+# CONFIG_RTC_DRV_DS3234 is not set -+ -+# -+# Platform RTC drivers -+# -+# CONFIG_RTC_DRV_CMOS is not set -+# CONFIG_RTC_DRV_DS1286 is not set -+# CONFIG_RTC_DRV_DS1511 is not set -+# CONFIG_RTC_DRV_DS1553 is not set -+# CONFIG_RTC_DRV_DS1742 is not set -+# CONFIG_RTC_DRV_STK17TA8 is not set -+# CONFIG_RTC_DRV_M48T86 is not set -+# CONFIG_RTC_DRV_M48T35 is not set -+# CONFIG_RTC_DRV_M48T59 is not set -+# CONFIG_RTC_DRV_BQ4802 is not set -+# CONFIG_RTC_DRV_V3020 is not set -+ -+# -+# on-CPU RTC drivers -+# -+CONFIG_RTC_DRV_S3C=m -+CONFIG_DMADEVICES=y -+ -+# -+# DMA Devices -+# -+ -+# -+# Android -+# -+CONFIG_ANDROID_BINDER_IPC=y -+CONFIG_ANDROID_POWER=y -+CONFIG_ANDROID_POWER_STAT=y -+CONFIG_ANDROID_POWER_ALARM=y -+CONFIG_ANDROID_LOGGER=y -+# CONFIG_ANDROID_RAM_CONSOLE is not set -+# CONFIG_ANDROID_TIMED_GPIO is not set -+# CONFIG_ANDROID_PARANOID_NETWORK is not set -+CONFIG_REGULATOR=y -+CONFIG_REGULATOR_DEBUG=y -+# CONFIG_REGULATOR_FIXED_VOLTAGE is not set -+# CONFIG_REGULATOR_VIRTUAL_CONSUMER is not set -+# CONFIG_REGULATOR_BQ24022 is not set -+CONFIG_REGULATOR_PCF50633=y -+CONFIG_UIO=y -+CONFIG_UIO_PDRV=y -+# CONFIG_UIO_PDRV_GENIRQ is not set -+# CONFIG_UIO_SMX is not set -+# CONFIG_UIO_SERCOS3 is not set -+ -+# -+# File systems -+# -+CONFIG_EXT2_FS=y -+# CONFIG_EXT2_FS_XATTR is not set -+# CONFIG_EXT2_FS_XIP is not set -+CONFIG_EXT3_FS=y -+# CONFIG_EXT3_FS_XATTR is not set -+CONFIG_EXT4_FS=y -+CONFIG_EXT4DEV_COMPAT=y -+CONFIG_EXT4_FS_XATTR=y -+# CONFIG_EXT4_FS_POSIX_ACL is not set -+CONFIG_EXT4_FS_SECURITY=y -+CONFIG_JBD=y -+# CONFIG_JBD_DEBUG is not set -+CONFIG_JBD2=y -+# CONFIG_JBD2_DEBUG is not set -+CONFIG_FS_MBCACHE=y -+# CONFIG_REISERFS_FS is not set -+# CONFIG_JFS_FS is not set -+CONFIG_FS_POSIX_ACL=y -+CONFIG_FILE_LOCKING=y -+# CONFIG_XFS_FS is not set -+# CONFIG_OCFS2_FS is not set -+CONFIG_DNOTIFY=y -+CONFIG_INOTIFY=y -+CONFIG_INOTIFY_USER=y -+# CONFIG_QUOTA is not set -+# CONFIG_AUTOFS_FS is not set -+CONFIG_AUTOFS4_FS=m -+CONFIG_FUSE_FS=m -+ -+# -+# CD-ROM/DVD Filesystems -+# -+CONFIG_ISO9660_FS=m -+CONFIG_JOLIET=y -+# CONFIG_ZISOFS is not set -+CONFIG_UDF_FS=m -+CONFIG_UDF_NLS=y -+ -+# -+# DOS/FAT/NT Filesystems -+# -+CONFIG_FAT_FS=y -+CONFIG_MSDOS_FS=y -+CONFIG_VFAT_FS=y -+CONFIG_FAT_DEFAULT_CODEPAGE=437 -+CONFIG_FAT_DEFAULT_IOCHARSET="iso8859-1" -+# CONFIG_NTFS_FS is not set -+ -+# -+# Pseudo filesystems -+# -+CONFIG_PROC_FS=y -+CONFIG_PROC_SYSCTL=y -+CONFIG_PROC_PAGE_MONITOR=y -+CONFIG_SYSFS=y -+CONFIG_TMPFS=y -+# CONFIG_TMPFS_POSIX_ACL is not set -+# CONFIG_HUGETLB_PAGE is not set -+CONFIG_CONFIGFS_FS=m -+ -+# -+# Miscellaneous filesystems -+# -+# CONFIG_ADFS_FS is not set -+# CONFIG_AFFS_FS is not set -+# CONFIG_HFS_FS is not set -+# CONFIG_HFSPLUS_FS is not set -+# CONFIG_BEFS_FS is not set -+# CONFIG_BFS_FS is not set -+# CONFIG_EFS_FS is not set -+CONFIG_JFFS2_FS=y -+CONFIG_JFFS2_FS_DEBUG=0 -+CONFIG_JFFS2_FS_WRITEBUFFER=y -+# CONFIG_JFFS2_FS_WBUF_VERIFY is not set -+CONFIG_JFFS2_SUMMARY=y -+# CONFIG_JFFS2_FS_XATTR is not set -+# CONFIG_JFFS2_COMPRESSION_OPTIONS is not set -+CONFIG_JFFS2_ZLIB=y -+# CONFIG_JFFS2_LZO is not set -+CONFIG_JFFS2_RTIME=y -+# CONFIG_JFFS2_RUBIN is not set -+CONFIG_CRAMFS=y -+# CONFIG_VXFS_FS is not set -+# CONFIG_MINIX_FS is not set -+# CONFIG_OMFS_FS is not set -+# CONFIG_HPFS_FS is not set -+# CONFIG_QNX4FS_FS is not set -+CONFIG_ROMFS_FS=y -+# CONFIG_SYSV_FS is not set -+# CONFIG_UFS_FS is not set -+CONFIG_NETWORK_FILESYSTEMS=y -+# CONFIG_NFS_FS is not set -+CONFIG_NFSD=m -+CONFIG_NFSD_V2_ACL=y -+CONFIG_NFSD_V3=y -+CONFIG_NFSD_V3_ACL=y -+# CONFIG_NFSD_V4 is not set -+CONFIG_LOCKD=m -+CONFIG_LOCKD_V4=y -+CONFIG_EXPORTFS=m -+CONFIG_NFS_ACL_SUPPORT=m -+CONFIG_NFS_COMMON=y -+CONFIG_SUNRPC=m -+# CONFIG_SUNRPC_REGISTER_V4 is not set -+# CONFIG_RPCSEC_GSS_KRB5 is not set -+# CONFIG_RPCSEC_GSS_SPKM3 is not set -+# CONFIG_SMB_FS is not set -+CONFIG_CIFS=m -+# CONFIG_CIFS_STATS is not set -+# CONFIG_CIFS_WEAK_PW_HASH is not set -+# CONFIG_CIFS_XATTR is not set -+# CONFIG_CIFS_DEBUG2 is not set -+# CONFIG_CIFS_EXPERIMENTAL is not set -+# CONFIG_NCP_FS is not set -+# CONFIG_CODA_FS is not set -+# CONFIG_AFS_FS is not set -+ -+# -+# Partition Types -+# -+CONFIG_PARTITION_ADVANCED=y -+# CONFIG_ACORN_PARTITION is not set -+# CONFIG_OSF_PARTITION is not set -+# CONFIG_AMIGA_PARTITION is not set -+# CONFIG_ATARI_PARTITION is not set -+# CONFIG_MAC_PARTITION is not set -+CONFIG_MSDOS_PARTITION=y -+# CONFIG_BSD_DISKLABEL is not set -+# CONFIG_MINIX_SUBPARTITION is not set -+# CONFIG_SOLARIS_X86_PARTITION is not set -+# CONFIG_UNIXWARE_DISKLABEL is not set -+# CONFIG_LDM_PARTITION is not set -+# CONFIG_SGI_PARTITION is not set -+# CONFIG_ULTRIX_PARTITION is not set -+# CONFIG_SUN_PARTITION is not set -+# CONFIG_KARMA_PARTITION is not set -+# CONFIG_EFI_PARTITION is not set -+# CONFIG_SYSV68_PARTITION is not set -+CONFIG_NLS=y -+CONFIG_NLS_DEFAULT="iso8859-1" -+CONFIG_NLS_CODEPAGE_437=y -+# CONFIG_NLS_CODEPAGE_737 is not set -+# CONFIG_NLS_CODEPAGE_775 is not set -+CONFIG_NLS_CODEPAGE_850=m -+# CONFIG_NLS_CODEPAGE_852 is not set -+# CONFIG_NLS_CODEPAGE_855 is not set -+# CONFIG_NLS_CODEPAGE_857 is not set -+# CONFIG_NLS_CODEPAGE_860 is not set -+# CONFIG_NLS_CODEPAGE_861 is not set -+# CONFIG_NLS_CODEPAGE_862 is not set -+# CONFIG_NLS_CODEPAGE_863 is not set -+# CONFIG_NLS_CODEPAGE_864 is not set -+# CONFIG_NLS_CODEPAGE_865 is not set -+# CONFIG_NLS_CODEPAGE_866 is not set -+# CONFIG_NLS_CODEPAGE_869 is not set -+CONFIG_NLS_CODEPAGE_936=m -+CONFIG_NLS_CODEPAGE_950=m -+# CONFIG_NLS_CODEPAGE_932 is not set -+# CONFIG_NLS_CODEPAGE_949 is not set -+# CONFIG_NLS_CODEPAGE_874 is not set -+# CONFIG_NLS_ISO8859_8 is not set -+# CONFIG_NLS_CODEPAGE_1250 is not set -+# CONFIG_NLS_CODEPAGE_1251 is not set -+# CONFIG_NLS_ASCII is not set -+CONFIG_NLS_ISO8859_1=y -+# CONFIG_NLS_ISO8859_2 is not set -+# CONFIG_NLS_ISO8859_3 is not set -+# CONFIG_NLS_ISO8859_4 is not set -+# CONFIG_NLS_ISO8859_5 is not set -+# CONFIG_NLS_ISO8859_6 is not set -+# CONFIG_NLS_ISO8859_7 is not set -+# CONFIG_NLS_ISO8859_9 is not set -+# CONFIG_NLS_ISO8859_13 is not set -+# CONFIG_NLS_ISO8859_14 is not set -+# CONFIG_NLS_ISO8859_15 is not set -+# CONFIG_NLS_KOI8_R is not set -+# CONFIG_NLS_KOI8_U is not set -+CONFIG_NLS_UTF8=m -+# CONFIG_DLM is not set -+ -+# -+# Kernel hacking -+# -+CONFIG_PRINTK_TIME=y -+CONFIG_ENABLE_WARN_DEPRECATED=y -+CONFIG_ENABLE_MUST_CHECK=y -+CONFIG_FRAME_WARN=1024 -+CONFIG_MAGIC_SYSRQ=y -+# CONFIG_UNUSED_SYMBOLS is not set -+CONFIG_DEBUG_FS=y -+# CONFIG_HEADERS_CHECK is not set -+CONFIG_DEBUG_KERNEL=y -+CONFIG_DEBUG_SHIRQ=y -+CONFIG_DETECT_SOFTLOCKUP=y -+CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC=y -+CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC_VALUE=1 -+CONFIG_SCHED_DEBUG=y -+CONFIG_SCHEDSTATS=y -+CONFIG_TIMER_STATS=y -+# CONFIG_DEBUG_OBJECTS is not set -+# CONFIG_DEBUG_SLAB is not set -+CONFIG_DEBUG_PREEMPT=y -+# CONFIG_DEBUG_RT_MUTEXES is not set -+# CONFIG_RT_MUTEX_TESTER is not set -+CONFIG_DEBUG_SPINLOCK=y -+CONFIG_DEBUG_MUTEXES=y -+CONFIG_DEBUG_LOCK_ALLOC=y -+# CONFIG_PROVE_LOCKING is not set -+CONFIG_LOCKDEP=y -+CONFIG_LOCK_STAT=y -+CONFIG_DEBUG_LOCKDEP=y -+CONFIG_DEBUG_SPINLOCK_SLEEP=y -+# CONFIG_DEBUG_LOCKING_API_SELFTESTS is not set -+CONFIG_STACKTRACE=y -+# CONFIG_DEBUG_KOBJECT is not set -+CONFIG_DEBUG_BUGVERBOSE=y -+CONFIG_DEBUG_INFO=y -+# CONFIG_DEBUG_VM is not set -+# CONFIG_DEBUG_WRITECOUNT is not set -+CONFIG_DEBUG_MEMORY_INIT=y -+# CONFIG_DEBUG_LIST is not set -+CONFIG_DEBUG_SG=y -+CONFIG_FRAME_POINTER=y -+# CONFIG_BOOT_PRINTK_DELAY is not set -+# CONFIG_RCU_TORTURE_TEST is not set -+CONFIG_RCU_CPU_STALL_DETECTOR=y -+# CONFIG_BACKTRACE_SELF_TEST is not set -+# CONFIG_DEBUG_BLOCK_EXT_DEVT is not set -+# CONFIG_FAULT_INJECTION is not set -+CONFIG_LATENCYTOP=y -+CONFIG_SYSCTL_SYSCALL_CHECK=y -+CONFIG_HAVE_FUNCTION_TRACER=y -+ -+# -+# Tracers -+# -+# CONFIG_FUNCTION_TRACER is not set -+# CONFIG_SCHED_TRACER is not set -+# CONFIG_CONTEXT_SWITCH_TRACER is not set -+# CONFIG_BOOT_TRACER is not set -+# CONFIG_STACK_TRACER is not set -+CONFIG_DYNAMIC_PRINTK_DEBUG=y -+# CONFIG_SAMPLES is not set -+CONFIG_HAVE_ARCH_KGDB=y -+# CONFIG_KGDB is not set -+# CONFIG_DEBUG_USER is not set -+CONFIG_DEBUG_ERRORS=y -+# CONFIG_DEBUG_STACK_USAGE is not set -+# CONFIG_DEBUG_LL is not set -+CONFIG_DEBUG_S3C_UART=2 -+ -+# -+# Security options -+# -+# CONFIG_KEYS is not set -+# CONFIG_SECURITY is not set -+CONFIG_SECURITYFS=y -+# CONFIG_SECURITY_FILE_CAPABILITIES is not set -+CONFIG_CRYPTO=y -+ -+# -+# Crypto core or helper -+# -+CONFIG_CRYPTO_FIPS=y -+CONFIG_CRYPTO_ALGAPI=y -+CONFIG_CRYPTO_AEAD=y -+CONFIG_CRYPTO_BLKCIPHER=y -+CONFIG_CRYPTO_HASH=y -+CONFIG_CRYPTO_RNG=y -+CONFIG_CRYPTO_MANAGER=y -+CONFIG_CRYPTO_GF128MUL=m -+CONFIG_CRYPTO_NULL=m -+# CONFIG_CRYPTO_CRYPTD is not set -+CONFIG_CRYPTO_AUTHENC=m -+CONFIG_CRYPTO_TEST=m -+ -+# -+# Authenticated Encryption with Associated Data -+# -+# CONFIG_CRYPTO_CCM is not set -+# CONFIG_CRYPTO_GCM is not set -+# CONFIG_CRYPTO_SEQIV is not set -+ -+# -+# Block modes -+# -+CONFIG_CRYPTO_CBC=y -+# CONFIG_CRYPTO_CTR is not set -+# CONFIG_CRYPTO_CTS is not set -+CONFIG_CRYPTO_ECB=m -+CONFIG_CRYPTO_LRW=m -+CONFIG_CRYPTO_PCBC=m -+# CONFIG_CRYPTO_XTS is not set -+ -+# -+# Hash modes -+# -+CONFIG_CRYPTO_HMAC=y -+CONFIG_CRYPTO_XCBC=m -+ -+# -+# Digest -+# -+CONFIG_CRYPTO_CRC32C=m -+CONFIG_CRYPTO_MD4=m -+CONFIG_CRYPTO_MD5=y -+CONFIG_CRYPTO_MICHAEL_MIC=m -+# CONFIG_CRYPTO_RMD128 is not set -+# CONFIG_CRYPTO_RMD160 is not set -+# CONFIG_CRYPTO_RMD256 is not set -+# CONFIG_CRYPTO_RMD320 is not set -+CONFIG_CRYPTO_SHA1=m -+CONFIG_CRYPTO_SHA256=m -+CONFIG_CRYPTO_SHA512=m -+CONFIG_CRYPTO_TGR192=m -+CONFIG_CRYPTO_WP512=m -+ -+# -+# Ciphers -+# -+CONFIG_CRYPTO_AES=y -+CONFIG_CRYPTO_ANUBIS=m -+CONFIG_CRYPTO_ARC4=m -+CONFIG_CRYPTO_BLOWFISH=m -+CONFIG_CRYPTO_CAMELLIA=m -+CONFIG_CRYPTO_CAST5=m -+CONFIG_CRYPTO_CAST6=m -+CONFIG_CRYPTO_DES=y -+CONFIG_CRYPTO_FCRYPT=m -+CONFIG_CRYPTO_KHAZAD=m -+# CONFIG_CRYPTO_SALSA20 is not set -+# CONFIG_CRYPTO_SEED is not set -+CONFIG_CRYPTO_SERPENT=m -+CONFIG_CRYPTO_TEA=m -+CONFIG_CRYPTO_TWOFISH=m -+CONFIG_CRYPTO_TWOFISH_COMMON=m -+ -+# -+# Compression -+# -+CONFIG_CRYPTO_DEFLATE=m -+# CONFIG_CRYPTO_LZO is not set -+ -+# -+# Random Number Generation -+# -+CONFIG_CRYPTO_ANSI_CPRNG=y -+CONFIG_CRYPTO_HW=y -+ -+# -+# Library routines -+# -+CONFIG_BITREVERSE=y -+CONFIG_CRC_CCITT=m -+CONFIG_CRC16=y -+CONFIG_CRC_T10DIF=y -+CONFIG_CRC_ITU_T=m -+CONFIG_CRC32=y -+# CONFIG_CRC7 is not set -+CONFIG_LIBCRC32C=m -+CONFIG_ZLIB_INFLATE=y -+CONFIG_ZLIB_DEFLATE=y -+CONFIG_TEXTSEARCH=y -+CONFIG_TEXTSEARCH_KMP=m -+CONFIG_TEXTSEARCH_BM=m -+CONFIG_TEXTSEARCH_FSM=m -+CONFIG_PLIST=y -+CONFIG_HAS_IOMEM=y -+CONFIG_HAS_DMA=y ---- /dev/null -+++ b/arch/arm/configs/gta03_defconfig -@@ -0,0 +1,1548 @@ -+# -+# Automatically generated make config: don't edit -+# Linux kernel version: 2.6.28-rc4 -+# Fri Dec 12 12:07:49 2008 -+# -+CONFIG_ARM=y -+CONFIG_SYS_SUPPORTS_APM_EMULATION=y -+CONFIG_GENERIC_GPIO=y -+# CONFIG_GENERIC_TIME is not set -+# CONFIG_GENERIC_CLOCKEVENTS is not set -+CONFIG_MMU=y -+CONFIG_NO_IOPORT=y -+CONFIG_GENERIC_HARDIRQS=y -+CONFIG_STACKTRACE_SUPPORT=y -+CONFIG_HAVE_LATENCYTOP_SUPPORT=y -+CONFIG_LOCKDEP_SUPPORT=y -+CONFIG_TRACE_IRQFLAGS_SUPPORT=y -+CONFIG_HARDIRQS_SW_RESEND=y -+CONFIG_GENERIC_IRQ_PROBE=y -+CONFIG_RWSEM_GENERIC_SPINLOCK=y -+# CONFIG_ARCH_HAS_ILOG2_U32 is not set -+# CONFIG_ARCH_HAS_ILOG2_U64 is not set -+CONFIG_GENERIC_HWEIGHT=y -+CONFIG_GENERIC_CALIBRATE_DELAY=y -+CONFIG_GENERIC_HARDIRQS_NO__DO_IRQ=y -+CONFIG_VECTORS_BASE=0xffff0000 -+CONFIG_DEFCONFIG_LIST="/lib/modules/$UNAME_RELEASE/.config" -+ -+# -+# General setup -+# -+CONFIG_EXPERIMENTAL=y -+CONFIG_BROKEN_ON_SMP=y -+CONFIG_INIT_ENV_ARG_LIMIT=32 -+CONFIG_LOCALVERSION="" -+CONFIG_LOCALVERSION_AUTO=y -+CONFIG_SWAP=y -+# CONFIG_SYSVIPC is not set -+# CONFIG_POSIX_MQUEUE is not set -+# CONFIG_BSD_PROCESS_ACCT is not set -+# CONFIG_TASKSTATS is not set -+# CONFIG_AUDIT is not set -+CONFIG_IKCONFIG=y -+CONFIG_IKCONFIG_PROC=y -+CONFIG_LOG_BUF_SHIFT=18 -+# CONFIG_CGROUPS is not set -+# CONFIG_GROUP_SCHED is not set -+CONFIG_SYSFS_DEPRECATED=y -+CONFIG_SYSFS_DEPRECATED_V2=y -+# CONFIG_RELAY is not set -+CONFIG_NAMESPACES=y -+# CONFIG_UTS_NS is not set -+# CONFIG_USER_NS is not set -+# CONFIG_PID_NS is not set -+CONFIG_BLK_DEV_INITRD=y -+CONFIG_INITRAMFS_SOURCE="" -+CONFIG_CC_OPTIMIZE_FOR_SIZE=y -+CONFIG_SYSCTL=y -+# CONFIG_EMBEDDED is not set -+CONFIG_UID16=y -+CONFIG_SYSCTL_SYSCALL=y -+CONFIG_KALLSYMS=y -+CONFIG_KALLSYMS_ALL=y -+# CONFIG_KALLSYMS_EXTRA_PASS is not set -+CONFIG_HOTPLUG=y -+CONFIG_PRINTK=y -+CONFIG_BUG=y -+CONFIG_ELF_CORE=y -+CONFIG_COMPAT_BRK=y -+CONFIG_BASE_FULL=y -+CONFIG_FUTEX=y -+CONFIG_ANON_INODES=y -+CONFIG_EPOLL=y -+CONFIG_SIGNALFD=y -+CONFIG_TIMERFD=y -+CONFIG_EVENTFD=y -+CONFIG_SHMEM=y -+CONFIG_AIO=y -+CONFIG_ASHMEM=y -+CONFIG_VM_EVENT_COUNTERS=y -+CONFIG_SLUB_DEBUG=y -+# CONFIG_SLAB is not set -+CONFIG_SLUB=y -+# CONFIG_SLOB is not set -+# CONFIG_PROFILING is not set -+# CONFIG_MARKERS is not set -+CONFIG_HAVE_OPROFILE=y -+# CONFIG_KPROBES is not set -+CONFIG_HAVE_KPROBES=y -+CONFIG_HAVE_KRETPROBES=y -+CONFIG_HAVE_CLK=y -+CONFIG_HAVE_GENERIC_DMA_COHERENT=y -+CONFIG_SLABINFO=y -+CONFIG_RT_MUTEXES=y -+# CONFIG_TINY_SHMEM is not set -+CONFIG_BASE_SMALL=0 -+CONFIG_MODULES=y -+# CONFIG_MODULE_FORCE_LOAD is not set -+CONFIG_MODULE_UNLOAD=y -+# CONFIG_MODULE_FORCE_UNLOAD is not set -+# CONFIG_MODVERSIONS is not set -+# CONFIG_MODULE_SRCVERSION_ALL is not set -+CONFIG_KMOD=y -+CONFIG_BLOCK=y -+CONFIG_LBD=y -+# CONFIG_BLK_DEV_IO_TRACE is not set -+CONFIG_LSF=y -+# CONFIG_BLK_DEV_BSG is not set -+# CONFIG_BLK_DEV_INTEGRITY is not set -+ -+# -+# IO Schedulers -+# -+CONFIG_IOSCHED_NOOP=y -+CONFIG_IOSCHED_AS=y -+CONFIG_IOSCHED_DEADLINE=y -+CONFIG_IOSCHED_CFQ=y -+# CONFIG_DEFAULT_AS is not set -+# CONFIG_DEFAULT_DEADLINE is not set -+CONFIG_DEFAULT_CFQ=y -+# CONFIG_DEFAULT_NOOP is not set -+CONFIG_DEFAULT_IOSCHED="cfq" -+CONFIG_CLASSIC_RCU=y -+CONFIG_FREEZER=y -+ -+# -+# System Type -+# -+# CONFIG_ARCH_AAEC2000 is not set -+# CONFIG_ARCH_INTEGRATOR is not set -+# CONFIG_ARCH_REALVIEW is not set -+# CONFIG_ARCH_VERSATILE is not set -+# CONFIG_ARCH_AT91 is not set -+# CONFIG_ARCH_CLPS7500 is not set -+# CONFIG_ARCH_CLPS711X is not set -+# CONFIG_ARCH_EBSA110 is not set -+# CONFIG_ARCH_EP93XX is not set -+# CONFIG_ARCH_FOOTBRIDGE is not set -+# CONFIG_ARCH_NETX is not set -+# CONFIG_ARCH_H720X is not set -+# CONFIG_ARCH_IMX is not set -+# CONFIG_ARCH_IOP13XX is not set -+# CONFIG_ARCH_IOP32X is not set -+# CONFIG_ARCH_IOP33X is not set -+# CONFIG_ARCH_IXP23XX is not set -+# CONFIG_ARCH_IXP2000 is not set -+# CONFIG_ARCH_IXP4XX is not set -+# CONFIG_ARCH_L7200 is not set -+# CONFIG_ARCH_KIRKWOOD is not set -+# CONFIG_ARCH_KS8695 is not set -+# CONFIG_ARCH_NS9XXX is not set -+# CONFIG_ARCH_LOKI is not set -+# CONFIG_ARCH_MV78XX0 is not set -+# CONFIG_ARCH_MXC is not set -+# CONFIG_ARCH_ORION5X is not set -+# CONFIG_ARCH_PNX4008 is not set -+# CONFIG_ARCH_PXA is not set -+# CONFIG_ARCH_RPC is not set -+# CONFIG_ARCH_SA1100 is not set -+# CONFIG_ARCH_S3C2410 is not set -+CONFIG_ARCH_S3C64XX=y -+# CONFIG_ARCH_SHARK is not set -+# CONFIG_ARCH_LH7A40X is not set -+# CONFIG_ARCH_DAVINCI is not set -+# CONFIG_ARCH_OMAP is not set -+# CONFIG_ARCH_MSM is not set -+CONFIG_MACH_NEO1973=y -+CONFIG_PLAT_S3C64XX=y -+CONFIG_CPU_S3C6400_INIT=y -+CONFIG_CPU_S3C6400_CLOCK=y -+CONFIG_S3C64XX_SETUP_I2C0=y -+CONFIG_S3C64XX_SETUP_I2C1=y -+CONFIG_S3C64XX_SETUP_FB_24BPP=y -+CONFIG_PLAT_S3C=y -+ -+# -+# Boot options -+# -+CONFIG_S3C_BOOT_ERROR_RESET=y -+CONFIG_S3C_BOOT_UART_FORCE_FIFO=y -+ -+# -+# Power management -+# -+# CONFIG_S3C2410_PM_DEBUG is not set -+# CONFIG_S3C2410_PM_CHECK is not set -+CONFIG_S3C_LOWLEVEL_UART_PORT=3 -+CONFIG_S3C_GPIO_SPACE=0 -+CONFIG_S3C_GPIO_TRACK=y -+CONFIG_S3C_GPIO_PULL_UPDOWN=y -+CONFIG_S3C_GPIO_CFG_S3C24XX=y -+CONFIG_S3C_GPIO_CFG_S3C64XX=y -+CONFIG_S3C_DEV_HSMMC=y -+CONFIG_S3C_DEV_HSMMC1=y -+CONFIG_S3C_DEV_I2C1=y -+CONFIG_S3C_DEV_FB=y -+CONFIG_CPU_S3C6410=y -+CONFIG_S3C6410_SETUP_SDHCI=y -+# CONFIG_MACH_SMDK6410 is not set -+CONFIG_MACH_OPENMOKO_GTA03=y -+ -+# -+# Processor Type -+# -+CONFIG_CPU_32=y -+CONFIG_CPU_V6=y -+CONFIG_CPU_32v6K=y -+CONFIG_CPU_32v6=y -+CONFIG_CPU_ABRT_EV6=y -+CONFIG_CPU_PABRT_NOIFAR=y -+CONFIG_CPU_CACHE_V6=y -+CONFIG_CPU_CACHE_VIPT=y -+CONFIG_CPU_COPY_V6=y -+CONFIG_CPU_TLB_V6=y -+CONFIG_CPU_HAS_ASID=y -+CONFIG_CPU_CP15=y -+CONFIG_CPU_CP15_MMU=y -+ -+# -+# Processor Features -+# -+CONFIG_ARM_THUMB=y -+# CONFIG_CPU_ICACHE_DISABLE is not set -+# CONFIG_CPU_DCACHE_DISABLE is not set -+# CONFIG_CPU_BPREDICT_DISABLE is not set -+# CONFIG_OUTER_CACHE is not set -+CONFIG_ARM_VIC=y -+ -+# -+# Bus support -+# -+# CONFIG_PCI_SYSCALL is not set -+# CONFIG_ARCH_SUPPORTS_MSI is not set -+# CONFIG_PCCARD is not set -+ -+# -+# Kernel Features -+# -+CONFIG_VMSPLIT_3G=y -+# CONFIG_VMSPLIT_2G is not set -+# CONFIG_VMSPLIT_1G is not set -+CONFIG_PAGE_OFFSET=0xC0000000 -+# CONFIG_PREEMPT is not set -+CONFIG_HZ=100 -+CONFIG_AEABI=y -+CONFIG_OABI_COMPAT=y -+CONFIG_ARCH_FLATMEM_HAS_HOLES=y -+# CONFIG_ARCH_SPARSEMEM_DEFAULT is not set -+# CONFIG_ARCH_SELECT_MEMORY_MODEL is not set -+CONFIG_SELECT_MEMORY_MODEL=y -+CONFIG_FLATMEM_MANUAL=y -+# CONFIG_DISCONTIGMEM_MANUAL is not set -+# CONFIG_SPARSEMEM_MANUAL is not set -+CONFIG_FLATMEM=y -+CONFIG_FLAT_NODE_MEM_MAP=y -+CONFIG_PAGEFLAGS_EXTENDED=y -+CONFIG_SPLIT_PTLOCK_CPUS=4 -+# CONFIG_RESOURCES_64BIT is not set -+# CONFIG_PHYS_ADDR_T_64BIT is not set -+CONFIG_ZONE_DMA_FLAG=0 -+CONFIG_VIRT_TO_BUS=y -+CONFIG_UNEVICTABLE_LRU=y -+CONFIG_ALIGNMENT_TRAP=y -+ -+# -+# Boot options -+# -+CONFIG_ZBOOT_ROM_TEXT=0 -+CONFIG_ZBOOT_ROM_BSS=0 -+CONFIG_CMDLINE="console=ttySAC0,115200 root=/dev/ram init=/bin/bash initrd=0x51000000,4M" -+# CONFIG_XIP_KERNEL is not set -+# CONFIG_KEXEC is not set -+ -+# -+# CPU Power Management -+# -+CONFIG_CPU_IDLE=y -+CONFIG_CPU_IDLE_GOV_LADDER=y -+ -+# -+# Floating point emulation -+# -+ -+# -+# At least one emulation must be selected -+# -+# CONFIG_FPE_NWFPE is not set -+# CONFIG_FPE_FASTFPE is not set -+CONFIG_VFP=y -+ -+# -+# Userspace binary formats -+# -+CONFIG_BINFMT_ELF=y -+# CONFIG_CORE_DUMP_DEFAULT_ELF_HEADERS is not set -+CONFIG_HAVE_AOUT=y -+# CONFIG_BINFMT_AOUT is not set -+# CONFIG_BINFMT_MISC is not set -+ -+# -+# Power management options -+# -+CONFIG_PM=y -+# CONFIG_PM_DEBUG is not set -+CONFIG_PM_SLEEP=y -+CONFIG_SUSPEND=y -+CONFIG_SUSPEND_FREEZER=y -+CONFIG_APM_EMULATION=y -+CONFIG_ARCH_SUSPEND_POSSIBLE=y -+CONFIG_NET=y -+ -+# -+# Networking options -+# -+CONFIG_PACKET=y -+CONFIG_PACKET_MMAP=y -+CONFIG_UNIX=y -+CONFIG_XFRM=y -+# CONFIG_XFRM_USER is not set -+# CONFIG_XFRM_SUB_POLICY is not set -+CONFIG_XFRM_MIGRATE=y -+# CONFIG_XFRM_STATISTICS is not set -+# CONFIG_NET_KEY is not set -+CONFIG_INET=y -+CONFIG_IP_MULTICAST=y -+CONFIG_IP_ADVANCED_ROUTER=y -+CONFIG_ASK_IP_FIB_HASH=y -+# CONFIG_IP_FIB_TRIE is not set -+CONFIG_IP_FIB_HASH=y -+CONFIG_IP_MULTIPLE_TABLES=y -+# CONFIG_IP_ROUTE_MULTIPATH is not set -+# CONFIG_IP_ROUTE_VERBOSE is not set -+CONFIG_IP_PNP=y -+# CONFIG_IP_PNP_DHCP is not set -+# CONFIG_IP_PNP_BOOTP is not set -+# CONFIG_IP_PNP_RARP is not set -+# CONFIG_NET_IPIP is not set -+# CONFIG_NET_IPGRE is not set -+# CONFIG_IP_MROUTE is not set -+# CONFIG_ARPD is not set -+CONFIG_SYN_COOKIES=y -+# CONFIG_INET_AH is not set -+# CONFIG_INET_ESP is not set -+# CONFIG_INET_IPCOMP is not set -+# CONFIG_INET_XFRM_TUNNEL is not set -+CONFIG_INET_TUNNEL=m -+CONFIG_INET_XFRM_MODE_TRANSPORT=y -+CONFIG_INET_XFRM_MODE_TUNNEL=y -+CONFIG_INET_XFRM_MODE_BEET=y -+# CONFIG_INET_LRO is not set -+CONFIG_INET_DIAG=y -+CONFIG_INET_TCP_DIAG=y -+# CONFIG_TCP_CONG_ADVANCED is not set -+CONFIG_TCP_CONG_CUBIC=y -+CONFIG_DEFAULT_TCP_CONG="cubic" -+CONFIG_TCP_MD5SIG=y -+CONFIG_IPV6=m -+# CONFIG_IPV6_PRIVACY is not set -+# CONFIG_IPV6_ROUTER_PREF is not set -+# CONFIG_IPV6_OPTIMISTIC_DAD is not set -+# CONFIG_INET6_AH is not set -+# CONFIG_INET6_ESP is not set -+# CONFIG_INET6_IPCOMP is not set -+# CONFIG_IPV6_MIP6 is not set -+# CONFIG_INET6_XFRM_TUNNEL is not set -+# CONFIG_INET6_TUNNEL is not set -+CONFIG_INET6_XFRM_MODE_TRANSPORT=m -+CONFIG_INET6_XFRM_MODE_TUNNEL=m -+CONFIG_INET6_XFRM_MODE_BEET=m -+# CONFIG_INET6_XFRM_MODE_ROUTEOPTIMIZATION is not set -+CONFIG_IPV6_SIT=m -+CONFIG_IPV6_NDISC_NODETYPE=y -+# CONFIG_IPV6_TUNNEL is not set -+# CONFIG_IPV6_MULTIPLE_TABLES is not set -+# CONFIG_IPV6_MROUTE is not set -+# CONFIG_NETWORK_SECMARK is not set -+CONFIG_NETFILTER=y -+# CONFIG_NETFILTER_DEBUG is not set -+CONFIG_NETFILTER_ADVANCED=y -+ -+# -+# Core Netfilter Configuration -+# -+# CONFIG_NETFILTER_NETLINK_QUEUE is not set -+# CONFIG_NETFILTER_NETLINK_LOG is not set -+# CONFIG_NF_CONNTRACK is not set -+CONFIG_NETFILTER_XTABLES=m -+# CONFIG_NETFILTER_XT_TARGET_CLASSIFY is not set -+# CONFIG_NETFILTER_XT_TARGET_MARK is not set -+# CONFIG_NETFILTER_XT_TARGET_NFLOG is not set -+# CONFIG_NETFILTER_XT_TARGET_NFQUEUE is not set -+# CONFIG_NETFILTER_XT_TARGET_RATEEST is not set -+# CONFIG_NETFILTER_XT_TARGET_TCPMSS is not set -+# CONFIG_NETFILTER_XT_MATCH_COMMENT is not set -+# CONFIG_NETFILTER_XT_MATCH_DCCP is not set -+# CONFIG_NETFILTER_XT_MATCH_DSCP is not set -+# CONFIG_NETFILTER_XT_MATCH_ESP is not set -+# CONFIG_NETFILTER_XT_MATCH_HASHLIMIT is not set -+# CONFIG_NETFILTER_XT_MATCH_IPRANGE is not set -+# CONFIG_NETFILTER_XT_MATCH_LENGTH is not set -+# CONFIG_NETFILTER_XT_MATCH_LIMIT is not set -+# CONFIG_NETFILTER_XT_MATCH_MAC is not set -+# CONFIG_NETFILTER_XT_MATCH_MARK is not set -+# CONFIG_NETFILTER_XT_MATCH_MULTIPORT is not set -+# CONFIG_NETFILTER_XT_MATCH_OWNER is not set -+# CONFIG_NETFILTER_XT_MATCH_POLICY is not set -+# CONFIG_NETFILTER_XT_MATCH_PKTTYPE is not set -+# CONFIG_NETFILTER_XT_MATCH_QUOTA is not set -+# CONFIG_NETFILTER_XT_MATCH_RATEEST is not set -+# CONFIG_NETFILTER_XT_MATCH_REALM is not set -+# CONFIG_NETFILTER_XT_MATCH_RECENT is not set -+# CONFIG_NETFILTER_XT_MATCH_SCTP is not set -+# CONFIG_NETFILTER_XT_MATCH_STATISTIC is not set -+# CONFIG_NETFILTER_XT_MATCH_STRING is not set -+# CONFIG_NETFILTER_XT_MATCH_TCPMSS is not set -+# CONFIG_NETFILTER_XT_MATCH_TIME is not set -+# CONFIG_NETFILTER_XT_MATCH_U32 is not set -+# CONFIG_IP_VS is not set -+ -+# -+# IP: Netfilter Configuration -+# -+# CONFIG_NF_DEFRAG_IPV4 is not set -+# CONFIG_IP_NF_QUEUE is not set -+# CONFIG_IP_NF_IPTABLES is not set -+# CONFIG_IP_NF_ARPTABLES is not set -+ -+# -+# IPv6: Netfilter Configuration -+# -+# CONFIG_IP6_NF_QUEUE is not set -+CONFIG_IP6_NF_IPTABLES=m -+# CONFIG_IP6_NF_MATCH_AH is not set -+# CONFIG_IP6_NF_MATCH_EUI64 is not set -+# CONFIG_IP6_NF_MATCH_FRAG is not set -+# CONFIG_IP6_NF_MATCH_OPTS is not set -+# CONFIG_IP6_NF_MATCH_HL is not set -+# CONFIG_IP6_NF_MATCH_IPV6HEADER is not set -+# CONFIG_IP6_NF_MATCH_MH is not set -+# CONFIG_IP6_NF_MATCH_RT is not set -+# CONFIG_IP6_NF_TARGET_LOG is not set -+# CONFIG_IP6_NF_FILTER is not set -+# CONFIG_IP6_NF_MANGLE is not set -+# CONFIG_IP6_NF_RAW is not set -+# CONFIG_IP_DCCP is not set -+# CONFIG_IP_SCTP is not set -+# CONFIG_TIPC is not set -+# CONFIG_ATM is not set -+# CONFIG_BRIDGE is not set -+# CONFIG_NET_DSA is not set -+# CONFIG_VLAN_8021Q is not set -+# CONFIG_DECNET is not set -+# CONFIG_LLC2 is not set -+# CONFIG_IPX is not set -+# CONFIG_ATALK is not set -+# CONFIG_X25 is not set -+# CONFIG_LAPB is not set -+# CONFIG_ECONET is not set -+# CONFIG_WAN_ROUTER is not set -+# CONFIG_NET_SCHED is not set -+ -+# -+# Network testing -+# -+# CONFIG_NET_PKTGEN is not set -+# CONFIG_HAMRADIO is not set -+# CONFIG_CAN is not set -+# CONFIG_IRDA is not set -+# CONFIG_BT is not set -+# CONFIG_AF_RXRPC is not set -+# CONFIG_PHONET is not set -+CONFIG_FIB_RULES=y -+CONFIG_WIRELESS=y -+CONFIG_CFG80211=y -+CONFIG_NL80211=y -+CONFIG_WIRELESS_OLD_REGULATORY=y -+CONFIG_WIRELESS_EXT=y -+CONFIG_WIRELESS_EXT_SYSFS=y -+CONFIG_MAC80211=y -+ -+# -+# Rate control algorithm selection -+# -+CONFIG_MAC80211_RC_PID=y -+# CONFIG_MAC80211_RC_MINSTREL is not set -+CONFIG_MAC80211_RC_DEFAULT_PID=y -+# CONFIG_MAC80211_RC_DEFAULT_MINSTREL is not set -+CONFIG_MAC80211_RC_DEFAULT="pid" -+# CONFIG_MAC80211_MESH is not set -+CONFIG_MAC80211_LEDS=y -+# CONFIG_MAC80211_DEBUG_MENU is not set -+# CONFIG_IEEE80211 is not set -+# CONFIG_RFKILL is not set -+# CONFIG_NET_9P is not set -+ -+# -+# Device Drivers -+# -+ -+# -+# Generic Driver Options -+# -+CONFIG_UEVENT_HELPER_PATH="/sbin/hotplug" -+CONFIG_STANDALONE=y -+CONFIG_PREVENT_FIRMWARE_BUILD=y -+CONFIG_FW_LOADER=y -+CONFIG_FIRMWARE_IN_KERNEL=y -+CONFIG_EXTRA_FIRMWARE="" -+# CONFIG_DEBUG_DRIVER is not set -+# CONFIG_DEBUG_DEVRES is not set -+# CONFIG_SYS_HYPERVISOR is not set -+# CONFIG_CONNECTOR is not set -+CONFIG_MTD=y -+# CONFIG_MTD_DEBUG is not set -+# CONFIG_MTD_CONCAT is not set -+CONFIG_MTD_PARTITIONS=y -+# CONFIG_MTD_REDBOOT_PARTS is not set -+CONFIG_MTD_CMDLINE_PARTS=y -+# CONFIG_MTD_AFS_PARTS is not set -+# CONFIG_MTD_AR7_PARTS is not set -+ -+# -+# User Modules And Translation Layers -+# -+CONFIG_MTD_CHAR=y -+CONFIG_MTD_BLKDEVS=y -+CONFIG_MTD_BLOCK=y -+# CONFIG_FTL is not set -+# CONFIG_NFTL is not set -+# CONFIG_INFTL is not set -+# CONFIG_RFD_FTL is not set -+# CONFIG_SSFDC is not set -+# CONFIG_MTD_OOPS is not set -+ -+# -+# RAM/ROM/Flash chip drivers -+# -+# CONFIG_MTD_CFI is not set -+# CONFIG_MTD_JEDECPROBE is not set -+CONFIG_MTD_MAP_BANK_WIDTH_1=y -+CONFIG_MTD_MAP_BANK_WIDTH_2=y -+CONFIG_MTD_MAP_BANK_WIDTH_4=y -+# CONFIG_MTD_MAP_BANK_WIDTH_8 is not set -+# CONFIG_MTD_MAP_BANK_WIDTH_16 is not set -+# CONFIG_MTD_MAP_BANK_WIDTH_32 is not set -+CONFIG_MTD_CFI_I1=y -+CONFIG_MTD_CFI_I2=y -+# CONFIG_MTD_CFI_I4 is not set -+# CONFIG_MTD_CFI_I8 is not set -+# CONFIG_MTD_RAM is not set -+# CONFIG_MTD_ROM is not set -+# CONFIG_MTD_ABSENT is not set -+ -+# -+# Mapping drivers for chip access -+# -+# CONFIG_MTD_COMPLEX_MAPPINGS is not set -+# CONFIG_MTD_PLATRAM is not set -+ -+# -+# Self-contained MTD device drivers -+# -+# CONFIG_MTD_DATAFLASH is not set -+# CONFIG_MTD_M25P80 is not set -+# CONFIG_MTD_SLRAM is not set -+# CONFIG_MTD_PHRAM is not set -+# CONFIG_MTD_MTDRAM is not set -+# CONFIG_MTD_BLOCK2MTD is not set -+ -+# -+# Disk-On-Chip Device Drivers -+# -+# CONFIG_MTD_DOC2000 is not set -+# CONFIG_MTD_DOC2001 is not set -+# CONFIG_MTD_DOC2001PLUS is not set -+# CONFIG_MTD_NAND is not set -+CONFIG_MTD_ONENAND=y -+# CONFIG_MTD_ONENAND_VERIFY_WRITE is not set -+CONFIG_MTD_ONENAND_GENERIC=y -+# CONFIG_MTD_ONENAND_OTP is not set -+# CONFIG_MTD_ONENAND_2X_PROGRAM is not set -+# CONFIG_MTD_ONENAND_SIM is not set -+ -+# -+# UBI - Unsorted block images -+# -+# CONFIG_MTD_UBI is not set -+# CONFIG_PARPORT is not set -+CONFIG_BLK_DEV=y -+# CONFIG_BLK_DEV_COW_COMMON is not set -+CONFIG_BLK_DEV_LOOP=y -+# CONFIG_BLK_DEV_CRYPTOLOOP is not set -+# CONFIG_BLK_DEV_NBD is not set -+CONFIG_BLK_DEV_RAM=y -+CONFIG_BLK_DEV_RAM_COUNT=16 -+CONFIG_BLK_DEV_RAM_SIZE=8192 -+# CONFIG_BLK_DEV_XIP is not set -+# CONFIG_CDROM_PKTCDVD is not set -+# CONFIG_ATA_OVER_ETH is not set -+CONFIG_MISC_DEVICES=y -+# CONFIG_EEPROM_93CX6 is not set -+CONFIG_LOW_MEMORY_KILLER=y -+# CONFIG_ENCLOSURE_SERVICES is not set -+CONFIG_HAVE_IDE=y -+# CONFIG_IDE is not set -+ -+# -+# SCSI device support -+# -+# CONFIG_RAID_ATTRS is not set -+# CONFIG_SCSI is not set -+# CONFIG_SCSI_DMA is not set -+# CONFIG_SCSI_NETLINK is not set -+# CONFIG_ATA is not set -+# CONFIG_MD is not set -+CONFIG_NETDEVICES=y -+# CONFIG_DUMMY is not set -+# CONFIG_BONDING is not set -+# CONFIG_MACVLAN is not set -+# CONFIG_EQUALIZER is not set -+CONFIG_TUN=y -+# CONFIG_VETH is not set -+# CONFIG_NET_ETHERNET is not set -+# CONFIG_NETDEV_1000 is not set -+# CONFIG_NETDEV_10000 is not set -+ -+# -+# Wireless LAN -+# -+# CONFIG_WLAN_PRE80211 is not set -+# CONFIG_WLAN_80211 is not set -+# CONFIG_IWLWIFI_LEDS is not set -+# CONFIG_WAN is not set -+CONFIG_PPP=y -+# CONFIG_PPP_MULTILINK is not set -+# CONFIG_PPP_FILTER is not set -+CONFIG_PPP_ASYNC=y -+CONFIG_PPP_SYNC_TTY=y -+CONFIG_PPP_DEFLATE=y -+CONFIG_PPP_BSDCOMP=y -+CONFIG_PPP_MPPE=y -+# CONFIG_PPPOE is not set -+# CONFIG_PPPOL2TP is not set -+# CONFIG_SLIP is not set -+CONFIG_SLHC=y -+# CONFIG_NETCONSOLE is not set -+# CONFIG_NETPOLL is not set -+# CONFIG_NET_POLL_CONTROLLER is not set -+# CONFIG_ISDN is not set -+ -+# -+# Input device support -+# -+CONFIG_INPUT=y -+# CONFIG_INPUT_FF_MEMLESS is not set -+# CONFIG_INPUT_POLLDEV is not set -+ -+# -+# Userland interfaces -+# -+CONFIG_INPUT_MOUSEDEV=y -+CONFIG_INPUT_MOUSEDEV_PSAUX=y -+CONFIG_INPUT_MOUSEDEV_SCREEN_X=1024 -+CONFIG_INPUT_MOUSEDEV_SCREEN_Y=768 -+# CONFIG_INPUT_JOYDEV is not set -+CONFIG_INPUT_EVDEV=y -+# CONFIG_INPUT_EVBUG is not set -+ -+# -+# Input Device Drivers -+# -+CONFIG_INPUT_KEYBOARD=y -+CONFIG_KEYBOARD_ATKBD=y -+# CONFIG_KEYBOARD_SUNKBD is not set -+# CONFIG_KEYBOARD_LKKBD is not set -+# CONFIG_KEYBOARD_XTKBD is not set -+# CONFIG_KEYBOARD_NEWTON is not set -+# CONFIG_KEYBOARD_STOWAWAY is not set -+# CONFIG_KEYBOARD_GPIO is not set -+CONFIG_KEYBOARD_NEO1973=y -+CONFIG_INPUT_MOUSE=y -+CONFIG_MOUSE_PS2=y -+CONFIG_MOUSE_PS2_ALPS=y -+CONFIG_MOUSE_PS2_LOGIPS2PP=y -+CONFIG_MOUSE_PS2_SYNAPTICS=y -+CONFIG_MOUSE_PS2_LIFEBOOK=y -+CONFIG_MOUSE_PS2_TRACKPOINT=y -+# CONFIG_MOUSE_PS2_ELANTECH is not set -+# CONFIG_MOUSE_PS2_TOUCHKIT is not set -+# CONFIG_MOUSE_SERIAL is not set -+# CONFIG_MOUSE_APPLETOUCH is not set -+# CONFIG_MOUSE_BCM5974 is not set -+# CONFIG_MOUSE_VSXXXAA is not set -+# CONFIG_MOUSE_GPIO is not set -+# CONFIG_INPUT_JOYSTICK is not set -+# CONFIG_INPUT_TABLET is not set -+CONFIG_INPUT_TOUCHSCREEN=y -+CONFIG_TOUCHSCREEN_FILTER=y -+CONFIG_TOUCHSCREEN_FILTER_GROUP=y -+CONFIG_TOUCHSCREEN_FILTER_MEDIAN=y -+CONFIG_TOUCHSCREEN_FILTER_MEAN=y -+# CONFIG_TOUCHSCREEN_ADS7846 is not set -+# CONFIG_TOUCHSCREEN_FUJITSU is not set -+# CONFIG_TOUCHSCREEN_GUNZE is not set -+# CONFIG_TOUCHSCREEN_ELO is not set -+# CONFIG_TOUCHSCREEN_MTOUCH is not set -+# CONFIG_TOUCHSCREEN_INEXIO is not set -+# CONFIG_TOUCHSCREEN_MK712 is not set -+# CONFIG_TOUCHSCREEN_PENMOUNT is not set -+# CONFIG_TOUCHSCREEN_TOUCHRIGHT is not set -+# CONFIG_TOUCHSCREEN_TOUCHWIN is not set -+# CONFIG_TOUCHSCREEN_USB_COMPOSITE is not set -+# CONFIG_TOUCHSCREEN_TOUCHIT213 is not set -+CONFIG_INPUT_MISC=y -+CONFIG_TOUCHSCREEN_PCAP7200=y -+# CONFIG_INPUT_ATI_REMOTE is not set -+# CONFIG_INPUT_ATI_REMOTE2 is not set -+# CONFIG_INPUT_KEYSPAN_REMOTE is not set -+# CONFIG_INPUT_POWERMATE is not set -+# CONFIG_INPUT_YEALINK is not set -+# CONFIG_INPUT_CM109 is not set -+# CONFIG_INPUT_UINPUT is not set -+CONFIG_INPUT_LIS302DL=y -+CONFIG_INPUT_PCF50633_PMU=y -+ -+# -+# Hardware I/O ports -+# -+CONFIG_SERIO=y -+CONFIG_SERIO_SERPORT=y -+CONFIG_SERIO_LIBPS2=y -+# CONFIG_SERIO_RAW is not set -+# CONFIG_GAMEPORT is not set -+ -+# -+# Character devices -+# -+CONFIG_VT=y -+CONFIG_CONSOLE_TRANSLATIONS=y -+CONFIG_VT_CONSOLE=y -+CONFIG_NR_TTY_DEVICES=6 -+CONFIG_HW_CONSOLE=y -+# CONFIG_VT_HW_CONSOLE_BINDING is not set -+CONFIG_DEVKMEM=y -+# CONFIG_SERIAL_NONSTANDARD is not set -+ -+# -+# Serial drivers -+# -+CONFIG_SERIAL_8250=y -+# CONFIG_SERIAL_8250_CONSOLE is not set -+CONFIG_SERIAL_8250_NR_UARTS=4 -+CONFIG_SERIAL_8250_RUNTIME_UARTS=4 -+# CONFIG_SERIAL_8250_EXTENDED is not set -+ -+# -+# Non-8250 serial port support -+# -+CONFIG_SERIAL_SAMSUNG=y -+CONFIG_SERIAL_SAMSUNG_UARTS=4 -+# CONFIG_SERIAL_SAMSUNG_DEBUG is not set -+CONFIG_SERIAL_SAMSUNG_CONSOLE=y -+CONFIG_SERIAL_S3C6400=y -+CONFIG_SERIAL_CORE=y -+CONFIG_SERIAL_CORE_CONSOLE=y -+CONFIG_UNIX98_PTYS=y -+CONFIG_LEGACY_PTYS=y -+CONFIG_LEGACY_PTY_COUNT=256 -+# CONFIG_IPMI_HANDLER is not set -+CONFIG_HW_RANDOM=y -+# CONFIG_NVRAM is not set -+# CONFIG_R3964 is not set -+# CONFIG_RAW_DRIVER is not set -+# CONFIG_TCG_TPM is not set -+CONFIG_I2C=y -+CONFIG_I2C_BOARDINFO=y -+CONFIG_I2C_CHARDEV=y -+CONFIG_I2C_HELPER_AUTO=y -+ -+# -+# I2C Hardware Bus support -+# -+ -+# -+# I2C system bus drivers (mostly embedded / system-on-chip) -+# -+# CONFIG_I2C_GPIO is not set -+# CONFIG_I2C_OCORES is not set -+CONFIG_I2C_S3C2410=y -+# CONFIG_I2C_SIMTEC is not set -+ -+# -+# External I2C/SMBus adapter drivers -+# -+# CONFIG_I2C_PARPORT_LIGHT is not set -+# CONFIG_I2C_TAOS_EVM is not set -+ -+# -+# Other I2C/SMBus bus drivers -+# -+# CONFIG_I2C_PCA_PLATFORM is not set -+# CONFIG_I2C_STUB is not set -+ -+# -+# Miscellaneous I2C Chip support -+# -+# CONFIG_DS1682 is not set -+# CONFIG_AT24 is not set -+# CONFIG_SENSORS_EEPROM is not set -+# CONFIG_SENSORS_PCF50606 is not set -+# CONFIG_SENSORS_PCF50633 is not set -+# CONFIG_SENSORS_PCF8574 is not set -+# CONFIG_PCF8575 is not set -+# CONFIG_SENSORS_PCA9539 is not set -+# CONFIG_SENSORS_PCF8591 is not set -+# CONFIG_TPS65010 is not set -+# CONFIG_SENSORS_MAX6875 is not set -+# CONFIG_SENSORS_TSL2550 is not set -+# CONFIG_SENSORS_TSL256X is not set -+CONFIG_PCA9632=y -+# CONFIG_I2C_DEBUG_CORE is not set -+# CONFIG_I2C_DEBUG_ALGO is not set -+# CONFIG_I2C_DEBUG_BUS is not set -+# CONFIG_I2C_DEBUG_CHIP is not set -+CONFIG_SPI=y -+# CONFIG_SPI_DEBUG is not set -+CONFIG_SPI_MASTER=y -+ -+# -+# SPI Master Controller Drivers -+# -+CONFIG_SPI_BITBANG=y -+ -+# -+# SPI Protocol Masters -+# -+# CONFIG_SPI_AT25 is not set -+# CONFIG_SPI_SPIDEV is not set -+# CONFIG_SPI_TLE62X0 is not set -+CONFIG_ARCH_REQUIRE_GPIOLIB=y -+CONFIG_GPIOLIB=y -+# CONFIG_DEBUG_GPIO is not set -+CONFIG_GPIO_SYSFS=y -+ -+# -+# I2C GPIO expanders: -+# -+# CONFIG_GPIO_MAX732X is not set -+# CONFIG_GPIO_PCA953X is not set -+# CONFIG_GPIO_PCF857X is not set -+ -+# -+# PCI GPIO expanders: -+# -+ -+# -+# SPI GPIO expanders: -+# -+# CONFIG_GPIO_MAX7301 is not set -+# CONFIG_GPIO_MCP23S08 is not set -+# CONFIG_W1 is not set -+CONFIG_POWER_SUPPLY=y -+# CONFIG_POWER_SUPPLY_DEBUG is not set -+# CONFIG_PDA_POWER is not set -+# CONFIG_APM_POWER is not set -+# CONFIG_BATTERY_DS2760 is not set -+# CONFIG_BATTERY_BQ27x00 is not set -+# CONFIG_BATTERY_BQ27000_HDQ is not set -+CONFIG_CHARGER_PCF50633=y -+CONFIG_HWMON=y -+# CONFIG_HWMON_VID is not set -+# CONFIG_SENSORS_AD7414 is not set -+# CONFIG_SENSORS_AD7418 is not set -+# CONFIG_SENSORS_ADCXX is not set -+# CONFIG_SENSORS_ADM1021 is not set -+# CONFIG_SENSORS_ADM1025 is not set -+# CONFIG_SENSORS_ADM1026 is not set -+# CONFIG_SENSORS_ADM1029 is not set -+# CONFIG_SENSORS_ADM1031 is not set -+# CONFIG_SENSORS_ADM9240 is not set -+# CONFIG_SENSORS_ADT7470 is not set -+# CONFIG_SENSORS_ADT7473 is not set -+# CONFIG_SENSORS_ATXP1 is not set -+# CONFIG_SENSORS_DS1621 is not set -+# CONFIG_SENSORS_F71805F is not set -+# CONFIG_SENSORS_F71882FG is not set -+# CONFIG_SENSORS_F75375S is not set -+# CONFIG_SENSORS_GL518SM is not set -+# CONFIG_SENSORS_GL520SM is not set -+# CONFIG_SENSORS_IT87 is not set -+# CONFIG_SENSORS_LM63 is not set -+# CONFIG_SENSORS_LM70 is not set -+# CONFIG_SENSORS_LM75 is not set -+# CONFIG_SENSORS_LM77 is not set -+# CONFIG_SENSORS_LM78 is not set -+# CONFIG_SENSORS_LM80 is not set -+# CONFIG_SENSORS_LM83 is not set -+# CONFIG_SENSORS_LM85 is not set -+# CONFIG_SENSORS_LM87 is not set -+# CONFIG_SENSORS_LM90 is not set -+# CONFIG_SENSORS_LM92 is not set -+# CONFIG_SENSORS_LM93 is not set -+# CONFIG_SENSORS_MAX1111 is not set -+# CONFIG_SENSORS_MAX1619 is not set -+# CONFIG_SENSORS_MAX6650 is not set -+# CONFIG_SENSORS_PC87360 is not set -+# CONFIG_SENSORS_PC87427 is not set -+# CONFIG_SENSORS_DME1737 is not set -+# CONFIG_SENSORS_SMSC47M1 is not set -+# CONFIG_SENSORS_SMSC47M192 is not set -+# CONFIG_SENSORS_SMSC47B397 is not set -+# CONFIG_SENSORS_ADS7828 is not set -+# CONFIG_SENSORS_THMC50 is not set -+# CONFIG_SENSORS_VT1211 is not set -+# CONFIG_SENSORS_W83781D is not set -+# CONFIG_SENSORS_W83791D is not set -+# CONFIG_SENSORS_W83792D is not set -+# CONFIG_SENSORS_W83793 is not set -+# CONFIG_SENSORS_W83L785TS is not set -+# CONFIG_SENSORS_W83L786NG is not set -+# CONFIG_SENSORS_W83627HF is not set -+# CONFIG_SENSORS_W83627EHF is not set -+# CONFIG_HWMON_DEBUG_CHIP is not set -+# CONFIG_THERMAL is not set -+# CONFIG_THERMAL_HWMON is not set -+# CONFIG_WATCHDOG is not set -+ -+# -+# Sonics Silicon Backplane -+# -+CONFIG_SSB_POSSIBLE=y -+# CONFIG_SSB is not set -+ -+# -+# Multifunction device drivers -+# -+# CONFIG_MFD_CORE is not set -+# CONFIG_MFD_SM501 is not set -+# CONFIG_MFD_ASIC3 is not set -+# CONFIG_HTC_EGPIO is not set -+# CONFIG_HTC_PASIC3 is not set -+# CONFIG_MFD_TMIO is not set -+# CONFIG_MFD_T7L66XB is not set -+# CONFIG_MFD_TC6387XB is not set -+# CONFIG_MFD_TC6393XB is not set -+# CONFIG_PMIC_DA903X is not set -+# CONFIG_MFD_WM8400 is not set -+# CONFIG_MFD_WM8350_I2C is not set -+CONFIG_MFD_PCF50633=y -+CONFIG_PCF50633_ADC=y -+CONFIG_PCF50633_GPIO=y -+# CONFIG_MFD_PCF50606 is not set -+# CONFIG_MFD_GLAMO is not set -+ -+# -+# Multimedia devices -+# -+ -+# -+# Multimedia core support -+# -+# CONFIG_VIDEO_DEV is not set -+# CONFIG_DVB_CORE is not set -+# CONFIG_VIDEO_MEDIA is not set -+ -+# -+# Multimedia drivers -+# -+# CONFIG_DAB is not set -+ -+# -+# Graphics support -+# -+# CONFIG_VGASTATE is not set -+# CONFIG_VIDEO_OUTPUT_CONTROL is not set -+CONFIG_FB=y -+# CONFIG_FIRMWARE_EDID is not set -+# CONFIG_FB_DDC is not set -+# CONFIG_FB_BOOT_VESA_SUPPORT is not set -+CONFIG_FB_CFB_FILLRECT=y -+CONFIG_FB_CFB_COPYAREA=y -+CONFIG_FB_CFB_IMAGEBLIT=y -+# CONFIG_FB_CFB_REV_PIXELS_IN_BYTE is not set -+# CONFIG_FB_SYS_FILLRECT is not set -+# CONFIG_FB_SYS_COPYAREA is not set -+# CONFIG_FB_SYS_IMAGEBLIT is not set -+# CONFIG_FB_FOREIGN_ENDIAN is not set -+# CONFIG_FB_SYS_FOPS is not set -+# CONFIG_FB_SVGALIB is not set -+# CONFIG_FB_MACMODES is not set -+# CONFIG_FB_BACKLIGHT is not set -+CONFIG_FB_MODE_HELPERS=y -+CONFIG_FB_TILEBLITTING=y -+ -+# -+# Frame buffer hardware drivers -+# -+# CONFIG_FB_S1D13XXX is not set -+CONFIG_FB_S3C=y -+# CONFIG_FB_S3C_DEBUG_REGWRITE is not set -+# CONFIG_FB_VIRTUAL is not set -+# CONFIG_FB_METRONOME is not set -+# CONFIG_FB_MB862XX is not set -+CONFIG_BACKLIGHT_LCD_SUPPORT=y -+CONFIG_LCD_CLASS_DEVICE=y -+# CONFIG_LCD_LTV350QV is not set -+# CONFIG_LCD_ILI9320 is not set -+# CONFIG_LCD_TDO24M is not set -+# CONFIG_LCD_VGG2432A4 is not set -+CONFIG_LCD_PLATFORM=y -+CONFIG_BACKLIGHT_CLASS_DEVICE=y -+CONFIG_BACKLIGHT_CORGI=y -+ -+# -+# Display device support -+# -+# CONFIG_DISPLAY_SUPPORT is not set -+# CONFIG_DISPLAY_JBT6K74 is not set -+ -+# -+# Console display driver support -+# -+# CONFIG_VGA_CONSOLE is not set -+CONFIG_DUMMY_CONSOLE=y -+CONFIG_FRAMEBUFFER_CONSOLE=y -+CONFIG_FRAMEBUFFER_CONSOLE_DETECT_PRIMARY=y -+CONFIG_FRAMEBUFFER_CONSOLE_ROTATION=y -+CONFIG_FONTS=y -+CONFIG_FONT_8x8=y -+CONFIG_FONT_8x16=y -+# CONFIG_FONT_6x11 is not set -+# CONFIG_FONT_7x14 is not set -+# CONFIG_FONT_PEARL_8x8 is not set -+# CONFIG_FONT_ACORN_8x8 is not set -+# CONFIG_FONT_MINI_4x6 is not set -+# CONFIG_FONT_SUN8x16 is not set -+# CONFIG_FONT_SUN12x22 is not set -+# CONFIG_FONT_10x18 is not set -+CONFIG_LOGO=y -+CONFIG_LOGO_LINUX_MONO=y -+CONFIG_LOGO_LINUX_VGA16=y -+# CONFIG_LOGO_LINUX_CLUT224 is not set -+CONFIG_SOUND=y -+# CONFIG_SOUND_OSS_CORE is not set -+CONFIG_SND=y -+CONFIG_SND_TIMER=y -+CONFIG_SND_PCM=y -+# CONFIG_SND_SEQUENCER is not set -+# CONFIG_SND_MIXER_OSS is not set -+# CONFIG_SND_PCM_OSS is not set -+# CONFIG_SND_DYNAMIC_MINORS is not set -+CONFIG_SND_SUPPORT_OLD_API=y -+CONFIG_SND_VERBOSE_PROCFS=y -+# CONFIG_SND_VERBOSE_PRINTK is not set -+# CONFIG_SND_DEBUG is not set -+CONFIG_SND_DRIVERS=y -+# CONFIG_SND_DUMMY is not set -+# CONFIG_SND_MTPAV is not set -+# CONFIG_SND_SERIAL_U16550 is not set -+# CONFIG_SND_MPU401 is not set -+CONFIG_SND_ARM=y -+CONFIG_SND_SPI=y -+CONFIG_SND_SOC=y -+# CONFIG_SND_SOC_ALL_CODECS is not set -+# CONFIG_SOUND_PRIME is not set -+CONFIG_HID_SUPPORT=y -+CONFIG_HID=y -+CONFIG_HID_DEBUG=y -+# CONFIG_HIDRAW is not set -+# CONFIG_HID_PID is not set -+ -+# -+# Special HID drivers -+# -+# CONFIG_HID_COMPAT is not set -+CONFIG_USB_SUPPORT=y -+CONFIG_USB_ARCH_HAS_HCD=y -+# CONFIG_USB_ARCH_HAS_OHCI is not set -+# CONFIG_USB_ARCH_HAS_EHCI is not set -+# CONFIG_USB is not set -+ -+# -+# Enable Host or Gadget support to see Inventra options -+# -+ -+# -+# NOTE: USB_STORAGE enables SCSI, and 'SCSI disk support' -+# -+# CONFIG_USB_GADGET is not set -+# CONFIG_AR6000_WLAN is not set -+CONFIG_MMC=y -+CONFIG_MMC_DEBUG=y -+CONFIG_MMC_UNSAFE_RESUME=y -+ -+# -+# MMC/SD/SDIO Card Drivers -+# -+CONFIG_MMC_BLOCK=y -+CONFIG_MMC_BLOCK_BOUNCE=y -+CONFIG_SDIO_UART=y -+# CONFIG_MMC_TEST is not set -+ -+# -+# MMC/SD/SDIO Host Controller Drivers -+# -+CONFIG_MMC_SDHCI=y -+CONFIG_MMC_SDHCI_S3C=y -+# CONFIG_MMC_SPI is not set -+# CONFIG_MEMSTICK is not set -+# CONFIG_ACCESSIBILITY is not set -+CONFIG_NEW_LEDS=y -+# CONFIG_LEDS_CLASS is not set -+ -+# -+# LED drivers -+# -+ -+# -+# LED Triggers -+# -+CONFIG_LEDS_TRIGGERS=y -+# CONFIG_LEDS_TRIGGER_TIMER is not set -+# CONFIG_LEDS_TRIGGER_HEARTBEAT is not set -+# CONFIG_LEDS_TRIGGER_BACKLIGHT is not set -+# CONFIG_LEDS_TRIGGER_DEFAULT_ON is not set -+CONFIG_RTC_LIB=y -+CONFIG_RTC_CLASS=y -+CONFIG_RTC_HCTOSYS=y -+CONFIG_RTC_HCTOSYS_DEVICE="rtc0" -+# CONFIG_RTC_DEBUG is not set -+ -+# -+# RTC interfaces -+# -+CONFIG_RTC_INTF_SYSFS=y -+CONFIG_RTC_INTF_PROC=y -+CONFIG_RTC_INTF_DEV=y -+# CONFIG_RTC_INTF_DEV_UIE_EMUL is not set -+# CONFIG_RTC_DRV_TEST is not set -+ -+# -+# I2C RTC drivers -+# -+# CONFIG_RTC_DRV_DS1307 is not set -+# CONFIG_RTC_DRV_DS1374 is not set -+# CONFIG_RTC_DRV_DS1672 is not set -+# CONFIG_RTC_DRV_MAX6900 is not set -+# CONFIG_RTC_DRV_RS5C372 is not set -+# CONFIG_RTC_DRV_ISL1208 is not set -+# CONFIG_RTC_DRV_X1205 is not set -+# CONFIG_RTC_DRV_PCF8563 is not set -+# CONFIG_RTC_DRV_PCF8583 is not set -+CONFIG_RTC_DRV_PCF50633=y -+# CONFIG_RTC_DRV_PCF50606 is not set -+# CONFIG_RTC_DRV_M41T80 is not set -+# CONFIG_RTC_DRV_S35390A is not set -+# CONFIG_RTC_DRV_FM3130 is not set -+ -+# -+# SPI RTC drivers -+# -+# CONFIG_RTC_DRV_M41T94 is not set -+# CONFIG_RTC_DRV_DS1305 is not set -+# CONFIG_RTC_DRV_MAX6902 is not set -+# CONFIG_RTC_DRV_R9701 is not set -+# CONFIG_RTC_DRV_RS5C348 is not set -+# CONFIG_RTC_DRV_DS3234 is not set -+ -+# -+# Platform RTC drivers -+# -+# CONFIG_RTC_DRV_CMOS is not set -+# CONFIG_RTC_DRV_DS1286 is not set -+# CONFIG_RTC_DRV_DS1511 is not set -+# CONFIG_RTC_DRV_DS1553 is not set -+# CONFIG_RTC_DRV_DS1742 is not set -+# CONFIG_RTC_DRV_STK17TA8 is not set -+# CONFIG_RTC_DRV_M48T86 is not set -+# CONFIG_RTC_DRV_M48T35 is not set -+# CONFIG_RTC_DRV_M48T59 is not set -+# CONFIG_RTC_DRV_BQ4802 is not set -+# CONFIG_RTC_DRV_V3020 is not set -+ -+# -+# on-CPU RTC drivers -+# -+# CONFIG_DMADEVICES is not set -+ -+# -+# Android -+# -+CONFIG_ANDROID_BINDER_IPC=y -+# CONFIG_ANDROID_POWER is not set -+CONFIG_ANDROID_LOGGER=y -+# CONFIG_ANDROID_RAM_CONSOLE is not set -+# CONFIG_ANDROID_TIMED_GPIO is not set -+# CONFIG_ANDROID_PARANOID_NETWORK is not set -+CONFIG_REGULATOR=y -+# CONFIG_REGULATOR_DEBUG is not set -+# CONFIG_REGULATOR_FIXED_VOLTAGE is not set -+# CONFIG_REGULATOR_VIRTUAL_CONSUMER is not set -+# CONFIG_REGULATOR_BQ24022 is not set -+CONFIG_REGULATOR_PCF50633=y -+# CONFIG_UIO is not set -+ -+# -+# File systems -+# -+CONFIG_EXT2_FS=y -+# CONFIG_EXT2_FS_XATTR is not set -+# CONFIG_EXT2_FS_XIP is not set -+CONFIG_EXT3_FS=y -+CONFIG_EXT3_FS_XATTR=y -+CONFIG_EXT3_FS_POSIX_ACL=y -+CONFIG_EXT3_FS_SECURITY=y -+# CONFIG_EXT4_FS is not set -+CONFIG_JBD=y -+CONFIG_FS_MBCACHE=y -+# CONFIG_REISERFS_FS is not set -+# CONFIG_JFS_FS is not set -+CONFIG_FS_POSIX_ACL=y -+CONFIG_FILE_LOCKING=y -+# CONFIG_XFS_FS is not set -+# CONFIG_GFS2_FS is not set -+# CONFIG_OCFS2_FS is not set -+CONFIG_DNOTIFY=y -+CONFIG_INOTIFY=y -+CONFIG_INOTIFY_USER=y -+# CONFIG_QUOTA is not set -+# CONFIG_AUTOFS_FS is not set -+# CONFIG_AUTOFS4_FS is not set -+# CONFIG_FUSE_FS is not set -+CONFIG_GENERIC_ACL=y -+ -+# -+# CD-ROM/DVD Filesystems -+# -+# CONFIG_ISO9660_FS is not set -+# CONFIG_UDF_FS is not set -+ -+# -+# DOS/FAT/NT Filesystems -+# -+CONFIG_FAT_FS=y -+# CONFIG_MSDOS_FS is not set -+CONFIG_VFAT_FS=y -+CONFIG_FAT_DEFAULT_CODEPAGE=437 -+CONFIG_FAT_DEFAULT_IOCHARSET="iso8859-1" -+# CONFIG_NTFS_FS is not set -+ -+# -+# Pseudo filesystems -+# -+CONFIG_PROC_FS=y -+CONFIG_PROC_SYSCTL=y -+CONFIG_PROC_PAGE_MONITOR=y -+CONFIG_SYSFS=y -+CONFIG_TMPFS=y -+CONFIG_TMPFS_POSIX_ACL=y -+# CONFIG_HUGETLB_PAGE is not set -+# CONFIG_CONFIGFS_FS is not set -+ -+# -+# Miscellaneous filesystems -+# -+# CONFIG_ADFS_FS is not set -+# CONFIG_AFFS_FS is not set -+# CONFIG_HFS_FS is not set -+# CONFIG_HFSPLUS_FS is not set -+# CONFIG_BEFS_FS is not set -+# CONFIG_BFS_FS is not set -+# CONFIG_EFS_FS is not set -+CONFIG_JFFS2_FS=y -+CONFIG_JFFS2_FS_DEBUG=0 -+CONFIG_JFFS2_FS_WRITEBUFFER=y -+# CONFIG_JFFS2_FS_WBUF_VERIFY is not set -+CONFIG_JFFS2_SUMMARY=y -+# CONFIG_JFFS2_FS_XATTR is not set -+# CONFIG_JFFS2_COMPRESSION_OPTIONS is not set -+CONFIG_JFFS2_ZLIB=y -+# CONFIG_JFFS2_LZO is not set -+CONFIG_JFFS2_RTIME=y -+# CONFIG_JFFS2_RUBIN is not set -+CONFIG_CRAMFS=y -+# CONFIG_VXFS_FS is not set -+# CONFIG_MINIX_FS is not set -+# CONFIG_OMFS_FS is not set -+# CONFIG_HPFS_FS is not set -+# CONFIG_QNX4FS_FS is not set -+CONFIG_ROMFS_FS=y -+# CONFIG_SYSV_FS is not set -+# CONFIG_UFS_FS is not set -+CONFIG_NETWORK_FILESYSTEMS=y -+# CONFIG_NFS_FS is not set -+# CONFIG_NFSD is not set -+# CONFIG_SMB_FS is not set -+# CONFIG_CIFS is not set -+# CONFIG_NCP_FS is not set -+# CONFIG_CODA_FS is not set -+# CONFIG_AFS_FS is not set -+ -+# -+# Partition Types -+# -+CONFIG_PARTITION_ADVANCED=y -+# CONFIG_ACORN_PARTITION is not set -+# CONFIG_OSF_PARTITION is not set -+# CONFIG_AMIGA_PARTITION is not set -+# CONFIG_ATARI_PARTITION is not set -+# CONFIG_MAC_PARTITION is not set -+CONFIG_MSDOS_PARTITION=y -+# CONFIG_BSD_DISKLABEL is not set -+# CONFIG_MINIX_SUBPARTITION is not set -+# CONFIG_SOLARIS_X86_PARTITION is not set -+# CONFIG_UNIXWARE_DISKLABEL is not set -+# CONFIG_LDM_PARTITION is not set -+# CONFIG_SGI_PARTITION is not set -+# CONFIG_ULTRIX_PARTITION is not set -+# CONFIG_SUN_PARTITION is not set -+# CONFIG_KARMA_PARTITION is not set -+# CONFIG_EFI_PARTITION is not set -+# CONFIG_SYSV68_PARTITION is not set -+CONFIG_NLS=y -+CONFIG_NLS_DEFAULT="iso8859-1" -+CONFIG_NLS_CODEPAGE_437=y -+# CONFIG_NLS_CODEPAGE_737 is not set -+# CONFIG_NLS_CODEPAGE_775 is not set -+# CONFIG_NLS_CODEPAGE_850 is not set -+# CONFIG_NLS_CODEPAGE_852 is not set -+# CONFIG_NLS_CODEPAGE_855 is not set -+# CONFIG_NLS_CODEPAGE_857 is not set -+# CONFIG_NLS_CODEPAGE_860 is not set -+# CONFIG_NLS_CODEPAGE_861 is not set -+# CONFIG_NLS_CODEPAGE_862 is not set -+# CONFIG_NLS_CODEPAGE_863 is not set -+# CONFIG_NLS_CODEPAGE_864 is not set -+# CONFIG_NLS_CODEPAGE_865 is not set -+# CONFIG_NLS_CODEPAGE_866 is not set -+# CONFIG_NLS_CODEPAGE_869 is not set -+# CONFIG_NLS_CODEPAGE_936 is not set -+# CONFIG_NLS_CODEPAGE_950 is not set -+# CONFIG_NLS_CODEPAGE_932 is not set -+# CONFIG_NLS_CODEPAGE_949 is not set -+# CONFIG_NLS_CODEPAGE_874 is not set -+# CONFIG_NLS_ISO8859_8 is not set -+# CONFIG_NLS_CODEPAGE_1250 is not set -+# CONFIG_NLS_CODEPAGE_1251 is not set -+# CONFIG_NLS_ASCII is not set -+CONFIG_NLS_ISO8859_1=y -+# CONFIG_NLS_ISO8859_2 is not set -+# CONFIG_NLS_ISO8859_3 is not set -+# CONFIG_NLS_ISO8859_4 is not set -+# CONFIG_NLS_ISO8859_5 is not set -+# CONFIG_NLS_ISO8859_6 is not set -+# CONFIG_NLS_ISO8859_7 is not set -+# CONFIG_NLS_ISO8859_9 is not set -+# CONFIG_NLS_ISO8859_13 is not set -+# CONFIG_NLS_ISO8859_14 is not set -+# CONFIG_NLS_ISO8859_15 is not set -+# CONFIG_NLS_KOI8_R is not set -+# CONFIG_NLS_KOI8_U is not set -+CONFIG_NLS_UTF8=y -+# CONFIG_DLM is not set -+ -+# -+# Kernel hacking -+# -+CONFIG_PRINTK_TIME=y -+CONFIG_ENABLE_WARN_DEPRECATED=y -+CONFIG_ENABLE_MUST_CHECK=y -+CONFIG_FRAME_WARN=1024 -+CONFIG_MAGIC_SYSRQ=y -+# CONFIG_UNUSED_SYMBOLS is not set -+# CONFIG_DEBUG_FS is not set -+# CONFIG_HEADERS_CHECK is not set -+CONFIG_DEBUG_KERNEL=y -+# CONFIG_DEBUG_SHIRQ is not set -+CONFIG_DETECT_SOFTLOCKUP=y -+# CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC is not set -+CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC_VALUE=0 -+CONFIG_SCHED_DEBUG=y -+# CONFIG_SCHEDSTATS is not set -+# CONFIG_TIMER_STATS is not set -+# CONFIG_DEBUG_OBJECTS is not set -+# CONFIG_SLUB_DEBUG_ON is not set -+# CONFIG_SLUB_STATS is not set -+CONFIG_DEBUG_RT_MUTEXES=y -+CONFIG_DEBUG_PI_LIST=y -+# CONFIG_RT_MUTEX_TESTER is not set -+CONFIG_DEBUG_SPINLOCK=y -+CONFIG_DEBUG_MUTEXES=y -+# CONFIG_DEBUG_LOCK_ALLOC is not set -+# CONFIG_PROVE_LOCKING is not set -+# CONFIG_LOCK_STAT is not set -+CONFIG_DEBUG_SPINLOCK_SLEEP=y -+# CONFIG_DEBUG_LOCKING_API_SELFTESTS is not set -+# CONFIG_DEBUG_KOBJECT is not set -+CONFIG_DEBUG_BUGVERBOSE=y -+CONFIG_DEBUG_INFO=y -+# CONFIG_DEBUG_VM is not set -+# CONFIG_DEBUG_WRITECOUNT is not set -+CONFIG_DEBUG_MEMORY_INIT=y -+# CONFIG_DEBUG_LIST is not set -+# CONFIG_DEBUG_SG is not set -+CONFIG_FRAME_POINTER=y -+# CONFIG_BOOT_PRINTK_DELAY is not set -+# CONFIG_RCU_TORTURE_TEST is not set -+# CONFIG_RCU_CPU_STALL_DETECTOR is not set -+# CONFIG_BACKTRACE_SELF_TEST is not set -+# CONFIG_DEBUG_BLOCK_EXT_DEVT is not set -+# CONFIG_FAULT_INJECTION is not set -+# CONFIG_LATENCYTOP is not set -+CONFIG_SYSCTL_SYSCALL_CHECK=y -+CONFIG_HAVE_FUNCTION_TRACER=y -+ -+# -+# Tracers -+# -+# CONFIG_FUNCTION_TRACER is not set -+# CONFIG_SCHED_TRACER is not set -+# CONFIG_CONTEXT_SWITCH_TRACER is not set -+# CONFIG_BOOT_TRACER is not set -+# CONFIG_STACK_TRACER is not set -+CONFIG_DYNAMIC_PRINTK_DEBUG=y -+# CONFIG_SAMPLES is not set -+CONFIG_HAVE_ARCH_KGDB=y -+# CONFIG_KGDB is not set -+CONFIG_DEBUG_USER=y -+CONFIG_DEBUG_ERRORS=y -+# CONFIG_DEBUG_STACK_USAGE is not set -+CONFIG_DEBUG_LL=y -+# CONFIG_DEBUG_ICEDCC is not set -+CONFIG_DEBUG_S3C_PORT=y -+CONFIG_DEBUG_S3C_UART=3 -+ -+# -+# Security options -+# -+# CONFIG_KEYS is not set -+# CONFIG_SECURITY is not set -+# CONFIG_SECURITYFS is not set -+# CONFIG_SECURITY_FILE_CAPABILITIES is not set -+CONFIG_CRYPTO=y -+ -+# -+# Crypto core or helper -+# -+# CONFIG_CRYPTO_FIPS is not set -+CONFIG_CRYPTO_ALGAPI=y -+CONFIG_CRYPTO_AEAD=y -+CONFIG_CRYPTO_BLKCIPHER=y -+CONFIG_CRYPTO_HASH=y -+CONFIG_CRYPTO_RNG=y -+CONFIG_CRYPTO_MANAGER=y -+# CONFIG_CRYPTO_GF128MUL is not set -+# CONFIG_CRYPTO_NULL is not set -+# CONFIG_CRYPTO_CRYPTD is not set -+# CONFIG_CRYPTO_AUTHENC is not set -+# CONFIG_CRYPTO_TEST is not set -+ -+# -+# Authenticated Encryption with Associated Data -+# -+# CONFIG_CRYPTO_CCM is not set -+# CONFIG_CRYPTO_GCM is not set -+# CONFIG_CRYPTO_SEQIV is not set -+ -+# -+# Block modes -+# -+# CONFIG_CRYPTO_CBC is not set -+# CONFIG_CRYPTO_CTR is not set -+# CONFIG_CRYPTO_CTS is not set -+CONFIG_CRYPTO_ECB=y -+# CONFIG_CRYPTO_LRW is not set -+# CONFIG_CRYPTO_PCBC is not set -+# CONFIG_CRYPTO_XTS is not set -+ -+# -+# Hash modes -+# -+# CONFIG_CRYPTO_HMAC is not set -+# CONFIG_CRYPTO_XCBC is not set -+ -+# -+# Digest -+# -+# CONFIG_CRYPTO_CRC32C is not set -+# CONFIG_CRYPTO_MD4 is not set -+CONFIG_CRYPTO_MD5=y -+# CONFIG_CRYPTO_MICHAEL_MIC is not set -+# CONFIG_CRYPTO_RMD128 is not set -+# CONFIG_CRYPTO_RMD160 is not set -+# CONFIG_CRYPTO_RMD256 is not set -+# CONFIG_CRYPTO_RMD320 is not set -+CONFIG_CRYPTO_SHA1=y -+# CONFIG_CRYPTO_SHA256 is not set -+# CONFIG_CRYPTO_SHA512 is not set -+# CONFIG_CRYPTO_TGR192 is not set -+# CONFIG_CRYPTO_WP512 is not set -+ -+# -+# Ciphers -+# -+CONFIG_CRYPTO_AES=y -+# CONFIG_CRYPTO_ANUBIS is not set -+CONFIG_CRYPTO_ARC4=y -+# CONFIG_CRYPTO_BLOWFISH is not set -+# CONFIG_CRYPTO_CAMELLIA is not set -+# CONFIG_CRYPTO_CAST5 is not set -+# CONFIG_CRYPTO_CAST6 is not set -+# CONFIG_CRYPTO_DES is not set -+# CONFIG_CRYPTO_FCRYPT is not set -+# CONFIG_CRYPTO_KHAZAD is not set -+# CONFIG_CRYPTO_SALSA20 is not set -+# CONFIG_CRYPTO_SEED is not set -+# CONFIG_CRYPTO_SERPENT is not set -+# CONFIG_CRYPTO_TEA is not set -+# CONFIG_CRYPTO_TWOFISH is not set -+ -+# -+# Compression -+# -+# CONFIG_CRYPTO_DEFLATE is not set -+# CONFIG_CRYPTO_LZO is not set -+ -+# -+# Random Number Generation -+# -+# CONFIG_CRYPTO_ANSI_CPRNG is not set -+CONFIG_CRYPTO_HW=y -+ -+# -+# Library routines -+# -+CONFIG_BITREVERSE=y -+CONFIG_CRC_CCITT=y -+# CONFIG_CRC16 is not set -+# CONFIG_CRC_T10DIF is not set -+# CONFIG_CRC_ITU_T is not set -+CONFIG_CRC32=y -+# CONFIG_CRC7 is not set -+# CONFIG_LIBCRC32C is not set -+CONFIG_ZLIB_INFLATE=y -+CONFIG_ZLIB_DEFLATE=y -+CONFIG_PLIST=y -+CONFIG_HAS_IOMEM=y -+CONFIG_HAS_DMA=y ---- /dev/null -+++ b/arch/arm/configs/s3c6400_defconfig -@@ -0,0 +1,845 @@ -+# -+# Automatically generated make config: don't edit -+# Linux kernel version: 2.6.28-rc3 -+# Mon Nov 3 10:10:30 2008 -+# -+CONFIG_ARM=y -+CONFIG_SYS_SUPPORTS_APM_EMULATION=y -+CONFIG_GENERIC_GPIO=y -+# CONFIG_GENERIC_TIME is not set -+# CONFIG_GENERIC_CLOCKEVENTS is not set -+CONFIG_MMU=y -+CONFIG_NO_IOPORT=y -+CONFIG_GENERIC_HARDIRQS=y -+CONFIG_STACKTRACE_SUPPORT=y -+CONFIG_HAVE_LATENCYTOP_SUPPORT=y -+CONFIG_LOCKDEP_SUPPORT=y -+CONFIG_TRACE_IRQFLAGS_SUPPORT=y -+CONFIG_HARDIRQS_SW_RESEND=y -+CONFIG_GENERIC_IRQ_PROBE=y -+CONFIG_RWSEM_GENERIC_SPINLOCK=y -+# CONFIG_ARCH_HAS_ILOG2_U32 is not set -+# CONFIG_ARCH_HAS_ILOG2_U64 is not set -+CONFIG_GENERIC_HWEIGHT=y -+CONFIG_GENERIC_CALIBRATE_DELAY=y -+CONFIG_GENERIC_HARDIRQS_NO__DO_IRQ=y -+CONFIG_VECTORS_BASE=0xffff0000 -+CONFIG_DEFCONFIG_LIST="/lib/modules/$UNAME_RELEASE/.config" -+ -+# -+# General setup -+# -+CONFIG_EXPERIMENTAL=y -+CONFIG_BROKEN_ON_SMP=y -+CONFIG_INIT_ENV_ARG_LIMIT=32 -+CONFIG_LOCALVERSION="" -+CONFIG_LOCALVERSION_AUTO=y -+CONFIG_SWAP=y -+# CONFIG_SYSVIPC is not set -+# CONFIG_BSD_PROCESS_ACCT is not set -+# CONFIG_IKCONFIG is not set -+CONFIG_LOG_BUF_SHIFT=17 -+# CONFIG_CGROUPS is not set -+# CONFIG_GROUP_SCHED is not set -+CONFIG_SYSFS_DEPRECATED=y -+CONFIG_SYSFS_DEPRECATED_V2=y -+# CONFIG_RELAY is not set -+CONFIG_NAMESPACES=y -+# CONFIG_UTS_NS is not set -+# CONFIG_USER_NS is not set -+# CONFIG_PID_NS is not set -+CONFIG_BLK_DEV_INITRD=y -+CONFIG_INITRAMFS_SOURCE="" -+CONFIG_CC_OPTIMIZE_FOR_SIZE=y -+CONFIG_SYSCTL=y -+# CONFIG_EMBEDDED is not set -+CONFIG_UID16=y -+CONFIG_SYSCTL_SYSCALL=y -+CONFIG_KALLSYMS=y -+CONFIG_KALLSYMS_ALL=y -+# CONFIG_KALLSYMS_EXTRA_PASS is not set -+CONFIG_HOTPLUG=y -+CONFIG_PRINTK=y -+CONFIG_BUG=y -+CONFIG_ELF_CORE=y -+CONFIG_COMPAT_BRK=y -+CONFIG_BASE_FULL=y -+CONFIG_FUTEX=y -+CONFIG_ANON_INODES=y -+CONFIG_EPOLL=y -+CONFIG_SIGNALFD=y -+CONFIG_TIMERFD=y -+CONFIG_EVENTFD=y -+CONFIG_SHMEM=y -+CONFIG_AIO=y -+CONFIG_VM_EVENT_COUNTERS=y -+CONFIG_SLUB_DEBUG=y -+# CONFIG_SLAB is not set -+CONFIG_SLUB=y -+# CONFIG_SLOB is not set -+# CONFIG_PROFILING is not set -+# CONFIG_MARKERS is not set -+CONFIG_HAVE_OPROFILE=y -+# CONFIG_KPROBES is not set -+CONFIG_HAVE_KPROBES=y -+CONFIG_HAVE_KRETPROBES=y -+CONFIG_HAVE_CLK=y -+CONFIG_HAVE_GENERIC_DMA_COHERENT=y -+CONFIG_SLABINFO=y -+CONFIG_RT_MUTEXES=y -+# CONFIG_TINY_SHMEM is not set -+CONFIG_BASE_SMALL=0 -+CONFIG_MODULES=y -+# CONFIG_MODULE_FORCE_LOAD is not set -+CONFIG_MODULE_UNLOAD=y -+# CONFIG_MODULE_FORCE_UNLOAD is not set -+# CONFIG_MODVERSIONS is not set -+# CONFIG_MODULE_SRCVERSION_ALL is not set -+CONFIG_KMOD=y -+CONFIG_BLOCK=y -+CONFIG_LBD=y -+# CONFIG_BLK_DEV_IO_TRACE is not set -+CONFIG_LSF=y -+# CONFIG_BLK_DEV_BSG is not set -+# CONFIG_BLK_DEV_INTEGRITY is not set -+ -+# -+# IO Schedulers -+# -+CONFIG_IOSCHED_NOOP=y -+CONFIG_IOSCHED_AS=y -+CONFIG_IOSCHED_DEADLINE=y -+CONFIG_IOSCHED_CFQ=y -+# CONFIG_DEFAULT_AS is not set -+# CONFIG_DEFAULT_DEADLINE is not set -+CONFIG_DEFAULT_CFQ=y -+# CONFIG_DEFAULT_NOOP is not set -+CONFIG_DEFAULT_IOSCHED="cfq" -+CONFIG_CLASSIC_RCU=y -+# CONFIG_FREEZER is not set -+ -+# -+# System Type -+# -+# CONFIG_ARCH_AAEC2000 is not set -+# CONFIG_ARCH_INTEGRATOR is not set -+# CONFIG_ARCH_REALVIEW is not set -+# CONFIG_ARCH_VERSATILE is not set -+# CONFIG_ARCH_AT91 is not set -+# CONFIG_ARCH_CLPS7500 is not set -+# CONFIG_ARCH_CLPS711X is not set -+# CONFIG_ARCH_EBSA110 is not set -+# CONFIG_ARCH_EP93XX is not set -+# CONFIG_ARCH_FOOTBRIDGE is not set -+# CONFIG_ARCH_NETX is not set -+# CONFIG_ARCH_H720X is not set -+# CONFIG_ARCH_IMX is not set -+# CONFIG_ARCH_IOP13XX is not set -+# CONFIG_ARCH_IOP32X is not set -+# CONFIG_ARCH_IOP33X is not set -+# CONFIG_ARCH_IXP23XX is not set -+# CONFIG_ARCH_IXP2000 is not set -+# CONFIG_ARCH_IXP4XX is not set -+# CONFIG_ARCH_L7200 is not set -+# CONFIG_ARCH_KIRKWOOD is not set -+# CONFIG_ARCH_KS8695 is not set -+# CONFIG_ARCH_NS9XXX is not set -+# CONFIG_ARCH_LOKI is not set -+# CONFIG_ARCH_MV78XX0 is not set -+# CONFIG_ARCH_MXC is not set -+# CONFIG_ARCH_ORION5X is not set -+# CONFIG_ARCH_PNX4008 is not set -+# CONFIG_ARCH_PXA is not set -+# CONFIG_ARCH_RPC is not set -+# CONFIG_ARCH_SA1100 is not set -+# CONFIG_ARCH_S3C2410 is not set -+CONFIG_ARCH_S3C64XX=y -+# CONFIG_ARCH_SHARK is not set -+# CONFIG_ARCH_LH7A40X is not set -+# CONFIG_ARCH_DAVINCI is not set -+# CONFIG_ARCH_OMAP is not set -+# CONFIG_ARCH_MSM is not set -+CONFIG_PLAT_S3C64XX=y -+CONFIG_CPU_S3C6400_INIT=y -+CONFIG_CPU_S3C6400_CLOCK=y -+CONFIG_S3C64XX_SETUP_I2C0=y -+CONFIG_S3C64XX_SETUP_I2C1=y -+CONFIG_PLAT_S3C=y -+ -+# -+# Boot options -+# -+CONFIG_S3C_BOOT_ERROR_RESET=y -+ -+# -+# Power management -+# -+CONFIG_S3C_LOWLEVEL_UART_PORT=0 -+CONFIG_S3C_GPIO_SPACE=0 -+CONFIG_S3C_GPIO_TRACK=y -+CONFIG_S3C_GPIO_PULL_UPDOWN=y -+CONFIG_S3C_GPIO_CFG_S3C24XX=y -+CONFIG_S3C_GPIO_CFG_S3C64XX=y -+CONFIG_S3C_DEV_HSMMC=y -+CONFIG_S3C_DEV_HSMMC1=y -+CONFIG_S3C_DEV_I2C1=y -+CONFIG_CPU_S3C6410=y -+CONFIG_S3C6410_SETUP_SDHCI=y -+CONFIG_MACH_SMDK6410=y -+CONFIG_SMDK6410_SD_CH0=y -+# CONFIG_SMDK6410_SD_CH1 is not set -+ -+# -+# Processor Type -+# -+CONFIG_CPU_32=y -+CONFIG_CPU_V6=y -+CONFIG_CPU_32v6K=y -+CONFIG_CPU_32v6=y -+CONFIG_CPU_ABRT_EV6=y -+CONFIG_CPU_PABRT_NOIFAR=y -+CONFIG_CPU_CACHE_V6=y -+CONFIG_CPU_CACHE_VIPT=y -+CONFIG_CPU_COPY_V6=y -+CONFIG_CPU_TLB_V6=y -+CONFIG_CPU_HAS_ASID=y -+CONFIG_CPU_CP15=y -+CONFIG_CPU_CP15_MMU=y -+ -+# -+# Processor Features -+# -+CONFIG_ARM_THUMB=y -+# CONFIG_CPU_ICACHE_DISABLE is not set -+# CONFIG_CPU_DCACHE_DISABLE is not set -+# CONFIG_CPU_BPREDICT_DISABLE is not set -+# CONFIG_OUTER_CACHE is not set -+CONFIG_ARM_VIC=y -+ -+# -+# Bus support -+# -+# CONFIG_PCI_SYSCALL is not set -+# CONFIG_ARCH_SUPPORTS_MSI is not set -+# CONFIG_PCCARD is not set -+ -+# -+# Kernel Features -+# -+CONFIG_VMSPLIT_3G=y -+# CONFIG_VMSPLIT_2G is not set -+# CONFIG_VMSPLIT_1G is not set -+CONFIG_PAGE_OFFSET=0xC0000000 -+# CONFIG_PREEMPT is not set -+CONFIG_HZ=100 -+CONFIG_AEABI=y -+CONFIG_OABI_COMPAT=y -+CONFIG_ARCH_FLATMEM_HAS_HOLES=y -+# CONFIG_ARCH_SPARSEMEM_DEFAULT is not set -+# CONFIG_ARCH_SELECT_MEMORY_MODEL is not set -+CONFIG_SELECT_MEMORY_MODEL=y -+CONFIG_FLATMEM_MANUAL=y -+# CONFIG_DISCONTIGMEM_MANUAL is not set -+# CONFIG_SPARSEMEM_MANUAL is not set -+CONFIG_FLATMEM=y -+CONFIG_FLAT_NODE_MEM_MAP=y -+CONFIG_PAGEFLAGS_EXTENDED=y -+CONFIG_SPLIT_PTLOCK_CPUS=4 -+# CONFIG_RESOURCES_64BIT is not set -+# CONFIG_PHYS_ADDR_T_64BIT is not set -+CONFIG_ZONE_DMA_FLAG=0 -+CONFIG_VIRT_TO_BUS=y -+CONFIG_UNEVICTABLE_LRU=y -+CONFIG_ALIGNMENT_TRAP=y -+ -+# -+# Boot options -+# -+CONFIG_ZBOOT_ROM_TEXT=0 -+CONFIG_ZBOOT_ROM_BSS=0 -+CONFIG_CMDLINE="console=ttySAC0,115200 root=/dev/ram init=/bin/bash initrd=0x51000000,4M" -+# CONFIG_XIP_KERNEL is not set -+# CONFIG_KEXEC is not set -+ -+# -+# CPU Power Management -+# -+# CONFIG_CPU_IDLE is not set -+ -+# -+# Floating point emulation -+# -+ -+# -+# At least one emulation must be selected -+# -+# CONFIG_FPE_NWFPE is not set -+# CONFIG_FPE_FASTFPE is not set -+CONFIG_VFP=y -+ -+# -+# Userspace binary formats -+# -+CONFIG_BINFMT_ELF=y -+# CONFIG_CORE_DUMP_DEFAULT_ELF_HEADERS is not set -+CONFIG_HAVE_AOUT=y -+# CONFIG_BINFMT_AOUT is not set -+# CONFIG_BINFMT_MISC is not set -+ -+# -+# Power management options -+# -+# CONFIG_PM is not set -+CONFIG_ARCH_SUSPEND_POSSIBLE=y -+# CONFIG_NET is not set -+ -+# -+# Device Drivers -+# -+ -+# -+# Generic Driver Options -+# -+CONFIG_UEVENT_HELPER_PATH="/sbin/hotplug" -+CONFIG_STANDALONE=y -+CONFIG_PREVENT_FIRMWARE_BUILD=y -+CONFIG_FW_LOADER=y -+CONFIG_FIRMWARE_IN_KERNEL=y -+CONFIG_EXTRA_FIRMWARE="" -+# CONFIG_DEBUG_DRIVER is not set -+# CONFIG_DEBUG_DEVRES is not set -+# CONFIG_SYS_HYPERVISOR is not set -+# CONFIG_MTD is not set -+# CONFIG_PARPORT is not set -+CONFIG_BLK_DEV=y -+# CONFIG_BLK_DEV_COW_COMMON is not set -+CONFIG_BLK_DEV_LOOP=y -+# CONFIG_BLK_DEV_CRYPTOLOOP is not set -+CONFIG_BLK_DEV_RAM=y -+CONFIG_BLK_DEV_RAM_COUNT=16 -+CONFIG_BLK_DEV_RAM_SIZE=4096 -+# CONFIG_BLK_DEV_XIP is not set -+# CONFIG_CDROM_PKTCDVD is not set -+CONFIG_MISC_DEVICES=y -+# CONFIG_EEPROM_93CX6 is not set -+# CONFIG_ENCLOSURE_SERVICES is not set -+CONFIG_HAVE_IDE=y -+# CONFIG_IDE is not set -+ -+# -+# SCSI device support -+# -+# CONFIG_RAID_ATTRS is not set -+# CONFIG_SCSI is not set -+# CONFIG_SCSI_DMA is not set -+# CONFIG_SCSI_NETLINK is not set -+# CONFIG_ATA is not set -+# CONFIG_MD is not set -+ -+# -+# Input device support -+# -+CONFIG_INPUT=y -+# CONFIG_INPUT_FF_MEMLESS is not set -+# CONFIG_INPUT_POLLDEV is not set -+ -+# -+# Userland interfaces -+# -+CONFIG_INPUT_MOUSEDEV=y -+CONFIG_INPUT_MOUSEDEV_PSAUX=y -+CONFIG_INPUT_MOUSEDEV_SCREEN_X=1024 -+CONFIG_INPUT_MOUSEDEV_SCREEN_Y=768 -+# CONFIG_INPUT_JOYDEV is not set -+# CONFIG_INPUT_EVDEV is not set -+# CONFIG_INPUT_EVBUG is not set -+ -+# -+# Input Device Drivers -+# -+CONFIG_INPUT_KEYBOARD=y -+CONFIG_KEYBOARD_ATKBD=y -+# CONFIG_KEYBOARD_SUNKBD is not set -+# CONFIG_KEYBOARD_LKKBD is not set -+# CONFIG_KEYBOARD_XTKBD is not set -+# CONFIG_KEYBOARD_NEWTON is not set -+# CONFIG_KEYBOARD_STOWAWAY is not set -+# CONFIG_KEYBOARD_GPIO is not set -+CONFIG_INPUT_MOUSE=y -+CONFIG_MOUSE_PS2=y -+CONFIG_MOUSE_PS2_ALPS=y -+CONFIG_MOUSE_PS2_LOGIPS2PP=y -+CONFIG_MOUSE_PS2_SYNAPTICS=y -+CONFIG_MOUSE_PS2_LIFEBOOK=y -+CONFIG_MOUSE_PS2_TRACKPOINT=y -+# CONFIG_MOUSE_PS2_ELANTECH is not set -+# CONFIG_MOUSE_PS2_TOUCHKIT is not set -+# CONFIG_MOUSE_SERIAL is not set -+# CONFIG_MOUSE_APPLETOUCH is not set -+# CONFIG_MOUSE_BCM5974 is not set -+# CONFIG_MOUSE_VSXXXAA is not set -+# CONFIG_MOUSE_GPIO is not set -+# CONFIG_INPUT_JOYSTICK is not set -+# CONFIG_INPUT_TABLET is not set -+# CONFIG_INPUT_TOUCHSCREEN is not set -+# CONFIG_INPUT_MISC is not set -+ -+# -+# Hardware I/O ports -+# -+CONFIG_SERIO=y -+CONFIG_SERIO_SERPORT=y -+CONFIG_SERIO_LIBPS2=y -+# CONFIG_SERIO_RAW is not set -+# CONFIG_GAMEPORT is not set -+ -+# -+# Character devices -+# -+CONFIG_VT=y -+CONFIG_CONSOLE_TRANSLATIONS=y -+CONFIG_VT_CONSOLE=y -+CONFIG_HW_CONSOLE=y -+# CONFIG_VT_HW_CONSOLE_BINDING is not set -+CONFIG_DEVKMEM=y -+# CONFIG_SERIAL_NONSTANDARD is not set -+ -+# -+# Serial drivers -+# -+CONFIG_SERIAL_8250=y -+# CONFIG_SERIAL_8250_CONSOLE is not set -+CONFIG_SERIAL_8250_NR_UARTS=4 -+CONFIG_SERIAL_8250_RUNTIME_UARTS=4 -+# CONFIG_SERIAL_8250_EXTENDED is not set -+ -+# -+# Non-8250 serial port support -+# -+CONFIG_SERIAL_SAMSUNG=y -+CONFIG_SERIAL_SAMSUNG_UARTS=4 -+# CONFIG_SERIAL_SAMSUNG_DEBUG is not set -+CONFIG_SERIAL_SAMSUNG_CONSOLE=y -+CONFIG_SERIAL_S3C6400=y -+CONFIG_SERIAL_CORE=y -+CONFIG_SERIAL_CORE_CONSOLE=y -+CONFIG_UNIX98_PTYS=y -+CONFIG_LEGACY_PTYS=y -+CONFIG_LEGACY_PTY_COUNT=256 -+# CONFIG_IPMI_HANDLER is not set -+CONFIG_HW_RANDOM=y -+# CONFIG_NVRAM is not set -+# CONFIG_R3964 is not set -+# CONFIG_RAW_DRIVER is not set -+# CONFIG_TCG_TPM is not set -+CONFIG_I2C=y -+CONFIG_I2C_BOARDINFO=y -+CONFIG_I2C_CHARDEV=y -+CONFIG_I2C_HELPER_AUTO=y -+ -+# -+# I2C Hardware Bus support -+# -+ -+# -+# I2C system bus drivers (mostly embedded / system-on-chip) -+# -+# CONFIG_I2C_GPIO is not set -+# CONFIG_I2C_OCORES is not set -+CONFIG_I2C_S3C2410=y -+# CONFIG_I2C_SIMTEC is not set -+ -+# -+# External I2C/SMBus adapter drivers -+# -+# CONFIG_I2C_PARPORT_LIGHT is not set -+# CONFIG_I2C_TAOS_EVM is not set -+ -+# -+# Other I2C/SMBus bus drivers -+# -+# CONFIG_I2C_PCA_PLATFORM is not set -+# CONFIG_I2C_STUB is not set -+ -+# -+# Miscellaneous I2C Chip support -+# -+# CONFIG_DS1682 is not set -+CONFIG_AT24=y -+# CONFIG_SENSORS_EEPROM is not set -+# CONFIG_SENSORS_PCF8574 is not set -+# CONFIG_PCF8575 is not set -+# CONFIG_SENSORS_PCA9539 is not set -+# CONFIG_SENSORS_PCF8591 is not set -+# CONFIG_TPS65010 is not set -+# CONFIG_SENSORS_MAX6875 is not set -+# CONFIG_SENSORS_TSL2550 is not set -+# CONFIG_I2C_DEBUG_CORE is not set -+# CONFIG_I2C_DEBUG_ALGO is not set -+# CONFIG_I2C_DEBUG_BUS is not set -+# CONFIG_I2C_DEBUG_CHIP is not set -+# CONFIG_SPI is not set -+CONFIG_ARCH_REQUIRE_GPIOLIB=y -+CONFIG_GPIOLIB=y -+# CONFIG_DEBUG_GPIO is not set -+# CONFIG_GPIO_SYSFS is not set -+ -+# -+# I2C GPIO expanders: -+# -+# CONFIG_GPIO_MAX732X is not set -+# CONFIG_GPIO_PCA953X is not set -+# CONFIG_GPIO_PCF857X is not set -+ -+# -+# PCI GPIO expanders: -+# -+ -+# -+# SPI GPIO expanders: -+# -+# CONFIG_W1 is not set -+# CONFIG_POWER_SUPPLY is not set -+CONFIG_HWMON=y -+# CONFIG_HWMON_VID is not set -+# CONFIG_SENSORS_AD7414 is not set -+# CONFIG_SENSORS_AD7418 is not set -+# CONFIG_SENSORS_ADM1021 is not set -+# CONFIG_SENSORS_ADM1025 is not set -+# CONFIG_SENSORS_ADM1026 is not set -+# CONFIG_SENSORS_ADM1029 is not set -+# CONFIG_SENSORS_ADM1031 is not set -+# CONFIG_SENSORS_ADM9240 is not set -+# CONFIG_SENSORS_ADT7470 is not set -+# CONFIG_SENSORS_ADT7473 is not set -+# CONFIG_SENSORS_ATXP1 is not set -+# CONFIG_SENSORS_DS1621 is not set -+# CONFIG_SENSORS_F71805F is not set -+# CONFIG_SENSORS_F71882FG is not set -+# CONFIG_SENSORS_F75375S is not set -+# CONFIG_SENSORS_GL518SM is not set -+# CONFIG_SENSORS_GL520SM is not set -+# CONFIG_SENSORS_IT87 is not set -+# CONFIG_SENSORS_LM63 is not set -+# CONFIG_SENSORS_LM75 is not set -+# CONFIG_SENSORS_LM77 is not set -+# CONFIG_SENSORS_LM78 is not set -+# CONFIG_SENSORS_LM80 is not set -+# CONFIG_SENSORS_LM83 is not set -+# CONFIG_SENSORS_LM85 is not set -+# CONFIG_SENSORS_LM87 is not set -+# CONFIG_SENSORS_LM90 is not set -+# CONFIG_SENSORS_LM92 is not set -+# CONFIG_SENSORS_LM93 is not set -+# CONFIG_SENSORS_MAX1619 is not set -+# CONFIG_SENSORS_MAX6650 is not set -+# CONFIG_SENSORS_PC87360 is not set -+# CONFIG_SENSORS_PC87427 is not set -+# CONFIG_SENSORS_DME1737 is not set -+# CONFIG_SENSORS_SMSC47M1 is not set -+# CONFIG_SENSORS_SMSC47M192 is not set -+# CONFIG_SENSORS_SMSC47B397 is not set -+# CONFIG_SENSORS_ADS7828 is not set -+# CONFIG_SENSORS_THMC50 is not set -+# CONFIG_SENSORS_VT1211 is not set -+# CONFIG_SENSORS_W83781D is not set -+# CONFIG_SENSORS_W83791D is not set -+# CONFIG_SENSORS_W83792D is not set -+# CONFIG_SENSORS_W83793 is not set -+# CONFIG_SENSORS_W83L785TS is not set -+# CONFIG_SENSORS_W83L786NG is not set -+# CONFIG_SENSORS_W83627HF is not set -+# CONFIG_SENSORS_W83627EHF is not set -+# CONFIG_HWMON_DEBUG_CHIP is not set -+# CONFIG_THERMAL is not set -+# CONFIG_THERMAL_HWMON is not set -+# CONFIG_WATCHDOG is not set -+ -+# -+# Sonics Silicon Backplane -+# -+CONFIG_SSB_POSSIBLE=y -+# CONFIG_SSB is not set -+ -+# -+# Multifunction device drivers -+# -+# CONFIG_MFD_CORE is not set -+# CONFIG_MFD_SM501 is not set -+# CONFIG_MFD_ASIC3 is not set -+# CONFIG_HTC_EGPIO is not set -+# CONFIG_HTC_PASIC3 is not set -+# CONFIG_MFD_TMIO is not set -+# CONFIG_MFD_T7L66XB is not set -+# CONFIG_MFD_TC6387XB is not set -+# CONFIG_MFD_TC6393XB is not set -+# CONFIG_PMIC_DA903X is not set -+# CONFIG_MFD_WM8400 is not set -+# CONFIG_MFD_WM8350_I2C is not set -+ -+# -+# Multimedia devices -+# -+ -+# -+# Multimedia core support -+# -+# CONFIG_VIDEO_DEV is not set -+# CONFIG_VIDEO_MEDIA is not set -+ -+# -+# Multimedia drivers -+# -+# CONFIG_DAB is not set -+ -+# -+# Graphics support -+# -+# CONFIG_VGASTATE is not set -+# CONFIG_VIDEO_OUTPUT_CONTROL is not set -+# CONFIG_FB is not set -+# CONFIG_BACKLIGHT_LCD_SUPPORT is not set -+ -+# -+# Display device support -+# -+# CONFIG_DISPLAY_SUPPORT is not set -+ -+# -+# Console display driver support -+# -+# CONFIG_VGA_CONSOLE is not set -+CONFIG_DUMMY_CONSOLE=y -+# CONFIG_SOUND is not set -+CONFIG_HID_SUPPORT=y -+CONFIG_HID=y -+CONFIG_HID_DEBUG=y -+# CONFIG_HIDRAW is not set -+# CONFIG_HID_PID is not set -+ -+# -+# Special HID drivers -+# -+# CONFIG_HID_COMPAT is not set -+CONFIG_USB_SUPPORT=y -+CONFIG_USB_ARCH_HAS_HCD=y -+# CONFIG_USB_ARCH_HAS_OHCI is not set -+# CONFIG_USB_ARCH_HAS_EHCI is not set -+# CONFIG_USB is not set -+ -+# -+# Enable Host or Gadget support to see Inventra options -+# -+ -+# -+# NOTE: USB_STORAGE enables SCSI, and 'SCSI disk support' -+# -+# CONFIG_USB_GADGET is not set -+CONFIG_MMC=y -+CONFIG_MMC_DEBUG=y -+CONFIG_MMC_UNSAFE_RESUME=y -+ -+# -+# MMC/SD/SDIO Card Drivers -+# -+CONFIG_MMC_BLOCK=y -+CONFIG_MMC_BLOCK_BOUNCE=y -+CONFIG_SDIO_UART=y -+# CONFIG_MMC_TEST is not set -+ -+# -+# MMC/SD/SDIO Host Controller Drivers -+# -+CONFIG_MMC_SDHCI=y -+CONFIG_MMC_SDHCI_S3C=y -+# CONFIG_MEMSTICK is not set -+# CONFIG_ACCESSIBILITY is not set -+# CONFIG_NEW_LEDS is not set -+CONFIG_RTC_LIB=y -+# CONFIG_RTC_CLASS is not set -+# CONFIG_DMADEVICES is not set -+ -+# -+# Voltage and Current regulators -+# -+# CONFIG_REGULATOR is not set -+# CONFIG_REGULATOR_FIXED_VOLTAGE is not set -+# CONFIG_REGULATOR_VIRTUAL_CONSUMER is not set -+# CONFIG_REGULATOR_BQ24022 is not set -+# CONFIG_UIO is not set -+ -+# -+# File systems -+# -+CONFIG_EXT2_FS=y -+# CONFIG_EXT2_FS_XATTR is not set -+# CONFIG_EXT2_FS_XIP is not set -+CONFIG_EXT3_FS=y -+CONFIG_EXT3_FS_XATTR=y -+CONFIG_EXT3_FS_POSIX_ACL=y -+CONFIG_EXT3_FS_SECURITY=y -+# CONFIG_EXT4_FS is not set -+CONFIG_JBD=y -+CONFIG_FS_MBCACHE=y -+# CONFIG_REISERFS_FS is not set -+# CONFIG_JFS_FS is not set -+CONFIG_FS_POSIX_ACL=y -+CONFIG_FILE_LOCKING=y -+# CONFIG_XFS_FS is not set -+# CONFIG_GFS2_FS is not set -+CONFIG_DNOTIFY=y -+CONFIG_INOTIFY=y -+CONFIG_INOTIFY_USER=y -+# CONFIG_QUOTA is not set -+# CONFIG_AUTOFS_FS is not set -+# CONFIG_AUTOFS4_FS is not set -+# CONFIG_FUSE_FS is not set -+CONFIG_GENERIC_ACL=y -+ -+# -+# CD-ROM/DVD Filesystems -+# -+# CONFIG_ISO9660_FS is not set -+# CONFIG_UDF_FS is not set -+ -+# -+# DOS/FAT/NT Filesystems -+# -+# CONFIG_MSDOS_FS is not set -+# CONFIG_VFAT_FS is not set -+# CONFIG_NTFS_FS is not set -+ -+# -+# Pseudo filesystems -+# -+CONFIG_PROC_FS=y -+CONFIG_PROC_SYSCTL=y -+CONFIG_PROC_PAGE_MONITOR=y -+CONFIG_SYSFS=y -+CONFIG_TMPFS=y -+CONFIG_TMPFS_POSIX_ACL=y -+# CONFIG_HUGETLB_PAGE is not set -+# CONFIG_CONFIGFS_FS is not set -+ -+# -+# Miscellaneous filesystems -+# -+# CONFIG_ADFS_FS is not set -+# CONFIG_AFFS_FS is not set -+# CONFIG_HFS_FS is not set -+# CONFIG_HFSPLUS_FS is not set -+# CONFIG_BEFS_FS is not set -+# CONFIG_BFS_FS is not set -+# CONFIG_EFS_FS is not set -+CONFIG_CRAMFS=y -+# CONFIG_VXFS_FS is not set -+# CONFIG_MINIX_FS is not set -+# CONFIG_OMFS_FS is not set -+# CONFIG_HPFS_FS is not set -+# CONFIG_QNX4FS_FS is not set -+CONFIG_ROMFS_FS=y -+# CONFIG_SYSV_FS is not set -+# CONFIG_UFS_FS is not set -+ -+# -+# Partition Types -+# -+# CONFIG_PARTITION_ADVANCED is not set -+CONFIG_MSDOS_PARTITION=y -+# CONFIG_NLS is not set -+ -+# -+# Kernel hacking -+# -+# CONFIG_PRINTK_TIME is not set -+CONFIG_ENABLE_WARN_DEPRECATED=y -+CONFIG_ENABLE_MUST_CHECK=y -+CONFIG_FRAME_WARN=1024 -+CONFIG_MAGIC_SYSRQ=y -+# CONFIG_UNUSED_SYMBOLS is not set -+# CONFIG_DEBUG_FS is not set -+# CONFIG_HEADERS_CHECK is not set -+CONFIG_DEBUG_KERNEL=y -+# CONFIG_DEBUG_SHIRQ is not set -+CONFIG_DETECT_SOFTLOCKUP=y -+# CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC is not set -+CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC_VALUE=0 -+CONFIG_SCHED_DEBUG=y -+# CONFIG_SCHEDSTATS is not set -+# CONFIG_TIMER_STATS is not set -+# CONFIG_DEBUG_OBJECTS is not set -+# CONFIG_SLUB_DEBUG_ON is not set -+# CONFIG_SLUB_STATS is not set -+CONFIG_DEBUG_RT_MUTEXES=y -+CONFIG_DEBUG_PI_LIST=y -+# CONFIG_RT_MUTEX_TESTER is not set -+CONFIG_DEBUG_SPINLOCK=y -+CONFIG_DEBUG_MUTEXES=y -+# CONFIG_DEBUG_LOCK_ALLOC is not set -+# CONFIG_PROVE_LOCKING is not set -+# CONFIG_LOCK_STAT is not set -+CONFIG_DEBUG_SPINLOCK_SLEEP=y -+# CONFIG_DEBUG_LOCKING_API_SELFTESTS is not set -+# CONFIG_DEBUG_KOBJECT is not set -+CONFIG_DEBUG_BUGVERBOSE=y -+CONFIG_DEBUG_INFO=y -+# CONFIG_DEBUG_VM is not set -+# CONFIG_DEBUG_WRITECOUNT is not set -+CONFIG_DEBUG_MEMORY_INIT=y -+# CONFIG_DEBUG_LIST is not set -+# CONFIG_DEBUG_SG is not set -+CONFIG_FRAME_POINTER=y -+# CONFIG_BOOT_PRINTK_DELAY is not set -+# CONFIG_RCU_TORTURE_TEST is not set -+# CONFIG_RCU_CPU_STALL_DETECTOR is not set -+# CONFIG_BACKTRACE_SELF_TEST is not set -+# CONFIG_DEBUG_BLOCK_EXT_DEVT is not set -+# CONFIG_FAULT_INJECTION is not set -+# CONFIG_LATENCYTOP is not set -+CONFIG_SYSCTL_SYSCALL_CHECK=y -+CONFIG_HAVE_FUNCTION_TRACER=y -+ -+# -+# Tracers -+# -+# CONFIG_FUNCTION_TRACER is not set -+# CONFIG_SCHED_TRACER is not set -+# CONFIG_CONTEXT_SWITCH_TRACER is not set -+# CONFIG_BOOT_TRACER is not set -+# CONFIG_STACK_TRACER is not set -+# CONFIG_DYNAMIC_PRINTK_DEBUG is not set -+# CONFIG_SAMPLES is not set -+CONFIG_HAVE_ARCH_KGDB=y -+# CONFIG_KGDB is not set -+CONFIG_DEBUG_USER=y -+CONFIG_DEBUG_ERRORS=y -+# CONFIG_DEBUG_STACK_USAGE is not set -+CONFIG_DEBUG_LL=y -+# CONFIG_DEBUG_ICEDCC is not set -+CONFIG_DEBUG_S3C_PORT=y -+CONFIG_DEBUG_S3C_UART=0 -+ -+# -+# Security options -+# -+# CONFIG_KEYS is not set -+# CONFIG_SECURITY is not set -+# CONFIG_SECURITYFS is not set -+# CONFIG_SECURITY_FILE_CAPABILITIES is not set -+# CONFIG_CRYPTO is not set -+ -+# -+# Library routines -+# -+CONFIG_BITREVERSE=y -+# CONFIG_CRC_CCITT is not set -+# CONFIG_CRC16 is not set -+# CONFIG_CRC_T10DIF is not set -+# CONFIG_CRC_ITU_T is not set -+CONFIG_CRC32=y -+# CONFIG_CRC7 is not set -+# CONFIG_LIBCRC32C is not set -+CONFIG_ZLIB_INFLATE=y -+CONFIG_PLIST=y -+CONFIG_HAS_IOMEM=y -+CONFIG_HAS_DMA=y ---- a/arch/arm/Kconfig -+++ b/arch/arm/Kconfig -@@ -498,6 +498,13 @@ config ARCH_S3C2410 - BAST (<http://www.simtec.co.uk/products/EB110ITX/>), the IPAQ 1940 or - the Samsung SMDK2410 development board (and derivatives). - -+config ARCH_S3C64XX -+ bool "Samsung S3C64XX" -+ select GENERIC_GPIO -+ select HAVE_CLK -+ help -+ Samsung S3C64XX series based systems -+ - config ARCH_SHARK - bool "Shark" - select ISA -@@ -590,6 +597,7 @@ source "arch/arm/mach-orion5x/Kconfig" - source "arch/arm/mach-kirkwood/Kconfig" - - source "arch/arm/plat-s3c24xx/Kconfig" -+source "arch/arm/plat-s3c64xx/Kconfig" - source "arch/arm/plat-s3c/Kconfig" - - if ARCH_S3C2410 -@@ -601,6 +609,11 @@ source "arch/arm/mach-s3c2442/Kconfig" - source "arch/arm/mach-s3c2443/Kconfig" - endif - -+if ARCH_S3C64XX -+source "arch/arm/mach-s3c6400/Kconfig" -+source "arch/arm/mach-s3c6410/Kconfig" -+endif -+ - source "arch/arm/mach-lh7a40x/Kconfig" - - source "arch/arm/mach-imx/Kconfig" -@@ -1256,6 +1269,8 @@ source "drivers/usb/Kconfig" - - source "drivers/uwb/Kconfig" - -+source "drivers/ar6000/Kconfig" -+ - source "drivers/mmc/Kconfig" - - source "drivers/memstick/Kconfig" -@@ -1268,6 +1283,8 @@ source "drivers/rtc/Kconfig" - - source "drivers/dma/Kconfig" - -+source "drivers/android/Kconfig" -+ - source "drivers/dca/Kconfig" - - source "drivers/auxdisplay/Kconfig" ---- a/arch/arm/kernel/vmlinux.lds.S -+++ b/arch/arm/kernel/vmlinux.lds.S -@@ -106,6 +106,8 @@ SECTIONS - *(.got) /* Global offset table */ - } - -+ NOTES -+ - RODATA - - _etext = .; /* End of text and rodata section */ ---- a/arch/arm/mach-s3c2410/clock.c -+++ /dev/null -@@ -1,276 +0,0 @@ --/* linux/arch/arm/mach-s3c2410/clock.c -- * -- * Copyright (c) 2006 Simtec Electronics -- * Ben Dooks <ben@simtec.co.uk> -- * -- * S3C2410,S3C2440,S3C2442 Clock control support -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License as published by -- * the Free Software Foundation; either version 2 of the License, or -- * (at your option) any later version. -- * -- * This program is distributed in the hope that it will be useful, -- * but WITHOUT ANY WARRANTY; without even the implied warranty of -- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -- * GNU General Public License for more details. -- * -- * You should have received a copy of the GNU General Public License -- * along with this program; if not, write to the Free Software -- * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA --*/ -- --#include <linux/init.h> --#include <linux/module.h> --#include <linux/kernel.h> --#include <linux/list.h> --#include <linux/errno.h> --#include <linux/err.h> --#include <linux/sysdev.h> --#include <linux/clk.h> --#include <linux/mutex.h> --#include <linux/delay.h> --#include <linux/serial_core.h> --#include <linux/io.h> -- --#include <asm/mach/map.h> -- --#include <mach/hardware.h> -- --#include <plat/regs-serial.h> --#include <mach/regs-clock.h> --#include <mach/regs-gpio.h> -- --#include <plat/s3c2410.h> --#include <plat/clock.h> --#include <plat/cpu.h> -- --int s3c2410_clkcon_enable(struct clk *clk, int enable) --{ -- unsigned int clocks = clk->ctrlbit; -- unsigned long clkcon; -- -- clkcon = __raw_readl(S3C2410_CLKCON); -- -- if (enable) -- clkcon |= clocks; -- else -- clkcon &= ~clocks; -- -- /* ensure none of the special function bits set */ -- clkcon &= ~(S3C2410_CLKCON_IDLE|S3C2410_CLKCON_POWER); -- -- __raw_writel(clkcon, S3C2410_CLKCON); -- -- return 0; --} -- --static int s3c2410_upll_enable(struct clk *clk, int enable) --{ -- unsigned long clkslow = __raw_readl(S3C2410_CLKSLOW); -- unsigned long orig = clkslow; -- -- if (enable) -- clkslow &= ~S3C2410_CLKSLOW_UCLK_OFF; -- else -- clkslow |= S3C2410_CLKSLOW_UCLK_OFF; -- -- __raw_writel(clkslow, S3C2410_CLKSLOW); -- -- /* if we started the UPLL, then allow to settle */ -- -- if (enable && (orig & S3C2410_CLKSLOW_UCLK_OFF)) -- udelay(200); -- -- return 0; --} -- --/* standard clock definitions */ -- --static struct clk init_clocks_disable[] = { -- { -- .name = "nand", -- .id = -1, -- .parent = &clk_h, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_NAND, -- }, { -- .name = "sdi", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_SDI, -- }, { -- .name = "adc", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_ADC, -- }, { -- .name = "i2c", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_IIC, -- }, { -- .name = "iis", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_IIS, -- }, { -- .name = "spi", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_SPI, -- } --}; -- --static struct clk init_clocks[] = { -- { -- .name = "lcd", -- .id = -1, -- .parent = &clk_h, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_LCDC, -- }, { -- .name = "gpio", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_GPIO, -- }, { -- .name = "usb-host", -- .id = -1, -- .parent = &clk_h, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_USBH, -- }, { -- .name = "usb-device", -- .id = -1, -- .parent = &clk_h, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_USBD, -- }, { -- .name = "timers", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_PWMT, -- }, { -- .name = "uart", -- .id = 0, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_UART0, -- }, { -- .name = "uart", -- .id = 1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_UART1, -- }, { -- .name = "uart", -- .id = 2, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_UART2, -- }, { -- .name = "rtc", -- .id = -1, -- .parent = &clk_p, -- .enable = s3c2410_clkcon_enable, -- .ctrlbit = S3C2410_CLKCON_RTC, -- }, { -- .name = "watchdog", -- .id = -1, -- .parent = &clk_p, -- .ctrlbit = 0, -- }, { -- .name = "usb-bus-host", -- .id = -1, -- .parent = &clk_usb_bus, -- }, { -- .name = "usb-bus-gadget", -- .id = -1, -- .parent = &clk_usb_bus, -- }, --}; -- --/* s3c2410_baseclk_add() -- * -- * Add all the clocks used by the s3c2410 or compatible CPUs -- * such as the S3C2440 and S3C2442. -- * -- * We cannot use a system device as we are needed before any -- * of the init-calls that initialise the devices are actually -- * done. --*/ -- --int __init s3c2410_baseclk_add(void) --{ -- unsigned long clkslow = __raw_readl(S3C2410_CLKSLOW); -- unsigned long clkcon = __raw_readl(S3C2410_CLKCON); -- struct clk *clkp; -- struct clk *xtal; -- int ret; -- int ptr; -- -- clk_upll.enable = s3c2410_upll_enable; -- -- if (s3c24xx_register_clock(&clk_usb_bus) < 0) -- printk(KERN_ERR "failed to register usb bus clock\n"); -- -- /* register clocks from clock array */ -- -- clkp = init_clocks; -- for (ptr = 0; ptr < ARRAY_SIZE(init_clocks); ptr++, clkp++) { -- /* ensure that we note the clock state */ -- -- clkp->usage = clkcon & clkp->ctrlbit ? 1 : 0; -- -- ret = s3c24xx_register_clock(clkp); -- if (ret < 0) { -- printk(KERN_ERR "Failed to register clock %s (%d)\n", -- clkp->name, ret); -- } -- } -- -- /* We must be careful disabling the clocks we are not intending to -- * be using at boot time, as subsystems such as the LCD which do -- * their own DMA requests to the bus can cause the system to lockup -- * if they where in the middle of requesting bus access. -- * -- * Disabling the LCD clock if the LCD is active is very dangerous, -- * and therefore the bootloader should be careful to not enable -- * the LCD clock if it is not needed. -- */ -- -- /* install (and disable) the clocks we do not need immediately */ -- -- clkp = init_clocks_disable; -- for (ptr = 0; ptr < ARRAY_SIZE(init_clocks_disable); ptr++, clkp++) { -- -- ret = s3c24xx_register_clock(clkp); -- if (ret < 0) { -- printk(KERN_ERR "Failed to register clock %s (%d)\n", -- clkp->name, ret); -- } -- -- s3c2410_clkcon_enable(clkp, 0); -- } -- -- /* show the clock-slow value */ -- -- xtal = clk_get(NULL, "xtal"); -- -- printk("CLOCK: Slow mode (%ld.%ld MHz), %s, MPLL %s, UPLL %s\n", -- print_mhz(clk_get_rate(xtal) / -- ( 2 * S3C2410_CLKSLOW_GET_SLOWVAL(clkslow))), -- (clkslow & S3C2410_CLKSLOW_SLOW) ? "slow" : "fast", -- (clkslow & S3C2410_CLKSLOW_MPLL_OFF) ? "off" : "on", -- (clkslow & S3C2410_CLKSLOW_UCLK_OFF) ? "off" : "on"); -- -- return 0; --} ---- a/arch/arm/mach-s3c2410/dma.c -+++ b/arch/arm/mach-s3c2410/dma.c -@@ -25,12 +25,12 @@ - - #include <plat/regs-serial.h> - #include <mach/regs-gpio.h> --#include <asm/plat-s3c/regs-ac97.h> -+#include <plat/regs-ac97.h> - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> - #include <mach/regs-sdi.h> - #include <asm/plat-s3c24xx/regs-iis.h> --#include <asm/plat-s3c24xx/regs-spi.h> -+#include <plat/regs-spi.h> - - static struct s3c24xx_dma_map __initdata s3c2410_dma_mappings[] = { - [DMACH_XD0] = { ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/fiq_ipc_gta02.h -@@ -0,0 +1,60 @@ -+#ifndef _LINUX_FIQ_IPC_H -+#define _LINUX_FIQ_IPC_H -+ -+/* -+ * this defines the struct which is used to communicate between the FIQ -+ * world and the normal linux kernel world. One of these structs is -+ * statically defined for you in the monolithic kernel so the FIQ ISR code -+ * can safely touch it any any time. -+ * -+ * You also want to include this file in your kernel module that wants to -+ * communicate with your FIQ code. Add any kinds of vars that are used by -+ * the FIQ ISR and the module in here. -+ * -+ * To get you started there is just an int that is incremented every FIQ -+ * you can remove this when you are ready to customize, but it is useful -+ * for testing -+ */ -+ -+#include <mach/pwm.h> -+#include <plat/regs-timer.h> -+ -+extern u8 fiq_ready; -+ -+enum hdq_bitbang_states { -+ HDQB_IDLE = 0, -+ HDQB_TX_BREAK, -+ HDQB_TX_BREAK_RECOVERY, -+ HDQB_ADS_CALC, -+ HDQB_ADS_LOW, -+ HDQB_ADS_HIGH, -+ HDQB_WAIT_RX, -+ HDQB_DATA_RX_LOW, -+ HDQB_DATA_RX_HIGH, -+ HDQB_WAIT_TX, -+}; -+ -+struct fiq_ipc { -+ /* vibrator */ -+ unsigned long vib_gpio_pin; /* which pin to meddle with */ -+ u8 vib_pwm; /* 0 = OFF -- will ensure GPIO deasserted and stop FIQ */ -+ u8 vib_pwm_latched; -+ -+ /* hdq */ -+ u8 hdq_probed; /* nonzero after HDQ driver probed */ -+ struct mutex hdq_lock; /* if you want to use hdq, you have to take lock */ -+ unsigned long hdq_gpio_pin; /* GTA02 = GPD14 which pin to meddle with */ -+ u8 hdq_ads; /* b7..b6 = register address, b0 = r/w */ -+ u8 hdq_tx_data; /* data to tx for write action */ -+ u8 hdq_rx_data; /* data received in read action */ -+ u8 hdq_request_ctr; /* incremented by "user" to request a transfer */ -+ u8 hdq_transaction_ctr; /* incremented after each transfer */ -+ u8 hdq_error; /* 0 = no error */ -+}; -+ -+/* actual definition lives in arch/arm/mach-s3c2440/fiq_c_isr.c */ -+extern struct fiq_ipc fiq_ipc; -+extern unsigned long _fiq_count_fiqs; -+extern void fiq_kick(void); /* provoke a FIQ "immediately" */ -+ -+#endif /* _LINUX_FIQ_IPC_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/gpio-core.h -@@ -0,0 +1,21 @@ -+/* arch/arm/mach-s3c24100/include/mach/gpio-core.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C2410 - GPIO core support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_GPIO_CORE_H -+#define __ASM_ARCH_GPIO_CORE_H __FILE__ -+ -+/* currently we just include the platform support */ -+#include <plat/gpio-core.h> -+ -+#endif /* __ASM_ARCH_GPIO_CORE_H */ ---- a/arch/arm/mach-s3c2410/include/mach/gpio.h -+++ b/arch/arm/mach-s3c2410/include/mach/gpio.h -@@ -15,4 +15,14 @@ - #define gpio_set_value __gpio_set_value - #define gpio_cansleep __gpio_cansleep - -+/* These two defines should be removed as soon as the -+ * generic irq handling makes it upstream */ -+#include <mach/hardware.h> -+#define gpio_to_irq(gpio) s3c2410_gpio_getirq(gpio) -+#define irq_to_gpio(irq) s3c2410_gpio_irq2pin(irq) -+/* -- cut to here when generic irq makes it */ -+ - #include <asm-generic/gpio.h> -+#include <mach/gpio-nrs.h> -+ -+#define S3C_GPIO_END (S3C2410_GPIO_BANKH + 32) ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/gpio-nrs.h -@@ -0,0 +1,23 @@ -+/* arch/arm/mach-s3c2410/include/mach/gpio-nrs.h -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C2410 - GPIO bank numbering -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C2410_GPIONO(bank,offset) ((bank) + (offset)) -+ -+#define S3C2410_GPIO_BANKA (32*0) -+#define S3C2410_GPIO_BANKB (32*1) -+#define S3C2410_GPIO_BANKC (32*2) -+#define S3C2410_GPIO_BANKD (32*3) -+#define S3C2410_GPIO_BANKE (32*4) -+#define S3C2410_GPIO_BANKF (32*5) -+#define S3C2410_GPIO_BANKG (32*6) -+#define S3C2410_GPIO_BANKH (32*7) ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/gta01.h -@@ -0,0 +1,74 @@ -+#ifndef _GTA01_H -+#define _GTA01_H -+ -+#include <mach/regs-gpio.h> -+#include <mach/irqs.h> -+ -+/* Different hardware revisions, passed in ATAG_REVISION by u-boot */ -+#define GTA01v3_SYSTEM_REV 0x00000130 -+#define GTA01v4_SYSTEM_REV 0x00000140 -+#define GTA01Bv2_SYSTEM_REV 0x00000220 -+#define GTA01Bv3_SYSTEM_REV 0x00000230 -+#define GTA01Bv4_SYSTEM_REV 0x00000240 -+ -+/* Backlight */ -+ -+extern void gta01bl_deferred_resume(void); -+ -+struct gta01bl_machinfo { -+ unsigned int default_intensity; -+ unsigned int max_intensity; -+ unsigned int limit_mask; -+ unsigned int defer_resume_backlight; -+}; -+ -+/* Definitions common to all revisions */ -+#define GTA01_GPIO_BACKLIGHT S3C2410_GPB0 -+#define GTA01_GPIO_GPS_PWRON S3C2410_GPB1 -+#define GTA01_GPIO_MODEM_RST S3C2410_GPB6 -+#define GTA01_GPIO_MODEM_ON S3C2410_GPB7 -+#define GTA01_GPIO_LCD_RESET S3C2410_GPC6 -+#define GTA01_GPIO_PMU_IRQ S3C2410_GPG8 -+#define GTA01_GPIO_JACK_INSERT S3C2410_GPF4 -+#define GTA01_GPIO_nSD_DETECT S3C2410_GPF5 -+#define GTA01_GPIO_AUX_KEY S3C2410_GPF6 -+#define GTA01_GPIO_HOLD_KEY S3C2410_GPF7 -+#define GTA01_GPIO_VIBRATOR_ON S3C2410_GPG11 -+ -+#define GTA01_IRQ_MODEM IRQ_EINT1 -+#define GTA01_IRQ_JACK_INSERT IRQ_EINT4 -+#define GTA01_IRQ_nSD_DETECT IRQ_EINT5 -+#define GTA01_IRQ_AUX_KEY IRQ_EINT6 -+#define GTA01_IRQ_PCF50606 IRQ_EINT16 -+ -+/* GTA01v3 */ -+#define GTA01v3_GPIO_nGSM_EN S3C2410_GPG9 -+ -+/* GTA01v4 */ -+#define GTA01_GPIO_MODEM_DNLOAD S3C2410_GPG0 -+ -+/* GTA01Bv2 */ -+#define GTA01Bv2_GPIO_nGSM_EN S3C2410_GPF2 -+#define GTA01Bv2_GPIO_VIBRATOR_ON S3C2410_GPB10 -+ -+/* GTA01Bv3 */ -+#define GTA01_GPIO_GPS_EN_3V3 S3C2410_GPG9 -+ -+#define GTA01_GPIO_SDMMC_ON S3C2410_GPB2 -+#define GTA01_GPIO_BT_EN S3C2410_GPB5 -+#define GTA01_GPIO_AB_DETECT S3C2410_GPB8 -+#define GTA01_GPIO_USB_PULLUP S3C2410_GPB9 -+#define GTA01_GPIO_USB_ATTACH S3C2410_GPB10 -+ -+#define GTA01_GPIO_GPS_EN_2V8 S3C2410_GPG9 -+#define GTA01_GPIO_GPS_EN_3V S3C2410_GPG10 -+#define GTA01_GPIO_GPS_RESET S3C2410_GPC0 -+ -+/* GTA01Bv4 */ -+#define GTA01Bv4_GPIO_nNAND_WP S3C2410_GPA16 -+#define GTA01Bv4_GPIO_VIBRATOR_ON S3C2410_GPB3 -+#define GTA01Bv4_GPIO_PMU_IRQ S3C2410_GPG1 -+ -+#define GTA01Bv4_IRQ_PCF50606 IRQ_EINT9 -+ -+#endif /* _GTA01_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/gta02.h -@@ -0,0 +1,113 @@ -+#ifndef _GTA02_H -+#define _GTA02_H -+ -+#include <mach/regs-gpio.h> -+#include <mach/irqs.h> -+ -+#include <linux/mfd/pcf50633/core.h> -+ -+/* Different hardware revisions, passed in ATAG_REVISION by u-boot */ -+#define GTA02v1_SYSTEM_REV 0x00000310 -+#define GTA02v2_SYSTEM_REV 0x00000320 -+#define GTA02v3_SYSTEM_REV 0x00000330 -+#define GTA02v4_SYSTEM_REV 0x00000340 -+#define GTA02v5_SYSTEM_REV 0x00000350 -+#define GTA02v6_SYSTEM_REV 0x00000360 -+ -+#define GTA02_GPIO_n3DL_GSM S3C2410_GPA13 /* v1 + v2 + v3 only */ -+ -+#define GTA02_GPIO_PWR_LED1 S3C2410_GPB0 -+#define GTA02_GPIO_PWR_LED2 S3C2410_GPB1 -+#define GTA02_GPIO_AUX_LED S3C2410_GPB2 -+#define GTA02_GPIO_VIBRATOR_ON S3C2410_GPB3 -+#define GTA02v1_GPIO_GPS_PWRON S3C2410_GPB4 /* v1 only */ -+#define GTA02_GPIO_MODEM_RST S3C2410_GPB5 -+#define GTA02_GPIO_BT_EN S3C2410_GPB6 -+#define GTA02_GPIO_MODEM_ON S3C2410_GPB7 -+#define GTA02v1_GPIO_EN_AGPS3V S3C2410_GPB8 /* v1 only */ -+#define GTA02_GPIO_EXTINT8 S3C2410_GPB8 -+#define GTA02_GPIO_USB_PULLUP S3C2410_GPB9 -+ -+#define GTA02v1_GPIO_nGPS_RST S3C2410_GPC0 /* v1 only */ -+#define GTA02v12_GPIO_PIO3 S3C2410_GPC5 /* v1 + v2 only */ -+#define GTA02_GPIO_PIO5 S3C2410_GPC5 /* v3 + v4 only */ -+#define GTA02_GPIO_LCD_RESET S3C2410_GPC6 /* v1 + v2 only */ -+#define GTA02v12_GPIO_PIO2 S3C2410_GPC7 /* v1 + v2 only */ -+#define GTA02v2_nUSB_FLT S3C2410_GPC9 /* v2 only */ -+#define GTA02v2_nUSB_OC S3C2410_GPC10 /* v2 only */ -+#define GTA02v2_nGSM_OC S3C2410_GPC12 /* v2 only */ -+ -+#define GTA02v3_GPIO_nG1_CS S3C2410_GPD12 /* v3 + v4 only */ -+#define GTA02v3_GPIO_nG2_CS S3C2410_GPD13 /* v3 + v4 only */ -+#define GTA02v5_GPIO_HDQ S3C2410_GPD14 /* v5 + */ -+ -+#define GTA02_GPIO_nG1_INT S3C2410_GPF0 -+#define GTA02_GPIO_IO1 S3C2410_GPF1 -+#define GTA02v1_GPIO_nG2_INT S3C2410_GPF2 /* v1 only */ -+#define GTA02_GPIO_PIO_2 S3C2410_GPF2 /* v2 + v3 + v4 only */ -+#define GTA02_GPIO_JACK_INSERT S3C2410_GPF4 -+#define GTA02v1_GPIO_nSD_DETECT S3C2410_GPF5 /* v1 only */ -+#define GTA02_GPIO_WLAN_GPIO1 S3C2410_GPF5 /* v2 + v3 + v4 only */ -+#define GTA02_GPIO_AUX_KEY S3C2410_GPF6 -+#define GTA02_GPIO_HOLD_KEY S3C2410_GPF7 -+ -+#define GTA02_GPIO_3D_IRQ S3C2410_GPG4 -+#define GTA02v1_GPIO_nG1_CS S3C2410_GPG8 /* v1 only */ -+#define GTA02v2_GPIO_nG2_INT S3C2410_GPG8 /* v2 + v3 + v4 only */ -+#define GTA02v3_GPIO_nUSB_OC S3C2410_GPG9 /* v3 + v4 only */ -+#define GTA02v3_GPIO_nUSB_FLT S3C2410_GPG10 /* v3 + v4 only */ -+#define GTA02v1_GPIO_nG2_CS S3C2410_GPG11 /* v1 only */ -+#define GTA02v3_GPIO_nGSM_OC S3C2410_GPG11 /* v3 + v4 only */ -+ -+#define GTA02v1_GPIO_3D_RESET S3C2440_GPJ0 /* v1 only */ -+#define GTA02v2_GPIO_BAT_ID S3C2440_GPJ0 /* v2 only */ -+#define GTA02v1_GPIO_WLAN_GPIO8 S3C2440_GPJ1 /* v1 only */ -+#define GTA02_GPIO_AMP_SHUT S3C2440_GPJ1 /* v2 + v3 + v4 only */ -+#define GTA02v1_GPIO_WLAN_GPIO10 S3C2440_GPJ2 -+#define GTA02_GPIO_HP_IN S3C2440_GPJ2 /* v2 + v3 + v4 only */ -+#define GTA02v1_GPIO_KEEPACT S3C2440_GPJ3 /* v1 only */ -+#define GTA02_GPIO_INT0 S3C2440_GPJ3 /* v2 + v3 + v4 only */ -+#define GTA02_GPIO_nGSM_EN S3C2440_GPJ4 -+#define GTA02_GPIO_3D_RESET S3C2440_GPJ5 -+#define GTA02_GPIO_nDL_GSM S3C2440_GPJ6 /* v4 + v5 only */ -+#define GTA02_GPIO_WLAN_GPIO0 S3C2440_GPJ7 -+#define GTA02v1_GPIO_BAT_ID S3C2440_GPJ8 -+#define GTA02_GPIO_KEEPACT S3C2440_GPJ8 -+#define GTA02v1_GPIO_AMP_SHUT S3C2440_GPJ9 /* v1 only */ -+#define GTA02v2_nG1_CS S3C2440_GPJ9 /* v2 only */ -+#define GTA02v1_GPIO_HP_IN S3C2440_GPJ10 -+#define GTA02v2_nG2_CS S3C2440_GPJ10 /* v2 only */ -+#define GTA02v1_GPIO_INT0 S3C2440_GPJ11 /* v1 only */ -+#define GTA02_CHIP_PWD S3C2440_GPJ11 /* v2 + v3 + v4 only */ -+#define GTA02v1_GPIO_nGSM_EN S3C2440_GPJ12 /* v1 only */ -+#define GTA02_GPIO_nWLAN_RESET S3C2440_GPJ12 /* v2 + v3 + v4 only */ -+ -+#define GTA02_IRQ_GSENSOR_1 IRQ_EINT0 -+#define GTA02_IRQ_MODEM IRQ_EINT1 -+#define GTA02v1_IRQ_GSENSOR_2 IRQ_EINT2 /* v1 only */ -+#define GTA02_IRQ_PIO_2 IRQ_EINT2 /* v2 + v3 + v4 only */ -+#define GTA02_IRQ_nJACK_INSERT IRQ_EINT4 -+#define GTA02v1_IRQ_nSD_CD IRQ_EINT5 /* v1 only */ -+#define GTA02_IRQ_WLAN_GPIO1 IRQ_EINT5 -+#define GTA02_IRQ_AUX IRQ_EINT6 -+#define GTA02_IRQ_nHOLD IRQ_EINT7 -+#define GTA02v1_IRQ_nSIM_CD IRQ_EINT8 /* v1 only */ -+#define GTA02_IRQ_PCF50633 IRQ_EINT9 -+#define GTA02_IRQ_3D IRQ_EINT12 -+#define GTA02_IRQ_GSENSOR_2 IRQ_EINT16 /* v2 + v3 + v4 only */ -+#define GTA02v3_IRQ_nUSB_OC IRQ_EINT17 /* v3 + v4 only */ -+#define GTA02v3_IRQ_nUSB_FLT IRQ_EINT18 /* v3 + v4 only */ -+#define GTA02v3_IRQ_nGSM_OC IRQ_EINT19 /* v3 + v4 only */ -+ -+/* returns 00 000 on GTA02 A5 and earlier, A6 returns 01 001 */ -+#define GTA02_PCB_ID1_0 S3C2410_GPC13 -+#define GTA02_PCB_ID1_1 S3C2410_GPC15 -+#define GTA02_PCB_ID1_2 S3C2410_GPD0 -+#define GTA02_PCB_ID2_0 S3C2410_GPD3 -+#define GTA02_PCB_ID2_1 S3C2410_GPD4 -+ -+int gta02_get_pcb_revision(void); -+ -+extern struct pcf50633_platform_data gta02_pcf_pdata; -+ -+#endif /* _GTA02_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/gta02-pm-wlan.h -@@ -0,0 +1 @@ -+void gta02_wlan_power(int on); ---- a/arch/arm/mach-s3c2410/include/mach/irqs.h -+++ b/arch/arm/mach-s3c2410/include/mach/irqs.h -@@ -12,9 +12,9 @@ - #ifndef __ASM_ARCH_IRQS_H - #define __ASM_ARCH_IRQS_H __FILE__ - --#ifndef __ASM_ARM_IRQ_H --#error "Do not include this directly, instead #include <asm/irq.h>" --#endif -+//#ifndef __ASM_ARM_IRQ_H -+//#error "Do not include this directly, instead #include <asm/irq.h>" -+//#endif - - /* we keep the first set of CPU IRQs out of the range of - * the ISA space, so that the PC104 has them to itself -@@ -84,7 +84,7 @@ - #define IRQ_EINT22 S3C2410_IRQ(50) - #define IRQ_EINT23 S3C2410_IRQ(51) - -- -+#define IRQ_EINT_BIT(x) ((x) - IRQ_EINT4 + 4) - #define IRQ_EINT(x) (((x) >= 4) ? (IRQ_EINT4 + (x) - 4) : (IRQ_EINT0 + (x))) - - #define IRQ_LCD_FIFO S3C2410_IRQ(52) -@@ -134,6 +134,8 @@ - #define IRQ_S3C2443_HSMMC S3C2410_IRQ(20) /* IRQ_SDI */ - #define IRQ_S3C2443_NAND S3C2410_IRQ(24) /* reserved */ - -+#define IRQ_HSMMC0 IRQ_S3C2443_HSMMC -+ - #define IRQ_S3C2443_LCD1 S3C2410_IRQSUB(14) - #define IRQ_S3C2443_LCD2 S3C2410_IRQSUB(15) - #define IRQ_S3C2443_LCD3 S3C2410_IRQSUB(16) -@@ -155,12 +157,47 @@ - #define IRQ_S3C2443_AC97 S3C2410_IRQSUB(28) - - #ifdef CONFIG_CPU_S3C2443 --#define NR_IRQS (IRQ_S3C2443_AC97+1) -+#define _NR_IRQS (IRQ_S3C2443_AC97+1) - #else --#define NR_IRQS (IRQ_S3C2440_AC97+1) -+#define _NR_IRQS (IRQ_S3C2440_AC97+1) - #endif - -+/* compatibility define. */ -+#define IRQ_UART3 IRQ_S3C2443_UART3 -+#define IRQ_S3CUART_RX3 IRQ_S3C2443_RX3 -+#define IRQ_S3CUART_TX3 IRQ_S3C2443_TX3 -+#define IRQ_S3CUART_ERR3 IRQ_S3C2443_ERR3 -+ - /* Our FIQs are routable from IRQ_EINT0 to IRQ_ADCPARENT */ - #define FIQ_START IRQ_EINT0 - -+ -+/* -+ * The next 16 interrupts are for board specific purposes. Since -+ * the kernel can only run on one machine at a time, we can re-use -+ * these. If you need more, increase IRQ_BOARD_END, but keep it -+ * within sensible limits. -+ */ -+#define IRQ_BOARD_START _NR_IRQS -+#define IRQ_BOARD_END (_NR_IRQS + 10) -+ -+#if defined(CONFIG_MACH_NEO1973_GTA02) -+#define NR_IRQS (IRQ_BOARD_END) -+#else -+#define NR_IRQS (IRQ_BOARD_START) -+#endif -+ -+/* Neo1973 GTA02 interrupts */ -+#define NEO1973_GTA02_IRQ(x) (IRQ_BOARD_START + (x)) -+#define IRQ_GLAMO(x) NEO1973_GTA02_IRQ(x) -+#define IRQ_GLAMO_HOSTBUS IRQ_GLAMO(0) -+#define IRQ_GLAMO_JPEG IRQ_GLAMO(1) -+#define IRQ_GLAMO_MPEG IRQ_GLAMO(2) -+#define IRQ_GLAMO_MPROC1 IRQ_GLAMO(3) -+#define IRQ_GLAMO_MPROC0 IRQ_GLAMO(4) -+#define IRQ_GLAMO_CMDQUEUE IRQ_GLAMO(5) -+#define IRQ_GLAMO_2D IRQ_GLAMO(6) -+#define IRQ_GLAMO_MMC IRQ_GLAMO(7) -+#define IRQ_GLAMO_RISC IRQ_GLAMO(8) -+ - #endif /* __ASM_ARCH_IRQ_H */ ---- a/arch/arm/mach-s3c2410/include/mach/map.h -+++ b/arch/arm/mach-s3c2410/include/mach/map.h -@@ -13,34 +13,20 @@ - #ifndef __ASM_ARCH_MAP_H - #define __ASM_ARCH_MAP_H - -+#include <plat/map-base.h> - #include <plat/map.h> - - #define S3C2410_ADDR(x) S3C_ADDR(x) - --/* interrupt controller is the first thing we put in, to make -- * the assembly code for the irq detection easier -- */ --#define S3C24XX_VA_IRQ S3C_VA_IRQ --#define S3C2410_PA_IRQ (0x4A000000) --#define S3C24XX_SZ_IRQ SZ_1M -- --/* memory controller registers */ --#define S3C24XX_VA_MEMCTRL S3C_VA_MEM --#define S3C2410_PA_MEMCTRL (0x48000000) --#define S3C24XX_SZ_MEMCTRL SZ_1M -- - /* USB host controller */ - #define S3C2410_PA_USBHOST (0x49000000) --#define S3C24XX_SZ_USBHOST SZ_1M - - /* DMA controller */ - #define S3C2410_PA_DMA (0x4B000000) - #define S3C24XX_SZ_DMA SZ_1M - - /* Clock and Power management */ --#define S3C24XX_VA_CLKPWR S3C_VA_SYS - #define S3C2410_PA_CLKPWR (0x4C000000) --#define S3C24XX_SZ_CLKPWR SZ_1M - - /* LCD controller */ - #define S3C2410_PA_LCD (0x4D000000) -@@ -48,48 +34,12 @@ - - /* NAND flash controller */ - #define S3C2410_PA_NAND (0x4E000000) --#define S3C24XX_SZ_NAND SZ_1M -- --/* UARTs */ --#define S3C24XX_VA_UART S3C_VA_UART --#define S3C2410_PA_UART (0x50000000) --#define S3C24XX_SZ_UART SZ_1M -- --/* Timers */ --#define S3C24XX_VA_TIMER S3C_VA_TIMER --#define S3C2410_PA_TIMER (0x51000000) --#define S3C24XX_SZ_TIMER SZ_1M -- --/* USB Device port */ --#define S3C2410_PA_USBDEV (0x52000000) --#define S3C24XX_SZ_USBDEV SZ_1M -- --/* Watchdog */ --#define S3C24XX_VA_WATCHDOG S3C_VA_WATCHDOG --#define S3C2410_PA_WATCHDOG (0x53000000) --#define S3C24XX_SZ_WATCHDOG SZ_1M - - /* IIC hardware controller */ - #define S3C2410_PA_IIC (0x54000000) --#define S3C24XX_SZ_IIC SZ_1M - - /* IIS controller */ - #define S3C2410_PA_IIS (0x55000000) --#define S3C24XX_SZ_IIS SZ_1M -- --/* GPIO ports */ -- --/* the calculation for the VA of this must ensure that -- * it is the same distance apart from the UART in the -- * phsyical address space, as the initial mapping for the IO -- * is done as a 1:1 maping. This puts it (currently) at -- * 0xFA800000, which is not in the way of any current mapping -- * by the base system. --*/ -- --#define S3C2410_PA_GPIO (0x56000000) --#define S3C24XX_VA_GPIO ((S3C2410_PA_GPIO - S3C24XX_PA_UART) + S3C24XX_VA_UART) --#define S3C24XX_SZ_GPIO SZ_1M - - /* RTC */ - #define S3C2410_PA_RTC (0x57000000) -@@ -97,15 +47,12 @@ - - /* ADC */ - #define S3C2410_PA_ADC (0x58000000) --#define S3C24XX_SZ_ADC SZ_1M - - /* SPI */ - #define S3C2410_PA_SPI (0x59000000) --#define S3C24XX_SZ_SPI SZ_1M - - /* SDI */ - #define S3C2410_PA_SDI (0x5A000000) --#define S3C24XX_SZ_SDI SZ_1M - - /* CAMIF */ - #define S3C2440_PA_CAMIF (0x4F000000) -@@ -120,13 +67,6 @@ - #define S3C2443_PA_HSMMC (0x4A800000) - #define S3C2443_SZ_HSMMC (256) - --/* ISA style IO, for each machine to sort out mappings for, if it -- * implements it. We reserve two 16M regions for ISA. -- */ -- --#define S3C24XX_VA_ISA_WORD S3C2410_ADDR(0x02000000) --#define S3C24XX_VA_ISA_BYTE S3C2410_ADDR(0x03000000) -- - /* physical addresses of all the chip-select areas */ - - #define S3C2410_CS0 (0x00000000) -@@ -152,27 +92,16 @@ - #define S3C24XX_PA_TIMER S3C2410_PA_TIMER - #define S3C24XX_PA_USBDEV S3C2410_PA_USBDEV - #define S3C24XX_PA_WATCHDOG S3C2410_PA_WATCHDOG --#define S3C24XX_PA_IIC S3C2410_PA_IIC - #define S3C24XX_PA_IIS S3C2410_PA_IIS - #define S3C24XX_PA_GPIO S3C2410_PA_GPIO - #define S3C24XX_PA_RTC S3C2410_PA_RTC - #define S3C24XX_PA_ADC S3C2410_PA_ADC - #define S3C24XX_PA_SPI S3C2410_PA_SPI -+#define S3C24XX_PA_SDI S3C2410_PA_SDI -+#define S3C24XX_PA_NAND S3C2410_PA_NAND - --/* deal with the registers that move under the 2412/2413 */ -- --#if defined(CONFIG_CPU_S3C2412) || defined(CONFIG_CPU_S3C2413) --#ifndef __ASSEMBLY__ --extern void __iomem *s3c24xx_va_gpio2; --#endif --#ifdef CONFIG_CPU_S3C2412_ONLY --#define S3C24XX_VA_GPIO2 (S3C24XX_VA_GPIO + 0x10) --#else --#define S3C24XX_VA_GPIO2 s3c24xx_va_gpio2 --#endif --#else --#define s3c24xx_va_gpio2 S3C24XX_VA_GPIO --#define S3C24XX_VA_GPIO2 S3C24XX_VA_GPIO --#endif -+#define S3C_PA_IIC S3C2410_PA_IIC -+#define S3C_PA_UART S3C24XX_PA_UART -+#define S3C_PA_HSMMC0 S3C2443_PA_HSMMC - - #endif /* __ASM_ARCH_MAP_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/mci.h -@@ -0,0 +1,13 @@ -+#ifndef _ARCH_MCI_H -+#define _ARCH_MCI_H -+ -+struct s3c24xx_mci_pdata { -+ unsigned int gpio_detect; -+ unsigned int gpio_wprotect; -+ unsigned long ocr_avail; -+ unsigned int do_dma; -+ void (*set_power)(unsigned char power_mode, -+ unsigned short vdd); -+}; -+ -+#endif /* _ARCH_NCI_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/neo1973-pm-gsm.h -@@ -0,0 +1 @@ -+extern int gta_gsm_interrupts; ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/pwm.h -@@ -0,0 +1,46 @@ -+#ifndef __S3C2410_PWM_H -+#define __S3C2410_PWM_H -+ -+#include <linux/err.h> -+#include <linux/platform_device.h> -+#include <linux/clk.h> -+ -+#include <mach/io.h> -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+#include <plat/regs-timer.h> -+#include <mach/gta01.h> -+ -+enum pwm_timer { -+ PWM0, -+ PWM1, -+ PWM2, -+ PWM3, -+ PWM4 -+}; -+ -+struct s3c2410_pwm { -+ enum pwm_timer timerid; -+ struct clk *pclk; -+ unsigned long pclk_rate; -+ unsigned long prescaler; -+ unsigned long divider; -+ unsigned long counter; -+ unsigned long comparer; -+}; -+ -+struct s3c24xx_pwm_platform_data{ -+ /* callback to attach platform children (to enforce suspend / resume -+ * ordering */ -+ void (*attach_child_devices)(struct device *parent_device); -+}; -+ -+int s3c2410_pwm_init(struct s3c2410_pwm *s3c2410_pwm); -+int s3c2410_pwm_enable(struct s3c2410_pwm *s3c2410_pwm); -+int s3c2410_pwm_disable(struct s3c2410_pwm *s3c2410_pwm); -+int s3c2410_pwm_start(struct s3c2410_pwm *s3c2410_pwm); -+int s3c2410_pwm_stop(struct s3c2410_pwm *s3c2410_pwm); -+int s3c2410_pwm_duty_cycle(int reg_value, struct s3c2410_pwm *s3c2410_pwm); -+int s3c2410_pwm_dumpregs(void); -+ -+#endif /* __S3C2410_PWM_H */ ---- a/arch/arm/mach-s3c2410/include/mach/regs-clock.h -+++ b/arch/arm/mach-s3c2410/include/mach/regs-clock.h -@@ -42,13 +42,6 @@ - #define S3C2410_CLKCON_IIS (1<<17) - #define S3C2410_CLKCON_SPI (1<<18) - --#define S3C2410_PLLCON_MDIVSHIFT 12 --#define S3C2410_PLLCON_PDIVSHIFT 4 --#define S3C2410_PLLCON_SDIVSHIFT 0 --#define S3C2410_PLLCON_MDIVMASK ((1<<(1+(19-12)))-1) --#define S3C2410_PLLCON_PDIVMASK ((1<<5)-1) --#define S3C2410_PLLCON_SDIVMASK 3 -- - /* DCLKCON register addresses in gpio.h */ - - #define S3C2410_DCLKCON_DCLK0EN (1<<0) -@@ -76,32 +69,6 @@ - #define S3C2410_CLKSLOW_SLOWVAL(x) (x) - #define S3C2410_CLKSLOW_GET_SLOWVAL(x) ((x) & 7) - --#ifndef __ASSEMBLY__ -- --#include <asm/div64.h> -- --static inline unsigned int --s3c2410_get_pll(unsigned int pllval, unsigned int baseclk) --{ -- unsigned int mdiv, pdiv, sdiv; -- uint64_t fvco; -- -- mdiv = pllval >> S3C2410_PLLCON_MDIVSHIFT; -- pdiv = pllval >> S3C2410_PLLCON_PDIVSHIFT; -- sdiv = pllval >> S3C2410_PLLCON_SDIVSHIFT; -- -- mdiv &= S3C2410_PLLCON_MDIVMASK; -- pdiv &= S3C2410_PLLCON_PDIVMASK; -- sdiv &= S3C2410_PLLCON_SDIVMASK; -- -- fvco = (uint64_t)baseclk * (mdiv + 8); -- do_div(fvco, (pdiv + 2) << sdiv); -- -- return (unsigned int)fvco; --} -- --#endif /* __ASSEMBLY__ */ -- - #if defined(CONFIG_CPU_S3C2440) || defined(CONFIG_CPU_S3C2442) - - /* extra registers */ ---- a/arch/arm/mach-s3c2410/include/mach/regs-gpio.h -+++ b/arch/arm/mach-s3c2410/include/mach/regs-gpio.h -@@ -14,16 +14,7 @@ - #ifndef __ASM_ARCH_REGS_GPIO_H - #define __ASM_ARCH_REGS_GPIO_H - --#define S3C2410_GPIONO(bank,offset) ((bank) + (offset)) -- --#define S3C2410_GPIO_BANKA (32*0) --#define S3C2410_GPIO_BANKB (32*1) --#define S3C2410_GPIO_BANKC (32*2) --#define S3C2410_GPIO_BANKD (32*3) --#define S3C2410_GPIO_BANKE (32*4) --#define S3C2410_GPIO_BANKF (32*5) --#define S3C2410_GPIO_BANKG (32*6) --#define S3C2410_GPIO_BANKH (32*7) -+#include <mach/gpio-nrs.h> - - #ifdef CONFIG_CPU_S3C2400 - #define S3C24XX_GPIO_BASE(x) S3C2400_GPIO_BASE(x) -@@ -1053,13 +1044,6 @@ - #define S3C24XX_EXTINT1 S3C24XX_GPIOREG2(0x8C) - #define S3C24XX_EXTINT2 S3C24XX_GPIOREG2(0x90) - --/* values for S3C2410_EXTINT0/1/2 */ --#define S3C2410_EXTINT_LOWLEV (0x00) --#define S3C2410_EXTINT_HILEV (0x01) --#define S3C2410_EXTINT_FALLEDGE (0x02) --#define S3C2410_EXTINT_RISEEDGE (0x04) --#define S3C2410_EXTINT_BOTHEDGE (0x06) -- - /* interrupt filtering conrrol for EINT16..EINT23 */ - #define S3C2410_EINFLT0 S3C2410_GPIOREG(0x94) - #define S3C2410_EINFLT1 S3C2410_GPIOREG(0x98) ---- a/arch/arm/mach-s3c2410/include/mach/regs-sdi.h -+++ b/arch/arm/mach-s3c2410/include/mach/regs-sdi.h -@@ -30,6 +30,7 @@ - #define S3C2410_SDIFSTA (0x38) - - #define S3C2410_SDIDATA (0x3C) -+#define S3C2410_SDIDATA_BYTE (0x3C) - #define S3C2410_SDIIMSK (0x40) - - #define S3C2440_SDIDATA (0x40) -@@ -37,6 +38,8 @@ - - #define S3C2440_SDICON_SDRESET (1<<8) - #define S3C2440_SDICON_MMCCLOCK (1<<5) -+#define S3C2440_SDIDATA_BYTE (0x48) -+ - #define S3C2410_SDICON_BYTEORDER (1<<4) - #define S3C2410_SDICON_SDIOIRQ (1<<3) - #define S3C2410_SDICON_RWAITEN (1<<2) ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/s3c24xx-serial.h -@@ -0,0 +1,5 @@ -+#include <linux/resume-dependency.h> -+ -+extern void s3c24xx_serial_console_set_silence(int silence); -+extern void s3c24xx_serial_register_resume_dependency(struct resume_dependency * -+ resume_dependency, int uart_index); ---- a/arch/arm/mach-s3c2410/include/mach/spi-gpio.h -+++ b/arch/arm/mach-s3c2410/include/mach/spi-gpio.h -@@ -21,7 +21,15 @@ struct s3c2410_spigpio_info { - int num_chipselect; - int bus_num; - -- void (*chip_select)(struct s3c2410_spigpio_info *spi, int cs); -+ /* -+ * FIXME: board_size and board_info DO NOT belong here. -+ * These were already removed upstream... but we still rely on them -+ * so leave for now and revisit this. -+ */ -+ unsigned long board_size; -+ struct spi_board_info *board_info; -+ -+ void (*chip_select)(struct s3c2410_spigpio_info *spi, int csid, int cs); - }; - - ---- a/arch/arm/mach-s3c2410/include/mach/spi.h -+++ b/arch/arm/mach-s3c2410/include/mach/spi.h -@@ -22,5 +22,12 @@ struct s3c2410_spi_info { - void (*set_cs)(struct s3c2410_spi_info *spi, int cs, int pol); - }; - -+/* Standard setup / suspend routines for SPI GPIO pins. */ -+ -+extern void s3c24xx_spi_gpiocfg_bus0_gpe11_12_13(struct s3c2410_spi_info *spi, -+ int enable); -+ -+extern void s3c24xx_spi_gpiocfg_bus1_gpg5_6_7(struct s3c2410_spi_info *spi, -+ int enable); - - #endif /* __ASM_ARCH_SPI_H */ ---- a/arch/arm/mach-s3c2410/include/mach/system-reset.h -+++ b/arch/arm/mach-s3c2410/include/mach/system-reset.h -@@ -13,7 +13,7 @@ - #include <mach/hardware.h> - #include <linux/io.h> - --#include <asm/plat-s3c/regs-watchdog.h> -+#include <plat/regs-watchdog.h> - #include <mach/regs-clock.h> - - #include <linux/clk.h> ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/tick.h -@@ -0,0 +1,15 @@ -+/* linux/arch/arm/mach-s3c2410/include/mach/tick.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C2410 - timer tick support -+ */ -+ -+#define SRCPND_TIMER4 (1<<(IRQ_TIMER4 - IRQ_EINT0)) -+ -+static inline int s3c24xx_ostimer_pending(void) -+{ -+ return __raw_readl(S3C2410_SRCPND) & SRCPND_TIMER4; -+} ---- a/arch/arm/mach-s3c2410/include/mach/timex.h -+++ /dev/null -@@ -1,26 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/timex.h -- * -- * Copyright (c) 2003-2005 Simtec Electronics -- * Ben Dooks <ben@simtec.co.uk> -- * -- * S3C2410 - time parameters -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ -- --#ifndef __ASM_ARCH_TIMEX_H --#define __ASM_ARCH_TIMEX_H -- --/* CLOCK_TICK_RATE needs to be evaluatable by the cpp, so making it -- * a variable is useless. It seems as long as we make our timers an -- * exact multiple of HZ, any value that makes a 1->1 correspondence -- * for the time conversion functions to/from jiffies is acceptable. --*/ -- -- --#define CLOCK_TICK_RATE 12000000 -- -- --#endif /* __ASM_ARCH_TIMEX_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c2410/include/mach/ts.h -@@ -0,0 +1,35 @@ -+/* arch/arm/mach-s3c2410/include/mach/ts.h -+ * -+ * Copyright (c) 2005 Arnaud Patard <arnaud.patard@rtp-net.org> -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * -+ * Changelog: -+ * 24-Mar-2005 RTP Created file -+ * 03-Aug-2005 RTP Renamed to ts.h -+ */ -+ -+#ifndef __ASM_ARM_TS_H -+#define __ASM_ARM_TS_H -+ -+#include <linux/ts_filter.h> -+ -+struct s3c2410_ts_mach_info { -+ int delay; -+ int presc; -+ /* array of pointers to filter APIs we want to use, in order -+ * ends on first NULL, all NULL is OK -+ */ -+ struct ts_filter_api *filter_sequence[MAX_TS_FILTER_CHAIN]; -+ /* array of configuration ints, one for each filter above */ -+ void *filter_config[MAX_TS_FILTER_CHAIN]; -+}; -+ -+void set_s3c2410ts_info(struct s3c2410_ts_mach_info *hard_s3c2410ts_info); -+ -+#endif /* __ASM_ARM_TS_H */ -+ ---- a/arch/arm/mach-s3c2410/include/mach/uncompress.h -+++ b/arch/arm/mach-s3c2410/include/mach/uncompress.h -@@ -1,3 +1,4 @@ -+ - /* arch/arm/mach-s3c2410/include/mach/uncompress.h - * - * Copyright (c) 2003, 2007 Simtec Electronics ---- a/arch/arm/mach-s3c2410/include/mach/vmalloc.h -+++ /dev/null -@@ -1,20 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/vmalloc.h -- * -- * from arch/arm/mach-iop3xx/include/mach/vmalloc.h -- * -- * Copyright (c) 2003 Simtec Electronics <linux@simtec.co.uk> -- * http://www.simtec.co.uk/products/SWLINUX/ -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * S3C2410 vmalloc definition --*/ -- --#ifndef __ASM_ARCH_VMALLOC_H --#define __ASM_ARCH_VMALLOC_H -- --#define VMALLOC_END (0xE0000000) -- --#endif /* __ASM_ARCH_VMALLOC_H */ ---- a/arch/arm/mach-s3c2410/Kconfig -+++ b/arch/arm/mach-s3c2410/Kconfig -@@ -9,6 +9,7 @@ config CPU_S3C2410 - depends on ARCH_S3C2410 - select S3C2410_CLOCK - select S3C2410_GPIO -+ select S3C2410_PWM - select CPU_LLSERIAL_S3C2410 - select S3C2410_PM if PM - help -@@ -32,11 +33,6 @@ config S3C2410_GPIO - help - GPIO code for S3C2410 and similar processors - --config S3C2410_CLOCK -- bool -- help -- Clock code for the S3C2410, and similar processors -- - config SIMTEC_NOR - bool - help -@@ -49,6 +45,12 @@ config MACH_BAST_IDE - Internal node for machines with an BAST style IDE - interface - -+config S3C2410_PWM -+ bool -+ help -+ PWM timer code for the S3C2410, and similar processors -+ -+ - menu "S3C2410 Machines" - - config ARCH_SMDK2410 -@@ -84,6 +86,7 @@ config ARCH_BAST - select PM_SIMTEC if PM - select SIMTEC_NOR - select MACH_BAST_IDE -+ select S3C24XX_DCLK - select ISA - help - Say Y here if you are using the Simtec Electronics EB2410ITX -@@ -121,6 +124,7 @@ config MACH_TCT_HAMMER - config MACH_VR1000 - bool "Thorcom VR1000" - select PM_SIMTEC if PM -+ select S3C24XX_DCLK - select SIMTEC_NOR - select MACH_BAST_IDE - select CPU_S3C2410 -@@ -130,7 +134,16 @@ config MACH_VR1000 - config MACH_QT2410 - bool "QT2410" - select CPU_S3C2410 -+ select DISPLAY_JBT6K74 - help - Say Y here if you are using the Armzone QT2410 - -+config MACH_NEO1973_GTA01 -+ bool "FIC Neo1973 GSM Phone (GTA01 Hardware)" -+ select CPU_S3C2410 -+ select MACH_NEO1973 -+ select SENSORS_PCF50606 -+ help -+ Say Y here if you are using the FIC Neo1973 GSM Phone -+ - endmenu ---- a/arch/arm/mach-s3c2410/mach-amlm5900.c -+++ b/arch/arm/mach-s3c2410/mach-amlm5900.c -@@ -52,6 +52,7 @@ - #include <mach/regs-lcd.h> - #include <mach/regs-gpio.h> - -+#include <plat/iic.h> - #include <plat/devs.h> - #include <plat/cpu.h> - -@@ -150,7 +151,7 @@ static struct platform_device *amlm5900_ - #endif - &s3c_device_adc, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_usb, - &s3c_device_rtc, - &s3c_device_usbgadget, -@@ -233,6 +234,7 @@ static void __init amlm5900_init(void) - #ifdef CONFIG_FB_S3C2410 - s3c24xx_fb_set_platdata(&amlm5900_fb_info); - #endif -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(amlm5900_devices, ARRAY_SIZE(amlm5900_devices)); - } - ---- a/arch/arm/mach-s3c2410/mach-bast.c -+++ b/arch/arm/mach-s3c2410/mach-bast.c -@@ -44,8 +44,8 @@ - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> - --#include <asm/plat-s3c/nand.h> --#include <asm/plat-s3c/iic.h> -+#include <plat/nand.h> -+#include <plat/iic.h> - #include <mach/fb.h> - - #include <linux/mtd/mtd.h> -@@ -406,7 +406,7 @@ static struct platform_device bast_sio = - * standard 100KHz i2c bus frequency - */ - --static struct s3c2410_platform_i2c bast_i2c_info = { -+static struct s3c2410_platform_i2c __initdata bast_i2c_info = { - .flags = 0, - .slave_addr = 0x10, - .bus_freq = 100*1000, -@@ -553,7 +553,7 @@ static struct platform_device *bast_devi - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_rtc, - &s3c_device_nand, - &bast_device_dm9k, -@@ -588,7 +588,8 @@ static void __init bast_map_io(void) - s3c24xx_register_clocks(bast_clocks, ARRAY_SIZE(bast_clocks)); - - s3c_device_nand.dev.platform_data = &bast_nand_info; -- s3c_device_i2c.dev.platform_data = &bast_i2c_info; -+ -+ s3c_i2c0_set_platdata(&bast_i2c_info); - - s3c24xx_init_io(bast_iodesc, ARRAY_SIZE(bast_iodesc)); - s3c24xx_init_clocks(0); ---- /dev/null -+++ b/arch/arm/mach-s3c2410/mach-gta01.c -@@ -0,0 +1,786 @@ -+/* -+ * linux/arch/arm/mach-s3c2410/mach-gta01.c -+ * -+ * S3C2410 Machine Support for the FIC Neo1973 GTA01 -+ * -+ * Copyright (C) 2006-2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/list.h> -+#include <linux/timer.h> -+#include <linux/init.h> -+#include <linux/workqueue.h> -+#include <linux/platform_device.h> -+#include <linux/i2c.h> -+#include <linux/serial_core.h> -+#include <mach/ts.h> -+#include <linux/spi/spi.h> -+#include <linux/spi/spi_bitbang.h> -+#include <linux/mmc/mmc.h> -+#include <linux/mmc/host.h> -+ -+#include <linux/mtd/mtd.h> -+#include <linux/mtd/nand.h> -+#include <linux/mtd/nand_ecc.h> -+#include <linux/mtd/partitions.h> -+ -+#include <linux/mmc/host.h> -+ -+#include <linux/pcf50606.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/map.h> -+#include <asm/mach/irq.h> -+ -+#include <mach/hardware.h> -+#include <mach/io.h> -+#include <asm/irq.h> -+#include <asm/mach-types.h> -+ -+#include <mach/regs-gpio.h> -+#include <mach/fb.h> -+#include <mach/mci.h> -+#include <mach/spi.h> -+#include <mach/spi-gpio.h> -+#include <mach/usb-control.h> -+ -+#include <mach/gta01.h> -+ -+#include <plat/regs-serial.h> -+#include <plat/nand.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+#include <plat/pm.h> -+#include <plat/udc.h> -+#include <plat/iic.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+#include <mach/neo1973-pm-gsm.h> -+ -+#include <linux/jbt6k74.h> -+ -+#include <linux/ts_filter_mean.h> -+#include <linux/ts_filter_median.h> -+ -+ -+static struct map_desc gta01_iodesc[] __initdata = { -+ { -+ .virtual = 0xe0000000, -+ .pfn = __phys_to_pfn(S3C2410_CS3+0x01000000), -+ .length = SZ_1M, -+ .type = MT_DEVICE -+ }, -+}; -+ -+#define UCON S3C2410_UCON_DEFAULT -+#define ULCON S3C2410_LCON_CS8 | S3C2410_LCON_PNONE | S3C2410_LCON_STOPB -+#define UFCON S3C2410_UFCON_RXTRIG8 | S3C2410_UFCON_FIFOMODE -+/* UFCON for the gta01 sets the FIFO trigger level at 4, not 8 */ -+#define UFCON_GTA01_PORT0 S3C2410_UFCON_FIFOMODE -+ -+static struct s3c2410_uartcfg gta01_uartcfgs[] = { -+ [0] = { -+ .hwport = 0, -+ .flags = 0, -+ .ucon = UCON, -+ .ulcon = ULCON, -+ .ufcon = UFCON_GTA01_PORT0, -+ }, -+ [1] = { -+ .hwport = 1, -+ .flags = 0, -+ .ucon = UCON, -+ .ulcon = ULCON, -+ .ufcon = UFCON, -+ }, -+}; -+ -+/* PMU driver info */ -+ -+static int pmu_callback(struct device *dev, unsigned int feature, -+ enum pmu_event event) -+{ -+ switch (feature) { -+ case PCF50606_FEAT_ACD: -+ switch (event) { -+ case PMU_EVT_INSERT: -+ pcf50606_charge_fast(pcf50606_global, 1); -+ break; -+ case PMU_EVT_REMOVE: -+ pcf50606_charge_fast(pcf50606_global, 0); -+ break; -+ default: -+ break; -+ } -+ break; -+ default: -+ break; -+ } -+ -+ return 0; -+} -+ -+static struct pcf50606_platform_data gta01_pcf_pdata = { -+ .used_features = PCF50606_FEAT_EXTON | -+ PCF50606_FEAT_MBC | -+ PCF50606_FEAT_BBC | -+ PCF50606_FEAT_RTC | -+ PCF50606_FEAT_WDT | -+ PCF50606_FEAT_CHGCUR | -+ PCF50606_FEAT_BATVOLT | -+ PCF50606_FEAT_BATTEMP, -+ .onkey_seconds_required = 3, -+ .cb = &pmu_callback, -+ .r_fix_batt = 10000, -+ .r_fix_batt_par = 10000, -+ .r_sense_milli = 220, -+ .rails = { -+ [PCF50606_REGULATOR_D1REG] = { -+ .name = "bt_3v15", -+ .voltage = { -+ .init = 3150, -+ .max = 3150, -+ }, -+ }, -+ [PCF50606_REGULATOR_D2REG] = { -+ .name = "gl_2v5", -+ .voltage = { -+ .init = 2500, -+ .max = 2500, -+ }, -+ }, -+ [PCF50606_REGULATOR_D3REG] = { -+ .name = "stby_1v8", -+ .flags = PMU_VRAIL_F_SUSPEND_ON, -+ .voltage = { -+ .init = 1800, -+ .max = 2100, -+ }, -+ }, -+ [PCF50606_REGULATOR_DCD] = { -+ .name = "gl_1v5", -+ .voltage = { -+ .init = 1500, -+ .max = 1500, -+ }, -+ }, -+ [PCF50606_REGULATOR_DCDE] = { -+ .name = "io_3v3", -+ .flags = PMU_VRAIL_F_SUSPEND_ON, -+ .voltage = { -+ .init = 3300, -+ .max = 3330, -+ }, -+ }, -+ [PCF50606_REGULATOR_DCUD] = { -+ .name = "core_1v8", -+ .flags = PMU_VRAIL_F_SUSPEND_ON, -+ .voltage = { -+ .init = 2100, -+ .max = 2100, -+ }, -+ }, -+ [PCF50606_REGULATOR_IOREG] = { -+ .name = "codec_3v3", -+ .voltage = { -+ .init = 3300, -+ .max = 3300, -+ }, -+ }, -+ [PCF50606_REGULATOR_LPREG] = { -+ .name = "lcm_3v3", -+ .voltage = { -+ .init = 3300, -+ .max = 3300, -+ }, -+ } -+ }, -+}; -+ -+static void cfg_pmu_vrail(struct pmu_voltage_rail *vrail, char *name, -+ unsigned int flags, unsigned int init, -+ unsigned int max) -+{ -+ vrail->name = name; -+ vrail->flags = flags; -+ vrail->voltage.init = init; -+ vrail->voltage.max = max; -+} -+ -+static void mangle_pmu_pdata_by_system_rev(void) -+{ -+ switch (system_rev) { -+ case GTA01Bv4_SYSTEM_REV: -+ gta01_pcf_pdata.used_features |= PCF50606_FEAT_ACD; -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ gta01_pcf_pdata.rails[PCF50606_REGULATOR_D3REG] -+ .name = "user1"; -+ gta01_pcf_pdata.rails[PCF50606_REGULATOR_D3REG] -+ .flags &= ~PMU_VRAIL_F_SUSPEND_ON; -+ gta01_pcf_pdata.rails[PCF50606_REGULATOR_D3REG] -+ .flags = PMU_VRAIL_F_UNUSED; -+ break; -+ case GTA01v4_SYSTEM_REV: -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_DCUD], -+ "core_1v8", PMU_VRAIL_F_SUSPEND_ON, 1800, 1800); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_D1REG], -+ "vrf_3v", 0, 3000, 3000); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_D3REG], -+ "vtcxo_2v8", 0, 2800, 2800); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_DCD], -+ "gl_3v5", 0, 3500, 3500); -+ break; -+ case GTA01v3_SYSTEM_REV: -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_D1REG], -+ "vrf_3v", 0, 3000, 3000); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_D2REG], -+ "sd_3v3", 0, 3300, 3300); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_D3REG], -+ "codec_3v3", 0, 3300, 3300); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_DCD], -+ "gpsio_3v3", 0, 3300, 3300); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_DCUD], -+ "core_1v8", PMU_VRAIL_F_SUSPEND_ON, 1800, 1800); -+ cfg_pmu_vrail(>a01_pcf_pdata.rails[PCF50606_REGULATOR_IOREG], -+ "vtcxo_2v8", 0, 2800, 2800); -+ break; -+ } -+} -+ -+static struct resource gta01_pmu_resources[] = { -+ [0] = { -+ .flags = IORESOURCE_IRQ, -+ .start = GTA01_IRQ_PCF50606, -+ .end = GTA01_IRQ_PCF50606, -+ }, -+}; -+ -+struct platform_device gta01_pmu_dev = { -+ .name = "pcf50606", -+ .num_resources = ARRAY_SIZE(gta01_pmu_resources), -+ .resource = gta01_pmu_resources, -+ .dev = { -+ .platform_data = >a01_pcf_pdata, -+ }, -+}; -+ -+/* LCD driver info */ -+ -+/* Configuration for 480x640 toppoly TD028TTEC1. -+ * Do not mark this as __initdata or it will break! */ -+static struct s3c2410fb_display gta01_displays[] = { -+ { -+ .type = S3C2410_LCDCON1_TFT, -+ .width = 43, -+ .height = 58, -+ .xres = 480, -+ .yres = 640, -+ .bpp = 16, -+ -+ .pixclock = 40000, /* HCLK/4 */ -+ .left_margin = 104, -+ .right_margin = 8, -+ .hsync_len = 8, -+ .upper_margin = 2, -+ .lower_margin = 16, -+ .vsync_len = 2, -+ .lcdcon5 = S3C2410_LCDCON5_FRM565 | -+ S3C2410_LCDCON5_INVVCLK | -+ S3C2410_LCDCON5_INVVLINE | -+ S3C2410_LCDCON5_INVVFRAME | -+ S3C2410_LCDCON5_PWREN | -+ S3C2410_LCDCON5_HWSWP, -+ }, -+ { -+ .type = S3C2410_LCDCON1_TFT, -+ .width = 43, -+ .height = 58, -+ .xres = 480, -+ .yres = 640, -+ .bpp = 32, -+ -+ .pixclock = 40000, /* HCLK/4 */ -+ .left_margin = 104, -+ .right_margin = 8, -+ .hsync_len = 8, -+ .upper_margin = 2, -+ .lower_margin = 16, -+ .vsync_len = 2, -+ .lcdcon5 = S3C2410_LCDCON5_FRM565 | -+ S3C2410_LCDCON5_INVVCLK | -+ S3C2410_LCDCON5_INVVLINE | -+ S3C2410_LCDCON5_INVVFRAME | -+ S3C2410_LCDCON5_PWREN | -+ S3C2410_LCDCON5_HWSWP, -+ }, -+ { -+ .type = S3C2410_LCDCON1_TFT, -+ .width = 43, -+ .height = 58, -+ .xres = 240, -+ .yres = 320, -+ .bpp = 16, -+ -+ .pixclock = 40000, /* HCLK/4 */ -+ .left_margin = 104, -+ .right_margin = 8, -+ .hsync_len = 8, -+ .upper_margin = 2, -+ .lower_margin = 16, -+ .vsync_len = 2, -+ .lcdcon5 = S3C2410_LCDCON5_FRM565 | -+ S3C2410_LCDCON5_INVVCLK | -+ S3C2410_LCDCON5_INVVLINE | -+ S3C2410_LCDCON5_INVVFRAME | -+ S3C2410_LCDCON5_PWREN | -+ S3C2410_LCDCON5_HWSWP, -+ }, -+}; -+ -+static struct s3c2410fb_mach_info gta01_lcd_cfg __initdata = { -+ .displays = gta01_displays, -+ .num_displays = ARRAY_SIZE(gta01_displays), -+ .default_display = 0, -+ -+ .lpcsel = ((0xCE6) & ~7) | 1<<4, -+}; -+ -+static struct platform_device *gta01_devices[] __initdata = { -+ &s3c_device_usb, -+ &s3c_device_lcd, -+ &s3c_device_wdt, -+ &s3c_device_i2c0, -+ &s3c_device_iis, -+ &s3c_device_sdi, -+ &s3c_device_usbgadget, -+ &s3c_device_nand, -+ &s3c_device_ts, -+}; -+ -+static struct s3c2410_nand_set gta01_nand_sets[] = { -+ [0] = { -+ .name = "neo1973-nand", -+ .nr_chips = 1, -+ .flags = S3C2410_NAND_BBT, -+ }, -+}; -+ -+static struct s3c2410_platform_nand gta01_nand_info = { -+ .tacls = 20, -+ .twrph0 = 60, -+ .twrph1 = 20, -+ .nr_sets = ARRAY_SIZE(gta01_nand_sets), -+ .sets = gta01_nand_sets, -+}; -+ -+static void gta01_mmc_set_power(unsigned char power_mode, unsigned short vdd) -+{ -+ int bit; -+ int mv = 1700; /* 1.7V for MMC_VDD_165_195 */ -+ -+ printk(KERN_DEBUG "mmc_set_power(power_mode=%u, vdd=%u)\n", -+ power_mode, vdd); -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ switch (power_mode) { -+ case MMC_POWER_OFF: -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_D2REG, 0); -+ break; -+ case MMC_POWER_ON: -+ /* translate MMC_VDD_* VDD bit to mv */ -+ for (bit = 8; bit != 24; bit++) -+ if (vdd == (1 << bit)) -+ mv += 100 * (bit - 4); -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_D2REG, mv); -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_D2REG, 1); -+ break; -+ } -+ break; -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ switch (power_mode) { -+ case MMC_POWER_OFF: -+ neo1973_gpb_setpin(GTA01_GPIO_SDMMC_ON, 1); -+ break; -+ case MMC_POWER_ON: -+ neo1973_gpb_setpin(GTA01_GPIO_SDMMC_ON, 0); -+ break; -+ } -+ break; -+ } -+} -+ -+static struct s3c24xx_mci_pdata gta01_mmc_cfg = { -+ .gpio_detect = GTA01_GPIO_nSD_DETECT, -+ .set_power = >a01_mmc_set_power, -+ .ocr_avail = MMC_VDD_165_195|MMC_VDD_20_21| -+ MMC_VDD_21_22|MMC_VDD_22_23|MMC_VDD_23_24| -+ MMC_VDD_24_25|MMC_VDD_25_26|MMC_VDD_26_27| -+ MMC_VDD_27_28|MMC_VDD_28_29|MMC_VDD_29_30| -+ MMC_VDD_30_31|MMC_VDD_31_32|MMC_VDD_32_33, -+}; -+ -+static void gta01_udc_command(enum s3c2410_udc_cmd_e cmd) -+{ -+ printk(KERN_DEBUG "%s(%d)\n", __func__, cmd); -+ -+ switch (cmd) { -+ case S3C2410_UDC_P_ENABLE: -+ neo1973_gpb_setpin(GTA01_GPIO_USB_PULLUP, 1); -+ break; -+ case S3C2410_UDC_P_DISABLE: -+ neo1973_gpb_setpin(GTA01_GPIO_USB_PULLUP, 0); -+ break; -+ default: -+ break; -+ } -+} -+ -+/* use a work queue, since I2C API inherently schedules -+ * and we get called in hardirq context from UDC driver */ -+ -+struct vbus_draw { -+ struct work_struct work; -+ int ma; -+}; -+static struct vbus_draw gta01_udc_vbus_drawer; -+ -+static void __gta01_udc_vbus_draw(struct work_struct *work) -+{ -+ /* this is a fix to work around boot-time ordering problems if the -+ * s3c2410_udc is initialized before the pcf50606 driver has defined -+ * pcf50606_global */ -+ if (!pcf50606_global) -+ return; -+ -+ if (gta01_udc_vbus_drawer.ma >= 500) { -+ /* enable fast charge */ -+ printk(KERN_DEBUG "udc: enabling fast charge\n"); -+ pcf50606_charge_fast(pcf50606_global, 1); -+ } else { -+ /* disable fast charge */ -+ printk(KERN_DEBUG "udc: disabling fast charge\n"); -+ pcf50606_charge_fast(pcf50606_global, 0); -+ } -+} -+ -+static void gta01_udc_vbus_draw(unsigned int ma) -+{ -+ gta01_udc_vbus_drawer.ma = ma; -+ schedule_work(>a01_udc_vbus_drawer.work); -+} -+ -+static struct s3c2410_udc_mach_info gta01_udc_cfg = { -+ .vbus_draw = gta01_udc_vbus_draw, -+}; -+ -+ -+/* touchscreen configuration */ -+ -+static struct ts_filter_median_configuration gta01_ts_median_config = { -+ .extent = 31, -+ .decimation_below = 24, -+ .decimation_threshold = 8 * 3, -+ .decimation_above = 12, -+}; -+ -+static struct ts_filter_mean_configuration gta01_ts_mean_config = { -+ .bits_filter_length = 5, -+ .averaging_threshold = 12 -+}; -+ -+static struct s3c2410_ts_mach_info gta01_ts_cfg = { -+ .delay = 10000, -+ .presc = 0xff, /* slow as we can go */ -+ .filter_sequence = { -+ [0] = &ts_filter_median_api, -+ [1] = &ts_filter_mean_api, -+ }, -+ .filter_config = { -+ [0] = >a01_ts_median_config, -+ [1] = >a01_ts_mean_config, -+ }, -+}; -+ -+ -+/* SPI */ -+ -+static void gta01_jbt6k74_reset(int devidx, int level) -+{ -+ /* empty place holder; gta01 does not yet use this */ -+ printk(KERN_DEBUG "gta01_jbt6k74_reset\n"); -+} -+ -+static void gta01_jbt6k74_resuming(int devidx) -+{ -+ gta01bl_deferred_resume(); -+} -+ -+const struct jbt6k74_platform_data gta01_jbt6k74_pdata = { -+ .reset = gta01_jbt6k74_reset, -+ .resuming = gta01_jbt6k74_resuming, -+}; -+ -+static struct spi_board_info gta01_spi_board_info[] = { -+ { -+ .modalias = "jbt6k74", -+ .platform_data = >a01_jbt6k74_pdata, -+ /* controller_data */ -+ /* irq */ -+ .max_speed_hz = 10 * 1000 * 1000, -+ .bus_num = 1, -+ /* chip_select */ -+ }, -+}; -+ -+static void spi_gpio_cs(struct s3c2410_spigpio_info *spi, int csidx, int cs) -+{ -+ switch (cs) { -+ case BITBANG_CS_ACTIVE: -+ s3c2410_gpio_setpin(S3C2410_GPG3, 0); -+ break; -+ case BITBANG_CS_INACTIVE: -+ s3c2410_gpio_setpin(S3C2410_GPG3, 1); -+ break; -+ } -+} -+ -+static struct s3c2410_spigpio_info spi_gpio_cfg = { -+ .pin_clk = S3C2410_GPG7, -+ .pin_mosi = S3C2410_GPG6, -+ .pin_miso = S3C2410_GPG5, -+ .board_size = ARRAY_SIZE(gta01_spi_board_info), -+ .board_info = gta01_spi_board_info, -+ .chip_select = &spi_gpio_cs, -+ .num_chipselect = 2, /*** Should be 1 or 2 for gta01? ***/ -+}; -+ -+static struct resource s3c_spi_lcm_resource[] = { -+ [0] = { -+ .start = S3C2410_GPG3, -+ .end = S3C2410_GPG3, -+ }, -+ [1] = { -+ .start = S3C2410_GPG5, -+ .end = S3C2410_GPG5, -+ }, -+ [2] = { -+ .start = S3C2410_GPG6, -+ .end = S3C2410_GPG6, -+ }, -+ [3] = { -+ .start = S3C2410_GPG7, -+ .end = S3C2410_GPG7, -+ }, -+}; -+ -+struct platform_device s3c_device_spi_lcm = { -+ .name = "spi_s3c24xx_gpio", -+ .id = 1, -+ .num_resources = ARRAY_SIZE(s3c_spi_lcm_resource), -+ .resource = s3c_spi_lcm_resource, -+ .dev = { -+ .platform_data = &spi_gpio_cfg, -+ }, -+}; -+ -+static struct gta01bl_machinfo backlight_machinfo = { -+ .default_intensity = 1, -+ .max_intensity = 1, -+ .limit_mask = 1, -+ .defer_resume_backlight = 1, -+}; -+ -+static struct resource gta01_bl_resources[] = { -+ [0] = { -+ .start = GTA01_GPIO_BACKLIGHT, -+ .end = GTA01_GPIO_BACKLIGHT, -+ }, -+}; -+ -+struct platform_device gta01_bl_dev = { -+ .name = "gta01-bl", -+ .num_resources = ARRAY_SIZE(gta01_bl_resources), -+ .resource = gta01_bl_resources, -+ .dev = { -+ .platform_data = &backlight_machinfo, -+ }, -+}; -+ -+static struct resource gta01_led_resources[] = { -+ [0] = { -+ .start = GTA01_GPIO_VIBRATOR_ON, -+ .end = GTA01_GPIO_VIBRATOR_ON, -+ }, -+}; -+ -+struct platform_device gta01_led_dev = { -+ .name = "neo1973-vibrator", -+ .num_resources = ARRAY_SIZE(gta01_led_resources), -+ .resource = gta01_led_resources, -+}; -+ -+static struct resource gta01_button_resources[] = { -+ [0] = { -+ .start = GTA01_GPIO_AUX_KEY, -+ .end = GTA01_GPIO_AUX_KEY, -+ }, -+ [1] = { -+ .start = GTA01_GPIO_HOLD_KEY, -+ .end = GTA01_GPIO_HOLD_KEY, -+ }, -+ [2] = { -+ .start = GTA01_GPIO_JACK_INSERT, -+ .end = GTA01_GPIO_JACK_INSERT, -+ }, -+ [3] = { -+ .start = 0, -+ .end = 0, -+ }, -+ [4] = { -+ .start = 0, -+ .end = 0, -+ }, -+}; -+ -+struct platform_device gta01_button_dev = { -+ .name = "neo1973-button", -+ .num_resources = ARRAY_SIZE(gta01_button_resources), -+ .resource = gta01_button_resources, -+}; -+ -+static struct platform_device gta01_pm_gsm_dev = { -+ .name = "neo1973-pm-gsm", -+}; -+ -+/* USB */ -+static struct s3c2410_hcd_info gta01_usb_info = { -+ .port[0] = { -+ .flags = S3C_HCDFLG_USED, -+ }, -+ .port[1] = { -+ .flags = 0, -+ }, -+}; -+ -+static void __init gta01_map_io(void) -+{ -+ s3c24xx_init_io(gta01_iodesc, ARRAY_SIZE(gta01_iodesc)); -+ s3c24xx_init_clocks(12*1000*1000); -+ s3c24xx_init_uarts(gta01_uartcfgs, ARRAY_SIZE(gta01_uartcfgs)); -+} -+ -+static irqreturn_t gta01_modem_irq(int irq, void *param) -+{ -+ printk(KERN_DEBUG "GSM wakeup interrupt (IRQ %d)\n", irq); -+ gta_gsm_interrupts++; -+ return IRQ_HANDLED; -+} -+ -+static void __init gta01_machine_init(void) -+{ -+ int rc; -+ -+ if (system_rev == GTA01v4_SYSTEM_REV || -+ system_rev == GTA01Bv2_SYSTEM_REV || -+ system_rev == GTA01Bv3_SYSTEM_REV || -+ system_rev == GTA01Bv4_SYSTEM_REV) { -+ gta01_udc_cfg.udc_command = gta01_udc_command; -+ gta01_mmc_cfg.ocr_avail = MMC_VDD_32_33; -+ } -+ -+ s3c_device_usb.dev.platform_data = >a01_usb_info; -+ s3c_device_nand.dev.platform_data = >a01_nand_info; -+ s3c_device_sdi.dev.platform_data = >a01_mmc_cfg; -+ -+ s3c24xx_fb_set_platdata(>a01_lcd_cfg); -+ -+ INIT_WORK(>a01_udc_vbus_drawer.work, __gta01_udc_vbus_draw); -+ s3c24xx_udc_set_platdata(>a01_udc_cfg); -+ s3c_i2c0_set_platdata(NULL); -+ set_s3c2410ts_info(>a01_ts_cfg); -+ -+ /* Set LCD_RESET / XRES to high */ -+ s3c2410_gpio_cfgpin(S3C2410_GPC6, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_setpin(S3C2410_GPC6, 1); -+ -+ /* SPI chip select is gpio output */ -+ s3c2410_gpio_cfgpin(S3C2410_GPG3, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_setpin(S3C2410_GPG3, 1); -+ platform_device_register(&s3c_device_spi_lcm); -+ -+ platform_device_register(>a01_bl_dev); -+ platform_device_register(>a01_button_dev); -+ platform_device_register(>a01_pm_gsm_dev); -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ /* just use the default (GTA01_IRQ_PCF50606) */ -+ break; -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ /* just use the default (GTA01_IRQ_PCF50606) */ -+ gta01_led_resources[0].start = -+ gta01_led_resources[0].end = GTA01Bv2_GPIO_VIBRATOR_ON; -+ break; -+ case GTA01Bv4_SYSTEM_REV: -+ gta01_pmu_resources[0].start = -+ gta01_pmu_resources[0].end = GTA01Bv4_IRQ_PCF50606; -+ gta01_led_resources[0].start = -+ gta01_led_resources[0].end = GTA01Bv4_GPIO_VIBRATOR_ON; -+ break; -+ } -+ mangle_pmu_pdata_by_system_rev(); -+ platform_device_register(>a01_pmu_dev); -+ platform_device_register(>a01_led_dev); -+ -+ platform_add_devices(gta01_devices, ARRAY_SIZE(gta01_devices)); -+ -+ s3c2410_pm_init(); -+ -+ set_irq_type(GTA01_IRQ_MODEM, IRQ_TYPE_EDGE_RISING); -+ rc = request_irq(GTA01_IRQ_MODEM, gta01_modem_irq, IRQF_DISABLED, -+ "modem", NULL); -+ enable_irq_wake(GTA01_IRQ_MODEM); -+ printk(KERN_DEBUG "Enabled GSM wakeup IRQ %d (rc=%d)\n", -+ GTA01_IRQ_MODEM, rc); -+} -+ -+MACHINE_START(NEO1973_GTA01, "GTA01") -+ .phys_io = S3C2410_PA_UART, -+ .io_pg_offst = (((u32)S3C24XX_VA_UART) >> 18) & 0xfffc, -+ .boot_params = S3C2410_SDRAM_PA + 0x100, -+ .map_io = gta01_map_io, -+ .init_irq = s3c24xx_init_irq, -+ .init_machine = gta01_machine_init, -+ .timer = &s3c24xx_timer, -+MACHINE_END ---- a/arch/arm/mach-s3c2410/mach-h1940.c -+++ b/arch/arm/mach-s3c2410/mach-h1940.c -@@ -38,11 +38,13 @@ - #include <mach/h1940.h> - #include <mach/h1940-latch.h> - #include <mach/fb.h> --#include <asm/plat-s3c24xx/udc.h> -+#include <plat/udc.h> -+#include <plat/iic.h> - - #include <plat/clock.h> - #include <plat/devs.h> - #include <plat/cpu.h> -+#include <plat/pll.h> - #include <plat/pm.h> - - static struct map_desc h1940_iodesc[] __initdata = { -@@ -129,6 +131,11 @@ static struct s3c2410_udc_mach_info h194 - .vbus_pin_inverted = 1, - }; - -+static struct s3c2410_ts_mach_info h1940_ts_cfg __initdata = { -+ .delay = 10000, -+ .presc = 49, -+ .oversampling_shift = 2, -+}; - - /** - * Set lcd on or off -@@ -183,9 +190,10 @@ static struct platform_device *h1940_dev - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_usbgadget, -+ &s3c_device_ts, - &s3c_device_leds, - &s3c_device_bluetooth, - }; -@@ -201,7 +209,7 @@ static void __init h1940_map_io(void) - #ifdef CONFIG_PM_H1940 - memcpy(phys_to_virt(H1940_SUSPEND_RESUMEAT), h1940_pm_return, 1024); - #endif -- s3c2410_pm_init(); -+ s3c_pm_init(); - } - - static void __init h1940_init_irq(void) -@@ -214,7 +222,9 @@ static void __init h1940_init(void) - u32 tmp; - - s3c24xx_fb_set_platdata(&h1940_fb_info); -+ set_s3c2410ts_info(&h1940_ts_cfg); - s3c24xx_udc_set_platdata(&h1940_udc_cfg); -+ s3c_i2c0_set_platdata(NULL); - - /* Turn off suspend on both USB ports, and switch the - * selectable USB port to USB device mode. */ -@@ -223,10 +233,9 @@ static void __init h1940_init(void) - S3C2410_MISCCR_USBSUSPND0 | - S3C2410_MISCCR_USBSUSPND1, 0x0); - -- tmp = ( -- 0x78 << S3C2410_PLLCON_MDIVSHIFT) -- | (0x02 << S3C2410_PLLCON_PDIVSHIFT) -- | (0x03 << S3C2410_PLLCON_SDIVSHIFT); -+ tmp = (0x78 << S3C24XX_PLLCON_MDIVSHIFT) -+ | (0x02 << S3C24XX_PLLCON_PDIVSHIFT) -+ | (0x03 << S3C24XX_PLLCON_SDIVSHIFT); - writel(tmp, S3C2410_UPLLCON); - - platform_add_devices(h1940_devices, ARRAY_SIZE(h1940_devices)); ---- a/arch/arm/mach-s3c2410/mach-n30.c -+++ b/arch/arm/mach-s3c2410/mach-n30.c -@@ -40,14 +40,14 @@ - #include <asm/mach/irq.h> - #include <asm/mach/map.h> - --#include <asm/plat-s3c/iic.h> -+#include <plat/iic.h> - #include <plat/regs-serial.h> - - #include <plat/clock.h> - #include <plat/cpu.h> - #include <plat/devs.h> - #include <plat/s3c2410.h> --#include <asm/plat-s3c24xx/udc.h> -+#include <plat/udc.h> - - static struct map_desc n30_iodesc[] __initdata = { - /* nothing here yet */ -@@ -320,7 +320,7 @@ static struct s3c2410fb_mach_info n30_fb - static struct platform_device *n30_devices[] __initdata = { - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_usb, - &s3c_device_usbgadget, -@@ -332,7 +332,7 @@ static struct platform_device *n30_devic - static struct platform_device *n35_devices[] __initdata = { - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_usbgadget, - &n35_button_device, -@@ -501,7 +501,7 @@ static void __init n30_init_irq(void) - static void __init n30_init(void) - { - s3c24xx_fb_set_platdata(&n30_fb_info); -- s3c_device_i2c.dev.platform_data = &n30_i2ccfg; -+ s3c_device_i2c0.dev.platform_data = &n30_i2ccfg; - s3c24xx_udc_set_platdata(&n30_udc_cfg); - - /* Turn off suspend on both USB ports, and switch the ---- a/arch/arm/mach-s3c2410/mach-otom.c -+++ b/arch/arm/mach-s3c2410/mach-otom.c -@@ -35,6 +35,7 @@ - #include <plat/s3c2410.h> - #include <plat/clock.h> - #include <plat/devs.h> -+#include <plat/iic.h> - #include <plat/cpu.h> - - static struct map_desc otom11_iodesc[] __initdata = { -@@ -94,7 +95,7 @@ static struct platform_device *otom11_de - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_rtc, - &otom_device_nor, -@@ -109,6 +110,7 @@ static void __init otom11_map_io(void) - - static void __init otom11_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(otom11_devices, ARRAY_SIZE(otom11_devices)); - } - ---- a/arch/arm/mach-s3c2410/mach-qt2410.c -+++ b/arch/arm/mach-s3c2410/mach-qt2410.c -@@ -1,6 +1,6 @@ - /* linux/arch/arm/mach-s3c2410/mach-qt2410.c - * -- * Copyright (C) 2006 by OpenMoko, Inc. -+ * Copyright (C) 2006 by Openmoko, Inc. - * Author: Harald Welte <laforge@openmoko.org> - * All rights reserved. - * -@@ -50,10 +50,11 @@ - #include <mach/leds-gpio.h> - #include <plat/regs-serial.h> - #include <mach/fb.h> --#include <asm/plat-s3c/nand.h> --#include <asm/plat-s3c24xx/udc.h> -+#include <plat/nand.h> -+#include <plat/udc.h> - #include <mach/spi.h> - #include <mach/spi-gpio.h> -+#include <plat/iic.h> - - #include <plat/common-smdk.h> - #include <plat/devs.h> -@@ -213,7 +214,7 @@ static struct platform_device qt2410_led - - /* SPI */ - --static void spi_gpio_cs(struct s3c2410_spigpio_info *spi, int cs) -+static void spi_gpio_cs(struct s3c2410_spigpio_info *spi, int csidx, int cs) - { - switch (cs) { - case BITBANG_CS_ACTIVE: -@@ -247,7 +248,7 @@ static struct platform_device *qt2410_de - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_sdi, - &s3c_device_usbgadget, -@@ -320,6 +321,24 @@ static int __init qt2410_tft_setup(char - - __setup("tft=", qt2410_tft_setup); - -+static struct resource qt2410_button_resources[] = { -+ [0] = { -+ .start = S3C2410_GPF0, -+ .end = S3C2410_GPF0, -+ }, -+ [1] = { -+ .start = S3C2410_GPF2, -+ .end = S3C2410_GPF2, -+ }, -+}; -+ -+struct platform_device qt2410_button_dev = { -+ .name ="qt2410-button", -+ .num_resources = ARRAY_SIZE(qt2410_button_resources), -+ .resource = qt2410_button_resources, -+}; -+ -+ - static void __init qt2410_map_io(void) - { - s3c24xx_init_io(qt2410_iodesc, ARRAY_SIZE(qt2410_iodesc)); -@@ -349,11 +368,12 @@ static void __init qt2410_machine_init(v - s3c2410_gpio_setpin(S3C2410_GPB0, 1); - - s3c24xx_udc_set_platdata(&qt2410_udc_cfg); -+ s3c_i2c0_set_platdata(NULL); - - s3c2410_gpio_cfgpin(S3C2410_GPB5, S3C2410_GPIO_OUTPUT); - - platform_add_devices(qt2410_devices, ARRAY_SIZE(qt2410_devices)); -- s3c2410_pm_init(); -+ s3c_pm_init(); - } - - MACHINE_START(QT2410, "QT2410") ---- a/arch/arm/mach-s3c2410/mach-smdk2410.c -+++ b/arch/arm/mach-s3c2410/mach-smdk2410.c -@@ -47,6 +47,7 @@ - #include <asm/mach-types.h> - - #include <plat/regs-serial.h> -+#include <plat/iic.h> - - #include <plat/devs.h> - #include <plat/cpu.h> -@@ -89,7 +90,7 @@ static struct platform_device *smdk2410_ - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - }; - -@@ -102,6 +103,7 @@ static void __init smdk2410_map_io(void) - - static void __init smdk2410_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(smdk2410_devices, ARRAY_SIZE(smdk2410_devices)); - smdk_machine_init(); - } ---- a/arch/arm/mach-s3c2410/mach-tct_hammer.c -+++ b/arch/arm/mach-s3c2410/mach-tct_hammer.c -@@ -45,6 +45,7 @@ - #include <asm/mach-types.h> - - #include <plat/regs-serial.h> -+#include <plat/iic.h> - #include <plat/devs.h> - #include <plat/cpu.h> - -@@ -127,7 +128,7 @@ static struct s3c2410_uartcfg tct_hammer - static struct platform_device *tct_hammer_devices[] __initdata = { - &s3c_device_adc, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_usb, - &s3c_device_rtc, - &s3c_device_usbgadget, -@@ -146,6 +147,7 @@ static void __init tct_hammer_map_io(voi - - static void __init tct_hammer_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(tct_hammer_devices, ARRAY_SIZE(tct_hammer_devices)); - } - ---- a/arch/arm/mach-s3c2410/mach-vr1000.c -+++ b/arch/arm/mach-s3c2410/mach-vr1000.c -@@ -47,6 +47,7 @@ - #include <plat/clock.h> - #include <plat/devs.h> - #include <plat/cpu.h> -+#include <plat/iic.h> - - #include "usb-simtec.h" - #include "nor-simtec.h" -@@ -334,7 +335,7 @@ static struct platform_device *vr1000_de - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_adc, - &serial_device, - &vr1000_dm9k0, -@@ -384,6 +385,7 @@ static void __init vr1000_map_io(void) - - static void __init vr1000_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(vr1000_devices, ARRAY_SIZE(vr1000_devices)); - - i2c_register_board_info(0, vr1000_i2c_devs, ---- a/arch/arm/mach-s3c2410/Makefile -+++ b/arch/arm/mach-s3c2410/Makefile -@@ -15,7 +15,8 @@ obj-$(CONFIG_CPU_S3C2410_DMA) += dma.o - obj-$(CONFIG_CPU_S3C2410_DMA) += dma.o - obj-$(CONFIG_S3C2410_PM) += pm.o sleep.o - obj-$(CONFIG_S3C2410_GPIO) += gpio.o --obj-$(CONFIG_S3C2410_CLOCK) += clock.o -+#obj-$(CONFIG_S3C2410_CLOCK) += clock.o -+obj-$(CONFIG_S3C2410_PWM) += pwm.o - - # Machine support - -@@ -38,3 +39,5 @@ obj-$(CONFIG_SIMTEC_NOR) += nor-simtec.o - # machine additions - - obj-$(CONFIG_MACH_BAST_IDE) += bast-ide.o -+obj-$(CONFIG_MACH_NEO1973_GTA01)+= mach-gta01.o -+ ---- a/arch/arm/mach-s3c2410/pm.c -+++ b/arch/arm/mach-s3c2410/pm.c -@@ -37,21 +37,14 @@ - #include <plat/cpu.h> - #include <plat/pm.h> - --#ifdef CONFIG_S3C2410_PM_DEBUG --extern void pm_dbg(const char *fmt, ...); --#define DBG(fmt...) pm_dbg(fmt) --#else --#define DBG(fmt...) printk(KERN_DEBUG fmt) --#endif -- - static void s3c2410_pm_prepare(void) - { - /* ensure at least GSTATUS3 has the resume address */ - -- __raw_writel(virt_to_phys(s3c2410_cpu_resume), S3C2410_GSTATUS3); -+ __raw_writel(virt_to_phys(s3c_cpu_resume), S3C2410_GSTATUS3); - -- DBG("GSTATUS3 0x%08x\n", __raw_readl(S3C2410_GSTATUS3)); -- DBG("GSTATUS4 0x%08x\n", __raw_readl(S3C2410_GSTATUS4)); -+ S3C_PMDBG("GSTATUS3 0x%08x\n", __raw_readl(S3C2410_GSTATUS3)); -+ S3C_PMDBG("GSTATUS4 0x%08x\n", __raw_readl(S3C2410_GSTATUS4)); - - if (machine_is_h1940()) { - void *base = phys_to_virt(H1940_SUSPEND_CHECK); ---- /dev/null -+++ b/arch/arm/mach-s3c2410/pwm.c -@@ -0,0 +1,288 @@ -+/* -+ * arch/arm/mach-s3c2410/3c2410-pwm.c -+ * -+ * Copyright (c) by Javi Roman <javiroman@kernel-labs.org> -+ * for the Openmoko Project. -+ * -+ * S3C2410A SoC PWM support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ * -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/clk.h> -+#include <linux/device.h> -+#include <mach/hardware.h> -+#include <plat/regs-timer.h> -+#include <mach/pwm.h> -+#include <asm/io.h> -+ -+#ifdef CONFIG_PM -+ static unsigned long standby_reg_tcon; -+ static unsigned long standby_reg_tcfg0; -+ static unsigned long standby_reg_tcfg1; -+#endif -+ -+int s3c2410_pwm_disable(struct s3c2410_pwm *pwm) -+{ -+ unsigned long tcon; -+ -+ /* stop timer */ -+ tcon = __raw_readl(S3C2410_TCON); -+ tcon &= 0xffffff00; -+ __raw_writel(tcon, S3C2410_TCON); -+ -+ clk_disable(pwm->pclk); -+ clk_put(pwm->pclk); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(s3c2410_pwm_disable); -+ -+int s3c2410_pwm_init(struct s3c2410_pwm *pwm) -+{ -+ pwm->pclk = clk_get(NULL, "timers"); -+ if (IS_ERR(pwm->pclk)) -+ return PTR_ERR(pwm->pclk); -+ -+ clk_enable(pwm->pclk); -+ pwm->pclk_rate = clk_get_rate(pwm->pclk); -+ return 0; -+} -+EXPORT_SYMBOL_GPL(s3c2410_pwm_init); -+ -+int s3c2410_pwm_enable(struct s3c2410_pwm *pwm) -+{ -+ unsigned long tcfg0, tcfg1, tcnt, tcmp; -+ -+ /* control registers bits */ -+ tcfg1 = __raw_readl(S3C2410_TCFG1); -+ tcfg0 = __raw_readl(S3C2410_TCFG0); -+ -+ /* divider & scaler slection */ -+ switch (pwm->timerid) { -+ case PWM0: -+ tcfg1 &= ~S3C2410_TCFG1_MUX0_MASK; -+ tcfg0 &= ~S3C2410_TCFG_PRESCALER0_MASK; -+ break; -+ case PWM1: -+ tcfg1 &= ~S3C2410_TCFG1_MUX1_MASK; -+ tcfg0 &= ~S3C2410_TCFG_PRESCALER0_MASK; -+ break; -+ case PWM2: -+ tcfg1 &= ~S3C2410_TCFG1_MUX2_MASK; -+ tcfg0 &= ~S3C2410_TCFG_PRESCALER1_MASK; -+ break; -+ case PWM3: -+ tcfg1 &= ~S3C2410_TCFG1_MUX3_MASK; -+ tcfg0 &= ~S3C2410_TCFG_PRESCALER1_MASK; -+ break; -+ case PWM4: -+ /* timer four is not capable of doing PWM */ -+ break; -+ default: -+ clk_disable(pwm->pclk); -+ clk_put(pwm->pclk); -+ return -1; -+ } -+ -+ /* divider & scaler values */ -+ tcfg1 |= pwm->divider; -+ __raw_writel(tcfg1, S3C2410_TCFG1); -+ -+ switch (pwm->timerid) { -+ case PWM0: -+ case PWM1: -+ tcfg0 |= pwm->prescaler; -+ __raw_writel(tcfg0, S3C2410_TCFG0); -+ break; -+ default: -+ if ((tcfg0 | pwm->prescaler) != tcfg0) { -+ printk(KERN_WARNING "not changing prescaler of PWM %u," -+ " since it's shared with timer4 (clock tick)\n", -+ pwm->timerid); -+ } -+ break; -+ } -+ -+ /* timer count and compare buffer initial values */ -+ tcnt = pwm->counter; -+ tcmp = pwm->comparer; -+ -+ __raw_writel(tcnt, S3C2410_TCNTB(pwm->timerid)); -+ __raw_writel(tcmp, S3C2410_TCMPB(pwm->timerid)); -+ -+ /* ensure timer is stopped */ -+ s3c2410_pwm_stop(pwm); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(s3c2410_pwm_enable); -+ -+int s3c2410_pwm_start(struct s3c2410_pwm *pwm) -+{ -+ unsigned long tcon; -+ -+ tcon = __raw_readl(S3C2410_TCON); -+ -+ switch (pwm->timerid) { -+ case PWM0: -+ tcon |= S3C2410_TCON_T0START; -+ tcon &= ~S3C2410_TCON_T0MANUALUPD; -+ break; -+ case PWM1: -+ tcon |= S3C2410_TCON_T1START; -+ tcon &= ~S3C2410_TCON_T1MANUALUPD; -+ break; -+ case PWM2: -+ tcon |= S3C2410_TCON_T2START; -+ tcon &= ~S3C2410_TCON_T2MANUALUPD; -+ break; -+ case PWM3: -+ tcon |= S3C2410_TCON_T3START; -+ tcon &= ~S3C2410_TCON_T3MANUALUPD; -+ break; -+ case PWM4: -+ /* timer four is not capable of doing PWM */ -+ default: -+ return -ENODEV; -+ } -+ -+ __raw_writel(tcon, S3C2410_TCON); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(s3c2410_pwm_start); -+ -+int s3c2410_pwm_stop(struct s3c2410_pwm *pwm) -+{ -+ unsigned long tcon; -+ -+ tcon = __raw_readl(S3C2410_TCON); -+ -+ switch (pwm->timerid) { -+ case PWM0: -+ tcon &= ~0x00000000; -+ tcon |= S3C2410_TCON_T0RELOAD; -+ tcon |= S3C2410_TCON_T0MANUALUPD; -+ break; -+ case PWM1: -+ tcon &= ~0x00000080; -+ tcon |= S3C2410_TCON_T1RELOAD; -+ tcon |= S3C2410_TCON_T1MANUALUPD; -+ break; -+ case PWM2: -+ tcon &= ~0x00000800; -+ tcon |= S3C2410_TCON_T2RELOAD; -+ tcon |= S3C2410_TCON_T2MANUALUPD; -+ break; -+ case PWM3: -+ tcon &= ~0x00008000; -+ tcon |= S3C2410_TCON_T3RELOAD; -+ tcon |= S3C2410_TCON_T3MANUALUPD; -+ break; -+ case PWM4: -+ /* timer four is not capable of doing PWM */ -+ default: -+ return -ENODEV; -+ } -+ -+ __raw_writel(tcon, S3C2410_TCON); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(s3c2410_pwm_stop); -+ -+int s3c2410_pwm_duty_cycle(int reg_value, struct s3c2410_pwm *pwm) -+{ -+ __raw_writel(reg_value, S3C2410_TCMPB(pwm->timerid)); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(s3c2410_pwm_duty_cycle); -+ -+int s3c2410_pwm_dumpregs(void) -+{ -+ printk(KERN_INFO "TCON: %08lx, TCFG0: %08lx, TCFG1: %08lx\n", -+ (unsigned long) __raw_readl(S3C2410_TCON), -+ (unsigned long) __raw_readl(S3C2410_TCFG0), -+ (unsigned long) __raw_readl(S3C2410_TCFG1)); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(s3c2410_pwm_dumpregs); -+ -+static int __init s3c24xx_pwm_probe(struct platform_device *pdev) -+{ -+ struct s3c24xx_pwm_platform_data *pdata = pdev->dev.platform_data; -+ -+ dev_info(&pdev->dev, "s3c24xx_pwm is registered \n"); -+ -+ /* if platform was interested, give him a chance to register -+ * platform devices that switch power with us as the parent -+ * at registration time -- ensures suspend / resume ordering -+ */ -+ if (pdata) -+ if (pdata->attach_child_devices) -+ (pdata->attach_child_devices)(&pdev->dev); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+static int s3c24xx_pwm_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ /* PWM config should be kept in suspending */ -+ standby_reg_tcon = __raw_readl(S3C2410_TCON); -+ standby_reg_tcfg0 = __raw_readl(S3C2410_TCFG0); -+ standby_reg_tcfg1 = __raw_readl(S3C2410_TCFG1); -+ -+ return 0; -+} -+ -+static int s3c24xx_pwm_resume(struct platform_device *pdev) -+{ -+ __raw_writel(standby_reg_tcon, S3C2410_TCON); -+ __raw_writel(standby_reg_tcfg0, S3C2410_TCFG0); -+ __raw_writel(standby_reg_tcfg1, S3C2410_TCFG1); -+ -+ return 0; -+} -+#else -+#define sc32440_pwm_suspend NULL -+#define sc32440_pwm_resume NULL -+#endif -+ -+static struct platform_driver s3c24xx_pwm_driver = { -+ .driver = { -+ .name = "s3c24xx_pwm", -+ .owner = THIS_MODULE, -+ }, -+ .probe = s3c24xx_pwm_probe, -+ .suspend = s3c24xx_pwm_suspend, -+ .resume = s3c24xx_pwm_resume, -+}; -+ -+static int __init s3c24xx_pwm_init(void) -+{ -+ return platform_driver_register(&s3c24xx_pwm_driver); -+} -+ -+static void __exit s3c24xx_pwm_exit(void) -+{ -+} -+ -+MODULE_AUTHOR("Javi Roman <javiroman@kernel-labs.org>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(s3c24xx_pwm_init); -+module_exit(s3c24xx_pwm_exit); ---- a/arch/arm/mach-s3c2410/s3c2410.c -+++ b/arch/arm/mach-s3c2410/s3c2410.c -@@ -16,6 +16,7 @@ - #include <linux/list.h> - #include <linux/timer.h> - #include <linux/init.h> -+#include <linux/clk.h> - #include <linux/sysdev.h> - #include <linux/serial_core.h> - #include <linux/platform_device.h> -@@ -28,6 +29,8 @@ - #include <mach/hardware.h> - #include <asm/irq.h> - -+#include <plat/cpu-freq.h> -+ - #include <mach/regs-clock.h> - #include <plat/regs-serial.h> - -@@ -35,6 +38,7 @@ - #include <plat/cpu.h> - #include <plat/devs.h> - #include <plat/clock.h> -+#include <plat/pll.h> - - /* Initial IO mappings */ - -@@ -59,25 +63,28 @@ void __init s3c2410_init_uarts(struct s3 - * machine specific initialisation. - */ - --void __init s3c2410_map_io(struct map_desc *mach_desc, int mach_size) -+void __init s3c2410_map_io(void) - { -- /* register our io-tables */ -- - iotable_init(s3c2410_iodesc, ARRAY_SIZE(s3c2410_iodesc)); -- iotable_init(mach_desc, mach_size); - } - --void __init s3c2410_init_clocks(int xtal) -+void __init_or_cpufreq s3c2410_setup_clocks(void) - { -+ struct clk *xtal_clk; - unsigned long tmp; -+ unsigned long xtal; - unsigned long fclk; - unsigned long hclk; - unsigned long pclk; - -+ xtal_clk = clk_get(NULL, "xtal"); -+ xtal = clk_get_rate(xtal_clk); -+ clk_put(xtal_clk); -+ - /* now we've got our machine bits initialised, work out what - * clocks we've got */ - -- fclk = s3c2410_get_pll(__raw_readl(S3C2410_MPLLCON), xtal); -+ fclk = s3c24xx_get_pll(__raw_readl(S3C2410_MPLLCON), xtal); - - tmp = __raw_readl(S3C2410_CLKDIVN); - -@@ -95,7 +102,13 @@ void __init s3c2410_init_clocks(int xtal - * console to use them - */ - -- s3c24xx_setup_clocks(xtal, fclk, hclk, pclk); -+ s3c24xx_setup_clocks(fclk, hclk, pclk); -+} -+ -+void __init s3c2410_init_clocks(int xtal) -+{ -+ s3c24xx_register_baseclocks(xtal); -+ s3c2410_setup_clocks(); - s3c2410_baseclk_add(); - } - ---- a/arch/arm/mach-s3c2412/clock.c -+++ b/arch/arm/mach-s3c2412/clock.c -@@ -93,12 +93,6 @@ static int s3c2412_upll_enable(struct cl - - /* clock selections */ - --/* CPU EXTCLK input */ --static struct clk clk_ext = { -- .name = "extclk", -- .id = -1, --}; -- - static struct clk clk_erefclk = { - .name = "erefclk", - .id = -1, -@@ -773,5 +767,6 @@ int __init s3c2412_baseclk_add(void) - s3c2412_clkcon_enable(clkp, 0); - } - -+ s3c_pwmclk_init(); - return 0; - } ---- a/arch/arm/mach-s3c2412/dma.c -+++ b/arch/arm/mach-s3c2412/dma.c -@@ -26,13 +26,13 @@ - - #include <plat/regs-serial.h> - #include <mach/regs-gpio.h> --#include <asm/plat-s3c/regs-ac97.h> -+#include <plat/regs-ac97.h> - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> - #include <mach/regs-sdi.h> - #include <asm/plat-s3c24xx/regs-s3c2412-iis.h> - #include <asm/plat-s3c24xx/regs-iis.h> --#include <asm/plat-s3c24xx/regs-spi.h> -+#include <plat/regs-spi.h> - - #define MAP(x) { (x)| DMA_CH_VALID, (x)| DMA_CH_VALID, (x)| DMA_CH_VALID, (x)| DMA_CH_VALID } - ---- a/arch/arm/mach-s3c2412/mach-jive.c -+++ b/arch/arm/mach-s3c2412/mach-jive.c -@@ -31,8 +31,8 @@ - #include <asm/mach/irq.h> - - #include <plat/regs-serial.h> --#include <asm/plat-s3c/nand.h> --#include <asm/plat-s3c/iic.h> -+#include <plat/nand.h> -+#include <plat/iic.h> - - #include <mach/regs-power.h> - #include <mach/regs-gpio.h> -@@ -52,7 +52,8 @@ - #include <plat/devs.h> - #include <plat/cpu.h> - #include <plat/pm.h> --#include <asm/plat-s3c24xx/udc.h> -+#include <plat/udc.h> -+#include <plat/iic.h> - - static struct map_desc jive_iodesc[] __initdata = { - }; -@@ -450,14 +451,14 @@ static struct spi_board_info __initdata - - /* I2C bus and device configuration. */ - --static struct s3c2410_platform_i2c jive_i2c_cfg = { -+static struct s3c2410_platform_i2c jive_i2c_cfg __initdata = { - .max_freq = 80 * 1000, - .bus_freq = 50 * 1000, - .flags = S3C_IICFLG_FILTER, - .sda_delay = 2, - }; - --static struct i2c_board_info jive_i2c_devs[] = { -+static struct i2c_board_info jive_i2c_devs[] __initdata = { - [0] = { - I2C_BOARD_INFO("lis302dl", 0x1c), - .irq = IRQ_EINT14, -@@ -470,7 +471,7 @@ static struct platform_device *jive_devi - &s3c_device_usb, - &s3c_device_rtc, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_lcd, - &jive_device_lcdspi, - &jive_device_wm8750, -@@ -492,7 +493,7 @@ static int jive_pm_suspend(struct sys_de - * correct address to resume from. */ - - __raw_writel(0x2BED, S3C2412_INFORM0); -- __raw_writel(virt_to_phys(s3c2410_cpu_resume), S3C2412_INFORM1); -+ __raw_writel(virt_to_phys(s3c_cpu_resume), S3C2412_INFORM1); - - return 0; - } -@@ -628,7 +629,7 @@ static void __init jive_machine_init(voi - - /* initialise the power management now we've setup everything. */ - -- s3c2410_pm_init(); -+ s3c_pm_init(); - - s3c_device_nand.dev.platform_data = &jive_nand_info; - -@@ -663,7 +664,7 @@ static void __init jive_machine_init(voi - - spi_register_board_info(jive_spi_devs, ARRAY_SIZE(jive_spi_devs)); - -- s3c_device_i2c.dev.platform_data = &jive_i2c_cfg; -+ s3c_i2c0_set_platdata(&jive_i2c_cfg); - i2c_register_board_info(0, jive_i2c_devs, ARRAY_SIZE(jive_i2c_devs)); - - pm_power_off = jive_power_off; ---- a/arch/arm/mach-s3c2412/mach-smdk2413.c -+++ b/arch/arm/mach-s3c2412/mach-smdk2413.c -@@ -37,7 +37,8 @@ - #include <mach/regs-lcd.h> - - #include <mach/idle.h> --#include <asm/plat-s3c24xx/udc.h> -+#include <plat/udc.h> -+#include <plat/iic.h> - #include <mach/fb.h> - - #include <plat/s3c2410.h> -@@ -105,7 +106,7 @@ static struct platform_device *smdk2413_ - &s3c_device_usb, - //&s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_usbgadget, - }; -@@ -142,6 +143,7 @@ static void __init smdk2413_machine_init - - - s3c24xx_udc_set_platdata(&smdk2413_udc_cfg); -+ s3c_i2c0_set_platdata(NULL); - - platform_add_devices(smdk2413_devices, ARRAY_SIZE(smdk2413_devices)); - smdk_machine_init(); ---- a/arch/arm/mach-s3c2412/mach-vstms.c -+++ b/arch/arm/mach-s3c2412/mach-vstms.c -@@ -39,7 +39,8 @@ - #include <mach/idle.h> - #include <mach/fb.h> - --#include <asm/plat-s3c/nand.h> -+#include <plat/iic.h> -+#include <plat/nand.h> - - #include <plat/s3c2410.h> - #include <plat/s3c2412.h> -@@ -122,7 +123,7 @@ static struct s3c2410_platform_nand vstm - static struct platform_device *vstms_devices[] __initdata = { - &s3c_device_usb, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_rtc, - &s3c_device_nand, -@@ -151,6 +152,7 @@ static void __init vstms_map_io(void) - - static void __init vstms_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(vstms_devices, ARRAY_SIZE(vstms_devices)); - } - ---- a/arch/arm/mach-s3c2412/pm.c -+++ b/arch/arm/mach-s3c2412/pm.c -@@ -85,7 +85,7 @@ static struct sleep_save s3c2412_sleep[] - - static int s3c2412_pm_suspend(struct sys_device *dev, pm_message_t state) - { -- s3c2410_pm_do_save(s3c2412_sleep, ARRAY_SIZE(s3c2412_sleep)); -+ s3c_pm_do_save(s3c2412_sleep, ARRAY_SIZE(s3c2412_sleep)); - return 0; - } - -@@ -98,7 +98,7 @@ static int s3c2412_pm_resume(struct sys_ - tmp |= S3C2412_PWRCFG_STANDBYWFI_IDLE; - __raw_writel(tmp, S3C2412_PWRCFG); - -- s3c2410_pm_do_restore(s3c2412_sleep, ARRAY_SIZE(s3c2412_sleep)); -+ s3c_pm_do_restore(s3c2412_sleep, ARRAY_SIZE(s3c2412_sleep)); - return 0; - } - ---- a/arch/arm/mach-s3c2412/s3c2412.c -+++ b/arch/arm/mach-s3c2412/s3c2412.c -@@ -16,6 +16,7 @@ - #include <linux/list.h> - #include <linux/timer.h> - #include <linux/init.h> -+#include <linux/clk.h> - #include <linux/delay.h> - #include <linux/sysdev.h> - #include <linux/serial_core.h> -@@ -33,13 +34,15 @@ - #include <mach/reset.h> - #include <mach/idle.h> - -+#include <plat/cpu-freq.h> -+ - #include <mach/regs-clock.h> - #include <plat/regs-serial.h> - #include <mach/regs-power.h> - #include <mach/regs-gpio.h> - #include <mach/regs-gpioj.h> - #include <mach/regs-dsc.h> --#include <asm/plat-s3c24xx/regs-spi.h> -+#include <plat/regs-spi.h> - #include <mach/regs-s3c2412.h> - - #include <plat/s3c2412.h> -@@ -47,6 +50,7 @@ - #include <plat/devs.h> - #include <plat/clock.h> - #include <plat/pm.h> -+#include <plat/pll.h> - - #ifndef CONFIG_CPU_S3C2412_ONLY - void __iomem *s3c24xx_va_gpio2 = S3C24XX_VA_GPIO; -@@ -136,7 +140,7 @@ static void s3c2412_hard_reset(void) - * machine specific initialisation. - */ - --void __init s3c2412_map_io(struct map_desc *mach_desc, int mach_size) -+void __init s3c2412_map_io(void) - { - /* move base of IO */ - -@@ -153,20 +157,25 @@ void __init s3c2412_map_io(struct map_de - /* register our io-tables */ - - iotable_init(s3c2412_iodesc, ARRAY_SIZE(s3c2412_iodesc)); -- iotable_init(mach_desc, mach_size); - } - --void __init s3c2412_init_clocks(int xtal) -+void __init_or_cpufreq s3c2412_setup_clocks(void) - { -+ struct clk *xtal_clk; - unsigned long tmp; -+ unsigned long xtal; - unsigned long fclk; - unsigned long hclk; - unsigned long pclk; - -+ xtal_clk = clk_get(NULL, "xtal"); -+ xtal = clk_get_rate(xtal_clk); -+ clk_put(xtal_clk); -+ - /* now we've got our machine bits initialised, work out what - * clocks we've got */ - -- fclk = s3c2410_get_pll(__raw_readl(S3C2410_MPLLCON), xtal*2); -+ fclk = s3c24xx_get_pll(__raw_readl(S3C2410_MPLLCON), xtal * 2); - - clk_mpll.rate = fclk; - -@@ -183,11 +192,17 @@ void __init s3c2412_init_clocks(int xtal - printk("S3C2412: core %ld.%03ld MHz, memory %ld.%03ld MHz, peripheral %ld.%03ld MHz\n", - print_mhz(fclk), print_mhz(hclk), print_mhz(pclk)); - -+ s3c24xx_setup_clocks(fclk, hclk, pclk); -+} -+ -+void __init s3c2412_init_clocks(int xtal) -+{ - /* initialise the clocks here, to allow other things like the - * console to use them - */ - -- s3c24xx_setup_clocks(xtal, fclk, hclk, pclk); -+ s3c24xx_register_baseclocks(xtal); -+ s3c2412_setup_clocks(); - s3c2412_baseclk_add(); - } - -@@ -216,5 +231,8 @@ int __init s3c2412_init(void) - { - printk("S3C2412: Initialising architecture\n"); - -+ /* make sure SD/MMC driver can distinguish 2412 from 2410 */ -+ s3c_device_sdi.name = "s3c2412-sdi"; -+ - return sysdev_register(&s3c2412_sysdev); - } ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/bits.h -@@ -0,0 +1,48 @@ -+/* -+ * Copyright (C) Samsung Electroincs 2003 -+ * Author: SW.LEE <hitchcar@samsung.com> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ */ -+ -+#ifndef __SW_BITS_H -+#define __SW_BITS_H -+ -+#define BIT0 0x00000001 -+#define BIT1 0x00000002 -+#define BIT2 0x00000004 -+#define BIT3 0x00000008 -+#define BIT4 0x00000010 -+#define BIT5 0x00000020 -+#define BIT6 0x00000040 -+#define BIT7 0x00000080 -+#define BIT8 0x00000100 -+#define BIT9 0x00000200 -+#define BIT10 0x00000400 -+#define BIT11 0x00000800 -+#define BIT12 0x00001000 -+#define BIT13 0x00002000 -+#define BIT14 0x00004000 -+#define BIT15 0x00008000 -+#define BIT16 0x00010000 -+#define BIT17 0x00020000 -+#define BIT18 0x00040000 -+#define BIT19 0x00080000 -+#define BIT20 0x00100000 -+#define BIT21 0x00200000 -+#define BIT22 0x00400000 -+#define BIT23 0x00800000 -+#define BIT24 0x01000000 -+#define BIT25 0x02000000 -+#define BIT26 0x04000000 -+#define BIT27 0x08000000 -+#define BIT28 0x10000000 -+#define BIT29 0x20000000 -+#define BIT30 0x40000000 -+#define BIT31 0x80000000 -+ -+#endif ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/camif.c -@@ -0,0 +1,1047 @@ -+/* -+ * Copyright (C) 2004 Samsung Electronics -+ * SW.LEE <hitchcar@samsung.com> -+ * -+ * This file is subject to the terms and conditions of the GNU General Public -+ * License 2. See the file COPYING in the main directory of this archive -+ * for more details. -+ */ -+ -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/sched.h> -+#include <linux/irq.h> -+#include <linux/completion.h> -+#include <linux/delay.h> -+#include <linux/slab.h> -+#include <linux/vmalloc.h> -+#include <linux/miscdevice.h> -+#include <linux/wait.h> -+#include <linux/miscdevice.h> -+#include <asm/io.h> -+#include <asm/semaphore.h> -+#include <asm/hardware.h> -+#include <asm/uaccess.h> -+#include <linux/device.h> -+#include <linux/dma-mapping.h> -+#include <linux/clk.h> -+ -+#ifdef CONFIG_ARCH_S3C24A0A -+#include <asm/arch/S3C24A0.h> -+#include <asm/arch/clocks.h> -+#else -+#include <asm/arch/regs-gpio.h> -+#include <asm/arch/regs-gpioj.h> -+#include <asm/arch/regs-irq.h> -+#endif -+ -+#include "cam_reg.h" -+//#define SW_DEBUG -+#define CONFIG_VIDEO_V4L1_COMPAT -+#include <linux/videodev.h> -+#include "camif.h" -+#include "miscdevice.h" -+ -+static int camif_dma_burst(camif_cfg_t *); -+static int camif_scaler(camif_cfg_t *); -+ -+/* For SXGA Image */ -+#define RESERVE_MEM 15*1024*1024 -+#define YUV_MEM 10*1024*1024 -+#define RGB_MEM (RESERVE_MEM - YUV_MEM) -+ -+static int camif_malloc(camif_cfg_t *cfg) -+{ -+ unsigned int t_size; -+ unsigned int daon = cfg->target_x *cfg->target_y; -+ -+ if(cfg->dma_type & CAMIF_CODEC) { -+ if (cfg->fmt & CAMIF_OUT_YCBCR420) { -+ t_size = daon * 3 / 2 ; -+ } -+ else { t_size = daon * 2; /* CAMIF_OUT_YCBCR422 */ } -+ t_size = t_size *cfg->pp_num; -+ -+#ifndef SAMSUNG_SXGA_CAM -+ cfg->pp_virt_buf = dma_alloc_coherent(cfg->v->dev, -+ t_size, &cfg->pp_phys_buf, -+ GFP_KERNEL); -+#else -+ printk(KERN_INFO "Reserving High RAM Addresses \n"); -+ cfg->pp_phys_buf = PHYS_OFFSET + (MEM_SIZE - RESERVE_MEM); -+ cfg->pp_virt_buf = ioremap_nocache(cfg->pp_phys_buf, YUV_MEM); -+#endif -+ -+ if ( !cfg->pp_virt_buf ) { -+ printk(KERN_ERR"CAMERA:Failed to request YCBCR MEM\n"); -+ return -ENOMEM; -+ } -+ memset(cfg->pp_virt_buf, 0, t_size); -+ cfg->pp_totalsize = t_size; -+ return 0; -+ } -+ if ( cfg->dma_type & CAMIF_PREVIEW ) { -+ if (cfg->fmt & CAMIF_RGB16) -+ t_size = daon * 2; /* 4byte per two pixel*/ -+ else { -+ assert(cfg->fmt & CAMIF_RGB24); -+ t_size = daon * 4; /* 4byte per one pixel */ -+ } -+ t_size = t_size * cfg->pp_num; -+#ifndef SAMSUNG_SXGA_CAM -+ cfg->pp_virt_buf = dma_alloc_coherent(cfg->v->dev, -+ t_size, &cfg->pp_phys_buf, -+ GFP_KERNEL); -+#else -+ printk(KERN_INFO "Reserving High RAM Addresses \n"); -+ cfg->pp_phys_buf = PHYS_OFFSET + (MEM_SIZE - RESERVE_MEM ) + YUV_MEM; -+ cfg->pp_virt_buf = ioremap_nocache(cfg->pp_phys_buf,RGB_MEM); -+#endif -+ if ( !cfg->pp_virt_buf ) { -+ printk(KERN_ERR"CAMERA:Failed to request RGB MEM\n"); -+ return -ENOMEM; -+ } -+ memset(cfg->pp_virt_buf, 0, t_size); -+ cfg->pp_totalsize = t_size; -+ return 0; -+ } -+ -+ return 0; /* Never come. */ -+} -+ -+static int camif_demalloc(camif_cfg_t *cfg) -+{ -+#ifndef SAMSUNG_SXGA_CAM -+ if ( cfg->pp_virt_buf ) { -+ dma_free_coherent(cfg->v->dev, cfg->pp_totalsize, -+ cfg->pp_virt_buf, cfg->pp_phys_buf); -+ cfg->pp_virt_buf = 0; -+ } -+#else -+ iounmap(cfg->pp_virt_buf); -+ cfg->pp_virt_buf = 0; -+#endif -+ return 0; -+} -+ -+/* -+ * advise a person to use this func in ISR -+ * index value indicates the next frame count to be used -+ */ -+int camif_g_frame_num(camif_cfg_t *cfg) -+{ -+ int index = 0; -+ -+ if (cfg->dma_type & CAMIF_CODEC ) { -+ index = FRAME_CNT(readl(camregs + S3C2440_CAM_REG_CICOSTATUS)); -+ DPRINTK("CAMIF_CODEC frame %d \n", index); -+ } -+ else { -+ assert(cfg->dma_type & CAMIF_PREVIEW ); -+ index = FRAME_CNT(readl(camregs + S3C2440_CAM_REG_CIPRSTATUS)); -+ DPRINTK("CAMIF_PREVIEW frame %d 0x%08X \n", index, -+ readl(camregs + S3C2440_CAM_REG_CIPRSTATUS)); -+ } -+ cfg->now_frame_num = (index + 2) % 4; /* When 4 PingPong */ -+ return index; /* meaningless */ -+} -+ -+static int camif_pp_codec(camif_cfg_t *cfg) -+{ -+ u32 i, c_size; /* Cb,Cr size */ -+ u32 one_p_size; -+ u32 daon = cfg->target_x * cfg->target_y; -+ if (cfg->fmt & CAMIF_OUT_YCBCR420) -+ c_size = daon / 4; -+ else { -+ assert(cfg->fmt & CAMIF_OUT_YCBCR422); -+ c_size = daon / 2; -+ } -+ switch ( cfg->pp_num ) { -+ case 1 : -+ for (i =0 ; i < 4; i++) { -+ cfg->img_buf[i].virt_y = cfg->pp_virt_buf; -+ cfg->img_buf[i].phys_y = cfg->pp_phys_buf; -+ cfg->img_buf[i].virt_cb = cfg->pp_virt_buf + daon; -+ cfg->img_buf[i].phys_cb = cfg->pp_phys_buf + daon; -+ cfg->img_buf[i].virt_cr = cfg->pp_virt_buf + daon + c_size; -+ cfg->img_buf[i].phys_cr = cfg->pp_phys_buf + daon + c_size; -+ writel(cfg->img_buf[i].phys_y, camregs + S3C2440_CAM_REG_CICOYSA(i)); -+ writel(cfg->img_buf[i].phys_cb, camregs + S3C2440_CAM_REG_CICOCBSA(i)); -+ writel(cfg->img_buf[i].phys_cr, camregs + S3C2440_CAM_REG_CICOCRSA(i)); -+ } -+ break; -+ case 2: -+#define TRY (( i%2 ) ? 1 :0) -+ one_p_size = daon + 2*c_size; -+ for (i = 0; i < 4 ; i++) { -+ cfg->img_buf[i].virt_y = cfg->pp_virt_buf + TRY * one_p_size; -+ cfg->img_buf[i].phys_y = cfg->pp_phys_buf + TRY * one_p_size; -+ cfg->img_buf[i].virt_cb = cfg->pp_virt_buf + daon + TRY * one_p_size; -+ cfg->img_buf[i].phys_cb = cfg->pp_phys_buf + daon + TRY * one_p_size; -+ cfg->img_buf[i].virt_cr = cfg->pp_virt_buf + daon + c_size + TRY * one_p_size; -+ cfg->img_buf[i].phys_cr = cfg->pp_phys_buf + daon + c_size + TRY * one_p_size; -+ writel(cfg->img_buf[i].phys_y, camregs + S3C2440_CAM_REG_CICOYSA(i)); -+ writel(cfg->img_buf[i].phys_cb, camregs + S3C2440_CAM_REG_CICOCBSA(i)); -+ writel(cfg->img_buf[i].phys_cr, camregs + S3C2440_CAM_REG_CICOCRSA(i)); -+ } -+ break; -+ case 4: -+ one_p_size = daon + 2*c_size; -+ for (i = 0; i < 4 ; i++) { -+ cfg->img_buf[i].virt_y = cfg->pp_virt_buf + i * one_p_size; -+ cfg->img_buf[i].phys_y = cfg->pp_phys_buf + i * one_p_size; -+ cfg->img_buf[i].virt_cb = cfg->pp_virt_buf + daon + i * one_p_size; -+ cfg->img_buf[i].phys_cb = cfg->pp_phys_buf + daon + i * one_p_size; -+ cfg->img_buf[i].virt_cr = cfg->pp_virt_buf + daon + c_size + i * one_p_size; -+ cfg->img_buf[i].phys_cr = cfg->pp_phys_buf + daon + c_size + i * one_p_size; -+ writel(cfg->img_buf[i].phys_y, camregs + S3C2440_CAM_REG_CICOYSA(i)); -+ writel(cfg->img_buf[i].phys_cb, camregs + S3C2440_CAM_REG_CICOCBSA(i)); -+ writel(cfg->img_buf[i].phys_cr, camregs + S3C2440_CAM_REG_CICOCRSA(i)); -+ } -+ break; -+ default: -+ printk("Invalid PingPong Number %d \n",cfg->pp_num); -+ panic("halt\n"); -+} -+ return 0; -+} -+ -+/* RGB Buffer Allocation */ -+static int camif_pp_preview(camif_cfg_t *cfg) -+{ -+ int i; -+ u32 daon = cfg->target_x * cfg->target_y; -+ -+ if(cfg->fmt & CAMIF_RGB24) -+ daon = daon * 4 ; -+ else { -+ assert (cfg->fmt & CAMIF_RGB16); -+ daon = daon *2; -+ } -+ switch ( cfg->pp_num ) { -+ case 1: -+ for ( i = 0; i < 4 ; i++ ) { -+ cfg->img_buf[i].virt_rgb = cfg->pp_virt_buf ; -+ cfg->img_buf[i].phys_rgb = cfg->pp_phys_buf ; -+ writel(cfg->img_buf[i].phys_rgb, camregs + S3C2440_CAM_REG_CICOCRSA(i)); -+ } -+ break; -+ case 2: -+ for ( i = 0; i < 4 ; i++) { -+ cfg->img_buf[i].virt_rgb = cfg->pp_virt_buf + TRY * daon; -+ cfg->img_buf[i].phys_rgb = cfg->pp_phys_buf + TRY * daon; -+ writel(cfg->img_buf[i].phys_rgb, camregs + S3C2440_CAM_REG_CICOCRSA(i)); -+ } -+ break; -+ case 4: -+ for ( i = 0; i < 4 ; i++) { -+ cfg->img_buf[i].virt_rgb = cfg->pp_virt_buf + i * daon; -+ cfg->img_buf[i].phys_rgb = cfg->pp_phys_buf + i * daon; -+ writel(cfg->img_buf[i].phys_rgb, camregs + S3C2440_CAM_REG_CICOCRSA(i)); -+ } -+ break; -+ default: -+ printk("Invalid PingPong Number %d \n",cfg->pp_num); -+ panic("halt\n"); -+ } -+ return 0; -+} -+ -+static int camif_pingpong(camif_cfg_t *cfg) -+{ -+ if (cfg->dma_type & CAMIF_CODEC ) { -+ camif_pp_codec(cfg); -+ } -+ -+ if ( cfg->dma_type & CAMIF_PREVIEW) { -+ camif_pp_preview(cfg); -+ } -+ return 0; -+} -+ -+ -+/*********** Image Convert *******************************/ -+/* Return Format -+ * Supported by Hardware -+ * V4L2_PIX_FMT_YUV420, -+ * V4L2_PIX_FMT_YUV422P, -+ * V4L2_PIX_FMT_BGR32 (BGR4) -+ * ----------------------------------- -+ * V4L2_PIX_FMT_RGB565(X) -+ * Currenly 2byte --> BGR656 Format -+ * S3C2440A,S3C24A0 supports vairants with reversed FMT_RGB565 -+ i.e blue toward the least, red towards the most significant bit -+ -- by SW.LEE -+ */ -+ -+ -+/* -+ * After calling camif_g_frame_num, -+ * this func must be called -+ */ -+u8 * camif_g_frame(camif_cfg_t *cfg) -+{ -+ u8 * ret = NULL; -+ int cnt = cfg->now_frame_num; -+ -+ if(cfg->dma_type & CAMIF_PREVIEW) { -+ ret = cfg->img_buf[cnt].virt_rgb; -+ } -+ if (cfg->dma_type & CAMIF_CODEC) { -+ ret = cfg->img_buf[cnt].virt_y; -+ } -+ return ret; -+} -+ -+/* This function must be called in module initial time */ -+static int camif_source_fmt(camif_gc_t *gc) -+{ -+ u32 cmd = 0; -+ -+ /* Configure CISRCFMT --Source Format */ -+ if (gc->itu_fmt & CAMIF_ITU601) { -+ cmd = CAMIF_ITU601; -+ } -+ else { -+ assert ( gc->itu_fmt & CAMIF_ITU656); -+ cmd = CAMIF_ITU656; -+ } -+ cmd |= SOURCE_HSIZE(gc->source_x)| SOURCE_VSIZE(gc->source_y); -+ /* Order422 */ -+ cmd |= gc->order422; -+ writel(cmd, camregs + S3C2440_CAM_REG_CISRCFMT); -+ -+ return 0 ; -+} -+ -+ -+/* -+ * Codec Input YCBCR422 will be Fixed -+ */ -+static int camif_target_fmt(camif_cfg_t *cfg) -+{ -+ u32 cmd = 0; -+ -+ if (cfg->dma_type & CAMIF_CODEC) { -+ /* YCBCR setting */ -+ cmd = TARGET_HSIZE(cfg->target_x)| TARGET_VSIZE(cfg->target_y); -+ if ( cfg->fmt & CAMIF_OUT_YCBCR420 ) { -+ cmd |= OUT_YCBCR420|IN_YCBCR422; -+ } -+ else { -+ assert(cfg->fmt & CAMIF_OUT_YCBCR422); -+ cmd |= OUT_YCBCR422|IN_YCBCR422; -+ } -+ writel(cmd | cfg->flip, camregs + S3C2440_CAM_REG_CICOTRGFMT); -+ -+ } else { -+ assert(cfg->dma_type & CAMIF_PREVIEW); -+ writel(TARGET_HSIZE(cfg->target_x)|TARGET_VSIZE(cfg->target_y)|cfg->flip, -+ camregs + S3C2440_CAM_REG_CIPRTRGFMT); -+ } -+ return 0; -+} -+ -+void camif_change_flip(camif_cfg_t *cfg) -+{ -+ u32 cmd = readl(camregs + S3C2440_CAM_REG_CICOTRGFMT); -+ -+ cmd &= ~(BIT14|BIT15); -+ cmd |= cfg->flip; -+ -+ writel(cmd, camregs + S3C2440_CAM_REG_CICOTRGFMT); -+} -+ -+ -+ -+/* Must: -+ * Before calling this function, -+ * you must use "camif_dynamic_open" -+ * If you want to enable both CODEC and preview -+ * you must do it at the same time. -+ */ -+int camif_capture_start(camif_cfg_t *cfg) -+{ -+ u32 n_cmd = 0; /* Next Command */ -+ -+ switch(cfg->exec) { -+ case CAMIF_BOTH_DMA_ON: -+ camif_reset(CAMIF_RESET, 0); /* Flush Camera Core Buffer */ -+ writel(readl(camregs + S3C2440_CAM_REG_CIPRSCCTRL) | -+ SCALERSTART, camregs + S3C2440_CAM_REG_CIPRSCCTRL); -+ writel(readl(camregs + S3C2440_CAM_REG_CICOSCCTRL) | -+ SCALERSTART, camregs + S3C2440_CAM_REG_CICOSCCTRL); -+ n_cmd = CAMIF_CAP_PREVIEW_ON | CAMIF_CAP_CODEC_ON; -+ break; -+ case CAMIF_DMA_ON: -+ camif_reset(CAMIF_RESET, 0); /* Flush Camera Core Buffer */ -+ if (cfg->dma_type&CAMIF_CODEC) { -+ writel(readl(camregs + S3C2440_CAM_REG_CICOSCCTRL) | -+ SCALERSTART, camregs + S3C2440_CAM_REG_CICOSCCTRL); -+ n_cmd = CAMIF_CAP_CODEC_ON; -+ } else { -+ writel(readl(camregs + S3C2440_CAM_REG_CIPRSCCTRL) | -+ SCALERSTART, camregs + S3C2440_CAM_REG_CIPRSCCTRL); -+ n_cmd = CAMIF_CAP_PREVIEW_ON; -+ } -+ -+ /* wait until Sync Time expires */ -+ /* First settting, to wait VSYNC fall */ -+ /* By VESA spec,in 640x480 @60Hz -+ MAX Delay Time is around 64us which "while" has.*/ -+ while(VSYNC & readl(camregs + S3C2440_CAM_REG_CICOSTATUS)); -+ break; -+ default: -+ break; -+} -+ writel(n_cmd | CAMIF_CAP_ON, camregs + S3C2440_CAM_REG_CIIMGCPT); -+ return 0; -+} -+ -+ -+int camif_capture_stop(camif_cfg_t *cfg) -+{ -+ u32 n_cmd = readl(camregs + S3C2440_CAM_REG_CIIMGCPT); /* Next Command */ -+ -+ switch(cfg->exec) { -+ case CAMIF_BOTH_DMA_OFF: -+ writel(readl(camregs + S3C2440_CAM_REG_CIPRSCCTRL) & -+ ~SCALERSTART, camregs + S3C2440_CAM_REG_CIPRSCCTRL); -+ writel(readl(camregs + S3C2440_CAM_REG_CICOSCCTRL) & -+ ~SCALERSTART, camregs + S3C2440_CAM_REG_CICOSCCTRL); -+ n_cmd = 0; -+ break; -+ case CAMIF_DMA_OFF_L_IRQ: /* fall thru */ -+ case CAMIF_DMA_OFF: -+ if (cfg->dma_type&CAMIF_CODEC) { -+ writel(readl(camregs + S3C2440_CAM_REG_CICOSCCTRL) & -+ ~SCALERSTART, camregs + S3C2440_CAM_REG_CICOSCCTRL); -+ n_cmd &= ~CAMIF_CAP_CODEC_ON; -+ if (!(n_cmd & CAMIF_CAP_PREVIEW_ON)) -+ n_cmd = 0; -+ } else { -+ writel(readl(camregs + S3C2440_CAM_REG_CIPRSCCTRL) & -+ ~SCALERSTART, camregs + S3C2440_CAM_REG_CIPRSCCTRL); -+ n_cmd &= ~CAMIF_CAP_PREVIEW_ON; -+ if (!(n_cmd & CAMIF_CAP_CODEC_ON)) -+ n_cmd = 0; -+ } -+ break; -+ default: -+ panic("Unexpected \n"); -+ } -+ writel(n_cmd, camregs + S3C2440_CAM_REG_CIIMGCPT); -+ -+ if (cfg->exec == CAMIF_DMA_OFF_L_IRQ) { /* Last IRQ */ -+ if (cfg->dma_type & CAMIF_CODEC) -+ writel(readl(camregs + S3C2440_CAM_REG_CICOCTRL) | -+ LAST_IRQ_EN, camregs + S3C2440_CAM_REG_CICOCTRL); -+ else -+ writel(readl(camregs + S3C2440_CAM_REG_CIPRCTRL) | -+ LAST_IRQ_EN, camregs + S3C2440_CAM_REG_CIPRCTRL); -+ } -+#if 0 -+ else { /* to make internal state machine of CAMERA stop */ -+ camif_reset(CAMIF_RESET, 0); -+ } -+#endif -+ return 0; -+} -+ -+ -+/* LastIRQEn is autoclear */ -+void camif_last_irq_en(camif_cfg_t *cfg) -+{ -+ if ((cfg->exec == CAMIF_BOTH_DMA_ON) || (cfg->dma_type & CAMIF_CODEC)) -+ writel(readl(camregs + S3C2440_CAM_REG_CICOCTRL) | -+ LAST_IRQ_EN, camregs + S3C2440_CAM_REG_CICOCTRL); -+ -+ if ((cfg->exec == CAMIF_BOTH_DMA_ON) || !(cfg->dma_type & CAMIF_CODEC)) -+ writel(readl(camregs + S3C2440_CAM_REG_CIPRCTRL) | -+ LAST_IRQ_EN, camregs + S3C2440_CAM_REG_CIPRCTRL); -+} -+ -+static int -+camif_scaler_internal(u32 srcWidth, u32 dstWidth, u32 *ratio, u32 *shift) -+{ -+ if(srcWidth>=64*dstWidth){ -+ printk(KERN_ERR"CAMERA:out of prescaler range: srcWidth /dstWidth = %d(< 64)\n", -+ srcWidth/dstWidth); -+ return 1; -+ } -+ else if(srcWidth>=32*dstWidth){ -+ *ratio=32; -+ *shift=5; -+ } -+ else if(srcWidth>=16*dstWidth){ -+ *ratio=16; -+ *shift=4; -+ } -+ else if(srcWidth>=8*dstWidth){ -+ *ratio=8; -+ *shift=3; -+ } -+ else if(srcWidth>=4*dstWidth){ -+ *ratio=4; -+ *shift=2; -+ } -+ else if(srcWidth>=2*dstWidth){ -+ *ratio=2; -+ *shift=1; -+ } -+ else { -+ *ratio=1; -+ *shift=0; -+ } -+ return 0; -+} -+ -+ -+int camif_g_fifo_status(camif_cfg_t *cfg) -+{ -+ u32 reg; -+ -+ if (cfg->dma_type & CAMIF_CODEC) { -+ u32 flag = CO_OVERFLOW_Y | CO_OVERFLOW_CB | CO_OVERFLOW_CR; -+ reg = readl(camregs + S3C2440_CAM_REG_CICOSTATUS); -+ if (reg & flag) { -+ printk("CODEC: FIFO error(0x%08x) and corrected\n",reg); -+ /* FIFO Error Count ++ */ -+ writel(readl(camregs + S3C2440_CAM_REG_CIWDOFST) | -+ CO_FIFO_Y | CO_FIFO_CB | CO_FIFO_CR, -+ camregs + S3C2440_CAM_REG_CIWDOFST); -+ -+ writel(readl(camregs + S3C2440_CAM_REG_CIWDOFST) & -+ ~(CO_FIFO_Y | CO_FIFO_CB | CO_FIFO_CR), -+ camregs + S3C2440_CAM_REG_CIWDOFST); -+ return 1; /* Error */ -+ } -+ } -+ if (cfg->dma_type & CAMIF_PREVIEW) { -+ u32 flag = PR_OVERFLOW_CB | PR_OVERFLOW_CR; -+ reg = readl(camregs + S3C2440_CAM_REG_CIPRSTATUS); -+ if (reg & flag) { -+ printk("PREVIEW:FIFO error(0x%08x) and corrected\n",reg); -+ writel(readl(camregs + S3C2440_CAM_REG_CIWDOFST) | -+ CO_FIFO_CB | CO_FIFO_CR, -+ camregs + S3C2440_CAM_REG_CIWDOFST); -+ -+ writel(readl(camregs + S3C2440_CAM_REG_CIWDOFST) & -+ ~(CO_FIFO_Y | CO_FIFO_CB | CO_FIFO_CR), -+ camregs + S3C2440_CAM_REG_CIWDOFST); -+ /* FIFO Error Count ++ */ -+ return 1; /* Error */ -+ } -+ } -+ return 0; /* No Error */ -+} -+ -+ -+/* Policy: -+ * if codec or preview define the win offset, -+ * other must follow that value. -+ */ -+int camif_win_offset(camif_gc_t *gc ) -+{ -+ u32 h = gc->win_hor_ofst; -+ u32 v = gc->win_ver_ofst; -+ -+ /*Clear Overflow */ -+ writel(CO_FIFO_Y | CO_FIFO_CB | CO_FIFO_CR | PR_FIFO_CB | PR_FIFO_CB, -+ camregs + S3C2440_CAM_REG_CIWDOFST); -+ writel(0, camregs + S3C2440_CAM_REG_CIWDOFST); -+ -+ if (!h && !v) { -+ writel(0, camregs + S3C2440_CAM_REG_CIWDOFST); -+ return 0; -+ } -+ -+ writel(WINOFEN | WINHOROFST(h) | WINVEROFST(v), camregs + S3C2440_CAM_REG_CIWDOFST); -+ return 0; -+} -+ -+/* -+ * when you change the resolution in a specific camera, -+ * sometimes, it is necessary to change the polarity -+ * -- SW.LEE -+ */ -+static void camif_polarity(camif_gc_t *gc) -+{ -+ u32 cmd = readl(camregs + S3C2440_CAM_REG_CIGCTRL);; -+ -+ cmd = cmd & ~(BIT26|BIT25|BIT24); /* clear polarity */ -+ if (gc->polarity_pclk) -+ cmd |= GC_INVPOLPCLK; -+ if (gc->polarity_vsync) -+ cmd |= GC_INVPOLVSYNC; -+ if (gc->polarity_href) -+ cmd |= GC_INVPOLHREF; -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) | -+ cmd, camregs + S3C2440_CAM_REG_CIGCTRL); -+} -+ -+ -+int camif_dynamic_open(camif_cfg_t *cfg) -+{ -+ camif_win_offset(cfg->gc); -+ camif_polarity(cfg->gc); -+ -+ if(camif_scaler(cfg)) { -+ printk(KERN_ERR "CAMERA:Preview Scaler, Change WinHorOfset or Target Size\n"); -+ return 1; -+ } -+ camif_target_fmt(cfg); -+ if (camif_dma_burst(cfg)) { -+ printk(KERN_ERR "CAMERA:DMA Busrt Length Error \n"); -+ return 1; -+ } -+ if(camif_malloc(cfg) ) { -+ printk(KERN_ERR " Instead of using consistent_alloc()\n" -+ " lease use dedicated memory allocation for DMA memory\n"); -+ return -1; -+ } -+ camif_pingpong(cfg); -+ return 0; -+} -+ -+int camif_dynamic_close(camif_cfg_t *cfg) -+{ -+ camif_demalloc(cfg); -+ return 0; -+} -+ -+static int camif_target_area(camif_cfg_t *cfg) -+{ -+ u32 rect = cfg->target_x * cfg->target_y; -+ -+ if (cfg->dma_type & CAMIF_CODEC) -+ writel(rect, camregs + S3C2440_CAM_REG_CICOTAREA); -+ -+ if (cfg->dma_type & CAMIF_PREVIEW) -+ writel(rect, camregs + S3C2440_CAM_REG_CIPRTAREA); -+ -+ return 0; -+} -+ -+static int inline camif_hw_reg(camif_cfg_t *cfg) -+{ -+ u32 cmd = 0; -+ -+ if (cfg->dma_type & CAMIF_CODEC) { -+ writel(PRE_SHIFT(cfg->sc.shfactor) | -+ PRE_HRATIO(cfg->sc.prehratio) | -+ PRE_VRATIO(cfg->sc.prevratio), -+ camregs + S3C2440_CAM_REG_CICOSCPRERATIO); -+ writel(PRE_DST_WIDTH(cfg->sc.predst_x) | -+ PRE_DST_HEIGHT(cfg->sc.predst_y), -+ camregs + S3C2440_CAM_REG_CICOSCPREDST); -+ -+ /* Differ from Preview */ -+ if (cfg->sc.scalerbypass) -+ cmd |= SCALERBYPASS; -+ if (cfg->sc.scaleup_h & cfg->sc.scaleup_v) -+ cmd |= BIT30|BIT29; -+ writel(cmd | MAIN_HRATIO(cfg->sc.mainhratio) | -+ MAIN_VRATIO(cfg->sc.mainvratio), -+ camregs + S3C2440_CAM_REG_CICOSCCTRL); -+ return 0; -+ } -+ if (cfg->dma_type & CAMIF_PREVIEW) { -+ writel(PRE_SHIFT(cfg->sc.shfactor) | -+ PRE_HRATIO(cfg->sc.prehratio) | -+ PRE_VRATIO(cfg->sc.prevratio), -+ camregs + S3C2440_CAM_REG_CIPRSCPRERATIO); -+ writel(PRE_DST_WIDTH(cfg->sc.predst_x) | -+ PRE_DST_HEIGHT(cfg->sc.predst_y), -+ camregs + S3C2440_CAM_REG_CIPRSCPREDST); -+ /* Differ from Codec */ -+ if (cfg->fmt & CAMIF_RGB24) -+ cmd |= RGB_FMT24; -+ if (cfg->sc.scaleup_h & cfg->sc.scaleup_v) -+ cmd |= BIT29 | BIT28; -+ writel(cmd | MAIN_HRATIO(cfg->sc.mainhratio) | S_METHOD | -+ MAIN_VRATIO(cfg->sc.mainvratio), -+ camregs + S3C2440_CAM_REG_CIPRSCCTRL); -+ return 0; -+ } -+ -+ panic("CAMERA:DMA_TYPE Wrong \n"); -+ return 0; -+} -+ -+ -+/* Configure Pre-scaler control & main scaler control register */ -+static int camif_scaler(camif_cfg_t *cfg) -+{ -+ int tx = cfg->target_x, ty = cfg->target_y; -+ int sx, sy; -+ -+ if (tx <= 0 || ty <= 0) -+ panic("CAMERA: Invalid target size \n"); -+ -+ sx = cfg->gc->source_x - 2 * cfg->gc->win_hor_ofst; -+ sy = cfg->gc->source_y - 2 * cfg->gc->win_ver_ofst; -+ if (sx <= 0 || sy <= 0) -+ panic("CAMERA: Invalid source size \n"); -+ -+ cfg->sc.modified_src_x = sx; -+ cfg->sc.modified_src_y = sy; -+ -+ /* Pre-scaler control register 1 */ -+ camif_scaler_internal(sx, tx, &cfg->sc.prehratio, &cfg->sc.hfactor); -+ camif_scaler_internal(sy, ty, &cfg->sc.prevratio, &cfg->sc.vfactor); -+ -+ if (cfg->dma_type & CAMIF_PREVIEW) -+ if ((sx / cfg->sc.prehratio) > 640) { -+ printk(KERN_INFO "CAMERA: Internal Preview line " -+ "buffer is 640 pixels\n"); -+ return 1; /* Error */ -+ } -+ -+ cfg->sc.shfactor = 10 - (cfg->sc.hfactor + cfg->sc.vfactor); -+ /* Pre-scaler control register 2 */ -+ cfg->sc.predst_x = sx / cfg->sc.prehratio; -+ cfg->sc.predst_y = sy / cfg->sc.prevratio; -+ -+ /* Main-scaler control register */ -+ cfg->sc.mainhratio = (sx << 8) / (tx << cfg->sc.hfactor); -+ cfg->sc.mainvratio = (sy << 8) / (ty << cfg->sc.vfactor); -+ DPRINTK(" sx %d, sy %d tx %d ty %d \n", sx, sy, tx, ty); -+ DPRINTK(" hfactor %d vfactor %d \n",cfg->sc.hfactor, cfg->sc.vfactor); -+ -+ cfg->sc.scaleup_h = (sx <= tx) ? 1: 0; -+ cfg->sc.scaleup_v = (sy <= ty) ? 1: 0; -+ if (cfg->sc.scaleup_h != cfg->sc.scaleup_v) -+ printk(KERN_ERR "scaleup_h must be same to scaleup_v \n"); -+ -+ camif_hw_reg(cfg); -+ camif_target_area(cfg); -+ -+ return 0; -+} -+ -+/****************************************************** -+ CalculateBurstSize - Calculate the busrt lengths -+ Description: -+ - dstHSize: the number of the byte of H Size. -+********************************************************/ -+static void camif_g_bsize(u32 hsize, u32 *mburst, u32 *rburst) -+{ -+ u32 tmp; -+ -+ tmp = (hsize / 4) % 16; -+ switch(tmp) { -+ case 0: -+ *mburst=16; -+ *rburst=16; -+ break; -+ case 4: -+ *mburst=16; -+ *rburst=4; -+ break; -+ case 8: -+ *mburst=16; -+ *rburst=8; -+ break; -+ default: -+ tmp=(hsize / 4) % 8; -+ switch(tmp) { -+ case 0: -+ *mburst = 8; -+ *rburst = 8; -+ break; -+ case 4: -+ *mburst = 8; -+ *rburst = 4; -+ default: -+ *mburst = 4; -+ tmp = (hsize / 4) % 4; -+ *rburst= (tmp) ? tmp: 4; -+ break; -+ } -+ break; -+ } -+} -+ -+/* SXGA 1028x1024*/ -+/* XGA 1024x768 */ -+/* SVGA 800x600 */ -+/* VGA 640x480 */ -+/* CIF 352x288 */ -+/* QVGA 320x240 */ -+/* QCIF 176x144 */ -+/* ret val -+ 1 : DMA Size Error -+*/ -+#define BURST_ERR 1 -+static int camif_dma_burst(camif_cfg_t *cfg) -+{ -+ int width = cfg->target_x; -+ -+ if (cfg->dma_type & CAMIF_CODEC ) { -+ u32 yburst_m, yburst_r; -+ u32 cburst_m, cburst_r; -+ /* CODEC DMA WIDHT is multiple of 16 */ -+ if (width % 16) -+ return BURST_ERR; /* DMA Burst Length Error */ -+ camif_g_bsize(width, &yburst_m, &yburst_r); -+ camif_g_bsize(width / 2, &cburst_m, &cburst_r); -+ -+ writel(YBURST_M(yburst_m) | CBURST_M(cburst_m) | -+ YBURST_R(yburst_r) | CBURST_R(cburst_r), -+ camregs + S3C2440_CAM_REG_CICOCTRL); -+ } -+ -+ if (cfg->dma_type & CAMIF_PREVIEW) { -+ u32 rgburst_m, rgburst_r; -+ if(cfg->fmt == CAMIF_RGB24) { -+ if (width % 2) -+ return BURST_ERR; /* DMA Burst Length Error */ -+ camif_g_bsize(width*4,&rgburst_m,&rgburst_r); -+ } else { /* CAMIF_RGB16 */ -+ if ((width / 2) %2) -+ return BURST_ERR; /* DMA Burst Length Error */ -+ camif_g_bsize(width*2,&rgburst_m,&rgburst_r); -+ } -+ -+ writel(RGBURST_M(rgburst_m) | RGBURST_R(rgburst_r), -+ camregs + S3C2440_CAM_REG_CIPRCTRL); -+ } -+ return 0; -+} -+ -+static int camif_gpio_init(void) -+{ -+#ifdef CONFIG_ARCH_S3C24A0A -+ /* S3C24A0A has the dedicated signal pins for Camera */ -+#else -+ s3c2410_gpio_cfgpin(S3C2440_GPJ0, S3C2440_GPJ0_CAMDATA0); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ1, S3C2440_GPJ1_CAMDATA1); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ2, S3C2440_GPJ2_CAMDATA2); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ3, S3C2440_GPJ3_CAMDATA3); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ4, S3C2440_GPJ4_CAMDATA4); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ5, S3C2440_GPJ5_CAMDATA5); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ6, S3C2440_GPJ6_CAMDATA6); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ7, S3C2440_GPJ7_CAMDATA7); -+ -+ s3c2410_gpio_cfgpin(S3C2440_GPJ8, S3C2440_GPJ8_CAMPCLK); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ9, S3C2440_GPJ9_CAMVSYNC); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ10, S3C2440_GPJ10_CAMHREF); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ11, S3C2440_GPJ11_CAMCLKOUT); -+ s3c2410_gpio_cfgpin(S3C2440_GPJ12, S3C2440_GPJ12_CAMRESET); -+#endif -+ return 0; -+} -+ -+ -+#define ROUND_ADD 0x100000 -+ -+#ifdef CONFIG_ARCH_S3C24A0A -+int camif_clock_init(camif_gc_t *gc) -+{ -+ unsigned int upll, camclk_div, camclk; -+ -+ if (!gc) camclk = 24000000; -+ else { -+ camclk = gc->camclk; -+ if (camclk > 48000000) -+ printk(KERN_ERR "Wrong Camera Clock\n"); -+ } -+ -+ CLKCON |= CLKCON_CAM_UPLL | CLKCON_CAM_HCLK; -+ upll = get_bus_clk(GET_UPLL); -+ printk(KERN_INFO "CAMERA:Default UPLL %08d and Assing 96Mhz to UPLL\n",upll); -+ UPLLCON = FInsrt(56, fPLL_MDIV) | FInsrt(2, fPLL_PDIV)| FInsrt(1, fPLL_SDIV); -+ upll = get_bus_clk(GET_UPLL); -+ -+ camclk_div = (upll+ROUND_ADD) / camclk - 1; -+ CLKDIVN = (CLKDIVN & 0xFF) | CLKDIVN_CAM(camclk_div); -+ printk(KERN_INFO"CAMERA:upll %d MACRO 0x%08X CLKDIVN 0x%08X \n", -+ upll, CLKDIVN_CAM(camclk_div), CLKDIVN); -+ writel(0, camregs + S3C2440_CAM_REG_CIIMGCPT); /* Dummy ? */ -+ -+ return 0; -+} -+#else -+int camif_clock_init(camif_gc_t *gc) -+{ -+ unsigned int camclk; -+ struct clk *clk_camif = clk_get(NULL, "camif"); -+ struct clk *clk_camif_upll = clk_get(NULL, "camif-upll"); -+ -+ if (!gc) -+ camclk = 24000000; -+ else { -+ camclk = gc->camclk; -+ if (camclk > 48000000) -+ printk(KERN_ERR "Wrong Camera Clock\n"); -+ } -+ -+ clk_set_rate(clk_camif, camclk); -+ -+ clk_enable(clk_camif); -+ clk_enable(clk_camif_upll); -+ -+ -+#if 0 -+ CLKCON |= CLKCON_CAMIF; -+ upll = elfin_get_bus_clk(GET_UPLL); -+ printk(KERN_INFO "CAMERA:Default UPLL %08d and Assing 96Mhz to UPLL\n",upll); -+ { -+ UPLLCON = FInsrt(60, fPLL_MDIV) | FInsrt(4, fPLL_PDIV)| FInsrt(1, fPLL_SDIV); -+ CLKDIVN |= DIVN_UPLL; /* For USB */ -+ upll = elfin_get_bus_clk(GET_UPLL); -+ } -+ -+ camclk_div = (upll+ROUND_ADD) /(camclk * 2) -1; -+ CAMDIVN = CAMCLK_SET_DIV|(camclk_div&0xf); -+ printk(KERN_INFO "CAMERA:upll %08d cam_clk %08d CAMDIVN 0x%08x \n",upll,camclk, CAMDIVN); -+#endif -+ writel(0, camregs + S3C2440_CAM_REG_CIIMGCPT); /* Dummy ? */ -+ -+ return 0; -+} -+#endif -+ -+/* -+ Reset Camera IP in CPU -+ Reset External Sensor -+ */ -+void camif_reset(int is, int delay) -+{ -+ switch (is) { -+ case CAMIF_RESET: -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) | -+ GC_SWRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ mdelay(1); -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) & -+ ~GC_SWRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ break; -+ case CAMIF_EX_RESET_AH: /*Active High */ -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) & -+ ~GC_CAMRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ udelay(200); -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) | -+ GC_CAMRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ udelay(delay); -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) & -+ ~GC_CAMRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ break; -+ case CAMIF_EX_RESET_AL: /*Active Low */ -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) | -+ GC_CAMRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ udelay(200); -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) & -+ ~GC_CAMRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ udelay(delay); -+ writel(readl(camregs + S3C2440_CAM_REG_CIGCTRL) | -+ GC_CAMRST, -+ camregs + S3C2440_CAM_REG_CIGCTRL); -+ break; -+ default: -+ break; -+ } -+} -+ -+/* For Camera Operation, -+ * we can give the high priority to REQ2 of ARBITER1 -+ */ -+ -+/* Please move me into proper place -+ * camif_gc_t is not because "rmmod imgsenor" will delete the instance of camif_gc_t -+ */ -+static u32 old_priority; -+ -+static void camif_bus_priority(int flag) -+{ -+ if (flag) { -+#ifdef CONFIG_ARCH_S3C24A0A -+ old_priority = PRIORITY0; -+ PRIORITY0 = PRIORITY_I_FIX; -+ PRIORITY1 = PRIORITY_I_FIX; -+ -+#else -+ old_priority = readl(S3C2410_PRIORITY); -+ writel(readl(S3C2410_PRIORITY) & ~(3<<7), S3C2410_PRIORITY); -+ writel(readl(S3C2410_PRIORITY) | (1<<7), S3C2410_PRIORITY); /* Arbiter 1, REQ2 first */ -+ writel(readl(S3C2410_PRIORITY) & ~(1<<1), S3C2410_PRIORITY); /* Disable Priority Rotate */ -+#endif -+ } -+ else { -+#ifdef CONFIG_ARCH_S3C24A0A -+ PRIORITY0 = old_priority; -+ PRIORITY1 = old_priority; -+#else -+ writel(old_priority, S3C2410_PRIORITY); -+#endif -+ } -+} -+ -+static void inline camif_clock_off(void) -+{ -+#if defined (CONFIG_ARCH_S3C24A0A) -+ writel(0, camregs + S3C2440_CAM_REG_CIIMGCPT); -+ -+ CLKCON &= ~CLKCON_CAM_UPLL; -+ CLKCON &= ~CLKCON_CAM_HCLK; -+#else -+ struct clk *clk_camif = clk_get(NULL, "camif"); -+ struct clk *clk_camif_upll = clk_get(NULL, "camif-upll"); -+ -+ writel(0, camregs + S3C2440_CAM_REG_CIIMGCPT); -+ -+ clk_disable(clk_camif); -+ clk_disable(clk_camif_upll); -+#endif -+} -+ -+ -+/* Init external image sensor -+ * Before make some value into image senor, -+ * you must set up the pixel clock. -+ */ -+void camif_setup_sensor(void) -+{ -+ camif_reset(CAMIF_RESET, 0); -+ camif_gpio_init(); -+ camif_clock_init(NULL); -+/* Sometimes ,Before loading I2C module, we need the reset signal */ -+#ifdef CONFIG_ARCH_S3C24A0A -+ camif_reset(CAMIF_EX_RESET_AL,1000); -+#else -+ camif_reset(CAMIF_EX_RESET_AH,1000); -+#endif -+} -+ -+void camif_hw_close(camif_cfg_t *cfg) -+{ -+ camif_bus_priority(0); -+ camif_clock_off(); -+} -+ -+void camif_hw_open(camif_gc_t *gc) -+{ -+ camif_source_fmt(gc); -+ camif_win_offset(gc); -+ camif_bus_priority(1); -+} -+ -+ -+ -+/* -+ * Local variables: -+ * tab-width: 8 -+ * c-indent-level: 8 -+ * c-basic-offset: 8 -+ * c-set-style: "K&R" -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/camif_fsm.c -@@ -0,0 +1,432 @@ -+/* -+ Copyright (C) 2004 Samsung Electronics -+ SW.LEE <hitchcar@sec.samsung.com> -+ -+ This program is free software; you can redistribute it and/or modify -+ it under the terms of the GNU General Public License as published by -+ the Free Software Foundation; either version 2 of the License, or -+ (at your option) any later version. -+*/ -+ -+#include <linux/version.h> -+#include <linux/module.h> -+#include <linux/delay.h> -+#include <linux/errno.h> -+#include <linux/fs.h> -+#include <linux/kernel.h> -+#include <linux/major.h> -+#include <linux/slab.h> -+#include <linux/poll.h> -+#include <linux/signal.h> -+#include <linux/ioport.h> -+#include <linux/sched.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/kmod.h> -+#include <linux/vmalloc.h> -+#include <linux/init.h> -+#include <linux/pagemap.h> -+#include <asm/io.h> -+#include <asm/irq.h> -+#include <asm/semaphore.h> -+#include <linux/miscdevice.h> -+ -+#define CONFIG_VIDEO_V4L1_COMPAT -+#include <linux/videodev.h> -+#include "camif.h" -+ -+//#define SW_DEBUG -+static void camif_start_p_with_c(camif_cfg_t *cfg); -+ -+#include "camif.h" -+const char *fsm_version = -+ "$Id: camif_fsm.c,v 1.3 2004/04/27 10:26:28 swlee Exp $"; -+ -+ -+/* -+ * FSM function is the place where Synchronization in not necessary -+ * because IRS calls this functions. -+ */ -+ -+ssize_t camif_p_1fsm_start(camif_cfg_t *cfg) -+{ -+ //camif_reset(CAMIF_RESET,0); -+ cfg->exec = CAMIF_DMA_ON; -+ camif_capture_start(cfg); -+ camif_last_irq_en(cfg); -+ cfg->status = CAMIF_STARTED; -+ cfg->fsm = CAMIF_1nd_INT; -+ return 0; -+} -+ -+ -+ssize_t camif_p_2fsm_start(camif_cfg_t *cfg) -+{ -+ camif_reset(CAMIF_RESET,0);/* FIFO Count goes to zero */ -+ cfg->exec = CAMIF_DMA_ON; -+ camif_capture_start(cfg); -+ cfg->status = CAMIF_STARTED; -+ cfg->fsm = CAMIF_1nd_INT; -+ return 0; -+} -+ -+ -+ssize_t camif_4fsm_start(camif_cfg_t *cfg) -+{ -+ camif_reset(CAMIF_RESET,0); /* FIFO Count goes to zero */ -+ cfg->exec = CAMIF_DMA_ON; -+ camif_capture_start(cfg); -+ cfg->status = CAMIF_STARTED; -+ cfg->fsm = CAMIF_1nd_INT; -+ cfg->perf.frames = 0; -+ return 0; -+} -+ -+ -+/* Policy: -+ cfg->perf.frames set in camif_fsm.c -+ cfg->status set in video-driver.c -+ */ -+ -+/* -+ * Don't insert camif_reset(CAM_RESET, 0 ) into this func -+ */ -+ssize_t camif_p_stop(camif_cfg_t *cfg) -+{ -+ cfg->exec = CAMIF_DMA_OFF; -+// cfg->status = CAMIF_STOPPED; -+ camif_capture_stop(cfg); -+ cfg->perf.frames = 0; /* Dupplicated ? */ -+ return 0; -+} -+ -+/* When C working, P asks C to play togehter */ -+/* Only P must call this function */ -+void camif_start_c_with_p (camif_cfg_t *cfg, camif_cfg_t *other) -+{ -+// cfg->gc->other = get_camif(CODEC_MINOR); -+ cfg->gc->other = other; -+ camif_start_p_with_c(cfg); -+} -+ -+static void camif_start_p_with_c(camif_cfg_t *cfg) -+{ -+ camif_cfg_t *other = (camif_cfg_t *)cfg->gc->other; -+ /* Preview Stop */ -+ cfg->exec = CAMIF_DMA_OFF; -+ camif_capture_stop(cfg); -+ /* Start P and C */ -+ camif_reset(CAMIF_RESET, 0); -+ cfg->exec =CAMIF_BOTH_DMA_ON; -+ camif_capture_start(cfg); -+ cfg->fsm = CAMIF_1nd_INT; /* For Preview */ -+ if(!other) panic("Unexpected Error \n"); -+ other->fsm = CAMIF_1nd_INT; /* For Preview */ -+} -+ -+static void camif_auto_restart(camif_cfg_t *cfg) -+{ -+// if (cfg->dma_type & CAMIF_CODEC) return; -+ if (cfg->auto_restart) -+ camif_start_p_with_c(cfg); -+} -+ -+ -+/* Supposed that PREVIEW already running -+ * request PREVIEW to start with Codec -+ */ -+static int camif_check_global(camif_cfg_t *cfg) -+{ -+ int ret = 0; -+ -+ if (down_interruptible(&cfg->gc->lock)) -+ return -ERESTARTSYS; -+ if ( cfg->gc->status & CWANT2START ) { -+ cfg->gc->status &= ~CWANT2START; -+ cfg->auto_restart = 1; -+ ret = 1; -+ } -+ else { -+ ret = 0; /* There is no codec */ -+ cfg->auto_restart = 0; /* Duplicated ..Dummy */ -+ } -+ -+ up(&cfg->gc->lock); -+ -+ return ret; -+} -+ -+/* -+ * 1nd INT : Start Interrupt -+ * Xnd INT : enable Last IRQ : pingpong get the valid data -+ * Ynd INT : Stop Codec or Preview : pingpong get the valid data -+ * Znd INT : Last IRQ : valid data -+ */ -+#define CHECK_FREQ 5 -+int camif_enter_p_4fsm(camif_cfg_t *cfg) -+{ -+ int ret = 0; -+ -+ cfg->perf.frames++; -+ if (cfg->fsm == CAMIF_NORMAL_INT) -+ if (cfg->perf.frames % CHECK_FREQ == 0) -+ ret = camif_check_global(cfg); -+ if (ret > 0) cfg->fsm = CAMIF_Xnd_INT; /* Codec wait for Preview */ -+ -+ switch (cfg->fsm) { -+ case CAMIF_1nd_INT: /* Start IRQ */ -+ cfg->fsm = CAMIF_NORMAL_INT; -+ ret = INSTANT_SKIP; -+ DPRINTK(KERN_INFO "1nd INT \n"); -+ break; -+ case CAMIF_NORMAL_INT: -+ cfg->status = CAMIF_INT_HAPPEN; -+ cfg->fsm = CAMIF_NORMAL_INT; -+ ret = INSTANT_GO; -+ DPRINTK(KERN_INFO "NORMAL INT \n"); -+ break; -+ case CAMIF_Xnd_INT: -+ camif_last_irq_en(cfg);/* IRQ for Enabling LAST IRQ */ -+ cfg->status = CAMIF_INT_HAPPEN; -+ cfg->fsm = CAMIF_Ynd_INT; -+ ret = INSTANT_GO; -+ DPRINTK(KERN_INFO "Xnd INT \n"); -+ break; -+ case CAMIF_Ynd_INT: /* Capture Stop */ -+ cfg->exec = CAMIF_DMA_OFF; -+ cfg->status = CAMIF_INT_HAPPEN; -+ camif_capture_stop(cfg); -+ cfg->fsm = CAMIF_Znd_INT; -+ ret = INSTANT_GO; -+ DPRINTK(KERN_INFO "Ynd INT \n"); -+ break; -+ case CAMIF_Znd_INT: /* LAST IRQ (Dummy IRQ */ -+ cfg->fsm = CAMIF_DUMMY_INT; -+ cfg->status = CAMIF_INT_HAPPEN; -+ ret = INSTANT_GO; -+ camif_auto_restart(cfg); /* Automatically Restart Camera */ -+ DPRINTK(KERN_INFO "Znd INT \n"); -+ break; -+ case CAMIF_DUMMY_INT: -+ cfg->status = CAMIF_STOPPED; /* Dupplicate ? */ -+ ret = INSTANT_SKIP; -+// DPRINTK(KERN_INFO "Dummy INT \n"); -+ break; -+ default: -+ printk(KERN_INFO "Unexpect INT %d \n",cfg->fsm); -+ ret = INSTANT_SKIP; -+ break; -+ } -+ return ret; -+} -+ -+ -+/* -+ * NO autorestart included in this function -+ */ -+int camif_enter_c_4fsm(camif_cfg_t *cfg) -+{ -+ int ret; -+ -+ cfg->perf.frames++; -+#if 0 -+ if ( (cfg->fsm==CAMIF_NORMAL_INT) -+ && (cfg->perf.frames>cfg->restart_limit-1) -+ ) -+ cfg->fsm = CAMIF_Xnd_INT; -+#endif -+ switch (cfg->fsm) { -+ case CAMIF_1nd_INT: /* Start IRQ */ -+ cfg->fsm = CAMIF_NORMAL_INT; -+// cfg->status = CAMIF_STARTED; /* need this to meet auto-restart */ -+ ret = INSTANT_SKIP; -+ DPRINTK(KERN_INFO "1nd INT \n"); -+ break; -+ case CAMIF_NORMAL_INT: -+ cfg->status = CAMIF_INT_HAPPEN; -+ cfg->fsm = CAMIF_NORMAL_INT; -+ ret = INSTANT_GO; -+ DPRINTK(KERN_INFO "NORMALd INT \n"); -+ break; -+ case CAMIF_Xnd_INT: -+ camif_last_irq_en(cfg);/* IRQ for Enabling LAST IRQ */ -+ cfg->status = CAMIF_INT_HAPPEN; -+ cfg->fsm = CAMIF_Ynd_INT; -+ ret = INSTANT_GO; -+ DPRINTK(KERN_INFO "Xnd INT \n"); -+ break; -+ case CAMIF_Ynd_INT: /* Capture Stop */ -+ cfg->exec = CAMIF_DMA_OFF; -+ cfg->status = CAMIF_INT_HAPPEN; -+ camif_capture_stop(cfg); -+ cfg->fsm = CAMIF_Znd_INT; -+ ret = INSTANT_GO; -+ DPRINTK(KERN_INFO "Ynd INT \n"); -+ break; -+ case CAMIF_Znd_INT: /* LAST IRQ (Dummy IRQ */ -+ cfg->fsm = CAMIF_DUMMY_INT; -+ cfg->status = CAMIF_INT_HAPPEN; -+ ret = INSTANT_GO; -+ DPRINTK(KERN_INFO "Znd INT \n"); -+ break; -+ case CAMIF_DUMMY_INT: -+ cfg->status = CAMIF_STOPPED; /* Dupplicate ? */ -+ ret = INSTANT_SKIP; -+ break; -+ default: -+ printk(KERN_INFO "Unexpect INT %d \n",cfg->fsm); -+ ret = INSTANT_SKIP; -+ break; -+ } -+ return ret; -+} -+ -+/* 4 Interrups State Machine is for two pingpong -+ * 1nd INT : Start Interrupt -+ * Xnd INT : enable Last IRQ : pingpong get the valid data -+ * Ynd INT : Stop Codec or Preview : pingpong get the valid data -+ * Znd INT : Last IRQ : valid data -+ * -+ * Note: -+ * Before calling this func, you must call camif_reset -+ */ -+ -+int camif_enter_2fsm(camif_cfg_t *cfg) /* Codec FSM */ -+{ -+ int ret; -+ -+ cfg->perf.frames++; -+ switch (cfg->fsm) { -+ case CAMIF_1nd_INT: /* Start IRQ */ -+ cfg->fsm = CAMIF_Xnd_INT; -+ ret = INSTANT_SKIP; -+// printk(KERN_INFO "1nd INT \n"); -+ break; -+ case CAMIF_Xnd_INT: -+ camif_last_irq_en(cfg);/* IRQ for Enabling LAST IRQ */ -+ cfg->now_frame_num = 0; -+ cfg->status = CAMIF_INT_HAPPEN; -+ cfg->fsm = CAMIF_Ynd_INT; -+ ret = INSTANT_GO; -+// printk(KERN_INFO "2nd INT \n"); -+ break; -+ case CAMIF_Ynd_INT: /* Capture Stop */ -+ cfg->exec = CAMIF_DMA_OFF; -+ cfg->now_frame_num = 1; -+ cfg->status = CAMIF_INT_HAPPEN; -+ camif_capture_stop(cfg); -+ cfg->fsm = CAMIF_Znd_INT; -+ ret = INSTANT_GO; -+// printk(KERN_INFO "Ynd INT \n"); -+ break; -+ case CAMIF_Znd_INT: /* LAST IRQ (Dummy IRQ */ -+ cfg->now_frame_num = 0; -+// cfg->fsm = CAMIF_DUMMY_INT; -+ cfg->status = CAMIF_INT_HAPPEN; -+ ret = INSTANT_GO; -+// printk(KERN_INFO "Znd INT \n"); -+ break; -+ case CAMIF_DUMMY_INT: -+ cfg->status = CAMIF_STOPPED; /* Dupplicate ? */ -+ ret = INSTANT_SKIP; -+ printk(KERN_INFO "Dummy INT \n"); -+ break; -+ default: /* CAMIF_PENDING_INT */ -+ printk(KERN_INFO "Unexpect INT \n"); -+ ret = INSTANT_SKIP; -+ break; -+ } -+ return ret; -+} -+ -+ -+/* 2 Interrups State Machine is for one pingpong -+ * 1nd INT : Stop Codec or Preview : pingpong get the valid data -+ * 2nd INT : Last IRQ : dummy data -+ */ -+int camif_enter_1fsm(camif_cfg_t *cfg) /* Codec FSM */ -+{ -+ int ret; -+ -+ cfg->perf.frames++; -+ switch (cfg->fsm) { -+ case CAMIF_Ynd_INT: /* IRQ for Enabling LAST IRQ */ -+ cfg->exec = CAMIF_DMA_OFF; -+ camif_capture_stop(cfg); -+ cfg->fsm = CAMIF_Znd_INT; -+ ret = INSTANT_SKIP; -+ // printk(KERN_INFO "Ynd INT \n"); -+ break; -+ case CAMIF_Znd_INT: /* LAST IRQ (Dummy IRQ */ -+ cfg->fsm = CAMIF_DUMMY_INT; -+ cfg->status = CAMIF_INT_HAPPEN; -+ ret = INSTANT_GO; -+ // printk(KERN_INFO "Znd INT \n"); -+ break; -+ case CAMIF_DUMMY_INT: -+ cfg->status = CAMIF_STOPPED; /* Dupplicate ? */ -+ ret = INSTANT_SKIP; -+ printk(KERN_INFO "Dummy INT \n"); -+ break; -+ default: -+ printk(KERN_INFO "Unexpect INT \n"); -+ ret = INSTANT_SKIP; -+ break; -+ } -+ return ret; -+} -+ -+ -+/* -+ * GLOBAL STATUS CONTROL FUNCTION -+ * -+ */ -+ -+ -+/* Supposed that PREVIEW already running -+ * request PREVIEW to start with Codec -+ */ -+int camif_callback_start(camif_cfg_t *cfg) -+{ -+ int doit = 1; -+ while (doit) { -+ if (down_interruptible(&cfg->gc->lock)) { -+ return -ERESTARTSYS; -+ } -+ cfg->gc->status = CWANT2START; -+ cfg->gc->other = cfg; -+ up(&cfg->gc->lock); -+ doit = 0; -+ } -+ return 0; -+} -+ -+/* -+ * Return status of Preview Machine -+ ret value : -+ 0: Preview is not working -+ X: Codec must follow PREVIEW start -+*/ -+int camif_check_preview(camif_cfg_t *cfg) -+{ -+ int ret = 0; -+ -+ if (down_interruptible(&cfg->gc->lock)) { -+ ret = -ERESTARTSYS; -+ return ret; -+ } -+ if (cfg->gc->user == 1) ret = 0; -+ // else if (cfg->gc->status & PNOTWORKING) ret = 0; -+ else ret = 1; -+ up(&cfg->gc->lock); -+ return ret; -+} -+ -+ -+ -+ -+/* -+ * Local variables: -+ * c-basic-offset: 8 -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/camif.h -@@ -0,0 +1,304 @@ -+/* -+ FIMC2.0 Camera Header File -+ -+ Copyright (C) 2003 Samsung Electronics (SW.LEE: hitchcar@samsung.com) -+ -+ Author : SW.LEE <hitchcar@samsung.com> -+ -+ This program is free software; you can redistribute it and/or modify -+ it under the terms of the GNU General Public License as published by -+ the Free Software Foundation; either version 2 of the License, or -+ (at your option) any later version. -+* -+*/ -+ -+ -+#ifndef __FIMC20_CAMIF_H_ -+#define __FIMC20_CAMIF_H_ -+ -+#ifdef __KERNEL__ -+ -+#include "bits.h" -+#include "videodev.h" -+#include <asm/types.h> -+#include <linux/i2c.h> -+ -+#endif /* __KERNEL__ */ -+ -+#ifndef O_NONCAP -+#define O_NONCAP O_TRUNC -+#endif -+ -+/* Codec or Preview Status */ -+#define CAMIF_STARTED BIT1 -+#define CAMIF_STOPPED BIT2 -+#define CAMIF_INT_HAPPEN BIT3 -+ -+/* Codec or Preview : Interrupt FSM */ -+#define CAMIF_1nd_INT BIT7 -+#define CAMIF_Xnd_INT BIT8 -+#define CAMIF_Ynd_INT BIT9 -+#define CAMIF_Znd_INT BIT10 -+#define CAMIF_NORMAL_INT BIT11 -+#define CAMIF_DUMMY_INT BIT12 -+#define CAMIF_PENDING_INT 0 -+ -+ -+/* CAMIF RESET Definition */ -+#define CAMIF_RESET BIT0 -+#define CAMIF_EX_RESET_AL BIT1 /* Active Low */ -+#define CAMIF_EX_RESET_AH BIT2 /* Active High */ -+ -+ -+enum camif_itu_fmt { -+ CAMIF_ITU601 = BIT31, -+ CAMIF_ITU656 = 0 -+}; -+ -+/* It is possbie to use two device simultaneously */ -+enum camif_dma_type { -+ CAMIF_PREVIEW = BIT0, -+ CAMIF_CODEC = BIT1, -+}; -+ -+enum camif_order422 { -+ CAMIF_YCBYCR = 0, -+ CAMIF_YCRYCB = BIT14, -+ CAMIF_CBYCRY = BIT15, -+ CAMIF_CRYCBY = BIT14 | BIT15 -+}; -+ -+enum flip_mode { -+ CAMIF_FLIP = 0, -+ CAMIF_FLIP_X = BIT14, -+ CAMIF_FLIP_Y = BIT15, -+ CAMIF_FLIP_MIRROR = BIT14 |BIT15, -+}; -+ -+enum camif_codec_fmt { -+ /* Codec part */ -+ CAMIF_IN_YCBCR420 = BIT0, /* Currently IN_YCBCR format fixed */ -+ CAMIF_IN_YCBCR422 = BIT1, -+ CAMIF_OUT_YCBCR420 = BIT4, -+ CAMIF_OUT_YCBCR422 = BIT5, -+ /* Preview Part */ -+ CAMIF_RGB16 = BIT2, -+ CAMIF_RGB24 = BIT3, -+}; -+ -+enum camif_capturing { -+ CAMIF_BOTH_DMA_ON = BIT4, -+ CAMIF_DMA_ON = BIT3, -+ CAMIF_BOTH_DMA_OFF = BIT1, -+ CAMIF_DMA_OFF = BIT0, -+ /*------------------------*/ -+ CAMIF_DMA_OFF_L_IRQ= BIT5, -+}; -+ -+typedef struct camif_performance -+{ -+ int frames; -+ int framesdropped; -+ __u64 bytesin; -+ __u64 bytesout; -+ __u32 reserved[4]; -+} camif_perf_t; -+ -+ -+typedef struct { -+ dma_addr_t phys_y; -+ dma_addr_t phys_cb; -+ dma_addr_t phys_cr; -+ u8 *virt_y; -+ u8 *virt_cb; -+ u8 *virt_cr; -+ dma_addr_t phys_rgb; -+ u8 *virt_rgb; -+}img_buf_t; -+ -+ -+/* this structure convers the CIWDOFFST, prescaler, mainscaler */ -+typedef struct { -+ u32 modified_src_x; /* After windows applyed to source_x */ -+ u32 modified_src_y; -+ u32 hfactor; -+ u32 vfactor; -+ u32 shfactor; /* SHfactor = 10 - ( hfactor + vfactor ) */ -+ u32 prehratio; -+ u32 prevratio; -+ u32 predst_x; -+ u32 predst_y; -+ u32 scaleup_h; -+ u32 scaleup_v; -+ u32 mainhratio; -+ u32 mainvratio; -+ u32 scalerbypass; /* only codec */ -+} scaler_t; -+ -+ -+enum v4l2_status { -+ CAMIF_V4L2_INIT = BIT0, -+ CAMIF_v4L2_DIRTY = BIT1, -+}; -+ -+ -+/* Global Status Definition */ -+#define PWANT2START BIT0 -+#define CWANT2START BIT1 -+#define BOTH_STARTED (PWANT2START|CWANT2START) -+#define PNOTWORKING BIT4 -+#define C_WORKING BIT5 -+ -+typedef struct { -+ struct semaphore lock; -+ enum camif_itu_fmt itu_fmt; -+ enum camif_order422 order422; -+ u32 win_hor_ofst; -+ u32 win_ver_ofst; -+ u32 camclk; /* External Image Sensor Camera Clock */ -+ u32 source_x; -+ u32 source_y; -+ u32 polarity_pclk; -+ u32 polarity_vsync; -+ u32 polarity_href; -+ struct i2c_client *sensor; -+ u32 user; /* MAX 2 (codec, preview) */ -+ u32 old_priority; /* BUS PRIORITY register */ -+ u32 status; -+ u32 init_sensor;/* initializing sensor */ -+ void *other; /* Codec camif_cfg_t */ -+ u32 reset_type; /* External Sensor Reset Type */ -+ u32 reset_udelay; -+} camif_gc_t; /* gobal control register */ -+ -+ -+/* when App want to change v4l2 parameter, -+ * we instantly store it into v4l2_t v2 -+ * and then reflect it to hardware -+ */ -+typedef struct v4l2 { -+ struct v4l2_fmtdesc *fmtdesc; -+ struct v4l2_pix_format fmt; /* current pixel format */ -+ struct v4l2_input input; -+ struct video_picture picture; -+ enum v4l2_status status; -+ int used_fmt ; /* used format index */ -+} v4l2_t; -+ -+ -+typedef struct camif_c_t { -+ struct video_device *v; -+ /* V4L2 param only for v4l2 driver */ -+ v4l2_t v2; -+ camif_gc_t *gc; /* Common between Codec and Preview */ -+ /* logical parameter */ -+ wait_queue_head_t waitq; -+ u32 status; /* Start/Stop */ -+ u32 fsm; /* Start/Stop */ -+ u32 open_count; /* duplicated */ -+ int irq; -+ char shortname[16]; -+ u32 target_x; -+ u32 target_y; -+ scaler_t sc; -+ enum flip_mode flip; -+ enum camif_dma_type dma_type; -+ /* 4 pingpong Frame memory */ -+ u8 *pp_virt_buf; -+ dma_addr_t pp_phys_buf; -+ u32 pp_totalsize; -+ u32 pp_num; /* used pingpong memory number */ -+ img_buf_t img_buf[4]; -+ enum camif_codec_fmt fmt; -+ enum camif_capturing exec; -+ camif_perf_t perf; -+ u32 now_frame_num; -+ u32 auto_restart; /* Only For Preview */ -+} camif_cfg_t; -+ -+#ifdef SW_DEBUG -+#define DPRINTK(fmt, args...) printk(KERN_DEBUG "%s: " fmt, __FUNCTION__ , ## args) -+#else -+#define DPRINTK(fmt, args...) -+#endif -+ -+ -+#ifdef SW_DEBUG -+#define assert(expr) \ -+ if(!(expr)) { \ -+ printk( "Assertion failed! %s,%s,%s,line=%d\n", \ -+ #expr,__FILE__,__FUNCTION__,__LINE__); \ -+ } -+#else -+#define assert(expr) -+#endif -+ -+ -+ -+extern int camif_capture_start(camif_cfg_t *); -+extern int camif_capture_stop(camif_cfg_t *); -+extern int camif_g_frame_num(camif_cfg_t *); -+extern u8 * camif_g_frame(camif_cfg_t *); -+extern int camif_win_offset(camif_gc_t *); -+extern void camif_hw_open(camif_gc_t *); -+extern void camif_hw_close(camif_cfg_t *); -+extern int camif_dynamic_open(camif_cfg_t *); -+extern int camif_dynamic_close(camif_cfg_t *); -+extern void camif_reset(int,int); -+extern void camif_setup_sensor(void); -+extern int camif_g_fifo_status(camif_cfg_t *); -+extern void camif_last_irq_en(camif_cfg_t *); -+extern void camif_change_flip(camif_cfg_t *); -+ -+ -+/* Todo -+ * API Interface function to both Character and V4L2 Drivers -+ */ -+extern int camif_do_write(struct file *,const char *, size_t, loff_t *); -+extern int camif_do_ioctl(struct inode *, struct file *,unsigned int, void *); -+ -+ -+/* -+ * API for Decoder (S5x532, OV7620..) -+ */ -+void camif_register_decoder(struct i2c_client *); -+void camif_unregister_decoder(struct i2c_client*); -+ -+ -+ -+/* API for FSM */ -+#define INSTANT_SKIP 0 -+#define INSTANT_GO 1 -+ -+extern ssize_t camif_p_1fsm_start(camif_cfg_t *); -+extern ssize_t camif_p_2fsm_start(camif_cfg_t *); -+extern ssize_t camif_4fsm_start(camif_cfg_t *); -+extern ssize_t camif_p_stop(camif_cfg_t *); -+extern int camif_enter_p_4fsm(camif_cfg_t *); -+extern int camif_enter_c_4fsm(camif_cfg_t *); -+extern int camif_enter_2fsm(camif_cfg_t *); -+extern int camif_enter_1fsm(camif_cfg_t *); -+extern int camif_check_preview(camif_cfg_t *); -+extern int camif_callback_start(camif_cfg_t *); -+extern int camif_clock_init(camif_gc_t *); -+ -+/* -+ * V4L2 Part -+ */ -+#define VID_HARDWARE_SAMSUNG_FIMC20 236 -+ -+ -+ -+ -+ -+#endif -+ -+ -+/* -+ * Local variables: -+ * tab-width: 8 -+ * c-indent-level: 8 -+ * c-basic-offset: 8 -+ * c-set-style: "K&R" -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/cam_reg.h -@@ -0,0 +1,234 @@ -+ /*---------------------------------------------------------- -+ * (C) 2004 Samsung Electronics -+ * SW.LEE < hitchcar@samsung.com> -+ * -+ ----------------------------------------------------------- */ -+ -+#ifndef __FIMC20_CAMERA_H__ -+#define __FIMC20_CAMERA_H__ -+ -+extern u32 * camregs; -+ -+#ifdef CONFIG_ARCH_S3C24A0 -+#define CAM_BASE_ADD 0x48000000 -+#else /* S3C2440A */ -+#define CAM_BASE_ADD 0x4F000000 -+#endif -+ -+#if ! defined(FExtr) -+#define UData(Data) ((unsigned long) (Data)) -+#define FExtr(Data, Field) \ -+ ((UData (Data) >> FShft (Field)) & FAlnMsk (Field)) -+#define FInsrt(Value, Field) \ -+ (UData (Value) << FShft (Field)) -+#define FSize(Field) ((Field) >> 16) -+#define FShft(Field) ((Field) & 0x0000FFFF) -+#define FMsk(Field) (((UData (1) << FSize (Field)) - 1) << FShft (Field)) -+#define FAlnMsk(Field) ((UData (1) << FSize (Field)) - 1) -+#define F1stBit(Field) (UData (1) << FShft (Field)) -+#define Fld(Size, Shft) (((Size) << 16) + (Shft)) -+#endif -+ -+/* -+ * CAMERA IP -+ * P-port is used as RGB Capturing device which including scale and crop -+ * those who want to see(preview ) the image on display needs RGB image. -+ * -+ * C-port is used as YCbCr(4:2:0, 4:2:2) Capturing device which including the scale and crop -+ * the prefix of C-port have the meaning of "Codec" ex. mpeg4, h263.. which requries the -+ YCBCB format not RGB -+ */ -+ -+#define S3C2440_CAM_REG_CISRCFMT (0x00) // RW Input Source Format -+#define S3C2440_CAM_REG_CIWDOFST (0x04) // Window offset register -+#define S3C2440_CAM_REG_CIGCTRL (0x08) // Global control register -+#define S3C2440_CAM_REG_CICOYSA0 (0x18) // Y 1 st frame start ads -+#define S3C2440_CAM_REG_CICOYSA1 (0x1C) // Y 2 nd frame start ads -+#define S3C2440_CAM_REG_CICOYSA2 (0x20) // Y 3 rd frame start ads -+#define S3C2440_CAM_REG_CICOYSA3 (0x24) // Y 4 th frame start ads -+#define S3C2440_CAM_REG_CICOCBSA0 (0x28) // Cb 1 st frame start ads -+#define S3C2440_CAM_REG_CICOCBSA1 (0x2C) // Cb 2 nd frame start ads -+#define S3C2440_CAM_REG_CICOCBSA2 (0x30) // Cb 3 rd frame start ads -+#define S3C2440_CAM_REG_CICOCBSA3 (0x34) // Cb 4 th frame start ads -+#define S3C2440_CAM_REG_CICOCRSA0 (0x38) // Cr 1 st frame start ads -+#define S3C2440_CAM_REG_CICOCRSA1 (0x3C) // Cr 2 nd frame start ads -+#define S3C2440_CAM_REG_CICOCRSA2 (0x40) // Cr 3 rd frame start ads -+#define S3C2440_CAM_REG_CICOCRSA3 (0x44) // Cr 4 th frame start ads -+#define S3C2440_CAM_REG_CICOTRGFMT (0x48) // Target img format of codec -+#define S3C2440_CAM_REG_CICOCTRL (0x4C) // Codec DMA control related -+#define S3C2440_CAM_REG_CICOSCPRERATIO (0x50) // Codec pre-scaler ratio -+#define S3C2440_CAM_REG_CICOSCPREDST (0x54) // Codec pre-scaler dest -+#define S3C2440_CAM_REG_CICOSCCTRL (0x58) // Codec main-scaler control -+#define S3C2440_CAM_REG_CICOTAREA (0x5C) // Codec pre-scaler dest -+#define S3C2440_CAM_REG_CICOSTATUS (0x64) // Codec path status -+#define S3C2440_CAM_REG_CIPRCLRSA0 (0x6C) // RGB 1 st frame start ads -+#define S3C2440_CAM_REG_CIPRCLRSA1 (0x70) // RGB 2 nd frame start ads -+#define S3C2440_CAM_REG_CIPRCLRSA2 (0x74) // RGB 3 rd frame start ads -+#define S3C2440_CAM_REG_CIPRCLRSA3 (0x78) // RGB 4 th frame start ads -+#define S3C2440_CAM_REG_CIPRTRGFMT (0x7C) // Target img fmt of preview -+#define S3C2440_CAM_REG_CIPRCTRL (0x80) // Preview DMA ctl related -+#define S3C2440_CAM_REG_CIPRSCPRERATIO (0x84) // Preview pre-scaler ratio -+#define S3C2440_CAM_REG_CIPRSCPREDST (0x88) // Preview pre-scaler dest -+#define S3C2440_CAM_REG_CIPRSCCTRL (0x8C) // Preview main-scaler ctl -+#define S3C2440_CAM_REG_CIPRTAREA (0x90) // Preview pre-scaler dest -+#define S3C2440_CAM_REG_CIPRSTATUS (0x98) // Preview path status -+#define S3C2440_CAM_REG_CIIMGCPT (0xA0) // Image capture enable cmd -+ -+#define S3C2440_CAM_REG_CICOYSA(__x) (0x18 + (__x)*4 ) -+#define S3C2440_CAM_REG_CICOCBSA(__x) (0x28 + (__x)*4 ) -+#define S3C2440_CAM_REG_CICOCRSA(__x) (0x38 + (__x)*4 ) -+#define S3C2440_CAM_REG_CIPRCLRSA(__x) (0x6C + (__x)*4 ) -+ -+/* CISRCFMT BitField */ -+#define SRCFMT_ITU601 BIT31 -+#define SRCFMT_ITU656 0 -+#define SRCFMT_UVOFFSET_128 BIT30 -+#define fCAM_SIZE_H Fld(13, 16) -+#define fCAM_SIZE_V Fld(13, 0) -+#define SOURCE_HSIZE(x) FInsrt((x), fCAM_SIZE_H) -+#define SOURCE_VSIZE(x) FInsrt((x), fCAM_SIZE_V) -+ -+ -+/* Window Option Register */ -+#define WINOFEN BIT31 -+#define CO_FIFO_Y BIT30 -+#define CO_FIFO_CB BIT15 -+#define CO_FIFO_CR BIT14 -+#define PR_FIFO_CB BIT13 -+#define PR_FIFO_CR BIT12 -+#define fWINHOR Fld(11, 16) -+#define fWINVER Fld(11, 0) -+#define WINHOROFST(x) FInsrt((x), fWINHOR) -+#define WINVEROFST(x) FInsrt((x), fWINVER) -+ -+/* Global Control Register */ -+#define GC_SWRST BIT31 -+#define GC_CAMRST BIT30 -+#define GC_INVPOLPCLK BIT26 -+#define GC_INVPOLVSYNC BIT25 -+#define GC_INVPOLHREF BIT24 -+ -+/*-------------------------------------------------- -+ REGISTER BIT FIELD DEFINITION TO -+ YCBCR and RGB -+----------------------------------------------------*/ -+/* Codec Target Format Register */ -+#define IN_YCBCR420 0 -+#define IN_YCBCR422 BIT31 -+#define OUT_YCBCR420 0 -+#define OUT_YCBCR422 BIT30 -+ -+#if 0 -+#define FLIP_NORMAL 0 -+#define FLIP_X (BIT14) -+#define FLIP_Y (BIT15) -+#define FLIP_MIRROR (BIT14|BIT15) -+#endif -+ -+/** BEGIN ************************************/ -+/* Cotents: Common in both P and C port */ -+#define fTARGET_HSIZE Fld(13,16) -+#define TARGET_HSIZE(x) FInsrt((x), fTARGET_HSIZE) -+#define fTARGET_VSIZE Fld(13,0) -+#define TARGET_VSIZE(x) FInsrt((x), fTARGET_VSIZE) -+#define FLIP_X_MIRROR BIT14 -+#define FLIP_Y_MIRROR BIT15 -+#define FLIP_180_MIRROR (BIT14 | BIT15) -+/** END *************************************/ -+ -+/* Codec DMA Control Register */ -+#define fYBURST_M Fld(5,19) -+#define fYBURST_R Fld(5,14) -+#define fCBURST_M Fld(5,9) -+#define fCBURST_R Fld(5,4) -+#define YBURST_M(x) FInsrt((x), fYBURST_M) -+#define CBURST_M(x) FInsrt((x), fCBURST_M) -+#define YBURST_R(x) FInsrt((x), fYBURST_R) -+#define CBURST_R(x) FInsrt((x), fCBURST_R) -+#define LAST_IRQ_EN BIT2 /* Common in both P and C port */ -+/* -+ * Check the done signal of capturing image for JPEG -+ * !!! AutoClear Bit -+ */ -+ -+ -+/* (Codec, Preview ) Pre-Scaler Control Register 1 */ -+#define fSHIFT Fld(4,28) -+#define PRE_SHIFT(x) FInsrt((x), fSHIFT) -+#define fRATIO_H Fld(7,16) -+#define PRE_HRATIO(x) FInsrt((x), fRATIO_H) -+#define fRATIO_V Fld(7,0) -+#define PRE_VRATIO(x) FInsrt((x), fRATIO_V) -+ -+/* (Codec, Preview ) Pre-Scaler Control Register 2*/ -+#define fDST_WIDTH Fld(12,16) -+#define fDST_HEIGHT Fld(12,0) -+#define PRE_DST_WIDTH(x) FInsrt((x), fDST_WIDTH) -+#define PRE_DST_HEIGHT(x) FInsrt((x), fDST_HEIGHT) -+ -+ -+/* (Codec, Preview) Main-scaler control Register */ -+#define S_METHOD BIT31 /* Sampling method only for P-port */ -+#define SCALERSTART BIT15 -+/* Codec scaler bypass for upper 2048x2048 -+ where ImgCptEn_CoSC and ImgCptEn_PrSC should be 0 -+*/ -+ -+#define SCALERBYPASS BIT31 -+#define RGB_FMT24 BIT30 -+#define RGB_FMT16 0 -+ -+/* -+#define SCALE_UP_H BIT29 -+#define SCALE_UP_V BIT28 -+*/ -+ -+#define fMAIN_HRATIO Fld(9, 16) -+#define MAIN_HRATIO(x) FInsrt((x), fMAIN_HRATIO) -+ -+#define SCALER_START BIT15 -+ -+#define fMAIN_VRATIO Fld(9, 0) -+#define MAIN_VRATIO(x) FInsrt((x), fMAIN_VRATIO) -+ -+/* (Codec, Preview ) DMA Target AREA Register */ -+#define fCICOTAREA Fld(26,0) -+#define TARGET_DMA_AREA(x) FInsrt((x), fCICOTAREA) -+ -+/* Preview DMA Control Register */ -+#define fRGBURST_M Fld(5,19) -+#define fRGBURST_R Fld(5,14) -+#define RGBURST_M(x) FInsrt((x), fRGBURST_M) -+#define RGBURST_R(x) FInsrt((x), fRGBURST_R) -+ -+ -+/* (Codec, Preview) Status Register */ -+#define CO_OVERFLOW_Y BIT31 -+#define CO_OVERFLOW_CB BIT30 -+#define CO_OVERFLOW_CR BIT29 -+#define PR_OVERFLOW_CB BIT31 -+#define PR_OVERFLOW_CR BIT30 -+ -+#define VSYNC BIT28 -+ -+#define fFRAME_CNT Fld(2,26) -+#define FRAME_CNT(x) FExtr((x),fFRAME_CNT) -+ -+#define WIN_OFF_EN BIT25 -+#define fFLIP_MODE Fld(2,23) -+#define FLIP_MODE(x) EExtr((x), fFLIP_MODE) -+#define CAP_STATUS_CAMIF BIT22 -+#define CAP_STATUS_CODEC BIT21 -+#define CAP_STATUS_PREVIEW BIT21 -+#define VSYNC_A BIT20 -+#define VSYNC_B BIT19 -+ -+/* Image Capture Enable Regiser */ -+#define CAMIF_CAP_ON BIT31 -+#define CAMIF_CAP_CODEC_ON BIT30 -+#define CAMIF_CAP_PREVIEW_ON BIT29 -+ -+ -+ -+ -+#endif /* S3C2440_CAMER_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/imgsensor.c -@@ -0,0 +1,250 @@ -+/* -+ * Copyright (C) 2004 Samsung Electronics -+ * SW.LEE <hitchcar@samsung.com> -+ * -+ * Copyright (C) 2000 Russell King : pcf8583.c -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * Driver for FIMC20 Camera Decoder -+ */ -+ -+ -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/i2c.h> -+#include <linux/slab.h> -+#include <linux/string.h> -+#include <linux/init.h> -+#include <linux/delay.h> -+ -+ -+#ifdef CONFIG_ARCH_S3C24A0A -+#else -+//#include <asm/arch/S3C2440.h> -+#endif -+ -+#define SW_DEBUG -+#define CONFIG_VIDEO_V4L1_COMPAT -+#include <linux/videodev.h> -+#include "camif.h" -+#include "sensor.h" -+ -+#ifndef SAMSUNG_SXGA_CAM -+#include "s5x532_rev36.h" -+#else -+#include "sxga.h" -+#endif -+ -+static struct i2c_driver s5x532_driver; -+static camif_gc_t data = { -+ itu_fmt: CAMIF_ITU601, -+ order422: CAMIF_YCBYCR, -+ camclk: 24000000, -+#ifndef SAMSUNG_SXGA_CAM -+ source_x: 640, -+ source_y: 480, -+ win_hor_ofst: 112, -+ win_ver_ofst: 20, -+#else -+ source_x: 1280, -+ source_y: 1024, -+ win_hor_ofst: 0, -+ win_ver_ofst: 0, -+#endif -+ polarity_pclk:1, -+ polarity_href:0, -+#ifdef CONFIG_ARCH_S3C24A0A -+ reset_type:CAMIF_EX_RESET_AL, /* Active Low */ -+#else -+ reset_type:CAMIF_EX_RESET_AH, /* Ref board has inverted signal */ -+#endif -+ reset_udelay:2000, -+}; -+ -+#define CAM_ID 0x5a -+ -+static unsigned short ignore = I2C_CLIENT_END; -+static unsigned short normal_addr[] = { (CAM_ID>>1), I2C_CLIENT_END }; -+static struct i2c_client_address_data addr_data = { -+ normal_i2c: normal_addr, -+ probe: &ignore, -+ ignore: &ignore, -+}; -+ -+s5x532_t s5x532_regs_mirror[S5X532_REGS]; -+ -+unsigned char -+s5x532_read(struct i2c_client *client, unsigned char subaddr) -+{ -+ int ret; -+ unsigned char buf[1]; -+ struct i2c_msg msg ={ client->addr, 0, 1, buf}; -+ buf[0] = subaddr; -+ -+ ret = i2c_transfer(client->adapter,&msg, 1) == 1 ? 0 : -EIO; -+ if (ret == -EIO) { -+ printk(" I2C write Error \n"); -+ return -EIO; -+ } -+ -+ msg.flags = I2C_M_RD; -+ ret = i2c_transfer(client->adapter, &msg, 1) == 1 ? 0 : -EIO; -+ -+ return buf[0]; -+} -+ -+ -+static int -+s5x532_write(struct i2c_client *client, -+ unsigned char subaddr, unsigned char val) -+{ -+ unsigned char buf[2]; -+ struct i2c_msg msg = { client->addr, 0, 2, buf}; -+ -+ buf[0]= subaddr; -+ buf[1]= val; -+ -+ return i2c_transfer(client->adapter, &msg, 1) == 1 ? 0 : -EIO; -+} -+ -+void inline s5x532_init(struct i2c_client *sam_client) -+{ -+ int i; -+ -+ printk(KERN_ERR "s5x532_init \n"); -+ for (i = 0; i < S5X532_INIT_REGS; i++) { -+ s5x532_write(sam_client, -+ s5x532_reg[i].subaddr, s5x532_reg[i].value ); -+ } -+ -+#ifdef YOU_WANT_TO_CHECK_IMG_SENSOR -+ for (i = 0; i < S5X532_INIT_REGS;i++) { -+ if ( s5x532_reg[i].subaddr == PAGE_ADDRESS ) { -+ s5x532_write(sam_client, -+ s5x532_reg[i].subaddr, s5x532_reg[i].value); -+ -+ printk(KERN_ERR "Page: Subaddr %02x = 0x%02x\n", -+ s5x532_reg[i].subaddr, s5x532_regs_mirror[i].value); -+ -+ -+ } else -+ { -+ s5x532_regs_mirror[i].subaddr = s5x532_reg[i].subaddr; -+ s5x532_regs_mirror[i].value = -+ s5x532_read(sam_client,s5x532_reg[i].subaddr); -+ printk(KERN_ERR "Subaddr %02x = 0x%02x\n", -+ s5x532_reg[i].subaddr, s5x532_regs_mirror[i].value); -+ } -+ } -+#endif -+ -+} -+ -+static int -+s5x532_attach(struct i2c_adapter *adap, int addr, int kind) -+{ -+ struct i2c_client *c; -+ -+ c = kmalloc(sizeof(*c), GFP_KERNEL); -+ if (!c) return -ENOMEM; -+ -+ strcpy(c->name, "S5X532"); -+// c->id = s5x532_driver.id; -+ c->flags = 0 /* I2C_CLIENT_ALLOW_USE */; -+ c->addr = addr; -+ c->adapter = adap; -+ c->driver = &s5x532_driver; -+ data.sensor = c; -+ i2c_set_clientdata(c, &data); -+ -+ camif_register_decoder(c); -+ return i2c_attach_client(c); -+} -+ -+static int s5x532_probe(struct i2c_adapter *adap) -+{ -+ return i2c_probe(adap, &addr_data, s5x532_attach); -+} -+ -+static int s5x532_detach(struct i2c_client *client) -+{ -+ i2c_detach_client(client); -+ camif_unregister_decoder(client); -+ return 0; -+} -+ -+static int -+s5x532_command(struct i2c_client *client, unsigned int cmd, void *arg) -+{ -+ switch (cmd) { -+ case SENSOR_INIT: -+ s5x532_init(client); -+ printk(KERN_INFO "CAMERA: S5X532 Sensor initialized\n"); -+ break; -+ case USER_ADD: -+ /* MOD_INC_USE_COUNT; uh.. 2.6 deals with this, old-timer */ -+ break; -+ case USER_EXIT: -+ /* MOD_DEC_USE_COUNT; */ -+ break; -+/* Todo -+ case SENSOR_BRIGHTNESS: -+ change_sensor(); -+ break; -+*/ -+ default: -+ panic("Unexpect Sensor Command \n"); -+ break; -+ } -+ return 0; -+} -+ -+static struct i2c_driver s5x532_driver = { -+ driver: { name: "S5X532" }, -+ id: 0, /* optional in i2c-id.h I2C_ALGO_S3C, */ -+ attach_adapter: s5x532_probe, -+ detach_client: s5x532_detach, -+ command: s5x532_command -+}; -+ -+static void iic_gpio_port(void) -+{ -+/* FIXME: no gpio config for i2c !!! -+#ifdef CONFIG_ARCH_S3C24A0A -+#else -+ GPECON &= ~(0xf <<28); -+ GPECON |= 0xa <<28; -+#endif -+*/ -+} -+ -+static __init int camif_sensor_init(void) -+{ -+ iic_gpio_port(); -+ return i2c_add_driver(&s5x532_driver); -+} -+ -+ -+static __init void camif_sensor_exit(void) -+{ -+ i2c_del_driver(&s5x532_driver); -+} -+ -+module_init(camif_sensor_init) -+module_exit(camif_sensor_exit) -+ -+MODULE_AUTHOR("SW.LEE <hitchcar@sec.samsung.com>"); -+MODULE_DESCRIPTION("I2C Client Driver For Fimc2.0 MISC Driver"); -+MODULE_LICENSE("GPL"); -+ -+ -+ -+/* -+ * Local variables: -+ * c-basic-offset: 8 -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/Kconfig -@@ -0,0 +1,7 @@ -+ -+config S3C2440_CAMERA -+ bool "S3C24xx Camera interface" -+ depends on ARCH_S3C2410 -+ help -+ Camera driver for S3C2440 camera unit -+ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/Makefile -@@ -0,0 +1,8 @@ -+obj-$(CONFIG_S3C2440_CAMERA) += \ -+ videodev.o \ -+ imgsensor.o \ -+ video-driver.o \ -+ camif.o \ -+ camif_fsm.o \ -+ qt-driver.o -+ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/miscdevice.h -@@ -0,0 +1,18 @@ -+ -+ /*---------------------------------------------------------- -+ * (C) 2004 Samsung Electronics -+ * SW.LEE < hitchcar@samsung.com> -+ * -+ ----------------------------------------------------------- */ -+ -+#ifndef _LINUX_S3C_MISCDEVICE_H -+#define _LINUX_S3C_MISCDEVICE_H -+ -+#define CODEC_MINOR 212 -+#define PREVIEW_MINOR 213 -+ -+ -+ -+ -+ -+#endif ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/qt-driver.c -@@ -0,0 +1,172 @@ -+/* -+ * SW.LEE <hitchcar@samsung.com> -+ * -+ * This file is subject to the terms and conditions of the GNU General Public -+ * License 2. See the file COPYING in the main directory of this archive -+ * for more details. -+ */ -+ -+#include <linux/version.h> -+#include <linux/module.h> -+#include <linux/delay.h> -+#include <linux/errno.h> -+#include <linux/fs.h> -+#include <linux/kernel.h> -+#include <linux/major.h> -+#include <linux/slab.h> -+#include <linux/poll.h> -+#include <linux/signal.h> -+#include <linux/ioport.h> -+#include <linux/sched.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/kmod.h> -+#include <linux/vmalloc.h> -+#include <linux/init.h> -+#include <asm/io.h> -+#include <asm/page.h> -+#include <asm/irq.h> -+#include <asm/semaphore.h> -+#include <linux/miscdevice.h> -+ -+//#define SW_DEBUG -+ -+#define CONFIG_VIDEO_V4L1_COMPAT -+#include <linux/videodev.h> -+#include "camif.h" -+#include "miscdevice.h" -+#include "cam_reg.h" -+#include "sensor.h" -+#include "userapp.h" -+ -+extern camif_cfg_t * get_camif(int nr); -+ -+ -+/************************* Sharp Zarus API ************************** -+* refering to Camera Driver API for SL-5000D/SL-5600 revision 1.00 -+* April 11, 2002. -+ SW.LEE <hitchcar@sec.samsung.com> -+ I want to use Sharp Camera Application. -+* -+*/ -+ -+#define READ_MODE_STATUS 0x1 -+#define READ_MODE_IMAGE 0x0 -+#define CAPTURE_SPEED -+#define H_FLIP -+#define V_FLIP -+typedef enum sharp_readmode -+{ -+ IMAGE = 0, STATUS = 1, -+ FASTER = 0, BETTER = 2, -+ XNOFLIP = 0, XFLIP = 4, -+ YNOFLIP = 0, YFLIP = 8, -+ AUTOMATICFLIP = -1 -+} ReadMode_t; -+ -+ -+static struct sharp_param_t { -+ ReadMode_t readMode; -+ char CameraStatus[4]; -+} sharp_param = { STATUS, {'s','m','c','A'}}; -+ -+ -+camif_param_t qt_parm = { 640,480,240,320,16,0}; -+ -+static void setReadMode(const char *b,size_t count) -+{ -+ int i = *(b+2) - 48 ; -+ if ( 4 == count ) { -+ i = (*(b+3) - 48) + i * 10; -+ } -+ -+ // DPRINTK(" setReadMode %s conversion value %d \n",b , i); -+ if ( i & STATUS ) { -+ // DPRINTK(" STATUS MODE \n"); -+ sharp_param.readMode = i; -+ } -+ else { -+ // DPRINTK(" IMAGE MODE \n"); -+ sharp_param.readMode = i; -+ } -+} -+ -+ -+ -+ -+extern ssize_t camif_p_read(struct file *, char *, size_t , loff_t *); -+ -+ssize_t z_read(struct file *f, char *buf, size_t count, loff_t *pos) -+{ -+ size_t end; -+ -+ if (sharp_param.readMode & STATUS ) { -+ buf[0] = sharp_param.CameraStatus[0]; -+ buf[1] = sharp_param.CameraStatus[1]; -+ buf[2] = sharp_param.CameraStatus[2]; -+ buf[3] = sharp_param.CameraStatus[3]; -+ end = 4; -+ return end; -+ } -+ else { /* Image ReadMode */ -+ /* -+ if (( sharp_param.readMode & (BETTER|X FLIP|YFLIP))) -+ DPRINTK(" Not Supporting BETTER|XFLIP|YFLIP\n"); -+ */ -+ return camif_p_read(f,buf,count,pos); -+ } -+} -+ -+static void z_config(camif_cfg_t *cfg,int x, int y) -+{ -+ cfg->target_x = x; -+ cfg->target_y = y; -+ cfg->fmt = CAMIF_RGB16; -+ if (camif_dynamic_open(cfg)) { -+ panic(" Eror Happens \n"); -+ } -+} -+ -+ -+ssize_t z_write(struct file *f, const char *b, size_t c, loff_t *pos) -+{ -+ int array[5]; -+ int zoom = 1; -+ camif_cfg_t *cfg; -+ -+ cfg = get_camif(MINOR(f->f_dentry->d_inode->i_rdev)); -+// DPRINTK(" param %s count %d \n",b, c ); -+ -+ switch(*b) { -+ case 'M': -+ setReadMode(b, c); -+ break; -+ case 'B': /* Clear the latch flag of shutter button */ -+ DPRINTK(" clear latch flag of camera's shutter button\n"); -+ sharp_param.CameraStatus[0]='s'; -+ break; -+ case 'Y': /* I don't know how to set Shutter pressed */ -+ DPRINTK(" set latch flag n"); -+ sharp_param.CameraStatus[0]='S'; -+ break; -+ case 'S': /* Camera Image Resolution */ -+ case 'R': /* Donot support Rotation */ -+ DPRINTK(" param %s count %d \n",b, c ); -+ get_options((char *)(b+2), 5, array); -+ if ( array[3] == 512 ) zoom = 2; -+ z_config(cfg, array[1] * zoom , array[2] * zoom ); -+ camif_4fsm_start(cfg); -+ break; -+ case 'C': -+ DPRINTK(" param %s count %d \n",b, c ); -+ DPRINTK(" Start the camera to capture \n"); -+ sharp_param.CameraStatus[2]='C'; -+ camif_4fsm_start(cfg); -+ break; -+ default: -+ printk("Unexpected param %s count %d \n",b, c ); -+ } -+ -+ return c; -+} -+ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/qt.h -@@ -0,0 +1,18 @@ -+/* -+ * SW.LEE <hitchcar@samsung.com> -+ * -+ * This file is subject to the terms and conditions of the GNU General Public -+ * License 2. See the file COPYING in the main directory of this archive -+ * for more details. -+ */ -+ -+#ifndef __Z_API_H_ -+#define __Z_API_H_ -+ -+extern ssize_t z_read(struct file *f, char *buf, size_t count, loff_t *pos); -+extern ssize_t z_write(struct file *f, const char *b, size_t c, loff_t *pos); -+ -+ -+ -+#endif -+ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/s5x532.h -@@ -0,0 +1,143 @@ -+/* -+ * 2004 (C) Samsung Electronics -+ * SW.LEE <hitchcar@sec.samsung.com> -+ * This file is subject to the terms and conditions of the GNU General Public -+ * License 2. See the file COPYING in the main directory of this archive -+ * for more details. -+ */ -+ -+ -+#ifndef _SMDK2440_S5X532_H_ -+#define _SMDK2440_S5X532_H_ -+ -+ -+#define CHIP_DELAY 0xFF -+ -+typedef struct samsung_t{ -+ unsigned char subaddr; -+ unsigned char value; -+ unsigned char page; -+} s5x532_t; -+ -+s5x532_t s5x532_reg[] = { -+ // page 5 -+ {0xec,0x05}, -+ {0x08,0x55,0x5}, -+ {0x0a,0x75,0x5}, -+ {0x0c,0x90,0x5}, -+ {0x0e,0x18,0x5}, -+ {0x12,0x09,0x5}, -+ {0x14,0x9d,0x5}, -+ {0x16,0x90,0x5}, -+ {0x1a,0x18,0x5}, -+ {0x1c,0x0c,0x5}, -+ {0x1e,0x09,0x5}, -+ {0x20,0x06,0x5}, -+ {0x22,0x20,0x5}, -+ {0x2a,0x00,0x5}, -+ {0x2d,0x04,0x5}, -+ {0x12,0x24,0x5}, -+ // page 3 -+ {0xec,0x03,0x3}, -+ {0x0c,0x09,0x3}, -+ {0x6c,0x09,0x3}, -+ {0x2b,0x10,0x3}, // momo clock inversion -+ // page 2 -+ {0xec,0x02,0x2}, -+ {0x03,0x09,0x2}, -+ {0x05,0x08,0x2}, -+ {0x06,0x01,0x2}, -+ {0x07,0xf8,0x2}, -+ {0x15,0x25,0x2}, -+ {0x30,0x29,0x2}, -+ {0x36,0x12,0x2}, -+ {0x38,0x04,0x2}, -+ {0x1b,0x77,0x2}, // 24MHz : 0x77, 12MHz : 0x22 -+ {0x1c,0x77,0x2}, // 24MHz : 0x77, 12MHz : 0x22 -+ // page 1 -+ {0xec,0x01,0x1}, -+ {0x00,0x03,0x1}, // -+ {0x0a,0x08,0x1}, // 0x0-QQVGA, 0x06-CIF, 0x02-QCIF, 0x08-VGA, 0x04-QVGA, 0x0a-SXGA -+ {0x0c,0x00,0x1}, // Pattern selectio. 0-CIS, 1-Color bar, 2-Ramp, 3-Blue screen -+ {0x10,0x27,0x1}, -+ // 0x21-ITU-R656(CrYCbY), 0x25-ITU-R601(CrYCbY), 0x26-ITU-R601(YCbYCr) -+ {0x50,0x21,0x1}, // Hblank -+ {0x51,0x00,0x1}, // Hblank -+ {0x52,0xA1,0x1}, // Hblank -+ {0x53,0x02,0x1}, // Hblank -+ {0x54,0x01,0x1}, // Vblank -+ {0x55,0x00,0x1}, // Vblank -+ {0x56,0xE1,0x1}, // Vblank -+ {0x57,0x01,0x1}, // Vblank -+ {0x58,0x21,0x1}, // Hsync -+ {0x59,0x00,0x1}, // Hsync -+ {0x5a,0xA1,0x1}, // Hsync -+ {0x5b,0x02,0x1}, // Hsync -+ {0x5c,0x03,0x1}, // Vref -+ {0x5d,0x00,0x1}, // Vref -+ {0x5e,0x05,0x1}, // Vref -+ {0x5f,0x00,0x1}, // Vref -+ {0x70,0x0E,0x1}, -+ {0x71,0xD6,0x1}, -+ {0x72,0x30,0x1}, -+ {0x73,0xDB,0x1}, -+ {0x74,0x0E,0x1}, -+ {0x75,0xD6,0x1}, -+ {0x76,0x18,0x1}, -+ {0x77,0xF5,0x1}, -+ {0x78,0x0E,0x1}, -+ {0x79,0xD6,0x1}, -+ {0x7a,0x28,0x1}, -+ {0x7b,0xE6,0x1}, -+ {0x50,0x00,0x1}, -+ {0x5c,0x00,0x1}, -+ -+ // page 0 -+ {0xec,0x00,0x0}, -+ {0x79,0x01,0x0}, -+ {0x58,0x90,0x0}, -+ {0x59,0xA0,0x0}, -+ {0x5a,0x50,0x0}, -+ {0x5b,0x70,0x0}, -+ {0x5c,0xD0,0x0}, -+ {0x5d,0xC0,0x0}, -+ {0x5e,0x28,0x0}, -+ {0x5f,0x08,0x0}, -+ {0x50,0x90,0x0}, -+ {0x51,0xA0,0x0}, -+ {0x52,0x50,0x0}, -+ {0x53,0x70,0x0}, -+ {0x54,0xD0,0x0}, -+ {0x55,0xC0,0x0}, -+ {0x56,0x28,0x0}, -+ {0x57,0x00,0x0}, -+ {0x48,0x90,0x0}, -+ {0x49,0xA0,0x0}, -+ {0x4a,0x50,0x0}, -+ {0x4b,0x70,0x0}, -+ {0x4c,0xD0,0x0}, -+ {0x4d,0xC0,0x0}, -+ {0x4e,0x28,0x0}, -+ {0x4f,0x08,0x0}, -+ {0x72,0x82,0x0}, // main clock = 24MHz:0xd2, 16M:0x82, 12M:0x54 -+ {0x75,0x05,0x0} // absolute vertical mirror. junon -+ -+}; -+ -+ -+#define S5X532_INIT_REGS (sizeof(s5x532_reg)/sizeof(s5x532_reg[0])) -+#define S5X532_RISC_REGS 0xEB -+#define S5X532_ISP_REGS 0xFB /* S5C7323X */ -+#define S5X532_CIS_REGS 0x2F /* S5K437LA03 */ -+ -+ -+#define PAGE_ADDRESS 0xEC -+ -+//#define S5X532_REGS (S5X532_RISC_REGS+S5X532_ISP_REGS+S5X532_CIS_REGS) -+#define S5X532_REGS (0x1000) -+ -+ -+ -+#endif -+ -+ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/s5x532_rev36.h -@@ -0,0 +1,208 @@ -+/* -+ * 2004 (C) Samsung Electronics -+ * SW.LEE <hitchcar@sec.samsung.com> -+ * This file is subject to the terms and conditions of the GNU General Public -+ * License 2. See the file COPYING in the main directory of this archive -+ * for more details. -+ */ -+ -+ -+#ifndef _SMDK2440_S5X532_H_ -+#define _SMDK2440_S5X532_H_ -+ -+ -+#define CHIP_DELAY 0xFF -+ -+typedef struct samsung_t{ -+ unsigned char subaddr; -+ unsigned char value; -+ unsigned char page; -+} s5x532_t; -+ -+s5x532_t s5x532_reg[] = { -+ -+ //=============== page0 ===============// -+ {0xec,0x00,0x00}, -+ {0x02,0x00,0x00}, -+ {0x14,0x60,0x00}, -+ {0x15,0x60,0x00}, -+ {0x16,0x60,0x00}, -+ {0x1b,0x20,0x00}, -+ {0x1c,0x20,0x00}, -+ {0x1d,0x20,0x00}, -+ {0x1e,0x20,0x00}, -+ {0x72,0xdc,0x00}, -+ {0x73,0x11,0x00}, -+ {0x76,0x82,0x00}, -+ {0x77,0x90,0x00}, -+ {0x78,0x6c,0x00}, -+ {0x0a,0x02,0x00}, -+ {0x34,0x0d,0x00}, -+ {0x35,0x0a,0x00}, -+ {0x36,0x05,0x00}, -+ {0x37,0x05,0x00}, -+ {0x38,0x06,0x00}, -+ {0x39,0x08,0x00}, -+ {0x3A,0x0d,0x00}, -+ {0x3B,0x0d,0x00}, -+ {0x3C,0x18,0x00}, -+ {0x3D,0xE0,0x00}, -+ {0x3E,0x20,0x00}, -+ {0x66,0x02,0x00}, -+ {0x6c,0x40,0x00}, -+ {0x7c,0x01,0x00}, -+ {0x0D,0x24,0x00}, -+ {0x40,0x1B,0x00}, -+ {0x41,0x4F,0x00}, -+ {0x42,0x24,0x00}, -+ {0x43,0x3E,0x00}, -+ {0x44,0x32,0x00}, -+ {0x45,0x30,0x00}, -+ {0x48,0xa0,0x00}, -+ {0x49,0xd0,0x00}, -+ {0x4A,0x28,0x00}, -+ {0x4B,0x7d,0x00}, -+ {0x4C,0xd0,0x00}, -+ {0x4D,0xe0,0x00}, -+ {0x4E,0x1a,0x00}, -+ {0x4F,0xa0,0x00}, -+ {0x50,0xc0,0x00}, -+ {0x51,0xc0,0x00}, -+ {0x52,0x42,0x00}, -+ {0x53,0x7e,0x00}, -+ {0x54,0xc0,0x00}, -+ {0x55,0xf0,0x00}, -+ {0x56,0x1e,0x00}, -+ {0x57,0xe0,0x00}, -+ {0x58,0xc0,0x00}, -+ {0x59,0xa0,0x00}, -+ {0x5A,0x4a,0x00}, -+ {0x5B,0x7e,0x00}, -+ {0x5C,0xc0,0x00}, -+ {0x5D,0xf0,0x00}, -+ {0x5E,0x2a,0x00}, -+ {0x5F,0x10,0x00}, -+ {0x79,0x00,0x00}, -+ {0x7a,0x00,0x00}, -+ {0xe0,0x0f,0x00}, -+ {0xe3,0x14,0x00}, -+ {0xe5,0x48,0x00}, -+ {0xe7,0x58,0x00}, -+ -+ //=============== page1 ===============// -+ {0xec,0x01,0x01}, -+ {0x10,0x05,0x01}, -+ {0x20,0xde,0x01}, -+ {0x0b,0x06,0x01}, -+ {0x30,0x00,0x01}, -+ {0x31,0x00,0x01}, -+ {0x32,0x00,0x01}, -+ {0x24,0x28,0x01}, -+ {0x25,0x3F,0x01}, -+ {0x26,0x65,0x01}, -+ {0x27,0xA1,0x01}, -+ {0x28,0xFF,0x01}, -+ {0x29,0x96,0x01}, -+ {0x2A,0x85,0x01}, -+ {0x2B,0xFF,0x01}, -+ {0x2C,0x00,0x01}, -+ {0x2D,0x1B,0x01}, -+ {0xB0,0x28,0x01}, -+ {0xB1,0x3F,0x01}, -+ {0xB2,0x65,0x01}, -+ {0xB3,0xA1,0x01}, -+ {0xB4,0xFF,0x01}, -+ {0xB5,0x96,0x01}, -+ {0xB6,0x85,0x01}, -+ {0xB7,0xFF,0x01}, -+ {0xB8,0x00,0x01}, -+ {0xB9,0x1B,0x01}, -+ {0x15,0x15,0x01}, -+ {0x18,0x85,0x01}, -+ {0x1f,0x05,0x01}, -+ {0x87,0x40,0x01}, -+ {0x37,0x60,0x01}, -+ {0x38,0xd5,0x01}, -+ {0x48,0xa0,0x01}, -+ {0x61,0x54,0x01}, -+ {0x62,0x54,0x01}, -+ {0x63,0x14,0x01}, -+ {0x64,0x14,0x01}, -+ {0x6d,0x12,0x01}, -+ {0x78,0x09,0x01}, -+ {0x79,0xD7,0x01}, -+ {0x7A,0x14,0x01}, -+ {0x7B,0xEE,0x01}, -+ -+ //=============== page2 ===============// -+ {0xec,0x02,0x02}, -+ {0x2c,0x76,0x02}, -+ {0x25,0x25,0x02}, -+ {0x27,0x27,0x02}, -+ {0x30,0x29,0x02}, -+ {0x36,0x08,0x02}, -+ {0x38,0x04,0x02}, -+ -+ //=============== page3 ===============// -+ {0xec,0x03,0x03}, -+ {0x08,0x00,0x03}, -+ {0x09,0x33,0x03}, -+ -+ //=============== page4 ===============// -+ {0xec,0x04,0x04}, -+ {0x00,0x21,0x04}, -+ {0x01,0x00,0x04}, -+ {0x02,0x9d,0x04}, -+ {0x03,0x02,0x04}, -+ {0x04,0x04,0x04}, -+ {0x05,0x00,0x04}, -+ {0x06,0x1f,0x04}, -+ {0x07,0x02,0x04}, -+ {0x08,0x21,0x04}, -+ {0x09,0x00,0x04}, -+ {0x0a,0x9d,0x04}, -+ {0x0b,0x02,0x04}, -+ {0x0c,0x04,0x04}, -+ {0x0d,0x00,0x04}, -+ {0x0e,0x20,0x04}, -+ {0x0f,0x02,0x04}, -+ {0x1b,0x3c,0x04}, -+ {0x1c,0x3c,0x04}, -+ -+ //=============== page5 ===============// -+ {0xec,0x05,0x05}, -+ {0x1f,0x00,0x05}, -+ {0x08,0x59,0x05}, -+ {0x0a,0x71,0x05}, -+ {0x1e,0x23,0x05}, -+ {0x0e,0x3c,0x05}, -+ -+ //=============== page7 ===============// -+ {0xec,0x07,0x07}, -+ {0x11,0xfe,0x07}, -+ -+ // added by junon -+ {0xec,0x01,0x07}, -+ {0x10,0x26,0x07}, -+ // 0x21-ITU-R656(CbYCrY), 0x25-ITU-R601(CbYCrY), 0x26-ITU-R601(YCrYCb) -+ -+ -+}; -+ -+ -+#define S5X532_INIT_REGS (sizeof(s5x532_reg)/sizeof(s5x532_reg[0])) -+#define S5X532_RISC_REGS 0xEB -+#define S5X532_ISP_REGS 0xFB /* S5C7323X */ -+#define S5X532_CIS_REGS 0x2F /* S5K437LA03 */ -+ -+ -+#define PAGE_ADDRESS 0xEC -+ -+//#define S5X532_REGS (S5X532_RISC_REGS+S5X532_ISP_REGS+S5X532_CIS_REGS) -+#define S5X532_REGS (0x1000) -+ -+ -+ -+#endif -+ -+ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/sensor.h -@@ -0,0 +1,20 @@ -+/* -+ * -+ * Copyright (C) 2004 Samsung Electronics -+ * SW.LEE <hitchcar@sec.samsung.com> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#ifndef __SENSOR_CMD_H_ -+#define __SENSOR_CMD_H_ -+ -+#include "bits.h" -+ -+#define SENSOR_INIT BIT0 -+#define USER_ADD BIT1 -+#define USER_EXIT BIT2 -+ -+#endif ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/sxga.h -@@ -0,0 +1,504 @@ -+/* -+ * 2004 (C) Samsung Electronics -+ * SW.LEE <hitchcar@sec.samsung.com> -+ * This file is subject to the terms and conditions of the GNU General Public -+ * License 2. See the file COPYING in the main directory of this archive -+ * for more details. -+ */ -+ -+ -+#ifndef _SAMSUNG_SXGA_H_ -+#define _SAMSUNG_SXGA_H_ -+ -+ -+#define CHIP_DELAY 0xFF -+ -+typedef struct samsung_t{ -+ unsigned char subaddr; -+ unsigned char value; -+ unsigned char page; -+} s5x532_t; -+ -+s5x532_t s5x532_reg[] = { -+ // page 0 -+ {0xec,0x00,0x0}, -+ {0x0c,0x38,0x0}, -+ {0x0d,0x24,0x0}, -+ {0x13,0x10,0x0}, -+ {0x14,0x10,0x0}, -+ {0x15,0x10,0x0}, -+ {0x16,0x10,0x0}, -+ {0x17,0x20,0x0}, -+ {0x18,0x30,0x0}, -+ {0x19,0x30,0x0}, -+ {0x1a,0x10,0x0}, -+ {0x1b,0x10,0x0}, -+ -+ {0x2d,0x40,0x0}, -+ {0x3e,0x10,0x0}, -+ {0x34,0x0a,0x0}, -+ {0x39,0x04,0x0}, -+ {0x3a,0x02,0x0}, -+ {0x31,0x05,0x0}, -+ -+ {0x40,0x1d,0x0}, -+ {0x41,0x50,0x0}, -+ {0x42,0x24,0x0}, -+ {0x43,0x3f,0x0}, -+ {0x44,0x30,0x0}, -+ {0x45,0x31,0x0}, -+ -+ {0x48,0xa0,0x0}, -+ {0x49,0xc0,0x0}, -+ {0x4a,0x58,0x0}, -+ {0x4b,0x50,0x0}, -+ {0x4c,0xb0,0x0}, -+ {0x4d,0xc0,0x0}, -+ {0x4e,0x30,0x0}, -+ {0x4f,0x20,0x0}, -+ -+ {0x50,0xa0,0x0}, -+ {0x51,0xc0,0x0}, -+ {0x52,0x50,0x0}, -+ {0x53,0x60,0x0}, -+ {0x54,0xb0,0x0}, -+ {0x55,0xc0,0x0}, -+ {0x56,0x20,0x0}, -+ {0x57,0x08,0x0}, -+// {0x72,0x50,0x0}, // Clock 16 -+ {0x72,0x78,0x0}, // Clock 24Mhz -+// {0x72,0xf0,0x0}, // Clock 48Mhz -+ // page 1 -+ {0xec,0x01,0x1}, -+ {0x10,0x17,0x1}, // ITU-R601 -+ /* -+ [3:2] : out_sel -+ 00 : 656 -+ 01 : 601 -+ 10 : RGB -+ 11 : CIS -+ [1] : YC_SEL -+ [0] : CBCR_SEL -+ */ -+ -+ {0x0b,0x06,0x1}, // 6 -+ {0x20,0xa8,0x1}, //b0); // Highlight C Supp 040215 -+ {0x22,0x26,0x1}, //2f); 040225 -+ -+ {0x24,0x08,0x1}, //00); //1F); 040226 -+ {0x25,0x10,0x1}, //10); //34); -+ {0x26,0x40,0x1}, //56); -+ {0x27,0x80,0x1}, //8D); -+ {0x28,0x2c,0x1}, //E7); -+ {0x29,0xd6,0x1}, //7C); -+ {0x2A,0x0c,0x1}, //70); -+ {0x2B,0xFF,0x1}, //FF); -+ {0x2C,0x00,0x1}, //00); -+ {0x2D,0x5f,0x1}, //1B); -+ // -+ {0xB0,0x08,0x1}, //00); //1F); 040226 -+ {0xB1,0x10,0x1}, //10); //34);50 -+ {0xB2,0x40,0x1}, //36); -+ {0xB3,0x80,0x1}, //6D); -+ {0xB4,0x2c,0x1}, //b7); -+ {0xB5,0xd6,0x1}, //7C); -+ {0xB6,0x0c,0x1}, //70); -+ {0xB7,0xFF,0x1}, //FF); -+ {0xB8,0x00,0x1}, //00); -+ {0xB9,0x5f,0x1}, //1B); -+ -+ -+ {0xc2,0x01,0x1}, // shading On -+ {0xc3,0x80,0x1}, -+ {0xc4,0x02,0x1}, -+ {0xc5,0x00,0x1}, -+ {0xc6,0x01,0x1}, -+ {0xc7,0x00,0x1}, -+ {0xc8,0x05,0x1}, -+ {0xc9,0x00,0x1}, -+ {0xca,0x04,0x1}, -+ -+ // shading 5 -+ {0xd0,0xb5,0x1}, -+ {0xd1,0x9c,0x1}, -+ {0xd2,0x8d,0x1}, -+ {0xd3,0x84,0x1}, -+ {0xd4,0x84,0x1}, -+ {0xd5,0x91,0x1}, -+ {0xd6,0xa0,0x1}, -+ {0xd7,0xb5,0x1}, -+ -+ {0xd8,0xc0,0x1}, -+ {0xd9,0xa6,0x1}, -+ {0xda,0x93,0x1}, -+ {0xdb,0x85,0x1}, -+ {0xdc,0x85,0x1}, -+ {0xdd,0x90,0x1}, -+ {0xde,0xa0,0x1}, -+ {0xdf,0xb8,0x1}, -+ -+ // Page 2 -+ {0xec,0x02,0x02}, -+ -+ {0x2d,0x02,0x02}, -+ {0x20,0x13,0x02}, -+ {0x21,0x13,0x2}, -+ {0x22,0x13,0x2}, -+ {0x23,0x13,0x2}, -+ {0x2e,0x85,0x2}, -+ {0x2f,0x34,0x2}, -+ {0x30,0x00,0x2}, -+ {0x28,0x94,0x2}, -+ -+ -+ // page 3 -+ {0xec,0x03,0x03}, -+ {0x10,0x00,0x3}, -+ {0x20,0x00,0x3}, -+ {0x21,0x20,0x3}, -+ {0x22,0x00,0x3}, -+ {0x23,0x00,0x3}, -+ {0x40,0x20,0x3}, -+ {0x41,0x20,0x3}, -+ {0x42,0x20,0x3}, -+ {0x43,0x20,0x3}, -+ {0x60,0x00,0x3}, -+ {0x61,0x00,0x3}, -+ {0x62,0x00,0x3}, -+ {0x63,0x00,0x3}, -+ {0x64,0x04,0x3}, -+ {0x65,0x1C,0x3}, -+ {0x66,0x05,0x3}, -+ {0x67,0x1C,0x3}, -+ {0x68,0x00,0x3}, -+ {0x69,0x2D,0x3}, -+ {0x6a,0x00,0x3}, -+ {0x6b,0x72,0x3}, -+ {0x6c,0x00,0x3}, -+ {0x6d,0x00,0x3}, -+ {0x6e,0x16,0x3}, // 2.38 -+ {0x6f,0x16,0x3}, // 2.38 -+ {0x70,0x00,0x3}, -+ {0x71,0x00,0x3}, -+ {0x72,0x45,0x3}, -+ {0x73,0x00,0x3}, -+ {0x74,0x1C,0x3}, -+ {0x75,0x05,0x3}, -+ -+ {0x80,0x00,0x3}, //for 0.02 _ 44 -+ {0x81,0x00,0x3}, -+ {0x82,0x00,0x3}, -+ {0x83,0x00,0x3}, -+ {0x84,0x04,0x3}, -+ {0x85,0x1c,0x3}, -+ {0x86,0x05,0x3}, -+ {0x87,0x1c,0x3}, -+ {0x88,0x00,0x3}, -+ {0x89,0x2d,0x3}, -+ {0x8a,0x00,0x3}, -+ {0x8b,0xcc,0x3}, -+ {0x8c,0x00,0x3}, -+ {0x8d,0x00,0x3}, -+ {0x8e,0x08,0x3}, -+ {0x8f,0x08,0x3}, -+ {0x90,0x01,0x3}, -+ {0x91,0x00,0x3}, -+ {0x92,0x91,0x3}, -+ {0x93,0x00,0x3}, -+ {0x94,0x88,0x3}, -+ {0x95,0x02,0x3}, -+ -+ -+ -+ // page 4 -+ {0xec,0x04,0x04}, -+ {0x3f,0x09,0x04}, // VGA : old board :0x08 , new board ; 0X09 -+ {0x18,0x00,0x04}, // sxga -+ {0x1c,0x41,0x04}, -+ {0x20,0x41,0x04}, // vga center 040215 -+ {0x22,0xc1,0x04},// a1); -+ {0x23,0x02,0x04}, -+ {0x28,0x41,0x04}, -+ {0x2a,0xc1,0x04},// a1); -+ {0x2b,0x02,0x04}, -+ -+ {0x3c,0x0b,0x04}, //f); // vga -+ {0x58,0x11,0x04}, -+ {0x5c,0x14,0x04}, -+ {0x60,0x21,0x04}, -+ {0x61,0x00,0x04}, -+ {0x62,0xB1,0x04}, -+ {0x63,0x02,0x04}, -+ {0x64,0x01,0x04}, -+ {0x65,0x00,0x04}, -+ {0x66,0x01,0x04}, -+ {0x67,0x02,0x04}, -+ {0x68,0x21,0x04}, -+ {0x69,0x00,0x04}, -+ {0x6a,0xB1,0x04}, -+ {0x6b,0x02,0x04}, -+ {0x6c,0x01,0x04}, -+ {0x6d,0x00,0x04}, -+ {0x6e,0x01,0x04}, -+ {0x6f,0x02,0x04}, -+ {0x70,0x2D,0x04}, -+ {0x71,0x00,0x04}, -+ {0x72,0xd3,0x04}, // 14 -+ {0x73,0x05,0x04}, // 15 -+ {0x74,0x1C,0x04}, -+ {0x75,0x05,0x04}, -+ {0x76,0x1b,0x04}, // HendL -+ {0x77,0x0b,0x04}, // HendH -+ {0x78,0x01,0x04}, // 5.00 -+ {0x79,0x80,0x04}, // 5.2a -+ {0x7a,0x33,0x04}, -+ {0x7b,0x00,0x04}, -+ {0x7c,0x38,0x04}, // 5.0e -+ {0x7d,0x03,0x04}, -+ {0x7e,0x00,0x04}, -+ {0x7f,0x0A,0x04}, -+ -+ {0x80,0x2e,0x04}, -+ {0x81,0x00,0x04}, -+ {0x82,0xae,0x04}, -+ {0x83,0x02,0x04}, -+ {0x84,0x00,0x04}, -+ {0x85,0x00,0x04}, -+ {0x86,0x01,0x04}, -+ {0x87,0x02,0x04}, -+ {0x88,0x2e,0x04}, -+ {0x89,0x00,0x04}, -+ {0x8a,0xae,0x04}, -+ {0x8b,0x02,0x04}, -+ {0x8c,0x1c,0x04}, -+ {0x8d,0x00,0x04}, -+ {0x8e,0x04,0x04}, -+ {0x8f,0x02,0x04}, -+ {0x90,0x2d,0x04}, -+ {0x91,0x00,0x04}, -+ {0x92,0xa5,0x04}, -+ {0x93,0x00,0x04}, -+ {0x94,0x88,0x04}, -+ {0x95,0x02,0x04}, -+ {0x96,0xb3,0x04}, -+ {0x97,0x06,0x04}, -+ {0x98,0x01,0x04}, -+ {0x99,0x00,0x04}, -+ {0x9a,0x33,0x04}, -+ {0x9b,0x30,0x04}, -+ {0x9c,0x50,0x04}, -+ {0x9d,0x30,0x04}, -+ {0x9e,0x01,0x04}, -+ {0x9f,0x08,0x04}, -+ -+ // page 5 -+ {0xec,0x05,0x05}, -+ {0x5a,0x22,0x05}, -+ -+ // page 6 -+ {0xec,0x06,0x06}, -+ {0x14,0x1e,0x06}, -+ {0x15,0xb4,0x04}, -+ {0x16,0x25,0x04}, -+ {0x17,0x74,0x04}, -+ -+ {0x10,0x48,0x04}, -+ {0x11,0xa0,0x04}, -+ {0x12,0x40,0x04}, // 040216 AE1 window ÃÙÀÓ -+ {0x13,0x70,0x04}, -+ -+ {0x1a,0x29,0x04}, // 040217 AWB window ÃÙÀÓ -+ {0x30,0x40,0x04}, -+ {0x31,0xa2,0x04}, -+ {0x32,0x50,0x04}, -+ {0x33,0xbc,0x04}, -+ {0x34,0x10,0x04}, -+ {0x35,0xd2,0x04}, -+ {0x36,0x18,0x04}, -+ {0x37,0xf5,0x04}, -+ {0x38,0x10,0x04}, -+ {0x39,0xd3,0x04}, -+ {0x3a,0x1a,0x04}, -+ {0x3b,0xf0,0x04}, -+ -+ // page 7 -+ {0xec,0x07,0x07}, -+ {0x08,0xff,0x7}, -+ {0x38,0x01,0x7}, //07); 040315 -+ {0x39,0x01,0x7}, //02); //4); 040223 040315 -+ {0x11,0xfe,0x7}, //fe); // green -2 040303 -+ {0x2a,0x20,0x7}, -+ {0x2b,0x20,0x7}, -+ {0x2c,0x10,0x7}, -+ {0x2d,0x00,0x7}, -+ {0x2e,0xf0,0x7}, -+ {0x2f,0xd0,0x7}, -+ {0x3a,0xf0,0x7}, -+ {0x23,0x07,0x7}, // for ESD -+ -+ // page 0 -+ {0xec,0x00,0x00}, -+ {0x8a,0x04,0x00}, -+ -+ // page 1 -+ {0xec,0x01,0x01}, -+ {0xe5,0xb0,0x01}, -+ {0xe5,0xb0,0x01}, -+ {0xc2,0x01,0x01}, -+ -+ {0x61,0x7b,0x01}, -+ {0x62,0x7b,0x01}, -+ {0x63,0x1b,0x01}, -+ {0x64,0x1b,0x01}, -+ -+ // page 0 -+ {0xec,0x00,0x00}, -+ {0x7e,0x04,0x00}, -+ -+ // page 4 -+ {0xec,0x04,0x04}, -+ {0x04,0x02,0x04}, -+ {0x06,0x02,0x04}, -+ -+ // page 1 -+ {0xec,0x01,0x01}, -+ {0x10,0x05,0x01}, -+ {0x54,0x02,0x01}, -+ {0x56,0x02,0x01}, -+ -+ // page 3 -+ {0xec,0x03,0x03}, -+ {0x0e,0x08,0x03}, -+ {0x0f,0x08,0x03}, -+ -+ // page 4 -+ {0xec,0x04,0x04}, -+ {0x00,0x30,0x04}, -+ {0x0a,0x30,0x04}, -+ -+ // page 5 -+ {0xec,0x05,0x05}, -+ {0x08,0x33,0x05}, -+ -+ // page 0 -+ {0xec,0x00,0x00}, -+ {0x02,0x00,0x00}, -+ -+ // page 4 -+//scale out -+ {0xec,0x04,0x04}, -+ {0x02,0x20,0x04}, -+ {0x1c,0x4f,0x04}, -+ -+ // page 1 -+ {0xec,0x01,0x01}, -+ {0x52,0x20,0x01}, -+ -+ // page 5 -+ {0xec,0x05,0x05}, -+ {0x0e,0x4f,0x05}, -+ -+//ae speed -+ // page 0 -+ {0xec,0x00,0x00}, -+ {0x92,0x80,0x00}, -+ {0x93,0x02,0x00}, -+ {0x94,0x04,0x00}, -+ {0x95,0x04,0x00}, -+ {0x96,0x04,0x00}, -+ {0x97,0x04,0x00}, -+ {0x9b,0x47,0x00}, -+ -+ {0xec,0x00,0x00}, -+ {0x40,0x17,0x00}, -+ {0x41,0x4c,0x00}, -+ {0x42,0x1d,0x00}, -+ {0x43,0x3e,0x00}, -+ {0x44,0x2a,0x00}, -+ {0x45,0x2d,0x00}, -+ -+ {0xec,0x01,0x01}, -+ {0x20,0xd0,0x01}, //high light color reference -+ -+ {0xec,0x00,0x00}, -+ {0x7e,0x00,0x00}, -+ {0x73,0x11,0x00}, // 41 -+ {0x78,0x78,0x00}, -+ -+ {0xec,0x07,0x07}, -+ {0x1b,0x3e,0x07}, -+ -+ {0xec,0x00,0x00}, -+ {0x48,0xA0,0x00}, //s48C0 -+ {0x49,0xB0,0x00}, //s49B0 -+ {0x4a,0x30,0x00}, //s4a20 -+ {0x4b,0x70,0x00}, //s4b70 -+ {0x4c,0xD0,0x00}, //s4cA0 -+ {0x4d,0xB0,0x00}, //s4dB0 -+ {0x4e,0x30,0x00}, //s4e30 -+ {0x4f,0xF0,0x00}, //s4fF0 -+ {0x50,0xA0,0x00}, //s50D0 -+ {0x51,0xB0,0x00}, //s51B0 -+ {0x52,0x25,0x00}, //s5210 -+ {0x53,0x70,0x00}, //s5370 -+ {0x54,0xD0,0x00}, //s5490 -+ {0x55,0xD0,0x00}, //s55B0 -+ {0x56,0x3A,0x00}, //s5640 -+ {0x57,0xD0,0x00}, //s57D0 -+ {0x58,0xA0,0x00}, //s58D0 -+ {0x59,0xA0,0x00}, //s59B0 -+ {0x5a,0x32,0x00}, //s5a0A -+ {0x5b,0x7A,0x00}, //s5b7A -+ {0x5c,0xB0,0x00}, //s5c90 -+ {0x5d,0xC0,0x00}, //s5dC0 -+ {0x5e,0x3E,0x00}, //s5e4A -+ {0x5f,0xfa,0x00}, //s5fD0 -+ -+ // gamma -+ {0xec,0x01,0x01}, -+ {0x24,0x31,0x01}, -+ {0x25,0x4C,0x01}, -+ {0x26,0x75,0x01}, -+ {0x27,0xB5,0x01}, -+ {0x28,0x17,0x01}, -+ {0x29,0xAE,0x01}, -+ {0x2A,0x97,0x01}, -+ {0x2B,0xFF,0x01}, -+ {0x2C,0x00,0x01}, -+ {0x2D,0x5B,0x01}, -+ -+ {0xB0,0x31,0x01}, -+ {0xB1,0x4C,0x01}, -+ {0xB2,0x75,0x01}, -+ {0xB3,0xB5,0x01}, -+ {0xB4,0x17,0x01}, -+ {0xB5,0xAE,0x01}, -+ {0xB6,0x97,0x01}, -+ {0xB7,0xFF,0x01}, -+ {0xB8,0x00,0x01}, -+ {0xB9,0x5B,0x01}, -+ -+ {0xec,0x00,0x00}, -+ {0x77,0xb0,0x00}, -+ {0x39,0x06,0x00}, -+ {0x3a,0x08,0x00}, -+ -+}; -+ -+ -+#define S5X532_INIT_REGS (sizeof(s5x532_reg)/sizeof(s5x532_reg[0])) -+#define S5X532_RISC_REGS 0xEB -+#define S5X532_ISP_REGS 0xFB /* S5C7323X */ -+#define S5X532_CIS_REGS 0x2F /* S5K437LA03 */ -+ -+ -+#define PAGE_ADDRESS 0xEC -+ -+//#define S5X532_REGS (S5X532_RISC_REGS+S5X532_ISP_REGS+S5X532_CIS_REGS) -+#define S5X532_REGS (0x1000) -+ -+ -+ -+#endif -+ -+ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/userapp.h -@@ -0,0 +1,44 @@ -+/* -+ Character Driver API Interface -+ -+ Copyright (C) 2003 Samsung Electronics (SW.LEE: hitchcar@samsung.com) -+ -+ This program is free software; you can redistribute it and/or modify -+ it under the terms of the GNU General Public License as published by -+ the Free Software Foundation; either version 2 of the License, or -+ (at your option) any later version. -+ -+*/ -+ -+#ifndef __FIMC20_CAMIF_USR_APP_H_ -+#define __FIMC20_CAMIF_USR_APP_H_ -+ -+ -+/* -+ * IOCTL Command for Character Driver -+ */ -+ -+#define CMD_CAMERA_INIT 0x23 -+/* Test Application Usage */ -+typedef struct { -+ int src_x; -+ int src_y; -+ int dst_x; -+ int dst_y; -+ int bpp; -+ int flip; -+} camif_param_t; -+ -+ -+ -+#endif -+ -+ -+/* -+ * Local variables: -+ * tab-width: 8 -+ * c-indent-level: 8 -+ * c-basic-offset: 8 -+ * c-set-style: "K&R" -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/v4l2_api.c -@@ -0,0 +1,311 @@ -+/* -+ * . 2004-01-03: SW.LEE <hitchcar@sec.samsung.com> -+ * -+ * This file is subject to the terms and conditions of the GNU General Public -+ * License 2. See the file COPYING in the main directory of this archive -+ * for more details. -+ */ -+ -+#include <linux/config.h> -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/sched.h> -+#include <linux/irq.h> -+#include <linux/tqueue.h> -+#include <linux/locks.h> -+#include <linux/completion.h> -+#include <linux/delay.h> -+#include <linux/slab.h> -+#include <linux/vmalloc.h> -+#include <linux/miscdevice.h> -+#include <linux/wait.h> -+ -+#include <asm/io.h> -+#include <asm/semaphore.h> -+#include <asm/hardware.h> -+#include <asm/uaccess.h> -+ -+#include <asm/arch/cpu_s3c2440.h> -+#include <asm/arch/S3C2440.h> -+ -+#include "camif.h" -+#include "videodev.h" -+ -+/* -+ Codec_formats/Preview_format[0] must be same to initial value of -+ preview_init_param/codec_init_param -+*/ -+ -+const struct v4l2_fmtdesc codec_formats[] = { -+ { -+ .index = 0, -+ .type = V4L2_BUF_TYPE_VIDEO_CAPTURE, -+// .flags = FORMAT_FLAGS_PLANAR, -+ .description = "4:2:2, planar, Y-Cb-Cr", -+ .pixelformat = V4L2_PIX_FMT_YUV422P, -+ -+ },{ -+ .index = 1, -+ .type = V4L2_BUF_TYPE_VIDEO_CAPTURE, -+// .flags = FORMAT_FLAGS_PLANAR, -+ .name = "4:2:0, planar, Y-Cb-Cr", -+ .fourcc = V4L2_PIX_FMT_YUV420, -+ } -+}; -+ -+ -+/* Todo -+ FIMC V4L2_PIX_FMT_RGB565 is not same to that of V4L2spec -+ and so we need image convert to FIMC V4l2_PIX_FMT_RGB565. -+*/ -+const struct v4l2_fmtdesc preview_formats[] = { -+ { -+ .index = 1, -+ .type = V4L2_BUF_TYPE_VIDEO_CAPTURE, -+ .description = "16 bpp RGB, le", -+ .fourcc = V4L2_PIX_FMT_RGB565, -+// .flags = FORMAT_FLAGS_PACKED, -+ }, -+ { -+ .index = 0, -+ .type = V4L2_BUF_TYPE_VIDEO_CAPTURE, -+// .flags = FORMAT_FLAGS_PACKED, -+ .description = "32 bpp RGB, le", -+ .fourcc = V4L2_PIX_FMT_BGR32, -+ } -+} -+ -+#define NUM_F ARRARY_SIZE(preview_formats) -+ -+ -+/* -+ * This function and v4l2 structure made for V4L2 API functions -+ * App <--> v4l2 <--> logical param <--> hardware -+ */ -+static int camif_get_v4l2(camif_cfg_t *cfg) -+{ -+ return 0; -+} -+ -+ -+/* -+** Gives the depth of a video4linux2 fourcc aka pixel format in bits. -+*/ -+static int pixfmt2depth(int pixfmt,int *fmtptr) -+{ -+ int fmt, depth; -+ -+ switch (pixfmt) { -+ case V4L2_PIX_FMT_RGB565: -+ case V4L2_PIX_FMT_RGB565X: -+ fmt = CAMIF_RGB_16; -+ depth = 16; -+ break; -+ case V4L2_PIX_FMT_BGR24: /* Not tested */ -+ case V4L2_PIX_FMT_RGB24: -+ fmt = CAMIF_RGB_24; -+ depth = 24; -+ break; -+ case V4L2_PIX_FMT_BGR32: -+ case V4L2_PIX_FMT_RGB32: -+ fmt = CAMIF_RGB_24; -+ depth 32; -+ break; -+ case V4L2_PIX_FMT_GREY: /* Not tested */ -+ fmt = CAMIF_OUT_YCBCR420; -+ depth = 8; -+ break; -+ case V4L2_PIX_FMT_YUYV: -+ case V4L2_PIX_FMT_UYVY: -+ case V4L2_PIX_FMT_YUV422P: -+ fmt = CAMIF_OUT_YCBCR422; -+ depth = 16; -+ break; -+ case V4L2_PIX_FMT_YUV420: -+ fmt = CAMIF_OUT_YCBCR420; -+ depth = 12; -+ break; -+ } -+ if (fmtptr) *fmtptr = fmt; -+ return depth; -+} -+ -+ -+ -+static int camif_s_v4l2(camif_cfg_t *cfg) -+{ -+ int num = cfg->v2.used_fmt; -+ -+ if ( !(cfg->v2.status&CAMIF_V4L2_INIT)) { -+ int depth; -+ int fourcc = v2.fmtdesc[num].pixelformat; -+ -+ /* To define v4l2_fmtsdesc */ -+ if (cfg->dma_type == CAMIF_CODEC) -+ cfg->v2->fmtdesc = codec_formats; -+ else -+ cfg->v2->fmtdesc = preview_formats; -+ -+ /* To define v4l2_format used currently */ -+ cfg->v2.fmt.width = cfg->target_x; -+ cfg->v2.fmt.height = cfg->target_y; -+ cfg->v2.fmt.field = V4L2_FIELD_NONE; -+ cfg->v2.fmt.pixelformat = fourcc; -+ depth = pixfmt2depth(fourcc,NULL); -+ cfg->v2.fmt.bytesperline= cfg->v2.fmt.width*depth >> 3; -+ cfg->v2.fmt.sizeimage = -+ cfg->v2.fmt.height * cfg->v2.fmt.bytesperline; -+ -+ /* To define v4l2_input */ -+ cfg->v2.input.index = 0; -+ if (cfg->dma_type == CAMIF_CODEC) -+ snprintf(cfg->v2.input.name, 31, "CAMIF CODEC"); -+ else -+ snprintf(cfg->v2.input.name, 31, "CAMIF PREVIEW"); -+ cfg->v2.input.type = V4L2_INPUT_TYPE_CAMERA; -+ -+ /* Write the Status of v4l2 machine */ -+ cfg->v2.status |= CAMIF_V4L2_INIT; -+ } -+ return 0; -+} -+ -+ -+static int camif_g_fmt(camif_cfg_t *cfg, struct v4l2_format *f) -+{ -+ int size = sizeof(struct v4l2_pix_format); -+ -+ switch (f->type) { -+ case V4L2_BUF_TYPE_VIDEO_CAPTURE: -+ memset(&f->fmt.pix,0,size); -+ memcpy(&f->fmt.pix,&cfg->v2.fmt,size); -+ return 0; -+ default: -+ return -EINVAL; -+ } -+} -+ -+ -+/* Copy v4l2 parameter into other element of camif_cfg_t */ -+static int camif_s_try(camif_cfg_t *cfg, int f) -+{ -+ int fmt; -+ cfg->target_x = cfg->v2.fmt.width; -+ cfg->target_y = cfg->v2.fmt.height; -+ pixfmt2depth(cfg->v2.fmt.pixelformat,&fmt); -+ cfg->fmt = fmt; -+ camif_dynamic_conf(cfg); -+} -+ -+ -+static int camif_s_fmt(camif_cfg_t *cfg, struct v4l2_format *f) -+{ -+ int retval; -+ -+ switch (f->type) { -+ case V4L2_BUF_TYPE_VIDEO_CAPTURE: -+ { -+ /* update our state informations */ -+// down(&fh->cap.lock); -+ cfg->v2.fmt = f->pix; -+ cfg->v2.status |= CAMIF_v4L2_DIRTY; -+ camif_dynamic_conf(cfg); -+ cfg->v2.status &= ~CAMIF_v4L2_DIRTY; /* dummy ? */ -+// up(&fh->cap.lock); -+ -+ return 0; -+ } -+ default: -+ return -EINVAL; -+ } -+ -+} -+ -+/* Refer ioctl of videodeX.c and bttv-driver.c */ -+int camif_do_ioctl -+(struct inode *inode, struct file *file,unsigned int cmd, void * arg) -+{ -+ camif_cfg_t *cfg = file->private_data; -+ int ret = 0; -+ -+ switch (cmd) { -+ case VIDIOC_QUERYCAP: -+ { -+ struct v4l2_capability *cap = arg; -+ -+ strcpy(cap->driver,"Fimc Camera"); -+ strlcpy(cap->card,cfg->v->name,sizeof(cap->card)); -+ sprintf(cap->bus_info,"FIMC 2.0 AHB Bus"); -+ cap->version = 0; -+ cap->capabilities = -+ V4L2_CAP_VIDEO_CAPTURE |V4L2_CAP_READWRITE; -+ return 0; -+ } -+ case VIDIOC_G_FMT: -+ { -+ struct v4l2_format *f = arg; -+ return camif_g_fmt(cfg,f); -+ } -+ case VIDIOC_S_FMT: -+ { -+ struct v4l2_format *f = arg; -+ return camif_s_fmt(cfg,f); -+ } -+ -+ case VIDIOC_ENUM_FMT: -+ { -+ struct v4l2_fmtdesc *f = arg; -+ enum v4l2_buf_type type = f->type; -+ int index = f->index; -+ -+ if (index >= NUM_F) -+ return -EINVAL; -+ switch (f->type) { -+ case V4L2_BUF_TYPE_VIDEO_CAPTURE: -+ break; -+ case V4L2_BUF_TYPE_VIDEO_OVERLAY: -+ case V4L2_BUF_TYPE_VBI_CAPTURE: -+ default: -+ return -EINVAL; -+ } -+ memset(f,0,sizeof(*f)); -+ memcpy(f,cfg->v2.fmtdesc+index,sizeof(*f)); -+ return 0; -+ } -+ case VIDIOC_G_INPUT: -+ { -+ u32 *i = arg; -+ *i = cfg->v2.input; -+ return 0; -+ } -+ case VIDIOC_S_INPUT: -+ { -+ int index = *((int *)arg); -+ if (index != 0) -+ return -EINVAL; -+ cfg->v2.input.index = index; -+ return 0; -+ } -+ -+ default: -+ return -ENOIOCTLCMD; /* errno.h */ -+ } /* End of Switch */ -+ -+ -+} -+ -+ -+ -+ -+ -+ -+ -+/* -+ * Local variables: -+ * tab-width: 8 -+ * c-indent-level: 8 -+ * c-basic-offset: 8 -+ * c-set-style: "K&R" -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/videodev2.h -@@ -0,0 +1,938 @@ -+#ifndef __LINUX_VIDEODEV2_H -+#define __LINUX_VIDEODEV2_H -+/* -+ * Video for Linux Two -+ * -+ * Header file for v4l or V4L2 drivers and applications, for -+ * Linux kernels 2.2.x or 2.4.x. -+ * -+ * See http://bytesex.org/v4l/ for API specs and other -+ * v4l2 documentation. -+ * -+ * Author: Bill Dirks <bdirks@pacbell.net> -+ * Justin Schoeman -+ * et al. -+ */ -+#ifdef __KERNEL__ -+#include <linux/time.h> /* need struct timeval */ -+#endif -+ -+/* -+ * M I S C E L L A N E O U S -+ */ -+ -+/* Four-character-code (FOURCC) */ -+#define v4l2_fourcc(a,b,c,d)\ -+ (((__u32)(a)<<0)|((__u32)(b)<<8)|((__u32)(c)<<16)|((__u32)(d)<<24)) -+ -+/* -+ * E N U M S -+ */ -+enum v4l2_field { -+ V4L2_FIELD_ANY = 0, /* driver can choose from none, -+ top, bottom, interlaced -+ depending on whatever it thinks -+ is approximate ... */ -+ V4L2_FIELD_NONE = 1, /* this device has no fields ... */ -+ V4L2_FIELD_TOP = 2, /* top field only */ -+ V4L2_FIELD_BOTTOM = 3, /* bottom field only */ -+ V4L2_FIELD_INTERLACED = 4, /* both fields interlaced */ -+ V4L2_FIELD_SEQ_TB = 5, /* both fields sequential into one -+ buffer, top-bottom order */ -+ V4L2_FIELD_SEQ_BT = 6, /* same as above + bottom-top order */ -+ V4L2_FIELD_ALTERNATE = 7, /* both fields alternating into -+ separate buffers */ -+}; -+#define V4L2_FIELD_HAS_TOP(field) \ -+ ((field) == V4L2_FIELD_TOP ||\ -+ (field) == V4L2_FIELD_INTERLACED ||\ -+ (field) == V4L2_FIELD_SEQ_TB ||\ -+ (field) == V4L2_FIELD_SEQ_BT) -+#define V4L2_FIELD_HAS_BOTTOM(field) \ -+ ((field) == V4L2_FIELD_BOTTOM ||\ -+ (field) == V4L2_FIELD_INTERLACED ||\ -+ (field) == V4L2_FIELD_SEQ_TB ||\ -+ (field) == V4L2_FIELD_SEQ_BT) -+#define V4L2_FIELD_HAS_BOTH(field) \ -+ ((field) == V4L2_FIELD_INTERLACED ||\ -+ (field) == V4L2_FIELD_SEQ_TB ||\ -+ (field) == V4L2_FIELD_SEQ_BT) -+ -+enum v4l2_buf_type { -+ V4L2_BUF_TYPE_VIDEO_CAPTURE = 1, -+ V4L2_BUF_TYPE_VIDEO_OUTPUT = 2, -+ V4L2_BUF_TYPE_VIDEO_OVERLAY = 3, -+ V4L2_BUF_TYPE_VBI_CAPTURE = 4, -+ V4L2_BUF_TYPE_VBI_OUTPUT = 5, -+ V4L2_BUF_TYPE_PRIVATE = 0x80, -+}; -+ -+enum v4l2_ctrl_type { -+ V4L2_CTRL_TYPE_INTEGER = 1, -+ V4L2_CTRL_TYPE_BOOLEAN = 2, -+ V4L2_CTRL_TYPE_MENU = 3, -+ V4L2_CTRL_TYPE_BUTTON = 4, -+}; -+ -+enum v4l2_tuner_type { -+ V4L2_TUNER_RADIO = 1, -+ V4L2_TUNER_ANALOG_TV = 2, -+}; -+ -+enum v4l2_memory { -+ V4L2_MEMORY_MMAP = 1, -+ V4L2_MEMORY_USERPTR = 2, -+ V4L2_MEMORY_OVERLAY = 3, -+}; -+ -+/* see also http://vektor.theorem.ca/graphics/ycbcr/ */ -+enum v4l2_colorspace { -+ /* ITU-R 601 -- broadcast NTSC/PAL */ -+ V4L2_COLORSPACE_SMPTE170M = 1, -+ -+ /* 1125-Line (US) HDTV */ -+ V4L2_COLORSPACE_SMPTE240M = 2, -+ -+ /* HD and modern captures. */ -+ V4L2_COLORSPACE_REC709 = 3, -+ -+ /* broken BT878 extents (601, luma range 16-253 instead of 16-235) */ -+ V4L2_COLORSPACE_BT878 = 4, -+ -+ /* These should be useful. Assume 601 extents. */ -+ V4L2_COLORSPACE_470_SYSTEM_M = 5, -+ V4L2_COLORSPACE_470_SYSTEM_BG = 6, -+ -+ /* I know there will be cameras that send this. So, this is -+ * unspecified chromaticities and full 0-255 on each of the -+ * Y'CbCr components -+ */ -+ V4L2_COLORSPACE_JPEG = 7, -+ -+ /* For RGB colourspaces, this is probably a good start. */ -+ V4L2_COLORSPACE_SRGB = 8, -+}; -+ -+enum v4l2_priority { -+ V4L2_PRIORITY_UNSET = 0, /* not initialized */ -+ V4L2_PRIORITY_BACKGROUND = 1, -+ V4L2_PRIORITY_INTERACTIVE = 2, -+ V4L2_PRIORITY_RECORD = 3, -+ V4L2_PRIORITY_DEFAULT = V4L2_PRIORITY_INTERACTIVE, -+}; -+ -+struct v4l2_rect { -+ __s32 left; -+ __s32 top; -+ __s32 width; -+ __s32 height; -+}; -+ -+struct v4l2_fract { -+ __u32 numerator; -+ __u32 denominator; -+}; -+ -+/* -+ * D R I V E R C A P A B I L I T I E S -+ */ -+struct v4l2_capability -+{ -+ __u8 driver[16]; /* i.e. "bttv" */ -+ __u8 card[32]; /* i.e. "Hauppauge WinTV" */ -+ __u8 bus_info[32]; /* "PCI:" + pci_name(pci_dev) */ -+ __u32 version; /* should use KERNEL_VERSION() */ -+ __u32 capabilities; /* Device capabilities */ -+ __u32 reserved[4]; -+}; -+ -+/* Values for 'capabilities' field */ -+#define V4L2_CAP_VIDEO_CAPTURE 0x00000001 /* Is a video capture device */ -+#define V4L2_CAP_VIDEO_OUTPUT 0x00000002 /* Is a video output device */ -+#define V4L2_CAP_VIDEO_OVERLAY 0x00000004 /* Can do video overlay */ -+#define V4L2_CAP_VBI_CAPTURE 0x00000010 /* Is a VBI capture device */ -+#define V4L2_CAP_VBI_OUTPUT 0x00000020 /* Is a VBI output device */ -+#define V4L2_CAP_RDS_CAPTURE 0x00000100 /* RDS data capture */ -+ -+#define V4L2_CAP_TUNER 0x00010000 /* has a tuner */ -+#define V4L2_CAP_AUDIO 0x00020000 /* has audio support */ -+#define V4L2_CAP_RADIO 0x00040000 /* is a radio device */ -+ -+#define V4L2_CAP_READWRITE 0x01000000 /* read/write systemcalls */ -+#define V4L2_CAP_ASYNCIO 0x02000000 /* async I/O */ -+#define V4L2_CAP_STREAMING 0x04000000 /* streaming I/O ioctls */ -+ -+/* -+ * V I D E O I M A G E F O R M A T -+ */ -+ -+struct v4l2_pix_format -+{ -+ __u32 width; -+ __u32 height; -+ __u32 pixelformat; -+ enum v4l2_field field; -+ __u32 bytesperline; /* for padding, zero if unused */ -+ __u32 sizeimage; -+ enum v4l2_colorspace colorspace; -+ __u32 priv; /* private data, depends on pixelformat */ -+}; -+ -+/* Pixel format FOURCC depth Description */ -+#define V4L2_PIX_FMT_RGB332 v4l2_fourcc('R','G','B','1') /* 8 RGB-3-3-2 */ -+#define V4L2_PIX_FMT_RGB555 v4l2_fourcc('R','G','B','O') /* 16 RGB-5-5-5 */ -+#define V4L2_PIX_FMT_RGB565 v4l2_fourcc('R','G','B','P') /* 16 RGB-5-6-5 */ -+#define V4L2_PIX_FMT_RGB555X v4l2_fourcc('R','G','B','Q') /* 16 RGB-5-5-5 BE */ -+#define V4L2_PIX_FMT_RGB565X v4l2_fourcc('R','G','B','R') /* 16 RGB-5-6-5 BE */ -+#define V4L2_PIX_FMT_BGR24 v4l2_fourcc('B','G','R','3') /* 24 BGR-8-8-8 */ -+#define V4L2_PIX_FMT_RGB24 v4l2_fourcc('R','G','B','3') /* 24 RGB-8-8-8 */ -+#define V4L2_PIX_FMT_BGR32 v4l2_fourcc('B','G','R','4') /* 32 BGR-8-8-8-8 */ -+#define V4L2_PIX_FMT_RGB32 v4l2_fourcc('R','G','B','4') /* 32 RGB-8-8-8-8 */ -+#define V4L2_PIX_FMT_GREY v4l2_fourcc('G','R','E','Y') /* 8 Greyscale */ -+#define V4L2_PIX_FMT_YVU410 v4l2_fourcc('Y','V','U','9') /* 9 YVU 4:1:0 */ -+#define V4L2_PIX_FMT_YVU420 v4l2_fourcc('Y','V','1','2') /* 12 YVU 4:2:0 */ -+#define V4L2_PIX_FMT_YUYV v4l2_fourcc('Y','U','Y','V') /* 16 YUV 4:2:2 */ -+#define V4L2_PIX_FMT_UYVY v4l2_fourcc('U','Y','V','Y') /* 16 YUV 4:2:2 */ -+#define V4L2_PIX_FMT_YUV422P v4l2_fourcc('4','2','2','P') /* 16 YVU422 planar */ -+#define V4L2_PIX_FMT_YUV411P v4l2_fourcc('4','1','1','P') /* 16 YVU411 planar */ -+#define V4L2_PIX_FMT_Y41P v4l2_fourcc('Y','4','1','P') /* 12 YUV 4:1:1 */ -+ -+/* two planes -- one Y, one Cr + Cb interleaved */ -+#define V4L2_PIX_FMT_NV12 v4l2_fourcc('N','V','1','2') /* 12 Y/CbCr 4:2:0 */ -+#define V4L2_PIX_FMT_NV21 v4l2_fourcc('N','V','2','1') /* 12 Y/CrCb 4:2:0 */ -+ -+/* The following formats are not defined in the V4L2 specification */ -+#define V4L2_PIX_FMT_YUV410 v4l2_fourcc('Y','U','V','9') /* 9 YUV 4:1:0 */ -+#define V4L2_PIX_FMT_YUV420 v4l2_fourcc('Y','U','1','2') /* 12 YUV 4:2:0 */ -+#define V4L2_PIX_FMT_YYUV v4l2_fourcc('Y','Y','U','V') /* 16 YUV 4:2:2 */ -+#define V4L2_PIX_FMT_HI240 v4l2_fourcc('H','I','2','4') /* 8 8-bit color */ -+ -+/* compressed formats */ -+#define V4L2_PIX_FMT_MJPEG v4l2_fourcc('M','J','P','G') /* Motion-JPEG */ -+#define V4L2_PIX_FMT_JPEG v4l2_fourcc('J','P','E','G') /* JFIF JPEG */ -+#define V4L2_PIX_FMT_DV v4l2_fourcc('d','v','s','d') /* 1394 */ -+#define V4L2_PIX_FMT_MPEG v4l2_fourcc('M','P','E','G') /* MPEG */ -+ -+/* Vendor-specific formats */ -+#define V4L2_PIX_FMT_WNVA v4l2_fourcc('W','N','V','A') /* Winnov hw compress */ -+ -+/* -+ * F O R M A T E N U M E R A T I O N -+ */ -+struct v4l2_fmtdesc -+{ -+ __u32 index; /* Format number */ -+ enum v4l2_buf_type type; /* buffer type */ -+ __u32 flags; -+ __u8 description[32]; /* Description string */ -+ __u32 pixelformat; /* Format fourcc */ -+ __u32 reserved[4]; -+}; -+ -+#define V4L2_FMT_FLAG_COMPRESSED 0x0001 -+ -+ -+/* -+ * T I M E C O D E -+ */ -+struct v4l2_timecode -+{ -+ __u32 type; -+ __u32 flags; -+ __u8 frames; -+ __u8 seconds; -+ __u8 minutes; -+ __u8 hours; -+ __u8 userbits[4]; -+}; -+ -+/* Type */ -+#define V4L2_TC_TYPE_24FPS 1 -+#define V4L2_TC_TYPE_25FPS 2 -+#define V4L2_TC_TYPE_30FPS 3 -+#define V4L2_TC_TYPE_50FPS 4 -+#define V4L2_TC_TYPE_60FPS 5 -+ -+/* Flags */ -+#define V4L2_TC_FLAG_DROPFRAME 0x0001 /* "drop-frame" mode */ -+#define V4L2_TC_FLAG_COLORFRAME 0x0002 -+#define V4L2_TC_USERBITS_field 0x000C -+#define V4L2_TC_USERBITS_USERDEFINED 0x0000 -+#define V4L2_TC_USERBITS_8BITCHARS 0x0008 -+/* The above is based on SMPTE timecodes */ -+ -+ -+/* -+ * C O M P R E S S I O N P A R A M E T E R S -+ */ -+#if 0 -+/* ### generic compression settings don't work, there is too much -+ * ### codec-specific stuff. Maybe reuse that for MPEG codec settings -+ * ### later ... */ -+struct v4l2_compression -+{ -+ __u32 quality; -+ __u32 keyframerate; -+ __u32 pframerate; -+ __u32 reserved[5]; -+ -+/* what we'll need for MPEG, extracted from some postings on -+ the v4l list (Gert Vervoort, PlasmaJohn). -+ -+system stream: -+ - type: elementary stream(ES), packatised elementary stream(s) (PES) -+ program stream(PS), transport stream(TS) -+ - system bitrate -+ - PS packet size (DVD: 2048 bytes, VCD: 2324 bytes) -+ - TS video PID -+ - TS audio PID -+ - TS PCR PID -+ - TS system information tables (PAT, PMT, CAT, NIT and SIT) -+ - (MPEG-1 systems stream vs. MPEG-2 program stream (TS not supported -+ by MPEG-1 systems) -+ -+audio: -+ - type: MPEG (+Layer I,II,III), AC-3, LPCM -+ - bitrate -+ - sampling frequency (DVD: 48 Khz, VCD: 44.1 KHz, 32 kHz) -+ - Trick Modes? (ff, rew) -+ - Copyright -+ - Inverse Telecine -+ -+video: -+ - picturesize (SIF, 1/2 D1, 2/3 D1, D1) and PAL/NTSC norm can be set -+ through excisting V4L2 controls -+ - noise reduction, parameters encoder specific? -+ - MPEG video version: MPEG-1, MPEG-2 -+ - GOP (Group Of Pictures) definition: -+ - N: number of frames per GOP -+ - M: distance between reference (I,P) frames -+ - open/closed GOP -+ - quantiser matrix: inter Q matrix (64 bytes) and intra Q matrix (64 bytes) -+ - quantiser scale: linear or logarithmic -+ - scanning: alternate or zigzag -+ - bitrate mode: CBR (constant bitrate) or VBR (variable bitrate). -+ - target video bitrate for CBR -+ - target video bitrate for VBR -+ - maximum video bitrate for VBR - min. quantiser value for VBR -+ - max. quantiser value for VBR -+ - adaptive quantisation value -+ - return the number of bytes per GOP or bitrate for bitrate monitoring -+ -+*/ -+}; -+#endif -+ -+struct v4l2_jpegcompression -+{ -+ int quality; -+ -+ int APPn; /* Number of APP segment to be written, -+ * must be 0..15 */ -+ int APP_len; /* Length of data in JPEG APPn segment */ -+ char APP_data[60]; /* Data in the JPEG APPn segment. */ -+ -+ int COM_len; /* Length of data in JPEG COM segment */ -+ char COM_data[60]; /* Data in JPEG COM segment */ -+ -+ __u32 jpeg_markers; /* Which markers should go into the JPEG -+ * output. Unless you exactly know what -+ * you do, leave them untouched. -+ * Inluding less markers will make the -+ * resulting code smaller, but there will -+ * be fewer aplications which can read it. -+ * The presence of the APP and COM marker -+ * is influenced by APP_len and COM_len -+ * ONLY, not by this property! */ -+ -+#define V4L2_JPEG_MARKER_DHT (1<<3) /* Define Huffman Tables */ -+#define V4L2_JPEG_MARKER_DQT (1<<4) /* Define Quantization Tables */ -+#define V4L2_JPEG_MARKER_DRI (1<<5) /* Define Restart Interval */ -+#define V4L2_JPEG_MARKER_COM (1<<6) /* Comment segment */ -+#define V4L2_JPEG_MARKER_APP (1<<7) /* App segment, driver will -+ * allways use APP0 */ -+}; -+ -+ -+/* -+ * M E M O R Y - M A P P I N G B U F F E R S -+ */ -+struct v4l2_requestbuffers -+{ -+ __u32 count; -+ enum v4l2_buf_type type; -+ enum v4l2_memory memory; -+ __u32 reserved[2]; -+}; -+ -+struct v4l2_buffer -+{ -+ __u32 index; -+ enum v4l2_buf_type type; -+ __u32 bytesused; -+ __u32 flags; -+ enum v4l2_field field; -+ struct timeval timestamp; -+ struct v4l2_timecode timecode; -+ __u32 sequence; -+ -+ /* memory location */ -+ enum v4l2_memory memory; -+ union { -+ __u32 offset; -+ unsigned long userptr; -+ } m; -+ __u32 length; -+ -+ __u32 reserved[2]; -+}; -+ -+/* Flags for 'flags' field */ -+#define V4L2_BUF_FLAG_MAPPED 0x0001 /* Buffer is mapped (flag) */ -+#define V4L2_BUF_FLAG_QUEUED 0x0002 /* Buffer is queued for processing */ -+#define V4L2_BUF_FLAG_DONE 0x0004 /* Buffer is ready */ -+#define V4L2_BUF_FLAG_KEYFRAME 0x0008 /* Image is a keyframe (I-frame) */ -+#define V4L2_BUF_FLAG_PFRAME 0x0010 /* Image is a P-frame */ -+#define V4L2_BUF_FLAG_BFRAME 0x0020 /* Image is a B-frame */ -+#define V4L2_BUF_FLAG_TIMECODE 0x0100 /* timecode field is valid */ -+ -+/* -+ * O V E R L A Y P R E V I E W -+ */ -+struct v4l2_framebuffer -+{ -+ __u32 capability; -+ __u32 flags; -+/* FIXME: in theory we should pass something like PCI device + memory -+ * region + offset instead of some physical address */ -+ void* base; -+ struct v4l2_pix_format fmt; -+}; -+/* Flags for the 'capability' field. Read only */ -+#define V4L2_FBUF_CAP_EXTERNOVERLAY 0x0001 -+#define V4L2_FBUF_CAP_CHROMAKEY 0x0002 -+#define V4L2_FBUF_CAP_LIST_CLIPPING 0x0004 -+#define V4L2_FBUF_CAP_BITMAP_CLIPPING 0x0008 -+/* Flags for the 'flags' field. */ -+#define V4L2_FBUF_FLAG_PRIMARY 0x0001 -+#define V4L2_FBUF_FLAG_OVERLAY 0x0002 -+#define V4L2_FBUF_FLAG_CHROMAKEY 0x0004 -+ -+struct v4l2_clip -+{ -+ struct v4l2_rect c; -+ struct v4l2_clip *next; -+}; -+ -+struct v4l2_window -+{ -+ struct v4l2_rect w; -+ enum v4l2_field field; -+ __u32 chromakey; -+ struct v4l2_clip *clips; -+ __u32 clipcount; -+ void *bitmap; -+}; -+ -+ -+/* -+ * C A P T U R E P A R A M E T E R S -+ */ -+struct v4l2_captureparm -+{ -+ __u32 capability; /* Supported modes */ -+ __u32 capturemode; /* Current mode */ -+ struct v4l2_fract timeperframe; /* Time per frame in .1us units */ -+ __u32 extendedmode; /* Driver-specific extensions */ -+ __u32 readbuffers; /* # of buffers for read */ -+ __u32 reserved[4]; -+}; -+/* Flags for 'capability' and 'capturemode' fields */ -+#define V4L2_MODE_HIGHQUALITY 0x0001 /* High quality imaging mode */ -+#define V4L2_CAP_TIMEPERFRAME 0x1000 /* timeperframe field is supported */ -+ -+struct v4l2_outputparm -+{ -+ __u32 capability; /* Supported modes */ -+ __u32 outputmode; /* Current mode */ -+ struct v4l2_fract timeperframe; /* Time per frame in seconds */ -+ __u32 extendedmode; /* Driver-specific extensions */ -+ __u32 writebuffers; /* # of buffers for write */ -+ __u32 reserved[4]; -+}; -+ -+/* -+ * I N P U T I M A G E C R O P P I N G -+ */ -+ -+struct v4l2_cropcap { -+ enum v4l2_buf_type type; -+ struct v4l2_rect bounds; -+ struct v4l2_rect defrect; -+ struct v4l2_fract pixelaspect; -+}; -+ -+struct v4l2_crop { -+ enum v4l2_buf_type type; -+ struct v4l2_rect c; -+}; -+ -+/* -+ * A N A L O G V I D E O S T A N D A R D -+ */ -+ -+typedef __u64 v4l2_std_id; -+ -+/* one bit for each */ -+#define V4L2_STD_PAL_B ((v4l2_std_id)0x00000001) -+#define V4L2_STD_PAL_B1 ((v4l2_std_id)0x00000002) -+#define V4L2_STD_PAL_G ((v4l2_std_id)0x00000004) -+#define V4L2_STD_PAL_H ((v4l2_std_id)0x00000008) -+#define V4L2_STD_PAL_I ((v4l2_std_id)0x00000010) -+#define V4L2_STD_PAL_D ((v4l2_std_id)0x00000020) -+#define V4L2_STD_PAL_D1 ((v4l2_std_id)0x00000040) -+#define V4L2_STD_PAL_K ((v4l2_std_id)0x00000080) -+ -+#define V4L2_STD_PAL_M ((v4l2_std_id)0x00000100) -+#define V4L2_STD_PAL_N ((v4l2_std_id)0x00000200) -+#define V4L2_STD_PAL_Nc ((v4l2_std_id)0x00000400) -+#define V4L2_STD_PAL_60 ((v4l2_std_id)0x00000800) -+ -+#define V4L2_STD_NTSC_M ((v4l2_std_id)0x00001000) -+#define V4L2_STD_NTSC_M_JP ((v4l2_std_id)0x00002000) -+ -+#define V4L2_STD_SECAM_B ((v4l2_std_id)0x00010000) -+#define V4L2_STD_SECAM_D ((v4l2_std_id)0x00020000) -+#define V4L2_STD_SECAM_G ((v4l2_std_id)0x00040000) -+#define V4L2_STD_SECAM_H ((v4l2_std_id)0x00080000) -+#define V4L2_STD_SECAM_K ((v4l2_std_id)0x00100000) -+#define V4L2_STD_SECAM_K1 ((v4l2_std_id)0x00200000) -+#define V4L2_STD_SECAM_L ((v4l2_std_id)0x00400000) -+ -+/* ATSC/HDTV */ -+#define V4L2_STD_ATSC_8_VSB ((v4l2_std_id)0x01000000) -+#define V4L2_STD_ATSC_16_VSB ((v4l2_std_id)0x02000000) -+ -+/* some common needed stuff */ -+#define V4L2_STD_PAL_BG (V4L2_STD_PAL_B |\ -+ V4L2_STD_PAL_B1 |\ -+ V4L2_STD_PAL_G) -+#define V4L2_STD_PAL_DK (V4L2_STD_PAL_D |\ -+ V4L2_STD_PAL_D1 |\ -+ V4L2_STD_PAL_K) -+#define V4L2_STD_PAL (V4L2_STD_PAL_BG |\ -+ V4L2_STD_PAL_DK |\ -+ V4L2_STD_PAL_H |\ -+ V4L2_STD_PAL_I) -+#define V4L2_STD_NTSC (V4L2_STD_NTSC_M |\ -+ V4L2_STD_NTSC_M_JP) -+#define V4L2_STD_SECAM (V4L2_STD_SECAM_B |\ -+ V4L2_STD_SECAM_D |\ -+ V4L2_STD_SECAM_G |\ -+ V4L2_STD_SECAM_H |\ -+ V4L2_STD_SECAM_K |\ -+ V4L2_STD_SECAM_K1 |\ -+ V4L2_STD_SECAM_L) -+ -+#define V4L2_STD_525_60 (V4L2_STD_PAL_M |\ -+ V4L2_STD_PAL_60 |\ -+ V4L2_STD_NTSC) -+#define V4L2_STD_625_50 (V4L2_STD_PAL |\ -+ V4L2_STD_PAL_N |\ -+ V4L2_STD_PAL_Nc |\ -+ V4L2_STD_SECAM) -+ -+#define V4L2_STD_UNKNOWN 0 -+#define V4L2_STD_ALL (V4L2_STD_525_60 |\ -+ V4L2_STD_625_50) -+ -+struct v4l2_standard -+{ -+ __u32 index; -+ v4l2_std_id id; -+ __u8 name[24]; -+ struct v4l2_fract frameperiod; /* Frames, not fields */ -+ __u32 framelines; -+ __u32 reserved[4]; -+}; -+ -+ -+/* -+ * V I D E O I N P U T S -+ */ -+struct v4l2_input -+{ -+ __u32 index; /* Which input */ -+ __u8 name[32]; /* Label */ -+ __u32 type; /* Type of input */ -+ __u32 audioset; /* Associated audios (bitfield) */ -+ __u32 tuner; /* Associated tuner */ -+ v4l2_std_id std; -+ __u32 status; -+ __u32 reserved[4]; -+}; -+/* Values for the 'type' field */ -+#define V4L2_INPUT_TYPE_TUNER 1 -+#define V4L2_INPUT_TYPE_CAMERA 2 -+ -+/* field 'status' - general */ -+#define V4L2_IN_ST_NO_POWER 0x00000001 /* Attached device is off */ -+#define V4L2_IN_ST_NO_SIGNAL 0x00000002 -+#define V4L2_IN_ST_NO_COLOR 0x00000004 -+ -+/* field 'status' - analog */ -+#define V4L2_IN_ST_NO_H_LOCK 0x00000100 /* No horizontal sync lock */ -+#define V4L2_IN_ST_COLOR_KILL 0x00000200 /* Color killer is active */ -+ -+/* field 'status' - digital */ -+#define V4L2_IN_ST_NO_SYNC 0x00010000 /* No synchronization lock */ -+#define V4L2_IN_ST_NO_EQU 0x00020000 /* No equalizer lock */ -+#define V4L2_IN_ST_NO_CARRIER 0x00040000 /* Carrier recovery failed */ -+ -+/* field 'status' - VCR and set-top box */ -+#define V4L2_IN_ST_MACROVISION 0x01000000 /* Macrovision detected */ -+#define V4L2_IN_ST_NO_ACCESS 0x02000000 /* Conditional access denied */ -+#define V4L2_IN_ST_VTR 0x04000000 /* VTR time constant */ -+ -+/* -+ * V I D E O O U T P U T S -+ */ -+struct v4l2_output -+{ -+ __u32 index; /* Which output */ -+ __u8 name[32]; /* Label */ -+ __u32 type; /* Type of output */ -+ __u32 audioset; /* Associated audios (bitfield) */ -+ __u32 modulator; /* Associated modulator */ -+ v4l2_std_id std; -+ __u32 reserved[4]; -+}; -+/* Values for the 'type' field */ -+#define V4L2_OUTPUT_TYPE_MODULATOR 1 -+#define V4L2_OUTPUT_TYPE_ANALOG 2 -+#define V4L2_OUTPUT_TYPE_ANALOGVGAOVERLAY 3 -+ -+/* -+ * C O N T R O L S -+ */ -+struct v4l2_control -+{ -+ __u32 id; -+ __s32 value; -+}; -+ -+/* Used in the VIDIOC_QUERYCTRL ioctl for querying controls */ -+struct v4l2_queryctrl -+{ -+ __u32 id; -+ enum v4l2_ctrl_type type; -+ __u8 name[32]; /* Whatever */ -+ __s32 minimum; /* Note signedness */ -+ __s32 maximum; -+ __s32 step; -+ __s32 default_value; -+ __u32 flags; -+ __u32 reserved[2]; -+}; -+ -+/* Used in the VIDIOC_QUERYMENU ioctl for querying menu items */ -+struct v4l2_querymenu -+{ -+ __u32 id; -+ __u32 index; -+ __u8 name[32]; /* Whatever */ -+ __u32 reserved; -+}; -+ -+/* Control flags */ -+#define V4L2_CTRL_FLAG_DISABLED 0x0001 -+#define V4L2_CTRL_FLAG_GRABBED 0x0002 -+ -+/* Control IDs defined by V4L2 */ -+#define V4L2_CID_BASE 0x00980900 -+/* IDs reserved for driver specific controls */ -+#define V4L2_CID_PRIVATE_BASE 0x08000000 -+ -+#define V4L2_CID_BRIGHTNESS (V4L2_CID_BASE+0) -+#define V4L2_CID_CONTRAST (V4L2_CID_BASE+1) -+#define V4L2_CID_SATURATION (V4L2_CID_BASE+2) -+#define V4L2_CID_HUE (V4L2_CID_BASE+3) -+#define V4L2_CID_AUDIO_VOLUME (V4L2_CID_BASE+5) -+#define V4L2_CID_AUDIO_BALANCE (V4L2_CID_BASE+6) -+#define V4L2_CID_AUDIO_BASS (V4L2_CID_BASE+7) -+#define V4L2_CID_AUDIO_TREBLE (V4L2_CID_BASE+8) -+#define V4L2_CID_AUDIO_MUTE (V4L2_CID_BASE+9) -+#define V4L2_CID_AUDIO_LOUDNESS (V4L2_CID_BASE+10) -+#define V4L2_CID_BLACK_LEVEL (V4L2_CID_BASE+11) -+#define V4L2_CID_AUTO_WHITE_BALANCE (V4L2_CID_BASE+12) -+#define V4L2_CID_DO_WHITE_BALANCE (V4L2_CID_BASE+13) -+#define V4L2_CID_RED_BALANCE (V4L2_CID_BASE+14) -+#define V4L2_CID_BLUE_BALANCE (V4L2_CID_BASE+15) -+#define V4L2_CID_GAMMA (V4L2_CID_BASE+16) -+#define V4L2_CID_WHITENESS (V4L2_CID_GAMMA) /* ? Not sure */ -+#define V4L2_CID_EXPOSURE (V4L2_CID_BASE+17) -+#define V4L2_CID_AUTOGAIN (V4L2_CID_BASE+18) -+#define V4L2_CID_GAIN (V4L2_CID_BASE+19) -+#define V4L2_CID_HFLIP (V4L2_CID_BASE+20) -+#define V4L2_CID_VFLIP (V4L2_CID_BASE+21) -+#define V4L2_CID_HCENTER (V4L2_CID_BASE+22) -+#define V4L2_CID_VCENTER (V4L2_CID_BASE+23) -+#define V4L2_CID_LASTP1 (V4L2_CID_BASE+24) /* last CID + 1 */ -+ -+/* -+ * T U N I N G -+ */ -+struct v4l2_tuner -+{ -+ __u32 index; -+ __u8 name[32]; -+ enum v4l2_tuner_type type; -+ __u32 capability; -+ __u32 rangelow; -+ __u32 rangehigh; -+ __u32 rxsubchans; -+ __u32 audmode; -+ __s32 signal; -+ __s32 afc; -+ __u32 reserved[4]; -+}; -+ -+struct v4l2_modulator -+{ -+ __u32 index; -+ __u8 name[32]; -+ __u32 capability; -+ __u32 rangelow; -+ __u32 rangehigh; -+ __u32 txsubchans; -+ __u32 reserved[4]; -+}; -+ -+/* Flags for the 'capability' field */ -+#define V4L2_TUNER_CAP_LOW 0x0001 -+#define V4L2_TUNER_CAP_NORM 0x0002 -+#define V4L2_TUNER_CAP_STEREO 0x0010 -+#define V4L2_TUNER_CAP_LANG2 0x0020 -+#define V4L2_TUNER_CAP_SAP 0x0020 -+#define V4L2_TUNER_CAP_LANG1 0x0040 -+ -+/* Flags for the 'rxsubchans' field */ -+#define V4L2_TUNER_SUB_MONO 0x0001 -+#define V4L2_TUNER_SUB_STEREO 0x0002 -+#define V4L2_TUNER_SUB_LANG2 0x0004 -+#define V4L2_TUNER_SUB_SAP 0x0004 -+#define V4L2_TUNER_SUB_LANG1 0x0008 -+ -+/* Values for the 'audmode' field */ -+#define V4L2_TUNER_MODE_MONO 0x0000 -+#define V4L2_TUNER_MODE_STEREO 0x0001 -+#define V4L2_TUNER_MODE_LANG2 0x0002 -+#define V4L2_TUNER_MODE_SAP 0x0002 -+#define V4L2_TUNER_MODE_LANG1 0x0003 -+ -+struct v4l2_frequency -+{ -+ __u32 tuner; -+ enum v4l2_tuner_type type; -+ __u32 frequency; -+ __u32 reserved[8]; -+}; -+ -+/* -+ * A U D I O -+ */ -+struct v4l2_audio -+{ -+ __u32 index; -+ __u8 name[32]; -+ __u32 capability; -+ __u32 mode; -+ __u32 reserved[2]; -+}; -+/* Flags for the 'capability' field */ -+#define V4L2_AUDCAP_STEREO 0x00001 -+#define V4L2_AUDCAP_AVL 0x00002 -+ -+/* Flags for the 'mode' field */ -+#define V4L2_AUDMODE_AVL 0x00001 -+ -+struct v4l2_audioout -+{ -+ __u32 index; -+ __u8 name[32]; -+ __u32 capability; -+ __u32 mode; -+ __u32 reserved[2]; -+}; -+ -+/* -+ * D A T A S E R V I C E S ( V B I ) -+ * -+ * Data services API by Michael Schimek -+ */ -+ -+struct v4l2_vbi_format -+{ -+ __u32 sampling_rate; /* in 1 Hz */ -+ __u32 offset; -+ __u32 samples_per_line; -+ __u32 sample_format; /* V4L2_PIX_FMT_* */ -+ __s32 start[2]; -+ __u32 count[2]; -+ __u32 flags; /* V4L2_VBI_* */ -+ __u32 reserved[2]; /* must be zero */ -+}; -+ -+/* VBI flags */ -+#define V4L2_VBI_UNSYNC (1<< 0) -+#define V4L2_VBI_INTERLACED (1<< 1) -+ -+ -+/* -+ * A G G R E G A T E S T R U C T U R E S -+ */ -+ -+/* Stream data format -+ */ -+struct v4l2_format -+{ -+ enum v4l2_buf_type type; -+ union -+ { -+ struct v4l2_pix_format pix; // V4L2_BUF_TYPE_VIDEO_CAPTURE -+ struct v4l2_window win; // V4L2_BUF_TYPE_VIDEO_OVERLAY -+ struct v4l2_vbi_format vbi; // V4L2_BUF_TYPE_VBI_CAPTURE -+ __u8 raw_data[200]; // user-defined -+ } fmt; -+}; -+ -+ -+/* Stream type-dependent parameters -+ */ -+struct v4l2_streamparm -+{ -+ enum v4l2_buf_type type; -+ union -+ { -+ struct v4l2_captureparm capture; -+ struct v4l2_outputparm output; -+ __u8 raw_data[200]; /* user-defined */ -+ } parm; -+}; -+ -+ -+ -+/* -+ * I O C T L C O D E S F O R V I D E O D E V I C E S -+ * -+ */ -+#define VIDIOC_QUERYCAP _IOR ('V', 0, struct v4l2_capability) -+#define VIDIOC_RESERVED _IO ('V', 1) -+#define VIDIOC_ENUM_FMT _IOWR ('V', 2, struct v4l2_fmtdesc) -+#define VIDIOC_G_FMT _IOWR ('V', 4, struct v4l2_format) -+#define VIDIOC_S_FMT _IOWR ('V', 5, struct v4l2_format) -+#if 0 -+#define VIDIOC_G_COMP _IOR ('V', 6, struct v4l2_compression) -+#define VIDIOC_S_COMP _IOW ('V', 7, struct v4l2_compression) -+#endif -+#define VIDIOC_REQBUFS _IOWR ('V', 8, struct v4l2_requestbuffers) -+#define VIDIOC_QUERYBUF _IOWR ('V', 9, struct v4l2_buffer) -+#define VIDIOC_G_FBUF _IOR ('V', 10, struct v4l2_framebuffer) -+#define VIDIOC_S_FBUF _IOW ('V', 11, struct v4l2_framebuffer) -+#define VIDIOC_OVERLAY _IOW ('V', 14, int) -+#define VIDIOC_QBUF _IOWR ('V', 15, struct v4l2_buffer) -+#define VIDIOC_DQBUF _IOWR ('V', 17, struct v4l2_buffer) -+#define VIDIOC_STREAMON _IOW ('V', 18, int) -+#define VIDIOC_STREAMOFF _IOW ('V', 19, int) -+#define VIDIOC_G_PARM _IOWR ('V', 21, struct v4l2_streamparm) -+#define VIDIOC_S_PARM _IOWR ('V', 22, struct v4l2_streamparm) -+#define VIDIOC_G_STD _IOR ('V', 23, v4l2_std_id) -+#define VIDIOC_S_STD _IOW ('V', 24, v4l2_std_id) -+#define VIDIOC_ENUMSTD _IOWR ('V', 25, struct v4l2_standard) -+#define VIDIOC_ENUMINPUT _IOWR ('V', 26, struct v4l2_input) -+#define VIDIOC_G_CTRL _IOWR ('V', 27, struct v4l2_control) -+#define VIDIOC_S_CTRL _IOWR ('V', 28, struct v4l2_control) -+#define VIDIOC_G_TUNER _IOWR ('V', 29, struct v4l2_tuner) -+#define VIDIOC_S_TUNER _IOW ('V', 30, struct v4l2_tuner) -+#define VIDIOC_G_AUDIO _IOR ('V', 33, struct v4l2_audio) -+#define VIDIOC_S_AUDIO _IOW ('V', 34, struct v4l2_audio) -+#define VIDIOC_QUERYCTRL _IOWR ('V', 36, struct v4l2_queryctrl) -+#define VIDIOC_QUERYMENU _IOWR ('V', 37, struct v4l2_querymenu) -+#define VIDIOC_G_INPUT _IOR ('V', 38, int) -+#define VIDIOC_S_INPUT _IOWR ('V', 39, int) -+#define VIDIOC_G_OUTPUT _IOR ('V', 46, int) -+#define VIDIOC_S_OUTPUT _IOWR ('V', 47, int) -+#define VIDIOC_ENUMOUTPUT _IOWR ('V', 48, struct v4l2_output) -+#define VIDIOC_G_AUDOUT _IOR ('V', 49, struct v4l2_audioout) -+#define VIDIOC_S_AUDOUT _IOW ('V', 50, struct v4l2_audioout) -+#define VIDIOC_G_MODULATOR _IOWR ('V', 54, struct v4l2_modulator) -+#define VIDIOC_S_MODULATOR _IOW ('V', 55, struct v4l2_modulator) -+#define VIDIOC_G_FREQUENCY _IOWR ('V', 56, struct v4l2_frequency) -+#define VIDIOC_S_FREQUENCY _IOW ('V', 57, struct v4l2_frequency) -+#define VIDIOC_CROPCAP _IOR ('V', 58, struct v4l2_cropcap) -+#define VIDIOC_G_CROP _IOWR ('V', 59, struct v4l2_crop) -+#define VIDIOC_S_CROP _IOW ('V', 60, struct v4l2_crop) -+#define VIDIOC_G_JPEGCOMP _IOR ('V', 61, struct v4l2_jpegcompression) -+#define VIDIOC_S_JPEGCOMP _IOW ('V', 62, struct v4l2_jpegcompression) -+#define VIDIOC_QUERYSTD _IOR ('V', 63, v4l2_std_id) -+#define VIDIOC_TRY_FMT _IOWR ('V', 64, struct v4l2_format) -+#define VIDIOC_ENUMAUDIO _IOWR ('V', 65, struct v4l2_audio) -+#define VIDIOC_ENUMAUDOUT _IOWR ('V', 66, struct v4l2_audioout) -+#define VIDIOC_G_PRIORITY _IOR ('V', 67, enum v4l2_priority) -+#define VIDIOC_S_PRIORITY _IOW ('V', 68, enum v4l2_priority) -+ -+/* for compatibility, will go away some day */ -+#define VIDIOC_OVERLAY_OLD _IOWR ('V', 14, int) -+#define VIDIOC_S_PARM_OLD _IOW ('V', 22, struct v4l2_streamparm) -+#define VIDIOC_S_CTRL_OLD _IOW ('V', 28, struct v4l2_control) -+#define VIDIOC_G_AUDIO_OLD _IOWR ('V', 33, struct v4l2_audio) -+#define VIDIOC_G_AUDOUT_OLD _IOWR ('V', 49, struct v4l2_audioout) -+ -+#define BASE_VIDIOC_PRIVATE 192 /* 192-255 are private */ -+ -+ -+#ifdef __KERNEL__ -+/* -+ * -+ * V 4 L 2 D R I V E R H E L P E R A P I -+ * -+ * Some commonly needed functions for drivers (v4l2-common.o module) -+ */ -+#include <linux/fs.h> -+ -+/* Video standard functions */ -+extern unsigned int v4l2_video_std_fps(struct v4l2_standard *vs); -+extern int v4l2_video_std_construct(struct v4l2_standard *vs, -+ int id, char *name); -+ -+/* prority handling */ -+struct v4l2_prio_state { -+ atomic_t prios[4]; -+}; -+int v4l2_prio_init(struct v4l2_prio_state *global); -+int v4l2_prio_change(struct v4l2_prio_state *global, enum v4l2_priority *local, -+ enum v4l2_priority new); -+int v4l2_prio_open(struct v4l2_prio_state *global, enum v4l2_priority *local); -+int v4l2_prio_close(struct v4l2_prio_state *global, enum v4l2_priority *local); -+enum v4l2_priority v4l2_prio_max(struct v4l2_prio_state *global); -+int v4l2_prio_check(struct v4l2_prio_state *global, enum v4l2_priority *local); -+ -+/* names for fancy debug output */ -+extern char *v4l2_field_names[]; -+extern char *v4l2_type_names[]; -+extern char *v4l2_ioctl_names[]; -+ -+/* Compatibility layer interface -- v4l1-compat module */ -+typedef int (*v4l2_kioctl)(struct inode *inode, struct file *file, -+ unsigned int cmd, void *arg); -+int v4l_compat_translate_ioctl(struct inode *inode, struct file *file, -+ int cmd, void *arg, v4l2_kioctl driver_ioctl); -+ -+#endif /* __KERNEL__ */ -+#endif /* __LINUX_VIDEODEV2_H */ -+ -+/* -+ * Local variables: -+ * c-basic-offset: 8 -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/videodev.c -@@ -0,0 +1,332 @@ -+/* -+ * Video capture interface for Linux Character Device Driver. -+ * based on -+ * Alan Cox, <alan@redhat.com> video4linux -+ * -+ * Author: SW.LEE <hitchcar@samsung.com> -+ * 2004 (C) Samsung Electronics -+ * Modified for S3C2440/S3C24A0 Interface -+ * -+ * This file is released under the GPLv2 -+ */ -+ -+ -+#include <linux/module.h> -+#include <linux/types.h> -+#include <linux/kernel.h> -+#include <linux/sched.h> -+#include <linux/smp_lock.h> -+#include <linux/mm.h> -+#include <linux/string.h> -+#include <linux/errno.h> -+#include <linux/init.h> -+#include <linux/kmod.h> -+#include <linux/slab.h> -+/* #include <linux/devfs_fs_kernel.h> */ -+#include <linux/miscdevice.h> -+#include <asm/uaccess.h> -+#include <asm/system.h> -+#include <asm/semaphore.h> -+ -+ -+ -+#define CONFIG_VIDEO_V4L1_COMPAT -+#include <linux/videodev.h> -+#include "camif.h" -+#include "miscdevice.h" -+ -+ -+static DECLARE_MUTEX(videodev_lock); -+ -+const char *fimc_version = "$Id: videodev.c,v 1.1.1.1 2004/04/27 03:52:50 swlee Exp $"; -+ -+#define VIDEO_NAME "video4linux" -+ -+ -+#define VIDEO_NUM_DEVICES 2 -+static struct video_device *video_device[VIDEO_NUM_DEVICES]; -+ -+static inline struct video_device * get_vd(int nr) -+{ -+ if ( nr == CODEC_MINOR) -+ return video_device[0]; -+ else { -+ assert ( nr & PREVIEW_MINOR); -+ return video_device[1]; -+ } -+} -+ -+static inline void set_vd ( struct video_device * vd, int nr) -+{ -+ if ( nr == CODEC_MINOR) -+ video_device[0] = vd; -+ else { -+ assert ( nr & PREVIEW_MINOR); -+ video_device[1] = vd; -+ } -+} -+ -+static inline int video_release(struct inode *inode, struct file *f) -+{ -+ int minor = MINOR(inode->i_rdev); -+ struct video_device *vfd; -+ -+ vfd = get_vd(minor); -+#if 1 /* needed until all drivers are fixed */ -+ if (!vfd->release) -+ return 0; -+#endif -+ vfd->release(vfd); -+ return 0; -+} -+ -+struct video_device* video_devdata(struct file *file) -+{ -+ return video_device[iminor(file->f_dentry->d_inode)]; -+} -+ -+ -+/* -+ * Open a video device. -+ */ -+static int video_open(struct inode *inode, struct file *file) -+{ -+ int minor = MINOR(inode->i_rdev); -+ int err = 0; -+ struct video_device *vfl; -+ struct file_operations const *old_fops; -+ -+ down(&videodev_lock); -+ -+ vfl = get_vd(minor); -+ -+ old_fops = file->f_op; -+ file->f_op = fops_get(vfl->fops); -+ if(file->f_op->open) -+ err = file->f_op->open(inode,file); -+ if (err) { -+ fops_put(file->f_op); -+ file->f_op = fops_get(old_fops); -+ } -+ fops_put(old_fops); -+ up(&videodev_lock); -+ return err; -+} -+ -+/* -+ * open/release helper functions -- handle exclusive opens -+ */ -+extern int video_exclusive_open(struct inode *inode, struct file *file) -+{ -+ struct video_device *vfl = get_vd(MINOR(inode->i_rdev)); -+ int retval = 0; -+ -+ mutex_lock(&vfl->lock); -+ if (vfl->users) { -+ retval = -EBUSY; -+ } else { -+ vfl->users++; -+ } -+ mutex_unlock(&vfl->lock); -+ return retval; -+} -+ -+extern int video_exclusive_release(struct inode *inode, struct file *file) -+{ -+ struct video_device *vfl = get_vd(MINOR(inode->i_rdev)); -+ vfl->users--; -+ return 0; -+} -+ -+int -+video_usercopy(struct inode *inode, struct file *file, -+ unsigned int cmd, unsigned long arg, -+ int (*func)(struct inode *inode, struct file *file, -+ unsigned int cmd, void *arg)) -+{ -+ char sbuf[128]; -+ void *mbuf = NULL; -+ void *parg = NULL; -+ int err = -EINVAL; -+ -+ // cmd = video_fix_command(cmd); -+ -+ /* Copy arguments into temp kernel buffer */ -+ switch (_IOC_DIR(cmd)) { -+ case _IOC_NONE: -+ parg = (void *)arg; -+ break; -+ case _IOC_READ: -+ case _IOC_WRITE: -+ case (_IOC_WRITE | _IOC_READ): -+ if (_IOC_SIZE(cmd) <= sizeof(sbuf)) { -+ parg = sbuf; -+ } else { -+ /* too big to allocate from stack */ -+ mbuf = kmalloc(_IOC_SIZE(cmd),GFP_KERNEL); -+ if (NULL == mbuf) -+ return -ENOMEM; -+ parg = mbuf; -+ } -+ -+ err = -EFAULT; -+ if (_IOC_DIR(cmd) & _IOC_WRITE) -+ if (copy_from_user(parg, (void *)arg, _IOC_SIZE(cmd))) -+ goto out; -+ break; -+ } -+ -+ /* call driver */ -+ err = func(inode, file, cmd, parg); -+ if (err == -ENOIOCTLCMD) -+ err = -EINVAL; -+ if (err < 0) -+ goto out; -+ -+ /* Copy results into user buffer */ -+ switch (_IOC_DIR(cmd)) -+ { -+ case _IOC_READ: -+ case (_IOC_WRITE | _IOC_READ): -+ if (copy_to_user((void *)arg, parg, _IOC_SIZE(cmd))) -+ err = -EFAULT; -+ break; -+ } -+ -+out: -+ if (mbuf) -+ kfree(mbuf); -+ return err; -+} -+ -+ -+static struct file_operations video_fops= -+{ -+ .owner = THIS_MODULE, -+ .llseek = no_llseek, -+ .open = video_open, -+ .release = video_release, -+}; -+ -+static struct miscdevice codec_dev = { -+ minor: CODEC_MINOR, -+ name : "codec", -+ fops : &video_fops -+}; -+ -+static struct miscdevice preview_dev = { -+ minor: PREVIEW_MINOR, -+ name : "preview", -+ fops : &video_fops -+}; -+ -+ -+/** -+ * video_register_device - register video4linux devices -+ * @vfd: video device structure we want to register -+ * @type: type of device to register -+ * @nr: minor number -+ * -+ * Zero is returned on success. -+ * type : ignored. -+ * nr : -+ * 0 Codec index -+ * 1 Preview index -+ */ -+int video_register_device(struct video_device *vfd, int type, int nr) -+{ -+ int ret=0; -+ -+ /* pick a minor number */ -+ down(&videodev_lock); -+ set_vd (vfd, nr); -+ vfd->minor=nr; -+ up(&videodev_lock); -+ -+ switch (vfd->minor) { -+ case CODEC_MINOR: -+ ret = misc_register(&codec_dev); -+ if (ret) { -+ printk(KERN_ERR -+ "can't misc_register : codec on minor=%d\n", CODEC_MINOR); -+ panic(" Give me misc codec \n"); -+ } -+ break; -+ case PREVIEW_MINOR: -+ ret = misc_register(&preview_dev); -+ if (ret) { -+ printk(KERN_ERR -+ "can't misc_register (preview) on minor=%d\n", PREVIEW_MINOR); -+ panic(" Give me misc codec \n"); -+ } -+ break; -+ } -+ -+#if 0 /* needed until all drivers are fixed */ -+ if (!vfd->release) -+ printk(KERN_WARNING "videodev: \"%s\" has no release callback. " -+ "Please fix your driver for proper sysfs support, see " -+ "http://lwn.net/Articles/36850/\n", vfd->name); -+#endif -+ return 0; -+} -+ -+/** -+ * video_unregister_device - unregister a video4linux device -+ * @vfd: the device to unregister -+ * -+ * This unregisters the passed device and deassigns the minor -+ * number. Future open calls will be met with errors. -+ */ -+ -+void video_unregister_device(struct video_device *vfd) -+{ -+ down(&videodev_lock); -+ -+ if(get_vd(vfd->minor)!=vfd) -+ panic("videodev: bad unregister"); -+ -+ if (vfd->minor== CODEC_MINOR) -+ misc_deregister(&codec_dev); -+ else -+ misc_deregister(&preview_dev); -+ set_vd (NULL, vfd->minor); -+ up(&videodev_lock); -+} -+ -+ -+/* -+ * Initialise video for linux -+ */ -+ -+static int __init videodev_init(void) -+{ -+// printk(KERN_INFO "FIMC2.0 Built:"__DATE__" "__TIME__"\n%s\n",fimc_version); -+ return 0; -+} -+ -+static void __exit videodev_exit(void) -+{ -+} -+ -+module_init(videodev_init) -+module_exit(videodev_exit) -+ -+EXPORT_SYMBOL(video_register_device); -+EXPORT_SYMBOL(fimc_version); -+EXPORT_SYMBOL(video_unregister_device); -+EXPORT_SYMBOL(video_usercopy); -+EXPORT_SYMBOL(video_exclusive_open); -+EXPORT_SYMBOL(video_exclusive_release); -+ -+ -+MODULE_AUTHOR("SW.LEE <hitchcar@sec.samsung.com>"); -+MODULE_DESCRIPTION("VideoDev For FIMC2.0 MISC Drivers"); -+MODULE_LICENSE("GPL"); -+ -+ -+/* -+ * Local variables: -+ * c-basic-offset: 8 -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/videodev.h -@@ -0,0 +1,108 @@ -+//#ifndef __LINUX_S3C_VIDEODEV_H -+//#define __LINUX_S3C_VIDEODEV_H -+ -+#include <linux/types.h> -+#include <linux/version.h> -+#include <media/v4l2-dev.h> -+ -+#if 0 -+struct video_device -+{ -+ /* device info */ -+ // struct device *dev; -+ char name[32]; -+ int type; /* v4l1 */ -+ int type2; /* v4l2 */ -+ int hardware; -+ int minor; -+ -+ /* device ops + callbacks */ -+ struct file_operations *fops; -+ void (*release)(struct video_device *vfd); -+ -+ -+#if 1 /* to be removed in 2.7.x */ -+ /* obsolete -- fops->owner is used instead */ -+ struct module *owner; -+ /* dev->driver_data will be used instead some day. -+ * Use the video_{get|set}_drvdata() helper functions, -+ * so the switch over will be transparent for you. -+ * Or use {pci|usb}_{get|set}_drvdata() directly. */ -+ void *priv; -+#endif -+ -+ /* for videodev.c intenal usage -- please don't touch */ -+ int users; /* video_exclusive_{open|close} ... */ -+ struct semaphore lock; /* ... helper function uses these */ -+ char devfs_name[64]; /* devfs */ -+ // struct class_device class_dev; /* sysfs */ -+}; -+ -+#define VIDEO_MAJOR 81 -+ -+#define VFL_TYPE_GRABBER 0 -+ -+ -+extern int video_register_device(struct video_device *, int type, int nr); -+extern void video_unregister_device(struct video_device *); -+extern struct video_device* video_devdata(struct file*); -+ -+ -+ -+struct video_picture -+{ -+ __u16 brightness; -+ __u16 hue; -+ __u16 colour; -+ __u16 contrast; -+ __u16 whiteness; /* Black and white only */ -+ __u16 depth; /* Capture depth */ -+ __u16 palette; /* Palette in use */ -+#define VIDEO_PALETTE_GREY 1 /* Linear greyscale */ -+#define VIDEO_PALETTE_HI240 2 /* High 240 cube (BT848) */ -+#define VIDEO_PALETTE_RGB565 3 /* 565 16 bit RGB */ -+#define VIDEO_PALETTE_RGB24 4 /* 24bit RGB */ -+#define VIDEO_PALETTE_RGB32 5 /* 32bit RGB */ -+#define VIDEO_PALETTE_RGB555 6 /* 555 15bit RGB */ -+#define VIDEO_PALETTE_YUV422 7 /* YUV422 capture */ -+#define VIDEO_PALETTE_YUYV 8 -+#define VIDEO_PALETTE_UYVY 9 /* The great thing about standards is ... */ -+#define VIDEO_PALETTE_YUV420 10 -+#define VIDEO_PALETTE_YUV411 11 /* YUV411 capture */ -+#define VIDEO_PALETTE_RAW 12 /* RAW capture (BT848) */ -+#define VIDEO_PALETTE_YUV422P 13 /* YUV 4:2:2 Planar */ -+#define VIDEO_PALETTE_YUV411P 14 /* YUV 4:1:1 Planar */ -+#define VIDEO_PALETTE_YUV420P 15 /* YUV 4:2:0 Planar */ -+#define VIDEO_PALETTE_YUV410P 16 /* YUV 4:1:0 Planar */ -+#define VIDEO_PALETTE_PLANAR 13 /* start of planar entries */ -+#define VIDEO_PALETTE_COMPONENT 7 /* start of component entries */ -+}; -+ -+extern int video_exclusive_open(struct inode *inode, struct file *file); -+extern int video_exclusive_release(struct inode *inode, struct file *file); -+extern int video_usercopy(struct inode *inode, struct file *file, -+ unsigned int cmd, unsigned long arg, -+ int (*func)(struct inode *inode, struct file *file, -+ unsigned int cmd, void *arg)); -+ -+ -+ -+ -+#define VID_TYPE_CAPTURE 1 /* Can capture */ -+#define VID_TYPE_CLIPPING 32 /* Can clip */ -+#define VID_TYPE_FRAMERAM 64 /* Uses the frame buffer memory */ -+#define VID_TYPE_SCALES 128 /* Scalable */ -+#define VID_TYPE_SUBCAPTURE 512 /* Can capture subareas of the image */ -+ -+ -+ -+#endif -+//#endif -+ -+#define VID_HARDWARE_SAMSUNG_FIMC 255 -+ -+/* -+ * Local variables: -+ * c-basic-offset: 8 -+ * End: -+ */ ---- /dev/null -+++ b/arch/arm/mach-s3c2440/camera/video-driver.c -@@ -0,0 +1,624 @@ -+/* -+ Copyright (C) 2004 Samsung Electronics -+ SW.LEE <hitchcar@sec.samsung.com> -+ This program is free software; you can redistribute it and/or modify -+ it under the terms of the GNU General Public License as published by -+ the Free Software Foundation; either version 2 of the License, or -+ (at your option) any later version. -+*/ -+ -+#include <linux/version.h> -+#include <linux/module.h> -+#include <linux/delay.h> -+#include <linux/errno.h> -+#include <linux/fs.h> -+#include <linux/kernel.h> -+#include <linux/major.h> -+#include <linux/slab.h> -+#include <linux/poll.h> -+#include <linux/signal.h> -+#include <linux/ioport.h> -+#include <linux/sched.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/kmod.h> -+#include <linux/vmalloc.h> -+#include <linux/init.h> -+#include <asm/io.h> -+#include <asm/page.h> -+#include <asm/irq.h> -+#include <asm/semaphore.h> -+#include <linux/miscdevice.h> -+#include <asm/arch/irqs.h> -+ -+//#define SW_DEBUG -+#define CONFIG_VIDEO_V4L1_COMPAT -+#include <linux/videodev.h> -+#include "camif.h" -+#include "miscdevice.h" -+#include "cam_reg.h" -+#include "sensor.h" -+#include "userapp.h" -+ -+#ifdef Z_API -+#include "qt.h" -+#endif -+ -+/* Codec and Preview */ -+#define CAMIF_NUM 2 -+static camif_cfg_t fimc[CAMIF_NUM]; -+u32 *camregs; -+ -+static const char *driver_version = -+ "$Id: video-driver.c,v 1.9 2004/06/02 03:10:36 swlee Exp $"; -+extern const char *fimc_version; -+extern const char *fsm_version; -+ -+extern void camif_start_c_with_p (camif_cfg_t *cfg, camif_cfg_t *other); -+ -+camif_cfg_t * get_camif(int nr) -+{ -+ camif_cfg_t *ret = NULL; -+ switch(nr) { -+ case CODEC_MINOR: -+ ret = &fimc[0]; -+ break; -+ case PREVIEW_MINOR: -+ ret = &fimc[1]; -+ break; -+ default: -+ panic("Unknow Minor Number \n"); -+ } -+ return ret; -+} -+ -+ -+static int camif_codec_start(camif_cfg_t *cfg) -+{ -+ int ret = 0; -+ ret =camif_check_preview(cfg); -+ switch(ret) { -+ case 0: /* Play alone */ -+ DPRINTK("Start Alone \n"); -+ camif_4fsm_start(cfg); -+ cfg->gc->status |= C_WORKING; -+ break; -+ case -ERESTARTSYS: /* Busy , retry */ -+ //DPRINTK("Error \n"); -+ printk("Error \n"); -+ break; -+ case 1: -+ DPRINTK("need callback \n"); -+ ret = camif_callback_start(cfg); -+ if(ret < 0 ) { -+ printk(KERN_INFO "Busy RESTART \n"); -+ return ret; /* Busy, retry */ -+ } -+ break; -+ } -+ return ret; -+} -+ -+ -+ssize_t camif_write (struct file *f, const char *b, size_t c,loff_t *offset) -+{ -+ camif_cfg_t *cfg; -+ -+ c = 0; /* return value */ -+ DPRINTK("\n"); -+ cfg = get_camif(MINOR(f->f_dentry->d_inode->i_rdev)); -+ switch (*b) { -+ case 'O': -+ if (cfg->dma_type & CAMIF_PREVIEW) { -+ if (cfg->gc->status & C_WORKING) { -+ camif_start_c_with_p(cfg,get_camif(CODEC_MINOR)); -+ } -+ else { -+ camif_4fsm_start(cfg); -+ } -+ } -+ else{ -+ c = camif_codec_start(cfg); -+ if(c < 0) c = 1; /* Error and neet to retry */ -+ } -+ -+ break; -+ case 'X': -+ camif_p_stop(cfg); -+ break; -+ default: -+ panic("CAMERA:camif_write: Unexpected Param\n"); -+ } -+ DPRINTK("end\n"); -+ -+ return c; -+} -+ -+ -+ssize_t camif_p_read(struct file *file, char *buf, size_t count, loff_t *pos) -+{ -+ camif_cfg_t *cfg = NULL; -+ size_t end; -+ -+ cfg = get_camif(MINOR(file->f_dentry->d_inode->i_rdev)); -+ cfg->status = CAMIF_STARTED; -+ -+ if (wait_event_interruptible(cfg->waitq,cfg->status == CAMIF_INT_HAPPEN)) -+ return -ERESTARTSYS; -+ -+ cfg->status = CAMIF_STOPPED; -+ end = min_t(size_t, cfg->pp_totalsize /cfg->pp_num, count); -+ if (copy_to_user(buf, camif_g_frame(cfg), end)) -+ return -EFAULT; -+ -+ return end; -+} -+ -+ -+static ssize_t -+camif_c_read(struct file *file, char *buf, size_t count, loff_t *pos) -+{ -+ camif_cfg_t *cfg = NULL; -+ size_t end; -+ -+ /* cfg = file->private_data; */ -+ cfg = get_camif(MINOR(file->f_dentry->d_inode->i_rdev)); -+#if 0 -+ if(file->f_flags & O_NONBLOCK) { -+ printk(KERN_ERR"Don't Support NON_BLOCK \n"); -+ } -+#endif -+ -+ /* Change the below wait_event_interruptible func */ -+ if (wait_event_interruptible(cfg->waitq,cfg->status == CAMIF_INT_HAPPEN)) -+ return -ERESTARTSYS; -+ cfg->status = CAMIF_STOPPED; -+ end = min_t(size_t, cfg->pp_totalsize /cfg->pp_num, count); -+ if (copy_to_user(buf, camif_g_frame(cfg), end)) -+ return -EFAULT; -+ return end; -+} -+ -+ -+static irqreturn_t camif_c_irq(int irq, void *dev_id) -+{ -+ camif_cfg_t *cfg = (camif_cfg_t *)dev_id; -+ -+ DPRINTK("\n"); -+ camif_g_fifo_status(cfg); -+ camif_g_frame_num(cfg); -+ if(camif_enter_c_4fsm(cfg) != INSTANT_SKIP) -+ wake_up_interruptible(&cfg->waitq); -+ -+ return IRQ_HANDLED; -+} -+ -+static irqreturn_t camif_p_irq(int irq, void *dev_id) -+{ -+ camif_cfg_t *cfg = (camif_cfg_t *)dev_id; -+ -+ DPRINTK("\n"); -+ camif_g_fifo_status(cfg); -+ camif_g_frame_num(cfg); -+ if(camif_enter_p_4fsm(cfg) != INSTANT_SKIP) -+ wake_up_interruptible(&cfg->waitq); -+#if 0 -+ if( (cfg->perf.frames % 5) == 0) -+ DPRINTK("5\n"); -+#endif -+ -+ return IRQ_HANDLED; -+} -+ -+static void camif_release_irq(camif_cfg_t *cfg) -+{ -+ disable_irq(cfg->irq); -+ free_irq(cfg->irq, cfg); -+} -+ -+static int camif_irq_request(camif_cfg_t *cfg) -+{ -+ int ret = 0; -+ -+ if (cfg->dma_type & CAMIF_CODEC) { -+ if ((ret = request_irq(cfg->irq, camif_c_irq, -+ 0, cfg->shortname, cfg))) { -+ printk("request_irq(CAM_C) failed.\n"); -+ } -+ } -+ if (cfg->dma_type & CAMIF_PREVIEW) { -+ if ((ret = request_irq(cfg->irq, camif_p_irq, -+ 0, cfg->shortname, cfg))) { -+ printk("request_irq(CAM_P) failed.\n"); -+ } -+ } -+ return 0; -+} -+ -+static void camif_init_sensor(camif_cfg_t *cfg) -+{ -+ camif_gc_t *gc = cfg->gc; -+ if (!gc->sensor) -+ panic("CAMERA:I2C Client(Img Sensor)Not registered\n"); -+ if(!gc->init_sensor) { -+ camif_reset(gc->reset_type, gc->reset_udelay); -+ gc->sensor->driver->command(gc->sensor,SENSOR_INIT,NULL); -+ gc->init_sensor = 1; /*sensor init done */ -+ } -+ gc->sensor->driver->command(gc->sensor, USER_ADD, NULL); -+} -+ -+static int camif_open(struct inode *inode, struct file *file) -+{ -+ int err; -+ camif_cfg_t * cfg = get_camif(MINOR(inode->i_rdev)); -+ -+ if(cfg->dma_type & CAMIF_PREVIEW) { -+ if(down_interruptible(&cfg->gc->lock)) -+ return -ERESTARTSYS; -+ if (cfg->dma_type & CAMIF_PREVIEW) { -+ cfg->gc->status &= ~PNOTWORKING; -+ } -+ up(&cfg->gc->lock); -+ } -+ err = video_exclusive_open(inode,file); -+ cfg->gc->user++; -+ cfg->status = CAMIF_STOPPED; -+ if (err < 0) return err; -+ if (file->f_flags & O_NONCAP ) { -+ printk("Don't Support Non-capturing open \n"); -+ return 0; -+ } -+ file->private_data = cfg; -+ camif_irq_request(cfg); -+ camif_init_sensor(cfg); -+ return 0; -+} -+ -+#if 0 -+static void print_pregs(void) -+{ -+ printk(" CISRCFMT 0x%08X \n", CISRCFMT); -+ printk(" CIWDOFST 0x%08X \n", CIWDOFST); -+ printk(" CIGCTRL 0x%08X \n", CIGCTRL); -+ printk(" CIPRTRGFMT 0x%08X \n", CIPRTRGFMT); -+ printk(" CIPRCTRL 0x%08X \n", CIPRCTRL); -+ printk(" CIPRSCPRERATIO 0x%08X \n", CIPRSCPRERATIO); -+ printk(" CIPRSCPREDST 0x%08X \n", CIPRSCPREDST); -+ printk(" CIPRSCCTRL 0x%08X \n", CIPRSCCTRL); -+ printk(" CIPRTAREA 0x%08X \n", CIPRTAREA); -+ printk(" CIPRSTATUS 0x%08X \n", CIPRSTATUS); -+ printk(" CIIMGCPT 0x%08X \n", CIIMGCPT); -+} -+ -+static void print_cregs(void) -+{ -+ printk(" CISRCFMT 0x%08X \n", CISRCFMT); -+ printk(" CIWDOFST 0x%08X \n", CIWDOFST); -+ printk(" CIGCTRL 0x%08X \n", CIGCTRL); -+ printk(" CICOCTRL 0x%8X \n", CICOCTRL); -+ printk(" CICOSCPRERATIO 0x%08X \n", CICOSCPRERATIO); -+ printk(" CICOSCPREDST 0x%08X \n", CICOSCPREDST); -+ printk(" CICOSCCTRL 0x%08X \n", CICOSCCTRL); -+ printk(" CICOTAREA 0x%08X \n", CICOTAREA); -+ printk(" CICOSTATUS 0x%8X \n", CICOSTATUS); -+ printk(" CIIMGCPT 0x%08X \n", CIIMGCPT); -+} -+#endif -+ -+ -+static int camif_release(struct inode *inode, struct file *file) -+{ -+ camif_cfg_t * cfg = get_camif(MINOR(inode->i_rdev)); -+ -+ //DPRINTK(" cfg->status 0x%0X cfg->gc->status 0x%0X \n", cfg->status,cfg->gc->status ); -+ if (cfg->dma_type & CAMIF_PREVIEW) { -+ if(down_interruptible(&cfg->gc->lock)) -+ return -ERESTARTSYS; -+ cfg->gc->status &= ~PWANT2START; -+ cfg->gc->status |= PNOTWORKING; -+ up(&cfg->gc->lock); -+ } -+ else { -+ cfg->gc->status &= ~CWANT2START; /* No need semaphore */ -+ } -+ camif_dynamic_close(cfg); -+ camif_release_irq(cfg); -+ video_exclusive_release(inode,file); -+ camif_p_stop(cfg); -+ cfg->gc->sensor->driver->command(cfg->gc->sensor, USER_EXIT, NULL); -+ cfg->gc->user--; -+ cfg->status = CAMIF_STOPPED; -+ return 0; -+} -+ -+static void fimc_config(camif_cfg_t *cfg,u32 x, u32 y, int bpp) -+{ -+ cfg->target_x = x; -+ cfg->target_y = y; -+ -+ switch (bpp) { -+ case 16: -+ cfg->fmt = CAMIF_RGB16; -+ break; -+ case 24: -+ cfg->fmt = CAMIF_RGB24; -+ break; -+ case 420: -+ cfg->fmt = CAMIF_IN_YCBCR422|CAMIF_OUT_YCBCR420; -+ break; -+ case 422: -+ cfg->fmt = CAMIF_IN_YCBCR422|CAMIF_OUT_YCBCR422; -+ break; -+ default: -+ panic("Wrong BPP \n"); -+ } -+} -+ -+ -+static int -+camif_ioctl(struct inode *inode, struct file *file, unsigned int cmd, unsigned long arg) -+{ -+ int ret = 0; -+ camif_cfg_t *cfg = file->private_data; -+ camif_param_t par; -+ -+ switch (cmd) { -+ case CMD_CAMERA_INIT: -+ if (copy_from_user(&par,(camif_param_t *)arg, -+ sizeof(camif_param_t))) -+ return -EFAULT; -+ fimc_config(cfg,par.dst_x, par.dst_y, par.bpp); -+ if (camif_dynamic_open(cfg)) { -+ printk(" Eror Happens \n"); -+ ret = -1; -+ } -+ -+ switch (par.flip) { -+ case 3 : -+ cfg->flip = CAMIF_FLIP_MIRROR; -+ break; -+ case 1 : -+ cfg->flip = CAMIF_FLIP_X; -+ break; -+ case 2 : -+ cfg->flip = CAMIF_FLIP_Y; -+ break; -+ case 0 : -+ default: -+ cfg->flip = CAMIF_FLIP; -+ } -+ break; -+ /* Todo -+ case CMD_SENSOR_BRIGHTNESS: -+ cfg->gc->sensor->driver->command(cfg->gc->sensor, SENSOR_BRIGHTNESS, NULL); -+ break; -+ */ -+ default: -+ ret = -EINVAL; -+ break; -+ } -+ -+ return ret; -+} -+ -+ -+#if 0 -+static int camif_ioctl(struct inode *inode, struct file *file, -+ unsigned int cmd, unsigned long arg) -+{ -+// camif_cfg_t *cfg = file->private_data; -+ -+ -+ switch (cmd) { -+/* case Some_other_action */ -+ default: -+ return video_usercopy(inode, file, cmd, arg, camif_do_ioctl); -+ } -+} -+#endif -+ -+static struct file_operations camif_c_fops = -+{ -+ .owner = THIS_MODULE, -+ .open = camif_open, -+ .release = camif_release, -+ .ioctl = camif_ioctl, -+ .read = camif_c_read, -+ .write = camif_write, -+}; -+ -+static struct file_operations camif_p_fops = -+{ -+ .owner = THIS_MODULE, -+ .open = camif_open, -+ .release = camif_release, -+ .ioctl = camif_ioctl, -+#ifdef Z_API -+ .read = z_read, -+ .write = z_write, -+#else -+ .read = camif_p_read, -+ .write = camif_write, -+#endif -+}; -+ -+static struct video_device codec_template = -+{ -+ .name = "CODEC_IF", -+ .type = VID_TYPE_CAPTURE|VID_TYPE_CLIPPING|VID_TYPE_SCALES, -+/* .hardware = VID_HARDWARE_SAMSUNG_FIMC20, */ -+ .fops = &camif_c_fops, -+// .release = camif_release -+ .minor = -1, -+}; -+ -+static struct video_device preview_template = -+{ -+ .name = "PREVIEW_IF", -+ .type = VID_TYPE_CAPTURE|VID_TYPE_CLIPPING|VID_TYPE_SCALES, -+/* .hardware = VID_HARDWARE_SAMSUNG_FIMC20, */ -+ .fops = &camif_p_fops, -+ .minor = -1, -+}; -+ -+static int preview_init(camif_cfg_t *cfg) -+{ -+ char name[16]="CAM_PREVIEW"; -+ -+ memset(cfg, 0, sizeof(camif_cfg_t)); -+ cfg->target_x = 640; -+ cfg->target_y = 480; -+ cfg->pp_num = 4; -+ cfg->dma_type = CAMIF_PREVIEW; -+ cfg->fmt = CAMIF_RGB16; -+ cfg->flip = CAMIF_FLIP_Y; -+ cfg->v = &preview_template; -+ mutex_init(&cfg->v->lock); -+ cfg->irq = IRQ_S3C2440_CAM_P; -+ -+ strcpy(cfg->shortname,name); -+ init_waitqueue_head(&cfg->waitq); -+ cfg->status = CAMIF_STOPPED; -+ return cfg->status; -+} -+ -+static int codec_init(camif_cfg_t *cfg) -+{ -+ char name[16]="CAM_CODEC"; -+ -+ memset(cfg, 0, sizeof(camif_cfg_t)); -+ cfg->target_x = 176; -+ cfg->target_y = 144; -+ cfg->pp_num = 4; -+ cfg->dma_type = CAMIF_CODEC; -+ cfg->fmt = CAMIF_IN_YCBCR422|CAMIF_OUT_YCBCR420; -+ cfg->flip = CAMIF_FLIP_X; -+ cfg->v = &codec_template; -+ mutex_init(&cfg->v->lock); -+ cfg->irq = IRQ_S3C2440_CAM_C; -+ strcpy(cfg->shortname,name); -+ init_waitqueue_head(&cfg->waitq); -+ cfg->status = CAMIF_STOPPED; -+ return cfg->status; -+} -+ -+static void camif_init(void) -+{ -+ camif_setup_sensor(); -+} -+ -+ -+ -+static void print_version(void) -+{ -+ printk(KERN_INFO"FIMC built:"__DATE__ " "__TIME__"\n%s\n%s\n%s\n", -+ fimc_version, driver_version,fsm_version); -+} -+ -+ -+static int camif_m_in(void) -+{ -+ int ret = -EINVAL; -+ camif_cfg_t * cfg; -+ -+ printk(KERN_INFO"Starting S3C2440 Camera Driver\n"); -+ -+ camregs = ioremap(CAM_BASE_ADD, 0x100); -+ if (!camregs) { -+ printk(KERN_ERR"Unable to map camera regs\n"); -+ ret = -ENOMEM; -+ goto bail1; -+ } -+ -+ camif_init(); -+ cfg = get_camif(CODEC_MINOR); -+ codec_init(cfg); -+ -+ ret = video_register_device(cfg->v,0,CODEC_MINOR); -+ if (ret) { -+ printk(KERN_ERR"Couldn't register codec driver.\n"); -+ goto bail2; -+ } -+ cfg = get_camif(PREVIEW_MINOR); -+ preview_init(cfg); -+ ret = video_register_device(cfg->v,0,PREVIEW_MINOR); -+ if (ret) { -+ printk(KERN_ERR"Couldn't register preview driver.\n"); -+ goto bail3; /* hm seems it us unregistered the once */ -+ } -+ -+ print_version(); -+ return 0; -+ -+bail3: -+ video_unregister_device(cfg->v); -+bail2: -+ iounmap(camregs); -+ camregs = NULL; -+bail1: -+ return ret; -+} -+ -+static void unconfig_device(camif_cfg_t *cfg) -+{ -+ video_unregister_device(cfg->v); -+ camif_hw_close(cfg); -+ iounmap(camregs); -+ //memset(cfg, 0, sizeof(camif_cfg_t)); -+ camregs = NULL; -+} -+ -+static void camif_m_out(void) /* module out */ -+{ -+ camif_cfg_t *cfg; -+ -+ cfg = get_camif(CODEC_MINOR); -+ unconfig_device(cfg); -+ cfg = get_camif(PREVIEW_MINOR); -+ unconfig_device(cfg); -+ -+ return; -+} -+ -+void camif_register_decoder(struct i2c_client *ptr) -+{ -+ camif_cfg_t *cfg; -+ void * data = i2c_get_clientdata(ptr); -+ -+ cfg =get_camif(CODEC_MINOR); -+ cfg->gc = (camif_gc_t *)(data); -+ -+ cfg =get_camif(PREVIEW_MINOR); -+ cfg->gc = (camif_gc_t *)(data); -+ -+ sema_init(&cfg->gc->lock, 1); /* global lock for both Codec and Preview */ -+ cfg->gc->status |= PNOTWORKING; /* Default Value */ -+ camif_hw_open(cfg->gc); -+} -+ -+void camif_unregister_decoder(struct i2c_client *ptr) -+{ -+ camif_gc_t *gc; -+ void * data = i2c_get_clientdata(ptr); -+ -+ gc = (camif_gc_t *)(data); -+ gc->init_sensor = 0; /* need to modify */ -+} -+ -+module_init(camif_m_in); -+module_exit(camif_m_out); -+ -+EXPORT_SYMBOL(camif_register_decoder); -+EXPORT_SYMBOL(camif_unregister_decoder); -+ -+MODULE_AUTHOR("SW.LEE <hitchcar@sec.samsung.com>"); -+MODULE_DESCRIPTION("Video-Driver For Fimc2.0 MISC Drivers"); -+MODULE_LICENSE("GPL"); -+ -+ -+/* -+ * Local variables: -+ * c-basic-offset: 8 -+ * End: -+ */ ---- a/arch/arm/mach-s3c2440/dma.c -+++ b/arch/arm/mach-s3c2440/dma.c -@@ -25,12 +25,12 @@ - - #include <plat/regs-serial.h> - #include <mach/regs-gpio.h> --#include <asm/plat-s3c/regs-ac97.h> -+#include <plat/regs-ac97.h> - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> - #include <mach/regs-sdi.h> - #include <asm/plat-s3c24xx/regs-iis.h> --#include <asm/plat-s3c24xx/regs-spi.h> -+#include <plat/regs-spi.h> - - static struct s3c24xx_dma_map __initdata s3c2440_dma_mappings[] = { - [DMACH_XD0] = { ---- /dev/null -+++ b/arch/arm/mach-s3c2440/fiq_c_isr.c -@@ -0,0 +1,321 @@ -+/* -+ * Copyright 2007 Andy Green <andy@warmcat.com> -+ * S3C modfifications -+ * Copyright 2008 Andy Green <andy@openmoko.com> -+ */ -+ -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <mach/hardware.h> -+#include <asm/fiq.h> -+#include "fiq_c_isr.h" -+#include <linux/sysfs.h> -+#include <linux/device.h> -+#include <linux/delay.h> -+#include <linux/platform_device.h> -+ -+#include <asm/io.h> -+ -+#include <plat/cpu.h> -+#include <plat/irq.h> -+ -+#include <mach/pwm.h> -+#include <plat/regs-timer.h> -+ -+/* -+ * Major Caveats for using FIQ -+ * --------------------------- -+ * -+ * 1) it CANNOT touch any vmalloc()'d memory, only memory -+ * that was kmalloc()'d. Static allocations in the monolithic kernel -+ * are kmalloc()'d so they are okay. You can touch memory-mapped IO, but -+ * the pointer for it has to have been stored in kmalloc'd memory. The -+ * reason for this is simple: every now and then Linux turns off interrupts -+ * and reorders the paging tables. If a FIQ happens during this time, the -+ * virtual memory space can be partly or entirely disordered or missing. -+ * -+ * 2) Because vmalloc() is used when a module is inserted, THIS FIQ -+ * ISR HAS TO BE IN THE MONOLITHIC KERNEL, not a module. But the way -+ * it is set up, you can all to enable and disable it from your module -+ * and intercommunicate with it through struct fiq_ipc -+ * fiq_ipc which you can define in -+ * asm/archfiq_ipc_type.h. The reason is the same as above, a -+ * FIQ could happen while even the ISR is not present in virtual memory -+ * space due to pagetables being changed at the time. -+ * -+ * 3) You can't call any Linux API code except simple macros -+ * - understand that FIQ can come in at any time, no matter what -+ * state of undress the kernel may privately be in, thinking it -+ * locked the door by turning off interrupts... FIQ is an -+ * unstoppable monster force (which is its value) -+ * - they are not vmalloc()'d memory safe -+ * - they might do crazy stuff like sleep: FIQ pisses fire and -+ * is not interested in 'sleep' that the weak seem to need -+ * - calling APIs from FIQ can re-enter un-renterable things -+ * - summary: you cannot interoperate with linux APIs directly in the FIQ ISR -+ * -+ * If you follow these rules, it is fantastic, an extremely powerful, solid, -+ * genuine hard realtime feature. -+ * -+ */ -+ -+/* more than enough to cover our jump instruction to the isr */ -+#define SIZEOF_FIQ_JUMP 4 -+ -+#define FIQ_VECTOR 0xffff001c -+ -+/* we put the stack at the area after the FIQ vector */ -+#define FIQ_STACK_SIZE 256 -+ -+/* only one FIQ ISR possible, okay to do these here */ -+u32 _fiq_ack_mask; /* used by isr exit define */ -+unsigned long _fiq_count_fiqs; /* used by isr exit define */ -+static int _fiq_irq; /* private ; irq index we were started with, or 0 */ -+struct s3c2410_pwm pwm_timer_fiq; -+int _fiq_timer_index; -+u16 _fiq_timer_divisor; -+u8 fiq_ready; -+ -+/* this function must live in the monolithic kernel somewhere! A module is -+ * NOT good enough! -+ */ -+extern void __attribute__ ((naked)) s3c2440_fiq_isr(void); -+ -+static void fiq_set_vector_and_regs(void); -+ -+ -+/* this is copied into the hard FIQ vector during init */ -+ -+static void __attribute__ ((naked)) s3c2440_FIQ_Branch(void) -+{ -+ asm __volatile__ ( -+ "mov pc, r8 ; " -+ ); -+} -+ -+/* sysfs */ -+ -+static ssize_t show_count(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ return sprintf(buf, "%ld\n", _fiq_count_fiqs); -+} -+ -+static DEVICE_ATTR(count, 0444, show_count, NULL); -+ -+static struct attribute *s3c2440_fiq_sysfs_entries[] = { -+ &dev_attr_count.attr, -+ NULL -+}; -+ -+static struct attribute_group s3c2440_fiq_attr_group = { -+ .name = "fiq", -+ .attrs = s3c2440_fiq_sysfs_entries, -+}; -+ -+/* -+ * call this from your kernel module to set up the FIQ ISR to service FIQs, -+ * You need to have configured your FIQ input pin before anything will happen -+ * -+ * call it with, eg, IRQ_TIMER3 from asm-arm/arch-s3c2410/irqs.h -+ * -+ * you still need to clear the source interrupt in S3C2410_INTMSK to get -+ * anything good happening -+ */ -+static int fiq_init_irq_source(int irq_index_fiq) -+{ -+ int rc = 0; -+ -+ if (!irq_index_fiq) /* no interrupt */ -+ goto bail; -+ -+ local_fiq_disable(); -+ -+ _fiq_irq = irq_index_fiq; -+ _fiq_ack_mask = 1 << (irq_index_fiq - S3C2410_CPUIRQ_OFFSET); -+ _fiq_timer_index = (irq_index_fiq - IRQ_TIMER0); -+ -+ /* set up the timer to operate as a pwm device */ -+ -+ rc = s3c2410_pwm_init(&pwm_timer_fiq); -+ if (rc) -+ goto bail; -+ -+ pwm_timer_fiq.timerid = PWM0 + _fiq_timer_index; -+ pwm_timer_fiq.prescaler = (6 - 1) / 2; -+ pwm_timer_fiq.divider = S3C2410_TCFG1_MUX3_DIV2; -+ /* default rate == ~32us */ -+ pwm_timer_fiq.counter = pwm_timer_fiq.comparer = 3000; -+ -+ rc = s3c2410_pwm_enable(&pwm_timer_fiq); -+ if (rc) -+ goto bail; -+ -+ s3c2410_pwm_start(&pwm_timer_fiq); -+ -+ _fiq_timer_divisor = 0xffff; /* so kick will work initially */ -+ -+ /* let our selected interrupt be a magic FIQ interrupt */ -+ __raw_writel(_fiq_ack_mask, S3C2410_INTMOD); -+ -+ /* it's ready to go as soon as we unmask the source in S3C2410_INTMSK */ -+ local_fiq_enable(); -+bail: -+ return rc; -+} -+ -+ -+/* call this from your kernel module to disable generation of FIQ actions */ -+static void fiq_disable_irq_source(void) -+{ -+ /* nothing makes FIQ any more */ -+ __raw_writel(0, S3C2410_INTMOD); -+ local_fiq_disable(); -+ _fiq_irq = 0; /* no active source interrupt now either */ -+} -+ -+/* -+ * fiq_kick() forces a FIQ event to happen shortly after leaving the routine -+ */ -+void fiq_kick(void) -+{ -+ unsigned long flags; -+ u32 tcon; -+ -+ if (!fiq_ready) { -+ printk(KERN_ERR "fiq_kick called before fiq probed\n"); -+ return; -+ } -+ -+ /* we have to take care about FIQ because this modification is -+ * non-atomic, FIQ could come in after the read and before the -+ * writeback and its changes to the register would be lost -+ * (platform INTMSK mod code is taken care of already) -+ */ -+ local_save_flags(flags); -+ local_fiq_disable(); -+ /* allow FIQs to resume */ -+ __raw_writel(__raw_readl(S3C2410_INTMSK) & -+ ~(1 << (_fiq_irq - S3C2410_CPUIRQ_OFFSET)), -+ S3C2410_INTMSK); -+ tcon = __raw_readl(S3C2410_TCON) & ~S3C2410_TCON_T3START; -+ /* fake the timer to a count of 1 */ -+ __raw_writel(1, S3C2410_TCNTB(_fiq_timer_index)); -+ __raw_writel(tcon | S3C2410_TCON_T3MANUALUPD, S3C2410_TCON); -+ __raw_writel(tcon | S3C2410_TCON_T3MANUALUPD | S3C2410_TCON_T3START, -+ S3C2410_TCON); -+ __raw_writel(tcon | S3C2410_TCON_T3START, S3C2410_TCON); -+ local_irq_restore(flags); -+} -+EXPORT_SYMBOL_GPL(fiq_kick); -+ -+ -+ -+ -+static int __init sc32440_fiq_probe(struct platform_device *pdev) -+{ -+ struct resource *r = platform_get_resource(pdev, IORESOURCE_IRQ, 0); -+ struct sc32440_fiq_platform_data *pdata = pdev->dev.platform_data; -+ int ret; -+ -+ if (!r) -+ return -EIO; -+ -+ /* configure for the interrupt we are meant to use */ -+ printk(KERN_INFO "Enabling FIQ using irq %d\n", r->start); -+ -+ fiq_set_vector_and_regs(); -+ fiq_init_irq_source(r->start); -+ -+ ret = sysfs_create_group(&pdev->dev.kobj, &s3c2440_fiq_attr_group); -+ if (ret) -+ return ret; -+ -+ fiq_ready = 1; -+ -+ /* -+ * if wanted, users can defer registration of devices -+ * that depend on FIQ until after we register, and can use our -+ * device as parent so suspend-resume ordering is correct -+ */ -+ if (pdata->attach_child_devices) -+ (pdata->attach_child_devices)(&pdev->dev); -+ -+ return 0; -+} -+ -+static int sc32440_fiq_remove(struct platform_device *pdev) -+{ -+ fiq_disable_irq_source(); -+ sysfs_remove_group(&pdev->dev.kobj, &s3c2440_fiq_attr_group); -+ -+ return 0; -+} -+ -+static void fiq_set_vector_and_regs(void) -+{ -+ struct pt_regs regs; -+ -+ /* prep the special FIQ mode regs */ -+ memset(®s, 0, sizeof(regs)); -+ regs.ARM_r8 = (unsigned long)s3c2440_fiq_isr; -+ regs.ARM_r10 = FIQ_VECTOR + SIZEOF_FIQ_JUMP; -+ regs.ARM_sp = FIQ_VECTOR + SIZEOF_FIQ_JUMP + FIQ_STACK_SIZE - 4; -+ -+ /* copy our jump to the real ISR into the hard vector address */ -+ set_fiq_handler(s3c2440_FIQ_Branch, SIZEOF_FIQ_JUMP); -+ -+ /* set up the special FIQ-mode-only registers from our regs */ -+ set_fiq_regs(®s); -+} -+ -+#ifdef CONFIG_PM -+static int sc32440_fiq_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ /* nothing makes FIQ any more */ -+ __raw_writel(0, S3C2410_INTMOD); -+ local_fiq_disable(); -+ -+ return 0; -+} -+ -+static int sc32440_fiq_resume(struct platform_device *pdev) -+{ -+ fiq_set_vector_and_regs(); -+ fiq_init_irq_source(_fiq_irq); -+ return 0; -+} -+#else -+#define sc32440_fiq_suspend NULL -+#define sc32440_fiq_resume NULL -+#endif -+ -+static struct platform_driver sc32440_fiq_driver = { -+ .driver = { -+ .name = "sc32440_fiq", -+ .owner = THIS_MODULE, -+ }, -+ -+ .probe = sc32440_fiq_probe, -+ .remove = __devexit_p(sc32440_fiq_remove), -+ .suspend = sc32440_fiq_suspend, -+ .resume = sc32440_fiq_resume, -+}; -+ -+static int __init sc32440_fiq_init(void) -+{ -+ fiq_set_vector_and_regs(); -+ -+ return platform_driver_register(&sc32440_fiq_driver); -+} -+ -+static void __exit sc32440_fiq_exit(void) -+{ -+ fiq_disable_irq_source(); -+} -+ -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(sc32440_fiq_init); -+module_exit(sc32440_fiq_exit); ---- /dev/null -+++ b/arch/arm/mach-s3c2440/fiq_c_isr.h -@@ -0,0 +1,76 @@ -+#ifndef _LINUX_FIQ_C_ISR_H -+#define _LINUX_FIQ_C_ISR_H -+ -+#include <mach/regs-irq.h> -+#include <linux/platform_device.h> -+ -+extern unsigned long _fiq_count_fiqs; -+extern u32 _fiq_ack_mask; -+extern int _fiq_timer_index; -+extern u16 _fiq_timer_divisor; -+ -+/* platform data */ -+ -+struct sc32440_fiq_platform_data { -+ /* -+ * give an opportunity to use us as parent for -+ * devices that depend on us -+ */ -+ void (*attach_child_devices)(struct device *parent_device); -+}; -+ -+/* This CANNOT be implemented in a module -- it has to be used in code -+ * included in the monolithic kernel -+ */ -+ -+#define FIQ_HANDLER_START() \ -+void __attribute__ ((naked)) s3c2440_fiq_isr(void) \ -+{\ -+ /*\ -+ * you can declare local vars here, take care to set the frame size\ -+ * below accordingly if there are more than a few dozen bytes of them\ -+ */\ -+ -+/* stick your locals here :-) -+ * Do NOT initialize them here! define them and initialize them after -+ * FIQ_HANDLER_ENTRY() is done. -+ */ -+ -+#define FIQ_HANDLER_ENTRY(LOCALS, FRAME) \ -+ const int _FIQ_FRAME_SIZE = FRAME; \ -+ /* entry takes care to store registers we will be treading on here */\ -+ asm __volatile__ (\ -+ /* stash FIQ and r0-r8 normal regs */\ -+ "stmdb sp!, {r0-r12, lr};"\ -+ /* allow SP to get some space */\ -+ "sub sp, sp, %1 ;"\ -+ /* !! THIS SETS THE FRAME, adjust to > sizeof locals */\ -+ "sub fp, sp, %0 ;"\ -+ :\ -+ : "rI" (LOCALS), "rI" (FRAME)\ -+ :"r9"\ -+ ); -+ -+/* stick your ISR code here and then end with... */ -+ -+#define FIQ_HANDLER_END() \ -+ _fiq_count_fiqs++;\ -+ __raw_writel(_fiq_ack_mask, S3C2410_SRCPND);\ -+\ -+ /* exit back to normal mode restoring everything */\ -+ asm __volatile__ (\ -+ /* pop our allocation */\ -+ "add sp, sp, %0 ;"\ -+ /* return FIQ regs back to pristine state\ -+ * and get normal regs back\ -+ */\ -+ "ldmia sp!, {r0-r12, lr};"\ -+\ -+ /* return */\ -+ "subs pc, lr, #4;"\ -+ : \ -+ : "rI" (_FIQ_FRAME_SIZE) \ -+ );\ -+} -+ -+#endif /* _LINUX_FIQ_C_ISR_H */ ---- a/arch/arm/mach-s3c2440/Kconfig -+++ b/arch/arm/mach-s3c2440/Kconfig -@@ -22,12 +22,20 @@ config S3C2440_DMA - help - Support for S3C2440 specific DMA code5A - -+config S3C2440_C_FIQ -+ bool "FIQ ISR support in C" -+ depends on ARCH_S3C2410 -+ select FIQ -+ help -+ Support for S3C2440 FIQ support in C -- see -+ ./arch/arm/mach-s3c2440/fiq_c_isr.c - - menu "S3C2440 Machines" - - config MACH_ANUBIS - bool "Simtec Electronics ANUBIS" - select CPU_S3C2440 -+ select S3C24XX_DCLK - select PM_SIMTEC if PM - select HAVE_PATA_PLATFORM - help -@@ -37,6 +45,7 @@ config MACH_ANUBIS - config MACH_OSIRIS - bool "Simtec IM2440D20 (OSIRIS) module" - select CPU_S3C2440 -+ select S3C24XX_DCLK - select PM_SIMTEC if PM - help - Say Y here if you are using the Simtec IM2440D20 module, also -@@ -74,5 +83,30 @@ config MACH_AT2440EVB - help - Say Y here if you are using the AT2440EVB development board - -+config MACH_NEO1973_GTA02 -+ bool "FIC Neo1973 GSM Phone (GTA02 Hardware)" -+ select CPU_S3C2442 -+ select MFD_PCF50633 -+ select INPUT_PCF50633_PMU -+ select PCF50633_ADC -+ select PCF50633_GPIO -+ select RTC_DRV_PCF50633 -+ select REGULATOR_PCF50633 -+ select CHARGER_PCF50633 -+ select POWER_SUPPLY -+ select GTA02_HDQ -+ select MACH_NEO1973 -+ help -+ Say Y here if you are using the FIC Neo1973 GSM Phone -+ -+config NEO1973_GTA02_2440 -+ bool "Old FIC Neo1973 GTA02 hardware using S3C2440 CPU" -+ depends on MACH_NEO1973_GTA02 -+ select CPU_S3C2440 -+ help -+ Say Y here if you are using an early hardware revision -+ of the FIC/Openmoko Neo1973 GTA02 GSM Phone. -+ - endmenu - -+#source "arch/arm/mach-s3c2440/camera/Kconfig" ---- a/arch/arm/mach-s3c2440/mach-anubis.c -+++ b/arch/arm/mach-s3c2440/mach-anubis.c -@@ -39,7 +39,8 @@ - #include <mach/regs-gpio.h> - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> --#include <asm/plat-s3c/nand.h> -+#include <plat/nand.h> -+#include <plat/iic.h> - - #include <linux/mtd/mtd.h> - #include <linux/mtd/nand.h> -@@ -404,7 +405,7 @@ static struct platform_device *anubis_de - &s3c_device_usb, - &s3c_device_wdt, - &s3c_device_adc, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_rtc, - &s3c_device_nand, - &anubis_device_ide0, -@@ -468,6 +469,7 @@ static void __init anubis_map_io(void) - - static void __init anubis_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(anubis_devices, ARRAY_SIZE(anubis_devices)); - - i2c_register_board_info(0, anubis_i2c_devs, ---- a/arch/arm/mach-s3c2440/mach-at2440evb.c -+++ b/arch/arm/mach-s3c2440/mach-at2440evb.c -@@ -35,7 +35,8 @@ - #include <mach/regs-gpio.h> - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> --#include <asm/plat-s3c/nand.h> -+#include <plat/nand.h> -+#include <plat/iic.h> - - #include <linux/mtd/mtd.h> - #include <linux/mtd/nand.h> -@@ -166,7 +167,7 @@ static struct platform_device *at2440evb - &s3c_device_usb, - &s3c_device_wdt, - &s3c_device_adc, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_rtc, - &s3c_device_nand, - &at2440evb_device_eth, -@@ -183,6 +184,7 @@ static void __init at2440evb_map_io(void - - static void __init at2440evb_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(at2440evb_devices, ARRAY_SIZE(at2440evb_devices)); - } - ---- /dev/null -+++ b/arch/arm/mach-s3c2440/mach-gta02.c -@@ -0,0 +1,1778 @@ -+/* -+ * linux/arch/arm/mach-s3c2440/mach-gta02.c -+ * -+ * S3C2440 Machine Support for the FIC GTA02 (Neo1973) -+ * -+ * Copyright (C) 2006-2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/list.h> -+#include <linux/delay.h> -+#include <linux/timer.h> -+#include <linux/init.h> -+#include <linux/workqueue.h> -+#include <linux/platform_device.h> -+#include <linux/serial_core.h> -+#include <linux/spi/spi.h> -+#include <linux/spi/glamo.h> -+#include <linux/spi/spi_bitbang.h> -+#include <linux/mmc/host.h> -+ -+#include <linux/mtd/mtd.h> -+#include <linux/mtd/nand.h> -+#include <linux/mtd/nand_ecc.h> -+#include <linux/mtd/partitions.h> -+#include <linux/mtd/physmap.h> -+ -+#include <linux/i2c.h> -+#include <linux/backlight.h> -+#include <linux/regulator/machine.h> -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/mbc.h> -+#include <linux/mfd/pcf50633/adc.h> -+#include <linux/mfd/pcf50633/gpio.h> -+#include <linux/mfd/pcf50633/led.h> -+ -+#include <linux/lis302dl.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/map.h> -+#include <asm/mach/irq.h> -+ -+#include <mach/hardware.h> -+#include <mach/io.h> -+#include <asm/irq.h> -+#include <asm/mach-types.h> -+ -+#include <mach/regs-irq.h> -+#include <mach/regs-gpio.h> -+#include <mach/regs-gpioj.h> -+#include <mach/fb.h> -+#include <mach/mci.h> -+#include <mach/ts.h> -+#include <mach/spi.h> -+#include <mach/spi-gpio.h> -+#include <mach/usb-control.h> -+#include <mach/regs-mem.h> -+ -+#include <mach/gta02.h> -+ -+#include <plat/regs-serial.h> -+#include <plat/nand.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+#include <plat/pm.h> -+#include <plat/udc.h> -+#include <plat/iic.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+#include <mach/neo1973-pm-gsm.h> -+#include <mach/gta02-pm-wlan.h> -+ -+#include <linux/jbt6k74.h> -+ -+#include <linux/glamofb.h> -+ -+#include <mach/fiq_ipc_gta02.h> -+#include "fiq_c_isr.h" -+#include <linux/gta02_hdq.h> -+#include <linux/bq27000_battery.h> -+ -+#include <linux/i2c.h> -+ -+#include "../plat-s3c24xx/neo1973_pm_gps.h" -+ -+#include <linux/ts_filter_linear.h> -+#include <linux/ts_filter_mean.h> -+#include <linux/ts_filter_median.h> -+#include <linux/ts_filter_group.h> -+ -+/* arbitrates which sensor IRQ owns the shared SPI bus */ -+static spinlock_t motion_irq_lock; -+ -+/* define FIQ IPC struct */ -+/* -+ * contains stuff FIQ ISR modifies and normal kernel code can see and use -+ * this is defined in <arch/arm/mach-s3c2410/include/mach/fiq_ipc_gta02.h>, you should customize -+ * the definition in there and include the same definition in your kernel -+ * module that wants to interoperate with your FIQ code. -+ */ -+struct fiq_ipc fiq_ipc; -+EXPORT_SYMBOL(fiq_ipc); -+ -+#define DIVISOR_FROM_US(x) ((x) << 3) -+ -+#define FIQ_DIVISOR_VIBRATOR DIVISOR_FROM_US(100) -+ -+#ifdef CONFIG_GTA02_HDQ -+/* HDQ specific */ -+#define HDQ_SAMPLE_PERIOD_US 20 -+/* private HDQ FSM state -- all other info interesting for caller in fiq_ipc */ -+static enum hdq_bitbang_states hdq_state; -+static u8 hdq_ctr; -+static u8 hdq_ctr2; -+static u8 hdq_bit; -+static u8 hdq_shifter; -+static u8 hdq_tx_data_done; -+ -+#define FIQ_DIVISOR_HDQ DIVISOR_FROM_US(HDQ_SAMPLE_PERIOD_US) -+#endif -+/* define FIQ ISR */ -+ -+FIQ_HANDLER_START() -+/* define your locals here -- no initializers though */ -+ u16 divisor; -+FIQ_HANDLER_ENTRY(64, 64) -+/* Your ISR here :-) */ -+ divisor = 0xffff; -+ -+ /* Vibrator servicing */ -+ -+ if (fiq_ipc.vib_pwm_latched || fiq_ipc.vib_pwm) { /* not idle */ -+ if (((u8)_fiq_count_fiqs) == fiq_ipc.vib_pwm_latched) -+ neo1973_gpb_setpin(fiq_ipc.vib_gpio_pin, 0); -+ if (((u8)_fiq_count_fiqs) == 0) { -+ fiq_ipc.vib_pwm_latched = fiq_ipc.vib_pwm; -+ if (fiq_ipc.vib_pwm_latched) -+ neo1973_gpb_setpin(fiq_ipc.vib_gpio_pin, 1); -+ } -+ divisor = FIQ_DIVISOR_VIBRATOR; -+ } -+ -+#ifdef CONFIG_GTA02_HDQ -+ /* HDQ servicing */ -+ -+ switch (hdq_state) { -+ case HDQB_IDLE: -+ if (fiq_ipc.hdq_request_ctr == fiq_ipc.hdq_transaction_ctr) -+ break; -+ hdq_ctr = 210 / HDQ_SAMPLE_PERIOD_US; -+ s3c2410_gpio_setpin(fiq_ipc.hdq_gpio_pin, 0); -+ s3c2410_gpio_cfgpin(fiq_ipc.hdq_gpio_pin, S3C2410_GPIO_OUTPUT); -+ hdq_tx_data_done = 0; -+ hdq_state = HDQB_TX_BREAK; -+ break; -+ -+ case HDQB_TX_BREAK: /* issue low for > 190us */ -+ if (--hdq_ctr == 0) { -+ hdq_ctr = 60 / HDQ_SAMPLE_PERIOD_US; -+ hdq_state = HDQB_TX_BREAK_RECOVERY; -+ s3c2410_gpio_setpin(fiq_ipc.hdq_gpio_pin, 1); -+ } -+ break; -+ -+ case HDQB_TX_BREAK_RECOVERY: /* issue low for > 40us */ -+ if (--hdq_ctr) -+ break; -+ hdq_shifter = fiq_ipc.hdq_ads; -+ hdq_bit = 8; /* 8 bits of ads / rw */ -+ hdq_tx_data_done = 0; /* doing ads */ -+ /* fallthru on last one */ -+ case HDQB_ADS_CALC: -+ if (hdq_shifter & 1) -+ hdq_ctr = 50 / HDQ_SAMPLE_PERIOD_US; -+ else -+ hdq_ctr = 120 / HDQ_SAMPLE_PERIOD_US; -+ /* carefully precompute the other phase length */ -+ hdq_ctr2 = (210 - (hdq_ctr * HDQ_SAMPLE_PERIOD_US)) / -+ HDQ_SAMPLE_PERIOD_US; -+ hdq_state = HDQB_ADS_LOW; -+ hdq_shifter >>= 1; -+ hdq_bit--; -+ s3c2410_gpio_setpin(fiq_ipc.hdq_gpio_pin, 0); -+ break; -+ -+ case HDQB_ADS_LOW: -+ if (--hdq_ctr) -+ break; -+ s3c2410_gpio_setpin(fiq_ipc.hdq_gpio_pin, 1); -+ hdq_state = HDQB_ADS_HIGH; -+ break; -+ -+ case HDQB_ADS_HIGH: -+ if (--hdq_ctr2 > 1) /* account for HDQB_ADS_CALC */ -+ break; -+ if (hdq_bit) { /* more bits to do */ -+ hdq_state = HDQB_ADS_CALC; -+ break; -+ } -+ /* no more bits, wait it out until hdq_ctr2 exhausted */ -+ if (hdq_ctr2) -+ break; -+ /* ok no more bits and very last state */ -+ hdq_ctr = 60 / HDQ_SAMPLE_PERIOD_US; -+ /* FIXME 0 = read */ -+ if (fiq_ipc.hdq_ads & 0x80) { /* write the byte out */ -+ /* set delay before payload */ -+ hdq_ctr = 300 / HDQ_SAMPLE_PERIOD_US; -+ /* already high, no need to write */ -+ hdq_state = HDQB_WAIT_TX; -+ break; -+ } -+ /* read the next byte */ -+ hdq_bit = 8; /* 8 bits of data */ -+ hdq_ctr = 3000 / HDQ_SAMPLE_PERIOD_US; -+ hdq_state = HDQB_WAIT_RX; -+ s3c2410_gpio_cfgpin(fiq_ipc.hdq_gpio_pin, S3C2410_GPIO_INPUT); -+ break; -+ -+ case HDQB_WAIT_TX: /* issue low for > 40us */ -+ if (--hdq_ctr) -+ break; -+ if (!hdq_tx_data_done) { /* was that the data sent? */ -+ hdq_tx_data_done++; -+ hdq_shifter = fiq_ipc.hdq_tx_data; -+ hdq_bit = 8; /* 8 bits of data */ -+ hdq_state = HDQB_ADS_CALC; /* start sending */ -+ break; -+ } -+ fiq_ipc.hdq_error = 0; -+ fiq_ipc.hdq_transaction_ctr = fiq_ipc.hdq_request_ctr; -+ hdq_state = HDQB_IDLE; /* all tx is done */ -+ /* idle in input mode, it's pulled up by 10K */ -+ s3c2410_gpio_cfgpin(fiq_ipc.hdq_gpio_pin, S3C2410_GPIO_INPUT); -+ break; -+ -+ case HDQB_WAIT_RX: /* wait for battery to talk to us */ -+ if (s3c2410_gpio_getpin(fiq_ipc.hdq_gpio_pin) == 0) { -+ /* it talks to us! */ -+ hdq_ctr2 = 1; -+ hdq_bit = 8; /* 8 bits of data */ -+ /* timeout */ -+ hdq_ctr = 300 / HDQ_SAMPLE_PERIOD_US; -+ hdq_state = HDQB_DATA_RX_LOW; -+ break; -+ } -+ if (--hdq_ctr == 0) { /* timed out, error */ -+ fiq_ipc.hdq_error = 1; -+ fiq_ipc.hdq_transaction_ctr = fiq_ipc.hdq_request_ctr; -+ hdq_state = HDQB_IDLE; /* abort */ -+ } -+ break; -+ -+ /* -+ * HDQ basically works by measuring the low time of the bit cell -+ * 32-50us --> '1', 80 - 145us --> '0' -+ */ -+ -+ case HDQB_DATA_RX_LOW: -+ if (s3c2410_gpio_getpin(fiq_ipc.hdq_gpio_pin)) { -+ fiq_ipc.hdq_rx_data >>= 1; -+ if (hdq_ctr2 <= (65 / HDQ_SAMPLE_PERIOD_US)) -+ fiq_ipc.hdq_rx_data |= 0x80; -+ -+ if (--hdq_bit == 0) { -+ fiq_ipc.hdq_error = 0; -+ fiq_ipc.hdq_transaction_ctr = -+ fiq_ipc.hdq_request_ctr; -+ -+ hdq_state = HDQB_IDLE; -+ } else -+ hdq_state = HDQB_DATA_RX_HIGH; -+ /* timeout */ -+ hdq_ctr = 1000 / HDQ_SAMPLE_PERIOD_US; -+ hdq_ctr2 = 1; -+ break; -+ } -+ hdq_ctr2++; -+ if (--hdq_ctr) -+ break; -+ /* timed out, error */ -+ fiq_ipc.hdq_error = 2; -+ fiq_ipc.hdq_transaction_ctr = fiq_ipc.hdq_request_ctr; -+ hdq_state = HDQB_IDLE; /* abort */ -+ break; -+ -+ case HDQB_DATA_RX_HIGH: -+ if (!s3c2410_gpio_getpin(fiq_ipc.hdq_gpio_pin)) { -+ /* it talks to us! */ -+ hdq_ctr2 = 1; -+ /* timeout */ -+ hdq_ctr = 400 / HDQ_SAMPLE_PERIOD_US; -+ hdq_state = HDQB_DATA_RX_LOW; -+ break; -+ } -+ if (--hdq_ctr) -+ break; -+ /* timed out, error */ -+ fiq_ipc.hdq_error = 3; -+ fiq_ipc.hdq_transaction_ctr = fiq_ipc.hdq_request_ctr; -+ -+ /* we're in input mode already */ -+ hdq_state = HDQB_IDLE; /* abort */ -+ break; -+ } -+ -+ if (hdq_state != HDQB_IDLE) /* ie, not idle */ -+ if (divisor > FIQ_DIVISOR_HDQ) -+ divisor = FIQ_DIVISOR_HDQ; /* keep us going */ -+#endif -+ -+ /* disable further timer interrupts if nobody has any work -+ * or adjust rate according to who still has work -+ * -+ * CAUTION: it means forground code must disable FIQ around -+ * its own non-atomic S3C2410_INTMSK changes... not common -+ * thankfully and taken care of by the fiq-basis patch -+ */ -+ if (divisor == 0xffff) /* mask the fiq irq source */ -+ __raw_writel(__raw_readl(S3C2410_INTMSK) | _fiq_ack_mask, -+ S3C2410_INTMSK); -+ else /* still working, maybe at a different rate */ -+ __raw_writel(divisor, S3C2410_TCNTB(_fiq_timer_index)); -+ _fiq_timer_divisor = divisor; -+ -+FIQ_HANDLER_END() -+ -+ -+/* -+ * this gets called every 1ms when we paniced. -+ */ -+ -+static long gta02_panic_blink(long count) -+{ -+ long delay = 0; -+ static long last_blink; -+ static char led; -+ -+ if (count - last_blink < 100) /* 200ms period, fast blink */ -+ return 0; -+ -+ led ^= 1; -+ s3c2410_gpio_cfgpin(GTA02_GPIO_AUX_LED, S3C2410_GPIO_OUTPUT); -+ neo1973_gpb_setpin(GTA02_GPIO_AUX_LED, led); -+ -+ last_blink = count; -+ return delay; -+} -+ -+ -+/** -+ * returns PCB revision information in b9,b8 and b2,b1,b0 -+ * Pre-GTA02 A6 returns 0x000 -+ * GTA02 A6 returns 0x101 -+ * ... -+ */ -+ -+int gta02_get_pcb_revision(void) -+{ -+ int n; -+ int u = 0; -+ static unsigned long pinlist[] = { -+ GTA02_PCB_ID1_0, -+ GTA02_PCB_ID1_1, -+ GTA02_PCB_ID1_2, -+ GTA02_PCB_ID2_0, -+ GTA02_PCB_ID2_1, -+ }; -+ static int pin_offset[] = { -+ 0, 1, 2, 8, 9 -+ }; -+ -+ for (n = 0 ; n < ARRAY_SIZE(pinlist); n++) { -+ /* -+ * set the PCB version GPIO to be pulled-down input -+ * force low briefly first -+ */ -+ s3c2410_gpio_cfgpin(pinlist[n], S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_setpin(pinlist[n], 0); -+ /* misnomer: it is a pullDOWN in 2442 */ -+ s3c2410_gpio_pullup(pinlist[n], 1); -+ s3c2410_gpio_cfgpin(pinlist[n], S3C2410_GPIO_INPUT); -+ -+ udelay(10); -+ -+ if (s3c2410_gpio_getpin(pinlist[n])) -+ u |= 1 << pin_offset[n]; -+ -+ /* -+ * when not being interrogated, all of the revision GPIO -+ * are set to output HIGH without pulldown so no current flows -+ * if they are NC or pulled up. -+ */ -+ s3c2410_gpio_setpin(pinlist[n], 1); -+ s3c2410_gpio_cfgpin(pinlist[n], S3C2410_GPIO_OUTPUT); -+ /* misnomer: it is a pullDOWN in 2442 */ -+ s3c2410_gpio_pullup(pinlist[n], 0); -+ } -+ -+ return u; -+} -+ -+struct platform_device gta02_version_device = { -+ .name = "neo1973-version", -+ .num_resources = 0, -+}; -+ -+struct platform_device gta02_resume_reason_device = { -+ .name = "neo1973-resume", -+ .num_resources = 0, -+}; -+ -+struct platform_device gta02_memconfig_device = { -+ .name = "neo1973-memconfig", -+ .num_resources = 0, -+}; -+ -+static struct map_desc gta02_iodesc[] __initdata = { -+ { -+ .virtual = 0xe0000000, -+ .pfn = __phys_to_pfn(S3C2410_CS3+0x01000000), -+ .length = SZ_1M, -+ .type = MT_DEVICE -+ }, -+}; -+ -+#define UCON S3C2410_UCON_DEFAULT -+#define ULCON S3C2410_LCON_CS8 | S3C2410_LCON_PNONE | S3C2410_LCON_STOPB -+#define UFCON S3C2410_UFCON_RXTRIG8 | S3C2410_UFCON_FIFOMODE -+ -+static struct s3c2410_uartcfg gta02_uartcfgs[] = { -+ [0] = { -+ .hwport = 0, -+ .flags = 0, -+ .ucon = UCON, -+ .ulcon = ULCON, -+ .ufcon = UFCON, -+ }, -+ [1] = { -+ .hwport = 1, -+ .flags = 0, -+ .ucon = UCON, -+ .ulcon = ULCON, -+ .ufcon = UFCON, -+ }, -+ [2] = { -+ .hwport = 2, -+ .flags = 0, -+ .ucon = UCON, -+ .ulcon = ULCON, -+ .ufcon = UFCON, -+ }, -+ -+}; -+ -+/* BQ27000 Battery */ -+ -+static int gta02_get_charger_online_status(void) -+{ -+ struct pcf50633 *pcf = gta02_pcf_pdata.pcf; -+ -+ return pcf->mbc.usb_online; -+} -+ -+static int gta02_get_charger_active_status(void) -+{ -+ struct pcf50633 *pcf = gta02_pcf_pdata.pcf; -+ -+ return pcf->mbc.usb_active; -+} -+ -+ -+struct bq27000_platform_data bq27000_pdata = { -+ .name = "battery", -+ .rsense_mohms = 20, -+ .hdq_read = gta02hdq_read, -+ .hdq_write = gta02hdq_write, -+ .hdq_initialized = gta02hdq_initialized, -+ .get_charger_online_status = gta02_get_charger_online_status, -+ .get_charger_active_status = gta02_get_charger_active_status -+}; -+ -+struct platform_device bq27000_battery_device = { -+ .name = "bq27000-battery", -+ .dev = { -+ .platform_data = &bq27000_pdata, -+ }, -+}; -+ -+#define ADC_NOM_CHG_DETECT_1A 6 -+#define ADC_NOM_CHG_DETECT_USB 43 -+ -+static void -+gta02_configure_pmu_for_charger(struct pcf50633 *pcf, void *unused, int res) -+{ -+ int ma; -+ -+ /* Interpret charger type */ -+ if (res < ((ADC_NOM_CHG_DETECT_USB + ADC_NOM_CHG_DETECT_1A) / 2)) { -+ -+ /* Stop GPO driving out now that we have a IA charger */ -+ pcf50633_gpio_set(pcf, PCF50633_GPO, 0); -+ -+ ma = 1000; -+ } else -+ ma = 100; -+ -+ pcf50633_mbc_usb_curlim_set(pcf, ma); -+} -+ -+static struct delayed_work gta02_charger_work; -+static int gta02_usb_vbus_draw; -+ -+static void gta02_charger_worker(struct work_struct *work) -+{ -+ struct pcf50633 *pcf = gta02_pcf_pdata.pcf; -+ -+ if (gta02_usb_vbus_draw) { -+ pcf50633_mbc_usb_curlim_set(pcf, gta02_usb_vbus_draw); -+ return; -+ } else { -+ pcf50633_adc_async_read(pcf, -+ PCF50633_ADCC1_MUX_ADCIN1, -+ PCF50633_ADCC1_AVERAGE_16, -+ gta02_configure_pmu_for_charger, NULL); -+ return; -+ } -+} -+ -+#define GTA02_CHARGER_CONFIGURE_TIMEOUT ((3000 * HZ) / 1000) -+static void gta02_pmu_event_callback(struct pcf50633 *pcf, int irq) -+{ -+ if (irq == PCF50633_IRQ_USBINS) { -+ schedule_delayed_work(>a02_charger_work, -+ GTA02_CHARGER_CONFIGURE_TIMEOUT); -+ return; -+ } else if (irq == PCF50633_IRQ_USBREM) { -+ cancel_delayed_work_sync(>a02_charger_work); -+ gta02_usb_vbus_draw = 0; -+ } -+} -+ -+static struct platform_device gta01_pm_gps_dev = { -+ .name = "neo1973-pm-gps", -+}; -+ -+static struct platform_device gta01_pm_bt_dev = { -+ .name = "neo1973-pm-bt", -+}; -+ -+static struct platform_device gta02_pm_gsm_dev = { -+ .name = "neo1973-pm-gsm", -+}; -+ -+/* this is called when pc50633 is probed, unfortunately quite late in the -+ * day since it is an I2C bus device. Here we can belatedly define some -+ * platform devices with the advantage that we can mark the pcf50633 as the -+ * parent. This makes them get suspended and resumed with their parent -+ * the pcf50633 still around. -+ */ -+ -+static struct platform_device gta02_glamo_dev; -+static void mangle_glamo_res_by_system_rev(void); -+ -+static void gta02_pmu_attach_child_devices(struct pcf50633 *pcf); -+static void gta02_pmu_regulator_registered(struct pcf50633 *pcf, int id); -+ -+static struct platform_device gta02_pm_wlan_dev = { -+ .name = "gta02-pm-wlan", -+}; -+ -+static struct regulator_consumer_supply ldo4_consumers[] = { -+ { -+ .dev = >a01_pm_bt_dev.dev, -+ .supply = "BT_3V2", -+ }, -+}; -+ -+static struct regulator_consumer_supply ldo5_consumers[] = { -+ { -+ .dev = >a01_pm_gps_dev.dev, -+ .supply = "RF_3V", -+ }, -+}; -+ -+/* -+ * We need this dummy thing to fill the regulator consumers -+ */ -+static struct platform_device gta02_mmc_dev = { -+ /* details filled in by glamo core */ -+}; -+ -+static struct regulator_consumer_supply hcldo_consumers[] = { -+ { -+ .dev = >a02_mmc_dev.dev, -+ .supply = "SD_3V3", -+ }, -+}; -+ -+static char *gta02_batteries[] = { -+ "battery", -+}; -+ -+struct pcf50633_platform_data gta02_pcf_pdata = { -+ .resumers = { -+ [0] = PCF50633_INT1_USBINS | -+ PCF50633_INT1_USBREM | -+ PCF50633_INT1_ALARM, -+ [1] = PCF50633_INT2_ONKEYF, -+ [2] = PCF50633_INT3_ONKEY1S, -+ [3] = PCF50633_INT4_LOWSYS | -+ PCF50633_INT4_LOWBAT | -+ PCF50633_INT4_HIGHTMP, -+ }, -+ -+ .batteries = gta02_batteries, -+ .num_batteries = ARRAY_SIZE(gta02_batteries), -+ -+ .reg_init_data = { -+ [PCF50633_REGULATOR_AUTO] = { -+ .constraints = { -+ .min_uV = 3300000, -+ .max_uV = 3300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .boot_on = 1, -+ .apply_uV = 1, -+ .state_mem = { -+ .enabled = 1, -+ }, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ [PCF50633_REGULATOR_DOWN1] = { -+ .constraints = { -+ .min_uV = 1300000, -+ .max_uV = 1600000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .boot_on = 1, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ [PCF50633_REGULATOR_DOWN2] = { -+ .constraints = { -+ .min_uV = 1800000, -+ .max_uV = 1800000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ .boot_on = 1, -+ .state_mem = { -+ .enabled = 1, -+ }, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ [PCF50633_REGULATOR_HCLDO] = { -+ .constraints = { -+ .min_uV = 2000000, -+ .max_uV = 3300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .valid_ops_mask = REGULATOR_CHANGE_VOLTAGE, -+ .boot_on = 1, -+ }, -+ .num_consumer_supplies = 1, -+ .consumer_supplies = hcldo_consumers, -+ }, -+ [PCF50633_REGULATOR_LDO1] = { -+ .constraints = { -+ .min_uV = 1300000, -+ .max_uV = 1300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ [PCF50633_REGULATOR_LDO2] = { -+ .constraints = { -+ .min_uV = 3300000, -+ .max_uV = 3300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ [PCF50633_REGULATOR_LDO3] = { -+ .constraints = { -+ .min_uV = 3000000, -+ .max_uV = 3000000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ [PCF50633_REGULATOR_LDO4] = { -+ .constraints = { -+ .min_uV = 3200000, -+ .max_uV = 3200000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 1, -+ .consumer_supplies = ldo4_consumers, -+ }, -+ [PCF50633_REGULATOR_LDO5] = { -+ .constraints = { -+ .min_uV = 1500000, -+ .max_uV = 1500000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 1, -+ .consumer_supplies = ldo5_consumers, -+ }, -+ [PCF50633_REGULATOR_LDO6] = { -+ .constraints = { -+ .min_uV = 0, -+ .max_uV = 3300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ [PCF50633_REGULATOR_MEMLDO] = { -+ .constraints = { -+ .min_uV = 1800000, -+ .max_uV = 1800000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .state_mem = { -+ .enabled = 1, -+ }, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ -+ }, -+ .probe_done = gta02_pmu_attach_child_devices, -+ .regulator_registered = gta02_pmu_regulator_registered, -+ .mbc_event_callback = gta02_pmu_event_callback, -+}; -+ -+static void mangle_pmu_pdata_by_system_rev(void) -+{ -+ struct regulator_init_data *reg_init_data; -+ -+ reg_init_data = gta02_pcf_pdata.reg_init_data; -+ -+ switch (system_rev) { -+ case GTA02v1_SYSTEM_REV: -+ /* FIXME: this is only in v1 due to wrong PMU variant */ -+ reg_init_data[PCF50633_REGULATOR_DOWN2] -+ .constraints.state_mem.enabled = 1; -+ break; -+ case GTA02v2_SYSTEM_REV: -+ case GTA02v3_SYSTEM_REV: -+ case GTA02v4_SYSTEM_REV: -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ reg_init_data[PCF50633_REGULATOR_LDO1] -+ .constraints.min_uV = 3300000; -+ reg_init_data[PCF50633_REGULATOR_LDO1] -+ .constraints.min_uV = 3300000; -+ reg_init_data[PCF50633_REGULATOR_LDO1] -+ .constraints.state_mem.enabled = 0; -+ -+ reg_init_data[PCF50633_REGULATOR_LDO5] -+ .constraints.min_uV = 3000000; -+ reg_init_data[PCF50633_REGULATOR_LDO5] -+ .constraints.max_uV = 3000000; -+ -+ reg_init_data[PCF50633_REGULATOR_LDO6] -+ .constraints.min_uV = 3000000; -+ reg_init_data[PCF50633_REGULATOR_LDO6] -+ .constraints.max_uV = 3000000; -+ reg_init_data[PCF50633_REGULATOR_LDO6] -+ .constraints.apply_uV = 1; -+ break; -+ default: -+ break; -+ } -+} -+ -+#ifdef CONFIG_GTA02_HDQ -+/* HDQ */ -+ -+static void gta02_hdq_attach_child_devices(struct device *parent_device) -+{ -+ switch (system_rev) { -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ bq27000_battery_device.dev.parent = parent_device; -+ platform_device_register(&bq27000_battery_device); -+ break; -+ default: -+ break; -+ } -+} -+ -+static struct resource gta02_hdq_resources[] = { -+ [0] = { -+ .start = GTA02v5_GPIO_HDQ, -+ .end = GTA02v5_GPIO_HDQ, -+ }, -+}; -+ -+struct gta02_hdq_platform_data gta02_hdq_platform_data = { -+ .attach_child_devices = gta02_hdq_attach_child_devices -+}; -+ -+struct platform_device gta02_hdq_device = { -+ .name = "gta02-hdq", -+ .num_resources = 1, -+ .resource = gta02_hdq_resources, -+ .dev = { -+ .platform_data = >a02_hdq_platform_data, -+ }, -+}; -+#endif -+ -+/* vibrator (child of FIQ) */ -+ -+static struct resource gta02_vibrator_resources[] = { -+ [0] = { -+ .start = GTA02_GPIO_VIBRATOR_ON, -+ .end = GTA02_GPIO_VIBRATOR_ON, -+ }, -+}; -+ -+static struct platform_device gta02_vibrator_dev = { -+ .name = "neo1973-vibrator", -+ .num_resources = ARRAY_SIZE(gta02_vibrator_resources), -+ .resource = gta02_vibrator_resources, -+}; -+ -+/* FIQ, used PWM regs, so not child of PWM */ -+ -+static void gta02_fiq_attach_child_devices(struct device *parent_device) -+{ -+#ifdef CONFIG_GTA02_HDQ -+ switch (system_rev) { -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ gta02_hdq_device.dev.parent = parent_device; -+ platform_device_register(>a02_hdq_device); -+ gta02_vibrator_dev.dev.parent = parent_device; -+ platform_device_register(>a02_vibrator_dev); -+ break; -+ default: -+ break; -+ } -+#endif -+} -+ -+ -+static struct resource sc32440_fiq_resources[] = { -+ [0] = { -+ .flags = IORESOURCE_IRQ, -+ .start = IRQ_TIMER3, -+ .end = IRQ_TIMER3, -+ }, -+}; -+ -+struct sc32440_fiq_platform_data gta02_sc32440_fiq_platform_data = { -+ .attach_child_devices = gta02_fiq_attach_child_devices -+}; -+ -+struct platform_device sc32440_fiq_device = { -+ .name = "sc32440_fiq", -+ .num_resources = 1, -+ .resource = sc32440_fiq_resources, -+ .dev = { -+ .platform_data = >a02_sc32440_fiq_platform_data, -+ }, -+}; -+ -+/* NOR Flash */ -+ -+#define GTA02_FLASH_BASE 0x18000000 /* GCS3 */ -+#define GTA02_FLASH_SIZE 0x200000 /* 2MBytes */ -+ -+static struct physmap_flash_data gta02_nor_flash_data = { -+ .width = 2, -+}; -+ -+static struct resource gta02_nor_flash_resource = { -+ .start = GTA02_FLASH_BASE, -+ .end = GTA02_FLASH_BASE + GTA02_FLASH_SIZE - 1, -+ .flags = IORESOURCE_MEM, -+}; -+ -+static struct platform_device gta02_nor_flash = { -+ .name = "physmap-flash", -+ .id = 0, -+ .dev = { -+ .platform_data = >a02_nor_flash_data, -+ }, -+ .resource = >a02_nor_flash_resource, -+ .num_resources = 1, -+}; -+ -+ -+struct platform_device s3c24xx_pwm_device = { -+ .name = "s3c24xx_pwm", -+ .num_resources = 0, -+}; -+ -+static struct i2c_board_info gta02_i2c_devs[] __initdata = { -+ { -+ I2C_BOARD_INFO("pcf50633", 0x73), -+ .irq = GTA02_IRQ_PCF50633, -+ .platform_data = >a02_pcf_pdata, -+ }, -+}; -+ -+static struct s3c2410_nand_set gta02_nand_sets[] = { -+ [0] = { -+ .name = "neo1973-nand", -+ .nr_chips = 1, -+ .flags = S3C2410_NAND_BBT, -+ }, -+}; -+ -+/* choose a set of timings derived from S3C@2442B MCP54 -+ * data sheet (K5D2G13ACM-D075 MCP Memory) -+ */ -+ -+static struct s3c2410_platform_nand gta02_nand_info = { -+ .tacls = 0, -+ .twrph0 = 25, -+ .twrph1 = 15, -+ .nr_sets = ARRAY_SIZE(gta02_nand_sets), -+ .sets = gta02_nand_sets, -+ .software_ecc = 1, -+}; -+ -+ -+static void gta02_s3c_mmc_set_power(unsigned char power_mode, -+ unsigned short vdd) -+{ -+ gta02_wlan_power( -+ power_mode == MMC_POWER_ON || -+ power_mode == MMC_POWER_UP); -+} -+ -+ -+static struct s3c24xx_mci_pdata gta02_s3c_mmc_cfg = { -+ .set_power = gta02_s3c_mmc_set_power, -+}; -+ -+static void gta02_udc_command(enum s3c2410_udc_cmd_e cmd) -+{ -+ switch (cmd) { -+ case S3C2410_UDC_P_ENABLE: -+ printk(KERN_DEBUG "%s S3C2410_UDC_P_ENABLE\n", __func__); -+ neo1973_gpb_setpin(GTA02_GPIO_USB_PULLUP, 1); -+ break; -+ case S3C2410_UDC_P_DISABLE: -+ printk(KERN_DEBUG "%s S3C2410_UDC_P_DISABLE\n", __func__); -+ neo1973_gpb_setpin(GTA02_GPIO_USB_PULLUP, 0); -+ break; -+ case S3C2410_UDC_P_RESET: -+ printk(KERN_DEBUG "%s S3C2410_UDC_P_RESET\n", __func__); -+ /* FIXME! */ -+ break; -+ default: -+ break; -+ } -+} -+ -+/* get PMU to set USB current limit accordingly */ -+ -+static void gta02_udc_vbus_draw(unsigned int ma) -+{ -+ if (!gta02_pcf_pdata.pcf) { -+ printk(KERN_ERR "********** NULL gta02_pcf_pdata.pcf *****\n"); -+ return; -+ } -+ -+ gta02_usb_vbus_draw = ma; -+ -+ schedule_delayed_work(>a02_charger_work, -+ GTA02_CHARGER_CONFIGURE_TIMEOUT); -+} -+ -+static struct s3c2410_udc_mach_info gta02_udc_cfg = { -+ .vbus_draw = gta02_udc_vbus_draw, -+ .udc_command = gta02_udc_command, -+ -+}; -+ -+ -+/* touchscreen configuration */ -+ -+static struct ts_filter_linear_configuration gta02_ts_linear_config = { -+ .constants = {1, 0, 0, 0, 1, 0, 1}, /* don't modify coords */ -+ .coord0 = 0, -+ .coord1 = 1, -+}; -+ -+static struct ts_filter_group_configuration gta02_ts_group_config = { -+ .extent = 12, -+ .close_enough = 10, -+ .threshold = 6, /* at least half of the points in a group */ -+ .attempts = 10, -+}; -+ -+static struct ts_filter_median_configuration gta02_ts_median_config = { -+ .extent = 20, -+ .decimation_below = 3, -+ .decimation_threshold = 8 * 3, -+ .decimation_above = 4, -+}; -+ -+static struct ts_filter_mean_configuration gta02_ts_mean_config = { -+ .bits_filter_length = 2, /* 4 points */ -+}; -+ -+static struct s3c2410_ts_mach_info gta02_ts_cfg = { -+ .delay = 10000, -+ .presc = 0xff, /* slow as we can go */ -+ .filter_sequence = { -+ [0] = &ts_filter_group_api, -+ [1] = &ts_filter_median_api, -+ [2] = &ts_filter_mean_api, -+ [3] = &ts_filter_linear_api, -+ }, -+ .filter_config = { -+ [0] = >a02_ts_group_config, -+ [1] = >a02_ts_median_config, -+ [2] = >a02_ts_mean_config, -+ [3] = >a02_ts_linear_config, -+ }, -+}; -+ -+ -+static void gta02_bl_set_intensity(int intensity) -+{ -+ struct pcf50633 *pcf = gta02_pcf_pdata.pcf; -+ int old_intensity = pcf50633_reg_read(pcf, PCF50633_REG_LEDOUT); -+ int ret; -+ -+ intensity >>= 2; -+ -+ if (intensity == old_intensity) -+ return; -+ -+ /* We can't do this anywhere else */ -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDDIM, 5); -+ -+ if (!(pcf50633_reg_read(pcf, PCF50633_REG_LEDENA) & 3)) -+ old_intensity = 0; -+ -+ /* -+ * The PCF50633 cannot handle LEDOUT = 0 (datasheet p60) -+ * if seen, you have to re-enable the LED unit -+ */ -+ if (!intensity || !old_intensity) -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 0); -+ -+ if (!intensity) /* illegal to set LEDOUT to 0 */ -+ ret = pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_LEDOUT, 0x3f, -+ 2); -+ else -+ ret = pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_LEDOUT, 0x3f, -+ intensity); -+ -+ if (intensity) -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 2); -+ -+} -+ -+static struct generic_bl_info gta02_bl_info = { -+ .name = "gta02-bl", -+ .max_intensity = 0xff, -+ .default_intensity = 0xff, -+ .set_bl_intensity = gta02_bl_set_intensity, -+}; -+ -+static struct platform_device gta02_bl_dev = { -+ .name = "generic-bl", -+ .id = 1, -+ .dev = { -+ .platform_data = >a02_bl_info, -+ }, -+}; -+ -+/* SPI: LCM control interface attached to Glamo3362 */ -+ -+static void gta02_jbt6k74_reset(int devidx, int level) -+{ -+ glamo_lcm_reset(level); -+} -+ -+static void gta02_jbt6k74_probe_completed(struct device *dev) -+{ -+ struct pcf50633 *pcf = gta02_pcf_pdata.pcf; -+ -+ /* Switch on backlight. Qi does not do it for us */ -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDOUT, 0x01); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDDIM, 0x01); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 0x01); -+ -+ gta02_bl_dev.dev.parent = dev; -+ platform_device_register(>a02_bl_dev); -+} -+ -+const struct jbt6k74_platform_data jbt6k74_pdata = { -+ .reset = gta02_jbt6k74_reset, -+ .probe_completed = gta02_jbt6k74_probe_completed, -+}; -+ -+static struct spi_board_info gta02_spi_board_info[] = { -+ { -+ .modalias = "jbt6k74", -+ /* platform_data */ -+ .platform_data = &jbt6k74_pdata, -+ /* controller_data */ -+ /* irq */ -+ .max_speed_hz = 100 * 1000, -+ .bus_num = 2, -+ /* chip_select */ -+ }, -+}; -+ -+#if 0 /* currently this is not used and we use gpio spi */ -+static struct glamo_spi_info glamo_spi_cfg = { -+ .board_size = ARRAY_SIZE(gta02_spi_board_info), -+ .board_info = gta02_spi_board_info, -+}; -+#endif /* 0 */ -+ -+static struct glamo_spigpio_info glamo_spigpio_cfg = { -+ .pin_clk = GLAMO_GPIO10_OUTPUT, -+ .pin_mosi = GLAMO_GPIO11_OUTPUT, -+ .pin_cs = GLAMO_GPIO12_OUTPUT, -+ .pin_miso = 0, -+ .board_size = ARRAY_SIZE(gta02_spi_board_info), -+ .board_info = gta02_spi_board_info, -+}; -+ -+/* SPI: Accelerometers attached to SPI of s3c244x */ -+ -+/* -+ * Situation is that Linux SPI can't work in an interrupt context, so we -+ * implement our own bitbang here. Arbitration is needed because not only -+ * can this interrupt happen at any time even if foreground wants to use -+ * the bitbang API from Linux, but multiple motion sensors can be on the -+ * same SPI bus, and multiple interrupts can happen. -+ * -+ * Foreground / interrupt arbitration is okay because the interrupts are -+ * disabled around all the foreground SPI code. -+ * -+ * Interrupt / Interrupt arbitration is evidently needed, otherwise we -+ * lose edge-triggered service after a while due to the two sensors sharing -+ * the SPI bus having irqs at the same time eventually. -+ * -+ * Servicing is typ 75 - 100us at 400MHz. -+ */ -+ -+/* #define DEBUG_SPEW_MS */ -+#define MG_PER_SAMPLE 18 -+ -+struct lis302dl_platform_data lis302_pdata_top; -+struct lis302dl_platform_data lis302_pdata_bottom; -+ -+/* -+ * generic SPI RX and TX bitbang -+ * only call with interrupts off! -+ */ -+ -+static void __gta02_lis302dl_bitbang(struct lis302dl_info *lis, u8 *tx, -+ int tx_bytes, u8 *rx, int rx_bytes) -+{ -+ struct lis302dl_platform_data *pdata = lis->pdata; -+ int n; -+ u8 shifter = 0; -+ unsigned long other_cs; -+ -+ /* -+ * Huh... "quirk"... CS on this device is not really "CS" like you can -+ * expect. -+ * -+ * When it is 0 it selects SPI interface mode. -+ * When it is 1 it selects I2C interface mode. -+ * -+ * Because we have 2 devices on one interface we have to make sure -+ * that the "disabled" device (actually in I2C mode) don't think we're -+ * talking to it. -+ * -+ * When we talk to the "enabled" device, the "disabled" device sees -+ * the clocks as I2C clocks, creating havoc. -+ * -+ * I2C sees MOSI going LOW while CLK HIGH as a START action, thus we -+ * must ensure this is never issued. -+ */ -+ -+ if (&lis302_pdata_top == pdata) -+ other_cs = lis302_pdata_bottom.pin_chip_select; -+ else -+ other_cs = lis302_pdata_top.pin_chip_select; -+ -+ s3c2410_gpio_setpin(other_cs, 1); -+ s3c2410_gpio_setpin(pdata->pin_chip_select, 1); -+ s3c2410_gpio_setpin(pdata->pin_clk, 1); -+ s3c2410_gpio_setpin(pdata->pin_chip_select, 0); -+ -+ /* send the register index, r/w and autoinc bits */ -+ for (n = 0; n < (tx_bytes << 3); n++) { -+ if (!(n & 7)) -+ shifter = ~tx[n >> 3]; -+ s3c2410_gpio_setpin(pdata->pin_clk, 0); -+ s3c2410_gpio_setpin(pdata->pin_mosi, !(shifter & 0x80)); -+ s3c2410_gpio_setpin(pdata->pin_clk, 1); -+ shifter <<= 1; -+ } -+ -+ for (n = 0; n < (rx_bytes << 3); n++) { /* 8 bits each */ -+ s3c2410_gpio_setpin(pdata->pin_clk, 0); -+ shifter <<= 1; -+ if (s3c2410_gpio_getpin(pdata->pin_miso)) -+ shifter |= 1; -+ if ((n & 7) == 7) -+ rx[n >> 3] = shifter; -+ s3c2410_gpio_setpin(pdata->pin_clk, 1); -+ } -+ s3c2410_gpio_setpin(pdata->pin_chip_select, 1); -+ s3c2410_gpio_setpin(other_cs, 1); -+} -+ -+ -+static int gta02_lis302dl_bitbang_read_reg(struct lis302dl_info *lis, u8 reg) -+{ -+ u8 data = 0xc0 | reg; /* read, autoincrement */ -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ __gta02_lis302dl_bitbang(lis, &data, 1, &data, 1); -+ -+ local_irq_restore(flags); -+ -+ return data; -+} -+ -+static void gta02_lis302dl_bitbang_write_reg(struct lis302dl_info *lis, u8 reg, -+ u8 val) -+{ -+ u8 data[2] = { 0x00 | reg, val }; /* write, no autoincrement */ -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ __gta02_lis302dl_bitbang(lis, &data[0], 2, NULL, 0); -+ -+ local_irq_restore(flags); -+ -+} -+ -+ -+void gta02_lis302dl_suspend_io(struct lis302dl_info *lis, int resume) -+{ -+ struct lis302dl_platform_data *pdata = lis->pdata; -+ -+ if (!resume) { -+ /* -+ * we don't want to power them with a high level -+ * because GSENSOR_3V3 is not up during suspend -+ */ -+ s3c2410_gpio_setpin(pdata->pin_chip_select, 0); -+ s3c2410_gpio_setpin(pdata->pin_clk, 0); -+ s3c2410_gpio_setpin(pdata->pin_mosi, 0); -+ /* misnomer: it is a pullDOWN in 2442 */ -+ s3c2410_gpio_pullup(pdata->pin_miso, 1); -+ return; -+ } -+ -+ /* back to normal */ -+ s3c2410_gpio_setpin(pdata->pin_chip_select, 1); -+ s3c2410_gpio_setpin(pdata->pin_clk, 1); -+ /* misnomer: it is a pullDOWN in 2442 */ -+ s3c2410_gpio_pullup(pdata->pin_miso, 0); -+ -+ s3c2410_gpio_cfgpin(pdata->pin_chip_select, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_cfgpin(pdata->pin_clk, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_cfgpin(pdata->pin_mosi, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_cfgpin(pdata->pin_miso, S3C2410_GPIO_INPUT); -+ -+} -+ -+ -+ -+struct lis302dl_platform_data lis302_pdata_top = { -+ .name = "lis302-1 (top)", -+ .pin_chip_select= S3C2410_GPD12, -+ .pin_clk = S3C2410_GPG7, -+ .pin_mosi = S3C2410_GPG6, -+ .pin_miso = S3C2410_GPG5, -+ .interrupt = GTA02_IRQ_GSENSOR_1, -+ .open_drain = 1, /* altered at runtime by PCB rev */ -+ .lis302dl_bitbang = __gta02_lis302dl_bitbang, -+ .lis302dl_bitbang_reg_read = gta02_lis302dl_bitbang_read_reg, -+ .lis302dl_bitbang_reg_write = gta02_lis302dl_bitbang_write_reg, -+ .lis302dl_suspend_io = gta02_lis302dl_suspend_io, -+}; -+ -+struct lis302dl_platform_data lis302_pdata_bottom = { -+ .name = "lis302-2 (bottom)", -+ .pin_chip_select= S3C2410_GPD13, -+ .pin_clk = S3C2410_GPG7, -+ .pin_mosi = S3C2410_GPG6, -+ .pin_miso = S3C2410_GPG5, -+ .interrupt = GTA02_IRQ_GSENSOR_2, -+ .open_drain = 1, /* altered at runtime by PCB rev */ -+ .lis302dl_bitbang = __gta02_lis302dl_bitbang, -+ .lis302dl_bitbang_reg_read = gta02_lis302dl_bitbang_read_reg, -+ .lis302dl_bitbang_reg_write = gta02_lis302dl_bitbang_write_reg, -+ .lis302dl_suspend_io = gta02_lis302dl_suspend_io, -+}; -+ -+ -+static struct platform_device s3c_device_spi_acc1 = { -+ .name = "lis302dl", -+ .id = 1, -+ .dev = { -+ .platform_data = &lis302_pdata_top, -+ }, -+}; -+ -+static struct platform_device s3c_device_spi_acc2 = { -+ .name = "lis302dl", -+ .id = 2, -+ .dev = { -+ .platform_data = &lis302_pdata_bottom, -+ }, -+}; -+ -+static struct resource gta02_led_resources[] = { -+ { -+ .name = "gta02-power:orange", -+ .start = GTA02_GPIO_PWR_LED1, -+ .end = GTA02_GPIO_PWR_LED1, -+ }, { -+ .name = "gta02-power:blue", -+ .start = GTA02_GPIO_PWR_LED2, -+ .end = GTA02_GPIO_PWR_LED2, -+ }, { -+ .name = "gta02-aux:red", -+ .start = GTA02_GPIO_AUX_LED, -+ .end = GTA02_GPIO_AUX_LED, -+ }, -+}; -+ -+struct platform_device gta02_led_dev = { -+ .name = "gta02-led", -+ .num_resources = ARRAY_SIZE(gta02_led_resources), -+ .resource = gta02_led_resources, -+}; -+ -+static struct resource gta02_button_resources[] = { -+ [0] = { -+ .start = GTA02_GPIO_AUX_KEY, -+ .end = GTA02_GPIO_AUX_KEY, -+ }, -+ [1] = { -+ .start = GTA02_GPIO_HOLD_KEY, -+ .end = GTA02_GPIO_HOLD_KEY, -+ }, -+ [2] = { -+ .start = GTA02_GPIO_JACK_INSERT, -+ .end = GTA02_GPIO_JACK_INSERT, -+ }, -+ [3] = { -+ .start = 0, -+ .end = 0, -+ }, -+ [4] = { -+ .start = 0, -+ .end = 0, -+ }, -+}; -+ -+static struct platform_device gta02_button_dev = { -+ .name = "neo1973-button", -+ .num_resources = ARRAY_SIZE(gta02_button_resources), -+ .resource = gta02_button_resources, -+}; -+ -+ -+static struct platform_device gta02_pm_usbhost_dev = { -+ .name = "neo1973-pm-host", -+}; -+ -+ -+/* USB */ -+static struct s3c2410_hcd_info gta02_usb_info = { -+ .port[0] = { -+ .flags = S3C_HCDFLG_USED, -+ }, -+ .port[1] = { -+ .flags = 0, -+ }, -+}; -+ -+static int glamo_irq_is_wired(void) -+{ -+ int rc; -+ int count = 0; -+ -+ /* -+ * GTA02 S-Media IRQs prior to A5 are broken due to a lack of -+ * a pullup on the INT# line. Check for the bad behaviour. -+ */ -+ s3c2410_gpio_setpin(S3C2410_GPG4, 0); -+ s3c2410_gpio_cfgpin(S3C2410_GPG4, S3C2410_GPG4_OUTP); -+ s3c2410_gpio_cfgpin(S3C2410_GPG4, S3C2410_GPG4_INP); -+ /* -+ * we force it low ourselves for a moment and resume being input. -+ * If there is a pullup, it won't stay low for long. But if the -+ * level converter is there as on < A5 revision, the weak keeper -+ * on the input of the LC will hold the line low indefinitiely -+ */ -+ do -+ rc = s3c2410_gpio_getpin(S3C2410_GPG4); -+ while ((!rc) && ((count++) < 10)); -+ if (rc) { /* it got pulled back up, it's good */ -+ printk(KERN_INFO "Detected S-Media IRQ# pullup, " -+ "enabling interrupt\n"); -+ return 0; -+ } else /* Gah we can't work with this level converter */ -+ printk(KERN_WARNING "** Detected bad IRQ# circuit found" -+ " on pre-A5 GTA02: S-Media interrupt disabled **\n"); -+ return -ENODEV; -+} -+ -+static int gta02_glamo_can_set_mmc_power(void) -+{ -+ switch (system_rev) { -+ case GTA02v3_SYSTEM_REV: -+ case GTA02v4_SYSTEM_REV: -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ return 1; -+ } -+ -+ return 0; -+} -+ -+/* Smedia Glamo 3362 */ -+ -+/* -+ * we crank down SD Card clock dynamically when GPS is powered -+ */ -+ -+static int gta02_glamo_mci_use_slow(void) -+{ -+ return neo1973_pm_gps_is_on(); -+} -+ -+static void gta02_glamo_external_reset(int level) -+{ -+ s3c2410_gpio_setpin(GTA02_GPIO_3D_RESET, level); -+ s3c2410_gpio_cfgpin(GTA02_GPIO_3D_RESET, S3C2410_GPIO_OUTPUT); -+} -+ -+static struct glamofb_platform_data gta02_glamo_pdata = { -+ .width = 43, -+ .height = 58, -+ /* 24.5MHz --> 40.816ns */ -+ .pixclock = 40816, -+ .left_margin = 8, -+ .right_margin = 16, -+ .upper_margin = 2, -+ .lower_margin = 16, -+ .hsync_len = 8, -+ .vsync_len = 2, -+ .fb_mem_size = 0x400000, /* glamo has 8 megs of SRAM. we use 4 */ -+ .xres = { -+ .min = 240, -+ .max = 640, -+ .defval = 480, -+ }, -+ .yres = { -+ .min = 320, -+ .max = 640, -+ .defval = 640, -+ }, -+ .bpp = { -+ .min = 16, -+ .max = 16, -+ .defval = 16, -+ }, -+ //.spi_info = &glamo_spi_cfg, -+ .spigpio_info = &glamo_spigpio_cfg, -+ -+ /* glamo MMC function platform data */ -+ .mmc_dev = >a02_mmc_dev, -+ .glamo_can_set_mci_power = gta02_glamo_can_set_mmc_power, -+ .glamo_mci_use_slow = gta02_glamo_mci_use_slow, -+ .glamo_irq_is_wired = glamo_irq_is_wired, -+ .glamo_external_reset = gta02_glamo_external_reset -+}; -+ -+static struct resource gta02_glamo_resources[] = { -+ [0] = { -+ .start = S3C2410_CS1, -+ .end = S3C2410_CS1 + 0x1000000 - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = GTA02_IRQ_3D, -+ .end = GTA02_IRQ_3D, -+ .flags = IORESOURCE_IRQ, -+ }, -+ [2] = { -+ .start = GTA02v1_GPIO_3D_RESET, -+ .end = GTA02v1_GPIO_3D_RESET, -+ }, -+}; -+ -+static struct platform_device gta02_glamo_dev = { -+ .name = "glamo3362", -+ .num_resources = ARRAY_SIZE(gta02_glamo_resources), -+ .resource = gta02_glamo_resources, -+ .dev = { -+ .platform_data = >a02_glamo_pdata, -+ }, -+}; -+ -+static void mangle_glamo_res_by_system_rev(void) -+{ -+ switch (system_rev) { -+ case GTA02v1_SYSTEM_REV: -+ break; -+ default: -+ gta02_glamo_resources[2].start = GTA02_GPIO_3D_RESET; -+ gta02_glamo_resources[2].end = GTA02_GPIO_3D_RESET; -+ break; -+ } -+ -+ switch (system_rev) { -+ case GTA02v1_SYSTEM_REV: -+ case GTA02v2_SYSTEM_REV: -+ case GTA02v3_SYSTEM_REV: -+ /* case GTA02v4_SYSTEM_REV: - FIXME: handle this later */ -+ /* The hardware is missing a pull-up resistor and thus can't -+ * support the Smedia Glamo IRQ */ -+ gta02_glamo_resources[1].start = 0; -+ gta02_glamo_resources[1].end = 0; -+ break; -+ } -+} -+ -+static void __init gta02_map_io(void) -+{ -+ s3c24xx_init_io(gta02_iodesc, ARRAY_SIZE(gta02_iodesc)); -+ s3c24xx_init_clocks(12000000); -+ s3c24xx_init_uarts(gta02_uartcfgs, ARRAY_SIZE(gta02_uartcfgs)); -+} -+ -+static irqreturn_t gta02_modem_irq(int irq, void *param) -+{ -+ printk(KERN_DEBUG "modem wakeup interrupt\n"); -+ gta_gsm_interrupts++; -+ return IRQ_HANDLED; -+} -+ -+static irqreturn_t ar6000_wow_irq(int irq, void *param) -+{ -+ printk(KERN_DEBUG "ar6000_wow interrupt\n"); -+ return IRQ_HANDLED; -+} -+ -+/* -+ * hardware_ecc=1|0 -+ */ -+static char hardware_ecc_str[4] __initdata = ""; -+ -+static int __init hardware_ecc_setup(char *str) -+{ -+ if (str) -+ strlcpy(hardware_ecc_str, str, sizeof(hardware_ecc_str)); -+ return 1; -+} -+ -+__setup("hardware_ecc=", hardware_ecc_setup); -+ -+/* these are the guys that don't need to be children of PMU */ -+ -+static struct platform_device *gta02_devices[] __initdata = { -+ >a02_version_device, -+ &s3c_device_usb, -+ &s3c_device_wdt, -+ >a02_memconfig_device, -+ &s3c_device_sdi, -+ &s3c_device_usbgadget, -+ &s3c_device_nand, -+ >a02_nor_flash, -+ -+ &sc32440_fiq_device, -+ &s3c24xx_pwm_device, -+ >a02_led_dev, -+ >a02_pm_wlan_dev, /* not dependent on PMU */ -+ -+ &s3c_device_iis, -+ &s3c_device_i2c0, -+}; -+ -+/* these guys DO need to be children of PMU */ -+ -+static struct platform_device *gta02_devices_pmu_children[] = { -+ &s3c_device_ts, /* input 1 */ -+ >a02_pm_gsm_dev, -+ >a02_pm_usbhost_dev, -+ &s3c_device_spi_acc1, /* input 2 */ -+ &s3c_device_spi_acc2, /* input 3 */ -+ >a02_button_dev, /* input 4 */ -+ >a02_resume_reason_device, -+}; -+ -+static void gta02_pmu_regulator_registered(struct pcf50633 *pcf, int id) -+{ -+ struct platform_device *regulator, *pdev; -+ -+ regulator = pcf->pmic.pdev[id]; -+ -+ switch(id) { -+ case PCF50633_REGULATOR_LDO4: -+ pdev = >a01_pm_bt_dev; -+ break; -+ case PCF50633_REGULATOR_LDO5: -+ pdev = >a01_pm_gps_dev; -+ break; -+ case PCF50633_REGULATOR_HCLDO: -+ pdev = >a02_glamo_dev; -+ break; -+ default: -+ return; -+ } -+ -+ pdev->dev.parent = ®ulator->dev; -+ platform_device_register(pdev); -+} -+ -+/* this is called when pc50633 is probed, unfortunately quite late in the -+ * day since it is an I2C bus device. Here we can belatedly define some -+ * platform devices with the advantage that we can mark the pcf50633 as the -+ * parent. This makes them get suspended and resumed with their parent -+ * the pcf50633 still around. -+ */ -+ -+static void gta02_pmu_attach_child_devices(struct pcf50633 *pcf) -+{ -+ int n; -+ -+ for (n = 0; n < ARRAY_SIZE(gta02_devices_pmu_children); n++) -+ gta02_devices_pmu_children[n]->dev.parent = pcf->dev; -+ -+ mangle_glamo_res_by_system_rev(); -+ platform_add_devices(gta02_devices_pmu_children, -+ ARRAY_SIZE(gta02_devices_pmu_children)); -+} -+ -+ -+static void __init gta02_machine_init(void) -+{ -+ int rc; -+ -+ /* set the panic callback to make AUX blink fast */ -+ panic_blink = gta02_panic_blink; -+ -+ switch (system_rev) { -+ case GTA02v6_SYSTEM_REV: -+ /* we need push-pull interrupt from motion sensors */ -+ lis302_pdata_top.open_drain = 0; -+ lis302_pdata_bottom.open_drain = 0; -+ break; -+ default: -+ break; -+ } -+ -+ spin_lock_init(&motion_irq_lock); -+ INIT_DELAYED_WORK(>a02_charger_work, gta02_charger_worker); -+ -+ /* Glamo chip select optimization */ -+/* *((u32 *)(S3C2410_MEMREG(((1 + 1) << 2)))) = 0x1280; */ -+ -+ /* do not force soft ecc if we are asked to use hardware_ecc */ -+ if (hardware_ecc_str[0] == '1') -+ gta02_nand_info.software_ecc = 0; -+ -+ s3c_device_usb.dev.platform_data = >a02_usb_info; -+ s3c_device_nand.dev.platform_data = >a02_nand_info; -+ s3c_device_sdi.dev.platform_data = >a02_s3c_mmc_cfg; -+ -+ /* acc sensor chip selects */ -+ s3c2410_gpio_setpin(S3C2410_GPD12, 1); -+ s3c2410_gpio_cfgpin(S3C2410_GPD12, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_setpin(S3C2410_GPD13, 1); -+ s3c2410_gpio_cfgpin(S3C2410_GPD13, S3C2410_GPIO_OUTPUT); -+ -+ s3c24xx_udc_set_platdata(>a02_udc_cfg); -+ s3c_i2c0_set_platdata(NULL); -+ set_s3c2410ts_info(>a02_ts_cfg); -+ -+ mangle_glamo_res_by_system_rev(); -+ -+ i2c_register_board_info(0, gta02_i2c_devs, ARRAY_SIZE(gta02_i2c_devs)); -+ -+ mangle_pmu_pdata_by_system_rev(); -+ -+ platform_add_devices(gta02_devices, ARRAY_SIZE(gta02_devices)); -+ -+ s3c_pm_init(); -+ -+ /* Make sure the modem can wake us up */ -+ set_irq_type(GTA02_IRQ_MODEM, IRQ_TYPE_EDGE_RISING); -+ rc = request_irq(GTA02_IRQ_MODEM, gta02_modem_irq, IRQF_DISABLED, -+ "modem", NULL); -+ if (rc < 0) -+ printk(KERN_ERR "GTA02: can't request GSM modem wakeup IRQ\n"); -+ enable_irq_wake(GTA02_IRQ_MODEM); -+ -+ /* Make sure the wifi module can wake us up*/ -+ set_irq_type(GTA02_IRQ_WLAN_GPIO1, IRQ_TYPE_EDGE_RISING); -+ rc = request_irq(GTA02_IRQ_WLAN_GPIO1, ar6000_wow_irq, IRQF_DISABLED, -+ "ar6000", NULL); -+ -+ if (rc < 0) -+ printk(KERN_ERR "GTA02: can't request ar6k wakeup IRQ\n"); -+ enable_irq_wake(GTA02_IRQ_WLAN_GPIO1); -+} -+ -+void DEBUG_LED(int n) -+{ -+// int *p = NULL; -+ switch (n) { -+ case 0: -+ neo1973_gpb_setpin(GTA02_GPIO_PWR_LED1, 1); -+ break; -+ case 1: -+ neo1973_gpb_setpin(GTA02_GPIO_PWR_LED2, 1); -+ break; -+ default: -+ neo1973_gpb_setpin(GTA02_GPIO_AUX_LED, 1); -+ break; -+ } -+// printk(KERN_ERR"die %d\n", *p); -+} -+EXPORT_SYMBOL_GPL(DEBUG_LED); -+ -+MACHINE_START(NEO1973_GTA02, "GTA02") -+ .phys_io = S3C2410_PA_UART, -+ .io_pg_offst = (((u32)S3C24XX_VA_UART) >> 18) & 0xfffc, -+ .boot_params = S3C2410_SDRAM_PA + 0x100, -+ .map_io = gta02_map_io, -+ .init_irq = s3c24xx_init_irq, -+ .init_machine = gta02_machine_init, -+ .timer = &s3c24xx_timer, -+MACHINE_END ---- a/arch/arm/mach-s3c2440/mach-nexcoder.c -+++ b/arch/arm/mach-s3c2440/mach-nexcoder.c -@@ -37,6 +37,7 @@ - //#include <asm/debug-ll.h> - #include <mach/regs-gpio.h> - #include <plat/regs-serial.h> -+#include <plat/iic.h> - - #include <plat/s3c2410.h> - #include <plat/s3c2440.h> -@@ -107,7 +108,7 @@ static struct platform_device *nexcoder_ - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_rtc, - &s3c_device_camif, -@@ -142,6 +143,7 @@ static void __init nexcoder_map_io(void) - - static void __init nexcoder_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(nexcoder_devices, ARRAY_SIZE(nexcoder_devices)); - }; - ---- a/arch/arm/mach-s3c2440/mach-osiris.c -+++ b/arch/arm/mach-s3c2440/mach-osiris.c -@@ -37,7 +37,8 @@ - #include <mach/regs-gpio.h> - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> --#include <asm/plat-s3c/nand.h> -+#include <plat/nand.h> -+#include <plat/iic.h> - - #include <linux/mtd/mtd.h> - #include <linux/mtd/nand.h> -@@ -335,7 +336,7 @@ static struct i2c_board_info osiris_i2c_ - /* Standard Osiris devices */ - - static struct platform_device *osiris_devices[] __initdata = { -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_wdt, - &s3c_device_nand, - &osiris_pcmcia, -@@ -398,6 +399,8 @@ static void __init osiris_init(void) - sysdev_class_register(&osiris_pm_sysclass); - sysdev_register(&osiris_pm_sysdev); - -+ s3c_i2c0_set_platdata(NULL); -+ - i2c_register_board_info(0, osiris_i2c_devs, - ARRAY_SIZE(osiris_i2c_devs)); - ---- a/arch/arm/mach-s3c2440/mach-rx3715.c -+++ b/arch/arm/mach-s3c2440/mach-rx3715.c -@@ -42,7 +42,7 @@ - #include <mach/regs-lcd.h> - - #include <mach/h1940.h> --#include <asm/plat-s3c/nand.h> -+#include <plat/nand.h> - #include <mach/fb.h> - - #include <plat/clock.h> -@@ -179,7 +179,7 @@ static struct platform_device *rx3715_de - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - &s3c_device_nand, - }; -@@ -203,7 +203,7 @@ static void __init rx3715_init_machine(v - #ifdef CONFIG_PM_H1940 - memcpy(phys_to_virt(H1940_SUSPEND_RESUMEAT), h1940_pm_return, 1024); - #endif -- s3c2410_pm_init(); -+ s3c_pm_init(); - - s3c24xx_fb_set_platdata(&rx3715_fb_info); - platform_add_devices(rx3715_devices, ARRAY_SIZE(rx3715_devices)); ---- a/arch/arm/mach-s3c2440/mach-smdk2440.c -+++ b/arch/arm/mach-s3c2440/mach-smdk2440.c -@@ -37,6 +37,7 @@ - - #include <mach/idle.h> - #include <mach/fb.h> -+#include <plat/iic.h> - - #include <plat/s3c2410.h> - #include <plat/s3c2440.h> -@@ -152,7 +153,7 @@ static struct platform_device *smdk2440_ - &s3c_device_usb, - &s3c_device_lcd, - &s3c_device_wdt, -- &s3c_device_i2c, -+ &s3c_device_i2c0, - &s3c_device_iis, - }; - -@@ -166,6 +167,7 @@ static void __init smdk2440_map_io(void) - static void __init smdk2440_machine_init(void) - { - s3c24xx_fb_set_platdata(&smdk2440_fb_info); -+ s3c_i2c0_set_platdata(NULL); - - platform_add_devices(smdk2440_devices, ARRAY_SIZE(smdk2440_devices)); - smdk_machine_init(); ---- a/arch/arm/mach-s3c2440/Makefile -+++ b/arch/arm/mach-s3c2440/Makefile -@@ -13,6 +13,7 @@ obj-$(CONFIG_CPU_S3C2440) += s3c2440.o d - obj-$(CONFIG_CPU_S3C2440) += irq.o - obj-$(CONFIG_CPU_S3C2440) += clock.o - obj-$(CONFIG_S3C2440_DMA) += dma.o -+obj-$(CONFIG_S3C2440_C_FIQ) += fiq_c_isr.o - - # Machine support - -@@ -22,3 +23,6 @@ obj-$(CONFIG_MACH_RX3715) += mach-rx3715 - obj-$(CONFIG_ARCH_S3C2440) += mach-smdk2440.o - obj-$(CONFIG_MACH_NEXCODER_2440) += mach-nexcoder.o - obj-$(CONFIG_MACH_AT2440EVB) += mach-at2440evb.o -+obj-$(CONFIG_MACH_HXD8) += mach-hxd8.o -+obj-$(CONFIG_MACH_NEO1973_GTA02) += mach-gta02.o -+ ---- a/arch/arm/mach-s3c2440/s3c2440.c -+++ b/arch/arm/mach-s3c2440/s3c2440.c -@@ -46,6 +46,9 @@ int __init s3c2440_init(void) - s3c_device_wdt.resource[1].start = IRQ_S3C2440_WDT; - s3c_device_wdt.resource[1].end = IRQ_S3C2440_WDT; - -+ /* make sure SD/MMC driver can distinguish 2440 from 2410 */ -+ s3c_device_sdi.name = "s3c2440-sdi"; -+ - /* register our system device for everything else */ - - return sysdev_register(&s3c2440_sysdev); ---- a/arch/arm/mach-s3c2442/Kconfig -+++ b/arch/arm/mach-s3c2442/Kconfig -@@ -6,10 +6,11 @@ - - config CPU_S3C2442 - bool -- depends on ARCH_S3C2410 -+ depends on CPU_S3C2440 - select S3C2410_CLOCK - select S3C2410_GPIO - select S3C2410_PM if PM -+ select S3C2440_DMA if S3C2410_DMA - select CPU_S3C244X - select CPU_LLSERIAL_S3C2440 - help ---- a/arch/arm/mach-s3c2442/s3c2442.c -+++ b/arch/arm/mach-s3c2442/s3c2442.c -@@ -21,6 +21,7 @@ - - #include <plat/s3c2442.h> - #include <plat/cpu.h> -+#include <plat/devs.h> - - static struct sys_device s3c2442_sysdev = { - .cls = &s3c2442_sysclass, -@@ -30,5 +31,8 @@ int __init s3c2442_init(void) - { - printk("S3C2442: Initialising architecture\n"); - -+ /* make sure SD/MMC driver can distinguish 2440 from 2410 */ -+ s3c_device_sdi.name = "s3c2440-sdi"; -+ - return sysdev_register(&s3c2442_sysdev); - } ---- a/arch/arm/mach-s3c2443/clock.c -+++ b/arch/arm/mach-s3c2443/clock.c -@@ -39,6 +39,8 @@ - - #include <mach/regs-s3c2443-clock.h> - -+#include <plat/cpu-freq.h> -+ - #include <plat/s3c2443.h> - #include <plat/clock.h> - #include <plat/cpu.h> -@@ -145,12 +147,6 @@ static unsigned long s3c2443_roundrate_c - - /* clock selections */ - --/* CPU EXTCLK input */ --static struct clk clk_ext = { -- .name = "ext", -- .id = -1, --}; -- - static struct clk clk_mpllref = { - .name = "mpllref", - .parent = &clk_xtal, -@@ -165,14 +161,6 @@ static struct clk clk_mpll = { - }; - #endif - --static struct clk clk_epllref; -- --static struct clk clk_epll = { -- .name = "epll", -- .parent = &clk_epllref, -- .id = -1, --}; -- - static struct clk clk_i2s_ext = { - .name = "i2s-ext", - .id = -1, -@@ -1011,22 +999,20 @@ static struct clk *clks[] __initdata = { - &clk_prediv, - }; - --void __init s3c2443_init_clocks(int xtal) -+void __init_or_cpufreq s3c2443_setup_clocks(void) - { -- unsigned long epllcon = __raw_readl(S3C2443_EPLLCON); - unsigned long mpllcon = __raw_readl(S3C2443_MPLLCON); - unsigned long clkdiv0 = __raw_readl(S3C2443_CLKDIV0); -+ struct clk *xtal_clk; -+ unsigned long xtal; - unsigned long pll; - unsigned long fclk; - unsigned long hclk; - unsigned long pclk; -- struct clk *clkp; -- int ret; -- int ptr; - -- /* s3c2443 parents h and p clocks from prediv */ -- clk_h.parent = &clk_prediv; -- clk_p.parent = &clk_prediv; -+ xtal_clk = clk_get(NULL, "xtal"); -+ xtal = clk_get_rate(xtal_clk); -+ clk_put(xtal_clk); - - pll = s3c2443_get_mpll(mpllcon, xtal); - clk_msysclk.rate = pll; -@@ -1036,13 +1022,29 @@ void __init s3c2443_init_clocks(int xtal - hclk /= s3c2443_get_hdiv(clkdiv0); - pclk = hclk / ((clkdiv0 & S3C2443_CLKDIV0_HALF_PCLK) ? 2 : 1); - -- s3c24xx_setup_clocks(xtal, fclk, hclk, pclk); -+ s3c24xx_setup_clocks(fclk, hclk, pclk); - - printk("S3C2443: mpll %s %ld.%03ld MHz, cpu %ld.%03ld MHz, mem %ld.%03ld MHz, pclk %ld.%03ld MHz\n", - (mpllcon & S3C2443_PLLCON_OFF) ? "off":"on", - print_mhz(pll), print_mhz(fclk), - print_mhz(hclk), print_mhz(pclk)); - -+ s3c24xx_setup_clocks(fclk, hclk, pclk); -+} -+ -+void __init s3c2443_init_clocks(int xtal) -+{ -+ struct clk *clkp; -+ unsigned long epllcon = __raw_readl(S3C2443_EPLLCON); -+ int ret; -+ int ptr; -+ -+ /* s3c2443 parents h and p clocks from prediv */ -+ clk_h.parent = &clk_prediv; -+ clk_p.parent = &clk_prediv; -+ -+ s3c24xx_register_baseclocks(xtal); -+ s3c2443_setup_clocks(); - s3c2443_clk_initparents(); - - for (ptr = 0; ptr < ARRAY_SIZE(clks); ptr++) { -@@ -1056,7 +1058,7 @@ void __init s3c2443_init_clocks(int xtal - } - - clk_epll.rate = s3c2443_get_epll(epllcon, xtal); -- -+ clk_epll.parent = &clk_epllref; - clk_usb_bus.parent = &clk_usb_bus_host; - - /* ensure usb bus clock is within correct rate of 48MHz */ -@@ -1105,4 +1107,6 @@ void __init s3c2443_init_clocks(int xtal - - (clkp->enable)(clkp, 0); - } -+ -+ s3c_pwmclk_init(); - } ---- a/arch/arm/mach-s3c2443/dma.c -+++ b/arch/arm/mach-s3c2443/dma.c -@@ -26,12 +26,12 @@ - - #include <plat/regs-serial.h> - #include <mach/regs-gpio.h> --#include <asm/plat-s3c/regs-ac97.h> -+#include <plat/regs-ac97.h> - #include <mach/regs-mem.h> - #include <mach/regs-lcd.h> - #include <mach/regs-sdi.h> - #include <asm/plat-s3c24xx/regs-iis.h> --#include <asm/plat-s3c24xx/regs-spi.h> -+#include <plat/regs-spi.h> - - #define MAP(x) { \ - [0] = (x) | DMA_CH_VALID, \ ---- a/arch/arm/mach-s3c2443/Kconfig -+++ b/arch/arm/mach-s3c2443/Kconfig -@@ -24,6 +24,7 @@ config MACH_SMDK2443 - bool "SMDK2443" - select CPU_S3C2443 - select MACH_SMDK -+ select S3C_DEV_HSMMC - help - Say Y here if you are using an SMDK2443 - ---- a/arch/arm/mach-s3c2443/mach-smdk2443.c -+++ b/arch/arm/mach-s3c2443/mach-smdk2443.c -@@ -37,6 +37,7 @@ - - #include <mach/idle.h> - #include <mach/fb.h> -+#include <plat/iic.h> - - #include <plat/s3c2410.h> - #include <plat/s3c2440.h> -@@ -103,8 +104,8 @@ static struct s3c2410_uartcfg smdk2443_u - - static struct platform_device *smdk2443_devices[] __initdata = { - &s3c_device_wdt, -- &s3c_device_i2c, -- &s3c_device_hsmmc, -+ &s3c_device_i2c0, -+ &s3c_device_hsmmc0, - }; - - static void __init smdk2443_map_io(void) -@@ -116,6 +117,7 @@ static void __init smdk2443_map_io(void) - - static void __init smdk2443_machine_init(void) - { -+ s3c_i2c0_set_platdata(NULL); - platform_add_devices(smdk2443_devices, ARRAY_SIZE(smdk2443_devices)); - smdk_machine_init(); - } ---- a/arch/arm/mach-s3c2443/s3c2443.c -+++ b/arch/arm/mach-s3c2443/s3c2443.c -@@ -81,10 +81,9 @@ void __init s3c2443_init_uarts(struct s3 - * machine specific initialisation. - */ - --void __init s3c2443_map_io(struct map_desc *mach_desc, int mach_size) -+void __init s3c2443_map_io(void) - { - iotable_init(s3c2443_iodesc, ARRAY_SIZE(s3c2443_iodesc)); -- iotable_init(mach_desc, mach_size); - } - - /* need to register class before we actually register the device, and ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/debug-macro.S -@@ -0,0 +1,28 @@ -+/* arch/arm/mach-s3c2410/include/mach/debug-macro.S -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* pull in the relevant register and map files. */ -+ -+#include <mach/map.h> -+#include <plat/regs-serial.h> -+ -+ .macro addruart, rx -+ mrc p15, 0, \rx, c1, c0 -+ tst \rx, #1 -+ ldreq \rx, = S3C24XX_PA_UART -+ ldrne \rx, = S3C24XX_VA_UART -+#if CONFIG_DEBUG_S3C_UART != 0 -+ add \rx, \rx, #(S3C2410_UART1_OFF * CONFIG_DEBUG_S3C_UART) -+#endif -+ .endm -+ -+/* include the reset of the code which will do the work, we're only -+ * compiling for a single cpu processor type so the default of s3c2440 -+ * will be fine with us. -+ */ -+ -+#include <plat/debug-macro.S> ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/io.h -@@ -0,0 +1,16 @@ -+/* arch/arm/mach-s3c24a0/include/mach/io.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben-linux@fluff.org> -+ * -+ * IO access and mapping routines for the S3C24A0 -+ */ -+ -+#ifndef __ASM_ARM_ARCH_IO_H -+#define __ASM_ARM_ARCH_IO_H -+ -+/* No current ISA/PCI bus support. */ -+#define __io(a) ((void __iomem *)(a)) -+#define __mem_pci(a) (a) -+ -+#endif ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/irqs.h -@@ -0,0 +1,117 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/irqs.h -+ * -+ * Copyright (c) 2003-2005 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+ -+#ifndef __ASM_ARCH_24A0_IRQS_H -+#define __ASM_ARCH_24A0_IRQS_H __FILE__ -+ -+#define IRQ_EINT0t2 S3C2410_IRQ(0) /* 16 */ -+/* for generic entry-macro.S */ -+#define IRQ_EINT0 IRQ_EINT0t2 -+ -+#define IRQ_EINT3t6 S3C2410_IRQ(1) -+#define IRQ_EINT7t10 S3C2410_IRQ(2) -+#define IRQ_EINT11t14 S3C2410_IRQ(3) -+#define IRQ_EINT15t18 S3C2410_IRQ(4) /* 20 */ -+#define IRQ_TICK S3C2410_IRQ(5) -+#define IRQ_DCTQ S3C2410_IRQ(6) -+#define IRQ_MC S3C2410_IRQ(7) -+#define IRQ_ME S3C2410_IRQ(8) /* 24 */ -+#define IRQ_KEYPAD S3C2410_IRQ(9) -+#define IRQ_TIMER0 S3C2410_IRQ(10) -+#define IRQ_TIMER1 S3C2410_IRQ(11) -+#define IRQ_TIMER2 S3C2410_IRQ(12) -+#define IRQ_TIMER3_4 S3C2410_IRQ(13) -+#define IRQ_OS_TIMER IRQ_TIMER3_4 -+#define IRQ_LCD S3C2410_IRQ(14) -+#define IRQ_CAM_C S3C2410_IRQ(15) -+#define IRQ_WDT_BATFLT S3C2410_IRQ(16) /* 32 */ -+#define IRQ_UART0 S3C2410_IRQ(17) -+#define IRQ_CAM_P S3C2410_IRQ(18) -+#define IRQ_MODEM S3C2410_IRQ(19) -+#define IRQ_DMA S3C2410_IRQ(20) -+#define IRQ_SDI S3C2410_IRQ(21) -+#define IRQ_SPI0 S3C2410_IRQ(22) -+#define IRQ_UART1 S3C2410_IRQ(23) -+#define IRQ_AC97_NFLASH S3C2410_IRQ(24) /* 40 */ -+#define IRQ_USBD S3C2410_IRQ(25) -+#define IRQ_USBH S3C2410_IRQ(26) -+#define IRQ_IIC S3C2410_IRQ(27) -+#define IRQ_IRDA_MSTICK S3C2410_IRQ(28) /* 44 */ -+#define IRQ_VLX_SPI1 S3C2410_IRQ(29) -+#define IRQ_RTC S3C2410_IRQ(30) /* 46 */ -+#define IRQ_ADC_PEN S3C2410_IRQ(31) -+ -+/* interrupts generated from the external interrupts sources */ -+#define IRQ_EINT00 S3C2410_IRQ(32) /* 48 */ -+#define IRQ_EINT1 S3C2410_IRQ(33) -+#define IRQ_EINT2 S3C2410_IRQ(34) -+#define IRQ_EINT3 S3C2410_IRQ(35) -+#define IRQ_EINT4 S3C2410_IRQ(36) -+#define IRQ_EINT5 S3C2410_IRQ(37) -+#define IRQ_EINT6 S3C2410_IRQ(38) -+#define IRQ_EINT7 S3C2410_IRQ(39) -+#define IRQ_EINT8 S3C2410_IRQ(40) -+#define IRQ_EINT9 S3C2410_IRQ(41) -+#define IRQ_EINT10 S3C2410_IRQ(42) -+#define IRQ_EINT11 S3C2410_IRQ(43) -+#define IRQ_EINT12 S3C2410_IRQ(44) -+#define IRQ_EINT13 S3C2410_IRQ(45) -+#define IRQ_EINT14 S3C2410_IRQ(46) -+#define IRQ_EINT15 S3C2410_IRQ(47) -+#define IRQ_EINT16 S3C2410_IRQ(48) -+#define IRQ_EINT17 S3C2410_IRQ(49) -+#define IRQ_EINT18 S3C2410_IRQ(50) -+ -+#define IRQ_EINT_BIT(x) ((x) - IRQ_EINT00) -+ -+/* SUB IRQS */ -+#define IRQ_S3CUART_RX0 S3C2410_IRQ(51) /* 67 */ -+#define IRQ_S3CUART_TX0 S3C2410_IRQ(52) -+#define IRQ_S3CUART_ERR0 S3C2410_IRQ(53) -+ -+#define IRQ_S3CUART_RX1 S3C2410_IRQ(54) -+#define IRQ_S3CUART_TX1 S3C2410_IRQ(55) -+#define IRQ_S3CUART_ERR1 S3C2410_IRQ(56) -+ -+#define IRQ_S3CUART_RX2 (0x0) -+#define IRQ_S3CUART_TX2 (0x0) -+#define IRQ_S3CUART_ERR2 (0x0) -+ -+ -+#define IRQ_IRDA S3C2410_IRQ(57) -+#define IRQ_MSTICK S3C2410_IRQ(58) -+#define IRQ_RESERVED0 S3C2410_IRQ(59) -+#define IRQ_RESERVED1 S3C2410_IRQ(60) -+#define IRQ_RESERVED2 S3C2410_IRQ(61) -+#define IRQ_TIMER3 S3C2410_IRQ(62) -+#define IRQ_TIMER4 S3C2410_IRQ(63) -+#define IRQ_WDT S3C2410_IRQ(64) -+#define IRQ_BATFLT S3C2410_IRQ(65) -+#define IRQ_POST S3C2410_IRQ(66) -+#define IRQ_DISP_FIFO S3C2410_IRQ(67) -+#define IRQ_PENUP S3C2410_IRQ(68) -+#define IRQ_PENDN S3C2410_IRQ(69) -+#define IRQ_ADC S3C2410_IRQ(70) -+#define IRQ_DISP_FRAME S3C2410_IRQ(71) -+#define IRQ_NFLASH S3C2410_IRQ(72) -+#define IRQ_AC97 S3C2410_IRQ(73) -+#define IRQ_SPI1 S3C2410_IRQ(74) -+#define IRQ_VLX S3C2410_IRQ(75) -+#define IRQ_DMA0 S3C2410_IRQ(76) -+#define IRQ_DMA1 S3C2410_IRQ(77) -+#define IRQ_DMA2 S3C2410_IRQ(78) -+#define IRQ_DMA3 S3C2410_IRQ(79) -+ -+#define IRQ_TC (0x0) -+ -+#define NR_IRQS (IRQ_DMA3+1) -+ -+#endif /* __ASM_ARCH_24A0_IRQS_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/map.h -@@ -0,0 +1,85 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/map.h -+ * -+ * Copyright 2003,2007 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C24A0 - Memory map definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_24A0_MAP_H -+#define __ASM_ARCH_24A0_MAP_H __FILE__ -+ -+#include <plat/map-base.h> -+#include <plat/map.h> -+ -+#define S3C24A0_PA_IO_BASE (0x40000000) -+#define S3C24A0_PA_CLKPWR (0x40000000) -+#define S3C24A0_PA_IRQ (0x40200000) -+#define S3C24A0_PA_DMA (0x40400000) -+#define S3C24A0_PA_MEMCTRL (0x40C00000) -+#define S3C24A0_PA_NAND (0x40C00000) -+#define S3C24A0_PA_SROM (0x40C20000) -+#define S3C24A0_PA_SDRAM (0x40C40000) -+#define S3C24A0_PA_BUSM (0x40CE0000) -+#define S3C24A0_PA_USBHOST (0x41000000) -+#define S3C24A0_PA_MODEMIF (0x41180000) -+#define S3C24A0_PA_IRDA (0x41800000) -+#define S3C24A0_PA_TIMER (0x44000000) -+#define S3C24A0_PA_WATCHDOG (0x44100000) -+#define S3C24A0_PA_RTC (0x44200000) -+#define S3C24A0_PA_UART (0x44400000) -+#define S3C24A0_PA_UART0 (S3C24A0_PA_UART) -+#define S3C24A0_PA_UART1 (S3C24A0_PA_UART + 0x4000) -+#define S3C24A0_PA_SPI (0x44500000) -+#define S3C24A0_PA_IIC (0x44600000) -+#define S3C24A0_PA_IIS (0x44700000) -+#define S3C24A0_PA_GPIO (0x44800000) -+#define S3C24A0_PA_KEYIF (0x44900000) -+#define S3C24A0_PA_USBDEV (0x44A00000) -+#define S3C24A0_PA_AC97 (0x45000000) -+#define S3C24A0_PA_ADC (0x45800000) -+#define S3C24A0_PA_SDI (0x46000000) -+#define S3C24A0_PA_MS (0x46100000) -+#define S3C24A0_PA_LCD (0x4A000000) -+#define S3C24A0_PA_VPOST (0x4A100000) -+ -+/* physical addresses of all the chip-select areas */ -+ -+#define S3C24A0_CS0 (0x00000000) -+#define S3C24A0_CS1 (0x04000000) -+#define S3C24A0_CS2 (0x08000000) -+#define S3C24A0_CS3 (0x0C000000) -+#define S3C24A0_CS4 (0x10000000) -+#define S3C24A0_CS5 (0x40000000) -+ -+#define S3C24A0_SDRAM_PA (S3C24A0_CS4) -+ -+/* Use a single interface for common resources between S3C24XX cpus */ -+ -+#define S3C24XX_PA_IRQ S3C24A0_PA_IRQ -+#define S3C24XX_PA_MEMCTRL S3C24A0_PA_MEMCTRL -+#define S3C24XX_PA_USBHOST S3C24A0_PA_USBHOST -+#define S3C24XX_PA_DMA S3C24A0_PA_DMA -+#define S3C24XX_PA_CLKPWR S3C24A0_PA_CLKPWR -+#define S3C24XX_PA_LCD S3C24A0_PA_LCD -+#define S3C24XX_PA_UART S3C24A0_PA_UART -+#define S3C24XX_PA_TIMER S3C24A0_PA_TIMER -+#define S3C24XX_PA_USBDEV S3C24A0_PA_USBDEV -+#define S3C24XX_PA_WATCHDOG S3C24A0_PA_WATCHDOG -+#define S3C24XX_PA_IIS S3C24A0_PA_IIS -+#define S3C24XX_PA_GPIO S3C24A0_PA_GPIO -+#define S3C24XX_PA_RTC S3C24A0_PA_RTC -+#define S3C24XX_PA_ADC S3C24A0_PA_ADC -+#define S3C24XX_PA_SPI S3C24A0_PA_SPI -+#define S3C24XX_PA_SDI S3C24A0_PA_SDI -+#define S3C24XX_PA_NAND S3C24A0_PA_NAND -+ -+#define S3C_PA_UART S3C24A0_PA_UART -+#define S3C_PA_IIC S3C24A0_PA_IIC -+ -+#endif /* __ASM_ARCH_24A0_MAP_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/memory.h -@@ -0,0 +1,19 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/memory.h -+ * from linux/include/asm-arm/arch-rpc/memory.h -+ * -+ * Copyright (C) 1996,1997,1998 Russell King. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_24A0_MEMORY_H -+#define __ASM_ARCH_24A0_MEMORY_H __FILE__ -+ -+#define PHYS_OFFSET UL(0x10000000) -+ -+#define __virt_to_bus(x) __virt_to_phys(x) -+#define __bus_to_virt(x) __phys_to_virt(x) -+ -+#endif ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/regs-clock.h -@@ -0,0 +1,88 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/regs-clock.h -+ * -+ * Copyright (c) 2003,2004,2005,2006 Simtec Electronics <linux@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C24A0 clock register definitions -+*/ -+ -+#ifndef __ASM_ARCH_24A0_REGS_CLOCK_H -+#define __ASM_ARCH_24A0_REGS_CLOCK_H __FILE__ -+ -+#define S3C24A0_MPLLCON S3C2410_CLKREG(0x10) -+#define S3C24A0_UPLLCON S3C2410_CLKREG(0x14) -+#define S3C24A0_CLKCON S3C2410_CLKREG(0x20) -+#define S3C24A0_CLKSRC S3C2410_CLKREG(0x24) -+#define S3C24A0_CLKDIVN S3C2410_CLKREG(0x28) -+ -+/* CLKCON register bits */ -+ -+#define S3C24A0_CLKCON_VLX (1<<29) -+#define S3C24A0_CLKCON_VPOST (1<<28) -+#define S3C24A0_CLKCON_WDT (1<<27) /* reserved */ -+#define S3C24A0_CLKCON_MPEGDCTQ (1<<26) -+#define S3C24A0_CLKCON_VPOSTIF (1<<25) -+#define S3C24A0_CLKCON_MPEG4IF (1<<24) -+#define S3C24A0_CLKCON_CAM_UPLL (1<<23) -+#define S3C24A0_CLKCON_LCDC (1<<22) -+#define S3C24A0_CLKCON_CAM_HCLK (1<<21) -+#define S3C24A0_CLKCON_MPEG4 (1<<20) -+#define S3C24A0_CLKCON_KEYPAD (1<<19) -+#define S3C24A0_CLKCON_ADC (1<<18) -+#define S3C24A0_CLKCON_SDI (1<<17) -+#define S3C24A0_CLKCON_MS (1<<16) /* memory stick */ -+#define S3C24A0_CLKCON_USBD (1<<15) -+#define S3C24A0_CLKCON_GPIO (1<<14) -+#define S3C24A0_CLKCON_IIS (1<<13) -+#define S3C24A0_CLKCON_IIC (1<<12) -+#define S3C24A0_CLKCON_SPI (1<<11) -+#define S3C24A0_CLKCON_UART1 (1<<10) -+#define S3C24A0_CLKCON_UART0 (1<<9) -+#define S3C24A0_CLKCON_PWMT (1<<8) -+#define S3C24A0_CLKCON_USBH (1<<7) -+#define S3C24A0_CLKCON_AC97 (1<<6) -+#define S3C24A0_CLKCON_IrDA (1<<4) -+#define S3C24A0_CLKCON_IDLE (1<<2) -+#define S3C24A0_CLKCON_MON (1<<1) -+#define S3C24A0_CLKCON_STOP (1<<0) -+ -+/* CLKSRC register bits */ -+ -+#define S3C24A0_CLKSRC_OSC (1<<8) /* CLKSRC */ -+#define S3C24A0_CLKSRC_UPLL (1<<7) -+#define S3C24A0_CLKSRC_MPLL (1<<5) -+#define S3C24A0_CLKSRC_EXT (1<<4) -+ -+/* Use a single interface with the common code, for s3c24xx */ -+ -+#define S3C2410_MPLLCON S3C24A0_MPLLCON -+#define S3C2410_UPLLCON S3C24A0_UPLLCON -+#define S3C2410_CLKCON S3C24A0_CLKCON -+#define S3C2410_CLKSLOW S3C24A0_CLKSRC -+#define S3C2410_CLKDIVN S3C24A0_CLKDIVN -+ -+#define S3C2410_CLKCON_IDLE S3C24A0_CLKCON_IDLE -+#define S3C2410_CLKCON_POWER S3C24A0_CLKCON_STOP -+#define S3C2410_CLKCON_LCDC S3C24A0_CLKCON_LCDC -+#define S3C2410_CLKCON_USBH S3C24A0_CLKCON_USBH -+#define S3C2410_CLKCON_USBD S3C24A0_CLKCON_USBD -+#define S3C2410_CLKCON_PWMT S3C24A0_CLKCON_PWMT -+#define S3C2410_CLKCON_SDI S3C24A0_CLKCON_SDI -+#define S3C2410_CLKCON_UART0 S3C24A0_CLKCON_UART0 -+#define S3C2410_CLKCON_UART1 S3C24A0_CLKCON_UART1 -+#define S3C2410_CLKCON_GPIO S3C24A0_CLKCON_GPIO -+#define S3C2410_CLKCON_ADC S3C24A0_CLKCON_ADC -+#define S3C2410_CLKCON_IIC S3C24A0_CLKCON_IIC -+#define S3C2410_CLKCON_IIS S3C24A0_CLKCON_IIS -+#define S3C2410_CLKCON_SPI S3C24A0_CLKCON_SPI -+ -+#define S3C2410_CLKSLOW_UCLK_OFF S3C24A0_CLKSRC_UPLL -+#define S3C2410_CLKSLOW_MPLL_OFF S3C24A0_CLKSRC_MPLL -+#define S3C2410_CLKSLOW_SLOW (0xFF) -+#define S3C2410_CLKSLOW_GET_SLOWVAL(x) (0x1) -+ -+#endif /* __ASM_ARCH_24A0_REGS_CLOCK_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/regs-irq.h -@@ -0,0 +1,25 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/regs-irq.h -+ * -+ * Copyright (c) 2003 Simtec Electronics <linux@simtec.co.uk> -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+ -+#ifndef ___ASM_ARCH_24A0_REGS_IRQ_H -+#define ___ASM_ARCH_24A0_REGS_IRQ_H __FILE__ -+ -+ -+#define S3C2410_EINTMASK S3C2410_EINTREG(0x034) -+#define S3C2410_EINTPEND S3C2410_EINTREG(0X038) -+ -+#define S3C24XX_EINTMASK S3C24XX_EINTREG(0x034) -+#define S3C24XX_EINTPEND S3C24XX_EINTREG(0X038) -+ -+#endif /* __ASM_ARCH_24A0_REGS_IRQ_H */ -+ -+ -+ ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/system.h -@@ -0,0 +1,25 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/system.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C24A0 - System function defines and includes -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <mach/hardware.h> -+#include <asm/io.h> -+ -+#include <mach/map.h> -+ -+static void arch_idle(void) -+{ -+ /* currently no specific idle support. */ -+} -+ -+void (*s3c24xx_reset_hook)(void); -+ -+#include <asm/plat-s3c24xx/system-reset.h> ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/tick.h -@@ -0,0 +1,15 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/tick.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C24A0 - timer tick support -+ */ -+ -+#define SUBSRC_TIMER4 (1 << (IRQ_TIMER4 - IRQ_S3CUART_RX0)) -+ -+static inline int s3c24xx_ostimer_pending(void) -+{ -+ return __raw_readl(S3C2410_SUBSRCPND) & SUBSRC_TIMER4; -+} ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/timex.h -@@ -0,0 +1,18 @@ -+/* linux/arch/arm/mach-s3c24a0/include/mach/timex.h -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C2410 - time parameters -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_TIMEX_H -+#define __ASM_ARCH_TIMEX_H -+ -+#define CLOCK_TICK_RATE 12000000 -+ -+#endif /* __ASM_ARCH_TIMEX_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c24a0/include/mach/vmalloc.h -@@ -0,0 +1,17 @@ -+/* linux/include/asm-arm/arch-s3c24ao/vmalloc.h -+ * -+ * Copyright 2008 Simtec Electronics <linux@simtec.co.uk> -+ -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C24A0 vmalloc definition -+*/ -+ -+#ifndef __ASM_ARCH_VMALLOC_H -+#define __ASM_ARCH_VMALLOC_H -+ -+#define VMALLOC_END (0xE0000000) -+ -+#endif /* __ASM_ARCH_VMALLOC_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/debug-macro.S -@@ -0,0 +1,39 @@ -+/* arch/arm/mach-s3c6400/include/mach/debug-macro.S -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* pull in the relevant register and map files. */ -+ -+#include <mach/map.h> -+#include <plat/regs-serial.h> -+ -+ /* note, for the boot process to work we have to keep the UART -+ * virtual address aligned to an 1MiB boundary for the L1 -+ * mapping the head code makes. We keep the UART virtual address -+ * aligned and add in the offset when we load the value here. -+ */ -+ -+ .macro addruart, rx -+ mrc p15, 0, \rx, c1, c0 -+ tst \rx, #1 -+ ldreq \rx, = S3C_PA_UART -+ ldrne \rx, = (S3C_VA_UART + S3C_PA_UART & 0xfffff) -+#if CONFIG_DEBUG_S3C_UART != 0 -+ add \rx, \rx, #(0x400 * CONFIG_DEBUG_S3C_UART) -+#endif -+ .endm -+ -+/* include the reset of the code which will do the work, we're only -+ * compiling for a single cpu processor type so the default of s3c2440 -+ * will be fine with us. -+ */ -+ -+#include <plat/debug-macro.S> ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/dma.h -@@ -0,0 +1,16 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/dma.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C6400 - DMA support -+ */ -+ -+#ifndef __ASM_ARCH_DMA_H -+#define __ASM_ARCH_DMA_H __FILE__ -+ -+/* currently nothing here, placeholder */ -+ -+#endif /* __ASM_ARCH_IRQ_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/entry-macro.S -@@ -0,0 +1,44 @@ -+/* arch/arm/mach-s3c6400/include/mach/entry-macro.S -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * Low-level IRQ helper macros for the Samsung S3C64XX series -+ * -+ * This file is licensed under the terms of the GNU General Public -+ * License version 2. This program is licensed "as is" without any -+ * warranty of any kind, whether express or implied. -+*/ -+ -+#include <asm/hardware/vic.h> -+#include <mach/map.h> -+#include <plat/irqs.h> -+ -+ .macro disable_fiq -+ .endm -+ -+ .macro get_irqnr_preamble, base, tmp -+ ldr \base, =S3C_VA_VIC0 -+ .endm -+ -+ .macro arch_ret_to_user, tmp1, tmp2 -+ .endm -+ -+ .macro get_irqnr_and_base, irqnr, irqstat, base, tmp -+ -+ @ check the vic0 -+ mov \irqnr, # S3C_IRQ_OFFSET + 31 -+ ldr \irqstat, [ \base, # VIC_IRQ_STATUS ] -+ teq \irqstat, #0 -+ -+ @ otherwise try vic1 -+ addeq \tmp, \base, #(S3C_VA_VIC1 - S3C_VA_VIC0) -+ addeq \irqnr, \irqnr, #32 -+ ldreq \irqstat, [ \tmp, # VIC_IRQ_STATUS ] -+ teqeq \irqstat, #0 -+ -+ clzne \irqstat, \irqstat -+ subne \irqnr, \irqnr, \irqstat -+ .endm ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/gpio-core.h -@@ -0,0 +1,21 @@ -+/* arch/arm/mach-s3c6400/include/mach/gpio-core.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - GPIO core support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_GPIO_CORE_H -+#define __ASM_ARCH_GPIO_CORE_H __FILE__ -+ -+/* currently we just include the platform support */ -+#include <plat/gpio-core.h> -+ -+#endif /* __ASM_ARCH_GPIO_CORE_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/gpio.h -@@ -0,0 +1,96 @@ -+/* arch/arm/mach-s3c6400/include/mach/gpio.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C6400 - GPIO lib support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define gpio_get_value __gpio_get_value -+#define gpio_set_value __gpio_set_value -+#define gpio_cansleep __gpio_cansleep -+#define gpio_to_irq __gpio_to_irq -+ -+/* GPIO bank sizes */ -+#define S3C64XX_GPIO_A_NR (8) -+#define S3C64XX_GPIO_B_NR (7) -+#define S3C64XX_GPIO_C_NR (8) -+#define S3C64XX_GPIO_D_NR (5) -+#define S3C64XX_GPIO_E_NR (5) -+#define S3C64XX_GPIO_F_NR (16) -+#define S3C64XX_GPIO_G_NR (7) -+#define S3C64XX_GPIO_H_NR (10) -+#define S3C64XX_GPIO_I_NR (16) -+#define S3C64XX_GPIO_J_NR (12) -+#define S3C64XX_GPIO_K_NR (16) -+#define S3C64XX_GPIO_L_NR (15) -+#define S3C64XX_GPIO_M_NR (6) -+#define S3C64XX_GPIO_N_NR (16) -+#define S3C64XX_GPIO_O_NR (16) -+#define S3C64XX_GPIO_P_NR (15) -+#define S3C64XX_GPIO_Q_NR (9) -+ -+/* GPIO bank numbes */ -+ -+/* CONFIG_S3C_GPIO_SPACE allows the user to select extra -+ * space for debugging purposes so that any accidental -+ * change from one gpio bank to another can be caught. -+*/ -+ -+#define S3C64XX_GPIO_NEXT(__gpio) \ -+ ((__gpio##_START) + (__gpio##_NR) + CONFIG_S3C_GPIO_SPACE + 1) -+ -+enum s3c_gpio_number { -+ S3C64XX_GPIO_A_START = 0, -+ S3C64XX_GPIO_B_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_A), -+ S3C64XX_GPIO_C_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_B), -+ S3C64XX_GPIO_D_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_C), -+ S3C64XX_GPIO_E_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_D), -+ S3C64XX_GPIO_F_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_E), -+ S3C64XX_GPIO_G_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_F), -+ S3C64XX_GPIO_H_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_G), -+ S3C64XX_GPIO_I_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_H), -+ S3C64XX_GPIO_J_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_I), -+ S3C64XX_GPIO_K_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_J), -+ S3C64XX_GPIO_L_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_K), -+ S3C64XX_GPIO_M_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_L), -+ S3C64XX_GPIO_N_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_M), -+ S3C64XX_GPIO_O_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_N), -+ S3C64XX_GPIO_P_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_O), -+ S3C64XX_GPIO_Q_START = S3C64XX_GPIO_NEXT(S3C64XX_GPIO_P), -+}; -+ -+/* S3C64XX GPIO number definitions. */ -+ -+#define S3C64XX_GPA(_nr) (S3C64XX_GPIO_A_START + (_nr)) -+#define S3C64XX_GPB(_nr) (S3C64XX_GPIO_B_START + (_nr)) -+#define S3C64XX_GPC(_nr) (S3C64XX_GPIO_C_START + (_nr)) -+#define S3C64XX_GPD(_nr) (S3C64XX_GPIO_D_START + (_nr)) -+#define S3C64XX_GPE(_nr) (S3C64XX_GPIO_E_START + (_nr)) -+#define S3C64XX_GPF(_nr) (S3C64XX_GPIO_F_START + (_nr)) -+#define S3C64XX_GPG(_nr) (S3C64XX_GPIO_G_START + (_nr)) -+#define S3C64XX_GPH(_nr) (S3C64XX_GPIO_H_START + (_nr)) -+#define S3C64XX_GPI(_nr) (S3C64XX_GPIO_I_START + (_nr)) -+#define S3C64XX_GPJ(_nr) (S3C64XX_GPIO_J_START + (_nr)) -+#define S3C64XX_GPK(_nr) (S3C64XX_GPIO_K_START + (_nr)) -+#define S3C64XX_GPL(_nr) (S3C64XX_GPIO_L_START + (_nr)) -+#define S3C64XX_GPM(_nr) (S3C64XX_GPIO_M_START + (_nr)) -+#define S3C64XX_GPN(_nr) (S3C64XX_GPIO_N_START + (_nr)) -+#define S3C64XX_GPO(_nr) (S3C64XX_GPIO_O_START + (_nr)) -+#define S3C64XX_GPP(_nr) (S3C64XX_GPIO_P_START + (_nr)) -+#define S3C64XX_GPQ(_nr) (S3C64XX_GPIO_Q_START + (_nr)) -+ -+/* the end of the S3C64XX specific gpios */ -+#define S3C64XX_GPIO_END (S3C64XX_GPQ(S3C64XX_GPIO_Q_NR) + 1) -+#define S3C_GPIO_END S3C64XX_GPIO_END -+ -+/* define the number of gpios we need to the one after the GPQ() range */ -+#define ARCH_NR_GPIOS (S3C64XX_GPQ(S3C64XX_GPIO_Q_NR) + 1) -+ -+#include <asm-generic/gpio.h> ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/hardware.h -@@ -0,0 +1,16 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/hardware.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C6400 - Hardware support -+ */ -+ -+#ifndef __ASM_ARCH_HARDWARE_H -+#define __ASM_ARCH_HARDWARE_H __FILE__ -+ -+/* currently nothing here, placeholder */ -+ -+#endif /* __ASM_ARCH_IRQ_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/irqs.h -@@ -0,0 +1,20 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/irqs.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C6400 - IRQ definitions -+ */ -+ -+#ifndef __ASM_ARCH_IRQS_H -+#define __ASM_ARCH_IRQS_H __FILE__ -+ -+#ifndef __ASM_ARM_IRQ_H -+#error "Do not include this directly, instead #include <asm/irq.h>" -+#endif -+ -+#include <plat/irqs.h> -+ -+#endif /* __ASM_ARCH_IRQ_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/map.h -@@ -0,0 +1,71 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/map.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C64XX - Memory map definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_MAP_H -+#define __ASM_ARCH_MAP_H __FILE__ -+ -+#include <plat/map-base.h> -+ -+/* HSMMC units */ -+#define S3C64XX_PA_HSMMC(x) (0x7C200000 + ((x) * 0x100000)) -+#define S3C64XX_PA_HSMMC0 S3C64XX_PA_HSMMC(0) -+#define S3C64XX_PA_HSMMC1 S3C64XX_PA_HSMMC(1) -+#define S3C64XX_PA_HSMMC2 S3C64XX_PA_HSMMC(2) -+ -+#define S3C_PA_UART (0x7F005000) -+#define S3C_PA_UART0 (S3C_PA_UART + 0x00) -+#define S3C_PA_UART1 (S3C_PA_UART + 0x400) -+#define S3C_PA_UART2 (S3C_PA_UART + 0x800) -+#define S3C_PA_UART3 (S3C_PA_UART + 0xC00) -+#define S3C_UART_OFFSET (0x400) -+ -+/* See notes on UART VA mapping in debug-macro.S */ -+#define S3C_VA_UARTx(x) (S3C_VA_UART + (S3C_PA_UART & 0xfffff) + ((x) * S3C_UART_OFFSET)) -+ -+#define S3C_VA_UART0 S3C_VA_UARTx(0) -+#define S3C_VA_UART1 S3C_VA_UARTx(1) -+#define S3C_VA_UART2 S3C_VA_UARTx(2) -+#define S3C_VA_UART3 S3C_VA_UARTx(3) -+ -+#define S3C64XX_PA_FB (0x77100000) -+#define S3C64XX_PA_SYSCON (0x7E00F000) -+#define S3C64XX_PA_TIMER (0x7F006000) -+#define S3C64XX_PA_IIC0 (0x7F004000) -+#define S3C64XX_PA_IIC1 (0x7F00F000) -+ -+#define S3C64XX_PA_GPIO (0x7F008000) -+#define S3C64XX_VA_GPIO S3C_ADDR(0x00500000) -+#define S3C64XX_SZ_GPIO SZ_4K -+ -+#define S3C64XX_PA_SDRAM (0x50000000) -+#define S3C64XX_PA_VIC0 (0x71200000) -+#define S3C64XX_PA_VIC1 (0x71300000) -+ -+#define S3C64XX_PA_MODEM (0x74108000) -+#define S3C64XX_VA_MODEM S3C_ADDR(0x00600000) -+ -+/* place VICs close together */ -+#define S3C_VA_VIC0 (S3C_VA_IRQ + 0x00) -+#define S3C_VA_VIC1 (S3C_VA_IRQ + 0x10000) -+ -+/* compatibiltiy defines. */ -+#define S3C_PA_TIMER S3C64XX_PA_TIMER -+#define S3C_PA_HSMMC0 S3C64XX_PA_HSMMC0 -+#define S3C_PA_HSMMC1 S3C64XX_PA_HSMMC1 -+#define S3C_PA_HSMMC2 S3C64XX_PA_HSMMC2 -+#define S3C_PA_IIC S3C64XX_PA_IIC0 -+#define S3C_PA_IIC1 S3C64XX_PA_IIC1 -+#define S3C_PA_FB S3C64XX_PA_FB -+ -+#endif /* __ASM_ARCH_6400_MAP_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/memory.h -@@ -0,0 +1,21 @@ -+/* arch/arm/mach-s3c6400/include/mach/memory.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_MEMORY_H -+#define __ASM_ARCH_MEMORY_H -+ -+#define PHYS_OFFSET UL(0x50000000) -+ -+#define __virt_to_bus(x) __virt_to_phys(x) -+#define __bus_to_virt(x) __phys_to_virt(x) -+ -+#endif ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/pwm-clock.h -@@ -0,0 +1,56 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/pwm-clock.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64xx - pwm clock and timer support -+ */ -+ -+/** -+ * pwm_cfg_src_is_tclk() - return whether the given mux config is a tclk -+ * @tcfg: The timer TCFG1 register bits shifted down to 0. -+ * -+ * Return true if the given configuration from TCFG1 is a TCLK instead -+ * any of the TDIV clocks. -+ */ -+static inline int pwm_cfg_src_is_tclk(unsigned long tcfg) -+{ -+ return tcfg >= S3C64XX_TCFG1_MUX_TCLK; -+} -+ -+/** -+ * tcfg_to_divisor() - convert tcfg1 setting to a divisor -+ * @tcfg1: The tcfg1 setting, shifted down. -+ * -+ * Get the divisor value for the given tcfg1 setting. We assume the -+ * caller has already checked to see if this is not a TCLK source. -+ */ -+static inline unsigned long tcfg_to_divisor(unsigned long tcfg1) -+{ -+ return 1 << tcfg1; -+} -+ -+/** -+ * pwm_tdiv_has_div1() - does the tdiv setting have a /1 -+ * -+ * Return true if we have a /1 in the tdiv setting. -+ */ -+static inline unsigned int pwm_tdiv_has_div1(void) -+{ -+ return 1; -+} -+ -+/** -+ * pwm_tdiv_div_bits() - calculate TCFG1 divisor value. -+ * @div: The divisor to calculate the bit information for. -+ * -+ * Turn a divisor into the necessary bit field for TCFG1. -+ */ -+static inline unsigned long pwm_tdiv_div_bits(unsigned int div) -+{ -+ return ilog2(div); -+} -+ -+#define S3C_TCFG1_MUX_TCLK S3C64XX_TCFG1_MUX_TCLK ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/regs-clock.h -@@ -0,0 +1,16 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/regs-clock.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C64XX - clock register compatibility with s3c24xx -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <plat/regs-clock.h> -+ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/regs-fb.h -@@ -0,0 +1,259 @@ -+/* arch/arm/mach-s3c6400/include/mach/regs-fb.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C64XX - new-style framebuffer register definitions -+ * -+ * This is the register set for the new style framebuffer interface -+ * found from the S3C2443 onwards and specifically the S3C64XX series -+ * S3C6400 and S3C6410. -+ * -+ * The file contains the cpu specific items which change between whichever -+ * architecture is selected. See <plat/regs-fb.h> for the core definitions -+ * that are the same. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* include the core definitions here, in case we really do need to -+ * override them at a later date. -+*/ -+ -+#include <plat/regs-fb.h> -+ -+#define S3C_FB_MAX_WIN (5) /* number of hardware windows available. */ -+#define VIDCON1_FSTATUS_EVEN (1 << 15) -+ -+/* Video timing controls */ -+#define VIDTCON0 (0x10) -+#define VIDTCON1 (0x14) -+#define VIDTCON2 (0x18) -+ -+/* Window position controls */ -+ -+#define WINCON(_win) (0x20 + ((_win) * 4)) -+ -+/* OSD1 and OSD4 do not have register D */ -+ -+#define VIDOSD_A(_win) (0x40 + ((_win) * 16)) -+#define VIDOSD_B(_win) (0x44 + ((_win) * 16)) -+#define VIDOSD_C(_win) (0x48 + ((_win) * 16)) -+#define VIDOSD_D(_win) (0x4C + ((_win) * 16)) -+ -+/* Video buffer addresses */ -+ -+#define VIDW_BUF_START(_buff) (0xA0 + ((_buff) * 8)) -+#define VIDW_BUF_START1(_buff) (0xA4 + ((_buff) * 8)) -+#define VIDW_BUF_END(_buff) (0xD0 + ((_buff) * 8)) -+#define VIDW_BUF_END1(_buff) (0xD4 + ((_buff) * 8)) -+#define VIDW_BUF_SIZE(_buff) (0x100 + ((_buff) * 4)) -+ -+#define VIDINTCON0 (0x130) -+ -+#define WxKEYCONy(_win, _con) ((0x140 + ((_win) * 8)) + ((_con) * 4)) -+ -+/* WINCONx */ -+ -+#define WINCONx_CSCWIDTH_MASK (0x3 << 26) -+#define WINCONx_CSCWIDTH_SHIFT (26) -+#define WINCONx_CSCWIDTH_WIDE (0x0 << 26) -+#define WINCONx_CSCWIDTH_NARROW (0x3 << 26) -+ -+#define WINCONx_ENLOCAL (1 << 22) -+#define WINCONx_BUFSTATUS (1 << 21) -+#define WINCONx_BUFSEL (1 << 20) -+#define WINCONx_BUFAUTOEN (1 << 19) -+#define WINCONx_YCbCr (1 << 13) -+ -+#define WINCON1_LOCALSEL_CAMIF (1 << 23) -+ -+#define WINCON2_LOCALSEL_CAMIF (1 << 23) -+#define WINCON2_BLD_PIX (1 << 6) -+ -+#define WINCON2_ALPHA_SEL (1 << 1) -+#define WINCON2_BPPMODE_MASK (0xf << 2) -+#define WINCON2_BPPMODE_SHIFT (2) -+#define WINCON2_BPPMODE_1BPP (0x0 << 2) -+#define WINCON2_BPPMODE_2BPP (0x1 << 2) -+#define WINCON2_BPPMODE_4BPP (0x2 << 2) -+#define WINCON2_BPPMODE_8BPP_1232 (0x4 << 2) -+#define WINCON2_BPPMODE_16BPP_565 (0x5 << 2) -+#define WINCON2_BPPMODE_16BPP_A1555 (0x6 << 2) -+#define WINCON2_BPPMODE_16BPP_I1555 (0x7 << 2) -+#define WINCON2_BPPMODE_18BPP_666 (0x8 << 2) -+#define WINCON2_BPPMODE_18BPP_A1665 (0x9 << 2) -+#define WINCON2_BPPMODE_19BPP_A1666 (0xa << 2) -+#define WINCON2_BPPMODE_24BPP_888 (0xb << 2) -+#define WINCON2_BPPMODE_24BPP_A1887 (0xc << 2) -+#define WINCON2_BPPMODE_25BPP_A1888 (0xd << 2) -+#define WINCON2_BPPMODE_28BPP_A4888 (0xd << 2) -+ -+#define WINCON3_BLD_PIX (1 << 6) -+ -+#define WINCON3_ALPHA_SEL (1 << 1) -+#define WINCON3_BPPMODE_MASK (0xf << 2) -+#define WINCON3_BPPMODE_SHIFT (2) -+#define WINCON3_BPPMODE_1BPP (0x0 << 2) -+#define WINCON3_BPPMODE_2BPP (0x1 << 2) -+#define WINCON3_BPPMODE_4BPP (0x2 << 2) -+#define WINCON3_BPPMODE_16BPP_565 (0x5 << 2) -+#define WINCON3_BPPMODE_16BPP_A1555 (0x6 << 2) -+#define WINCON3_BPPMODE_16BPP_I1555 (0x7 << 2) -+#define WINCON3_BPPMODE_18BPP_666 (0x8 << 2) -+#define WINCON3_BPPMODE_18BPP_A1665 (0x9 << 2) -+#define WINCON3_BPPMODE_19BPP_A1666 (0xa << 2) -+#define WINCON3_BPPMODE_24BPP_888 (0xb << 2) -+#define WINCON3_BPPMODE_24BPP_A1887 (0xc << 2) -+#define WINCON3_BPPMODE_25BPP_A1888 (0xd << 2) -+#define WINCON3_BPPMODE_28BPP_A4888 (0xd << 2) -+ -+#define VIDINTCON0_FIFIOSEL_WINDOW2 (0x10 << 5) -+#define VIDINTCON0_FIFIOSEL_WINDOW3 (0x20 << 5) -+#define VIDINTCON0_FIFIOSEL_WINDOW4 (0x40 << 5) -+ -+#define DITHMODE (0x170) -+#define WINxMAP(_win) (0x180 + ((_win) * 4)) -+ -+ -+#define DITHMODE_R_POS_MASK (0x3 << 5) -+#define DITHMODE_R_POS_SHIFT (5) -+#define DITHMODE_R_POS_8BIT (0x0 << 5) -+#define DITHMODE_R_POS_6BIT (0x1 << 5) -+#define DITHMODE_R_POS_5BIT (0x2 << 5) -+ -+#define DITHMODE_G_POS_MASK (0x3 << 3) -+#define DITHMODE_G_POS_SHIFT (3) -+#define DITHMODE_G_POS_8BIT (0x0 << 3) -+#define DITHMODE_G_POS_6BIT (0x1 << 3) -+#define DITHMODE_G_POS_5BIT (0x2 << 3) -+ -+#define DITHMODE_B_POS_MASK (0x3 << 1) -+#define DITHMODE_B_POS_SHIFT (1) -+#define DITHMODE_B_POS_8BIT (0x0 << 1) -+#define DITHMODE_B_POS_6BIT (0x1 << 1) -+#define DITHMODE_B_POS_5BIT (0x2 << 1) -+ -+#define DITHMODE_DITH_EN (1 << 0) -+ -+#define WPALCON (0x1A0) -+ -+#define WPALCON_W4PAL_16BPP_A555 (1 << 8) -+#define WPALCON_W3PAL_16BPP_A555 (1 << 7) -+#define WPALCON_W2PAL_16BPP_A555 (1 << 6) -+ -+/* Palette registers */ -+ -+#define WIN2_PAL(_entry) (0x300 + ((_entry) * 2)) -+#define WIN3_PAL(_entry) (0x320 + ((_entry) * 2)) -+#define WIN4_PAL(_entry) (0x340 + ((_entry) * 2)) -+#define WIN0_PAL(_entry) (0x400 + ((_entry) * 4)) -+#define WIN1_PAL(_entry) (0x800 + ((_entry) * 4)) -+ -+/* system specific implementation code for palette sizes, and other -+ * information that changes depending on which architecture is being -+ * compiled. -+*/ -+ -+/* return true if window _win has OSD register D */ -+#define s3c_fb_has_osd_d(_win) ((_win) != 4 && (_win) != 0) -+ -+static inline unsigned int s3c_fb_win_pal_size(unsigned int win) -+{ -+ if (win < 2) -+ return 256; -+ if (win < 4) -+ return 16; -+ if (win == 4) -+ return 4; -+ -+ BUG(); /* shouldn't get here */ -+} -+ -+static inline int s3c_fb_validate_win_bpp(unsigned int win, unsigned int bpp) -+{ -+ /* all windows can do 1/2 bpp */ -+ -+ if ((bpp == 25 || bpp == 19) && win == 0) -+ return 0; /* win 0 does not have 19 or 25bpp modes */ -+ -+ if (bpp == 4 && win == 4) -+ return 0; -+ -+ if (bpp == 8 && (win >= 3)) -+ return 0; /* win 3/4 cannot do 8bpp in any mode */ -+ -+ return 1; -+} -+ -+static inline unsigned int s3c_fb_pal_reg(unsigned int window, int reg) -+{ -+ switch (window) { -+ case 0: return WIN0_PAL(reg); -+ case 1: return WIN1_PAL(reg); -+ case 2: return WIN2_PAL(reg); -+ case 3: return WIN3_PAL(reg); -+ case 4: return WIN4_PAL(reg); -+ } -+ -+ BUG(); -+} -+ -+static inline int s3c_fb_pal_is16(unsigned int window) -+{ -+ return window > 1; -+} -+ -+struct s3c_fb_palette { -+ struct fb_bitfield r; -+ struct fb_bitfield g; -+ struct fb_bitfield b; -+ struct fb_bitfield a; -+}; -+ -+static inline void s3c_fb_init_palette(unsigned int window, -+ struct s3c_fb_palette *palette) -+{ -+ if (window < 2) { -+ /* Windows 0/1 are 8/8/8 or A/8/8/8 */ -+ palette->r.offset = 16; -+ palette->r.length = 8; -+ palette->g.offset = 8; -+ palette->g.length = 8; -+ palette->b.offset = 0; -+ palette->b.length = 8; -+ } else { -+ /* currently we assume RGB 5/6/5 */ -+ palette->r.offset = 11; -+ palette->r.length = 5; -+ palette->g.offset = 5; -+ palette->g.length = 6; -+ palette->b.offset = 0; -+ palette->b.length = 5; -+ } -+} -+ -+/* Notes on per-window bpp settings -+ * -+ * Value Win0 Win1 Win2 Win3 Win 4 -+ * 0000 1(P) 1(P) 1(P) 1(P) 1(P) -+ * 0001 2(P) 2(P) 2(P) 2(P) 2(P) -+ * 0010 4(P) 4(P) 4(P) 4(P) -none- -+ * 0011 8(P) 8(P) -none- -none- -none- -+ * 0100 -none- 8(A232) 8(A232) -none- -none- -+ * 0101 16(565) 16(565) 16(565) 16(565) 16(565) -+ * 0110 -none- 16(A555) 16(A555) 16(A555) 16(A555) -+ * 0111 16(I555) 16(I565) 16(I555) 16(I555) 16(I555) -+ * 1000 18(666) 18(666) 18(666) 18(666) 18(666) -+ * 1001 -none- 18(A665) 18(A665) 18(A665) 16(A665) -+ * 1010 -none- 19(A666) 19(A666) 19(A666) 19(A666) -+ * 1011 24(888) 24(888) 24(888) 24(888) 24(888) -+ * 1100 -none- 24(A887) 24(A887) 24(A887) 24(A887) -+ * 1101 -none- 25(A888) 25(A888) 25(A888) 25(A888) -+ * 1110 -none- -none- -none- -none- -none- -+ * 1111 -none- -none- -none- -none- -none- -+*/ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/regs-irq.h -@@ -0,0 +1,20 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/regs-irq.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C64XX - IRQ register definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_REGS_IRQ_H -+#define __ASM_ARCH_REGS_IRQ_H __FILE__ -+ -+#include <asm/hardware/vic.h> -+ -+#endif /* __ASM_ARCH_6400_REGS_IRQ_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/system.h -@@ -0,0 +1,44 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/system.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C6400 - system implementation -+ */ -+ -+#ifndef __ASM_ARCH_SYSTEM_H -+#define __ASM_ARCH_SYSTEM_H __FILE__ -+ -+#include <linux/io.h> -+#include <mach/map.h> -+ -+#include <plat/regs-sys.h> -+#include <plat/regs-syscon-power.h> -+ -+static void arch_idle(void) -+{ -+ unsigned long flags; -+ u32 mode; -+ -+ /* ensure that if we execute the cpu idle sequence that we -+ * go into idle mode instead of powering off. */ -+ -+ local_irq_save(flags); -+ mode = __raw_readl(S3C64XX_PWR_CFG); -+ mode &= ~S3C64XX_PWRCFG_CFG_WFI_MASK; -+ mode |= S3C64XX_PWRCFG_CFG_WFI_IDLE; -+ __raw_writel(mode, S3C64XX_PWR_CFG); -+ -+ local_irq_restore(flags); -+ -+ cpu_do_idle(); -+} -+ -+static void arch_reset(char mode) -+{ -+ /* nothing here yet */ -+} -+ -+#endif /* __ASM_ARCH_IRQ_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/tick.h -@@ -0,0 +1,29 @@ -+/* linux/arch/arm/mach-s3c6400/include/mach/tick.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C64XX - Timer tick support definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_TICK_H -+#define __ASM_ARCH_TICK_H __FILE__ -+ -+/* note, the timer interrutps turn up in 2 places, the vic and then -+ * the timer block. We take the VIC as the base at the moment. -+ */ -+static inline u32 s3c24xx_ostimer_pending(void) -+{ -+ u32 pend = __raw_readl(S3C_VA_VIC0 + VIC_RAW_STATUS); -+ return pend & 1 << (IRQ_TIMER4_VIC - S3C64XX_IRQ_VIC0(0)); -+} -+ -+#define TICK_MAX (0xffffffff) -+ -+#endif /* __ASM_ARCH_6400_TICK_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/include/mach/uncompress.h -@@ -0,0 +1,28 @@ -+/* arch/arm/mach-s3c6400/include/mach/uncompress.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C6400 - uncompress code -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_UNCOMPRESS_H -+#define __ASM_ARCH_UNCOMPRESS_H -+ -+#include <mach/map.h> -+#include <plat/uncompress.h> -+ -+static void arch_detect_cpu(void) -+{ -+ /* we do not need to do any cpu detection here at the moment. */ -+ fifo_mask = S3C2440_UFSTAT_TXMASK; -+ fifo_max = 63 << S3C2440_UFSTAT_TXSHIFT; -+} -+ -+#endif /* __ASM_ARCH_UNCOMPRESS_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6400/Kconfig -@@ -0,0 +1,8 @@ -+# arch/arm/mach-s3c6400/Kconfig -+# -+# Copyright 2008 Openmoko, Inc. -+# Simtec Electronics, Ben Dooks <ben@simtec.co.uk> -+# -+# Licensed under GPLv2 -+ -+# Currently nothing here, this will be added later ---- /dev/null -+++ b/arch/arm/mach-s3c6400/Makefile -@@ -0,0 +1,15 @@ -+# arch/arm/mach-s3c6400/Makefile -+# -+# Copyright 2008 Openmoko, Inc. -+# Copyright 2008 Simtec Electronics -+# -+# Licensed under GPLv2 -+ -+obj-y := -+obj-m := -+obj-n := -+obj- := -+ -+# Core support for S3C6400 system -+ -+obj-n += blank.o ---- /dev/null -+++ b/arch/arm/mach-s3c6400/Makefile.boot -@@ -0,0 +1,2 @@ -+ zreladdr-y := 0x50008000 -+params_phys-y := 0x50000100 ---- /dev/null -+++ b/arch/arm/mach-s3c6410/cpu.c -@@ -0,0 +1,101 @@ -+/* linux/arch/arm/mach-s3c6410/cpu.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/list.h> -+#include <linux/timer.h> -+#include <linux/init.h> -+#include <linux/clk.h> -+#include <linux/io.h> -+#include <linux/sysdev.h> -+#include <linux/serial_core.h> -+#include <linux/platform_device.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/map.h> -+#include <asm/mach/irq.h> -+ -+#include <mach/hardware.h> -+#include <asm/irq.h> -+ -+#include <plat/cpu-freq.h> -+#include <plat/regs-serial.h> -+ -+#include <plat/cpu.h> -+#include <plat/devs.h> -+#include <plat/clock.h> -+#include <plat/sdhci.h> -+#include <plat/iic-core.h> -+#include <plat/s3c6400.h> -+#include <plat/s3c6410.h> -+ -+/* Initial IO mappings */ -+ -+static struct map_desc s3c6410_iodesc[] __initdata = { -+}; -+ -+/* s3c6410_map_io -+ * -+ * register the standard cpu IO areas -+*/ -+ -+void __init s3c6410_map_io(void) -+{ -+ iotable_init(s3c6410_iodesc, ARRAY_SIZE(s3c6410_iodesc)); -+ -+ /* initialise device information early */ -+ s3c6410_default_sdhci0(); -+ s3c6410_default_sdhci1(); -+ -+ /* the i2c devices are directly compatible with s3c2440 */ -+ s3c_i2c0_setname("s3c2440-i2c"); -+ s3c_i2c1_setname("s3c2440-i2c"); -+} -+ -+void __init s3c6410_init_clocks(int xtal) -+{ -+ printk(KERN_DEBUG "%s: initialising clocks\n", __func__); -+ s3c24xx_register_baseclocks(xtal); -+ s3c64xx_register_clocks(); -+ s3c6400_register_clocks(); -+ s3c6400_setup_clocks(); -+} -+ -+void __init s3c6410_init_irq(void) -+{ -+ /* VIC0 is missing IRQ7, VIC1 is fully populated. */ -+ s3c64xx_init_irq(~0 & ~(1 << 7), ~0); -+} -+ -+struct sysdev_class s3c6410_sysclass = { -+ .name = "s3c6410-core", -+}; -+ -+static struct sys_device s3c6410_sysdev = { -+ .cls = &s3c6410_sysclass, -+}; -+ -+static int __init s3c6410_core_init(void) -+{ -+ return sysdev_class_register(&s3c6410_sysclass); -+} -+ -+core_initcall(s3c6410_core_init); -+ -+int __init s3c6410_init(void) -+{ -+ printk("S3C6410: Initialising architecture\n"); -+ -+ return sysdev_register(&s3c6410_sysdev); -+} ---- /dev/null -+++ b/arch/arm/mach-s3c6410/include/mach/om-gta03.h -@@ -0,0 +1,91 @@ -+/* -+ * GTA03 GPIO Mappings -+ * -+ * (C) 2008 by Openmoko Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#ifndef _OM_GTA03_H -+#define _OM_GTA03_H -+ -+#include <mach/gpio.h> -+#include <mach/irqs.h> -+#include <linux/mfd/pcf50633/core.h> -+ -+extern struct pcf50633_platform_data om_gta03_pcf_pdata; -+ -+/* ATAG_REVISION from bootloader */ -+#define GTA03v1_SYSTEM_REV 0x00000001 -+ -+#define GTA03_GPIO_VIBRATOR_ON S3C64XX_GPF(13) -+#define GTA03_GPIO_CLKOUT S3C64XX_GPF(14) -+ -+#define GTA03_GPIO_ACCEL_MISO S3C64XX_GPC(0) -+#define GTA03_GPIO_ACCEL_CLK S3C64XX_GPC(1) -+#define GTA03_GPIO_ACCEL_MOSI S3C64XX_GPC(2) -+ -+#define GTA03_GPIO_LCM_MISO S3C64XX_GPC(4) -+#define GTA03_GPIO_LCM_CLK S3C64XX_GPC(5) -+#define GTA03_GPIO_LCM_MOSI S3C64XX_GPC(6) -+#define GTA03_GPIO_LCM_CS S3C64XX_GPC(7) -+ -+#define GTA03_GPIO_BTPCM_SHARED_SCLK S3C64XX_GPE(0) -+#define GTA03_GPIO_BTPCM_SHARED_EXTCLK S3C64XX_GPE(1) -+#define GTA03_GPIO_BTPCM_SHARED_FSYNC S3C64XX_GPE(2) -+#define GTA03_GPIO_BTPCM_SHARED_SIN S3C64XX_GPE(3) -+#define GTA03_GPIO_BTPCM_SHARED_SOUT S3C64XX_GPE(4) -+ -+#define GTA03_GPIO_WLAN_RESET S3C64XX_GPH(6) -+#define GTA03_GPIO_HDQ S3C64XX_GPH(7) -+#define GTA03_GPIO_WLAN_PWRDN S3C64XX_GPH(8) -+ -+#define GTA03_GPIO_VERSION2 S3C64XX_GPI(0) -+#define GTA03_GPIO_VERSION1 S3C64XX_GPI(1) -+#define GTA03_GPIO_VERSION0 S3C64XX_GPI(8) -+ -+#define GTA03_GPIO_NWLAN_POWER S3C64XX_GPK(0) -+#define GTA03_GPIO_MODEN_ON S3C64XX_GPK(2) -+ -+#define GTA03_GPIO_TP_RESET S3C64XX_GPM(0) -+#define GTA03_GPIO_GPS_LNA_EN S3C64XX_GPM(2) -+ -+#define GTA03_GPIO_USB_FLT S3C64XX_GPM(4) -+#define GTA03_GPIO_USB_OC S3C64XX_GPM(5) -+ -+#define GTA03_GPIO_ACCEL_INT1 S3C64XX_GPN(0) -+#define GTA03_GPIO_KEY_MINUS S3C64XX_GPN(1) -+#define GTA03_GPIO_KEY_PLUS S3C64XX_GPN(2) -+#define GTA03_GPIO_PWR_IND S3C64XX_GPN(3) -+#define GTA03_GPIO_PWR_IRQ S3C64XX_GPN(4) -+#define GTA03_GPIO_TOUCH S3C64XX_GPN(5) -+#define GTA03_GPIO_JACK_INSERT S3C64XX_GPN(6) -+#define GTA03_GPIO_GPS_INT S3C64XX_GPN(7) -+#define GTA03_GPIO_HOLD S3C64XX_GPN(8) -+#define GTA03_GPIO_WLAN_WAKEUP S3C64XX_GPN(9) -+#define GTA03_GPIO_ACCEL_INT2 S3C64XX_GPN(10) -+#define GTA03_GPIO_IO1 S3C64XX_GPN(11) -+#define GTA03_GPIO_NONKEYWAKE S3C64XX_GPN(12) -+ -+#define GTA03_GPIO_N_MODEM_RESET S3C64XX_GPO(1) -+ -+#define GTA03_IRQ_GSENSOR_1 S3C_EINT(0) -+#define GTA03_IRQ_KEY_MINUS S3C_EINT(1) -+#define GTA03_IRQ_KEY_PLUS S3C_EINT(2) -+#define GTA03_IRQ_PWR_IND S3C_EINT(3) -+#define GTA03_IRQ_PMU S3C_EINT(4) -+#define GTA03_IRQ_TOUCH S3C_EINT(5) -+#define GTA03_IRQ_JACK_INSERT S3C_EINT(6) -+#define GTA03_IRQ_GPS_INT S3C_EINT(7) -+#define GTA03_IRQ_NHOLD S3C_EINT(8) -+#define GTA03_IRQ_WLAN_WAKEUP S3C_EINT(9) -+#define GTA03_IRQ_GSENSOR_2 S3C_EINT(10) -+#define GTA03_IRQ_IO1 S3C_EINT(11) -+#define GTA03_IRQ_NONKEYWAKE S3C_EINT(12) -+ -+#endif /* _OM_GTA03_H */ ---- /dev/null -+++ b/arch/arm/mach-s3c6410/Kconfig -@@ -0,0 +1,80 @@ -+# arch/arm/mach-s3c6410/Kconfig -+# -+# Copyright 2008 Openmoko, Inc. -+# Copyright 2008 Simtec Electronics -+# -+# Licensed under GPLv2 -+ -+# Configuration options for the S3C6410 CPU -+ -+config CPU_S3C6410 -+ bool -+ select CPU_S3C6400_INIT -+ select CPU_S3C6400_CLOCK -+ help -+ Enable S3C6410 CPU support -+ -+config S3C6410_SETUP_SDHCI -+ bool -+ help -+ Internal helper functions for S3C6410 based SDHCI systems -+ -+config MACH_SMDK6410 -+ bool "SMDK6410" -+ select CPU_S3C6410 -+ select S3C_DEV_HSMMC -+ select S3C_DEV_HSMMC1 -+ select S3C_DEV_I2C1 -+ select S3C_DEV_FB -+ select S3C6410_SETUP_SDHCI -+ select S3C64XX_SETUP_I2C1 -+ select S3C64XX_SETUP_FB_24BPP -+ help -+ Machine support for the Samsung SMDK6410 -+ -+# At least some of the SMDK6410s were shipped with the card detect -+# for the MMC/SD slots connected to the same input. This means that -+# either the boards need to be altered to have channel0 to an alternate -+# configuration or that only one slot can be used. -+ -+choice -+ prompt "SMDK6410 MMC/SD slot setup" -+ depends on MACH_SMDK6410 -+ -+config SMDK6410_SD_CH0 -+ bool "Use channel 0 only" -+ depends on MACH_SMDK6410 -+ help -+ Select CON7 (channel 0) as the MMC/SD slot, as -+ at least some SMDK6410 boards come with the -+ resistors fitted so that the card detects for -+ channels 0 and 1 are the same. -+ -+config SMDK6410_SD_CH1 -+ bool "Use channel 1 only" -+ depends on MACH_SMDK6410 -+ help -+ Select CON6 (channel 1) as the MMC/SD slot, as -+ at least some SMDK6410 boards come with the -+ resistors fitted so that the card detects for -+ channels 0 and 1 are the same. -+ -+endchoice -+ -+config MACH_OPENMOKO_GTA03 -+ bool "Openmoko GTA03 Phone" -+ select CPU_S3C6410 -+ select S3C_DEV_HSMMC -+ select S3C_DEV_HSMMC1 -+ select S3C_DEV_I2C1 -+ select S3C6410_SETUP_SDHCI -+ select S3C64XX_SETUP_I2C1 -+ select S3C_DEV_FB -+ select S3C64XX_SETUP_FB_24BPP -+# select SENSORS_PCF50633 -+ select POWER_SUPPLY -+# select GTA02_HDQ -+ select MACH_NEO1973 -+ help -+ Machine support for the Openmoko GTA03 Phone -+ ---- /dev/null -+++ b/arch/arm/mach-s3c6410/mach-om-gta03.c -@@ -0,0 +1,654 @@ -+/* linux/arch/arm/mach-s3c6410/mach-om_gta03.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Andy Green <andy@openmoko.org> -+ * -+ * based on mach_om_gta03.c which is -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/list.h> -+#include <linux/timer.h> -+#include <linux/init.h> -+#include <linux/serial_core.h> -+#include <linux/platform_device.h> -+#include <linux/io.h> -+#include <linux/i2c.h> -+#include <linux/fb.h> -+#include <linux/delay.h> -+#include <linux/lis302dl.h> -+ -+#include <video/platform_lcd.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/map.h> -+#include <asm/mach/irq.h> -+ -+#include <mach/hardware.h> -+#include <mach/map.h> -+#include <mach/regs-fb.h> -+ -+#include <asm/irq.h> -+#include <asm/mach-types.h> -+ -+#include <plat/regs-serial.h> -+#include <plat/iic.h> -+#include <plat/fb.h> -+#include <plat/gpio-cfg.h> -+#include <plat/pm.h> -+ -+#include <plat/s3c6410.h> -+#include <plat/clock.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+ -+/* #include <plat/udc.h> */ -+#include <linux/i2c.h> -+#include <linux/backlight.h> -+#include <linux/regulator/machine.h> -+ -+#include <mach/om-gta03.h> -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/mbc.h> -+#include <linux/mfd/pcf50633/adc.h> -+#include <linux/mfd/pcf50633/gpio.h> -+#include <linux/mfd/pcf50633/led.h> -+ -+#define UCON S3C2410_UCON_DEFAULT | S3C2410_UCON_UCLK -+#define ULCON S3C2410_LCON_CS8 | S3C2410_LCON_PNONE | S3C2410_LCON_STOPB -+#define UFCON S3C2410_UFCON_RXTRIG8 | S3C2410_UFCON_FIFOMODE -+ -+static struct s3c2410_uartcfg om_gta03_uartcfgs[] __initdata = { -+ [0] = { -+ .hwport = 0, -+ .flags = 0, -+ .ucon = 0x3c5, -+ .ulcon = 0x03, -+ .ufcon = 0x51, -+ }, -+ [1] = { -+ .hwport = 1, -+ .flags = 0, -+ .ucon = 0x3c5, -+ .ulcon = 0x03, -+ .ufcon = 0x51, -+ }, -+ [2] = { -+ .hwport = 2, -+ .flags = 0, -+ .ucon = 0x3c5, -+ .ulcon = 0x03, -+ .ufcon = 0x51, -+ }, -+ [3] = { -+ .hwport = 3, -+ .flags = 0, -+ .ucon = 0x3c5, -+ .ulcon = 0x03, -+ .ufcon = 0x51, -+ }, -+}; -+ -+ -+/* -+ * Situation is that Linux SPI can't work in an interrupt context, so we -+ * implement our own bitbang here. Arbitration is needed because not only -+ * can this interrupt happen at any time even if foreground wants to use -+ * the bitbang API from Linux, but multiple motion sensors can be on the -+ * same SPI bus, and multiple interrupts can happen. -+ * -+ * Foreground / interrupt arbitration is okay because the interrupts are -+ * disabled around all the foreground SPI code. -+ * -+ * Interrupt / Interrupt arbitration is evidently needed, otherwise we -+ * lose edge-triggered service after a while due to the two sensors sharing -+ * the SPI bus having irqs at the same time eventually. -+ * -+ * Servicing is typ 75 - 100us at 400MHz. -+ */ -+ -+/* #define DEBUG_SPEW_MS */ -+#define MG_PER_SAMPLE 18 -+ -+struct lis302dl_platform_data lis302_pdata; -+ -+/* -+ * generic SPI RX and TX bitbang -+ * only call with interrupts off! -+ */ -+ -+static void __gta03_lis302dl_bitbang(struct lis302dl_info *lis, u8 *tx, -+ int tx_bytes, u8 *rx, int rx_bytes) -+{ -+ struct lis302dl_platform_data *pdata = lis->pdata; -+ int n; -+ u8 shifter = 0; -+ -+ gpio_direction_output(pdata->pin_chip_select, 1); -+ gpio_direction_output(pdata->pin_clk, 1); -+ gpio_direction_output(pdata->pin_chip_select, 0); -+ -+ /* send the register index, r/w and autoinc bits */ -+ for (n = 0; n < (tx_bytes << 3); n++) { -+ if (!(n & 7)) -+ shifter = ~tx[n >> 3]; -+ gpio_direction_output(pdata->pin_clk, 0); -+ gpio_direction_output(pdata->pin_mosi, !(shifter & 0x80)); -+ gpio_direction_output(pdata->pin_clk, 1); -+ shifter <<= 1; -+ } -+ -+ for (n = 0; n < (rx_bytes << 3); n++) { /* 8 bits each */ -+ gpio_direction_output(pdata->pin_clk, 0); -+ shifter <<= 1; -+ if (gpio_direction_input(pdata->pin_miso)) -+ shifter |= 1; -+ if ((n & 7) == 7) -+ rx[n >> 3] = shifter; -+ gpio_direction_output(pdata->pin_clk, 1); -+ } -+ gpio_direction_output(pdata->pin_chip_select, 1); -+} -+ -+ -+static int gta03_lis302dl_bitbang_read_reg(struct lis302dl_info *lis, u8 reg) -+{ -+ u8 data = 0xc0 | reg; /* read, autoincrement */ -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ __gta03_lis302dl_bitbang(lis, &data, 1, &data, 1); -+ -+ local_irq_restore(flags); -+ -+ return data; -+} -+ -+static void gta03_lis302dl_bitbang_write_reg(struct lis302dl_info *lis, u8 reg, -+ u8 val) -+{ -+ u8 data[2] = { 0x00 | reg, val }; /* write, no autoincrement */ -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ __gta03_lis302dl_bitbang(lis, &data[0], 2, NULL, 0); -+ -+ local_irq_restore(flags); -+ -+} -+ -+ -+void gta03_lis302dl_suspend_io(struct lis302dl_info *lis, int resume) -+{ -+ struct lis302dl_platform_data *pdata = lis->pdata; -+ -+ if (!resume) { -+ /* -+ * we don't want to power them with a high level -+ * because GSENSOR_3V3 is not up during suspend -+ */ -+ gpio_direction_output(pdata->pin_chip_select, 0); -+ gpio_direction_output(pdata->pin_clk, 0); -+ gpio_direction_output(pdata->pin_mosi, 0); -+ s3c_gpio_setpull(pdata->pin_miso, S3C_GPIO_PULL_DOWN); -+ -+ return; -+ } -+ -+ /* back to normal */ -+ gpio_direction_output(pdata->pin_chip_select, 1); -+ gpio_direction_output(pdata->pin_clk, 1); -+ s3c_gpio_setpull(pdata->pin_miso, S3C_GPIO_PULL_NONE); -+ -+ s3c_gpio_cfgpin(pdata->pin_chip_select, S3C_GPIO_SFN(1)); -+ s3c_gpio_cfgpin(pdata->pin_clk, S3C_GPIO_SFN(1)); -+ s3c_gpio_cfgpin(pdata->pin_mosi, S3C_GPIO_SFN(1)); -+ s3c_gpio_cfgpin(pdata->pin_miso, S3C_GPIO_SFN(0)); -+ -+} -+ -+struct lis302dl_platform_data lis302_pdata = { -+ .name = "lis302", -+ .pin_chip_select= S3C64XX_GPC(3), /* NC */ -+ .pin_clk = GTA03_GPIO_ACCEL_CLK, -+ .pin_mosi = GTA03_GPIO_ACCEL_MOSI, -+ .pin_miso = GTA03_GPIO_ACCEL_MISO, -+ .interrupt = GTA03_IRQ_GSENSOR_1, -+ .open_drain = 0, -+ .lis302dl_bitbang = __gta03_lis302dl_bitbang, -+ .lis302dl_bitbang_reg_read = gta03_lis302dl_bitbang_read_reg, -+ .lis302dl_bitbang_reg_write = gta03_lis302dl_bitbang_write_reg, -+ .lis302dl_suspend_io = gta03_lis302dl_suspend_io, -+}; -+ -+static struct platform_device s3c_device_spi_acc1 = { -+ .name = "lis302dl", -+ .id = 1, -+ .dev = { -+ .platform_data = &lis302_pdata, -+ }, -+}; -+ -+ -+ -+/* framebuffer and LCD setup. */ -+ -+/* GPF15 = LCD backlight control -+ * GPF13 => Panel power -+ * GPN5 = LCD nRESET signal -+ * PWM_TOUT1 => backlight brightness -+ */ -+ -+static void om_gta03_lcd_power_set(struct plat_lcd_data *pd, -+ unsigned int power) -+{ -+ -+} -+ -+static struct plat_lcd_data om_gta03_lcd_power_data = { -+ .set_power = om_gta03_lcd_power_set, -+}; -+ -+static struct platform_device om_gta03_lcd_powerdev = { -+ .name = "platform-lcd", -+ .dev.parent = &s3c_device_fb.dev, -+ .dev.platform_data = &om_gta03_lcd_power_data, -+}; -+ -+static struct s3c_fb_pd_win om_gta03_fb_win0 = { -+ /* this is to ensure we use win0 */ -+ .win_mode = { -+ .pixclock = 40816, -+ .left_margin = 8, -+ .right_margin = 16, -+ .upper_margin = 2, -+ .lower_margin = 16, -+ .hsync_len = 8, -+ .vsync_len = 2, -+ .xres = 640, -+ .yres = 480, -+ }, -+ .max_bpp = 32, -+ .default_bpp = 16, -+}; -+ -+static struct s3c_fb_platdata om_gta03_lcd_pdata __initdata = { -+ .setup_gpio = s3c64xx_fb_gpio_setup_24bpp, -+ .win[0] = &om_gta03_fb_win0, -+ .vidcon0 = VIDCON0_VIDOUT_RGB | VIDCON0_PNRMODE_RGB, -+ .vidcon1 = VIDCON1_INV_HSYNC | VIDCON1_INV_VSYNC, -+}; -+ -+ -+struct map_desc om_gta03_6410_iodesc[] = {}; -+ -+static struct resource om_gta03_button_resources[] = { -+ [0] = { -+ .start = 0, -+ .end = 0, -+ }, -+ [1] = { -+ .start = GTA03_GPIO_HOLD, -+ .end = GTA03_GPIO_HOLD, -+ }, -+ [2] = { -+ .start = GTA03_GPIO_JACK_INSERT, -+ .end = GTA03_GPIO_JACK_INSERT, -+ }, -+ [3] = { -+ .start = GTA03_GPIO_KEY_PLUS, -+ .end = GTA03_GPIO_KEY_PLUS, -+ }, -+ [4] = { -+ .start = GTA03_GPIO_KEY_MINUS, -+ .end = GTA03_GPIO_KEY_MINUS, -+ }, -+}; -+ -+static struct platform_device om_gta03_button_dev = { -+ .name = "neo1973-button", -+ .num_resources = ARRAY_SIZE(om_gta03_button_resources), -+ .resource = om_gta03_button_resources, -+}; -+ -+ -+/********************** PMU ***************************/ -+/* -+ * GTA03 PMU Mapping info -+ * -+ * name maxcurr default Nom consumers -+ * -+ * AUTO 1100mA ON 3.3V 3.3V Main 3.3V rail -+ * DOWN1 500mA ON 1.2V 1.2V CPU VddARM, VddINT, VddMPLL, VddOTGI -+ * DOWN2 500mA ON 1.8V 1.8V CPU VddAlive via LDO, Memories, WLAN -+ * LED 25mA OFF 18V Backlight -+ * HCLDO 200mA OFF 2.8V Camera 2V8 -+ * LDO1 50mA ON 3.3V 3.3V Accel -+ * LDO2 50mA OFF 1.5V Camera 1V5 -+ * LDO3 50mA OFF 3.3V CODEC 3.3V -+ * LDO4 150mA ON 2.8V 2.7V uSD power -+ * LDO5 150mA OFF 3.0V GPS 3V -+ * LDO6 50mA ON 3.0V 3.0V LCM 3V -+ * -+ */ -+ -+ -+/* PMU driver info */ -+ -+ -+static struct regulator_consumer_supply ldo4_consumers[] = { -+ { -+ .dev = &s3c_device_hsmmc0.dev, -+ .supply = "SD_3V", -+ }, -+}; -+ -+static struct platform_device om_gta03_features_dev = { -+ .name = "om-gta03", -+}; -+ -+static struct regulator_consumer_supply ldo5_consumers[] = { -+ { -+ .dev = &om_gta03_features_dev.dev, -+ .supply = "RF_3V", -+ }, -+}; -+ -+ -+static void om_gta03_pmu_event_callback(struct pcf50633 *pcf, int irq) -+{ -+#if 0 -+ if (irq == PCF50633_IRQ_USBINS) { -+ schedule_delayed_work(>a02_charger_work, -+ GTA02_CHARGER_CONFIGURE_TIMEOUT); -+ return; -+ } else if (irq == PCF50633_IRQ_USBREM) { -+ cancel_delayed_work_sync(>a02_charger_work); -+ pcf50633_mbc_usb_curlim_set(pcf, 0); -+ gta02_usb_vbus_draw = 0; -+ } -+ -+ bq27000_charging_state_change(&bq27000_battery_device); -+#endif -+} -+ -+ -+static void om_gta03_pcf50633_attach_child_devices(struct pcf50633 *pcf); -+static void om_gta03_pmu_regulator_registered(struct pcf50633 *pcf, int id); -+ -+struct pcf50633_platform_data om_gta03_pcf_pdata = { -+ -+ .resumers = { -+ [0] = PCF50633_INT1_USBINS | -+ PCF50633_INT1_USBREM | -+ PCF50633_INT1_ALARM, -+ [1] = PCF50633_INT2_ONKEYF, -+ [2] = PCF50633_INT3_ONKEY1S -+ }, -+ -+ .reg_init_data = { -+ /* GTA03: Main 3.3V rail */ -+ [PCF50633_REGULATOR_AUTO] = { -+ .constraints = { -+ .min_uV = 3300000, -+ .max_uV = 3300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ .state_mem = { -+ .enabled = 1, -+ }, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ /* GTA03: CPU core power */ -+ [PCF50633_REGULATOR_DOWN1] = { -+ .constraints = { -+ .min_uV = 900000, -+ .max_uV = 1200000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ /* GTA03: Memories */ -+ [PCF50633_REGULATOR_DOWN2] = { -+ .constraints = { -+ .min_uV = 1800000, -+ .max_uV = 1800000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ .state_mem = { -+ .enabled = 1, -+ }, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ /* GTA03: Camera 2V8 */ -+ [PCF50633_REGULATOR_HCLDO] = { -+ .constraints = { -+ .min_uV = 2800000, -+ .max_uV = 2800000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ }, -+ .num_consumer_supplies = 0, -+/* .consumer_supplies = hcldo_consumers, */ -+ }, -+ -+ /* GTA03: Accel 3V3 */ -+ [PCF50633_REGULATOR_LDO1] = { -+ .constraints = { -+ .min_uV = 3300000, -+ .max_uV = 3300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ /* GTA03: Camera 1V5 */ -+ [PCF50633_REGULATOR_LDO2] = { -+ .constraints = { -+ .min_uV = 1500000, -+ .max_uV = 1500000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ /* GTA03: Codec 3.3V */ -+ [PCF50633_REGULATOR_LDO3] = { -+ .constraints = { -+ .min_uV = 3300000, -+ .max_uV = 3300000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ /* GTA03: uSD Power */ -+ [PCF50633_REGULATOR_LDO4] = { -+ .constraints = { -+ .min_uV = 3000000, -+ .max_uV = 3000000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 1, -+ .consumer_supplies = ldo4_consumers, -+ }, -+ /* GTA03: GPS 3V */ -+ [PCF50633_REGULATOR_LDO5] = { -+ .constraints = { -+ .min_uV = 3000000, -+ .max_uV = 3000000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .apply_uV = 1, -+ }, -+ .num_consumer_supplies = 1, -+ .consumer_supplies = ldo5_consumers, -+ }, -+ /* GTA03: LCM 3V */ -+ [PCF50633_REGULATOR_LDO6] = { -+ .constraints = { -+ .min_uV = 3000000, -+ .max_uV = 3000000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .state_mem = { -+ .enabled = 1, -+ }, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ /* power for memories in suspend */ -+ [PCF50633_REGULATOR_MEMLDO] = { -+ .constraints = { -+ .min_uV = 1800000, -+ .max_uV = 1800000, -+ .valid_modes_mask = REGULATOR_MODE_NORMAL, -+ .state_mem = { -+ .enabled = 1, -+ }, -+ }, -+ .num_consumer_supplies = 0, -+ }, -+ -+ }, -+ .probe_done = om_gta03_pcf50633_attach_child_devices, -+ .regulator_registered = om_gta03_pmu_regulator_registered, -+ .mbc_event_callback = om_gta03_pmu_event_callback, -+}; -+ -+ -+static struct i2c_board_info om_gta03_i2c_devs[] __initdata = { -+ { -+ I2C_BOARD_INFO("pcf50633", 0x73), -+ .irq = GTA03_IRQ_PMU, -+ .platform_data = &om_gta03_pcf_pdata, -+ }, -+ { -+ I2C_BOARD_INFO("pcap7200", 0x0a), -+ .irq = GTA03_IRQ_TOUCH, -+ }, -+ -+}; -+ -+ -+static struct platform_device *om_gta03_devices[] __initdata = { -+ &s3c_device_fb, -+ &s3c_device_i2c0, -+ &s3c_device_hsmmc1, /* SDIO to WLAN */ -+}; -+ -+ -+static void om_gta03_pmu_regulator_registered(struct pcf50633 *pcf, int id) -+{ -+ struct platform_device *regulator, *pdev; -+ -+ regulator = pcf->pmic.pdev[id]; -+ -+ switch(id) { -+ case PCF50633_REGULATOR_LDO4: -+ pdev = &s3c_device_hsmmc0; -+ break; -+ case PCF50633_REGULATOR_LDO5: /* GPS regulator */ -+ pdev = &om_gta03_features_dev; -+ break; -+ case PCF50633_REGULATOR_LDO6: -+ pdev = &om_gta03_lcd_powerdev; -+ break; -+ default: -+ return; -+ } -+ -+ pdev->dev.parent = ®ulator->dev; -+ platform_device_register(pdev); -+} -+ -+static struct platform_device *om_gta03_devices_pmu_children[] = { -+ &om_gta03_button_dev, -+ &s3c_device_spi_acc1, /* relies on PMU reg for power */ -+}; -+ -+/* this is called when pc50633 is probed, unfortunately quite late in the -+ * day since it is an I2C bus device. Here we can belatedly define some -+ * platform devices with the advantage that we can mark the pcf50633 as the -+ * parent. This makes them get suspended and resumed with their parent -+ * the pcf50633 still around. -+ */ -+ -+static void om_gta03_pcf50633_attach_child_devices(struct pcf50633 *pcf) -+{ -+ int n; -+ -+ for (n = 0; n < ARRAY_SIZE(om_gta03_devices_pmu_children); n++) -+ om_gta03_devices_pmu_children[n]->dev.parent = pcf->dev; -+ -+ platform_add_devices(om_gta03_devices_pmu_children, -+ ARRAY_SIZE(om_gta03_devices_pmu_children)); -+ -+ /* Switch on backlight. Qi does not do it for us */ -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDDIM, 0x01); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 0x01); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDOUT, 0x3f); -+ -+} -+ -+ -+ -+extern void s3c64xx_init_io(struct map_desc *, int); -+ -+static void __init om_gta03_map_io(void) -+{ -+ s3c64xx_init_io(om_gta03_6410_iodesc, ARRAY_SIZE(om_gta03_6410_iodesc)); -+ s3c24xx_init_clocks(12000000); -+ s3c24xx_init_uarts(om_gta03_uartcfgs, ARRAY_SIZE(om_gta03_uartcfgs)); -+} -+ -+static void __init om_gta03_machine_init(void) -+{ -+ s3c_pm_init(); -+ -+ s3c_i2c0_set_platdata(NULL); -+ s3c_fb_set_platdata(&om_gta03_lcd_pdata); -+ -+ s3c_gpio_setpull(S3C64XX_GPH(0), S3C_GPIO_PULL_UP); -+ s3c_gpio_setpull(S3C64XX_GPH(1), S3C_GPIO_PULL_UP); -+ s3c_gpio_setpull(S3C64XX_GPH(2), S3C_GPIO_PULL_UP); -+ s3c_gpio_setpull(S3C64XX_GPH(3), S3C_GPIO_PULL_UP); -+ s3c_gpio_setpull(S3C64XX_GPH(4), S3C_GPIO_PULL_UP); -+ s3c_gpio_setpull(S3C64XX_GPH(5), S3C_GPIO_PULL_UP); -+ -+ -+ i2c_register_board_info(0, om_gta03_i2c_devs, -+ ARRAY_SIZE(om_gta03_i2c_devs)); -+ -+ platform_add_devices(om_gta03_devices, ARRAY_SIZE(om_gta03_devices)); -+} -+ -+MACHINE_START(OPENMOKO_GTA03, "OM-GTA03") -+ /* Maintainer: Andy Green <andy@openmoko.com> */ -+ .phys_io = S3C_PA_UART & 0xfff00000, -+ .io_pg_offst = (((u32)S3C_VA_UART) >> 18) & 0xfffc, -+ .boot_params = S3C64XX_PA_SDRAM + 0x100, -+ -+ .init_irq = s3c6410_init_irq, -+ .map_io = om_gta03_map_io, -+ .init_machine = om_gta03_machine_init, -+ .timer = &s3c24xx_timer, -+MACHINE_END -+ ---- /dev/null -+++ b/arch/arm/mach-s3c6410/mach-smdk6410.c -@@ -0,0 +1,205 @@ -+/* linux/arch/arm/mach-s3c6410/mach-smdk6410.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/list.h> -+#include <linux/timer.h> -+#include <linux/init.h> -+#include <linux/serial_core.h> -+#include <linux/platform_device.h> -+#include <linux/io.h> -+#include <linux/i2c.h> -+#include <linux/fb.h> -+#include <linux/gpio.h> -+#include <linux/delay.h> -+ -+#include <video/platform_lcd.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/map.h> -+#include <asm/mach/irq.h> -+ -+#include <mach/hardware.h> -+#include <mach/regs-fb.h> -+#include <mach/map.h> -+ -+#include <asm/irq.h> -+#include <asm/mach-types.h> -+ -+#include <plat/regs-serial.h> -+#include <plat/regs-modem.h> -+#include <plat/regs-gpio.h> -+#include <plat/regs-sys.h> -+#include <plat/iic.h> -+#include <plat/fb.h> -+#include <plat/pm.h> -+ -+#include <plat/s3c6410.h> -+#include <plat/clock.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+ -+#define UCON S3C2410_UCON_DEFAULT | S3C2410_UCON_UCLK -+#define ULCON S3C2410_LCON_CS8 | S3C2410_LCON_PNONE | S3C2410_LCON_STOPB -+#define UFCON S3C2410_UFCON_RXTRIG8 | S3C2410_UFCON_FIFOMODE -+ -+static struct s3c2410_uartcfg smdk6410_uartcfgs[] __initdata = { -+ [0] = { -+ .hwport = 0, -+ .flags = 0, -+ .ucon = 0x3c5, -+ .ulcon = 0x03, -+ .ufcon = 0x51, -+ }, -+ [1] = { -+ .hwport = 1, -+ .flags = 0, -+ .ucon = 0x3c5, -+ .ulcon = 0x03, -+ .ufcon = 0x51, -+ }, -+}; -+ -+/* framebuffer and LCD setup. */ -+ -+/* GPF15 = LCD backlight control -+ * GPF13 => Panel power -+ * GPN5 = LCD nRESET signal -+ * PWM_TOUT1 => backlight brightness -+ */ -+ -+static void smdk6410_lcd_power_set(struct plat_lcd_data *pd, -+ unsigned int power) -+{ -+ if (power) { -+ gpio_direction_output(S3C64XX_GPF(13), 1); -+ gpio_direction_output(S3C64XX_GPF(15), 1); -+ -+ /* fire nRESET on power up */ -+ gpio_direction_output(S3C64XX_GPN(5), 0); -+ msleep(10); -+ gpio_direction_output(S3C64XX_GPN(5), 1); -+ msleep(1); -+ } else { -+ gpio_direction_output(S3C64XX_GPF(15), 0); -+ gpio_direction_output(S3C64XX_GPF(13), 0); -+ } -+} -+ -+static struct plat_lcd_data smdk6410_lcd_power_data = { -+ .set_power = smdk6410_lcd_power_set, -+}; -+ -+static struct platform_device smdk6410_lcd_powerdev = { -+ .name = "platform-lcd", -+ .dev.parent = &s3c_device_fb.dev, -+ .dev.platform_data = &smdk6410_lcd_power_data, -+}; -+ -+static struct s3c_fb_pd_win smdk6410_fb_win0 = { -+ /* this is to ensure we use win0 */ -+ .win_mode = { -+ .pixclock = 41094, -+ .left_margin = 8, -+ .right_margin = 13, -+ .upper_margin = 7, -+ .lower_margin = 5, -+ .hsync_len = 3, -+ .vsync_len = 1, -+ .xres = 800, -+ .yres = 480, -+ }, -+ .max_bpp = 32, -+ .default_bpp = 16, -+}; -+ -+/* 405566 clocks per frame => 60Hz refresh requires 24333960Hz clock */ -+static struct s3c_fb_platdata smdk6410_lcd_pdata __initdata = { -+ .setup_gpio = s3c64xx_fb_gpio_setup_24bpp, -+ .win[0] = &smdk6410_fb_win0, -+ .vidcon0 = VIDCON0_VIDOUT_RGB | VIDCON0_PNRMODE_RGB, -+ .vidcon1 = VIDCON1_INV_HSYNC | VIDCON1_INV_VSYNC, -+}; -+ -+struct map_desc smdk6410_iodesc[] = {}; -+ -+static struct platform_device *smdk6410_devices[] __initdata = { -+#ifdef CONFIG_SMDK6410_SD_CH0 -+ &s3c_device_hsmmc0, -+#endif -+#ifdef CONFIG_SMDK6410_SD_CH1 -+ &s3c_device_hsmmc1, -+#endif -+ &s3c_device_i2c0, -+ &s3c_device_i2c1, -+ &s3c_device_fb, -+ &smdk6410_lcd_powerdev, -+}; -+ -+static struct i2c_board_info i2c_devs0[] __initdata = { -+ { I2C_BOARD_INFO("24c08", 0x50), }, -+ { I2C_BOARD_INFO("WM8580", 0X1b), }, -+}; -+ -+static struct i2c_board_info i2c_devs1[] __initdata = { -+ { I2C_BOARD_INFO("24c128", 0x57), }, /* Samsung S524AD0XD1 */ -+}; -+ -+static void __init smdk6410_map_io(void) -+{ -+ u32 tmp; -+ -+ s3c64xx_init_io(smdk6410_iodesc, ARRAY_SIZE(smdk6410_iodesc)); -+ s3c24xx_init_clocks(12000000); -+ s3c24xx_init_uarts(smdk6410_uartcfgs, ARRAY_SIZE(smdk6410_uartcfgs)); -+ -+ /* set the LCD type */ -+ -+ tmp = __raw_readl(S3C64XX_SPCON); -+ tmp &= ~S3C64XX_SPCON_LCD_SEL_MASK; -+ tmp |= S3C64XX_SPCON_LCD_SEL_RGB; -+ __raw_writel(tmp, S3C64XX_SPCON); -+ -+ /* remove the lcd bypass */ -+ tmp = __raw_readl(S3C64XX_MODEM_MIFPCON); -+ tmp &= ~MIFPCON_LCD_BYPASS; -+ __raw_writel(tmp, S3C64XX_MODEM_MIFPCON); -+} -+ -+static void __init smdk6410_machine_init(void) -+{ -+ s3c_pm_init(); -+ -+ s3c_i2c0_set_platdata(NULL); -+ s3c_i2c1_set_platdata(NULL); -+ s3c_fb_set_platdata(&smdk6410_lcd_pdata); -+ -+ i2c_register_board_info(0, i2c_devs0, ARRAY_SIZE(i2c_devs0)); -+ i2c_register_board_info(1, i2c_devs1, ARRAY_SIZE(i2c_devs1)); -+ -+ platform_add_devices(smdk6410_devices, ARRAY_SIZE(smdk6410_devices)); -+} -+ -+MACHINE_START(SMDK6410, "SMDK6410") -+ /* Maintainer: Ben Dooks <ben@fluff.org> */ -+ .phys_io = S3C_PA_UART & 0xfff00000, -+ .io_pg_offst = (((u32)S3C_VA_UART) >> 18) & 0xfffc, -+ .boot_params = S3C64XX_PA_SDRAM + 0x100, -+ -+ .init_irq = s3c6410_init_irq, -+ .map_io = smdk6410_map_io, -+ .init_machine = smdk6410_machine_init, -+ .timer = &s3c24xx_timer, -+MACHINE_END ---- /dev/null -+++ b/arch/arm/mach-s3c6410/Makefile -@@ -0,0 +1,26 @@ -+# arch/arm/plat-s3c6410/Makefile -+# -+# Copyright 2008 Openmoko, Inc. -+# Copyright 2008 Simtec Electronics -+# -+# Licensed under GPLv2 -+ -+obj-y := -+obj-m := -+obj-n := -+obj- := -+ -+# Core support for S3C6410 system -+ -+obj-$(CONFIG_CPU_S3C6410) += cpu.o -+ -+# Helper and device support -+ -+obj-$(CONFIG_S3C6410_SETUP_SDHCI) += setup-sdhci.o -+ -+# machine support -+ -+obj-$(CONFIG_MACH_SMDK6410) += mach-smdk6410.o -+obj-$(CONFIG_MACH_OPENMOKO_GTA03) += mach-om-gta03.o \ -+ om-gta03-features.o -+ ---- /dev/null -+++ b/arch/arm/mach-s3c6410/om-gta03-features.c -@@ -0,0 +1,344 @@ -+/* -+ * Support for features of Openmoko GTA03 -+ * -+ * (C) 2008 by Openmoko Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * All rights reserved. -+ * -+ * Somewhat based on the GTA01 / 02 neo1973_pm_ stuff mainly by Harald Welte -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/delay.h> -+#include <linux/platform_device.h> -+ -+#include <mach/hardware.h> -+#include <mach/om-gta03.h> -+#include <asm/mach-types.h> -+ -+#include <linux/regulator/consumer.h> -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/gpio.h> -+#include <linux/mmc/host.h> -+ -+#include <plat/sdhci.h> -+#include <plat/devs.h> -+ -+#include <plat/gpio-cfg.h> -+ -+enum feature { -+ OM_GTA03_GPS, /* power to GPS section and LNA */ -+ OM_GTA03_WLAN_BT, /* WLAN and BT Module */ -+ OM_GTA03_GSM, /* GSM module */ -+ OM_GTA03_USBHOST, /* USB Host power generation */ -+ OM_GTA03_VIB, /* Vibrator */ -+ -+ OM_GTA03_FEATURE_COUNT /* always last */ -+}; -+ -+ -+struct om_gta03_feature_info { -+ const char * name; -+ int depower_on_suspend; -+ int on; -+}; -+ -+static struct om_gta03_feature_info feature_info[OM_GTA03_FEATURE_COUNT] = { -+ [OM_GTA03_GPS] = { "gps_power", 1, 0 }, -+ [OM_GTA03_WLAN_BT] = { "wlan_bt_power", 1, 0 }, -+ [OM_GTA03_GSM] = { "gsm_power", 0, 0 }, -+ [OM_GTA03_USBHOST] = { "usbhost_power", 1, 0 }, -+ [OM_GTA03_VIB] = { "vibrator_power", 1, 0 }, -+}; -+ -+static struct regulator *gps_regulator; -+ -+ -+ -+static void om_gta03_features_pwron_set_on(enum feature feature) -+{ -+ int gpio; -+ -+ switch (feature) { -+ case OM_GTA03_GPS: -+ regulator_enable(gps_regulator); -+ /* enable LNA */ -+ gpio_direction_output(GTA03_GPIO_GPS_LNA_EN, 1); -+ break; -+ case OM_GTA03_WLAN_BT: -+ -+ for (gpio = S3C64XX_GPH(0); gpio < S3C64XX_GPH(6); gpio++) { -+ s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2)); /* sdio */ -+ s3c_gpio_setpull(gpio, S3C_GPIO_PULL_UP); -+ } -+ /* assert reset */ -+ s3c_gpio_setpull(GTA03_GPIO_WLAN_RESET, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_WLAN_RESET, S3C_GPIO_SFN(1)); -+ gpio_direction_output(GTA03_GPIO_WLAN_RESET, 0); -+ -+ /* "full power down (active low)" -- deassert it*/ -+ gpio_direction_output(GTA03_GPIO_WLAN_PWRDN, 1); -+ s3c_gpio_setpull(GTA03_GPIO_WLAN_PWRDN, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_WLAN_PWRDN, S3C_GPIO_SFN(1)); -+ -+ /* enable P-Channel mosfet switch for power */ -+ gpio_direction_output(GTA03_GPIO_NWLAN_POWER, 0); -+ s3c_gpio_setpull(GTA03_GPIO_NWLAN_POWER, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_NWLAN_POWER, S3C_GPIO_SFN(1)); -+ msleep(50); -+ /* deassert reset */ -+ gpio_direction_output(GTA03_GPIO_WLAN_RESET, 1); -+ msleep(1500); -+ sdhci_s3c_force_presence_change(&s3c_device_hsmmc1); -+ break; -+ case OM_GTA03_GSM: -+ /* give power to GSM module */ -+ s3c_gpio_setpull(GTA03_GPIO_N_MODEM_RESET, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_N_MODEM_RESET, S3C_GPIO_SFN(1)); -+ gpio_direction_output(GTA03_GPIO_N_MODEM_RESET, 0); -+ -+ gpio_direction_output(GTA03_GPIO_MODEN_ON, 0); -+ s3c_gpio_setpull(GTA03_GPIO_MODEN_ON, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_MODEN_ON, S3C_GPIO_SFN(1)); -+ msleep(1); -+ gpio_direction_output(GTA03_GPIO_N_MODEM_RESET, 1); -+ break; -+ case OM_GTA03_USBHOST: -+ pcf50633_gpio_set(om_gta03_pcf_pdata.pcf, PCF50633_GPO, 1); -+ break; -+ case OM_GTA03_VIB: -+ gpio_direction_output(GTA03_GPIO_VIBRATOR_ON, 1); -+ break; -+ default: -+ break; -+ } -+} -+ -+static void om_gta03_features_pwron_set_off(enum feature feature) -+{ -+ int gpio; -+ -+ switch (feature) { -+ case OM_GTA03_GPS: -+ /* disable LNA */ -+ gpio_direction_output(GTA03_GPIO_GPS_LNA_EN, 0); -+ regulator_disable(gps_regulator); -+ break; -+ case OM_GTA03_WLAN_BT: -+ gpio_direction_output(GTA03_GPIO_WLAN_RESET, 0); -+ s3c_gpio_setpull(GTA03_GPIO_WLAN_RESET, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_WLAN_RESET, S3C_GPIO_SFN(1)); -+ -+ gpio_direction_output(GTA03_GPIO_WLAN_PWRDN, 0); -+ s3c_gpio_setpull(GTA03_GPIO_WLAN_PWRDN, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_WLAN_PWRDN, S3C_GPIO_SFN(1)); -+ msleep(500); -+ /* remove power from WLAN / BT module */ -+ gpio_direction_output(GTA03_GPIO_NWLAN_POWER, 1); -+ s3c_gpio_setpull(GTA03_GPIO_NWLAN_POWER, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_NWLAN_POWER, S3C_GPIO_SFN(1)); -+ -+ sdhci_s3c_force_presence_change(&s3c_device_hsmmc1); -+ for (gpio = S3C64XX_GPH(0); gpio < S3C64XX_GPH(6); gpio++) { -+ s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(0)); /* input */ -+ s3c_gpio_setpull(gpio, S3C_GPIO_PULL_DOWN); -+ } -+ break; -+ case OM_GTA03_GSM: -+ /* remove power from WLAN / BT module */ -+ gpio_direction_output(GTA03_GPIO_MODEN_ON, 1); -+ s3c_gpio_setpull(GTA03_GPIO_MODEN_ON, S3C_GPIO_PULL_NONE); -+ s3c_gpio_cfgpin(GTA03_GPIO_MODEN_ON, S3C_GPIO_SFN(1)); -+ break; -+ case OM_GTA03_USBHOST: -+ pcf50633_gpio_set(om_gta03_pcf_pdata.pcf, PCF50633_GPO, 0); -+ break; -+ case OM_GTA03_VIB: -+ gpio_direction_output(GTA03_GPIO_VIBRATOR_ON, 0); -+ break; -+ default: -+ break; -+ } -+} -+ -+static void om_gta03_features_pwron_set(enum feature feature, int on) -+{ -+ if ((on) && (!feature_info[feature].on)) -+ om_gta03_features_pwron_set_on(feature); -+ else -+ if ((!on) && (feature_info[feature].on)) -+ om_gta03_features_pwron_set_off(feature); -+} -+ -+static ssize_t om_gta03_feature_read(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ int on; -+ int feature = 0; -+ int hit = 0; -+ -+ while (!hit && feature < OM_GTA03_FEATURE_COUNT) { -+ if (!strcmp(attr->attr.name, feature_info[feature].name)) -+ hit = 1; -+ else -+ feature++; -+ } -+ -+ if (!hit) -+ return -EINVAL; -+ -+ switch (feature) { -+ case OM_GTA03_GPS: -+ on = regulator_is_enabled(gps_regulator); -+ break; -+ case OM_GTA03_USBHOST: -+ on = pcf50633_gpio_get(om_gta03_pcf_pdata.pcf, PCF50633_GPO); -+ break; -+ default: -+ on = feature_info[feature].on; -+ } -+ -+ *buf++ = '0' + on; -+ *buf++='\n'; -+ *buf = '\0'; -+ -+ return 3; -+} -+ -+static ssize_t om_gta03_feature_write(struct device *dev, -+ struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ int on = !!simple_strtoul(buf, NULL, 10); -+ int feature = 0; -+ int hit = 0; -+ -+ while (!hit && feature < OM_GTA03_FEATURE_COUNT) { -+ if (!strcmp(attr->attr.name, feature_info[feature].name)) -+ hit = 1; -+ else -+ feature++; -+ } -+ -+ if (!hit) -+ return -EINVAL; -+ -+ om_gta03_features_pwron_set(feature, on); -+ feature_info[feature].on = on; -+ -+ return count; -+} -+ -+ -+static DEVICE_ATTR(gps_power, 0644, om_gta03_feature_read, -+ om_gta03_feature_write); -+ -+static DEVICE_ATTR(wlan_bt_power, 0644, om_gta03_feature_read, -+ om_gta03_feature_write); -+ -+static DEVICE_ATTR(gsm_power, 0644, om_gta03_feature_read, -+ om_gta03_feature_write); -+ -+static DEVICE_ATTR(usbhost_power, 0644, om_gta03_feature_read, -+ om_gta03_feature_write); -+ -+static DEVICE_ATTR(vibrator_power, 0644, om_gta03_feature_read, -+ om_gta03_feature_write); -+ -+ -+static struct attribute *om_gta03_features_sysfs_entries[] = { -+ &dev_attr_gps_power.attr, -+ &dev_attr_wlan_bt_power.attr, -+ &dev_attr_gsm_power.attr, -+ &dev_attr_usbhost_power.attr, -+ &dev_attr_vibrator_power.attr, -+ NULL -+}; -+ -+ -+static struct attribute_group om_gta03_features_attr_group = { -+ .name = NULL, -+ .attrs = om_gta03_features_sysfs_entries, -+}; -+ -+static int __init om_gta03_features_probe(struct platform_device *pdev) -+{ -+ gps_regulator = regulator_get(&pdev->dev, "RF_3V"); -+ dev_info(&pdev->dev, "starting\n"); -+ -+ return sysfs_create_group(&pdev->dev.kobj, -+ &om_gta03_features_attr_group); -+} -+ -+static int om_gta03_features_remove(struct platform_device *pdev) -+{ -+ -+ regulator_put(gps_regulator); -+ sysfs_remove_group(&pdev->dev.kobj, &om_gta03_features_attr_group); -+ -+ return 0; -+} -+ -+ -+#ifdef CONFIG_PM -+static int om_gta03_features_suspend(struct platform_device *pdev, -+ pm_message_t state) -+{ -+ int feature; -+ -+ for (feature = 0; feature < OM_GTA03_FEATURE_COUNT; feature++) -+ if (feature_info[feature].depower_on_suspend) -+ om_gta03_features_pwron_set_off(feature); -+ -+ return 0; -+} -+ -+static int om_gta03_features_resume(struct platform_device *pdev) -+{ -+ int feature; -+ -+ for (feature = 0; feature < OM_GTA03_FEATURE_COUNT; feature++) -+ if (feature_info[feature].depower_on_suspend) -+ if (feature_info[feature].on) -+ om_gta03_features_pwron_set_on(feature); -+ -+ return 0; -+} -+#else -+#define om_gta03_features_suspend NULL -+#define om_gta03_features_resume NULL -+#endif -+ -+static struct platform_driver om_gta03_features_driver = { -+ .probe = om_gta03_features_probe, -+ .remove = om_gta03_features_remove, -+ .suspend = om_gta03_features_suspend, -+ .resume = om_gta03_features_resume, -+ .driver = { -+ .name = "om-gta03", -+ }, -+}; -+ -+static int __devinit om_gta03_features_init(void) -+{ -+ return platform_driver_register(&om_gta03_features_driver); -+} -+ -+static void om_gta03_features_exit(void) -+{ -+ platform_driver_unregister(&om_gta03_features_driver); -+} -+ -+module_init(om_gta03_features_init); -+module_exit(om_gta03_features_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("Openmoko GTA03 Feature Driver"); ---- /dev/null -+++ b/arch/arm/mach-s3c6410/setup-sdhci.c -@@ -0,0 +1,103 @@ -+/* linux/arch/arm/mach-s3c6410/setup-sdhci.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C6410 - Helper functions for settign up SDHCI device(s) (HSMMC) -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/platform_device.h> -+#include <linux/io.h> -+ -+#include <linux/mmc/card.h> -+#include <linux/mmc/host.h> -+ -+#include <mach/gpio.h> -+#include <plat/gpio-cfg.h> -+#include <plat/regs-sdhci.h> -+#include <plat/sdhci.h> -+ -+/* clock sources for the mmc bus clock, order as for the ctrl2[5..4] */ -+ -+char *s3c6410_hsmmc_clksrcs[4] = { -+ [0] = "hsmmc", -+ [1] = "hsmmc", -+ [2] = "mmc_bus", -+ /* [3] = "48m", - note not succesfully used yet */ -+}; -+ -+void s3c6410_setup_sdhci0_cfg_gpio(struct platform_device *dev, int width) -+{ -+ unsigned int gpio; -+ unsigned int end; -+ -+ end = S3C64XX_GPG(2 + width); -+ -+ /* Set all the necessary GPG pins to special-function 0 */ -+ for (gpio = S3C64XX_GPG(0); gpio < end; gpio++) { -+ s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2)); -+ s3c_gpio_setpull(gpio, S3C_GPIO_PULL_NONE); -+ } -+ -+ /* FIXME this needs defining in machine as to if we even have CD */ -+ s3c_gpio_setpull(S3C64XX_GPG(6), S3C_GPIO_PULL_DOWN); -+ s3c_gpio_cfgpin(S3C64XX_GPG(6), S3C_GPIO_SFN(2)); -+} -+ -+void s3c6410_setup_sdhci0_cfg_card(struct platform_device *dev, -+ void __iomem *r, -+ struct mmc_ios *ios, -+ struct mmc_card *card) -+{ -+ u32 ctrl2, ctrl3; -+ -+ /* don't need to alter anything acording to card-type */ -+ -+ writel(S3C64XX_SDHCI_CONTROL4_DRIVE_9mA, r + S3C64XX_SDHCI_CONTROL4); -+ -+ ctrl2 = readl(r + S3C_SDHCI_CONTROL2); -+ ctrl2 &= S3C_SDHCI_CTRL2_SELBASECLK_MASK; -+ ctrl2 |= (S3C64XX_SDHCI_CTRL2_ENSTAASYNCCLR | -+ S3C64XX_SDHCI_CTRL2_ENCMDCNFMSK | -+ S3C_SDHCI_CTRL2_ENFBCLKRX | -+ S3C_SDHCI_CTRL2_DFCNT_NONE | -+ S3C_SDHCI_CTRL2_ENCLKOUTHOLD); -+ -+ if (ios->clock < 25 * 1000000) -+ ctrl3 = (S3C_SDHCI_CTRL3_FCSEL3 | -+ S3C_SDHCI_CTRL3_FCSEL2 | -+ S3C_SDHCI_CTRL3_FCSEL1 | -+ S3C_SDHCI_CTRL3_FCSEL0); -+ else -+ ctrl3 = (S3C_SDHCI_CTRL3_FCSEL1 | S3C_SDHCI_CTRL3_FCSEL0); -+ -+ printk(KERN_INFO "%s: %p CTRL 2=%08x, 3=%08x\n", __func__, r, ctrl2, ctrl3); -+ writel(ctrl2, r + S3C_SDHCI_CONTROL2); -+ writel(ctrl3, r + S3C_SDHCI_CONTROL3); -+} -+ -+void s3c6410_setup_sdhci1_cfg_gpio(struct platform_device *dev, int width) -+{ -+ unsigned int gpio; -+ unsigned int end; -+ -+ end = S3C64XX_GPH(2 + width); -+ -+ /* Set all the necessary GPG pins to special-function 0 */ -+ for (gpio = S3C64XX_GPH(0); gpio < end; gpio++) { -+ s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2)); -+ s3c_gpio_setpull(gpio, S3C_GPIO_PULL_UP); -+ } -+ -+// s3c_gpio_setpull(S3C64XX_GPG(6), S3C_GPIO_PULL_UP); -+// s3c_gpio_cfgpin(S3C64XX_GPG(6), S3C_GPIO_SFN(3)); -+} ---- a/arch/arm/Makefile -+++ b/arch/arm/Makefile -@@ -121,7 +121,10 @@ endif - machine-$(CONFIG_ARCH_OMAP3) := omap2 - plat-$(CONFIG_ARCH_OMAP) := omap - machine-$(CONFIG_ARCH_S3C2410) := s3c2410 s3c2400 s3c2412 s3c2440 s3c2442 s3c2443 -+ machine-$(CONFIG_ARCH_S3C24A0) := s3c24a0 - plat-$(CONFIG_PLAT_S3C24XX) := s3c24xx s3c -+ machine-$(CONFIG_ARCH_S3C64XX) := s3c6400 s3c6410 -+ plat-$(CONFIG_PLAT_S3C64XX) := s3c64xx s3c - machine-$(CONFIG_ARCH_LH7A40X) := lh7a40x - machine-$(CONFIG_ARCH_VERSATILE) := versatile - machine-$(CONFIG_ARCH_IMX) := imx ---- a/arch/arm/mm/Kconfig -+++ b/arch/arm/mm/Kconfig -@@ -183,14 +183,14 @@ config CPU_ARM926T - depends on ARCH_INTEGRATOR || ARCH_VERSATILE_PB || \ - MACH_VERSATILE_AB || ARCH_OMAP730 || \ - ARCH_OMAP16XX || MACH_REALVIEW_EB || \ -- ARCH_PNX4008 || ARCH_NETX || CPU_S3C2412 || \ -+ ARCH_PNX4008 || ARCH_NETX || CPU_S3C2412 || ARCH_S3C24A0 || \ - ARCH_AT91SAM9260 || ARCH_AT91SAM9261 || \ - ARCH_AT91SAM9263 || ARCH_AT91SAM9RL || \ - ARCH_AT91SAM9G20 || ARCH_AT91CAP9 || \ - ARCH_NS9XXX || ARCH_DAVINCI || ARCH_MX2 - default y if ARCH_VERSATILE_PB || MACH_VERSATILE_AB || \ - ARCH_OMAP730 || ARCH_OMAP16XX || \ -- ARCH_PNX4008 || ARCH_NETX || CPU_S3C2412 || \ -+ ARCH_PNX4008 || ARCH_NETX || CPU_S3C2412 || ARCH_S3C24A0 || \ - ARCH_AT91SAM9260 || ARCH_AT91SAM9261 || \ - ARCH_AT91SAM9263 || ARCH_AT91SAM9RL || \ - ARCH_AT91SAM9G20 || ARCH_AT91CAP9 || \ -@@ -400,9 +400,10 @@ config CPU_FEROCEON_OLD_ID - # ARMv6 - config CPU_V6 - bool "Support ARM V6 processor" -- depends on ARCH_INTEGRATOR || MACH_REALVIEW_EB || ARCH_OMAP2 || ARCH_MX3 || ARCH_MSM || MACH_REALVIEW_PB11MP || MACH_REALVIEW_PB1176 -+ depends on ARCH_INTEGRATOR || MACH_REALVIEW_EB || ARCH_OMAP2 || ARCH_MX3 || ARCH_MSM || MACH_REALVIEW_PB11MP || MACH_REALVIEW_PB1176 || ARCH_S3C64XX - default y if ARCH_MX3 - default y if ARCH_MSM -+ default y if ARCH_S3C64XX - select CPU_32v6 - select CPU_ABRT_EV6 - select CPU_PABRT_NOIFAR ---- /dev/null -+++ b/arch/arm/plat-s3c/clock.c -@@ -0,0 +1,369 @@ -+/* linux/arch/arm/plat-s3c24xx/clock.c -+ * -+ * Copyright (c) 2004-2005 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C24XX Core clock control support -+ * -+ * Based on, and code from linux/arch/arm/mach-versatile/clock.c -+ ** -+ ** Copyright (C) 2004 ARM Limited. -+ ** Written by Deep Blue Solutions Limited. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+*/ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/list.h> -+#include <linux/errno.h> -+#include <linux/err.h> -+#include <linux/platform_device.h> -+#include <linux/sysdev.h> -+#include <linux/interrupt.h> -+#include <linux/ioport.h> -+#include <linux/clk.h> -+#include <linux/spinlock.h> -+#include <linux/delay.h> -+#include <linux/io.h> -+ -+#include <mach/hardware.h> -+#include <asm/irq.h> -+ -+#include <plat/cpu-freq.h> -+ -+#include <plat/clock.h> -+#include <plat/cpu.h> -+ -+/* clock information */ -+ -+static LIST_HEAD(clocks); -+ -+/* We originally used an mutex here, but some contexts (see resume) -+ * are calling functions such as clk_set_parent() with IRQs disabled -+ * causing an BUG to be triggered. -+ */ -+DEFINE_SPINLOCK(clocks_lock); -+ -+/* enable and disable calls for use with the clk struct */ -+ -+static int clk_null_enable(struct clk *clk, int enable) -+{ -+ return 0; -+} -+ -+/* Clock API calls */ -+ -+struct clk *clk_get(struct device *dev, const char *id) -+{ -+ struct clk *p; -+ struct clk *clk = ERR_PTR(-ENOENT); -+ int idno; -+ -+ if (dev == NULL || dev->bus != &platform_bus_type) -+ idno = -1; -+ else -+ idno = to_platform_device(dev)->id; -+ -+ spin_lock(&clocks_lock); -+ -+ list_for_each_entry(p, &clocks, list) { -+ if (p->id == idno && -+ strcmp(id, p->name) == 0 && -+ try_module_get(p->owner)) { -+ clk = p; -+ break; -+ } -+ } -+ -+ /* check for the case where a device was supplied, but the -+ * clock that was being searched for is not device specific */ -+ -+ if (IS_ERR(clk)) { -+ list_for_each_entry(p, &clocks, list) { -+ if (p->id == -1 && strcmp(id, p->name) == 0 && -+ try_module_get(p->owner)) { -+ clk = p; -+ break; -+ } -+ } -+ } -+ -+ spin_unlock(&clocks_lock); -+ return clk; -+} -+ -+void clk_put(struct clk *clk) -+{ -+ module_put(clk->owner); -+} -+ -+int clk_enable(struct clk *clk) -+{ -+ if (IS_ERR(clk) || clk == NULL) -+ return -EINVAL; -+ -+ clk_enable(clk->parent); -+ -+ spin_lock(&clocks_lock); -+ -+ if ((clk->usage++) == 0) -+ (clk->enable)(clk, 1); -+ -+ spin_unlock(&clocks_lock); -+ return 0; -+} -+ -+void clk_disable(struct clk *clk) -+{ -+ if (IS_ERR(clk) || clk == NULL) -+ return; -+ -+ spin_lock(&clocks_lock); -+ -+ if ((--clk->usage) == 0) -+ (clk->enable)(clk, 0); -+ -+ spin_unlock(&clocks_lock); -+ clk_disable(clk->parent); -+} -+ -+ -+unsigned long clk_get_rate(struct clk *clk) -+{ -+ if (IS_ERR(clk)) -+ return 0; -+ -+ if (clk->rate != 0) -+ return clk->rate; -+ -+ if (clk->get_rate != NULL) -+ return (clk->get_rate)(clk); -+ -+ if (clk->parent != NULL) -+ return clk_get_rate(clk->parent); -+ -+ return clk->rate; -+} -+ -+long clk_round_rate(struct clk *clk, unsigned long rate) -+{ -+ if (!IS_ERR(clk) && clk->round_rate) -+ return (clk->round_rate)(clk, rate); -+ -+ return rate; -+} -+ -+int clk_set_rate(struct clk *clk, unsigned long rate) -+{ -+ int ret; -+ -+ if (IS_ERR(clk)) -+ return -EINVAL; -+ -+ /* We do not default just do a clk->rate = rate as -+ * the clock may have been made this way by choice. -+ */ -+ -+ WARN_ON(clk->set_rate == NULL); -+ -+ if (clk->set_rate == NULL) -+ return -EINVAL; -+ -+ spin_lock(&clocks_lock); -+ ret = (clk->set_rate)(clk, rate); -+ spin_unlock(&clocks_lock); -+ -+ return ret; -+} -+ -+struct clk *clk_get_parent(struct clk *clk) -+{ -+ return clk->parent; -+} -+ -+int clk_set_parent(struct clk *clk, struct clk *parent) -+{ -+ int ret = 0; -+ -+ if (IS_ERR(clk)) -+ return -EINVAL; -+ -+ spin_lock(&clocks_lock); -+ -+ if (clk->set_parent) -+ ret = (clk->set_parent)(clk, parent); -+ -+ spin_unlock(&clocks_lock); -+ -+ return ret; -+} -+ -+EXPORT_SYMBOL(clk_get); -+EXPORT_SYMBOL(clk_put); -+EXPORT_SYMBOL(clk_enable); -+EXPORT_SYMBOL(clk_disable); -+EXPORT_SYMBOL(clk_get_rate); -+EXPORT_SYMBOL(clk_round_rate); -+EXPORT_SYMBOL(clk_set_rate); -+EXPORT_SYMBOL(clk_get_parent); -+EXPORT_SYMBOL(clk_set_parent); -+ -+/* base clocks */ -+ -+static int clk_default_setrate(struct clk *clk, unsigned long rate) -+{ -+ clk->rate = rate; -+ return 0; -+} -+ -+struct clk clk_xtal = { -+ .name = "xtal", -+ .id = -1, -+ .rate = 0, -+ .parent = NULL, -+ .ctrlbit = 0, -+}; -+ -+struct clk clk_ext = { -+ .name = "ext", -+ .id = -1, -+}; -+ -+struct clk clk_epll = { -+ .name = "epll", -+ .id = -1, -+}; -+ -+struct clk clk_mpll = { -+ .name = "mpll", -+ .id = -1, -+ .set_rate = clk_default_setrate, -+}; -+ -+struct clk clk_upll = { -+ .name = "upll", -+ .id = -1, -+ .parent = NULL, -+ .ctrlbit = 0, -+}; -+ -+struct clk clk_f = { -+ .name = "fclk", -+ .id = -1, -+ .rate = 0, -+ .parent = &clk_mpll, -+ .ctrlbit = 0, -+ .set_rate = clk_default_setrate, -+}; -+ -+struct clk clk_h = { -+ .name = "hclk", -+ .id = -1, -+ .rate = 0, -+ .parent = NULL, -+ .ctrlbit = 0, -+ .set_rate = clk_default_setrate, -+}; -+ -+struct clk clk_p = { -+ .name = "pclk", -+ .id = -1, -+ .rate = 0, -+ .parent = NULL, -+ .ctrlbit = 0, -+ .set_rate = clk_default_setrate, -+}; -+ -+struct clk clk_usb_bus = { -+ .name = "usb-bus", -+ .id = -1, -+ .rate = 0, -+ .parent = &clk_upll, -+}; -+ -+ -+ -+struct clk s3c24xx_uclk = { -+ .name = "uclk", -+ .id = -1, -+}; -+ -+/* initialise the clock system */ -+ -+int s3c24xx_register_clock(struct clk *clk) -+{ -+ clk->owner = THIS_MODULE; -+ -+ if (clk->enable == NULL) -+ clk->enable = clk_null_enable; -+ -+ /* add to the list of available clocks */ -+ -+ /* Quick check to see if this clock has already been registered. */ -+ BUG_ON(clk->list.prev != clk->list.next); -+ -+ spin_lock(&clocks_lock); -+ list_add(&clk->list, &clocks); -+ spin_unlock(&clocks_lock); -+ -+ return 0; -+} -+ -+int s3c24xx_register_clocks(struct clk **clks, int nr_clks) -+{ -+ int fails = 0; -+ -+ for (; nr_clks > 0; nr_clks--, clks++) { -+ if (s3c24xx_register_clock(*clks) < 0) -+ fails++; -+ } -+ -+ return fails; -+} -+ -+/* initalise all the clocks */ -+ -+int __init s3c24xx_register_baseclocks(unsigned long xtal) -+{ -+ printk(KERN_INFO "S3C24XX Clocks, (c) 2004 Simtec Electronics\n"); -+ -+ clk_xtal.rate = xtal; -+ -+ /* register our clocks */ -+ -+ if (s3c24xx_register_clock(&clk_xtal) < 0) -+ printk(KERN_ERR "failed to register master xtal\n"); -+ -+ if (s3c24xx_register_clock(&clk_mpll) < 0) -+ printk(KERN_ERR "failed to register mpll clock\n"); -+ -+ if (s3c24xx_register_clock(&clk_upll) < 0) -+ printk(KERN_ERR "failed to register upll clock\n"); -+ -+ if (s3c24xx_register_clock(&clk_f) < 0) -+ printk(KERN_ERR "failed to register cpu fclk\n"); -+ -+ if (s3c24xx_register_clock(&clk_h) < 0) -+ printk(KERN_ERR "failed to register cpu hclk\n"); -+ -+ if (s3c24xx_register_clock(&clk_p) < 0) -+ printk(KERN_ERR "failed to register cpu pclk\n"); -+ -+ return 0; -+} -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/dev-fb.c -@@ -0,0 +1,72 @@ -+/* linux/arch/arm/plat-s3c/dev-fb.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series device definition for framebuffer device -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/string.h> -+#include <linux/platform_device.h> -+#include <linux/fb.h> -+ -+#include <mach/map.h> -+#include <mach/regs-fb.h> -+ -+#include <plat/fb.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+ -+static struct resource s3c_fb_resource[] = { -+ [0] = { -+ .start = S3C_PA_FB, -+ .end = S3C_PA_FB + SZ_16K - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_LCD_VSYNC, -+ .end = IRQ_LCD_VSYNC, -+ .flags = IORESOURCE_IRQ, -+ }, -+ [2] = { -+ .start = IRQ_LCD_FIFO, -+ .end = IRQ_LCD_FIFO, -+ .flags = IORESOURCE_IRQ, -+ }, -+ [3] = { -+ .start = IRQ_LCD_SYSTEM, -+ .end = IRQ_LCD_SYSTEM, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+struct platform_device s3c_device_fb = { -+ .name = "s3c-fb", -+ .id = -1, -+ .num_resources = ARRAY_SIZE(s3c_fb_resource), -+ .resource = s3c_fb_resource, -+ .dev.dma_mask = &s3c_device_fb.dev.coherent_dma_mask, -+ .dev.coherent_dma_mask = 0xffffffffUL, -+}; -+ -+void __init s3c_fb_set_platdata(struct s3c_fb_platdata *pd) -+{ -+ struct s3c_fb_platdata *npd; -+ -+ if (!pd) { -+ printk(KERN_ERR "%s: no platform data\n", __func__); -+ return; -+ } -+ -+ npd = kmemdup(pd, sizeof(struct s3c_fb_platdata), GFP_KERNEL); -+ if (!npd) -+ printk(KERN_ERR "%s: no memory for platform data\n", __func__); -+ -+ s3c_device_fb.dev.platform_data = npd; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/dev-hsmmc1.c -@@ -0,0 +1,68 @@ -+/* linux/arch/arm/plat-s3c/dev-hsmmc1.c -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series device definition for hsmmc device 1 -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+#include <linux/mmc/host.h> -+ -+#include <mach/map.h> -+#include <plat/sdhci.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+ -+#define S3C_SZ_HSMMC (0x1000) -+ -+static struct resource s3c_hsmmc1_resource[] = { -+ [0] = { -+ .start = S3C_PA_HSMMC1, -+ .end = S3C_PA_HSMMC1 + S3C_SZ_HSMMC - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_HSMMC1, -+ .end = IRQ_HSMMC1, -+ .flags = IORESOURCE_IRQ, -+ } -+}; -+ -+static u64 s3c_device_hsmmc1_dmamask = 0xffffffffUL; -+ -+struct s3c_sdhci_platdata s3c_hsmmc1_def_platdata = { -+ .max_width = 4, -+ .host_caps = (MMC_CAP_4_BIT_DATA | -+ MMC_CAP_MMC_HIGHSPEED | MMC_CAP_SD_HIGHSPEED), -+}; -+ -+struct platform_device s3c_device_hsmmc1 = { -+ .name = "s3c-sdhci", -+ .id = 1, -+ .num_resources = ARRAY_SIZE(s3c_hsmmc1_resource), -+ .resource = s3c_hsmmc1_resource, -+ .dev = { -+ .dma_mask = &s3c_device_hsmmc1_dmamask, -+ .coherent_dma_mask = 0xffffffffUL, -+ .platform_data = &s3c_hsmmc1_def_platdata, -+ }, -+}; -+ -+void s3c_sdhci1_set_platdata(struct s3c_sdhci_platdata *pd) -+{ -+ struct s3c_sdhci_platdata *set = &s3c_hsmmc1_def_platdata; -+ -+ set->max_width = pd->max_width; -+ -+ if (pd->cfg_gpio) -+ set->cfg_gpio = pd->cfg_gpio; -+ if (pd->cfg_card) -+ set->cfg_card = pd->cfg_card; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/dev-hsmmc.c -@@ -0,0 +1,68 @@ -+/* linux/arch/arm/plat-s3c/dev-hsmmc.c -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series device definition for hsmmc devices -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+#include <linux/mmc/host.h> -+ -+#include <mach/map.h> -+#include <plat/sdhci.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+ -+#define S3C_SZ_HSMMC (0x1000) -+ -+static struct resource s3c_hsmmc_resource[] = { -+ [0] = { -+ .start = S3C_PA_HSMMC0, -+ .end = S3C_PA_HSMMC0 + S3C_SZ_HSMMC - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_HSMMC0, -+ .end = IRQ_HSMMC0, -+ .flags = IORESOURCE_IRQ, -+ } -+}; -+ -+static u64 s3c_device_hsmmc_dmamask = 0xffffffffUL; -+ -+struct s3c_sdhci_platdata s3c_hsmmc0_def_platdata = { -+ .max_width = 4, -+ .host_caps = (MMC_CAP_4_BIT_DATA | -+ MMC_CAP_MMC_HIGHSPEED | MMC_CAP_SD_HIGHSPEED), -+}; -+ -+struct platform_device s3c_device_hsmmc0 = { -+ .name = "s3c-sdhci", -+ .id = 0, -+ .num_resources = ARRAY_SIZE(s3c_hsmmc_resource), -+ .resource = s3c_hsmmc_resource, -+ .dev = { -+ .dma_mask = &s3c_device_hsmmc_dmamask, -+ .coherent_dma_mask = 0xffffffffUL, -+ .platform_data = &s3c_hsmmc0_def_platdata, -+ }, -+}; -+ -+void s3c_sdhci0_set_platdata(struct s3c_sdhci_platdata *pd) -+{ -+ struct s3c_sdhci_platdata *set = &s3c_hsmmc0_def_platdata; -+ -+ set->max_width = pd->max_width; -+ -+ if (pd->cfg_gpio) -+ set->cfg_gpio = pd->cfg_gpio; -+ if (pd->cfg_card) -+ set->cfg_card = pd->cfg_card; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/dev-i2c0.c -@@ -0,0 +1,71 @@ -+/* linux/arch/arm/plat-s3c/dev-i2c0.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series device definition for i2c device 0 -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/string.h> -+#include <linux/platform_device.h> -+ -+#include <mach/map.h> -+ -+#include <plat/regs-iic.h> -+#include <plat/iic.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+ -+static struct resource s3c_i2c_resource[] = { -+ [0] = { -+ .start = S3C_PA_IIC, -+ .end = S3C_PA_IIC + SZ_4K - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_IIC, -+ .end = IRQ_IIC, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+struct platform_device s3c_device_i2c0 = { -+ .name = "s3c2410-i2c", -+#ifdef CONFIG_S3C_DEV_I2C1 -+ .id = 0, -+#else -+ .id = -1, -+#endif -+ .num_resources = ARRAY_SIZE(s3c_i2c_resource), -+ .resource = s3c_i2c_resource, -+}; -+ -+static struct s3c2410_platform_i2c default_i2c_data0 __initdata = { -+ .flags = 0, -+ .slave_addr = 0x10, -+ .bus_freq = 100*1000, -+ .max_freq = 400*1000, -+ .sda_delay = S3C2410_IICLC_SDA_DELAY5 | S3C2410_IICLC_FILTER_ON, -+}; -+ -+void __init s3c_i2c0_set_platdata(struct s3c2410_platform_i2c *pd) -+{ -+ struct s3c2410_platform_i2c *npd; -+ -+ if (!pd) -+ pd = &default_i2c_data0; -+ -+ npd = kmemdup(pd, sizeof(struct s3c2410_platform_i2c), GFP_KERNEL); -+ if (!npd) -+ printk(KERN_ERR "%s: no memory for platform data\n", __func__); -+ else if (!npd->cfg_gpio) -+ npd->cfg_gpio = s3c_i2c0_cfg_gpio; -+ -+ s3c_device_i2c0.dev.platform_data = npd; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/dev-i2c1.c -@@ -0,0 +1,68 @@ -+/* linux/arch/arm/plat-s3c/dev-i2c1.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series device definition for i2c device 1 -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/string.h> -+#include <linux/platform_device.h> -+ -+#include <mach/map.h> -+ -+#include <plat/regs-iic.h> -+#include <plat/iic.h> -+#include <plat/devs.h> -+#include <plat/cpu.h> -+ -+static struct resource s3c_i2c_resource[] = { -+ [0] = { -+ .start = S3C_PA_IIC1, -+ .end = S3C_PA_IIC1 + SZ_4K - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_IIC1, -+ .end = IRQ_IIC1, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+struct platform_device s3c_device_i2c1 = { -+ .name = "s3c2410-i2c", -+ .id = 1, -+ .num_resources = ARRAY_SIZE(s3c_i2c_resource), -+ .resource = s3c_i2c_resource, -+}; -+ -+static struct s3c2410_platform_i2c default_i2c_data1 __initdata = { -+ .flags = 0, -+ .bus_num = 1, -+ .slave_addr = 0x10, -+ .bus_freq = 100*1000, -+ .max_freq = 400*1000, -+ .sda_delay = S3C2410_IICLC_SDA_DELAY5 | S3C2410_IICLC_FILTER_ON, -+}; -+ -+void __init s3c_i2c1_set_platdata(struct s3c2410_platform_i2c *pd) -+{ -+ struct s3c2410_platform_i2c *npd; -+ -+ if (!pd) -+ pd = &default_i2c_data1; -+ -+ npd = kmemdup(pd, sizeof(struct s3c2410_platform_i2c), GFP_KERNEL); -+ if (!npd) -+ printk(KERN_ERR "%s: no memory for platform data\n", __func__); -+ else if (!npd->cfg_gpio) -+ npd->cfg_gpio = s3c_i2c1_cfg_gpio; -+ -+ s3c_device_i2c1.dev.platform_data = npd; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/gpio.c -@@ -0,0 +1,156 @@ -+/* linux/arch/arm/plat-s3c/gpio.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series GPIO core -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/io.h> -+#include <linux/gpio.h> -+ -+#include <mach/gpio-core.h> -+ -+#ifdef CONFIG_S3C_GPIO_TRACK -+struct s3c_gpio_chip *s3c_gpios[S3C_GPIO_END]; -+ -+static __init void s3c_gpiolib_track(struct s3c_gpio_chip *chip) -+{ -+ unsigned int gpn; -+ int i; -+ -+ gpn = chip->chip.base; -+ for (i = 0; i < chip->chip.ngpio; i++, gpn++) { -+ BUG_ON(gpn > ARRAY_SIZE(s3c_gpios)); -+ s3c_gpios[gpn] = chip; -+ } -+} -+#endif /* CONFIG_S3C_GPIO_TRACK */ -+ -+/* Default routines for controlling GPIO, based on the original S3C24XX -+ * GPIO functions which deal with the case where each gpio bank of the -+ * chip is as following: -+ * -+ * base + 0x00: Control register, 2 bits per gpio -+ * gpio n: 2 bits starting at (2*n) -+ * 00 = input, 01 = output, others mean special-function -+ * base + 0x04: Data register, 1 bit per gpio -+ * bit n: data bit n -+*/ -+ -+static int s3c_gpiolib_input(struct gpio_chip *chip, unsigned offset) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ void __iomem *base = ourchip->base; -+ unsigned long flags; -+ unsigned long con; -+ -+ local_irq_save(flags); -+ -+ con = __raw_readl(base + 0x00); -+ con &= ~(3 << (offset * 2)); -+ -+ __raw_writel(con, base + 0x00); -+ -+ local_irq_restore(flags); -+ return 0; -+} -+ -+static int s3c_gpiolib_output(struct gpio_chip *chip, -+ unsigned offset, int value) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ void __iomem *base = ourchip->base; -+ unsigned long flags; -+ unsigned long dat; -+ unsigned long con; -+ -+ local_irq_save(flags); -+ -+ dat = __raw_readl(base + 0x04); -+ dat &= ~(1 << offset); -+ if (value) -+ dat |= 1 << offset; -+ __raw_writel(dat, base + 0x04); -+ -+ con = __raw_readl(base + 0x00); -+ con &= ~(3 << (offset * 2)); -+ con |= 1 << (offset * 2); -+ -+ __raw_writel(con, base + 0x00); -+ __raw_writel(dat, base + 0x04); -+ -+ local_irq_restore(flags); -+ return 0; -+} -+ -+static void s3c_gpiolib_set(struct gpio_chip *chip, -+ unsigned offset, int value) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ void __iomem *base = ourchip->base; -+ unsigned long flags; -+ unsigned long dat; -+ -+ local_irq_save(flags); -+ -+ dat = __raw_readl(base + 0x04); -+ dat &= ~(1 << offset); -+ if (value) -+ dat |= 1 << offset; -+ __raw_writel(dat, base + 0x04); -+ -+ local_irq_restore(flags); -+} -+ -+static int s3c_gpiolib_get(struct gpio_chip *chip, unsigned offset) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ unsigned long val; -+ -+ val = __raw_readl(ourchip->base + 0x04); -+ val >>= offset; -+ val &= 1; -+ -+ return val; -+} -+ -+__init void s3c_gpiolib_add(struct s3c_gpio_chip *chip) -+{ -+ struct gpio_chip *gc = &chip->chip; -+ int ret; -+ -+ BUG_ON(!chip->base); -+ BUG_ON(!gc->label); -+ BUG_ON(!gc->ngpio); -+ -+ if (!gc->direction_input) -+ gc->direction_input = s3c_gpiolib_input; -+ if (!gc->direction_output) -+ gc->direction_output = s3c_gpiolib_output; -+ if (!gc->set) -+ gc->set = s3c_gpiolib_set; -+ if (!gc->get) -+ gc->get = s3c_gpiolib_get; -+ -+#ifdef CONFIG_PM -+ if (chip->pm != NULL) { -+ if (!chip->pm->save || !chip->pm->resume) -+ printk(KERN_ERR "gpio: %s has missing PM functions\n", -+ gc->label); -+ } else -+ printk(KERN_ERR "gpio: %s has no PM function\n", gc->label); -+#endif -+ -+ /* gpiochip_add() prints own failure message on error. */ -+ ret = gpiochip_add(gc); -+ if (ret >= 0) -+ s3c_gpiolib_track(chip); -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/gpio-config.c -@@ -0,0 +1,163 @@ -+/* linux/arch/arm/plat-s3c/gpio-config.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series GPIO configuration core -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/gpio.h> -+#include <linux/io.h> -+ -+#include <mach/gpio-core.h> -+#include <plat/gpio-cfg.h> -+#include <plat/gpio-cfg-helpers.h> -+ -+int s3c_gpio_cfgpin(unsigned int pin, unsigned int config) -+{ -+ struct s3c_gpio_chip *chip = s3c_gpiolib_getchip(pin); -+ unsigned long flags; -+ int offset; -+ int ret; -+ -+ if (!chip) -+ return -EINVAL; -+ -+ offset = pin - chip->chip.base; -+ -+ local_irq_save(flags); -+ ret = s3c_gpio_do_setcfg(chip, offset, config); -+ local_irq_restore(flags); -+ -+ return ret; -+} -+ -+int s3c_gpio_setpull(unsigned int pin, s3c_gpio_pull_t pull) -+{ -+ struct s3c_gpio_chip *chip = s3c_gpiolib_getchip(pin); -+ unsigned long flags; -+ int offset, ret; -+ -+ if (!chip) -+ return -EINVAL; -+ -+ offset = pin - chip->chip.base; -+ -+ local_irq_save(flags); -+ ret = s3c_gpio_do_setpull(chip, offset, pull); -+ local_irq_restore(flags); -+ -+ return ret; -+} -+ -+#ifdef CONFIG_S3C_GPIO_CFG_S3C24XX -+int s3c_gpio_setcfg_s3c24xx_banka(struct s3c_gpio_chip *chip, -+ unsigned int off, unsigned int cfg) -+{ -+ void __iomem *reg = chip->base; -+ unsigned int shift = off; -+ u32 con; -+ -+ if (s3c_gpio_is_cfg_special(cfg)) { -+ cfg &= 0xf; -+ -+ /* Map output to 0, and SFN2 to 1 */ -+ cfg -= 1; -+ if (cfg > 1) -+ return -EINVAL; -+ -+ cfg <<= shift; -+ } -+ -+ con = __raw_readl(reg); -+ con &= ~(0x1 << shift); -+ con |= cfg; -+ __raw_writel(con, reg); -+ -+ return 0; -+} -+ -+int s3c_gpio_setcfg_s3c24xx(struct s3c_gpio_chip *chip, -+ unsigned int off, unsigned int cfg) -+{ -+ void __iomem *reg = chip->base; -+ unsigned int shift = off * 2; -+ u32 con; -+ -+ if (s3c_gpio_is_cfg_special(cfg)) { -+ cfg &= 0xf; -+ if (cfg > 3) -+ return -EINVAL; -+ -+ cfg <<= shift; -+ } -+ -+ con = __raw_readl(reg); -+ con &= ~(0x3 << shift); -+ con |= cfg; -+ __raw_writel(con, reg); -+ -+ return 0; -+} -+#endif -+ -+#ifdef CONFIG_S3C_GPIO_CFG_S3C64XX -+int s3c_gpio_setcfg_s3c64xx_4bit(struct s3c_gpio_chip *chip, -+ unsigned int off, unsigned int cfg) -+{ -+ void __iomem *reg = chip->base; -+ unsigned int shift = (off & 7) * 4; -+ u32 con; -+ -+ if (off < 8 && chip->chip.ngpio >= 8) -+ reg -= 4; -+ -+ if (s3c_gpio_is_cfg_special(cfg)) { -+ cfg &= 0xf; -+ cfg <<= shift; -+ } -+ -+ con = __raw_readl(reg); -+ con &= ~(0xf << shift); -+ con |= cfg; -+ __raw_writel(con, reg); -+ -+ return 0; -+} -+#endif /* CONFIG_S3C_GPIO_CFG_S3C64XX */ -+ -+#ifdef CONFIG_S3C_GPIO_PULL_UPDOWN -+int s3c_gpio_setpull_updown(struct s3c_gpio_chip *chip, -+ unsigned int off, s3c_gpio_pull_t pull) -+{ -+ void __iomem *reg = chip->base + 0x08; -+ int shift = off * 2; -+ u32 pup; -+ -+ pup = __raw_readl(reg); -+ pup &= ~(3 << shift); -+ pup |= pull << shift; -+ __raw_writel(pup, reg); -+ -+ return 0; -+} -+ -+s3c_gpio_pull_t s3c_gpio_getpull_updown(struct s3c_gpio_chip *chip, -+ unsigned int off) -+{ -+ void __iomem *reg = chip->base + 0x08; -+ int shift = off * 2; -+ u32 pup = __raw_readl(reg); -+ -+ pup >>= shift; -+ pup &= 0x3; -+ return (__force s3c_gpio_pull_t)pup; -+} -+#endif ---- /dev/null -+++ b/arch/arm/plat-s3c/include/mach/io.h -@@ -0,0 +1,18 @@ -+/* arch/arm/plat-s3c/include/mach/io.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben-linux@fluff.org> -+ * -+ * Default IO routines for plat-s3c based systems, such as S3C24A0 -+ */ -+ -+#ifndef __ASM_ARM_ARCH_IO_H -+#define __ASM_ARM_ARCH_IO_H -+ -+/* No current ISA/PCI bus support. */ -+#define __io(a) ((void __iomem *)(a)) -+#define __mem_pci(a) (a) -+ -+#define IO_SPACE_LIMIT (0xFFFFFFFF) -+ -+#endif ---- /dev/null -+++ b/arch/arm/plat-s3c/include/mach/timex.h -@@ -0,0 +1,26 @@ -+/* arch/arm/mach-s3c2410/include/mach/timex.h -+ * -+ * Copyright (c) 2003-2005 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C2410 - time parameters -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_TIMEX_H -+#define __ASM_ARCH_TIMEX_H -+ -+/* CLOCK_TICK_RATE needs to be evaluatable by the cpp, so making it -+ * a variable is useless. It seems as long as we make our timers an -+ * exact multiple of HZ, any value that makes a 1->1 correspondence -+ * for the time conversion functions to/from jiffies is acceptable. -+*/ -+ -+ -+#define CLOCK_TICK_RATE 12000000 -+ -+ -+#endif /* __ASM_ARCH_TIMEX_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/mach/vmalloc.h -@@ -0,0 +1,20 @@ -+/* arch/arm/plat-s3c/include/mach/vmalloc.h -+ * -+ * from arch/arm/mach-iop3xx/include/mach/vmalloc.h -+ * -+ * Copyright (c) 2003 Simtec Electronics <linux@simtec.co.uk> -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C2410 vmalloc definition -+*/ -+ -+#ifndef __ASM_ARCH_VMALLOC_H -+#define __ASM_ARCH_VMALLOC_H -+ -+#define VMALLOC_END (0xE0000000) -+ -+#endif /* __ASM_ARCH_VMALLOC_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/clock.h -@@ -0,0 +1,88 @@ -+/* linux/arch/arm/plat-s3c/include/plat/clock.h -+ * -+ * Copyright (c) 2004-2005 Simtec Electronics -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * Written by Ben Dooks, <ben@simtec.co.uk> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/spinlock.h> -+ -+struct clk { -+ struct list_head list; -+ struct module *owner; -+ struct clk *parent; -+ const char *name; -+ int id; -+ int usage; -+ unsigned long rate; -+ unsigned long ctrlbit; -+ -+ int (*enable)(struct clk *, int enable); -+ int (*set_rate)(struct clk *c, unsigned long rate); -+ unsigned long (*get_rate)(struct clk *c); -+ unsigned long (*round_rate)(struct clk *c, unsigned long rate); -+ int (*set_parent)(struct clk *c, struct clk *parent); -+}; -+ -+/* other clocks which may be registered by board support */ -+ -+extern struct clk s3c24xx_dclk0; -+extern struct clk s3c24xx_dclk1; -+extern struct clk s3c24xx_clkout0; -+extern struct clk s3c24xx_clkout1; -+extern struct clk s3c24xx_uclk; -+ -+extern struct clk clk_usb_bus; -+ -+/* core clock support */ -+ -+extern struct clk clk_f; -+extern struct clk clk_h; -+extern struct clk clk_p; -+extern struct clk clk_mpll; -+extern struct clk clk_upll; -+extern struct clk clk_epll; -+extern struct clk clk_xtal; -+extern struct clk clk_ext; -+ -+/* S3C64XX specific clocks */ -+extern struct clk clk_27m; -+extern struct clk clk_48m; -+ -+/* exports for arch/arm/mach-s3c2410 -+ * -+ * Please DO NOT use these outside of arch/arm/mach-s3c2410 -+*/ -+ -+extern spinlock_t clocks_lock; -+ -+extern int s3c2410_clkcon_enable(struct clk *clk, int enable); -+ -+extern int s3c24xx_register_clock(struct clk *clk); -+extern int s3c24xx_register_clocks(struct clk **clk, int nr_clks); -+ -+extern int s3c24xx_register_baseclocks(unsigned long xtal); -+ -+extern void s3c64xx_register_clocks(void); -+ -+extern void s3c24xx_setup_clocks(unsigned long fclk, -+ unsigned long hclk, -+ unsigned long pclk); -+ -+extern void s3c2410_setup_clocks(void); -+extern void s3c2412_setup_clocks(void); -+extern void s3c244x_setup_clocks(void); -+extern void s3c2443_setup_clocks(void); -+ -+/* S3C64XX specific functions and clocks */ -+ -+extern int s3c64xx_sclk_ctrl(struct clk *clk, int enable); -+ -+/* Init for pwm clock code */ -+ -+extern void s3c_pwmclk_init(void); -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/cpu-freq.h -@@ -0,0 +1,94 @@ -+/* arch/arm/plat-s3c/include/plat/cpu-freq.h -+ * -+ * Copyright (c) 2006,2007 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C CPU frequency scaling support - driver and board -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/cpufreq.h> -+ -+struct s3c_cpufreq_info; -+struct s3c_cpufreq_board; -+struct s3c_iotimings; -+ -+struct s3c_freq { -+ unsigned long fclk; -+ unsigned long armclk; -+ unsigned long hclk_tns; /* in 10ths of ns */ -+ unsigned long hclk; -+ unsigned long pclk; -+}; -+ -+/* wrapper 'struct cpufreq_freqs' so that any drivers receiving the -+ * notification can use this information that is not provided by just -+ * having the core frequency alone. -+ */ -+ -+struct s3c_cpufreq_freqs { -+ struct cpufreq_freqs freqs; -+ struct s3c_freq old; -+ struct s3c_freq new; -+}; -+ -+#define to_s3c_cpufreq(_cf) container_of(_cf, struct s3c_cpufreq_freqs, freqs) -+ -+struct s3c_clkdivs { -+ int p_divisor; /* fclk / pclk */ -+ int h_divisor; /* fclk / hclk */ -+ int arm_divisor; /* not all cpus have this. */ -+ unsigned char dvs; /* using dvs mode to arm. */ -+}; -+ -+#define PLLVAL(_m, _p, _s) (((_m) << 12) | ((_p) << 4) | (_s)) -+ -+struct s3c_pllval { -+ unsigned long freq; -+ unsigned long pll_reg; -+}; -+ -+struct s3c_cpufreq_config { -+ struct s3c_freq freq; -+ struct s3c_pllval pll; -+ struct s3c_clkdivs divs; -+ struct s3c_cpufreq_info *info; /* for core, not drivers */ -+ struct s3c_cpufreq_board *board; -+}; -+ -+/* s3c_cpufreq_board -+ * -+ * per-board configuraton information, such as memory refresh and -+ * how to initialise IO timings. -+ */ -+struct s3c_cpufreq_board { -+ unsigned int refresh; /* refresh period in ns */ -+ unsigned int auto_io:1; /* automatically init io timings. */ -+ unsigned int need_io:1; /* set if needs io timing support. */ -+ -+ /* any non-zero field in here is taken as an upper limit. */ -+ struct s3c_freq max; /* frequency limits */ -+}; -+ -+/* Things depending on frequency scaling. */ -+#ifdef CONFIG_CPU_FREQ_S3C -+#define __init_or_cpufreq -+#else -+#define __init_or_cpufreq __init -+#endif -+ -+/* Board functions */ -+ -+#ifdef CONFIG_CPU_FREQ_S3C -+extern int s3c_cpufreq_setboard(struct s3c_cpufreq_board *board); -+#else -+ -+static inline int s3c_cpufreq_setboard(struct s3c_cpufreq_board *board) -+{ -+ return 0; -+} -+#endif /* CONFIG_CPU_FREQ_S3C */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/cpu.h -@@ -0,0 +1,74 @@ -+/* linux/arch/arm/plat-s3c/include/plat/cpu.h -+ * -+ * Copyright (c) 2004-2005 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * Header file for S3C24XX CPU support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* todo - fix when rmk changes iodescs to use `void __iomem *` */ -+ -+#define IODESC_ENT(x) { (unsigned long)S3C24XX_VA_##x, __phys_to_pfn(S3C24XX_PA_##x), S3C24XX_SZ_##x, MT_DEVICE } -+ -+#ifndef MHZ -+#define MHZ (1000*1000) -+#endif -+ -+#define print_mhz(m) ((m) / MHZ), (((m) / 1000) % 1000) -+ -+/* forward declaration */ -+struct s3c24xx_uart_resources; -+struct platform_device; -+struct s3c2410_uartcfg; -+struct map_desc; -+ -+/* per-cpu initialisation function table. */ -+ -+struct cpu_table { -+ unsigned long idcode; -+ unsigned long idmask; -+ void (*map_io)(void); -+ void (*init_uarts)(struct s3c2410_uartcfg *cfg, int no); -+ void (*init_clocks)(int xtal); -+ int (*init)(void); -+ const char *name; -+}; -+ -+extern void s3c_init_cpu(unsigned long idcode, -+ struct cpu_table *cpus, unsigned int cputab_size); -+ -+/* core initialisation functions */ -+ -+extern void s3c24xx_init_irq(void); -+extern void s3c64xx_init_irq(u32 vic0, u32 vic1); -+ -+extern void s3c24xx_init_io(struct map_desc *mach_desc, int size); -+extern void s3c64xx_init_io(struct map_desc *mach_desc, int size); -+ -+extern void s3c24xx_init_uarts(struct s3c2410_uartcfg *cfg, int no); -+ -+extern void s3c24xx_init_clocks(int xtal); -+ -+extern void s3c24xx_init_uartdevs(char *name, -+ struct s3c24xx_uart_resources *res, -+ struct s3c2410_uartcfg *cfg, int no); -+ -+/* timer for 2410/2440 */ -+ -+struct sys_timer; -+extern struct sys_timer s3c24xx_timer; -+ -+/* system device classes */ -+ -+extern struct sysdev_class s3c2410_sysclass; -+extern struct sysdev_class s3c2412_sysclass; -+extern struct sysdev_class s3c2440_sysclass; -+extern struct sysdev_class s3c2442_sysclass; -+extern struct sysdev_class s3c2443_sysclass; -+extern struct sysdev_class s3c6410_sysclass; -+extern struct sysdev_class s3c64xx_sysclass; -+ ---- a/arch/arm/plat-s3c/include/plat/debug-macro.S -+++ b/arch/arm/plat-s3c/include/plat/debug-macro.S -@@ -20,7 +20,7 @@ - .endm - - #ifndef fifo_level --#define fifo_level fifo_level_s3c2410 -+#define fifo_level fifo_level_s3c2440 - #endif - - .macro fifo_full_s3c2440 rd, rx ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/devs.h -@@ -0,0 +1,55 @@ -+/* linux/include/asm-arm/plat-s3c24xx/devs.h -+ * -+ * Copyright (c) 2004 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * Header file for s3c2410 standard platform devices -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+#include <linux/platform_device.h> -+ -+struct s3c24xx_uart_resources { -+ struct resource *resources; -+ unsigned long nr_resources; -+}; -+ -+extern struct s3c24xx_uart_resources s3c2410_uart_resources[]; -+extern struct s3c24xx_uart_resources s3c64xx_uart_resources[]; -+ -+extern struct platform_device *s3c24xx_uart_devs[]; -+extern struct platform_device *s3c24xx_uart_src[]; -+ -+extern struct platform_device s3c_device_timer[]; -+ -+extern struct platform_device s3c_device_fb; -+extern struct platform_device s3c_device_usb; -+extern struct platform_device s3c_device_lcd; -+extern struct platform_device s3c_device_wdt; -+extern struct platform_device s3c_device_i2c0; -+extern struct platform_device s3c_device_i2c1; -+extern struct platform_device s3c_device_iis; -+extern struct platform_device s3c_device_rtc; -+extern struct platform_device s3c_device_adc; -+extern struct platform_device s3c_device_sdi; -+extern struct platform_device s3c_device_hsmmc0; -+extern struct platform_device s3c_device_hsmmc1; -+extern struct platform_device s3c_device_hsmmc2; -+ -+extern struct platform_device s3c_device_spi0; -+extern struct platform_device s3c_device_spi1; -+ -+extern struct platform_device s3c_device_nand; -+ -+extern struct platform_device s3c_device_usbgadget; -+ -+extern struct platform_device s3c_device_ts; -+ -+/* s3c2440 specific devices */ -+ -+#ifdef CONFIG_CPU_S3C2440 -+ -+extern struct platform_device s3c_device_camif; -+#endif ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/fb.h -@@ -0,0 +1,73 @@ -+/* linux/arch/arm/plat-s3c/include/plat/fb.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C - FB platform data definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __PLAT_S3C_FB_H -+#define __PLAT_S3C_FB_H __FILE__ -+ -+/** -+ * struct s3c_fb_pd_win - per window setup data -+ * @win_mode: The display parameters to initialise (not for window 0) -+ * @virtual_x: The virtual X size. -+ * @virtual_y: The virtual Y size. -+ */ -+struct s3c_fb_pd_win { -+ struct fb_videomode win_mode; -+ -+ unsigned short default_bpp; -+ unsigned short max_bpp; -+ unsigned short virtual_x; -+ unsigned short virtual_y; -+}; -+ -+/** -+ * struct s3c_fb_platdata - S3C driver platform specific information -+ * @setup_gpio: Setup the external GPIO pins to the right state to transfer -+ * the data from the display system to the connected display -+ * device. -+ * @vidcon0: The base vidcon0 values to control the panel data format. -+ * @vidcon1: The base vidcon1 values to control the panel data output. -+ * @win: The setup data for each hardware window, or NULL for unused. -+ * @display_mode: The LCD output display mode. -+ * -+ * The platform data supplies the video driver with all the information -+ * it requires to work with the display(s) attached to the machine. It -+ * controls the initial mode, the number of display windows (0 is always -+ * the base framebuffer) that are initialised etc. -+ * -+ */ -+struct s3c_fb_platdata { -+ void (*setup_gpio)(void); -+ -+ struct s3c_fb_pd_win *win[S3C_FB_MAX_WIN]; -+ -+ u32 vidcon0; -+ u32 vidcon1; -+}; -+ -+/** -+ * s3c_fb_set_platdata() - Setup the FB device with platform data. -+ * @pd: The platform data to set. The data is copied from the passed structure -+ * so the machine data can mark the data __initdata so that any unused -+ * machines will end up dumping their data at runtime. -+ */ -+extern void s3c_fb_set_platdata(struct s3c_fb_platdata *pd); -+ -+/** -+ * s3c64xx_fb_gpio_setup_24bpp() - S3C64XX setup function for 24bpp LCD -+ * -+ * Initialise the GPIO for an 24bpp LCD display on the RGB interface. -+ */ -+extern void s3c64xx_fb_gpio_setup_24bpp(void); -+ -+#endif /* __PLAT_S3C_FB_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/gpio-cfg.h -@@ -0,0 +1,110 @@ -+/* linux/arch/arm/plat-s3c/include/plat/gpio-cfg.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C Platform - GPIO pin configuration -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* This file contains the necessary definitions to get the basic gpio -+ * pin configuration done such as setting a pin to input or output or -+ * changing the pull-{up,down} configurations. -+ */ -+ -+/* Note, this interface is being added to the s3c64xx arch first and will -+ * be added to the s3c24xx systems later. -+ */ -+ -+#ifndef __PLAT_GPIO_CFG_H -+#define __PLAT_GPIO_CFG_H __FILE__ -+ -+typedef unsigned int __bitwise__ s3c_gpio_pull_t; -+ -+/* forward declaration if gpio-core.h hasn't been included */ -+struct s3c_gpio_chip; -+ -+/** -+ * struct s3c_gpio_cfg GPIO configuration -+ * @cfg_eint: Configuration setting when used for external interrupt source -+ * @get_pull: Read the current pull configuration for the GPIO -+ * @set_pull: Set the current pull configuraiton for the GPIO -+ * @set_config: Set the current configuration for the GPIO -+ * @get_config: Read the current configuration for the GPIO -+ * -+ * Each chip can have more than one type of GPIO bank available and some -+ * have different capabilites even when they have the same control register -+ * layouts. Provide an point to vector control routine and provide any -+ * per-bank configuration information that other systems such as the -+ * external interrupt code will need. -+ */ -+struct s3c_gpio_cfg { -+ unsigned int cfg_eint; -+ -+ s3c_gpio_pull_t (*get_pull)(struct s3c_gpio_chip *chip, unsigned offs); -+ int (*set_pull)(struct s3c_gpio_chip *chip, unsigned offs, -+ s3c_gpio_pull_t pull); -+ -+ unsigned (*get_config)(struct s3c_gpio_chip *chip, unsigned offs); -+ int (*set_config)(struct s3c_gpio_chip *chip, unsigned offs, -+ unsigned config); -+}; -+ -+#define S3C_GPIO_SPECIAL_MARK (0xfffffff0) -+#define S3C_GPIO_SPECIAL(x) (S3C_GPIO_SPECIAL_MARK | (x)) -+ -+/* Defines for generic pin configurations */ -+#define S3C_GPIO_INPUT (S3C_GPIO_SPECIAL(0)) -+#define S3C_GPIO_OUTPUT (S3C_GPIO_SPECIAL(1)) -+#define S3C_GPIO_SFN(x) (S3C_GPIO_SPECIAL(x)) -+ -+#define s3c_gpio_is_cfg_special(_cfg) \ -+ (((_cfg) & S3C_GPIO_SPECIAL_MARK) == S3C_GPIO_SPECIAL_MARK) -+ -+/** -+ * s3c_gpio_cfgpin() - Change the GPIO function of a pin. -+ * @pin pin The pin number to configure. -+ * @pin to The configuration for the pin's function. -+ * -+ * Configure which function is actually connected to the external -+ * pin, such as an gpio input, output or some form of special function -+ * connected to an internal peripheral block. -+ */ -+extern int s3c_gpio_cfgpin(unsigned int pin, unsigned int to); -+ -+/* Define values for the pull-{up,down} available for each gpio pin. -+ * -+ * These values control the state of the weak pull-{up,down} resistors -+ * available on most pins on the S3C series. Not all chips support both -+ * up or down settings, and it may be dependant on the chip that is being -+ * used to whether the particular mode is available. -+ */ -+#define S3C_GPIO_PULL_NONE ((__force s3c_gpio_pull_t)0x00) -+#define S3C_GPIO_PULL_DOWN ((__force s3c_gpio_pull_t)0x01) -+#define S3C_GPIO_PULL_UP ((__force s3c_gpio_pull_t)0x02) -+ -+/** -+ * s3c_gpio_setpull() - set the state of a gpio pin pull resistor -+ * @pin: The pin number to configure the pull resistor. -+ * @pull: The configuration for the pull resistor. -+ * -+ * This function sets the state of the pull-{up,down} resistor for the -+ * specified pin. It will return 0 if successfull, or a negative error -+ * code if the pin cannot support the requested pull setting. -+*/ -+extern int s3c_gpio_setpull(unsigned int pin, s3c_gpio_pull_t pull); -+ -+/** -+ * s3c_gpio_getpull() - get the pull resistor state of a gpio pin -+ * @pin: The pin number to get the settings for -+ * -+ * Read the pull resistor value for the specified pin. -+*/ -+extern s3c_gpio_pull_t s3c_gpio_getpull(unsigned int pin); -+ -+#endif /* __PLAT_GPIO_CFG_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/gpio-cfg-helpers.h -@@ -0,0 +1,176 @@ -+/* linux/arch/arm/plat-s3c/include/plat/gpio-cfg-helper.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C Platform - GPIO pin configuration helper definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* This is meant for core cpu support, machine or other driver files -+ * should not be including this header. -+ */ -+ -+#ifndef __PLAT_GPIO_CFG_HELPERS_H -+#define __PLAT_GPIO_CFG_HELPERS_H __FILE__ -+ -+/* As a note, all gpio configuration functions are entered exclusively, either -+ * with the relevant lock held or the system prevented from doing anything else -+ * by disabling interrupts. -+*/ -+ -+static inline int s3c_gpio_do_setcfg(struct s3c_gpio_chip *chip, -+ unsigned int off, unsigned int config) -+{ -+ return (chip->config->set_config)(chip, off, config); -+} -+ -+static inline int s3c_gpio_do_setpull(struct s3c_gpio_chip *chip, -+ unsigned int off, s3c_gpio_pull_t pull) -+{ -+ return (chip->config->set_pull)(chip, off, pull); -+} -+ -+/** -+ * s3c_gpio_setcfg_s3c24xx - S3C24XX style GPIO configuration. -+ * @chip: The gpio chip that is being configured. -+ * @off: The offset for the GPIO being configured. -+ * @cfg: The configuration value to set. -+ * -+ * This helper deal with the GPIO cases where the control register -+ * has two bits of configuration per gpio, which have the following -+ * functions: -+ * 00 = input -+ * 01 = output -+ * 1x = special function -+*/ -+extern int s3c_gpio_setcfg_s3c24xx(struct s3c_gpio_chip *chip, -+ unsigned int off, unsigned int cfg); -+ -+/** -+ * s3c_gpio_setcfg_s3c24xx_a - S3C24XX style GPIO configuration (Bank A) -+ * @chip: The gpio chip that is being configured. -+ * @off: The offset for the GPIO being configured. -+ * @cfg: The configuration value to set. -+ * -+ * This helper deal with the GPIO cases where the control register -+ * has one bit of configuration for the gpio, where setting the bit -+ * means the pin is in special function mode and unset means output. -+*/ -+extern int s3c_gpio_setcfg_s3c24xx_a(struct s3c_gpio_chip *chip, -+ unsigned int off, unsigned int cfg); -+ -+/** -+ * s3c_gpio_setcfg_s3c64xx_4bit - S3C64XX 4bit single register GPIO config. -+ * @chip: The gpio chip that is being configured. -+ * @off: The offset for the GPIO being configured. -+ * @cfg: The configuration value to set. -+ * -+ * This helper deal with the GPIO cases where the control register has 4 bits -+ * of control per GPIO, generally in the form of: -+ * 0000 = Input -+ * 0001 = Output -+ * others = Special functions (dependant on bank) -+ * -+ * Note, since the code to deal with the case where there are two control -+ * registers instead of one, we do not have a seperate set of functions for -+ * each case. -+*/ -+extern int s3c_gpio_setcfg_s3c64xx_4bit(struct s3c_gpio_chip *chip, -+ unsigned int off, unsigned int cfg); -+ -+ -+/* Pull-{up,down} resistor controls. -+ * -+ * S3C2410,S3C2440,S3C24A0 = Pull-UP, -+ * S3C2412,S3C2413 = Pull-Down -+ * S3C6400,S3C6410 = Pull-Both [None,Down,Up,Undef] -+ * S3C2443 = Pull-Both [not same as S3C6400] -+ */ -+ -+/** -+ * s3c_gpio_setpull_1up() - Pull configuration for choice of up or none. -+ * @chip: The gpio chip that is being configured. -+ * @off: The offset for the GPIO being configured. -+ * @param: pull: The pull mode being requested. -+ * -+ * This is a helper function for the case where we have GPIOs with one -+ * bit configuring the presence of a pull-up resistor. -+ */ -+extern int s3c_gpio_setpull_1up(struct s3c_gpio_chip *chip, -+ unsigned int off, s3c_gpio_pull_t pull); -+ -+/** -+ * s3c_gpio_setpull_1down() - Pull configuration for choice of down or none -+ * @chip: The gpio chip that is being configured -+ * @off: The offset for the GPIO being configured -+ * @param: pull: The pull mode being requested -+ * -+ * This is a helper function for the case where we have GPIOs with one -+ * bit configuring the presence of a pull-down resistor. -+ */ -+extern int s3c_gpio_setpull_1down(struct s3c_gpio_chip *chip, -+ unsigned int off, s3c_gpio_pull_t pull); -+ -+/** -+ * s3c_gpio_setpull_upown() - Pull configuration for choice of up, down or none -+ * @chip: The gpio chip that is being configured. -+ * @off: The offset for the GPIO being configured. -+ * @param: pull: The pull mode being requested. -+ * -+ * This is a helper function for the case where we have GPIOs with two -+ * bits configuring the presence of a pull resistor, in the following -+ * order: -+ * 00 = No pull resistor connected -+ * 01 = Pull-up resistor connected -+ * 10 = Pull-down resistor connected -+ */ -+extern int s3c_gpio_setpull_updown(struct s3c_gpio_chip *chip, -+ unsigned int off, s3c_gpio_pull_t pull); -+ -+ -+/** -+ * s3c_gpio_getpull_updown() - Get configuration for choice of up, down or none -+ * @chip: The gpio chip that the GPIO pin belongs to -+ * @off: The offset to the pin to get the configuration of. -+ * -+ * This helper function reads the state of the pull-{up,down} resistor for the -+ * given GPIO in the same case as s3c_gpio_setpull_upown. -+*/ -+extern s3c_gpio_pull_t s3c_gpio_getpull_updown(struct s3c_gpio_chip *chip, -+ unsigned int off); -+ -+/** -+ * s3c_gpio_setpull_s3c2443() - Pull configuration for s3c2443. -+ * @chip: The gpio chip that is being configured. -+ * @off: The offset for the GPIO being configured. -+ * @param: pull: The pull mode being requested. -+ * -+ * This is a helper function for the case where we have GPIOs with two -+ * bits configuring the presence of a pull resistor, in the following -+ * order: -+ * 00 = Pull-up resistor connected -+ * 10 = Pull-down resistor connected -+ * x1 = No pull up resistor -+ */ -+extern int s3c_gpio_setpull_s3c2443(struct s3c_gpio_chip *chip, -+ unsigned int off, s3c_gpio_pull_t pull); -+ -+/** -+ * s3c_gpio_getpull_s3c2443() - Get configuration for s3c2443 pull resistors -+ * @chip: The gpio chip that the GPIO pin belongs to. -+ * @off: The offset to the pin to get the configuration of. -+ * -+ * This helper function reads the state of the pull-{up,down} resistor for the -+ * given GPIO in the same case as s3c_gpio_setpull_upown. -+*/ -+extern s3c_gpio_pull_t s3c_gpio_getpull_s3c24xx(struct s3c_gpio_chip *chip, -+ unsigned int off); -+ -+#endif /* __PLAT_GPIO_CFG_HELPERS_H */ -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/gpio-core.h -@@ -0,0 +1,107 @@ -+/* linux/arch/arm/plat-s3c/include/plat/gpio-core.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C Platform - GPIO core -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* Define the core gpiolib support functions that the s3c platforms may -+ * need to extend or change depending on the hardware and the s3c chip -+ * selected at build or found at run time. -+ * -+ * These definitions are not intended for driver inclusion, there is -+ * nothing here that should not live outside the platform and core -+ * specific code. -+*/ -+ -+struct s3c_gpio_chip; -+ -+/** -+ * struct s3c_gpio_pm - power management (suspend/resume) information -+ * @save: Routine to save the state of the GPIO block -+ * @resume: Routine to resume the GPIO block. -+ */ -+struct s3c_gpio_pm { -+ void (*save)(struct s3c_gpio_chip *chip); -+ void (*resume)(struct s3c_gpio_chip *chip); -+}; -+ -+struct s3c_gpio_cfg; -+ -+/** -+ * struct s3c_gpio_chip - wrapper for specific implementation of gpio -+ * @chip: The chip structure to be exported via gpiolib. -+ * @base: The base pointer to the gpio configuration registers. -+ * @config: special function and pull-resistor control information. -+ * @pm_save: Save information for suspend/resume support. -+ * -+ * This wrapper provides the necessary information for the Samsung -+ * specific gpios being registered with gpiolib. -+ */ -+struct s3c_gpio_chip { -+ struct gpio_chip chip; -+ struct s3c_gpio_cfg *config; -+ struct s3c_gpio_pm *pm; -+ void __iomem *base; -+#ifdef CONFIG_PM -+ u32 pm_save[4]; -+#endif -+}; -+ -+static inline struct s3c_gpio_chip *to_s3c_gpio(struct gpio_chip *gpc) -+{ -+ return container_of(gpc, struct s3c_gpio_chip, chip); -+} -+ -+/** s3c_gpiolib_add() - add the s3c specific version of a gpio_chip. -+ * @chip: The chip to register -+ * -+ * This is a wrapper to gpiochip_add() that takes our specific gpio chip -+ * information and makes the necessary alterations for the platform and -+ * notes the information for use with the configuration systems and any -+ * other parts of the system. -+ */ -+extern void s3c_gpiolib_add(struct s3c_gpio_chip *chip); -+ -+/* CONFIG_S3C_GPIO_TRACK enables the tracking of the s3c specific gpios -+ * for use with the configuration calls, and other parts of the s3c gpiolib -+ * support code. -+ * -+ * Not all s3c support code will need this, as some configurations of cpu -+ * may only support one or two different configuration options and have an -+ * easy gpio to s3c_gpio_chip mapping function. If this is the case, then -+ * the machine support file should provide its own s3c_gpiolib_getchip() -+ * and any other necessary functions. -+ */ -+ -+#ifdef CONFIG_S3C_GPIO_TRACK -+extern struct s3c_gpio_chip *s3c_gpios[S3C_GPIO_END]; -+ -+static inline struct s3c_gpio_chip *s3c_gpiolib_getchip(unsigned int chip) -+{ -+ return (chip < S3C_GPIO_END) ? s3c_gpios[chip] : NULL; -+} -+#else -+/* machine specific code should provide s3c_gpiolib_getchip */ -+ -+static inline void s3c_gpiolib_track(struct s3c_gpio_chip *chip) { } -+#endif -+ -+#ifdef CONFIG_PM -+extern struct s3c_gpio_pm s3c_gpio_pm_1bit; -+extern struct s3c_gpio_pm s3c_gpio_pm_2bit; -+extern struct s3c_gpio_pm s3c_gpio_pm_4bit; -+#define __gpio_pm(x) x -+#else -+#define s3c_gpio_pm_1bit NULL -+#define s3c_gpio_pm_2bit NULL -+#define s3c_gpio_pm_4bit NULL -+#define __gpio_pm(x) NULL -+ -+#endif /* CONFIG_PM */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/iic-core.h -@@ -0,0 +1,35 @@ -+/* arch/arm/mach-s3c2410/include/mach/iic-core.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C - I2C Controller core functions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_IIC_CORE_H -+#define __ASM_ARCH_IIC_CORE_H __FILE__ -+ -+/* These functions are only for use with the core support code, such as -+ * the cpu specific initialisation code -+ */ -+ -+/* re-define device name depending on support. */ -+static inline void s3c_i2c0_setname(char *name) -+{ -+ /* currently this device is always compiled in */ -+ s3c_device_i2c0.name = name; -+} -+ -+static inline void s3c_i2c1_setname(char *name) -+{ -+#ifdef CONFIG_S3C_DEV_I2C1 -+ s3c_device_i2c1.name = name; -+#endif -+} -+ -+#endif /* __ASM_ARCH_IIC_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/iic.h -@@ -0,0 +1,57 @@ -+/* arch/arm/mach-s3c2410/include/mach/iic.h -+ * -+ * Copyright (c) 2004 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C2410 - I2C Controller platfrom_device info -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_ARCH_IIC_H -+#define __ASM_ARCH_IIC_H __FILE__ -+ -+#define S3C_IICFLG_FILTER (1<<0) /* enable s3c2440 filter */ -+ -+/* Notes: -+ * 1) All frequencies are expressed in Hz -+ * 2) A value of zero is `do not care` -+*/ -+ -+struct s3c2410_platform_i2c { -+ int bus_num; /* bus number to use */ -+ unsigned int flags; -+ unsigned int slave_addr; /* slave address for controller */ -+ unsigned long bus_freq; /* standard bus frequency */ -+ unsigned long max_freq; /* max frequency for the bus */ -+ unsigned long min_freq; /* min frequency for the bus */ -+ unsigned int sda_delay; /* pclks (s3c2440 only) */ -+ -+ void (*cfg_gpio)(struct platform_device *dev); -+}; -+ -+/** -+ * s3c_i2c0_set_platdata - set platform data for i2c0 device -+ * @i2c: The platform data to set, or NULL for default data. -+ * -+ * Register the given platform data for use with the i2c0 device. This -+ * call copies the platform data, so the caller can use __initdata for -+ * their copy. -+ * -+ * This call will set cfg_gpio if is null to the default platform -+ * implementation. -+ * -+ * Any user of s3c_device_i2c0 should call this, even if it is with -+ * NULL to ensure that the device is given the default platform data -+ * as the driver will no longer carry defaults. -+ */ -+extern void s3c_i2c0_set_platdata(struct s3c2410_platform_i2c *i2c); -+extern void s3c_i2c1_set_platdata(struct s3c2410_platform_i2c *i2c); -+ -+/* defined by architecture to configure gpio */ -+extern void s3c_i2c0_cfg_gpio(struct platform_device *dev); -+extern void s3c_i2c1_cfg_gpio(struct platform_device *dev); -+ -+#endif /* __ASM_ARCH_IIC_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/map-base.h -@@ -0,0 +1,40 @@ -+/* linux/include/asm-arm/plat-s3c/map.h -+ * -+ * Copyright 2003, 2007 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C - Memory map definitions (virtual addresses) -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_PLAT_MAP_H -+#define __ASM_PLAT_MAP_H __FILE__ -+ -+/* Fit all our registers in at 0xF4000000 upwards, trying to use as -+ * little of the VA space as possible so vmalloc and friends have a -+ * better chance of getting memory. -+ * -+ * we try to ensure stuff like the IRQ registers are available for -+ * an single MOVS instruction (ie, only 8 bits of set data) -+ */ -+ -+#define S3C_ADDR_BASE (0xF4000000) -+ -+#ifndef __ASSEMBLY__ -+#define S3C_ADDR(x) ((void __iomem __force *)S3C_ADDR_BASE + (x)) -+#else -+#define S3C_ADDR(x) (S3C_ADDR_BASE + (x)) -+#endif -+ -+#define S3C_VA_IRQ S3C_ADDR(0x00000000) /* irq controller(s) */ -+#define S3C_VA_SYS S3C_ADDR(0x00100000) /* system control */ -+#define S3C_VA_MEM S3C_ADDR(0x00200000) /* system control */ -+#define S3C_VA_TIMER S3C_ADDR(0x00300000) /* timer block */ -+#define S3C_VA_WATCHDOG S3C_ADDR(0x00400000) /* watchdog */ -+#define S3C_VA_UART S3C_ADDR(0x01000000) /* UART */ -+ -+#endif /* __ASM_PLAT_MAP_H */ ---- a/arch/arm/plat-s3c/include/plat/map.h -+++ /dev/null -@@ -1,40 +0,0 @@ --/* linux/include/asm-arm/plat-s3c/map.h -- * -- * Copyright 2003, 2007 Simtec Electronics -- * http://armlinux.simtec.co.uk/ -- * Ben Dooks <ben@simtec.co.uk> -- * -- * S3C - Memory map definitions (virtual addresses) -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ -- --#ifndef __ASM_PLAT_MAP_H --#define __ASM_PLAT_MAP_H __FILE__ -- --/* Fit all our registers in at 0xF4000000 upwards, trying to use as -- * little of the VA space as possible so vmalloc and friends have a -- * better chance of getting memory. -- * -- * we try to ensure stuff like the IRQ registers are available for -- * an single MOVS instruction (ie, only 8 bits of set data) -- */ -- --#define S3C_ADDR_BASE (0xF4000000) -- --#ifndef __ASSEMBLY__ --#define S3C_ADDR(x) ((void __iomem __force *)S3C_ADDR_BASE + (x)) --#else --#define S3C_ADDR(x) (S3C_ADDR_BASE + (x)) --#endif -- --#define S3C_VA_IRQ S3C_ADDR(0x00000000) /* irq controller(s) */ --#define S3C_VA_SYS S3C_ADDR(0x00100000) /* system control */ --#define S3C_VA_MEM S3C_ADDR(0x00200000) /* system control */ --#define S3C_VA_TIMER S3C_ADDR(0x00300000) /* timer block */ --#define S3C_VA_WATCHDOG S3C_ADDR(0x00400000) /* watchdog */ --#define S3C_VA_UART S3C_ADDR(0x01000000) /* UART */ -- --#endif /* __ASM_PLAT_MAP_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/nand.h -@@ -0,0 +1,56 @@ -+/* arch/arm/mach-s3c2410/include/mach/nand.h -+ * -+ * Copyright (c) 2004 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C2410 - NAND device controller platfrom_device info -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* struct s3c2410_nand_set -+ * -+ * define an set of one or more nand chips registered with an unique mtd -+ * -+ * nr_chips = number of chips in this set -+ * nr_partitions = number of partitions pointed to be partitoons (or zero) -+ * name = name of set (optional) -+ * nr_map = map for low-layer logical to physical chip numbers (option) -+ * partitions = mtd partition list -+*/ -+ -+#define S3C2410_NAND_BBT 0x0001 -+ -+struct s3c2410_nand_set { -+ unsigned int disable_ecc : 1; -+ -+ int nr_chips; -+ int nr_partitions; -+ unsigned int flags; -+ char *name; -+ int *nr_map; -+ struct mtd_partition *partitions; -+ struct nand_ecclayout *ecc_layout; -+}; -+ -+struct s3c2410_platform_nand { -+ /* timing information for controller, all times in nanoseconds */ -+ -+ int tacls; /* time for active CLE/ALE to nWE/nOE */ -+ int twrph0; /* active time for nWE/nOE */ -+ int twrph1; /* time for release CLE/ALE from nWE/nOE inactive */ -+ -+ unsigned int ignore_unset_ecc : 1; -+ -+ int nr_sets; -+ struct s3c2410_nand_set *sets; -+ -+ /* force software_ecc at runtime */ -+ int software_ecc; -+ -+ void (*select_chip)(struct s3c2410_nand_set *, -+ int chip); -+}; -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/pm.h -@@ -0,0 +1,184 @@ -+/* linux/include/asm-arm/plat-s3c24xx/pm.h -+ * -+ * Copyright (c) 2004 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Written by Ben Dooks, <ben@simtec.co.uk> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/sysdev.h> -+ -+/* s3c_pm_init -+ * -+ * called from board at initialisation time to setup the power -+ * management -+*/ -+ -+#ifdef CONFIG_PM -+ -+extern __init int s3c_pm_init(void); -+ -+#else -+ -+static inline int s3c_pm_init(void) -+{ -+ return 0; -+} -+#endif -+ -+/* configuration for the IRQ mask over sleep */ -+extern unsigned long s3c_irqwake_intmask; -+extern unsigned long s3c_irqwake_eintmask; -+ -+/* IRQ masks for IRQs allowed to go to sleep (see irq.c) */ -+extern unsigned long s3c_irqwake_intallow; -+extern unsigned long s3c_irqwake_eintallow; -+ -+/* per-cpu sleep functions */ -+ -+extern void (*pm_cpu_prep)(void); -+extern void (*pm_cpu_sleep)(void); -+ -+/* Flags for PM Control */ -+ -+extern unsigned long s3c_pm_flags; -+ -+extern unsigned char pm_uart_udivslot; /* true to save UART UDIVSLOT */ -+ -+/* from sleep.S */ -+ -+extern int s3c_cpu_save(unsigned long *saveblk); -+extern void s3c_cpu_resume(void); -+ -+extern void s3c2410_cpu_suspend(void); -+ -+extern unsigned long s3c_sleep_save_phys; -+ -+/* sleep save info */ -+ -+/** -+ * struct sleep_save - save information for shared peripherals. -+ * @reg: Pointer to the register to save. -+ * @val: Holder for the value saved from reg. -+ * -+ * This describes a list of registers which is used by the pm core and -+ * other subsystem to save and restore register values over suspend. -+ */ -+struct sleep_save { -+ void __iomem *reg; -+ unsigned long val; -+}; -+ -+#define SAVE_ITEM(x) \ -+ { .reg = (x) } -+ -+/** -+ * struct pm_uart_save - save block for core UART -+ * @ulcon: Save value for S3C2410_ULCON -+ * @ucon: Save value for S3C2410_UCON -+ * @ufcon: Save value for S3C2410_UFCON -+ * @umcon: Save value for S3C2410_UMCON -+ * @ubrdiv: Save value for S3C2410_UBRDIV -+ * -+ * Save block for UART registers to be held over sleep and restored if they -+ * are needed (say by debug). -+*/ -+struct pm_uart_save { -+ u32 ulcon; -+ u32 ucon; -+ u32 ufcon; -+ u32 umcon; -+ u32 ubrdiv; -+ u32 udivslot; -+}; -+ -+/* helper functions to save/restore lists of registers. */ -+ -+extern void s3c_pm_do_save(struct sleep_save *ptr, int count); -+extern void s3c_pm_do_restore(struct sleep_save *ptr, int count); -+extern void s3c_pm_do_restore_core(struct sleep_save *ptr, int count); -+ -+#ifdef CONFIG_PM -+extern int s3c_irqext_wake(unsigned int irqno, unsigned int state); -+extern int s3c24xx_irq_suspend(struct sys_device *dev, pm_message_t state); -+extern int s3c24xx_irq_resume(struct sys_device *dev); -+#else -+#define s3c_irqext_wake NULL -+#define s3c24xx_irq_suspend NULL -+#define s3c24xx_irq_resume NULL -+#endif -+ -+/* PM debug functions */ -+ -+#ifdef CONFIG_S3C2410_PM_DEBUG -+/** -+ * s3c_pm_dbg() - low level debug function for use in suspend/resume. -+ * @msg: The message to print. -+ * -+ * This function is used mainly to debug the resume process before the system -+ * can rely on printk/console output. It uses the low-level debugging output -+ * routine printascii() to do its work. -+ */ -+extern void s3c_pm_dbg(const char *msg, ...); -+ -+#define S3C_PMDBG(fmt...) s3c_pm_dbg(fmt) -+#else -+#define S3C_PMDBG(fmt...) printk(KERN_DEBUG fmt) -+#endif -+ -+#ifdef CONFIG_S3C_PM_DEBUG_LED_SMDK -+/** -+ * s3c_pm_debug_smdkled() - Debug PM suspend/resume via SMDK Board LEDs -+ * @set: set bits for the state of the LEDs -+ * @clear: clear bits for the state of the LEDs. -+ */ -+extern void s3c_pm_debug_smdkled(u32 set, u32 clear); -+ -+#else -+static inline void s3c_pm_debug_smdkled(u32 set, u32 clear) { } -+#endif /* CONFIG_S3C_PM_DEBUG_LED_SMDK */ -+ -+/* suspend memory checking */ -+ -+#ifdef CONFIG_S3C2410_PM_CHECK -+extern void s3c_pm_check_prepare(void); -+extern void s3c_pm_check_restore(void); -+extern void s3c_pm_check_cleanup(void); -+extern void s3c_pm_check_store(void); -+#else -+#define s3c_pm_check_prepare() do { } while(0) -+#define s3c_pm_check_restore() do { } while(0) -+#define s3c_pm_check_cleanup() do { } while(0) -+#define s3c_pm_check_store() do { } while(0) -+#endif -+ -+/** -+ * s3c_pm_configure_extint() - ensure pins are correctly set for IRQ -+ * -+ * Setup all the necessary GPIO pins for waking the system on external -+ * interrupt. -+ */ -+extern void s3c_pm_configure_extint(void); -+ -+/** -+ * s3c_pm_restore_gpios() - restore the state of the gpios after sleep. -+ * -+ * Restore the state of the GPIO pins after sleep, which may involve ensuring -+ * that we do not glitch the state of the pins from that the bootloader's -+ * resume code has done. -+*/ -+extern void s3c_pm_restore_gpios(void); -+ -+/** -+ * s3c_pm_save_gpios() - save the state of the GPIOs for restoring after sleep. -+ * -+ * Save the GPIO states for resotration on resume. See s3c_pm_restore_gpios(). -+ */ -+extern void s3c_pm_save_gpios(void); -+ -+extern void s3c_pm_save_core(void); -+extern void s3c_pm_restore_core(void); -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-ac97.h -@@ -0,0 +1,67 @@ -+/* arch/arm/mach-s3c2410/include/mach/regs-ac97.h -+ * -+ * Copyright (c) 2006 Simtec Electronics <linux@simtec.co.uk> -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C2440 AC97 Controller -+*/ -+ -+#ifndef __ASM_ARCH_REGS_AC97_H -+#define __ASM_ARCH_REGS_AC97_H __FILE__ -+ -+#define S3C_AC97_GLBCTRL (0x00) -+ -+#define S3C_AC97_GLBCTRL_CODECREADYIE (1<<22) -+#define S3C_AC97_GLBCTRL_PCMOUTURIE (1<<21) -+#define S3C_AC97_GLBCTRL_PCMINORIE (1<<20) -+#define S3C_AC97_GLBCTRL_MICINORIE (1<<19) -+#define S3C_AC97_GLBCTRL_PCMOUTTIE (1<<18) -+#define S3C_AC97_GLBCTRL_PCMINTIE (1<<17) -+#define S3C_AC97_GLBCTRL_MICINTIE (1<<16) -+#define S3C_AC97_GLBCTRL_PCMOUTTM_OFF (0<<12) -+#define S3C_AC97_GLBCTRL_PCMOUTTM_PIO (1<<12) -+#define S3C_AC97_GLBCTRL_PCMOUTTM_DMA (2<<12) -+#define S3C_AC97_GLBCTRL_PCMOUTTM_MASK (3<<12) -+#define S3C_AC97_GLBCTRL_PCMINTM_OFF (0<<10) -+#define S3C_AC97_GLBCTRL_PCMINTM_PIO (1<<10) -+#define S3C_AC97_GLBCTRL_PCMINTM_DMA (2<<10) -+#define S3C_AC97_GLBCTRL_PCMINTM_MASK (3<<10) -+#define S3C_AC97_GLBCTRL_MICINTM_OFF (0<<8) -+#define S3C_AC97_GLBCTRL_MICINTM_PIO (1<<8) -+#define S3C_AC97_GLBCTRL_MICINTM_DMA (2<<8) -+#define S3C_AC97_GLBCTRL_MICINTM_MASK (3<<8) -+#define S3C_AC97_GLBCTRL_TRANSFERDATAENABLE (1<<3) -+#define S3C_AC97_GLBCTRL_ACLINKON (1<<2) -+#define S3C_AC97_GLBCTRL_WARMRESET (1<<1) -+#define S3C_AC97_GLBCTRL_COLDRESET (1<<0) -+ -+#define S3C_AC97_GLBSTAT (0x04) -+ -+#define S3C_AC97_GLBSTAT_CODECREADY (1<<22) -+#define S3C_AC97_GLBSTAT_PCMOUTUR (1<<21) -+#define S3C_AC97_GLBSTAT_PCMINORI (1<<20) -+#define S3C_AC97_GLBSTAT_MICINORI (1<<19) -+#define S3C_AC97_GLBSTAT_PCMOUTTI (1<<18) -+#define S3C_AC97_GLBSTAT_PCMINTI (1<<17) -+#define S3C_AC97_GLBSTAT_MICINTI (1<<16) -+#define S3C_AC97_GLBSTAT_MAINSTATE_IDLE (0<<0) -+#define S3C_AC97_GLBSTAT_MAINSTATE_INIT (1<<0) -+#define S3C_AC97_GLBSTAT_MAINSTATE_READY (2<<0) -+#define S3C_AC97_GLBSTAT_MAINSTATE_ACTIVE (3<<0) -+#define S3C_AC97_GLBSTAT_MAINSTATE_LP (4<<0) -+#define S3C_AC97_GLBSTAT_MAINSTATE_WARM (5<<0) -+ -+#define S3C_AC97_CODEC_CMD (0x08) -+ -+#define S3C_AC97_CODEC_CMD_READ (1<<23) -+ -+#define S3C_AC97_STAT (0x0c) -+#define S3C_AC97_PCM_ADDR (0x10) -+#define S3C_AC97_PCM_DATA (0x18) -+#define S3C_AC97_MIC_DATA (0x1C) -+ -+#endif /* __ASM_ARCH_REGS_AC97_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-fb.h -@@ -0,0 +1,366 @@ -+/* arch/arm/plat-s3c/include/plat/regs-fb.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C Platform - new-style framebuffer register definitions -+ * -+ * This is the register set for the new style framebuffer interface -+ * found from the S3C2443 onwards into the S3C2416, S3C2450 and the -+ * S3C64XX series such as the S3C6400 and S3C6410. -+ * -+ * The file does not contain the cpu specific items which are based on -+ * whichever architecture is selected, it only contains the core of the -+ * register set. See <mach/regs-fb.h> to get the specifics. -+ * -+ * Note, we changed to using regs-fb.h as it avoids any clashes with -+ * the original regs-lcd.h so out of the way of regs-lcd.h as well as -+ * indicating the newer block is much more than just an LCD interface. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* Please do not include this file directly, use <mach/regs-fb.h> to -+ * ensure all the localised SoC support is included as necessary. -+*/ -+ -+/* VIDCON0 */ -+ -+#define VIDCON0 (0x00) -+#define VIDCON0_INTERLACE (1 << 29) -+#define VIDCON0_VIDOUT_MASK (0x3 << 26) -+#define VIDCON0_VIDOUT_SHIFT (26) -+#define VIDCON0_VIDOUT_RGB (0x0 << 26) -+#define VIDCON0_VIDOUT_TV (0x1 << 26) -+#define VIDCON0_VIDOUT_I80_LDI0 (0x2 << 26) -+#define VIDCON0_VIDOUT_I80_LDI1 (0x3 << 26) -+ -+#define VIDCON0_L1_DATA_MASK (0x7 << 23) -+#define VIDCON0_L1_DATA_SHIFT (23) -+#define VIDCON0_L1_DATA_16BPP (0x0 << 23) -+#define VIDCON0_L1_DATA_18BPP16 (0x1 << 23) -+#define VIDCON0_L1_DATA_18BPP9 (0x2 << 23) -+#define VIDCON0_L1_DATA_24BPP (0x3 << 23) -+#define VIDCON0_L1_DATA_18BPP (0x4 << 23) -+#define VIDCON0_L1_DATA_16BPP8 (0x5 << 23) -+ -+#define VIDCON0_L0_DATA_MASK (0x7 << 20) -+#define VIDCON0_L0_DATA_SHIFT (20) -+#define VIDCON0_L0_DATA_16BPP (0x0 << 20) -+#define VIDCON0_L0_DATA_18BPP16 (0x1 << 20) -+#define VIDCON0_L0_DATA_18BPP9 (0x2 << 20) -+#define VIDCON0_L0_DATA_24BPP (0x3 << 20) -+#define VIDCON0_L0_DATA_18BPP (0x4 << 20) -+#define VIDCON0_L0_DATA_16BPP8 (0x5 << 20) -+ -+#define VIDCON0_PNRMODE_MASK (0x3 << 17) -+#define VIDCON0_PNRMODE_SHIFT (17) -+#define VIDCON0_PNRMODE_RGB (0x0 << 17) -+#define VIDCON0_PNRMODE_BGR (0x1 << 17) -+#define VIDCON0_PNRMODE_SERIAL_RGB (0x2 << 17) -+#define VIDCON0_PNRMODE_SERIAL_BGR (0x3 << 17) -+ -+#define VIDCON0_CLKVALUP (1 << 16) -+#define VIDCON0_CLKVAL_F_MASK (0xff << 6) -+#define VIDCON0_CLKVAL_F_SHIFT (6) -+#define VIDCON0_CLKVAL_F_LIMIT (0xff) -+#define VIDCON0_CLKVAL_F(_x) ((_x) << 6) -+#define VIDCON0_VLCKFREE (1 << 5) -+#define VIDCON0_CLKDIR (1 << 4) -+ -+#define VIDCON0_CLKSEL_MASK (0x3 << 2) -+#define VIDCON0_CLKSEL_SHIFT (2) -+#define VIDCON0_CLKSEL_HCLK (0x0 << 2) -+#define VIDCON0_CLKSEL_LCD (0x1 << 2) -+#define VIDCON0_CLKSEL_27M (0x3 << 2) -+ -+#define VIDCON0_ENVID (1 << 1) -+#define VIDCON0_ENVID_F (1 << 0) -+ -+#define VIDCON1 (0x04) -+#define VIDCON1_LINECNT_MASK (0x7ff << 16) -+#define VIDCON1_LINECNT_SHIFT (16) -+#define VIDCON1_LINECNT_GET(_v) (((_v) >> 16) & 0x7ff) -+#define VIDCON1_VSTATUS_MASK (0x3 << 13) -+#define VIDCON1_VSTATUS_SHIFT (13) -+#define VIDCON1_VSTATUS_VSYNC (0x0 << 13) -+#define VIDCON1_VSTATUS_BACKPORCH (0x1 << 13) -+#define VIDCON1_VSTATUS_ACTIVE (0x2 << 13) -+#define VIDCON1_VSTATUS_FRONTPORCH (0x0 << 13) -+ -+#define VIDCON1_INV_VCLK (1 << 7) -+#define VIDCON1_INV_HSYNC (1 << 6) -+#define VIDCON1_INV_VSYNC (1 << 5) -+#define VIDCON1_INV_VDEN (1 << 4) -+ -+/* VIDCON2 */ -+ -+#define VIDCON2 (0x08) -+#define VIDCON2_EN601 (1 << 23) -+#define VIDCON2_TVFMTSEL_SW (1 << 14) -+ -+#define VIDCON2_TVFMTSEL1_MASK (0x3 << 12) -+#define VIDCON2_TVFMTSEL1_SHIFT (12) -+#define VIDCON2_TVFMTSEL1_RGB (0x0 << 12) -+#define VIDCON2_TVFMTSEL1_YUV422 (0x1 << 12) -+#define VIDCON2_TVFMTSEL1_YUV444 (0x2 << 12) -+ -+#define VIDCON2_ORGYCbCr (1 << 8) -+#define VIDCON2_YUVORDCrCb (1 << 7) -+ -+/* VIDTCON0 */ -+ -+#define VIDTCON0_VBPDE_MASK (0xff << 24) -+#define VIDTCON0_VBPDE_SHIFT (24) -+#define VIDTCON0_VBPDE_LIMIT (0xff) -+#define VIDTCON0_VBPDE(_x) ((_x) << 24) -+ -+#define VIDTCON0_VBPD_MASK (0xff << 16) -+#define VIDTCON0_VBPD_SHIFT (16) -+#define VIDTCON0_VBPD_LIMIT (0xff) -+#define VIDTCON0_VBPD(_x) ((_x) << 16) -+ -+#define VIDTCON0_VFPD_MASK (0xff << 8) -+#define VIDTCON0_VFPD_SHIFT (8) -+#define VIDTCON0_VFPD_LIMIT (0xff) -+#define VIDTCON0_VFPD(_x) ((_x) << 8) -+ -+#define VIDTCON0_VSPW_MASK (0xff << 0) -+#define VIDTCON0_VSPW_SHIFT (0) -+#define VIDTCON0_VSPW_LIMIT (0xff) -+#define VIDTCON0_VSPW(_x) ((_x) << 0) -+ -+/* VIDTCON1 */ -+ -+#define VIDTCON1_VFPDE_MASK (0xff << 24) -+#define VIDTCON1_VFPDE_SHIFT (24) -+#define VIDTCON1_VFPDE_LIMIT (0xff) -+#define VIDTCON1_VFPDE(_x) ((_x) << 24) -+ -+#define VIDTCON1_HBPD_MASK (0xff << 16) -+#define VIDTCON1_HBPD_SHIFT (16) -+#define VIDTCON1_HBPD_LIMIT (0xff) -+#define VIDTCON1_HBPD(_x) ((_x) << 16) -+ -+#define VIDTCON1_HFPD_MASK (0xff << 8) -+#define VIDTCON1_HFPD_SHIFT (8) -+#define VIDTCON1_HFPD_LIMIT (0xff) -+#define VIDTCON1_HFPD(_x) ((_x) << 8) -+ -+#define VIDTCON1_HSPW_MASK (0xff << 0) -+#define VIDTCON1_HSPW_SHIFT (0) -+#define VIDTCON1_HSPW_LIMIT (0xff) -+#define VIDTCON1_HSPW(_x) ((_x) << 0) -+ -+#define VIDTCON2 (0x18) -+#define VIDTCON2_LINEVAL_MASK (0x7ff << 11) -+#define VIDTCON2_LINEVAL_SHIFT (11) -+#define VIDTCON2_LINEVAL_LIMIT (0x7ff) -+#define VIDTCON2_LINEVAL(_x) ((_x) << 11) -+ -+#define VIDTCON2_HOZVAL_MASK (0x7ff << 0) -+#define VIDTCON2_HOZVAL_SHIFT (0) -+#define VIDTCON2_HOZVAL_LIMIT (0x7ff) -+#define VIDTCON2_HOZVAL(_x) ((_x) << 0) -+ -+/* WINCONx */ -+ -+ -+#define WINCONx_BITSWP (1 << 18) -+#define WINCONx_BYTSWP (1 << 17) -+#define WINCONx_HAWSWP (1 << 16) -+#define WINCONx_BURSTLEN_MASK (0x3 << 9) -+#define WINCONx_BURSTLEN_SHIFT (9) -+#define WINCONx_BURSTLEN_16WORD (0x0 << 9) -+#define WINCONx_BURSTLEN_8WORD (0x1 << 9) -+#define WINCONx_BURSTLEN_4WORD (0x2 << 9) -+ -+#define WINCONx_ENWIN (1 << 0) -+#define WINCON0_BPPMODE_MASK (0xf << 2) -+#define WINCON0_BPPMODE_SHIFT (2) -+#define WINCON0_BPPMODE_1BPP (0x0 << 2) -+#define WINCON0_BPPMODE_2BPP (0x1 << 2) -+#define WINCON0_BPPMODE_4BPP (0x2 << 2) -+#define WINCON0_BPPMODE_8BPP_PALETTE (0x3 << 2) -+#define WINCON0_BPPMODE_16BPP_565 (0x5 << 2) -+#define WINCON0_BPPMODE_16BPP_1555 (0x7 << 2) -+#define WINCON0_BPPMODE_18BPP_666 (0x8 << 2) -+#define WINCON0_BPPMODE_24BPP_888 (0xb << 2) -+ -+#define WINCON1_BLD_PIX (1 << 6) -+ -+#define WINCON1_ALPHA_SEL (1 << 1) -+#define WINCON1_BPPMODE_MASK (0xf << 2) -+#define WINCON1_BPPMODE_SHIFT (2) -+#define WINCON1_BPPMODE_1BPP (0x0 << 2) -+#define WINCON1_BPPMODE_2BPP (0x1 << 2) -+#define WINCON1_BPPMODE_4BPP (0x2 << 2) -+#define WINCON1_BPPMODE_8BPP_PALETTE (0x3 << 2) -+#define WINCON1_BPPMODE_8BPP_1232 (0x4 << 2) -+#define WINCON1_BPPMODE_16BPP_565 (0x5 << 2) -+#define WINCON1_BPPMODE_16BPP_A1555 (0x6 << 2) -+#define WINCON1_BPPMODE_16BPP_I1555 (0x7 << 2) -+#define WINCON1_BPPMODE_18BPP_666 (0x8 << 2) -+#define WINCON1_BPPMODE_18BPP_A1665 (0x9 << 2) -+#define WINCON1_BPPMODE_19BPP_A1666 (0xa << 2) -+#define WINCON1_BPPMODE_24BPP_888 (0xb << 2) -+#define WINCON1_BPPMODE_24BPP_A1887 (0xc << 2) -+#define WINCON1_BPPMODE_25BPP_A1888 (0xd << 2) -+#define WINCON1_BPPMODE_28BPP_A4888 (0xd << 2) -+ -+ -+#define VIDOSDxA_TOPLEFT_X_MASK (0x7ff << 11) -+#define VIDOSDxA_TOPLEFT_X_SHIFT (11) -+#define VIDOSDxA_TOPLEFT_X_LIMIT (0x7ff) -+#define VIDOSDxA_TOPLEFT_X(_x) ((_x) << 11) -+ -+#define VIDOSDxA_TOPLEFT_Y_MASK (0x7ff << 0) -+#define VIDOSDxA_TOPLEFT_Y_SHIFT (0) -+#define VIDOSDxA_TOPLEFT_Y_LIMIT (0x7ff) -+#define VIDOSDxA_TOPLEFT_Y(_x) ((_x) << 0) -+ -+#define VIDOSDxB_BOTRIGHT_X_MASK (0x7ff << 11) -+#define VIDOSDxB_BOTRIGHT_X_SHIFT (11) -+#define VIDOSDxB_BOTRIGHT_X_LIMIT (0x7ff) -+#define VIDOSDxB_BOTRIGHT_X(_x) ((_x) << 11) -+ -+#define VIDOSDxB_BOTRIGHT_Y_MASK (0x7ff << 0) -+#define VIDOSDxB_BOTRIGHT_Y_SHIFT (0) -+#define VIDOSDxB_BOTRIGHT_Y_LIMIT (0x7ff) -+#define VIDOSDxB_BOTRIGHT_Y(_x) ((_x) << 0) -+ -+/* For VIDOSD[1..4]C */ -+#define VIDISD14C_ALPHA0_R(_x) ((_x) << 20) -+#define VIDISD14C_ALPHA0_G_MASK (0xf << 16) -+#define VIDISD14C_ALPHA0_G_SHIFT (16) -+#define VIDISD14C_ALPHA0_G_LIMIT (0xf) -+#define VIDISD14C_ALPHA0_G(_x) ((_x) << 16) -+#define VIDISD14C_ALPHA0_B_MASK (0xf << 12) -+#define VIDISD14C_ALPHA0_B_SHIFT (12) -+#define VIDISD14C_ALPHA0_B_LIMIT (0xf) -+#define VIDISD14C_ALPHA0_B(_x) ((_x) << 12) -+#define VIDISD14C_ALPHA1_R_MASK (0xf << 8) -+#define VIDISD14C_ALPHA1_R_SHIFT (8) -+#define VIDISD14C_ALPHA1_R_LIMIT (0xf) -+#define VIDISD14C_ALPHA1_R(_x) ((_x) << 8) -+#define VIDISD14C_ALPHA1_G_MASK (0xf << 4) -+#define VIDISD14C_ALPHA1_G_SHIFT (4) -+#define VIDISD14C_ALPHA1_G_LIMIT (0xf) -+#define VIDISD14C_ALPHA1_G(_x) ((_x) << 4) -+#define VIDISD14C_ALPHA1_B_MASK (0xf << 0) -+#define VIDISD14C_ALPHA1_B_SHIFT (0) -+#define VIDISD14C_ALPHA1_B_LIMIT (0xf) -+#define VIDISD14C_ALPHA1_B(_x) ((_x) << 0) -+ -+/* Video buffer addresses */ -+#define VIDW_BUF_START(_buff) (0xA0 + ((_buff) * 8)) -+#define VIDW_BUF_START1(_buff) (0xA4 + ((_buff) * 8)) -+#define VIDW_BUF_END(_buff) (0xD0 + ((_buff) * 8)) -+#define VIDW_BUF_END1(_buff) (0xD4 + ((_buff) * 8)) -+#define VIDW_BUF_SIZE(_buff) (0x100 + ((_buff) * 4)) -+ -+#define VIDW_BUF_SIZE_OFFSET_MASK (0x1fff << 13) -+#define VIDW_BUF_SIZE_OFFSET_SHIFT (13) -+#define VIDW_BUF_SIZE_OFFSET_LIMIT (0x1fff) -+#define VIDW_BUF_SIZE_OFFSET(_x) ((_x) << 13) -+ -+#define VIDW_BUF_SIZE_PAGEWIDTH_MASK (0x1fff << 0) -+#define VIDW_BUF_SIZE_PAGEWIDTH_SHIFT (0) -+#define VIDW_BUF_SIZE_PAGEWIDTH_LIMIT (0x1fff) -+#define VIDW_BUF_SIZE_PAGEWIDTH(_x) ((_x) << 0) -+ -+/* Interrupt controls and status */ -+ -+#define VIDINTCON0_FIFOINTERVAL_MASK (0x3f << 20) -+#define VIDINTCON0_FIFOINTERVAL_SHIFT (20) -+#define VIDINTCON0_FIFOINTERVAL_LIMIT (0x3f) -+#define VIDINTCON0_FIFOINTERVAL(_x) ((_x) << 20) -+ -+#define VIDINTCON0_INT_SYSMAINCON (1 << 19) -+#define VIDINTCON0_INT_SYSSUBCON (1 << 18) -+#define VIDINTCON0_INT_I80IFDONE (1 << 17) -+ -+#define VIDINTCON0_FRAMESEL0_MASK (0x3 << 15) -+#define VIDINTCON0_FRAMESEL0_SHIFT (15) -+#define VIDINTCON0_FRAMESEL0_BACKPORCH (0x0 << 15) -+#define VIDINTCON0_FRAMESEL0_VSYNC (0x1 << 15) -+#define VIDINTCON0_FRAMESEL0_ACTIVE (0x2 << 15) -+#define VIDINTCON0_FRAMESEL0_FRONTPORCH (0x3 << 15) -+ -+#define VIDINTCON0_FRAMESEL1 (1 << 14) -+#define VIDINTCON0_FRAMESEL1_NONE (0x0 << 14) -+#define VIDINTCON0_FRAMESEL1_BACKPORCH (0x1 << 14) -+#define VIDINTCON0_FRAMESEL1_VSYNC (0x2 << 14) -+#define VIDINTCON0_FRAMESEL1_FRONTPORCH (0x3 << 14) -+ -+#define VIDINTCON0_INT_FRAME (1 << 12) -+#define VIDINTCON0_FIFIOSEL_MASK (0x7f << 5) -+#define VIDINTCON0_FIFIOSEL_SHIFT (5) -+#define VIDINTCON0_FIFIOSEL_WINDOW0 (0x1 << 5) -+#define VIDINTCON0_FIFIOSEL_WINDOW1 (0x2 << 5) -+ -+#define VIDINTCON0_FIFOLEVEL_MASK (0x7 << 2) -+#define VIDINTCON0_FIFOLEVEL_SHIFT (2) -+#define VIDINTCON0_FIFOLEVEL_TO25PC (0x0 << 2) -+#define VIDINTCON0_FIFOLEVEL_TO50PC (0x1 << 2) -+#define VIDINTCON0_FIFOLEVEL_TO75PC (0x2 << 2) -+#define VIDINTCON0_FIFOLEVEL_EMPTY (0x3 << 2) -+#define VIDINTCON0_FIFOLEVEL_FULL (0x4 << 2) -+ -+#define VIDINTCON0_INT_FIFO_MASK (0x3 << 0) -+#define VIDINTCON0_INT_FIFO_SHIFT (0) -+#define VIDINTCON0_INT_ENABLE (1 << 0) -+ -+#define VIDINTCON1 (0x134) -+#define VIDINTCON1_INT_I180 (1 << 2) -+#define VIDINTCON1_INT_FRAME (1 << 1) -+#define VIDINTCON1_INT_FIFO (1 << 0) -+ -+/* Window colour-key control registers */ -+ -+#define WxKEYCON0_KEYBL_EN (1 << 26) -+#define WxKEYCON0_KEYEN_F (1 << 25) -+#define WxKEYCON0_DIRCON (1 << 24) -+#define WxKEYCON0_COMPKEY_MASK (0xffffff << 0) -+#define WxKEYCON0_COMPKEY_SHIFT (0) -+#define WxKEYCON0_COMPKEY_LIMIT (0xffffff) -+#define WxKEYCON0_COMPKEY(_x) ((_x) << 0) -+#define WxKEYCON1_COLVAL_MASK (0xffffff << 0) -+#define WxKEYCON1_COLVAL_SHIFT (0) -+#define WxKEYCON1_COLVAL_LIMIT (0xffffff) -+#define WxKEYCON1_COLVAL(_x) ((_x) << 0) -+ -+ -+/* Window blanking (MAP) */ -+ -+#define WINxMAP_MAP (1 << 24) -+#define WINxMAP_MAP_COLOUR_MASK (0xffffff << 0) -+#define WINxMAP_MAP_COLOUR_SHIFT (0) -+#define WINxMAP_MAP_COLOUR_LIMIT (0xffffff) -+#define WINxMAP_MAP_COLOUR(_x) ((_x) << 0) -+ -+#define WPALCON_PAL_UPDATE (1 << 9) -+#define WPALCON_W1PAL_MASK (0x7 << 3) -+#define WPALCON_W1PAL_SHIFT (3) -+#define WPALCON_W1PAL_25BPP_A888 (0x0 << 3) -+#define WPALCON_W1PAL_24BPP (0x1 << 3) -+#define WPALCON_W1PAL_19BPP_A666 (0x2 << 3) -+#define WPALCON_W1PAL_18BPP_A665 (0x3 << 3) -+#define WPALCON_W1PAL_18BPP (0x4 << 3) -+#define WPALCON_W1PAL_16BPP_A555 (0x5 << 3) -+#define WPALCON_W1PAL_16BPP_565 (0x6 << 3) -+ -+#define WPALCON_W0PAL_MASK (0x7 << 0) -+#define WPALCON_W0PAL_SHIFT (0) -+#define WPALCON_W0PAL_25BPP_A888 (0x0 << 0) -+#define WPALCON_W0PAL_24BPP (0x1 << 0) -+#define WPALCON_W0PAL_19BPP_A666 (0x2 << 0) -+#define WPALCON_W0PAL_18BPP_A665 (0x3 << 0) -+#define WPALCON_W0PAL_18BPP (0x4 << 0) -+#define WPALCON_W0PAL_16BPP_A555 (0x5 << 0) -+#define WPALCON_W0PAL_16BPP_565 (0x6 << 0) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-iic.h -@@ -0,0 +1,56 @@ -+/* arch/arm/mach-s3c2410/include/mach/regs-iic.h -+ * -+ * Copyright (c) 2004 Simtec Electronics <linux@simtec.co.uk> -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C2410 I2C Controller -+*/ -+ -+#ifndef __ASM_ARCH_REGS_IIC_H -+#define __ASM_ARCH_REGS_IIC_H __FILE__ -+ -+/* see s3c2410x user guide, v1.1, section 9 (p447) for more info */ -+ -+#define S3C2410_IICREG(x) (x) -+ -+#define S3C2410_IICCON S3C2410_IICREG(0x00) -+#define S3C2410_IICSTAT S3C2410_IICREG(0x04) -+#define S3C2410_IICADD S3C2410_IICREG(0x08) -+#define S3C2410_IICDS S3C2410_IICREG(0x0C) -+#define S3C2440_IICLC S3C2410_IICREG(0x10) -+ -+#define S3C2410_IICCON_ACKEN (1<<7) -+#define S3C2410_IICCON_TXDIV_16 (0<<6) -+#define S3C2410_IICCON_TXDIV_512 (1<<6) -+#define S3C2410_IICCON_IRQEN (1<<5) -+#define S3C2410_IICCON_IRQPEND (1<<4) -+#define S3C2410_IICCON_SCALE(x) ((x)&15) -+#define S3C2410_IICCON_SCALEMASK (0xf) -+ -+#define S3C2410_IICSTAT_MASTER_RX (2<<6) -+#define S3C2410_IICSTAT_MASTER_TX (3<<6) -+#define S3C2410_IICSTAT_SLAVE_RX (0<<6) -+#define S3C2410_IICSTAT_SLAVE_TX (1<<6) -+#define S3C2410_IICSTAT_MODEMASK (3<<6) -+ -+#define S3C2410_IICSTAT_START (1<<5) -+#define S3C2410_IICSTAT_BUSBUSY (1<<5) -+#define S3C2410_IICSTAT_TXRXEN (1<<4) -+#define S3C2410_IICSTAT_ARBITR (1<<3) -+#define S3C2410_IICSTAT_ASSLAVE (1<<2) -+#define S3C2410_IICSTAT_ADDR0 (1<<1) -+#define S3C2410_IICSTAT_LASTBIT (1<<0) -+ -+#define S3C2410_IICLC_SDA_DELAY0 (0 << 0) -+#define S3C2410_IICLC_SDA_DELAY5 (1 << 0) -+#define S3C2410_IICLC_SDA_DELAY10 (2 << 0) -+#define S3C2410_IICLC_SDA_DELAY15 (3 << 0) -+#define S3C2410_IICLC_SDA_DELAY_MASK (3 << 0) -+ -+#define S3C2410_IICLC_FILTER_ON (1<<2) -+ -+#endif /* __ASM_ARCH_REGS_IIC_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-irqtype.h -@@ -0,0 +1,21 @@ -+/* arch/arm/plat-s3c/include/plat/regs-irqtype.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C - IRQ detection types. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+/* values for S3C2410_EXTINT0/1/2 and other cpus in the series, including -+ * the S3C64XX -+*/ -+#define S3C2410_EXTINT_LOWLEV (0x00) -+#define S3C2410_EXTINT_HILEV (0x01) -+#define S3C2410_EXTINT_FALLEDGE (0x02) -+#define S3C2410_EXTINT_RISEEDGE (0x04) -+#define S3C2410_EXTINT_BOTHEDGE (0x06) ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-nand.h -@@ -0,0 +1,123 @@ -+/* arch/arm/mach-s3c2410/include/mach/regs-nand.h -+ * -+ * Copyright (c) 2004,2005 Simtec Electronics <linux@simtec.co.uk> -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C2410 NAND register definitions -+*/ -+ -+#ifndef __ASM_ARM_REGS_NAND -+#define __ASM_ARM_REGS_NAND -+ -+ -+#define S3C2410_NFREG(x) (x) -+ -+#define S3C2410_NFCONF S3C2410_NFREG(0x00) -+#define S3C2410_NFCMD S3C2410_NFREG(0x04) -+#define S3C2410_NFADDR S3C2410_NFREG(0x08) -+#define S3C2410_NFDATA S3C2410_NFREG(0x0C) -+#define S3C2410_NFSTAT S3C2410_NFREG(0x10) -+#define S3C2410_NFECC S3C2410_NFREG(0x14) -+ -+#define S3C2440_NFCONT S3C2410_NFREG(0x04) -+#define S3C2440_NFCMD S3C2410_NFREG(0x08) -+#define S3C2440_NFADDR S3C2410_NFREG(0x0C) -+#define S3C2440_NFDATA S3C2410_NFREG(0x10) -+#define S3C2440_NFECCD0 S3C2410_NFREG(0x14) -+#define S3C2440_NFECCD1 S3C2410_NFREG(0x18) -+#define S3C2440_NFECCD S3C2410_NFREG(0x1C) -+#define S3C2440_NFSTAT S3C2410_NFREG(0x20) -+#define S3C2440_NFESTAT0 S3C2410_NFREG(0x24) -+#define S3C2440_NFESTAT1 S3C2410_NFREG(0x28) -+#define S3C2440_NFMECC0 S3C2410_NFREG(0x2C) -+#define S3C2440_NFMECC1 S3C2410_NFREG(0x30) -+#define S3C2440_NFSECC S3C2410_NFREG(0x34) -+#define S3C2440_NFSBLK S3C2410_NFREG(0x38) -+#define S3C2440_NFEBLK S3C2410_NFREG(0x3C) -+ -+#define S3C2412_NFSBLK S3C2410_NFREG(0x20) -+#define S3C2412_NFEBLK S3C2410_NFREG(0x24) -+#define S3C2412_NFSTAT S3C2410_NFREG(0x28) -+#define S3C2412_NFMECC_ERR0 S3C2410_NFREG(0x2C) -+#define S3C2412_NFMECC_ERR1 S3C2410_NFREG(0x30) -+#define S3C2412_NFMECC0 S3C2410_NFREG(0x34) -+#define S3C2412_NFMECC1 S3C2410_NFREG(0x38) -+#define S3C2412_NFSECC S3C2410_NFREG(0x3C) -+ -+#define S3C2410_NFCONF_EN (1<<15) -+#define S3C2410_NFCONF_512BYTE (1<<14) -+#define S3C2410_NFCONF_4STEP (1<<13) -+#define S3C2410_NFCONF_INITECC (1<<12) -+#define S3C2410_NFCONF_nFCE (1<<11) -+#define S3C2410_NFCONF_TACLS(x) ((x)<<8) -+#define S3C2410_NFCONF_TWRPH0(x) ((x)<<4) -+#define S3C2410_NFCONF_TWRPH1(x) ((x)<<0) -+ -+#define S3C2410_NFSTAT_BUSY (1<<0) -+ -+#define S3C2440_NFCONF_BUSWIDTH_8 (0<<0) -+#define S3C2440_NFCONF_BUSWIDTH_16 (1<<0) -+#define S3C2440_NFCONF_ADVFLASH (1<<3) -+#define S3C2440_NFCONF_TACLS(x) ((x)<<12) -+#define S3C2440_NFCONF_TWRPH0(x) ((x)<<8) -+#define S3C2440_NFCONF_TWRPH1(x) ((x)<<4) -+ -+#define S3C2440_NFCONT_LOCKTIGHT (1<<13) -+#define S3C2440_NFCONT_SOFTLOCK (1<<12) -+#define S3C2440_NFCONT_ILLEGALACC_EN (1<<10) -+#define S3C2440_NFCONT_RNBINT_EN (1<<9) -+#define S3C2440_NFCONT_RN_FALLING (1<<8) -+#define S3C2440_NFCONT_SPARE_ECCLOCK (1<<6) -+#define S3C2440_NFCONT_MAIN_ECCLOCK (1<<5) -+#define S3C2440_NFCONT_INITECC (1<<4) -+#define S3C2440_NFCONT_nFCE (1<<1) -+#define S3C2440_NFCONT_ENABLE (1<<0) -+ -+#define S3C2440_NFSTAT_READY (1<<0) -+#define S3C2440_NFSTAT_nCE (1<<1) -+#define S3C2440_NFSTAT_RnB_CHANGE (1<<2) -+#define S3C2440_NFSTAT_ILLEGAL_ACCESS (1<<3) -+ -+#define S3C2412_NFCONF_NANDBOOT (1<<31) -+#define S3C2412_NFCONF_ECCCLKCON (1<<30) -+#define S3C2412_NFCONF_ECC_MLC (1<<24) -+#define S3C2412_NFCONF_TACLS_MASK (7<<12) /* 1 extra bit of Tacls */ -+ -+#define S3C2412_NFCONT_ECC4_DIRWR (1<<18) -+#define S3C2412_NFCONT_LOCKTIGHT (1<<17) -+#define S3C2412_NFCONT_SOFTLOCK (1<<16) -+#define S3C2412_NFCONT_ECC4_ENCINT (1<<13) -+#define S3C2412_NFCONT_ECC4_DECINT (1<<12) -+#define S3C2412_NFCONT_MAIN_ECC_LOCK (1<<7) -+#define S3C2412_NFCONT_INIT_MAIN_ECC (1<<5) -+#define S3C2412_NFCONT_nFCE1 (1<<2) -+#define S3C2412_NFCONT_nFCE0 (1<<1) -+ -+#define S3C2412_NFSTAT_ECC_ENCDONE (1<<7) -+#define S3C2412_NFSTAT_ECC_DECDONE (1<<6) -+#define S3C2412_NFSTAT_ILLEGAL_ACCESS (1<<5) -+#define S3C2412_NFSTAT_RnB_CHANGE (1<<4) -+#define S3C2412_NFSTAT_nFCE1 (1<<3) -+#define S3C2412_NFSTAT_nFCE0 (1<<2) -+#define S3C2412_NFSTAT_Res1 (1<<1) -+#define S3C2412_NFSTAT_READY (1<<0) -+ -+#define S3C2412_NFECCERR_SERRDATA(x) (((x) >> 21) & 0xf) -+#define S3C2412_NFECCERR_SERRBIT(x) (((x) >> 18) & 0x7) -+#define S3C2412_NFECCERR_MERRDATA(x) (((x) >> 7) & 0x3ff) -+#define S3C2412_NFECCERR_MERRBIT(x) (((x) >> 4) & 0x7) -+#define S3C2412_NFECCERR_SPARE_ERR(x) (((x) >> 2) & 0x3) -+#define S3C2412_NFECCERR_MAIN_ERR(x) (((x) >> 2) & 0x3) -+#define S3C2412_NFECCERR_NONE (0) -+#define S3C2412_NFECCERR_1BIT (1) -+#define S3C2412_NFECCERR_MULTIBIT (2) -+#define S3C2412_NFECCERR_ECCAREA (3) -+ -+ -+ -+#endif /* __ASM_ARM_REGS_NAND */ -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-rtc.h -@@ -0,0 +1,61 @@ -+/* arch/arm/mach-s3c2410/include/mach/regs-rtc.h -+ * -+ * Copyright (c) 2003 Simtec Electronics <linux@simtec.co.uk> -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C2410 Internal RTC register definition -+*/ -+ -+#ifndef __ASM_ARCH_REGS_RTC_H -+#define __ASM_ARCH_REGS_RTC_H __FILE__ -+ -+#define S3C2410_RTCREG(x) (x) -+ -+#define S3C2410_RTCCON S3C2410_RTCREG(0x40) -+#define S3C2410_RTCCON_RTCEN (1<<0) -+#define S3C2410_RTCCON_CLKSEL (1<<1) -+#define S3C2410_RTCCON_CNTSEL (1<<2) -+#define S3C2410_RTCCON_CLKRST (1<<3) -+ -+#define S3C2410_TICNT S3C2410_RTCREG(0x44) -+#define S3C2410_TICNT_ENABLE (1<<7) -+ -+#define S3C2410_RTCALM S3C2410_RTCREG(0x50) -+#define S3C2410_RTCALM_ALMEN (1<<6) -+#define S3C2410_RTCALM_YEAREN (1<<5) -+#define S3C2410_RTCALM_MONEN (1<<4) -+#define S3C2410_RTCALM_DAYEN (1<<3) -+#define S3C2410_RTCALM_HOUREN (1<<2) -+#define S3C2410_RTCALM_MINEN (1<<1) -+#define S3C2410_RTCALM_SECEN (1<<0) -+ -+#define S3C2410_RTCALM_ALL \ -+ S3C2410_RTCALM_ALMEN | S3C2410_RTCALM_YEAREN | S3C2410_RTCALM_MONEN |\ -+ S3C2410_RTCALM_DAYEN | S3C2410_RTCALM_HOUREN | S3C2410_RTCALM_MINEN |\ -+ S3C2410_RTCALM_SECEN -+ -+ -+#define S3C2410_ALMSEC S3C2410_RTCREG(0x54) -+#define S3C2410_ALMMIN S3C2410_RTCREG(0x58) -+#define S3C2410_ALMHOUR S3C2410_RTCREG(0x5c) -+ -+#define S3C2410_ALMDATE S3C2410_RTCREG(0x60) -+#define S3C2410_ALMMON S3C2410_RTCREG(0x64) -+#define S3C2410_ALMYEAR S3C2410_RTCREG(0x68) -+ -+#define S3C2410_RTCRST S3C2410_RTCREG(0x6c) -+ -+#define S3C2410_RTCSEC S3C2410_RTCREG(0x70) -+#define S3C2410_RTCMIN S3C2410_RTCREG(0x74) -+#define S3C2410_RTCHOUR S3C2410_RTCREG(0x78) -+#define S3C2410_RTCDATE S3C2410_RTCREG(0x7c) -+#define S3C2410_RTCDAY S3C2410_RTCREG(0x80) -+#define S3C2410_RTCMON S3C2410_RTCREG(0x84) -+#define S3C2410_RTCYEAR S3C2410_RTCREG(0x88) -+ -+ -+#endif /* __ASM_ARCH_REGS_RTC_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-sdhci.h -@@ -0,0 +1,87 @@ -+/* linux/arch/arm/plat-s3c/include/plat/regs-sdhci.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C Platform - SDHCI (HSMMC) register definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __PLAT_S3C_SDHCI_REGS_H -+#define __PLAT_S3C_SDHCI_REGS_H __FILE__ -+ -+#define S3C_SDHCI_CONTROL2 (0x80) -+#define S3C_SDHCI_CONTROL3 (0x84) -+#define S3C64XX_SDHCI_CONTROL4 (0x8C) -+ -+#define S3C64XX_SDHCI_CTRL2_ENSTAASYNCCLR (1 << 31) -+#define S3C64XX_SDHCI_CTRL2_ENCMDCNFMSK (1 << 30) -+#define S3C_SDHCI_CTRL2_CDINVRXD3 (1 << 29) -+#define S3C_SDHCI_CTRL2_SLCARDOUT (1 << 28) -+ -+#define S3C_SDHCI_CTRL2_FLTCLKSEL_MASK (0xf << 24) -+#define S3C_SDHCI_CTRL2_FLTCLKSEL_SHIFT (24) -+#define S3C_SDHCI_CTRL2_FLTCLKSEL(_x) ((_x) << 24) -+ -+#define S3C_SDHCI_CTRL2_LVLDAT_MASK (0xff << 16) -+#define S3C_SDHCI_CTRL2_LVLDAT_SHIFT (16) -+#define S3C_SDHCI_CTRL2_LVLDAT(_x) ((_x) << 16) -+ -+#define S3C_SDHCI_CTRL2_ENFBCLKTX (1 << 15) -+#define S3C_SDHCI_CTRL2_ENFBCLKRX (1 << 14) -+#define S3C_SDHCI_CTRL2_SDCDSEL (1 << 13) -+#define S3C_SDHCI_CTRL2_SDSIGPC (1 << 12) -+#define S3C_SDHCI_CTRL2_ENBUSYCHKTXSTART (1 << 11) -+ -+#define S3C_SDHCI_CTRL2_DFCNT_MASK (0x3 << 9) -+#define S3C_SDHCI_CTRL2_DFCNT_SHIFT (9) -+#define S3C_SDHCI_CTRL2_DFCNT_NONE (0x0 << 9) -+#define S3C_SDHCI_CTRL2_DFCNT_4SDCLK (0x1 << 9) -+#define S3C_SDHCI_CTRL2_DFCNT_16SDCLK (0x2 << 9) -+#define S3C_SDHCI_CTRL2_DFCNT_64SDCLK (0x3 << 9) -+ -+#define S3C_SDHCI_CTRL2_ENCLKOUTHOLD (1 << 8) -+#define S3C_SDHCI_CTRL2_RWAITMODE (1 << 7) -+#define S3C_SDHCI_CTRL2_DISBUFRD (1 << 6) -+#define S3C_SDHCI_CTRL2_SELBASECLK_MASK (0x3 << 4) -+#define S3C_SDHCI_CTRL2_SELBASECLK_SHIFT (4) -+#define S3C_SDHCI_CTRL2_PWRSYNC (1 << 3) -+#define S3C_SDHCI_CTRL2_ENCLKOUTMSKCON (1 << 1) -+#define S3C_SDHCI_CTRL2_HWINITFIN (1 << 0) -+ -+#define S3C_SDHCI_CTRL3_FCSEL3 (1 << 31) -+#define S3C_SDHCI_CTRL3_FCSEL2 (1 << 23) -+#define S3C_SDHCI_CTRL3_FCSEL1 (1 << 15) -+#define S3C_SDHCI_CTRL3_FCSEL0 (1 << 7) -+ -+#define S3C_SDHCI_CTRL3_FIA3_MASK (0x7f << 24) -+#define S3C_SDHCI_CTRL3_FIA3_SHIFT (24) -+#define S3C_SDHCI_CTRL3_FIA3(_x) ((_x) << 24) -+ -+#define S3C_SDHCI_CTRL3_FIA2_MASK (0x7f << 16) -+#define S3C_SDHCI_CTRL3_FIA2_SHIFT (16) -+#define S3C_SDHCI_CTRL3_FIA2(_x) ((_x) << 16) -+ -+#define S3C_SDHCI_CTRL3_FIA1_MASK (0x7f << 8) -+#define S3C_SDHCI_CTRL3_FIA1_SHIFT (8) -+#define S3C_SDHCI_CTRL3_FIA1(_x) ((_x) << 8) -+ -+#define S3C_SDHCI_CTRL3_FIA0_MASK (0x7f << 0) -+#define S3C_SDHCI_CTRL3_FIA0_SHIFT (0) -+#define S3C_SDHCI_CTRL3_FIA0(_x) ((_x) << 0) -+ -+#define S3C64XX_SDHCI_CONTROL4_DRIVE_MASK (0x3 << 16) -+#define S3C64XX_SDHCI_CONTROL4_DRIVE_SHIFT (16) -+#define S3C64XX_SDHCI_CONTROL4_DRIVE_2mA (0x0 << 16) -+#define S3C64XX_SDHCI_CONTROL4_DRIVE_4mA (0x1 << 16) -+#define S3C64XX_SDHCI_CONTROL4_DRIVE_7mA (0x2 << 16) -+#define S3C64XX_SDHCI_CONTROL4_DRIVE_9mA (0x3 << 16) -+ -+#define S3C64XX_SDHCI_CONTROL4_BUSY (1) -+ -+#endif /* __PLAT_S3C_SDHCI_REGS_H */ ---- a/arch/arm/plat-s3c/include/plat/regs-serial.h -+++ b/arch/arm/plat-s3c/include/plat/regs-serial.h -@@ -77,6 +77,12 @@ - #define S3C2440_UCON_FCLK (3<<10) - #define S3C2443_UCON_EPLL (3<<10) - -+#define S3C6400_UCON_CLKMASK (3<<10) -+#define S3C6400_UCON_PCLK (0<<10) -+#define S3C6400_UCON_PCLK2 (2<<10) -+#define S3C6400_UCON_UCLK0 (1<<10) -+#define S3C6400_UCON_UCLK1 (3<<10) -+ - #define S3C2440_UCON2_FCLK_EN (1<<15) - #define S3C2440_UCON0_DIVMASK (15 << 12) - #define S3C2440_UCON1_DIVMASK (15 << 12) -@@ -149,6 +155,14 @@ - #define S3C2410_UFSTAT_RXMASK (15<<0) - #define S3C2410_UFSTAT_RXSHIFT (0) - -+/* UFSTAT S3C24A0 */ -+#define S3C24A0_UFSTAT_TXFULL (1 << 14) -+#define S3C24A0_UFSTAT_RXFULL (1 << 6) -+#define S3C24A0_UFSTAT_TXMASK (63 << 8) -+#define S3C24A0_UFSTAT_TXSHIFT (8) -+#define S3C24A0_UFSTAT_RXMASK (63) -+#define S3C24A0_UFSTAT_RXSHIFT (0) -+ - /* UFSTAT S3C2443 same as S3C2440 */ - #define S3C2440_UFSTAT_TXFULL (1<<14) - #define S3C2440_UFSTAT_RXFULL (1<<6) -@@ -175,6 +189,11 @@ - - #define S3C2443_DIVSLOT (0x2C) - -+/* S3C64XX interrupt registers. */ -+#define S3C64XX_UINTP 0x30 -+#define S3C64XX_UINTSP 0x34 -+#define S3C64XX_UINTM 0x38 -+ - #ifndef __ASSEMBLY__ - - /* struct s3c24xx_uart_clksrc -@@ -224,7 +243,7 @@ struct s3c2410_uartcfg { - * or platform_add_device() before the console_initcall() - */ - --extern struct platform_device *s3c24xx_uart_devs[3]; -+extern struct platform_device *s3c24xx_uart_devs[4]; - - #endif /* __ASSEMBLY__ */ - ---- a/arch/arm/plat-s3c/include/plat/regs-timer.h -+++ b/arch/arm/plat-s3c/include/plat/regs-timer.h -@@ -10,7 +10,6 @@ - * S3C2410 Timer configuration - */ - -- - #ifndef __ASM_ARCH_REGS_TIMER_H - #define __ASM_ARCH_REGS_TIMER_H - -@@ -21,6 +20,8 @@ - #define S3C2410_TCFG1 S3C_TIMERREG(0x04) - #define S3C2410_TCON S3C_TIMERREG(0x08) - -+#define S3C64XX_TINT_CSTAT S3C_TIMERREG(0x44) -+ - #define S3C2410_TCFG_PRESCALER0_MASK (255<<0) - #define S3C2410_TCFG_PRESCALER1_MASK (255<<8) - #define S3C2410_TCFG_PRESCALER1_SHIFT (8) -@@ -72,6 +73,14 @@ - #define S3C2410_TCFG1_MUX_TCLK (4<<0) - #define S3C2410_TCFG1_MUX_MASK (15<<0) - -+#define S3C64XX_TCFG1_MUX_DIV1 (0<<0) -+#define S3C64XX_TCFG1_MUX_DIV2 (1<<0) -+#define S3C64XX_TCFG1_MUX_DIV4 (2<<0) -+#define S3C64XX_TCFG1_MUX_DIV8 (3<<0) -+#define S3C64XX_TCFG1_MUX_DIV16 (4<<0) -+#define S3C64XX_TCFG1_MUX_TCLK (5<<0) /* 3 sets of TCLK */ -+#define S3C64XX_TCFG1_MUX_MASK (15<<0) -+ - #define S3C2410_TCFG1_SHIFT(x) ((x) * 4) - - /* for each timer, we have an count buffer, an compare buffer and ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/regs-watchdog.h -@@ -0,0 +1,41 @@ -+/* arch/arm/mach-s3c2410/include/mach/regs-watchdog.h -+ * -+ * Copyright (c) 2003 Simtec Electronics <linux@simtec.co.uk> -+ * http://www.simtec.co.uk/products/SWLINUX/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C2410 Watchdog timer control -+*/ -+ -+ -+#ifndef __ASM_ARCH_REGS_WATCHDOG_H -+#define __ASM_ARCH_REGS_WATCHDOG_H -+ -+#define S3C_WDOGREG(x) ((x) + S3C_VA_WATCHDOG) -+ -+#define S3C2410_WTCON S3C_WDOGREG(0x00) -+#define S3C2410_WTDAT S3C_WDOGREG(0x04) -+#define S3C2410_WTCNT S3C_WDOGREG(0x08) -+ -+/* the watchdog can either generate a reset pulse, or an -+ * interrupt. -+ */ -+ -+#define S3C2410_WTCON_RSTEN (0x01) -+#define S3C2410_WTCON_INTEN (1<<2) -+#define S3C2410_WTCON_ENABLE (1<<5) -+ -+#define S3C2410_WTCON_DIV16 (0<<3) -+#define S3C2410_WTCON_DIV32 (1<<3) -+#define S3C2410_WTCON_DIV64 (2<<3) -+#define S3C2410_WTCON_DIV128 (3<<3) -+ -+#define S3C2410_WTCON_PRESCALE(x) ((x) << 8) -+#define S3C2410_WTCON_PRESCALE_MASK (0xff00) -+ -+#endif /* __ASM_ARCH_REGS_WATCHDOG_H */ -+ -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/include/plat/sdhci.h -@@ -0,0 +1,112 @@ -+/* linux/arch/arm/plat-s3c/include/plat/sdhci.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C Platform - SDHCI (HSMMC) platform data definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __PLAT_S3C_SDHCI_H -+#define __PLAT_S3C_SDHCI_H __FILE__ -+ -+struct platform_device; -+struct mmc_host; -+struct mmc_card; -+struct mmc_ios; -+ -+/** -+ * struct s3c_sdhci_platdata() - Platform device data for Samsung SDHCI -+ * @max_width: The maximum number of data bits supported. -+ * @host_caps: Standard MMC host capabilities bit field. -+ * @cfg_gpio: Configure the GPIO for a specific card bit-width -+ * @cfg_card: Configure the interface for a specific card and speed. This -+ * is necessary the controllers and/or GPIO blocks require the -+ * changing of driver-strength and other controls dependant on -+ * the card and speed of operation. -+ * sdhci_host: Pointer kept during init, allows presence change notification -+ * -+ * Initialisation data specific to either the machine or the platform -+ * for the device driver to use or call-back when configuring gpio or -+ * card speed information. -+*/ -+struct s3c_sdhci_platdata { -+ unsigned int max_width; -+ unsigned int host_caps; -+ -+ char **clocks; /* set of clock sources */ -+ -+ void (*cfg_gpio)(struct platform_device *dev, int width); -+ void (*cfg_card)(struct platform_device *dev, -+ void __iomem *regbase, -+ struct mmc_ios *ios, -+ struct mmc_card *card); -+ struct sdhci_host * sdhci_host; -+}; -+ -+extern void sdhci_s3c_force_presence_change(struct platform_device *pdev); -+ -+/** -+ * s3c_sdhci0_set_platdata - Set platform data for S3C SDHCI device. -+ * @pd: Platform data to register to device. -+ * -+ * Register the given platform data for use withe S3C SDHCI device. -+ * The call will copy the platform data, so the board definitions can -+ * make the structure itself __initdata. -+ */ -+extern void s3c_sdhci0_set_platdata(struct s3c_sdhci_platdata *pd); -+extern void s3c_sdhci1_set_platdata(struct s3c_sdhci_platdata *pd); -+ -+/* Default platform data, exported so that per-cpu initialisation can -+ * set the correct one when there are more than one cpu type selected. -+*/ -+ -+extern struct s3c_sdhci_platdata s3c_hsmmc0_def_platdata; -+extern struct s3c_sdhci_platdata s3c_hsmmc1_def_platdata; -+ -+/* Helper function availablity */ -+ -+#ifdef CONFIG_S3C6410_SETUP_SDHCI -+extern char *s3c6410_hsmmc_clksrcs[4]; -+ -+extern void s3c6410_setup_sdhci0_cfg_gpio(struct platform_device *, int w); -+extern void s3c6410_setup_sdhci1_cfg_gpio(struct platform_device *, int w); -+ -+extern void s3c6410_setup_sdhci0_cfg_card(struct platform_device *dev, -+ void __iomem *r, -+ struct mmc_ios *ios, -+ struct mmc_card *card); -+ -+#ifdef CONFIG_S3C_DEV_HSMMC -+static inline void s3c6410_default_sdhci0(void) -+{ -+ s3c_hsmmc0_def_platdata.clocks = s3c6410_hsmmc_clksrcs; -+ s3c_hsmmc0_def_platdata.cfg_gpio = s3c6410_setup_sdhci0_cfg_gpio; -+ s3c_hsmmc0_def_platdata.cfg_card = s3c6410_setup_sdhci0_cfg_card; -+} -+#else -+static inline void s3c6410_default_sdhci0(void) { } -+#endif /* CONFIG_S3C_DEV_HSMMC */ -+ -+#ifdef CONFIG_S3C_DEV_HSMMC1 -+static inline void s3c6410_default_sdhci1(void) -+{ -+ s3c_hsmmc1_def_platdata.clocks = s3c6410_hsmmc_clksrcs; -+ s3c_hsmmc1_def_platdata.cfg_gpio = s3c6410_setup_sdhci1_cfg_gpio; -+ s3c_hsmmc1_def_platdata.cfg_card = s3c6410_setup_sdhci0_cfg_card; -+} -+#else -+static inline void s3c6410_default_sdhci1(void) { } -+#endif /* CONFIG_S3C_DEV_HSMMC1 */ -+ -+#else -+static inline void s3c6410_default_sdhci0(void) { } -+static inline void s3c6410_default_sdhci1(void) { } -+#endif /* CONFIG_S3C6410_SETUP_SDHCI */ -+ -+#endif /* __PLAT_S3C_SDHCI_H */ ---- a/arch/arm/plat-s3c/include/plat/uncompress.h -+++ b/arch/arm/plat-s3c/include/plat/uncompress.h -@@ -28,7 +28,7 @@ static void arch_detect_cpu(void); - /* defines for UART registers */ - - #include <plat/regs-serial.h> --#include <asm/plat-s3c/regs-watchdog.h> -+#include <plat/regs-watchdog.h> - - /* working in physical space... */ - #undef S3C2410_WDOGREG -@@ -37,7 +37,7 @@ static void arch_detect_cpu(void); - /* how many bytes we allow into the FIFO at a time in FIFO mode */ - #define FIFO_MAX (14) - --#define uart_base S3C24XX_PA_UART + (0x4000*CONFIG_S3C_LOWLEVEL_UART_PORT) -+#define uart_base S3C_PA_UART + (S3C_UART_OFFSET * CONFIG_S3C_LOWLEVEL_UART_PORT) - - static __inline__ void - uart_wr(unsigned int reg, unsigned int val) -@@ -139,6 +139,28 @@ static void arch_decomp_error(const char - - static void error(char *err); - -+#ifdef CONFIG_S3C_BOOT_UART_FORCE_FIFO -+static inline void arch_enable_uart_fifo(void) -+{ -+ u32 fifocon = uart_rd(S3C2410_UFCON); -+ -+ if (!(fifocon & S3C2410_UFCON_FIFOMODE)) { -+ fifocon |= S3C2410_UFCON_RESETBOTH; -+ uart_wr(S3C2410_UFCON, fifocon); -+ -+ /* wait for fifo reset to complete */ -+ while (1) { -+ fifocon = uart_rd(S3C2410_UFCON); -+ if (!(fifocon & S3C2410_UFCON_RESETBOTH)) -+ break; -+ } -+ } -+} -+#else -+#define arch_enable_uart_fifo() do { } while(0) -+#endif -+ -+ - static void - arch_decomp_setup(void) - { -@@ -149,6 +171,12 @@ arch_decomp_setup(void) - - arch_detect_cpu(); - arch_decomp_wdog_start(); -+ -+ /* Enable the UART FIFOs if they where not enabled and our -+ * configuration says we should turn them on. -+ */ -+ -+ arch_enable_uart_fifo(); - } - - ---- /dev/null -+++ b/arch/arm/plat-s3c/init.c -@@ -0,0 +1,161 @@ -+/* linux/arch/arm/plat-s3c/init.c -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series CPU initialisation -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/interrupt.h> -+#include <linux/ioport.h> -+#include <linux/serial_core.h> -+#include <linux/platform_device.h> -+#include <linux/delay.h> -+ -+#include <mach/hardware.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/map.h> -+ -+#include <plat/cpu.h> -+#include <plat/devs.h> -+#include <plat/clock.h> -+ -+#include <plat/regs-serial.h> -+ -+static struct cpu_table *cpu; -+ -+static struct cpu_table * __init s3c_lookup_cpu(unsigned long idcode, -+ struct cpu_table *tab, -+ unsigned int count) -+{ -+ for (; count != 0; count--, tab++) { -+ if ((idcode & tab->idmask) == tab->idcode) -+ return tab; -+ } -+ -+ return NULL; -+} -+ -+void __init s3c_init_cpu(unsigned long idcode, -+ struct cpu_table *cputab, unsigned int cputab_size) -+{ -+ cpu = s3c_lookup_cpu(idcode, cputab, cputab_size); -+ -+ if (cpu == NULL) { -+ printk(KERN_ERR "Unknown CPU type 0x%08lx\n", idcode); -+ panic("Unknown S3C24XX CPU"); -+ } -+ -+ printk("CPU %s (id 0x%08lx)\n", cpu->name, idcode); -+ -+ if (cpu->map_io == NULL || cpu->init == NULL) { -+ printk(KERN_ERR "CPU %s support not enabled\n", cpu->name); -+ panic("Unsupported Samsung CPU"); -+ } -+ -+ cpu->map_io(); -+} -+ -+/* s3c24xx_init_clocks -+ * -+ * Initialise the clock subsystem and associated information from the -+ * given master crystal value. -+ * -+ * xtal = 0 -> use default PLL crystal value (normally 12MHz) -+ * != 0 -> PLL crystal value in Hz -+*/ -+ -+void __init s3c24xx_init_clocks(int xtal) -+{ -+ if (xtal == 0) -+ xtal = 12*1000*1000; -+ -+ if (cpu == NULL) -+ panic("s3c24xx_init_clocks: no cpu setup?\n"); -+ -+ if (cpu->init_clocks == NULL) -+ panic("s3c24xx_init_clocks: cpu has no clock init\n"); -+ else -+ (cpu->init_clocks)(xtal); -+} -+ -+/* uart management */ -+ -+static int nr_uarts __initdata = 0; -+ -+static struct s3c2410_uartcfg uart_cfgs[CONFIG_SERIAL_SAMSUNG_UARTS]; -+ -+/* s3c24xx_init_uartdevs -+ * -+ * copy the specified platform data and configuration into our central -+ * set of devices, before the data is thrown away after the init process. -+ * -+ * This also fills in the array passed to the serial driver for the -+ * early initialisation of the console. -+*/ -+ -+void __init s3c24xx_init_uartdevs(char *name, -+ struct s3c24xx_uart_resources *res, -+ struct s3c2410_uartcfg *cfg, int no) -+{ -+ struct platform_device *platdev; -+ struct s3c2410_uartcfg *cfgptr = uart_cfgs; -+ struct s3c24xx_uart_resources *resp; -+ int uart; -+ -+ memcpy(cfgptr, cfg, sizeof(struct s3c2410_uartcfg) * no); -+ -+ for (uart = 0; uart < no; uart++, cfg++, cfgptr++) { -+ platdev = s3c24xx_uart_src[cfgptr->hwport]; -+ -+ resp = res + cfgptr->hwport; -+ -+ s3c24xx_uart_devs[uart] = platdev; -+ -+ platdev->name = name; -+ platdev->resource = resp->resources; -+ platdev->num_resources = resp->nr_resources; -+ -+ platdev->dev.platform_data = cfgptr; -+ } -+ -+ nr_uarts = no; -+} -+ -+void __init s3c24xx_init_uarts(struct s3c2410_uartcfg *cfg, int no) -+{ -+ if (cpu == NULL) -+ return; -+ -+ if (cpu->init_uarts == NULL) { -+ printk(KERN_ERR "s3c24xx_init_uarts: cpu has no uart init\n"); -+ } else -+ (cpu->init_uarts)(cfg, no); -+} -+ -+static int __init s3c_arch_init(void) -+{ -+ int ret; -+ -+ // do the correct init for cpu -+ -+ if (cpu == NULL) -+ panic("s3c_arch_init: NULL cpu\n"); -+ -+ ret = (cpu->init)(); -+ if (ret != 0) -+ return ret; -+ -+ ret = platform_add_devices(s3c24xx_uart_devs, nr_uarts); -+ return ret; -+} -+ -+arch_initcall(s3c_arch_init); ---- a/arch/arm/plat-s3c/Kconfig -+++ b/arch/arm/plat-s3c/Kconfig -@@ -6,8 +6,8 @@ - - config PLAT_S3C - bool -- depends on ARCH_S3C2410 -- default y if ARCH_S3C2410 -+ depends on ARCH_S3C2410 || ARCH_S3C24A0 || ARCH_S3C64XX -+ default y - select NO_IOPORT - help - Base platform code for any Samsung S3C device -@@ -16,24 +16,24 @@ config PLAT_S3C - - config CPU_LLSERIAL_S3C2410_ONLY - bool -- depends on ARCH_S3C2410 -+ depends on PLAT_S3C - default y if CPU_LLSERIAL_S3C2410 && !CPU_LLSERIAL_S3C2440 - - config CPU_LLSERIAL_S3C2440_ONLY - bool -- depends on ARCH_S3C2410 -+ depends on PLAT_S3C - default y if CPU_LLSERIAL_S3C2440 && !CPU_LLSERIAL_S3C2410 - - config CPU_LLSERIAL_S3C2410 - bool -- depends on ARCH_S3C2410 -+ depends on PLAT_S3C - help - Selected if there is an S3C2410 (or register compatible) serial - low-level implementation needed - - config CPU_LLSERIAL_S3C2440 - bool -- depends on ARCH_S3C2410 -+ depends on PLAT_S3C - help - Selected if there is an S3C2440 (or register compatible) serial - low-level implementation needed -@@ -57,6 +57,14 @@ config S3C_BOOT_ERROR_RESET - Say y here to use the watchdog to reset the system if the - kernel decompressor detects an error during decompression. - -+config S3C_BOOT_UART_FORCE_FIFO -+ bool "Force UART FIFO on during boot process" -+ depends on PLAT_S3C -+ default y -+ help -+ Say Y here to force the UART FIFOs on during the kernel -+ uncompressor -+ - comment "Power management" - - config S3C2410_PM_DEBUG -@@ -67,6 +75,15 @@ config S3C2410_PM_DEBUG - Resume code. See <file:Documentation/arm/Samsung-S3C24XX/Suspend.txt> - for more information. - -+config S3C_PM_DEBUG_LED_SMDK -+ bool "SMDK LED suspend/resume debugging" -+ depends on PM && (MACH_SMDK6410) -+ help -+ Say Y here to enable the use of the SMDK LEDs on the baseboard -+ for debugging of the state of the suspend and resume process. -+ -+ Note, this currently only works for S3C64XX based SMDK boards. -+ - config S3C2410_PM_CHECK - bool "S3C2410 PM Suspend Memory CRC" - depends on PLAT_S3C && PM && CRC32 -@@ -102,3 +119,73 @@ config S3C_LOWLEVEL_UART_PORT - such as the `Uncompressing...` at start time. The value of - this configuration should be between zero and two. The port - must have been initialised by the boot-loader before use. -+ -+# options for gpiolib support -+ -+config S3C_GPIO_SPACE -+ int "Space between gpio banks" -+ default 0 -+ help -+ Add a number of spare GPIO entries between each bank for debugging -+ purposes. This allows any problems where an counter overflows from -+ one bank to another to be caught, at the expense of using a little -+ more memory. -+ -+config S3C_GPIO_TRACK -+ bool -+ help -+ Internal configuration option to enable the s3c specific gpio -+ chip tracking if the platform requires it. -+ -+config S3C_GPIO_PULL_UPDOWN -+ bool -+ help -+ Internal configuration to enable the correct GPIO pull helper -+ -+config S3C_GPIO_PULL_DOWN -+ bool -+ help -+ Internal configuration to enable the correct GPIO pull helper -+ -+config S3C_GPIO_PULL_UP -+ bool -+ help -+ Internal configuration to enable the correct GPIO pull helper -+ -+config S3C_GPIO_CFG_S3C24XX -+ bool -+ help -+ Internal configuration to enable S3C24XX style GPIO configuration -+ functions. -+ -+config S3C_GPIO_CFG_S3C64XX -+ bool -+ help -+ Internal configuration to enable S3C64XX style GPIO configuration -+ functions. -+ -+# device definitions to compile in -+ -+config S3C_DEV_HSMMC -+ bool -+ depends on PLAT_S3C -+ help -+ Compile in platform device definitions for HSMMC code -+ -+config S3C_DEV_HSMMC1 -+ bool -+ depends on PLAT_S3C -+ help -+ Compile in platform device definitions for HSMMC channel 1 -+ -+config S3C_DEV_I2C1 -+ bool -+ depends on PLAT_S3C -+ help -+ Compile in platform device definitions for I2C channel 1 -+ -+config S3C_DEV_FB -+ bool -+ depends on PLAT_S3C -+ help -+ Compile in platform device definition for framebuffer ---- a/arch/arm/plat-s3c/Makefile -+++ b/arch/arm/plat-s3c/Makefile -@@ -1,3 +1,33 @@ --# dummy makefile, currently just including asm/arm/plat-s3c/include/plat -+# arch/arm/plat-s3c/Makefile -+# -+# Copyright 2008 Simtec Electronics -+# -+# Licensed under GPLv2 - --obj-n := dummy.o -+obj-y := -+obj-m := -+obj-n := -+obj- := -+ -+# Core support for all Samsung SoCs -+ -+obj-y += init.o -+obj-y += time.o -+obj-y += clock.o -+obj-y += pwm-clock.o -+obj-y += gpio.o -+obj-y += gpio-config.o -+ -+# PM support -+ -+obj-$(CONFIG_PM) += pm.o -+obj-$(CONFIG_PM) += pm-gpio.o -+obj-$(CONFIG_S3C2410_PM_CHECK) += pm-check.o -+ -+# devices -+ -+obj-$(CONFIG_S3C_DEV_HSMMC) += dev-hsmmc.o -+obj-$(CONFIG_S3C_DEV_HSMMC1) += dev-hsmmc1.o -+obj-y += dev-i2c0.o -+obj-$(CONFIG_S3C_DEV_I2C1) += dev-i2c1.o -+obj-$(CONFIG_S3C_DEV_FB) += dev-fb.o ---- /dev/null -+++ b/arch/arm/plat-s3c/pm.c -@@ -0,0 +1,387 @@ -+/* linux/arch/arm/plat-s3c/pm.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2004,2006,2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C common power management (suspend to ram) support. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/init.h> -+#include <linux/suspend.h> -+#include <linux/errno.h> -+#include <linux/delay.h> -+#include <linux/serial_core.h> -+#include <linux/io.h> -+#include <linux/regulator/machine.h> -+ -+#include <asm/cacheflush.h> -+#include <mach/hardware.h> -+#include <mach/map.h> -+ -+#include <plat/regs-serial.h> -+#include <mach/regs-clock.h> -+#include <mach/regs-irq.h> -+#include <asm/irq.h> -+ -+#include <plat/pm.h> -+#include <plat/pm-core.h> -+ -+/* for external use */ -+ -+unsigned long s3c_pm_flags; -+ -+/* Debug code: -+ * -+ * This code supports debug output to the low level UARTs for use on -+ * resume before the console layer is available. -+*/ -+ -+#ifdef CONFIG_S3C2410_PM_DEBUG -+extern void printascii(const char *); -+ -+void s3c_pm_dbg(const char *fmt, ...) -+{ -+ va_list va; -+ char buff[256]; -+ -+ va_start(va, fmt); -+ vsprintf(buff, fmt, va); -+ va_end(va); -+ -+ printascii(buff); -+} -+ -+static inline void s3c_pm_debug_init(void) -+{ -+ /* restart uart clocks so we can use them to output */ -+ s3c_pm_debug_init_uart(); -+} -+ -+#else -+#define s3c_pm_debug_init() do { } while(0) -+ -+#endif /* CONFIG_S3C2410_PM_DEBUG */ -+ -+/* Save the UART configurations if we are configured for debug. */ -+ -+unsigned char pm_uart_udivslot; -+ -+#ifdef CONFIG_S3C2410_PM_DEBUG -+ -+struct pm_uart_save uart_save[CONFIG_SERIAL_SAMSUNG_UARTS]; -+ -+static void s3c_pm_save_uart(unsigned int uart, struct pm_uart_save *save) -+{ -+ void __iomem *regs = S3C_VA_UARTx(uart); -+ -+ save->ulcon = __raw_readl(regs + S3C2410_ULCON); -+ save->ucon = __raw_readl(regs + S3C2410_UCON); -+ save->ufcon = __raw_readl(regs + S3C2410_UFCON); -+ save->umcon = __raw_readl(regs + S3C2410_UMCON); -+ save->ubrdiv = __raw_readl(regs + S3C2410_UBRDIV); -+ -+ if (pm_uart_udivslot) -+ save->udivslot = __raw_readl(regs + S3C2443_DIVSLOT); -+ -+ S3C_PMDBG("UART[%d]: ULCON=%04x, UCON=%04x, UFCON=%04x, UBRDIV=%04x\n", -+ uart, save->ulcon, save->ucon, save->ufcon, save->ubrdiv); -+} -+ -+static void s3c_pm_save_uarts(void) -+{ -+ struct pm_uart_save *save = uart_save; -+ unsigned int uart; -+ -+ for (uart = 0; uart < CONFIG_SERIAL_SAMSUNG_UARTS; uart++, save++) -+ s3c_pm_save_uart(uart, save); -+} -+ -+static void s3c_pm_restore_uart(unsigned int uart, struct pm_uart_save *save) -+{ -+ void __iomem *regs = S3C_VA_UARTx(uart); -+ -+ s3c_pm_arch_update_uart(regs, save); -+ -+ __raw_writel(save->ulcon, regs + S3C2410_ULCON); -+ __raw_writel(save->ucon, regs + S3C2410_UCON); -+ __raw_writel(save->ufcon, regs + S3C2410_UFCON); -+ __raw_writel(save->umcon, regs + S3C2410_UMCON); -+ __raw_writel(save->ubrdiv, regs + S3C2410_UBRDIV); -+ -+ if (pm_uart_udivslot) -+ __raw_writel(save->udivslot, regs + S3C2443_DIVSLOT); -+} -+ -+static void s3c_pm_restore_uarts(void) -+{ -+ struct pm_uart_save *save = uart_save; -+ unsigned int uart; -+ -+ for (uart = 0; uart < CONFIG_SERIAL_SAMSUNG_UARTS; uart++, save++) -+ s3c_pm_restore_uart(uart, save); -+} -+#else -+static void s3c_pm_save_uarts(void) { } -+static void s3c_pm_restore_uarts(void) { } -+#endif -+ -+/* The IRQ ext-int code goes here, it is too small to currently bother -+ * with its own file. */ -+ -+unsigned long s3c_irqwake_intmask = 0xffffffffL; -+unsigned long s3c_irqwake_eintmask = 0xffffffffL; -+ -+int s3c_irqext_wake(unsigned int irqno, unsigned int state) -+{ -+ unsigned long bit = 1L << IRQ_EINT_BIT(irqno); -+ -+ if (!(s3c_irqwake_eintallow & bit)) -+ return -ENOENT; -+ -+ printk(KERN_INFO "wake %s for irq %d\n", -+ state ? "enabled" : "disabled", irqno); -+ -+ if (!state) -+ s3c_irqwake_eintmask |= bit; -+ else -+ s3c_irqwake_eintmask &= ~bit; -+ -+ return 0; -+} -+ -+/* helper functions to save and restore register state */ -+ -+/** -+ * s3c_pm_do_save() - save a set of registers for restoration on resume. -+ * @ptr: Pointer to an array of registers. -+ * @count: Size of the ptr array. -+ * -+ * Run through the list of registers given, saving their contents in the -+ * array for later restoration when we wakeup. -+ */ -+void s3c_pm_do_save(struct sleep_save *ptr, int count) -+{ -+ for (; count > 0; count--, ptr++) { -+ ptr->val = __raw_readl(ptr->reg); -+ S3C_PMDBG("saved %p value %08lx\n", ptr->reg, ptr->val); -+ } -+} -+ -+/** -+ * s3c_pm_do_restore() - restore register values from the save list. -+ * @ptr: Pointer to an array of registers. -+ * @count: Size of the ptr array. -+ * -+ * Restore the register values saved from s3c_pm_do_save(). -+ * -+ * Note, we do not use S3C_PMDBG() in here, as the system may not have -+ * restore the UARTs state yet -+*/ -+ -+void s3c_pm_do_restore(struct sleep_save *ptr, int count) -+{ -+ for (; count > 0; count--, ptr++) { -+ printk(KERN_DEBUG "restore %p (restore %08lx, was %08x)\n", -+ ptr->reg, ptr->val, __raw_readl(ptr->reg)); -+ -+ __raw_writel(ptr->val, ptr->reg); -+ } -+} -+ -+/** -+ * s3c_pm_do_restore_core() - early restore register values from save list. -+ * -+ * This is similar to s3c_pm_do_restore() except we try and minimise the -+ * side effects of the function in case registers that hardware might need -+ * to work has been restored. -+ * -+ * WARNING: Do not put any debug in here that may effect memory or use -+ * peripherals, as things may be changing! -+*/ -+ -+void s3c_pm_do_restore_core(struct sleep_save *ptr, int count) -+{ -+ for (; count > 0; count--, ptr++) -+ __raw_writel(ptr->val, ptr->reg); -+} -+ -+/* s3c2410_pm_show_resume_irqs -+ * -+ * print any IRQs asserted at resume time (ie, we woke from) -+*/ -+static void s3c_pm_show_resume_irqs(int start, unsigned long which, -+ unsigned long mask) -+{ -+ int i; -+ -+ which &= ~mask; -+ -+ for (i = 0; i <= 31; i++) { -+ if (which & (1L<<i)) { -+ S3C_PMDBG("IRQ %d asserted at resume\n", start+i); -+ } -+ } -+} -+ -+ -+void (*pm_cpu_prep)(void); -+void (*pm_cpu_sleep)(void); -+ -+#define any_allowed(mask, allow) (((mask) & (allow)) != (allow)) -+ -+/* s3c_pm_enter -+ * -+ * central control for sleep/resume process -+*/ -+ -+static int s3c_pm_enter(suspend_state_t state) -+{ -+ unsigned long regs_save[16]; -+ -+ /* ensure the debug is initialised (if enabled) */ -+ -+ s3c_pm_debug_init(); -+ -+ S3C_PMDBG("%s(%d)\n", __func__, state); -+ -+ if (pm_cpu_prep == NULL || pm_cpu_sleep == NULL) { -+ printk(KERN_ERR "%s: error: no cpu sleep function\n", __func__); -+ return -EINVAL; -+ } -+ -+ /* check if we have anything to wake-up with... bad things seem -+ * to happen if you suspend with no wakeup (system will often -+ * require a full power-cycle) -+ */ -+ -+ if (!any_allowed(s3c_irqwake_intmask, s3c_irqwake_intallow) && -+ !any_allowed(s3c_irqwake_eintmask, s3c_irqwake_eintallow)) { -+ printk(KERN_ERR "%s: No wake-up sources!\n", __func__); -+ printk(KERN_ERR "%s: Aborting sleep\n", __func__); -+ return -EINVAL; -+ } -+ -+ /* store the physical address of the register recovery block */ -+ -+ s3c_sleep_save_phys = virt_to_phys(regs_save); -+ -+ S3C_PMDBG("s3c_sleep_save_phys=0x%08lx\n", s3c_sleep_save_phys); -+ -+ /* save all necessary core registers not covered by the drivers */ -+ -+ s3c_pm_save_gpios(); -+ s3c_pm_save_uarts(); -+ s3c_pm_save_core(); -+ -+ /* set the irq configuration for wake */ -+ -+ s3c_pm_configure_extint(); -+ -+ S3C_PMDBG("sleep: irq wakeup masks: %08lx,%08lx\n", -+ s3c_irqwake_intmask, s3c_irqwake_eintmask); -+ -+ s3c_pm_arch_prepare_irqs(); -+ -+ /* call cpu specific preparation */ -+ -+ pm_cpu_prep(); -+ -+ /* flush cache back to ram */ -+ -+ flush_cache_all(); -+ -+ s3c_pm_check_store(); -+ -+ /* send the cpu to sleep... */ -+ -+ s3c_pm_arch_stop_clocks(); -+ -+ /* s3c2410_cpu_save will also act as our return point from when -+ * we resume as it saves its own register state, so use the return -+ * code to differentiate return from save and return from sleep */ -+ -+ if (s3c_cpu_save(regs_save) == 0) { -+ flush_cache_all(); -+ pm_cpu_sleep(); -+ } -+ -+ /* restore the cpu state using the kernel's cpu init code. */ -+ -+ cpu_init(); -+ -+ /* restore the system state */ -+ -+ s3c_pm_restore_core(); -+ s3c_pm_restore_uarts(); -+ s3c_pm_restore_gpios(); -+ -+ s3c_pm_debug_init(); -+ -+ /* check what irq (if any) restored the system */ -+ -+ s3c_pm_arch_show_resume_irqs(); -+ -+ S3C_PMDBG("%s: post sleep, preparing to return\n", __func__); -+ -+ s3c_pm_check_restore(); -+ -+ /* LEDs should now be 1110 */ -+ s3c_pm_debug_smdkled(1 << 1, 0); -+ -+ /* ok, let's return from sleep */ -+ -+ S3C_PMDBG("S3C PM Resume (post-restore)\n"); -+ return 0; -+} -+ -+static int s3c_pm_prepare(void) -+{ -+ /* prepare check area if configured */ -+ -+ s3c_pm_check_prepare(); -+ return 0; -+} -+ -+static void s3c_pm_finish(void) -+{ -+ s3c_pm_check_cleanup(); -+} -+ -+static int s3c_pm_begin(suspend_state_t state) -+{ -+ int ret = 0; -+ -+#ifdef CONFIG_REGULATOR -+ ret = regulator_suspend_prepare(state); -+#endif -+ return ret; -+} -+ -+static struct platform_suspend_ops s3c_pm_ops = { -+ .enter = s3c_pm_enter, -+ .prepare = s3c_pm_prepare, -+ .finish = s3c_pm_finish, -+ .valid = suspend_valid_only_mem, -+ .begin = s3c_pm_begin, -+}; -+ -+/* s3c_pm_init -+ * -+ * Attach the power management functions. This should be called -+ * from the board specific initialisation if the board supports -+ * it. -+*/ -+ -+int __init s3c_pm_init(void) -+{ -+ printk("S3C Power Management, Copyright 2004 Simtec Electronics\n"); -+ -+ suspend_set_ops(&s3c_pm_ops); -+ return 0; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/pm-check.c -@@ -0,0 +1,242 @@ -+/* linux/arch/arm/plat-s3c/pm-check.c -+ * originally in linux/arch/arm/plat-s3c24xx/pm.c -+ * -+ * Copyright (c) 2004,2006,2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C Power Mangament - suspend/resume memory corruptiuon check. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/suspend.h> -+#include <linux/init.h> -+#include <linux/crc32.h> -+#include <linux/ioport.h> -+ -+#include <plat/pm.h> -+ -+#if CONFIG_S3C2410_PM_CHECK_CHUNKSIZE < 1 -+#error CONFIG_S3C2410_PM_CHECK_CHUNKSIZE must be a positive non-zero value -+#endif -+ -+/* suspend checking code... -+ * -+ * this next area does a set of crc checks over all the installed -+ * memory, so the system can verify if the resume was ok. -+ * -+ * CONFIG_S3C2410_PM_CHECK_CHUNKSIZE defines the block-size for the CRC, -+ * increasing it will mean that the area corrupted will be less easy to spot, -+ * and reducing the size will cause the CRC save area to grow -+*/ -+ -+#define CHECK_CHUNKSIZE (CONFIG_S3C2410_PM_CHECK_CHUNKSIZE * 1024) -+ -+static u32 crc_size; /* size needed for the crc block */ -+static u32 *crcs; /* allocated over suspend/resume */ -+ -+typedef u32 *(run_fn_t)(struct resource *ptr, u32 *arg); -+ -+/* s3c_pm_run_res -+ * -+ * go through the given resource list, and look for system ram -+*/ -+ -+static void s3c_pm_run_res(struct resource *ptr, run_fn_t fn, u32 *arg) -+{ -+ while (ptr != NULL) { -+ if (ptr->child != NULL) -+ s3c_pm_run_res(ptr->child, fn, arg); -+ -+ if ((ptr->flags & IORESOURCE_MEM) && -+ strcmp(ptr->name, "System RAM") == 0) { -+ S3C_PMDBG("Found system RAM at %08lx..%08lx\n", -+ (unsigned long)ptr->start, -+ (unsigned long)ptr->end); -+ arg = (fn)(ptr, arg); -+ } -+ -+ ptr = ptr->sibling; -+ } -+} -+ -+static void s3c_pm_run_sysram(run_fn_t fn, u32 *arg) -+{ -+ s3c_pm_run_res(&iomem_resource, fn, arg); -+} -+ -+static u32 *s3c_pm_countram(struct resource *res, u32 *val) -+{ -+ u32 size = (u32)(res->end - res->start)+1; -+ -+ size += CHECK_CHUNKSIZE-1; -+ size /= CHECK_CHUNKSIZE; -+ -+ S3C_PMDBG("Area %08lx..%08lx, %d blocks\n", -+ (unsigned long)res->start, (unsigned long)res->end, size); -+ -+ *val += size * sizeof(u32); -+ return val; -+} -+ -+/* s3c_pm_prepare_check -+ * -+ * prepare the necessary information for creating the CRCs. This -+ * must be done before the final save, as it will require memory -+ * allocating, and thus touching bits of the kernel we do not -+ * know about. -+*/ -+ -+void s3c_pm_check_prepare(void) -+{ -+ crc_size = 0; -+ -+ s3c_pm_run_sysram(s3c_pm_countram, &crc_size); -+ -+ S3C_PMDBG("s3c_pm_prepare_check: %u checks needed\n", crc_size); -+ -+ crcs = kmalloc(crc_size+4, GFP_KERNEL); -+ if (crcs == NULL) -+ printk(KERN_ERR "Cannot allocated CRC save area\n"); -+} -+ -+static u32 *s3c_pm_makecheck(struct resource *res, u32 *val) -+{ -+ unsigned long addr, left; -+ -+ for (addr = res->start; addr < res->end; -+ addr += CHECK_CHUNKSIZE) { -+ left = res->end - addr; -+ -+ if (left > CHECK_CHUNKSIZE) -+ left = CHECK_CHUNKSIZE; -+ -+ *val = crc32_le(~0, phys_to_virt(addr), left); -+ val++; -+ } -+ -+ return val; -+} -+ -+/* s3c_pm_check_store -+ * -+ * compute the CRC values for the memory blocks before the final -+ * sleep. -+*/ -+ -+void s3c_pm_check_store(void) -+{ -+ if (crcs != NULL) -+ s3c_pm_run_sysram(s3c_pm_makecheck, crcs); -+} -+ -+/* in_region -+ * -+ * return TRUE if the area defined by ptr..ptr+size contains the -+ * what..what+whatsz -+*/ -+ -+static inline int in_region(void *ptr, int size, void *what, size_t whatsz) -+{ -+ if ((what+whatsz) < ptr) -+ return 0; -+ -+ if (what > (ptr+size)) -+ return 0; -+ -+ return 1; -+} -+ -+/** -+ * s3c_pm_runcheck() - helper to check a resource on restore. -+ * @res: The resource to check -+ * @vak: Pointer to list of CRC32 values to check. -+ * -+ * Called from the s3c_pm_check_restore() via s3c_pm_run_sysram(), this -+ * function runs the given memory resource checking it against the stored -+ * CRC to ensure that memory is restored. The function tries to skip as -+ * many of the areas used during the suspend process. -+ */ -+static u32 *s3c_pm_runcheck(struct resource *res, u32 *val) -+{ -+ void *save_at = phys_to_virt(s3c_sleep_save_phys); -+ unsigned long addr; -+ unsigned long left; -+ void *stkpage; -+ void *ptr; -+ u32 calc; -+ -+ stkpage = (void *)((u32)&calc & ~PAGE_MASK); -+ -+ for (addr = res->start; addr < res->end; -+ addr += CHECK_CHUNKSIZE) { -+ left = res->end - addr; -+ -+ if (left > CHECK_CHUNKSIZE) -+ left = CHECK_CHUNKSIZE; -+ -+ ptr = phys_to_virt(addr); -+ -+ if (in_region(ptr, left, stkpage, 4096)) { -+ S3C_PMDBG("skipping %08lx, has stack in\n", addr); -+ goto skip_check; -+ } -+ -+ if (in_region(ptr, left, crcs, crc_size)) { -+ S3C_PMDBG("skipping %08lx, has crc block in\n", addr); -+ goto skip_check; -+ } -+ -+ if (in_region(ptr, left, save_at, 32*4 )) { -+ S3C_PMDBG("skipping %08lx, has save block in\n", addr); -+ goto skip_check; -+ } -+ -+ /* calculate and check the checksum */ -+ -+ calc = crc32_le(~0, ptr, left); -+ if (calc != *val) { -+ printk(KERN_ERR "Restore CRC error at " -+ "%08lx (%08x vs %08x)\n", addr, calc, *val); -+ -+ S3C_PMDBG("Restore CRC error at %08lx (%08x vs %08x)\n", -+ addr, calc, *val); -+ } -+ -+ skip_check: -+ val++; -+ } -+ -+ return val; -+} -+ -+/** -+ * s3c_pm_check_restore() - memory check called on resume -+ * -+ * check the CRCs after the restore event and free the memory used -+ * to hold them -+*/ -+void s3c_pm_check_restore(void) -+{ -+ if (crcs != NULL) -+ s3c_pm_run_sysram(s3c_pm_runcheck, crcs); -+} -+ -+/** -+ * s3c_pm_check_cleanup() - free memory resources -+ * -+ * Free the resources that where allocated by the suspend -+ * memory check code. We do this separately from the -+ * s3c_pm_check_restore() function as we cannot call any -+ * functions that might sleep during that resume. -+ */ -+void s3c_pm_check_cleanup(void) -+{ -+ kfree(crcs); -+ crcs = NULL; -+} -+ ---- /dev/null -+++ b/arch/arm/plat-s3c/pm-gpio.c -@@ -0,0 +1,378 @@ -+/* linux/arch/arm/plat-s3c/pm-gpio.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C series GPIO PM code -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/io.h> -+#include <linux/gpio.h> -+ -+#include <mach/gpio-core.h> -+#include <plat/pm.h> -+ -+/* PM GPIO helpers */ -+ -+#define OFFS_CON (0x00) -+#define OFFS_DAT (0X04) -+#define OFFS_UP (0X08) -+ -+static void s3c_gpio_pm_1bit_save(struct s3c_gpio_chip *chip) -+{ -+ chip->pm_save[0] = __raw_readl(chip->base + OFFS_CON); -+ chip->pm_save[1] = __raw_readl(chip->base + OFFS_DAT); -+} -+ -+static void s3c_gpio_pm_1bit_resume(struct s3c_gpio_chip *chip) -+{ -+ void __iomem *base = chip->base; -+ u32 old_gpcon = __raw_readl(base + OFFS_CON); -+ u32 old_gpdat = __raw_readl(base + OFFS_DAT); -+ u32 gps_gpcon = chip->pm_save[0]; -+ u32 gps_gpdat = chip->pm_save[1]; -+ u32 gpcon; -+ -+ /* GPACON only has one bit per control / data and no PULLUPs. -+ * GPACON[x] = 0 => Output, 1 => SFN */ -+ -+ /* first set all SFN bits to SFN */ -+ -+ gpcon = old_gpcon | gps_gpcon; -+ __raw_writel(gpcon, base + OFFS_CON); -+ -+ /* now set all the other bits */ -+ -+ __raw_writel(gps_gpdat, base + OFFS_DAT); -+ __raw_writel(gps_gpcon, base + OFFS_CON); -+ -+ S3C_PMDBG("%s: CON %08x => %08x, DAT %08x => %08x\n", -+ chip->chip.label, old_gpcon, gps_gpcon, old_gpdat, gps_gpdat); -+} -+ -+struct s3c_gpio_pm s3c_gpio_pm_1bit = { -+ .save = s3c_gpio_pm_1bit_save, -+ .resume = s3c_gpio_pm_1bit_resume, -+}; -+ -+static void s3c_gpio_pm_2bit_save(struct s3c_gpio_chip *chip) -+{ -+ chip->pm_save[0] = __raw_readl(chip->base + OFFS_CON); -+ chip->pm_save[1] = __raw_readl(chip->base + OFFS_DAT); -+ chip->pm_save[2] = __raw_readl(chip->base + OFFS_UP); -+} -+ -+/* Test whether the given masked+shifted bits of an GPIO configuration -+ * are one of the SFN (special function) modes. */ -+ -+static inline int is_sfn(unsigned long con) -+{ -+ return con >= 2; -+} -+ -+/* Test if the given masked+shifted GPIO configuration is an input */ -+ -+static inline int is_in(unsigned long con) -+{ -+ return con == 0; -+} -+ -+/* Test if the given masked+shifted GPIO configuration is an output */ -+ -+static inline int is_out(unsigned long con) -+{ -+ return con == 1; -+} -+ -+/** -+ * s3c_gpio_pm_2bit_resume() - restore the given GPIO bank -+ * @chip: The chip information to resume. -+ * -+ * Restore one of the GPIO banks that was saved during suspend. This is -+ * not as simple as once thought, due to the possibility of glitches -+ * from the order that the CON and DAT registers are set in. -+ * -+ * The three states the pin can be are {IN,OUT,SFN} which gives us 9 -+ * combinations of changes to check. Three of these, if the pin stays -+ * in the same configuration can be discounted. This leaves us with -+ * the following: -+ * -+ * { IN => OUT } Change DAT first -+ * { IN => SFN } Change CON first -+ * { OUT => SFN } Change CON first, so new data will not glitch -+ * { OUT => IN } Change CON first, so new data will not glitch -+ * { SFN => IN } Change CON first -+ * { SFN => OUT } Change DAT first, so new data will not glitch [1] -+ * -+ * We do not currently deal with the UP registers as these control -+ * weak resistors, so a small delay in change should not need to bring -+ * these into the calculations. -+ * -+ * [1] this assumes that writing to a pin DAT whilst in SFN will set the -+ * state for when it is next output. -+ */ -+static void s3c_gpio_pm_2bit_resume(struct s3c_gpio_chip *chip) -+{ -+ void __iomem *base = chip->base; -+ u32 old_gpcon = __raw_readl(base + OFFS_CON); -+ u32 old_gpdat = __raw_readl(base + OFFS_DAT); -+ u32 gps_gpcon = chip->pm_save[0]; -+ u32 gps_gpdat = chip->pm_save[1]; -+ u32 gpcon, old, new, mask; -+ u32 change_mask = 0x0; -+ int nr; -+ -+ /* restore GPIO pull-up settings */ -+ __raw_writel(chip->pm_save[2], base + OFFS_UP); -+ -+ /* Create a change_mask of all the items that need to have -+ * their CON value changed before their DAT value, so that -+ * we minimise the work between the two settings. -+ */ -+ -+ for (nr = 0, mask = 0x03; nr < 32; nr += 2, mask <<= 2) { -+ old = (old_gpcon & mask) >> nr; -+ new = (gps_gpcon & mask) >> nr; -+ -+ /* If there is no change, then skip */ -+ -+ if (old == new) -+ continue; -+ -+ /* If both are special function, then skip */ -+ -+ if (is_sfn(old) && is_sfn(new)) -+ continue; -+ -+ /* Change is IN => OUT, do not change now */ -+ -+ if (is_in(old) && is_out(new)) -+ continue; -+ -+ /* Change is SFN => OUT, do not change now */ -+ -+ if (is_sfn(old) && is_out(new)) -+ continue; -+ -+ /* We should now be at the case of IN=>SFN, -+ * OUT=>SFN, OUT=>IN, SFN=>IN. */ -+ -+ change_mask |= mask; -+ } -+ -+ -+ /* Write the new CON settings */ -+ -+ gpcon = old_gpcon & ~change_mask; -+ gpcon |= gps_gpcon & change_mask; -+ -+ __raw_writel(gpcon, base + OFFS_CON); -+ -+ /* Now change any items that require DAT,CON */ -+ -+ __raw_writel(gps_gpdat, base + OFFS_DAT); -+ __raw_writel(gps_gpcon, base + OFFS_CON); -+ -+ S3C_PMDBG("%s: CON %08x => %08x, DAT %08x => %08x\n", -+ chip->chip.label, old_gpcon, gps_gpcon, old_gpdat, gps_gpdat); -+} -+ -+struct s3c_gpio_pm s3c_gpio_pm_2bit = { -+ .save = s3c_gpio_pm_2bit_save, -+ .resume = s3c_gpio_pm_2bit_resume, -+}; -+ -+#ifdef CONFIG_ARCH_S3C64XX -+static void s3c_gpio_pm_4bit_save(struct s3c_gpio_chip *chip) -+{ -+ chip->pm_save[1] = __raw_readl(chip->base + OFFS_CON); -+ chip->pm_save[2] = __raw_readl(chip->base + OFFS_DAT); -+ chip->pm_save[3] = __raw_readl(chip->base + OFFS_UP); -+ -+ if (chip->chip.ngpio > 8) -+ chip->pm_save[0] = __raw_readl(chip->base - 4); -+} -+ -+static u32 s3c_gpio_pm_4bit_mask(u32 old_gpcon, u32 gps_gpcon) -+{ -+ u32 old, new, mask; -+ u32 change_mask = 0x0; -+ int nr; -+ -+ for (nr = 0, mask = 0x0f; nr < 16; nr += 4, mask <<= 4) { -+ old = (old_gpcon & mask) >> nr; -+ new = (gps_gpcon & mask) >> nr; -+ -+ /* If there is no change, then skip */ -+ -+ if (old == new) -+ continue; -+ -+ /* If both are special function, then skip */ -+ -+ if (is_sfn(old) && is_sfn(new)) -+ continue; -+ -+ /* Change is IN => OUT, do not change now */ -+ -+ if (is_in(old) && is_out(new)) -+ continue; -+ -+ /* Change is SFN => OUT, do not change now */ -+ -+ if (is_sfn(old) && is_out(new)) -+ continue; -+ -+ /* We should now be at the case of IN=>SFN, -+ * OUT=>SFN, OUT=>IN, SFN=>IN. */ -+ -+ change_mask |= mask; -+ } -+ -+ return change_mask; -+} -+ -+static void s3c_gpio_pm_4bit_con(struct s3c_gpio_chip *chip, int index) -+{ -+ void __iomem *con = chip->base + (index * 4); -+ u32 old_gpcon = __raw_readl(con); -+ u32 gps_gpcon = chip->pm_save[index + 1]; -+ u32 gpcon, mask; -+ -+ mask = s3c_gpio_pm_4bit_mask(old_gpcon, gps_gpcon); -+ -+ gpcon = old_gpcon & ~mask; -+ gpcon |= gps_gpcon & mask; -+ -+ __raw_writel(gpcon, con); -+} -+ -+static void s3c_gpio_pm_4bit_resume(struct s3c_gpio_chip *chip) -+{ -+ void __iomem *base = chip->base; -+ u32 old_gpcon[2]; -+ u32 old_gpdat = __raw_readl(base + OFFS_DAT); -+ u32 gps_gpdat = chip->pm_save[2]; -+ -+ /* First, modify the CON settings */ -+ -+ old_gpcon[0] = 0; -+ old_gpcon[1] = __raw_readl(base + OFFS_CON); -+ -+ s3c_gpio_pm_4bit_con(chip, 0); -+ if (chip->chip.ngpio > 8) { -+ old_gpcon[0] = __raw_readl(base - 4); -+ s3c_gpio_pm_4bit_con(chip, -1); -+ } -+ -+ /* Now change the configurations that require DAT,CON */ -+ -+ __raw_writel(chip->pm_save[2], base + OFFS_DAT); -+ __raw_writel(chip->pm_save[1], base + OFFS_CON); -+ if (chip->chip.ngpio > 8) -+ __raw_writel(chip->pm_save[0], base - 4); -+ -+ __raw_writel(chip->pm_save[2], base + OFFS_DAT); -+ __raw_writel(chip->pm_save[3], base + OFFS_UP); -+ -+ if (chip->chip.ngpio > 8) { -+ S3C_PMDBG("%s: CON4 %08x,%08x => %08x,%08x, DAT %08x => %08x\n", -+ chip->chip.label, old_gpcon[0], old_gpcon[1], -+ __raw_readl(base - 4), -+ __raw_readl(base + OFFS_CON), -+ old_gpdat, gps_gpdat); -+ } else -+ S3C_PMDBG("%s: CON4 %08x => %08x, DAT %08x => %08x\n", -+ chip->chip.label, old_gpcon[1], -+ __raw_readl(base + OFFS_CON), -+ old_gpdat, gps_gpdat); -+} -+ -+struct s3c_gpio_pm s3c_gpio_pm_4bit = { -+ .save = s3c_gpio_pm_4bit_save, -+ .resume = s3c_gpio_pm_4bit_resume, -+}; -+#endif /* CONFIG_ARCH_S3C64XX */ -+ -+/** -+ * s3c_pm_save_gpio() - save gpio chip data for suspend -+ * @ourchip: The chip for suspend. -+ */ -+static void s3c_pm_save_gpio(struct s3c_gpio_chip *ourchip) -+{ -+ struct s3c_gpio_pm *pm = ourchip->pm; -+ -+ if (pm == NULL || pm->save == NULL) -+ S3C_PMDBG("%s: no pm for %s\n", __func__, ourchip->chip.label); -+ else -+ pm->save(ourchip); -+} -+ -+/** -+ * s3c_pm_save_gpios() - Save the state of the GPIO banks. -+ * -+ * For all the GPIO banks, save the state of each one ready for going -+ * into a suspend mode. -+ */ -+void s3c_pm_save_gpios(void) -+{ -+ struct s3c_gpio_chip *ourchip; -+ unsigned int gpio_nr; -+ -+ for (gpio_nr = 0; gpio_nr < S3C_GPIO_END; gpio_nr++) { -+ ourchip = s3c_gpiolib_getchip(gpio_nr); -+ if (!ourchip) -+ continue; -+ -+ s3c_pm_save_gpio(ourchip); -+ -+ S3C_PMDBG("%s: save %08x,%08x,%08x,%08x\n", -+ ourchip->chip.label, -+ ourchip->pm_save[0], -+ ourchip->pm_save[1], -+ ourchip->pm_save[2], -+ ourchip->pm_save[3]); -+ -+ gpio_nr += ourchip->chip.ngpio; -+ gpio_nr += CONFIG_S3C_GPIO_SPACE; -+ } -+} -+ -+/** -+ * s3c_pm_resume_gpio() - restore gpio chip data after suspend -+ * @ourchip: The suspended chip. -+ */ -+static void s3c_pm_resume_gpio(struct s3c_gpio_chip *ourchip) -+{ -+ struct s3c_gpio_pm *pm = ourchip->pm; -+ -+ if (pm == NULL || pm->resume == NULL) -+ S3C_PMDBG("%s: no pm for %s\n", __func__, ourchip->chip.label); -+ else -+ pm->resume(ourchip); -+} -+ -+void s3c_pm_restore_gpios(void) -+{ -+ struct s3c_gpio_chip *ourchip; -+ unsigned int gpio_nr; -+ -+ for (gpio_nr = 0; gpio_nr < S3C_GPIO_END; gpio_nr++) { -+ ourchip = s3c_gpiolib_getchip(gpio_nr); -+ if (!ourchip) -+ continue; -+ -+ s3c_pm_resume_gpio(ourchip); -+ -+ gpio_nr += ourchip->chip.ngpio; -+ gpio_nr += CONFIG_S3C_GPIO_SPACE; -+ } -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/pwm-clock.c -@@ -0,0 +1,463 @@ -+/* linux/arch/arm/plat-s3c24xx/pwm-clock.c -+ * -+ * Copyright (c) 2007 Simtec Electronics -+ * Copyright (c) 2007, 2008 Ben Dooks -+ * Ben Dooks <ben-linux@fluff.org> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License. -+*/ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/list.h> -+#include <linux/errno.h> -+#include <linux/log2.h> -+#include <linux/clk.h> -+#include <linux/err.h> -+#include <linux/io.h> -+ -+#include <mach/hardware.h> -+#include <mach/map.h> -+#include <asm/irq.h> -+ -+#include <plat/clock.h> -+#include <plat/cpu.h> -+ -+#include <plat/regs-timer.h> -+#include <mach/pwm-clock.h> -+ -+/* Each of the timers 0 through 5 go through the following -+ * clock tree, with the inputs depending on the timers. -+ * -+ * pclk ---- [ prescaler 0 ] -+---> timer 0 -+ * +---> timer 1 -+ * -+ * pclk ---- [ prescaler 1 ] -+---> timer 2 -+ * +---> timer 3 -+ * \---> timer 4 -+ * -+ * Which are fed into the timers as so: -+ * -+ * prescaled 0 ---- [ div 2,4,8,16 ] ---\ -+ * [mux] -> timer 0 -+ * tclk 0 ------------------------------/ -+ * -+ * prescaled 0 ---- [ div 2,4,8,16 ] ---\ -+ * [mux] -> timer 1 -+ * tclk 0 ------------------------------/ -+ * -+ * -+ * prescaled 1 ---- [ div 2,4,8,16 ] ---\ -+ * [mux] -> timer 2 -+ * tclk 1 ------------------------------/ -+ * -+ * prescaled 1 ---- [ div 2,4,8,16 ] ---\ -+ * [mux] -> timer 3 -+ * tclk 1 ------------------------------/ -+ * -+ * prescaled 1 ---- [ div 2,4,8, 16 ] --\ -+ * [mux] -> timer 4 -+ * tclk 1 ------------------------------/ -+ * -+ * Since the mux and the divider are tied together in the -+ * same register space, it is impossible to set the parent -+ * and the rate at the same time. To avoid this, we add an -+ * intermediate 'prescaled-and-divided' clock to select -+ * as the parent for the timer input clock called tdiv. -+ * -+ * prescaled clk --> pwm-tdiv ---\ -+ * [ mux ] --> timer X -+ * tclk -------------------------/ -+*/ -+ -+static struct clk clk_timer_scaler[]; -+ -+static unsigned long clk_pwm_scaler_get_rate(struct clk *clk) -+{ -+ unsigned long tcfg0 = __raw_readl(S3C2410_TCFG0); -+ -+ if (clk == &clk_timer_scaler[1]) { -+ tcfg0 &= S3C2410_TCFG_PRESCALER1_MASK; -+ tcfg0 >>= S3C2410_TCFG_PRESCALER1_SHIFT; -+ } else { -+ tcfg0 &= S3C2410_TCFG_PRESCALER0_MASK; -+ } -+ -+ return clk_get_rate(clk->parent) / (tcfg0 + 1); -+} -+ -+static unsigned long clk_pwm_scaler_round_rate(struct clk *clk, -+ unsigned long rate) -+{ -+ unsigned long parent_rate = clk_get_rate(clk->parent); -+ unsigned long divisor = parent_rate / rate; -+ -+ if (divisor > 256) -+ divisor = 256; -+ else if (divisor < 2) -+ divisor = 2; -+ -+ return parent_rate / divisor; -+} -+ -+static int clk_pwm_scaler_set_rate(struct clk *clk, unsigned long rate) -+{ -+ unsigned long round = clk_pwm_scaler_round_rate(clk, rate); -+ unsigned long tcfg0; -+ unsigned long divisor; -+ unsigned long flags; -+ -+ divisor = clk_get_rate(clk->parent) / round; -+ divisor--; -+ -+ local_irq_save(flags); -+ tcfg0 = __raw_readl(S3C2410_TCFG0); -+ -+ if (clk == &clk_timer_scaler[1]) { -+ tcfg0 &= ~S3C2410_TCFG_PRESCALER1_MASK; -+ tcfg0 |= divisor << S3C2410_TCFG_PRESCALER1_SHIFT; -+ } else { -+ tcfg0 &= ~S3C2410_TCFG_PRESCALER0_MASK; -+ tcfg0 |= divisor; -+ } -+ -+ __raw_writel(tcfg0, S3C2410_TCFG0); -+ local_irq_restore(flags); -+ -+ return 0; -+} -+ -+static struct clk clk_timer_scaler[] = { -+ [0] = { -+ .name = "pwm-scaler0", -+ .id = -1, -+ .get_rate = clk_pwm_scaler_get_rate, -+ .set_rate = clk_pwm_scaler_set_rate, -+ .round_rate = clk_pwm_scaler_round_rate, -+ }, -+ [1] = { -+ .name = "pwm-scaler1", -+ .id = -1, -+ .get_rate = clk_pwm_scaler_get_rate, -+ .set_rate = clk_pwm_scaler_set_rate, -+ .round_rate = clk_pwm_scaler_round_rate, -+ }, -+}; -+ -+static struct clk clk_timer_tclk[] = { -+ [0] = { -+ .name = "pwm-tclk0", -+ .id = -1, -+ }, -+ [1] = { -+ .name = "pwm-tclk1", -+ .id = -1, -+ }, -+}; -+ -+struct pwm_tdiv_clk { -+ struct clk clk; -+ unsigned int divisor; -+}; -+ -+static inline struct pwm_tdiv_clk *to_tdiv(struct clk *clk) -+{ -+ return container_of(clk, struct pwm_tdiv_clk, clk); -+} -+ -+static unsigned long clk_pwm_tdiv_get_rate(struct clk *clk) -+{ -+ unsigned long tcfg1 = __raw_readl(S3C2410_TCFG1); -+ unsigned int divisor; -+ -+ tcfg1 >>= S3C2410_TCFG1_SHIFT(clk->id); -+ tcfg1 &= S3C2410_TCFG1_MUX_MASK; -+ -+ if (pwm_cfg_src_is_tclk(tcfg1)) -+ divisor = to_tdiv(clk)->divisor; -+ else -+ divisor = tcfg_to_divisor(tcfg1); -+ -+ return clk_get_rate(clk->parent) / divisor; -+} -+ -+static unsigned long clk_pwm_tdiv_round_rate(struct clk *clk, -+ unsigned long rate) -+{ -+ unsigned long parent_rate; -+ unsigned long divisor; -+ -+ parent_rate = clk_get_rate(clk->parent); -+ divisor = parent_rate / rate; -+ -+ if (divisor <= 1 && pwm_tdiv_has_div1()) -+ divisor = 1; -+ else if (divisor <= 2) -+ divisor = 2; -+ else if (divisor <= 4) -+ divisor = 4; -+ else if (divisor <= 8) -+ divisor = 8; -+ else -+ divisor = 16; -+ -+ return parent_rate / divisor; -+} -+ -+static unsigned long clk_pwm_tdiv_bits(struct pwm_tdiv_clk *divclk) -+{ -+ return pwm_tdiv_div_bits(divclk->divisor); -+} -+ -+static void clk_pwm_tdiv_update(struct pwm_tdiv_clk *divclk) -+{ -+ unsigned long tcfg1 = __raw_readl(S3C2410_TCFG1); -+ unsigned long bits = clk_pwm_tdiv_bits(divclk); -+ unsigned long flags; -+ unsigned long shift = S3C2410_TCFG1_SHIFT(divclk->clk.id); -+ -+ local_irq_save(flags); -+ -+ tcfg1 = __raw_readl(S3C2410_TCFG1); -+ tcfg1 &= ~(S3C2410_TCFG1_MUX_MASK << shift); -+ tcfg1 |= bits << shift; -+ __raw_writel(tcfg1, S3C2410_TCFG1); -+ -+ local_irq_restore(flags); -+} -+ -+static int clk_pwm_tdiv_set_rate(struct clk *clk, unsigned long rate) -+{ -+ struct pwm_tdiv_clk *divclk = to_tdiv(clk); -+ unsigned long tcfg1 = __raw_readl(S3C2410_TCFG1); -+ unsigned long parent_rate = clk_get_rate(clk->parent); -+ unsigned long divisor; -+ -+ tcfg1 >>= S3C2410_TCFG1_SHIFT(clk->id); -+ tcfg1 &= S3C2410_TCFG1_MUX_MASK; -+ -+ rate = clk_round_rate(clk, rate); -+ divisor = parent_rate / rate; -+ -+ if (divisor > 16) -+ return -EINVAL; -+ -+ divclk->divisor = divisor; -+ -+ /* Update the current MUX settings if we are currently -+ * selected as the clock source for this clock. */ -+ -+ if (!pwm_cfg_src_is_tclk(tcfg1)) -+ clk_pwm_tdiv_update(divclk); -+ -+ return 0; -+} -+ -+static struct pwm_tdiv_clk clk_timer_tdiv[] = { -+ [0] = { -+ .clk = { -+ .name = "pwm-tdiv", -+ .parent = &clk_timer_scaler[0], -+ .get_rate = clk_pwm_tdiv_get_rate, -+ .set_rate = clk_pwm_tdiv_set_rate, -+ .round_rate = clk_pwm_tdiv_round_rate, -+ }, -+ }, -+ [1] = { -+ .clk = { -+ .name = "pwm-tdiv", -+ .parent = &clk_timer_scaler[0], -+ .get_rate = clk_pwm_tdiv_get_rate, -+ .set_rate = clk_pwm_tdiv_set_rate, -+ .round_rate = clk_pwm_tdiv_round_rate, -+ } -+ }, -+ [2] = { -+ .clk = { -+ .name = "pwm-tdiv", -+ .parent = &clk_timer_scaler[1], -+ .get_rate = clk_pwm_tdiv_get_rate, -+ .set_rate = clk_pwm_tdiv_set_rate, -+ .round_rate = clk_pwm_tdiv_round_rate, -+ }, -+ }, -+ [3] = { -+ .clk = { -+ .name = "pwm-tdiv", -+ .parent = &clk_timer_scaler[1], -+ .get_rate = clk_pwm_tdiv_get_rate, -+ .set_rate = clk_pwm_tdiv_set_rate, -+ .round_rate = clk_pwm_tdiv_round_rate, -+ }, -+ }, -+ [4] = { -+ .clk = { -+ .name = "pwm-tdiv", -+ .parent = &clk_timer_scaler[1], -+ .get_rate = clk_pwm_tdiv_get_rate, -+ .set_rate = clk_pwm_tdiv_set_rate, -+ .round_rate = clk_pwm_tdiv_round_rate, -+ }, -+ }, -+}; -+ -+static int __init clk_pwm_tdiv_register(unsigned int id) -+{ -+ struct pwm_tdiv_clk *divclk = &clk_timer_tdiv[id]; -+ unsigned long tcfg1 = __raw_readl(S3C2410_TCFG1); -+ -+ tcfg1 >>= S3C2410_TCFG1_SHIFT(id); -+ tcfg1 &= S3C2410_TCFG1_MUX_MASK; -+ -+ divclk->clk.id = id; -+ divclk->divisor = tcfg_to_divisor(tcfg1); -+ -+ return s3c24xx_register_clock(&divclk->clk); -+} -+ -+static inline struct clk *s3c24xx_pwmclk_tclk(unsigned int id) -+{ -+ return (id >= 2) ? &clk_timer_tclk[1] : &clk_timer_tclk[0]; -+} -+ -+static inline struct clk *s3c24xx_pwmclk_tdiv(unsigned int id) -+{ -+ return &clk_timer_tdiv[id].clk; -+} -+ -+static int clk_pwm_tin_set_parent(struct clk *clk, struct clk *parent) -+{ -+ unsigned int id = clk->id; -+ unsigned long tcfg1; -+ unsigned long flags; -+ unsigned long bits; -+ unsigned long shift = S3C2410_TCFG1_SHIFT(id); -+ -+ if (parent == s3c24xx_pwmclk_tclk(id)) -+ bits = S3C_TCFG1_MUX_TCLK << shift; -+ else if (parent == s3c24xx_pwmclk_tdiv(id)) -+ bits = clk_pwm_tdiv_bits(to_tdiv(parent)) << shift; -+ else -+ return -EINVAL; -+ -+ clk->parent = parent; -+ -+ local_irq_save(flags); -+ -+ tcfg1 = __raw_readl(S3C2410_TCFG1); -+ tcfg1 &= ~(S3C2410_TCFG1_MUX_MASK << shift); -+ __raw_writel(tcfg1 | bits, S3C2410_TCFG1); -+ -+ local_irq_restore(flags); -+ -+ return 0; -+} -+ -+static struct clk clk_tin[] = { -+ [0] = { -+ .name = "pwm-tin", -+ .id = 0, -+ .set_parent = clk_pwm_tin_set_parent, -+ }, -+ [1] = { -+ .name = "pwm-tin", -+ .id = 1, -+ .set_parent = clk_pwm_tin_set_parent, -+ }, -+ [2] = { -+ .name = "pwm-tin", -+ .id = 2, -+ .set_parent = clk_pwm_tin_set_parent, -+ }, -+ [3] = { -+ .name = "pwm-tin", -+ .id = 3, -+ .set_parent = clk_pwm_tin_set_parent, -+ }, -+ [4] = { -+ .name = "pwm-tin", -+ .id = 4, -+ .set_parent = clk_pwm_tin_set_parent, -+ }, -+}; -+ -+static __init int clk_pwm_tin_register(struct clk *pwm) -+{ -+ unsigned long tcfg1 = __raw_readl(S3C2410_TCFG1); -+ unsigned int id = pwm->id; -+ -+ struct clk *parent; -+ int ret; -+ -+ ret = s3c24xx_register_clock(pwm); -+ if (ret < 0) -+ return ret; -+ -+ tcfg1 >>= S3C2410_TCFG1_SHIFT(id); -+ tcfg1 &= S3C2410_TCFG1_MUX_MASK; -+ -+ if (pwm_cfg_src_is_tclk(tcfg1)) -+ parent = s3c24xx_pwmclk_tclk(id); -+ else -+ parent = s3c24xx_pwmclk_tdiv(id); -+ -+ return clk_set_parent(pwm, parent); -+} -+ -+/** -+ * s3c_pwmclk_init() - initialise pwm clocks -+ * -+ * Initialise and register the clocks which provide the inputs for the -+ * pwm timer blocks. -+ * -+ * Note, this call is required by the time core, so must be called after -+ * the base clocks are added and before any of the initcalls are run. -+ */ -+__init void s3c_pwmclk_init(void) -+{ -+ struct clk *clk_timers; -+ unsigned int clk; -+ int ret; -+ -+ clk_timers = clk_get(NULL, "timers"); -+ if (IS_ERR(clk_timers)) { -+ printk(KERN_ERR "%s: no parent clock\n", __func__); -+ return; -+ } -+ -+ for (clk = 0; clk < ARRAY_SIZE(clk_timer_scaler); clk++) { -+ clk_timer_scaler[clk].parent = clk_timers; -+ ret = s3c24xx_register_clock(&clk_timer_scaler[clk]); -+ if (ret < 0) { -+ printk(KERN_ERR "error adding pwm scaler%d clock\n", clk); -+ return; -+ } -+ } -+ -+ for (clk = 0; clk < ARRAY_SIZE(clk_timer_tclk); clk++) { -+ ret = s3c24xx_register_clock(&clk_timer_tclk[clk]); -+ if (ret < 0) { -+ printk(KERN_ERR "error adding pww tclk%d\n", clk); -+ return; -+ } -+ } -+ -+ for (clk = 0; clk < ARRAY_SIZE(clk_timer_tdiv); clk++) { -+ ret = clk_pwm_tdiv_register(clk); -+ if (ret < 0) { -+ printk(KERN_ERR "error adding pwm%d tdiv clock\n", clk); -+ return; -+ } -+ } -+ -+ for (clk = 0; clk < ARRAY_SIZE(clk_tin); clk++) { -+ ret = clk_pwm_tin_register(&clk_tin[clk]); -+ if (ret < 0) { -+ printk(KERN_ERR "error adding pwm%d tin clock\n", clk); -+ return; -+ } -+ } -+} ---- /dev/null -+++ b/arch/arm/plat-s3c/time.c -@@ -0,0 +1,285 @@ -+/* linux/arch/arm/plat-s3c24xx/time.c -+ * -+ * Copyright (C) 2003-2005 Simtec Electronics -+ * Ben Dooks, <ben@simtec.co.uk> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/sched.h> -+#include <linux/init.h> -+#include <linux/interrupt.h> -+#include <linux/irq.h> -+#include <linux/err.h> -+#include <linux/clk.h> -+#include <linux/io.h> -+#include <linux/platform_device.h> -+ -+#include <asm/system.h> -+#include <asm/leds.h> -+#include <asm/mach-types.h> -+ -+#include <asm/irq.h> -+#include <mach/map.h> -+#include <plat/regs-timer.h> -+#include <mach/regs-irq.h> -+#include <asm/mach/time.h> -+#include <mach/tick.h> -+ -+#include <plat/clock.h> -+#include <plat/cpu.h> -+ -+static unsigned long timer_startval; -+static unsigned long timer_usec_ticks; -+ -+#ifndef TICK_MAX -+#define TICK_MAX (0xffff) -+#endif -+ -+#define TIMER_USEC_SHIFT 16 -+ -+/* we use the shifted arithmetic to work out the ratio of timer ticks -+ * to usecs, as often the peripheral clock is not a nice even multiple -+ * of 1MHz. -+ * -+ * shift of 14 and 15 are too low for the 12MHz, 16 seems to be ok -+ * for the current HZ value of 200 without producing overflows. -+ * -+ * Original patch by Dimitry Andric, updated by Ben Dooks -+*/ -+ -+ -+/* timer_mask_usec_ticks -+ * -+ * given a clock and divisor, make the value to pass into timer_ticks_to_usec -+ * to scale the ticks into usecs -+*/ -+ -+static inline unsigned long -+timer_mask_usec_ticks(unsigned long scaler, unsigned long pclk) -+{ -+ unsigned long den = pclk / 1000; -+ -+ return ((1000 << TIMER_USEC_SHIFT) * scaler + (den >> 1)) / den; -+} -+ -+/* timer_ticks_to_usec -+ * -+ * convert timer ticks to usec. -+*/ -+ -+static inline unsigned long timer_ticks_to_usec(unsigned long ticks) -+{ -+ unsigned long res; -+ -+ res = ticks * timer_usec_ticks; -+ res += 1 << (TIMER_USEC_SHIFT - 4); /* round up slightly */ -+ -+ return res >> TIMER_USEC_SHIFT; -+} -+ -+/*** -+ * Returns microsecond since last clock interrupt. Note that interrupts -+ * will have been disabled by do_gettimeoffset() -+ * IRQs are disabled before entering here from do_gettimeofday() -+ */ -+ -+static unsigned long s3c2410_gettimeoffset (void) -+{ -+ unsigned long tdone; -+ unsigned long tval; -+ -+ /* work out how many ticks have gone since last timer interrupt */ -+ -+ tval = __raw_readl(S3C2410_TCNTO(4)); -+ tdone = timer_startval - tval; -+ -+ /* check to see if there is an interrupt pending */ -+ -+ if (s3c24xx_ostimer_pending()) { -+ /* re-read the timer, and try and fix up for the missed -+ * interrupt. Note, the interrupt may go off before the -+ * timer has re-loaded from wrapping. -+ */ -+ -+ tval = __raw_readl(S3C2410_TCNTO(4)); -+ tdone = timer_startval - tval; -+ -+ if (tval != 0) -+ tdone += timer_startval; -+ } -+ -+ return timer_ticks_to_usec(tdone); -+} -+ -+ -+/* -+ * IRQ handler for the timer -+ */ -+static irqreturn_t -+s3c2410_timer_interrupt(int irq, void *dev_id) -+{ -+ timer_tick(); -+ return IRQ_HANDLED; -+} -+ -+static struct irqaction s3c2410_timer_irq = { -+ .name = "S3C2410 Timer Tick", -+ .flags = IRQF_DISABLED | IRQF_TIMER | IRQF_IRQPOLL, -+ .handler = s3c2410_timer_interrupt, -+}; -+ -+#define use_tclk1_12() ( \ -+ machine_is_bast() || \ -+ machine_is_vr1000() || \ -+ machine_is_anubis() || \ -+ machine_is_osiris()) -+ -+static struct clk *tin; -+static struct clk *tdiv; -+static struct clk *timerclk; -+ -+/* -+ * Set up timer interrupt, and return the current time in seconds. -+ * -+ * Currently we only use timer4, as it is the only timer which has no -+ * other function that can be exploited externally -+ */ -+static void s3c2410_timer_setup (void) -+{ -+ unsigned long tcon; -+ unsigned long tcnt; -+ unsigned long tcfg1; -+ unsigned long tcfg0; -+ -+ tcnt = TICK_MAX; /* default value for tcnt */ -+ -+ /* configure the system for whichever machine is in use */ -+ -+ if (use_tclk1_12()) { -+ /* timer is at 12MHz, scaler is 1 */ -+ timer_usec_ticks = timer_mask_usec_ticks(1, 12000000); -+ tcnt = 12000000 / HZ; -+ -+ tcfg1 = __raw_readl(S3C2410_TCFG1); -+ tcfg1 &= ~S3C2410_TCFG1_MUX4_MASK; -+ tcfg1 |= S3C2410_TCFG1_MUX4_TCLK1; -+ __raw_writel(tcfg1, S3C2410_TCFG1); -+ } else { -+ unsigned long pclk; -+ struct clk *tscaler; -+ -+ /* for the h1940 (and others), we use the pclk from the core -+ * to generate the timer values. since values around 50 to -+ * 70MHz are not values we can directly generate the timer -+ * value from, we need to pre-scale and divide before using it. -+ * -+ * for instance, using 50.7MHz and dividing by 6 gives 8.45MHz -+ * (8.45 ticks per usec) -+ */ -+ -+ pclk = clk_get_rate(timerclk); -+ -+ /* configure clock tick */ -+ -+ timer_usec_ticks = timer_mask_usec_ticks(6, pclk); -+ -+ tscaler = clk_get_parent(tdiv); -+ -+ clk_set_rate(tscaler, pclk / 3); -+ clk_set_rate(tdiv, pclk / 6); -+ clk_set_parent(tin, tdiv); -+ -+ tcnt = clk_get_rate(tin) / HZ; -+ } -+ -+ tcon = __raw_readl(S3C2410_TCON); -+ tcfg0 = __raw_readl(S3C2410_TCFG0); -+ tcfg1 = __raw_readl(S3C2410_TCFG1); -+ -+ /* timers reload after counting zero, so reduce the count by 1 */ -+ -+ tcnt--; -+ -+ printk(KERN_DEBUG "timer tcon=%08lx, tcnt %04lx, tcfg %08lx,%08lx, usec %08lx\n", -+ tcon, tcnt, tcfg0, tcfg1, timer_usec_ticks); -+ -+ /* check to see if timer is within 16bit range... */ -+ if (tcnt > TICK_MAX) { -+ panic("setup_timer: HZ is too small, cannot configure timer!"); -+ return; -+ } -+ -+ __raw_writel(tcfg1, S3C2410_TCFG1); -+ __raw_writel(tcfg0, S3C2410_TCFG0); -+ -+ timer_startval = tcnt; -+ __raw_writel(tcnt, S3C2410_TCNTB(4)); -+ -+ /* ensure timer is stopped... */ -+ -+ tcon &= ~(7<<20); -+ tcon |= S3C2410_TCON_T4RELOAD; -+ tcon |= S3C2410_TCON_T4MANUALUPD; -+ -+ __raw_writel(tcon, S3C2410_TCON); -+ __raw_writel(tcnt, S3C2410_TCNTB(4)); -+ __raw_writel(tcnt, S3C2410_TCMPB(4)); -+ -+ /* start the timer running */ -+ tcon |= S3C2410_TCON_T4START; -+ tcon &= ~S3C2410_TCON_T4MANUALUPD; -+ __raw_writel(tcon, S3C2410_TCON); -+} -+ -+static void __init s3c2410_timer_resources(void) -+{ -+ struct platform_device tmpdev; -+ -+ tmpdev.dev.bus = &platform_bus_type; -+ tmpdev.id = 4; -+ -+ timerclk = clk_get(NULL, "timers"); -+ if (IS_ERR(timerclk)) -+ panic("failed to get clock for system timer"); -+ -+ clk_enable(timerclk); -+ -+ if (!use_tclk1_12()) { -+ tin = clk_get(&tmpdev.dev, "pwm-tin"); -+ if (IS_ERR(tin)) -+ panic("failed to get pwm-tin clock for system timer"); -+ -+ tdiv = clk_get(&tmpdev.dev, "pwm-tdiv"); -+ if (IS_ERR(tdiv)) -+ panic("failed to get pwm-tdiv clock for system timer"); -+ } -+ -+ clk_enable(tin); -+} -+ -+static void __init s3c2410_timer_init(void) -+{ -+ s3c2410_timer_resources(); -+ s3c2410_timer_setup(); -+ setup_irq(IRQ_TIMER4, &s3c2410_timer_irq); -+} -+ -+struct sys_timer s3c24xx_timer = { -+ .init = s3c2410_timer_init, -+ .offset = s3c2410_gettimeoffset, -+ .resume = s3c2410_timer_setup -+}; ---- a/arch/arm/plat-s3c24xx/clock.c -+++ b/arch/arm/plat-s3c24xx/clock.c -@@ -27,18 +27,8 @@ - */ - - #include <linux/init.h> --#include <linux/module.h> - #include <linux/kernel.h> --#include <linux/list.h> --#include <linux/errno.h> --#include <linux/err.h> --#include <linux/platform_device.h> --#include <linux/sysdev.h> --#include <linux/interrupt.h> --#include <linux/ioport.h> - #include <linux/clk.h> --#include <linux/mutex.h> --#include <linux/delay.h> - #include <linux/io.h> - - #include <mach/hardware.h> -@@ -47,490 +37,23 @@ - #include <mach/regs-clock.h> - #include <mach/regs-gpio.h> - -+#include <plat/cpu-freq.h> -+ - #include <plat/clock.h> - #include <plat/cpu.h> -- --/* clock information */ -- --static LIST_HEAD(clocks); -- --DEFINE_MUTEX(clocks_mutex); -- --/* enable and disable calls for use with the clk struct */ -- --static int clk_null_enable(struct clk *clk, int enable) --{ -- return 0; --} -- --/* Clock API calls */ -- --struct clk *clk_get(struct device *dev, const char *id) --{ -- struct clk *p; -- struct clk *clk = ERR_PTR(-ENOENT); -- int idno; -- -- if (dev == NULL || dev->bus != &platform_bus_type) -- idno = -1; -- else -- idno = to_platform_device(dev)->id; -- -- mutex_lock(&clocks_mutex); -- -- list_for_each_entry(p, &clocks, list) { -- if (p->id == idno && -- strcmp(id, p->name) == 0 && -- try_module_get(p->owner)) { -- clk = p; -- break; -- } -- } -- -- /* check for the case where a device was supplied, but the -- * clock that was being searched for is not device specific */ -- -- if (IS_ERR(clk)) { -- list_for_each_entry(p, &clocks, list) { -- if (p->id == -1 && strcmp(id, p->name) == 0 && -- try_module_get(p->owner)) { -- clk = p; -- break; -- } -- } -- } -- -- mutex_unlock(&clocks_mutex); -- return clk; --} -- --void clk_put(struct clk *clk) --{ -- module_put(clk->owner); --} -- --int clk_enable(struct clk *clk) --{ -- if (IS_ERR(clk) || clk == NULL) -- return -EINVAL; -- -- clk_enable(clk->parent); -- -- mutex_lock(&clocks_mutex); -- -- if ((clk->usage++) == 0) -- (clk->enable)(clk, 1); -- -- mutex_unlock(&clocks_mutex); -- return 0; --} -- --void clk_disable(struct clk *clk) --{ -- if (IS_ERR(clk) || clk == NULL) -- return; -- -- mutex_lock(&clocks_mutex); -- -- if ((--clk->usage) == 0) -- (clk->enable)(clk, 0); -- -- mutex_unlock(&clocks_mutex); -- clk_disable(clk->parent); --} -- -- --unsigned long clk_get_rate(struct clk *clk) --{ -- if (IS_ERR(clk)) -- return 0; -- -- if (clk->rate != 0) -- return clk->rate; -- -- if (clk->get_rate != NULL) -- return (clk->get_rate)(clk); -- -- if (clk->parent != NULL) -- return clk_get_rate(clk->parent); -- -- return clk->rate; --} -- --long clk_round_rate(struct clk *clk, unsigned long rate) --{ -- if (!IS_ERR(clk) && clk->round_rate) -- return (clk->round_rate)(clk, rate); -- -- return rate; --} -- --int clk_set_rate(struct clk *clk, unsigned long rate) --{ -- int ret; -- -- if (IS_ERR(clk)) -- return -EINVAL; -- -- /* We do not default just do a clk->rate = rate as -- * the clock may have been made this way by choice. -- */ -- -- WARN_ON(clk->set_rate == NULL); -- -- if (clk->set_rate == NULL) -- return -EINVAL; -- -- mutex_lock(&clocks_mutex); -- ret = (clk->set_rate)(clk, rate); -- mutex_unlock(&clocks_mutex); -- -- return ret; --} -- --struct clk *clk_get_parent(struct clk *clk) --{ -- return clk->parent; --} -- --int clk_set_parent(struct clk *clk, struct clk *parent) --{ -- int ret = 0; -- -- if (IS_ERR(clk)) -- return -EINVAL; -- -- mutex_lock(&clocks_mutex); -- -- if (clk->set_parent) -- ret = (clk->set_parent)(clk, parent); -- -- mutex_unlock(&clocks_mutex); -- -- return ret; --} -- --EXPORT_SYMBOL(clk_get); --EXPORT_SYMBOL(clk_put); --EXPORT_SYMBOL(clk_enable); --EXPORT_SYMBOL(clk_disable); --EXPORT_SYMBOL(clk_get_rate); --EXPORT_SYMBOL(clk_round_rate); --EXPORT_SYMBOL(clk_set_rate); --EXPORT_SYMBOL(clk_get_parent); --EXPORT_SYMBOL(clk_set_parent); -- --/* base clocks */ -- --static int clk_default_setrate(struct clk *clk, unsigned long rate) --{ -- clk->rate = rate; -- return 0; --} -- --struct clk clk_xtal = { -- .name = "xtal", -- .id = -1, -- .rate = 0, -- .parent = NULL, -- .ctrlbit = 0, --}; -- --struct clk clk_mpll = { -- .name = "mpll", -- .id = -1, -- .set_rate = clk_default_setrate, --}; -- --struct clk clk_upll = { -- .name = "upll", -- .id = -1, -- .parent = NULL, -- .ctrlbit = 0, --}; -- --struct clk clk_f = { -- .name = "fclk", -- .id = -1, -- .rate = 0, -- .parent = &clk_mpll, -- .ctrlbit = 0, -- .set_rate = clk_default_setrate, --}; -- --struct clk clk_h = { -- .name = "hclk", -- .id = -1, -- .rate = 0, -- .parent = NULL, -- .ctrlbit = 0, -- .set_rate = clk_default_setrate, --}; -- --struct clk clk_p = { -- .name = "pclk", -- .id = -1, -- .rate = 0, -- .parent = NULL, -- .ctrlbit = 0, -- .set_rate = clk_default_setrate, --}; -- --struct clk clk_usb_bus = { -- .name = "usb-bus", -- .id = -1, -- .rate = 0, -- .parent = &clk_upll, --}; -- --/* clocks that could be registered by external code */ -- --static int s3c24xx_dclk_enable(struct clk *clk, int enable) --{ -- unsigned long dclkcon = __raw_readl(S3C24XX_DCLKCON); -- -- if (enable) -- dclkcon |= clk->ctrlbit; -- else -- dclkcon &= ~clk->ctrlbit; -- -- __raw_writel(dclkcon, S3C24XX_DCLKCON); -- -- return 0; --} -- --static int s3c24xx_dclk_setparent(struct clk *clk, struct clk *parent) --{ -- unsigned long dclkcon; -- unsigned int uclk; -- -- if (parent == &clk_upll) -- uclk = 1; -- else if (parent == &clk_p) -- uclk = 0; -- else -- return -EINVAL; -- -- clk->parent = parent; -- -- dclkcon = __raw_readl(S3C24XX_DCLKCON); -- -- if (clk->ctrlbit == S3C2410_DCLKCON_DCLK0EN) { -- if (uclk) -- dclkcon |= S3C2410_DCLKCON_DCLK0_UCLK; -- else -- dclkcon &= ~S3C2410_DCLKCON_DCLK0_UCLK; -- } else { -- if (uclk) -- dclkcon |= S3C2410_DCLKCON_DCLK1_UCLK; -- else -- dclkcon &= ~S3C2410_DCLKCON_DCLK1_UCLK; -- } -- -- __raw_writel(dclkcon, S3C24XX_DCLKCON); -- -- return 0; --} -- --static unsigned long s3c24xx_calc_div(struct clk *clk, unsigned long rate) --{ -- unsigned long div; -- -- if ((rate == 0) || !clk->parent) -- return 0; -- -- div = clk_get_rate(clk->parent) / rate; -- if (div < 2) -- div = 2; -- else if (div > 16) -- div = 16; -- -- return div; --} -- --static unsigned long s3c24xx_round_dclk_rate(struct clk *clk, -- unsigned long rate) --{ -- unsigned long div = s3c24xx_calc_div(clk, rate); -- -- if (div == 0) -- return 0; -- -- return clk_get_rate(clk->parent) / div; --} -- --static int s3c24xx_set_dclk_rate(struct clk *clk, unsigned long rate) --{ -- unsigned long mask, data, div = s3c24xx_calc_div(clk, rate); -- -- if (div == 0) -- return -EINVAL; -- -- if (clk == &s3c24xx_dclk0) { -- mask = S3C2410_DCLKCON_DCLK0_DIV_MASK | -- S3C2410_DCLKCON_DCLK0_CMP_MASK; -- data = S3C2410_DCLKCON_DCLK0_DIV(div) | -- S3C2410_DCLKCON_DCLK0_CMP((div + 1) / 2); -- } else if (clk == &s3c24xx_dclk1) { -- mask = S3C2410_DCLKCON_DCLK1_DIV_MASK | -- S3C2410_DCLKCON_DCLK1_CMP_MASK; -- data = S3C2410_DCLKCON_DCLK1_DIV(div) | -- S3C2410_DCLKCON_DCLK1_CMP((div + 1) / 2); -- } else -- return -EINVAL; -- -- clk->rate = clk_get_rate(clk->parent) / div; -- __raw_writel(((__raw_readl(S3C24XX_DCLKCON) & ~mask) | data), -- S3C24XX_DCLKCON); -- return clk->rate; --} -- --static int s3c24xx_clkout_setparent(struct clk *clk, struct clk *parent) --{ -- unsigned long mask; -- unsigned long source; -- -- /* calculate the MISCCR setting for the clock */ -- -- if (parent == &clk_xtal) -- source = S3C2410_MISCCR_CLK0_MPLL; -- else if (parent == &clk_upll) -- source = S3C2410_MISCCR_CLK0_UPLL; -- else if (parent == &clk_f) -- source = S3C2410_MISCCR_CLK0_FCLK; -- else if (parent == &clk_h) -- source = S3C2410_MISCCR_CLK0_HCLK; -- else if (parent == &clk_p) -- source = S3C2410_MISCCR_CLK0_PCLK; -- else if (clk == &s3c24xx_clkout0 && parent == &s3c24xx_dclk0) -- source = S3C2410_MISCCR_CLK0_DCLK0; -- else if (clk == &s3c24xx_clkout1 && parent == &s3c24xx_dclk1) -- source = S3C2410_MISCCR_CLK0_DCLK0; -- else -- return -EINVAL; -- -- clk->parent = parent; -- -- if (clk == &s3c24xx_clkout0) -- mask = S3C2410_MISCCR_CLK0_MASK; -- else { -- source <<= 4; -- mask = S3C2410_MISCCR_CLK1_MASK; -- } -- -- s3c2410_modify_misccr(mask, source); -- return 0; --} -- --/* external clock definitions */ -- --struct clk s3c24xx_dclk0 = { -- .name = "dclk0", -- .id = -1, -- .ctrlbit = S3C2410_DCLKCON_DCLK0EN, -- .enable = s3c24xx_dclk_enable, -- .set_parent = s3c24xx_dclk_setparent, -- .set_rate = s3c24xx_set_dclk_rate, -- .round_rate = s3c24xx_round_dclk_rate, --}; -- --struct clk s3c24xx_dclk1 = { -- .name = "dclk1", -- .id = -1, -- .ctrlbit = S3C2410_DCLKCON_DCLK1EN, -- .enable = s3c24xx_dclk_enable, -- .set_parent = s3c24xx_dclk_setparent, -- .set_rate = s3c24xx_set_dclk_rate, -- .round_rate = s3c24xx_round_dclk_rate, --}; -- --struct clk s3c24xx_clkout0 = { -- .name = "clkout0", -- .id = -1, -- .set_parent = s3c24xx_clkout_setparent, --}; -- --struct clk s3c24xx_clkout1 = { -- .name = "clkout1", -- .id = -1, -- .set_parent = s3c24xx_clkout_setparent, --}; -- --struct clk s3c24xx_uclk = { -- .name = "uclk", -- .id = -1, --}; -- --/* initialise the clock system */ -- --int s3c24xx_register_clock(struct clk *clk) --{ -- clk->owner = THIS_MODULE; -- -- if (clk->enable == NULL) -- clk->enable = clk_null_enable; -- -- /* add to the list of available clocks */ -- -- mutex_lock(&clocks_mutex); -- list_add(&clk->list, &clocks); -- mutex_unlock(&clocks_mutex); -- -- return 0; --} -- --int s3c24xx_register_clocks(struct clk **clks, int nr_clks) --{ -- int fails = 0; -- -- for (; nr_clks > 0; nr_clks--, clks++) { -- if (s3c24xx_register_clock(*clks) < 0) -- fails++; -- } -- -- return fails; --} -+#include <plat/pll.h> - - /* initalise all the clocks */ - --int __init s3c24xx_setup_clocks(unsigned long xtal, -- unsigned long fclk, -- unsigned long hclk, -- unsigned long pclk) -+void __init_or_cpufreq s3c24xx_setup_clocks(unsigned long fclk, -+ unsigned long hclk, -+ unsigned long pclk) - { -- printk(KERN_INFO "S3C24XX Clocks, (c) 2004 Simtec Electronics\n"); -- -- /* initialise the main system clocks */ -- -- clk_xtal.rate = xtal; -- clk_upll.rate = s3c2410_get_pll(__raw_readl(S3C2410_UPLLCON), xtal); -+ clk_upll.rate = s3c24xx_get_pll(__raw_readl(S3C2410_UPLLCON), -+ clk_xtal.rate); - - clk_mpll.rate = fclk; - clk_h.rate = hclk; - clk_p.rate = pclk; - clk_f.rate = fclk; -- -- /* assume uart clocks are correctly setup */ -- -- /* register our clocks */ -- -- if (s3c24xx_register_clock(&clk_xtal) < 0) -- printk(KERN_ERR "failed to register master xtal\n"); -- -- if (s3c24xx_register_clock(&clk_mpll) < 0) -- printk(KERN_ERR "failed to register mpll clock\n"); -- -- if (s3c24xx_register_clock(&clk_upll) < 0) -- printk(KERN_ERR "failed to register upll clock\n"); -- -- if (s3c24xx_register_clock(&clk_f) < 0) -- printk(KERN_ERR "failed to register cpu fclk\n"); -- -- if (s3c24xx_register_clock(&clk_h) < 0) -- printk(KERN_ERR "failed to register cpu hclk\n"); -- -- if (s3c24xx_register_clock(&clk_p) < 0) -- printk(KERN_ERR "failed to register cpu pclk\n"); -- -- return 0; - } ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/clock-dclk.c -@@ -0,0 +1,194 @@ -+/* linux/arch/arm/plat-s3c24xx/clock-dclk.c -+ * -+ * Copyright (c) 2004,2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C24XX - definitions for DCLK and CLKOUT registers -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/errno.h> -+#include <linux/clk.h> -+#include <linux/io.h> -+ -+#include <mach/regs-clock.h> -+#include <mach/regs-gpio.h> -+ -+#include <plat/clock.h> -+#include <plat/cpu.h> -+ -+/* clocks that could be registered by external code */ -+ -+static int s3c24xx_dclk_enable(struct clk *clk, int enable) -+{ -+ unsigned long dclkcon = __raw_readl(S3C24XX_DCLKCON); -+ -+ if (enable) -+ dclkcon |= clk->ctrlbit; -+ else -+ dclkcon &= ~clk->ctrlbit; -+ -+ __raw_writel(dclkcon, S3C24XX_DCLKCON); -+ -+ return 0; -+} -+ -+static int s3c24xx_dclk_setparent(struct clk *clk, struct clk *parent) -+{ -+ unsigned long dclkcon; -+ unsigned int uclk; -+ -+ if (parent == &clk_upll) -+ uclk = 1; -+ else if (parent == &clk_p) -+ uclk = 0; -+ else -+ return -EINVAL; -+ -+ clk->parent = parent; -+ -+ dclkcon = __raw_readl(S3C24XX_DCLKCON); -+ -+ if (clk->ctrlbit == S3C2410_DCLKCON_DCLK0EN) { -+ if (uclk) -+ dclkcon |= S3C2410_DCLKCON_DCLK0_UCLK; -+ else -+ dclkcon &= ~S3C2410_DCLKCON_DCLK0_UCLK; -+ } else { -+ if (uclk) -+ dclkcon |= S3C2410_DCLKCON_DCLK1_UCLK; -+ else -+ dclkcon &= ~S3C2410_DCLKCON_DCLK1_UCLK; -+ } -+ -+ __raw_writel(dclkcon, S3C24XX_DCLKCON); -+ -+ return 0; -+} -+static unsigned long s3c24xx_calc_div(struct clk *clk, unsigned long rate) -+{ -+ unsigned long div; -+ -+ if ((rate == 0) || !clk->parent) -+ return 0; -+ -+ div = clk_get_rate(clk->parent) / rate; -+ if (div < 2) -+ div = 2; -+ else if (div > 16) -+ div = 16; -+ -+ return div; -+} -+ -+static unsigned long s3c24xx_round_dclk_rate(struct clk *clk, -+ unsigned long rate) -+{ -+ unsigned long div = s3c24xx_calc_div(clk, rate); -+ -+ if (div == 0) -+ return 0; -+ -+ return clk_get_rate(clk->parent) / div; -+} -+ -+static int s3c24xx_set_dclk_rate(struct clk *clk, unsigned long rate) -+{ -+ unsigned long mask, data, div = s3c24xx_calc_div(clk, rate); -+ -+ if (div == 0) -+ return -EINVAL; -+ -+ if (clk == &s3c24xx_dclk0) { -+ mask = S3C2410_DCLKCON_DCLK0_DIV_MASK | -+ S3C2410_DCLKCON_DCLK0_CMP_MASK; -+ data = S3C2410_DCLKCON_DCLK0_DIV(div) | -+ S3C2410_DCLKCON_DCLK0_CMP((div + 1) / 2); -+ } else if (clk == &s3c24xx_dclk1) { -+ mask = S3C2410_DCLKCON_DCLK1_DIV_MASK | -+ S3C2410_DCLKCON_DCLK1_CMP_MASK; -+ data = S3C2410_DCLKCON_DCLK1_DIV(div) | -+ S3C2410_DCLKCON_DCLK1_CMP((div + 1) / 2); -+ } else -+ return -EINVAL; -+ -+ clk->rate = clk_get_rate(clk->parent) / div; -+ __raw_writel(((__raw_readl(S3C24XX_DCLKCON) & ~mask) | data), -+ S3C24XX_DCLKCON); -+ return clk->rate; -+} -+static int s3c24xx_clkout_setparent(struct clk *clk, struct clk *parent) -+{ -+ unsigned long mask; -+ unsigned long source; -+ -+ /* calculate the MISCCR setting for the clock */ -+ -+ if (parent == &clk_xtal) -+ source = S3C2410_MISCCR_CLK0_MPLL; -+ else if (parent == &clk_upll) -+ source = S3C2410_MISCCR_CLK0_UPLL; -+ else if (parent == &clk_f) -+ source = S3C2410_MISCCR_CLK0_FCLK; -+ else if (parent == &clk_h) -+ source = S3C2410_MISCCR_CLK0_HCLK; -+ else if (parent == &clk_p) -+ source = S3C2410_MISCCR_CLK0_PCLK; -+ else if (clk == &s3c24xx_clkout0 && parent == &s3c24xx_dclk0) -+ source = S3C2410_MISCCR_CLK0_DCLK0; -+ else if (clk == &s3c24xx_clkout1 && parent == &s3c24xx_dclk1) -+ source = S3C2410_MISCCR_CLK0_DCLK0; -+ else -+ return -EINVAL; -+ -+ clk->parent = parent; -+ -+ if (clk == &s3c24xx_clkout0) -+ mask = S3C2410_MISCCR_CLK0_MASK; -+ else { -+ source <<= 4; -+ mask = S3C2410_MISCCR_CLK1_MASK; -+ } -+ -+ s3c2410_modify_misccr(mask, source); -+ return 0; -+} -+ -+/* external clock definitions */ -+ -+struct clk s3c24xx_dclk0 = { -+ .name = "dclk0", -+ .id = -1, -+ .ctrlbit = S3C2410_DCLKCON_DCLK0EN, -+ .enable = s3c24xx_dclk_enable, -+ .set_parent = s3c24xx_dclk_setparent, -+ .set_rate = s3c24xx_set_dclk_rate, -+ .round_rate = s3c24xx_round_dclk_rate, -+}; -+ -+struct clk s3c24xx_dclk1 = { -+ .name = "dclk1", -+ .id = -1, -+ .ctrlbit = S3C2410_DCLKCON_DCLK1EN, -+ .enable = s3c24xx_dclk_enable, -+ .set_parent = s3c24xx_dclk_setparent, -+ .set_rate = s3c24xx_set_dclk_rate, -+ .round_rate = s3c24xx_round_dclk_rate, -+}; -+ -+struct clk s3c24xx_clkout0 = { -+ .name = "clkout0", -+ .id = -1, -+ .set_parent = s3c24xx_clkout_setparent, -+}; -+ -+struct clk s3c24xx_clkout1 = { -+ .name = "clkout1", -+ .id = -1, -+ .set_parent = s3c24xx_clkout_setparent, -+}; ---- a/arch/arm/plat-s3c24xx/common-smdk.c -+++ b/arch/arm/plat-s3c24xx/common-smdk.c -@@ -38,7 +38,7 @@ - #include <mach/regs-gpio.h> - #include <mach/leds-gpio.h> - --#include <asm/plat-s3c/nand.h> -+#include <plat/nand.h> - - #include <plat/common-smdk.h> - #include <plat/devs.h> -@@ -201,5 +201,5 @@ void __init smdk_machine_init(void) - - platform_add_devices(smdk_devs, ARRAY_SIZE(smdk_devs)); - -- s3c2410_pm_init(); -+ s3c_pm_init(); - } ---- a/arch/arm/plat-s3c24xx/cpu.c -+++ b/arch/arm/plat-s3c24xx/cpu.c -@@ -55,16 +55,6 @@ - #include <plat/s3c2442.h> - #include <plat/s3c2443.h> - --struct cpu_table { -- unsigned long idcode; -- unsigned long idmask; -- void (*map_io)(struct map_desc *mach_desc, int size); -- void (*init_uarts)(struct s3c2410_uartcfg *cfg, int no); -- void (*init_clocks)(int xtal); -- int (*init)(void); -- const char *name; --}; -- - /* table of supported CPUs */ - - static const char name_s3c2400[] = "S3C2400"; -@@ -72,6 +62,7 @@ static const char name_s3c2410[] = "S3C - static const char name_s3c2412[] = "S3C2412"; - static const char name_s3c2440[] = "S3C2440"; - static const char name_s3c2442[] = "S3C2442"; -+static const char name_s3c2442b[] = "S3C2442B"; - static const char name_s3c2443[] = "S3C2443"; - static const char name_s3c2410a[] = "S3C2410A"; - static const char name_s3c2440a[] = "S3C2440A"; -@@ -123,6 +114,15 @@ static struct cpu_table cpu_ids[] __init - .name = name_s3c2442 - }, - { -+ .idcode = 0x32440aab, -+ .idmask = 0xffffffff, -+ .map_io = s3c244x_map_io, -+ .init_clocks = s3c244x_init_clocks, -+ .init_uarts = s3c244x_init_uarts, -+ .init = s3c2442_init, -+ .name = name_s3c2442b -+ }, -+ { - .idcode = 0x32412001, - .idmask = 0xffffffff, - .map_io = s3c2412_map_io, -@@ -169,23 +169,7 @@ static struct map_desc s3c_iodesc[] __in - IODESC_ENT(UART) - }; - --static struct cpu_table * __init s3c_lookup_cpu(unsigned long idcode) --{ -- struct cpu_table *tab; -- int count; -- -- tab = cpu_ids; -- for (count = 0; count < ARRAY_SIZE(cpu_ids); count++, tab++) { -- if ((idcode & tab->idmask) == tab->idcode) -- return tab; -- } -- -- return NULL; --} -- --/* cpu information */ -- --static struct cpu_table *cpu; -+/* read cpu identificaiton code */ - - static unsigned long s3c24xx_read_idcode_v5(void) - { -@@ -231,6 +215,7 @@ void __init s3c24xx_init_io(struct map_d - unsigned long idcode = 0x0; - - /* initialise the io descriptors we need for initialisation */ -+ iotable_init(mach_desc, size); - iotable_init(s3c_iodesc, ARRAY_SIZE(s3c_iodesc)); - - if (cpu_architecture() >= CPU_ARCH_ARMv5) { -@@ -239,117 +224,7 @@ void __init s3c24xx_init_io(struct map_d - idcode = s3c24xx_read_idcode_v4(); - } - -- cpu = s3c_lookup_cpu(idcode); -- -- if (cpu == NULL) { -- printk(KERN_ERR "Unknown CPU type 0x%08lx\n", idcode); -- panic("Unknown S3C24XX CPU"); -- } -- -- printk("CPU %s (id 0x%08lx)\n", cpu->name, idcode); -- -- if (cpu->map_io == NULL || cpu->init == NULL) { -- printk(KERN_ERR "CPU %s support not enabled\n", cpu->name); -- panic("Unsupported S3C24XX CPU"); -- } -- - arm_pm_restart = s3c24xx_pm_restart; - -- (cpu->map_io)(mach_desc, size); --} -- --/* s3c24xx_init_clocks -- * -- * Initialise the clock subsystem and associated information from the -- * given master crystal value. -- * -- * xtal = 0 -> use default PLL crystal value (normally 12MHz) -- * != 0 -> PLL crystal value in Hz --*/ -- --void __init s3c24xx_init_clocks(int xtal) --{ -- if (xtal == 0) -- xtal = 12*1000*1000; -- -- if (cpu == NULL) -- panic("s3c24xx_init_clocks: no cpu setup?\n"); -- -- if (cpu->init_clocks == NULL) -- panic("s3c24xx_init_clocks: cpu has no clock init\n"); -- else -- (cpu->init_clocks)(xtal); -+ s3c_init_cpu(idcode, cpu_ids, ARRAY_SIZE(cpu_ids)); - } -- --/* uart management */ -- --static int nr_uarts __initdata = 0; -- --static struct s3c2410_uartcfg uart_cfgs[3]; -- --/* s3c24xx_init_uartdevs -- * -- * copy the specified platform data and configuration into our central -- * set of devices, before the data is thrown away after the init process. -- * -- * This also fills in the array passed to the serial driver for the -- * early initialisation of the console. --*/ -- --void __init s3c24xx_init_uartdevs(char *name, -- struct s3c24xx_uart_resources *res, -- struct s3c2410_uartcfg *cfg, int no) --{ -- struct platform_device *platdev; -- struct s3c2410_uartcfg *cfgptr = uart_cfgs; -- struct s3c24xx_uart_resources *resp; -- int uart; -- -- memcpy(cfgptr, cfg, sizeof(struct s3c2410_uartcfg) * no); -- -- for (uart = 0; uart < no; uart++, cfg++, cfgptr++) { -- platdev = s3c24xx_uart_src[cfgptr->hwport]; -- -- resp = res + cfgptr->hwport; -- -- s3c24xx_uart_devs[uart] = platdev; -- -- platdev->name = name; -- platdev->resource = resp->resources; -- platdev->num_resources = resp->nr_resources; -- -- platdev->dev.platform_data = cfgptr; -- } -- -- nr_uarts = no; --} -- --void __init s3c24xx_init_uarts(struct s3c2410_uartcfg *cfg, int no) --{ -- if (cpu == NULL) -- return; -- -- if (cpu->init_uarts == NULL) { -- printk(KERN_ERR "s3c24xx_init_uarts: cpu has no uart init\n"); -- } else -- (cpu->init_uarts)(cfg, no); --} -- --static int __init s3c_arch_init(void) --{ -- int ret; -- -- // do the correct init for cpu -- -- if (cpu == NULL) -- panic("s3c_arch_init: NULL cpu\n"); -- -- ret = (cpu->init)(); -- if (ret != 0) -- return ret; -- -- ret = platform_add_devices(s3c24xx_uart_devs, nr_uarts); -- return ret; --} -- --arch_initcall(s3c_arch_init); ---- a/arch/arm/plat-s3c24xx/devs.c -+++ b/arch/arm/plat-s3c24xx/devs.c -@@ -26,14 +26,16 @@ - #include <asm/mach/irq.h> - #include <mach/fb.h> - #include <mach/hardware.h> -+#include <mach/ts.h> -+#include <asm/io.h> - #include <asm/irq.h> - - #include <plat/regs-serial.h> --#include <asm/plat-s3c24xx/udc.h> -+#include <plat/udc.h> - - #include <plat/devs.h> - #include <plat/cpu.h> --#include <asm/plat-s3c24xx/regs-spi.h> -+#include <plat/regs-spi.h> - - /* Serial port registrations */ - -@@ -76,6 +78,19 @@ static struct resource s3c2410_uart2_res - } - }; - -+static struct resource s3c2410_uart3_resource[] = { -+ [0] = { -+ .start = S3C2443_PA_UART3, -+ .end = S3C2443_PA_UART3 + 0x3fff, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_S3CUART_RX3, -+ .end = IRQ_S3CUART_ERR3, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ - struct s3c24xx_uart_resources s3c2410_uart_resources[] __initdata = { - [0] = { - .resources = s3c2410_uart0_resource, -@@ -89,6 +104,10 @@ struct s3c24xx_uart_resources s3c2410_ua - .resources = s3c2410_uart2_resource, - .nr_resources = ARRAY_SIZE(s3c2410_uart2_resource), - }, -+ [3] = { -+ .resources = s3c2410_uart3_resource, -+ .nr_resources = ARRAY_SIZE(s3c2410_uart3_resource), -+ }, - }; - - /* yart devices */ -@@ -105,13 +124,18 @@ static struct platform_device s3c24xx_ua - .id = 2, - }; - --struct platform_device *s3c24xx_uart_src[3] = { -+static struct platform_device s3c24xx_uart_device3 = { -+ .id = 3, -+}; -+ -+struct platform_device *s3c24xx_uart_src[4] = { - &s3c24xx_uart_device0, - &s3c24xx_uart_device1, - &s3c24xx_uart_device2, -+ &s3c24xx_uart_device3, - }; - --struct platform_device *s3c24xx_uart_devs[3] = { -+struct platform_device *s3c24xx_uart_devs[4] = { - }; - - /* USB Host Controller */ -@@ -192,8 +216,8 @@ void __init s3c24xx_fb_set_platdata(stru - - static struct resource s3c_nand_resource[] = { - [0] = { -- .start = S3C2410_PA_NAND, -- .end = S3C2410_PA_NAND + S3C24XX_SZ_NAND - 1, -+ .start = S3C24XX_PA_NAND, -+ .end = S3C24XX_PA_NAND + S3C24XX_SZ_NAND - 1, - .flags = IORESOURCE_MEM, - } - }; -@@ -207,6 +231,23 @@ struct platform_device s3c_device_nand = - - EXPORT_SYMBOL(s3c_device_nand); - -+/* Touchscreen */ -+struct platform_device s3c_device_ts = { -+ .name = "s3c2410-ts", -+ .id = -1, -+}; -+ -+EXPORT_SYMBOL(s3c_device_ts); -+ -+static struct s3c2410_ts_mach_info s3c2410ts_info; -+ -+void set_s3c2410ts_info(struct s3c2410_ts_mach_info *hard_s3c2410ts_info) -+{ -+ memcpy(&s3c2410ts_info,hard_s3c2410ts_info,sizeof(struct s3c2410_ts_mach_info)); -+ s3c_device_ts.dev.platform_data = &s3c2410ts_info; -+} -+EXPORT_SYMBOL(set_s3c2410ts_info); -+ - /* USB Device (Gadget)*/ - - static struct resource s3c_usbgadget_resource[] = { -@@ -271,31 +312,6 @@ struct platform_device s3c_device_wdt = - - EXPORT_SYMBOL(s3c_device_wdt); - --/* I2C */ -- --static struct resource s3c_i2c_resource[] = { -- [0] = { -- .start = S3C24XX_PA_IIC, -- .end = S3C24XX_PA_IIC + S3C24XX_SZ_IIC - 1, -- .flags = IORESOURCE_MEM, -- }, -- [1] = { -- .start = IRQ_IIC, -- .end = IRQ_IIC, -- .flags = IORESOURCE_IRQ, -- } -- --}; -- --struct platform_device s3c_device_i2c = { -- .name = "s3c2410-i2c", -- .id = -1, -- .num_resources = ARRAY_SIZE(s3c_i2c_resource), -- .resource = s3c_i2c_resource, --}; -- --EXPORT_SYMBOL(s3c_device_i2c); -- - /* IIS */ - - static struct resource s3c_iis_resource[] = { -@@ -382,8 +398,8 @@ struct platform_device s3c_device_adc = - - static struct resource s3c_sdi_resource[] = { - [0] = { -- .start = S3C2410_PA_SDI, -- .end = S3C2410_PA_SDI + S3C24XX_SZ_SDI - 1, -+ .start = S3C24XX_PA_SDI, -+ .end = S3C24XX_PA_SDI + S3C24XX_SZ_SDI - 1, - .flags = IORESOURCE_MEM, - }, - [1] = { -@@ -403,36 +419,6 @@ struct platform_device s3c_device_sdi = - - EXPORT_SYMBOL(s3c_device_sdi); - --/* High-speed MMC/SD */ -- --static struct resource s3c_hsmmc_resource[] = { -- [0] = { -- .start = S3C2443_PA_HSMMC, -- .end = S3C2443_PA_HSMMC + S3C2443_SZ_HSMMC - 1, -- .flags = IORESOURCE_MEM, -- }, -- [1] = { -- .start = IRQ_S3C2443_HSMMC, -- .end = IRQ_S3C2443_HSMMC, -- .flags = IORESOURCE_IRQ, -- } --}; -- --static u64 s3c_device_hsmmc_dmamask = 0xffffffffUL; -- --struct platform_device s3c_device_hsmmc = { -- .name = "s3c-sdhci", -- .id = -1, -- .num_resources = ARRAY_SIZE(s3c_hsmmc_resource), -- .resource = s3c_hsmmc_resource, -- .dev = { -- .dma_mask = &s3c_device_hsmmc_dmamask, -- .coherent_dma_mask = 0xffffffffUL -- } --}; -- -- -- - /* SPI (0) */ - - static struct resource s3c_spi0_resource[] = { ---- a/arch/arm/plat-s3c24xx/gpio.c -+++ b/arch/arm/plat-s3c24xx/gpio.c -@@ -32,6 +32,7 @@ - #include <asm/irq.h> - - #include <mach/regs-gpio.h> -+#include <mach/regs-gpioj.h> - - void s3c2410_gpio_cfgpin(unsigned int pin, unsigned int function) - { -@@ -215,3 +216,423 @@ int s3c2410_gpio_irq2pin(unsigned int ir - } - - EXPORT_SYMBOL(s3c2410_gpio_irq2pin); -+ -+static void pretty_dump(u32 cfg, u32 state, u32 pull, -+ const char ** function_names_2, -+ const char ** function_names_3, -+ const char * prefix, -+ int count) -+{ -+ int n; -+ const char *tag_type = NULL, -+ *tag_state = NULL, -+ *tag_pulldown = NULL, -+ * level0 = "0", -+ * level1 = "1"; -+ -+ for (n = 0; n < count; n++) { -+ switch ((cfg >> (2 * n)) & 3) { -+ case 0: -+ tag_type = "input "; -+ break; -+ case 1: -+ tag_type = "OUTPUT "; -+ break; -+ case 2: -+ if (function_names_2) { -+ if (function_names_2[n]) -+ tag_type = function_names_2[n]; -+ else -+ tag_type = "*** ILLEGAL CFG (2) *** "; -+ } else -+ tag_type = "(function) "; -+ break; -+ default: -+ if (function_names_3) { -+ if (function_names_3[n]) -+ tag_type = function_names_3[n]; -+ else -+ tag_type = "*** ILLEGAL CFG (3) *** "; -+ } else -+ tag_type = "(function) "; -+ break; -+ } -+ if ((state >> n) & 1) -+ tag_state = level1; -+ else -+ tag_state = level0; -+ -+ if (((pull >> n) & 1)) -+ tag_pulldown = ""; -+ else -+ tag_pulldown = "(pulldown)"; -+ -+ printk(KERN_INFO"%s%02d: %s %s %s\n", prefix, n, tag_type, -+ tag_state, tag_pulldown); -+ } -+ printk(KERN_INFO"\n"); -+} -+ -+static void pretty_dump_a(u32 cfg, u32 state, -+ const char ** function_names, -+ const char * prefix, -+ int count) -+{ -+ int n; -+ const char *tag_type = NULL, -+ *tag_state = NULL, -+ * level0 = "0", -+ * level1 = "1"; -+ -+ for (n = 0; n < count; n++) { -+ switch ((cfg >> n) & 1) { -+ case 0: -+ tag_type = "OUTPUT "; -+ break; -+ default: -+ if (function_names) { -+ if (function_names[n]) -+ tag_type = function_names[n]; -+ else -+ tag_type = "*** ILLEGAL CFG *** "; -+ } else -+ tag_type = "(function) "; -+ break; -+ } -+ if ((state >> n) & 1) -+ tag_state = level1; -+ else -+ tag_state = level0; -+ -+ printk(KERN_INFO"%s%02d: %s %s\n", prefix, n, tag_type, -+ tag_state); -+ } -+ printk(KERN_INFO"\n"); -+} -+ -+static const char * funcs_a[] = { -+ "ADDR0 ", -+ "ADDR16 ", -+ "ADDR17 ", -+ "ADDR18 ", -+ "ADDR19 ", -+ "ADDR20 ", -+ "ADDR21 ", -+ "ADDR22 ", -+ "ADDR23 ", -+ "ADDR24 ", -+ "ADDR25 ", -+ "ADDR26 ", -+ "nGCS[1] ", -+ "nGCS[2] ", -+ "nGCS[3] ", -+ "nGCS[4] ", -+ "nGCS[5] ", -+ "CLE ", -+ "ALE ", -+ "nFWE ", -+ "nFRE ", -+ "nRSTOUT ", -+ "nFCE ", -+ NULL, -+ NULL -+}; -+ -+ -+static const char * funcs_b2[] = { -+ "TOUT0 ", -+ "TOUT1 ", -+ "TOUT2 ", -+ "TOUT3 ", -+ "TCLK[0] ", -+ "nXBACK ", -+ "nXBREQ ", -+ "nXDACK1 ", -+ "nXDREQ1 ", -+ "nXDACK0 ", -+ "nXDREQ0 ", -+}; -+static const char * funcs_b3[] = { -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+}; -+ -+static const char * funcs_c2[] = { -+ "LEND ", -+ "VCLK ", -+ "VLINE ", -+ "VFRAME ", -+ "VM ", -+ "LCD_LPCOE ", -+ "LCD_LPCREV ", -+ "LCD_LPCREVB", -+ "VD[0] ", -+ "VD[1] ", -+ "VD[2] ", -+ "VD[3] ", -+ "VD[4] ", -+ "VD[5] ", -+ "VD[6] ", -+ "VD[7] ", -+}; -+static const char * funcs_c3[] = { -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ "I2SSDI ", -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+}; -+ -+static const char * funcs_d2[] = { -+ "VD[8] ", -+ "VD[9] ", -+ "VD[10] ", -+ "VD[11] ", -+ "VD[12] ", -+ "VD[13] ", -+ "VD[14] ", -+ "VD[15] ", -+ "VD[16] ", -+ "VD[17] ", -+ "VD[18] ", -+ "VD[19] ", -+ "VD[20] ", -+ "VD[21] ", -+ "VD[22] ", -+ "VD[23] ", -+}; -+static const char * funcs_d3[] = { -+ "nSPICS1 ", -+ "SPICLK1 ", -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ "SPIMISO1 ", -+ "SPIMOSI1 ", -+ "SPICLK1 ", -+ NULL, -+ NULL, -+ NULL, -+ "nSS1 ", -+ "nSS0 ", -+}; -+ -+static const char * funcs_e2[] = { -+ "I2SLRCK ", -+ "I2SSCLK ", -+ "CDCLK ", -+ "I2SDI ", -+ "I2SDO ", -+ "SDCLK ", -+ "SDCMD ", -+ "SDDAT0 ", -+ "SDDAT1 ", -+ "SDDAT2 ", -+ "SDDAT3 ", -+ "SPIMISO0 ", -+ "SPIMOSI0 ", -+ "SPICLK0 ", -+ "IICSCL ", -+ "IICSDA ", -+}; -+static const char * funcs_e3[] = { -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+}; -+ -+static const char * funcs_f2[] = { -+ "EINT[0] ", -+ "EINT[1] ", -+ "EINT[2] ", -+ "EINT[3] ", -+ "EINT[4] ", -+ "EINT[5] ", -+ "EINT[6] ", -+ "EINT[7] ", -+}; -+static const char * funcs_f3[] = { -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+}; -+ -+ -+static const char * funcs_g2[] = { -+ "EINT[8] ", -+ "EINT[9] ", -+ "EINT[10] ", -+ "EINT[11] ", -+ "EINT[12] ", -+ "EINT[13] ", -+ "EINT[14] ", -+ "EINT[15] ", -+ "EINT[16] ", -+ "EINT[17] ", -+ "EINT[18] ", -+ "EINT[19] ", -+ "EINT[20] ", -+ "EINT[21] ", -+ "EINT[22] ", -+ "EINT[23] ", -+}; -+static const char * funcs_g3[] = { -+ NULL, -+ NULL, -+ "nSS0 ", -+ "nSS1 ", -+ "LCD_PWRDN ", -+ "SPIMISO1 ", -+ "SPIMOSI1 ", -+ "SPICLK1 ", -+ NULL, -+ "nRTS1 ", -+ "nCTS1 ", -+ "TCLK[1] ", -+ "nSPICS0 ", -+ NULL, -+ NULL, -+ NULL, -+}; -+ -+static const char * funcs_h2[] = { -+ "nCTS0 ", -+ "nRTS0 ", -+ "TXD[0] ", -+ "RXD[0] ", -+ "TXD[1] ", -+ "RXD[1] ", -+ "TXD[2] ", -+ "RXD[2] ", -+ "UEXTCLK ", -+ "CLKOUT0 ", -+ "CLKOUT1 ", -+}; -+static const char * funcs_h3[] = { -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ "nRTS1 ", -+ "nCTS1 ", -+ NULL, -+ "nSPICS0 ", -+ NULL, -+}; -+ -+static const char * funcs_j2[] = { -+ "CAMDATA[0] ", -+ "CAMDATA[1] ", -+ "CAMDATA[2] ", -+ "CAMDATA[3] ", -+ "CAMDATA[4] ", -+ "CAMDATA[5] ", -+ "CAMDATA[6] ", -+ "CAMDATA[7] ", -+ "CAMPCLK ", -+ "CAMVSYNC ", -+ "CAMHREF ", -+ "CAMCLKOUT ", -+ "CAMRESET ", -+}; -+static const char * funcs_j3[] = { -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+}; -+ -+/* used to dump GPIO states at suspend */ -+void s3c24xx_dump_gpio_states(void) -+{ -+ pretty_dump_a(__raw_readl(S3C2410_GPACON), -+ __raw_readl(S3C2410_GPADAT), -+ funcs_a, "GPA", 25); -+ pretty_dump(__raw_readl(S3C2410_GPBCON), -+ __raw_readl(S3C2410_GPBDAT), -+ __raw_readl(S3C2410_GPBUP), -+ funcs_b2, funcs_b3, "GPB", 11); -+ pretty_dump(__raw_readl(S3C2410_GPCCON), -+ __raw_readl(S3C2410_GPCDAT), -+ __raw_readl(S3C2410_GPCUP), -+ funcs_c2, funcs_c3, "GPC", 16); -+ pretty_dump(__raw_readl(S3C2410_GPDCON), -+ __raw_readl(S3C2410_GPDDAT), -+ __raw_readl(S3C2410_GPDUP), -+ funcs_d2, funcs_d3, "GPD", 16); -+ pretty_dump(__raw_readl(S3C2410_GPECON), -+ __raw_readl(S3C2410_GPEDAT), -+ __raw_readl(S3C2410_GPEUP), -+ funcs_e2, funcs_e3, "GPE", 16); -+ pretty_dump(__raw_readl(S3C2410_GPFCON), -+ __raw_readl(S3C2410_GPFDAT), -+ __raw_readl(S3C2410_GPFUP), -+ funcs_f2, funcs_f3, "GPF", 8); -+ pretty_dump(__raw_readl(S3C2410_GPGCON), -+ __raw_readl(S3C2410_GPGDAT), -+ __raw_readl(S3C2410_GPGUP), -+ funcs_g2, funcs_g3, "GPG", 16); -+ pretty_dump(__raw_readl(S3C2410_GPHCON), -+ __raw_readl(S3C2410_GPHDAT), -+ __raw_readl(S3C2410_GPHUP), -+ funcs_h2, funcs_h3, "GPH", 11); -+ pretty_dump(__raw_readl(S3C2440_GPJCON), -+ __raw_readl(S3C2440_GPJDAT), -+ __raw_readl(S3C2440_GPJUP), -+ funcs_j2, funcs_j3, "GPJ", 13); -+ -+} -+EXPORT_SYMBOL(s3c24xx_dump_gpio_states); -+ ---- a/arch/arm/plat-s3c24xx/gpiolib.c -+++ b/arch/arm/plat-s3c24xx/gpiolib.c -@@ -19,104 +19,13 @@ - #include <linux/io.h> - #include <linux/gpio.h> - -+#include <plat/gpio-core.h> - #include <mach/hardware.h> - #include <asm/irq.h> -+#include <plat/pm.h> - - #include <mach/regs-gpio.h> - --struct s3c24xx_gpio_chip { -- struct gpio_chip chip; -- void __iomem *base; --}; -- --static inline struct s3c24xx_gpio_chip *to_s3c_chip(struct gpio_chip *gpc) --{ -- return container_of(gpc, struct s3c24xx_gpio_chip, chip); --} -- --/* these routines are exported for use by other parts of the platform -- * and system support, but are not intended to be used directly by the -- * drivers themsevles. -- */ -- --static int s3c24xx_gpiolib_input(struct gpio_chip *chip, unsigned offset) --{ -- struct s3c24xx_gpio_chip *ourchip = to_s3c_chip(chip); -- void __iomem *base = ourchip->base; -- unsigned long flags; -- unsigned long con; -- -- local_irq_save(flags); -- -- con = __raw_readl(base + 0x00); -- con &= ~(3 << (offset * 2)); -- con |= (S3C2410_GPIO_OUTPUT & 0xf) << (offset * 2); -- -- __raw_writel(con, base + 0x00); -- -- local_irq_restore(flags); -- return 0; --} -- --static int s3c24xx_gpiolib_output(struct gpio_chip *chip, -- unsigned offset, int value) --{ -- struct s3c24xx_gpio_chip *ourchip = to_s3c_chip(chip); -- void __iomem *base = ourchip->base; -- unsigned long flags; -- unsigned long dat; -- unsigned long con; -- -- local_irq_save(flags); -- -- dat = __raw_readl(base + 0x04); -- dat &= ~(1 << offset); -- if (value) -- dat |= 1 << offset; -- __raw_writel(dat, base + 0x04); -- -- con = __raw_readl(base + 0x00); -- con &= ~(3 << (offset * 2)); -- con |= (S3C2410_GPIO_OUTPUT & 0xf) << (offset * 2); -- -- __raw_writel(con, base + 0x00); -- __raw_writel(dat, base + 0x04); -- -- local_irq_restore(flags); -- return 0; --} -- --static void s3c24xx_gpiolib_set(struct gpio_chip *chip, -- unsigned offset, int value) --{ -- struct s3c24xx_gpio_chip *ourchip = to_s3c_chip(chip); -- void __iomem *base = ourchip->base; -- unsigned long flags; -- unsigned long dat; -- -- local_irq_save(flags); -- -- dat = __raw_readl(base + 0x04); -- dat &= ~(1 << offset); -- if (value) -- dat |= 1 << offset; -- __raw_writel(dat, base + 0x04); -- -- local_irq_restore(flags); --} -- --static int s3c24xx_gpiolib_get(struct gpio_chip *chip, unsigned offset) --{ -- struct s3c24xx_gpio_chip *ourchip = to_s3c_chip(chip); -- unsigned long val; -- -- val = __raw_readl(ourchip->base + 0x04); -- val >>= offset; -- val &= 1; -- -- return val; --} -- - static int s3c24xx_gpiolib_banka_input(struct gpio_chip *chip, unsigned offset) - { - return -EINVAL; -@@ -125,7 +34,7 @@ static int s3c24xx_gpiolib_banka_input(s - static int s3c24xx_gpiolib_banka_output(struct gpio_chip *chip, - unsigned offset, int value) - { -- struct s3c24xx_gpio_chip *ourchip = to_s3c_chip(chip); -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); - void __iomem *base = ourchip->base; - unsigned long flags; - unsigned long dat; -@@ -151,9 +60,10 @@ static int s3c24xx_gpiolib_banka_output( - return 0; - } - --static struct s3c24xx_gpio_chip gpios[] = { -+struct s3c_gpio_chip s3c24xx_gpios[] = { - [0] = { - .base = S3C24XX_GPIO_BASE(S3C2410_GPA0), -+ .pm = __gpio_pm(&s3c_gpio_pm_1bit), - .chip = { - .base = S3C2410_GPA0, - .owner = THIS_MODULE, -@@ -161,97 +71,87 @@ static struct s3c24xx_gpio_chip gpios[] - .ngpio = 24, - .direction_input = s3c24xx_gpiolib_banka_input, - .direction_output = s3c24xx_gpiolib_banka_output, -- .set = s3c24xx_gpiolib_set, -- .get = s3c24xx_gpiolib_get, - }, - }, - [1] = { - .base = S3C24XX_GPIO_BASE(S3C2410_GPB0), -+ .pm = __gpio_pm(&s3c_gpio_pm_2bit), - .chip = { - .base = S3C2410_GPB0, - .owner = THIS_MODULE, - .label = "GPIOB", - .ngpio = 16, -- .direction_input = s3c24xx_gpiolib_input, -- .direction_output = s3c24xx_gpiolib_output, -- .set = s3c24xx_gpiolib_set, -- .get = s3c24xx_gpiolib_get, - }, - }, - [2] = { - .base = S3C24XX_GPIO_BASE(S3C2410_GPC0), -+ .pm = __gpio_pm(&s3c_gpio_pm_2bit), - .chip = { - .base = S3C2410_GPC0, - .owner = THIS_MODULE, - .label = "GPIOC", - .ngpio = 16, -- .direction_input = s3c24xx_gpiolib_input, -- .direction_output = s3c24xx_gpiolib_output, -- .set = s3c24xx_gpiolib_set, -- .get = s3c24xx_gpiolib_get, - }, - }, - [3] = { - .base = S3C24XX_GPIO_BASE(S3C2410_GPD0), -+ .pm = __gpio_pm(&s3c_gpio_pm_2bit), - .chip = { - .base = S3C2410_GPD0, - .owner = THIS_MODULE, - .label = "GPIOD", - .ngpio = 16, -- .direction_input = s3c24xx_gpiolib_input, -- .direction_output = s3c24xx_gpiolib_output, -- .set = s3c24xx_gpiolib_set, -- .get = s3c24xx_gpiolib_get, - }, - }, - [4] = { - .base = S3C24XX_GPIO_BASE(S3C2410_GPE0), -+ .pm = __gpio_pm(&s3c_gpio_pm_2bit), - .chip = { - .base = S3C2410_GPE0, - .label = "GPIOE", - .owner = THIS_MODULE, - .ngpio = 16, -- .direction_input = s3c24xx_gpiolib_input, -- .direction_output = s3c24xx_gpiolib_output, -- .set = s3c24xx_gpiolib_set, -- .get = s3c24xx_gpiolib_get, - }, - }, - [5] = { - .base = S3C24XX_GPIO_BASE(S3C2410_GPF0), -+ .pm = __gpio_pm(&s3c_gpio_pm_2bit), - .chip = { - .base = S3C2410_GPF0, - .owner = THIS_MODULE, - .label = "GPIOF", - .ngpio = 8, -- .direction_input = s3c24xx_gpiolib_input, -- .direction_output = s3c24xx_gpiolib_output, -- .set = s3c24xx_gpiolib_set, -- .get = s3c24xx_gpiolib_get, - }, - }, - [6] = { - .base = S3C24XX_GPIO_BASE(S3C2410_GPG0), -+ .pm = __gpio_pm(&s3c_gpio_pm_2bit), - .chip = { - .base = S3C2410_GPG0, - .owner = THIS_MODULE, - .label = "GPIOG", -- .ngpio = 10, -- .direction_input = s3c24xx_gpiolib_input, -- .direction_output = s3c24xx_gpiolib_output, -- .set = s3c24xx_gpiolib_set, -- .get = s3c24xx_gpiolib_get, -+ .ngpio = 16, -+ }, -+ }, -+ [7] = { -+ .base = S3C24XX_GPIO_BASE(S3C2410_GPH0), -+ .pm = __gpio_pm(&s3c_gpio_pm_2bit), -+ .chip = { -+ .base = S3C2410_GPH0, -+ .owner = THIS_MODULE, -+ .label = "GPIOH", -+ .ngpio = 11, - }, - }, - }; - - static __init int s3c24xx_gpiolib_init(void) - { -- struct s3c24xx_gpio_chip *chip = gpios; -+ struct s3c_gpio_chip *chip = s3c24xx_gpios; - int gpn; - -- for (gpn = 0; gpn < ARRAY_SIZE(gpios); gpn++, chip++) -- gpiochip_add(&chip->chip); -+ for (gpn = 0; gpn < ARRAY_SIZE(s3c24xx_gpios); gpn++, chip++) -+ s3c_gpiolib_add(chip); - - return 0; - } ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/gta02_pm_wlan.c -@@ -0,0 +1,161 @@ -+/* -+ * GTA02 WLAN power management -+ * -+ * (C) 2008 by Openmoko Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/mutex.h> -+#include <linux/platform_device.h> -+ -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+ -+#include <mach/gta02.h> -+#include <mach/gta02-pm-wlan.h> -+#include <mach/regs-gpio.h> -+#include <mach/regs-gpioj.h> -+ -+#include <linux/delay.h> -+ -+ -+static void __gta02_wlan_power(int on) -+{ -+ if (!on) { -+ s3c2410_gpio_setpin(GTA02_CHIP_PWD, 1); -+ s3c2410_gpio_setpin(GTA02_GPIO_nWLAN_RESET, 0); -+ return; -+ } -+ -+ /* power up sequencing */ -+ -+ s3c2410_gpio_setpin(GTA02_CHIP_PWD, 1); -+ s3c2410_gpio_setpin(GTA02_GPIO_nWLAN_RESET, 0); -+ msleep(100); -+ s3c2410_gpio_setpin(GTA02_CHIP_PWD, 0); -+ msleep(100); -+ s3c2410_gpio_setpin(GTA02_GPIO_nWLAN_RESET, 1); -+} -+ -+void gta02_wlan_power(int on) -+{ -+ static DEFINE_MUTEX(lock); -+ static int is_on = -1; /* initial state is unknown */ -+ -+ on = !!on; /* normalize */ -+ mutex_lock(&lock); -+ if (on != is_on) -+ __gta02_wlan_power(on); -+ is_on = on; -+ mutex_unlock(&lock); -+} -+ -+static ssize_t gta02_wlan_read(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ if (s3c2410_gpio_getpin(GTA02_CHIP_PWD)) -+ return strlcpy(buf, "0\n", 3); -+ -+ return strlcpy(buf, "1\n", 3); -+} -+ -+static ssize_t gta02_wlan_write(struct device *dev, -+ struct device_attribute *attr, const char *buf, size_t count) -+{ -+ unsigned long on = simple_strtoul(buf, NULL, 10) & 1; -+ -+ gta02_wlan_power(on); -+ return count; -+} -+ -+static DEVICE_ATTR(power_on, 0644, gta02_wlan_read, gta02_wlan_write); -+ -+#ifdef CONFIG_PM -+static int gta02_wlan_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ dev_dbg(&pdev->dev, "suspending\n"); -+ -+ return 0; -+} -+ -+static int gta02_wlan_resume(struct platform_device *pdev) -+{ -+ dev_dbg(&pdev->dev, "resuming\n"); -+ -+ return 0; -+} -+#else -+#define gta02_wlan_suspend NULL -+#define gta02_wlan_resume NULL -+#endif -+ -+static struct attribute *gta02_wlan_sysfs_entries[] = { -+ &dev_attr_power_on.attr, -+ NULL -+}; -+ -+static struct attribute_group gta02_wlan_attr_group = { -+ .name = NULL, -+ .attrs = gta02_wlan_sysfs_entries, -+}; -+ -+static int __init gta02_wlan_probe(struct platform_device *pdev) -+{ -+ /* default-on for now */ -+ const int default_state = 1; -+ -+ if (!machine_is_neo1973_gta02()) -+ return -EINVAL; -+ -+ dev_info(&pdev->dev, "starting\n"); -+ -+ s3c2410_gpio_cfgpin(GTA02_CHIP_PWD, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_cfgpin(GTA02_GPIO_nWLAN_RESET, S3C2410_GPIO_OUTPUT); -+ gta02_wlan_power(default_state); -+ -+ return sysfs_create_group(&pdev->dev.kobj, >a02_wlan_attr_group); -+} -+ -+static int gta02_wlan_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, >a02_wlan_attr_group); -+ -+ return 0; -+} -+ -+static struct platform_driver gta02_wlan_driver = { -+ .probe = gta02_wlan_probe, -+ .remove = gta02_wlan_remove, -+ .suspend = gta02_wlan_suspend, -+ .resume = gta02_wlan_resume, -+ .driver = { -+ .name = "gta02-pm-wlan", -+ }, -+}; -+ -+static int __devinit gta02_wlan_init(void) -+{ -+ return platform_driver_register(>a02_wlan_driver); -+} -+ -+static void gta02_wlan_exit(void) -+{ -+ platform_driver_unregister(>a02_wlan_driver); -+} -+ -+module_init(gta02_wlan_init); -+module_exit(gta02_wlan_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("Openmoko GTA02 WLAN power management"); ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/mach/pwm-clock.h -@@ -0,0 +1,55 @@ -+/* linux/arch/arm/plat-s3c24xx/include/mach/pwm-clock.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C24xx - pwm clock and timer support -+ */ -+ -+/** -+ * pwm_cfg_src_is_tclk() - return whether the given mux config is a tclk -+ * @cfg: The timer TCFG1 register bits shifted down to 0. -+ * -+ * Return true if the given configuration from TCFG1 is a TCLK instead -+ * any of the TDIV clocks. -+ */ -+static inline int pwm_cfg_src_is_tclk(unsigned long tcfg) -+{ -+ return tcfg == S3C2410_TCFG1_MUX_TCLK; -+} -+ -+/** -+ * tcfg_to_divisor() - convert tcfg1 setting to a divisor -+ * @tcfg1: The tcfg1 setting, shifted down. -+ * -+ * Get the divisor value for the given tcfg1 setting. We assume the -+ * caller has already checked to see if this is not a TCLK source. -+ */ -+static inline unsigned long tcfg_to_divisor(unsigned long tcfg1) -+{ -+ return 1 << (1 + tcfg1); -+} -+ -+/** -+ * pwm_tdiv_has_div1() - does the tdiv setting have a /1 -+ * -+ * Return true if we have a /1 in the tdiv setting. -+ */ -+static inline unsigned int pwm_tdiv_has_div1(void) -+{ -+ return 0; -+} -+ -+/** -+ * pwm_tdiv_div_bits() - calculate TCFG1 divisor value. -+ * @div: The divisor to calculate the bit information for. -+ * -+ * Turn a divisor into the necessary bit field for TCFG1. -+ */ -+static inline unsigned long pwm_tdiv_div_bits(unsigned int div) -+{ -+ return ilog2(div) - 1; -+} -+ -+#define S3C_TCFG1_MUX_TCLK S3C2410_TCFG1_MUX_TCLK ---- a/arch/arm/plat-s3c24xx/include/plat/clock.h -+++ /dev/null -@@ -1,64 +0,0 @@ --/* linux/include/asm-arm/plat-s3c24xx/clock.h -- * linux/arch/arm/mach-s3c2410/clock.h -- * -- * Copyright (c) 2004-2005 Simtec Electronics -- * http://www.simtec.co.uk/products/SWLINUX/ -- * Written by Ben Dooks, <ben@simtec.co.uk> -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ -- --struct clk { -- struct list_head list; -- struct module *owner; -- struct clk *parent; -- const char *name; -- int id; -- int usage; -- unsigned long rate; -- unsigned long ctrlbit; -- -- int (*enable)(struct clk *, int enable); -- int (*set_rate)(struct clk *c, unsigned long rate); -- unsigned long (*get_rate)(struct clk *c); -- unsigned long (*round_rate)(struct clk *c, unsigned long rate); -- int (*set_parent)(struct clk *c, struct clk *parent); --}; -- --/* other clocks which may be registered by board support */ -- --extern struct clk s3c24xx_dclk0; --extern struct clk s3c24xx_dclk1; --extern struct clk s3c24xx_clkout0; --extern struct clk s3c24xx_clkout1; --extern struct clk s3c24xx_uclk; -- --extern struct clk clk_usb_bus; -- --/* core clock support */ -- --extern struct clk clk_f; --extern struct clk clk_h; --extern struct clk clk_p; --extern struct clk clk_mpll; --extern struct clk clk_upll; --extern struct clk clk_xtal; -- --/* exports for arch/arm/mach-s3c2410 -- * -- * Please DO NOT use these outside of arch/arm/mach-s3c2410 --*/ -- --extern struct mutex clocks_mutex; -- --extern int s3c2410_clkcon_enable(struct clk *clk, int enable); -- --extern int s3c24xx_register_clock(struct clk *clk); --extern int s3c24xx_register_clocks(struct clk **clk, int nr_clks); -- --extern int s3c24xx_setup_clocks(unsigned long xtal, -- unsigned long fclk, -- unsigned long hclk, -- unsigned long pclk); ---- a/arch/arm/plat-s3c24xx/include/plat/cpu.h -+++ /dev/null -@@ -1,54 +0,0 @@ --/* linux/include/asm-arm/plat-s3c24xx/cpu.h -- * -- * Copyright (c) 2004-2005 Simtec Electronics -- * Ben Dooks <ben@simtec.co.uk> -- * -- * Header file for S3C24XX CPU support -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ -- --/* todo - fix when rmk changes iodescs to use `void __iomem *` */ -- --#define IODESC_ENT(x) { (unsigned long)S3C24XX_VA_##x, __phys_to_pfn(S3C24XX_PA_##x), S3C24XX_SZ_##x, MT_DEVICE } -- --#ifndef MHZ --#define MHZ (1000*1000) --#endif -- --#define print_mhz(m) ((m) / MHZ), ((m / 1000) % 1000) -- --/* forward declaration */ --struct s3c24xx_uart_resources; --struct platform_device; --struct s3c2410_uartcfg; --struct map_desc; -- --/* core initialisation functions */ -- --extern void s3c24xx_init_irq(void); -- --extern void s3c24xx_init_io(struct map_desc *mach_desc, int size); -- --extern void s3c24xx_init_uarts(struct s3c2410_uartcfg *cfg, int no); -- --extern void s3c24xx_init_clocks(int xtal); -- --extern void s3c24xx_init_uartdevs(char *name, -- struct s3c24xx_uart_resources *res, -- struct s3c2410_uartcfg *cfg, int no); -- --/* timer for 2410/2440 */ -- --struct sys_timer; --extern struct sys_timer s3c24xx_timer; -- --/* system device classes */ -- --extern struct sysdev_class s3c2410_sysclass; --extern struct sysdev_class s3c2412_sysclass; --extern struct sysdev_class s3c2440_sysclass; --extern struct sysdev_class s3c2442_sysclass; --extern struct sysdev_class s3c2443_sysclass; ---- a/arch/arm/plat-s3c24xx/include/plat/devs.h -+++ /dev/null -@@ -1,49 +0,0 @@ --/* linux/include/asm-arm/plat-s3c24xx/devs.h -- * -- * Copyright (c) 2004 Simtec Electronics -- * Ben Dooks <ben@simtec.co.uk> -- * -- * Header file for s3c2410 standard platform devices -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ --#include <linux/platform_device.h> -- --struct s3c24xx_uart_resources { -- struct resource *resources; -- unsigned long nr_resources; --}; -- --extern struct s3c24xx_uart_resources s3c2410_uart_resources[]; -- --extern struct platform_device *s3c24xx_uart_devs[]; --extern struct platform_device *s3c24xx_uart_src[]; -- --extern struct platform_device s3c_device_timer[]; -- --extern struct platform_device s3c_device_usb; --extern struct platform_device s3c_device_lcd; --extern struct platform_device s3c_device_wdt; --extern struct platform_device s3c_device_i2c; --extern struct platform_device s3c_device_iis; --extern struct platform_device s3c_device_rtc; --extern struct platform_device s3c_device_adc; --extern struct platform_device s3c_device_sdi; --extern struct platform_device s3c_device_hsmmc; -- --extern struct platform_device s3c_device_spi0; --extern struct platform_device s3c_device_spi1; -- --extern struct platform_device s3c_device_nand; -- --extern struct platform_device s3c_device_usbgadget; -- --/* s3c2440 specific devices */ -- --#ifdef CONFIG_CPU_S3C2440 -- --extern struct platform_device s3c_device_camif; -- --#endif ---- a/arch/arm/plat-s3c24xx/include/plat/irq.h -+++ b/arch/arm/plat-s3c24xx/include/plat/irq.h -@@ -10,6 +10,12 @@ - * published by the Free Software Foundation. - */ - -+#include <linux/io.h> -+ -+#include <mach/hardware.h> -+#include <mach/regs-irq.h> -+#include <mach/regs-gpio.h> -+ - #define irqdbf(x...) - #define irqdbf2(x...) - -@@ -25,8 +31,15 @@ s3c_irqsub_mask(unsigned int irqno, unsi - { - unsigned long mask; - unsigned long submask; -+#ifdef CONFIG_S3C2440_C_FIQ -+ unsigned long flags; -+#endif - - submask = __raw_readl(S3C2410_INTSUBMSK); -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_save_flags(flags); -+ local_fiq_disable(); -+#endif - mask = __raw_readl(S3C2410_INTMSK); - - submask |= (1UL << (irqno - IRQ_S3CUART_RX0)); -@@ -39,6 +52,9 @@ s3c_irqsub_mask(unsigned int irqno, unsi - - /* write back masks */ - __raw_writel(submask, S3C2410_INTSUBMSK); -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_irq_restore(flags); -+#endif - - } - -@@ -47,8 +63,15 @@ s3c_irqsub_unmask(unsigned int irqno, un - { - unsigned long mask; - unsigned long submask; -+#ifdef CONFIG_S3C2440_C_FIQ -+ unsigned long flags; -+#endif - - submask = __raw_readl(S3C2410_INTSUBMSK); -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_save_flags(flags); -+ local_fiq_disable(); -+#endif - mask = __raw_readl(S3C2410_INTMSK); - - submask &= ~(1UL << (irqno - IRQ_S3CUART_RX0)); -@@ -57,6 +80,9 @@ s3c_irqsub_unmask(unsigned int irqno, un - /* write back masks */ - __raw_writel(submask, S3C2410_INTSUBMSK); - __raw_writel(mask, S3C2410_INTMSK); -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_irq_restore(flags); -+#endif - } - - ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/plat/map.h -@@ -0,0 +1,101 @@ -+/* linux/include/asm-arm/plat-s3c24xx/map.h -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C24XX - Memory map definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __ASM_PLAT_S3C24XX_MAP_H -+#define __ASM_PLAT_S3C24XX_MAP_H -+ -+/* interrupt controller is the first thing we put in, to make -+ * the assembly code for the irq detection easier -+ */ -+#define S3C24XX_VA_IRQ S3C_VA_IRQ -+#define S3C2410_PA_IRQ (0x4A000000) -+#define S3C24XX_SZ_IRQ SZ_1M -+ -+/* memory controller registers */ -+#define S3C24XX_VA_MEMCTRL S3C_VA_MEM -+#define S3C2410_PA_MEMCTRL (0x48000000) -+#define S3C24XX_SZ_MEMCTRL SZ_1M -+ -+/* UARTs */ -+#define S3C24XX_VA_UART S3C_VA_UART -+#define S3C2410_PA_UART (0x50000000) -+#define S3C24XX_SZ_UART SZ_1M -+#define S3C_UART_OFFSET (0x4000) -+ -+#define S3C_VA_UARTx(uart) (S3C_VA_UART + ((uart * S3C_UART_OFFSET))) -+ -+/* Timers */ -+#define S3C24XX_VA_TIMER S3C_VA_TIMER -+#define S3C2410_PA_TIMER (0x51000000) -+#define S3C24XX_SZ_TIMER SZ_1M -+ -+/* Clock and Power management */ -+#define S3C24XX_VA_CLKPWR S3C_VA_SYS -+#define S3C24XX_SZ_CLKPWR SZ_1M -+ -+/* USB Device port */ -+#define S3C2410_PA_USBDEV (0x52000000) -+#define S3C24XX_SZ_USBDEV SZ_1M -+ -+/* Watchdog */ -+#define S3C24XX_VA_WATCHDOG S3C_VA_WATCHDOG -+#define S3C2410_PA_WATCHDOG (0x53000000) -+#define S3C24XX_SZ_WATCHDOG SZ_1M -+ -+/* Standard size definitions for peripheral blocks. */ -+ -+#define S3C24XX_SZ_IIS SZ_1M -+#define S3C24XX_SZ_ADC SZ_1M -+#define S3C24XX_SZ_SPI SZ_1M -+#define S3C24XX_SZ_SDI SZ_1M -+#define S3C24XX_SZ_NAND SZ_1M -+#define S3C24XX_SZ_USBHOST SZ_1M -+ -+/* GPIO ports */ -+ -+/* the calculation for the VA of this must ensure that -+ * it is the same distance apart from the UART in the -+ * phsyical address space, as the initial mapping for the IO -+ * is done as a 1:1 maping. This puts it (currently) at -+ * 0xFA800000, which is not in the way of any current mapping -+ * by the base system. -+*/ -+ -+#define S3C2410_PA_GPIO (0x56000000) -+#define S3C24XX_VA_GPIO ((S3C24XX_PA_GPIO - S3C24XX_PA_UART) + S3C24XX_VA_UART) -+#define S3C24XX_SZ_GPIO SZ_1M -+ -+ -+/* ISA style IO, for each machine to sort out mappings for, if it -+ * implements it. We reserve two 16M regions for ISA. -+ */ -+ -+#define S3C24XX_VA_ISA_WORD S3C2410_ADDR(0x02000000) -+#define S3C24XX_VA_ISA_BYTE S3C2410_ADDR(0x03000000) -+ -+/* deal with the registers that move under the 2412/2413 */ -+ -+#if defined(CONFIG_CPU_S3C2412) || defined(CONFIG_CPU_S3C2413) -+#ifndef __ASSEMBLY__ -+extern void __iomem *s3c24xx_va_gpio2; -+#endif -+#ifdef CONFIG_CPU_S3C2412_ONLY -+#define S3C24XX_VA_GPIO2 (S3C24XX_VA_GPIO + 0x10) -+#else -+#define S3C24XX_VA_GPIO2 s3c24xx_va_gpio2 -+#endif -+#else -+#define s3c24xx_va_gpio2 S3C24XX_VA_GPIO -+#define S3C24XX_VA_GPIO2 S3C24XX_VA_GPIO -+#endif -+ -+#endif /* __ASM_PLAT_S3C24XX_MAP_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/plat/mci.h -@@ -0,0 +1,15 @@ -+#ifndef _ARCH_MCI_H -+#define _ARCH_MCI_H -+ -+struct s3c24xx_mci_pdata { -+ unsigned int wprotect_invert : 1; -+ unsigned int detect_invert : 1; /* set => detect active high. */ -+ -+ unsigned int gpio_detect; -+ unsigned int gpio_wprotect; -+ unsigned long ocr_avail; -+ void (*set_power)(unsigned char power_mode, -+ unsigned short vdd); -+}; -+ -+#endif /* _ARCH_NCI_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/plat/pll.h -@@ -0,0 +1,37 @@ -+/* linux/arch/arm/plat-s3c24xx/include/plat/pll.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C24xx - common pll registers and code -+ */ -+ -+#define S3C24XX_PLLCON_MDIVSHIFT 12 -+#define S3C24XX_PLLCON_PDIVSHIFT 4 -+#define S3C24XX_PLLCON_SDIVSHIFT 0 -+#define S3C24XX_PLLCON_MDIVMASK ((1<<(1+(19-12)))-1) -+#define S3C24XX_PLLCON_PDIVMASK ((1<<5)-1) -+#define S3C24XX_PLLCON_SDIVMASK 3 -+ -+#include <asm/div64.h> -+ -+static inline unsigned int -+s3c24xx_get_pll(unsigned int pllval, unsigned int baseclk) -+{ -+ unsigned int mdiv, pdiv, sdiv; -+ uint64_t fvco; -+ -+ mdiv = pllval >> S3C24XX_PLLCON_MDIVSHIFT; -+ pdiv = pllval >> S3C24XX_PLLCON_PDIVSHIFT; -+ sdiv = pllval >> S3C24XX_PLLCON_SDIVSHIFT; -+ -+ mdiv &= S3C24XX_PLLCON_MDIVMASK; -+ pdiv &= S3C24XX_PLLCON_PDIVMASK; -+ sdiv &= S3C24XX_PLLCON_SDIVMASK; -+ -+ fvco = (uint64_t)baseclk * (mdiv + 8); -+ do_div(fvco, (pdiv + 2) << sdiv); -+ -+ return (unsigned int)fvco; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/plat/pm-core.h -@@ -0,0 +1,64 @@ -+/* linux/arch/arm/plat-s3c24xx/include/plat/pll.h -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C24xx - PM core support for arch/arm/plat-s3c/pm.c -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+static inline void s3c_pm_debug_init_uart(void) -+{ -+ unsigned long tmp = __raw_readl(S3C2410_CLKCON); -+ -+ /* re-start uart clocks */ -+ tmp |= S3C2410_CLKCON_UART0; -+ tmp |= S3C2410_CLKCON_UART1; -+ tmp |= S3C2410_CLKCON_UART2; -+ -+ __raw_writel(tmp, S3C2410_CLKCON); -+ udelay(10); -+} -+ -+static inline void s3c_pm_arch_prepare_irqs(void) -+{ -+ __raw_writel(s3c_irqwake_intmask, S3C2410_INTMSK); -+ __raw_writel(s3c_irqwake_eintmask, S3C2410_EINTMASK); -+ -+ /* ack any outstanding external interrupts before we go to sleep */ -+ -+ __raw_writel(__raw_readl(S3C2410_EINTPEND), S3C2410_EINTPEND); -+ __raw_writel(__raw_readl(S3C2410_INTPND), S3C2410_INTPND); -+ __raw_writel(__raw_readl(S3C2410_SRCPND), S3C2410_SRCPND); -+ -+} -+ -+static inline void s3c_pm_arch_stop_clocks(void) -+{ -+ __raw_writel(0x00, S3C2410_CLKCON); /* turn off clocks over sleep */ -+} -+ -+static void s3c_pm_show_resume_irqs(int start, unsigned long which, -+ unsigned long mask); -+ -+static inline void s3c_pm_arch_show_resume_irqs(void) -+{ -+ S3C_PMDBG("post sleep: IRQs 0x%08x, 0x%08x\n", -+ __raw_readl(S3C2410_SRCPND), -+ __raw_readl(S3C2410_EINTPEND)); -+ -+ s3c_pm_show_resume_irqs(IRQ_EINT0, __raw_readl(S3C2410_SRCPND), -+ s3c_irqwake_intmask); -+ -+ s3c_pm_show_resume_irqs(IRQ_EINT4-4, __raw_readl(S3C2410_EINTPEND), -+ s3c_irqwake_eintmask); -+} -+ -+static inline void s3c_pm_arch_update_uart(void __iomem *regs, -+ struct pm_uart_save *save) -+{ -+} ---- a/arch/arm/plat-s3c24xx/include/plat/pm.h -+++ /dev/null -@@ -1,73 +0,0 @@ --/* linux/include/asm-arm/plat-s3c24xx/pm.h -- * -- * Copyright (c) 2004 Simtec Electronics -- * Written by Ben Dooks, <ben@simtec.co.uk> -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ -- --/* s3c2410_pm_init -- * -- * called from board at initialisation time to setup the power -- * management --*/ -- --#ifdef CONFIG_PM -- --extern __init int s3c2410_pm_init(void); -- --#else -- --static inline int s3c2410_pm_init(void) --{ -- return 0; --} --#endif -- --/* configuration for the IRQ mask over sleep */ --extern unsigned long s3c_irqwake_intmask; --extern unsigned long s3c_irqwake_eintmask; -- --/* IRQ masks for IRQs allowed to go to sleep (see irq.c) */ --extern unsigned long s3c_irqwake_intallow; --extern unsigned long s3c_irqwake_eintallow; -- --/* per-cpu sleep functions */ -- --extern void (*pm_cpu_prep)(void); --extern void (*pm_cpu_sleep)(void); -- --/* Flags for PM Control */ -- --extern unsigned long s3c_pm_flags; -- --/* from sleep.S */ -- --extern int s3c2410_cpu_save(unsigned long *saveblk); --extern void s3c2410_cpu_suspend(void); --extern void s3c2410_cpu_resume(void); -- --extern unsigned long s3c2410_sleep_save_phys; -- --/* sleep save info */ -- --struct sleep_save { -- void __iomem *reg; -- unsigned long val; --}; -- --#define SAVE_ITEM(x) \ -- { .reg = (x) } -- --extern void s3c2410_pm_do_save(struct sleep_save *ptr, int count); --extern void s3c2410_pm_do_restore(struct sleep_save *ptr, int count); -- --#ifdef CONFIG_PM --extern int s3c24xx_irq_suspend(struct sys_device *dev, pm_message_t state); --extern int s3c24xx_irq_resume(struct sys_device *dev); --#else --#define s3c24xx_irq_suspend NULL --#define s3c24xx_irq_resume NULL --#endif ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/plat/regs-spi.h -@@ -0,0 +1,82 @@ -+/* arch/arm/mach-s3c2410/include/mach/regs-spi.h -+ * -+ * Copyright (c) 2004 Fetron GmbH -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * S3C2410 SPI register definition -+*/ -+ -+#ifndef __ASM_ARCH_REGS_SPI_H -+#define __ASM_ARCH_REGS_SPI_H -+ -+#define S3C2410_SPI1 (0x20) -+#define S3C2412_SPI1 (0x100) -+ -+#define S3C2410_SPCON (0x00) -+ -+#define S3C2412_SPCON_RXFIFO_RB2 (0<<14) -+#define S3C2412_SPCON_RXFIFO_RB4 (1<<14) -+#define S3C2412_SPCON_RXFIFO_RB12 (2<<14) -+#define S3C2412_SPCON_RXFIFO_RB14 (3<<14) -+#define S3C2412_SPCON_TXFIFO_RB2 (0<<12) -+#define S3C2412_SPCON_TXFIFO_RB4 (1<<12) -+#define S3C2412_SPCON_TXFIFO_RB12 (2<<12) -+#define S3C2412_SPCON_TXFIFO_RB14 (3<<12) -+#define S3C2412_SPCON_RXFIFO_RESET (1<<11) /* RxFIFO reset */ -+#define S3C2412_SPCON_TXFIFO_RESET (1<<10) /* TxFIFO reset */ -+#define S3C2412_SPCON_RXFIFO_EN (1<<9) /* RxFIFO Enable */ -+#define S3C2412_SPCON_TXFIFO_EN (1<<8) /* TxFIFO Enable */ -+ -+#define S3C2412_SPCON_DIRC_RX (1<<7) -+ -+#define S3C2410_SPCON_SMOD_DMA (2<<5) /* DMA mode */ -+#define S3C2410_SPCON_SMOD_INT (1<<5) /* interrupt mode */ -+#define S3C2410_SPCON_SMOD_POLL (0<<5) /* polling mode */ -+#define S3C2410_SPCON_ENSCK (1<<4) /* Enable SCK */ -+#define S3C2410_SPCON_MSTR (1<<3) /* Master/Slave select -+ 0: slave, 1: master */ -+#define S3C2410_SPCON_CPOL_HIGH (1<<2) /* Clock polarity select */ -+#define S3C2410_SPCON_CPOL_LOW (0<<2) /* Clock polarity select */ -+ -+#define S3C2410_SPCON_CPHA_FMTB (1<<1) /* Clock Phase Select */ -+#define S3C2410_SPCON_CPHA_FMTA (0<<1) /* Clock Phase Select */ -+ -+#define S3C2410_SPCON_TAGD (1<<0) /* Tx auto garbage data mode */ -+ -+ -+#define S3C2410_SPSTA (0x04) -+ -+#define S3C2412_SPSTA_RXFIFO_AE (1<<11) -+#define S3C2412_SPSTA_TXFIFO_AE (1<<10) -+#define S3C2412_SPSTA_RXFIFO_ERROR (1<<9) -+#define S3C2412_SPSTA_TXFIFO_ERROR (1<<8) -+#define S3C2412_SPSTA_RXFIFO_FIFO (1<<7) -+#define S3C2412_SPSTA_RXFIFO_EMPTY (1<<6) -+#define S3C2412_SPSTA_TXFIFO_NFULL (1<<5) -+#define S3C2412_SPSTA_TXFIFO_EMPTY (1<<4) -+ -+#define S3C2410_SPSTA_DCOL (1<<2) /* Data Collision Error */ -+#define S3C2410_SPSTA_MULD (1<<1) /* Multi Master Error */ -+#define S3C2410_SPSTA_READY (1<<0) /* Data Tx/Rx ready */ -+#define S3C2412_SPSTA_READY_ORG (1<<3) -+ -+#define S3C2410_SPPIN (0x08) -+ -+#define S3C2410_SPPIN_ENMUL (1<<2) /* Multi Master Error detect */ -+#define S3C2410_SPPIN_RESERVED (1<<1) -+#define S3C2400_SPPIN_nCS (1<<1) /* SPI Card Select */ -+#define S3C2410_SPPIN_KEEP (1<<0) /* Master Out keep */ -+ -+#define S3C2410_SPPRE (0x0C) -+#define S3C2410_SPTDAT (0x10) -+#define S3C2410_SPRDAT (0x14) -+ -+#define S3C2412_TXFIFO (0x18) -+#define S3C2412_RXFIFO (0x18) -+#define S3C2412_SPFIC (0x24) -+ -+ -+#endif /* __ASM_ARCH_REGS_SPI_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/plat/regs-udc.h -@@ -0,0 +1,153 @@ -+/* arch/arm/mach-s3c2410/include/mach/regs-udc.h -+ * -+ * Copyright (C) 2004 Herbert Poetzl <herbert@13thfloor.at> -+ * -+ * This include file is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+*/ -+ -+#ifndef __ASM_ARCH_REGS_UDC_H -+#define __ASM_ARCH_REGS_UDC_H -+ -+#define S3C2410_USBDREG(x) (x) -+ -+#define S3C2410_UDC_FUNC_ADDR_REG S3C2410_USBDREG(0x0140) -+#define S3C2410_UDC_PWR_REG S3C2410_USBDREG(0x0144) -+#define S3C2410_UDC_EP_INT_REG S3C2410_USBDREG(0x0148) -+ -+#define S3C2410_UDC_USB_INT_REG S3C2410_USBDREG(0x0158) -+#define S3C2410_UDC_EP_INT_EN_REG S3C2410_USBDREG(0x015c) -+ -+#define S3C2410_UDC_USB_INT_EN_REG S3C2410_USBDREG(0x016c) -+ -+#define S3C2410_UDC_FRAME_NUM1_REG S3C2410_USBDREG(0x0170) -+#define S3C2410_UDC_FRAME_NUM2_REG S3C2410_USBDREG(0x0174) -+ -+#define S3C2410_UDC_EP0_FIFO_REG S3C2410_USBDREG(0x01c0) -+#define S3C2410_UDC_EP1_FIFO_REG S3C2410_USBDREG(0x01c4) -+#define S3C2410_UDC_EP2_FIFO_REG S3C2410_USBDREG(0x01c8) -+#define S3C2410_UDC_EP3_FIFO_REG S3C2410_USBDREG(0x01cc) -+#define S3C2410_UDC_EP4_FIFO_REG S3C2410_USBDREG(0x01d0) -+ -+#define S3C2410_UDC_EP1_DMA_CON S3C2410_USBDREG(0x0200) -+#define S3C2410_UDC_EP1_DMA_UNIT S3C2410_USBDREG(0x0204) -+#define S3C2410_UDC_EP1_DMA_FIFO S3C2410_USBDREG(0x0208) -+#define S3C2410_UDC_EP1_DMA_TTC_L S3C2410_USBDREG(0x020c) -+#define S3C2410_UDC_EP1_DMA_TTC_M S3C2410_USBDREG(0x0210) -+#define S3C2410_UDC_EP1_DMA_TTC_H S3C2410_USBDREG(0x0214) -+ -+#define S3C2410_UDC_EP2_DMA_CON S3C2410_USBDREG(0x0218) -+#define S3C2410_UDC_EP2_DMA_UNIT S3C2410_USBDREG(0x021c) -+#define S3C2410_UDC_EP2_DMA_FIFO S3C2410_USBDREG(0x0220) -+#define S3C2410_UDC_EP2_DMA_TTC_L S3C2410_USBDREG(0x0224) -+#define S3C2410_UDC_EP2_DMA_TTC_M S3C2410_USBDREG(0x0228) -+#define S3C2410_UDC_EP2_DMA_TTC_H S3C2410_USBDREG(0x022c) -+ -+#define S3C2410_UDC_EP3_DMA_CON S3C2410_USBDREG(0x0240) -+#define S3C2410_UDC_EP3_DMA_UNIT S3C2410_USBDREG(0x0244) -+#define S3C2410_UDC_EP3_DMA_FIFO S3C2410_USBDREG(0x0248) -+#define S3C2410_UDC_EP3_DMA_TTC_L S3C2410_USBDREG(0x024c) -+#define S3C2410_UDC_EP3_DMA_TTC_M S3C2410_USBDREG(0x0250) -+#define S3C2410_UDC_EP3_DMA_TTC_H S3C2410_USBDREG(0x0254) -+ -+#define S3C2410_UDC_EP4_DMA_CON S3C2410_USBDREG(0x0258) -+#define S3C2410_UDC_EP4_DMA_UNIT S3C2410_USBDREG(0x025c) -+#define S3C2410_UDC_EP4_DMA_FIFO S3C2410_USBDREG(0x0260) -+#define S3C2410_UDC_EP4_DMA_TTC_L S3C2410_USBDREG(0x0264) -+#define S3C2410_UDC_EP4_DMA_TTC_M S3C2410_USBDREG(0x0268) -+#define S3C2410_UDC_EP4_DMA_TTC_H S3C2410_USBDREG(0x026c) -+ -+#define S3C2410_UDC_INDEX_REG S3C2410_USBDREG(0x0178) -+ -+/* indexed registers */ -+ -+#define S3C2410_UDC_MAXP_REG S3C2410_USBDREG(0x0180) -+ -+#define S3C2410_UDC_EP0_CSR_REG S3C2410_USBDREG(0x0184) -+ -+#define S3C2410_UDC_IN_CSR1_REG S3C2410_USBDREG(0x0184) -+#define S3C2410_UDC_IN_CSR2_REG S3C2410_USBDREG(0x0188) -+ -+#define S3C2410_UDC_OUT_CSR1_REG S3C2410_USBDREG(0x0190) -+#define S3C2410_UDC_OUT_CSR2_REG S3C2410_USBDREG(0x0194) -+#define S3C2410_UDC_OUT_FIFO_CNT1_REG S3C2410_USBDREG(0x0198) -+#define S3C2410_UDC_OUT_FIFO_CNT2_REG S3C2410_USBDREG(0x019c) -+ -+#define S3C2410_UDC_FUNCADDR_UPDATE (1<<7) -+ -+#define S3C2410_UDC_PWR_ISOUP (1<<7) // R/W -+#define S3C2410_UDC_PWR_RESET (1<<3) // R -+#define S3C2410_UDC_PWR_RESUME (1<<2) // R/W -+#define S3C2410_UDC_PWR_SUSPEND (1<<1) // R -+#define S3C2410_UDC_PWR_ENSUSPEND (1<<0) // R/W -+ -+#define S3C2410_UDC_PWR_DEFAULT 0x00 -+ -+#define S3C2410_UDC_INT_EP4 (1<<4) // R/W (clear only) -+#define S3C2410_UDC_INT_EP3 (1<<3) // R/W (clear only) -+#define S3C2410_UDC_INT_EP2 (1<<2) // R/W (clear only) -+#define S3C2410_UDC_INT_EP1 (1<<1) // R/W (clear only) -+#define S3C2410_UDC_INT_EP0 (1<<0) // R/W (clear only) -+ -+#define S3C2410_UDC_USBINT_RESET (1<<2) // R/W (clear only) -+#define S3C2410_UDC_USBINT_RESUME (1<<1) // R/W (clear only) -+#define S3C2410_UDC_USBINT_SUSPEND (1<<0) // R/W (clear only) -+ -+#define S3C2410_UDC_INTE_EP4 (1<<4) // R/W -+#define S3C2410_UDC_INTE_EP3 (1<<3) // R/W -+#define S3C2410_UDC_INTE_EP2 (1<<2) // R/W -+#define S3C2410_UDC_INTE_EP1 (1<<1) // R/W -+#define S3C2410_UDC_INTE_EP0 (1<<0) // R/W -+ -+#define S3C2410_UDC_USBINTE_RESET (1<<2) // R/W -+#define S3C2410_UDC_USBINTE_SUSPEND (1<<0) // R/W -+ -+ -+#define S3C2410_UDC_INDEX_EP0 (0x00) -+#define S3C2410_UDC_INDEX_EP1 (0x01) // ?? -+#define S3C2410_UDC_INDEX_EP2 (0x02) // ?? -+#define S3C2410_UDC_INDEX_EP3 (0x03) // ?? -+#define S3C2410_UDC_INDEX_EP4 (0x04) // ?? -+ -+#define S3C2410_UDC_ICSR1_CLRDT (1<<6) // R/W -+#define S3C2410_UDC_ICSR1_SENTSTL (1<<5) // R/W (clear only) -+#define S3C2410_UDC_ICSR1_SENDSTL (1<<4) // R/W -+#define S3C2410_UDC_ICSR1_FFLUSH (1<<3) // W (set only) -+#define S3C2410_UDC_ICSR1_UNDRUN (1<<2) // R/W (clear only) -+#define S3C2410_UDC_ICSR1_PKTRDY (1<<0) // R/W (set only) -+ -+#define S3C2410_UDC_ICSR2_AUTOSET (1<<7) // R/W -+#define S3C2410_UDC_ICSR2_ISO (1<<6) // R/W -+#define S3C2410_UDC_ICSR2_MODEIN (1<<5) // R/W -+#define S3C2410_UDC_ICSR2_DMAIEN (1<<4) // R/W -+ -+#define S3C2410_UDC_OCSR1_CLRDT (1<<7) // R/W -+#define S3C2410_UDC_OCSR1_SENTSTL (1<<6) // R/W (clear only) -+#define S3C2410_UDC_OCSR1_SENDSTL (1<<5) // R/W -+#define S3C2410_UDC_OCSR1_FFLUSH (1<<4) // R/W -+#define S3C2410_UDC_OCSR1_DERROR (1<<3) // R -+#define S3C2410_UDC_OCSR1_OVRRUN (1<<2) // R/W (clear only) -+#define S3C2410_UDC_OCSR1_PKTRDY (1<<0) // R/W (clear only) -+ -+#define S3C2410_UDC_OCSR2_AUTOCLR (1<<7) // R/W -+#define S3C2410_UDC_OCSR2_ISO (1<<6) // R/W -+#define S3C2410_UDC_OCSR2_DMAIEN (1<<5) // R/W -+ -+#define S3C2410_UDC_EP0_CSR_OPKRDY (1<<0) -+#define S3C2410_UDC_EP0_CSR_IPKRDY (1<<1) -+#define S3C2410_UDC_EP0_CSR_SENTSTL (1<<2) -+#define S3C2410_UDC_EP0_CSR_DE (1<<3) -+#define S3C2410_UDC_EP0_CSR_SE (1<<4) -+#define S3C2410_UDC_EP0_CSR_SENDSTL (1<<5) -+#define S3C2410_UDC_EP0_CSR_SOPKTRDY (1<<6) -+#define S3C2410_UDC_EP0_CSR_SSE (1<<7) -+ -+#define S3C2410_UDC_MAXP_8 (1<<0) -+#define S3C2410_UDC_MAXP_16 (1<<1) -+#define S3C2410_UDC_MAXP_32 (1<<2) -+#define S3C2410_UDC_MAXP_64 (1<<3) -+ -+ -+#endif ---- a/arch/arm/plat-s3c24xx/include/plat/s3c2400.h -+++ b/arch/arm/plat-s3c24xx/include/plat/s3c2400.h -@@ -17,7 +17,7 @@ - - extern int s3c2400_init(void); - --extern void s3c2400_map_io(struct map_desc *mach_desc, int size); -+extern void s3c2400_map_io(void); - - extern void s3c2400_init_uarts(struct s3c2410_uartcfg *cfg, int no); - ---- a/arch/arm/plat-s3c24xx/include/plat/s3c2410.h -+++ b/arch/arm/plat-s3c24xx/include/plat/s3c2410.h -@@ -15,7 +15,7 @@ - - extern int s3c2410_init(void); - --extern void s3c2410_map_io(struct map_desc *mach_desc, int size); -+extern void s3c2410_map_io(void); - - extern void s3c2410_init_uarts(struct s3c2410_uartcfg *cfg, int no); - ---- a/arch/arm/plat-s3c24xx/include/plat/s3c2412.h -+++ b/arch/arm/plat-s3c24xx/include/plat/s3c2412.h -@@ -14,7 +14,7 @@ - - extern int s3c2412_init(void); - --extern void s3c2412_map_io(struct map_desc *mach_desc, int size); -+extern void s3c2412_map_io(void); - - extern void s3c2412_init_uarts(struct s3c2410_uartcfg *cfg, int no); - ---- a/arch/arm/plat-s3c24xx/include/plat/s3c2443.h -+++ b/arch/arm/plat-s3c24xx/include/plat/s3c2443.h -@@ -16,7 +16,7 @@ struct s3c2410_uartcfg; - - extern int s3c2443_init(void); - --extern void s3c2443_map_io(struct map_desc *mach_desc, int size); -+extern void s3c2443_map_io(void); - - extern void s3c2443_init_uarts(struct s3c2410_uartcfg *cfg, int no); - ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/include/plat/udc.h -@@ -0,0 +1,36 @@ -+/* arch/arm/mach-s3c2410/include/mach/udc.h -+ * -+ * Copyright (c) 2005 Arnaud Patard <arnaud.patard@rtp-net.org> -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * -+ * Changelog: -+ * 14-Mar-2005 RTP Created file -+ * 02-Aug-2005 RTP File rename -+ * 07-Sep-2005 BJD Minor cleanups, changed cmd to enum -+ * 18-Jan-2007 HMW Add per-platform vbus_draw function -+*/ -+ -+#ifndef __ASM_ARM_ARCH_UDC_H -+#define __ASM_ARM_ARCH_UDC_H -+ -+enum s3c2410_udc_cmd_e { -+ S3C2410_UDC_P_ENABLE = 1, /* Pull-up enable */ -+ S3C2410_UDC_P_DISABLE = 2, /* Pull-up disable */ -+ S3C2410_UDC_P_RESET = 3, /* UDC reset, in case of */ -+}; -+ -+struct s3c2410_udc_mach_info { -+ void (*udc_command)(enum s3c2410_udc_cmd_e); -+ void (*vbus_draw)(unsigned int ma); -+ unsigned int vbus_pin; -+ unsigned char vbus_pin_inverted; -+}; -+ -+extern void __init s3c24xx_udc_set_platdata(struct s3c2410_udc_mach_info *); -+ -+#endif /* __ASM_ARM_ARCH_UDC_H */ ---- a/arch/arm/plat-s3c24xx/irq.c -+++ b/arch/arm/plat-s3c24xx/irq.c -@@ -1,6 +1,6 @@ - /* linux/arch/arm/plat-s3c24xx/irq.c - * -- * Copyright (c) 2003,2004 Simtec Electronics -+ * Copyright (c) 2003,2004 Simtec Electronics - * Ben Dooks <ben@simtec.co.uk> - * - * This program is free software; you can redistribute it and/or modify -@@ -16,38 +16,6 @@ - * You should have received a copy of the GNU General Public License - * along with this program; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -- * -- * Changelog: -- * -- * 22-Jul-2004 Ben Dooks <ben@simtec.co.uk> -- * Fixed compile warnings -- * -- * 22-Jul-2004 Roc Wu <cooloney@yahoo.com.cn> -- * Fixed s3c_extirq_type -- * -- * 21-Jul-2004 Arnaud Patard (Rtp) <arnaud.patard@rtp-net.org> -- * Addition of ADC/TC demux -- * -- * 04-Oct-2004 Klaus Fetscher <k.fetscher@fetron.de> -- * Fix for set_irq_type() on low EINT numbers -- * -- * 05-Oct-2004 Ben Dooks <ben@simtec.co.uk> -- * Tidy up KF's patch and sort out new release -- * -- * 05-Oct-2004 Ben Dooks <ben@simtec.co.uk> -- * Add support for power management controls -- * -- * 04-Nov-2004 Ben Dooks -- * Fix standard IRQ wake for EINT0..4 and RTC -- * -- * 22-Feb-2005 Ben Dooks -- * Fixed edge-triggering on ADC IRQ -- * -- * 28-Jun-2005 Ben Dooks -- * Mark IRQ_LCD valid -- * -- * 25-Jul-2005 Ben Dooks -- * Split the S3C2440 IRQ code to separate file - */ - - #include <linux/init.h> -@@ -55,90 +23,34 @@ - #include <linux/interrupt.h> - #include <linux/ioport.h> - #include <linux/sysdev.h> --#include <linux/io.h> - --#include <mach/hardware.h> - #include <asm/irq.h> -- - #include <asm/mach/irq.h> - --#include <mach/regs-irq.h> --#include <mach/regs-gpio.h> -+#include <plat/regs-irqtype.h> - - #include <plat/cpu.h> - #include <plat/pm.h> - #include <plat/irq.h> - --/* wakeup irq control */ -- --#ifdef CONFIG_PM -- --/* state for IRQs over sleep */ -- --/* default is to allow for EINT0..EINT15, and IRQ_RTC as wakeup sources -- * -- * set bit to 1 in allow bitfield to enable the wakeup settings on it --*/ -- --unsigned long s3c_irqwake_intallow = 1L << (IRQ_RTC - IRQ_EINT0) | 0xfL; --unsigned long s3c_irqwake_intmask = 0xffffffffL; --unsigned long s3c_irqwake_eintallow = 0x0000fff0L; --unsigned long s3c_irqwake_eintmask = 0xffffffffL; -- --int --s3c_irq_wake(unsigned int irqno, unsigned int state) --{ -- unsigned long irqbit = 1 << (irqno - IRQ_EINT0); -- -- if (!(s3c_irqwake_intallow & irqbit)) -- return -ENOENT; -- -- printk(KERN_INFO "wake %s for irq %d\n", -- state ? "enabled" : "disabled", irqno); -- -- if (!state) -- s3c_irqwake_intmask |= irqbit; -- else -- s3c_irqwake_intmask &= ~irqbit; -- -- return 0; --} -- --static int --s3c_irqext_wake(unsigned int irqno, unsigned int state) --{ -- unsigned long bit = 1L << (irqno - EXTINT_OFF); -- -- if (!(s3c_irqwake_eintallow & bit)) -- return -ENOENT; -- -- printk(KERN_INFO "wake %s for irq %d\n", -- state ? "enabled" : "disabled", irqno); -- -- if (!state) -- s3c_irqwake_eintmask |= bit; -- else -- s3c_irqwake_eintmask &= ~bit; -- -- return 0; --} -- --#else --#define s3c_irqext_wake NULL --#define s3c_irq_wake NULL --#endif -- -- - static void - s3c_irq_mask(unsigned int irqno) - { - unsigned long mask; -- -+#ifdef CONFIG_S3C2440_C_FIQ -+ unsigned long flags; -+#endif - irqno -= IRQ_EINT0; -- -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_save_flags(flags); -+ local_fiq_disable(); -+#endif - mask = __raw_readl(S3C2410_INTMSK); - mask |= 1UL << irqno; - __raw_writel(mask, S3C2410_INTMSK); -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_irq_restore(flags); -+#endif - } - - static inline void -@@ -155,9 +67,19 @@ s3c_irq_maskack(unsigned int irqno) - { - unsigned long bitval = 1UL << (irqno - IRQ_EINT0); - unsigned long mask; -+#ifdef CONFIG_S3C2440_C_FIQ -+ unsigned long flags; -+#endif - -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_save_flags(flags); -+ local_fiq_disable(); -+#endif - mask = __raw_readl(S3C2410_INTMSK); - __raw_writel(mask|bitval, S3C2410_INTMSK); -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_irq_restore(flags); -+#endif - - __raw_writel(bitval, S3C2410_SRCPND); - __raw_writel(bitval, S3C2410_INTPND); -@@ -168,15 +90,25 @@ static void - s3c_irq_unmask(unsigned int irqno) - { - unsigned long mask; -+#ifdef CONFIG_S3C2440_C_FIQ -+ unsigned long flags; -+#endif - - if (irqno != IRQ_TIMER4 && irqno != IRQ_EINT8t23) - irqdbf2("s3c_irq_unmask %d\n", irqno); - - irqno -= IRQ_EINT0; - -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_save_flags(flags); -+ local_fiq_disable(); -+#endif - mask = __raw_readl(S3C2410_INTMSK); - mask &= ~(1UL << irqno); - __raw_writel(mask, S3C2410_INTMSK); -+#ifdef CONFIG_S3C2440_C_FIQ -+ local_irq_restore(flags); -+#endif - } - - struct irq_chip s3c_irq_level_chip = { -@@ -589,59 +521,6 @@ s3c_irq_demux_extint4t7(unsigned int irq - } - } - --#ifdef CONFIG_PM -- --static struct sleep_save irq_save[] = { -- SAVE_ITEM(S3C2410_INTMSK), -- SAVE_ITEM(S3C2410_INTSUBMSK), --}; -- --/* the extint values move between the s3c2410/s3c2440 and the s3c2412 -- * so we use an array to hold them, and to calculate the address of -- * the register at run-time --*/ -- --static unsigned long save_extint[3]; --static unsigned long save_eintflt[4]; --static unsigned long save_eintmask; -- --int s3c24xx_irq_suspend(struct sys_device *dev, pm_message_t state) --{ -- unsigned int i; -- -- for (i = 0; i < ARRAY_SIZE(save_extint); i++) -- save_extint[i] = __raw_readl(S3C24XX_EXTINT0 + (i*4)); -- -- for (i = 0; i < ARRAY_SIZE(save_eintflt); i++) -- save_eintflt[i] = __raw_readl(S3C24XX_EINFLT0 + (i*4)); -- -- s3c2410_pm_do_save(irq_save, ARRAY_SIZE(irq_save)); -- save_eintmask = __raw_readl(S3C24XX_EINTMASK); -- -- return 0; --} -- --int s3c24xx_irq_resume(struct sys_device *dev) --{ -- unsigned int i; -- -- for (i = 0; i < ARRAY_SIZE(save_extint); i++) -- __raw_writel(save_extint[i], S3C24XX_EXTINT0 + (i*4)); -- -- for (i = 0; i < ARRAY_SIZE(save_eintflt); i++) -- __raw_writel(save_eintflt[i], S3C24XX_EINFLT0 + (i*4)); -- -- s3c2410_pm_do_restore(irq_save, ARRAY_SIZE(irq_save)); -- __raw_writel(save_eintmask, S3C24XX_EINTMASK); -- -- return 0; --} -- --#else --#define s3c24xx_irq_suspend NULL --#define s3c24xx_irq_resume NULL --#endif -- - /* s3c24xx_init_irq - * - * Initialise S3C2410 IRQ system -@@ -672,26 +551,26 @@ void __init s3c24xx_init_irq(void) - - last = 0; - for (i = 0; i < 4; i++) { -- pend = __raw_readl(S3C2410_INTPND); -+ pend = __raw_readl(S3C2410_SUBSRCPND); - - if (pend == 0 || pend == last) - break; - -- __raw_writel(pend, S3C2410_SRCPND); -- __raw_writel(pend, S3C2410_INTPND); -- printk("irq: clearing pending status %08x\n", (int)pend); -+ printk("irq: clearing subpending status %08x\n", (int)pend); -+ __raw_writel(pend, S3C2410_SUBSRCPND); - last = pend; - } - - last = 0; - for (i = 0; i < 4; i++) { -- pend = __raw_readl(S3C2410_SUBSRCPND); -+ pend = __raw_readl(S3C2410_INTPND); - - if (pend == 0 || pend == last) - break; - -- printk("irq: clearing subpending status %08x\n", (int)pend); -- __raw_writel(pend, S3C2410_SUBSRCPND); -+ __raw_writel(pend, S3C2410_SRCPND); -+ __raw_writel(pend, S3C2410_INTPND); -+ printk("irq: clearing pending status %08x\n", (int)pend); - last = pend; - } - ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/irq-pm.c -@@ -0,0 +1,118 @@ -+/* linux/arch/arm/plat-s3c24xx/irq-om.c -+ * -+ * Copyright (c) 2003,2004 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C24XX - IRQ PM code -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/interrupt.h> -+#include <linux/sysdev.h> -+#include <linux/irq.h> -+ -+#include <plat/cpu.h> -+#include <plat/pm.h> -+#include <plat/irq.h> -+ -+/* state for IRQs over sleep */ -+ -+/* default is to allow for EINT0..EINT15, and IRQ_RTC as wakeup sources -+ * -+ * set bit to 1 in allow bitfield to enable the wakeup settings on it -+*/ -+ -+unsigned long s3c_irqwake_intallow = 1L << (IRQ_RTC - IRQ_EINT0) | 0xfL; -+unsigned long s3c_irqwake_eintallow = 0x0000fff0L; -+ -+int s3c_irq_wake(unsigned int irqno, unsigned int state) -+{ -+ unsigned long irqbit = 1 << (irqno - IRQ_EINT0); -+ -+ if (!(s3c_irqwake_intallow & irqbit)) -+ return -ENOENT; -+ -+ printk(KERN_INFO "wake %s for irq %d\n", -+ state ? "enabled" : "disabled", irqno); -+ -+ if (!state) -+ s3c_irqwake_intmask |= irqbit; -+ else -+ s3c_irqwake_intmask &= ~irqbit; -+ -+ return 0; -+} -+ -+static struct sleep_save irq_save[] = { -+ SAVE_ITEM(S3C2410_INTMSK), -+ SAVE_ITEM(S3C2410_INTSUBMSK), -+}; -+ -+/* the extint values move between the s3c2410/s3c2440 and the s3c2412 -+ * so we use an array to hold them, and to calculate the address of -+ * the register at run-time -+*/ -+ -+static unsigned long save_extint[3]; -+static unsigned long save_eintflt[4]; -+static unsigned long save_eintmask; -+ -+int s3c24xx_irq_suspend(struct sys_device *dev, pm_message_t state) -+{ -+ unsigned int i; -+ -+ for (i = 0; i < ARRAY_SIZE(save_extint); i++) -+ save_extint[i] = __raw_readl(S3C24XX_EXTINT0 + (i*4)); -+ -+ for (i = 0; i < ARRAY_SIZE(save_eintflt); i++) -+ save_eintflt[i] = __raw_readl(S3C24XX_EINFLT0 + (i*4)); -+ -+ s3c_pm_do_save(irq_save, ARRAY_SIZE(irq_save)); -+ save_eintmask = __raw_readl(S3C24XX_EINTMASK); -+ -+ return 0; -+} -+ -+int s3c24xx_irq_resume(struct sys_device *dev) -+{ -+ unsigned int i, irq; -+ unsigned long eintpnd; -+ struct irq_desc *desc; -+ -+ for (i = 0; i < ARRAY_SIZE(save_extint); i++) -+ __raw_writel(save_extint[i], S3C24XX_EXTINT0 + (i*4)); -+ -+ for (i = 0; i < ARRAY_SIZE(save_eintflt); i++) -+ __raw_writel(save_eintflt[i], S3C24XX_EINFLT0 + (i*4)); -+ -+ s3c_pm_do_restore(irq_save, ARRAY_SIZE(irq_save)); -+ __raw_writel(save_eintmask, S3C24XX_EINTMASK); -+ -+ /* -+ * ACK those interrupts which are now masked and pending. -+ * Level interrupts if not ACKed here, create an interrupt storm -+ * because they are not handled at all. -+ */ -+ -+ eintpnd = __raw_readl(S3C24XX_EINTPEND); -+ -+ eintpnd &= save_eintmask; -+ eintpnd &= ~0xff; /* ignore lower irqs */ -+ -+ while (eintpnd) { -+ irq = __ffs(eintpnd); -+ eintpnd &= ~(1 << irq); -+ -+ irq += (IRQ_EINT4 - 4); -+ desc = irq_to_desc(irq); -+ desc->chip->ack(irq); -+ } -+ -+ return 0; -+} ---- a/arch/arm/plat-s3c24xx/Kconfig -+++ b/arch/arm/plat-s3c24xx/Kconfig -@@ -6,18 +6,32 @@ - - config PLAT_S3C24XX - bool -- depends on ARCH_S3C2410 -- default y if ARCH_S3C2410 -+ depends on ARCH_S3C2410 || ARCH_S3C24A0 -+ default y - select NO_IOPORT - select ARCH_REQUIRE_GPIOLIB -+ select S3C_GPIO_TRACK - help - Base platform code for any Samsung S3C24XX device - - if PLAT_S3C24XX - -+# code that is shared between a number of the s3c24xx implementations -+ -+config S3C2410_CLOCK -+ bool -+ help -+ Clock code for the S3C2410, and similar processors which -+ is currently includes the S3C2410, S3C2440, S3C2442. -+ -+config S3C24XX_DCLK -+ bool -+ help -+ Clock code for supporting DCLK/CLKOUT on S3C24XX architectures -+ - config CPU_S3C244X - bool -- depends on ARCH_S3C2410 && (CPU_S3C2440 || CPU_S3C2442) -+ default y if CPU_S3C2440 || CPU_S3C2442 - help - Support for S3C2440 and S3C2442 Samsung Mobile CPU based systems. - -@@ -49,9 +63,31 @@ config S3C2410_DMA_DEBUG - Enable debugging output for the DMA code. This option sends info - to the kernel log, at priority KERN_DEBUG. - -+# SPI default pin configuration code -+ -+config S3C24XX_SPI_BUS0_GPE11_GPE12_GPE13 -+ bool -+ help -+ SPI GPIO configuration code for BUS0 when connected to -+ GPE11, GPE12 and GPE13. -+ -+config S3C24XX_SPI_BUS1_GPG5_GPG6_GPG7 -+ bool -+ help -+ SPI GPIO configuration code for BUS 1 when connected to -+ GPG5, GPG6 and GPG7. -+ -+# common code for s3c24xx based machines, such as the SMDKs. -+ - config MACH_SMDK - bool - help - Common machine code for SMDK2410 and SMDK2440 - -+config MACH_NEO1973 -+ bool -+ select RFKILL -+ help -+ Common machine code for Neo1973 hardware -+ - endif ---- a/arch/arm/plat-s3c24xx/Makefile -+++ b/arch/arm/plat-s3c24xx/Makefile -@@ -17,9 +17,8 @@ obj-y += irq.o - obj-y += devs.o - obj-y += gpio.o - obj-y += gpiolib.o --obj-y += time.o - obj-y += clock.o --obj-y += pwm-clock.o -+obj-$(CONFIG_S3C24XX_DCLK) += clock-dclk.o - - # Architecture dependant builds - -@@ -28,7 +27,26 @@ obj-$(CONFIG_CPU_S3C244X) += s3c244x-irq - obj-$(CONFIG_CPU_S3C244X) += s3c244x-clock.o - obj-$(CONFIG_PM_SIMTEC) += pm-simtec.o - obj-$(CONFIG_PM) += pm.o -+obj-$(CONFIG_PM) += irq-pm.o - obj-$(CONFIG_PM) += sleep.o - obj-$(CONFIG_HAVE_PWM) += pwm.o -+obj-$(CONFIG_S3C2410_CLOCK) += s3c2410-clock.o - obj-$(CONFIG_S3C2410_DMA) += dma.o -+ -+# device specific setup and/or initialisation -+obj-$(CONFIG_ARCH_S3C2410) += setup-i2c.o -+ -+# SPI gpio central GPIO functions -+ -+obj-$(CONFIG_S3C24XX_SPI_BUS0_GPE11_GPE12_GPE13) += spi-bus0-gpe11_12_13.o -+obj-$(CONFIG_S3C24XX_SPI_BUS1_GPG5_GPG6_GPG7) += spi-bus1-gpg5_6_7.o -+ -+# machine common support -+ - obj-$(CONFIG_MACH_SMDK) += common-smdk.o -+obj-$(CONFIG_MACH_NEO1973) += \ -+ neo1973_pm_gsm.o \ -+ neo1973_pm_gps.o \ -+ neo1973_pm_bt.o \ -+ gta02_pm_wlan.o \ -+ neo1973_shadow.o ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/neo1973_pm_bt.c -@@ -0,0 +1,323 @@ -+/* -+ * Bluetooth PM code for the FIC Neo1973 GSM Phone -+ * -+ * (C) 2007 by Openmoko Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+#include <linux/rfkill.h> -+#include <linux/err.h> -+ -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+ -+/* For GTA01 */ -+#include <mach/gta01.h> -+#include <linux/pcf50606.h> -+ -+/* For GTA02 */ -+#include <mach/gta02.h> -+#include <linux/mfd/pcf50633/gpio.h> -+ -+#include <linux/regulator/consumer.h> -+ -+#define DRVMSG "FIC Neo1973 Bluetooth Power Management" -+ -+struct gta01_pm_bt_data { -+ struct regulator *regulator; -+ struct rfkill *rfkill; -+ int pre_resume_state; -+}; -+ -+static ssize_t bt_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ int ret = 0; -+ -+ if (!strcmp(attr->attr.name, "power_on")) { -+ -+ if (machine_is_neo1973_gta01()) { -+ if (pcf50606_onoff_get(pcf50606_global, -+ PCF50606_REGULATOR_D1REG) && -+ pcf50606_voltage_get(pcf50606_global, -+ PCF50606_REGULATOR_D1REG) == 3100) -+ ret = 1; -+ } else if (machine_is_neo1973_gta02()) { -+ if (s3c2410_gpio_getpin(GTA02_GPIO_BT_EN)) -+ ret = 1; -+ } -+ } else if (!strcmp(attr->attr.name, "reset")) { -+ if (machine_is_neo1973_gta01()) { -+ if (s3c2410_gpio_getpin(GTA01_GPIO_BT_EN) == 0) -+ ret = 1; -+ } else if (machine_is_neo1973_gta02()) { -+ if (s3c2410_gpio_getpin(GTA02_GPIO_BT_EN) == 0) -+ ret = 1; -+ } -+ } -+ -+ if (!ret) { -+ return strlcpy(buf, "0\n", 3); -+ } else { -+ return strlcpy(buf, "1\n", 3); -+ } -+} -+ -+static void __gta02_pm_bt_toggle_radio(struct device *dev, unsigned int on) -+{ -+ struct gta01_pm_bt_data *bt_data = dev_get_drvdata(dev); -+ -+ dev_info(dev, "__gta02_pm_bt_toggle_radio %d\n", on); -+ -+ if (machine_is_neo1973_gta02()) { -+ -+ bt_data = dev_get_drvdata(dev); -+ -+ neo1973_gpb_setpin(GTA02_GPIO_BT_EN, !on); -+ -+ if (on) { -+ if (!regulator_is_enabled(bt_data->regulator)) -+ regulator_enable(bt_data->regulator); -+ } else { -+ if (regulator_is_enabled(bt_data->regulator)) -+ regulator_disable(bt_data->regulator); -+ } -+ -+ neo1973_gpb_setpin(GTA02_GPIO_BT_EN, on); -+ } -+} -+ -+ -+static int bt_rfkill_toggle_radio(void *data, enum rfkill_state state) -+{ -+ struct device *dev = data; -+ unsigned long on = (state == RFKILL_STATE_ON); -+ -+ if (machine_is_neo1973_gta01()) { -+ /* if we are powering up, assert reset, then power, -+ * then release reset */ -+ if (on) { -+ neo1973_gpb_setpin(GTA01_GPIO_BT_EN, 0); -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_D1REG, -+ 3100); -+ } -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_D1REG, on); -+ neo1973_gpb_setpin(GTA01_GPIO_BT_EN, on); -+ } else if (machine_is_neo1973_gta02()) -+ __gta02_pm_bt_toggle_radio(dev, on); -+ -+ return 0; -+} -+ -+static ssize_t bt_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ unsigned long on = simple_strtoul(buf, NULL, 10); -+ struct gta01_pm_bt_data *bt_data = dev_get_drvdata(dev); -+ -+ if (!strcmp(attr->attr.name, "power_on")) { -+ enum rfkill_state state = on ? RFKILL_STATE_ON : RFKILL_STATE_OFF; -+ bt_rfkill_toggle_radio(dev, state); -+ bt_data->rfkill->state = state; -+ -+ if (machine_is_neo1973_gta01()) { -+ /* if we are powering up, assert reset, then power, -+ * then release reset */ -+ if (on) { -+ neo1973_gpb_setpin(GTA01_GPIO_BT_EN, 0); -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_D1REG, -+ 3100); -+ } -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_D1REG, on); -+ neo1973_gpb_setpin(GTA01_GPIO_BT_EN, on); -+ } else if (machine_is_neo1973_gta02()) -+ __gta02_pm_bt_toggle_radio(dev, on); -+ -+ } else if (!strcmp(attr->attr.name, "reset")) { -+ /* reset is low-active, so we need to invert */ -+ if (machine_is_neo1973_gta01()) { -+ neo1973_gpb_setpin(GTA01_GPIO_BT_EN, on ? 0 : 1); -+ } else if (machine_is_neo1973_gta02()) { -+ neo1973_gpb_setpin(GTA02_GPIO_BT_EN, on ? 0 : 1); -+ } -+ } -+ -+ return count; -+} -+ -+static DEVICE_ATTR(power_on, 0644, bt_read, bt_write); -+static DEVICE_ATTR(reset, 0644, bt_read, bt_write); -+ -+#ifdef CONFIG_PM -+static int gta01_bt_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ struct gta01_pm_bt_data *bt_data = dev_get_drvdata(&pdev->dev); -+ -+ dev_dbg(&pdev->dev, DRVMSG ": suspending\n"); -+ -+ if (machine_is_neo1973_gta02()) { -+ bt_data->pre_resume_state = -+ s3c2410_gpio_getpin(GTA02_GPIO_BT_EN); -+ __gta02_pm_bt_toggle_radio(&pdev->dev, 0); -+ } -+ -+ return 0; -+} -+ -+static int gta01_bt_resume(struct platform_device *pdev) -+{ -+ struct gta01_pm_bt_data *bt_data = dev_get_drvdata(&pdev->dev); -+ dev_dbg(&pdev->dev, DRVMSG ": resuming\n"); -+ -+ if (machine_is_neo1973_gta02()) { -+ __gta02_pm_bt_toggle_radio(&pdev->dev, -+ bt_data->pre_resume_state); -+ } -+ -+ return 0; -+} -+#else -+#define gta01_bt_suspend NULL -+#define gta01_bt_resume NULL -+#endif -+ -+static struct attribute *gta01_bt_sysfs_entries[] = { -+ &dev_attr_power_on.attr, -+ &dev_attr_reset.attr, -+ NULL -+}; -+ -+static struct attribute_group gta01_bt_attr_group = { -+ .name = NULL, -+ .attrs = gta01_bt_sysfs_entries, -+}; -+ -+static int __init gta01_bt_probe(struct platform_device *pdev) -+{ -+ struct rfkill *rfkill; -+ struct regulator *regulator; -+ struct gta01_pm_bt_data *bt_data; -+ int ret; -+ -+ dev_info(&pdev->dev, DRVMSG ": starting\n"); -+ -+ bt_data = kzalloc(sizeof(*bt_data), GFP_KERNEL); -+ dev_set_drvdata(&pdev->dev, bt_data); -+ -+ if (machine_is_neo1973_gta01()) { -+ /* we make sure that the voltage is off */ -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_D1REG, 0); -+ /* we pull reset to low to make sure that the chip doesn't -+ * drain power through the reset line */ -+ neo1973_gpb_setpin(GTA01_GPIO_BT_EN, 0); -+ } else if (machine_is_neo1973_gta02()) { -+ regulator = regulator_get(&pdev->dev, "BT_3V2"); -+ if (IS_ERR(regulator)) -+ return -ENODEV; -+ -+ bt_data->regulator = regulator; -+ -+ /* this tests the true physical state of the regulator... */ -+ if (regulator_is_enabled(regulator)) { -+ /* -+ * but these only operate on the logical state of the -+ * regulator... so we need to logicaly "adopt" it on -+ * to turn it off -+ */ -+ regulator_enable(regulator); -+ regulator_disable(regulator); -+ } -+ -+ /* we pull reset to low to make sure that the chip doesn't -+ * drain power through the reset line */ -+ neo1973_gpb_setpin(GTA02_GPIO_BT_EN, 0); -+ } -+ -+ rfkill = rfkill_allocate(&pdev->dev, RFKILL_TYPE_BLUETOOTH); -+ -+ rfkill->name = pdev->name; -+ rfkill->data = &pdev->dev; -+ rfkill->state = RFKILL_STATE_OFF; -+ rfkill->toggle_radio = bt_rfkill_toggle_radio; -+ -+ ret = rfkill_register(rfkill); -+ if (ret) { -+ dev_err(&pdev->dev, "Failed to register rfkill\n"); -+ return ret; -+ } -+ -+ bt_data->rfkill = rfkill; -+ -+ return sysfs_create_group(&pdev->dev.kobj, >a01_bt_attr_group); -+} -+ -+static int gta01_bt_remove(struct platform_device *pdev) -+{ -+ struct gta01_pm_bt_data *bt_data = dev_get_drvdata(&pdev->dev); -+ struct regulator *regulator; -+ -+ sysfs_remove_group(&pdev->dev.kobj, >a01_bt_attr_group); -+ -+ if (bt_data->rfkill) { -+ rfkill_unregister(bt_data->rfkill); -+ rfkill_free(bt_data->rfkill); -+ } -+ -+ if (!bt_data || !bt_data->regulator) -+ return 0; -+ -+ regulator = bt_data->regulator; -+ -+ /* Make sure regulator is disabled before calling regulator_put */ -+ if (regulator_is_enabled(regulator)) -+ regulator_disable(regulator); -+ -+ regulator_put(regulator); -+ -+ kfree(bt_data); -+ -+ return 0; -+} -+ -+static struct platform_driver gta01_bt_driver = { -+ .probe = gta01_bt_probe, -+ .remove = gta01_bt_remove, -+ .suspend = gta01_bt_suspend, -+ .resume = gta01_bt_resume, -+ .driver = { -+ .name = "neo1973-pm-bt", -+ }, -+}; -+ -+static int __devinit gta01_bt_init(void) -+{ -+ return platform_driver_register(>a01_bt_driver); -+} -+ -+static void gta01_bt_exit(void) -+{ -+ platform_driver_unregister(>a01_bt_driver); -+} -+ -+module_init(gta01_bt_init); -+module_exit(gta01_bt_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION(DRVMSG); ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/neo1973_pm_gps.c -@@ -0,0 +1,699 @@ -+/* -+ * GPS Power Management code for the FIC Neo1973 GSM Phone -+ * -+ * (C) 2007 by Openmoko Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/delay.h> -+#include <linux/platform_device.h> -+ -+#include <mach/hardware.h> -+ -+#include <asm/mach-types.h> -+ -+#include <asm/plat-s3c24xx/neo1973.h> -+ -+/* For GTA01 */ -+#include <mach/gta01.h> -+#include <linux/pcf50606.h> -+ -+/* For GTA02 */ -+#include <mach/gta02.h> -+ -+#include <linux/regulator/consumer.h> -+ -+struct neo1973_pm_gps_data { -+ int power_was_on; -+ struct regulator *regulator; -+}; -+ -+static struct neo1973_pm_gps_data neo1973_gps; -+ -+int neo1973_pm_gps_is_on(void) -+{ -+ return neo1973_gps.power_was_on; -+} -+EXPORT_SYMBOL_GPL(neo1973_pm_gps_is_on); -+ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ -+/* This is the 2.8V supply for the RTC crystal, the mail clock crystal and -+ * the input to VDD_RF */ -+static void gps_power_2v8_set(int on) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ if (on) -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_IOREG, 2800); -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_IOREG, on); -+ break; -+ case GTA01Bv2_SYSTEM_REV: -+ s3c2410_gpio_setpin(GTA01_GPIO_GPS_EN_2V8, on); -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ break; -+ } -+} -+ -+static int gps_power_2v8_get(void) -+{ -+ int ret = 0; -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ if (pcf50606_onoff_get(pcf50606_global, -+ PCF50606_REGULATOR_IOREG) && -+ pcf50606_voltage_get(pcf50606_global, -+ PCF50606_REGULATOR_IOREG) == 2800) -+ ret = 1; -+ break; -+ case GTA01Bv2_SYSTEM_REV: -+ if (s3c2410_gpio_getpin(GTA01_GPIO_GPS_EN_2V8)) -+ ret = 1; -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ break; -+ } -+ -+ return ret; -+} -+ -+/* This is the 3V supply (AVDD) for the external RF frontend (LNA bias) */ -+static void gps_power_3v_set(int on) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ if (on) -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_D1REG, 3000); -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_D1REG, on); -+ break; -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ s3c2410_gpio_setpin(GTA01_GPIO_GPS_EN_3V, on); -+ break; -+ } -+} -+ -+static int gps_power_3v_get(void) -+{ -+ int ret = 0; -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ if (pcf50606_onoff_get(pcf50606_global, -+ PCF50606_REGULATOR_D1REG) && -+ pcf50606_voltage_get(pcf50606_global, -+ PCF50606_REGULATOR_D1REG) == 3000) -+ ret = 1; -+ break; -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ if (s3c2410_gpio_getpin(GTA01_GPIO_GPS_EN_3V)) -+ ret = 1; -+ break; -+ } -+ -+ return ret; -+} -+ -+/* This is the 3.3V supply for VDD_IO and VDD_LPREG input */ -+static void gps_power_3v3_set(int on) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ if (on) -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_DCD, 3300); -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_DCD, on); -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ s3c2410_gpio_setpin(GTA01_GPIO_GPS_EN_3V3, on); -+ break; -+ } -+} -+ -+static int gps_power_3v3_get(void) -+{ -+ int ret = 0; -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ if (pcf50606_onoff_get(pcf50606_global, -+ PCF50606_REGULATOR_DCD) && -+ pcf50606_voltage_get(pcf50606_global, -+ PCF50606_REGULATOR_DCD) == 3300) -+ ret = 1; -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ if (s3c2410_gpio_getpin(GTA01_GPIO_GPS_EN_3V3)) -+ ret = 1; -+ break; -+ } -+ -+ return ret; -+} -+ -+/* This is the 2.5V supply for VDD_PLLREG and VDD_COREREG input */ -+static void gps_power_2v5_set(int on) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ /* This is CORE_1V8 and cannot be disabled */ -+ break; -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ if (on) -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_D2REG, 2500); -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_D2REG, on); -+ break; -+ } -+} -+ -+static int gps_power_2v5_get(void) -+{ -+ int ret = 0; -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ /* This is CORE_1V8 and cannot be disabled */ -+ ret = 1; -+ break; -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ if (pcf50606_onoff_get(pcf50606_global, -+ PCF50606_REGULATOR_D2REG) && -+ pcf50606_voltage_get(pcf50606_global, -+ PCF50606_REGULATOR_D2REG) == 2500) -+ ret = 1; -+ break; -+ } -+ -+ return ret; -+} -+ -+/* This is the 1.5V supply for VDD_CORE */ -+static void gps_power_1v5_set(int on) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ /* This is switched via 2v5 */ -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ if (on) -+ pcf50606_voltage_set(pcf50606_global, -+ PCF50606_REGULATOR_DCD, 1500); -+ pcf50606_onoff_set(pcf50606_global, -+ PCF50606_REGULATOR_DCD, on); -+ break; -+ } -+} -+ -+static int gps_power_1v5_get(void) -+{ -+ int ret = 0; -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ /* This is switched via 2v5 */ -+ ret = 1; -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ if (pcf50606_onoff_get(pcf50606_global, -+ PCF50606_REGULATOR_DCD) && -+ pcf50606_voltage_get(pcf50606_global, -+ PCF50606_REGULATOR_DCD) == 1500) -+ ret = 1; -+ break; -+ } -+ -+ return ret; -+} -+#endif -+ -+/* This is the POWERON pin */ -+static void gps_pwron_set(int on) -+{ -+ -+ if (machine_is_neo1973_gta01()) -+ neo1973_gpb_setpin(GTA01_GPIO_GPS_PWRON, on); -+ -+ if (machine_is_neo1973_gta02()) { -+ if (on) { -+ /* return UART pins to being UART pins */ -+ s3c2410_gpio_cfgpin(S3C2410_GPH4, S3C2410_GPH4_TXD1); -+ /* remove pulldown now it won't be floating any more */ -+ s3c2410_gpio_pullup(S3C2410_GPH5, 0); -+ } else { -+ /* -+ * take care not to power unpowered GPS from UART TX -+ * return them to GPIO and force low -+ */ -+ s3c2410_gpio_cfgpin(S3C2410_GPH4, S3C2410_GPH4_OUTP); -+ s3c2410_gpio_setpin(S3C2410_GPH4, 0); -+ /* don't let RX from unpowered GPS float */ -+ s3c2410_gpio_pullup(S3C2410_GPH5, 1); -+ } -+ if ((on) && (!neo1973_gps.power_was_on)) -+ regulator_enable(neo1973_gps.regulator); -+ -+ if ((!on) && (neo1973_gps.power_was_on)) -+ regulator_disable(neo1973_gps.regulator); -+ } -+ -+ neo1973_gps.power_was_on = !!on; -+} -+ -+static int gps_pwron_get(void) -+{ -+ if (machine_is_neo1973_gta01()) -+ return !!s3c2410_gpio_getpin(GTA01_GPIO_GPS_PWRON); -+ -+ if (machine_is_neo1973_gta02()) -+ return regulator_is_enabled(neo1973_gps.regulator); -+ return -1; -+} -+ -+ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+static void gps_rst_set(int on); -+static int gps_rst_get(void); -+#endif -+ -+static ssize_t power_gps_read(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ int ret = 0; -+ -+ if (!strcmp(attr->attr.name, "pwron")) -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ { -+#endif -+ ret = gps_pwron_get(); -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ } else if (!strcmp(attr->attr.name, "power_avdd_3v")) { -+ ret = gps_power_3v_get(); -+ } else if (!strcmp(attr->attr.name, "power_tcxo_2v8")) { -+ ret = gps_power_2v8_get(); -+ } else if (!strcmp(attr->attr.name, "reset")) { -+ ret = gps_rst_get(); -+ } else if (!strcmp(attr->attr.name, "power_lp_io_3v3")) { -+ ret = gps_power_3v3_get(); -+ } else if (!strcmp(attr->attr.name, "power_pll_core_2v5")) { -+ ret = gps_power_2v5_get(); -+ } else if (!strcmp(attr->attr.name, "power_core_1v5") || -+ !strcmp(attr->attr.name, "power_vdd_core_1v5")) { -+ ret = gps_power_1v5_get(); -+ } -+#endif -+ if (ret) -+ return strlcpy(buf, "1\n", 3); -+ else -+ return strlcpy(buf, "0\n", 3); -+} -+ -+static ssize_t power_gps_write(struct device *dev, -+ struct device_attribute *attr, const char *buf, -+ size_t count) -+{ -+ unsigned long on = simple_strtoul(buf, NULL, 10); -+ -+ if (!strcmp(attr->attr.name, "pwron")) -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+{ -+#endif -+ gps_pwron_set(on); -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ } else if (!strcmp(attr->attr.name, "power_avdd_3v")) { -+ gps_power_3v_set(on); -+ } else if (!strcmp(attr->attr.name, "power_tcxo_2v8")) { -+ gps_power_2v8_set(on); -+ } else if (!strcmp(attr->attr.name, "reset")) { -+ gps_rst_set(on); -+ } else if (!strcmp(attr->attr.name, "power_lp_io_3v3")) { -+ gps_power_3v3_set(on); -+ } else if (!strcmp(attr->attr.name, "power_pll_core_2v5")) { -+ gps_power_2v5_set(on); -+ } else if (!strcmp(attr->attr.name, "power_core_1v5") || -+ !strcmp(attr->attr.name, "power_vdd_core_1v5")) { -+ gps_power_1v5_set(on); -+ } -+#endif -+ return count; -+} -+ -+ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ -+/* This is the nRESET pin */ -+static void gps_rst_set(int on) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ pcf50606_gpo0_set(pcf50606_global, on); -+ break; -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ s3c2410_gpio_setpin(GTA01_GPIO_GPS_RESET, on); -+ break; -+ } -+} -+ -+static int gps_rst_get(void) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ if (pcf50606_gpo0_get(pcf50606_global)) -+ return 1; -+ break; -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ if (s3c2410_gpio_getpin(GTA01_GPIO_GPS_RESET)) -+ return 1; -+ break; -+ } -+ -+ return 0; -+} -+ -+ -+static void gps_power_sequence_up(void) -+{ -+ /* According to PMB2520 Data Sheet, Rev. 2006-06-05, -+ * Chapter 4.2.2 */ -+ -+ /* nRESET must be asserted low */ -+ gps_rst_set(0); -+ -+ /* POWERON must be de-asserted (low) */ -+ gps_pwron_set(0); -+ -+ /* Apply VDD_IO and VDD_LPREG_IN */ -+ gps_power_3v3_set(1); -+ -+ /* VDD_COREREG_IN, VDD_PLLREG_IN */ -+ gps_power_1v5_set(1); -+ gps_power_2v5_set(1); -+ -+ /* and VDD_RF may be applied */ -+ gps_power_2v8_set(1); -+ -+ /* We need to enable AVDD, since in GTA01Bv3 it is -+ * shared with RFREG_IN */ -+ gps_power_3v_set(1); -+ -+ msleep(3); /* Is 3ms enough? */ -+ -+ /* De-asert nRESET */ -+ gps_rst_set(1); -+ -+ /* Switch power on */ -+ gps_pwron_set(1); -+ -+} -+ -+static void gps_power_sequence_down(void) -+{ -+ /* According to PMB2520 Data Sheet, Rev. 2006-06-05, -+ * Chapter 4.2.3.1 */ -+ gps_pwron_set(0); -+ -+ /* Don't disable AVDD before PWRON is cleared, since -+ * in GTA01Bv3, AVDD and RFREG_IN are shared */ -+ gps_power_3v_set(0); -+ -+ /* Remove VDD_COREREG_IN, VDD_PLLREG_IN and VDD_REFREG_IN */ -+ gps_power_1v5_set(0); -+ gps_power_2v5_set(0); -+ gps_power_2v8_set(0); -+ -+ /* Remove VDD_LPREG_IN and VDD_IO */ -+ gps_power_3v3_set(0); -+} -+ -+ -+static ssize_t power_sequence_read(struct device *dev, -+ struct device_attribute *attr, -+ char *buf) -+{ -+ return strlcpy(buf, "power_up power_down\n", PAGE_SIZE); -+} -+ -+static ssize_t power_sequence_write(struct device *dev, -+ struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ dev_dbg(dev, "wrote: '%s'\n", buf); -+ -+ if (!strncmp(buf, "power_up", 8)) -+ gps_power_sequence_up(); -+ else if (!strncmp(buf, "power_down", 10)) -+ gps_power_sequence_down(); -+ else -+ return -EINVAL; -+ -+ return count; -+} -+ -+static DEVICE_ATTR(power_tcxo_2v8, 0644, power_gps_read, power_gps_write); -+static DEVICE_ATTR(power_avdd_3v, 0644, power_gps_read, power_gps_write); -+static DEVICE_ATTR(reset, 0644, power_gps_read, power_gps_write); -+static DEVICE_ATTR(power_lp_io_3v3, 0644, power_gps_read, power_gps_write); -+static DEVICE_ATTR(power_pll_core_2v5, 0644, power_gps_read, power_gps_write); -+static DEVICE_ATTR(power_core_1v5, 0644, power_gps_read, power_gps_write); -+static DEVICE_ATTR(power_vdd_core_1v5, 0644, power_gps_read, power_gps_write); -+static DEVICE_ATTR(power_sequence, 0644, power_sequence_read, -+ power_sequence_write); -+#endif -+ -+#ifdef CONFIG_PM -+static int gta01_pm_gps_suspend(struct platform_device *pdev, -+ pm_message_t state) -+{ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ if (machine_is_neo1973_gta01()) -+ /* FIXME */ -+ gps_power_sequence_down(); -+#endif -+ if (machine_is_neo1973_gta02()) -+ gps_pwron_set(0); -+ -+ return 0; -+} -+ -+static int gta01_pm_gps_resume(struct platform_device *pdev) -+{ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ if (machine_is_neo1973_gta01()) -+ if (neo1973_gps.power_was_on) -+ gps_power_sequence_up(); -+#endif -+ if (machine_is_neo1973_gta02()) -+ if (neo1973_gps.power_was_on) -+ gps_pwron_set(1); -+ -+ return 0; -+} -+#else -+#define gta01_pm_gps_suspend NULL -+#define gta01_pm_gps_resume NULL -+#endif -+ -+static DEVICE_ATTR(pwron, 0644, power_gps_read, power_gps_write); -+ -+ -+static struct attribute *gta01_gps_sysfs_entries[] = { -+ &dev_attr_pwron.attr, -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ &dev_attr_power_avdd_3v.attr, -+ &dev_attr_reset.attr, -+ &dev_attr_power_lp_io_3v3.attr, -+ &dev_attr_power_pll_core_2v5.attr, -+ &dev_attr_power_sequence.attr, -+ NULL, /* power_core_1v5 */ -+ NULL, /* power_vdd_core_1v5 */ -+#endif -+ NULL /* terminating entry */ -+}; -+ -+static struct attribute_group gta01_gps_attr_group = { -+ .name = NULL, -+ .attrs = gta01_gps_sysfs_entries, -+}; -+ -+static struct attribute *gta02_gps_sysfs_entries[] = { -+ &dev_attr_pwron.attr, -+ NULL -+}; -+ -+static struct attribute_group gta02_gps_attr_group = { -+ .name = NULL, -+ .attrs = gta02_gps_sysfs_entries, -+}; -+ -+static int __init gta01_pm_gps_probe(struct platform_device *pdev) -+{ -+ if (machine_is_neo1973_gta01()) { -+ s3c2410_gpio_cfgpin(GTA01_GPIO_GPS_PWRON, S3C2410_GPIO_OUTPUT); -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ break; -+ case GTA01v4_SYSTEM_REV: -+ s3c2410_gpio_cfgpin(GTA01_GPIO_GPS_RESET, S3C2410_GPIO_OUTPUT); -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ s3c2410_gpio_cfgpin(GTA01_GPIO_GPS_EN_3V3, S3C2410_GPIO_OUTPUT); -+ /* fallthrough */ -+ case GTA01Bv2_SYSTEM_REV: -+ s3c2410_gpio_cfgpin(GTA01_GPIO_GPS_EN_2V8, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_cfgpin(GTA01_GPIO_GPS_EN_3V, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_cfgpin(GTA01_GPIO_GPS_RESET, S3C2410_GPIO_OUTPUT); -+ break; -+ default: -+ dev_warn(&pdev->dev, "Unknown GTA01 Revision 0x%x, " -+ "AGPS PM features not available!!!\n", -+ system_rev); -+ return -1; -+ break; -+ } -+ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ gps_power_sequence_down(); -+ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ gta01_gps_sysfs_entries[ARRAY_SIZE(gta01_gps_sysfs_entries)-3] = -+ &dev_attr_power_tcxo_2v8.attr; -+ break; -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ gta01_gps_sysfs_entries[ARRAY_SIZE(gta01_gps_sysfs_entries)-3] = -+ &dev_attr_power_core_1v5.attr; -+ gta01_gps_sysfs_entries[ARRAY_SIZE(gta01_gps_sysfs_entries)-2] = -+ &dev_attr_power_vdd_core_1v5.attr; -+ break; -+ } -+#endif -+ return sysfs_create_group(&pdev->dev.kobj, >a01_gps_attr_group); -+ } -+ -+ if (machine_is_neo1973_gta02()) { -+ switch (system_rev) { -+ case GTA02v2_SYSTEM_REV: -+ case GTA02v3_SYSTEM_REV: -+ case GTA02v4_SYSTEM_REV: -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ neo1973_gps.regulator = regulator_get( -+ &pdev->dev, "RF_3V"); -+ if (IS_ERR(neo1973_gps.regulator)) { -+ dev_err(&pdev->dev, "probe failed %d\n", -+ (int)neo1973_gps.regulator); -+ return (int)neo1973_gps.regulator; -+ } -+ -+ dev_info(&pdev->dev, "FIC Neo1973 GPS Power Management:" -+ "starting\n"); -+ break; -+ default: -+ dev_warn(&pdev->dev, "Unknown GTA02 Revision 0x%x, " -+ "AGPS PM features not available!!!\n", -+ system_rev); -+ return -1; -+ break; -+ } -+ return sysfs_create_group(&pdev->dev.kobj, >a02_gps_attr_group); -+ } -+ return -1; -+} -+ -+static int gta01_pm_gps_remove(struct platform_device *pdev) -+{ -+ if (machine_is_neo1973_gta01()) { -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ gps_power_sequence_down(); -+#endif -+ sysfs_remove_group(&pdev->dev.kobj, >a01_gps_attr_group); -+ } -+ -+ if (machine_is_neo1973_gta02()) { -+ regulator_put(neo1973_gps.regulator); -+ sysfs_remove_group(&pdev->dev.kobj, >a02_gps_attr_group); -+ } -+ return 0; -+} -+ -+static struct platform_driver gta01_pm_gps_driver = { -+ .probe = gta01_pm_gps_probe, -+ .remove = gta01_pm_gps_remove, -+ .suspend = gta01_pm_gps_suspend, -+ .resume = gta01_pm_gps_resume, -+ .driver = { -+ .name = "neo1973-pm-gps", -+ }, -+}; -+ -+static int __devinit gta01_pm_gps_init(void) -+{ -+ return platform_driver_register(>a01_pm_gps_driver); -+} -+ -+static void gta01_pm_gps_exit(void) -+{ -+ platform_driver_unregister(>a01_pm_gps_driver); -+} -+ -+module_init(gta01_pm_gps_init); -+module_exit(gta01_pm_gps_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("FIC Neo1973 GPS Power Management"); ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/neo1973_pm_gps.h -@@ -0,0 +1 @@ -+extern int neo1973_pm_gps_is_on(void); ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/neo1973_pm_gsm.c -@@ -0,0 +1,360 @@ -+/* -+ * GSM Management code for the FIC Neo1973 GSM Phone -+ * -+ * (C) 2007 by Openmoko Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+#include <linux/console.h> -+#include <linux/errno.h> -+#include <linux/interrupt.h> -+ -+#include <mach/gpio.h> -+#include <asm/mach-types.h> -+#include <mach/gta01.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+#include <mach/s3c24xx-serial.h> -+ -+#include <mach/hardware.h> -+ -+/* For GTA02 */ -+#include <mach/gta02.h> -+#include <linux/mfd/pcf50633/gpio.h> -+#include <mach/regs-gpio.h> -+#include <mach/regs-gpioj.h> -+ -+int gta_gsm_interrupts; -+EXPORT_SYMBOL(gta_gsm_interrupts); -+ -+extern void s3c24xx_serial_console_set_silence(int); -+ -+struct gta01pm_priv { -+ int gpio_ngsm_en; -+ int gpio_ndl_gsm; -+ -+ struct console *con; -+}; -+ -+static struct gta01pm_priv gta01_gsm; -+ -+static struct console *find_s3c24xx_console(void) -+{ -+ struct console *con; -+ -+ acquire_console_sem(); -+ -+ for (con = console_drivers; con; con = con->next) { -+ if (!strcmp(con->name, "ttySAC")) -+ break; -+ } -+ -+ release_console_sem(); -+ -+ return con; -+} -+ -+static ssize_t gsm_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ if (!strcmp(attr->attr.name, "power_on")) { -+ if (s3c2410_gpio_getpin(GTA01_GPIO_MODEM_ON)) -+ goto out_1; -+ } else if (!strcmp(attr->attr.name, "reset")) { -+ if (machine_is_neo1973_gta01() && s3c2410_gpio_getpin(GTA01_GPIO_MODEM_RST)) -+ goto out_1; -+ else if (machine_is_neo1973_gta02() && s3c2410_gpio_getpin(GTA02_GPIO_MODEM_RST)) -+ goto out_1; -+ } else if (!strcmp(attr->attr.name, "download")) { -+ if (machine_is_neo1973_gta01()) { -+ if (s3c2410_gpio_getpin(GTA01_GPIO_MODEM_DNLOAD)) -+ goto out_1; -+ } else if (machine_is_neo1973_gta02()) { -+ if (!s3c2410_gpio_getpin(GTA02_GPIO_nDL_GSM)) -+ goto out_1; -+ } -+ } else if (!strcmp(attr->attr.name, "flowcontrolled")) { -+ if (s3c2410_gpio_getcfg(S3C2410_GPH1) == S3C2410_GPIO_OUTPUT) -+ goto out_1; -+ } -+ -+ return strlcpy(buf, "0\n", 3); -+out_1: -+ return strlcpy(buf, "1\n", 3); -+} -+ -+static ssize_t gsm_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ unsigned long on = simple_strtoul(buf, NULL, 10); -+ -+ if (!strcmp(attr->attr.name, "power_on")) { -+ if (on) { -+ if (gta01_gsm.con) { -+ dev_dbg(dev, "powering up GSM, thus " -+ "disconnecting serial console\n"); -+ -+ console_stop(gta01_gsm.con); -+ s3c24xx_serial_console_set_silence(1); -+ } -+ -+ if (gta01_gsm.gpio_ngsm_en) -+ s3c2410_gpio_setpin(gta01_gsm.gpio_ngsm_en, 0); -+ -+ if (machine_is_neo1973_gta02()) { -+ switch (system_rev) { -+ case GTA02v2_SYSTEM_REV: -+ case GTA02v3_SYSTEM_REV: -+ case GTA02v4_SYSTEM_REV: -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ pcf50633_gpio_set(gta02_pcf_pdata.pcf, -+ PCF50633_GPIO2, 1); -+ break; -+ } -+ } -+ -+ neo1973_gpb_setpin(GTA01_GPIO_MODEM_ON, 1); -+ } else { -+ neo1973_gpb_setpin(GTA01_GPIO_MODEM_ON, 0); -+ -+ if (machine_is_neo1973_gta02()) { -+ switch (system_rev) { -+ case GTA02v2_SYSTEM_REV: -+ case GTA02v3_SYSTEM_REV: -+ case GTA02v4_SYSTEM_REV: -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ pcf50633_gpio_set(gta02_pcf_pdata.pcf, -+ PCF50633_GPIO2, 0); -+ break; -+ } -+ } -+ -+ if (gta01_gsm.gpio_ngsm_en) -+ s3c2410_gpio_setpin(gta01_gsm.gpio_ngsm_en, 1); -+ -+ if (gta01_gsm.con) { -+ s3c24xx_serial_console_set_silence(0); -+ console_start(gta01_gsm.con); -+ -+ dev_dbg(dev, "powered down GSM, thus enabling " -+ "serial console\n"); -+ } -+ } -+ } else if (!strcmp(attr->attr.name, "reset")) { -+ if (machine_is_neo1973_gta01()) -+ neo1973_gpb_setpin(GTA01_GPIO_MODEM_RST, on); -+ else if (machine_is_neo1973_gta02()) -+ neo1973_gpb_setpin(GTA02_GPIO_MODEM_RST, on); -+ } else if (!strcmp(attr->attr.name, "download")) { -+ if (machine_is_neo1973_gta01()) -+ s3c2410_gpio_setpin(GTA01_GPIO_MODEM_DNLOAD, on); -+ -+ if (machine_is_neo1973_gta02()) { -+ /* -+ * the keyboard / buttons driver requests and enables -+ * the JACK_INSERT IRQ. We have to take care about -+ * not enabling and disabling the IRQ when it was -+ * already in that state or we get "unblanaced IRQ" -+ * kernel warnings and stack dumps. So we use the -+ * copy of the ndl_gsm state to figure out if we should -+ * enable or disable the jack interrupt -+ */ -+ if (on) { -+ if (gta01_gsm.gpio_ndl_gsm) -+ disable_irq(gpio_to_irq( -+ GTA02_GPIO_JACK_INSERT)); -+ } else { -+ if (!gta01_gsm.gpio_ndl_gsm) -+ enable_irq(gpio_to_irq( -+ GTA02_GPIO_JACK_INSERT)); -+ } -+ -+ gta01_gsm.gpio_ndl_gsm = !on; -+ s3c2410_gpio_setpin(GTA02_GPIO_nDL_GSM, !on); -+ } -+ } else if (!strcmp(attr->attr.name, "flowcontrolled")) { -+ if (on) { -+ gta_gsm_interrupts = 0; -+ s3c2410_gpio_setpin(S3C2410_GPH1, 1); -+ s3c2410_gpio_cfgpin(S3C2410_GPH1, S3C2410_GPH1_OUTP); -+ } else -+ s3c2410_gpio_cfgpin(S3C2410_GPH1, S3C2410_GPH1_nRTS0); -+ } -+ -+ return count; -+} -+ -+static DEVICE_ATTR(power_on, 0644, gsm_read, gsm_write); -+static DEVICE_ATTR(reset, 0644, gsm_read, gsm_write); -+static DEVICE_ATTR(download, 0644, gsm_read, gsm_write); -+static DEVICE_ATTR(flowcontrolled, 0644, gsm_read, gsm_write); -+ -+#ifdef CONFIG_PM -+ -+static int gta01_gsm_resume(struct platform_device *pdev); -+static int gta01_gsm_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ /* GPIO state is saved/restored by S3C2410 core GPIO driver, so we -+ * don't need to do much here. */ -+ -+ /* If flowcontrol asserted, abort if GSM already interrupted */ -+ if (s3c2410_gpio_getcfg(S3C2410_GPH1) == S3C2410_GPIO_OUTPUT) { -+ if (gta_gsm_interrupts) -+ goto busy; -+ } -+ -+ /* disable DL GSM to prevent jack_insert becoming 'floating' */ -+ if (machine_is_neo1973_gta02()) -+ s3c2410_gpio_setpin(GTA02_GPIO_nDL_GSM, 1); -+ return 0; -+ -+busy: -+ return -EBUSY; -+} -+ -+static int -+gta01_gsm_suspend_late(struct platform_device *pdev, pm_message_t state) -+{ -+ /* Last chance: abort if GSM already interrupted */ -+ if (s3c2410_gpio_getcfg(S3C2410_GPH1) == S3C2410_GPIO_OUTPUT) { -+ if (gta_gsm_interrupts) -+ return -EBUSY; -+ } -+ return 0; -+} -+ -+static int gta01_gsm_resume(struct platform_device *pdev) -+{ -+ /* GPIO state is saved/restored by S3C2410 core GPIO driver, so we -+ * don't need to do much here. */ -+ -+ /* Make sure that the kernel console on the serial port is still -+ * disabled. FIXME: resume ordering race with serial driver! */ -+ if (gta01_gsm.con && s3c2410_gpio_getpin(GTA01_GPIO_MODEM_ON)) -+ console_stop(gta01_gsm.con); -+ -+ if (machine_is_neo1973_gta02()) -+ s3c2410_gpio_setpin(GTA02_GPIO_nDL_GSM, gta01_gsm.gpio_ndl_gsm); -+ -+ return 0; -+} -+#else -+#define gta01_gsm_suspend NULL -+#define gta01_gsm_suspend_late NULL -+#define gta01_gsm_resume NULL -+#endif /* CONFIG_PM */ -+ -+static struct attribute *gta01_gsm_sysfs_entries[] = { -+ &dev_attr_power_on.attr, -+ &dev_attr_reset.attr, -+ &dev_attr_download.attr, -+ &dev_attr_flowcontrolled.attr, -+ NULL -+}; -+ -+static struct attribute_group gta01_gsm_attr_group = { -+ .name = NULL, -+ .attrs = gta01_gsm_sysfs_entries, -+}; -+ -+static int __init gta01_gsm_probe(struct platform_device *pdev) -+{ -+ switch (system_rev) { -+ case GTA01v3_SYSTEM_REV: -+ gta01_gsm.gpio_ngsm_en = GTA01v3_GPIO_nGSM_EN; -+ break; -+ case GTA01v4_SYSTEM_REV: -+ gta01_gsm.gpio_ngsm_en = 0; -+ break; -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ gta01_gsm.gpio_ngsm_en = GTA01Bv2_GPIO_nGSM_EN; -+ s3c2410_gpio_setpin(GTA01v3_GPIO_nGSM_EN, 0); -+ break; -+ case GTA02v1_SYSTEM_REV: -+ case GTA02v2_SYSTEM_REV: -+ case GTA02v3_SYSTEM_REV: -+ case GTA02v4_SYSTEM_REV: -+ case GTA02v5_SYSTEM_REV: -+ case GTA02v6_SYSTEM_REV: -+ gta01_gsm.gpio_ngsm_en = 0; -+ break; -+ default: -+ dev_warn(&pdev->dev, "Unknown Neo1973 Revision 0x%x, " -+ "some PM features not available!!!\n", -+ system_rev); -+ break; -+ } -+ -+ switch (system_rev) { -+ case GTA01v4_SYSTEM_REV: -+ case GTA01Bv2_SYSTEM_REV: -+ gta01_gsm_sysfs_entries[ARRAY_SIZE(gta01_gsm_sysfs_entries)-2] = -+ &dev_attr_download.attr; -+ break; -+ default: -+ break; -+ } -+ -+ if (machine_is_neo1973_gta01()) { -+ gta01_gsm.con = find_s3c24xx_console(); -+ if (!gta01_gsm.con) -+ dev_warn(&pdev->dev, -+ "cannot find S3C24xx console driver\n"); -+ } else -+ gta01_gsm.con = NULL; -+ -+ /* note that download initially disabled, and enforce that */ -+ gta01_gsm.gpio_ndl_gsm = 1; -+ if (machine_is_neo1973_gta02()) -+ s3c2410_gpio_setpin(GTA02_GPIO_nDL_GSM, 1); -+ -+ return sysfs_create_group(&pdev->dev.kobj, >a01_gsm_attr_group); -+} -+ -+static int gta01_gsm_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, >a01_gsm_attr_group); -+ -+ return 0; -+} -+ -+static struct platform_driver gta01_gsm_driver = { -+ .probe = gta01_gsm_probe, -+ .remove = gta01_gsm_remove, -+ .suspend = gta01_gsm_suspend, -+ .suspend_late = gta01_gsm_suspend_late, -+ .resume = gta01_gsm_resume, -+ .driver = { -+ .name = "neo1973-pm-gsm", -+ }, -+}; -+ -+static int __devinit gta01_gsm_init(void) -+{ -+ return platform_driver_register(>a01_gsm_driver); -+} -+ -+static void gta01_gsm_exit(void) -+{ -+ platform_driver_unregister(>a01_gsm_driver); -+} -+ -+module_init(gta01_gsm_init); -+module_exit(gta01_gsm_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("FIC Neo1973 GSM Power Management"); ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/neo1973_shadow.c -@@ -0,0 +1,88 @@ -+/* -+ * include/asm-arm/plat-s3c24xx/neo1973.h -+ * -+ * Common utility code for GTA01 and GTA02 -+ * -+ * Copyright (C) 2008 by Openmoko, Inc. -+ * Author: Holger Hans Peter Freyther <freyther@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/io.h> -+#include <linux/irq.h> -+ -+#include <asm/gpio.h> -+#include <mach/regs-gpio.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+ -+/** -+ * Shadow GPIO bank B handling. For the LEDs we need to keep track of the state -+ * in software. The s3c2410_gpio_setpin must not be used for GPIOs on bank B -+ */ -+static unsigned long gpb_mask; -+static unsigned long gpb_state; -+ -+void neo1973_gpb_add_shadow_gpio(unsigned int gpio) -+{ -+ unsigned long offset = S3C2410_GPIO_OFFSET(gpio); -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ gpb_mask |= 1L << offset; -+ local_irq_restore(flags); -+} -+EXPORT_SYMBOL(neo1973_gpb_add_shadow_gpio); -+ -+static void set_shadow_gpio(unsigned long offset, unsigned int value) -+{ -+ unsigned long state = value != 0; -+ -+ gpb_state &= ~(1L << offset); -+ gpb_state |= state << offset; -+} -+ -+void neo1973_gpb_setpin(unsigned int pin, unsigned to) -+{ -+ void __iomem *base = S3C24XX_GPIO_BASE(S3C2410_GPB0); -+ unsigned long offset = S3C2410_GPIO_OFFSET(pin); -+ unsigned long flags; -+ unsigned long dat; -+ -+ BUG_ON(base != S3C24XX_GPIO_BASE(pin)); -+ -+ local_irq_save(flags); -+ dat = __raw_readl(base + 0x04); -+ -+ /* Add the shadow values */ -+ dat &= ~gpb_mask; -+ dat |= gpb_state; -+ -+ /* Do the operation like s3c2410_gpio_setpin */ -+ dat &= ~(1L << offset); -+ dat |= to << offset; -+ -+ /* Update the shadow state */ -+ if ((1L << offset) & gpb_mask) -+ set_shadow_gpio(offset, to); -+ -+ __raw_writel(dat, base + 0x04); -+ local_irq_restore(flags); -+} -+EXPORT_SYMBOL(neo1973_gpb_setpin); ---- a/arch/arm/plat-s3c24xx/pm.c -+++ b/arch/arm/plat-s3c24xx/pm.c -@@ -31,14 +31,9 @@ - #include <linux/errno.h> - #include <linux/time.h> - #include <linux/interrupt.h> --#include <linux/crc32.h> --#include <linux/ioport.h> --#include <linux/delay.h> - #include <linux/serial_core.h> - #include <linux/io.h> -- --#include <asm/cacheflush.h> --#include <mach/hardware.h> -+#include <linux/regulator/machine.h> - - #include <plat/regs-serial.h> - #include <mach/regs-clock.h> -@@ -50,10 +45,6 @@ - - #include <plat/pm.h> - --/* for external use */ -- --unsigned long s3c_pm_flags; -- - #define PFX "s3c24xx-pm: " - - static struct sleep_save core_save[] = { -@@ -76,371 +67,26 @@ static struct sleep_save core_save[] = { - SAVE_ITEM(S3C2410_BANKCON4), - SAVE_ITEM(S3C2410_BANKCON5), - -+#ifndef CONFIG_CPU_FREQ - SAVE_ITEM(S3C2410_CLKDIVN), - SAVE_ITEM(S3C2410_MPLLCON), -+ SAVE_ITEM(S3C2410_REFRESH), -+#endif - SAVE_ITEM(S3C2410_UPLLCON), - SAVE_ITEM(S3C2410_CLKSLOW), -- SAVE_ITEM(S3C2410_REFRESH), --}; -- --static struct gpio_sleep { -- void __iomem *base; -- unsigned int gpcon; -- unsigned int gpdat; -- unsigned int gpup; --} gpio_save[] = { -- [0] = { -- .base = S3C2410_GPACON, -- }, -- [1] = { -- .base = S3C2410_GPBCON, -- }, -- [2] = { -- .base = S3C2410_GPCCON, -- }, -- [3] = { -- .base = S3C2410_GPDCON, -- }, -- [4] = { -- .base = S3C2410_GPECON, -- }, -- [5] = { -- .base = S3C2410_GPFCON, -- }, -- [6] = { -- .base = S3C2410_GPGCON, -- }, -- [7] = { -- .base = S3C2410_GPHCON, -- }, - }; - - static struct sleep_save misc_save[] = { - SAVE_ITEM(S3C2410_DCLKCON), - }; - --#ifdef CONFIG_S3C2410_PM_DEBUG -- --#define SAVE_UART(va) \ -- SAVE_ITEM((va) + S3C2410_ULCON), \ -- SAVE_ITEM((va) + S3C2410_UCON), \ -- SAVE_ITEM((va) + S3C2410_UFCON), \ -- SAVE_ITEM((va) + S3C2410_UMCON), \ -- SAVE_ITEM((va) + S3C2410_UBRDIV) -- --static struct sleep_save uart_save[] = { -- SAVE_UART(S3C24XX_VA_UART0), -- SAVE_UART(S3C24XX_VA_UART1), --#ifndef CONFIG_CPU_S3C2400 -- SAVE_UART(S3C24XX_VA_UART2), --#endif --}; -- --/* debug -- * -- * we send the debug to printascii() to allow it to be seen if the -- * system never wakes up from the sleep --*/ -- --extern void printascii(const char *); -- --void pm_dbg(const char *fmt, ...) --{ -- va_list va; -- char buff[256]; -- -- va_start(va, fmt); -- vsprintf(buff, fmt, va); -- va_end(va); -- -- printascii(buff); --} -- --static void s3c2410_pm_debug_init(void) --{ -- unsigned long tmp = __raw_readl(S3C2410_CLKCON); -- -- /* re-start uart clocks */ -- tmp |= S3C2410_CLKCON_UART0; -- tmp |= S3C2410_CLKCON_UART1; -- tmp |= S3C2410_CLKCON_UART2; -- -- __raw_writel(tmp, S3C2410_CLKCON); -- udelay(10); --} -- --#define DBG(fmt...) pm_dbg(fmt) --#else --#define DBG(fmt...) printk(KERN_DEBUG fmt) -- --#define s3c2410_pm_debug_init() do { } while(0) -- --static struct sleep_save uart_save[] = {}; --#endif -- --#if defined(CONFIG_S3C2410_PM_CHECK) && CONFIG_S3C2410_PM_CHECK_CHUNKSIZE != 0 -- --/* suspend checking code... -- * -- * this next area does a set of crc checks over all the installed -- * memory, so the system can verify if the resume was ok. -- * -- * CONFIG_S3C2410_PM_CHECK_CHUNKSIZE defines the block-size for the CRC, -- * increasing it will mean that the area corrupted will be less easy to spot, -- * and reducing the size will cause the CRC save area to grow --*/ -- --#define CHECK_CHUNKSIZE (CONFIG_S3C2410_PM_CHECK_CHUNKSIZE * 1024) -- --static u32 crc_size; /* size needed for the crc block */ --static u32 *crcs; /* allocated over suspend/resume */ -- --typedef u32 *(run_fn_t)(struct resource *ptr, u32 *arg); -- --/* s3c2410_pm_run_res -- * -- * go thorugh the given resource list, and look for system ram --*/ -- --static void s3c2410_pm_run_res(struct resource *ptr, run_fn_t fn, u32 *arg) --{ -- while (ptr != NULL) { -- if (ptr->child != NULL) -- s3c2410_pm_run_res(ptr->child, fn, arg); -- -- if ((ptr->flags & IORESOURCE_MEM) && -- strcmp(ptr->name, "System RAM") == 0) { -- DBG("Found system RAM at %08lx..%08lx\n", -- ptr->start, ptr->end); -- arg = (fn)(ptr, arg); -- } -- -- ptr = ptr->sibling; -- } --} -- --static void s3c2410_pm_run_sysram(run_fn_t fn, u32 *arg) --{ -- s3c2410_pm_run_res(&iomem_resource, fn, arg); --} -- --static u32 *s3c2410_pm_countram(struct resource *res, u32 *val) --{ -- u32 size = (u32)(res->end - res->start)+1; -- -- size += CHECK_CHUNKSIZE-1; -- size /= CHECK_CHUNKSIZE; -- -- DBG("Area %08lx..%08lx, %d blocks\n", res->start, res->end, size); -- -- *val += size * sizeof(u32); -- return val; --} -- --/* s3c2410_pm_prepare_check -- * -- * prepare the necessary information for creating the CRCs. This -- * must be done before the final save, as it will require memory -- * allocating, and thus touching bits of the kernel we do not -- * know about. --*/ -- --static void s3c2410_pm_check_prepare(void) --{ -- crc_size = 0; -- -- s3c2410_pm_run_sysram(s3c2410_pm_countram, &crc_size); -- -- DBG("s3c2410_pm_prepare_check: %u checks needed\n", crc_size); -- -- crcs = kmalloc(crc_size+4, GFP_KERNEL); -- if (crcs == NULL) -- printk(KERN_ERR "Cannot allocated CRC save area\n"); --} -- --static u32 *s3c2410_pm_makecheck(struct resource *res, u32 *val) --{ -- unsigned long addr, left; -- -- for (addr = res->start; addr < res->end; -- addr += CHECK_CHUNKSIZE) { -- left = res->end - addr; -- -- if (left > CHECK_CHUNKSIZE) -- left = CHECK_CHUNKSIZE; -- -- *val = crc32_le(~0, phys_to_virt(addr), left); -- val++; -- } -- -- return val; --} -- --/* s3c2410_pm_check_store -- * -- * compute the CRC values for the memory blocks before the final -- * sleep. --*/ -- --static void s3c2410_pm_check_store(void) --{ -- if (crcs != NULL) -- s3c2410_pm_run_sysram(s3c2410_pm_makecheck, crcs); --} -- --/* in_region -- * -- * return TRUE if the area defined by ptr..ptr+size contatins the -- * what..what+whatsz --*/ -- --static inline int in_region(void *ptr, int size, void *what, size_t whatsz) --{ -- if ((what+whatsz) < ptr) -- return 0; -- -- if (what > (ptr+size)) -- return 0; -- -- return 1; --} -- --static u32 *s3c2410_pm_runcheck(struct resource *res, u32 *val) --{ -- void *save_at = phys_to_virt(s3c2410_sleep_save_phys); -- unsigned long addr; -- unsigned long left; -- void *ptr; -- u32 calc; -- -- for (addr = res->start; addr < res->end; -- addr += CHECK_CHUNKSIZE) { -- left = res->end - addr; -- -- if (left > CHECK_CHUNKSIZE) -- left = CHECK_CHUNKSIZE; -- -- ptr = phys_to_virt(addr); -- -- if (in_region(ptr, left, crcs, crc_size)) { -- DBG("skipping %08lx, has crc block in\n", addr); -- goto skip_check; -- } -- -- if (in_region(ptr, left, save_at, 32*4 )) { -- DBG("skipping %08lx, has save block in\n", addr); -- goto skip_check; -- } -- -- /* calculate and check the checksum */ -- -- calc = crc32_le(~0, ptr, left); -- if (calc != *val) { -- printk(KERN_ERR PFX "Restore CRC error at " -- "%08lx (%08x vs %08x)\n", addr, calc, *val); -- -- DBG("Restore CRC error at %08lx (%08x vs %08x)\n", -- addr, calc, *val); -- } -- -- skip_check: -- val++; -- } -- -- return val; --} -- --/* s3c2410_pm_check_restore -- * -- * check the CRCs after the restore event and free the memory used -- * to hold them --*/ -- --static void s3c2410_pm_check_restore(void) --{ -- if (crcs != NULL) { -- s3c2410_pm_run_sysram(s3c2410_pm_runcheck, crcs); -- kfree(crcs); -- crcs = NULL; -- } --} -- --#else -- --#define s3c2410_pm_check_prepare() do { } while(0) --#define s3c2410_pm_check_restore() do { } while(0) --#define s3c2410_pm_check_store() do { } while(0) --#endif -- --/* helper functions to save and restore register state */ -- --void s3c2410_pm_do_save(struct sleep_save *ptr, int count) --{ -- for (; count > 0; count--, ptr++) { -- ptr->val = __raw_readl(ptr->reg); -- DBG("saved %p value %08lx\n", ptr->reg, ptr->val); -- } --} -- --/* s3c2410_pm_do_restore -- * -- * restore the system from the given list of saved registers -- * -- * Note, we do not use DBG() in here, as the system may not have -- * restore the UARTs state yet --*/ -- --void s3c2410_pm_do_restore(struct sleep_save *ptr, int count) --{ -- for (; count > 0; count--, ptr++) { -- printk(KERN_DEBUG "restore %p (restore %08lx, was %08x)\n", -- ptr->reg, ptr->val, __raw_readl(ptr->reg)); -- -- __raw_writel(ptr->val, ptr->reg); -- } --} -- --/* s3c2410_pm_do_restore_core -- * -- * similar to s3c2410_pm_do_restore_core -- * -- * WARNING: Do not put any debug in here that may effect memory or use -- * peripherals, as things may be changing! --*/ -- --static void s3c2410_pm_do_restore_core(struct sleep_save *ptr, int count) --{ -- for (; count > 0; count--, ptr++) { -- __raw_writel(ptr->val, ptr->reg); -- } --} -- --/* s3c2410_pm_show_resume_irqs -- * -- * print any IRQs asserted at resume time (ie, we woke from) --*/ -- --static void s3c2410_pm_show_resume_irqs(int start, unsigned long which, -- unsigned long mask) --{ -- int i; -- -- which &= ~mask; -- -- for (i = 0; i <= 31; i++) { -- if ((which) & (1L<<i)) { -- DBG("IRQ %d asserted at resume\n", start+i); -- } -- } --} -- --/* s3c2410_pm_check_resume_pin -+/* s3c_pm_check_resume_pin - * - * check to see if the pin is configured correctly for sleep mode, and - * make any necessary adjustments if it is not - */ - --static void s3c2410_pm_check_resume_pin(unsigned int pin, unsigned int irqoffs) -+static void s3c_pm_check_resume_pin(unsigned int pin, unsigned int irqoffs) - { - unsigned long irqstate; - unsigned long pinstate; -@@ -455,21 +101,21 @@ static void s3c2410_pm_check_resume_pin( - - if (!irqstate) { - if (pinstate == S3C2410_GPIO_IRQ) -- DBG("Leaving IRQ %d (pin %d) enabled\n", irq, pin); -+ S3C_PMDBG("Leaving IRQ %d (pin %d) enabled\n", irq, pin); - } else { - if (pinstate == S3C2410_GPIO_IRQ) { -- DBG("Disabling IRQ %d (pin %d)\n", irq, pin); -+ S3C_PMDBG("Disabling IRQ %d (pin %d)\n", irq, pin); - s3c2410_gpio_cfgpin(pin, S3C2410_GPIO_INPUT); - } - } - } - --/* s3c2410_pm_configure_extint -+/* s3c_pm_configure_extint - * - * configure all external interrupt pins - */ - --static void s3c2410_pm_configure_extint(void) -+void s3c_pm_configure_extint(void) - { - int pin; - -@@ -479,336 +125,24 @@ static void s3c2410_pm_configure_extint( - */ - - for (pin = S3C2410_GPF0; pin <= S3C2410_GPF7; pin++) { -- s3c2410_pm_check_resume_pin(pin, pin - S3C2410_GPF0); -+ s3c_pm_check_resume_pin(pin, pin - S3C2410_GPF0); - } - - for (pin = S3C2410_GPG0; pin <= S3C2410_GPG7; pin++) { -- s3c2410_pm_check_resume_pin(pin, (pin - S3C2410_GPG0)+8); -+ s3c_pm_check_resume_pin(pin, (pin - S3C2410_GPG0)+8); - } - } - --/* offsets for CON/DAT/UP registers */ -- --#define OFFS_CON (S3C2410_GPACON - S3C2410_GPACON) --#define OFFS_DAT (S3C2410_GPADAT - S3C2410_GPACON) --#define OFFS_UP (S3C2410_GPBUP - S3C2410_GPBCON) -- --/* s3c2410_pm_save_gpios() -- * -- * Save the state of the GPIOs -- */ - --static void s3c2410_pm_save_gpios(void) -+void s3c_pm_restore_core(void) - { -- struct gpio_sleep *gps = gpio_save; -- unsigned int gpio; -- -- for (gpio = 0; gpio < ARRAY_SIZE(gpio_save); gpio++, gps++) { -- void __iomem *base = gps->base; -- -- gps->gpcon = __raw_readl(base + OFFS_CON); -- gps->gpdat = __raw_readl(base + OFFS_DAT); -- -- if (gpio > 0) -- gps->gpup = __raw_readl(base + OFFS_UP); -- -- } --} -- --/* Test whether the given masked+shifted bits of an GPIO configuration -- * are one of the SFN (special function) modes. */ -- --static inline int is_sfn(unsigned long con) --{ -- return (con == 2 || con == 3); --} -- --/* Test if the given masked+shifted GPIO configuration is an input */ -- --static inline int is_in(unsigned long con) --{ -- return con == 0; --} -- --/* Test if the given masked+shifted GPIO configuration is an output */ -- --static inline int is_out(unsigned long con) --{ -- return con == 1; -+ s3c_pm_do_restore_core(core_save, ARRAY_SIZE(core_save)); -+ s3c_pm_do_restore(misc_save, ARRAY_SIZE(misc_save)); - } - --/* s3c2410_pm_restore_gpio() -- * -- * Restore one of the GPIO banks that was saved during suspend. This is -- * not as simple as once thought, due to the possibility of glitches -- * from the order that the CON and DAT registers are set in. -- * -- * The three states the pin can be are {IN,OUT,SFN} which gives us 9 -- * combinations of changes to check. Three of these, if the pin stays -- * in the same configuration can be discounted. This leaves us with -- * the following: -- * -- * { IN => OUT } Change DAT first -- * { IN => SFN } Change CON first -- * { OUT => SFN } Change CON first, so new data will not glitch -- * { OUT => IN } Change CON first, so new data will not glitch -- * { SFN => IN } Change CON first -- * { SFN => OUT } Change DAT first, so new data will not glitch [1] -- * -- * We do not currently deal with the UP registers as these control -- * weak resistors, so a small delay in change should not need to bring -- * these into the calculations. -- * -- * [1] this assumes that writing to a pin DAT whilst in SFN will set the -- * state for when it is next output. -- */ -- --static void s3c2410_pm_restore_gpio(int index, struct gpio_sleep *gps) -+void s3c_pm_save_core(void) - { -- void __iomem *base = gps->base; -- unsigned long gps_gpcon = gps->gpcon; -- unsigned long gps_gpdat = gps->gpdat; -- unsigned long old_gpcon; -- unsigned long old_gpdat; -- unsigned long old_gpup = 0x0; -- unsigned long gpcon; -- int nr; -- -- old_gpcon = __raw_readl(base + OFFS_CON); -- old_gpdat = __raw_readl(base + OFFS_DAT); -- -- if (base == S3C2410_GPACON) { -- /* GPACON only has one bit per control / data and no PULLUPs. -- * GPACON[x] = 0 => Output, 1 => SFN */ -- -- /* first set all SFN bits to SFN */ -- -- gpcon = old_gpcon | gps->gpcon; -- __raw_writel(gpcon, base + OFFS_CON); -- -- /* now set all the other bits */ -- -- __raw_writel(gps_gpdat, base + OFFS_DAT); -- __raw_writel(gps_gpcon, base + OFFS_CON); -- } else { -- unsigned long old, new, mask; -- unsigned long change_mask = 0x0; -- -- old_gpup = __raw_readl(base + OFFS_UP); -- -- /* Create a change_mask of all the items that need to have -- * their CON value changed before their DAT value, so that -- * we minimise the work between the two settings. -- */ -- -- for (nr = 0, mask = 0x03; nr < 32; nr += 2, mask <<= 2) { -- old = (old_gpcon & mask) >> nr; -- new = (gps_gpcon & mask) >> nr; -- -- /* If there is no change, then skip */ -- -- if (old == new) -- continue; -- -- /* If both are special function, then skip */ -- -- if (is_sfn(old) && is_sfn(new)) -- continue; -- -- /* Change is IN => OUT, do not change now */ -- -- if (is_in(old) && is_out(new)) -- continue; -- -- /* Change is SFN => OUT, do not change now */ -- -- if (is_sfn(old) && is_out(new)) -- continue; -- -- /* We should now be at the case of IN=>SFN, -- * OUT=>SFN, OUT=>IN, SFN=>IN. */ -- -- change_mask |= mask; -- } -- -- /* Write the new CON settings */ -- -- gpcon = old_gpcon & ~change_mask; -- gpcon |= gps_gpcon & change_mask; -- -- __raw_writel(gpcon, base + OFFS_CON); -- -- /* Now change any items that require DAT,CON */ -- -- __raw_writel(gps_gpdat, base + OFFS_DAT); -- __raw_writel(gps_gpcon, base + OFFS_CON); -- __raw_writel(gps->gpup, base + OFFS_UP); -- } -- -- DBG("GPIO[%d] CON %08lx => %08lx, DAT %08lx => %08lx\n", -- index, old_gpcon, gps_gpcon, old_gpdat, gps_gpdat); -+ s3c_pm_do_save(misc_save, ARRAY_SIZE(misc_save)); -+ s3c_pm_do_save(core_save, ARRAY_SIZE(core_save)); - } - -- --/** s3c2410_pm_restore_gpios() -- * -- * Restore the state of the GPIOs -- */ -- --static void s3c2410_pm_restore_gpios(void) --{ -- struct gpio_sleep *gps = gpio_save; -- int gpio; -- -- for (gpio = 0; gpio < ARRAY_SIZE(gpio_save); gpio++, gps++) { -- s3c2410_pm_restore_gpio(gpio, gps); -- } --} -- --void (*pm_cpu_prep)(void); --void (*pm_cpu_sleep)(void); -- --#define any_allowed(mask, allow) (((mask) & (allow)) != (allow)) -- --/* s3c2410_pm_enter -- * -- * central control for sleep/resume process --*/ -- --static int s3c2410_pm_enter(suspend_state_t state) --{ -- unsigned long regs_save[16]; -- -- /* ensure the debug is initialised (if enabled) */ -- -- s3c2410_pm_debug_init(); -- -- DBG("s3c2410_pm_enter(%d)\n", state); -- -- if (pm_cpu_prep == NULL || pm_cpu_sleep == NULL) { -- printk(KERN_ERR PFX "error: no cpu sleep functions set\n"); -- return -EINVAL; -- } -- -- /* check if we have anything to wake-up with... bad things seem -- * to happen if you suspend with no wakeup (system will often -- * require a full power-cycle) -- */ -- -- if (!any_allowed(s3c_irqwake_intmask, s3c_irqwake_intallow) && -- !any_allowed(s3c_irqwake_eintmask, s3c_irqwake_eintallow)) { -- printk(KERN_ERR PFX "No sources enabled for wake-up!\n"); -- printk(KERN_ERR PFX "Aborting sleep\n"); -- return -EINVAL; -- } -- -- /* prepare check area if configured */ -- -- s3c2410_pm_check_prepare(); -- -- /* store the physical address of the register recovery block */ -- -- s3c2410_sleep_save_phys = virt_to_phys(regs_save); -- -- DBG("s3c2410_sleep_save_phys=0x%08lx\n", s3c2410_sleep_save_phys); -- -- /* save all necessary core registers not covered by the drivers */ -- -- s3c2410_pm_save_gpios(); -- s3c2410_pm_do_save(misc_save, ARRAY_SIZE(misc_save)); -- s3c2410_pm_do_save(core_save, ARRAY_SIZE(core_save)); -- s3c2410_pm_do_save(uart_save, ARRAY_SIZE(uart_save)); -- -- /* set the irq configuration for wake */ -- -- s3c2410_pm_configure_extint(); -- -- DBG("sleep: irq wakeup masks: %08lx,%08lx\n", -- s3c_irqwake_intmask, s3c_irqwake_eintmask); -- -- __raw_writel(s3c_irqwake_intmask, S3C2410_INTMSK); -- __raw_writel(s3c_irqwake_eintmask, S3C2410_EINTMASK); -- -- /* ack any outstanding external interrupts before we go to sleep */ -- -- __raw_writel(__raw_readl(S3C2410_EINTPEND), S3C2410_EINTPEND); -- __raw_writel(__raw_readl(S3C2410_INTPND), S3C2410_INTPND); -- __raw_writel(__raw_readl(S3C2410_SRCPND), S3C2410_SRCPND); -- -- /* call cpu specific preparation */ -- -- pm_cpu_prep(); -- -- /* flush cache back to ram */ -- -- flush_cache_all(); -- -- s3c2410_pm_check_store(); -- -- /* send the cpu to sleep... */ -- -- __raw_writel(0x00, S3C2410_CLKCON); /* turn off clocks over sleep */ -- -- /* s3c2410_cpu_save will also act as our return point from when -- * we resume as it saves its own register state, so use the return -- * code to differentiate return from save and return from sleep */ -- -- if (s3c2410_cpu_save(regs_save) == 0) { -- flush_cache_all(); -- pm_cpu_sleep(); -- } -- -- /* restore the cpu state */ -- -- cpu_init(); -- -- /* restore the system state */ -- -- s3c2410_pm_do_restore_core(core_save, ARRAY_SIZE(core_save)); -- s3c2410_pm_do_restore(misc_save, ARRAY_SIZE(misc_save)); -- s3c2410_pm_do_restore(uart_save, ARRAY_SIZE(uart_save)); -- s3c2410_pm_restore_gpios(); -- -- s3c2410_pm_debug_init(); -- -- /* check what irq (if any) restored the system */ -- -- DBG("post sleep: IRQs 0x%08x, 0x%08x\n", -- __raw_readl(S3C2410_SRCPND), -- __raw_readl(S3C2410_EINTPEND)); -- -- s3c2410_pm_show_resume_irqs(IRQ_EINT0, __raw_readl(S3C2410_SRCPND), -- s3c_irqwake_intmask); -- -- s3c2410_pm_show_resume_irqs(IRQ_EINT4-4, __raw_readl(S3C2410_EINTPEND), -- s3c_irqwake_eintmask); -- -- DBG("post sleep, preparing to return\n"); -- -- s3c2410_pm_check_restore(); -- -- /* ok, let's return from sleep */ -- -- DBG("S3C2410 PM Resume (post-restore)\n"); -- return 0; --} -- --static struct platform_suspend_ops s3c2410_pm_ops = { -- .enter = s3c2410_pm_enter, -- .valid = suspend_valid_only_mem, --}; -- --/* s3c2410_pm_init -- * -- * Attach the power management functions. This should be called -- * from the board specific initialisation if the board supports -- * it. --*/ -- --int __init s3c2410_pm_init(void) --{ -- printk("S3C2410 Power Management, (c) 2004 Simtec Electronics\n"); -- -- suspend_set_ops(&s3c2410_pm_ops); -- return 0; --} ---- a/arch/arm/plat-s3c24xx/pm-simtec.c -+++ b/arch/arm/plat-s3c24xx/pm-simtec.c -@@ -61,7 +61,7 @@ static __init int pm_simtec_init(void) - - __raw_writel(gstatus4, S3C2410_GSTATUS4); - -- return s3c2410_pm_init(); -+ return s3c_pm_init(); - } - - arch_initcall(pm_simtec_init); ---- a/arch/arm/plat-s3c24xx/pwm-clock.c -+++ b/arch/arm/plat-s3c24xx/pwm-clock.c -@@ -24,10 +24,10 @@ - #include <mach/regs-clock.h> - #include <mach/regs-gpio.h> - --#include <plat/clock.h> --#include <plat/cpu.h> -+#include <asm/plat-s3c24xx/clock.h> -+#include <asm/plat-s3c24xx/cpu.h> - --#include <plat/regs-timer.h> -+#include <asm/plat-s3c/regs-timer.h> - - /* Each of the timers 0 through 5 go through the following - * clock tree, with the inputs depending on the timers. ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/s3c2410-clock.c -@@ -0,0 +1,277 @@ -+/* linux/arch/arm/mach-s3c2410/clock.c -+ * -+ * Copyright (c) 2006 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C2410,S3C2440,S3C2442 Clock control support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+*/ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/list.h> -+#include <linux/errno.h> -+#include <linux/err.h> -+#include <linux/sysdev.h> -+#include <linux/clk.h> -+#include <linux/mutex.h> -+#include <linux/delay.h> -+#include <linux/serial_core.h> -+#include <linux/io.h> -+ -+#include <asm/mach/map.h> -+ -+#include <mach/hardware.h> -+ -+#include <plat/regs-serial.h> -+#include <mach/regs-clock.h> -+#include <mach/regs-gpio.h> -+ -+#include <plat/s3c2410.h> -+#include <plat/clock.h> -+#include <plat/cpu.h> -+ -+int s3c2410_clkcon_enable(struct clk *clk, int enable) -+{ -+ unsigned int clocks = clk->ctrlbit; -+ unsigned long clkcon; -+ -+ clkcon = __raw_readl(S3C2410_CLKCON); -+ -+ if (enable) -+ clkcon |= clocks; -+ else -+ clkcon &= ~clocks; -+ -+ /* ensure none of the special function bits set */ -+ clkcon &= ~(S3C2410_CLKCON_IDLE|S3C2410_CLKCON_POWER); -+ -+ __raw_writel(clkcon, S3C2410_CLKCON); -+ -+ return 0; -+} -+ -+static int s3c2410_upll_enable(struct clk *clk, int enable) -+{ -+ unsigned long clkslow = __raw_readl(S3C2410_CLKSLOW); -+ unsigned long orig = clkslow; -+ -+ if (enable) -+ clkslow &= ~S3C2410_CLKSLOW_UCLK_OFF; -+ else -+ clkslow |= S3C2410_CLKSLOW_UCLK_OFF; -+ -+ __raw_writel(clkslow, S3C2410_CLKSLOW); -+ -+ /* if we started the UPLL, then allow to settle */ -+ -+ if (enable && (orig & S3C2410_CLKSLOW_UCLK_OFF)) -+ udelay(200); -+ -+ return 0; -+} -+ -+/* standard clock definitions */ -+ -+static struct clk init_clocks_disable[] = { -+ { -+ .name = "nand", -+ .id = -1, -+ .parent = &clk_h, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_NAND, -+ }, { -+ .name = "sdi", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_SDI, -+ }, { -+ .name = "adc", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_ADC, -+ }, { -+ .name = "i2c", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_IIC, -+ }, { -+ .name = "iis", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_IIS, -+ }, { -+ .name = "spi", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_SPI, -+ } -+}; -+ -+static struct clk init_clocks[] = { -+ { -+ .name = "lcd", -+ .id = -1, -+ .parent = &clk_h, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_LCDC, -+ }, { -+ .name = "gpio", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_GPIO, -+ }, { -+ .name = "usb-host", -+ .id = -1, -+ .parent = &clk_h, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_USBH, -+ }, { -+ .name = "usb-device", -+ .id = -1, -+ .parent = &clk_h, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_USBD, -+ }, { -+ .name = "timers", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_PWMT, -+ }, { -+ .name = "uart", -+ .id = 0, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_UART0, -+ }, { -+ .name = "uart", -+ .id = 1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_UART1, -+ }, { -+ .name = "uart", -+ .id = 2, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_UART2, -+ }, { -+ .name = "rtc", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c2410_clkcon_enable, -+ .ctrlbit = S3C2410_CLKCON_RTC, -+ }, { -+ .name = "watchdog", -+ .id = -1, -+ .parent = &clk_p, -+ .ctrlbit = 0, -+ }, { -+ .name = "usb-bus-host", -+ .id = -1, -+ .parent = &clk_usb_bus, -+ }, { -+ .name = "usb-bus-gadget", -+ .id = -1, -+ .parent = &clk_usb_bus, -+ }, -+}; -+ -+/* s3c2410_baseclk_add() -+ * -+ * Add all the clocks used by the s3c2410 or compatible CPUs -+ * such as the S3C2440 and S3C2442. -+ * -+ * We cannot use a system device as we are needed before any -+ * of the init-calls that initialise the devices are actually -+ * done. -+*/ -+ -+int __init s3c2410_baseclk_add(void) -+{ -+ unsigned long clkslow = __raw_readl(S3C2410_CLKSLOW); -+ unsigned long clkcon = __raw_readl(S3C2410_CLKCON); -+ struct clk *clkp; -+ struct clk *xtal; -+ int ret; -+ int ptr; -+ -+ clk_upll.enable = s3c2410_upll_enable; -+ -+ if (s3c24xx_register_clock(&clk_usb_bus) < 0) -+ printk(KERN_ERR "failed to register usb bus clock\n"); -+ -+ /* register clocks from clock array */ -+ -+ clkp = init_clocks; -+ for (ptr = 0; ptr < ARRAY_SIZE(init_clocks); ptr++, clkp++) { -+ /* ensure that we note the clock state */ -+ -+ clkp->usage = clkcon & clkp->ctrlbit ? 1 : 0; -+ -+ ret = s3c24xx_register_clock(clkp); -+ if (ret < 0) { -+ printk(KERN_ERR "Failed to register clock %s (%d)\n", -+ clkp->name, ret); -+ } -+ } -+ -+ /* We must be careful disabling the clocks we are not intending to -+ * be using at boot time, as subsystems such as the LCD which do -+ * their own DMA requests to the bus can cause the system to lockup -+ * if they where in the middle of requesting bus access. -+ * -+ * Disabling the LCD clock if the LCD is active is very dangerous, -+ * and therefore the bootloader should be careful to not enable -+ * the LCD clock if it is not needed. -+ */ -+ -+ /* install (and disable) the clocks we do not need immediately */ -+ -+ clkp = init_clocks_disable; -+ for (ptr = 0; ptr < ARRAY_SIZE(init_clocks_disable); ptr++, clkp++) { -+ -+ ret = s3c24xx_register_clock(clkp); -+ if (ret < 0) { -+ printk(KERN_ERR "Failed to register clock %s (%d)\n", -+ clkp->name, ret); -+ } -+ -+ s3c2410_clkcon_enable(clkp, 0); -+ } -+ -+ /* show the clock-slow value */ -+ -+ xtal = clk_get(NULL, "xtal"); -+ -+ printk("CLOCK: Slow mode (%ld.%ld MHz), %s, MPLL %s, UPLL %s\n", -+ print_mhz(clk_get_rate(xtal) / -+ ( 2 * S3C2410_CLKSLOW_GET_SLOWVAL(clkslow))), -+ (clkslow & S3C2410_CLKSLOW_SLOW) ? "slow" : "fast", -+ (clkslow & S3C2410_CLKSLOW_MPLL_OFF) ? "off" : "on", -+ (clkslow & S3C2410_CLKSLOW_UCLK_OFF) ? "off" : "on"); -+ -+ s3c_pwmclk_init(); -+ return 0; -+} ---- a/arch/arm/plat-s3c24xx/s3c244x.c -+++ b/arch/arm/plat-s3c24xx/s3c244x.c -@@ -29,6 +29,8 @@ - #include <mach/hardware.h> - #include <asm/irq.h> - -+#include <plat/cpu-freq.h> -+ - #include <mach/regs-clock.h> - #include <plat/regs-serial.h> - #include <mach/regs-gpio.h> -@@ -42,6 +44,7 @@ - #include <plat/devs.h> - #include <plat/cpu.h> - #include <plat/pm.h> -+#include <plat/pll.h> - - static struct map_desc s3c244x_iodesc[] __initdata = { - IODESC_ENT(CLKPWR), -@@ -56,32 +59,37 @@ void __init s3c244x_init_uarts(struct s3 - s3c24xx_init_uartdevs("s3c2440-uart", s3c2410_uart_resources, cfg, no); - } - --void __init s3c244x_map_io(struct map_desc *mach_desc, int size) -+extern struct platform_device s3c_device_ts; -+ -+void __init s3c244x_map_io(void) - { - /* register our io-tables */ - - iotable_init(s3c244x_iodesc, ARRAY_SIZE(s3c244x_iodesc)); -- iotable_init(mach_desc, size); - - /* rename any peripherals used differing from the s3c2410 */ - - s3c_device_sdi.name = "s3c2440-sdi"; -- s3c_device_i2c.name = "s3c2440-i2c"; -+ s3c_device_i2c0.name = "s3c2440-i2c"; - s3c_device_nand.name = "s3c2440-nand"; -+ s3c_device_ts.name = "s3c2440-ts"; - s3c_device_usbgadget.name = "s3c2440-usbgadget"; - } - --void __init s3c244x_init_clocks(int xtal) -+void __init_or_cpufreq s3c244x_setup_clocks(void) - { -+ struct clk *xtal_clk; - unsigned long clkdiv; - unsigned long camdiv; -+ unsigned long xtal; - unsigned long hclk, fclk, pclk; - int hdiv = 1; - -- /* now we've got our machine bits initialised, work out what -- * clocks we've got */ -+ xtal_clk = clk_get(NULL, "xtal"); -+ xtal = clk_get_rate(xtal_clk); -+ clk_put(xtal_clk); - -- fclk = s3c2410_get_pll(__raw_readl(S3C2410_MPLLCON), xtal) * 2; -+ fclk = s3c24xx_get_pll(__raw_readl(S3C2410_MPLLCON), xtal) * 2; - - clkdiv = __raw_readl(S3C2410_CLKDIVN); - camdiv = __raw_readl(S3C2440_CAMDIVN); -@@ -107,18 +115,24 @@ void __init s3c244x_init_clocks(int xtal - } - - hclk = fclk / hdiv; -- pclk = hclk / ((clkdiv & S3C2440_CLKDIVN_PDIVN)? 2:1); -+ pclk = hclk / ((clkdiv & S3C2440_CLKDIVN_PDIVN) ? 2 : 1); - - /* print brief summary of clocks, etc */ - - printk("S3C244X: core %ld.%03ld MHz, memory %ld.%03ld MHz, peripheral %ld.%03ld MHz\n", - print_mhz(fclk), print_mhz(hclk), print_mhz(pclk)); - -+ s3c24xx_setup_clocks(fclk, hclk, pclk); -+} -+ -+void __init s3c244x_init_clocks(int xtal) -+{ - /* initialise the clocks here, to allow other things like the - * console to use them, and to add new ones after the initialisation - */ - -- s3c24xx_setup_clocks(xtal, fclk, hclk, pclk); -+ s3c24xx_register_baseclocks(xtal); -+ s3c244x_setup_clocks(); - s3c2410_baseclk_add(); - } - -@@ -134,13 +148,13 @@ static struct sleep_save s3c244x_sleep[] - - static int s3c244x_suspend(struct sys_device *dev, pm_message_t state) - { -- s3c2410_pm_do_save(s3c244x_sleep, ARRAY_SIZE(s3c244x_sleep)); -+ s3c_pm_do_save(s3c244x_sleep, ARRAY_SIZE(s3c244x_sleep)); - return 0; - } - - static int s3c244x_resume(struct sys_device *dev) - { -- s3c2410_pm_do_restore(s3c244x_sleep, ARRAY_SIZE(s3c244x_sleep)); -+ s3c_pm_do_restore(s3c244x_sleep, ARRAY_SIZE(s3c244x_sleep)); - return 0; - } - ---- a/arch/arm/plat-s3c24xx/s3c244x-clock.c -+++ b/arch/arm/plat-s3c24xx/s3c244x-clock.c -@@ -31,7 +31,6 @@ - #include <linux/sysdev.h> - #include <linux/interrupt.h> - #include <linux/ioport.h> --#include <linux/mutex.h> - #include <linux/clk.h> - #include <linux/io.h> - -@@ -102,13 +101,13 @@ static int s3c244x_clk_add(struct sys_de - if (clk_get_rate(clock_upll) > (94 * MHZ)) { - clk_usb_bus.rate = clk_get_rate(clock_upll) / 2; - -- mutex_lock(&clocks_mutex); -+ spin_lock(&clocks_lock); - - clkdivn = __raw_readl(S3C2410_CLKDIVN); - clkdivn |= S3C2440_CLKDIVN_UCLK; - __raw_writel(clkdivn, S3C2410_CLKDIVN); - -- mutex_unlock(&clocks_mutex); -+ spin_unlock(&clocks_lock); - } - - return 0; ---- a/arch/arm/plat-s3c24xx/s3c244x.h -+++ b/arch/arm/plat-s3c24xx/s3c244x.h -@@ -12,7 +12,7 @@ - - #if defined(CONFIG_CPU_S3C2440) || defined(CONFIG_CPU_S3C2442) - --extern void s3c244x_map_io(struct map_desc *mach_desc, int size); -+extern void s3c244x_map_io(void); - - extern void s3c244x_init_uarts(struct s3c2410_uartcfg *cfg, int no); - ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/setup-i2c.c -@@ -0,0 +1,25 @@ -+/* linux/arch/arm/plat-s3c24xx/setup-i2c.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C24XX Base setup for i2c device -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+ -+struct platform_device; -+ -+#include <plat/iic.h> -+#include <mach/hardware.h> -+#include <mach/regs-gpio.h> -+ -+void s3c_i2c0_cfg_gpio(struct platform_device *dev) -+{ -+ s3c2410_gpio_cfgpin(S3C2410_GPE15, S3C2410_GPE15_IICSDA); -+ s3c2410_gpio_cfgpin(S3C2410_GPE14, S3C2410_GPE14_IICSCL); -+} ---- a/arch/arm/plat-s3c24xx/sleep.S -+++ b/arch/arm/plat-s3c24xx/sleep.S -@@ -41,7 +41,7 @@ - - .text - -- /* s3c2410_cpu_save -+ /* s3c_cpu_save - * - * save enough of the CPU state to allow us to re-start - * pm.c code. as we store items like the sp/lr, we will -@@ -59,7 +59,7 @@ - * 1 => resumed from sleep - */ - --ENTRY(s3c2410_cpu_save) -+ENTRY(s3c_cpu_save) - stmfd sp!, { r4 - r12, lr } - - @@ store co-processor registers -@@ -84,7 +84,7 @@ resume_with_mmu: - .ltorg - - @@ the next bits sit in the .data segment, even though they -- @@ happen to be code... the s3c2410_sleep_save_phys needs to be -+ @@ happen to be code... the s3c_sleep_save_phys needs to be - @@ accessed by the resume code before it can restore the MMU. - @@ This means that the variable has to be close enough for the - @@ code to read it... since the .text segment needs to be RO, -@@ -92,19 +92,19 @@ resume_with_mmu: - - .data - -- .global s3c2410_sleep_save_phys --s3c2410_sleep_save_phys: -+ .global s3c_sleep_save_phys -+s3c_sleep_save_phys: - .word 0 - - - /* sleep magic, to allow the bootloader to check for an valid - * image to resume to. Must be the first word before the -- * s3c2410_cpu_resume entry. -+ * s3c_cpu_resume entry. - */ - - .word 0x2bedf00d - -- /* s3c2410_cpu_resume -+ /* s3c_cpu_resume - * - * resume code entry for bootloader to call - * -@@ -113,7 +113,7 @@ s3c2410_sleep_save_phys: - * must not write to the code segment (code is read-only) - */ - --ENTRY(s3c2410_cpu_resume) -+ENTRY(s3c_cpu_resume) - mov r0, #PSR_I_BIT | PSR_F_BIT | SVC_MODE - msr cpsr_c, r0 - -@@ -145,7 +145,7 @@ ENTRY(s3c2410_cpu_resume) - mcr p15, 0, r1, c8, c7, 0 @@ invalidate I & D TLBs - mcr p15, 0, r1, c7, c7, 0 @@ invalidate I & D caches - -- ldr r0, s3c2410_sleep_save_phys @ address of restore block -+ ldr r0, s3c_sleep_save_phys @ address of restore block - ldmia r0, { r4 - r13 } - - mcr p15, 0, r4, c13, c0, 0 @ PID ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/spi-bus0-gpe11_12_13.c -@@ -0,0 +1,37 @@ -+/* linux/arch/arm/plat-s3c24xx/spi-bus0-gpe11_12_13.c -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C24XX SPI - gpio configuration for bus 0 on gpe11,12,13 -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License. -+*/ -+ -+#include <linux/kernel.h> -+ -+#include <mach/hardware.h> -+ -+#include <mach/spi.h> -+#include <mach/regs-gpio.h> -+ -+void s3c24xx_spi_gpiocfg_bus0_gpe11_12_13(struct s3c2410_spi_info *spi, -+ int enable) -+{ -+ if (enable) { -+ s3c2410_gpio_cfgpin(S3C2410_GPE13, S3C2410_GPE13_SPICLK0); -+ s3c2410_gpio_cfgpin(S3C2410_GPE12, S3C2410_GPE12_SPIMOSI0); -+ s3c2410_gpio_cfgpin(S3C2410_GPE11, S3C2410_GPE11_SPIMISO0); -+ s3c2410_gpio_pullup(S3C2410_GPE11, 0); -+ s3c2410_gpio_pullup(S3C2410_GPE13, 0); -+ } else { -+ s3c2410_gpio_cfgpin(S3C2410_GPE13, S3C2410_GPIO_INPUT); -+ s3c2410_gpio_cfgpin(S3C2410_GPE11, S3C2410_GPIO_INPUT); -+ s3c2410_gpio_pullup(S3C2410_GPE11, 1); -+ s3c2410_gpio_pullup(S3C2410_GPE12, 1); -+ s3c2410_gpio_pullup(S3C2410_GPE13, 1); -+ } -+} ---- /dev/null -+++ b/arch/arm/plat-s3c24xx/spi-bus1-gpg5_6_7.c -@@ -0,0 +1,37 @@ -+/* linux/arch/arm/plat-s3c24xx/spi-bus0-gpg5_6_7.c -+ * -+ * Copyright (c) 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C24XX SPI - gpio configuration for bus 1 on gpg5,6,7 -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License. -+*/ -+ -+#include <linux/kernel.h> -+ -+#include <mach/hardware.h> -+ -+#include <mach/spi.h> -+#include <mach/regs-gpio.h> -+ -+void s3c24xx_spi_gpiocfg_bus1_gpg5_6_7(struct s3c2410_spi_info *spi, -+ int enable) -+{ -+ if (enable) { -+ s3c2410_gpio_cfgpin(S3C2410_GPG7, S3C2410_GPG7_SPICLK1); -+ s3c2410_gpio_cfgpin(S3C2410_GPG6, S3C2410_GPG6_SPIMOSI1); -+ s3c2410_gpio_cfgpin(S3C2410_GPG5, S3C2410_GPG5_SPIMISO1); -+ s3c2410_gpio_pullup(S3C2410_GPG5, 0); -+ s3c2410_gpio_pullup(S3C2410_GPG6, 0); -+ } else { -+ s3c2410_gpio_cfgpin(S3C2410_GPG7, S3C2410_GPIO_INPUT); -+ s3c2410_gpio_cfgpin(S3C2410_GPG5, S3C2410_GPIO_INPUT); -+ s3c2410_gpio_pullup(S3C2410_GPG5, 1); -+ s3c2410_gpio_pullup(S3C2410_GPG6, 1); -+ s3c2410_gpio_pullup(S3C2410_GPG7, 1); -+ } -+} ---- a/arch/arm/plat-s3c24xx/time.c -+++ b/arch/arm/plat-s3c24xx/time.c -@@ -3,6 +3,8 @@ - * Copyright (C) 2003-2005 Simtec Electronics - * Ben Dooks, <ben@simtec.co.uk> - * -+ * dyn_tick support by Andrzej Zaborowski based on omap_dyn_tick_timer. -+ * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or -@@ -25,23 +27,27 @@ - #include <linux/irq.h> - #include <linux/err.h> - #include <linux/clk.h> --#include <linux/io.h> - - #include <asm/system.h> - #include <asm/leds.h> - #include <asm/mach-types.h> - -+#include <asm/io.h> - #include <asm/irq.h> - #include <mach/map.h> --#include <plat/regs-timer.h> -+#include <asm/plat-s3c/regs-timer.h> - #include <mach/regs-irq.h> - #include <asm/mach/time.h> - --#include <plat/clock.h> --#include <plat/cpu.h> -+#include <asm/plat-s3c24xx/clock.h> -+#include <asm/plat-s3c24xx/cpu.h> - - static unsigned long timer_startval; - static unsigned long timer_usec_ticks; -+static struct work_struct resume_work; -+ -+unsigned long pclk; -+struct clk *clk; - - #define TIMER_USEC_SHIFT 16 - -@@ -177,11 +183,7 @@ static void s3c2410_timer_setup (void) - tcfg1 &= ~S3C2410_TCFG1_MUX4_MASK; - tcfg1 |= S3C2410_TCFG1_MUX4_TCLK1; - } else { -- unsigned long pclk; -- struct clk *clk; -- -- /* for the h1940 (and others), we use the pclk from the core -- * to generate the timer values. since values around 50 to -+ /* since values around 50 to - * 70MHz are not values we can directly generate the timer - * value from, we need to pre-scale and divide before using it. - * -@@ -189,19 +191,9 @@ static void s3c2410_timer_setup (void) - * (8.45 ticks per usec) - */ - -- /* this is used as default if no other timer can be found */ -- -- clk = clk_get(NULL, "timers"); -- if (IS_ERR(clk)) -- panic("failed to get clock for system timer"); -- -- clk_enable(clk); -- -- pclk = clk_get_rate(clk); -- - /* configure clock tick */ -- - timer_usec_ticks = timer_mask_usec_ticks(6, pclk); -+ printk("timer_usec_ticks = %lu\n", timer_usec_ticks); - - tcfg1 &= ~S3C2410_TCFG1_MUX4_MASK; - tcfg1 |= S3C2410_TCFG1_MUX4_DIV2; -@@ -245,16 +237,244 @@ static void s3c2410_timer_setup (void) - tcon |= S3C2410_TCON_T4START; - tcon &= ~S3C2410_TCON_T4MANUALUPD; - __raw_writel(tcon, S3C2410_TCON); -+ -+ __raw_writel(__raw_readl(S3C2410_INTMSK) & (~(1UL << 14)), -+ S3C2410_INTMSK); -+ -+} -+ -+struct sys_timer s3c24xx_timer; -+static void timer_resume_work(struct work_struct *work) -+{ -+ clk_enable(clk); -+ -+#ifdef CONFIG_NO_IDLE_HZ -+ if (s3c24xx_timer.dyn_tick->state & DYN_TICK_ENABLED) -+ s3c24xx_timer.dyn_tick->enable(); -+ else -+#endif -+ s3c2410_timer_setup(); - } - - static void __init s3c2410_timer_init (void) - { -+ if (!use_tclk1_12()) { -+ /* for the h1940 (and others), we use the pclk from the core -+ * to generate the timer values. -+ */ -+ -+ /* this is used as default if no other timer can be found */ -+ clk = clk_get(NULL, "timers"); -+ if (IS_ERR(clk)) -+ panic("failed to get clock for system timer"); -+ -+ clk_enable(clk); -+ -+ pclk = clk_get_rate(clk); -+ printk("pclk = %lu\n", pclk); -+ } -+ -+ INIT_WORK(&resume_work, timer_resume_work); - s3c2410_timer_setup(); - setup_irq(IRQ_TIMER4, &s3c2410_timer_irq); - } - -+static void s3c2410_timer_resume_work(struct work_struct *work) -+{ -+ s3c2410_timer_setup(); -+} -+ -+static void s3c2410_timer_resume(void) -+{ -+ static DECLARE_WORK(work, s3c2410_timer_resume_work); -+ int res; -+ -+ res = schedule_work(&work); -+ if (!res) -+ printk(KERN_ERR -+ "s3c2410_timer_resume_work already queued ???\n"); -+} -+ -+#ifdef CONFIG_NO_IDLE_HZ -+/* -+ * We'll set a constant prescaler so we don't have to bother setting it -+ * when reprogramming and so that we avoid costly divisions. -+ * -+ * (2 * HZ) << INPUT_FREQ_SHIFT is the desired frequency after prescaler. -+ * At HZ == 200, HZ * 1024 should work for PCLKs of up to ~53.5 MHz. -+ */ -+#define INPUT_FREQ_SHIFT 9 -+ -+static int ticks_last; -+static int ticks_left; -+static uint32_t tcnto_last; -+ -+static inline int s3c24xx_timer_read(void) -+{ -+ uint32_t tcnto = __raw_readl(S3C2410_TCNTO(4)); -+ -+ /* -+ * WARNING: sometimes we get called before TCNTB has been -+ * loaded into the counter and TCNTO then returns its previous -+ * value and kill us, so don't do anything before counter is -+ * reloaded. -+ */ -+ if (unlikely(tcnto == tcnto_last)) -+ return ticks_last; -+ -+ tcnto_last = -1; -+ return tcnto << -+ ((__raw_readl(S3C2410_TCFG1) >> S3C2410_TCFG1_MUX4_SHIFT) & 3); -+} -+ -+static inline void s3c24xx_timer_program(int ticks) -+{ -+ uint32_t tcon = __raw_readl(S3C2410_TCON) & ~(7 << 20); -+ uint32_t tcfg1 = __raw_readl(S3C2410_TCFG1) & ~S3C2410_TCFG1_MUX4_MASK; -+ -+ /* Just make sure the timer is stopped. */ -+ __raw_writel(tcon, S3C2410_TCON); -+ -+ /* TODO: add likely()ies / unlikely()ies */ -+ if (ticks >> 18) { -+ ticks_last = min(ticks, 0xffff << 3); -+ ticks_left = ticks - ticks_last; -+ __raw_writel(tcfg1 | S3C2410_TCFG1_MUX4_DIV16, S3C2410_TCFG1); -+ __raw_writel(ticks_last >> 3, S3C2410_TCNTB(4)); -+ } else if (ticks >> 17) { -+ ticks_last = ticks; -+ ticks_left = 0; -+ __raw_writel(tcfg1 | S3C2410_TCFG1_MUX4_DIV8, S3C2410_TCFG1); -+ __raw_writel(ticks_last >> 2, S3C2410_TCNTB(4)); -+ } else if (ticks >> 16) { -+ ticks_last = ticks; -+ ticks_left = 0; -+ __raw_writel(tcfg1 | S3C2410_TCFG1_MUX4_DIV4, S3C2410_TCFG1); -+ __raw_writel(ticks_last >> 1, S3C2410_TCNTB(4)); -+ } else { -+ ticks_last = ticks; -+ ticks_left = 0; -+ __raw_writel(tcfg1 | S3C2410_TCFG1_MUX4_DIV2, S3C2410_TCFG1); -+ __raw_writel(ticks_last >> 0, S3C2410_TCNTB(4)); -+ } -+ -+ tcnto_last = __raw_readl(S3C2410_TCNTO(4)); -+ __raw_writel(tcon | S3C2410_TCON_T4MANUALUPD, -+ S3C2410_TCON); -+ __raw_writel(tcon | S3C2410_TCON_T4START, -+ S3C2410_TCON); -+} -+ -+/* -+ * If we have already waited all the time we were supposed to wait, -+ * kick the timer, setting the longest allowed timeout value just -+ * for time-keeping. -+ */ -+static inline void s3c24xx_timer_program_idle(void) -+{ -+ s3c24xx_timer_program(0xffff << 3); -+} -+ -+static inline void s3c24xx_timer_update(int restart) -+{ -+ int ticks_cur = s3c24xx_timer_read(); -+ int jiffies_elapsed = (ticks_last - ticks_cur) >> INPUT_FREQ_SHIFT; -+ int subjiffy = ticks_last - (jiffies_elapsed << INPUT_FREQ_SHIFT); -+ -+ if (restart) { -+ if (ticks_left >= (1 << INPUT_FREQ_SHIFT)) -+ s3c24xx_timer_program(ticks_left); -+ else -+ s3c24xx_timer_program_idle(); -+ ticks_last += subjiffy; -+ } else -+ ticks_last = subjiffy; -+ -+ while (jiffies_elapsed --) -+ timer_tick(); -+} -+ -+/* Called when the timer expires. */ -+static irqreturn_t s3c24xx_timer_handler(int irq, void *dev_id) -+{ -+ tcnto_last = -1; -+ s3c24xx_timer_update(1); -+ -+ return IRQ_HANDLED; -+} -+ -+/* Called to update jiffies with time elapsed. */ -+static irqreturn_t s3c24xx_timer_handler_dyn_tick(int irq, void *dev_id) -+{ -+ s3c24xx_timer_update(0); -+ -+ return IRQ_HANDLED; -+} -+ -+/* -+ * Programs the next timer interrupt needed. Called when dynamic tick is -+ * enabled, and to reprogram the ticks to skip from pm_idle. The CPU goes -+ * to sleep directly after this. -+ */ -+static void s3c24xx_timer_reprogram_dyn_tick(unsigned long next_jiffies) -+{ -+ int subjiffy_left = ticks_last - s3c24xx_timer_read(); -+ -+ s3c24xx_timer_program(max((int) next_jiffies, 1) << INPUT_FREQ_SHIFT); -+ ticks_last += subjiffy_left; -+} -+ -+static unsigned long s3c24xx_timer_offset_dyn_tick(void) -+{ -+ /* TODO */ -+ return 0; -+} -+ -+static int s3c24xx_timer_enable_dyn_tick(void) -+{ -+ /* Set our constant prescaler. */ -+ uint32_t tcfg0 = __raw_readl(S3C2410_TCFG0); -+ int prescaler = -+ max(min(256, (int) pclk / (HZ << (INPUT_FREQ_SHIFT + 1))), 1); -+ -+ tcfg0 &= ~S3C2410_TCFG_PRESCALER1_MASK; -+ tcfg0 |= (prescaler - 1) << S3C2410_TCFG_PRESCALER1_SHIFT; -+ __raw_writel(tcfg0, S3C2410_TCFG0); -+ -+ /* Override handlers. */ -+ s3c2410_timer_irq.handler = s3c24xx_timer_handler; -+ s3c24xx_timer.offset = s3c24xx_timer_offset_dyn_tick; -+ -+ printk(KERN_INFO "dyn_tick enabled on s3c24xx timer 4, " -+ "%li Hz pclk with prescaler %i\n", pclk, prescaler); -+ -+ s3c24xx_timer_program_idle(); -+ -+ return 0; -+} -+ -+static int s3c24xx_timer_disable_dyn_tick(void) -+{ -+ s3c2410_timer_irq.handler = s3c2410_timer_interrupt; -+ s3c24xx_timer.offset = s3c2410_gettimeoffset; -+ s3c2410_timer_setup(); -+ -+ return 0; -+} -+ -+static struct dyn_tick_timer s3c24xx_dyn_tick_timer = { -+ .enable = s3c24xx_timer_enable_dyn_tick, -+ .disable = s3c24xx_timer_disable_dyn_tick, -+ .reprogram = s3c24xx_timer_reprogram_dyn_tick, -+ .handler = s3c24xx_timer_handler_dyn_tick, -+}; -+#endif /* CONFIG_NO_IDLE_HZ */ -+ - struct sys_timer s3c24xx_timer = { - .init = s3c2410_timer_init, - .offset = s3c2410_gettimeoffset, -- .resume = s3c2410_timer_setup -+ .resume = s3c2410_timer_resume, -+#ifdef CONFIG_NO_IDLE_HZ -+ .dyn_tick = &s3c24xx_dyn_tick_timer, -+#endif - }; ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/clock.c -@@ -0,0 +1,282 @@ -+/* linux/arch/arm/plat-s3c64xx/clock.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX Base clock support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/interrupt.h> -+#include <linux/ioport.h> -+#include <linux/delay.h> -+#include <linux/io.h> -+ -+#include <mach/hardware.h> -+#include <mach/map.h> -+ -+#include <plat/regs-sys.h> -+#include <plat/regs-clock.h> -+#include <plat/cpu.h> -+#include <plat/devs.h> -+#include <plat/clock.h> -+ -+struct clk clk_27m = { -+ .name = "clk_27m", -+ .id = -1, -+ .rate = 27000000, -+}; -+ -+static int clk_48m_ctrl(struct clk *clk, int enable) -+{ -+ unsigned long flags; -+ u32 val; -+ -+ /* can't rely on clock lock, this register has other usages */ -+ local_irq_save(flags); -+ -+ val = __raw_readl(S3C64XX_OTHERS); -+ if (enable) -+ val |= S3C64XX_OTHERS_USBMASK; -+ else -+ val &= ~S3C64XX_OTHERS_USBMASK; -+ -+ __raw_writel(val, S3C64XX_OTHERS); -+ local_irq_restore(flags); -+ -+ return 0; -+} -+ -+struct clk clk_48m = { -+ .name = "clk_48m", -+ .id = -1, -+ .rate = 48000000, -+ .enable = clk_48m_ctrl, -+}; -+ -+static int inline s3c64xx_gate(void __iomem *reg, -+ struct clk *clk, -+ int enable) -+{ -+ unsigned int ctrlbit = clk->ctrlbit; -+ u32 con; -+ -+ con = __raw_readl(reg); -+ -+ if (enable) -+ con |= ctrlbit; -+ else -+ con &= ~ctrlbit; -+ -+ __raw_writel(con, reg); -+ return 0; -+} -+ -+static int s3c64xx_pclk_ctrl(struct clk *clk, int enable) -+{ -+ return s3c64xx_gate(S3C_PCLK_GATE, clk, enable); -+} -+ -+static int s3c64xx_hclk_ctrl(struct clk *clk, int enable) -+{ -+ return s3c64xx_gate(S3C_HCLK_GATE, clk, enable); -+} -+ -+int s3c64xx_sclk_ctrl(struct clk *clk, int enable) -+{ -+ return s3c64xx_gate(S3C_SCLK_GATE, clk, enable); -+} -+ -+static struct clk init_clocks_disable[] = { -+ { -+ .name = "nand", -+ .id = -1, -+ .parent = &clk_h, -+ }, { -+ .name = "adc", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_TSADC, -+ }, { -+ .name = "i2c", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_IIC, -+ }, { -+ .name = "iis", -+ .id = 0, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_IIS0, -+ }, { -+ .name = "iis", -+ .id = 1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_IIS1, -+ }, { -+ .name = "spi", -+ .id = 0, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_SPI0, -+ }, { -+ .name = "spi", -+ .id = 1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_SPI1, -+ }, { -+ .name = "48m", -+ .id = 0, -+ .parent = &clk_48m, -+ .enable = s3c64xx_sclk_ctrl, -+ .ctrlbit = S3C_CLKCON_SCLK_MMC0_48, -+ }, { -+ .name = "48m", -+ .id = 1, -+ .parent = &clk_48m, -+ .enable = s3c64xx_sclk_ctrl, -+ .ctrlbit = S3C_CLKCON_SCLK_MMC1_48, -+ }, { -+ .name = "48m", -+ .id = 2, -+ .parent = &clk_48m, -+ .enable = s3c64xx_sclk_ctrl, -+ .ctrlbit = S3C_CLKCON_SCLK_MMC2_48, -+ }, -+}; -+ -+static struct clk init_clocks[] = { -+ { -+ .name = "lcd", -+ .id = -1, -+ .parent = &clk_h, -+ .enable = s3c64xx_hclk_ctrl, -+ .ctrlbit = S3C_CLKCON_HCLK_LCD, -+ }, { -+ .name = "gpio", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_GPIO, -+ }, { -+ .name = "usb-host", -+ .id = -1, -+ .parent = &clk_h, -+ .enable = s3c64xx_hclk_ctrl, -+ .ctrlbit = S3C_CLKCON_SCLK_UHOST, -+ }, { -+ .name = "hsmmc", -+ .id = 0, -+ .parent = &clk_h, -+ .enable = s3c64xx_hclk_ctrl, -+ .ctrlbit = S3C_CLKCON_HCLK_HSMMC0, -+ }, { -+ .name = "hsmmc", -+ .id = 1, -+ .parent = &clk_h, -+ .enable = s3c64xx_hclk_ctrl, -+ .ctrlbit = S3C_CLKCON_HCLK_HSMMC1, -+ }, { -+ .name = "hsmmc", -+ .id = 2, -+ .parent = &clk_h, -+ .enable = s3c64xx_hclk_ctrl, -+ .ctrlbit = S3C_CLKCON_HCLK_HSMMC2, -+ }, { -+ .name = "timers", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_PWM, -+ }, { -+ .name = "uart", -+ .id = 0, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_UART0, -+ }, { -+ .name = "uart", -+ .id = 1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_UART1, -+ }, { -+ .name = "uart", -+ .id = 2, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_UART2, -+ }, { -+ .name = "uart", -+ .id = 3, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_UART3, -+ }, { -+ .name = "rtc", -+ .id = -1, -+ .parent = &clk_p, -+ .enable = s3c64xx_pclk_ctrl, -+ .ctrlbit = S3C_CLKCON_PCLK_RTC, -+ }, { -+ .name = "watchdog", -+ .id = -1, -+ .parent = &clk_p, -+ .ctrlbit = S3C_CLKCON_PCLK_WDT, -+ }, { -+ .name = "ac97", -+ .id = -1, -+ .parent = &clk_p, -+ .ctrlbit = S3C_CLKCON_PCLK_AC97, -+ } -+}; -+ -+static struct clk *clks[] __initdata = { -+ &clk_ext, -+ &clk_epll, -+ &clk_27m, -+ &clk_48m, -+}; -+ -+void s3c64xx_register_clocks(void) -+{ -+ struct clk *clkp; -+ int ret; -+ int ptr; -+ -+ s3c24xx_register_clocks(clks, ARRAY_SIZE(clks)); -+ -+ clkp = init_clocks; -+ for (ptr = 0; ptr < ARRAY_SIZE(init_clocks); ptr++, clkp++) { -+ ret = s3c24xx_register_clock(clkp); -+ if (ret < 0) { -+ printk(KERN_ERR "Failed to register clock %s (%d)\n", -+ clkp->name, ret); -+ } -+ } -+ -+ clkp = init_clocks_disable; -+ for (ptr = 0; ptr < ARRAY_SIZE(init_clocks_disable); ptr++, clkp++) { -+ -+ ret = s3c24xx_register_clock(clkp); -+ if (ret < 0) { -+ printk(KERN_ERR "Failed to register clock %s (%d)\n", -+ clkp->name, ret); -+ } -+ -+ (clkp->enable)(clkp, 0); -+ } -+ -+ s3c_pwmclk_init(); -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/cpu.c -@@ -0,0 +1,139 @@ -+/* linux/arch/arm/plat-s3c64xx/cpu.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX CPU Support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/interrupt.h> -+#include <linux/ioport.h> -+#include <linux/sysdev.h> -+#include <linux/serial_core.h> -+#include <linux/platform_device.h> -+#include <linux/delay.h> -+#include <linux/io.h> -+ -+#include <mach/hardware.h> -+#include <mach/map.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/map.h> -+ -+#include <plat/regs-serial.h> -+ -+#include <plat/cpu.h> -+#include <plat/devs.h> -+#include <plat/clock.h> -+ -+#include <plat/s3c6400.h> -+#include <plat/s3c6410.h> -+ -+/* table of supported CPUs */ -+ -+static const char name_s3c6400[] = "S3C6400"; -+static const char name_s3c6410[] = "S3C6410"; -+ -+static struct cpu_table cpu_ids[] __initdata = { -+ { -+ .idcode = 0x36400000, -+ .idmask = 0xfffff000, -+ .map_io = s3c6400_map_io, -+ .init_clocks = s3c6400_init_clocks, -+ .init_uarts = s3c6400_init_uarts, -+ .init = s3c6400_init, -+ .name = name_s3c6400, -+ }, { -+ .idcode = 0x36410100, -+ .idmask = 0xffffff00, -+ .map_io = s3c6410_map_io, -+ .init_clocks = s3c6410_init_clocks, -+ .init_uarts = s3c6410_init_uarts, -+ .init = s3c6410_init, -+ .name = name_s3c6410, -+ }, -+}; -+ -+/* minimal IO mapping */ -+ -+/* see notes on uart map in arch/arm/mach-s3c6400/include/mach/debug-macro.S */ -+#define UART_OFFS (S3C_PA_UART & 0xfffff) -+ -+static struct map_desc s3c_iodesc[] __initdata = { -+ { -+ .virtual = (unsigned long)S3C_VA_SYS, -+ .pfn = __phys_to_pfn(S3C64XX_PA_SYSCON), -+ .length = SZ_4K, -+ .type = MT_DEVICE, -+ }, { -+ .virtual = (unsigned long)(S3C_VA_UART + UART_OFFS), -+ .pfn = __phys_to_pfn(S3C_PA_UART), -+ .length = SZ_4K, -+ .type = MT_DEVICE, -+ }, { -+ .virtual = (unsigned long)S3C_VA_VIC0, -+ .pfn = __phys_to_pfn(S3C64XX_PA_VIC0), -+ .length = SZ_16K, -+ .type = MT_DEVICE, -+ }, { -+ .virtual = (unsigned long)S3C_VA_VIC1, -+ .pfn = __phys_to_pfn(S3C64XX_PA_VIC1), -+ .length = SZ_16K, -+ .type = MT_DEVICE, -+ }, { -+ .virtual = (unsigned long)S3C_VA_TIMER, -+ .pfn = __phys_to_pfn(S3C_PA_TIMER), -+ .length = SZ_16K, -+ .type = MT_DEVICE, -+ }, { -+ .virtual = (unsigned long)S3C64XX_VA_GPIO, -+ .pfn = __phys_to_pfn(S3C64XX_PA_GPIO), -+ .length = SZ_4K, -+ .type = MT_DEVICE, -+ }, { -+ .virtual = (unsigned long)S3C64XX_VA_MODEM, -+ .pfn = __phys_to_pfn(S3C64XX_PA_MODEM), -+ .length = SZ_4K, -+ .type = MT_DEVICE, -+ }, -+}; -+ -+ -+struct sysdev_class s3c64xx_sysclass = { -+ .name = "s3c64xx-core", -+}; -+ -+static struct sys_device s3c64xx_sysdev = { -+ .cls = &s3c64xx_sysclass, -+}; -+ -+ -+/* read cpu identification code */ -+ -+void __init s3c64xx_init_io(struct map_desc *mach_desc, int size) -+{ -+ unsigned long idcode; -+ -+ /* initialise the io descriptors we need for initialisation */ -+ iotable_init(s3c_iodesc, ARRAY_SIZE(s3c_iodesc)); -+ iotable_init(mach_desc, size); -+ -+ idcode = __raw_readl(S3C_VA_SYS + 0x118); -+ s3c_init_cpu(idcode, cpu_ids, ARRAY_SIZE(cpu_ids)); -+} -+ -+static __init int s3c64xx_sysdev_init(void) -+{ -+ sysdev_class_register(&s3c64xx_sysclass); -+ return sysdev_register(&s3c64xx_sysdev); -+} -+ -+core_initcall(s3c64xx_sysdev_init); ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/dev-uart.c -@@ -0,0 +1,176 @@ -+/* linux/arch/arm/plat-s3c64xx/dev-uart.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * Base S3C64XX UART resource and device definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/list.h> -+#include <linux/platform_device.h> -+ -+#include <asm/mach/arch.h> -+#include <asm/mach/irq.h> -+#include <mach/hardware.h> -+#include <mach/map.h> -+ -+#include <plat/devs.h> -+ -+/* Serial port registrations */ -+ -+/* 64xx uarts are closer together */ -+ -+static struct resource s3c64xx_uart0_resource[] = { -+ [0] = { -+ .start = S3C_PA_UART0, -+ .end = S3C_PA_UART0 + 0x100, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_S3CUART_RX0, -+ .end = IRQ_S3CUART_RX0, -+ .flags = IORESOURCE_IRQ, -+ }, -+ [2] = { -+ .start = IRQ_S3CUART_TX0, -+ .end = IRQ_S3CUART_TX0, -+ .flags = IORESOURCE_IRQ, -+ -+ }, -+ [3] = { -+ .start = IRQ_S3CUART_ERR0, -+ .end = IRQ_S3CUART_ERR0, -+ .flags = IORESOURCE_IRQ, -+ } -+}; -+ -+static struct resource s3c64xx_uart1_resource[] = { -+ [0] = { -+ .start = S3C_PA_UART1, -+ .end = S3C_PA_UART1 + 0x100, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_S3CUART_RX1, -+ .end = IRQ_S3CUART_RX1, -+ .flags = IORESOURCE_IRQ, -+ }, -+ [2] = { -+ .start = IRQ_S3CUART_TX1, -+ .end = IRQ_S3CUART_TX1, -+ .flags = IORESOURCE_IRQ, -+ -+ }, -+ [3] = { -+ .start = IRQ_S3CUART_ERR1, -+ .end = IRQ_S3CUART_ERR1, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+static struct resource s3c6xx_uart2_resource[] = { -+ [0] = { -+ .start = S3C_PA_UART2, -+ .end = S3C_PA_UART2 + 0x100, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_S3CUART_RX2, -+ .end = IRQ_S3CUART_RX2, -+ .flags = IORESOURCE_IRQ, -+ }, -+ [2] = { -+ .start = IRQ_S3CUART_TX2, -+ .end = IRQ_S3CUART_TX2, -+ .flags = IORESOURCE_IRQ, -+ -+ }, -+ [3] = { -+ .start = IRQ_S3CUART_ERR2, -+ .end = IRQ_S3CUART_ERR2, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+static struct resource s3c64xx_uart3_resource[] = { -+ [0] = { -+ .start = S3C_PA_UART3, -+ .end = S3C_PA_UART3 + 0x100, -+ .flags = IORESOURCE_MEM, -+ }, -+ [1] = { -+ .start = IRQ_S3CUART_RX3, -+ .end = IRQ_S3CUART_RX3, -+ .flags = IORESOURCE_IRQ, -+ }, -+ [2] = { -+ .start = IRQ_S3CUART_TX3, -+ .end = IRQ_S3CUART_TX3, -+ .flags = IORESOURCE_IRQ, -+ -+ }, -+ [3] = { -+ .start = IRQ_S3CUART_ERR3, -+ .end = IRQ_S3CUART_ERR3, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+ -+struct s3c24xx_uart_resources s3c64xx_uart_resources[] __initdata = { -+ [0] = { -+ .resources = s3c64xx_uart0_resource, -+ .nr_resources = ARRAY_SIZE(s3c64xx_uart0_resource), -+ }, -+ [1] = { -+ .resources = s3c64xx_uart1_resource, -+ .nr_resources = ARRAY_SIZE(s3c64xx_uart1_resource), -+ }, -+ [2] = { -+ .resources = s3c6xx_uart2_resource, -+ .nr_resources = ARRAY_SIZE(s3c6xx_uart2_resource), -+ }, -+ [3] = { -+ .resources = s3c64xx_uart3_resource, -+ .nr_resources = ARRAY_SIZE(s3c64xx_uart3_resource), -+ }, -+}; -+ -+/* uart devices */ -+ -+static struct platform_device s3c24xx_uart_device0 = { -+ .id = 0, -+}; -+ -+static struct platform_device s3c24xx_uart_device1 = { -+ .id = 1, -+}; -+ -+static struct platform_device s3c24xx_uart_device2 = { -+ .id = 2, -+}; -+ -+static struct platform_device s3c24xx_uart_device3 = { -+ .id = 3, -+}; -+ -+struct platform_device *s3c24xx_uart_src[4] = { -+ &s3c24xx_uart_device0, -+ &s3c24xx_uart_device1, -+ &s3c24xx_uart_device2, -+ &s3c24xx_uart_device3, -+}; -+ -+struct platform_device *s3c24xx_uart_devs[4] = { -+}; -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/gpiolib.c -@@ -0,0 +1,428 @@ -+/* arch/arm/plat-s3c64xx/gpiolib.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - GPIOlib support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/irq.h> -+#include <linux/io.h> -+ -+#include <mach/map.h> -+#include <mach/gpio.h> -+#include <mach/gpio-core.h> -+ -+#include <plat/gpio-cfg.h> -+#include <plat/gpio-cfg-helpers.h> -+#include <plat/regs-gpio.h> -+ -+/* GPIO bank summary: -+ * -+ * Bank GPIOs Style SlpCon ExtInt Group -+ * A 8 4Bit Yes 1 -+ * B 7 4Bit Yes 1 -+ * C 8 4Bit Yes 2 -+ * D 5 4Bit Yes 3 -+ * E 5 4Bit Yes None -+ * F 16 2Bit Yes 4 [1] -+ * G 7 4Bit Yes 5 -+ * H 10 4Bit[2] Yes 6 -+ * I 16 2Bit Yes None -+ * J 12 2Bit Yes None -+ * K 16 4Bit[2] No None -+ * L 15 4Bit[2] No None -+ * M 6 4Bit No IRQ_EINT -+ * N 16 2Bit No IRQ_EINT -+ * O 16 2Bit Yes 7 -+ * P 15 2Bit Yes 8 -+ * Q 9 2Bit Yes 9 -+ * -+ * [1] BANKF pins 14,15 do not form part of the external interrupt sources -+ * [2] BANK has two control registers, GPxCON0 and GPxCON1 -+ */ -+ -+#define OFF_GPCON (0x00) -+#define OFF_GPDAT (0x04) -+ -+#define con_4bit_shift(__off) ((__off) * 4) -+ -+#if 1 -+#define gpio_dbg(x...) do { } while(0) -+#else -+#define gpio_dbg(x...) printk(KERN_DEBUG ## x) -+#endif -+ -+/* The s3c64xx_gpiolib_4bit routines are to control the gpio banks where -+ * the gpio configuration register (GPxCON) has 4 bits per GPIO, as the -+ * following example: -+ * -+ * base + 0x00: Control register, 4 bits per gpio -+ * gpio n: 4 bits starting at (4*n) -+ * 0000 = input, 0001 = output, others mean special-function -+ * base + 0x04: Data register, 1 bit per gpio -+ * bit n: data bit n -+ * -+ * Note, since the data register is one bit per gpio and is at base + 0x4 -+ * we can use s3c_gpiolib_get and s3c_gpiolib_set to change the state of -+ * the output. -+*/ -+ -+static int s3c64xx_gpiolib_4bit_input(struct gpio_chip *chip, unsigned offset) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ void __iomem *base = ourchip->base; -+ unsigned long con; -+ -+ con = __raw_readl(base + OFF_GPCON); -+ con &= ~(0xf << con_4bit_shift(offset)); -+ __raw_writel(con, base + OFF_GPCON); -+ -+ gpio_dbg("%s: %p: CON now %08lx\n", __func__, base, con); -+ -+ return 0; -+} -+ -+static int s3c64xx_gpiolib_4bit_output(struct gpio_chip *chip, -+ unsigned offset, int value) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ void __iomem *base = ourchip->base; -+ unsigned long con; -+ unsigned long dat; -+ -+ con = __raw_readl(base + OFF_GPCON); -+ con &= ~(0xf << con_4bit_shift(offset)); -+ con |= 0x1 << con_4bit_shift(offset); -+ -+ dat = __raw_readl(base + OFF_GPDAT); -+ if (value) -+ dat |= 1 << offset; -+ else -+ dat &= ~(1 << offset); -+ -+ __raw_writel(dat, base + OFF_GPDAT); -+ __raw_writel(con, base + OFF_GPCON); -+ __raw_writel(dat, base + OFF_GPDAT); -+ -+ gpio_dbg("%s: %p: CON %08lx, DAT %08lx\n", __func__, base, con, dat); -+ -+ return 0; -+} -+ -+/* The next set of routines are for the case where the GPIO configuration -+ * registers are 4 bits per GPIO but there is more than one register (the -+ * bank has more than 8 GPIOs. -+ * -+ * This case is the similar to the 4 bit case, but the registers are as -+ * follows: -+ * -+ * base + 0x00: Control register, 4 bits per gpio (lower 8 GPIOs) -+ * gpio n: 4 bits starting at (4*n) -+ * 0000 = input, 0001 = output, others mean special-function -+ * base + 0x04: Control register, 4 bits per gpio (up to 8 additions GPIOs) -+ * gpio n: 4 bits starting at (4*n) -+ * 0000 = input, 0001 = output, others mean special-function -+ * base + 0x08: Data register, 1 bit per gpio -+ * bit n: data bit n -+ * -+ * To allow us to use the s3c_gpiolib_get and s3c_gpiolib_set routines we -+ * store the 'base + 0x4' address so that these routines see the data -+ * register at ourchip->base + 0x04. -+*/ -+ -+static int s3c64xx_gpiolib_4bit2_input(struct gpio_chip *chip, unsigned offset) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ void __iomem *base = ourchip->base; -+ void __iomem *regcon = base; -+ unsigned long con; -+ -+ if (offset > 7) -+ offset -= 8; -+ else -+ regcon -= 4; -+ -+ con = __raw_readl(regcon); -+ con &= ~(0xf << con_4bit_shift(offset)); -+ __raw_writel(con, regcon); -+ -+ gpio_dbg("%s: %p: CON %08lx\n", __func__, base, con); -+ -+ return 0; -+ -+} -+ -+static int s3c64xx_gpiolib_4bit2_output(struct gpio_chip *chip, -+ unsigned offset, int value) -+{ -+ struct s3c_gpio_chip *ourchip = to_s3c_gpio(chip); -+ void __iomem *base = ourchip->base; -+ void __iomem *regcon = base; -+ unsigned long con; -+ unsigned long dat; -+ -+ if (offset > 7) -+ offset -= 8; -+ else -+ regcon -= 4; -+ -+ con = __raw_readl(regcon); -+ con &= ~(0xf << con_4bit_shift(offset)); -+ con |= 0x1 << con_4bit_shift(offset); -+ -+ dat = __raw_readl(base + OFF_GPDAT); -+ if (value) -+ dat |= 1 << offset; -+ else -+ dat &= ~(1 << offset); -+ -+ __raw_writel(dat, base + OFF_GPDAT); -+ __raw_writel(con, regcon); -+ __raw_writel(dat, base + OFF_GPDAT); -+ -+ gpio_dbg("%s: %p: CON %08lx, DAT %08lx\n", __func__, base, con, dat); -+ -+ return 0; -+} -+ -+static struct s3c_gpio_cfg gpio_4bit_cfg_noint = { -+ .set_config = s3c_gpio_setcfg_s3c64xx_4bit, -+ .set_pull = s3c_gpio_setpull_updown, -+ .get_pull = s3c_gpio_getpull_updown, -+}; -+ -+static struct s3c_gpio_cfg gpio_4bit_cfg_eint0111 = { -+ .cfg_eint = 7, -+ .set_config = s3c_gpio_setcfg_s3c64xx_4bit, -+ .set_pull = s3c_gpio_setpull_updown, -+ .get_pull = s3c_gpio_getpull_updown, -+}; -+ -+static struct s3c_gpio_cfg gpio_4bit_cfg_eint0011 = { -+ .cfg_eint = 3, -+ .set_config = s3c_gpio_setcfg_s3c64xx_4bit, -+ .set_pull = s3c_gpio_setpull_updown, -+ .get_pull = s3c_gpio_getpull_updown, -+}; -+ -+static struct s3c_gpio_chip gpio_4bit[] = { -+ { -+ .base = S3C64XX_GPA_BASE, -+ .config = &gpio_4bit_cfg_eint0111, -+ .chip = { -+ .base = S3C64XX_GPA(0), -+ .ngpio = S3C64XX_GPIO_A_NR, -+ .label = "GPA", -+ }, -+ }, { -+ .base = S3C64XX_GPB_BASE, -+ .config = &gpio_4bit_cfg_eint0111, -+ .chip = { -+ .base = S3C64XX_GPB(0), -+ .ngpio = S3C64XX_GPIO_B_NR, -+ .label = "GPB", -+ }, -+ }, { -+ .base = S3C64XX_GPC_BASE, -+ .config = &gpio_4bit_cfg_eint0111, -+ .chip = { -+ .base = S3C64XX_GPC(0), -+ .ngpio = S3C64XX_GPIO_C_NR, -+ .label = "GPC", -+ }, -+ }, { -+ .base = S3C64XX_GPD_BASE, -+ .config = &gpio_4bit_cfg_eint0111, -+ .chip = { -+ .base = S3C64XX_GPD(0), -+ .ngpio = S3C64XX_GPIO_D_NR, -+ .label = "GPD", -+ }, -+ }, { -+ .base = S3C64XX_GPE_BASE, -+ .config = &gpio_4bit_cfg_noint, -+ .chip = { -+ .base = S3C64XX_GPE(0), -+ .ngpio = S3C64XX_GPIO_E_NR, -+ .label = "GPE", -+ }, -+ }, { -+ .base = S3C64XX_GPG_BASE, -+ .config = &gpio_4bit_cfg_eint0111, -+ .chip = { -+ .base = S3C64XX_GPG(0), -+ .ngpio = S3C64XX_GPIO_G_NR, -+ .label = "GPG", -+ }, -+ }, { -+ .base = S3C64XX_GPM_BASE, -+ .config = &gpio_4bit_cfg_eint0011, -+ .chip = { -+ .base = S3C64XX_GPM(0), -+ .ngpio = S3C64XX_GPIO_M_NR, -+ .label = "GPM", -+ }, -+ }, -+}; -+ -+static struct s3c_gpio_chip gpio_4bit2[] = { -+ { -+ .base = S3C64XX_GPH_BASE + 0x4, -+ .config = &gpio_4bit_cfg_eint0111, -+ .chip = { -+ .base = S3C64XX_GPH(0), -+ .ngpio = S3C64XX_GPIO_H_NR, -+ .label = "GPH", -+ }, -+ }, { -+ .base = S3C64XX_GPK_BASE + 0x4, -+ .config = &gpio_4bit_cfg_noint, -+ .chip = { -+ .base = S3C64XX_GPK(0), -+ .ngpio = S3C64XX_GPIO_K_NR, -+ .label = "GPK", -+ }, -+ }, { -+ .base = S3C64XX_GPL_BASE + 0x4, -+ .config = &gpio_4bit_cfg_eint0011, -+ .chip = { -+ .base = S3C64XX_GPL(0), -+ .ngpio = S3C64XX_GPIO_L_NR, -+ .label = "GPL", -+ }, -+ }, -+}; -+ -+static struct s3c_gpio_cfg gpio_2bit_cfg_noint = { -+ .set_config = s3c_gpio_setcfg_s3c24xx, -+ .set_pull = s3c_gpio_setpull_updown, -+ .get_pull = s3c_gpio_getpull_updown, -+}; -+ -+static struct s3c_gpio_cfg gpio_2bit_cfg_eint10 = { -+ .cfg_eint = 2, -+ .set_config = s3c_gpio_setcfg_s3c24xx, -+ .set_pull = s3c_gpio_setpull_updown, -+ .get_pull = s3c_gpio_getpull_updown, -+}; -+ -+static struct s3c_gpio_cfg gpio_2bit_cfg_eint11 = { -+ .cfg_eint = 3, -+ .set_config = s3c_gpio_setcfg_s3c24xx, -+ .set_pull = s3c_gpio_setpull_updown, -+ .get_pull = s3c_gpio_getpull_updown, -+}; -+ -+static struct s3c_gpio_chip gpio_2bit[] = { -+ { -+ .base = S3C64XX_GPF_BASE, -+ .config = &gpio_2bit_cfg_eint11, -+ .chip = { -+ .base = S3C64XX_GPF(0), -+ .ngpio = S3C64XX_GPIO_F_NR, -+ .label = "GPF", -+ }, -+ }, { -+ .base = S3C64XX_GPI_BASE, -+ .config = &gpio_2bit_cfg_noint, -+ .chip = { -+ .base = S3C64XX_GPI(0), -+ .ngpio = S3C64XX_GPIO_I_NR, -+ .label = "GPI", -+ }, -+ }, { -+ .base = S3C64XX_GPJ_BASE, -+ .config = &gpio_2bit_cfg_noint, -+ .chip = { -+ .base = S3C64XX_GPJ(0), -+ .ngpio = S3C64XX_GPIO_J_NR, -+ .label = "GPJ", -+ }, -+ }, { -+ .base = S3C64XX_GPN_BASE, -+ .config = &gpio_2bit_cfg_eint10, -+ .chip = { -+ .base = S3C64XX_GPN(0), -+ .ngpio = S3C64XX_GPIO_N_NR, -+ .label = "GPN", -+ }, -+ }, { -+ .base = S3C64XX_GPO_BASE, -+ .config = &gpio_2bit_cfg_eint11, -+ .chip = { -+ .base = S3C64XX_GPO(0), -+ .ngpio = S3C64XX_GPIO_O_NR, -+ .label = "GPO", -+ }, -+ }, { -+ .base = S3C64XX_GPP_BASE, -+ .config = &gpio_2bit_cfg_eint11, -+ .chip = { -+ .base = S3C64XX_GPP(0), -+ .ngpio = S3C64XX_GPIO_P_NR, -+ .label = "GPP", -+ }, -+ }, { -+ .base = S3C64XX_GPQ_BASE, -+ .config = &gpio_2bit_cfg_eint11, -+ .chip = { -+ .base = S3C64XX_GPQ(0), -+ .ngpio = S3C64XX_GPIO_Q_NR, -+ .label = "GPQ", -+ }, -+ }, -+}; -+ -+static __init void s3c64xx_gpiolib_add_4bit(struct s3c_gpio_chip *chip) -+{ -+ chip->chip.direction_input = s3c64xx_gpiolib_4bit_input; -+ chip->chip.direction_output = s3c64xx_gpiolib_4bit_output; -+ chip->pm = __gpio_pm(&s3c_gpio_pm_4bit); -+} -+ -+static __init void s3c64xx_gpiolib_add_4bit2(struct s3c_gpio_chip *chip) -+{ -+ chip->chip.direction_input = s3c64xx_gpiolib_4bit2_input; -+ chip->chip.direction_output = s3c64xx_gpiolib_4bit2_output; -+ chip->pm = __gpio_pm(&s3c_gpio_pm_4bit); -+} -+ -+static __init void s3c64xx_gpiolib_add_2bit(struct s3c_gpio_chip *chip) -+{ -+ chip->pm = __gpio_pm(&s3c_gpio_pm_2bit); -+} -+ -+static __init void s3c64xx_gpiolib_add(struct s3c_gpio_chip *chips, -+ int nr_chips, -+ void (*fn)(struct s3c_gpio_chip *)) -+{ -+ for (; nr_chips > 0; nr_chips--, chips++) { -+ if (fn) -+ (fn)(chips); -+ s3c_gpiolib_add(chips); -+ } -+} -+ -+static __init int s3c64xx_gpiolib_init(void) -+{ -+ s3c64xx_gpiolib_add(gpio_4bit, ARRAY_SIZE(gpio_4bit), -+ s3c64xx_gpiolib_add_4bit); -+ -+ s3c64xx_gpiolib_add(gpio_4bit2, ARRAY_SIZE(gpio_4bit2), -+ s3c64xx_gpiolib_add_4bit2); -+ -+ s3c64xx_gpiolib_add(gpio_2bit, ARRAY_SIZE(gpio_2bit), -+ s3c64xx_gpiolib_add_2bit); -+ -+ return 0; -+} -+ -+arch_initcall(s3c64xx_gpiolib_init); ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-a.h -@@ -0,0 +1,48 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-a.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank A register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPACON (S3C64XX_GPA_BASE + 0x00) -+#define S3C64XX_GPADAT (S3C64XX_GPA_BASE + 0x04) -+#define S3C64XX_GPAPUD (S3C64XX_GPA_BASE + 0x08) -+#define S3C64XX_GPACONSLP (S3C64XX_GPA_BASE + 0x0c) -+#define S3C64XX_GPAPUDSLP (S3C64XX_GPA_BASE + 0x10) -+ -+#define S3C64XX_GPA_CONMASK(__gpio) (0xf << ((__gpio) * 4)) -+#define S3C64XX_GPA_INPUT(__gpio) (0x0 << ((__gpio) * 4)) -+#define S3C64XX_GPA_OUTPUT(__gpio) (0x1 << ((__gpio) * 4)) -+ -+#define S3C64XX_GPA0_UART_RXD0 (0x02 << 0) -+#define S3C64XX_GPA0_EINT_G1_0 (0x07 << 0) -+ -+#define S3C64XX_GPA1_UART_TXD0 (0x02 << 4) -+#define S3C64XX_GPA1_EINT_G1_1 (0x07 << 4) -+ -+#define S3C64XX_GPA2_UART_nCTS0 (0x02 << 8) -+#define S3C64XX_GPA2_EINT_G1_2 (0x07 << 8) -+ -+#define S3C64XX_GPA3_UART_nRTS0 (0x02 << 12) -+#define S3C64XX_GPA3_EINT_G1_3 (0x07 << 12) -+ -+#define S3C64XX_GPA4_UART_RXD1 (0x02 << 16) -+#define S3C64XX_GPA4_EINT_G1_4 (0x07 << 16) -+ -+#define S3C64XX_GPA5_UART_TXD1 (0x02 << 20) -+#define S3C64XX_GPA5_EINT_G1_5 (0x07 << 20) -+ -+#define S3C64XX_GPA6_UART_nCTS1 (0x02 << 24) -+#define S3C64XX_GPA6_EINT_G1_6 (0x07 << 24) -+ -+#define S3C64XX_GPA7_UART_nRTS1 (0x02 << 28) -+#define S3C64XX_GPA7_EINT_G1_7 (0x07 << 28) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-b.h -@@ -0,0 +1,60 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-b.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank B register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPBCON (S3C64XX_GPB_BASE + 0x00) -+#define S3C64XX_GPBDAT (S3C64XX_GPB_BASE + 0x04) -+#define S3C64XX_GPBPUD (S3C64XX_GPB_BASE + 0x08) -+#define S3C64XX_GPBCONSLP (S3C64XX_GPB_BASE + 0x0c) -+#define S3C64XX_GPBPUDSLP (S3C64XX_GPB_BASE + 0x10) -+ -+#define S3C64XX_GPB_CONMASK(__gpio) (0xf << ((__gpio) * 4)) -+#define S3C64XX_GPB_INPUT(__gpio) (0x0 << ((__gpio) * 4)) -+#define S3C64XX_GPB_OUTPUT(__gpio) (0x1 << ((__gpio) * 4)) -+ -+#define S3C64XX_GPB0_UART_RXD2 (0x02 << 0) -+#define S3C64XX_GPB0_EXTDMA_REQ (0x03 << 0) -+#define S3C64XX_GPB0_IrDA_RXD (0x04 << 0) -+#define S3C64XX_GPB0_ADDR_CF0 (0x05 << 0) -+#define S3C64XX_GPB0_EINT_G1_8 (0x07 << 0) -+ -+#define S3C64XX_GPB1_UART_TXD2 (0x02 << 4) -+#define S3C64XX_GPB1_EXTDMA_ACK (0x03 << 4) -+#define S3C64XX_GPB1_IrDA_TXD (0x04 << 4) -+#define S3C64XX_GPB1_ADDR_CF1 (0x05 << 4) -+#define S3C64XX_GPB1_EINT_G1_9 (0x07 << 4) -+ -+#define S3C64XX_GPB2_UART_RXD3 (0x02 << 8) -+#define S3C64XX_GPB2_IrDA_RXD (0x03 << 8) -+#define S3C64XX_GPB2_EXTDMA_REQ (0x04 << 8) -+#define S3C64XX_GPB2_ADDR_CF2 (0x05 << 8) -+#define S3C64XX_GPB2_I2C_SCL1 (0x06 << 8) -+#define S3C64XX_GPB2_EINT_G1_10 (0x07 << 8) -+ -+#define S3C64XX_GPB3_UART_TXD3 (0x02 << 12) -+#define S3C64XX_GPB3_IrDA_TXD (0x03 << 12) -+#define S3C64XX_GPB3_EXTDMA_ACK (0x04 << 12) -+#define S3C64XX_GPB3_I2C_SDA1 (0x06 << 12) -+#define S3C64XX_GPB3_EINT_G1_11 (0x07 << 12) -+ -+#define S3C64XX_GPB4_IrDA_SDBW (0x02 << 16) -+#define S3C64XX_GPB4_CAM_FIELD (0x03 << 16) -+#define S3C64XX_GPB4_CF_DATA_DIR (0x04 << 16) -+#define S3C64XX_GPB4_EINT_G1_12 (0x07 << 16) -+ -+#define S3C64XX_GPB5_I2C_SCL0 (0x02 << 20) -+#define S3C64XX_GPB5_EINT_G1_13 (0x07 << 20) -+ -+#define S3C64XX_GPB6_I2C_SDA0 (0x02 << 24) -+#define S3C64XX_GPB6_EINT_G1_14 (0x07 << 24) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-c.h -@@ -0,0 +1,53 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-c.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank C register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPCCON (S3C64XX_GPC_BASE + 0x00) -+#define S3C64XX_GPCDAT (S3C64XX_GPC_BASE + 0x04) -+#define S3C64XX_GPCPUD (S3C64XX_GPC_BASE + 0x08) -+#define S3C64XX_GPCCONSLP (S3C64XX_GPC_BASE + 0x0c) -+#define S3C64XX_GPCPUDSLP (S3C64XX_GPC_BASE + 0x10) -+ -+#define S3C64XX_GPC_CONMASK(__gpio) (0xf << ((__gpio) * 4)) -+#define S3C64XX_GPC_INPUT(__gpio) (0x0 << ((__gpio) * 4)) -+#define S3C64XX_GPC_OUTPUT(__gpio) (0x1 << ((__gpio) * 4)) -+ -+#define S3C64XX_GPC0_SPI_MISO0 (0x02 << 0) -+#define S3C64XX_GPC0_EINT_G2_0 (0x07 << 0) -+ -+#define S3C64XX_GPC1_SPI_CLKO (0x02 << 4) -+#define S3C64XX_GPC1_EINT_G2_1 (0x07 << 4) -+ -+#define S3C64XX_GPC2_SPI_MOSIO (0x02 << 8) -+#define S3C64XX_GPC2_EINT_G2_2 (0x07 << 8) -+ -+#define S3C64XX_GPC3_SPI_nCSO (0x02 << 12) -+#define S3C64XX_GPC3_EINT_G2_3 (0x07 << 12) -+ -+#define S3C64XX_GPC4_SPI_MISO1 (0x02 << 16) -+#define S3C64XX_GPC4_MMC2_CMD (0x03 << 16) -+#define S3C64XX_GPC4_I2S0_V40_DO (0x05 << 16) -+#define S3C64XX_GPC4_EINT_G2_4 (0x07 << 16) -+ -+#define S3C64XX_GPC5_SPI_CLK1 (0x02 << 20) -+#define S3C64XX_GPC5_MMC2_CLK (0x03 << 20) -+#define S3C64XX_GPC5_I2S1_V40_DO (0x05 << 20) -+#define S3C64XX_GPC5_EINT_G2_5 (0x07 << 20) -+ -+#define S3C64XX_GPC6_SPI_MOSI1 (0x02 << 24) -+#define S3C64XX_GPC6_EINT_G2_6 (0x07 << 24) -+ -+#define S3C64XX_GPC7_SPI_nCS1 (0x02 << 28) -+#define S3C64XX_GPC7_I2S2_V40_DO (0x05 << 28) -+#define S3C64XX_GPC7_EINT_G2_7 (0x07 << 28) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-d.h -@@ -0,0 +1,49 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-d.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank D register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPDCON (S3C64XX_GPD_BASE + 0x00) -+#define S3C64XX_GPDDAT (S3C64XX_GPD_BASE + 0x04) -+#define S3C64XX_GPDPUD (S3C64XX_GPD_BASE + 0x08) -+#define S3C64XX_GPDCONSLP (S3C64XX_GPD_BASE + 0x0c) -+#define S3C64XX_GPDPUDSLP (S3C64XX_GPD_BASE + 0x10) -+ -+#define S3C64XX_GPD_CONMASK(__gpio) (0xf << ((__gpio) * 4)) -+#define S3C64XX_GPD_INPUT(__gpio) (0x0 << ((__gpio) * 4)) -+#define S3C64XX_GPD_OUTPUT(__gpio) (0x1 << ((__gpio) * 4)) -+ -+#define S3C64XX_GPD0_PCM0_SCLK (0x02 << 0) -+#define S3C64XX_GPD0_I2S0_CLK (0x03 << 0) -+#define S3C64XX_GPD0_AC97_BITCLK (0x04 << 0) -+#define S3C64XX_GPD0_EINT_G3_0 (0x07 << 0) -+ -+#define S3C64XX_GPD1_PCM0_EXTCLK (0x02 << 4) -+#define S3C64XX_GPD1_I2S0_CDCLK (0x03 << 4) -+#define S3C64XX_GPD1_AC97_nRESET (0x04 << 4) -+#define S3C64XX_GPD1_EINT_G3_1 (0x07 << 4) -+ -+#define S3C64XX_GPD2_PCM0_FSYNC (0x02 << 8) -+#define S3C64XX_GPD2_I2S0_LRCLK (0x03 << 8) -+#define S3C64XX_GPD2_AC97_SYNC (0x04 << 8) -+#define S3C64XX_GPD2_EINT_G3_2 (0x07 << 8) -+ -+#define S3C64XX_GPD3_PCM0_SIN (0x02 << 12) -+#define S3C64XX_GPD3_I2S0_DI (0x03 << 12) -+#define S3C64XX_GPD3_AC97_SDI (0x04 << 12) -+#define S3C64XX_GPD3_EINT_G3_3 (0x07 << 12) -+ -+#define S3C64XX_GPD4_PCM0_SOUT (0x02 << 16) -+#define S3C64XX_GPD4_I2S0_D0 (0x03 << 16) -+#define S3C64XX_GPD4_AC97_SDO (0x04 << 16) -+#define S3C64XX_GPD4_EINT_G3_4 (0x07 << 16) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-e.h -@@ -0,0 +1,44 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-e.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank E register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPECON (S3C64XX_GPE_BASE + 0x00) -+#define S3C64XX_GPEDAT (S3C64XX_GPE_BASE + 0x04) -+#define S3C64XX_GPEPUD (S3C64XX_GPE_BASE + 0x08) -+#define S3C64XX_GPECONSLP (S3C64XX_GPE_BASE + 0x0c) -+#define S3C64XX_GPEPUDSLP (S3C64XX_GPE_BASE + 0x10) -+ -+#define S3C64XX_GPE_CONMASK(__gpio) (0xf << ((__gpio) * 4)) -+#define S3C64XX_GPE_INPUT(__gpio) (0x0 << ((__gpio) * 4)) -+#define S3C64XX_GPE_OUTPUT(__gpio) (0x1 << ((__gpio) * 4)) -+ -+#define S3C64XX_GPE0_PCM1_SCLK (0x02 << 0) -+#define S3C64XX_GPE0_I2S1_CLK (0x03 << 0) -+#define S3C64XX_GPE0_AC97_BITCLK (0x04 << 0) -+ -+#define S3C64XX_GPE1_PCM1_EXTCLK (0x02 << 4) -+#define S3C64XX_GPE1_I2S1_CDCLK (0x03 << 4) -+#define S3C64XX_GPE1_AC97_nRESET (0x04 << 4) -+ -+#define S3C64XX_GPE2_PCM1_FSYNC (0x02 << 8) -+#define S3C64XX_GPE2_I2S1_LRCLK (0x03 << 8) -+#define S3C64XX_GPE2_AC97_SYNC (0x04 << 8) -+ -+#define S3C64XX_GPE3_PCM1_SIN (0x02 << 12) -+#define S3C64XX_GPE3_I2S1_DI (0x03 << 12) -+#define S3C64XX_GPE3_AC97_SDI (0x04 << 12) -+ -+#define S3C64XX_GPE4_PCM1_SOUT (0x02 << 16) -+#define S3C64XX_GPE4_I2S1_D0 (0x03 << 16) -+#define S3C64XX_GPE4_AC97_SDO (0x04 << 16) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-f.h -@@ -0,0 +1,71 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-f.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank F register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPFCON (S3C64XX_GPF_BASE + 0x00) -+#define S3C64XX_GPFDAT (S3C64XX_GPF_BASE + 0x04) -+#define S3C64XX_GPFPUD (S3C64XX_GPF_BASE + 0x08) -+#define S3C64XX_GPFCONSLP (S3C64XX_GPF_BASE + 0x0c) -+#define S3C64XX_GPFPUDSLP (S3C64XX_GPF_BASE + 0x10) -+ -+#define S3C64XX_GPF_CONMASK(__gpio) (0x3 << ((__gpio) * 2)) -+#define S3C64XX_GPF_INPUT(__gpio) (0x0 << ((__gpio) * 2)) -+#define S3C64XX_GPF_OUTPUT(__gpio) (0x1 << ((__gpio) * 2)) -+ -+#define S3C64XX_GPF0_CAMIF_CLK (0x02 << 0) -+#define S3C64XX_GPF0_EINT_G4_0 (0x03 << 0) -+ -+#define S3C64XX_GPF1_CAMIF_HREF (0x02 << 2) -+#define S3C64XX_GPF1_EINT_G4_1 (0x03 << 2) -+ -+#define S3C64XX_GPF2_CAMIF_PCLK (0x02 << 4) -+#define S3C64XX_GPF2_EINT_G4_2 (0x03 << 4) -+ -+#define S3C64XX_GPF3_CAMIF_nRST (0x02 << 6) -+#define S3C64XX_GPF3_EINT_G4_3 (0x03 << 6) -+ -+#define S3C64XX_GPF4_CAMIF_VSYNC (0x02 << 8) -+#define S3C64XX_GPF4_EINT_G4_4 (0x03 << 8) -+ -+#define S3C64XX_GPF5_CAMIF_YDATA0 (0x02 << 10) -+#define S3C64XX_GPF5_EINT_G4_5 (0x03 << 10) -+ -+#define S3C64XX_GPF6_CAMIF_YDATA1 (0x02 << 12) -+#define S3C64XX_GPF6_EINT_G4_6 (0x03 << 12) -+ -+#define S3C64XX_GPF7_CAMIF_YDATA2 (0x02 << 14) -+#define S3C64XX_GPF7_EINT_G4_7 (0x03 << 14) -+ -+#define S3C64XX_GPF8_CAMIF_YDATA3 (0x02 << 16) -+#define S3C64XX_GPF8_EINT_G4_8 (0x03 << 16) -+ -+#define S3C64XX_GPF9_CAMIF_YDATA4 (0x02 << 18) -+#define S3C64XX_GPF9_EINT_G4_9 (0x03 << 18) -+ -+#define S3C64XX_GPF10_CAMIF_YDATA5 (0x02 << 20) -+#define S3C64XX_GPF10_EINT_G4_10 (0x03 << 20) -+ -+#define S3C64XX_GPF11_CAMIF_YDATA6 (0x02 << 22) -+#define S3C64XX_GPF11_EINT_G4_11 (0x03 << 22) -+ -+#define S3C64XX_GPF12_CAMIF_YDATA7 (0x02 << 24) -+#define S3C64XX_GPF12_EINT_G4_12 (0x03 << 24) -+ -+#define S3C64XX_GPF13_PWM_ECLK (0x02 << 26) -+#define S3C64XX_GPF13_EINT_G4_13 (0x03 << 26) -+ -+#define S3C64XX_GPF14_PWM_TOUT0 (0x02 << 28) -+#define S3C64XX_GPF14_CLKOUT0 (0x03 << 28) -+ -+#define S3C64XX_GPF15_PWM_TOUT1 (0x02 << 30) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-g.h -@@ -0,0 +1,42 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-g.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank G register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPGCON (S3C64XX_GPG_BASE + 0x00) -+#define S3C64XX_GPGDAT (S3C64XX_GPG_BASE + 0x04) -+#define S3C64XX_GPGPUD (S3C64XX_GPG_BASE + 0x08) -+#define S3C64XX_GPGCONSLP (S3C64XX_GPG_BASE + 0x0c) -+#define S3C64XX_GPGPUDSLP (S3C64XX_GPG_BASE + 0x10) -+ -+#define S3C64XX_GPG_CONMASK(__gpio) (0xf << ((__gpio) * 4)) -+#define S3C64XX_GPG_INPUT(__gpio) (0x0 << ((__gpio) * 4)) -+#define S3C64XX_GPG_OUTPUT(__gpio) (0x1 << ((__gpio) * 4)) -+ -+#define S3C64XX_GPG0_MMC0_CLK (0x02 << 0) -+#define S3C64XX_GPG0_EINT_G5_0 (0x07 << 0) -+ -+#define S3C64XX_GPG1_MMC0_CMD (0x02 << 4) -+#define S3C64XX_GPG1_EINT_G5_1 (0x07 << 4) -+ -+#define S3C64XX_GPG2_MMC0_DATA0 (0x02 << 8) -+#define S3C64XX_GPG2_EINT_G5_2 (0x07 << 8) -+ -+#define S3C64XX_GPG3_MMC0_DATA1 (0x02 << 12) -+#define S3C64XX_GPG3_EINT_G5_3 (0x07 << 12) -+ -+#define S3C64XX_GPG4_MMC0_DATA2 (0x02 << 16) -+#define S3C64XX_GPG4_EINT_G5_4 (0x07 << 16) -+ -+#define S3C64XX_GPG5_MMC0_DATA3 (0x02 << 20) -+#define S3C64XX_GPG5_EINT_G5_5 (0x07 << 20) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-h.h -@@ -0,0 +1,74 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-h.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank H register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPHCON0 (S3C64XX_GPH_BASE + 0x00) -+#define S3C64XX_GPHCON1 (S3C64XX_GPH_BASE + 0x04) -+#define S3C64XX_GPHDAT (S3C64XX_GPH_BASE + 0x08) -+#define S3C64XX_GPHPUD (S3C64XX_GPH_BASE + 0x0c) -+#define S3C64XX_GPHCONSLP (S3C64XX_GPH_BASE + 0x10) -+#define S3C64XX_GPHPUDSLP (S3C64XX_GPH_BASE + 0x14) -+ -+#define S3C64XX_GPH_CONMASK(__gpio) (0xf << ((__gpio) * 4)) -+#define S3C64XX_GPH_INPUT(__gpio) (0x0 << ((__gpio) * 4)) -+#define S3C64XX_GPH_OUTPUT(__gpio) (0x1 << ((__gpio) * 4)) -+ -+#define S3C64XX_GPH0_MMC1_CLK (0x02 << 0) -+#define S3C64XX_GPH0_KP_COL0 (0x04 << 0) -+#define S3C64XX_GPH0_EINT_G6_0 (0x07 << 0) -+ -+#define S3C64XX_GPH1_MMC1_CMD (0x02 << 4) -+#define S3C64XX_GPH1_KP_COL1 (0x04 << 4) -+#define S3C64XX_GPH1_EINT_G6_1 (0x07 << 4) -+ -+#define S3C64XX_GPH2_MMC1_DATA0 (0x02 << 8) -+#define S3C64XX_GPH2_KP_COL2 (0x04 << 8) -+#define S3C64XX_GPH2_EINT_G6_2 (0x07 << 8) -+ -+#define S3C64XX_GPH3_MMC1_DATA1 (0x02 << 12) -+#define S3C64XX_GPH3_KP_COL3 (0x04 << 12) -+#define S3C64XX_GPH3_EINT_G6_3 (0x07 << 12) -+ -+#define S3C64XX_GPH4_MMC1_DATA2 (0x02 << 16) -+#define S3C64XX_GPH4_KP_COL4 (0x04 << 16) -+#define S3C64XX_GPH4_EINT_G6_4 (0x07 << 16) -+ -+#define S3C64XX_GPH5_MMC1_DATA3 (0x02 << 20) -+#define S3C64XX_GPH5_KP_COL5 (0x04 << 20) -+#define S3C64XX_GPH5_EINT_G6_5 (0x07 << 20) -+ -+#define S3C64XX_GPH6_MMC1_DATA4 (0x02 << 24) -+#define S3C64XX_GPH6_MMC2_DATA0 (0x03 << 24) -+#define S3C64XX_GPH6_KP_COL6 (0x04 << 24) -+#define S3C64XX_GPH6_I2S_V40_BCLK (0x05 << 24) -+#define S3C64XX_GPH6_ADDR_CF0 (0x06 << 24) -+#define S3C64XX_GPH6_EINT_G6_6 (0x07 << 24) -+ -+#define S3C64XX_GPH7_MMC1_DATA5 (0x02 << 28) -+#define S3C64XX_GPH7_MMC2_DATA1 (0x03 << 28) -+#define S3C64XX_GPH7_KP_COL7 (0x04 << 28) -+#define S3C64XX_GPH7_I2S_V40_CDCLK (0x05 << 28) -+#define S3C64XX_GPH7_ADDR_CF1 (0x06 << 28) -+#define S3C64XX_GPH7_EINT_G6_7 (0x07 << 28) -+ -+#define S3C64XX_GPH8_MMC1_DATA6 (0x02 << 32) -+#define S3C64XX_GPH8_MMC2_DATA2 (0x03 << 32) -+#define S3C64XX_GPH8_I2S_V40_LRCLK (0x05 << 32) -+#define S3C64XX_GPH8_ADDR_CF2 (0x06 << 32) -+#define S3C64XX_GPH8_EINT_G6_8 (0x07 << 32) -+ -+#define S3C64XX_GPH9_MMC1_DATA7 (0x02 << 36) -+#define S3C64XX_GPH9_MMC2_DATA3 (0x03 << 36) -+#define S3C64XX_GPH9_I2S_V40_DI (0x05 << 36) -+#define S3C64XX_GPH9_EINT_G6_9 (0x07 << 36) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-i.h -@@ -0,0 +1,40 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-i.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank I register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPICON (S3C64XX_GPI_BASE + 0x00) -+#define S3C64XX_GPIDAT (S3C64XX_GPI_BASE + 0x04) -+#define S3C64XX_GPIPUD (S3C64XX_GPI_BASE + 0x08) -+#define S3C64XX_GPICONSLP (S3C64XX_GPI_BASE + 0x0c) -+#define S3C64XX_GPIPUDSLP (S3C64XX_GPI_BASE + 0x10) -+ -+#define S3C64XX_GPI_CONMASK(__gpio) (0x3 << ((__gpio) * 2)) -+#define S3C64XX_GPI_INPUT(__gpio) (0x0 << ((__gpio) * 2)) -+#define S3C64XX_GPI_OUTPUT(__gpio) (0x1 << ((__gpio) * 2)) -+ -+#define S3C64XX_GPI0_VD0 (0x02 << 0) -+#define S3C64XX_GPI1_VD1 (0x02 << 2) -+#define S3C64XX_GPI2_VD2 (0x02 << 4) -+#define S3C64XX_GPI3_VD3 (0x02 << 6) -+#define S3C64XX_GPI4_VD4 (0x02 << 8) -+#define S3C64XX_GPI5_VD5 (0x02 << 10) -+#define S3C64XX_GPI6_VD6 (0x02 << 12) -+#define S3C64XX_GPI7_VD7 (0x02 << 14) -+#define S3C64XX_GPI8_VD8 (0x02 << 16) -+#define S3C64XX_GPI9_VD9 (0x02 << 18) -+#define S3C64XX_GPI10_VD10 (0x02 << 20) -+#define S3C64XX_GPI11_VD11 (0x02 << 22) -+#define S3C64XX_GPI12_VD12 (0x02 << 24) -+#define S3C64XX_GPI13_VD13 (0x02 << 26) -+#define S3C64XX_GPI14_VD14 (0x02 << 28) -+#define S3C64XX_GPI15_VD15 (0x02 << 30) ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-j.h -@@ -0,0 +1,36 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-j.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank J register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPJCON (S3C64XX_GPJ_BASE + 0x00) -+#define S3C64XX_GPJDAT (S3C64XX_GPJ_BASE + 0x04) -+#define S3C64XX_GPJPUD (S3C64XX_GPJ_BASE + 0x08) -+#define S3C64XX_GPJCONSLP (S3C64XX_GPJ_BASE + 0x0c) -+#define S3C64XX_GPJPUDSLP (S3C64XX_GPJ_BASE + 0x10) -+ -+#define S3C64XX_GPJ_CONMASK(__gpio) (0x3 << ((__gpio) * 2)) -+#define S3C64XX_GPJ_INPUT(__gpio) (0x0 << ((__gpio) * 2)) -+#define S3C64XX_GPJ_OUTPUT(__gpio) (0x1 << ((__gpio) * 2)) -+ -+#define S3C64XX_GPJ0_VD16 (0x02 << 0) -+#define S3C64XX_GPJ1_VD17 (0x02 << 2) -+#define S3C64XX_GPJ2_VD18 (0x02 << 4) -+#define S3C64XX_GPJ3_VD19 (0x02 << 6) -+#define S3C64XX_GPJ4_VD20 (0x02 << 8) -+#define S3C64XX_GPJ5_VD21 (0x02 << 10) -+#define S3C64XX_GPJ6_VD22 (0x02 << 12) -+#define S3C64XX_GPJ7_VD23 (0x02 << 14) -+#define S3C64XX_GPJ8_LCD_HSYNC (0x02 << 16) -+#define S3C64XX_GPJ9_LCD_VSYNC (0x02 << 18) -+#define S3C64XX_GPJ10_LCD_VDEN (0x02 << 20) -+#define S3C64XX_GPJ11_LCD_VCLK (0x02 << 22) ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-n.h -@@ -0,0 +1,54 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-n.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank N register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPNCON (S3C64XX_GPN_BASE + 0x00) -+#define S3C64XX_GPNDAT (S3C64XX_GPN_BASE + 0x04) -+#define S3C64XX_GPNPUD (S3C64XX_GPN_BASE + 0x08) -+ -+#define S3C64XX_GPN_CONMASK(__gpio) (0x3 << ((__gpio) * 2)) -+#define S3C64XX_GPN_INPUT(__gpio) (0x0 << ((__gpio) * 2)) -+#define S3C64XX_GPN_OUTPUT(__gpio) (0x1 << ((__gpio) * 2)) -+ -+#define S3C64XX_GPN0_EINT0 (0x02 << 0) -+#define S3C64XX_GPN0_KP_ROW0 (0x03 << 0) -+ -+#define S3C64XX_GPN1_EINT1 (0x02 << 2) -+#define S3C64XX_GPN1_KP_ROW1 (0x03 << 2) -+ -+#define S3C64XX_GPN2_EINT2 (0x02 << 4) -+#define S3C64XX_GPN2_KP_ROW2 (0x03 << 4) -+ -+#define S3C64XX_GPN3_EINT3 (0x02 << 6) -+#define S3C64XX_GPN3_KP_ROW3 (0x03 << 6) -+ -+#define S3C64XX_GPN4_EINT4 (0x02 << 8) -+#define S3C64XX_GPN4_KP_ROW4 (0x03 << 8) -+ -+#define S3C64XX_GPN5_EINT5 (0x02 << 10) -+#define S3C64XX_GPN5_KP_ROW5 (0x03 << 10) -+ -+#define S3C64XX_GPN6_EINT6 (0x02 << 12) -+#define S3C64XX_GPN6_KP_ROW6 (0x03 << 12) -+ -+#define S3C64XX_GPN7_EINT7 (0x02 << 14) -+#define S3C64XX_GPN7_KP_ROW7 (0x03 << 14) -+ -+#define S3C64XX_GPN8_EINT8 (0x02 << 16) -+#define S3C64XX_GPN9_EINT9 (0x02 << 18) -+#define S3C64XX_GPN10_EINT10 (0x02 << 20) -+#define S3C64XX_GPN11_EINT11 (0x02 << 22) -+#define S3C64XX_GPN12_EINT12 (0x02 << 24) -+#define S3C64XX_GPN13_EINT13 (0x02 << 26) -+#define S3C64XX_GPN14_EINT14 (0x02 << 28) -+#define S3C64XX_GPN15_EINT15 (0x02 << 30) ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-o.h -@@ -0,0 +1,70 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-o.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank O register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPOCON (S3C64XX_GPO_BASE + 0x00) -+#define S3C64XX_GPODAT (S3C64XX_GPO_BASE + 0x04) -+#define S3C64XX_GPOPUD (S3C64XX_GPO_BASE + 0x08) -+#define S3C64XX_GPOCONSLP (S3C64XX_GPO_BASE + 0x0c) -+#define S3C64XX_GPOPUDSLP (S3C64XX_GPO_BASE + 0x10) -+ -+#define S3C64XX_GPO_CONMASK(__gpio) (0x3 << ((__gpio) * 2)) -+#define S3C64XX_GPO_INPUT(__gpio) (0x0 << ((__gpio) * 2)) -+#define S3C64XX_GPO_OUTPUT(__gpio) (0x1 << ((__gpio) * 2)) -+ -+#define S3C64XX_GPO0_MEM0_nCS2 (0x02 << 0) -+#define S3C64XX_GPO0_EINT_G7_0 (0x03 << 0) -+ -+#define S3C64XX_GPO1_MEM0_nCS3 (0x02 << 2) -+#define S3C64XX_GPO1_EINT_G7_1 (0x03 << 2) -+ -+#define S3C64XX_GPO2_MEM0_nCS4 (0x02 << 4) -+#define S3C64XX_GPO2_EINT_G7_2 (0x03 << 4) -+ -+#define S3C64XX_GPO3_MEM0_nCS5 (0x02 << 6) -+#define S3C64XX_GPO3_EINT_G7_3 (0x03 << 6) -+ -+#define S3C64XX_GPO4_EINT_G7_4 (0x03 << 8) -+ -+#define S3C64XX_GPO5_EINT_G7_5 (0x03 << 10) -+ -+#define S3C64XX_GPO6_MEM0_ADDR6 (0x02 << 12) -+#define S3C64XX_GPO6_EINT_G7_6 (0x03 << 12) -+ -+#define S3C64XX_GPO7_MEM0_ADDR7 (0x02 << 14) -+#define S3C64XX_GPO7_EINT_G7_7 (0x03 << 14) -+ -+#define S3C64XX_GPO8_MEM0_ADDR8 (0x02 << 16) -+#define S3C64XX_GPO8_EINT_G7_8 (0x03 << 16) -+ -+#define S3C64XX_GPO9_MEM0_ADDR9 (0x02 << 18) -+#define S3C64XX_GPO9_EINT_G7_9 (0x03 << 18) -+ -+#define S3C64XX_GPO10_MEM0_ADDR10 (0x02 << 20) -+#define S3C64XX_GPO10_EINT_G7_10 (0x03 << 20) -+ -+#define S3C64XX_GPO11_MEM0_ADDR11 (0x02 << 22) -+#define S3C64XX_GPO11_EINT_G7_11 (0x03 << 22) -+ -+#define S3C64XX_GPO12_MEM0_ADDR12 (0x02 << 24) -+#define S3C64XX_GPO12_EINT_G7_12 (0x03 << 24) -+ -+#define S3C64XX_GPO13_MEM0_ADDR13 (0x02 << 26) -+#define S3C64XX_GPO13_EINT_G7_13 (0x03 << 26) -+ -+#define S3C64XX_GPO14_MEM0_ADDR14 (0x02 << 28) -+#define S3C64XX_GPO14_EINT_G7_14 (0x03 << 28) -+ -+#define S3C64XX_GPO15_MEM0_ADDR15 (0x02 << 30) -+#define S3C64XX_GPO15_EINT_G7_15 (0x03 << 30) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-p.h -@@ -0,0 +1,69 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-p.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank P register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPPCON (S3C64XX_GPP_BASE + 0x00) -+#define S3C64XX_GPPDAT (S3C64XX_GPP_BASE + 0x04) -+#define S3C64XX_GPPPUD (S3C64XX_GPP_BASE + 0x08) -+#define S3C64XX_GPPCONSLP (S3C64XX_GPP_BASE + 0x0c) -+#define S3C64XX_GPPPUDSLP (S3C64XX_GPP_BASE + 0x10) -+ -+#define S3C64XX_GPP_CONMASK(__gpio) (0x3 << ((__gpio) * 2)) -+#define S3C64XX_GPP_INPUT(__gpio) (0x0 << ((__gpio) * 2)) -+#define S3C64XX_GPP_OUTPUT(__gpio) (0x1 << ((__gpio) * 2)) -+ -+#define S3C64XX_GPP0_MEM0_ADDRV (0x02 << 0) -+#define S3C64XX_GPP0_EINT_G8_0 (0x03 << 0) -+ -+#define S3C64XX_GPP1_MEM0_SMCLK (0x02 << 2) -+#define S3C64XX_GPP1_EINT_G8_1 (0x03 << 2) -+ -+#define S3C64XX_GPP2_MEM0_nWAIT (0x02 << 4) -+#define S3C64XX_GPP2_EINT_G8_2 (0x03 << 4) -+ -+#define S3C64XX_GPP3_MEM0_RDY0_ALE (0x02 << 6) -+#define S3C64XX_GPP3_EINT_G8_3 (0x03 << 6) -+ -+#define S3C64XX_GPP4_MEM0_RDY1_CLE (0x02 << 8) -+#define S3C64XX_GPP4_EINT_G8_4 (0x03 << 8) -+ -+#define S3C64XX_GPP5_MEM0_INTsm0_FWE (0x02 << 10) -+#define S3C64XX_GPP5_EINT_G8_5 (0x03 << 10) -+ -+#define S3C64XX_GPP6_MEM0_(null) (0x02 << 12) -+#define S3C64XX_GPP6_EINT_G8_6 (0x03 << 12) -+ -+#define S3C64XX_GPP7_MEM0_INTsm1_FRE (0x02 << 14) -+#define S3C64XX_GPP7_EINT_G8_7 (0x03 << 14) -+ -+#define S3C64XX_GPP8_MEM0_RPn_RnB (0x02 << 16) -+#define S3C64XX_GPP8_EINT_G8_8 (0x03 << 16) -+ -+#define S3C64XX_GPP9_MEM0_ATA_RESET (0x02 << 18) -+#define S3C64XX_GPP9_EINT_G8_9 (0x03 << 18) -+ -+#define S3C64XX_GPP10_MEM0_ATA_INPACK (0x02 << 20) -+#define S3C64XX_GPP10_EINT_G8_10 (0x03 << 20) -+ -+#define S3C64XX_GPP11_MEM0_ATA_REG (0x02 << 22) -+#define S3C64XX_GPP11_EINT_G8_11 (0x03 << 22) -+ -+#define S3C64XX_GPP12_MEM0_ATA_WE (0x02 << 24) -+#define S3C64XX_GPP12_EINT_G8_12 (0x03 << 24) -+ -+#define S3C64XX_GPP13_MEM0_ATA_OE (0x02 << 26) -+#define S3C64XX_GPP13_EINT_G8_13 (0x03 << 26) -+ -+#define S3C64XX_GPP14_MEM0_ATA_CD (0x02 << 28) -+#define S3C64XX_GPP14_EINT_G8_14 (0x03 << 28) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/gpio-bank-q.h -@@ -0,0 +1,46 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/gpio-bank-q.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * GPIO Bank Q register and configuration definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C64XX_GPQCON (S3C64XX_GPQ_BASE + 0x00) -+#define S3C64XX_GPQDAT (S3C64XX_GPQ_BASE + 0x04) -+#define S3C64XX_GPQPUD (S3C64XX_GPQ_BASE + 0x08) -+#define S3C64XX_GPQCONSLP (S3C64XX_GPQ_BASE + 0x0c) -+#define S3C64XX_GPQPUDSLP (S3C64XX_GPQ_BASE + 0x10) -+ -+#define S3C64XX_GPQ_CONMASK(__gpio) (0x3 << ((__gpio) * 2)) -+#define S3C64XX_GPQ_INPUT(__gpio) (0x0 << ((__gpio) * 2)) -+#define S3C64XX_GPQ_OUTPUT(__gpio) (0x1 << ((__gpio) * 2)) -+ -+#define S3C64XX_GPQ0_MEM0_ADDR18_RAS (0x02 << 0) -+#define S3C64XX_GPQ0_EINT_G9_0 (0x03 << 0) -+ -+#define S3C64XX_GPQ1_MEM0_ADDR19_CAS (0x02 << 2) -+#define S3C64XX_GPQ1_EINT_G9_1 (0x03 << 2) -+ -+#define S3C64XX_GPQ2_EINT_G9_2 (0x03 << 4) -+ -+#define S3C64XX_GPQ3_EINT_G9_3 (0x03 << 6) -+ -+#define S3C64XX_GPQ4_EINT_G9_4 (0x03 << 8) -+ -+#define S3C64XX_GPQ5_EINT_G9_5 (0x03 << 10) -+ -+#define S3C64XX_GPQ6_EINT_G9_6 (0x03 << 12) -+ -+#define S3C64XX_GPQ7_MEM0_ADDR17_WENDMC (0x02 << 14) -+#define S3C64XX_GPQ7_EINT_G9_7 (0x03 << 14) -+ -+#define S3C64XX_GPQ8_MEM0_ADDR16_APDMC (0x02 << 16) -+#define S3C64XX_GPQ8_EINT_G9_8 (0x03 << 16) -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/irqs.h -@@ -0,0 +1,202 @@ -+/* linux/arch/arm/plat-s3c64xx/include/mach/irqs.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - Common IRQ support -+ */ -+ -+#ifndef __ASM_PLAT_S3C64XX_IRQS_H -+#define __ASM_PLAT_S3C64XX_IRQS_H __FILE__ -+ -+/* we keep the first set of CPU IRQs out of the range of -+ * the ISA space, so that the PC104 has them to itself -+ * and we don't end up having to do horrible things to the -+ * standard ISA drivers.... -+ * -+ * note, since we're using the VICs, our start must be a -+ * mulitple of 32 to allow the common code to work -+ */ -+ -+#define S3C_IRQ_OFFSET (32) -+ -+#define S3C_IRQ(x) ((x) + S3C_IRQ_OFFSET) -+ -+#define S3C_VIC0_BASE S3C_IRQ(0) -+#define S3C_VIC1_BASE S3C_IRQ(32) -+ -+/* UART interrupts, each UART has 4 intterupts per channel so -+ * use the space between the ISA and S3C main interrupts. Note, these -+ * are not in the same order as the S3C24XX series! */ -+ -+#define IRQ_S3CUART_BASE0 (16) -+#define IRQ_S3CUART_BASE1 (20) -+#define IRQ_S3CUART_BASE2 (24) -+#define IRQ_S3CUART_BASE3 (28) -+ -+#define UART_IRQ_RXD (0) -+#define UART_IRQ_ERR (1) -+#define UART_IRQ_TXD (2) -+#define UART_IRQ_MODEM (3) -+ -+#define IRQ_S3CUART_RX0 (IRQ_S3CUART_BASE0 + UART_IRQ_RXD) -+#define IRQ_S3CUART_TX0 (IRQ_S3CUART_BASE0 + UART_IRQ_TXD) -+#define IRQ_S3CUART_ERR0 (IRQ_S3CUART_BASE0 + UART_IRQ_ERR) -+ -+#define IRQ_S3CUART_RX1 (IRQ_S3CUART_BASE1 + UART_IRQ_RXD) -+#define IRQ_S3CUART_TX1 (IRQ_S3CUART_BASE1 + UART_IRQ_TXD) -+#define IRQ_S3CUART_ERR1 (IRQ_S3CUART_BASE1 + UART_IRQ_ERR) -+ -+#define IRQ_S3CUART_RX2 (IRQ_S3CUART_BASE2 + UART_IRQ_RXD) -+#define IRQ_S3CUART_TX2 (IRQ_S3CUART_BASE2 + UART_IRQ_TXD) -+#define IRQ_S3CUART_ERR2 (IRQ_S3CUART_BASE2 + UART_IRQ_ERR) -+ -+#define IRQ_S3CUART_RX3 (IRQ_S3CUART_BASE3 + UART_IRQ_RXD) -+#define IRQ_S3CUART_TX3 (IRQ_S3CUART_BASE3 + UART_IRQ_TXD) -+#define IRQ_S3CUART_ERR3 (IRQ_S3CUART_BASE3 + UART_IRQ_ERR) -+ -+/* VIC based IRQs */ -+ -+#define S3C64XX_IRQ_VIC0(x) (S3C_VIC0_BASE + (x)) -+#define S3C64XX_IRQ_VIC1(x) (S3C_VIC1_BASE + (x)) -+ -+/* VIC0 */ -+ -+#define IRQ_EINT0_3 S3C64XX_IRQ_VIC0(0) -+#define IRQ_EINT4_11 S3C64XX_IRQ_VIC0(1) -+#define IRQ_RTC_TIC S3C64XX_IRQ_VIC0(2) -+#define IRQ_CAMIF_C S3C64XX_IRQ_VIC0(3) -+#define IRQ_CAMIF_P S3C64XX_IRQ_VIC0(4) -+#define IRQ_CAMIF_MC S3C64XX_IRQ_VIC0(5) -+#define IRQ_S3C6410_IIC1 S3C64XX_IRQ_VIC0(5) -+#define IRQ_S3C6410_IIS S3C64XX_IRQ_VIC0(6) -+#define IRQ_S3C6400_CAMIF_MP S3C64XX_IRQ_VIC0(6) -+#define IRQ_CAMIF_WE_C S3C64XX_IRQ_VIC0(7) -+#define IRQ_S3C6410_G3D S3C64XX_IRQ_VIC0(8) -+#define IRQ_S3C6400_CAMIF_WE_P S3C64XX_IRQ_VIC0(8) -+#define IRQ_POST0 S3C64XX_IRQ_VIC0(9) -+#define IRQ_ROTATOR S3C64XX_IRQ_VIC0(10) -+#define IRQ_2D S3C64XX_IRQ_VIC0(11) -+#define IRQ_TVENC S3C64XX_IRQ_VIC0(12) -+#define IRQ_SCALER S3C64XX_IRQ_VIC0(13) -+#define IRQ_BATF S3C64XX_IRQ_VIC0(14) -+#define IRQ_JPEG S3C64XX_IRQ_VIC0(15) -+#define IRQ_MFC S3C64XX_IRQ_VIC0(16) -+#define IRQ_SDMA0 S3C64XX_IRQ_VIC0(17) -+#define IRQ_SDMA1 S3C64XX_IRQ_VIC0(18) -+#define IRQ_ARM_DMAERR S3C64XX_IRQ_VIC0(19) -+#define IRQ_ARM_DMA S3C64XX_IRQ_VIC0(20) -+#define IRQ_ARM_DMAS S3C64XX_IRQ_VIC0(21) -+#define IRQ_KEYPAD S3C64XX_IRQ_VIC0(22) -+#define IRQ_TIMER0_VIC S3C64XX_IRQ_VIC0(23) -+#define IRQ_TIMER1_VIC S3C64XX_IRQ_VIC0(24) -+#define IRQ_TIMER2_VIC S3C64XX_IRQ_VIC0(25) -+#define IRQ_WDT S3C64XX_IRQ_VIC0(26) -+#define IRQ_TIMER3_VIC S3C64XX_IRQ_VIC0(27) -+#define IRQ_TIMER4_VIC S3C64XX_IRQ_VIC0(28) -+#define IRQ_LCD_FIFO S3C64XX_IRQ_VIC0(29) -+#define IRQ_LCD_VSYNC S3C64XX_IRQ_VIC0(30) -+#define IRQ_LCD_SYSTEM S3C64XX_IRQ_VIC0(31) -+ -+/* VIC1 */ -+ -+#define IRQ_EINT12_19 S3C64XX_IRQ_VIC1(0) -+#define IRQ_EINT20_27 S3C64XX_IRQ_VIC1(1) -+#define IRQ_PCM0 S3C64XX_IRQ_VIC1(2) -+#define IRQ_PCM1 S3C64XX_IRQ_VIC1(3) -+#define IRQ_AC97 S3C64XX_IRQ_VIC1(4) -+#define IRQ_UART0 S3C64XX_IRQ_VIC1(5) -+#define IRQ_UART1 S3C64XX_IRQ_VIC1(6) -+#define IRQ_UART2 S3C64XX_IRQ_VIC1(7) -+#define IRQ_UART3 S3C64XX_IRQ_VIC1(8) -+#define IRQ_DMA0 S3C64XX_IRQ_VIC1(9) -+#define IRQ_DMA1 S3C64XX_IRQ_VIC1(10) -+#define IRQ_ONENAND0 S3C64XX_IRQ_VIC1(11) -+#define IRQ_ONENAND1 S3C64XX_IRQ_VIC1(12) -+#define IRQ_NFC S3C64XX_IRQ_VIC1(13) -+#define IRQ_CFCON S3C64XX_IRQ_VIC1(14) -+#define IRQ_UHOST S3C64XX_IRQ_VIC1(15) -+#define IRQ_SPI0 S3C64XX_IRQ_VIC1(16) -+#define IRQ_SPI1 S3C64XX_IRQ_VIC1(17) -+#define IRQ_IIC S3C64XX_IRQ_VIC1(18) -+#define IRQ_HSItx S3C64XX_IRQ_VIC1(19) -+#define IRQ_HSIrx S3C64XX_IRQ_VIC1(20) -+#define IRQ_RESERVED S3C64XX_IRQ_VIC1(21) -+#define IRQ_MSM S3C64XX_IRQ_VIC1(22) -+#define IRQ_HOSTIF S3C64XX_IRQ_VIC1(23) -+#define IRQ_HSMMC0 S3C64XX_IRQ_VIC1(24) -+#define IRQ_HSMMC1 S3C64XX_IRQ_VIC1(25) -+#define IRQ_HSMMC2 IRQ_SPI1 /* shared with SPI1 */ -+#define IRQ_OTG S3C64XX_IRQ_VIC1(26) -+#define IRQ_IRDA S3C64XX_IRQ_VIC1(27) -+#define IRQ_RTC_ALARM S3C64XX_IRQ_VIC1(28) -+#define IRQ_SEC S3C64XX_IRQ_VIC1(29) -+#define IRQ_PENDN S3C64XX_IRQ_VIC1(30) -+#define IRQ_TC IRQ_PENDN -+#define IRQ_ADC S3C64XX_IRQ_VIC1(31) -+ -+#define S3C64XX_TIMER_IRQ(x) S3C_IRQ(64 + (x)) -+ -+#define IRQ_TIMER0 S3C64XX_TIMER_IRQ(0) -+#define IRQ_TIMER1 S3C64XX_TIMER_IRQ(1) -+#define IRQ_TIMER2 S3C64XX_TIMER_IRQ(2) -+#define IRQ_TIMER3 S3C64XX_TIMER_IRQ(3) -+#define IRQ_TIMER4 S3C64XX_TIMER_IRQ(4) -+ -+/* compatibility for device defines */ -+ -+#define IRQ_IIC1 IRQ_S3C6410_IIC1 -+ -+/* Since the IRQ_EINT(x) are a linear mapping on current s3c64xx series -+ * we just defined them as an IRQ_EINT(x) macro from S3C_IRQ_EINT_BASE -+ * which we place after the pair of VICs. */ -+ -+#define S3C_IRQ_EINT_BASE S3C_IRQ(64+5) -+ -+#define S3C_EINT(x) ((x) + S3C_IRQ_EINT_BASE) -+#define IRQ_EINT(x) S3C_EINT(x) -+#define IRQ_EINT_BIT(x) ((x) - S3C_EINT(0)) -+ -+/* Next the external interrupt groups. These are similar to the IRQ_EINT(x) -+ * that they are sourced from the GPIO pins but with a different scheme for -+ * priority and source indication. -+ * -+ * The IRQ_EINT(x) can be thought of as 'group 0' of the available GPIO -+ * interrupts, but for historical reasons they are kept apart from these -+ * next interrupts. -+ * -+ * Use IRQ_EINT_GROUP(group, offset) to get the number for use in the -+ * machine specific support files. -+ */ -+ -+#define IRQ_EINT_GROUP1_NR (15) -+#define IRQ_EINT_GROUP2_NR (8) -+#define IRQ_EINT_GROUP3_NR (5) -+#define IRQ_EINT_GROUP4_NR (14) -+#define IRQ_EINT_GROUP5_NR (7) -+#define IRQ_EINT_GROUP6_NR (10) -+#define IRQ_EINT_GROUP7_NR (16) -+#define IRQ_EINT_GROUP8_NR (15) -+#define IRQ_EINT_GROUP9_NR (9) -+ -+#define IRQ_EINT_GROUP_BASE S3C_EINT(28) -+#define IRQ_EINT_GROUP1_BASE (IRQ_EINT_GROUP_BASE + 0x00) -+#define IRQ_EINT_GROUP2_BASE (IRQ_EINT_GROUP1_BASE + IRQ_EINT_GROUP1_NR) -+#define IRQ_EINT_GROUP3_BASE (IRQ_EINT_GROUP2_BASE + IRQ_EINT_GROUP2_NR) -+#define IRQ_EINT_GROUP4_BASE (IRQ_EINT_GROUP3_BASE + IRQ_EINT_GROUP3_NR) -+#define IRQ_EINT_GROUP5_BASE (IRQ_EINT_GROUP4_BASE + IRQ_EINT_GROUP4_NR) -+#define IRQ_EINT_GROUP6_BASE (IRQ_EINT_GROUP5_BASE + IRQ_EINT_GROUP5_NR) -+#define IRQ_EINT_GROUP7_BASE (IRQ_EINT_GROUP6_BASE + IRQ_EINT_GROUP6_NR) -+#define IRQ_EINT_GROUP8_BASE (IRQ_EINT_GROUP7_BASE + IRQ_EINT_GROUP7_NR) -+#define IRQ_EINT_GROUP9_BASE (IRQ_EINT_GROUP8_BASE + IRQ_EINT_GROUP8_NR) -+ -+#define IRQ_EINT_GROUP(group, no) (IRQ_EINT_GROUP##group##__BASE + (x)) -+ -+/* Set the default NR_IRQS */ -+ -+#define NR_IRQS (IRQ_EINT_GROUP9_BASE + IRQ_EINT_GROUP9_NR + 1) -+ -+#endif /* __ASM_PLAT_S3C64XX_IRQS_H */ -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/pll.h -@@ -0,0 +1,74 @@ -+/* arch/arm/plat-s3c64xx/include/plat/pll.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX PLL code -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#define S3C6400_PLL_MDIV_MASK ((1 << (25-16+1)) - 1) -+#define S3C6400_PLL_PDIV_MASK ((1 << (13-8+1)) - 1) -+#define S3C6400_PLL_SDIV_MASK ((1 << (2-0+1)) - 1) -+#define S3C6400_PLL_MDIV_SHIFT (16) -+#define S3C6400_PLL_PDIV_SHIFT (8) -+#define S3C6400_PLL_SDIV_SHIFT (0) -+ -+#include <asm/div64.h> -+ -+static inline unsigned long s3c6400_get_pll(unsigned long baseclk, -+ u32 pllcon) -+{ -+ u32 mdiv, pdiv, sdiv; -+ u64 fvco = baseclk; -+ -+ mdiv = (pllcon >> S3C6400_PLL_MDIV_SHIFT) & S3C6400_PLL_MDIV_MASK; -+ pdiv = (pllcon >> S3C6400_PLL_PDIV_SHIFT) & S3C6400_PLL_PDIV_MASK; -+ sdiv = (pllcon >> S3C6400_PLL_SDIV_SHIFT) & S3C6400_PLL_SDIV_MASK; -+ -+ fvco *= mdiv; -+ do_div(fvco, (pdiv << sdiv)); -+ -+ return (unsigned long)fvco; -+} -+ -+#define S3C6400_EPLL_MDIV_MASK ((1 << (23-16)) - 1) -+#define S3C6400_EPLL_PDIV_MASK ((1 << (13-8)) - 1) -+#define S3C6400_EPLL_SDIV_MASK ((1 << (2-0)) - 1) -+#define S3C6400_EPLL_MDIV_SHIFT (16) -+#define S3C6400_EPLL_PDIV_SHIFT (8) -+#define S3C6400_EPLL_SDIV_SHIFT (0) -+#define S3C6400_EPLL_KDIV_MASK (0xffff) -+ -+static inline unsigned long s3c6400_get_epll(unsigned long baseclk) -+{ -+ unsigned long result; -+ u32 epll0 = __raw_readl(S3C_EPLL_CON0); -+ u32 epll1 = __raw_readl(S3C_EPLL_CON1); -+ u32 mdiv, pdiv, sdiv, kdiv; -+ u64 tmp; -+ -+ mdiv = (epll0 >> S3C6400_EPLL_MDIV_SHIFT) & S3C6400_EPLL_MDIV_MASK; -+ pdiv = (epll0 >> S3C6400_EPLL_PDIV_SHIFT) & S3C6400_EPLL_PDIV_MASK; -+ sdiv = (epll0 >> S3C6400_EPLL_SDIV_SHIFT) & S3C6400_EPLL_SDIV_MASK; -+ kdiv = epll1 & S3C6400_EPLL_KDIV_MASK; -+ -+ /* We need to multiple baseclk by mdiv (the integer part) and kdiv -+ * which is in 2^16ths, so shift mdiv up (does not overflow) and -+ * add kdiv before multiplying. The use of tmp is to avoid any -+ * overflows before shifting bac down into result when multipling -+ * by the mdiv and kdiv pair. -+ */ -+ -+ tmp = baseclk; -+ tmp *= (mdiv << 16) + kdiv; -+ do_div(tmp, (pdiv << sdiv)); -+ result = tmp >> 16; -+ -+ return result; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/pm-core.h -@@ -0,0 +1,106 @@ -+/* linux/arch/arm/plat-s3c64xx/include/plat/pm-core.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - PM core support for arch/arm/plat-s3c/pm.c -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <plat/regs-gpio.h> -+ -+static inline void s3c_pm_debug_init_uart(void) -+{ -+ u32 tmp = __raw_readl(S3C_PCLK_GATE); -+ -+ /* As a note, since the S3C64XX UARTs generally have multiple -+ * clock sources, we simply enable PCLK at the moment and hope -+ * that the resume settings for the UART are suitable for the -+ * use with PCLK. -+ */ -+ -+ tmp |= S3C_CLKCON_PCLK_UART0; -+ tmp |= S3C_CLKCON_PCLK_UART1; -+ tmp |= S3C_CLKCON_PCLK_UART2; -+ tmp |= S3C_CLKCON_PCLK_UART3; -+ -+ __raw_writel(tmp, S3C_PCLK_GATE); -+ udelay(10); -+} -+ -+static inline void s3c_pm_arch_clear_vic(void __iomem *base) -+{ -+ __raw_writel(~0, base + VIC_INT_ENABLE_CLEAR); -+ __raw_writel(~0, base + VIC_INT_SOFT_CLEAR); -+} -+ -+static inline void s3c_pm_arch_prepare_irqs(void) -+{ -+ /* shutdown the VICs */ -+ s3c_pm_arch_clear_vic(S3C_VA_VIC0); -+ s3c_pm_arch_clear_vic(S3C_VA_VIC1); -+ -+ /* clear any pending EINT0 interrupts */ -+ __raw_writel(__raw_readl(S3C64XX_EINT0PEND), S3C64XX_EINT0PEND); -+} -+ -+static inline void s3c_pm_arch_stop_clocks(void) -+{ -+} -+ -+static inline void s3c_pm_arch_show_resume_irqs(void) -+{ -+} -+ -+/* make these defines, we currently do not have any need to change -+ * the IRQ wake controls depending on the CPU we are running on */ -+ -+#define s3c_irqwake_eintallow ((1 << 28) - 1) -+#define s3c_irqwake_intallow (0) -+ -+static inline void s3c_pm_arch_update_uart(void __iomem *regs, -+ struct pm_uart_save *save) -+{ -+ u32 ucon = __raw_readl(regs + S3C2410_UCON); -+ u32 ucon_clk = ucon & S3C6400_UCON_CLKMASK; -+ u32 save_clk = save->ucon & S3C6400_UCON_CLKMASK; -+ u32 new_ucon; -+ u32 delta; -+ -+ /* S3C64XX UART blocks only support level interrupts, so ensure that -+ * when we restore unused UART blocks we force the level interrupt -+ * settigs. */ -+ save->ucon |= S3C2410_UCON_TXILEVEL | S3C2410_UCON_RXILEVEL; -+ -+ /* We have a constraint on changing the clock type of the UART -+ * between UCLKx and PCLK, so ensure that when we restore UCON -+ * that the CLK field is correctly modified if the bootloader -+ * has changed anything. -+ */ -+ if (ucon_clk != save_clk) { -+ new_ucon = save->ucon; -+ delta = ucon_clk ^ save_clk; -+ -+ /* change from UCLKx => wrong PCLK, -+ * either UCLK can be tested for by a bit-test -+ * with UCLK0 */ -+ if (ucon_clk & S3C6400_UCON_UCLK0 && -+ !(save_clk & S3C6400_UCON_UCLK0) && -+ delta & S3C6400_UCON_PCLK2) { -+ new_ucon &= ~S3C6400_UCON_UCLK0; -+ } else if (delta == S3C6400_UCON_PCLK2) { -+ /* as an precaution, don't change from -+ * PCLK2 => PCLK or vice-versa */ -+ new_ucon ^= S3C6400_UCON_PCLK2; -+ } -+ -+ S3C_PMDBG("ucon change %04x => %04x (save=%04x)\n", -+ ucon, new_ucon, save->ucon); -+ save->ucon = new_ucon; -+ } -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/regs-clock.h -@@ -0,0 +1,225 @@ -+/* arch/arm/plat-s3c64xx/include/plat/regs-clock.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX clock register definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __PLAT_REGS_CLOCK_H -+#define __PLAT_REGS_CLOCK_H __FILE__ -+ -+#define S3C_CLKREG(x) (S3C_VA_SYS + (x)) -+ -+#define S3C_APLL_LOCK S3C_CLKREG(0x00) -+#define S3C_MPLL_LOCK S3C_CLKREG(0x04) -+#define S3C_EPLL_LOCK S3C_CLKREG(0x08) -+#define S3C_APLL_CON S3C_CLKREG(0x0C) -+#define S3C_MPLL_CON S3C_CLKREG(0x10) -+#define S3C_EPLL_CON0 S3C_CLKREG(0x14) -+#define S3C_EPLL_CON1 S3C_CLKREG(0x18) -+#define S3C_CLK_SRC S3C_CLKREG(0x1C) -+#define S3C_CLK_DIV0 S3C_CLKREG(0x20) -+#define S3C_CLK_DIV1 S3C_CLKREG(0x24) -+#define S3C_CLK_DIV2 S3C_CLKREG(0x28) -+#define S3C_CLK_OUT S3C_CLKREG(0x2C) -+#define S3C_HCLK_GATE S3C_CLKREG(0x30) -+#define S3C_PCLK_GATE S3C_CLKREG(0x34) -+#define S3C_SCLK_GATE S3C_CLKREG(0x38) -+#define S3C_MEM0_GATE S3C_CLKREG(0x3C) -+ -+/* CLKDIV0 */ -+#define S3C6400_CLKDIV0_MFC_MASK (0xf << 28) -+#define S3C6400_CLKDIV0_MFC_SHIFT (28) -+#define S3C6400_CLKDIV0_JPEG_MASK (0xf << 24) -+#define S3C6400_CLKDIV0_JPEG_SHIFT (24) -+#define S3C6400_CLKDIV0_CAM_MASK (0xf << 20) -+#define S3C6400_CLKDIV0_CAM_SHIFT (20) -+#define S3C6400_CLKDIV0_SECURITY_MASK (0x3 << 18) -+#define S3C6400_CLKDIV0_SECURITY_SHIFT (18) -+#define S3C6400_CLKDIV0_PCLK_MASK (0xf << 12) -+#define S3C6400_CLKDIV0_PCLK_SHIFT (12) -+#define S3C6400_CLKDIV0_HCLK2_MASK (0x7 << 9) -+#define S3C6400_CLKDIV0_HCLK2_SHIFT (9) -+#define S3C6400_CLKDIV0_HCLK_MASK (0x1 << 8) -+#define S3C6400_CLKDIV0_HCLK_SHIFT (8) -+#define S3C6400_CLKDIV0_MPLL_MASK (0x1 << 4) -+#define S3C6400_CLKDIV0_MPLL_SHIFT (4) -+#define S3C6400_CLKDIV0_ARM_MASK (0x3 << 0) -+#define S3C6410_CLKDIV0_ARM_MASK (0x7 << 0) -+#define S3C6400_CLKDIV0_ARM_SHIFT (0) -+ -+/* CLKDIV1 */ -+#define S3C6410_CLKDIV1_FIMC_MASK (0xf << 24) -+#define S3C6410_CLKDIV1_FIMC_SHIFT (24) -+#define S3C6400_CLKDIV1_UHOST_MASK (0xf << 20) -+#define S3C6400_CLKDIV1_UHOST_SHIFT (20) -+#define S3C6400_CLKDIV1_SCALER_MASK (0xf << 16) -+#define S3C6400_CLKDIV1_SCALER_SHIFT (16) -+#define S3C6400_CLKDIV1_LCD_MASK (0xf << 12) -+#define S3C6400_CLKDIV1_LCD_SHIFT (12) -+#define S3C6400_CLKDIV1_MMC2_MASK (0xf << 8) -+#define S3C6400_CLKDIV1_MMC2_SHIFT (8) -+#define S3C6400_CLKDIV1_MMC1_MASK (0xf << 4) -+#define S3C6400_CLKDIV1_MMC1_SHIFT (4) -+#define S3C6400_CLKDIV1_MMC0_MASK (0xf << 0) -+#define S3C6400_CLKDIV1_MMC0_SHIFT (0) -+ -+/* CLKDIV2 */ -+#define S3C6410_CLKDIV2_AUDIO2_MASK (0xf << 24) -+#define S3C6410_CLKDIV2_AUDIO2_SHIFT (24) -+#define S3C6400_CLKDIV2_IRDA_MASK (0xf << 20) -+#define S3C6400_CLKDIV2_IRDA_SHIFT (20) -+#define S3C6400_CLKDIV2_UART_MASK (0xf << 16) -+#define S3C6400_CLKDIV2_UART_SHIFT (16) -+#define S3C6400_CLKDIV2_AUDIO1_MASK (0xf << 12) -+#define S3C6400_CLKDIV2_AUDIO1_SHIFT (12) -+#define S3C6400_CLKDIV2_AUDIO0_MASK (0xf << 8) -+#define S3C6400_CLKDIV2_AUDIO0_SHIFT (8) -+#define S3C6400_CLKDIV2_SPI1_MASK (0xf << 4) -+#define S3C6400_CLKDIV2_SPI1_SHIFT (4) -+#define S3C6400_CLKDIV2_SPI0_MASK (0xf << 0) -+#define S3C6400_CLKDIV2_SPI0_SHIFT (0) -+ -+/* HCLK GATE Registers */ -+#define S3C_CLKCON_HCLK_BUS (1<<30) -+#define S3C_CLKCON_HCLK_SECUR (1<<29) -+#define S3C_CLKCON_HCLK_SDMA1 (1<<28) -+#define S3C_CLKCON_HCLK_SDMA2 (1<<27) -+#define S3C_CLKCON_HCLK_UHOST (1<<26) -+#define S3C_CLKCON_HCLK_IROM (1<<25) -+#define S3C_CLKCON_HCLK_DDR1 (1<<24) -+#define S3C_CLKCON_HCLK_DDR0 (1<<23) -+#define S3C_CLKCON_HCLK_MEM1 (1<<22) -+#define S3C_CLKCON_HCLK_MEM0 (1<<21) -+#define S3C_CLKCON_HCLK_USB (1<<20) -+#define S3C_CLKCON_HCLK_HSMMC2 (1<<19) -+#define S3C_CLKCON_HCLK_HSMMC1 (1<<18) -+#define S3C_CLKCON_HCLK_HSMMC0 (1<<17) -+#define S3C_CLKCON_HCLK_MDP (1<<16) -+#define S3C_CLKCON_HCLK_DHOST (1<<15) -+#define S3C_CLKCON_HCLK_IHOST (1<<14) -+#define S3C_CLKCON_HCLK_DMA1 (1<<13) -+#define S3C_CLKCON_HCLK_DMA0 (1<<12) -+#define S3C_CLKCON_HCLK_JPEG (1<<11) -+#define S3C_CLKCON_HCLK_CAMIF (1<<10) -+#define S3C_CLKCON_HCLK_SCALER (1<<9) -+#define S3C_CLKCON_HCLK_2D (1<<8) -+#define S3C_CLKCON_HCLK_TV (1<<7) -+#define S3C_CLKCON_HCLK_POST0 (1<<5) -+#define S3C_CLKCON_HCLK_ROT (1<<4) -+#define S3C_CLKCON_HCLK_LCD (1<<3) -+#define S3C_CLKCON_HCLK_TZIC (1<<2) -+#define S3C_CLKCON_HCLK_INTC (1<<1) -+#define S3C_CLKCON_HCLK_MFC (1<<0) -+ -+/* PCLK GATE Registers */ -+#define S3C6410_CLKCON_PCLK_I2C1 (1<<27) -+#define S3C6410_CLKCON_PCLK_IIS2 (1<<26) -+#define S3C_CLKCON_PCLK_SKEY (1<<24) -+#define S3C_CLKCON_PCLK_CHIPID (1<<23) -+#define S3C_CLKCON_PCLK_SPI1 (1<<22) -+#define S3C_CLKCON_PCLK_SPI0 (1<<21) -+#define S3C_CLKCON_PCLK_HSIRX (1<<20) -+#define S3C_CLKCON_PCLK_HSITX (1<<19) -+#define S3C_CLKCON_PCLK_GPIO (1<<18) -+#define S3C_CLKCON_PCLK_IIC (1<<17) -+#define S3C_CLKCON_PCLK_IIS1 (1<<16) -+#define S3C_CLKCON_PCLK_IIS0 (1<<15) -+#define S3C_CLKCON_PCLK_AC97 (1<<14) -+#define S3C_CLKCON_PCLK_TZPC (1<<13) -+#define S3C_CLKCON_PCLK_TSADC (1<<12) -+#define S3C_CLKCON_PCLK_KEYPAD (1<<11) -+#define S3C_CLKCON_PCLK_IRDA (1<<10) -+#define S3C_CLKCON_PCLK_PCM1 (1<<9) -+#define S3C_CLKCON_PCLK_PCM0 (1<<8) -+#define S3C_CLKCON_PCLK_PWM (1<<7) -+#define S3C_CLKCON_PCLK_RTC (1<<6) -+#define S3C_CLKCON_PCLK_WDT (1<<5) -+#define S3C_CLKCON_PCLK_UART3 (1<<4) -+#define S3C_CLKCON_PCLK_UART2 (1<<3) -+#define S3C_CLKCON_PCLK_UART1 (1<<2) -+#define S3C_CLKCON_PCLK_UART0 (1<<1) -+#define S3C_CLKCON_PCLK_MFC (1<<0) -+ -+/* SCLK GATE Registers */ -+#define S3C_CLKCON_SCLK_UHOST (1<<30) -+#define S3C_CLKCON_SCLK_MMC2_48 (1<<29) -+#define S3C_CLKCON_SCLK_MMC1_48 (1<<28) -+#define S3C_CLKCON_SCLK_MMC0_48 (1<<27) -+#define S3C_CLKCON_SCLK_MMC2 (1<<26) -+#define S3C_CLKCON_SCLK_MMC1 (1<<25) -+#define S3C_CLKCON_SCLK_MMC0 (1<<24) -+#define S3C_CLKCON_SCLK_SPI1_48 (1<<23) -+#define S3C_CLKCON_SCLK_SPI0_48 (1<<22) -+#define S3C_CLKCON_SCLK_SPI1 (1<<21) -+#define S3C_CLKCON_SCLK_SPI0 (1<<20) -+#define S3C_CLKCON_SCLK_DAC27 (1<<19) -+#define S3C_CLKCON_SCLK_TV27 (1<<18) -+#define S3C_CLKCON_SCLK_SCALER27 (1<<17) -+#define S3C_CLKCON_SCLK_SCALER (1<<16) -+#define S3C_CLKCON_SCLK_LCD27 (1<<15) -+#define S3C_CLKCON_SCLK_LCD (1<<14) -+#define S3C6400_CLKCON_SCLK_POST1_27 (1<<13) -+#define S3C6410_CLKCON_FIMC (1<<13) -+#define S3C_CLKCON_SCLK_POST0_27 (1<<12) -+#define S3C6400_CLKCON_SCLK_POST1 (1<<11) -+#define S3C6410_CLKCON_SCLK_AUDIO2 (1<<11) -+#define S3C_CLKCON_SCLK_POST0 (1<<10) -+#define S3C_CLKCON_SCLK_AUDIO1 (1<<9) -+#define S3C_CLKCON_SCLK_AUDIO0 (1<<8) -+#define S3C_CLKCON_SCLK_SECUR (1<<7) -+#define S3C_CLKCON_SCLK_IRDA (1<<6) -+#define S3C_CLKCON_SCLK_UART (1<<5) -+#define S3C_CLKCON_SCLK_ONENAND (1<<4) -+#define S3C_CLKCON_SCLK_MFC (1<<3) -+#define S3C_CLKCON_SCLK_CAM (1<<2) -+#define S3C_CLKCON_SCLK_JPEG (1<<1) -+ -+/* CLKSRC */ -+ -+#define S3C6400_CLKSRC_APLL_MOUT (1 << 0) -+#define S3C6400_CLKSRC_MPLL_MOUT (1 << 1) -+#define S3C6400_CLKSRC_EPLL_MOUT (1 << 2) -+#define S3C6400_CLKSRC_APLL_MOUT_SHIFT (0) -+#define S3C6400_CLKSRC_MPLL_MOUT_SHIFT (1) -+#define S3C6400_CLKSRC_EPLL_MOUT_SHIFT (2) -+#define S3C6400_CLKSRC_MFC (1 << 4) -+ -+#define S3C6410_CLKSRC_TV27_MASK (0x1 << 31) -+#define S3C6410_CLKSRC_TV27_SHIFT (31) -+#define S3C6410_CLKSRC_DAC27_MASK (0x1 << 30) -+#define S3C6410_CLKSRC_DAC27_SHIFT (30) -+#define S3C6400_CLKSRC_SCALER_MASK (0x3 << 28) -+#define S3C6400_CLKSRC_SCALER_SHIFT (28) -+#define S3C6400_CLKSRC_LCD_MASK (0x3 << 26) -+#define S3C6400_CLKSRC_LCD_SHIFT (26) -+#define S3C6400_CLKSRC_IRDA_MASK (0x3 << 24) -+#define S3C6400_CLKSRC_IRDA_SHIFT (24) -+#define S3C6400_CLKSRC_MMC2_MASK (0x3 << 22) -+#define S3C6400_CLKSRC_MMC2_SHIFT (22) -+#define S3C6400_CLKSRC_MMC1_MASK (0x3 << 20) -+#define S3C6400_CLKSRC_MMC1_SHIFT (20) -+#define S3C6400_CLKSRC_MMC0_MASK (0x3 << 18) -+#define S3C6400_CLKSRC_MMC0_SHIFT (18) -+#define S3C6400_CLKSRC_SPI1_MASK (0x3 << 16) -+#define S3C6400_CLKSRC_SPI1_SHIFT (16) -+#define S3C6400_CLKSRC_SPI0_MASK (0x3 << 14) -+#define S3C6400_CLKSRC_SPI0_SHIFT (14) -+#define S3C6400_CLKSRC_UART_MASK (0x1 << 13) -+#define S3C6400_CLKSRC_UART_SHIFT (13) -+#define S3C6400_CLKSRC_AUDIO1_MASK (0x7 << 10) -+#define S3C6400_CLKSRC_AUDIO1_SHIFT (10) -+#define S3C6400_CLKSRC_AUDIO0_MASK (0x7 << 7) -+#define S3C6400_CLKSRC_AUDIO0_SHIFT (7) -+#define S3C6400_CLKSRC_UHOST_MASK (0x3 << 5) -+#define S3C6400_CLKSRC_UHOST_SHIFT (5) -+ -+ -+#endif /* _PLAT_REGS_CLOCK_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/regs-gpio.h -@@ -0,0 +1,187 @@ -+/* linux/arch/arm/plat-s3c64xx/include/mach/regs-gpio.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - GPIO register definitions -+ */ -+ -+#ifndef __ASM_PLAT_S3C64XX_REGS_GPIO_H -+#define __ASM_PLAT_S3C64XX_REGS_GPIO_H __FILE__ -+ -+/* Base addresses for each of the banks */ -+ -+#define S3C64XX_GPIOREG(reg) (S3C64XX_VA_GPIO + (reg)) -+ -+#define S3C64XX_GPA_BASE S3C64XX_GPIOREG(0x0000) -+#define S3C64XX_GPB_BASE S3C64XX_GPIOREG(0x0020) -+#define S3C64XX_GPC_BASE S3C64XX_GPIOREG(0x0040) -+#define S3C64XX_GPD_BASE S3C64XX_GPIOREG(0x0060) -+#define S3C64XX_GPE_BASE S3C64XX_GPIOREG(0x0080) -+#define S3C64XX_GPF_BASE S3C64XX_GPIOREG(0x00A0) -+#define S3C64XX_GPG_BASE S3C64XX_GPIOREG(0x00C0) -+#define S3C64XX_GPH_BASE S3C64XX_GPIOREG(0x00E0) -+#define S3C64XX_GPI_BASE S3C64XX_GPIOREG(0x0100) -+#define S3C64XX_GPJ_BASE S3C64XX_GPIOREG(0x0120) -+#define S3C64XX_GPK_BASE S3C64XX_GPIOREG(0x0800) -+#define S3C64XX_GPL_BASE S3C64XX_GPIOREG(0x0810) -+#define S3C64XX_GPM_BASE S3C64XX_GPIOREG(0x0820) -+#define S3C64XX_GPN_BASE S3C64XX_GPIOREG(0x0830) -+#define S3C64XX_GPO_BASE S3C64XX_GPIOREG(0x0140) -+#define S3C64XX_GPP_BASE S3C64XX_GPIOREG(0x0160) -+#define S3C64XX_GPQ_BASE S3C64XX_GPIOREG(0x0180) -+ -+/* SPCON */ -+ -+#define S3C64XX_SPCON S3C64XX_GPIOREG(0x1A0) -+ -+#define S3C64XX_SPCON_DRVCON_CAM_MASK (0x3 << 30) -+#define S3C64XX_SPCON_DRVCON_CAM_SHIFT (30) -+#define S3C64XX_SPCON_DRVCON_CAM_2mA (0x0 << 30) -+#define S3C64XX_SPCON_DRVCON_CAM_4mA (0x1 << 30) -+#define S3C64XX_SPCON_DRVCON_CAM_7mA (0x2 << 30) -+#define S3C64XX_SPCON_DRVCON_CAM_9mA (0x3 << 30) -+ -+#define S3C64XX_SPCON_DRVCON_HSSPI_MASK (0x3 << 28) -+#define S3C64XX_SPCON_DRVCON_HSSPI_SHIFT (28) -+#define S3C64XX_SPCON_DRVCON_HSSPI_2mA (0x0 << 28) -+#define S3C64XX_SPCON_DRVCON_HSSPI_4mA (0x1 << 28) -+#define S3C64XX_SPCON_DRVCON_HSSPI_7mA (0x2 << 28) -+#define S3C64XX_SPCON_DRVCON_HSSPI_9mA (0x3 << 28) -+ -+#define S3C64XX_SPCON_DRVCON_HSMMC_MASK (0x3 << 26) -+#define S3C64XX_SPCON_DRVCON_HSMMC_SHIFT (26) -+#define S3C64XX_SPCON_DRVCON_HSMMC_2mA (0x0 << 26) -+#define S3C64XX_SPCON_DRVCON_HSMMC_4mA (0x1 << 26) -+#define S3C64XX_SPCON_DRVCON_HSMMC_7mA (0x2 << 26) -+#define S3C64XX_SPCON_DRVCON_HSMMC_9mA (0x3 << 26) -+ -+#define S3C64XX_SPCON_DRVCON_LCD_MASK (0x3 << 24) -+#define S3C64XX_SPCON_DRVCON_LCD_SHIFT (24) -+#define S3C64XX_SPCON_DRVCON_LCD_2mA (0x0 << 24) -+#define S3C64XX_SPCON_DRVCON_LCD_4mA (0x1 << 24) -+#define S3C64XX_SPCON_DRVCON_LCD_7mA (0x2 << 24) -+#define S3C64XX_SPCON_DRVCON_LCD_9mA (0x3 << 24) -+ -+#define S3C64XX_SPCON_DRVCON_MODEM_MASK (0x3 << 22) -+#define S3C64XX_SPCON_DRVCON_MODEM_SHIFT (22) -+#define S3C64XX_SPCON_DRVCON_MODEM_2mA (0x0 << 22) -+#define S3C64XX_SPCON_DRVCON_MODEM_4mA (0x1 << 22) -+#define S3C64XX_SPCON_DRVCON_MODEM_7mA (0x2 << 22) -+#define S3C64XX_SPCON_DRVCON_MODEM_9mA (0x3 << 22) -+ -+#define S3C64XX_SPCON_nRSTOUT_OEN (1 << 21) -+ -+#define S3C64XX_SPCON_DRVCON_SPICLK1_MASK (0x3 << 18) -+#define S3C64XX_SPCON_DRVCON_SPICLK1_SHIFT (18) -+#define S3C64XX_SPCON_DRVCON_SPICLK1_2mA (0x0 << 18) -+#define S3C64XX_SPCON_DRVCON_SPICLK1_4mA (0x1 << 18) -+#define S3C64XX_SPCON_DRVCON_SPICLK1_7mA (0x2 << 18) -+#define S3C64XX_SPCON_DRVCON_SPICLK1_9mA (0x3 << 18) -+ -+#define S3C64XX_SPCON_MEM1_DQS_PUD_MASK (0x3 << 16) -+#define S3C64XX_SPCON_MEM1_DQS_PUD_SHIFT (16) -+#define S3C64XX_SPCON_MEM1_DQS_PUD_DISABLED (0x0 << 16) -+#define S3C64XX_SPCON_MEM1_DQS_PUD_DOWN (0x1 << 16) -+#define S3C64XX_SPCON_MEM1_DQS_PUD_UP (0x2 << 16) -+ -+#define S3C64XX_SPCON_MEM1_D_PUD1_MASK (0x3 << 14) -+#define S3C64XX_SPCON_MEM1_D_PUD1_SHIFT (14) -+#define S3C64XX_SPCON_MEM1_D_PUD1_DISABLED (0x0 << 14) -+#define S3C64XX_SPCON_MEM1_D_PUD1_DOWN (0x1 << 14) -+#define S3C64XX_SPCON_MEM1_D_PUD1_UP (0x2 << 14) -+ -+#define S3C64XX_SPCON_MEM1_D_PUD0_MASK (0x3 << 12) -+#define S3C64XX_SPCON_MEM1_D_PUD0_SHIFT (12) -+#define S3C64XX_SPCON_MEM1_D_PUD0_DISABLED (0x0 << 12) -+#define S3C64XX_SPCON_MEM1_D_PUD0_DOWN (0x1 << 12) -+#define S3C64XX_SPCON_MEM1_D_PUD0_UP (0x2 << 12) -+ -+#define S3C64XX_SPCON_MEM0_D_PUD_MASK (0x3 << 8) -+#define S3C64XX_SPCON_MEM0_D_PUD_SHIFT (8) -+#define S3C64XX_SPCON_MEM0_D_PUD_DISABLED (0x0 << 8) -+#define S3C64XX_SPCON_MEM0_D_PUD_DOWN (0x1 << 8) -+#define S3C64XX_SPCON_MEM0_D_PUD_UP (0x2 << 8) -+ -+#define S3C64XX_SPCON_USBH_DMPD (1 << 7) -+#define S3C64XX_SPCON_USBH_DPPD (1 << 6) -+#define S3C64XX_SPCON_USBH_PUSW2 (1 << 5) -+#define S3C64XX_SPCON_USBH_PUSW1 (1 << 4) -+#define S3C64XX_SPCON_USBH_SUSPND (1 << 3) -+ -+#define S3C64XX_SPCON_LCD_SEL_MASK (0x3 << 0) -+#define S3C64XX_SPCON_LCD_SEL_SHIFT (0) -+#define S3C64XX_SPCON_LCD_SEL_HOST (0x0 << 0) -+#define S3C64XX_SPCON_LCD_SEL_RGB (0x1 << 0) -+#define S3C64XX_SPCON_LCD_SEL_606_656 (0x2 << 0) -+ -+ -+/* External interrupt registers */ -+ -+#define S3C64XX_EINT12CON S3C64XX_GPIOREG(0x200) -+#define S3C64XX_EINT34CON S3C64XX_GPIOREG(0x204) -+#define S3C64XX_EINT56CON S3C64XX_GPIOREG(0x208) -+#define S3C64XX_EINT78CON S3C64XX_GPIOREG(0x20C) -+#define S3C64XX_EINT9CON S3C64XX_GPIOREG(0x210) -+ -+#define S3C64XX_EINT12FLTCON S3C64XX_GPIOREG(0x220) -+#define S3C64XX_EINT34FLTCON S3C64XX_GPIOREG(0x224) -+#define S3C64XX_EINT56FLTCON S3C64XX_GPIOREG(0x228) -+#define S3C64XX_EINT78FLTCON S3C64XX_GPIOREG(0x22C) -+#define S3C64XX_EINT9FLTCON S3C64XX_GPIOREG(0x230) -+ -+#define S3C64XX_EINT12MASK S3C64XX_GPIOREG(0x240) -+#define S3C64XX_EINT34MASK S3C64XX_GPIOREG(0x244) -+#define S3C64XX_EINT56MASK S3C64XX_GPIOREG(0x248) -+#define S3C64XX_EINT78MASK S3C64XX_GPIOREG(0x24C) -+#define S3C64XX_EINT9MASK S3C64XX_GPIOREG(0x250) -+ -+#define S3C64XX_EINT12PEND S3C64XX_GPIOREG(0x260) -+#define S3C64XX_EINT34PEND S3C64XX_GPIOREG(0x264) -+#define S3C64XX_EINT56PEND S3C64XX_GPIOREG(0x268) -+#define S3C64XX_EINT78PEND S3C64XX_GPIOREG(0x26C) -+#define S3C64XX_EINT9PEND S3C64XX_GPIOREG(0x270) -+ -+#define S3C64XX_PRIORITY S3C64XX_GPIOREG(0x280) -+#define S3C64XX_PRIORITY_ARB(x) (1 << (x)) -+ -+#define S3C64XX_SERVICE S3C64XX_GPIOREG(0x284) -+#define S3C64XX_SERVICEPEND S3C64XX_GPIOREG(0x288) -+ -+#define S3C64XX_EINT0CON0 S3C64XX_GPIOREG(0x900) -+#define S3C64XX_EINT0CON1 S3C64XX_GPIOREG(0x904) -+#define S3C64XX_EINT0FLTCON0 S3C64XX_GPIOREG(0x910) -+#define S3C64XX_EINT0FLTCON1 S3C64XX_GPIOREG(0x914) -+#define S3C64XX_EINT0FLTCON2 S3C64XX_GPIOREG(0x918) -+#define S3C64XX_EINT0FLTCON3 S3C64XX_GPIOREG(0x91C) -+ -+#define S3C64XX_EINT0MASK S3C64XX_GPIOREG(0x920) -+#define S3C64XX_EINT0PEND S3C64XX_GPIOREG(0x924) -+ -+/* GPIO sleep configuration */ -+ -+#define S3C64XX_SPCONSLP S3C64XX_GPIOREG(0x880) -+ -+#define S3C64XX_SPCONSLP_TDO_PULLDOWN (1 << 14) -+#define S3C64XX_SPCONSLP_CKE1INIT (1 << 5) -+ -+#define S3C64XX_SPCONSLP_RSTOUT_MASK (0x3 << 12) -+#define S3C64XX_SPCONSLP_RSTOUT_OUT0 (0x0 << 12) -+#define S3C64XX_SPCONSLP_RSTOUT_OUT1 (0x1 << 12) -+#define S3C64XX_SPCONSLP_RSTOUT_HIZ (0x2 << 12) -+ -+#define S3C64XX_SPCONSLP_KPCOL_MASK (0x3 << 0) -+#define S3C64XX_SPCONSLP_KPCOL_OUT0 (0x0 << 0) -+#define S3C64XX_SPCONSLP_KPCOL_OUT1 (0x1 << 0) -+#define S3C64XX_SPCONSLP_KPCOL_INP (0x2 << 0) -+ -+ -+#define S3C64XX_SLPEN S3C64XX_GPIOREG(0x930) -+ -+#define S3C64XX_SLPEN_USE_xSLP (1 << 0) -+#define S3C64XX_SLPEN_CFG_BYSLPEN (1 << 1) -+ -+#endif /* __ASM_PLAT_S3C64XX_REGS_GPIO_H */ -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/regs-gpio-memport.h -@@ -0,0 +1,25 @@ -+/* linux/arch/arm/plat-s3c64xx/include/mach/regs-gpio-memport.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - GPIO memory port register definitions -+ */ -+ -+#ifndef __ASM_PLAT_S3C64XX_REGS_GPIO_MEMPORT_H -+#define __ASM_PLAT_S3C64XX_REGS_GPIO_MEMPORT_H __FILE__ -+ -+#define S3C64XX_MEM0CONSTOP S3C64XX_GPIOREG(0x1B0) -+#define S3C64XX_MEM1CONSTOP S3C64XX_GPIOREG(0x1B4) -+ -+#define S3C64XX_MEM0CONSLP0 S3C64XX_GPIOREG(0x1C0) -+#define S3C64XX_MEM0CONSLP1 S3C64XX_GPIOREG(0x1C4) -+#define S3C64XX_MEM1CONSLP S3C64XX_GPIOREG(0x1C8) -+ -+#define S3C64XX_MEM0DRVCON S3C64XX_GPIOREG(0x1D0) -+#define S3C64XX_MEM1DRVCON S3C64XX_GPIOREG(0x1D4) -+ -+#endif /* __ASM_PLAT_S3C64XX_REGS_GPIO_MEMPORT_H */ -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/regs-modem.h -@@ -0,0 +1,31 @@ -+/* arch/arm/plat-s3c64xx/include/plat/regs-modem.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C64XX - modem block registers -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __PLAT_S3C64XX_REGS_MODEM_H -+#define __PLAT_S3C64XX_REGS_MODEM_H __FILE__ -+ -+#define S3C64XX_MODEMREG(x) (S3C64XX_VA_MODEM + (x)) -+ -+#define S3C64XX_MODEM_INT2AP S3C64XX_MODEMREG(0x0) -+#define S3C64XX_MODEM_INT2MODEM S3C64XX_MODEMREG(0x4) -+#define S3C64XX_MODEM_MIFCON S3C64XX_MODEMREG(0x8) -+#define S3C64XX_MODEM_MIFPCON S3C64XX_MODEMREG(0xC) -+#define S3C64XX_MODEM_INTCLR S3C64XX_MODEMREG(0x10) -+#define S3C64XX_MODEM_DMA_TXADDR S3C64XX_MODEMREG(0x14) -+#define S3C64XX_MODEM_DMA_RXADDR S3C64XX_MODEMREG(0x18) -+ -+#define MIFPCON_INT2M_LEVEL (1 << 4) -+#define MIFPCON_LCD_BYPASS (1 << 3) -+ -+#endif /* __PLAT_S3C64XX_REGS_MODEM_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/regs-syscon-power.h -@@ -0,0 +1,116 @@ -+/* arch/arm/plat-s3c64xx/include/plat/regs-syscon-power.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * Ben Dooks <ben@simtec.co.uk> -+ * -+ * S3C64XX - syscon power and sleep control registers -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __PLAT_S3C64XX_REGS_SYSCON_POWER_H -+#define __PLAT_S3C64XX_REGS_SYSCON_POWER_H __FILE__ -+ -+#define S3C64XX_PWR_CFG S3C_SYSREG(0x804) -+ -+#define S3C64XX_PWRCFG_OSC_OTG_DISABLE (1 << 17) -+#define S3C64XX_PWRCFG_MMC2_DISABLE (1 << 16) -+#define S3C64XX_PWRCFG_MMC1_DISABLE (1 << 15) -+#define S3C64XX_PWRCFG_MMC0_DISABLE (1 << 14) -+#define S3C64XX_PWRCFG_HSI_DISABLE (1 << 13) -+#define S3C64XX_PWRCFG_TS_DISABLE (1 << 12) -+#define S3C64XX_PWRCFG_RTC_TICK_DISABLE (1 << 11) -+#define S3C64XX_PWRCFG_RTC_ALARM_DISABLE (1 << 10) -+#define S3C64XX_PWRCFG_MSM_DISABLE (1 << 9) -+#define S3C64XX_PWRCFG_KEY_DISABLE (1 << 8) -+#define S3C64XX_PWRCFG_BATF_DISABLE (1 << 7) -+ -+#define S3C64XX_PWRCFG_CFG_WFI_MASK (0x3 << 5) -+#define S3C64XX_PWRCFG_CFG_WFI_SHIFT (5) -+#define S3C64XX_PWRCFG_CFG_WFI_IGNORE (0x0 << 5) -+#define S3C64XX_PWRCFG_CFG_WFI_IDLE (0x1 << 5) -+#define S3C64XX_PWRCFG_CFG_WFI_STOP (0x2 << 5) -+#define S3C64XX_PWRCFG_CFG_WFI_SLEEP (0x3 << 5) -+ -+#define S3C64XX_PWRCFG_CFG_BATFLT_MASK (0x3 << 3) -+#define S3C64XX_PWRCFG_CFG_BATFLT_SHIFT (3) -+#define S3C64XX_PWRCFG_CFG_BATFLT_IGNORE (0x0 << 3) -+#define S3C64XX_PWRCFG_CFG_BATFLT_IRQ (0x1 << 3) -+#define S3C64XX_PWRCFG_CFG_BATFLT_SLEEP (0x3 << 3) -+ -+#define S3C64XX_PWRCFG_CFG_BAT_WAKE (1 << 2) -+#define S3C64XX_PWRCFG_OSC27_EN (1 << 0) -+ -+#define S3C64XX_EINT_MASK S3C_SYSREG(0x808) -+ -+#define S3C64XX_NORMAL_CFG S3C_SYSREG(0x810) -+ -+#define S3C64XX_NORMALCFG_IROM_ON (1 << 30) -+#define S3C64XX_NORMALCFG_DOMAIN_ETM_ON (1 << 16) -+#define S3C64XX_NORMALCFG_DOMAIN_S_ON (1 << 15) -+#define S3C64XX_NORMALCFG_DOMAIN_F_ON (1 << 14) -+#define S3C64XX_NORMALCFG_DOMAIN_P_ON (1 << 13) -+#define S3C64XX_NORMALCFG_DOMAIN_I_ON (1 << 12) -+#define S3C64XX_NORMALCFG_DOMAIN_G_ON (1 << 10) -+#define S3C64XX_NORMALCFG_DOMAIN_V_ON (1 << 9) -+ -+#define S3C64XX_STOP_CFG S3C_SYSREG(0x814) -+ -+#define S3C64XX_STOPCFG_MEMORY_ARM_ON (1 << 29) -+#define S3C64XX_STOPCFG_TOP_MEMORY_ON (1 << 20) -+#define S3C64XX_STOPCFG_ARM_LOGIC_ON (1 << 17) -+#define S3C64XX_STOPCFG_TOP_LOGIC_ON (1 << 8) -+#define S3C64XX_STOPCFG_OSC_EN (1 << 0) -+ -+#define S3C64XX_SLEEP_CFG S3C_SYSREG(0x818) -+ -+#define S3C64XX_SLEEPCFG_OSC_EN (1 << 0) -+ -+#define S3C64XX_STOP_MEM_CFG S3C_SYSREG(0x81c) -+ -+#define S3C64XX_STOPMEMCFG_MODEMIF_RETAIN (1 << 6) -+#define S3C64XX_STOPMEMCFG_HOSTIF_RETAIN (1 << 5) -+#define S3C64XX_STOPMEMCFG_OTG_RETAIN (1 << 4) -+#define S3C64XX_STOPMEMCFG_HSMCC_RETAIN (1 << 3) -+#define S3C64XX_STOPMEMCFG_IROM_RETAIN (1 << 2) -+#define S3C64XX_STOPMEMCFG_IRDA_RETAIN (1 << 1) -+#define S3C64XX_STOPMEMCFG_NFCON_RETAIN (1 << 0) -+ -+#define S3C64XX_OSC_STABLE S3C_SYSREG(0x824) -+#define S3C64XX_PWR_STABLE S3C_SYSREG(0x828) -+ -+#define S3C64XX_WAKEUP_STAT S3C_SYSREG(0x908) -+ -+#define S3C64XX_WAKEUPSTAT_MMC2 (1 << 11) -+#define S3C64XX_WAKEUPSTAT_MMC1 (1 << 10) -+#define S3C64XX_WAKEUPSTAT_MMC0 (1 << 9) -+#define S3C64XX_WAKEUPSTAT_HSI (1 << 8) -+#define S3C64XX_WAKEUPSTAT_BATFLT (1 << 6) -+#define S3C64XX_WAKEUPSTAT_MSM (1 << 5) -+#define S3C64XX_WAKEUPSTAT_KEY (1 << 4) -+#define S3C64XX_WAKEUPSTAT_TS (1 << 3) -+#define S3C64XX_WAKEUPSTAT_RTC_TICK (1 << 2) -+#define S3C64XX_WAKEUPSTAT_RTC_ALARM (1 << 1) -+#define S3C64XX_WAKEUPSTAT_EINT (1 << 0) -+ -+#define S3C64XX_BLK_PWR_STAT S3C_SYSREG(0x90c) -+ -+#define S3C64XX_BLKPWRSTAT_G (1 << 7) -+#define S3C64XX_BLKPWRSTAT_ETM (1 << 6) -+#define S3C64XX_BLKPWRSTAT_S (1 << 5) -+#define S3C64XX_BLKPWRSTAT_F (1 << 4) -+#define S3C64XX_BLKPWRSTAT_P (1 << 3) -+#define S3C64XX_BLKPWRSTAT_I (1 << 2) -+#define S3C64XX_BLKPWRSTAT_V (1 << 1) -+#define S3C64XX_BLKPWRSTAT_TOP (1 << 0) -+ -+#define S3C64XX_INFORM0 S3C_SYSREG(0xA00) -+#define S3C64XX_INFORM1 S3C_SYSREG(0xA04) -+#define S3C64XX_INFORM2 S3C_SYSREG(0xA08) -+#define S3C64XX_INFORM3 S3C_SYSREG(0xA0C) -+ -+#endif /* __PLAT_S3C64XX_REGS_SYSCON_POWER_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/regs-sys.h -@@ -0,0 +1,28 @@ -+/* arch/arm/plat-s3c64xx/include/plat/regs-sys.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX system register definitions -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifndef __PLAT_REGS_SYS_H -+#define __PLAT_REGS_SYS_H __FILE__ -+ -+#define S3C_SYSREG(x) (S3C_VA_SYS + (x)) -+ -+#define S3C64XX_AHB_CON0 S3C_SYSREG(0x100) -+#define S3C64XX_AHB_CON1 S3C_SYSREG(0x104) -+#define S3C64XX_AHB_CON2 S3C_SYSREG(0x108) -+ -+#define S3C64XX_OTHERS S3C_SYSREG(0x900) -+ -+#define S3C64XX_OTHERS_USBMASK (1 << 16) -+ -+#endif /* _PLAT_REGS_SYS_H */ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/s3c6400.h -@@ -0,0 +1,35 @@ -+/* arch/arm/plat-s3c64xx/include/plat/s3c6400.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * Header file for s3c6400 cpu support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+/* Common init code for S3C6400 related SoCs */ -+ -+extern void s3c6400_common_init_uarts(struct s3c2410_uartcfg *cfg, int no); -+extern void s3c6400_register_clocks(void); -+extern void s3c6400_setup_clocks(void); -+ -+#ifdef CONFIG_CPU_S3C6400 -+ -+extern int s3c6400_init(void); -+extern void s3c6400_map_io(void); -+extern void s3c6400_init_clocks(int xtal); -+ -+#define s3c6400_init_uarts s3c6400_common_init_uarts -+ -+#else -+#define s3c6400_init_clocks NULL -+#define s3c6400_init_uarts NULL -+#define s3c6400_map_io NULL -+#define s3c6400_init NULL -+#endif -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/include/plat/s3c6410.h -@@ -0,0 +1,29 @@ -+/* arch/arm/plat-s3c64xx/include/plat/s3c6410.h -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * Header file for s3c6410 cpu support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#ifdef CONFIG_CPU_S3C6410 -+ -+extern int s3c6410_init(void); -+extern void s3c6410_init_irq(void); -+extern void s3c6410_map_io(void); -+extern void s3c6410_init_clocks(int xtal); -+ -+#define s3c6410_init_uarts s3c6400_common_init_uarts -+ -+#else -+#define s3c6410_init_clocks NULL -+#define s3c6410_init_uarts NULL -+#define s3c6410_map_io NULL -+#define s3c6410_init NULL -+#endif ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/irq.c -@@ -0,0 +1,256 @@ -+/* arch/arm/plat-s3c64xx/irq.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - Interrupt handling -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/interrupt.h> -+#include <linux/serial_core.h> -+#include <linux/irq.h> -+#include <linux/io.h> -+ -+#include <asm/hardware/vic.h> -+ -+#include <mach/map.h> -+#include <plat/regs-serial.h> -+#include <plat/regs-timer.h> -+#include <plat/cpu.h> -+ -+/* Timer interrupt handling */ -+ -+static void s3c_irq_demux_timer(unsigned int base_irq, unsigned int sub_irq) -+{ -+ generic_handle_irq(sub_irq); -+} -+ -+static void s3c_irq_demux_timer0(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_timer(irq, IRQ_TIMER0); -+} -+ -+static void s3c_irq_demux_timer1(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_timer(irq, IRQ_TIMER1); -+} -+ -+static void s3c_irq_demux_timer2(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_timer(irq, IRQ_TIMER2); -+} -+ -+static void s3c_irq_demux_timer3(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_timer(irq, IRQ_TIMER3); -+} -+ -+static void s3c_irq_demux_timer4(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_timer(irq, IRQ_TIMER4); -+} -+ -+/* We assume the IRQ_TIMER0..IRQ_TIMER4 range is continuous. */ -+ -+static void s3c_irq_timer_mask(unsigned int irq) -+{ -+ u32 reg = __raw_readl(S3C64XX_TINT_CSTAT); -+ -+ reg &= 0x1f; /* mask out pending interrupts */ -+ reg &= ~(1 << (irq - IRQ_TIMER0)); -+ __raw_writel(reg, S3C64XX_TINT_CSTAT); -+} -+ -+static void s3c_irq_timer_unmask(unsigned int irq) -+{ -+ u32 reg = __raw_readl(S3C64XX_TINT_CSTAT); -+ -+ reg &= 0x1f; /* mask out pending interrupts */ -+ reg |= 1 << (irq - IRQ_TIMER0); -+ __raw_writel(reg, S3C64XX_TINT_CSTAT); -+} -+ -+static void s3c_irq_timer_ack(unsigned int irq) -+{ -+ u32 reg = __raw_readl(S3C64XX_TINT_CSTAT); -+ -+ reg &= 0x1f; -+ reg |= (1 << 5) << (irq - IRQ_TIMER0); -+ __raw_writel(reg, S3C64XX_TINT_CSTAT); -+} -+ -+static struct irq_chip s3c_irq_timer = { -+ .name = "s3c-timer", -+ .mask = s3c_irq_timer_mask, -+ .unmask = s3c_irq_timer_unmask, -+ .ack = s3c_irq_timer_ack, -+}; -+ -+struct uart_irq { -+ void __iomem *regs; -+ unsigned int base_irq; -+ unsigned int parent_irq; -+}; -+ -+/* Note, we make use of the fact that the parent IRQs, IRQ_UART[0..3] -+ * are consecutive when looking up the interrupt in the demux routines. -+ */ -+static struct uart_irq uart_irqs[] = { -+ [0] = { -+ .regs = S3C_VA_UART0, -+ .base_irq = IRQ_S3CUART_BASE0, -+ .parent_irq = IRQ_UART0, -+ }, -+ [1] = { -+ .regs = S3C_VA_UART1, -+ .base_irq = IRQ_S3CUART_BASE1, -+ .parent_irq = IRQ_UART1, -+ }, -+ [2] = { -+ .regs = S3C_VA_UART2, -+ .base_irq = IRQ_S3CUART_BASE2, -+ .parent_irq = IRQ_UART2, -+ }, -+ [3] = { -+ .regs = S3C_VA_UART3, -+ .base_irq = IRQ_S3CUART_BASE3, -+ .parent_irq = IRQ_UART3, -+ }, -+}; -+ -+static inline void __iomem *s3c_irq_uart_base(unsigned int irq) -+{ -+ struct uart_irq *uirq = get_irq_chip_data(irq); -+ return uirq->regs; -+} -+ -+static inline unsigned int s3c_irq_uart_bit(unsigned int irq) -+{ -+ return irq & 3; -+} -+ -+/* UART interrupt registers, not worth adding to seperate include header */ -+ -+static void s3c_irq_uart_mask(unsigned int irq) -+{ -+ void __iomem *regs = s3c_irq_uart_base(irq); -+ unsigned int bit = s3c_irq_uart_bit(irq); -+ u32 reg; -+ -+ reg = __raw_readl(regs + S3C64XX_UINTM); -+ reg |= (1 << bit); -+ __raw_writel(reg, regs + S3C64XX_UINTM); -+} -+ -+static void s3c_irq_uart_maskack(unsigned int irq) -+{ -+ void __iomem *regs = s3c_irq_uart_base(irq); -+ unsigned int bit = s3c_irq_uart_bit(irq); -+ u32 reg; -+ -+ reg = __raw_readl(regs + S3C64XX_UINTM); -+ reg |= (1 << bit); -+ __raw_writel(reg, regs + S3C64XX_UINTM); -+ __raw_writel(1 << bit, regs + S3C64XX_UINTP); -+} -+ -+static void s3c_irq_uart_unmask(unsigned int irq) -+{ -+ void __iomem *regs = s3c_irq_uart_base(irq); -+ unsigned int bit = s3c_irq_uart_bit(irq); -+ u32 reg; -+ -+ reg = __raw_readl(regs + S3C64XX_UINTM); -+ reg &= ~(1 << bit); -+ __raw_writel(reg, regs + S3C64XX_UINTM); -+} -+ -+static void s3c_irq_uart_ack(unsigned int irq) -+{ -+ void __iomem *regs = s3c_irq_uart_base(irq); -+ unsigned int bit = s3c_irq_uart_bit(irq); -+ -+ __raw_writel(1 << bit, regs + S3C64XX_UINTP); -+} -+ -+static void s3c_irq_demux_uart(unsigned int irq, struct irq_desc *desc) -+{ -+ struct uart_irq *uirq = &uart_irqs[irq - IRQ_UART0]; -+ u32 pend = __raw_readl(uirq->regs + S3C64XX_UINTP); -+ int base = uirq->base_irq; -+ -+ if (pend & (1 << 0)) -+ generic_handle_irq(base); -+ if (pend & (1 << 1)) -+ generic_handle_irq(base + 1); -+ if (pend & (1 << 2)) -+ generic_handle_irq(base + 2); -+ if (pend & (1 << 3)) -+ generic_handle_irq(base + 3); -+} -+ -+static struct irq_chip s3c_irq_uart = { -+ .name = "s3c-uart", -+ .mask = s3c_irq_uart_mask, -+ .unmask = s3c_irq_uart_unmask, -+ .mask_ack = s3c_irq_uart_maskack, -+ .ack = s3c_irq_uart_ack, -+}; -+ -+static void __init s3c64xx_uart_irq(struct uart_irq *uirq) -+{ -+ void *reg_base = uirq->regs; -+ unsigned int irq; -+ int offs; -+ -+ /* mask all interrupts at the start. */ -+ __raw_writel(0xf, reg_base + S3C64XX_UINTM); -+ -+ for (offs = 0; offs < 3; offs++) { -+ irq = uirq->base_irq + offs; -+ -+ set_irq_chip(irq, &s3c_irq_uart); -+ set_irq_chip_data(irq, uirq); -+ set_irq_handler(irq, handle_level_irq); -+ set_irq_flags(irq, IRQF_VALID); -+ } -+ -+ set_irq_chained_handler(uirq->parent_irq, s3c_irq_demux_uart); -+} -+ -+void __init s3c64xx_init_irq(u32 vic0_valid, u32 vic1_valid) -+{ -+ int uart, irq; -+ -+ printk(KERN_DEBUG "%s: initialising interrupts\n", __func__); -+ -+ /* initialise the pair of VICs */ -+ vic_init(S3C_VA_VIC0, S3C_VIC0_BASE, vic0_valid); -+ vic_init(S3C_VA_VIC1, S3C_VIC1_BASE, vic1_valid); -+ -+ /* add the timer sub-irqs */ -+ -+ set_irq_chained_handler(IRQ_TIMER0_VIC, s3c_irq_demux_timer0); -+ set_irq_chained_handler(IRQ_TIMER1_VIC, s3c_irq_demux_timer1); -+ set_irq_chained_handler(IRQ_TIMER2_VIC, s3c_irq_demux_timer2); -+ set_irq_chained_handler(IRQ_TIMER3_VIC, s3c_irq_demux_timer3); -+ set_irq_chained_handler(IRQ_TIMER4_VIC, s3c_irq_demux_timer4); -+ -+ for (irq = IRQ_TIMER0; irq <= IRQ_TIMER4; irq++) { -+ set_irq_chip(irq, &s3c_irq_timer); -+ set_irq_handler(irq, handle_level_irq); -+ set_irq_flags(irq, IRQF_VALID); -+ } -+ -+ for (uart = 0; uart < ARRAY_SIZE(uart_irqs); uart++) -+ s3c64xx_uart_irq(&uart_irqs[uart]); -+} -+ -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/irq-eint.c -@@ -0,0 +1,204 @@ -+/* arch/arm/plat-s3c64xx/irq-eint.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - Interrupt handling for IRQ_EINT(x) -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/interrupt.h> -+#include <linux/gpio.h> -+#include <linux/irq.h> -+#include <linux/io.h> -+#include <linux/gpio.h> -+ -+#include <asm/hardware/vic.h> -+ -+#include <plat/regs-irqtype.h> -+#include <plat/regs-gpio.h> -+#include <plat/gpio-cfg.h> -+ -+#include <mach/map.h> -+#include <plat/cpu.h> -+#include <plat/pm.h> -+ -+#define eint_offset(irq) ((irq) - IRQ_EINT(0)) -+#define eint_irq_to_bit(irq) (1 << eint_offset(irq)) -+ -+static inline void s3c_irq_eint_mask(unsigned int irq) -+{ -+ u32 mask; -+ -+ mask = __raw_readl(S3C64XX_EINT0MASK); -+ mask |= eint_irq_to_bit(irq); -+ __raw_writel(mask, S3C64XX_EINT0MASK); -+} -+ -+static void s3c_irq_eint_unmask(unsigned int irq) -+{ -+ u32 mask; -+ -+ mask = __raw_readl(S3C64XX_EINT0MASK); -+ mask &= ~eint_irq_to_bit(irq); -+ __raw_writel(mask, S3C64XX_EINT0MASK); -+} -+ -+static inline void s3c_irq_eint_ack(unsigned int irq) -+{ -+ __raw_writel(eint_irq_to_bit(irq), S3C64XX_EINT0PEND); -+} -+ -+static void s3c_irq_eint_maskack(unsigned int irq) -+{ -+ /* compiler should in-line these */ -+ s3c_irq_eint_mask(irq); -+ s3c_irq_eint_ack(irq); -+} -+ -+static int s3c_irq_eint_set_type(unsigned int irq, unsigned int type) -+{ -+ int offs = eint_offset(irq); -+ int pin; -+ int shift; -+ u32 ctrl, mask; -+ u32 newvalue = 0; -+ void __iomem *reg; -+ -+ if (offs > 27) -+ return -EINVAL; -+ -+ if (offs <= 15) -+ reg = S3C64XX_EINT0CON0; -+ else -+ reg = S3C64XX_EINT0CON1; -+ -+ switch (type) { -+ case IRQ_TYPE_NONE: -+ printk(KERN_WARNING "No edge setting!\n"); -+ break; -+ -+ case IRQ_TYPE_EDGE_RISING: -+ newvalue = S3C2410_EXTINT_RISEEDGE; -+ break; -+ -+ case IRQ_TYPE_EDGE_FALLING: -+ newvalue = S3C2410_EXTINT_FALLEDGE; -+ break; -+ -+ case IRQ_TYPE_EDGE_BOTH: -+ newvalue = S3C2410_EXTINT_BOTHEDGE; -+ break; -+ -+ case IRQ_TYPE_LEVEL_LOW: -+ newvalue = S3C2410_EXTINT_LOWLEV; -+ break; -+ -+ case IRQ_TYPE_LEVEL_HIGH: -+ newvalue = S3C2410_EXTINT_HILEV; -+ break; -+ -+ default: -+ printk(KERN_ERR "No such irq type %d", type); -+ return -1; -+ } -+ -+ shift = (offs / 2) * 4; -+ mask = 0x7 << shift; -+ -+ ctrl = __raw_readl(reg); -+ ctrl &= ~mask; -+ ctrl |= newvalue << shift; -+ __raw_writel(ctrl, reg); -+ -+ /* set the GPIO pin appropriately */ -+ -+ if (offs < 23) -+ pin = S3C64XX_GPN(offs); -+ else -+ pin = S3C64XX_GPM(offs - 23); -+ -+ s3c_gpio_cfgpin(pin, S3C_GPIO_SFN(2)); -+ -+ return 0; -+} -+ -+static struct irq_chip s3c_irq_eint = { -+ .name = "s3c-eint", -+ .mask = s3c_irq_eint_mask, -+ .unmask = s3c_irq_eint_unmask, -+ .mask_ack = s3c_irq_eint_maskack, -+ .ack = s3c_irq_eint_ack, -+ .set_type = s3c_irq_eint_set_type, -+ .set_wake = s3c_irqext_wake, -+}; -+ -+/* s3c_irq_demux_eint -+ * -+ * This function demuxes the IRQ from the group0 external interrupts, -+ * from IRQ_EINT(0) to IRQ_EINT(27). It is designed to be inlined into -+ * the specific handlers s3c_irq_demux_eintX_Y. -+ */ -+static inline void s3c_irq_demux_eint(unsigned int start, unsigned int end) -+{ -+ u32 status = __raw_readl(S3C64XX_EINT0PEND); -+ u32 mask = __raw_readl(S3C64XX_EINT0MASK); -+ unsigned int irq; -+ -+ status &= ~mask; -+ status >>= start; -+ status &= (1 << (end - start + 1)) - 1; -+ -+ for (irq = IRQ_EINT(start); irq <= IRQ_EINT(end); irq++) { -+ if (status & 1) -+ generic_handle_irq(irq); -+ -+ status >>= 1; -+ } -+} -+ -+static void s3c_irq_demux_eint0_3(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_eint(0, 3); -+} -+ -+static void s3c_irq_demux_eint4_11(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_eint(4, 11); -+} -+ -+static void s3c_irq_demux_eint12_19(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_eint(12, 19); -+} -+ -+static void s3c_irq_demux_eint20_27(unsigned int irq, struct irq_desc *desc) -+{ -+ s3c_irq_demux_eint(20, 27); -+} -+ -+int __init s3c64xx_init_irq_eint(void) -+{ -+ int irq; -+ -+ for (irq = IRQ_EINT(0); irq <= IRQ_EINT(27); irq++) { -+ set_irq_chip(irq, &s3c_irq_eint); -+ set_irq_handler(irq, handle_level_irq); -+ set_irq_flags(irq, IRQF_VALID); -+ } -+ -+ set_irq_chained_handler(IRQ_EINT0_3, s3c_irq_demux_eint0_3); -+ set_irq_chained_handler(IRQ_EINT4_11, s3c_irq_demux_eint4_11); -+ set_irq_chained_handler(IRQ_EINT12_19, s3c_irq_demux_eint12_19); -+ set_irq_chained_handler(IRQ_EINT20_27, s3c_irq_demux_eint20_27); -+ -+ return 0; -+} -+ -+arch_initcall(s3c64xx_init_irq_eint); ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/irq-pm.c -@@ -0,0 +1,173 @@ -+/* arch/arm/plat-s3c64xx/irq-pm.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX - Interrupt handling Power Management -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/sysdev.h> -+#include <linux/interrupt.h> -+#include <linux/serial_core.h> -+#include <linux/irq.h> -+#include <linux/io.h> -+ -+#include <asm/hardware/vic.h> -+ -+#include <mach/map.h> -+ -+#include <plat/regs-serial.h> -+#include <plat/regs-timer.h> -+#include <plat/regs-gpio.h> -+#include <plat/cpu.h> -+#include <plat/pm.h> -+ -+/* We handled all the IRQ types in this code, to save having to make several -+ * small files to handle each different type separately. Having the EINT_GRP -+ * code here shouldn't be as much bloat as the IRQ table space needed when -+ * they are enabled. The added benefit is we ensure that these registers are -+ * in the same state as we suspended. -+ */ -+ -+static struct sleep_save irq_save[] = { -+ SAVE_ITEM(S3C64XX_PRIORITY), -+ SAVE_ITEM(S3C64XX_EINT0CON0), -+ SAVE_ITEM(S3C64XX_EINT0CON1), -+ SAVE_ITEM(S3C64XX_EINT0FLTCON0), -+ SAVE_ITEM(S3C64XX_EINT0FLTCON1), -+ SAVE_ITEM(S3C64XX_EINT0FLTCON2), -+ SAVE_ITEM(S3C64XX_EINT0FLTCON3), -+ SAVE_ITEM(S3C64XX_EINT0MASK), -+ SAVE_ITEM(S3C64XX_TINT_CSTAT), -+}; -+ -+static struct irq_grp_save { -+ u32 fltcon; -+ u32 con; -+ u32 mask; -+} eint_grp_save[5]; -+ -+struct irq_vic_save { -+ u32 int_select; -+ u32 int_enable; -+ u32 soft_int; -+ u32 protect; -+ u32 vect_addr[32]; -+ u32 vect_cntl[32]; -+}; -+ -+static struct irq_vic_save irq_pm_vic0_save; -+static struct irq_vic_save irq_pm_vic1_save; -+ -+static u32 irq_uart_mask[CONFIG_SERIAL_SAMSUNG_UARTS]; -+ -+static void s3c64xx_vic_save(void __iomem *base, struct irq_vic_save *save) -+{ -+ int v; -+ -+ save->int_select = readl(base + VIC_INT_SELECT); -+ save->int_enable = readl(base + VIC_INT_ENABLE); -+ save->soft_int = readl(base + VIC_INT_SOFT); -+ save->protect = readl(base + VIC_PROTECT); -+ -+ S3C_PMDBG("%s: select=%08x, enable=%08x, protect=%08x\n", __func__, -+ save->int_select, save->int_enable, save->protect); -+ -+ for (v = 0; v < ARRAY_SIZE(save->vect_addr); v++) { -+ save->vect_addr[v] = readl(base + VIC_VECT_ADDR0 + (v * 4)); -+ save->vect_cntl[v] = readl(base + VIC_VECT_CNTL0 + (v * 4)); -+ } -+} -+ -+static void s3c64xx_vic_restore(void __iomem *base, struct irq_vic_save *save) -+{ -+ int v; -+ -+ writel(save->int_select, base + VIC_INT_SELECT); -+ writel(save->protect, base + VIC_PROTECT); -+ -+ /* set the enabled ints and then clear the non-enabled */ -+ writel(save->int_enable, base + VIC_INT_ENABLE); -+ writel(~save->int_enable, base + VIC_INT_ENABLE_CLEAR); -+ -+ /* and the same for the soft-int register */ -+ -+ writel(save->soft_int, base + VIC_INT_SOFT); -+ writel(~save->soft_int, base + VIC_INT_SOFT_CLEAR); -+ -+ S3C_PMDBG("%s: vic int_enable=%08x\n", __func__, readl(base + VIC_INT_ENABLE)); -+ -+ for (v = 0; v < ARRAY_SIZE(save->vect_addr); v++) { -+ writel(save->vect_addr[v], base + VIC_VECT_ADDR0 + (v * 4)); -+ writel(save->vect_cntl[v], base + VIC_VECT_CNTL0 + (v * 4)); -+ } -+} -+ -+static int s3c64xx_irq_pm_suspend(struct sys_device *dev, pm_message_t state) -+{ -+ struct irq_grp_save *grp = eint_grp_save; -+ int i; -+ -+ S3C_PMDBG("%s: suspending IRQs\n", __func__); -+ -+ s3c64xx_vic_save(S3C_VA_VIC0, &irq_pm_vic0_save); -+ s3c64xx_vic_save(S3C_VA_VIC1, &irq_pm_vic1_save); -+ -+ s3c_pm_do_save(irq_save, ARRAY_SIZE(irq_save)); -+ -+ for (i = 0; i < CONFIG_SERIAL_SAMSUNG_UARTS; i++) -+ irq_uart_mask[i] = __raw_readl(S3C_VA_UARTx(i) + S3C64XX_UINTM); -+ -+ for (i = 0; i < ARRAY_SIZE(eint_grp_save); i++, grp++) { -+ grp->con = __raw_readl(S3C64XX_EINT12CON + (i * 4)); -+ grp->mask = __raw_readl(S3C64XX_EINT12MASK + (i * 4)); -+ grp->fltcon = __raw_readl(S3C64XX_EINT12FLTCON + (i * 4)); -+ } -+ -+ return 0; -+} -+ -+static int s3c64xx_irq_pm_resume(struct sys_device *dev) -+{ -+ struct irq_grp_save *grp = eint_grp_save; -+ int i; -+ -+ S3C_PMDBG("%s: resuming IRQs\n", __func__); -+ -+ s3c_pm_do_restore(irq_save, ARRAY_SIZE(irq_save)); -+ -+ s3c64xx_vic_restore(S3C_VA_VIC0, &irq_pm_vic0_save); -+ s3c64xx_vic_restore(S3C_VA_VIC1, &irq_pm_vic1_save); -+ -+ for (i = 0; i < CONFIG_SERIAL_SAMSUNG_UARTS; i++) -+ __raw_writel(irq_uart_mask[i], S3C_VA_UARTx(i) + S3C64XX_UINTM); -+ -+ for (i = 0; i < ARRAY_SIZE(eint_grp_save); i++, grp++) { -+ __raw_writel(grp->con, S3C64XX_EINT12CON + (i * 4)); -+ __raw_writel(grp->mask, S3C64XX_EINT12MASK + (i * 4)); -+ __raw_writel(grp->fltcon, S3C64XX_EINT12FLTCON + (i * 4)); -+ } -+ -+ S3C_PMDBG("%s: IRQ configuration restored\n", __func__); -+ return 0; -+} -+ -+static struct sysdev_driver s3c64xx_irq_driver = { -+ .suspend = s3c64xx_irq_pm_suspend, -+ .resume = s3c64xx_irq_pm_resume, -+}; -+ -+static int __init s3c64xx_irq_pm_init(void) -+{ -+ return sysdev_driver_register(&s3c64xx_sysclass, &s3c64xx_irq_driver); -+} -+ -+arch_initcall(s3c64xx_irq_pm_init); -+ ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/Kconfig -@@ -0,0 +1,61 @@ -+# arch/arm/plat-s3c64xx/Kconfig -+# -+# Copyright 2008 Openmoko, Inc. -+# Copyright 2008 Simtec Electronics -+# Ben Dooks <ben@simtec.co.uk> -+# -+# Licensed under GPLv2 -+ -+config PLAT_S3C64XX -+ bool -+ depends on ARCH_S3C64XX -+ select PLAT_S3C -+ select ARM_VIC -+ default y -+ select NO_IOPORT -+ select ARCH_REQUIRE_GPIOLIB -+ select S3C_GPIO_TRACK -+ select S3C_GPIO_PULL_UPDOWN -+ select S3C_GPIO_CFG_S3C24XX -+ select S3C_GPIO_CFG_S3C64XX -+ help -+ Base platform code for any Samsung S3C64XX device -+ -+if PLAT_S3C64XX -+ -+# Configuration options shared by all S3C64XX implementations -+ -+config CPU_S3C6400_INIT -+ bool -+ help -+ Common initialisation code for the S3C6400 that is shared -+ by other CPUs in the series, such as the S3C6410. -+ -+config CPU_S3C6400_CLOCK -+ bool -+ help -+ Common clock support code for the S3C6400 that is shared -+ by other CPUs in the series, such as the S3C6410. -+ -+# platform specific device setup -+ -+config S3C64XX_SETUP_I2C0 -+ bool -+ default y -+ help -+ Common setup code for i2c bus 0. -+ -+ Note, currently since i2c0 is always compiled, this setup helper -+ is always compiled with it. -+ -+config S3C64XX_SETUP_I2C1 -+ bool -+ help -+ Common setup code for i2c bus 1. -+ -+config S3C64XX_SETUP_FB_24BPP -+ bool -+ help -+ Common setup code for S3C64XX with an 24bpp RGB display helper. -+ -+endif ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/Makefile -@@ -0,0 +1,37 @@ -+# arch/arm/plat-s3c64xx/Makefile -+# -+# Copyright 2008 Openmoko, Inc. -+# Copyright 2008 Simtec Electronics -+# -+# Licensed under GPLv2 -+ -+obj-y := -+obj-m := -+obj-n := dummy.o -+obj- := -+ -+# Core files -+ -+obj-y += dev-uart.o -+obj-y += cpu.o -+obj-y += irq.o -+obj-y += irq-eint.o -+obj-y += clock.o -+obj-y += gpiolib.o -+ -+# CPU support -+ -+obj-$(CONFIG_CPU_S3C6400_INIT) += s3c6400-init.o -+obj-$(CONFIG_CPU_S3C6400_CLOCK) += s3c6400-clock.o -+ -+# PM support -+ -+obj-$(CONFIG_PM) += pm.o -+obj-$(CONFIG_PM) += sleep.o -+obj-$(CONFIG_PM) += irq-pm.o -+ -+# Device setup -+ -+obj-$(CONFIG_S3C64XX_SETUP_I2C0) += setup-i2c0.o -+obj-$(CONFIG_S3C64XX_SETUP_I2C1) += setup-i2c1.o -+obj-$(CONFIG_S3C64XX_SETUP_FB_24BPP) += setup-fb-24bpp.o ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/pm.c -@@ -0,0 +1,177 @@ -+/* linux/arch/arm/plat-s3c64xx/pm.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX CPU PM support. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/init.h> -+#include <linux/suspend.h> -+#include <linux/serial_core.h> -+#include <linux/io.h> -+ -+#include <mach/map.h> -+ -+#include <plat/pm.h> -+#include <plat/regs-sys.h> -+#include <plat/regs-gpio.h> -+#include <plat/regs-clock.h> -+#include <plat/regs-modem.h> -+#include <plat/regs-syscon-power.h> -+#include <plat/regs-gpio-memport.h> -+ -+#ifdef CONFIG_S3C_PM_DEBUG_LED_SMDK -+#include <plat/gpio-bank-n.h> -+ -+void s3c_pm_debug_smdkled(u32 set, u32 clear) -+{ -+ unsigned long flags; -+ u32 reg; -+ -+ local_irq_save(flags); -+ reg = __raw_readl(S3C64XX_GPNCON); -+ reg &= ~(S3C64XX_GPN_CONMASK(12) | S3C64XX_GPN_CONMASK(13) | -+ S3C64XX_GPN_CONMASK(14) | S3C64XX_GPN_CONMASK(15)); -+ reg |= S3C64XX_GPN_OUTPUT(12) | S3C64XX_GPN_OUTPUT(13) | -+ S3C64XX_GPN_OUTPUT(14) | S3C64XX_GPN_OUTPUT(15); -+ __raw_writel(reg, S3C64XX_GPNCON); -+ -+ reg = __raw_readl(S3C64XX_GPNDAT); -+ reg &= ~(clear << 12); -+ reg |= set << 12; -+ __raw_writel(reg, S3C64XX_GPNDAT); -+ -+ local_irq_restore(flags); -+} -+#endif -+ -+static struct sleep_save core_save[] = { -+ SAVE_ITEM(S3C_APLL_LOCK), -+ SAVE_ITEM(S3C_MPLL_LOCK), -+ SAVE_ITEM(S3C_EPLL_LOCK), -+ SAVE_ITEM(S3C_CLK_SRC), -+ SAVE_ITEM(S3C_CLK_DIV0), -+ SAVE_ITEM(S3C_CLK_DIV1), -+ SAVE_ITEM(S3C_CLK_DIV2), -+ SAVE_ITEM(S3C_CLK_OUT), -+ SAVE_ITEM(S3C_HCLK_GATE), -+ SAVE_ITEM(S3C_PCLK_GATE), -+ SAVE_ITEM(S3C_SCLK_GATE), -+ SAVE_ITEM(S3C_MEM0_GATE), -+ -+ SAVE_ITEM(S3C_EPLL_CON1), -+ SAVE_ITEM(S3C_EPLL_CON0), -+ -+ SAVE_ITEM(S3C64XX_MEM0DRVCON), -+ SAVE_ITEM(S3C64XX_MEM1DRVCON), -+ -+#ifndef CONFIG_CPU_FREQ -+ SAVE_ITEM(S3C_APLL_CON), -+ SAVE_ITEM(S3C_MPLL_CON), -+#endif -+}; -+ -+static struct sleep_save misc_save[] = { -+ SAVE_ITEM(S3C64XX_AHB_CON0), -+ SAVE_ITEM(S3C64XX_AHB_CON1), -+ SAVE_ITEM(S3C64XX_AHB_CON2), -+ -+ SAVE_ITEM(S3C64XX_MODEM_MIFPCON), -+ SAVE_ITEM(S3C64XX_SPCON), -+ -+ SAVE_ITEM(S3C64XX_MEM0CONSTOP), -+ SAVE_ITEM(S3C64XX_MEM1CONSTOP), -+ SAVE_ITEM(S3C64XX_MEM0CONSLP0), -+ SAVE_ITEM(S3C64XX_MEM0CONSLP1), -+ SAVE_ITEM(S3C64XX_MEM1CONSLP), -+}; -+ -+void s3c_pm_configure_extint(void) -+{ -+ __raw_writel(s3c_irqwake_eintmask, S3C64XX_EINT_MASK); -+} -+ -+void s3c_pm_restore_core(void) -+{ -+ __raw_writel(0, S3C64XX_EINT_MASK); -+ -+ s3c_pm_debug_smdkled(1 << 2, 0); -+ -+ s3c_pm_do_restore_core(core_save, ARRAY_SIZE(core_save)); -+ s3c_pm_do_restore(misc_save, ARRAY_SIZE(misc_save)); -+} -+ -+void s3c_pm_save_core(void) -+{ -+ s3c_pm_do_save(misc_save, ARRAY_SIZE(misc_save)); -+ s3c_pm_do_save(core_save, ARRAY_SIZE(core_save)); -+} -+ -+/* since both s3c6400 and s3c6410 share the same sleep pm calls, we -+ * put the per-cpu code in here until any new cpu comes along and changes -+ * this. -+ */ -+ -+#include <plat/regs-gpio.h> -+ -+static void s3c64xx_cpu_suspend(void) -+{ -+ unsigned long tmp; -+ -+ /* set our standby method to sleep */ -+ -+ tmp = __raw_readl(S3C64XX_PWR_CFG); -+ tmp &= ~S3C64XX_PWRCFG_CFG_WFI_MASK; -+ tmp |= S3C64XX_PWRCFG_CFG_WFI_SLEEP; -+ __raw_writel(tmp, S3C64XX_PWR_CFG); -+ -+ /* clear any old wakeup */ -+ -+ __raw_writel(__raw_readl(S3C64XX_WAKEUP_STAT), -+ S3C64XX_WAKEUP_STAT); -+ -+ /* set the LED state to 0110 over sleep */ -+ s3c_pm_debug_smdkled(3 << 1, 0xf); -+ -+ /* issue the standby signal into the pm unit. Note, we -+ * issue a write-buffer drain just in case */ -+ -+ tmp = 0; -+ -+ asm("b 1f\n\t" -+ ".align 5\n\t" -+ "1:\n\t" -+ "mcr p15, 0, %0, c7, c10, 5\n\t" -+ "mcr p15, 0, %0, c7, c10, 4\n\t" -+ "mcr p15, 0, %0, c7, c0, 4" :: "r" (tmp)); -+ -+ /* we should never get past here */ -+ -+ panic("sleep resumed to originator?"); -+} -+ -+static void s3c64xx_pm_prepare(void) -+{ -+ /* store address of resume. */ -+ __raw_writel(virt_to_phys(s3c_cpu_resume), S3C64XX_INFORM0); -+ -+ /* ensure previous wakeup state is cleared before sleeping */ -+ __raw_writel(__raw_readl(S3C64XX_WAKEUP_STAT), S3C64XX_WAKEUP_STAT); -+} -+ -+static int s3c64xx_pm_init(void) -+{ -+ pm_cpu_prep = s3c64xx_pm_prepare; -+ pm_cpu_sleep = s3c64xx_cpu_suspend; -+ pm_uart_udivslot = 1; -+ return 0; -+} -+ -+arch_initcall(s3c64xx_pm_init); ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/s3c6400-clock.c -@@ -0,0 +1,654 @@ -+/* linux/arch/arm/plat-s3c64xx/s3c6400-clock.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C6400 based common clock support -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/list.h> -+#include <linux/errno.h> -+#include <linux/err.h> -+#include <linux/clk.h> -+#include <linux/sysdev.h> -+#include <linux/io.h> -+ -+#include <mach/hardware.h> -+#include <mach/map.h> -+ -+#include <plat/cpu-freq.h> -+ -+#include <plat/regs-clock.h> -+#include <plat/clock.h> -+#include <plat/cpu.h> -+#include <plat/pll.h> -+ -+/* fin_apll, fin_mpll and fin_epll are all the same clock, which we call -+ * ext_xtal_mux for want of an actual name from the manual. -+*/ -+ -+struct clk clk_ext_xtal_mux = { -+ .name = "ext_xtal", -+ .id = -1, -+}; -+ -+#define clk_fin_apll clk_ext_xtal_mux -+#define clk_fin_mpll clk_ext_xtal_mux -+#define clk_fin_epll clk_ext_xtal_mux -+ -+#define clk_fout_mpll clk_mpll -+ -+struct clk_sources { -+ unsigned int nr_sources; -+ struct clk **sources; -+}; -+ -+struct clksrc_clk { -+ struct clk clk; -+ unsigned int mask; -+ unsigned int shift; -+ -+ struct clk_sources *sources; -+ -+ unsigned int divider_shift; -+ void __iomem *reg_divider; -+}; -+ -+struct clk clk_fout_apll = { -+ .name = "fout_apll", -+ .id = -1, -+}; -+ -+static struct clk *clk_src_apll_list[] = { -+ [0] = &clk_fin_apll, -+ [1] = &clk_fout_apll, -+}; -+ -+static struct clk_sources clk_src_apll = { -+ .sources = clk_src_apll_list, -+ .nr_sources = ARRAY_SIZE(clk_src_apll_list), -+}; -+ -+struct clksrc_clk clk_mout_apll = { -+ .clk = { -+ .name = "mout_apll", -+ .id = -1, -+ }, -+ .shift = S3C6400_CLKSRC_APLL_MOUT_SHIFT, -+ .mask = S3C6400_CLKSRC_APLL_MOUT, -+ .sources = &clk_src_apll, -+}; -+ -+struct clk clk_fout_epll = { -+ .name = "fout_epll", -+ .id = -1, -+}; -+ -+static struct clk *clk_src_epll_list[] = { -+ [0] = &clk_fin_epll, -+ [1] = &clk_fout_epll, -+}; -+ -+static struct clk_sources clk_src_epll = { -+ .sources = clk_src_epll_list, -+ .nr_sources = ARRAY_SIZE(clk_src_epll_list), -+}; -+ -+struct clksrc_clk clk_mout_epll = { -+ .clk = { -+ .name = "mout_epll", -+ .id = -1, -+ }, -+ .shift = S3C6400_CLKSRC_EPLL_MOUT_SHIFT, -+ .mask = S3C6400_CLKSRC_EPLL_MOUT, -+ .sources = &clk_src_epll, -+}; -+ -+static struct clk *clk_src_mpll_list[] = { -+ [0] = &clk_fin_mpll, -+ [1] = &clk_fout_mpll, -+}; -+ -+static struct clk_sources clk_src_mpll = { -+ .sources = clk_src_mpll_list, -+ .nr_sources = ARRAY_SIZE(clk_src_mpll_list), -+}; -+ -+struct clksrc_clk clk_mout_mpll = { -+ .clk = { -+ .name = "mout_mpll", -+ .id = -1, -+ }, -+ .shift = S3C6400_CLKSRC_MPLL_MOUT_SHIFT, -+ .mask = S3C6400_CLKSRC_MPLL_MOUT, -+ .sources = &clk_src_mpll, -+}; -+ -+static unsigned long s3c64xx_clk_doutmpll_get_rate(struct clk *clk) -+{ -+ unsigned long rate = clk_get_rate(clk->parent); -+ -+ printk(KERN_DEBUG "%s: parent is %ld\n", __func__, rate); -+ -+ if (__raw_readl(S3C_CLK_DIV0) & S3C6400_CLKDIV0_MPLL_MASK) -+ rate /= 2; -+ -+ return rate; -+} -+ -+struct clk clk_dout_mpll = { -+ .name = "dout_mpll", -+ .id = -1, -+ .parent = &clk_mout_mpll.clk, -+ .get_rate = s3c64xx_clk_doutmpll_get_rate, -+}; -+ -+static struct clk *clkset_spi_mmc_list[] = { -+ &clk_mout_epll.clk, -+ &clk_dout_mpll, -+ &clk_fin_epll, -+ &clk_27m, -+}; -+ -+static struct clk_sources clkset_spi_mmc = { -+ .sources = clkset_spi_mmc_list, -+ .nr_sources = ARRAY_SIZE(clkset_spi_mmc_list), -+}; -+ -+static struct clk *clkset_irda_list[] = { -+ &clk_mout_epll.clk, -+ &clk_dout_mpll, -+ NULL, -+ &clk_27m, -+}; -+ -+static struct clk_sources clkset_irda = { -+ .sources = clkset_irda_list, -+ .nr_sources = ARRAY_SIZE(clkset_irda_list), -+}; -+ -+static struct clk *clkset_uart_list[] = { -+ &clk_mout_epll.clk, -+ &clk_dout_mpll, -+ NULL, -+ NULL -+}; -+ -+static struct clk_sources clkset_uart = { -+ .sources = clkset_uart_list, -+ .nr_sources = ARRAY_SIZE(clkset_uart_list), -+}; -+ -+static struct clk *clkset_uhost_list[] = { -+ &clk_mout_epll.clk, -+ &clk_dout_mpll, -+ &clk_fin_epll, -+ &clk_48m, -+}; -+ -+static struct clk_sources clkset_uhost = { -+ .sources = clkset_uhost_list, -+ .nr_sources = ARRAY_SIZE(clkset_uhost_list), -+}; -+ -+ -+/* The peripheral clocks are all controlled via clocksource followed -+ * by an optional divider and gate stage. We currently roll this into -+ * one clock which hides the intermediate clock from the mux. -+ * -+ * Note, the JPEG clock can only be an even divider... -+ * -+ * The scaler and LCD clocks depend on the S3C64XX version, and also -+ * have a common parent divisor so are not included here. -+ */ -+ -+static inline struct clksrc_clk *to_clksrc(struct clk *clk) -+{ -+ return container_of(clk, struct clksrc_clk, clk); -+} -+ -+static unsigned long s3c64xx_getrate_clksrc(struct clk *clk) -+{ -+ struct clksrc_clk *sclk = to_clksrc(clk); -+ unsigned long rate = clk_get_rate(clk->parent); -+ u32 clkdiv = __raw_readl(sclk->reg_divider); -+ -+ clkdiv >>= sclk->divider_shift; -+ clkdiv &= 0xf; -+ clkdiv++; -+ -+ rate /= clkdiv; -+ return rate; -+} -+ -+static int s3c64xx_setrate_clksrc(struct clk *clk, unsigned long rate) -+{ -+ struct clksrc_clk *sclk = to_clksrc(clk); -+ void __iomem *reg = sclk->reg_divider; -+ unsigned int div; -+ u32 val; -+ -+ rate = clk_round_rate(clk, rate); -+ div = clk_get_rate(clk->parent) / rate; -+ -+ val = __raw_readl(reg); -+ val &= ~sclk->mask; -+ val |= (rate - 1) << sclk->shift; -+ __raw_writel(val, reg); -+ -+ return 0; -+} -+ -+static int s3c64xx_setparent_clksrc(struct clk *clk, struct clk *parent) -+{ -+ struct clksrc_clk *sclk = to_clksrc(clk); -+ struct clk_sources *srcs = sclk->sources; -+ u32 clksrc = __raw_readl(S3C_CLK_SRC); -+ int src_nr = -1; -+ int ptr; -+ -+ for (ptr = 0; ptr < srcs->nr_sources; ptr++) -+ if (srcs->sources[ptr] == parent) { -+ src_nr = ptr; -+ break; -+ } -+ -+ if (src_nr >= 0) { -+ clksrc &= ~sclk->mask; -+ clksrc |= src_nr << sclk->shift; -+ -+ __raw_writel(clksrc, S3C_CLK_SRC); -+ return 0; -+ } -+ -+ return -EINVAL; -+} -+ -+static unsigned long s3c64xx_roundrate_clksrc(struct clk *clk, -+ unsigned long rate) -+{ -+ unsigned long parent_rate = clk_get_rate(clk->parent); -+ int div; -+ -+ if (rate > parent_rate) -+ rate = parent_rate; -+ else { -+ div = rate / parent_rate; -+ -+ if (div == 0) -+ div = 1; -+ if (div > 16) -+ div = 16; -+ -+ rate = parent_rate / div; -+ } -+ -+ return rate; -+} -+ -+static struct clksrc_clk clk_mmc0 = { -+ .clk = { -+ .name = "mmc_bus", -+ .id = 0, -+ .ctrlbit = S3C_CLKCON_SCLK_MMC0, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_MMC0_SHIFT, -+ .mask = S3C6400_CLKSRC_MMC0_MASK, -+ .sources = &clkset_spi_mmc, -+ .divider_shift = S3C6400_CLKDIV1_MMC0_SHIFT, -+ .reg_divider = S3C_CLK_DIV1, -+}; -+ -+static struct clksrc_clk clk_mmc1 = { -+ .clk = { -+ .name = "mmc_bus", -+ .id = 1, -+ .ctrlbit = S3C_CLKCON_SCLK_MMC1, -+ .enable = s3c64xx_sclk_ctrl, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_MMC1_SHIFT, -+ .mask = S3C6400_CLKSRC_MMC1_MASK, -+ .sources = &clkset_spi_mmc, -+ .divider_shift = S3C6400_CLKDIV1_MMC1_SHIFT, -+ .reg_divider = S3C_CLK_DIV1, -+}; -+ -+static struct clksrc_clk clk_mmc2 = { -+ .clk = { -+ .name = "mmc_bus", -+ .id = 2, -+ .ctrlbit = S3C_CLKCON_SCLK_MMC2, -+ .enable = s3c64xx_sclk_ctrl, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_MMC2_SHIFT, -+ .mask = S3C6400_CLKSRC_MMC2_MASK, -+ .sources = &clkset_spi_mmc, -+ .divider_shift = S3C6400_CLKDIV1_MMC2_SHIFT, -+ .reg_divider = S3C_CLK_DIV1, -+}; -+ -+static struct clksrc_clk clk_usbhost = { -+ .clk = { -+ .name = "usb-host-bus", -+ .id = -1, -+ .ctrlbit = S3C_CLKCON_SCLK_UHOST, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_UHOST_SHIFT, -+ .mask = S3C6400_CLKSRC_UHOST_MASK, -+ .sources = &clkset_uhost, -+ .divider_shift = S3C6400_CLKDIV1_UHOST_SHIFT, -+ .reg_divider = S3C_CLK_DIV1, -+}; -+ -+static struct clksrc_clk clk_uart_uclk1 = { -+ .clk = { -+ .name = "uclk1", -+ .id = -1, -+ .ctrlbit = S3C_CLKCON_SCLK_UART, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_UART_SHIFT, -+ .mask = S3C6400_CLKSRC_UART_MASK, -+ .sources = &clkset_uart, -+ .divider_shift = S3C6400_CLKDIV2_UART_SHIFT, -+ .reg_divider = S3C_CLK_DIV2, -+}; -+ -+/* Where does UCLK0 come from? */ -+ -+static struct clksrc_clk clk_spi0 = { -+ .clk = { -+ .name = "spi-bus", -+ .id = 0, -+ .ctrlbit = S3C_CLKCON_SCLK_SPI0, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_SPI0_SHIFT, -+ .mask = S3C6400_CLKSRC_SPI0_MASK, -+ .sources = &clkset_spi_mmc, -+ .divider_shift = S3C6400_CLKDIV2_SPI0_SHIFT, -+ .reg_divider = S3C_CLK_DIV2, -+}; -+ -+static struct clksrc_clk clk_spi1 = { -+ .clk = { -+ .name = "spi-bus", -+ .id = 1, -+ .ctrlbit = S3C_CLKCON_SCLK_SPI1, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_SPI1_SHIFT, -+ .mask = S3C6400_CLKSRC_SPI1_MASK, -+ .sources = &clkset_spi_mmc, -+ .divider_shift = S3C6400_CLKDIV2_SPI1_SHIFT, -+ .reg_divider = S3C_CLK_DIV2, -+}; -+ -+static struct clk clk_iis_cd0 = { -+ .name = "iis_cdclk0", -+ .id = -1, -+}; -+ -+static struct clk clk_iis_cd1 = { -+ .name = "iis_cdclk1", -+ .id = -1, -+}; -+ -+static struct clk clk_pcm_cd = { -+ .name = "pcm_cdclk", -+ .id = -1, -+}; -+ -+static struct clk *clkset_audio0_list[] = { -+ [0] = &clk_mout_epll.clk, -+ [1] = &clk_dout_mpll, -+ [2] = &clk_fin_epll, -+ [3] = &clk_iis_cd0, -+ [4] = &clk_pcm_cd, -+}; -+ -+static struct clk_sources clkset_audio0 = { -+ .sources = clkset_audio0_list, -+ .nr_sources = ARRAY_SIZE(clkset_audio0_list), -+}; -+ -+static struct clksrc_clk clk_audio0 = { -+ .clk = { -+ .name = "audio-bus", -+ .id = 0, -+ .ctrlbit = S3C_CLKCON_SCLK_AUDIO0, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_AUDIO0_SHIFT, -+ .mask = S3C6400_CLKSRC_AUDIO0_MASK, -+ .sources = &clkset_audio0, -+ .divider_shift = S3C6400_CLKDIV2_AUDIO0_SHIFT, -+ .reg_divider = S3C_CLK_DIV2, -+}; -+ -+static struct clk *clkset_audio1_list[] = { -+ [0] = &clk_mout_epll.clk, -+ [1] = &clk_dout_mpll, -+ [2] = &clk_fin_epll, -+ [3] = &clk_iis_cd1, -+ [4] = &clk_pcm_cd, -+}; -+ -+static struct clk_sources clkset_audio1 = { -+ .sources = clkset_audio1_list, -+ .nr_sources = ARRAY_SIZE(clkset_audio1_list), -+}; -+ -+static struct clksrc_clk clk_audio1 = { -+ .clk = { -+ .name = "audio-bus", -+ .id = 1, -+ .ctrlbit = S3C_CLKCON_SCLK_AUDIO1, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_AUDIO1_SHIFT, -+ .mask = S3C6400_CLKSRC_AUDIO1_MASK, -+ .sources = &clkset_audio1, -+ .divider_shift = S3C6400_CLKDIV2_AUDIO1_SHIFT, -+ .reg_divider = S3C_CLK_DIV2, -+}; -+ -+static struct clksrc_clk clk_irda = { -+ .clk = { -+ .name = "irda-bus", -+ .id = 0, -+ .ctrlbit = S3C_CLKCON_SCLK_IRDA, -+ .enable = s3c64xx_sclk_ctrl, -+ .set_parent = s3c64xx_setparent_clksrc, -+ .get_rate = s3c64xx_getrate_clksrc, -+ .set_rate = s3c64xx_setrate_clksrc, -+ .round_rate = s3c64xx_roundrate_clksrc, -+ }, -+ .shift = S3C6400_CLKSRC_IRDA_SHIFT, -+ .mask = S3C6400_CLKSRC_IRDA_MASK, -+ .sources = &clkset_irda, -+ .divider_shift = S3C6400_CLKDIV2_IRDA_SHIFT, -+ .reg_divider = S3C_CLK_DIV2, -+}; -+ -+/* Clock initialisation code */ -+ -+static struct clksrc_clk *init_parents[] = { -+ &clk_mout_apll, -+ &clk_mout_epll, -+ &clk_mout_mpll, -+ &clk_mmc0, -+ &clk_mmc1, -+ &clk_mmc2, -+ &clk_usbhost, -+ &clk_uart_uclk1, -+ &clk_spi0, -+ &clk_spi1, -+ &clk_audio0, -+ &clk_audio1, -+ &clk_irda, -+}; -+ -+static void __init_or_cpufreq s3c6400_set_clksrc(struct clksrc_clk *clk) -+{ -+ struct clk_sources *srcs = clk->sources; -+ u32 clksrc = __raw_readl(S3C_CLK_SRC); -+ -+ clksrc &= clk->mask; -+ clksrc >>= clk->shift; -+ -+ if (clksrc > srcs->nr_sources || !srcs->sources[clksrc]) { -+ printk(KERN_ERR "%s: bad source %d\n", -+ clk->clk.name, clksrc); -+ return; -+ } -+ -+ clk->clk.parent = srcs->sources[clksrc]; -+ -+ printk(KERN_INFO "%s: source is %s (%d), rate is %ld\n", -+ clk->clk.name, clk->clk.parent->name, clksrc, -+ clk_get_rate(&clk->clk)); -+} -+ -+#define GET_DIV(clk, field) ((((clk) & field##_MASK) >> field##_SHIFT) + 1) -+ -+void __init_or_cpufreq s3c6400_setup_clocks(void) -+{ -+ struct clk *xtal_clk; -+ unsigned long xtal; -+ unsigned long fclk; -+ unsigned long hclk; -+ unsigned long hclk2; -+ unsigned long pclk; -+ unsigned long epll; -+ unsigned long apll; -+ unsigned long mpll; -+ unsigned int ptr; -+ u32 clkdiv0; -+ -+ printk(KERN_DEBUG "%s: registering clocks\n", __func__); -+ -+ clkdiv0 = __raw_readl(S3C_CLK_DIV0); -+ printk(KERN_DEBUG "%s: clkdiv0 = %08x\n", __func__, clkdiv0); -+ -+ xtal_clk = clk_get(NULL, "xtal"); -+ BUG_ON(IS_ERR(xtal_clk)); -+ -+ xtal = clk_get_rate(xtal_clk); -+ clk_put(xtal_clk); -+ -+ printk(KERN_DEBUG "%s: xtal is %ld\n", __func__, xtal); -+ -+ epll = s3c6400_get_epll(xtal); -+ mpll = s3c6400_get_pll(xtal, __raw_readl(S3C_MPLL_CON)); -+ apll = s3c6400_get_pll(xtal, __raw_readl(S3C_APLL_CON)); -+ -+ fclk = mpll; -+ -+ printk(KERN_INFO "S3C64XX: PLL settings, A=%ld, M=%ld, E=%ld\n", -+ apll, mpll, epll); -+ -+ hclk2 = mpll / GET_DIV(clkdiv0, S3C6400_CLKDIV0_HCLK2); -+ hclk = hclk2 / GET_DIV(clkdiv0, S3C6400_CLKDIV0_HCLK); -+ pclk = hclk2 / GET_DIV(clkdiv0, S3C6400_CLKDIV0_PCLK); -+ -+ printk(KERN_INFO "S3C64XX: HCLK2=%ld, HCLK=%ld, PCLK=%ld\n", -+ hclk2, hclk, pclk); -+ -+ clk_fout_mpll.rate = mpll; -+ clk_fout_epll.rate = epll; -+ clk_fout_apll.rate = apll; -+ -+ clk_h.rate = hclk; -+ clk_p.rate = pclk; -+ clk_f.rate = fclk; -+ -+ for (ptr = 0; ptr < ARRAY_SIZE(init_parents); ptr++) -+ s3c6400_set_clksrc(init_parents[ptr]); -+} -+ -+static struct clk *clks[] __initdata = { -+ &clk_ext_xtal_mux, -+ &clk_iis_cd0, -+ &clk_iis_cd1, -+ &clk_pcm_cd, -+ &clk_mout_epll.clk, -+ &clk_fout_epll, -+ &clk_mout_mpll.clk, -+ &clk_dout_mpll, -+ &clk_mmc0.clk, -+ &clk_mmc1.clk, -+ &clk_mmc2.clk, -+ &clk_usbhost.clk, -+ &clk_uart_uclk1.clk, -+ &clk_spi0.clk, -+ &clk_spi1.clk, -+ &clk_audio0.clk, -+ &clk_audio1.clk, -+ &clk_irda.clk, -+}; -+ -+void __init s3c6400_register_clocks(void) -+{ -+ struct clk *clkp; -+ int ret; -+ int ptr; -+ -+ for (ptr = 0; ptr < ARRAY_SIZE(clks); ptr++) { -+ clkp = clks[ptr]; -+ ret = s3c24xx_register_clock(clkp); -+ if (ret < 0) { -+ printk(KERN_ERR "Failed to register clock %s (%d)\n", -+ clkp->name, ret); -+ } -+ } -+ -+ clk_epll.parent = &clk_mout_epll.clk; -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/s3c6400-init.c -@@ -0,0 +1,29 @@ -+/* linux/arch/arm/plat-s3c64xx/s3c6400-init.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C6400 - CPU initialisation (common with other S3C64XX chips) -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/init.h> -+ -+#include <plat/cpu.h> -+#include <plat/devs.h> -+#include <plat/s3c6400.h> -+#include <plat/s3c6410.h> -+ -+/* uart registration process */ -+ -+void __init s3c6400_common_init_uarts(struct s3c2410_uartcfg *cfg, int no) -+{ -+ s3c24xx_init_uartdevs("s3c6400-uart", s3c64xx_uart_resources, cfg, no); -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/setup-fb-24bpp.c -@@ -0,0 +1,37 @@ -+/* linux/arch/arm/plat-s3c64xx/setup-fb-24bpp.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * Base S3C64XX setup information for 24bpp LCD framebuffer -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/fb.h> -+ -+#include <mach/regs-fb.h> -+#include <mach/gpio.h> -+#include <plat/fb.h> -+#include <plat/gpio-cfg.h> -+ -+extern void s3c64xx_fb_gpio_setup_24bpp(void) -+{ -+ unsigned int gpio; -+ -+ for (gpio = S3C64XX_GPI(0); gpio <= S3C64XX_GPI(15); gpio++) { -+ s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2)); -+ s3c_gpio_setpull(gpio, S3C_GPIO_PULL_NONE); -+ } -+ -+ for (gpio = S3C64XX_GPJ(0); gpio <= S3C64XX_GPJ(11); gpio++) { -+ s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2)); -+ s3c_gpio_setpull(gpio, S3C_GPIO_PULL_NONE); -+ } -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/setup-i2c0.c -@@ -0,0 +1,31 @@ -+/* linux/arch/arm/plat-s3c64xx/setup-i2c0.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * Base S3C64XX I2C bus 0 gpio configuration -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+ -+struct platform_device; /* don't need the contents */ -+ -+#include <mach/gpio.h> -+#include <plat/iic.h> -+#include <plat/gpio-bank-b.h> -+#include <plat/gpio-cfg.h> -+ -+void s3c_i2c0_cfg_gpio(struct platform_device *dev) -+{ -+ s3c_gpio_cfgpin(S3C64XX_GPB(5), S3C64XX_GPB5_I2C_SCL0); -+ s3c_gpio_cfgpin(S3C64XX_GPB(6), S3C64XX_GPB6_I2C_SDA0); -+ s3c_gpio_setpull(S3C64XX_GPB(5), S3C_GPIO_PULL_UP); -+ s3c_gpio_setpull(S3C64XX_GPB(6), S3C_GPIO_PULL_UP); -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/setup-i2c1.c -@@ -0,0 +1,31 @@ -+/* linux/arch/arm/plat-s3c64xx/setup-i2c1.c -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * Base S3C64XX I2C bus 1 gpio configuration -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+ -+struct platform_device; /* don't need the contents */ -+ -+#include <mach/gpio.h> -+#include <plat/iic.h> -+#include <plat/gpio-bank-b.h> -+#include <plat/gpio-cfg.h> -+ -+void s3c_i2c1_cfg_gpio(struct platform_device *dev) -+{ -+ s3c_gpio_cfgpin(S3C64XX_GPB(2), S3C64XX_GPB2_I2C_SCL1); -+ s3c_gpio_cfgpin(S3C64XX_GPB(3), S3C64XX_GPB3_I2C_SDA1); -+ s3c_gpio_setpull(S3C64XX_GPB(2), S3C_GPIO_PULL_UP); -+ s3c_gpio_setpull(S3C64XX_GPB(3), S3C_GPIO_PULL_UP); -+} ---- /dev/null -+++ b/arch/arm/plat-s3c64xx/sleep.S -@@ -0,0 +1,143 @@ -+/* linux/0arch/arm/plat-s3c64xx/sleep.S -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * S3C64XX CPU sleep code -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/linkage.h> -+#include <asm/assembler.h> -+#include <mach/map.h> -+ -+#undef S3C64XX_VA_GPIO -+#define S3C64XX_VA_GPIO (0x0) -+ -+#include <plat/regs-gpio.h> -+#include <plat/gpio-bank-n.h> -+ -+#define LL_UART (S3C_PA_UART + (0x400 * CONFIG_S3C_LOWLEVEL_UART_PORT)) -+ -+ .text -+ -+ /* s3c_cpu_save -+ * -+ * Save enough processor state to allow the restart of the pm.c -+ * code after resume. -+ * -+ * entry: -+ * r0 = pointer to the save block -+ * exit: -+ * r0 = exit code: 1 => stored data -+ * 0 => resumed from sleep -+ */ -+ -+ENTRY(s3c_cpu_save) -+ stmfd sp!, { r4 - r12, lr } -+ -+ mrc p15, 0, r4, c13, c0, 0 @ FCSE/PID -+ mrc p15, 0, r5, c3, c0, 0 @ Domain ID -+ mrc p15, 0, r6, c2, c0, 0 @ Translation Table BASE0 -+ mrc p15, 0, r7, c2, c0, 1 @ Translation Table BASE1 -+ mrc p15, 0, r8, c2, c0, 2 @ Translation Table Control -+ mrc p15, 0, r9, c1, c0, 0 @ Control register -+ mrc p15, 0, r10, c1, c0, 1 @ Auxiliary control register -+ mrc p15, 0, r11, c1, c0, 2 @ Co-processor access controls -+ -+ stmia r0, { r4 - r13 } @ Save CP registers and SP -+ mov r0, #0 -+ ldmfd sp, { r4 - r12, pc } @ return, not disturbing SP -+ -+ @@ return to the caller, after the MMU is turned on. -+ @@ restore the last bits of the stack and return. -+resume_with_mmu: -+ mov r0, #1 -+ ldmfd sp!, { r4 - r12, pc } @ return, from sp from s3c_cpu_save -+ -+ .data -+ -+ /* the next bit is code, but it requires easy access to the -+ * s3c_sleep_save_phys data before the MMU is switched on, so -+ * we store the code that needs this variable in the .data where -+ * the value can be written to (the .text segment is RO). -+ */ -+ -+ .global s3c_sleep_save_phys -+s3c_sleep_save_phys: -+ .word 0 -+ -+ /* Sleep magic, the word before the resume entry point so that the -+ * bootloader can check for a resumeable image. */ -+ -+ .word 0x2bedf00d -+ -+ /* s3c_cpu_reusme -+ * -+ * This is the entry point, stored by whatever method the bootloader -+ * requires to get the kernel runnign again. This code expects to be -+ * entered with no caches live and the MMU disabled. It will then -+ * restore the MMU and other basic CP registers saved and restart -+ * the kernel C code to finish the resume code. -+ */ -+ -+ENTRY(s3c_cpu_resume) -+ msr cpsr_c, #PSR_I_BIT | PSR_F_BIT | SVC_MODE -+ ldr r2, =LL_UART /* for debug */ -+ -+#ifdef CONFIG_S3C_PM_DEBUG_LED_SMDK -+ /* Initialise the GPIO state if we are debugging via the SMDK LEDs, -+ * as the uboot version supplied resets these to inputs during the -+ * resume checks. -+ */ -+ -+ ldr r3, =S3C64XX_PA_GPIO -+ ldr r0, [ r3, #S3C64XX_GPNCON ] -+ bic r0, r0, #(S3C64XX_GPN_CONMASK(12) | S3C64XX_GPN_CONMASK(13) | \ -+ S3C64XX_GPN_CONMASK(14) | S3C64XX_GPN_CONMASK(15)) -+ orr r0, r0, #(S3C64XX_GPN_OUTPUT(12) | S3C64XX_GPN_OUTPUT(13) | \ -+ S3C64XX_GPN_OUTPUT(14) | S3C64XX_GPN_OUTPUT(15)) -+ str r0, [ r3, #S3C64XX_GPNCON ] -+ -+ ldr r0, [ r3, #S3C64XX_GPNDAT ] -+ bic r0, r0, #0xf << 12 @ GPN12..15 -+ orr r0, r0, #1 << 15 @ GPN15 -+ str r0, [ r3, #S3C64XX_GPNDAT ] -+#endif -+ -+ /* __v6_setup from arch/arm/mm/proc-v6.S, ensure that the caches -+ * are thoroughly cleaned just in case the bootloader didn't do it -+ * for us. */ -+ mov r0, #0 -+ mcr p15, 0, r0, c7, c14, 0 @ clean+invalidate D cache -+ mcr p15, 0, r0, c7, c5, 0 @ invalidate I cache -+ mcr p15, 0, r0, c7, c15, 0 @ clean+invalidate cache -+ mcr p15, 0, r0, c7, c10, 4 @ drain write buffer -+ @@mcr p15, 0, r0, c8, c7, 0 @ invalidate I + D TLBs -+ @@mcr p15, 0, r0, c7, c7, 0 @ Invalidate I + D caches -+ -+ ldr r0, s3c_sleep_save_phys -+ ldmia r0, { r4 - r13 } -+ -+ mcr p15, 0, r4, c13, c0, 0 @ FCSE/PID -+ mcr p15, 0, r5, c3, c0, 0 @ Domain ID -+ mcr p15, 0, r6, c2, c0, 0 @ Translation Table BASE0 -+ mcr p15, 0, r7, c2, c0, 1 @ Translation Table BASE1 -+ mcr p15, 0, r8, c2, c0, 2 @ Translation Table Control -+ mcr p15, 0, r10, c1, c0, 1 @ Auxiliary control register -+ -+ mov r0, #0 @ restore copro access controls -+ mcr p15, 0, r11, c1, c0, 2 @ Co-processor access controls -+ mcr p15, 0, r0, c7, c5, 4 -+ -+ ldr r2, =resume_with_mmu -+ mcr p15, 0, r9, c1, c0, 0 /* turn mmu back on */ -+ nop -+ mov pc, r2 /* jump back */ -+ -+ .end ---- /dev/null -+++ b/dfu-kern -@@ -0,0 +1,14 @@ -+#!/bin/bash -+ -+if [ -z "$1" ] ; then -+ echo "Usage: $0 <DEVICE> eg, $0 GTA02" -+ exit 1 -+fi -+ -+../../dfu-util/src/dfu-util -a 3 -d 0x1d50:0x5119 -D uImage-$1.bin -+if [ $? -eq 1 ] ; then -+../../dfu-util/src/dfu-util -a 3 -d 0x1d50:0x5120 -D uImage-$1.bin -+../../dfu-util/src/dfu-util -a 3 -d 0x1d50:0x5119 -D uImage-$1.bin -+fi -+ -+ ---- a/Documentation/arm/Samsung-S3C24XX/Suspend.txt -+++ b/Documentation/arm/Samsung-S3C24XX/Suspend.txt -@@ -40,13 +40,13 @@ Resuming - Machine Support - --------------- - -- The machine specific functions must call the s3c2410_pm_init() function -+ The machine specific functions must call the s3c_pm_init() function - to say that its bootloader is capable of resuming. This can be as - simple as adding the following to the machine's definition: - -- INITMACHINE(s3c2410_pm_init) -+ INITMACHINE(s3c_pm_init) - -- A board can do its own setup before calling s3c2410_pm_init, if it -+ A board can do its own setup before calling s3c_pm_init, if it - needs to setup anything else for power management support. - - There is currently no support for over-riding the default method of -@@ -74,7 +74,7 @@ statuc void __init machine_init(void) - - enable_irq_wake(IRQ_EINT0); - -- s3c2410_pm_init(); -+ s3c_pm_init(); - } - - ---- /dev/null -+++ b/drivers/android/alarm.c -@@ -0,0 +1,542 @@ -+/* drivers/android/alarm.c -+ * -+ * Copyright (C) 2007 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#include <asm/mach/time.h> -+#include <linux/android_alarm.h> -+#include <linux/android_power.h> -+#include <linux/device.h> -+#include <linux/miscdevice.h> -+#include <linux/platform_device.h> -+#include <linux/rtc.h> -+#include <linux/spinlock.h> -+#include <linux/sysdev.h> -+ -+#define ANDROID_ALARM_PRINT_ERRORS (1U << 0) -+#define ANDROID_ALARM_PRINT_INIT_STATUS (1U << 1) -+#define ANDROID_ALARM_PRINT_INFO (1U << 2) -+#define ANDROID_ALARM_PRINT_IO (1U << 3) -+#define ANDROID_ALARM_PRINT_INT (1U << 4) -+#define ANDROID_ALARM_PRINT_FLOW (1U << 5) -+ -+#if 0 -+#define ANDROID_ALARM_DPRINTF_MASK (~0) -+#define ANDROID_ALARM_DPRINTF(debug_level_mask, args...) \ -+ do { \ -+ if(ANDROID_ALARM_DPRINTF_MASK & debug_level_mask) { \ -+ printk(args); \ -+ } \ -+ } while(0) -+#else -+#define ANDROID_ALARM_DPRINTF(args...) -+#endif -+ -+// support old usespace code -+#define ANDROID_ALARM_SET_OLD _IOW('a', 2, time_t) // set alarm -+#define ANDROID_ALARM_SET_AND_WAIT_OLD _IOW('a', 3, time_t) -+ -+static struct rtc_device *alarm_rtc_dev; -+static int alarm_opened; -+static DEFINE_SPINLOCK(alarm_slock); -+static DEFINE_MUTEX(alarm_setrtc_mutex); -+static android_suspend_lock_t alarm_suspend_lock = { -+ .name = "android_alarm" -+}; -+static android_suspend_lock_t alarm_rtc_suspend_lock = { -+ .name = "android_alarm_rtc" -+}; -+static DECLARE_WAIT_QUEUE_HEAD(alarm_wait_queue); -+static uint32_t alarm_pending; -+static uint32_t alarm_enabled; -+static uint32_t wait_pending; -+static struct platform_device *alarm_platform_dev; -+static struct hrtimer alarm_timer[ANDROID_ALARM_TYPE_COUNT]; -+static struct timespec alarm_time[ANDROID_ALARM_TYPE_COUNT]; -+static struct timespec elapsed_rtc_delta; -+ -+static void alarm_start_hrtimer(android_alarm_type_t alarm_type) -+{ -+ struct timespec hr_alarm_time; -+ if(!(alarm_enabled & (1U << alarm_type))) -+ return; -+ hr_alarm_time = alarm_time[alarm_type]; -+ if(alarm_type == ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP || alarm_type == ANDROID_ALARM_ELAPSED_REALTIME) -+ set_normalized_timespec(&hr_alarm_time, hr_alarm_time.tv_sec + elapsed_rtc_delta.tv_sec, -+ hr_alarm_time.tv_nsec + elapsed_rtc_delta.tv_nsec); -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_FLOW, "alarm start hrtimer %d at %ld.%09ld\n", alarm_type, hr_alarm_time.tv_sec, hr_alarm_time.tv_nsec); -+ hrtimer_start(&alarm_timer[alarm_type], timespec_to_ktime(hr_alarm_time), HRTIMER_MODE_ABS); -+} -+ -+static long alarm_ioctl(struct file *file, unsigned int cmd, unsigned long arg) -+{ -+ int rv = 0; -+ unsigned long flags; -+ int i; -+ struct timespec new_alarm_time; -+ struct timespec new_rtc_time; -+ struct timespec tmp_time; -+ struct rtc_time rtc_new_rtc_time; -+ android_alarm_type_t alarm_type = ANDROID_ALARM_IOCTL_TO_TYPE(cmd); -+ uint32_t alarm_type_mask = 1U << alarm_type; -+ -+ if(alarm_type >= ANDROID_ALARM_TYPE_COUNT) -+ return -EINVAL; -+ -+ if(ANDROID_ALARM_BASE_CMD(cmd) != ANDROID_ALARM_GET_TIME(0)) { -+ if ((file->f_flags & O_ACCMODE) == O_RDONLY) -+ return -EPERM; -+ if(file->private_data == NULL && cmd != ANDROID_ALARM_SET_RTC) { -+ spin_lock_irqsave(&alarm_slock, flags); -+ if(alarm_opened) { -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ return -EBUSY; -+ } -+ alarm_opened = 1; -+ file->private_data = (void *)1; -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ } -+ } -+ -+ switch(ANDROID_ALARM_BASE_CMD(cmd)) { -+ //case ANDROID_ALARM_CLEAR_OLD: // same as ANDROID_ALARM_CLEAR(0) -+ case ANDROID_ALARM_CLEAR(0): -+ spin_lock_irqsave(&alarm_slock, flags); -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_IO, "alarm %d clear\n", alarm_type); -+ hrtimer_try_to_cancel(&alarm_timer[alarm_type]); -+ if(alarm_pending) { -+ alarm_pending &= ~alarm_type_mask; -+ if(!alarm_pending && !wait_pending) { -+ android_unlock_suspend(&alarm_suspend_lock); -+ } -+ } -+ alarm_enabled &= ~alarm_type_mask; -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ break; -+ -+ case ANDROID_ALARM_SET_OLD: -+ case ANDROID_ALARM_SET_AND_WAIT_OLD: -+ if(get_user(new_alarm_time.tv_sec, (int __user *)arg)) { -+ rv = -EFAULT; -+ goto err1; -+ } -+ new_alarm_time.tv_nsec = 0; -+ goto from_old_alarm_set; -+ -+ case ANDROID_ALARM_SET_AND_WAIT(0): -+ case ANDROID_ALARM_SET(0): -+ if(copy_from_user(&new_alarm_time, (void __user *)arg, sizeof(new_alarm_time))) { -+ rv = -EFAULT; -+ goto err1; -+ } -+from_old_alarm_set: -+ spin_lock_irqsave(&alarm_slock, flags); -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_IO, "alarm %d set %ld.%09ld\n", alarm_type, new_alarm_time.tv_sec, new_alarm_time.tv_nsec); -+ alarm_time[alarm_type] = new_alarm_time; -+ alarm_enabled |= alarm_type_mask; -+ alarm_start_hrtimer(alarm_type); -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ if(ANDROID_ALARM_BASE_CMD(cmd) != ANDROID_ALARM_SET_AND_WAIT(0) && cmd != ANDROID_ALARM_SET_AND_WAIT_OLD) -+ break; -+ // fall though -+ case ANDROID_ALARM_WAIT: -+ spin_lock_irqsave(&alarm_slock, flags); -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_IO, "alarm wait\n"); -+ if(!alarm_pending && wait_pending) { -+ android_unlock_suspend(&alarm_suspend_lock); -+ wait_pending = 0; -+ } -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ rv = wait_event_interruptible(alarm_wait_queue, alarm_pending); -+ if(rv) -+ goto err1; -+ spin_lock_irqsave(&alarm_slock, flags); -+ rv = alarm_pending; -+ wait_pending = 1; -+ alarm_pending = 0; -+ if(rv & (ANDROID_ALARM_RTC_WAKEUP_MASK | ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP_MASK)) { -+ android_unlock_suspend(&alarm_rtc_suspend_lock); -+ } -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ break; -+ case ANDROID_ALARM_SET_RTC: -+ if(copy_from_user(&new_rtc_time, (void __user *)arg, sizeof(new_rtc_time))) { -+ rv = -EFAULT; -+ goto err1; -+ } -+ rtc_time_to_tm(new_rtc_time.tv_sec, &rtc_new_rtc_time); -+ -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_IO, -+ "set rtc %ld %ld - rtc %02d:%02d:%02d %02d/%02d/%04d\n", -+ new_rtc_time.tv_sec, new_rtc_time.tv_nsec, -+ rtc_new_rtc_time.tm_hour, rtc_new_rtc_time.tm_min, -+ rtc_new_rtc_time.tm_sec, rtc_new_rtc_time.tm_mon + 1, -+ rtc_new_rtc_time.tm_mday, rtc_new_rtc_time.tm_year + 1900); -+ -+ mutex_lock(&alarm_setrtc_mutex); -+ spin_lock_irqsave(&alarm_slock, flags); -+ for (i = 0; i < ANDROID_ALARM_SYSTEMTIME; i++) -+ hrtimer_try_to_cancel(&alarm_timer[i]); -+ getnstimeofday(&tmp_time); -+ elapsed_rtc_delta = timespec_sub(elapsed_rtc_delta, timespec_sub(tmp_time, new_rtc_time)); -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ rv = do_settimeofday(&new_rtc_time); -+ spin_lock_irqsave(&alarm_slock, flags); -+ for (i = 0; i < ANDROID_ALARM_SYSTEMTIME; i++) -+ alarm_start_hrtimer(i); -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ if(rv < 0) { -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_ERRORS, "Failed to set time\n"); -+ mutex_unlock(&alarm_setrtc_mutex); -+ goto err1; -+ } -+ rv = rtc_set_time(alarm_rtc_dev, &rtc_new_rtc_time); -+ spin_lock_irqsave(&alarm_slock, flags); -+ alarm_pending |= ANDROID_ALARM_TIME_CHANGE_MASK; -+ wake_up(&alarm_wait_queue); -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ mutex_unlock(&alarm_setrtc_mutex); -+ if(rv < 0) { -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_ERRORS, "Failed to set RTC, time will be lost on reboot\n"); -+ goto err1; -+ } -+ break; -+ case ANDROID_ALARM_GET_TIME(0): -+ mutex_lock(&alarm_setrtc_mutex); -+ spin_lock_irqsave(&alarm_slock, flags); -+ if(alarm_type != ANDROID_ALARM_SYSTEMTIME) { -+ getnstimeofday(&tmp_time); -+ if(alarm_type >= ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP) { -+ tmp_time = timespec_sub(tmp_time, elapsed_rtc_delta); -+ } -+ } -+ else -+ ktime_get_ts(&tmp_time); -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ mutex_unlock(&alarm_setrtc_mutex); -+ if(copy_to_user((void __user *)arg, &tmp_time, sizeof(tmp_time))) { -+ rv = -EFAULT; -+ goto err1; -+ } -+ break; -+ -+ default: -+ rv = -EINVAL; -+ goto err1; -+ } -+err1: -+ return rv; -+} -+ -+static int alarm_open(struct inode *inode, struct file *file) -+{ -+ file->private_data = NULL; -+ return 0; -+} -+ -+static int alarm_release(struct inode *inode, struct file *file) -+{ -+ int i; -+ unsigned long flags; -+ -+ spin_lock_irqsave(&alarm_slock, flags); -+ if(file->private_data != 0) { -+ for(i = 0; i < ANDROID_ALARM_TYPE_COUNT; i++) { -+ uint32_t alarm_type_mask = 1U << i; -+ if(alarm_enabled & alarm_type_mask) { -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INFO, "alarm_release: clear alarm, pending %d\n", !!(alarm_pending & alarm_type_mask)); -+ alarm_enabled &= ~alarm_type_mask; -+ } -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ hrtimer_cancel(&alarm_timer[i]); -+ spin_lock_irqsave(&alarm_slock, flags); -+ } -+ if(alarm_pending | wait_pending) { -+ if(alarm_pending) -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INFO, "alarm_release: clear pending alarms %x\n", alarm_pending); -+ android_unlock_suspend(&alarm_suspend_lock); -+ wait_pending = 0; -+ alarm_pending = 0; -+ } -+ alarm_opened = 0; -+ } -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ return 0; -+} -+ -+static enum hrtimer_restart alarm_timer_triggered(struct hrtimer *timer) -+{ -+ unsigned long flags; -+ android_alarm_type_t alarm_type = (timer - alarm_timer); -+ uint32_t alarm_type_mask = 1U << alarm_type; -+ -+ -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INT, "alarm_timer_triggered type %d\n", alarm_type); -+ spin_lock_irqsave(&alarm_slock, flags); -+ if (alarm_enabled & alarm_type_mask) { -+ android_lock_suspend_auto_expire(&alarm_suspend_lock, 5 * HZ); -+ alarm_enabled &= ~alarm_type_mask; -+ alarm_pending |= alarm_type_mask; -+ wake_up(&alarm_wait_queue); -+ } -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ return HRTIMER_NORESTART; -+} -+ -+static void alarm_triggered_func(void *p) -+{ -+// unsigned long flags; -+ -+ struct rtc_device *rtc = alarm_rtc_dev; -+ if(rtc->irq_data & RTC_AF) { -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INT, "alarm_triggered_func:\n"); -+ android_lock_suspend_auto_expire(&alarm_rtc_suspend_lock, 1 * HZ); -+ } -+} -+ -+int alarm_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ int err = 0; -+ unsigned long flags; -+ struct rtc_wkalrm rtc_alarm; -+ struct rtc_time rtc_current_rtc_time; -+ unsigned long rtc_current_time; -+ unsigned long rtc_alarm_time; -+ struct timespec rtc_current_timespec; -+ struct timespec rtc_delta; -+ struct timespec elapsed_realtime_alarm_time; -+ -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_FLOW, "alarm_suspend(%p, %d)\n", pdev, state.event); -+ spin_lock_irqsave(&alarm_slock, flags); -+ if(alarm_pending && (alarm_suspend_lock.flags & ANDROID_SUSPEND_LOCK_AUTO_EXPIRE)) { -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INFO, "alarm pending\n"); -+ err = -EBUSY; -+ goto err1; -+ } -+ if(alarm_enabled & (ANDROID_ALARM_RTC_WAKEUP_MASK | ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP_MASK)) { -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ if(alarm_enabled & ANDROID_ALARM_RTC_WAKEUP_MASK) -+ hrtimer_cancel(&alarm_timer[ANDROID_ALARM_RTC_WAKEUP]); -+ if(alarm_enabled & ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP_MASK) -+ hrtimer_cancel(&alarm_timer[ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP]); -+ -+ rtc_read_time(alarm_rtc_dev, &rtc_current_rtc_time); -+ rtc_current_timespec.tv_nsec = 0; -+ rtc_tm_to_time(&rtc_current_rtc_time, &rtc_current_timespec.tv_sec); -+ save_time_delta(&rtc_delta, &rtc_current_timespec); -+ set_normalized_timespec(&elapsed_realtime_alarm_time, -+ alarm_time[ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP].tv_sec + elapsed_rtc_delta.tv_sec, -+ alarm_time[ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP].tv_nsec + elapsed_rtc_delta.tv_nsec); -+ if((alarm_enabled & ANDROID_ALARM_RTC_WAKEUP_MASK) && -+ (!(alarm_enabled & ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP_MASK) -+ || timespec_compare(&alarm_time[ANDROID_ALARM_RTC_WAKEUP], &elapsed_realtime_alarm_time) < 0)) -+ rtc_alarm_time = timespec_sub(alarm_time[ANDROID_ALARM_RTC_WAKEUP], rtc_delta).tv_sec; -+ else { -+ rtc_alarm_time = timespec_sub(elapsed_realtime_alarm_time, rtc_delta).tv_sec; -+ } -+ rtc_time_to_tm(rtc_alarm_time, &rtc_alarm.time); -+ rtc_alarm.enabled = 1; -+ rtc_set_alarm(alarm_rtc_dev, &rtc_alarm); -+ rtc_read_time(alarm_rtc_dev, &rtc_current_rtc_time); -+ rtc_tm_to_time(&rtc_current_rtc_time, &rtc_current_time); -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INFO, -+ "rtc alarm set at %ld, now %ld, rtc delta %ld.%09ld\n", -+ rtc_alarm_time, rtc_current_time, -+ rtc_delta.tv_sec, rtc_delta.tv_nsec); -+ if(rtc_current_time + 1 >= rtc_alarm_time) { -+ //spin_lock_irqsave(&alarm_slock, flags); -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INFO, "alarm about to go off\n"); -+ memset(&rtc_alarm, 0, sizeof(rtc_alarm)); -+ rtc_alarm.enabled = 0; -+ rtc_set_alarm(alarm_rtc_dev, &rtc_alarm); -+ -+ spin_lock_irqsave(&alarm_slock, flags); -+ android_lock_suspend_auto_expire(&alarm_rtc_suspend_lock, 2 * HZ); // trigger a wakeup -+ alarm_start_hrtimer(ANDROID_ALARM_RTC_WAKEUP); -+ alarm_start_hrtimer(ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP); -+ err = -EBUSY; -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ } -+ } -+ else { -+err1: -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ } -+ return err; -+} -+ -+int alarm_resume(struct platform_device *pdev) -+{ -+ struct rtc_wkalrm alarm; -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_FLOW, "alarm_resume(%p)\n", pdev); -+ if(alarm_enabled & (ANDROID_ALARM_RTC_WAKEUP_MASK | ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP_MASK)) { -+ memset(&alarm, 0, sizeof(alarm)); -+ alarm.enabled = 0; -+ rtc_set_alarm(alarm_rtc_dev, &alarm); -+ alarm_start_hrtimer(ANDROID_ALARM_RTC_WAKEUP); -+ alarm_start_hrtimer(ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP); -+ } -+ return 0; -+} -+ -+static struct rtc_task alarm_rtc_task = { -+ .func = alarm_triggered_func -+}; -+ -+static struct file_operations alarm_fops = { -+ .owner = THIS_MODULE, -+ .unlocked_ioctl = alarm_ioctl, -+ .open = alarm_open, -+ .release = alarm_release, -+}; -+ -+static struct miscdevice alarm_device = { -+ .minor = MISC_DYNAMIC_MINOR, -+ .name = "alarm", -+ .fops = &alarm_fops, -+}; -+ -+static int rtc_alarm_add_device(struct device *dev, -+ struct class_interface *class_intf) -+{ -+ int err; -+ struct rtc_device *rtc = to_rtc_device(dev); -+ -+ mutex_lock(&alarm_setrtc_mutex); -+ -+ if(alarm_rtc_dev) { -+ err = -EBUSY; -+ goto err1; -+ } -+ -+ err = misc_register(&alarm_device); -+ if(err) -+ goto err1; -+ alarm_platform_dev = platform_device_register_simple("alarm", -1, NULL, 0); -+ if(IS_ERR(alarm_platform_dev)) { -+ err = PTR_ERR(alarm_platform_dev); -+ goto err2; -+ } -+ err = rtc_irq_register(rtc, &alarm_rtc_task); -+ if(err) -+ goto err3; -+ alarm_rtc_dev = rtc; -+ mutex_unlock(&alarm_setrtc_mutex); -+ -+ //device_pm_set_parent(&alarm_platform_dev->dev, dev); // currently useless, drivers are suspended in reverse creation order -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INFO, "alarm: parent %p\n", alarm_platform_dev->dev.power.pm_parent); -+ return 0; -+ -+err3: -+ platform_device_unregister(alarm_platform_dev); -+err2: -+ misc_deregister(&alarm_device); -+err1: -+ mutex_unlock(&alarm_setrtc_mutex); -+ return err; -+} -+ -+static void rtc_alarm_remove_device(struct device *dev, -+ struct class_interface *class_intf) -+{ -+ if(dev == &alarm_rtc_dev->dev) { -+ rtc_irq_unregister(alarm_rtc_dev, &alarm_rtc_task); -+ platform_device_unregister(alarm_platform_dev); -+ misc_deregister(&alarm_device); -+ alarm_rtc_dev = NULL; -+ } -+} -+ -+static struct class_interface rtc_alarm_interface = { -+ .add_dev = &rtc_alarm_add_device, -+ .remove_dev = &rtc_alarm_remove_device, -+}; -+ -+static struct platform_driver alarm_driver = { -+ .suspend = alarm_suspend, -+ .resume = alarm_resume, -+ .driver = { -+ .name = "alarm" -+ } -+}; -+ -+static int __init alarm_late_init(void) -+{ -+ unsigned long flags; -+ struct timespec system_time; -+ -+ // this needs to run after the rtc is read at boot -+ spin_lock_irqsave(&alarm_slock, flags); -+ // We read the current rtc and system time so we can later calulate -+ // elasped realtime to be (boot_systemtime + rtc - boot_rtc) == -+ // (rtc - (boot_rtc - boot_systemtime)) -+ getnstimeofday(&elapsed_rtc_delta); -+ ktime_get_ts(&system_time); -+ elapsed_rtc_delta = timespec_sub(elapsed_rtc_delta, system_time); -+ spin_unlock_irqrestore(&alarm_slock, flags); -+ -+ ANDROID_ALARM_DPRINTF(ANDROID_ALARM_PRINT_INFO, -+ "alarm_late_init: rtc to elapsed realtime delta %ld.%09ld\n", -+ elapsed_rtc_delta.tv_sec, elapsed_rtc_delta.tv_nsec); -+ return 0; -+} -+ -+static int __init alarm_init(void) -+{ -+ int err; -+ int i; -+ -+ for(i = 0; i < ANDROID_ALARM_SYSTEMTIME; i++) { -+ hrtimer_init(&alarm_timer[i], CLOCK_REALTIME, HRTIMER_MODE_ABS); -+ alarm_timer[i].function = alarm_timer_triggered; -+ } -+ hrtimer_init(&alarm_timer[ANDROID_ALARM_SYSTEMTIME], CLOCK_MONOTONIC, HRTIMER_MODE_ABS); -+ alarm_timer[ANDROID_ALARM_SYSTEMTIME].function = alarm_timer_triggered; -+ err = platform_driver_register(&alarm_driver); -+ if(err < 0) -+ goto err1; -+ err = android_init_suspend_lock(&alarm_suspend_lock); -+ if(err < 0) -+ goto err2; -+ err = android_init_suspend_lock(&alarm_rtc_suspend_lock); -+ if(err < 0) -+ goto err3; -+ rtc_alarm_interface.class = rtc_class; -+ err = class_interface_register(&rtc_alarm_interface); -+ if(err < 0) -+ goto err4; -+ -+ return 0; -+ -+err4: -+ android_uninit_suspend_lock(&alarm_rtc_suspend_lock); -+err3: -+ android_uninit_suspend_lock(&alarm_suspend_lock); -+err2: -+ platform_driver_unregister(&alarm_driver); -+err1: -+ return err; -+} -+ -+static void __exit alarm_exit(void) -+{ -+ class_interface_unregister(&rtc_alarm_interface); -+ android_uninit_suspend_lock(&alarm_rtc_suspend_lock); -+ android_uninit_suspend_lock(&alarm_suspend_lock); -+ platform_driver_unregister(&alarm_driver); -+} -+ -+late_initcall(alarm_late_init); -+module_init(alarm_init); -+module_exit(alarm_exit); -+ ---- /dev/null -+++ b/drivers/android/binder.c -@@ -0,0 +1,3495 @@ -+/* drivers/android/binder.c -+ * -+ * Android IPC Subsystem -+ * -+ * Copyright (C) 2007-2008 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#include <asm/cacheflush.h> -+#include <linux/binder.h> -+#include <linux/fdtable.h> -+#include <linux/file.h> -+#include <linux/fs.h> -+#include <linux/list.h> -+#include <linux/miscdevice.h> -+#include <linux/mm.h> -+#include <linux/module.h> -+#include <linux/mutex.h> -+#include <linux/nsproxy.h> -+#include <linux/poll.h> -+#include <linux/proc_fs.h> -+#include <linux/rbtree.h> -+#include <linux/sched.h> -+#include <linux/uaccess.h> -+#include <linux/vmalloc.h> -+ -+static DEFINE_MUTEX(binder_lock); -+static HLIST_HEAD(binder_procs); -+static struct binder_node *binder_context_mgr_node; -+static uid_t binder_context_mgr_uid = -1; -+static int binder_last_id; -+static struct proc_dir_entry *binder_proc_dir_entry_root; -+static struct proc_dir_entry *binder_proc_dir_entry_proc; -+static struct hlist_head binder_dead_nodes; -+ -+static int binder_read_proc_proc( -+ char *page, char **start, off_t off, int count, int *eof, void *data); -+ -+/* This is only defined in include/asm-arm/sizes.h */ -+#ifndef SZ_1K -+#define SZ_1K 0x400 -+#endif -+ -+#ifndef SZ_4M -+#define SZ_4M 0x400000 -+#endif -+ -+#define FORBIDDEN_MMAP_FLAGS (VM_WRITE) -+ -+#define BINDER_SMALL_BUF_SIZE (PAGE_SIZE * 64) -+ -+enum { -+ BINDER_DEBUG_USER_ERROR = 1U << 0, -+ BINDER_DEBUG_FAILED_TRANSACTION = 1U << 1, -+ BINDER_DEBUG_DEAD_TRANSACTION = 1U << 2, -+ BINDER_DEBUG_OPEN_CLOSE = 1U << 3, -+ BINDER_DEBUG_DEAD_BINDER = 1U << 4, -+ BINDER_DEBUG_DEATH_NOTIFICATION = 1U << 5, -+ BINDER_DEBUG_READ_WRITE = 1U << 6, -+ BINDER_DEBUG_USER_REFS = 1U << 7, -+ BINDER_DEBUG_THREADS = 1U << 8, -+ BINDER_DEBUG_TRANSACTION = 1U << 9, -+ BINDER_DEBUG_TRANSACTION_COMPLETE = 1U << 10, -+ BINDER_DEBUG_FREE_BUFFER = 1U << 11, -+ BINDER_DEBUG_INTERNAL_REFS = 1U << 12, -+ BINDER_DEBUG_BUFFER_ALLOC = 1U << 13, -+ BINDER_DEBUG_PRIORITY_CAP = 1U << 14, -+ BINDER_DEBUG_BUFFER_ALLOC_ASYNC = 1U << 15, -+}; -+static uint32_t binder_debug_mask = BINDER_DEBUG_USER_ERROR | -+ BINDER_DEBUG_FAILED_TRANSACTION | BINDER_DEBUG_DEAD_TRANSACTION; -+module_param_named(debug_mask, binder_debug_mask, uint, S_IWUSR | S_IRUGO) -+static int binder_debug_no_lock; -+module_param_named(proc_no_lock, binder_debug_no_lock, bool, S_IWUSR | S_IRUGO) -+static DECLARE_WAIT_QUEUE_HEAD(binder_user_error_wait); -+static int binder_stop_on_user_error; -+static int binder_set_stop_on_user_error( -+ const char *val, struct kernel_param *kp) -+{ -+ int ret; -+ ret = param_set_int(val, kp); -+ if (binder_stop_on_user_error < 2) -+ wake_up(&binder_user_error_wait); -+ return ret; -+} -+module_param_call(stop_on_user_error, binder_set_stop_on_user_error, -+ param_get_int, &binder_stop_on_user_error, S_IWUSR | S_IRUGO); -+ -+#define binder_user_error(x...) \ -+ do { \ -+ if (binder_debug_mask & BINDER_DEBUG_USER_ERROR) \ -+ printk(KERN_INFO x); \ -+ if (binder_stop_on_user_error) \ -+ binder_stop_on_user_error = 2; \ -+ } while (0) -+ -+enum { -+ BINDER_STAT_PROC, -+ BINDER_STAT_THREAD, -+ BINDER_STAT_NODE, -+ BINDER_STAT_REF, -+ BINDER_STAT_DEATH, -+ BINDER_STAT_TRANSACTION, -+ BINDER_STAT_TRANSACTION_COMPLETE, -+ BINDER_STAT_COUNT -+}; -+ -+struct binder_stats { -+ int br[_IOC_NR(BR_FAILED_REPLY) + 1]; -+ int bc[_IOC_NR(BC_DEAD_BINDER_DONE) + 1]; -+ int obj_created[BINDER_STAT_COUNT]; -+ int obj_deleted[BINDER_STAT_COUNT]; -+}; -+ -+static struct binder_stats binder_stats; -+ -+struct binder_transaction_log_entry { -+ int debug_id; -+ int call_type; -+ int from_proc; -+ int from_thread; -+ int target_handle; -+ int to_proc; -+ int to_thread; -+ int to_node; -+ int data_size; -+ int offsets_size; -+}; -+struct binder_transaction_log { -+ int next; -+ int full; -+ struct binder_transaction_log_entry entry[32]; -+}; -+struct binder_transaction_log binder_transaction_log; -+struct binder_transaction_log binder_transaction_log_failed; -+ -+static struct binder_transaction_log_entry *binder_transaction_log_add( -+ struct binder_transaction_log *log) -+{ -+ struct binder_transaction_log_entry *e; -+ e = &log->entry[log->next]; -+ memset(e, 0, sizeof(*e)); -+ log->next++; -+ if (log->next == ARRAY_SIZE(log->entry)) { -+ log->next = 0; -+ log->full = 1; -+ } -+ return e; -+} -+ -+struct binder_work { -+ struct list_head entry; -+ enum { -+ BINDER_WORK_TRANSACTION = 1, -+ BINDER_WORK_TRANSACTION_COMPLETE, -+ BINDER_WORK_NODE, -+ BINDER_WORK_DEAD_BINDER, -+ BINDER_WORK_DEAD_BINDER_AND_CLEAR, -+ BINDER_WORK_CLEAR_DEATH_NOTIFICATION, -+ } type; -+}; -+ -+struct binder_node { -+ int debug_id; -+ struct binder_work work; -+ union { -+ struct rb_node rb_node; -+ struct hlist_node dead_node; -+ }; -+ struct binder_proc *proc; -+ struct hlist_head refs; -+ int internal_strong_refs; -+ int local_weak_refs; -+ int local_strong_refs; -+ void __user *ptr; -+ void __user *cookie; -+ unsigned has_strong_ref : 1; -+ unsigned pending_strong_ref : 1; -+ unsigned has_weak_ref : 1; -+ unsigned pending_weak_ref : 1; -+ unsigned has_async_transaction : 1; -+ unsigned accept_fds : 1; -+ int min_priority : 8; -+ struct list_head async_todo; -+}; -+ -+struct binder_ref_death { -+ struct binder_work work; -+ void __user *cookie; -+}; -+ -+struct binder_ref { -+ /* Lookups needed: */ -+ /* node + proc => ref (transaction) */ -+ /* desc + proc => ref (transaction, inc/dec ref) */ -+ /* node => refs + procs (proc exit) */ -+ int debug_id; -+ struct rb_node rb_node_desc; -+ struct rb_node rb_node_node; -+ struct hlist_node node_entry; -+ struct binder_proc *proc; -+ struct binder_node *node; -+ uint32_t desc; -+ int strong; -+ int weak; -+ struct binder_ref_death *death; -+}; -+ -+struct binder_buffer { -+ struct list_head entry; /* free and allocated entries by addesss */ -+ struct rb_node rb_node; /* free entry by size or allocated entry */ -+ /* by address */ -+ unsigned free : 1; -+ unsigned allow_user_free : 1; -+ unsigned async_transaction : 1; -+ unsigned debug_id : 29; -+ -+ struct binder_transaction *transaction; -+ -+ struct binder_node *target_node; -+ size_t data_size; -+ size_t offsets_size; -+ uint8_t data[0]; -+}; -+ -+struct binder_proc { -+ struct hlist_node proc_node; -+ struct rb_root threads; -+ struct rb_root nodes; -+ struct rb_root refs_by_desc; -+ struct rb_root refs_by_node; -+ int pid; -+ struct vm_area_struct *vma; -+ struct task_struct *tsk; -+ void *buffer; -+ size_t user_buffer_offset; -+ -+ struct list_head buffers; -+ struct rb_root free_buffers; -+ struct rb_root allocated_buffers; -+ size_t free_async_space; -+ -+ struct page **pages; -+ size_t buffer_size; -+ uint32_t buffer_free; -+ struct list_head todo; -+ wait_queue_head_t wait; -+ struct binder_stats stats; -+ struct list_head delivered_death; -+ int max_threads; -+ int requested_threads; -+ int requested_threads_started; -+ int ready_threads; -+ long default_priority; -+}; -+ -+enum { -+ BINDER_LOOPER_STATE_REGISTERED = 0x01, -+ BINDER_LOOPER_STATE_ENTERED = 0x02, -+ BINDER_LOOPER_STATE_EXITED = 0x04, -+ BINDER_LOOPER_STATE_INVALID = 0x08, -+ BINDER_LOOPER_STATE_WAITING = 0x10, -+ BINDER_LOOPER_STATE_NEED_RETURN = 0x20 -+}; -+ -+struct binder_thread { -+ struct binder_proc *proc; -+ struct rb_node rb_node; -+ int pid; -+ int looper; -+ struct binder_transaction *transaction_stack; -+ struct list_head todo; -+ uint32_t return_error; /* Write failed, return error code in read buf */ -+ uint32_t return_error2; /* Write failed, return error code in read */ -+ /* buffer. Used when sending a reply to a dead process that */ -+ /* we are also waiting on */ -+ wait_queue_head_t wait; -+ struct binder_stats stats; -+}; -+ -+struct binder_transaction { -+ int debug_id; -+ struct binder_work work; -+ struct binder_thread *from; -+ struct binder_transaction *from_parent; -+ struct binder_proc *to_proc; -+ struct binder_thread *to_thread; -+ struct binder_transaction *to_parent; -+ unsigned need_reply : 1; -+ /*unsigned is_dead : 1;*/ /* not used at the moment */ -+ -+ struct binder_buffer *buffer; -+ unsigned int code; -+ unsigned int flags; -+ long priority; -+ long saved_priority; -+ uid_t sender_euid; -+}; -+ -+/* -+ * copied from get_unused_fd_flags -+ */ -+int task_get_unused_fd_flags(struct task_struct *tsk, int flags) -+{ -+ struct files_struct *files = get_files_struct(tsk); -+ int fd, error; -+ struct fdtable *fdt; -+ unsigned long rlim_cur; -+ -+ if (files == NULL) -+ return -ESRCH; -+ -+ error = -EMFILE; -+ spin_lock(&files->file_lock); -+ -+repeat: -+ fdt = files_fdtable(files); -+ fd = find_next_zero_bit(fdt->open_fds->fds_bits, fdt->max_fds, -+ files->next_fd); -+ -+ /* -+ * N.B. For clone tasks sharing a files structure, this test -+ * will limit the total number of files that can be opened. -+ */ -+ rcu_read_lock(); -+ if (tsk->signal) -+ rlim_cur = tsk->signal->rlim[RLIMIT_NOFILE].rlim_cur; -+ else -+ rlim_cur = 0; -+ rcu_read_unlock(); -+ if (fd >= rlim_cur) -+ goto out; -+ -+ /* Do we need to expand the fd array or fd set? */ -+ error = expand_files(files, fd); -+ if (error < 0) -+ goto out; -+ -+ if (error) { -+ /* -+ * If we needed to expand the fs array we -+ * might have blocked - try again. -+ */ -+ error = -EMFILE; -+ goto repeat; -+ } -+ -+ FD_SET(fd, fdt->open_fds); -+ if (flags & O_CLOEXEC) -+ FD_SET(fd, fdt->close_on_exec); -+ else -+ FD_CLR(fd, fdt->close_on_exec); -+ files->next_fd = fd + 1; -+#if 1 -+ /* Sanity check */ -+ if (fdt->fd[fd] != NULL) { -+ printk(KERN_WARNING "get_unused_fd: slot %d not NULL!\n", fd); -+ fdt->fd[fd] = NULL; -+ } -+#endif -+ error = fd; -+ -+out: -+ spin_unlock(&files->file_lock); -+ put_files_struct(files); -+ return error; -+} -+ -+/* -+ * copied from fd_install -+ */ -+static void task_fd_install( -+ struct task_struct *tsk, unsigned int fd, struct file *file) -+{ -+ struct files_struct *files = get_files_struct(tsk); -+ struct fdtable *fdt; -+ -+ if (files == NULL) -+ return; -+ -+ spin_lock(&files->file_lock); -+ fdt = files_fdtable(files); -+ BUG_ON(fdt->fd[fd] != NULL); -+ rcu_assign_pointer(fdt->fd[fd], file); -+ spin_unlock(&files->file_lock); -+ put_files_struct(files); -+} -+ -+/* -+ * copied from __put_unused_fd in open.c -+ */ -+static void __put_unused_fd(struct files_struct *files, unsigned int fd) -+{ -+ struct fdtable *fdt = files_fdtable(files); -+ __FD_CLR(fd, fdt->open_fds); -+ if (fd < files->next_fd) -+ files->next_fd = fd; -+} -+ -+/* -+ * copied from sys_close -+ */ -+static long task_close_fd(struct task_struct *tsk, unsigned int fd) -+{ -+ struct file *filp; -+ struct files_struct *files = get_files_struct(tsk); -+ struct fdtable *fdt; -+ int retval; -+ -+ if (files == NULL) -+ return -ESRCH; -+ -+ spin_lock(&files->file_lock); -+ fdt = files_fdtable(files); -+ if (fd >= fdt->max_fds) -+ goto out_unlock; -+ filp = fdt->fd[fd]; -+ if (!filp) -+ goto out_unlock; -+ rcu_assign_pointer(fdt->fd[fd], NULL); -+ FD_CLR(fd, fdt->close_on_exec); -+ __put_unused_fd(files, fd); -+ spin_unlock(&files->file_lock); -+ retval = filp_close(filp, files); -+ -+ /* can't restart close syscall because file table entry was cleared */ -+ if (unlikely(retval == -ERESTARTSYS || -+ retval == -ERESTARTNOINTR || -+ retval == -ERESTARTNOHAND || -+ retval == -ERESTART_RESTARTBLOCK)) -+ retval = -EINTR; -+ -+ put_files_struct(files); -+ return retval; -+ -+out_unlock: -+ spin_unlock(&files->file_lock); -+ put_files_struct(files); -+ return -EBADF; -+} -+ -+static void binder_set_nice(long nice) -+{ -+ long min_nice; -+ if (can_nice(current, nice)) { -+ set_user_nice(current, nice); -+ return; -+ } -+ min_nice = 20 - current->signal->rlim[RLIMIT_NICE].rlim_cur; -+ if (binder_debug_mask & BINDER_DEBUG_PRIORITY_CAP) -+ printk(KERN_INFO "binder: %d: nice value %ld not allowed use " -+ "%ld instead\n", current->pid, nice, min_nice); -+ set_user_nice(current, min_nice); -+ if (min_nice < 20) -+ return; -+ binder_user_error("binder: %d RLIMIT_NICE not set\n", current->pid); -+} -+ -+static size_t binder_buffer_size( -+ struct binder_proc *proc, struct binder_buffer *buffer) -+{ -+ if (list_is_last(&buffer->entry, &proc->buffers)) -+ return proc->buffer + proc->buffer_size - (void *)buffer->data; -+ else -+ return (size_t)list_entry(buffer->entry.next, -+ struct binder_buffer, entry) - (size_t)buffer->data; -+} -+ -+static void binder_insert_free_buffer( -+ struct binder_proc *proc, struct binder_buffer *new_buffer) -+{ -+ struct rb_node **p = &proc->free_buffers.rb_node; -+ struct rb_node *parent = NULL; -+ struct binder_buffer *buffer; -+ size_t buffer_size; -+ size_t new_buffer_size; -+ -+ BUG_ON(!new_buffer->free); -+ -+ new_buffer_size = binder_buffer_size(proc, new_buffer); -+ -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: add free buffer, size %d, " -+ "at %p\n", proc->pid, new_buffer_size, new_buffer); -+ -+ while (*p) { -+ parent = *p; -+ buffer = rb_entry(parent, struct binder_buffer, rb_node); -+ BUG_ON(!buffer->free); -+ -+ buffer_size = binder_buffer_size(proc, buffer); -+ -+ if (new_buffer_size < buffer_size) -+ p = &parent->rb_left; -+ else -+ p = &parent->rb_right; -+ } -+ rb_link_node(&new_buffer->rb_node, parent, p); -+ rb_insert_color(&new_buffer->rb_node, &proc->free_buffers); -+} -+ -+static void binder_insert_allocated_buffer( -+ struct binder_proc *proc, struct binder_buffer *new_buffer) -+{ -+ struct rb_node **p = &proc->allocated_buffers.rb_node; -+ struct rb_node *parent = NULL; -+ struct binder_buffer *buffer; -+ -+ BUG_ON(new_buffer->free); -+ -+ while (*p) { -+ parent = *p; -+ buffer = rb_entry(parent, struct binder_buffer, rb_node); -+ BUG_ON(buffer->free); -+ -+ if (new_buffer < buffer) -+ p = &parent->rb_left; -+ else if (new_buffer > buffer) -+ p = &parent->rb_right; -+ else -+ BUG(); -+ } -+ rb_link_node(&new_buffer->rb_node, parent, p); -+ rb_insert_color(&new_buffer->rb_node, &proc->allocated_buffers); -+} -+ -+static struct binder_buffer *binder_buffer_lookup( -+ struct binder_proc *proc, void __user *user_ptr) -+{ -+ struct rb_node *n = proc->allocated_buffers.rb_node; -+ struct binder_buffer *buffer; -+ struct binder_buffer *kern_ptr; -+ -+ kern_ptr = user_ptr - proc->user_buffer_offset -+ - offsetof(struct binder_buffer, data); -+ -+ while (n) { -+ buffer = rb_entry(n, struct binder_buffer, rb_node); -+ BUG_ON(buffer->free); -+ -+ if (kern_ptr < buffer) -+ n = n->rb_left; -+ else if (kern_ptr > buffer) -+ n = n->rb_right; -+ else -+ return buffer; -+ } -+ return NULL; -+} -+ -+static int binder_update_page_range(struct binder_proc *proc, int allocate, -+ void *start, void *end, struct vm_area_struct *vma) -+{ -+ void *page_addr; -+ unsigned long user_page_addr; -+ struct vm_struct tmp_area; -+ struct page **page; -+ struct mm_struct *mm; -+ -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: %s pages %p-%p\n", -+ proc->pid, allocate ? "allocate" : "free", start, end); -+ -+ if (end <= start) -+ return 0; -+ -+ if (vma) -+ mm = NULL; -+ else -+ mm = get_task_mm(proc->tsk); -+ -+ if (mm) { -+ down_write(&mm->mmap_sem); -+ vma = proc->vma; -+ } -+ -+ if (allocate == 0) -+ goto free_range; -+ -+ if (vma == NULL) { -+ printk(KERN_ERR "binder: %d: binder_alloc_buf failed to " -+ "map pages in userspace, no vma\n", proc->pid); -+ goto err_no_vma; -+ } -+ -+ for (page_addr = start; page_addr < end; page_addr += PAGE_SIZE) { -+ int ret; -+ struct page **page_array_ptr; -+ page = &proc->pages[(page_addr - proc->buffer) / PAGE_SIZE]; -+ -+ BUG_ON(*page); -+ *page = alloc_page(GFP_KERNEL | __GFP_ZERO); -+ if (*page == NULL) { -+ printk(KERN_ERR "binder: %d: binder_alloc_buf failed " -+ "for page at %p\n", proc->pid, page_addr); -+ goto err_alloc_page_failed; -+ } -+ tmp_area.addr = page_addr; -+ tmp_area.size = PAGE_SIZE + PAGE_SIZE /* guard page? */; -+ page_array_ptr = page; -+ ret = map_vm_area(&tmp_area, PAGE_KERNEL, &page_array_ptr); -+ if (ret) { -+ printk(KERN_ERR "binder: %d: binder_alloc_buf failed " -+ "to map page at %p in kernel\n", -+ proc->pid, page_addr); -+ goto err_map_kernel_failed; -+ } -+ user_page_addr = (size_t)page_addr + proc->user_buffer_offset; -+ ret = vm_insert_page(vma, user_page_addr, page[0]); -+ if (ret) { -+ printk(KERN_ERR "binder: %d: binder_alloc_buf failed " -+ "to map page at %lx in userspace\n", -+ proc->pid, user_page_addr); -+ goto err_vm_insert_page_failed; -+ } -+ /* vm_insert_page does not seem to increment the refcount */ -+ } -+ if (mm) { -+ up_write(&mm->mmap_sem); -+ mmput(mm); -+ } -+ return 0; -+ -+free_range: -+ for (page_addr = end - PAGE_SIZE; page_addr >= start; -+ page_addr -= PAGE_SIZE) { -+ page = &proc->pages[(page_addr - proc->buffer) / PAGE_SIZE]; -+ if (vma) -+ zap_page_range(vma, (size_t)page_addr + -+ proc->user_buffer_offset, PAGE_SIZE, NULL); -+err_vm_insert_page_failed: -+ unmap_kernel_range((unsigned long)page_addr, PAGE_SIZE); -+err_map_kernel_failed: -+ __free_page(*page); -+ *page = NULL; -+err_alloc_page_failed: -+ ; -+ } -+err_no_vma: -+ if (mm) { -+ up_write(&mm->mmap_sem); -+ mmput(mm); -+ } -+ return -ENOMEM; -+} -+ -+static struct binder_buffer *binder_alloc_buf(struct binder_proc *proc, -+ size_t data_size, size_t offsets_size, int is_async) -+{ -+ struct rb_node *n = proc->free_buffers.rb_node; -+ struct binder_buffer *buffer; -+ size_t buffer_size; -+ struct rb_node *best_fit = NULL; -+ void *has_page_addr; -+ void *end_page_addr; -+ size_t size; -+ -+ if (proc->vma == NULL) { -+ printk(KERN_ERR "binder: %d: binder_alloc_buf, no vma\n", -+ proc->pid); -+ return NULL; -+ } -+ -+ size = ALIGN(data_size, sizeof(void *)) + -+ ALIGN(offsets_size, sizeof(void *)); -+ -+ if (size < data_size || size < offsets_size) { -+ binder_user_error("binder: %d: got transaction with invalid " -+ "size %d-%d\n", proc->pid, data_size, offsets_size); -+ return NULL; -+ } -+ -+ if (is_async && -+ proc->free_async_space < size + sizeof(struct binder_buffer)) { -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_ERR "binder: %d: binder_alloc_buf size %d f" -+ "ailed, no async space left\n", proc->pid, size); -+ return NULL; -+ } -+ -+ while (n) { -+ buffer = rb_entry(n, struct binder_buffer, rb_node); -+ BUG_ON(!buffer->free); -+ buffer_size = binder_buffer_size(proc, buffer); -+ -+ if (size < buffer_size) { -+ best_fit = n; -+ n = n->rb_left; -+ } else if (size > buffer_size) -+ n = n->rb_right; -+ else { -+ best_fit = n; -+ break; -+ } -+ } -+ if (best_fit == NULL) { -+ printk(KERN_ERR "binder: %d: binder_alloc_buf size %d failed, " -+ "no address space\n", proc->pid, size); -+ return NULL; -+ } -+ if (n == NULL) { -+ buffer = rb_entry(best_fit, struct binder_buffer, rb_node); -+ buffer_size = binder_buffer_size(proc, buffer); -+ } -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: binder_alloc_buf size %d got buff" -+ "er %p size %d\n", proc->pid, size, buffer, buffer_size); -+ -+ has_page_addr = -+ (void *)(((size_t)buffer->data + buffer_size) & PAGE_MASK); -+ if (n == NULL) { -+ if (size + sizeof(struct binder_buffer) + 4 >= buffer_size) -+ buffer_size = size; /* no room for other buffers */ -+ else -+ buffer_size = size + sizeof(struct binder_buffer); -+ } -+ end_page_addr = (void *)PAGE_ALIGN((size_t)buffer->data + buffer_size); -+ if (end_page_addr > has_page_addr) -+ end_page_addr = has_page_addr; -+ if (binder_update_page_range(proc, 1, -+ (void *)PAGE_ALIGN((size_t)buffer->data), end_page_addr, NULL)) -+ return NULL; -+ -+ rb_erase(best_fit, &proc->free_buffers); -+ buffer->free = 0; -+ binder_insert_allocated_buffer(proc, buffer); -+ if (buffer_size != size) { -+ struct binder_buffer *new_buffer = (void *)buffer->data + size; -+ list_add(&new_buffer->entry, &buffer->entry); -+ new_buffer->free = 1; -+ binder_insert_free_buffer(proc, new_buffer); -+ } -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: binder_alloc_buf size %d got " -+ "%p\n", proc->pid, size, buffer); -+ buffer->data_size = data_size; -+ buffer->offsets_size = offsets_size; -+ buffer->async_transaction = is_async; -+ if (is_async) { -+ proc->free_async_space -= size + sizeof(struct binder_buffer); -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC_ASYNC) -+ printk(KERN_INFO "binder: %d: binder_alloc_buf size %d " -+ "async free %d\n", proc->pid, size, -+ proc->free_async_space); -+ } -+ -+ return buffer; -+} -+ -+static void *buffer_start_page(struct binder_buffer *buffer) -+{ -+ return (void *)((size_t)buffer & PAGE_MASK); -+} -+ -+static void *buffer_end_page(struct binder_buffer *buffer) -+{ -+ return (void *)(((size_t)(buffer + 1) - 1) & PAGE_MASK); -+} -+ -+static void binder_delete_free_buffer( -+ struct binder_proc *proc, struct binder_buffer *buffer) -+{ -+ struct binder_buffer *prev, *next = NULL; -+ int free_page_end = 1; -+ int free_page_start = 1; -+ -+ BUG_ON(proc->buffers.next == &buffer->entry); -+ prev = list_entry(buffer->entry.prev, struct binder_buffer, entry); -+ BUG_ON(!prev->free); -+ if (buffer_end_page(prev) == buffer_start_page(buffer)) { -+ free_page_start = 0; -+ if (buffer_end_page(prev) == buffer_end_page(buffer)) -+ free_page_end = 0; -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: merge free, buffer %p " -+ "share page with %p\n", proc->pid, buffer, prev); -+ } -+ -+ if (!list_is_last(&buffer->entry, &proc->buffers)) { -+ next = list_entry(buffer->entry.next, -+ struct binder_buffer, entry); -+ if (buffer_start_page(next) == buffer_end_page(buffer)) { -+ free_page_end = 0; -+ if (buffer_start_page(next) == -+ buffer_start_page(buffer)) -+ free_page_start = 0; -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: merge free, " -+ "buffer %p share page with %p\n", -+ proc->pid, buffer, prev); -+ } -+ } -+ list_del(&buffer->entry); -+ if (free_page_start || free_page_end) { -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: merge free, buffer %p do " -+ "not share page%s%s with with %p or %p\n", -+ proc->pid, buffer, free_page_start ? "" : " end", -+ free_page_end ? "" : " start", prev, next); -+ binder_update_page_range(proc, 0, free_page_start ? -+ buffer_start_page(buffer) : buffer_end_page(buffer), -+ (free_page_end ? buffer_end_page(buffer) : -+ buffer_start_page(buffer)) + PAGE_SIZE, NULL); -+ } -+} -+ -+static void binder_free_buf( -+ struct binder_proc *proc, struct binder_buffer *buffer) -+{ -+ size_t size, buffer_size; -+ -+ buffer_size = binder_buffer_size(proc, buffer); -+ -+ size = ALIGN(buffer->data_size, sizeof(void *)) + -+ ALIGN(buffer->offsets_size, sizeof(void *)); -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder: %d: binder_free_buf %p size %d buffer" -+ "_size %d\n", proc->pid, buffer, size, buffer_size); -+ -+ BUG_ON(buffer->free); -+ BUG_ON(size > buffer_size); -+ BUG_ON(buffer->transaction != NULL); -+ BUG_ON((void *)buffer < proc->buffer); -+ BUG_ON((void *)buffer > proc->buffer + proc->buffer_size); -+ -+ if (buffer->async_transaction) { -+ proc->free_async_space += size + sizeof(struct binder_buffer); -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC_ASYNC) -+ printk(KERN_INFO "binder: %d: binder_free_buf size %d " -+ "async free %d\n", proc->pid, size, -+ proc->free_async_space); -+ } -+ -+ binder_update_page_range(proc, 0, -+ (void *)PAGE_ALIGN((size_t)buffer->data), -+ (void *)(((size_t)buffer->data + buffer_size) & PAGE_MASK), -+ NULL); -+ rb_erase(&buffer->rb_node, &proc->allocated_buffers); -+ buffer->free = 1; -+ if (!list_is_last(&buffer->entry, &proc->buffers)) { -+ struct binder_buffer *next = list_entry(buffer->entry.next, -+ struct binder_buffer, entry); -+ if (next->free) { -+ rb_erase(&next->rb_node, &proc->free_buffers); -+ binder_delete_free_buffer(proc, next); -+ } -+ } -+ if (proc->buffers.next != &buffer->entry) { -+ struct binder_buffer *prev = list_entry(buffer->entry.prev, -+ struct binder_buffer, entry); -+ if (prev->free) { -+ binder_delete_free_buffer(proc, buffer); -+ rb_erase(&prev->rb_node, &proc->free_buffers); -+ buffer = prev; -+ } -+ } -+ binder_insert_free_buffer(proc, buffer); -+} -+ -+static struct binder_node * -+binder_get_node(struct binder_proc *proc, void __user *ptr) -+{ -+ struct rb_node *n = proc->nodes.rb_node; -+ struct binder_node *node; -+ -+ while (n) { -+ node = rb_entry(n, struct binder_node, rb_node); -+ -+ if (ptr < node->ptr) -+ n = n->rb_left; -+ else if (ptr > node->ptr) -+ n = n->rb_right; -+ else -+ return node; -+ } -+ return NULL; -+} -+ -+static struct binder_node * -+binder_new_node(struct binder_proc *proc, void __user *ptr, void __user *cookie) -+{ -+ struct rb_node **p = &proc->nodes.rb_node; -+ struct rb_node *parent = NULL; -+ struct binder_node *node; -+ -+ while (*p) { -+ parent = *p; -+ node = rb_entry(parent, struct binder_node, rb_node); -+ -+ if (ptr < node->ptr) -+ p = &(*p)->rb_left; -+ else if (ptr > node->ptr) -+ p = &(*p)->rb_right; -+ else -+ return NULL; -+ } -+ -+ node = kzalloc(sizeof(*node), GFP_KERNEL); -+ if (node == NULL) -+ return NULL; -+ binder_stats.obj_created[BINDER_STAT_NODE]++; -+ rb_link_node(&node->rb_node, parent, p); -+ rb_insert_color(&node->rb_node, &proc->nodes); -+ node->debug_id = ++binder_last_id; -+ node->proc = proc; -+ node->ptr = ptr; -+ node->cookie = cookie; -+ node->work.type = BINDER_WORK_NODE; -+ INIT_LIST_HEAD(&node->work.entry); -+ INIT_LIST_HEAD(&node->async_todo); -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: %d:%d node %d u%p c%p created\n", -+ proc->pid, current->pid, node->debug_id, -+ node->ptr, node->cookie); -+ return node; -+} -+ -+static int -+binder_inc_node(struct binder_node *node, int strong, int internal, -+ struct list_head *target_list) -+{ -+ if (strong) { -+ if (internal) { -+ if (target_list == NULL && -+ node->internal_strong_refs == 0 && -+ !(node == binder_context_mgr_node && -+ node->has_strong_ref)) { -+ printk(KERN_ERR "binder: invalid inc strong " -+ "node for %d\n", node->debug_id); -+ return -EINVAL; -+ } -+ node->internal_strong_refs++; -+ } else -+ node->local_strong_refs++; -+ if (!node->has_strong_ref && target_list) { -+ list_del_init(&node->work.entry); -+ list_add_tail(&node->work.entry, target_list); -+ } -+ } else { -+ if (!internal) -+ node->local_weak_refs++; -+ if (!node->has_weak_ref && list_empty(&node->work.entry)) { -+ if (target_list == NULL) { -+ printk(KERN_ERR "binder: invalid inc weak node " -+ "for %d\n", node->debug_id); -+ return -EINVAL; -+ } -+ list_add_tail(&node->work.entry, target_list); -+ } -+ } -+ return 0; -+} -+ -+static int -+binder_dec_node(struct binder_node *node, int strong, int internal) -+{ -+ if (strong) { -+ if (internal) -+ node->internal_strong_refs--; -+ else -+ node->local_strong_refs--; -+ if (node->local_strong_refs || node->internal_strong_refs) -+ return 0; -+ } else { -+ if (!internal) -+ node->local_weak_refs--; -+ if (node->local_weak_refs || !hlist_empty(&node->refs)) -+ return 0; -+ } -+ if (node->proc && (node->has_strong_ref || node->has_weak_ref)) { -+ if (list_empty(&node->work.entry)) { -+ list_add_tail(&node->work.entry, &node->proc->todo); -+ wake_up_interruptible(&node->proc->wait); -+ } -+ } else { -+ if (hlist_empty(&node->refs) && !node->local_strong_refs && -+ !node->local_weak_refs) { -+ list_del_init(&node->work.entry); -+ if (node->proc) { -+ rb_erase(&node->rb_node, &node->proc->nodes); -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: refless node %d deleted\n", node->debug_id); -+ } else { -+ hlist_del(&node->dead_node); -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: dead node %d deleted\n", node->debug_id); -+ } -+ kfree(node); -+ binder_stats.obj_deleted[BINDER_STAT_NODE]++; -+ } -+ } -+ -+ return 0; -+} -+ -+ -+static struct binder_ref * -+binder_get_ref(struct binder_proc *proc, uint32_t desc) -+{ -+ struct rb_node *n = proc->refs_by_desc.rb_node; -+ struct binder_ref *ref; -+ -+ while (n) { -+ ref = rb_entry(n, struct binder_ref, rb_node_desc); -+ -+ if (desc < ref->desc) -+ n = n->rb_left; -+ else if (desc > ref->desc) -+ n = n->rb_right; -+ else -+ return ref; -+ } -+ return NULL; -+} -+ -+static struct binder_ref * -+binder_get_ref_for_node(struct binder_proc *proc, struct binder_node *node) -+{ -+ struct rb_node *n; -+ struct rb_node **p = &proc->refs_by_node.rb_node; -+ struct rb_node *parent = NULL; -+ struct binder_ref *ref, *new_ref; -+ -+ while (*p) { -+ parent = *p; -+ ref = rb_entry(parent, struct binder_ref, rb_node_node); -+ -+ if (node < ref->node) -+ p = &(*p)->rb_left; -+ else if (node > ref->node) -+ p = &(*p)->rb_right; -+ else -+ return ref; -+ } -+ new_ref = kzalloc(sizeof(*ref), GFP_KERNEL); -+ if (new_ref == NULL) -+ return NULL; -+ binder_stats.obj_created[BINDER_STAT_REF]++; -+ new_ref->debug_id = ++binder_last_id; -+ new_ref->proc = proc; -+ new_ref->node = node; -+ rb_link_node(&new_ref->rb_node_node, parent, p); -+ rb_insert_color(&new_ref->rb_node_node, &proc->refs_by_node); -+ -+ new_ref->desc = (node == binder_context_mgr_node) ? 0 : 1; -+ for (n = rb_first(&proc->refs_by_desc); n != NULL; n = rb_next(n)) { -+ ref = rb_entry(n, struct binder_ref, rb_node_desc); -+ if (ref->desc > new_ref->desc) -+ break; -+ new_ref->desc = ref->desc + 1; -+ } -+ -+ p = &proc->refs_by_desc.rb_node; -+ while (*p) { -+ parent = *p; -+ ref = rb_entry(parent, struct binder_ref, rb_node_desc); -+ -+ if (new_ref->desc < ref->desc) -+ p = &(*p)->rb_left; -+ else if (new_ref->desc > ref->desc) -+ p = &(*p)->rb_right; -+ else -+ BUG(); -+ } -+ rb_link_node(&new_ref->rb_node_desc, parent, p); -+ rb_insert_color(&new_ref->rb_node_desc, &proc->refs_by_desc); -+ if (node) { -+ hlist_add_head(&new_ref->node_entry, &node->refs); -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: %d new ref %d desc %d for " -+ "node %d\n", proc->pid, new_ref->debug_id, -+ new_ref->desc, node->debug_id); -+ } else { -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: %d new ref %d desc %d for " -+ "dead node\n", proc->pid, new_ref->debug_id, -+ new_ref->desc); -+ } -+ return new_ref; -+} -+ -+static void -+binder_delete_ref(struct binder_ref *ref) -+{ -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: %d delete ref %d desc %d for " -+ "node %d\n", ref->proc->pid, ref->debug_id, -+ ref->desc, ref->node->debug_id); -+ rb_erase(&ref->rb_node_desc, &ref->proc->refs_by_desc); -+ rb_erase(&ref->rb_node_node, &ref->proc->refs_by_node); -+ if (ref->strong) -+ binder_dec_node(ref->node, 1, 1); -+ hlist_del(&ref->node_entry); -+ binder_dec_node(ref->node, 0, 1); -+ if (ref->death) { -+ if (binder_debug_mask & BINDER_DEBUG_DEAD_BINDER) -+ printk(KERN_INFO "binder: %d delete ref %d desc %d " -+ "has death notification\n", ref->proc->pid, -+ ref->debug_id, ref->desc); -+ list_del(&ref->death->work.entry); -+ kfree(ref->death); -+ binder_stats.obj_deleted[BINDER_STAT_DEATH]++; -+ } -+ kfree(ref); -+ binder_stats.obj_deleted[BINDER_STAT_REF]++; -+} -+ -+static int -+binder_inc_ref( -+ struct binder_ref *ref, int strong, struct list_head *target_list) -+{ -+ int ret; -+ if (strong) { -+ if (ref->strong == 0) { -+ ret = binder_inc_node(ref->node, 1, 1, target_list); -+ if (ret) -+ return ret; -+ } -+ ref->strong++; -+ } else { -+ if (ref->weak == 0) { -+ ret = binder_inc_node(ref->node, 0, 1, target_list); -+ if (ret) -+ return ret; -+ } -+ ref->weak++; -+ } -+ return 0; -+} -+ -+ -+static int -+binder_dec_ref(struct binder_ref *ref, int strong) -+{ -+ if (strong) { -+ if (ref->strong == 0) { -+ binder_user_error("binder: %d invalid dec strong, " -+ "ref %d desc %d s %d w %d\n", -+ ref->proc->pid, ref->debug_id, -+ ref->desc, ref->strong, ref->weak); -+ return -EINVAL; -+ } -+ ref->strong--; -+ if (ref->strong == 0) { -+ int ret; -+ ret = binder_dec_node(ref->node, strong, 1); -+ if (ret) -+ return ret; -+ } -+ } else { -+ if (ref->weak == 0) { -+ binder_user_error("binder: %d invalid dec weak, " -+ "ref %d desc %d s %d w %d\n", -+ ref->proc->pid, ref->debug_id, -+ ref->desc, ref->strong, ref->weak); -+ return -EINVAL; -+ } -+ ref->weak--; -+ } -+ if (ref->strong == 0 && ref->weak == 0) -+ binder_delete_ref(ref); -+ return 0; -+} -+ -+static void -+binder_pop_transaction( -+ struct binder_thread *target_thread, struct binder_transaction *t) -+{ -+ if (target_thread) { -+ BUG_ON(target_thread->transaction_stack != t); -+ BUG_ON(target_thread->transaction_stack->from != target_thread); -+ target_thread->transaction_stack = -+ target_thread->transaction_stack->from_parent; -+ t->from = NULL; -+ } -+ t->need_reply = 0; -+ if (t->buffer) -+ t->buffer->transaction = NULL; -+ kfree(t); -+ binder_stats.obj_deleted[BINDER_STAT_TRANSACTION]++; -+} -+ -+static void -+binder_send_failed_reply(struct binder_transaction *t, uint32_t error_code) -+{ -+ struct binder_thread *target_thread; -+ BUG_ON(t->flags & TF_ONE_WAY); -+ while (1) { -+ target_thread = t->from; -+ if (target_thread) { -+ if (target_thread->return_error != BR_OK && -+ target_thread->return_error2 == BR_OK) { -+ target_thread->return_error2 = -+ target_thread->return_error; -+ target_thread->return_error = BR_OK; -+ } -+ if (target_thread->return_error == BR_OK) { -+ if (binder_debug_mask & BINDER_DEBUG_FAILED_TRANSACTION) -+ printk(KERN_INFO "binder: send failed reply for transaction %d to %d:%d\n", -+ t->debug_id, target_thread->proc->pid, target_thread->pid); -+ -+ binder_pop_transaction(target_thread, t); -+ target_thread->return_error = error_code; -+ wake_up_interruptible(&target_thread->wait); -+ } else { -+ printk(KERN_ERR "binder: reply failed, target " -+ "thread, %d:%d, has error code %d " -+ "already\n", target_thread->proc->pid, -+ target_thread->pid, -+ target_thread->return_error); -+ } -+ return; -+ } else { -+ struct binder_transaction *next = t->from_parent; -+ -+ if (binder_debug_mask & BINDER_DEBUG_FAILED_TRANSACTION) -+ printk(KERN_INFO "binder: send failed reply " -+ "for transaction %d, target dead\n", -+ t->debug_id); -+ -+ binder_pop_transaction(target_thread, t); -+ if (next == NULL) { -+ if (binder_debug_mask & BINDER_DEBUG_DEAD_BINDER) -+ printk(KERN_INFO "binder: reply failed," -+ " no target thread at root\n"); -+ return; -+ } -+ t = next; -+ if (binder_debug_mask & BINDER_DEBUG_DEAD_BINDER) -+ printk(KERN_INFO "binder: reply failed, no targ" -+ "et thread -- retry %d\n", t->debug_id); -+ } -+ } -+} -+ -+static void -+binder_transaction_buffer_release(struct binder_proc *proc, -+ struct binder_buffer *buffer, size_t *failed_at); -+ -+static void -+binder_transaction(struct binder_proc *proc, struct binder_thread *thread, -+ struct binder_transaction_data *tr, int reply) -+{ -+ struct binder_transaction *t; -+ struct binder_work *tcomplete; -+ size_t *offp, *off_end; -+ struct binder_proc *target_proc; -+ struct binder_thread *target_thread = NULL; -+ struct binder_node *target_node = NULL; -+ struct list_head *target_list; -+ wait_queue_head_t *target_wait; -+ struct binder_transaction *in_reply_to = NULL; -+ struct binder_transaction_log_entry *e; -+ uint32_t return_error; -+ -+ e = binder_transaction_log_add(&binder_transaction_log); -+ e->call_type = reply ? 2 : !!(tr->flags & TF_ONE_WAY); -+ e->from_proc = proc->pid; -+ e->from_thread = thread->pid; -+ e->target_handle = tr->target.handle; -+ e->data_size = tr->data_size; -+ e->offsets_size = tr->offsets_size; -+ -+ if (reply) { -+ in_reply_to = thread->transaction_stack; -+ if (in_reply_to == NULL) { -+ binder_user_error("binder: %d:%d got reply transaction " -+ "with no transaction stack\n", -+ proc->pid, thread->pid); -+ return_error = BR_FAILED_REPLY; -+ goto err_empty_call_stack; -+ } -+ binder_set_nice(in_reply_to->saved_priority); -+ if (in_reply_to->to_thread != thread) { -+ binder_user_error("binder: %d:%d got reply transaction " -+ "with bad transaction stack," -+ " transaction %d has target %d:%d\n", -+ proc->pid, thread->pid, in_reply_to->debug_id, -+ in_reply_to->to_proc ? -+ in_reply_to->to_proc->pid : 0, -+ in_reply_to->to_thread ? -+ in_reply_to->to_thread->pid : 0); -+ return_error = BR_FAILED_REPLY; -+ in_reply_to = NULL; -+ goto err_bad_call_stack; -+ } -+ thread->transaction_stack = in_reply_to->to_parent; -+ target_thread = in_reply_to->from; -+ if (target_thread == NULL) { -+ return_error = BR_DEAD_REPLY; -+ goto err_dead_binder; -+ } -+ if (target_thread->transaction_stack != in_reply_to) { -+ binder_user_error("binder: %d:%d got reply transaction " -+ "with bad target transaction stack %d, " -+ "expected %d\n", -+ proc->pid, thread->pid, -+ target_thread->transaction_stack ? -+ target_thread->transaction_stack->debug_id : 0, -+ in_reply_to->debug_id); -+ return_error = BR_FAILED_REPLY; -+ in_reply_to = NULL; -+ target_thread = NULL; -+ goto err_dead_binder; -+ } -+ target_proc = target_thread->proc; -+ } else { -+ if (tr->target.handle) { -+ struct binder_ref *ref; -+ ref = binder_get_ref(proc, tr->target.handle); -+ if (ref == NULL) { -+ binder_user_error("binder: %d:%d got " -+ "transaction to invalid handle\n", -+ proc->pid, thread->pid); -+ return_error = BR_FAILED_REPLY; -+ goto err_invalid_target_handle; -+ } -+ target_node = ref->node; -+ } else { -+ target_node = binder_context_mgr_node; -+ if (target_node == NULL) { -+ return_error = BR_DEAD_REPLY; -+ goto err_no_context_mgr_node; -+ } -+ } -+ e->to_node = target_node->debug_id; -+ target_proc = target_node->proc; -+ if (target_proc == NULL) { -+ return_error = BR_DEAD_REPLY; -+ goto err_dead_binder; -+ } -+ if (!(tr->flags & TF_ONE_WAY) && thread->transaction_stack) { -+ struct binder_transaction *tmp; -+ tmp = thread->transaction_stack; -+ while (tmp) { -+ if (tmp->from && tmp->from->proc == target_proc) -+ target_thread = tmp->from; -+ tmp = tmp->from_parent; -+ } -+ } -+ } -+ if (target_thread) { -+ e->to_thread = target_thread->pid; -+ target_list = &target_thread->todo; -+ target_wait = &target_thread->wait; -+ } else { -+ target_list = &target_proc->todo; -+ target_wait = &target_proc->wait; -+ } -+ e->to_proc = target_proc->pid; -+ -+ /* TODO: reuse incoming transaction for reply */ -+ t = kzalloc(sizeof(*t), GFP_KERNEL); -+ if (t == NULL) { -+ return_error = BR_FAILED_REPLY; -+ goto err_alloc_t_failed; -+ } -+ binder_stats.obj_created[BINDER_STAT_TRANSACTION]++; -+ -+ tcomplete = kzalloc(sizeof(*tcomplete), GFP_KERNEL); -+ if (tcomplete == NULL) { -+ return_error = BR_FAILED_REPLY; -+ goto err_alloc_tcomplete_failed; -+ } -+ binder_stats.obj_created[BINDER_STAT_TRANSACTION_COMPLETE]++; -+ -+ t->debug_id = ++binder_last_id; -+ e->debug_id = t->debug_id; -+ -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) { -+ if (reply) -+ printk(KERN_INFO "binder: %d:%d BC_REPLY %d -> %d:%d, " -+ "data %p-%p size %d-%d\n", -+ proc->pid, thread->pid, t->debug_id, -+ target_proc->pid, target_thread->pid, -+ tr->data.ptr.buffer, tr->data.ptr.offsets, -+ tr->data_size, tr->offsets_size); -+ else -+ printk(KERN_INFO "binder: %d:%d BC_TRANSACTION %d -> " -+ "%d - node %d, data %p-%p size %d-%d\n", -+ proc->pid, thread->pid, t->debug_id, -+ target_proc->pid, target_node->debug_id, -+ tr->data.ptr.buffer, tr->data.ptr.offsets, -+ tr->data_size, tr->offsets_size); -+ } -+ -+ if (!reply && !(tr->flags & TF_ONE_WAY)) -+ t->from = thread; -+ else -+ t->from = NULL; -+ t->sender_euid = proc->tsk->euid; -+ t->to_proc = target_proc; -+ t->to_thread = target_thread; -+ t->code = tr->code; -+ t->flags = tr->flags; -+ t->priority = task_nice(current); -+ t->buffer = binder_alloc_buf(target_proc, tr->data_size, -+ tr->offsets_size, !reply && (t->flags & TF_ONE_WAY)); -+ if (t->buffer == NULL) { -+ return_error = BR_FAILED_REPLY; -+ goto err_binder_alloc_buf_failed; -+ } -+ t->buffer->allow_user_free = 0; -+ t->buffer->debug_id = t->debug_id; -+ t->buffer->transaction = t; -+ t->buffer->target_node = target_node; -+ if (target_node) -+ binder_inc_node(target_node, 1, 0, NULL); -+ -+ offp = (size_t *)(t->buffer->data + ALIGN(tr->data_size, sizeof(void *))); -+ -+ if (copy_from_user(t->buffer->data, tr->data.ptr.buffer, tr->data_size)) { -+ binder_user_error("binder: %d:%d got transaction with invalid " -+ "data ptr\n", proc->pid, thread->pid); -+ return_error = BR_FAILED_REPLY; -+ goto err_copy_data_failed; -+ } -+ if (copy_from_user(offp, tr->data.ptr.offsets, tr->offsets_size)) { -+ binder_user_error("binder: %d:%d got transaction with invalid " -+ "offsets ptr\n", proc->pid, thread->pid); -+ return_error = BR_FAILED_REPLY; -+ goto err_copy_data_failed; -+ } -+ off_end = (void *)offp + tr->offsets_size; -+ for (; offp < off_end; offp++) { -+ struct flat_binder_object *fp; -+ if (*offp > t->buffer->data_size - sizeof(*fp)) { -+ binder_user_error("binder: %d:%d got transaction with " -+ "invalid offset, %d\n", -+ proc->pid, thread->pid, *offp); -+ return_error = BR_FAILED_REPLY; -+ goto err_bad_offset; -+ } -+ fp = (struct flat_binder_object *)(t->buffer->data + *offp); -+ switch (fp->type) { -+ case BINDER_TYPE_BINDER: -+ case BINDER_TYPE_WEAK_BINDER: { -+ struct binder_ref *ref; -+ struct binder_node *node = binder_get_node(proc, fp->binder); -+ if (node == NULL) { -+ node = binder_new_node(proc, fp->binder, fp->cookie); -+ if (node == NULL) { -+ return_error = BR_FAILED_REPLY; -+ goto err_binder_new_node_failed; -+ } -+ node->min_priority = fp->flags & FLAT_BINDER_FLAG_PRIORITY_MASK; -+ node->accept_fds = !!(fp->flags & FLAT_BINDER_FLAG_ACCEPTS_FDS); -+ } -+ if (fp->cookie != node->cookie) { -+ binder_user_error("binder: %d:%d sending u%p " -+ "node %d, cookie mismatch %p != %p\n", -+ proc->pid, thread->pid, -+ fp->binder, node->debug_id, -+ fp->cookie, node->cookie); -+ goto err_binder_get_ref_for_node_failed; -+ } -+ ref = binder_get_ref_for_node(target_proc, node); -+ if (ref == NULL) { -+ return_error = BR_FAILED_REPLY; -+ goto err_binder_get_ref_for_node_failed; -+ } -+ if (fp->type == BINDER_TYPE_BINDER) -+ fp->type = BINDER_TYPE_HANDLE; -+ else -+ fp->type = BINDER_TYPE_WEAK_HANDLE; -+ fp->handle = ref->desc; -+ binder_inc_ref(ref, fp->type == BINDER_TYPE_HANDLE, &thread->todo); -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO " node %d u%p -> ref %d desc %d\n", -+ node->debug_id, node->ptr, ref->debug_id, ref->desc); -+ } break; -+ case BINDER_TYPE_HANDLE: -+ case BINDER_TYPE_WEAK_HANDLE: { -+ struct binder_ref *ref = binder_get_ref(proc, fp->handle); -+ if (ref == NULL) { -+ binder_user_error("binder: %d:%d got " -+ "transaction with invalid " -+ "handle, %ld\n", proc->pid, -+ thread->pid, fp->handle); -+ return_error = BR_FAILED_REPLY; -+ goto err_binder_get_ref_failed; -+ } -+ if (ref->node->proc == target_proc) { -+ if (fp->type == BINDER_TYPE_HANDLE) -+ fp->type = BINDER_TYPE_BINDER; -+ else -+ fp->type = BINDER_TYPE_WEAK_BINDER; -+ fp->binder = ref->node->ptr; -+ fp->cookie = ref->node->cookie; -+ binder_inc_node(ref->node, fp->type == BINDER_TYPE_BINDER, 0, NULL); -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO " ref %d desc %d -> node %d u%p\n", -+ ref->debug_id, ref->desc, ref->node->debug_id, ref->node->ptr); -+ } else { -+ struct binder_ref *new_ref; -+ new_ref = binder_get_ref_for_node(target_proc, ref->node); -+ if (new_ref == NULL) { -+ return_error = BR_FAILED_REPLY; -+ goto err_binder_get_ref_for_node_failed; -+ } -+ fp->handle = new_ref->desc; -+ binder_inc_ref(new_ref, fp->type == BINDER_TYPE_HANDLE, NULL); -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO " ref %d desc %d -> ref %d desc %d (node %d)\n", -+ ref->debug_id, ref->desc, new_ref->debug_id, new_ref->desc, ref->node->debug_id); -+ } -+ } break; -+ -+ case BINDER_TYPE_FD: { -+ int target_fd; -+ struct file *file; -+ -+ if (reply) { -+ if (!(in_reply_to->flags & TF_ACCEPT_FDS)) { -+ binder_user_error("binder: %d:%d got reply with fd, %ld, but target does not allow fds\n", -+ proc->pid, thread->pid, fp->handle); -+ return_error = BR_FAILED_REPLY; -+ goto err_fd_not_allowed; -+ } -+ } else if (!target_node->accept_fds) { -+ binder_user_error("binder: %d:%d got transaction with fd, %ld, but target does not allow fds\n", -+ proc->pid, thread->pid, fp->handle); -+ return_error = BR_FAILED_REPLY; -+ goto err_fd_not_allowed; -+ } -+ -+ file = fget(fp->handle); -+ if (file == NULL) { -+ binder_user_error("binder: %d:%d got transaction with invalid fd, %ld\n", -+ proc->pid, thread->pid, fp->handle); -+ return_error = BR_FAILED_REPLY; -+ goto err_fget_failed; -+ } -+ target_fd = task_get_unused_fd_flags(target_proc->tsk, O_CLOEXEC); -+ if (target_fd < 0) { -+ fput(file); -+ return_error = BR_FAILED_REPLY; -+ goto err_get_unused_fd_failed; -+ } -+ task_fd_install(target_proc->tsk, target_fd, file); -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO " fd %ld -> %d\n", fp->handle, target_fd); -+ /* TODO: fput? */ -+ fp->handle = target_fd; -+ } break; -+ -+ default: -+ binder_user_error("binder: %d:%d got transactio" -+ "n with invalid object type, %lx\n", -+ proc->pid, thread->pid, fp->type); -+ return_error = BR_FAILED_REPLY; -+ goto err_bad_object_type; -+ } -+ } -+ if (reply) { -+ BUG_ON(t->buffer->async_transaction != 0); -+ binder_pop_transaction(target_thread, in_reply_to); -+ } else if (!(t->flags & TF_ONE_WAY)) { -+ BUG_ON(t->buffer->async_transaction != 0); -+ t->need_reply = 1; -+ t->from_parent = thread->transaction_stack; -+ thread->transaction_stack = t; -+ } else { -+ BUG_ON(target_node == NULL); -+ BUG_ON(t->buffer->async_transaction != 1); -+ if (target_node->has_async_transaction) { -+ target_list = &target_node->async_todo; -+ target_wait = NULL; -+ } else -+ target_node->has_async_transaction = 1; -+ } -+ t->work.type = BINDER_WORK_TRANSACTION; -+ list_add_tail(&t->work.entry, target_list); -+ tcomplete->type = BINDER_WORK_TRANSACTION_COMPLETE; -+ list_add_tail(&tcomplete->entry, &thread->todo); -+ if (target_wait) -+ wake_up_interruptible(target_wait); -+ return; -+ -+err_get_unused_fd_failed: -+err_fget_failed: -+err_fd_not_allowed: -+err_binder_get_ref_for_node_failed: -+err_binder_get_ref_failed: -+err_binder_new_node_failed: -+err_bad_object_type: -+err_bad_offset: -+err_copy_data_failed: -+ binder_transaction_buffer_release(target_proc, t->buffer, offp); -+ t->buffer->transaction = NULL; -+ binder_free_buf(target_proc, t->buffer); -+err_binder_alloc_buf_failed: -+ kfree(tcomplete); -+ binder_stats.obj_deleted[BINDER_STAT_TRANSACTION_COMPLETE]++; -+err_alloc_tcomplete_failed: -+ kfree(t); -+ binder_stats.obj_deleted[BINDER_STAT_TRANSACTION]++; -+err_alloc_t_failed: -+err_bad_call_stack: -+err_empty_call_stack: -+err_dead_binder: -+err_invalid_target_handle: -+err_no_context_mgr_node: -+ if (binder_debug_mask & BINDER_DEBUG_FAILED_TRANSACTION) -+ printk(KERN_INFO "binder: %d:%d transaction failed %d, size %d-%d\n", -+ proc->pid, thread->pid, return_error, -+ tr->data_size, tr->offsets_size); -+ -+ { -+ struct binder_transaction_log_entry *fe; -+ fe = binder_transaction_log_add(&binder_transaction_log_failed); -+ *fe = *e; -+ } -+ -+ BUG_ON(thread->return_error != BR_OK); -+ if (in_reply_to) { -+ thread->return_error = BR_TRANSACTION_COMPLETE; -+ binder_send_failed_reply(in_reply_to, return_error); -+ } else -+ thread->return_error = return_error; -+} -+ -+static void -+binder_transaction_buffer_release(struct binder_proc *proc, struct binder_buffer *buffer, size_t *failed_at) -+{ -+ size_t *offp, *off_end; -+ int debug_id = buffer->debug_id; -+ -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO "binder: %d buffer release %d, size %d-%d, failed at %p\n", -+ proc->pid, buffer->debug_id, -+ buffer->data_size, buffer->offsets_size, failed_at); -+ -+ if (buffer->target_node) -+ binder_dec_node(buffer->target_node, 1, 0); -+ -+ offp = (size_t *)(buffer->data + ALIGN(buffer->data_size, sizeof(void *))); -+ if (failed_at) -+ off_end = failed_at; -+ else -+ off_end = (void *)offp + buffer->offsets_size; -+ for (; offp < off_end; offp++) { -+ struct flat_binder_object *fp; -+ if (*offp > buffer->data_size - sizeof(*fp)) { -+ printk(KERN_ERR "binder: transaction release %d bad offset %d, size %d\n", debug_id, *offp, buffer->data_size); -+ continue; -+ } -+ fp = (struct flat_binder_object *)(buffer->data + *offp); -+ switch (fp->type) { -+ case BINDER_TYPE_BINDER: -+ case BINDER_TYPE_WEAK_BINDER: { -+ struct binder_node *node = binder_get_node(proc, fp->binder); -+ if (node == NULL) { -+ printk(KERN_ERR "binder: transaction release %d bad node %p\n", debug_id, fp->binder); -+ break; -+ } -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO " node %d u%p\n", -+ node->debug_id, node->ptr); -+ binder_dec_node(node, fp->type == BINDER_TYPE_BINDER, 0); -+ } break; -+ case BINDER_TYPE_HANDLE: -+ case BINDER_TYPE_WEAK_HANDLE: { -+ struct binder_ref *ref = binder_get_ref(proc, fp->handle); -+ if (ref == NULL) { -+ printk(KERN_ERR "binder: transaction release %d bad handle %ld\n", debug_id, fp->handle); -+ break; -+ } -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO " ref %d desc %d (node %d)\n", -+ ref->debug_id, ref->desc, ref->node->debug_id); -+ binder_dec_ref(ref, fp->type == BINDER_TYPE_HANDLE); -+ } break; -+ -+ case BINDER_TYPE_FD: -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO " fd %ld\n", fp->handle); -+ if (failed_at) -+ task_close_fd(proc->tsk, fp->handle); -+ break; -+ -+ default: -+ printk(KERN_ERR "binder: transaction release %d bad object type %lx\n", debug_id, fp->type); -+ break; -+ } -+ } -+} -+ -+int -+binder_thread_write(struct binder_proc *proc, struct binder_thread *thread, -+ void __user *buffer, int size, signed long *consumed) -+{ -+ uint32_t cmd; -+ void __user *ptr = buffer + *consumed; -+ void __user *end = buffer + size; -+ -+ while (ptr < end && thread->return_error == BR_OK) { -+ if (get_user(cmd, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ if (_IOC_NR(cmd) < ARRAY_SIZE(binder_stats.bc)) { -+ binder_stats.bc[_IOC_NR(cmd)]++; -+ proc->stats.bc[_IOC_NR(cmd)]++; -+ thread->stats.bc[_IOC_NR(cmd)]++; -+ } -+ switch (cmd) { -+ case BC_INCREFS: -+ case BC_ACQUIRE: -+ case BC_RELEASE: -+ case BC_DECREFS: { -+ uint32_t target; -+ struct binder_ref *ref; -+ const char *debug_string; -+ -+ if (get_user(target, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ if (target == 0 && binder_context_mgr_node && -+ (cmd == BC_INCREFS || cmd == BC_ACQUIRE)) { -+ ref = binder_get_ref_for_node(proc, -+ binder_context_mgr_node); -+ if (ref->desc != target) { -+ binder_user_error("binder: %d:" -+ "%d tried to acquire " -+ "reference to desc 0, " -+ "got %d instead\n", -+ proc->pid, thread->pid, -+ ref->desc); -+ } -+ } else -+ ref = binder_get_ref(proc, target); -+ if (ref == NULL) { -+ binder_user_error("binder: %d:%d refcou" -+ "nt change on invalid ref %d\n", -+ proc->pid, thread->pid, target); -+ break; -+ } -+ switch (cmd) { -+ case BC_INCREFS: -+ debug_string = "IncRefs"; -+ binder_inc_ref(ref, 0, NULL); -+ break; -+ case BC_ACQUIRE: -+ debug_string = "Acquire"; -+ binder_inc_ref(ref, 1, NULL); -+ break; -+ case BC_RELEASE: -+ debug_string = "Release"; -+ binder_dec_ref(ref, 1); -+ break; -+ case BC_DECREFS: -+ default: -+ debug_string = "DecRefs"; -+ binder_dec_ref(ref, 0); -+ break; -+ } -+ if (binder_debug_mask & BINDER_DEBUG_USER_REFS) -+ printk(KERN_INFO "binder: %d:%d %s ref %d desc %d s %d w %d for node %d\n", -+ proc->pid, thread->pid, debug_string, ref->debug_id, ref->desc, ref->strong, ref->weak, ref->node->debug_id); -+ break; -+ } -+ case BC_INCREFS_DONE: -+ case BC_ACQUIRE_DONE: { -+ void __user *node_ptr; -+ void *cookie; -+ struct binder_node *node; -+ -+ if (get_user(node_ptr, (void * __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(void *); -+ if (get_user(cookie, (void * __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(void *); -+ node = binder_get_node(proc, node_ptr); -+ if (node == NULL) { -+ binder_user_error("binder: %d:%d " -+ "%s u%p no match\n", -+ proc->pid, thread->pid, -+ cmd == BC_INCREFS_DONE ? -+ "BC_INCREFS_DONE" : -+ "BC_ACQUIRE_DONE", -+ node_ptr); -+ break; -+ } -+ if (cookie != node->cookie) { -+ binder_user_error("binder: %d:%d %s u%p node %d" -+ " cookie mismatch %p != %p\n", -+ proc->pid, thread->pid, -+ cmd == BC_INCREFS_DONE ? -+ "BC_INCREFS_DONE" : "BC_ACQUIRE_DONE", -+ node_ptr, node->debug_id, -+ cookie, node->cookie); -+ break; -+ } -+ if (cmd == BC_ACQUIRE_DONE) { -+ if (node->pending_strong_ref == 0) { -+ binder_user_error("binder: %d:%d " -+ "BC_ACQUIRE_DONE node %d has " -+ "no pending acquire request\n", -+ proc->pid, thread->pid, -+ node->debug_id); -+ break; -+ } -+ node->pending_strong_ref = 0; -+ } else { -+ if (node->pending_weak_ref == 0) { -+ binder_user_error("binder: %d:%d " -+ "BC_INCREFS_DONE node %d has " -+ "no pending increfs request\n", -+ proc->pid, thread->pid, -+ node->debug_id); -+ break; -+ } -+ node->pending_weak_ref = 0; -+ } -+ binder_dec_node(node, cmd == BC_ACQUIRE_DONE, 0); -+ if (binder_debug_mask & BINDER_DEBUG_USER_REFS) -+ printk(KERN_INFO "binder: %d:%d %s node %d ls %d lw %d\n", -+ proc->pid, thread->pid, cmd == BC_INCREFS_DONE ? "BC_INCREFS_DONE" : "BC_ACQUIRE_DONE", node->debug_id, node->local_strong_refs, node->local_weak_refs); -+ break; -+ } -+ case BC_ATTEMPT_ACQUIRE: -+ printk(KERN_ERR "binder: BC_ATTEMPT_ACQUIRE not supported\n"); -+ return -EINVAL; -+ case BC_ACQUIRE_RESULT: -+ printk(KERN_ERR "binder: BC_ACQUIRE_RESULT not supported\n"); -+ return -EINVAL; -+ -+ case BC_FREE_BUFFER: { -+ void __user *data_ptr; -+ struct binder_buffer *buffer; -+ -+ if (get_user(data_ptr, (void * __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(void *); -+ -+ buffer = binder_buffer_lookup(proc, data_ptr); -+ if (buffer == NULL) { -+ binder_user_error("binder: %d:%d " -+ "BC_FREE_BUFFER u%p no match\n", -+ proc->pid, thread->pid, data_ptr); -+ break; -+ } -+ if (!buffer->allow_user_free) { -+ binder_user_error("binder: %d:%d " -+ "BC_FREE_BUFFER u%p matched " -+ "unreturned buffer\n", -+ proc->pid, thread->pid, data_ptr); -+ break; -+ } -+ if (binder_debug_mask & BINDER_DEBUG_FREE_BUFFER) -+ printk(KERN_INFO "binder: %d:%d BC_FREE_BUFFER u%p found buffer %d for %s transaction\n", -+ proc->pid, thread->pid, data_ptr, buffer->debug_id, -+ buffer->transaction ? "active" : "finished"); -+ -+ if (buffer->transaction) { -+ buffer->transaction->buffer = NULL; -+ buffer->transaction = NULL; -+ } -+ if (buffer->async_transaction && buffer->target_node) { -+ BUG_ON(!buffer->target_node->has_async_transaction); -+ if (list_empty(&buffer->target_node->async_todo)) -+ buffer->target_node->has_async_transaction = 0; -+ else -+ list_move_tail(buffer->target_node->async_todo.next, &thread->todo); -+ } -+ binder_transaction_buffer_release(proc, buffer, NULL); -+ binder_free_buf(proc, buffer); -+ break; -+ } -+ -+ case BC_TRANSACTION: -+ case BC_REPLY: { -+ struct binder_transaction_data tr; -+ -+ if (copy_from_user(&tr, ptr, sizeof(tr))) -+ return -EFAULT; -+ ptr += sizeof(tr); -+ binder_transaction(proc, thread, &tr, cmd == BC_REPLY); -+ break; -+ } -+ -+ case BC_REGISTER_LOOPER: -+ if (binder_debug_mask & BINDER_DEBUG_THREADS) -+ printk(KERN_INFO "binder: %d:%d BC_REGISTER_LOOPER\n", -+ proc->pid, thread->pid); -+ if (thread->looper & BINDER_LOOPER_STATE_ENTERED) { -+ thread->looper |= BINDER_LOOPER_STATE_INVALID; -+ binder_user_error("binder: %d:%d ERROR:" -+ " BC_REGISTER_LOOPER called " -+ "after BC_ENTER_LOOPER\n", -+ proc->pid, thread->pid); -+ } else if (proc->requested_threads == 0) { -+ thread->looper |= BINDER_LOOPER_STATE_INVALID; -+ binder_user_error("binder: %d:%d ERROR:" -+ " BC_REGISTER_LOOPER called " -+ "without request\n", -+ proc->pid, thread->pid); -+ } else { -+ proc->requested_threads--; -+ proc->requested_threads_started++; -+ } -+ thread->looper |= BINDER_LOOPER_STATE_REGISTERED; -+ break; -+ case BC_ENTER_LOOPER: -+ if (binder_debug_mask & BINDER_DEBUG_THREADS) -+ printk(KERN_INFO "binder: %d:%d BC_ENTER_LOOPER\n", -+ proc->pid, thread->pid); -+ if (thread->looper & BINDER_LOOPER_STATE_REGISTERED) { -+ thread->looper |= BINDER_LOOPER_STATE_INVALID; -+ binder_user_error("binder: %d:%d ERROR:" -+ " BC_ENTER_LOOPER called after " -+ "BC_REGISTER_LOOPER\n", -+ proc->pid, thread->pid); -+ } -+ thread->looper |= BINDER_LOOPER_STATE_ENTERED; -+ break; -+ case BC_EXIT_LOOPER: -+ if (binder_debug_mask & BINDER_DEBUG_THREADS) -+ printk(KERN_INFO "binder: %d:%d BC_EXIT_LOOPER\n", -+ proc->pid, thread->pid); -+ thread->looper |= BINDER_LOOPER_STATE_EXITED; -+ break; -+ -+ case BC_REQUEST_DEATH_NOTIFICATION: -+ case BC_CLEAR_DEATH_NOTIFICATION: { -+ uint32_t target; -+ void __user *cookie; -+ struct binder_ref *ref; -+ struct binder_ref_death *death; -+ -+ if (get_user(target, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ if (get_user(cookie, (void __user * __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(void *); -+ ref = binder_get_ref(proc, target); -+ if (ref == NULL) { -+ binder_user_error("binder: %d:%d %s " -+ "invalid ref %d\n", -+ proc->pid, thread->pid, -+ cmd == BC_REQUEST_DEATH_NOTIFICATION ? -+ "BC_REQUEST_DEATH_NOTIFICATION" : -+ "BC_CLEAR_DEATH_NOTIFICATION", -+ target); -+ break; -+ } -+ -+ if (binder_debug_mask & BINDER_DEBUG_DEATH_NOTIFICATION) -+ printk(KERN_INFO "binder: %d:%d %s %p ref %d desc %d s %d w %d for node %d\n", -+ proc->pid, thread->pid, -+ cmd == BC_REQUEST_DEATH_NOTIFICATION ? -+ "BC_REQUEST_DEATH_NOTIFICATION" : -+ "BC_CLEAR_DEATH_NOTIFICATION", -+ cookie, ref->debug_id, ref->desc, -+ ref->strong, ref->weak, ref->node->debug_id); -+ -+ if (cmd == BC_REQUEST_DEATH_NOTIFICATION) { -+ if (ref->death) { -+ binder_user_error("binder: %d:%" -+ "d BC_REQUEST_DEATH_NOTI" -+ "FICATION death notific" -+ "ation already set\n", -+ proc->pid, thread->pid); -+ break; -+ } -+ death = kzalloc(sizeof(*death), GFP_KERNEL); -+ if (death == NULL) { -+ thread->return_error = BR_ERROR; -+ if (binder_debug_mask & BINDER_DEBUG_FAILED_TRANSACTION) -+ printk(KERN_INFO "binder: %d:%d " -+ "BC_REQUEST_DEATH_NOTIFICATION failed\n", -+ proc->pid, thread->pid); -+ break; -+ } -+ binder_stats.obj_created[BINDER_STAT_DEATH]++; -+ INIT_LIST_HEAD(&death->work.entry); -+ death->cookie = cookie; -+ ref->death = death; -+ if (ref->node->proc == NULL) { -+ ref->death->work.type = BINDER_WORK_DEAD_BINDER; -+ if (thread->looper & (BINDER_LOOPER_STATE_REGISTERED | BINDER_LOOPER_STATE_ENTERED)) { -+ list_add_tail(&ref->death->work.entry, &thread->todo); -+ } else { -+ list_add_tail(&ref->death->work.entry, &proc->todo); -+ wake_up_interruptible(&proc->wait); -+ } -+ } -+ } else { -+ if (ref->death == NULL) { -+ binder_user_error("binder: %d:%" -+ "d BC_CLEAR_DEATH_NOTIFI" -+ "CATION death notificat" -+ "ion not active\n", -+ proc->pid, thread->pid); -+ break; -+ } -+ death = ref->death; -+ if (death->cookie != cookie) { -+ binder_user_error("binder: %d:%" -+ "d BC_CLEAR_DEATH_NOTIFI" -+ "CATION death notificat" -+ "ion cookie mismatch " -+ "%p != %p\n", -+ proc->pid, thread->pid, -+ death->cookie, cookie); -+ break; -+ } -+ ref->death = NULL; -+ if (list_empty(&death->work.entry)) { -+ death->work.type = BINDER_WORK_CLEAR_DEATH_NOTIFICATION; -+ if (thread->looper & (BINDER_LOOPER_STATE_REGISTERED | BINDER_LOOPER_STATE_ENTERED)) { -+ list_add_tail(&death->work.entry, &thread->todo); -+ } else { -+ list_add_tail(&death->work.entry, &proc->todo); -+ wake_up_interruptible(&proc->wait); -+ } -+ } else { -+ BUG_ON(death->work.type != BINDER_WORK_DEAD_BINDER); -+ death->work.type = BINDER_WORK_DEAD_BINDER_AND_CLEAR; -+ } -+ } -+ } break; -+ case BC_DEAD_BINDER_DONE: { -+ struct binder_work *w; -+ void __user *cookie; -+ struct binder_ref_death *death = NULL; -+ if (get_user(cookie, (void __user * __user *)ptr)) -+ return -EFAULT; -+ -+ ptr += sizeof(void *); -+ list_for_each_entry(w, &proc->delivered_death, entry) { -+ struct binder_ref_death *tmp_death = container_of(w, struct binder_ref_death, work); -+ if (tmp_death->cookie == cookie) { -+ death = tmp_death; -+ break; -+ } -+ } -+ if (binder_debug_mask & BINDER_DEBUG_DEAD_BINDER) -+ printk(KERN_INFO "binder: %d:%d BC_DEAD_BINDER_DONE %p found %p\n", -+ proc->pid, thread->pid, cookie, death); -+ if (death == NULL) { -+ binder_user_error("binder: %d:%d BC_DEAD" -+ "_BINDER_DONE %p not found\n", -+ proc->pid, thread->pid, cookie); -+ break; -+ } -+ -+ list_del_init(&death->work.entry); -+ if (death->work.type == BINDER_WORK_DEAD_BINDER_AND_CLEAR) { -+ death->work.type = BINDER_WORK_CLEAR_DEATH_NOTIFICATION; -+ if (thread->looper & (BINDER_LOOPER_STATE_REGISTERED | BINDER_LOOPER_STATE_ENTERED)) { -+ list_add_tail(&death->work.entry, &thread->todo); -+ } else { -+ list_add_tail(&death->work.entry, &proc->todo); -+ wake_up_interruptible(&proc->wait); -+ } -+ } -+ } break; -+ -+ default: -+ printk(KERN_ERR "binder: %d:%d unknown command %d\n", proc->pid, thread->pid, cmd); -+ return -EINVAL; -+ } -+ *consumed = ptr - buffer; -+ } -+ return 0; -+} -+ -+void -+binder_stat_br(struct binder_proc *proc, struct binder_thread *thread, uint32_t cmd) -+{ -+ if (_IOC_NR(cmd) < ARRAY_SIZE(binder_stats.br)) { -+ binder_stats.br[_IOC_NR(cmd)]++; -+ proc->stats.br[_IOC_NR(cmd)]++; -+ thread->stats.br[_IOC_NR(cmd)]++; -+ } -+} -+ -+static int -+binder_has_proc_work(struct binder_proc *proc, struct binder_thread *thread) -+{ -+ return !list_empty(&proc->todo) || (thread->looper & BINDER_LOOPER_STATE_NEED_RETURN); -+} -+ -+static int -+binder_has_thread_work(struct binder_thread *thread) -+{ -+ return !list_empty(&thread->todo) || thread->return_error != BR_OK || -+ (thread->looper & BINDER_LOOPER_STATE_NEED_RETURN); -+} -+ -+static int -+binder_thread_read(struct binder_proc *proc, struct binder_thread *thread, -+ void __user *buffer, int size, signed long *consumed, int non_block) -+{ -+ void __user *ptr = buffer + *consumed; -+ void __user *end = buffer + size; -+ -+ int ret = 0; -+ int wait_for_proc_work; -+ -+ if (*consumed == 0) { -+ if (put_user(BR_NOOP, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ } -+ -+retry: -+ wait_for_proc_work = thread->transaction_stack == NULL && list_empty(&thread->todo); -+ -+ if (thread->return_error != BR_OK && ptr < end) { -+ if (thread->return_error2 != BR_OK) { -+ if (put_user(thread->return_error2, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ if (ptr == end) -+ goto done; -+ thread->return_error2 = BR_OK; -+ } -+ if (put_user(thread->return_error, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ thread->return_error = BR_OK; -+ goto done; -+ } -+ -+ -+ thread->looper |= BINDER_LOOPER_STATE_WAITING; -+ if (wait_for_proc_work) -+ proc->ready_threads++; -+ mutex_unlock(&binder_lock); -+ if (wait_for_proc_work) { -+ if (!(thread->looper & (BINDER_LOOPER_STATE_REGISTERED | -+ BINDER_LOOPER_STATE_ENTERED))) { -+ binder_user_error("binder: %d:%d ERROR: Thread waiting " -+ "for process work before calling BC_REGISTER_" -+ "LOOPER or BC_ENTER_LOOPER (state %x)\n", -+ proc->pid, thread->pid, thread->looper); -+ wait_event_interruptible(binder_user_error_wait, binder_stop_on_user_error < 2); -+ } -+ binder_set_nice(proc->default_priority); -+ if (non_block) { -+ if (!binder_has_proc_work(proc, thread)) -+ ret = -EAGAIN; -+ } else -+ ret = wait_event_interruptible_exclusive(proc->wait, binder_has_proc_work(proc, thread)); -+ } else { -+ if (non_block) { -+ if (!binder_has_thread_work(thread)) -+ ret = -EAGAIN; -+ } else -+ ret = wait_event_interruptible(thread->wait, binder_has_thread_work(thread)); -+ } -+ mutex_lock(&binder_lock); -+ if (wait_for_proc_work) -+ proc->ready_threads--; -+ thread->looper &= ~BINDER_LOOPER_STATE_WAITING; -+ -+ if (ret) -+ return ret; -+ -+ while (1) { -+ uint32_t cmd; -+ struct binder_transaction_data tr; -+ struct binder_work *w; -+ struct binder_transaction *t = NULL; -+ -+ if (!list_empty(&thread->todo)) -+ w = list_first_entry(&thread->todo, struct binder_work, entry); -+ else if (!list_empty(&proc->todo) && wait_for_proc_work) -+ w = list_first_entry(&proc->todo, struct binder_work, entry); -+ else { -+ if (ptr - buffer == 4 && !(thread->looper & BINDER_LOOPER_STATE_NEED_RETURN)) /* no data added */ -+ goto retry; -+ break; -+ } -+ -+ if (end - ptr < sizeof(tr) + 4) -+ break; -+ -+ switch (w->type) { -+ case BINDER_WORK_TRANSACTION: { -+ t = container_of(w, struct binder_transaction, work); -+ } break; -+ case BINDER_WORK_TRANSACTION_COMPLETE: { -+ cmd = BR_TRANSACTION_COMPLETE; -+ if (put_user(cmd, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ -+ binder_stat_br(proc, thread, cmd); -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION_COMPLETE) -+ printk(KERN_INFO "binder: %d:%d BR_TRANSACTION_COMPLETE\n", -+ proc->pid, thread->pid); -+ -+ list_del(&w->entry); -+ kfree(w); -+ binder_stats.obj_deleted[BINDER_STAT_TRANSACTION_COMPLETE]++; -+ } break; -+ case BINDER_WORK_NODE: { -+ struct binder_node *node = container_of(w, struct binder_node, work); -+ uint32_t cmd = BR_NOOP; -+ const char *cmd_name; -+ int strong = node->internal_strong_refs || node->local_strong_refs; -+ int weak = !hlist_empty(&node->refs) || node->local_weak_refs || strong; -+ if (weak && !node->has_weak_ref) { -+ cmd = BR_INCREFS; -+ cmd_name = "BR_INCREFS"; -+ node->has_weak_ref = 1; -+ node->pending_weak_ref = 1; -+ node->local_weak_refs++; -+ } else if (strong && !node->has_strong_ref) { -+ cmd = BR_ACQUIRE; -+ cmd_name = "BR_ACQUIRE"; -+ node->has_strong_ref = 1; -+ node->pending_strong_ref = 1; -+ node->local_strong_refs++; -+ } else if (!strong && node->has_strong_ref) { -+ cmd = BR_RELEASE; -+ cmd_name = "BR_RELEASE"; -+ node->has_strong_ref = 0; -+ } else if (!weak && node->has_weak_ref) { -+ cmd = BR_DECREFS; -+ cmd_name = "BR_DECREFS"; -+ node->has_weak_ref = 0; -+ } -+ if (cmd != BR_NOOP) { -+ if (put_user(cmd, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ if (put_user(node->ptr, (void * __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(void *); -+ if (put_user(node->cookie, (void * __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(void *); -+ -+ binder_stat_br(proc, thread, cmd); -+ if (binder_debug_mask & BINDER_DEBUG_USER_REFS) -+ printk(KERN_INFO "binder: %d:%d %s %d u%p c%p\n", -+ proc->pid, thread->pid, cmd_name, node->debug_id, node->ptr, node->cookie); -+ } else { -+ list_del_init(&w->entry); -+ if (!weak && !strong) { -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: %d:%d node %d u%p c%p deleted\n", -+ proc->pid, thread->pid, node->debug_id, node->ptr, node->cookie); -+ rb_erase(&node->rb_node, &proc->nodes); -+ kfree(node); -+ binder_stats.obj_deleted[BINDER_STAT_NODE]++; -+ } else { -+ if (binder_debug_mask & BINDER_DEBUG_INTERNAL_REFS) -+ printk(KERN_INFO "binder: %d:%d node %d u%p c%p state unchanged\n", -+ proc->pid, thread->pid, node->debug_id, node->ptr, node->cookie); -+ } -+ } -+ } break; -+ case BINDER_WORK_DEAD_BINDER: -+ case BINDER_WORK_DEAD_BINDER_AND_CLEAR: -+ case BINDER_WORK_CLEAR_DEATH_NOTIFICATION: { -+ struct binder_ref_death *death = container_of(w, struct binder_ref_death, work); -+ uint32_t cmd; -+ if (w->type == BINDER_WORK_CLEAR_DEATH_NOTIFICATION) -+ cmd = BR_CLEAR_DEATH_NOTIFICATION_DONE; -+ else -+ cmd = BR_DEAD_BINDER; -+ if (put_user(cmd, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ if (put_user(death->cookie, (void * __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(void *); -+ if (binder_debug_mask & BINDER_DEBUG_DEATH_NOTIFICATION) -+ printk(KERN_INFO "binder: %d:%d %s %p\n", -+ proc->pid, thread->pid, -+ cmd == BR_DEAD_BINDER ? -+ "BR_DEAD_BINDER" : -+ "BR_CLEAR_DEATH_NOTIFICATION_DONE", -+ death->cookie); -+ -+ if (w->type == BINDER_WORK_CLEAR_DEATH_NOTIFICATION) { -+ list_del(&w->entry); -+ kfree(death); -+ binder_stats.obj_deleted[BINDER_STAT_DEATH]++; -+ } else -+ list_move(&w->entry, &proc->delivered_death); -+ if (cmd == BR_DEAD_BINDER) -+ goto done; /* DEAD_BINDER notifications can cause transactions */ -+ } break; -+ } -+ -+ if (!t) -+ continue; -+ -+ BUG_ON(t->buffer == NULL); -+ if (t->buffer->target_node) { -+ struct binder_node *target_node = t->buffer->target_node; -+ tr.target.ptr = target_node->ptr; -+ tr.cookie = target_node->cookie; -+ t->saved_priority = task_nice(current); -+ if (t->priority < target_node->min_priority && -+ !(t->flags & TF_ONE_WAY)) -+ binder_set_nice(t->priority); -+ else if (!(t->flags & TF_ONE_WAY) || -+ t->saved_priority > target_node->min_priority) -+ binder_set_nice(target_node->min_priority); -+ cmd = BR_TRANSACTION; -+ } else { -+ tr.target.ptr = NULL; -+ tr.cookie = NULL; -+ cmd = BR_REPLY; -+ } -+ tr.code = t->code; -+ tr.flags = t->flags; -+ tr.sender_euid = t->sender_euid; -+ -+ if (t->from) { -+ struct task_struct *sender = t->from->proc->tsk; -+ tr.sender_pid = task_tgid_nr_ns(sender, current->nsproxy->pid_ns); -+ } else { -+ tr.sender_pid = 0; -+ } -+ -+ tr.data_size = t->buffer->data_size; -+ tr.offsets_size = t->buffer->offsets_size; -+ tr.data.ptr.buffer = (void *)((void *)t->buffer->data + proc->user_buffer_offset); -+ tr.data.ptr.offsets = tr.data.ptr.buffer + ALIGN(t->buffer->data_size, sizeof(void *)); -+ -+ if (put_user(cmd, (uint32_t __user *)ptr)) -+ return -EFAULT; -+ ptr += sizeof(uint32_t); -+ if (copy_to_user(ptr, &tr, sizeof(tr))) -+ return -EFAULT; -+ ptr += sizeof(tr); -+ -+ binder_stat_br(proc, thread, cmd); -+ if (binder_debug_mask & BINDER_DEBUG_TRANSACTION) -+ printk(KERN_INFO "binder: %d:%d %s %d %d:%d, cmd %d size %d-%d ptr %p-%p\n", -+ proc->pid, thread->pid, -+ (cmd == BR_TRANSACTION) ? "BR_TRANSACTION" : "BR_REPLY", -+ t->debug_id, t->from ? t->from->proc->pid : 0, -+ t->from ? t->from->pid : 0, cmd, -+ t->buffer->data_size, t->buffer->offsets_size, -+ tr.data.ptr.buffer, tr.data.ptr.offsets); -+ -+ list_del(&t->work.entry); -+ t->buffer->allow_user_free = 1; -+ if (cmd == BR_TRANSACTION && !(t->flags & TF_ONE_WAY)) { -+ t->to_parent = thread->transaction_stack; -+ t->to_thread = thread; -+ thread->transaction_stack = t; -+ } else { -+ t->buffer->transaction = NULL; -+ kfree(t); -+ binder_stats.obj_deleted[BINDER_STAT_TRANSACTION]++; -+ } -+ break; -+ } -+ -+done: -+ -+ *consumed = ptr - buffer; -+ if (proc->requested_threads + proc->ready_threads == 0 && -+ proc->requested_threads_started < proc->max_threads && -+ (thread->looper & (BINDER_LOOPER_STATE_REGISTERED | -+ BINDER_LOOPER_STATE_ENTERED)) /* the user-space code fails to */ -+ /*spawn a new thread if we leave this out */) { -+ proc->requested_threads++; -+ if (binder_debug_mask & BINDER_DEBUG_THREADS) -+ printk(KERN_INFO "binder: %d:%d BR_SPAWN_LOOPER\n", -+ proc->pid, thread->pid); -+ if (put_user(BR_SPAWN_LOOPER, (uint32_t __user *)buffer)) -+ return -EFAULT; -+ } -+ return 0; -+} -+ -+static void binder_release_work(struct list_head *list) -+{ -+ struct binder_work *w; -+ while (!list_empty(list)) { -+ w = list_first_entry(list, struct binder_work, entry); -+ list_del_init(&w->entry); -+ switch (w->type) { -+ case BINDER_WORK_TRANSACTION: { -+ struct binder_transaction *t = container_of(w, struct binder_transaction, work); -+ if (t->buffer->target_node && !(t->flags & TF_ONE_WAY)) -+ binder_send_failed_reply(t, BR_DEAD_REPLY); -+ } break; -+ case BINDER_WORK_TRANSACTION_COMPLETE: { -+ kfree(w); -+ binder_stats.obj_deleted[BINDER_STAT_TRANSACTION_COMPLETE]++; -+ } break; -+ default: -+ break; -+ } -+ } -+ -+} -+ -+static struct binder_thread *binder_get_thread(struct binder_proc *proc) -+{ -+ struct binder_thread *thread = NULL; -+ struct rb_node *parent = NULL; -+ struct rb_node **p = &proc->threads.rb_node; -+ -+ while (*p) { -+ parent = *p; -+ thread = rb_entry(parent, struct binder_thread, rb_node); -+ -+ if (current->pid < thread->pid) -+ p = &(*p)->rb_left; -+ else if (current->pid > thread->pid) -+ p = &(*p)->rb_right; -+ else -+ break; -+ } -+ if (*p == NULL) { -+ thread = kzalloc(sizeof(*thread), GFP_KERNEL); -+ if (thread == NULL) -+ return NULL; -+ binder_stats.obj_created[BINDER_STAT_THREAD]++; -+ thread->proc = proc; -+ thread->pid = current->pid; -+ init_waitqueue_head(&thread->wait); -+ INIT_LIST_HEAD(&thread->todo); -+ rb_link_node(&thread->rb_node, parent, p); -+ rb_insert_color(&thread->rb_node, &proc->threads); -+ thread->looper |= BINDER_LOOPER_STATE_NEED_RETURN; -+ thread->return_error = BR_OK; -+ thread->return_error2 = BR_OK; -+ } -+ return thread; -+} -+ -+static int binder_free_thread(struct binder_proc *proc, struct binder_thread *thread) -+{ -+ struct binder_transaction *t; -+ struct binder_transaction *send_reply = NULL; -+ int active_transactions = 0; -+ -+ rb_erase(&thread->rb_node, &proc->threads); -+ t = thread->transaction_stack; -+ if (t && t->to_thread == thread) -+ send_reply = t; -+ while (t) { -+ active_transactions++; -+ if (binder_debug_mask & BINDER_DEBUG_DEAD_TRANSACTION) -+ printk(KERN_INFO "binder: release %d:%d transaction %d %s, still active\n", -+ proc->pid, thread->pid, t->debug_id, (t->to_thread == thread) ? "in" : "out"); -+ if (t->to_thread == thread) { -+ t->to_proc = NULL; -+ t->to_thread = NULL; -+ if (t->buffer) { -+ t->buffer->transaction = NULL; -+ t->buffer = NULL; -+ } -+ t = t->to_parent; -+ } else if (t->from == thread) { -+ t->from = NULL; -+ t = t->from_parent; -+ } else -+ BUG(); -+ } -+ if (send_reply) -+ binder_send_failed_reply(send_reply, BR_DEAD_REPLY); -+ binder_release_work(&thread->todo); -+ kfree(thread); -+ binder_stats.obj_deleted[BINDER_STAT_THREAD]++; -+ return active_transactions; -+} -+ -+static unsigned int binder_poll(struct file *filp, struct poll_table_struct *wait) -+{ -+ struct binder_proc *proc = filp->private_data; -+ struct binder_thread *thread = NULL; -+ int wait_for_proc_work; -+ -+ mutex_lock(&binder_lock); -+ thread = binder_get_thread(proc); -+ -+ wait_for_proc_work = thread->transaction_stack == NULL && -+ list_empty(&thread->todo) && thread->return_error == BR_OK; -+ mutex_unlock(&binder_lock); -+ -+ if (wait_for_proc_work) { -+ if (binder_has_proc_work(proc, thread)) -+ return POLLIN; -+ poll_wait(filp, &proc->wait, wait); -+ if (binder_has_proc_work(proc, thread)) -+ return POLLIN; -+ } else { -+ if (binder_has_thread_work(thread)) -+ return POLLIN; -+ poll_wait(filp, &thread->wait, wait); -+ if (binder_has_thread_work(thread)) -+ return POLLIN; -+ } -+ return 0; -+} -+ -+static long binder_ioctl(struct file *filp, unsigned int cmd, unsigned long arg) -+{ -+ int ret; -+ struct binder_proc *proc = filp->private_data; -+ struct binder_thread *thread; -+ unsigned int size = _IOC_SIZE(cmd); -+ void __user *ubuf = (void __user *)arg; -+ -+ /*printk(KERN_INFO "binder_ioctl: %d:%d %x %lx\n", proc->pid, current->pid, cmd, arg);*/ -+ -+ ret = wait_event_interruptible(binder_user_error_wait, binder_stop_on_user_error < 2); -+ if (ret) -+ return ret; -+ -+ mutex_lock(&binder_lock); -+ thread = binder_get_thread(proc); -+ if (thread == NULL) { -+ ret = -ENOMEM; -+ goto err; -+ } -+ -+ switch (cmd) { -+ case BINDER_WRITE_READ: { -+ struct binder_write_read bwr; -+ if (size != sizeof(struct binder_write_read)) { -+ ret = -EINVAL; -+ goto err; -+ } -+ if (copy_from_user(&bwr, ubuf, sizeof(bwr))) { -+ ret = -EFAULT; -+ goto err; -+ } -+ if (binder_debug_mask & BINDER_DEBUG_READ_WRITE) -+ printk(KERN_INFO "binder: %d:%d write %ld at %08lx, read %ld at %08lx\n", -+ proc->pid, thread->pid, bwr.write_size, bwr.write_buffer, bwr.read_size, bwr.read_buffer); -+ if (bwr.write_size > 0) { -+ ret = binder_thread_write(proc, thread, (void __user *)bwr.write_buffer, bwr.write_size, &bwr.write_consumed); -+ if (ret < 0) { -+ bwr.read_consumed = 0; -+ if (copy_to_user(ubuf, &bwr, sizeof(bwr))) -+ ret = -EFAULT; -+ goto err; -+ } -+ } -+ if (bwr.read_size > 0) { -+ ret = binder_thread_read(proc, thread, (void __user *)bwr.read_buffer, bwr.read_size, &bwr.read_consumed, filp->f_flags & O_NONBLOCK); -+ if (!list_empty(&proc->todo)) -+ wake_up_interruptible(&proc->wait); -+ if (ret < 0) { -+ if (copy_to_user(ubuf, &bwr, sizeof(bwr))) -+ ret = -EFAULT; -+ goto err; -+ } -+ } -+ if (binder_debug_mask & BINDER_DEBUG_READ_WRITE) -+ printk(KERN_INFO "binder: %d:%d wrote %ld of %ld, read return %ld of %ld\n", -+ proc->pid, thread->pid, bwr.write_consumed, bwr.write_size, bwr.read_consumed, bwr.read_size); -+ if (copy_to_user(ubuf, &bwr, sizeof(bwr))) { -+ ret = -EFAULT; -+ goto err; -+ } -+ break; -+ } -+ case BINDER_SET_MAX_THREADS: -+ if (copy_from_user(&proc->max_threads, ubuf, sizeof(proc->max_threads))) { -+ ret = -EINVAL; -+ goto err; -+ } -+ break; -+ case BINDER_SET_CONTEXT_MGR: -+ if (binder_context_mgr_node != NULL) { -+ printk(KERN_ERR "binder: BINDER_SET_CONTEXT_MGR already set\n"); -+ ret = -EBUSY; -+ goto err; -+ } -+ if (binder_context_mgr_uid != -1) { -+ if (binder_context_mgr_uid != current->euid) { -+ printk(KERN_ERR "binder: BINDER_SET_" -+ "CONTEXT_MGR bad uid %d != %d\n", -+ current->euid, -+ binder_context_mgr_uid); -+ ret = -EPERM; -+ goto err; -+ } -+ } else -+ binder_context_mgr_uid = current->euid; -+ binder_context_mgr_node = binder_new_node(proc, NULL, NULL); -+ if (binder_context_mgr_node == NULL) { -+ ret = -ENOMEM; -+ goto err; -+ } -+ binder_context_mgr_node->local_weak_refs++; -+ binder_context_mgr_node->local_strong_refs++; -+ binder_context_mgr_node->has_strong_ref = 1; -+ binder_context_mgr_node->has_weak_ref = 1; -+ break; -+ case BINDER_THREAD_EXIT: -+ if (binder_debug_mask & BINDER_DEBUG_THREADS) -+ printk(KERN_INFO "binder: %d:%d exit\n", -+ proc->pid, thread->pid); -+ binder_free_thread(proc, thread); -+ thread = NULL; -+ break; -+ case BINDER_VERSION: -+ if (size != sizeof(struct binder_version)) { -+ ret = -EINVAL; -+ goto err; -+ } -+ if (put_user(BINDER_CURRENT_PROTOCOL_VERSION, &((struct binder_version *)ubuf)->protocol_version)) { -+ ret = -EINVAL; -+ goto err; -+ } -+ break; -+ default: -+ ret = -EINVAL; -+ goto err; -+ } -+ ret = 0; -+err: -+ if (thread) -+ thread->looper &= ~BINDER_LOOPER_STATE_NEED_RETURN; -+ mutex_unlock(&binder_lock); -+ wait_event_interruptible(binder_user_error_wait, binder_stop_on_user_error < 2); -+ if (ret && ret != -ERESTARTSYS) -+ printk(KERN_INFO "binder: %d:%d ioctl %x %lx returned %d\n", proc->pid, current->pid, cmd, arg, ret); -+ return ret; -+} -+ -+static void binder_vma_open(struct vm_area_struct *vma) -+{ -+ struct binder_proc *proc = vma->vm_private_data; -+ if (binder_debug_mask & BINDER_DEBUG_OPEN_CLOSE) -+ printk(KERN_INFO "binder: %d open vm area %lx-%lx (%ld K) vma %lx pagep %lx\n", proc->pid, vma->vm_start, vma->vm_end, (vma->vm_end - vma->vm_start) / SZ_1K, vma->vm_flags, vma->vm_page_prot); -+ dump_stack(); -+} -+static void binder_vma_close(struct vm_area_struct *vma) -+{ -+ struct binder_proc *proc = vma->vm_private_data; -+ if (binder_debug_mask & BINDER_DEBUG_OPEN_CLOSE) -+ printk(KERN_INFO "binder: %d close vm area %lx-%lx (%ld K) vma %lx pagep %lx\n", proc->pid, vma->vm_start, vma->vm_end, (vma->vm_end - vma->vm_start) / SZ_1K, vma->vm_flags, vma->vm_page_prot); -+ proc->vma = NULL; -+} -+ -+static struct vm_operations_struct binder_vm_ops = { -+ .open = binder_vma_open, -+ .close = binder_vma_close, -+}; -+ -+static int binder_mmap(struct file *filp, struct vm_area_struct *vma) -+{ -+ int ret; -+ struct vm_struct *area; -+ struct binder_proc *proc = filp->private_data; -+ const char *failure_string; -+ struct binder_buffer *buffer; -+ -+ if ((vma->vm_end - vma->vm_start) > SZ_4M) -+ vma->vm_end = vma->vm_start + SZ_4M; -+ -+ if (binder_debug_mask & BINDER_DEBUG_OPEN_CLOSE) -+ printk(KERN_INFO "binder_mmap: %d %lx-%lx (%ld K) vma %lx pagep %lx\n", proc->pid, vma->vm_start, vma->vm_end, (vma->vm_end - vma->vm_start) / SZ_1K, vma->vm_flags, vma->vm_page_prot); -+ -+ if (vma->vm_flags & FORBIDDEN_MMAP_FLAGS) { -+ ret = -EPERM; -+ failure_string = "bad vm_flags"; -+ goto err_bad_arg; -+ } -+ vma->vm_flags = (vma->vm_flags | VM_DONTCOPY) & ~VM_MAYWRITE; -+ -+ area = get_vm_area(vma->vm_end - vma->vm_start, VM_IOREMAP); -+ if (area == NULL) { -+ ret = -ENOMEM; -+ failure_string = "get_vm_area"; -+ goto err_get_vm_area_failed; -+ } -+ proc->buffer = area->addr; -+ proc->user_buffer_offset = vma->vm_start - (size_t)proc->buffer; -+ -+#if defined(CONFIG_CPU_CACHE_VIPT) && !defined(CONFIG_CPU_S3C6410) -+ if (cache_is_vipt_aliasing()) { -+ while (CACHE_COLOUR((vma->vm_start ^ (uint32_t)proc->buffer))) { -+ printk(KERN_INFO "binder_mmap: %d %lx-%lx maps %p bad alignment\n", proc->pid, vma->vm_start, vma->vm_end, proc->buffer); -+ vma->vm_start += PAGE_SIZE; -+ } -+ } -+#endif -+ proc->pages = kzalloc(sizeof(proc->pages[0]) * ((vma->vm_end - vma->vm_start) / PAGE_SIZE), GFP_KERNEL); -+ if (proc->pages == NULL) { -+ ret = -ENOMEM; -+ failure_string = "alloc page array"; -+ goto err_alloc_pages_failed; -+ } -+ proc->buffer_size = vma->vm_end - vma->vm_start; -+ -+ vma->vm_ops = &binder_vm_ops; -+ vma->vm_private_data = proc; -+ -+ if (binder_update_page_range(proc, 1, proc->buffer, proc->buffer + PAGE_SIZE, vma)) { -+ ret = -ENOMEM; -+ failure_string = "alloc small buf"; -+ goto err_alloc_small_buf_failed; -+ } -+ buffer = proc->buffer; -+ INIT_LIST_HEAD(&proc->buffers); -+ list_add(&buffer->entry, &proc->buffers); -+ buffer->free = 1; -+ binder_insert_free_buffer(proc, buffer); -+ proc->free_async_space = proc->buffer_size / 2; -+ barrier(); -+ proc->vma = vma; -+ -+ /*printk(KERN_INFO "binder_mmap: %d %lx-%lx maps %p\n", proc->pid, vma->vm_start, vma->vm_end, proc->buffer);*/ -+ return 0; -+ -+err_alloc_small_buf_failed: -+ kfree(proc->pages); -+err_alloc_pages_failed: -+ vfree(proc->buffer); -+err_get_vm_area_failed: -+ mutex_unlock(&binder_lock); -+err_bad_arg: -+ printk(KERN_ERR "binder_mmap: %d %lx-%lx %s failed %d\n", proc->pid, vma->vm_start, vma->vm_end, failure_string, ret); -+ return ret; -+} -+ -+static int binder_open(struct inode *nodp, struct file *filp) -+{ -+ struct binder_proc *proc; -+ -+ if (binder_debug_mask & BINDER_DEBUG_OPEN_CLOSE) -+ printk(KERN_INFO "binder_open: %d:%d\n", current->group_leader->pid, current->pid); -+ -+ proc = kzalloc(sizeof(*proc), GFP_KERNEL); -+ if (proc == NULL) -+ return -ENOMEM; -+ get_task_struct(current); -+ proc->tsk = current; -+ INIT_LIST_HEAD(&proc->todo); -+ init_waitqueue_head(&proc->wait); -+ proc->default_priority = task_nice(current); -+ mutex_lock(&binder_lock); -+ binder_stats.obj_created[BINDER_STAT_PROC]++; -+ hlist_add_head(&proc->proc_node, &binder_procs); -+ proc->pid = current->group_leader->pid; -+ INIT_LIST_HEAD(&proc->delivered_death); -+ filp->private_data = proc; -+ mutex_unlock(&binder_lock); -+ -+ if (binder_proc_dir_entry_proc) { -+ char strbuf[11]; -+ snprintf(strbuf, sizeof(strbuf), "%u", proc->pid); -+ create_proc_read_entry(strbuf, S_IRUGO, binder_proc_dir_entry_proc, binder_read_proc_proc, proc); -+ } -+ -+ return 0; -+} -+ -+static int binder_flush(struct file *filp, fl_owner_t id) -+{ -+ struct rb_node *n; -+ struct binder_proc *proc = filp->private_data; -+ int wake_count = 0; -+ -+ mutex_lock(&binder_lock); -+ for (n = rb_first(&proc->threads); n != NULL; n = rb_next(n)) { -+ struct binder_thread *thread = rb_entry(n, struct binder_thread, rb_node); -+ thread->looper |= BINDER_LOOPER_STATE_NEED_RETURN; -+ if (thread->looper & BINDER_LOOPER_STATE_WAITING) { -+ wake_up_interruptible(&thread->wait); -+ wake_count++; -+ } -+ } -+ wake_up_interruptible_all(&proc->wait); -+ mutex_unlock(&binder_lock); -+ -+ if (binder_debug_mask & BINDER_DEBUG_OPEN_CLOSE) -+ printk(KERN_INFO "binder_flush: %d woke %d threads\n", proc->pid, wake_count); -+ -+ return 0; -+} -+ -+static int binder_release(struct inode *nodp, struct file *filp) -+{ -+ struct hlist_node *pos; -+ struct binder_transaction *t; -+ struct rb_node *n; -+ struct binder_proc *proc = filp->private_data; -+ int threads, nodes, incoming_refs, outgoing_refs, buffers, active_transactions, page_count; -+ -+ if (binder_proc_dir_entry_proc) { -+ char strbuf[11]; -+ snprintf(strbuf, sizeof(strbuf), "%u", proc->pid); -+ remove_proc_entry(strbuf, binder_proc_dir_entry_proc); -+ } -+ mutex_lock(&binder_lock); -+ hlist_del(&proc->proc_node); -+ if (binder_context_mgr_node && binder_context_mgr_node->proc == proc) { -+ if (binder_debug_mask & BINDER_DEBUG_DEAD_BINDER) -+ printk(KERN_INFO "binder_release: %d context_mgr_node gone\n", proc->pid); -+ binder_context_mgr_node = NULL; -+ } -+ -+ threads = 0; -+ active_transactions = 0; -+ while ((n = rb_first(&proc->threads))) { -+ struct binder_thread *thread = rb_entry(n, struct binder_thread, rb_node); -+ threads++; -+ active_transactions += binder_free_thread(proc, thread); -+ } -+ nodes = 0; -+ incoming_refs = 0; -+ while ((n = rb_first(&proc->nodes))) { -+ struct binder_node *node = rb_entry(n, struct binder_node, rb_node); -+ -+ nodes++; -+ rb_erase(&node->rb_node, &proc->nodes); -+ list_del_init(&node->work.entry); -+ if (hlist_empty(&node->refs)) { -+ kfree(node); -+ binder_stats.obj_deleted[BINDER_STAT_NODE]++; -+ } else { -+ struct binder_ref *ref; -+ int death = 0; -+ -+ node->proc = NULL; -+ node->local_strong_refs = 0; -+ node->local_weak_refs = 0; -+ hlist_add_head(&node->dead_node, &binder_dead_nodes); -+ -+ hlist_for_each_entry(ref, pos, &node->refs, node_entry) { -+ incoming_refs++; -+ if (ref->death) { -+ death++; -+ if (list_empty(&ref->death->work.entry)) { -+ ref->death->work.type = BINDER_WORK_DEAD_BINDER; -+ list_add_tail(&ref->death->work.entry, &ref->proc->todo); -+ wake_up_interruptible(&ref->proc->wait); -+ } else -+ BUG(); -+ } -+ } -+ if (binder_debug_mask & BINDER_DEBUG_DEAD_BINDER) -+ printk(KERN_INFO "binder: node %d now dead, refs %d, death %d\n", node->debug_id, incoming_refs, death); -+ } -+ } -+ outgoing_refs = 0; -+ while ((n = rb_first(&proc->refs_by_desc))) { -+ struct binder_ref *ref = rb_entry(n, struct binder_ref, rb_node_desc); -+ outgoing_refs++; -+ binder_delete_ref(ref); -+ } -+ binder_release_work(&proc->todo); -+ buffers = 0; -+ -+ while ((n = rb_first(&proc->allocated_buffers))) { -+ struct binder_buffer *buffer = rb_entry(n, struct binder_buffer, rb_node); -+ t = buffer->transaction; -+ if (t) { -+ t->buffer = NULL; -+ buffer->transaction = NULL; -+ printk(KERN_ERR "binder: release proc %d, transaction %d, not freed\n", proc->pid, t->debug_id); -+ /*BUG();*/ -+ } -+ binder_free_buf(proc, buffer); -+ buffers++; -+ } -+ -+ binder_stats.obj_deleted[BINDER_STAT_PROC]++; -+ mutex_unlock(&binder_lock); -+ -+ page_count = 0; -+ if (proc->pages) { -+ int i; -+ for (i = 0; i < proc->buffer_size / PAGE_SIZE; i++) { -+ if (proc->pages[i]) { -+ if (binder_debug_mask & BINDER_DEBUG_BUFFER_ALLOC) -+ printk(KERN_INFO "binder_release: %d: page %d at %p not freed\n", proc->pid, i, proc->buffer + i * PAGE_SIZE); -+ __free_page(proc->pages[i]); -+ page_count++; -+ } -+ } -+ kfree(proc->pages); -+ vfree(proc->buffer); -+ } -+ -+ put_task_struct(proc->tsk); -+ -+ if (binder_debug_mask & BINDER_DEBUG_OPEN_CLOSE) -+ printk(KERN_INFO "binder_release: %d threads %d, nodes %d (ref %d), refs %d, active transactions %d, buffers %d, pages %d\n", -+ proc->pid, threads, nodes, incoming_refs, outgoing_refs, active_transactions, buffers, page_count); -+ -+ kfree(proc); -+ return 0; -+} -+ -+static char *print_binder_transaction(char *buf, char *end, const char *prefix, struct binder_transaction *t) -+{ -+ buf += snprintf(buf, end - buf, "%s %d: %p from %d:%d to %d:%d code %x flags %x pri %ld r%d", -+ prefix, t->debug_id, t, t->from ? t->from->proc->pid : 0, -+ t->from ? t->from->pid : 0, -+ t->to_proc ? t->to_proc->pid : 0, -+ t->to_thread ? t->to_thread->pid : 0, -+ t->code, t->flags, t->priority, t->need_reply); -+ if (buf >= end) -+ return buf; -+ if (t->buffer == NULL) { -+ buf += snprintf(buf, end - buf, " buffer free\n"); -+ return buf; -+ } -+ if (t->buffer->target_node) { -+ buf += snprintf(buf, end - buf, " node %d", -+ t->buffer->target_node->debug_id); -+ if (buf >= end) -+ return buf; -+ } -+ buf += snprintf(buf, end - buf, " size %d:%d data %p\n", -+ t->buffer->data_size, t->buffer->offsets_size, -+ t->buffer->data); -+ return buf; -+} -+ -+static char *print_binder_buffer(char *buf, char *end, const char *prefix, struct binder_buffer *buffer) -+{ -+ buf += snprintf(buf, end - buf, "%s %d: %p size %d:%d %s\n", -+ prefix, buffer->debug_id, buffer->data, -+ buffer->data_size, buffer->offsets_size, -+ buffer->transaction ? "active" : "delivered"); -+ return buf; -+} -+ -+static char *print_binder_work(char *buf, char *end, const char *prefix, -+ const char *transaction_prefix, struct binder_work *w) -+{ -+ struct binder_node *node; -+ struct binder_transaction *t; -+ -+ switch (w->type) { -+ case BINDER_WORK_TRANSACTION: -+ t = container_of(w, struct binder_transaction, work); -+ buf = print_binder_transaction(buf, end, transaction_prefix, t); -+ break; -+ case BINDER_WORK_TRANSACTION_COMPLETE: -+ buf += snprintf(buf, end - buf, -+ "%stransaction complete\n", prefix); -+ break; -+ case BINDER_WORK_NODE: -+ node = container_of(w, struct binder_node, work); -+ buf += snprintf(buf, end - buf, "%snode work %d: u%p c%p\n", -+ prefix, node->debug_id, node->ptr, node->cookie); -+ break; -+ case BINDER_WORK_DEAD_BINDER: -+ buf += snprintf(buf, end - buf, "%shas dead binder\n", prefix); -+ break; -+ case BINDER_WORK_DEAD_BINDER_AND_CLEAR: -+ buf += snprintf(buf, end - buf, -+ "%shas cleared dead binder\n", prefix); -+ break; -+ case BINDER_WORK_CLEAR_DEATH_NOTIFICATION: -+ buf += snprintf(buf, end - buf, -+ "%shas cleared death notification\n", prefix); -+ break; -+ default: -+ buf += snprintf(buf, end - buf, "%sunknown work: type %d\n", -+ prefix, w->type); -+ break; -+ } -+ return buf; -+} -+ -+static char *print_binder_thread(char *buf, char *end, struct binder_thread *thread, int print_always) -+{ -+ struct binder_transaction *t; -+ struct binder_work *w; -+ char *start_buf = buf; -+ char *header_buf; -+ -+ buf += snprintf(buf, end - buf, " thread %d: l %02x\n", thread->pid, thread->looper); -+ header_buf = buf; -+ t = thread->transaction_stack; -+ while (t) { -+ if (buf >= end) -+ break; -+ if (t->from == thread) { -+ buf = print_binder_transaction(buf, end, " outgoing transaction", t); -+ t = t->from_parent; -+ } else if (t->to_thread == thread) { -+ buf = print_binder_transaction(buf, end, " incoming transaction", t); -+ t = t->to_parent; -+ } else { -+ buf = print_binder_transaction(buf, end, " bad transaction", t); -+ t = NULL; -+ } -+ } -+ list_for_each_entry(w, &thread->todo, entry) { -+ if (buf >= end) -+ break; -+ buf = print_binder_work(buf, end, " ", -+ " pending transaction", w); -+ } -+ if (!print_always && buf == header_buf) -+ buf = start_buf; -+ return buf; -+} -+ -+static char *print_binder_node(char *buf, char *end, struct binder_node *node) -+{ -+ struct binder_ref *ref; -+ struct hlist_node *pos; -+ struct binder_work *w; -+ int count; -+ count = 0; -+ hlist_for_each_entry(ref, pos, &node->refs, node_entry) -+ count++; -+ -+ buf += snprintf(buf, end - buf, " node %d: u%p c%p hs %d hw %d ls %d lw %d is %d iw %d", -+ node->debug_id, node->ptr, node->cookie, -+ node->has_strong_ref, node->has_weak_ref, -+ node->local_strong_refs, node->local_weak_refs, -+ node->internal_strong_refs, count); -+ if (buf >= end) -+ return buf; -+ if (count) { -+ buf += snprintf(buf, end - buf, " proc"); -+ if (buf >= end) -+ return buf; -+ hlist_for_each_entry(ref, pos, &node->refs, node_entry) { -+ buf += snprintf(buf, end - buf, " %d", ref->proc->pid); -+ if (buf >= end) -+ return buf; -+ } -+ } -+ buf += snprintf(buf, end - buf, "\n"); -+ list_for_each_entry(w, &node->async_todo, entry) { -+ if (buf >= end) -+ break; -+ buf = print_binder_work(buf, end, " ", -+ " pending async transaction", w); -+ } -+ return buf; -+} -+ -+static char *print_binder_ref(char *buf, char *end, struct binder_ref *ref) -+{ -+ buf += snprintf(buf, end - buf, " ref %d: desc %d %snode %d s %d w %d d %p\n", -+ ref->debug_id, ref->desc, ref->node->proc ? "" : "dead ", -+ ref->node->debug_id, ref->strong, ref->weak, ref->death); -+ return buf; -+} -+ -+static char *print_binder_proc(char *buf, char *end, struct binder_proc *proc, int print_all) -+{ -+ struct binder_work *w; -+ struct rb_node *n; -+ char *start_buf = buf; -+ char *header_buf; -+ -+ buf += snprintf(buf, end - buf, "proc %d\n", proc->pid); -+ header_buf = buf; -+ -+ for (n = rb_first(&proc->threads); n != NULL && buf < end; n = rb_next(n)) -+ buf = print_binder_thread(buf, end, rb_entry(n, struct binder_thread, rb_node), print_all); -+ for (n = rb_first(&proc->nodes); n != NULL && buf < end; n = rb_next(n)) { -+ struct binder_node *node = rb_entry(n, struct binder_node, rb_node); -+ if (print_all || node->has_async_transaction) -+ buf = print_binder_node(buf, end, node); -+ } -+ if (print_all) { -+ for (n = rb_first(&proc->refs_by_desc); n != NULL && buf < end; n = rb_next(n)) -+ buf = print_binder_ref(buf, end, rb_entry(n, struct binder_ref, rb_node_desc)); -+ } -+ for (n = rb_first(&proc->allocated_buffers); n != NULL && buf < end; n = rb_next(n)) -+ buf = print_binder_buffer(buf, end, " buffer", rb_entry(n, struct binder_buffer, rb_node)); -+ list_for_each_entry(w, &proc->todo, entry) { -+ if (buf >= end) -+ break; -+ buf = print_binder_work(buf, end, " ", -+ " pending transaction", w); -+ } -+ list_for_each_entry(w, &proc->delivered_death, entry) { -+ if (buf >= end) -+ break; -+ buf += snprintf(buf, end - buf, " has delivered dead binder\n"); -+ break; -+ } -+ if (!print_all && buf == header_buf) -+ buf = start_buf; -+ return buf; -+} -+ -+static const char *binder_return_strings[] = { -+ "BR_ERROR", -+ "BR_OK", -+ "BR_TRANSACTION", -+ "BR_REPLY", -+ "BR_ACQUIRE_RESULT", -+ "BR_DEAD_REPLY", -+ "BR_TRANSACTION_COMPLETE", -+ "BR_INCREFS", -+ "BR_ACQUIRE", -+ "BR_RELEASE", -+ "BR_DECREFS", -+ "BR_ATTEMPT_ACQUIRE", -+ "BR_NOOP", -+ "BR_SPAWN_LOOPER", -+ "BR_FINISHED", -+ "BR_DEAD_BINDER", -+ "BR_CLEAR_DEATH_NOTIFICATION_DONE", -+ "BR_FAILED_REPLY" -+}; -+ -+static const char *binder_command_strings[] = { -+ "BC_TRANSACTION", -+ "BC_REPLY", -+ "BC_ACQUIRE_RESULT", -+ "BC_FREE_BUFFER", -+ "BC_INCREFS", -+ "BC_ACQUIRE", -+ "BC_RELEASE", -+ "BC_DECREFS", -+ "BC_INCREFS_DONE", -+ "BC_ACQUIRE_DONE", -+ "BC_ATTEMPT_ACQUIRE", -+ "BC_REGISTER_LOOPER", -+ "BC_ENTER_LOOPER", -+ "BC_EXIT_LOOPER", -+ "BC_REQUEST_DEATH_NOTIFICATION", -+ "BC_CLEAR_DEATH_NOTIFICATION", -+ "BC_DEAD_BINDER_DONE" -+}; -+ -+static const char *binder_objstat_strings[] = { -+ "proc", -+ "thread", -+ "node", -+ "ref", -+ "death", -+ "transaction", -+ "transaction_complete" -+}; -+ -+static char *print_binder_stats(char *buf, char *end, const char *prefix, struct binder_stats *stats) -+{ -+ int i; -+ -+ BUILD_BUG_ON(ARRAY_SIZE(stats->bc) != ARRAY_SIZE(binder_command_strings)); -+ for (i = 0; i < ARRAY_SIZE(stats->bc); i++) { -+ if (stats->bc[i]) -+ buf += snprintf(buf, end - buf, "%s%s: %d\n", prefix, -+ binder_command_strings[i], stats->bc[i]); -+ if (buf >= end) -+ return buf; -+ } -+ -+ BUILD_BUG_ON(ARRAY_SIZE(stats->br) != ARRAY_SIZE(binder_return_strings)); -+ for (i = 0; i < ARRAY_SIZE(stats->br); i++) { -+ if (stats->br[i]) -+ buf += snprintf(buf, end - buf, "%s%s: %d\n", prefix, -+ binder_return_strings[i], stats->br[i]); -+ if (buf >= end) -+ return buf; -+ } -+ -+ BUILD_BUG_ON(ARRAY_SIZE(stats->obj_created) != ARRAY_SIZE(binder_objstat_strings)); -+ BUILD_BUG_ON(ARRAY_SIZE(stats->obj_created) != ARRAY_SIZE(stats->obj_deleted)); -+ for (i = 0; i < ARRAY_SIZE(stats->obj_created); i++) { -+ if (stats->obj_created[i] || stats->obj_deleted[i]) -+ buf += snprintf(buf, end - buf, "%s%s: active %d total %d\n", prefix, -+ binder_objstat_strings[i], -+ stats->obj_created[i] - stats->obj_deleted[i], -+ stats->obj_created[i]); -+ if (buf >= end) -+ return buf; -+ } -+ return buf; -+} -+ -+static char *print_binder_proc_stats(char *buf, char *end, struct binder_proc *proc) -+{ -+ struct binder_work *w; -+ struct rb_node *n; -+ int count, strong, weak; -+ -+ buf += snprintf(buf, end - buf, "proc %d\n", proc->pid); -+ if (buf >= end) -+ return buf; -+ count = 0; -+ for (n = rb_first(&proc->threads); n != NULL; n = rb_next(n)) -+ count++; -+ buf += snprintf(buf, end - buf, " threads: %d\n", count); -+ if (buf >= end) -+ return buf; -+ buf += snprintf(buf, end - buf, " requested threads: %d+%d/%d\n" -+ " ready threads %d\n" -+ " free async space %d\n", proc->requested_threads, -+ proc->requested_threads_started, proc->max_threads, -+ proc->ready_threads, proc->free_async_space); -+ if (buf >= end) -+ return buf; -+ count = 0; -+ for (n = rb_first(&proc->nodes); n != NULL; n = rb_next(n)) -+ count++; -+ buf += snprintf(buf, end - buf, " nodes: %d\n", count); -+ if (buf >= end) -+ return buf; -+ count = 0; -+ strong = 0; -+ weak = 0; -+ for (n = rb_first(&proc->refs_by_desc); n != NULL; n = rb_next(n)) { -+ struct binder_ref *ref = rb_entry(n, struct binder_ref, rb_node_desc); -+ count++; -+ strong += ref->strong; -+ weak += ref->weak; -+ } -+ buf += snprintf(buf, end - buf, " refs: %d s %d w %d\n", count, strong, weak); -+ if (buf >= end) -+ return buf; -+ -+ count = 0; -+ for (n = rb_first(&proc->allocated_buffers); n != NULL; n = rb_next(n)) -+ count++; -+ buf += snprintf(buf, end - buf, " buffers: %d\n", count); -+ if (buf >= end) -+ return buf; -+ -+ count = 0; -+ list_for_each_entry(w, &proc->todo, entry) { -+ switch (w->type) { -+ case BINDER_WORK_TRANSACTION: -+ count++; -+ break; -+ default: -+ break; -+ } -+ } -+ buf += snprintf(buf, end - buf, " pending transactions: %d\n", count); -+ if (buf >= end) -+ return buf; -+ -+ buf = print_binder_stats(buf, end, " ", &proc->stats); -+ -+ return buf; -+} -+ -+ -+static int binder_read_proc_state( -+ char *page, char **start, off_t off, int count, int *eof, void *data) -+{ -+ struct binder_proc *proc; -+ struct hlist_node *pos; -+ struct binder_node *node; -+ int len = 0; -+ char *buf = page; -+ char *end = page + PAGE_SIZE; -+ int do_lock = !binder_debug_no_lock; -+ -+ if (off) -+ return 0; -+ -+ if (do_lock) -+ mutex_lock(&binder_lock); -+ -+ buf += snprintf(buf, end - buf, "binder state:\n"); -+ -+ if (!hlist_empty(&binder_dead_nodes)) -+ buf += snprintf(buf, end - buf, "dead nodes:\n"); -+ hlist_for_each_entry(node, pos, &binder_dead_nodes, dead_node) { -+ if (buf >= end) -+ break; -+ buf = print_binder_node(buf, end, node); -+ } -+ -+ hlist_for_each_entry(proc, pos, &binder_procs, proc_node) { -+ if (buf >= end) -+ break; -+ buf = print_binder_proc(buf, end, proc, 1); -+ } -+ if (do_lock) -+ mutex_unlock(&binder_lock); -+ if (buf > page + PAGE_SIZE) -+ buf = page + PAGE_SIZE; -+ -+ *start = page + off; -+ -+ len = buf - page; -+ if (len > off) -+ len -= off; -+ else -+ len = 0; -+ -+ return len < count ? len : count; -+} -+ -+static int binder_read_proc_stats( -+ char *page, char **start, off_t off, int count, int *eof, void *data) -+{ -+ struct binder_proc *proc; -+ struct hlist_node *pos; -+ int len = 0; -+ char *p = page; -+ int do_lock = !binder_debug_no_lock; -+ -+ if (off) -+ return 0; -+ -+ if (do_lock) -+ mutex_lock(&binder_lock); -+ -+ p += snprintf(p, PAGE_SIZE, "binder stats:\n"); -+ -+ p = print_binder_stats(p, page + PAGE_SIZE, "", &binder_stats); -+ -+ hlist_for_each_entry(proc, pos, &binder_procs, proc_node) { -+ if (p >= page + PAGE_SIZE) -+ break; -+ p = print_binder_proc_stats(p, page + PAGE_SIZE, proc); -+ } -+ if (do_lock) -+ mutex_unlock(&binder_lock); -+ if (p > page + PAGE_SIZE) -+ p = page + PAGE_SIZE; -+ -+ *start = page + off; -+ -+ len = p - page; -+ if (len > off) -+ len -= off; -+ else -+ len = 0; -+ -+ return len < count ? len : count; -+} -+ -+static int binder_read_proc_transactions( -+ char *page, char **start, off_t off, int count, int *eof, void *data) -+{ -+ struct binder_proc *proc; -+ struct hlist_node *pos; -+ int len = 0; -+ char *buf = page; -+ char *end = page + PAGE_SIZE; -+ int do_lock = !binder_debug_no_lock; -+ -+ if (off) -+ return 0; -+ -+ if (do_lock) -+ mutex_lock(&binder_lock); -+ -+ buf += snprintf(buf, end - buf, "binder transactions:\n"); -+ hlist_for_each_entry(proc, pos, &binder_procs, proc_node) { -+ if (buf >= end) -+ break; -+ buf = print_binder_proc(buf, end, proc, 0); -+ } -+ if (do_lock) -+ mutex_unlock(&binder_lock); -+ if (buf > page + PAGE_SIZE) -+ buf = page + PAGE_SIZE; -+ -+ *start = page + off; -+ -+ len = buf - page; -+ if (len > off) -+ len -= off; -+ else -+ len = 0; -+ -+ return len < count ? len : count; -+} -+ -+static int binder_read_proc_proc( -+ char *page, char **start, off_t off, int count, int *eof, void *data) -+{ -+ struct binder_proc *proc = data; -+ int len = 0; -+ char *p = page; -+ int do_lock = !binder_debug_no_lock; -+ -+ if (off) -+ return 0; -+ -+ if (do_lock) -+ mutex_lock(&binder_lock); -+ p += snprintf(p, PAGE_SIZE, "binder proc state:\n"); -+ p = print_binder_proc(p, page + PAGE_SIZE, proc, 1); -+ if (do_lock) -+ mutex_unlock(&binder_lock); -+ -+ if (p > page + PAGE_SIZE) -+ p = page + PAGE_SIZE; -+ *start = page + off; -+ -+ len = p - page; -+ if (len > off) -+ len -= off; -+ else -+ len = 0; -+ -+ return len < count ? len : count; -+} -+ -+static char *print_binder_transaction_log_entry(char *buf, char *end, struct binder_transaction_log_entry *e) -+{ -+ buf += snprintf(buf, end - buf, "%d: %s from %d:%d to %d:%d node %d handle %d size %d:%d\n", -+ e->debug_id, (e->call_type == 2) ? "reply" : -+ ((e->call_type == 1) ? "async" : "call "), e->from_proc, -+ e->from_thread, e->to_proc, e->to_thread, e->to_node, -+ e->target_handle, e->data_size, e->offsets_size); -+ return buf; -+} -+ -+static int binder_read_proc_transaction_log( -+ char *page, char **start, off_t off, int count, int *eof, void *data) -+{ -+ struct binder_transaction_log *log = data; -+ int len = 0; -+ int i; -+ char *buf = page; -+ char *end = page + PAGE_SIZE; -+ -+ if (off) -+ return 0; -+ -+ if (log->full) { -+ for (i = log->next; i < ARRAY_SIZE(log->entry); i++) { -+ if (buf >= end) -+ break; -+ buf = print_binder_transaction_log_entry(buf, end, &log->entry[i]); -+ } -+ } -+ for (i = 0; i < log->next; i++) { -+ if (buf >= end) -+ break; -+ buf = print_binder_transaction_log_entry(buf, end, &log->entry[i]); -+ } -+ -+ *start = page + off; -+ -+ len = buf - page; -+ if (len > off) -+ len -= off; -+ else -+ len = 0; -+ -+ return len < count ? len : count; -+} -+ -+static struct file_operations binder_fops = { -+ .owner = THIS_MODULE, -+ .poll = binder_poll, -+ .unlocked_ioctl = binder_ioctl, -+ .mmap = binder_mmap, -+ .open = binder_open, -+ .flush = binder_flush, -+ .release = binder_release, -+}; -+ -+static struct miscdevice binder_miscdev = { -+ .minor = MISC_DYNAMIC_MINOR, -+ .name = "binder", -+ .fops = &binder_fops -+}; -+ -+static int __init binder_init(void) -+{ -+ int ret; -+ -+ binder_proc_dir_entry_root = proc_mkdir("binder", NULL); -+ if (binder_proc_dir_entry_root) -+ binder_proc_dir_entry_proc = proc_mkdir("proc", binder_proc_dir_entry_root); -+ ret = misc_register(&binder_miscdev); -+ if (binder_proc_dir_entry_root) { -+ create_proc_read_entry("state", S_IRUGO, binder_proc_dir_entry_root, binder_read_proc_state, NULL); -+ create_proc_read_entry("stats", S_IRUGO, binder_proc_dir_entry_root, binder_read_proc_stats, NULL); -+ create_proc_read_entry("transactions", S_IRUGO, binder_proc_dir_entry_root, binder_read_proc_transactions, NULL); -+ create_proc_read_entry("transaction_log", S_IRUGO, binder_proc_dir_entry_root, binder_read_proc_transaction_log, &binder_transaction_log); -+ create_proc_read_entry("failed_transaction_log", S_IRUGO, binder_proc_dir_entry_root, binder_read_proc_transaction_log, &binder_transaction_log_failed); -+ } -+ return ret; -+} -+ -+device_initcall(binder_init); -+ ---- /dev/null -+++ b/drivers/android/Kconfig -@@ -0,0 +1,93 @@ -+menu "Android" -+ -+config ANDROID_BINDER_IPC -+ tristate "Binder IPC Driver" -+ default y -+ -+config ANDROID_POWER -+ bool "Android power driver" -+ depends on PM && RTC_CLASS -+ default n -+ -+config ANDROID_POWER_STAT -+ bool "Android power driver lock stats" -+ depends on ANDROID_POWER -+ default y -+ -+config ANDROID_POWER_ALARM -+ bool "Android alarm driver" -+ depends on ANDROID_POWER -+ default y -+ -+config ANDROID_LOGGER -+ bool "Android log driver" -+ default y -+ -+config ANDROID_RAM_CONSOLE -+ bool "RAM buffer console" -+ default n -+ -+config ANDROID_RAM_CONSOLE_ENABLE_VERBOSE -+ bool "Enable verbose console messages" -+ default y -+ depends on ANDROID_RAM_CONSOLE -+ -+menuconfig ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ bool "Enable error correction" -+ default n -+ depends on ANDROID_RAM_CONSOLE -+ select REED_SOLOMON -+ select REED_SOLOMON_ENC8 -+ select REED_SOLOMON_DEC8 -+ -+if ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ -+config ANDROID_RAM_CONSOLE_ERROR_CORRECTION_DATA_SIZE -+ int "Data data size" -+ default 128 -+ help -+ Must be a power of 2. -+ -+config ANDROID_RAM_CONSOLE_ERROR_CORRECTION_ECC_SIZE -+ int "ECC size" -+ default 16 -+ -+config ANDROID_RAM_CONSOLE_ERROR_CORRECTION_SYMBOL_SIZE -+ int "Symbol size" -+ default 8 -+ -+config ANDROID_RAM_CONSOLE_ERROR_CORRECTION_POLYNOMIAL -+ hex "Polynomial" -+ default 0x19 if (ANDROID_RAM_CONSOLE_ERROR_CORRECTION_SYMBOL_SIZE = 4) -+ default 0x29 if (ANDROID_RAM_CONSOLE_ERROR_CORRECTION_SYMBOL_SIZE = 5) -+ default 0x61 if (ANDROID_RAM_CONSOLE_ERROR_CORRECTION_SYMBOL_SIZE = 6) -+ default 0x89 if (ANDROID_RAM_CONSOLE_ERROR_CORRECTION_SYMBOL_SIZE = 7) -+ default 0x11d if (ANDROID_RAM_CONSOLE_ERROR_CORRECTION_SYMBOL_SIZE = 8) -+ -+endif #ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ -+config ANDROID_RAM_CONSOLE_EARLY_INIT -+ bool "Start ram console early" -+ default n -+ depends on ANDROID_RAM_CONSOLE -+ -+config ANDROID_RAM_CONSOLE_EARLY_ADDR -+ hex "RAM console virtual address" -+ default 0 -+ depends on ANDROID_RAM_CONSOLE_EARLY_INIT -+ -+config ANDROID_RAM_CONSOLE_EARLY_SIZE -+ hex "RAM console buffer size" -+ default 0 -+ depends on ANDROID_RAM_CONSOLE_EARLY_INIT -+ -+config ANDROID_TIMED_GPIO -+ bool "Android timed gpio driver" -+ depends on GENERIC_GPIO -+ default y -+ -+config ANDROID_PARANOID_NETWORK -+ bool "Only allow certain groups to create sockets" -+ default y -+ -+endmenu ---- /dev/null -+++ b/drivers/android/logger.c -@@ -0,0 +1,607 @@ -+/* -+ * drivers/android/logger.c -+ * -+ * Android Logging Subsystem -+ * -+ * Copyright (C) 2007-2008 Google, Inc. -+ * -+ * Robert Love <rlove@google.com> -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ */ -+ -+#include <linux/module.h> -+#include <linux/fs.h> -+#include <linux/miscdevice.h> -+#include <linux/uaccess.h> -+#include <linux/poll.h> -+#include <linux/time.h> -+#include <linux/logger.h> -+ -+#include <asm/ioctls.h> -+ -+/* -+ * struct logger_log - represents a specific log, such as 'main' or 'radio' -+ * -+ * This structure lives from module insertion until module removal, so it does -+ * not need additional reference counting. The structure is protected by the -+ * mutex 'mutex'. -+ */ -+struct logger_log { -+ unsigned char * buffer; /* the ring buffer itself */ -+ struct miscdevice misc; /* misc device representing the log */ -+ wait_queue_head_t wq; /* wait queue for readers */ -+ struct list_head readers; /* this log's readers */ -+ struct mutex mutex; /* mutex protecting buffer */ -+ size_t w_off; /* current write head offset */ -+ size_t head; /* new readers start here */ -+ size_t size; /* size of the log */ -+}; -+ -+/* -+ * struct logger_reader - a logging device open for reading -+ * -+ * This object lives from open to release, so we don't need additional -+ * reference counting. The structure is protected by log->mutex. -+ */ -+struct logger_reader { -+ struct logger_log * log; /* associated log */ -+ struct list_head list; /* entry in logger_log's list */ -+ size_t r_off; /* current read head offset */ -+}; -+ -+/* logger_offset - returns index 'n' into the log via (optimized) modulus */ -+#define logger_offset(n) ((n) & (log->size - 1)) -+ -+/* -+ * file_get_log - Given a file structure, return the associated log -+ * -+ * This isn't aesthetic. We have several goals: -+ * -+ * 1) Need to quickly obtain the associated log during an I/O operation -+ * 2) Readers need to maintain state (logger_reader) -+ * 3) Writers need to be very fast (open() should be a near no-op) -+ * -+ * In the reader case, we can trivially go file->logger_reader->logger_log. -+ * For a writer, we don't want to maintain a logger_reader, so we just go -+ * file->logger_log. Thus what file->private_data points at depends on whether -+ * or not the file was opened for reading. This function hides that dirtiness. -+ */ -+static inline struct logger_log * file_get_log(struct file *file) -+{ -+ if (file->f_mode & FMODE_READ) { -+ struct logger_reader *reader = file->private_data; -+ return reader->log; -+ } else -+ return file->private_data; -+} -+ -+/* -+ * get_entry_len - Grabs the length of the payload of the next entry starting -+ * from 'off'. -+ * -+ * Caller needs to hold log->mutex. -+ */ -+static __u32 get_entry_len(struct logger_log *log, size_t off) -+{ -+ __u16 val; -+ -+ switch (log->size - off) { -+ case 1: -+ memcpy(&val, log->buffer + off, 1); -+ memcpy(((char *) &val) + 1, log->buffer, 1); -+ break; -+ default: -+ memcpy(&val, log->buffer + off, 2); -+ } -+ -+ return sizeof(struct logger_entry) + val; -+} -+ -+/* -+ * do_read_log_to_user - reads exactly 'count' bytes from 'log' into the -+ * user-space buffer 'buf'. Returns 'count' on success. -+ * -+ * Caller must hold log->mutex. -+ */ -+static ssize_t do_read_log_to_user(struct logger_log *log, -+ struct logger_reader *reader, -+ char __user *buf, -+ size_t count) -+{ -+ size_t len; -+ -+ /* -+ * We read from the log in two disjoint operations. First, we read from -+ * the current read head offset up to 'count' bytes or to the end of -+ * the log, whichever comes first. -+ */ -+ len = min(count, log->size - reader->r_off); -+ if (copy_to_user(buf, log->buffer + reader->r_off, len)) -+ return -EFAULT; -+ -+ /* -+ * Second, we read any remaining bytes, starting back at the head of -+ * the log. -+ */ -+ if (count != len) -+ if (copy_to_user(buf + len, log->buffer, count - len)) -+ return -EFAULT; -+ -+ reader->r_off = logger_offset(reader->r_off + count); -+ -+ return count; -+} -+ -+/* -+ * logger_read - our log's read() method -+ * -+ * Behavior: -+ * -+ * - O_NONBLOCK works -+ * - If there are no log entries to read, blocks until log is written to -+ * - Atomically reads exactly one log entry -+ * -+ * Optimal read size is LOGGER_ENTRY_MAX_LEN. Will set errno to EINVAL if read -+ * buffer is insufficient to hold next entry. -+ */ -+static ssize_t logger_read(struct file *file, char __user *buf, -+ size_t count, loff_t *pos) -+{ -+ struct logger_reader *reader = file->private_data; -+ struct logger_log *log = reader->log; -+ ssize_t ret; -+ DEFINE_WAIT(wait); -+ -+start: -+ while (1) { -+ prepare_to_wait(&log->wq, &wait, TASK_INTERRUPTIBLE); -+ -+ mutex_lock(&log->mutex); -+ ret = (log->w_off == reader->r_off); -+ mutex_unlock(&log->mutex); -+ if (!ret) -+ break; -+ -+ if (file->f_flags & O_NONBLOCK) { -+ ret = -EAGAIN; -+ break; -+ } -+ -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ break; -+ } -+ -+ schedule(); -+ } -+ -+ finish_wait(&log->wq, &wait); -+ if (ret) -+ return ret; -+ -+ mutex_lock(&log->mutex); -+ -+ /* is there still something to read or did we race? */ -+ if (unlikely(log->w_off == reader->r_off)) { -+ mutex_unlock(&log->mutex); -+ goto start; -+ } -+ -+ /* get the size of the next entry */ -+ ret = get_entry_len(log, reader->r_off); -+ if (count < ret) { -+ ret = -EINVAL; -+ goto out; -+ } -+ -+ /* get exactly one entry from the log */ -+ ret = do_read_log_to_user(log, reader, buf, ret); -+ -+out: -+ mutex_unlock(&log->mutex); -+ -+ return ret; -+} -+ -+/* -+ * get_next_entry - return the offset of the first valid entry at least 'len' -+ * bytes after 'off'. -+ * -+ * Caller must hold log->mutex. -+ */ -+static size_t get_next_entry(struct logger_log *log, size_t off, size_t len) -+{ -+ size_t count = 0; -+ -+ do { -+ size_t nr = get_entry_len(log, off); -+ off = logger_offset(off + nr); -+ count += nr; -+ } while (count < len); -+ -+ return off; -+} -+ -+/* -+ * clock_interval - is a < c < b in mod-space? Put another way, does the line -+ * from a to b cross c? -+ */ -+static inline int clock_interval(size_t a, size_t b, size_t c) -+{ -+ if (b < a) { -+ if (a < c || b >= c) -+ return 1; -+ } else { -+ if (a < c && b >= c) -+ return 1; -+ } -+ -+ return 0; -+} -+ -+/* -+ * fix_up_readers - walk the list of all readers and "fix up" any who were -+ * lapped by the writer; also do the same for the default "start head". -+ * We do this by "pulling forward" the readers and start head to the first -+ * entry after the new write head. -+ * -+ * The caller needs to hold log->mutex. -+ */ -+static void fix_up_readers(struct logger_log *log, size_t len) -+{ -+ size_t old = log->w_off; -+ size_t new = logger_offset(old + len); -+ struct logger_reader *reader; -+ -+ if (clock_interval(old, new, log->head)) -+ log->head = get_next_entry(log, log->head, len); -+ -+ list_for_each_entry(reader, &log->readers, list) -+ if (clock_interval(old, new, reader->r_off)) -+ reader->r_off = get_next_entry(log, reader->r_off, len); -+} -+ -+/* -+ * do_write_log - writes 'len' bytes from 'buf' to 'log' -+ * -+ * The caller needs to hold log->mutex. -+ */ -+static void do_write_log(struct logger_log *log, const void *buf, size_t count) -+{ -+ size_t len; -+ -+ len = min(count, log->size - log->w_off); -+ memcpy(log->buffer + log->w_off, buf, len); -+ -+ if (count != len) -+ memcpy(log->buffer, buf + len, count - len); -+ -+ log->w_off = logger_offset(log->w_off + count); -+ -+} -+ -+/* -+ * do_write_log_user - writes 'len' bytes from the user-space buffer 'buf' to -+ * the log 'log' -+ * -+ * The caller needs to hold log->mutex. -+ * -+ * Returns 'count' on success, negative error code on failure. -+ */ -+static ssize_t do_write_log_from_user(struct logger_log *log, -+ const void __user *buf, size_t count) -+{ -+ size_t len; -+ -+ len = min(count, log->size - log->w_off); -+ if (len && copy_from_user(log->buffer + log->w_off, buf, len)) -+ return -EFAULT; -+ -+ if (count != len) -+ if (copy_from_user(log->buffer, buf + len, count - len)) -+ return -EFAULT; -+ -+ log->w_off = logger_offset(log->w_off + count); -+ -+ return count; -+} -+ -+/* -+ * logger_aio_write - our write method, implementing support for write(), -+ * writev(), and aio_write(). Writes are our fast path, and we try to optimize -+ * them above all else. -+ */ -+ssize_t logger_aio_write(struct kiocb *iocb, const struct iovec *iov, -+ unsigned long nr_segs, loff_t ppos) -+{ -+ struct logger_log *log = file_get_log(iocb->ki_filp); -+ size_t orig = log->w_off; -+ struct logger_entry header; -+ struct timespec now; -+ ssize_t ret = 0; -+ -+ now = current_kernel_time(); -+ -+ header.pid = current->tgid; -+ header.tid = current->pid; -+ header.sec = now.tv_sec; -+ header.nsec = now.tv_nsec; -+ header.len = min_t(size_t, iocb->ki_left, LOGGER_ENTRY_MAX_PAYLOAD); -+ -+ /* null writes succeed, return zero */ -+ if (unlikely(!header.len)) -+ return 0; -+ -+ mutex_lock(&log->mutex); -+ -+ /* -+ * Fix up any readers, pulling them forward to the first readable -+ * entry after (what will be) the new write offset. We do this now -+ * because if we partially fail, we can end up with clobbered log -+ * entries that encroach on readable buffer. -+ */ -+ fix_up_readers(log, sizeof(struct logger_entry) + header.len); -+ -+ do_write_log(log, &header, sizeof(struct logger_entry)); -+ -+ while (nr_segs-- > 0) { -+ size_t len; -+ ssize_t nr; -+ -+ /* figure out how much of this vector we can keep */ -+ len = min_t(size_t, iov->iov_len, header.len - ret); -+ -+ /* write out this segment's payload */ -+ nr = do_write_log_from_user(log, iov->iov_base, len); -+ if (unlikely(nr < 0)) { -+ log->w_off = orig; -+ mutex_unlock(&log->mutex); -+ return nr; -+ } -+ -+ iov++; -+ ret += nr; -+ } -+ -+ mutex_unlock(&log->mutex); -+ -+ /* wake up any blocked readers */ -+ wake_up_interruptible(&log->wq); -+ -+ return ret; -+} -+ -+static struct logger_log * get_log_from_minor(int); -+ -+/* -+ * logger_open - the log's open() file operation -+ * -+ * Note how near a no-op this is in the write-only case. Keep it that way! -+ */ -+static int logger_open(struct inode *inode, struct file *file) -+{ -+ struct logger_log *log; -+ int ret; -+ -+ ret = nonseekable_open(inode, file); -+ if (ret) -+ return ret; -+ -+ log = get_log_from_minor(MINOR(inode->i_rdev)); -+ if (!log) -+ return -ENODEV; -+ -+ if (file->f_mode & FMODE_READ) { -+ struct logger_reader *reader; -+ -+ reader = kmalloc(sizeof(struct logger_reader), GFP_KERNEL); -+ if (!reader) -+ return -ENOMEM; -+ -+ reader->log = log; -+ INIT_LIST_HEAD(&reader->list); -+ -+ mutex_lock(&log->mutex); -+ reader->r_off = log->head; -+ list_add_tail(&reader->list, &log->readers); -+ mutex_unlock(&log->mutex); -+ -+ file->private_data = reader; -+ } else -+ file->private_data = log; -+ -+ return 0; -+} -+ -+/* -+ * logger_release - the log's release file operation -+ * -+ * Note this is a total no-op in the write-only case. Keep it that way! -+ */ -+static int logger_release(struct inode *ignored, struct file *file) -+{ -+ if (file->f_mode & FMODE_READ) { -+ struct logger_reader *reader = file->private_data; -+ list_del(&reader->list); -+ kfree(reader); -+ } -+ -+ return 0; -+} -+ -+/* -+ * logger_poll - the log's poll file operation, for poll/select/epoll -+ * -+ * Note we always return POLLOUT, because you can always write() to the log. -+ * Note also that, strictly speaking, a return value of POLLIN does not -+ * guarantee that the log is readable without blocking, as there is a small -+ * chance that the writer can lap the reader in the interim between poll() -+ * returning and the read() request. -+ */ -+static unsigned int logger_poll(struct file *file, poll_table *wait) -+{ -+ struct logger_reader *reader; -+ struct logger_log *log; -+ unsigned int ret = POLLOUT | POLLWRNORM; -+ -+ if (!(file->f_mode & FMODE_READ)) -+ return ret; -+ -+ reader = file->private_data; -+ log = reader->log; -+ -+ poll_wait(file, &log->wq, wait); -+ -+ mutex_lock(&log->mutex); -+ if (log->w_off != reader->r_off) -+ ret |= POLLIN | POLLRDNORM; -+ mutex_unlock(&log->mutex); -+ -+ return ret; -+} -+ -+static long logger_ioctl(struct file *file, unsigned int cmd, unsigned long arg) -+{ -+ struct logger_log *log = file_get_log(file); -+ struct logger_reader *reader; -+ long ret = -ENOTTY; -+ -+ mutex_lock(&log->mutex); -+ -+ switch (cmd) { -+ case LOGGER_GET_LOG_BUF_SIZE: -+ ret = log->size; -+ break; -+ case LOGGER_GET_LOG_LEN: -+ if (!(file->f_mode & FMODE_READ)) { -+ ret = -EBADF; -+ break; -+ } -+ reader = file->private_data; -+ if (log->w_off >= reader->r_off) -+ ret = log->w_off - reader->r_off; -+ else -+ ret = (log->size - reader->r_off) + log->w_off; -+ break; -+ case LOGGER_GET_NEXT_ENTRY_LEN: -+ if (!(file->f_mode & FMODE_READ)) { -+ ret = -EBADF; -+ break; -+ } -+ reader = file->private_data; -+ if (log->w_off != reader->r_off) -+ ret = get_entry_len(log, reader->r_off); -+ else -+ ret = 0; -+ break; -+ case LOGGER_FLUSH_LOG: -+ if (!(file->f_mode & FMODE_WRITE)) { -+ ret = -EBADF; -+ break; -+ } -+ list_for_each_entry(reader, &log->readers, list) -+ reader->r_off = log->w_off; -+ log->head = log->w_off; -+ ret = 0; -+ break; -+ } -+ -+ mutex_unlock(&log->mutex); -+ -+ return ret; -+} -+ -+static struct file_operations logger_fops = { -+ .owner = THIS_MODULE, -+ .read = logger_read, -+ .aio_write = logger_aio_write, -+ .poll = logger_poll, -+ .unlocked_ioctl = logger_ioctl, -+ .compat_ioctl = logger_ioctl, -+ .open = logger_open, -+ .release = logger_release, -+}; -+ -+/* -+ * Defines a log structure with name 'NAME' and a size of 'SIZE' bytes, which -+ * must be a power of two, greater than LOGGER_ENTRY_MAX_LEN, and less than -+ * LONG_MAX minus LOGGER_ENTRY_MAX_LEN. -+ */ -+#define DEFINE_LOGGER_DEVICE(VAR, NAME, SIZE) \ -+static unsigned char _buf_ ## VAR[SIZE]; \ -+static struct logger_log VAR = { \ -+ .buffer = _buf_ ## VAR, \ -+ .misc = { \ -+ .minor = MISC_DYNAMIC_MINOR, \ -+ .name = NAME, \ -+ .fops = &logger_fops, \ -+ .parent = NULL, \ -+ }, \ -+ .wq = __WAIT_QUEUE_HEAD_INITIALIZER(VAR .wq), \ -+ .readers = LIST_HEAD_INIT(VAR .readers), \ -+ .mutex = __MUTEX_INITIALIZER(VAR .mutex), \ -+ .w_off = 0, \ -+ .head = 0, \ -+ .size = SIZE, \ -+}; -+ -+DEFINE_LOGGER_DEVICE(log_main, LOGGER_LOG_MAIN, 64*1024) -+DEFINE_LOGGER_DEVICE(log_events, LOGGER_LOG_EVENTS, 256*1024) -+DEFINE_LOGGER_DEVICE(log_radio, LOGGER_LOG_RADIO, 64*1024) -+ -+static struct logger_log * get_log_from_minor(int minor) -+{ -+ if (log_main.misc.minor == minor) -+ return &log_main; -+ if (log_events.misc.minor == minor) -+ return &log_events; -+ if (log_radio.misc.minor == minor) -+ return &log_radio; -+ return NULL; -+} -+ -+static int __init init_log(struct logger_log *log) -+{ -+ int ret; -+ -+ ret = misc_register(&log->misc); -+ if (unlikely(ret)) { -+ printk(KERN_ERR "logger: failed to register misc " -+ "device for log '%s'!\n", log->misc.name); -+ return ret; -+ } -+ -+ printk(KERN_INFO "logger: created %luK log '%s'\n", -+ (unsigned long) log->size >> 10, log->misc.name); -+ -+ return 0; -+} -+ -+static int __init logger_init(void) -+{ -+ int ret; -+ -+ ret = init_log(&log_main); -+ if (unlikely(ret)) -+ goto out; -+ -+ ret = init_log(&log_events); -+ if (unlikely(ret)) -+ goto out; -+ -+ ret = init_log(&log_radio); -+ if (unlikely(ret)) -+ goto out; -+ -+out: -+ return ret; -+} -+device_initcall(logger_init); ---- /dev/null -+++ b/drivers/android/Makefile -@@ -0,0 +1,6 @@ -+obj-$(CONFIG_ANDROID_BINDER_IPC) += binder.o -+obj-$(CONFIG_ANDROID_POWER) += power.o -+obj-$(CONFIG_ANDROID_POWER_ALARM) += alarm.o -+obj-$(CONFIG_ANDROID_LOGGER) += logger.o -+obj-$(CONFIG_ANDROID_RAM_CONSOLE) += ram_console.o -+obj-$(CONFIG_ANDROID_TIMED_GPIO) += timed_gpio.o ---- /dev/null -+++ b/drivers/android/power.c -@@ -0,0 +1,1336 @@ -+/* drivers/android/power.c -+ * -+ * Copyright (C) 2005-2008 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#include <linux/list.h> -+#include <linux/module.h> -+#include <linux/miscdevice.h> -+//#include <linux/platform_device.h> -+#include <linux/sysdev.h> -+#include <linux/fs.h> -+#include <linux/poll.h> -+#include <linux/interrupt.h> -+#include <linux/delay.h> -+#include <linux/clk.h> -+#include <linux/rtc.h> -+#include <linux/wait.h> -+#include <linux/android_power.h> -+#include <linux/suspend.h> -+#include <linux/syscalls.h> // sys_sync -+#include <linux/console.h> -+#include <linux/kbd_kern.h> -+#include <linux/vt_kern.h> -+#include <linux/freezer.h> -+#ifdef CONFIG_ANDROID_POWER_STAT -+#include <linux/proc_fs.h> -+#endif -+ -+enum { -+ ANDROID_POWER_DEBUG_USER_STATE = 1U << 0, -+ ANDROID_POWER_DEBUG_EXIT_SUSPEND = 1U << 1, -+ ANDROID_POWER_DEBUG_SUSPEND = 1U << 2, -+ ANDROID_POWER_DEBUG_USER_WAKE_LOCK = 1U << 3, -+ ANDROID_POWER_DEBUG_WAKE_LOCK = 1U << 4, -+}; -+static int android_power_debug_mask = -+ ANDROID_POWER_DEBUG_USER_STATE | ANDROID_POWER_DEBUG_EXIT_SUSPEND; -+module_param_named(debug_mask, android_power_debug_mask, -+ int, S_IRUGO | S_IWUSR | S_IWGRP); -+ -+#define ANDROID_POWER_TEST_EARLY_SUSPEND 0 -+ -+MODULE_DESCRIPTION("OMAP CSMI Driver"); -+MODULE_LICENSE("GPL"); -+MODULE_VERSION("1.0"); -+ -+#define ANDROID_SUSPEND_CONSOLE (MAX_NR_CONSOLES-2) -+ -+static spinlock_t g_list_lock = SPIN_LOCK_UNLOCKED; -+static DEFINE_MUTEX(g_early_suspend_lock); -+ -+wait_queue_head_t g_wait_queue; -+ -+static LIST_HEAD(g_inactive_locks); -+static LIST_HEAD(g_active_idle_wake_locks); -+static LIST_HEAD(g_active_partial_wake_locks); -+static LIST_HEAD(g_active_full_wake_locks); -+static LIST_HEAD(g_early_suspend_handlers); -+static enum { -+ USER_AWAKE, -+ USER_NOTIFICATION, -+ USER_SLEEP -+} g_user_suspend_state; -+static int g_current_event_num; -+static struct workqueue_struct *g_suspend_work_queue; -+static void android_power_suspend(struct work_struct *work); -+static void android_power_wakeup_locked(int notification, ktime_t time); -+static DECLARE_WORK(g_suspend_work, android_power_suspend); -+static int g_max_user_lockouts = 16; -+ -+//static const char g_free_user_lockout_name[] = "free_user"; -+static struct { -+ enum { -+ USER_WAKE_LOCK_INACTIVE, -+ USER_WAKE_LOCK_PARTIAL, -+ USER_WAKE_LOCK_FULL -+ } state; -+ android_suspend_lock_t suspend_lock; -+ char name_buffer[32]; -+} *g_user_wake_locks; -+#ifdef CONFIG_ANDROID_POWER_STAT -+android_suspend_lock_t g_deleted_wake_locks; -+android_suspend_lock_t g_no_wake_locks; -+#endif -+static struct kobject *android_power_kobj; -+#ifndef CONFIG_FRAMEBUFFER_CONSOLE -+static wait_queue_head_t fb_state_wq; -+static spinlock_t fb_state_lock = SPIN_LOCK_UNLOCKED; -+int fb_state; -+#endif -+ -+#if 0 -+android_suspend_lock_t *android_allocate_suspend_lock(const char *debug_name) -+{ -+ unsigned long irqflags; -+ struct android_power *e; -+ -+ e = kzalloc(sizeof(*e), GFP_KERNEL); -+ if(e == NULL) { -+ printk("android_power_allocate: kzalloc failed\n"); -+ return NULL; -+ } -+ e->name = debug_name; -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ list_add(&e->link, &g_allocated); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return e; -+} -+#endif -+ -+static int android_init_suspend_lock_internal( -+ android_suspend_lock_t *lock, int has_spin_lock) -+{ -+ unsigned long irqflags; -+ -+ if(lock->name == NULL) { -+ printk(KERN_ERR "android_init_suspend_lock: error name=NULL, " -+ "lock=%p\n", lock); -+ dump_stack(); -+ return -EINVAL; -+ } -+ -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_init_suspend_lock name=%s\n", -+ lock->name); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ lock->stat.count = 0; -+ lock->stat.expire_count = 0; -+ lock->stat.total_time = ktime_set(0, 0); -+ lock->stat.max_time = ktime_set(0, 0); -+ lock->stat.last_time = ktime_set(0, 0); -+#endif -+ lock->flags = 0; -+ -+ INIT_LIST_HEAD(&lock->link); -+ if (!has_spin_lock) -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ list_add(&lock->link, &g_inactive_locks); -+ if (!has_spin_lock) -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+// if(lock->flags & ANDROID_SUSPEND_LOCK_FLAG_USER_VISIBLE_MASK) { -+// sysfs_create_file(struct kobject * k, const struct attribute * a) -+// } -+ return 0; -+} -+ -+int android_init_suspend_lock(android_suspend_lock_t *lock) -+{ -+ return android_init_suspend_lock_internal(lock, 0); -+} -+ -+void android_uninit_suspend_lock(android_suspend_lock_t *lock) -+{ -+ unsigned long irqflags; -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_uninit_suspend_lock name=%s\n", -+ lock->name); -+ spin_lock_irqsave(&g_list_lock, irqflags); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ if(lock->stat.count) { -+ if(g_deleted_wake_locks.stat.count == 0) { -+ g_deleted_wake_locks.name = "deleted_wake_locks"; -+ android_init_suspend_lock_internal( -+ &g_deleted_wake_locks, 1); -+ } -+ g_deleted_wake_locks.stat.count += lock->stat.count; -+ g_deleted_wake_locks.stat.expire_count += lock->stat.expire_count; -+ g_deleted_wake_locks.stat.total_time = ktime_add(g_deleted_wake_locks.stat.total_time, lock->stat.total_time); -+ g_deleted_wake_locks.stat.max_time = ktime_add(g_deleted_wake_locks.stat.max_time, lock->stat.max_time); -+ } -+#endif -+ list_del(&lock->link); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+void android_lock_idle(android_suspend_lock_t *lock) -+{ -+ unsigned long irqflags; -+ spin_lock_irqsave(&g_list_lock, irqflags); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ if(!(lock->flags & ANDROID_SUSPEND_LOCK_ACTIVE)) { -+ lock->flags |= ANDROID_SUSPEND_LOCK_ACTIVE; -+ lock->stat.last_time = ktime_get(); -+ } -+#endif -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_power: acquire idle wake lock: %s\n", -+ lock->name); -+ lock->expires = INT_MAX; -+ lock->flags &= ~ANDROID_SUSPEND_LOCK_AUTO_EXPIRE; -+ list_del(&lock->link); -+ list_add(&lock->link, &g_active_idle_wake_locks); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+void android_lock_idle_auto_expire(android_suspend_lock_t *lock, int timeout) -+{ -+ unsigned long irqflags; -+ spin_lock_irqsave(&g_list_lock, irqflags); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ if(!(lock->flags & ANDROID_SUSPEND_LOCK_ACTIVE)) { -+ lock->flags |= ANDROID_SUSPEND_LOCK_ACTIVE; -+ lock->stat.last_time = ktime_get(); -+ } -+#endif -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_power: acquire idle wake lock: %s, " -+ "timeout %d.%03lu\n", lock->name, timeout / HZ, -+ (timeout % HZ) * MSEC_PER_SEC / HZ); -+ lock->expires = jiffies + timeout; -+ lock->flags |= ANDROID_SUSPEND_LOCK_AUTO_EXPIRE; -+ list_del(&lock->link); -+ list_add(&lock->link, &g_active_idle_wake_locks); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+void android_lock_suspend(android_suspend_lock_t *lock) -+{ -+ unsigned long irqflags; -+ spin_lock_irqsave(&g_list_lock, irqflags); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ if(!(lock->flags & ANDROID_SUSPEND_LOCK_ACTIVE)) { -+ lock->flags |= ANDROID_SUSPEND_LOCK_ACTIVE; -+ lock->stat.last_time = ktime_get(); -+ } -+#endif -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_power: acquire wake lock: %s\n", -+ lock->name); -+ lock->expires = INT_MAX; -+ lock->flags &= ~ANDROID_SUSPEND_LOCK_AUTO_EXPIRE; -+ list_del(&lock->link); -+ list_add(&lock->link, &g_active_partial_wake_locks); -+ g_current_event_num++; -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+void android_lock_suspend_auto_expire(android_suspend_lock_t *lock, int timeout) -+{ -+ unsigned long irqflags; -+ spin_lock_irqsave(&g_list_lock, irqflags); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ if(!(lock->flags & ANDROID_SUSPEND_LOCK_ACTIVE)) { -+ lock->flags |= ANDROID_SUSPEND_LOCK_ACTIVE; -+ lock->stat.last_time = ktime_get(); -+ } -+#endif -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_power: acquire wake lock: %s, " -+ "timeout %d.%03lu\n", lock->name, timeout / HZ, -+ (timeout % HZ) * MSEC_PER_SEC / HZ); -+ lock->expires = jiffies + timeout; -+ lock->flags |= ANDROID_SUSPEND_LOCK_AUTO_EXPIRE; -+ list_del(&lock->link); -+ list_add(&lock->link, &g_active_partial_wake_locks); -+ g_current_event_num++; -+ wake_up(&g_wait_queue); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+void android_lock_partial_suspend_auto_expire(android_suspend_lock_t *lock, int timeout) -+{ -+ unsigned long irqflags; -+ spin_lock_irqsave(&g_list_lock, irqflags); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ if(!(lock->flags & ANDROID_SUSPEND_LOCK_ACTIVE)) { -+ lock->flags |= ANDROID_SUSPEND_LOCK_ACTIVE; -+ lock->stat.last_time = ktime_get(); -+ } -+#endif -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_power: acquire full wake lock: %s, " -+ "timeout %d.%03lu\n", lock->name, timeout / HZ, -+ (timeout % HZ) * MSEC_PER_SEC / HZ); -+ lock->expires = jiffies + timeout; -+ lock->flags |= ANDROID_SUSPEND_LOCK_AUTO_EXPIRE; -+ list_del(&lock->link); -+ list_add(&lock->link, &g_active_full_wake_locks); -+ g_current_event_num++; -+ wake_up(&g_wait_queue); -+ android_power_wakeup_locked(1, ktime_get()); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+#ifdef CONFIG_ANDROID_POWER_STAT -+static int print_lock_stat(char *buf, android_suspend_lock_t *lock) -+{ -+ ktime_t active_time; -+ if(lock->flags & ANDROID_SUSPEND_LOCK_ACTIVE) -+ active_time = ktime_sub(ktime_get(), lock->stat.last_time); -+ else -+ active_time = ktime_set(0, 0); -+ return sprintf(buf, "\"%s\"\t%d\t%d\t%lld\t%lld\t%lld\t%lld\n", -+ lock->name, -+ lock->stat.count, lock->stat.expire_count, -+ ktime_to_ns(active_time), -+ ktime_to_ns(lock->stat.total_time), -+ ktime_to_ns(lock->stat.max_time), -+ ktime_to_ns(lock->stat.last_time)); -+} -+ -+ -+static int wakelocks_read_proc(char *page, char **start, off_t off, -+ int count, int *eof, void *data) -+{ -+ unsigned long irqflags; -+ android_suspend_lock_t *lock; -+ int len = 0; -+ char *p = page; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ -+ p += sprintf(p, "name\tcount\texpire_count\tactive_since\ttotal_time\tmax_time\tlast_change\n"); -+ list_for_each_entry(lock, &g_inactive_locks, link) { -+ p += print_lock_stat(p, lock); -+ } -+ list_for_each_entry(lock, &g_active_partial_wake_locks, link) { -+ p += print_lock_stat(p, lock); -+ } -+ list_for_each_entry(lock, &g_active_full_wake_locks, link) { -+ p += print_lock_stat(p, lock); -+ } -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ -+ -+ *start = page + off; -+ -+ len = p - page; -+ if (len > off) -+ len -= off; -+ else -+ len = 0; -+ -+ return len < count ? len : count; -+} -+ -+static void android_unlock_suspend_stat_locked(android_suspend_lock_t *lock) -+{ -+ if(lock->flags & ANDROID_SUSPEND_LOCK_ACTIVE) { -+ ktime_t duration; -+ lock->flags &= ~ANDROID_SUSPEND_LOCK_ACTIVE; -+ lock->stat.count++; -+ duration = ktime_sub(ktime_get(), lock->stat.last_time); -+ lock->stat.total_time = ktime_add(lock->stat.total_time, duration); -+ if(ktime_to_ns(duration) > ktime_to_ns(lock->stat.max_time)) -+ lock->stat.max_time = duration; -+ lock->stat.last_time = ktime_get(); -+ } -+} -+#endif -+ -+void android_unlock_suspend(android_suspend_lock_t *lock) -+{ -+ int had_full_wake_locks; -+ unsigned long irqflags; -+ spin_lock_irqsave(&g_list_lock, irqflags); -+#ifdef CONFIG_ANDROID_POWER_STAT -+ android_unlock_suspend_stat_locked(lock); -+#endif -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk(KERN_INFO "android_power: release wake lock: %s\n", -+ lock->name); -+ lock->flags &= ~ANDROID_SUSPEND_LOCK_AUTO_EXPIRE; -+ had_full_wake_locks = !list_empty(&g_active_full_wake_locks); -+ list_del(&lock->link); -+ list_add(&lock->link, &g_inactive_locks); -+ wake_up(&g_wait_queue); -+ if(had_full_wake_locks && list_empty(&g_active_full_wake_locks)) { -+ printk("android_unlock_suspend: released at %lld\n", ktime_to_ns(ktime_get())); -+ if(g_user_suspend_state == USER_NOTIFICATION) { -+ printk("android sleep state %d->%d at %lld\n", g_user_suspend_state, USER_SLEEP, ktime_to_ns(ktime_get())); -+ g_user_suspend_state = USER_SLEEP; -+ queue_work(g_suspend_work_queue, &g_suspend_work); -+ } -+ } -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+static void android_power_wakeup_locked(int notification, ktime_t time) -+{ -+ int new_state = (notification == 0) ? USER_AWAKE : USER_NOTIFICATION; -+ -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_USER_STATE) { -+ struct timespec ts; -+ struct rtc_time tm; -+ getnstimeofday(&ts); -+ rtc_time_to_tm(ts.tv_sec, &tm); -+ printk(KERN_INFO "android_power: wakeup (%d->%d) at %lld " -+ "(%d-%02d-%02d %02d:%02d:%02d.%09lu UTC)\n", -+ g_user_suspend_state, new_state, ktime_to_ns(time), -+ tm.tm_year + 1900, tm.tm_mon + 1, tm.tm_mday, -+ tm.tm_hour, tm.tm_min, tm.tm_sec, ts.tv_nsec); -+ } -+ -+ if(new_state >= g_user_suspend_state) { -+ return; -+ } -+ g_user_suspend_state = new_state; -+ g_current_event_num++; -+ wake_up(&g_wait_queue); -+} -+ -+static void android_power_wakeup(void) -+{ -+ unsigned long irqflags; -+ -+ ktime_t ktime_now; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ ktime_now = ktime_get(); -+ android_power_wakeup_locked(0, ktime_now); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+} -+ -+static void android_power_request_sleep(void) -+{ -+ unsigned long irqflags; -+ int already_suspended; -+ android_suspend_lock_t *lock, *next_lock; -+ -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_USER_STATE) { -+ ktime_t ktime_now; -+ struct timespec ts; -+ struct rtc_time tm; -+ ktime_now = ktime_get(); -+ getnstimeofday(&ts); -+ rtc_time_to_tm(ts.tv_sec, &tm); -+ printk(KERN_INFO "android_power: sleep (%d->%d) at %lld " -+ "(%d-%02d-%02d %02d:%02d:%02d.%09lu UTC)\n", -+ g_user_suspend_state, USER_SLEEP, ktime_to_ns(ktime_now), -+ tm.tm_year + 1900, tm.tm_mon + 1, tm.tm_mday, -+ tm.tm_hour, tm.tm_min, tm.tm_sec, ts.tv_nsec); -+ } -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ already_suspended = g_user_suspend_state == USER_SLEEP; -+ if(!already_suspended) { -+ g_user_suspend_state = USER_SLEEP; -+ } -+ -+ list_for_each_entry_safe(lock, next_lock, &g_active_full_wake_locks, link) { -+#ifdef CONFIG_ANDROID_POWER_STAT -+ android_unlock_suspend_stat_locked(lock); -+#endif -+ list_del(&lock->link); -+ list_add(&lock->link, &g_inactive_locks); -+ printk("android_power_suspend: aborted full wake lock %s\n", lock->name); -+ } -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ queue_work(g_suspend_work_queue, &g_suspend_work); -+} -+ -+void android_register_early_suspend(android_early_suspend_t *handler) -+{ -+ struct list_head *pos; -+ -+ mutex_lock(&g_early_suspend_lock); -+ list_for_each(pos, &g_early_suspend_handlers) { -+ android_early_suspend_t *e = list_entry(pos, android_early_suspend_t, link); -+ if(e->level > handler->level) -+ break; -+ } -+ list_add_tail(&handler->link, pos); -+ mutex_unlock(&g_early_suspend_lock); -+} -+ -+void android_unregister_early_suspend(android_early_suspend_t *handler) -+{ -+ mutex_lock(&g_early_suspend_lock); -+ list_del(&handler->link); -+ mutex_unlock(&g_early_suspend_lock); -+} -+ -+#ifdef CONFIG_FRAMEBUFFER_CONSOLE -+static int orig_fgconsole; -+static void console_early_suspend(android_early_suspend_t *h) -+{ -+ acquire_console_sem(); -+ orig_fgconsole = fg_console; -+ if (vc_allocate(ANDROID_SUSPEND_CONSOLE)) -+ goto err; -+ if (set_console(ANDROID_SUSPEND_CONSOLE)) -+ goto err; -+ release_console_sem(); -+ -+ if (vt_waitactive(ANDROID_SUSPEND_CONSOLE)) -+ pr_warning("console_early_suspend: Can't switch VCs.\n"); -+ return; -+err: -+ pr_warning("console_early_suspend: Can't set console\n"); -+ release_console_sem(); -+} -+ -+static void console_late_resume(android_early_suspend_t *h) -+{ -+ int ret; -+ acquire_console_sem(); -+ ret = set_console(orig_fgconsole); -+ release_console_sem(); -+ if (ret) { -+ pr_warning("console_late_resume: Can't set console.\n"); -+ return; -+ } -+ -+ if (vt_waitactive(orig_fgconsole)) -+ pr_warning("console_late_resume: Can't switch VCs.\n"); -+} -+ -+static android_early_suspend_t console_early_suspend_desc = { -+ .level = ANDROID_EARLY_SUSPEND_LEVEL_CONSOLE_SWITCH, -+ .suspend = console_early_suspend, -+ .resume = console_late_resume, -+}; -+#else -+/* tell userspace to stop drawing, wait for it to stop */ -+static void stop_drawing_early_suspend(android_early_suspend_t *h) -+{ -+ int ret; -+ unsigned long irq_flags; -+ -+ spin_lock_irqsave(&fb_state_lock, irq_flags); -+ fb_state = ANDROID_REQUEST_STOP_DRAWING; -+ spin_unlock_irqrestore(&fb_state_lock, irq_flags); -+ -+ wake_up_all(&fb_state_wq); -+ ret = wait_event_timeout(fb_state_wq, -+ fb_state == ANDROID_STOPPED_DRAWING, -+ HZ); -+ if (unlikely(fb_state != ANDROID_STOPPED_DRAWING)) -+ printk(KERN_WARNING "android_power: timeout waiting for " -+ "userspace to stop drawing\n"); -+} -+ -+/* tell userspace to start drawing */ -+static void start_drawing_late_resume(android_early_suspend_t *h) -+{ -+ unsigned long irq_flags; -+ -+ spin_lock_irqsave(&fb_state_lock, irq_flags); -+ fb_state = ANDROID_DRAWING_OK; -+ spin_unlock_irqrestore(&fb_state_lock, irq_flags); -+ wake_up(&fb_state_wq); -+} -+ -+static android_early_suspend_t stop_drawing_early_suspend_desc = { -+ .level = ANDROID_EARLY_SUSPEND_LEVEL_CONSOLE_SWITCH, -+ .suspend = stop_drawing_early_suspend, -+ .resume = start_drawing_late_resume, -+}; -+#endif -+ -+#if ANDROID_POWER_TEST_EARLY_SUSPEND -+ -+typedef struct -+{ -+ android_early_suspend_t h; -+ const char *string; -+} early_suspend_test_t; -+ -+static void early_suspend_test(android_early_suspend_t *h) -+{ -+ early_suspend_test_t *est = container_of(h, early_suspend_test_t, h); -+ printk("early suspend %s (l %d)\n", est->string, h->level); -+} -+ -+static void late_resume_test(android_early_suspend_t *h) -+{ -+ early_suspend_test_t *est = container_of(h, early_suspend_test_t, h); -+ printk("late resume %s (l %d)\n", est->string, h->level); -+} -+ -+#define EARLY_SUSPEND_TEST_ENTRY(ilevel, istring) \ -+{ \ -+ .h = { \ -+ .level = ilevel, \ -+ .suspend = early_suspend_test, \ -+ .resume = late_resume_test \ -+ }, \ -+ .string = istring \ -+} -+static early_suspend_test_t early_suspend_tests[] = { -+ EARLY_SUSPEND_TEST_ENTRY(10, "1"), -+ EARLY_SUSPEND_TEST_ENTRY(5, "2"), -+ EARLY_SUSPEND_TEST_ENTRY(10, "3"), -+ EARLY_SUSPEND_TEST_ENTRY(15, "4"), -+ EARLY_SUSPEND_TEST_ENTRY(8, "5") -+}; -+ -+#endif -+ -+static int get_wait_timeout(int print_locks, int state, struct list_head *list_head) -+{ -+ unsigned long irqflags; -+ android_suspend_lock_t *lock, *next; -+ int max_timeout = 0; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ list_for_each_entry_safe(lock, next, list_head, link) { -+ if(lock->flags & ANDROID_SUSPEND_LOCK_AUTO_EXPIRE) { -+ int timeout = lock->expires - (int)jiffies; -+ if(timeout <= 0) { -+ lock->flags &= ~ANDROID_SUSPEND_LOCK_AUTO_EXPIRE; -+#ifdef CONFIG_ANDROID_POWER_STAT -+ lock->stat.expire_count++; -+ android_unlock_suspend_stat_locked(lock); -+#endif -+ list_del(&lock->link); -+ list_add(&lock->link, &g_inactive_locks); -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_WAKE_LOCK) -+ printk("expired wake lock %s\n", lock->name); -+ } -+ else { -+ if(timeout > max_timeout) -+ max_timeout = timeout; -+ if(print_locks) -+ printk("active wake lock %s, time left %d\n", lock->name, timeout); -+ } -+ } -+ else { -+ if(print_locks) -+ printk("active wake lock %s\n", lock->name); -+ } -+ } -+ if(g_user_suspend_state != state || list_empty(list_head)) -+ max_timeout = -1; -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return max_timeout; -+} -+ -+#ifdef CONFIG_FRAMEBUFFER_CONSOLE -+static int android_power_class_suspend(struct sys_device *sdev, pm_message_t state) -+{ -+ int rv = 0; -+ unsigned long irqflags; -+ -+ printk("android_power_suspend: enter\n"); -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ if(!list_empty(&g_active_partial_wake_locks)) { -+ printk("android_power_suspend: abort for partial wakeup\n"); -+ rv = -EAGAIN; -+ } -+ if(g_user_suspend_state != USER_SLEEP) { -+ printk("android_power_suspend: abort for full wakeup\n"); -+ rv = -EAGAIN; -+ } -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return rv; -+} -+ -+static int android_power_device_suspend(struct sys_device *sdev, pm_message_t state) -+{ -+ int rv = 0; -+ unsigned long irqflags; -+ -+ printk("android_power_device_suspend: enter\n"); -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ if(!list_empty(&g_active_partial_wake_locks)) { -+ printk("android_power_device_suspend: abort for partial wakeup\n"); -+ rv = -EAGAIN; -+ } -+ if(g_user_suspend_state != USER_SLEEP) { -+ printk("android_power_device_suspend: abort for full wakeup\n"); -+ rv = -EAGAIN; -+ } -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return rv; -+} -+#endif -+ -+int android_power_is_driver_suspended(void) -+{ -+ return (get_wait_timeout(0, USER_SLEEP, &g_active_partial_wake_locks) < 0) && (g_user_suspend_state == USER_SLEEP); -+} -+ -+int android_power_is_low_power_idle_ok(void) -+{ -+ get_wait_timeout(0, USER_SLEEP, &g_active_idle_wake_locks); -+ return list_empty(&g_active_idle_wake_locks); -+} -+ -+static void android_power_suspend(struct work_struct *work) -+{ -+ int entry_event_num; -+ int ret; -+ int wait = 0; -+ android_early_suspend_t *pos; -+ int print_locks = 0; -+ unsigned long irqflags; -+ -+ while(g_user_suspend_state != USER_AWAKE) { -+ while(g_user_suspend_state == USER_NOTIFICATION) { -+ wait = get_wait_timeout(print_locks, USER_NOTIFICATION, &g_active_full_wake_locks); -+ if(wait < 0) -+ break; -+ if(wait) -+ wait_event_interruptible_timeout(g_wait_queue, get_wait_timeout(0, USER_NOTIFICATION, &g_active_full_wake_locks) != wait, wait); -+ } -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ if(g_user_suspend_state == USER_NOTIFICATION && list_empty(&g_active_full_wake_locks)) { -+ printk("android sleep state %d->%d at %lld\n", g_user_suspend_state, USER_SLEEP, ktime_to_ns(ktime_get())); -+ g_user_suspend_state = USER_SLEEP; -+ } -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ wait = 0; -+ if(g_user_suspend_state == USER_AWAKE) { -+ printk("android_power_suspend: suspend aborted\n"); -+ return; -+ } -+ -+ mutex_lock(&g_early_suspend_lock); -+ //printk("android_power_suspend: call early suspend handlers\n"); -+ list_for_each_entry(pos, &g_early_suspend_handlers, link) { -+ if(pos->suspend != NULL) -+ pos->suspend(pos); -+ } -+ //printk("android_power_suspend: call early suspend handlers\n"); -+ -+ //printk("android_power_suspend: enter\n"); -+ -+ sys_sync(); -+ -+ while(g_user_suspend_state == USER_SLEEP) { -+ //printk("android_power_suspend: enter wait (%d)\n", wait); -+ if(wait) { -+ wait_event_interruptible_timeout(g_wait_queue, g_user_suspend_state != USER_SLEEP, wait); -+ wait = 0; -+ } -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_SUSPEND) -+ print_locks = 1; -+ while(1) { -+ wait = get_wait_timeout(print_locks, USER_SLEEP, &g_active_partial_wake_locks); -+ print_locks = 0; -+ if(wait < 0) -+ break; -+ if(wait) -+ wait_event_interruptible_timeout(g_wait_queue, get_wait_timeout(0, USER_SLEEP, &g_active_partial_wake_locks) != wait, wait); -+ else -+ wait_event_interruptible(g_wait_queue, get_wait_timeout(0, USER_SLEEP, &g_active_partial_wake_locks) != wait); -+ } -+ wait = 0; -+ //printk("android_power_suspend: exit wait\n"); -+ entry_event_num = g_current_event_num; -+ if(g_user_suspend_state != USER_SLEEP) -+ break; -+ sys_sync(); -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_SUSPEND) -+ printk(KERN_INFO "android_power_suspend: enter suspend\n"); -+ ret = pm_suspend(PM_SUSPEND_MEM); -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_EXIT_SUSPEND) { -+ struct timespec ts; -+ struct rtc_time tm; -+ getnstimeofday(&ts); -+ rtc_time_to_tm(ts.tv_sec, &tm); -+ printk("android_power_suspend: exit suspend, ret = %d " -+ "(%d-%02d-%02d %02d:%02d:%02d.%09lu UTC)\n", ret, -+ tm.tm_year + 1900, tm.tm_mon + 1, tm.tm_mday, -+ tm.tm_hour, tm.tm_min, tm.tm_sec, ts.tv_nsec); -+ } -+ if(g_current_event_num == entry_event_num) { -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_SUSPEND) -+ printk(KERN_INFO "android_power_suspend: pm_suspend returned with no event\n"); -+ wait = HZ / 2; -+#ifdef CONFIG_ANDROID_POWER_STAT -+ if(g_no_wake_locks.stat.count == 0) { -+ g_no_wake_locks.name = "unknown_wakeups"; -+ android_init_suspend_lock(&g_no_wake_locks); -+ } -+ g_no_wake_locks.stat.count++; -+ g_no_wake_locks.stat.total_time = ktime_add( -+ g_no_wake_locks.stat.total_time, -+ ktime_set(0, 500 * NSEC_PER_MSEC)); -+ g_no_wake_locks.stat.max_time = -+ ktime_set(0, 500 * NSEC_PER_MSEC); -+#endif -+ } -+ } -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_USER_STATE) -+ printk("android_power_suspend: done\n"); -+ //printk("android_power_suspend: call late resume handlers\n"); -+ list_for_each_entry_reverse(pos, &g_early_suspend_handlers, link) { -+ if(pos->resume != NULL) -+ pos->resume(pos); -+ } -+ //printk("android_power_suspend: call late resume handlers\n"); -+ mutex_unlock(&g_early_suspend_lock); -+ } -+} -+ -+#if 0 -+struct sysdev_class android_power_sysclass = { -+ set_kset_name("android_power"), -+ .suspend = android_power_class_suspend -+}; -+static struct sysdev_class *g_android_power_sysclass = NULL; -+ -+static struct { -+ struct sys_device sysdev; -+// omap_csmi_gsm_image_info_t *pdata; -+} android_power_device = { -+ .sysdev = { -+ .id = 0, -+ .cls = &android_power_sysclass, -+// .suspend = android_power_device_suspend -+ }, -+// .pdata = &g_gsm_image_info -+}; -+ -+struct sysdev_class *android_power_get_sysclass(void) -+{ -+ return g_android_power_sysclass; -+} -+#endif -+ -+static ssize_t state_show(struct kobject *kobj, struct kobj_attribute *attr, char * buf) -+{ -+ char * s = buf; -+ unsigned long irqflags; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ s += sprintf(s, "%d-%d-%d\n", g_user_suspend_state, list_empty(&g_active_full_wake_locks), list_empty(&g_active_partial_wake_locks)); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return (s - buf); -+} -+ -+static ssize_t state_store(struct kobject *kobj, struct kobj_attribute *attr, const char * buf, size_t n) -+{ -+ if(n >= strlen("standby") && -+ strncmp(buf, "standby", strlen("standby")) == 0) { -+ android_power_request_sleep(); -+ wait_event_interruptible(g_wait_queue, g_user_suspend_state == USER_AWAKE); -+ return n; -+ } -+ if(n >= strlen("wake") && -+ strncmp(buf, "wake", strlen("wake")) == 0) { -+ android_power_wakeup(); -+ return n; -+ } -+ printk("android_power state_store: invalid argument\n"); -+ return -EINVAL; -+} -+ -+static ssize_t request_state_show(struct kobject *kobj, struct kobj_attribute *attr, char * buf) -+{ -+ char * s = buf; -+ unsigned long irqflags; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ if(g_user_suspend_state == USER_AWAKE) -+ s += sprintf(s, "wake\n"); -+ else if(g_user_suspend_state == USER_NOTIFICATION) -+ s += sprintf(s, "standby (w/full wake lock)\n"); -+ else -+ s += sprintf(s, "standby\n"); -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return (s - buf); -+} -+ -+static ssize_t request_state_store(struct kobject *kobj, struct kobj_attribute *attr, const char * buf, size_t n) -+{ -+ if(n >= strlen("standby") && -+ strncmp(buf, "standby", strlen("standby")) == 0) { -+ android_power_request_sleep(); -+ return n; -+ } -+ if(n >= strlen("wake") && -+ strncmp(buf, "wake", strlen("wake")) == 0) { -+ android_power_wakeup(); -+ return n; -+ } -+ printk("android_power state_store: invalid argument\n"); -+ return -EINVAL; -+} -+ -+ -+static int lookup_wake_lock_name(const char *buf, size_t n, int allocate, int *timeout) -+{ -+ int i; -+ int free_index = -1; -+ int inactive_index = -1; -+ int expires_index = -1; -+ int expires_time = INT_MAX; -+ char *tmp_buf[64]; -+ char name[32]; -+ u64 nanoseconds; -+ int num_arg; -+ -+ if(n <= 0) -+ return -EINVAL; -+ if(n >= sizeof(tmp_buf)) -+ return -EOVERFLOW; -+ if(n == sizeof(tmp_buf) - 1 && buf[n - 1] != '\0') -+ return -EOVERFLOW; -+ -+ memcpy(tmp_buf, buf, n); -+ if(tmp_buf[n - 1] != '\0') -+ tmp_buf[n] = '\0'; -+ -+ num_arg = sscanf(buf, "%31s %llu", name, &nanoseconds); -+ if(num_arg < 1) -+ return -EINVAL; -+ -+ if(strlen(name) >= sizeof(g_user_wake_locks[i].name_buffer)) -+ return -EOVERFLOW; -+ -+ if(timeout != NULL) { -+ if(num_arg > 1) { -+ do_div(nanoseconds, (NSEC_PER_SEC / HZ)); -+ if(nanoseconds <= 0) -+ nanoseconds = 1; -+ *timeout = nanoseconds; -+ } -+ else -+ *timeout = 0; -+ } -+ -+ for(i = 0; i < g_max_user_lockouts; i++) { -+ if(strcmp(g_user_wake_locks[i].name_buffer, name) == 0) -+ return i; -+ if(g_user_wake_locks[i].name_buffer[0] == '\0') -+ free_index = i; -+ else if(g_user_wake_locks[i].state == USER_WAKE_LOCK_INACTIVE) -+ inactive_index = i; -+ else if(g_user_wake_locks[i].suspend_lock.expires < expires_time) -+ expires_index = i; -+ } -+ if(allocate) { -+ if(free_index >= 0) -+ i = free_index; -+ else if(inactive_index >= 0) -+ i = inactive_index; -+ else if(expires_index >= 0) { -+ i = expires_index; -+ printk("lookup_wake_lock_name: overwriting expired lock, %s\n", g_user_wake_locks[i].name_buffer); -+ } -+ else { -+ i = 0; -+ printk("lookup_wake_lock_name: overwriting active lock, %s\n", g_user_wake_locks[i].name_buffer); -+ } -+ strcpy(g_user_wake_locks[i].name_buffer, name); -+ return i; -+ } -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_USER_WAKE_LOCK) -+ printk(KERN_INFO "lookup_wake_lock_name: %s not found\n", name); -+ return -EINVAL; -+} -+ -+static ssize_t acquire_full_wake_lock_show(struct kobject *kobj, struct kobj_attribute *attr, char * buf) -+{ -+ int i; -+ char * s = buf; -+ unsigned long irqflags; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ for(i = 0; i < g_max_user_lockouts; i++) { -+ if(g_user_wake_locks[i].name_buffer[0] != '\0' && g_user_wake_locks[i].state == USER_WAKE_LOCK_FULL) -+ s += sprintf(s, "%s ", g_user_wake_locks[i].name_buffer); -+ } -+ s += sprintf(s, "\n"); -+ -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return (s - buf); -+} -+ -+static ssize_t acquire_full_wake_lock_store(struct kobject *kobj, struct kobj_attribute *attr, const char * buf, size_t n) -+{ -+ int i; -+ unsigned long irqflags; -+ int timeout; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ i = lookup_wake_lock_name(buf, n, 1, &timeout); -+ if(i >= 0) -+ g_user_wake_locks[i].state = USER_WAKE_LOCK_FULL; -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ if(i < 0) -+ return i; -+ -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_USER_WAKE_LOCK) -+ printk(KERN_INFO "acquire_full_wake_lock_store: %s, size %d\n", -+ g_user_wake_locks[i].name_buffer, n); -+ -+ //android_lock_partial_suspend_auto_expire(&g_user_wake_locks[i].suspend_lock, ktime_to_timespec(g_auto_off_timeout).tv_sec * HZ); -+ if(timeout == 0) -+ timeout = INT_MAX; -+ android_lock_partial_suspend_auto_expire(&g_user_wake_locks[i].suspend_lock, timeout); -+ -+ return n; -+} -+ -+static ssize_t acquire_partial_wake_lock_show(struct kobject *kobj, struct kobj_attribute *attr, char * buf) -+{ -+ int i; -+ char * s = buf; -+ unsigned long irqflags; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ for(i = 0; i < g_max_user_lockouts; i++) { -+ if(g_user_wake_locks[i].name_buffer[0] != '\0' && g_user_wake_locks[i].state == USER_WAKE_LOCK_PARTIAL) -+ s += sprintf(s, "%s ", g_user_wake_locks[i].name_buffer); -+ } -+ s += sprintf(s, "\n"); -+ -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return (s - buf); -+} -+ -+static ssize_t acquire_partial_wake_lock_store(struct kobject *kobj, struct kobj_attribute *attr, const char * buf, size_t n) -+{ -+ int i; -+ unsigned long irqflags; -+ int timeout; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ i = lookup_wake_lock_name(buf, n, 1, &timeout); -+ if(i >= 0) -+ g_user_wake_locks[i].state = USER_WAKE_LOCK_PARTIAL; -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ if(i < 0) -+ return 0; -+ -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_USER_WAKE_LOCK) -+ printk(KERN_INFO "acquire_partial_wake_lock_store: %s, " -+ "size %d\n", g_user_wake_locks[i].name_buffer, n); -+ -+ if(timeout) -+ android_lock_suspend_auto_expire(&g_user_wake_locks[i].suspend_lock, timeout); -+ else -+ android_lock_suspend(&g_user_wake_locks[i].suspend_lock); -+ -+ return n; -+} -+ -+ -+static ssize_t release_wake_lock_show(struct kobject *kobj, struct kobj_attribute *attr, char * buf) -+{ -+ int i; -+ char * s = buf; -+ unsigned long irqflags; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ for(i = 0; i < g_max_user_lockouts; i++) { -+ if(g_user_wake_locks[i].name_buffer[0] != '\0' && g_user_wake_locks[i].state == USER_WAKE_LOCK_INACTIVE) -+ s += sprintf(s, "%s ", g_user_wake_locks[i].name_buffer); -+ } -+ s += sprintf(s, "\n"); -+ -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ return (s - buf); -+} -+ -+static ssize_t release_wake_lock_store(struct kobject *kobj, struct kobj_attribute *attr, const char * buf, size_t n) -+{ -+ int i; -+ unsigned long irqflags; -+ -+ spin_lock_irqsave(&g_list_lock, irqflags); -+ i = lookup_wake_lock_name(buf, n, 1, NULL); -+ if(i >= 0) { -+ g_user_wake_locks[i].state = USER_WAKE_LOCK_INACTIVE; -+ } -+ spin_unlock_irqrestore(&g_list_lock, irqflags); -+ -+ if(i < 0) -+ return i; -+ -+ if (android_power_debug_mask & ANDROID_POWER_DEBUG_USER_WAKE_LOCK) -+ printk(KERN_INFO "release_wake_lock_store: %s, size %d\n", -+ g_user_wake_locks[i].name_buffer, n); -+ -+ android_unlock_suspend(&g_user_wake_locks[i].suspend_lock); -+ return n; -+} -+ -+ -+#ifndef CONFIG_FRAMEBUFFER_CONSOLE -+static ssize_t wait_for_fb_sleep_show(struct kobject *kobj, -+ struct kobj_attribute *attr, char *buf) -+{ -+ char * s = buf; -+ int ret; -+ -+ ret = wait_event_interruptible(fb_state_wq, -+ fb_state != ANDROID_DRAWING_OK); -+ if (ret && fb_state == ANDROID_DRAWING_OK) -+ return ret; -+ else -+ s += sprintf(buf, "sleeping"); -+ return (s - buf); -+} -+ -+static ssize_t wait_for_fb_wake_show(struct kobject *kobj, -+ struct kobj_attribute *attr, char *buf) -+{ -+ char * s = buf; -+ int ret; -+ unsigned long irq_flags; -+ -+ spin_lock_irqsave(&fb_state_lock, irq_flags); -+ if (fb_state == ANDROID_REQUEST_STOP_DRAWING) { -+ fb_state = ANDROID_STOPPED_DRAWING; -+ wake_up(&fb_state_wq); -+ } -+ spin_unlock_irqrestore(&fb_state_lock, irq_flags); -+ -+ ret = wait_event_interruptible(fb_state_wq, -+ fb_state == ANDROID_DRAWING_OK); -+ if (ret && fb_state != ANDROID_DRAWING_OK) -+ return ret; -+ else -+ s += sprintf(buf, "awake"); -+ -+ return (s - buf); -+} -+#endif -+ -+#define android_power_attr(_name) \ -+static struct kobj_attribute _name##_attr = { \ -+ .attr = { \ -+ .name = __stringify(_name), \ -+ .mode = 0664, \ -+ }, \ -+ .show = _name##_show, \ -+ .store = _name##_store, \ -+} -+ -+#define android_power_ro_attr(_name) \ -+static struct kobj_attribute _name##_attr = { \ -+ .attr = { \ -+ .name = __stringify(_name), \ -+ .mode = 0444, \ -+ }, \ -+ .show = _name##_show, \ -+ .store = NULL, \ -+} -+ -+android_power_attr(state); -+android_power_attr(request_state); -+android_power_attr(acquire_full_wake_lock); -+android_power_attr(acquire_partial_wake_lock); -+android_power_attr(release_wake_lock); -+#ifndef CONFIG_FRAMEBUFFER_CONSOLE -+android_power_ro_attr(wait_for_fb_sleep); -+android_power_ro_attr(wait_for_fb_wake); -+#endif -+ -+static struct attribute * g[] = { -+ &state_attr.attr, -+ &request_state_attr.attr, -+ &acquire_full_wake_lock_attr.attr, -+ &acquire_partial_wake_lock_attr.attr, -+ &release_wake_lock_attr.attr, -+#ifndef CONFIG_FRAMEBUFFER_CONSOLE -+ &wait_for_fb_sleep_attr.attr, -+ &wait_for_fb_wake_attr.attr, -+#endif -+ NULL, -+}; -+ -+static struct attribute_group attr_group = { -+ .attrs = g, -+}; -+ -+#if 0 -+// test code when there is no platform suspend -+ -+static android_suspend_lock_t test_pm_ops_suspend_lock = { -+ .name = "test_pm_ops" -+}; -+ -+int test_pm_op_enter(suspend_state_t state) -+{ -+ printk("test_pm_op_enter reached\n"); -+ android_lock_suspend(&test_pm_ops_suspend_lock); -+ printk("test_pm_op_enter returned\n"); -+ return 0; -+} -+ -+void test_pm_ops_late_resume_handler(android_early_suspend_t *h) -+{ -+ printk("test_pm_ops_late_resume_handler reached\n"); -+ android_unlock_suspend(&test_pm_ops_suspend_lock); -+ printk("test_pm_ops_late_resume_handler returned\n"); -+} -+ -+static struct pm_ops test_pm_ops = { -+ .enter = test_pm_op_enter -+}; -+ -+static android_early_suspend_t test_pm_ops_early_suspend_handler = { -+ .resume = test_pm_ops_late_resume_handler -+}; -+#endif -+ -+static int __init android_power_init(void) -+{ -+ int ret; -+ int i; -+ -+#if 0 -+ if(pm_ops == NULL) { -+ printk("android_power_init no pm_ops, installing test code\n"); -+ pm_set_ops(&test_pm_ops); -+ android_init_suspend_lock(&test_pm_ops_suspend_lock); -+ android_register_early_suspend(&test_pm_ops_early_suspend_handler); -+ } -+#endif -+ -+#ifdef CONFIG_ANDROID_POWER_STAT -+ g_deleted_wake_locks.stat.count = 0; -+#endif -+ init_waitqueue_head(&g_wait_queue); -+#ifndef CONFIG_FRAMEBUFFER_CONSOLE -+ init_waitqueue_head(&fb_state_wq); -+ fb_state = ANDROID_DRAWING_OK; -+#endif -+ -+ g_user_wake_locks = kzalloc(sizeof(*g_user_wake_locks) * g_max_user_lockouts, GFP_KERNEL); -+ if(g_user_wake_locks == NULL) { -+ ret = -ENOMEM; -+ goto err1; -+ } -+ for(i = 0; i < g_max_user_lockouts; i++) { -+ g_user_wake_locks[i].suspend_lock.name = g_user_wake_locks[i].name_buffer; -+ android_init_suspend_lock(&g_user_wake_locks[i].suspend_lock); -+ } -+ -+ g_suspend_work_queue = create_workqueue("suspend"); -+ if(g_suspend_work_queue == NULL) { -+ ret = -ENOMEM; -+ goto err2; -+ } -+ -+ android_power_kobj = kobject_create_and_add("android_power", NULL); -+ if (android_power_kobj == NULL) { -+ printk("android_power_init: subsystem_register failed\n"); -+ ret = -ENOMEM; -+ goto err3; -+ } -+ ret = sysfs_create_group(android_power_kobj, &attr_group); -+ if(ret) { -+ printk("android_power_init: sysfs_create_group failed\n"); -+ goto err4; -+ } -+#ifdef CONFIG_ANDROID_POWER_STAT -+ create_proc_read_entry("wakelocks", S_IRUGO, NULL, wakelocks_read_proc, NULL); -+#endif -+ -+#if ANDROID_POWER_TEST_EARLY_SUSPEND -+ { -+ int i; -+ for(i = 0; i < sizeof(early_suspend_tests) / sizeof(early_suspend_tests[0]); i++) -+ android_register_early_suspend(&early_suspend_tests[i].h); -+ } -+#endif -+#ifdef CONFIG_FRAMEBUFFER_CONSOLE -+ android_register_early_suspend(&console_early_suspend_desc); -+#else -+ android_register_early_suspend(&stop_drawing_early_suspend_desc); -+#endif -+ -+#if 0 -+ ret = sysdev_class_register(&android_power_sysclass); -+ if(ret) { -+ printk("android_power_init: sysdev_class_register failed\n"); -+ goto err1; -+ } -+ ret = sysdev_register(&android_power_device.sysdev); -+ if(ret < 0) -+ goto err2; -+ -+ g_android_power_sysclass = &android_power_sysclass; -+#endif -+ return 0; -+ -+//err2: -+// sysdev_class_unregister(&android_power_sysclass); -+err4: -+ kobject_del(android_power_kobj); -+err3: -+ destroy_workqueue(g_suspend_work_queue); -+err2: -+ for(i = 0; i < g_max_user_lockouts; i++) { -+ android_uninit_suspend_lock(&g_user_wake_locks[i].suspend_lock); -+ } -+ kfree(g_user_wake_locks); -+err1: -+ return ret; -+} -+ -+static void __exit android_power_exit(void) -+{ -+ int i; -+// g_android_power_sysclass = NULL; -+// sysdev_unregister(&android_power_device.sysdev); -+// sysdev_class_unregister(&android_power_sysclass); -+#ifdef CONFIG_FRAMEBUFFER_CONSOLE -+ android_unregister_early_suspend(&console_early_suspend_desc); -+#else -+ android_unregister_early_suspend(&stop_drawing_early_suspend_desc); -+#endif -+#ifdef CONFIG_ANDROID_POWER_STAT -+ remove_proc_entry("wakelocks", NULL); -+#endif -+ sysfs_remove_group(android_power_kobj, &attr_group); -+ kobject_del(android_power_kobj); -+ destroy_workqueue(g_suspend_work_queue); -+ for(i = 0; i < g_max_user_lockouts; i++) { -+ android_uninit_suspend_lock(&g_user_wake_locks[i].suspend_lock); -+ } -+ kfree(g_user_wake_locks); -+} -+ -+core_initcall(android_power_init); -+module_exit(android_power_exit); -+ -+//EXPORT_SYMBOL(android_power_get_sysclass); -+EXPORT_SYMBOL(android_init_suspend_lock); -+EXPORT_SYMBOL(android_uninit_suspend_lock); -+EXPORT_SYMBOL(android_lock_suspend); -+EXPORT_SYMBOL(android_lock_suspend_auto_expire); -+EXPORT_SYMBOL(android_unlock_suspend); -+EXPORT_SYMBOL(android_power_wakeup); -+EXPORT_SYMBOL(android_register_early_suspend); -+EXPORT_SYMBOL(android_unregister_early_suspend); -+ -+ ---- /dev/null -+++ b/drivers/android/ram_console.c -@@ -0,0 +1,395 @@ -+/* drivers/android/ram_console.c -+ * -+ * Copyright (C) 2007-2008 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#include <linux/console.h> -+#include <linux/init.h> -+#include <linux/module.h> -+#include <linux/platform_device.h> -+#include <linux/proc_fs.h> -+#include <linux/string.h> -+#include <linux/uaccess.h> -+#include <asm/io.h> -+ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+#include <linux/rslib.h> -+#endif -+ -+struct ram_console_buffer { -+ uint32_t sig; -+ uint32_t start; -+ uint32_t size; -+ uint8_t data[0]; -+}; -+ -+#define RAM_CONSOLE_SIG (0x43474244) /* DBGC */ -+ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_EARLY_INIT -+static char __initdata -+ ram_console_old_log_init_buffer[CONFIG_ANDROID_RAM_CONSOLE_EARLY_SIZE]; -+#endif -+static char *ram_console_old_log; -+static size_t ram_console_old_log_size; -+ -+static struct ram_console_buffer *ram_console_buffer; -+static size_t ram_console_buffer_size; -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+static char *ram_console_par_buffer; -+static struct rs_control *ram_console_rs_decoder; -+static int ram_console_corrected_bytes; -+static int ram_console_bad_blocks; -+#define ECC_BLOCK_SIZE CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION_DATA_SIZE -+#define ECC_SIZE CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION_ECC_SIZE -+#define ECC_SYMSIZE CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION_SYMBOL_SIZE -+#define ECC_POLY CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION_POLYNOMIAL -+#endif -+ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+static void ram_console_encode_rs8(uint8_t *data, size_t len, uint8_t *ecc) -+{ -+ int i; -+ uint16_t par[ECC_SIZE]; -+ /* Initialize the parity buffer */ -+ memset(par, 0, sizeof(par)); -+ encode_rs8(ram_console_rs_decoder, data, len, par, 0); -+ for (i = 0; i < ECC_SIZE; i++) -+ ecc[i] = par[i]; -+} -+ -+static int ram_console_decode_rs8(void *data, size_t len, uint8_t *ecc) -+{ -+ int i; -+ uint16_t par[ECC_SIZE]; -+ for (i = 0; i < ECC_SIZE; i++) -+ par[i] = ecc[i]; -+ return decode_rs8(ram_console_rs_decoder, data, par, len, -+ NULL, 0, NULL, 0, NULL); -+} -+#endif -+ -+static void ram_console_update(const char *s, unsigned int count) -+{ -+ struct ram_console_buffer *buffer = ram_console_buffer; -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ uint8_t *buffer_end = buffer->data + ram_console_buffer_size; -+ uint8_t *block; -+ uint8_t *par; -+ int size = ECC_BLOCK_SIZE; -+#endif -+ memcpy(buffer->data + buffer->start, s, count); -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ block = buffer->data + (buffer->start & ~(ECC_BLOCK_SIZE - 1)); -+ par = ram_console_par_buffer + -+ (buffer->start / ECC_BLOCK_SIZE) * ECC_SIZE; -+ do { -+ if (block + ECC_BLOCK_SIZE > buffer_end) -+ size = buffer_end - block; -+ ram_console_encode_rs8(block, size, par); -+ block += ECC_BLOCK_SIZE; -+ par += ECC_SIZE; -+ } while (block < buffer->data + buffer->start + count); -+#endif -+} -+ -+static void ram_console_update_header(void) -+{ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ struct ram_console_buffer *buffer = ram_console_buffer; -+ uint8_t *par; -+ par = ram_console_par_buffer + -+ DIV_ROUND_UP(ram_console_buffer_size, ECC_BLOCK_SIZE) * ECC_SIZE; -+ ram_console_encode_rs8((uint8_t *)buffer, sizeof(*buffer), par); -+#endif -+} -+ -+static void -+ram_console_write(struct console *console, const char *s, unsigned int count) -+{ -+ int rem; -+ struct ram_console_buffer *buffer = ram_console_buffer; -+ -+ if (count > ram_console_buffer_size) { -+ s += count - ram_console_buffer_size; -+ count = ram_console_buffer_size; -+ } -+ rem = ram_console_buffer_size - buffer->start; -+ if (rem < count) { -+ ram_console_update(s, rem); -+ s += rem; -+ count -= rem; -+ buffer->start = 0; -+ buffer->size = ram_console_buffer_size; -+ } -+ ram_console_update(s, count); -+ -+ buffer->start += count; -+ if (buffer->size < ram_console_buffer_size) -+ buffer->size += count; -+ ram_console_update_header(); -+} -+ -+static struct console ram_console = { -+ .name = "ram", -+ .write = ram_console_write, -+ .flags = CON_PRINTBUFFER | CON_ENABLED, -+ .index = -1, -+}; -+ -+static void __init -+ram_console_save_old(struct ram_console_buffer *buffer, char *dest) -+{ -+ size_t old_log_size = buffer->size; -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ uint8_t *block; -+ uint8_t *par; -+ char strbuf[80]; -+ int strbuf_len; -+ -+ block = buffer->data; -+ par = ram_console_par_buffer; -+ while (block < buffer->data + buffer->size) { -+ int numerr; -+ int size = ECC_BLOCK_SIZE; -+ if (block + size > buffer->data + ram_console_buffer_size) -+ size = buffer->data + ram_console_buffer_size - block; -+ numerr = ram_console_decode_rs8(block, size, par); -+ if (numerr > 0) { -+#if 0 -+ printk(KERN_INFO "ram_console: error in block %p, %d\n", -+ block, numerr); -+#endif -+ ram_console_corrected_bytes += numerr; -+ } else if (numerr < 0) { -+#if 0 -+ printk(KERN_INFO "ram_console: uncorrectable error in " -+ "block %p\n", block); -+#endif -+ ram_console_bad_blocks++; -+ } -+ block += ECC_BLOCK_SIZE; -+ par += ECC_SIZE; -+ } -+ if (ram_console_corrected_bytes || ram_console_bad_blocks) -+ strbuf_len = snprintf(strbuf, sizeof(strbuf), -+ "\n%d Corrected bytes, %d unrecoverable blocks\n", -+ ram_console_corrected_bytes, ram_console_bad_blocks); -+ else -+ strbuf_len = snprintf(strbuf, sizeof(strbuf), -+ "\nNo errors detected\n"); -+ if (strbuf_len >= sizeof(strbuf)) -+ strbuf_len = sizeof(strbuf) - 1; -+ old_log_size += strbuf_len; -+#endif -+ -+ if (dest == NULL) { -+ dest = kmalloc(old_log_size, GFP_KERNEL); -+ if (dest == NULL) { -+ printk(KERN_ERR -+ "ram_console: failed to allocate buffer\n"); -+ return; -+ } -+ } -+ -+ ram_console_old_log = dest; -+ ram_console_old_log_size = old_log_size; -+ memcpy(ram_console_old_log, -+ &buffer->data[buffer->start], buffer->size - buffer->start); -+ memcpy(ram_console_old_log + buffer->size - buffer->start, -+ &buffer->data[0], buffer->start); -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ memcpy(ram_console_old_log + old_log_size - strbuf_len, -+ strbuf, strbuf_len); -+#endif -+} -+ -+static int __init ram_console_init(struct ram_console_buffer *buffer, -+ size_t buffer_size, char *old_buf) -+{ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ int numerr; -+ uint8_t *par; -+#endif -+ ram_console_buffer = buffer; -+ ram_console_buffer_size = -+ buffer_size - sizeof(struct ram_console_buffer); -+ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ERROR_CORRECTION -+ ram_console_buffer_size -= (DIV_ROUND_UP(ram_console_buffer_size, -+ ECC_BLOCK_SIZE) + 1) * ECC_SIZE; -+ ram_console_par_buffer = buffer->data + ram_console_buffer_size; -+ -+ -+ /* first consecutive root is 0 -+ * primitive element to generate roots = 1 -+ */ -+ ram_console_rs_decoder = init_rs(ECC_SYMSIZE, ECC_POLY, 0, 1, ECC_SIZE); -+ if (ram_console_rs_decoder == NULL) { -+ printk(KERN_INFO "ram_console: init_rs failed\n"); -+ return 0; -+ } -+ -+ ram_console_corrected_bytes = 0; -+ ram_console_bad_blocks = 0; -+ -+ par = ram_console_par_buffer + -+ DIV_ROUND_UP(ram_console_buffer_size, ECC_BLOCK_SIZE) * ECC_SIZE; -+ -+ numerr = ram_console_decode_rs8(buffer, sizeof(*buffer), par); -+ if (numerr > 0) { -+ printk(KERN_INFO "ram_console: error in header, %d\n", numerr); -+ ram_console_corrected_bytes += numerr; -+ } else if (numerr < 0) { -+ printk(KERN_INFO -+ "ram_console: uncorrectable error in header\n"); -+ ram_console_bad_blocks++; -+ } -+#endif -+ -+ if (buffer->sig == RAM_CONSOLE_SIG) { -+ if (buffer->size > ram_console_buffer_size -+ || buffer->start > buffer->size) -+ printk(KERN_INFO "ram_console: found existing invalid " -+ "buffer, size %d, start %d\n", -+ buffer->size, buffer->start); -+ else { -+ printk(KERN_INFO "ram_console: found existing buffer, " -+ "size %d, start %d\n", -+ buffer->size, buffer->start); -+ ram_console_save_old(buffer, old_buf); -+ } -+ } else { -+ printk(KERN_INFO "ram_console: no valid data in buffer " -+ "(sig = 0x%08x)\n", buffer->sig); -+ } -+ -+ buffer->sig = RAM_CONSOLE_SIG; -+ buffer->start = 0; -+ buffer->size = 0; -+ -+ register_console(&ram_console); -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_ENABLE_VERBOSE -+ console_verbose(); -+#endif -+ return 0; -+} -+ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_EARLY_INIT -+static int __init ram_console_early_init(void) -+{ -+ return ram_console_init((struct ram_console_buffer *) -+ CONFIG_ANDROID_RAM_CONSOLE_EARLY_ADDR, -+ CONFIG_ANDROID_RAM_CONSOLE_EARLY_SIZE, -+ ram_console_old_log_init_buffer); -+} -+#else -+static int ram_console_driver_probe(struct platform_device *pdev) -+{ -+ struct resource *res = pdev->resource; -+ size_t start; -+ size_t buffer_size; -+ void *buffer; -+ -+ if (res == NULL || pdev->num_resources != 1 || -+ !(res->flags & IORESOURCE_MEM)) { -+ printk(KERN_ERR "ram_console: invalid resource, %p %d flags " -+ "%lx\n", res, pdev->num_resources, res ? res->flags : 0); -+ return -ENXIO; -+ } -+ buffer_size = res->end - res->start + 1; -+ start = res->start; -+ printk(KERN_INFO "ram_console: got buffer at %x, size %x\n", -+ start, buffer_size); -+ buffer = ioremap(res->start, buffer_size); -+ if (buffer == NULL) { -+ printk(KERN_ERR "ram_console: failed to map memory\n"); -+ return -ENOMEM; -+ } -+ -+ return ram_console_init(buffer, buffer_size, NULL/* allocate */); -+} -+ -+static struct platform_driver ram_console_driver = { -+ .probe = ram_console_driver_probe, -+ .driver = { -+ .name = "ram_console", -+ }, -+}; -+ -+static int __init ram_console_module_init(void) -+{ -+ int err; -+ err = platform_driver_register(&ram_console_driver); -+ return err; -+} -+#endif -+ -+static ssize_t ram_console_read_old(struct file *file, char __user *buf, -+ size_t len, loff_t *offset) -+{ -+ loff_t pos = *offset; -+ ssize_t count; -+ -+ if (pos >= ram_console_old_log_size) -+ return 0; -+ -+ count = min(len, (size_t)(ram_console_old_log_size - pos)); -+ if (copy_to_user(buf, ram_console_old_log + pos, count)) -+ return -EFAULT; -+ -+ *offset += count; -+ return count; -+} -+ -+static struct file_operations ram_console_file_ops = { -+ .owner = THIS_MODULE, -+ .read = ram_console_read_old, -+}; -+ -+static int __init ram_console_late_init(void) -+{ -+ struct proc_dir_entry *entry; -+ -+ if (ram_console_old_log == NULL) -+ return 0; -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_EARLY_INIT -+ ram_console_old_log = kmalloc(ram_console_old_log_size, GFP_KERNEL); -+ if (ram_console_old_log == NULL) { -+ printk(KERN_ERR -+ "ram_console: failed to allocate buffer for old log\n"); -+ ram_console_old_log_size = 0; -+ return 0; -+ } -+ memcpy(ram_console_old_log, -+ ram_console_old_log_init_buffer, ram_console_old_log_size); -+#endif -+ entry = create_proc_entry("last_kmsg", S_IFREG | S_IRUGO, NULL); -+ if (!entry) { -+ printk(KERN_ERR "ram_console: failed to create proc entry\n"); -+ kfree(ram_console_old_log); -+ ram_console_old_log = NULL; -+ return 0; -+ } -+ -+ entry->proc_fops = &ram_console_file_ops; -+ entry->size = ram_console_old_log_size; -+ return 0; -+} -+ -+#ifdef CONFIG_ANDROID_RAM_CONSOLE_EARLY_INIT -+console_initcall(ram_console_early_init); -+#else -+module_init(ram_console_module_init); -+#endif -+late_initcall(ram_console_late_init); -+ ---- /dev/null -+++ b/drivers/android/timed_gpio.c -@@ -0,0 +1,177 @@ -+/* drivers/android/timed_gpio.c -+ * -+ * Copyright (C) 2008 Google, Inc. -+ * Author: Mike Lockwood <lockwood@android.com> -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/platform_device.h> -+#include <linux/hrtimer.h> -+#include <linux/err.h> -+#include <mach/gpio.h> -+ -+#include <linux/android_timed_gpio.h> -+ -+ -+static struct class *timed_gpio_class; -+ -+struct timed_gpio_data { -+ struct device *dev; -+ struct hrtimer timer; -+ spinlock_t lock; -+ unsigned gpio; -+ int max_timeout; -+ u8 active_low; -+}; -+ -+static enum hrtimer_restart gpio_timer_func(struct hrtimer *timer) -+{ -+ struct timed_gpio_data *gpio_data = container_of(timer, struct timed_gpio_data, timer); -+ -+ gpio_direction_output(gpio_data->gpio, gpio_data->active_low ? 1 : 0); -+ return HRTIMER_NORESTART; -+} -+ -+static ssize_t gpio_enable_show(struct device *dev, struct device_attribute *attr, char *buf) -+{ -+ struct timed_gpio_data *gpio_data = dev_get_drvdata(dev); -+ int remaining; -+ -+ if (hrtimer_active(&gpio_data->timer)) { -+ ktime_t r = hrtimer_get_remaining(&gpio_data->timer); -+ remaining = r.tv.sec * 1000 + r.tv.nsec / 1000000; -+ } else -+ remaining = 0; -+ -+ return sprintf(buf, "%d\n", remaining); -+} -+ -+static ssize_t gpio_enable_store( -+ struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t size) -+{ -+ struct timed_gpio_data *gpio_data = dev_get_drvdata(dev); -+ int value; -+ unsigned long flags; -+ -+ sscanf(buf, "%d", &value); -+ -+ spin_lock_irqsave(&gpio_data->lock, flags); -+ -+ /* cancel previous timer and set GPIO according to value */ -+ hrtimer_cancel(&gpio_data->timer); -+ gpio_direction_output(gpio_data->gpio, gpio_data->active_low ? !value : !!value); -+ -+ if (value > 0) { -+ if (value > gpio_data->max_timeout) -+ value = gpio_data->max_timeout; -+ -+ hrtimer_start(&gpio_data->timer, -+ ktime_set(value / 1000, (value % 1000) * 1000000), -+ HRTIMER_MODE_REL); -+ } -+ -+ spin_unlock_irqrestore(&gpio_data->lock, flags); -+ -+ return size; -+} -+ -+static DEVICE_ATTR(enable, S_IRUGO | S_IWUSR, gpio_enable_show, gpio_enable_store); -+ -+static int android_timed_gpio_probe(struct platform_device *pdev) -+{ -+ struct timed_gpio_platform_data *pdata = pdev->dev.platform_data; -+ struct timed_gpio *cur_gpio; -+ struct timed_gpio_data *gpio_data, *gpio_dat; -+ int i, ret = 0; -+ -+ if (!pdata) -+ return -EBUSY; -+ -+ gpio_data = kzalloc(sizeof(struct timed_gpio_data) * pdata->num_gpios, GFP_KERNEL); -+ if (!gpio_data) -+ return -ENOMEM; -+ -+ for (i = 0; i < pdata->num_gpios; i++) { -+ cur_gpio = &pdata->gpios[i]; -+ gpio_dat = &gpio_data[i]; -+ -+ hrtimer_init(&gpio_dat->timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL); -+ gpio_dat->timer.function = gpio_timer_func; -+ spin_lock_init(&gpio_dat->lock); -+ -+ gpio_dat->gpio = cur_gpio->gpio; -+ gpio_dat->max_timeout = cur_gpio->max_timeout; -+ gpio_dat->active_low = cur_gpio->active_low; -+ gpio_direction_output(gpio_dat->gpio, gpio_dat->active_low); -+ -+ gpio_dat->dev = device_create(timed_gpio_class, &pdev->dev, 0, "%s", cur_gpio->name); -+ if (unlikely(IS_ERR(gpio_dat->dev))) -+ return PTR_ERR(gpio_dat->dev); -+ -+ dev_set_drvdata(gpio_dat->dev, gpio_dat); -+ ret = device_create_file(gpio_dat->dev, &dev_attr_enable); -+ if (ret) -+ return ret; -+ } -+ -+ platform_set_drvdata(pdev, gpio_data); -+ -+ return 0; -+} -+ -+static int android_timed_gpio_remove(struct platform_device *pdev) -+{ -+ struct timed_gpio_platform_data *pdata = pdev->dev.platform_data; -+ struct timed_gpio_data *gpio_data = platform_get_drvdata(pdev); -+ int i; -+ -+ for (i = 0; i < pdata->num_gpios; i++) { -+ device_remove_file(gpio_data[i].dev, &dev_attr_enable); -+ device_unregister(gpio_data[i].dev); -+ } -+ -+ kfree(gpio_data); -+ -+ return 0; -+} -+ -+static struct platform_driver android_timed_gpio_driver = { -+ .probe = android_timed_gpio_probe, -+ .remove = android_timed_gpio_remove, -+ .driver = { -+ .name = "android-timed-gpio", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+static int __init android_timed_gpio_init(void) -+{ -+ timed_gpio_class = class_create(THIS_MODULE, "timed_output"); -+ if (IS_ERR(timed_gpio_class)) -+ return PTR_ERR(timed_gpio_class); -+ return platform_driver_register(&android_timed_gpio_driver); -+} -+ -+static void __exit android_timed_gpio_exit(void) -+{ -+ class_destroy(timed_gpio_class); -+ platform_driver_unregister(&android_timed_gpio_driver); -+} -+ -+module_init(android_timed_gpio_init); -+module_exit(android_timed_gpio_exit); -+ -+MODULE_AUTHOR("Mike Lockwood <lockwood@android.com>"); -+MODULE_DESCRIPTION("Android timed gpio driver"); -+MODULE_LICENSE("GPL"); ---- /dev/null -+++ b/drivers/ar6000/ar6000/ar6000_drv.c -@@ -0,0 +1,3124 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+/* -+ * This driver is a pseudo ethernet driver to access the Atheros AR6000 -+ * WLAN Device -+ */ -+static const char athId[] __attribute__ ((unused)) = "$Id: //depot/sw/releases/olca2.0-GPL/host/os/linux/ar6000_drv.c#2 $"; -+ -+#include "ar6000_drv.h" -+#include "htc.h" -+ -+MODULE_LICENSE("GPL and additional rights"); -+ -+#ifndef REORG_APTC_HEURISTICS -+#undef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+#endif /* REORG_APTC_HEURISTICS */ -+ -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+#define APTC_TRAFFIC_SAMPLING_INTERVAL 100 /* msec */ -+#define APTC_UPPER_THROUGHPUT_THRESHOLD 3000 /* Kbps */ -+#define APTC_LOWER_THROUGHPUT_THRESHOLD 2000 /* Kbps */ -+ -+typedef struct aptc_traffic_record { -+ A_BOOL timerScheduled; -+ struct timeval samplingTS; -+ unsigned long bytesReceived; -+ unsigned long bytesTransmitted; -+} APTC_TRAFFIC_RECORD; -+ -+A_TIMER aptcTimer; -+APTC_TRAFFIC_RECORD aptcTR; -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ -+int bmienable = 0; -+unsigned int bypasswmi = 0; -+unsigned int debuglevel = 0; -+int tspecCompliance = 1; -+unsigned int busspeedlow = 0; -+unsigned int onebitmode = 0; -+unsigned int skipflash = 0; -+unsigned int wmitimeout = 2; -+unsigned int wlanNodeCaching = 1; -+unsigned int enableuartprint = 0; -+unsigned int logWmiRawMsgs = 0; -+unsigned int enabletimerwar = 0; -+unsigned int mbox_yield_limit = 99; -+int reduce_credit_dribble = 1 + HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_ONE_HALF; -+int allow_trace_signal = 0; -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+unsigned int testmode =0; -+#endif -+ -+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0) -+module_param(bmienable, int, 0644); -+module_param(bypasswmi, int, 0644); -+module_param(debuglevel, int, 0644); -+module_param(tspecCompliance, int, 0644); -+module_param(onebitmode, int, 0644); -+module_param(busspeedlow, int, 0644); -+module_param(skipflash, int, 0644); -+module_param(wmitimeout, int, 0644); -+module_param(wlanNodeCaching, int, 0644); -+module_param(logWmiRawMsgs, int, 0644); -+module_param(enableuartprint, int, 0644); -+module_param(enabletimerwar, int, 0644); -+module_param(mbox_yield_limit, int, 0644); -+module_param(reduce_credit_dribble, int, 0644); -+module_param(allow_trace_signal, int, 0644); -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+module_param(testmode, int, 0644); -+#endif -+#else -+ -+#define __user -+/* for linux 2.4 and lower */ -+MODULE_PARM(bmienable,"i"); -+MODULE_PARM(bypasswmi,"i"); -+MODULE_PARM(debuglevel, "i"); -+MODULE_PARM(onebitmode,"i"); -+MODULE_PARM(busspeedlow, "i"); -+MODULE_PARM(skipflash, "i"); -+MODULE_PARM(wmitimeout, "i"); -+MODULE_PARM(wlanNodeCaching, "i"); -+MODULE_PARM(enableuartprint,"i"); -+MODULE_PARM(logWmiRawMsgs, "i"); -+MODULE_PARM(enabletimerwar,"i"); -+MODULE_PARM(mbox_yield_limit,"i"); -+MODULE_PARM(reduce_credit_dribble,"i"); -+MODULE_PARM(allow_trace_signal,"i"); -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+MODULE_PARM(testmode, "i"); -+#endif -+#endif -+ -+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,10) -+/* in 2.6.10 and later this is now a pointer to a uint */ -+unsigned int _mboxnum = HTC_MAILBOX_NUM_MAX; -+#define mboxnum &_mboxnum -+#else -+unsigned int mboxnum = HTC_MAILBOX_NUM_MAX; -+#endif -+ -+#ifdef DEBUG -+A_UINT32 g_dbg_flags = DBG_DEFAULTS; -+unsigned int debugflags = 0; -+int debugdriver = 1; -+unsigned int debughtc = 128; -+unsigned int debugbmi = 1; -+unsigned int debughif = 2; -+unsigned int resetok = 1; -+unsigned int txcreditsavailable[HTC_MAILBOX_NUM_MAX] = {0}; -+unsigned int txcreditsconsumed[HTC_MAILBOX_NUM_MAX] = {0}; -+unsigned int txcreditintrenable[HTC_MAILBOX_NUM_MAX] = {0}; -+unsigned int txcreditintrenableaggregate[HTC_MAILBOX_NUM_MAX] = {0}; -+ -+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0) -+module_param(debugflags, int, 0644); -+module_param(debugdriver, int, 0644); -+module_param(debughtc, int, 0644); -+module_param(debugbmi, int, 0644); -+module_param(debughif, int, 0644); -+module_param(resetok, int, 0644); -+module_param_array(txcreditsavailable, int, mboxnum, 0644); -+module_param_array(txcreditsconsumed, int, mboxnum, 0644); -+module_param_array(txcreditintrenable, int, mboxnum, 0644); -+module_param_array(txcreditintrenableaggregate, int, mboxnum, 0644); -+#else -+/* linux 2.4 and lower */ -+MODULE_PARM(debugflags,"i"); -+MODULE_PARM(debugdriver, "i"); -+MODULE_PARM(debughtc, "i"); -+MODULE_PARM(debugbmi, "i"); -+MODULE_PARM(debughif, "i"); -+MODULE_PARM(resetok, "i"); -+MODULE_PARM(txcreditsavailable, "0-3i"); -+MODULE_PARM(txcreditsconsumed, "0-3i"); -+MODULE_PARM(txcreditintrenable, "0-3i"); -+MODULE_PARM(txcreditintrenableaggregate, "0-3i"); -+#endif -+ -+#else -+unsigned int resetok = 1; -+ -+#endif /* DEBUG */ -+ -+unsigned int tx_attempt[HTC_MAILBOX_NUM_MAX] = {0}; -+unsigned int tx_post[HTC_MAILBOX_NUM_MAX] = {0}; -+unsigned int tx_complete[HTC_MAILBOX_NUM_MAX] = {0}; -+unsigned int hifBusRequestNumMax = 40; -+unsigned int war23838_disabled = 0; -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+unsigned int enableAPTCHeuristics = 1; -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0) -+module_param_array(tx_attempt, int, mboxnum, 0644); -+module_param_array(tx_post, int, mboxnum, 0644); -+module_param_array(tx_complete, int, mboxnum, 0644); -+module_param(hifBusRequestNumMax, int, 0644); -+module_param(war23838_disabled, int, 0644); -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+module_param(enableAPTCHeuristics, int, 0644); -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+#else -+MODULE_PARM(tx_attempt, "0-3i"); -+MODULE_PARM(tx_post, "0-3i"); -+MODULE_PARM(tx_complete, "0-3i"); -+MODULE_PARM(hifBusRequestNumMax, "i"); -+MODULE_PARM(war23838_disabled, "i"); -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+MODULE_PARM(enableAPTCHeuristics, "i"); -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+#endif -+ -+#ifdef BLOCK_TX_PATH_FLAG -+int blocktx = 0; -+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0) -+module_param(blocktx, int, 0644); -+#else -+MODULE_PARM(blocktx, "i"); -+#endif -+#endif /* BLOCK_TX_PATH_FLAG */ -+ -+// TODO move to arsoft_c -+USER_RSSI_THOLD rssi_map[12]; -+ -+int reconnect_flag = 0; -+ -+DECLARE_WAIT_QUEUE_HEAD(ar6000_scan_queue); -+ -+/* Function declarations */ -+static int ar6000_init_module(void); -+static void ar6000_cleanup_module(void); -+ -+int ar6000_init(struct net_device *dev); -+static int ar6000_open(struct net_device *dev); -+static int ar6000_close(struct net_device *dev); -+static void ar6000_init_control_info(AR_SOFTC_T *ar); -+static int ar6000_data_tx(struct sk_buff *skb, struct net_device *dev); -+ -+static void ar6000_destroy(struct net_device *dev, unsigned int unregister); -+static void ar6000_detect_error(unsigned long ptr); -+static struct net_device_stats *ar6000_get_stats(struct net_device *dev); -+static struct iw_statistics *ar6000_get_iwstats(struct net_device * dev); -+ -+/* -+ * HTC service connection handlers -+ */ -+static void ar6000_avail_ev(HTC_HANDLE HTCHandle); -+ -+static void ar6000_unavail_ev(void *Instance); -+ -+static void ar6000_target_failure(void *Instance, A_STATUS Status); -+ -+static void ar6000_rx(void *Context, HTC_PACKET *pPacket); -+ -+static void ar6000_rx_refill(void *Context,HTC_ENDPOINT_ID Endpoint); -+ -+static void ar6000_tx_complete(void *Context, HTC_PACKET *pPacket); -+ -+static void ar6000_tx_queue_full(void *Context, HTC_ENDPOINT_ID Endpoint); -+ -+/* -+ * Static variables -+ */ -+ -+static struct net_device *ar6000_devices[MAX_AR6000]; -+extern struct iw_handler_def ath_iw_handler_def; -+DECLARE_WAIT_QUEUE_HEAD(arEvent); -+static void ar6000_cookie_init(AR_SOFTC_T *ar); -+static void ar6000_cookie_cleanup(AR_SOFTC_T *ar); -+static void ar6000_free_cookie(AR_SOFTC_T *ar, struct ar_cookie * cookie); -+static struct ar_cookie *ar6000_alloc_cookie(AR_SOFTC_T *ar); -+static void ar6000_TxDataCleanup(AR_SOFTC_T *ar); -+ -+#ifdef USER_KEYS -+static A_STATUS ar6000_reinstall_keys(AR_SOFTC_T *ar,A_UINT8 key_op_ctrl); -+#endif -+ -+ -+static struct ar_cookie s_ar_cookie_mem[MAX_COOKIE_NUM]; -+ -+#define HOST_INTEREST_ITEM_ADDRESS(ar, item) \ -+((ar->arTargetType == TARGET_TYPE_AR6001) ? \ -+ AR6001_HOST_INTEREST_ITEM_ADDRESS(item) : \ -+ AR6002_HOST_INTEREST_ITEM_ADDRESS(item)) -+ -+ -+/* Debug log support */ -+ -+/* -+ * Flag to govern whether the debug logs should be parsed in the kernel -+ * or reported to the application. -+ */ -+#ifdef DEBUG -+#define REPORT_DEBUG_LOGS_TO_APP -+#endif -+ -+A_STATUS -+ar6000_set_host_app_area(AR_SOFTC_T *ar) -+{ -+ A_UINT32 address, data; -+ struct host_app_area_s host_app_area; -+ -+ /* Fetch the address of the host_app_area_s instance in the host interest area */ -+ address = HOST_INTEREST_ITEM_ADDRESS(ar, hi_app_host_interest); -+ if (ar6000_ReadRegDiag(ar->arHifDevice, &address, &data) != A_OK) { -+ return A_ERROR; -+ } -+ address = data; -+ host_app_area.wmi_protocol_ver = WMI_PROTOCOL_VERSION; -+ if (ar6000_WriteDataDiag(ar->arHifDevice, address, -+ (A_UCHAR *)&host_app_area, -+ sizeof(struct host_app_area_s)) != A_OK) -+ { -+ return A_ERROR; -+ } -+ -+ return A_OK; -+} -+ -+A_UINT32 -+dbglog_get_debug_hdr_ptr(AR_SOFTC_T *ar) -+{ -+ A_UINT32 param; -+ A_UINT32 address; -+ A_STATUS status; -+ -+ address = HOST_INTEREST_ITEM_ADDRESS(ar, hi_dbglog_hdr); -+ if ((status = ar6000_ReadDataDiag(ar->arHifDevice, address, -+ (A_UCHAR *)¶m, 4)) != A_OK) -+ { -+ param = 0; -+ } -+ -+ return param; -+} -+ -+/* -+ * The dbglog module has been initialized. Its ok to access the relevant -+ * data stuctures over the diagnostic window. -+ */ -+void -+ar6000_dbglog_init_done(AR_SOFTC_T *ar) -+{ -+ ar->dbglog_init_done = TRUE; -+} -+ -+A_UINT32 -+dbglog_get_debug_fragment(A_INT8 *datap, A_UINT32 len, A_UINT32 limit) -+{ -+ A_INT32 *buffer; -+ A_UINT32 count; -+ A_UINT32 numargs; -+ A_UINT32 length; -+ A_UINT32 fraglen; -+ -+ count = fraglen = 0; -+ buffer = (A_INT32 *)datap; -+ length = (limit >> 2); -+ -+ if (len <= limit) { -+ fraglen = len; -+ } else { -+ while (count < length) { -+ numargs = DBGLOG_GET_NUMARGS(buffer[count]); -+ fraglen = (count << 2); -+ count += numargs + 1; -+ } -+ } -+ -+ return fraglen; -+} -+ -+void -+dbglog_parse_debug_logs(A_INT8 *datap, A_UINT32 len) -+{ -+ A_INT32 *buffer; -+ A_UINT32 count; -+ A_UINT32 timestamp; -+ A_UINT32 debugid; -+ A_UINT32 moduleid; -+ A_UINT32 numargs; -+ A_UINT32 length; -+ -+ count = 0; -+ buffer = (A_INT32 *)datap; -+ length = (len >> 2); -+ while (count < length) { -+ debugid = DBGLOG_GET_DBGID(buffer[count]); -+ moduleid = DBGLOG_GET_MODULEID(buffer[count]); -+ numargs = DBGLOG_GET_NUMARGS(buffer[count]); -+ timestamp = DBGLOG_GET_TIMESTAMP(buffer[count]); -+ switch (numargs) { -+ case 0: -+ AR_DEBUG_PRINTF("%d %d (%d)\n", moduleid, debugid, timestamp); -+ break; -+ -+ case 1: -+ AR_DEBUG_PRINTF("%d %d (%d): 0x%x\n", moduleid, debugid, -+ timestamp, buffer[count+1]); -+ break; -+ -+ case 2: -+ AR_DEBUG_PRINTF("%d %d (%d): 0x%x, 0x%x\n", moduleid, debugid, -+ timestamp, buffer[count+1], buffer[count+2]); -+ break; -+ -+ default: -+ AR_DEBUG_PRINTF("Invalid args: %d\n", numargs); -+ } -+ count += numargs + 1; -+ } -+} -+ -+int -+ar6000_dbglog_get_debug_logs(AR_SOFTC_T *ar) -+{ -+ struct dbglog_hdr_s debug_hdr; -+ struct dbglog_buf_s debug_buf; -+ A_UINT32 address; -+ A_UINT32 length; -+ A_UINT32 dropped; -+ A_UINT32 firstbuf; -+ A_UINT32 debug_hdr_ptr; -+ -+ if (!ar->dbglog_init_done) return A_ERROR; -+ -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ if (ar->dbgLogFetchInProgress) { -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ return A_EBUSY; -+ } -+ -+ /* block out others */ -+ ar->dbgLogFetchInProgress = TRUE; -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ -+ debug_hdr_ptr = dbglog_get_debug_hdr_ptr(ar); -+ printk("debug_hdr_ptr: 0x%x\n", debug_hdr_ptr); -+ -+ /* Get the contents of the ring buffer */ -+ if (debug_hdr_ptr) { -+ address = debug_hdr_ptr; -+ length = sizeof(struct dbglog_hdr_s); -+ ar6000_ReadDataDiag(ar->arHifDevice, address, -+ (A_UCHAR *)&debug_hdr, length); -+ address = (A_UINT32)debug_hdr.dbuf; -+ firstbuf = address; -+ dropped = debug_hdr.dropped; -+ length = sizeof(struct dbglog_buf_s); -+ ar6000_ReadDataDiag(ar->arHifDevice, address, -+ (A_UCHAR *)&debug_buf, length); -+ -+ do { -+ address = (A_UINT32)debug_buf.buffer; -+ length = debug_buf.length; -+ if ((length) && (debug_buf.length <= debug_buf.bufsize)) { -+ /* Rewind the index if it is about to overrun the buffer */ -+ if (ar->log_cnt > (DBGLOG_HOST_LOG_BUFFER_SIZE - length)) { -+ ar->log_cnt = 0; -+ } -+ if(A_OK != ar6000_ReadDataDiag(ar->arHifDevice, address, -+ (A_UCHAR *)&ar->log_buffer[ar->log_cnt], length)) -+ { -+ break; -+ } -+ ar6000_dbglog_event(ar, dropped, &ar->log_buffer[ar->log_cnt], length); -+ ar->log_cnt += length; -+ } else { -+ AR_DEBUG_PRINTF("Length: %d (Total size: %d)\n", -+ debug_buf.length, debug_buf.bufsize); -+ } -+ -+ address = (A_UINT32)debug_buf.next; -+ length = sizeof(struct dbglog_buf_s); -+ if(A_OK != ar6000_ReadDataDiag(ar->arHifDevice, address, -+ (A_UCHAR *)&debug_buf, length)) -+ { -+ break; -+ } -+ -+ } while (address != firstbuf); -+ } -+ -+ ar->dbgLogFetchInProgress = FALSE; -+ -+ return A_OK; -+} -+ -+void -+ar6000_dbglog_event(AR_SOFTC_T *ar, A_UINT32 dropped, -+ A_INT8 *buffer, A_UINT32 length) -+{ -+#ifdef REPORT_DEBUG_LOGS_TO_APP -+ #define MAX_WIRELESS_EVENT_SIZE 252 -+ /* -+ * Break it up into chunks of MAX_WIRELESS_EVENT_SIZE bytes of messages. -+ * There seems to be a limitation on the length of message that could be -+ * transmitted to the user app via this mechanism. -+ */ -+ A_UINT32 send, sent; -+ -+ sent = 0; -+ send = dbglog_get_debug_fragment(&buffer[sent], length - sent, -+ MAX_WIRELESS_EVENT_SIZE); -+ while (send) { -+ ar6000_send_event_to_app(ar, WMIX_DBGLOG_EVENTID, &buffer[sent], send); -+ sent += send; -+ send = dbglog_get_debug_fragment(&buffer[sent], length - sent, -+ MAX_WIRELESS_EVENT_SIZE); -+ } -+#else -+ AR_DEBUG_PRINTF("Dropped logs: 0x%x\nDebug info length: %d\n", -+ dropped, length); -+ -+ /* Interpret the debug logs */ -+ dbglog_parse_debug_logs(buffer, length); -+#endif /* REPORT_DEBUG_LOGS_TO_APP */ -+} -+ -+ -+ -+static int __init -+ar6000_init_module(void) -+{ -+ static int probed = 0; -+ A_STATUS status; -+ HTC_INIT_INFO initInfo; -+ -+ A_MEMZERO(&initInfo,sizeof(initInfo)); -+ initInfo.AddInstance = ar6000_avail_ev; -+ initInfo.DeleteInstance = ar6000_unavail_ev; -+ initInfo.TargetFailure = ar6000_target_failure; -+ -+ -+#ifdef DEBUG -+ /* Set the debug flags if specified at load time */ -+ if(debugflags != 0) -+ { -+ g_dbg_flags = debugflags; -+ } -+#endif -+ -+ if (probed) { -+ return -ENODEV; -+ } -+ probed++; -+ -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+ memset(&aptcTR, 0, sizeof(APTC_TRAFFIC_RECORD)); -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+ ar6000_gpio_init(); -+#endif /* CONFIG_HOST_GPIO_SUPPORT */ -+ -+ status = HTCInit(&initInfo); -+ if(status != A_OK) -+ return -ENODEV; -+ -+ return 0; -+} -+ -+static void __exit -+ar6000_cleanup_module(void) -+{ -+ int i = 0; -+ struct net_device *ar6000_netdev; -+ -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+ /* Delete the Adaptive Power Control timer */ -+ if (timer_pending(&aptcTimer)) { -+ del_timer_sync(&aptcTimer); -+ } -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ -+ for (i=0; i < MAX_AR6000; i++) { -+ if (ar6000_devices[i] != NULL) { -+ ar6000_netdev = ar6000_devices[i]; -+ ar6000_devices[i] = NULL; -+ ar6000_destroy(ar6000_netdev, 1); -+ } -+ } -+ -+ /* shutting down HTC will cause the HIF layer to detach from the -+ * underlying bus driver which will cause the subsequent deletion of -+ * all HIF and HTC instances */ -+ HTCShutDown(); -+ -+ AR_DEBUG_PRINTF("ar6000_cleanup: success\n"); -+} -+ -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+void -+aptcTimerHandler(unsigned long arg) -+{ -+ A_UINT32 numbytes; -+ A_UINT32 throughput; -+ AR_SOFTC_T *ar; -+ A_STATUS status; -+ -+ ar = (AR_SOFTC_T *)arg; -+ A_ASSERT(ar != NULL); -+ A_ASSERT(!timer_pending(&aptcTimer)); -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ /* Get the number of bytes transferred */ -+ numbytes = aptcTR.bytesTransmitted + aptcTR.bytesReceived; -+ aptcTR.bytesTransmitted = aptcTR.bytesReceived = 0; -+ -+ /* Calculate and decide based on throughput thresholds */ -+ throughput = ((numbytes * 8)/APTC_TRAFFIC_SAMPLING_INTERVAL); /* Kbps */ -+ if (throughput < APTC_LOWER_THROUGHPUT_THRESHOLD) { -+ /* Enable Sleep and delete the timer */ -+ A_ASSERT(ar->arWmiReady == TRUE); -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ status = wmi_powermode_cmd(ar->arWmi, REC_POWER); -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ A_ASSERT(status == A_OK); -+ aptcTR.timerScheduled = FALSE; -+ } else { -+ A_TIMEOUT_MS(&aptcTimer, APTC_TRAFFIC_SAMPLING_INTERVAL, 0); -+ } -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+} -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ -+ -+ -+/* set HTC block size, assume BMI is already initialized */ -+A_STATUS ar6000_SetHTCBlockSize(AR_SOFTC_T *ar) -+{ -+ A_STATUS status; -+ A_UINT32 blocksizes[HTC_MAILBOX_NUM_MAX]; -+ -+ do { -+ /* get the block sizes */ -+ status = HIFConfigureDevice(ar->arHifDevice, HIF_DEVICE_GET_MBOX_BLOCK_SIZE, -+ blocksizes, sizeof(blocksizes)); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF("Failed to get block size info from HIF layer...\n"); -+ break; -+ } -+ /* note: we actually get the block size for mailbox 1, for SDIO the block -+ * size on mailbox 0 is artificially set to 1 */ -+ /* must be a power of 2 */ -+ A_ASSERT((blocksizes[1] & (blocksizes[1] - 1)) == 0); -+ -+ /* set the host interest area for the block size */ -+ status = BMIWriteMemory(ar->arHifDevice, -+ HOST_INTEREST_ITEM_ADDRESS(ar, hi_mbox_io_block_sz), -+ (A_UCHAR *)&blocksizes[1], -+ 4); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF("BMIWriteMemory for IO block size failed \n"); -+ break; -+ } -+ -+ AR_DEBUG_PRINTF("Block Size Set: %d (target address:0x%X)\n", -+ blocksizes[1], HOST_INTEREST_ITEM_ADDRESS(ar, hi_mbox_io_block_sz)); -+ -+ /* set the host interest area for the mbox ISR yield limit */ -+ status = BMIWriteMemory(ar->arHifDevice, -+ HOST_INTEREST_ITEM_ADDRESS(ar, hi_mbox_isr_yield_limit), -+ (A_UCHAR *)&mbox_yield_limit, -+ 4); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF("BMIWriteMemory for yield limit failed \n"); -+ break; -+ } -+ -+ } while (FALSE); -+ -+ return status; -+} -+ -+static void free_raw_buffers(AR_SOFTC_T *ar) -+{ -+ int i, j; -+ -+ for (i = 0; i != HTC_RAW_STREAM_NUM_MAX; i++) { -+ for (j = 0; j != RAW_HTC_READ_BUFFERS_NUM; j++) -+ kfree(ar->raw_htc_read_buffer[i][j]); -+ for (j = 0; j != RAW_HTC_WRITE_BUFFERS_NUM; j++) -+ kfree(ar->raw_htc_write_buffer[i][j]); -+ } -+} -+ -+static int alloc_raw_buffers(AR_SOFTC_T *ar) -+{ -+ int i, j; -+ raw_htc_buffer *b; -+ -+ for (i = 0; i != HTC_RAW_STREAM_NUM_MAX; i++) { -+ for (j = 0; j != RAW_HTC_READ_BUFFERS_NUM; j++) { -+ b = kzalloc(sizeof(*b), GFP_KERNEL); -+ if (!b) -+ return -ENOMEM; -+ ar->raw_htc_read_buffer[i][j] = b; -+ } -+ for (j = 0; j != RAW_HTC_WRITE_BUFFERS_NUM; j++) { -+ b = kzalloc(sizeof(*b), GFP_KERNEL); -+ if (!b) -+ return -ENOMEM; -+ ar->raw_htc_write_buffer[i][j] = b; -+ } -+ } -+ return 0; -+} -+ -+/* -+ * HTC Event handlers -+ */ -+static void -+ar6000_avail_ev(HTC_HANDLE HTCHandle) -+{ -+ int i; -+ struct net_device *dev; -+ AR_SOFTC_T *ar; -+ int device_index = 0; -+ -+ AR_DEBUG_PRINTF("ar6000_available\n"); -+ -+ for (i=0; i < MAX_AR6000; i++) { -+ if (ar6000_devices[i] == NULL) { -+ break; -+ } -+ } -+ -+ if (i == MAX_AR6000) { -+ AR_DEBUG_PRINTF("ar6000_available: max devices reached\n"); -+ return; -+ } -+ -+ /* Save this. It gives a bit better readability especially since */ -+ /* we use another local "i" variable below. */ -+ device_index = i; -+ -+ A_ASSERT(HTCHandle != NULL); -+ -+ dev = alloc_etherdev(sizeof(AR_SOFTC_T)); -+ if (dev == NULL) { -+ AR_DEBUG_PRINTF("ar6000_available: can't alloc etherdev\n"); -+ return; -+ } -+ -+ ether_setup(dev); -+ -+ if (dev->priv == NULL) { -+ printk(KERN_CRIT "ar6000_available: Could not allocate memory\n"); -+ return; -+ } -+ -+ A_MEMZERO(dev->priv, sizeof(AR_SOFTC_T)); -+ -+ ar = (AR_SOFTC_T *)dev->priv; -+ ar->arNetDev = dev; -+ ar->arHtcTarget = HTCHandle; -+ ar->arHifDevice = HTCGetHifDevice(HTCHandle); -+ ar->arWlanState = WLAN_ENABLED; -+ ar->arRadioSwitch = WLAN_ENABLED; -+ ar->arDeviceIndex = device_index; -+ -+ A_INIT_TIMER(&ar->arHBChallengeResp.timer, ar6000_detect_error, dev); -+ ar->arHBChallengeResp.seqNum = 0; -+ ar->arHBChallengeResp.outstanding = FALSE; -+ ar->arHBChallengeResp.missCnt = 0; -+ ar->arHBChallengeResp.frequency = AR6000_HB_CHALLENGE_RESP_FREQ_DEFAULT; -+ ar->arHBChallengeResp.missThres = AR6000_HB_CHALLENGE_RESP_MISS_THRES_DEFAULT; -+ -+ ar6000_init_control_info(ar); -+ init_waitqueue_head(&arEvent); -+ sema_init(&ar->arSem, 1); -+ -+ if (alloc_raw_buffers(ar)) { -+ free_raw_buffers(ar); -+ /* -+ * @@@ Clean up our own mess, but for anything else, cheerfully mimick -+ * the beautiful error non-handling of the rest of this function. -+ */ -+ return; -+ } -+ -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+ A_INIT_TIMER(&aptcTimer, aptcTimerHandler, ar); -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ -+ /* -+ * If requested, perform some magic which requires no cooperation from -+ * the Target. It causes the Target to ignore flash and execute to the -+ * OS from ROM. -+ * -+ * This is intended to support recovery from a corrupted flash on Targets -+ * that support flash. -+ */ -+ if (skipflash) -+ { -+ ar6000_reset_device_skipflash(ar->arHifDevice); -+ } -+ -+ BMIInit(); -+ { -+ struct bmi_target_info targ_info; -+ -+ if (BMIGetTargetInfo(ar->arHifDevice, &targ_info) != A_OK) { -+ return; -+ } -+ -+ ar->arVersion.target_ver = targ_info.target_ver; -+ ar->arTargetType = targ_info.target_type; -+ } -+ -+ if (enableuartprint) { -+ A_UINT32 param; -+ param = 1; -+ if (BMIWriteMemory(ar->arHifDevice, -+ HOST_INTEREST_ITEM_ADDRESS(ar, hi_serial_enable), -+ (A_UCHAR *)¶m, -+ 4)!= A_OK) -+ { -+ AR_DEBUG_PRINTF("BMIWriteMemory for enableuartprint failed \n"); -+ return ; -+ } -+ AR_DEBUG_PRINTF("Serial console prints enabled\n"); -+ } -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+ if(testmode) { -+ ar->arTargetMode = AR6000_TCMD_MODE; -+ }else { -+ ar->arTargetMode = AR6000_WLAN_MODE; -+ } -+#endif -+ if (enabletimerwar) { -+ A_UINT32 param; -+ -+ if (BMIReadMemory(ar->arHifDevice, -+ HOST_INTEREST_ITEM_ADDRESS(ar, hi_option_flag), -+ (A_UCHAR *)¶m, -+ 4)!= A_OK) -+ { -+ AR_DEBUG_PRINTF("BMIReadMemory for enabletimerwar failed \n"); -+ return; -+ } -+ -+ param |= HI_OPTION_TIMER_WAR; -+ -+ if (BMIWriteMemory(ar->arHifDevice, -+ HOST_INTEREST_ITEM_ADDRESS(ar, hi_option_flag), -+ (A_UCHAR *)¶m, -+ 4) != A_OK) -+ { -+ AR_DEBUG_PRINTF("BMIWriteMemory for enabletimerwar failed \n"); -+ return; -+ } -+ AR_DEBUG_PRINTF("Timer WAR enabled\n"); -+ } -+ -+ -+ /* since BMIInit is called in the driver layer, we have to set the block -+ * size here for the target */ -+ -+ if (A_FAILED(ar6000_SetHTCBlockSize(ar))) { -+ return; -+ } -+ -+ spin_lock_init(&ar->arLock); -+ -+ /* Don't install the init function if BMI is requested */ -+ if(!bmienable) -+ { -+ dev->init = ar6000_init; -+ } else { -+ AR_DEBUG_PRINTF(" BMI enabled \n"); -+ } -+ -+ dev->open = &ar6000_open; -+ dev->stop = &ar6000_close; -+ dev->hard_start_xmit = &ar6000_data_tx; -+ dev->get_stats = &ar6000_get_stats; -+ -+ /* dev->tx_timeout = ar6000_tx_timeout; */ -+ dev->do_ioctl = &ar6000_ioctl; -+ dev->watchdog_timeo = AR6000_TX_TIMEOUT; -+ ar6000_ioctl_iwsetup(&ath_iw_handler_def); -+ dev->wireless_handlers = &ath_iw_handler_def; -+ ath_iw_handler_def.get_wireless_stats = ar6000_get_iwstats; /*Displayed via proc fs */ -+ -+ /* -+ * We need the OS to provide us with more headroom in order to -+ * perform dix to 802.3, WMI header encap, and the HTC header -+ */ -+ dev->hard_header_len = ETH_HLEN + sizeof(ATH_LLC_SNAP_HDR) + -+ sizeof(WMI_DATA_HDR) + HTC_HEADER_LEN; -+ -+ /* This runs the init function */ -+ SET_NETDEV_DEV(dev, HIFGetOSDevice(ar->arHifDevice)); -+ if (register_netdev(dev)) { -+ AR_DEBUG_PRINTF("ar6000_avail: register_netdev failed\n"); -+ ar6000_destroy(dev, 0); -+ return; -+ } -+ -+ HTCSetInstance(ar->arHtcTarget, ar); -+ -+ /* We only register the device in the global list if we succeed. */ -+ /* If the device is in the global list, it will be destroyed */ -+ /* when the module is unloaded. */ -+ ar6000_devices[device_index] = dev; -+ -+ AR_DEBUG_PRINTF("ar6000_avail: name=%s htcTarget=0x%x, dev=0x%x (%d), ar=0x%x\n", -+ dev->name, (A_UINT32)HTCHandle, (A_UINT32)dev, device_index, -+ (A_UINT32)ar); -+} -+ -+static void ar6000_target_failure(void *Instance, A_STATUS Status) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Instance; -+ WMI_TARGET_ERROR_REPORT_EVENT errEvent; -+ static A_BOOL sip = FALSE; -+ -+ if (Status != A_OK) { -+ if (timer_pending(&ar->arHBChallengeResp.timer)) { -+ A_UNTIMEOUT(&ar->arHBChallengeResp.timer); -+ } -+ -+ /* try dumping target assertion information (if any) */ -+ ar6000_dump_target_assert_info(ar->arHifDevice,ar->arTargetType); -+ -+ /* -+ * Fetch the logs from the target via the diagnostic -+ * window. -+ */ -+ ar6000_dbglog_get_debug_logs(ar); -+ -+ /* Report the error only once */ -+ if (!sip) { -+ sip = TRUE; -+ errEvent.errorVal = WMI_TARGET_COM_ERR | -+ WMI_TARGET_FATAL_ERR; -+#ifdef SEND_EVENT_TO_APP -+ ar6000_send_event_to_app(ar, WMI_ERROR_REPORT_EVENTID, -+ (A_UINT8 *)&errEvent, -+ sizeof(WMI_TARGET_ERROR_REPORT_EVENT)); -+#endif -+ } -+ } -+} -+ -+static void -+ar6000_unavail_ev(void *Instance) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Instance; -+ /* NULL out it's entry in the global list */ -+ ar6000_devices[ar->arDeviceIndex] = NULL; -+ ar6000_destroy(ar->arNetDev, 1); -+} -+ -+/* -+ * We need to differentiate between the surprise and planned removal of the -+ * device because of the following consideration: -+ * - In case of surprise removal, the hcd already frees up the pending -+ * for the device and hence there is no need to unregister the function -+ * driver inorder to get these requests. For planned removal, the function -+ * driver has to explictly unregister itself to have the hcd return all the -+ * pending requests before the data structures for the devices are freed up. -+ * Note that as per the current implementation, the function driver will -+ * end up releasing all the devices since there is no API to selectively -+ * release a particular device. -+ * - Certain commands issued to the target can be skipped for surprise -+ * removal since they will anyway not go through. -+ */ -+static void -+ar6000_destroy(struct net_device *dev, unsigned int unregister) -+{ -+ AR_SOFTC_T *ar; -+ -+ AR_DEBUG_PRINTF("+ar6000_destroy \n"); -+ -+ if((dev == NULL) || ((ar = netdev_priv(dev)) == NULL)) -+ { -+ AR_DEBUG_PRINTF("%s(): Failed to get device structure.\n", __func__); -+ return; -+ } -+ -+ /* Stop the transmit queues */ -+ netif_stop_queue(dev); -+ -+ /* Disable the target and the interrupts associated with it */ -+ if (ar->arWmiReady == TRUE) -+ { -+ if (!bypasswmi) -+ { -+ if (ar->arConnected == TRUE || ar->arConnectPending == TRUE) -+ { -+ AR_DEBUG_PRINTF("%s(): Disconnect\n", __func__); -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ ar6000_init_profile_info(ar); -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ wmi_disconnect_cmd(ar->arWmi); -+ } -+ -+ ar6000_dbglog_get_debug_logs(ar); -+ ar->arWmiReady = FALSE; -+ ar->arConnected = FALSE; -+ ar->arConnectPending = FALSE; -+ wmi_shutdown(ar->arWmi); -+ ar->arWmiEnabled = FALSE; -+ ar->arWmi = NULL; -+ ar->arWlanState = WLAN_ENABLED; -+#ifdef USER_KEYS -+ ar->user_savedkeys_stat = USER_SAVEDKEYS_STAT_INIT; -+ ar->user_key_ctrl = 0; -+#endif -+ } -+ -+ AR_DEBUG_PRINTF("%s(): WMI stopped\n", __func__); -+ } -+ else -+ { -+ AR_DEBUG_PRINTF("%s(): WMI not ready 0x%08x 0x%08x\n", -+ __func__, (unsigned int) ar, (unsigned int) ar->arWmi); -+ -+ /* Shut down WMI if we have started it */ -+ if(ar->arWmiEnabled == TRUE) -+ { -+ AR_DEBUG_PRINTF("%s(): Shut down WMI\n", __func__); -+ wmi_shutdown(ar->arWmi); -+ ar->arWmiEnabled = FALSE; -+ ar->arWmi = NULL; -+ } -+ } -+ -+ /* stop HTC */ -+ HTCStop(ar->arHtcTarget); -+ -+ /* set the instance to NULL so we do not get called back on remove incase we -+ * we're explicity destroyed by module unload */ -+ HTCSetInstance(ar->arHtcTarget, NULL); -+ -+ if (resetok) { -+ /* try to reset the device if we can -+ * The driver may have been configure NOT to reset the target during -+ * a debug session */ -+ AR_DEBUG_PRINTF(" Attempting to reset target on instance destroy.... \n"); -+ ar6000_reset_device(ar->arHifDevice, ar->arTargetType); -+ } else { -+ AR_DEBUG_PRINTF(" Host does not want target reset. \n"); -+ } -+ -+ /* Done with cookies */ -+ ar6000_cookie_cleanup(ar); -+ -+ /* Cleanup BMI */ -+ BMIInit(); -+ -+ /* Clear the tx counters */ -+ memset(tx_attempt, 0, sizeof(tx_attempt)); -+ memset(tx_post, 0, sizeof(tx_post)); -+ memset(tx_complete, 0, sizeof(tx_complete)); -+ -+ -+ /* Free up the device data structure */ -+ if (unregister) -+ unregister_netdev(dev); -+ -+ free_raw_buffers(ar); -+ -+#ifndef free_netdev -+ kfree(dev); -+#else -+ free_netdev(dev); -+#endif -+ -+ AR_DEBUG_PRINTF("-ar6000_destroy \n"); -+} -+ -+static void ar6000_detect_error(unsigned long ptr) -+{ -+ struct net_device *dev = (struct net_device *)ptr; -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_TARGET_ERROR_REPORT_EVENT errEvent; -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ if (ar->arHBChallengeResp.outstanding) { -+ ar->arHBChallengeResp.missCnt++; -+ } else { -+ ar->arHBChallengeResp.missCnt = 0; -+ } -+ -+ if (ar->arHBChallengeResp.missCnt > ar->arHBChallengeResp.missThres) { -+ /* Send Error Detect event to the application layer and do not reschedule the error detection module timer */ -+ ar->arHBChallengeResp.missCnt = 0; -+ ar->arHBChallengeResp.seqNum = 0; -+ errEvent.errorVal = WMI_TARGET_COM_ERR | WMI_TARGET_FATAL_ERR; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+#ifdef SEND_EVENT_TO_APP -+ ar6000_send_event_to_app(ar, WMI_ERROR_REPORT_EVENTID, -+ (A_UINT8 *)&errEvent, -+ sizeof(WMI_TARGET_ERROR_REPORT_EVENT)); -+#endif -+ return; -+ } -+ -+ /* Generate the sequence number for the next challenge */ -+ ar->arHBChallengeResp.seqNum++; -+ ar->arHBChallengeResp.outstanding = TRUE; -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ -+ /* Send the challenge on the control channel */ -+ if (wmi_get_challenge_resp_cmd(ar->arWmi, ar->arHBChallengeResp.seqNum, DRV_HB_CHALLENGE) != A_OK) { -+ AR_DEBUG_PRINTF("Unable to send heart beat challenge\n"); -+ } -+ -+ -+ /* Reschedule the timer for the next challenge */ -+ A_TIMEOUT_MS(&ar->arHBChallengeResp.timer, ar->arHBChallengeResp.frequency * 1000, 0); -+} -+ -+void ar6000_init_profile_info(AR_SOFTC_T *ar) -+{ -+ ar->arSsidLen = 0; -+ A_MEMZERO(ar->arSsid, sizeof(ar->arSsid)); -+ ar->arNetworkType = INFRA_NETWORK; -+ ar->arDot11AuthMode = OPEN_AUTH; -+ ar->arAuthMode = NONE_AUTH; -+ ar->arPairwiseCrypto = NONE_CRYPT; -+ ar->arPairwiseCryptoLen = 0; -+ ar->arGroupCrypto = NONE_CRYPT; -+ ar->arGroupCryptoLen = 0; -+ A_MEMZERO(ar->arWepKeyList, sizeof(ar->arWepKeyList)); -+ A_MEMZERO(ar->arReqBssid, sizeof(ar->arReqBssid)); -+ A_MEMZERO(ar->arBssid, sizeof(ar->arBssid)); -+ ar->arBssChannel = 0; -+} -+ -+static void -+ar6000_init_control_info(AR_SOFTC_T *ar) -+{ -+ ar->arWmiEnabled = FALSE; -+ ar6000_init_profile_info(ar); -+ ar->arDefTxKeyIndex = 0; -+ A_MEMZERO(ar->arWepKeyList, sizeof(ar->arWepKeyList)); -+ ar->arChannelHint = 0; -+ ar->arListenInterval = MAX_LISTEN_INTERVAL; -+ ar->arVersion.host_ver = AR6K_SW_VERSION; -+ ar->arRssi = 0; -+ ar->arTxPwr = 0; -+ ar->arTxPwrSet = FALSE; -+ ar->arSkipScan = 0; -+ ar->arBeaconInterval = 0; -+ ar->arBitRate = 0; -+ ar->arMaxRetries = 0; -+ ar->arWmmEnabled = TRUE; -+} -+ -+static int -+ar6000_open(struct net_device *dev) -+{ -+ /* Wake up the queues */ -+ netif_wake_queue(dev); -+ -+ return 0; -+} -+ -+static int -+ar6000_close(struct net_device *dev) -+{ -+ netif_stop_queue(dev); -+ -+ return 0; -+} -+ -+/* connect to a service */ -+static A_STATUS ar6000_connectservice(AR_SOFTC_T *ar, -+ HTC_SERVICE_CONNECT_REQ *pConnect, -+ WMI_PRI_STREAM_ID WmiStreamID, -+ char *pDesc) -+{ -+ A_STATUS status; -+ HTC_SERVICE_CONNECT_RESP response; -+ -+ do { -+ -+ A_MEMZERO(&response,sizeof(response)); -+ -+ status = HTCConnectService(ar->arHtcTarget, -+ pConnect, -+ &response); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(" Failed to connect to %s service status:%d \n", pDesc, status); -+ break; -+ } -+ -+ if (WmiStreamID == WMI_NOT_MAPPED) { -+ /* done */ -+ break; -+ } -+ -+ /* set endpoint mapping for the WMI stream in the driver layer */ -+ arSetWMIStream2EndpointIDMap(ar,WmiStreamID,response.Endpoint); -+ -+ } while (FALSE); -+ -+ return status; -+} -+ -+static void ar6000_TxDataCleanup(AR_SOFTC_T *ar) -+{ -+ /* flush all the data (non-control) streams -+ * we only flush packets that are tagged as data, we leave any control packets that -+ * were in the TX queues alone */ -+ HTCFlushEndpoint(ar->arHtcTarget, -+ arWMIStream2EndpointID(ar,WMI_BEST_EFFORT_PRI), -+ AR6K_DATA_PKT_TAG); -+ HTCFlushEndpoint(ar->arHtcTarget, -+ arWMIStream2EndpointID(ar,WMI_LOW_PRI), -+ AR6K_DATA_PKT_TAG); -+ HTCFlushEndpoint(ar->arHtcTarget, -+ arWMIStream2EndpointID(ar,WMI_HIGH_PRI), -+ AR6K_DATA_PKT_TAG); -+ HTCFlushEndpoint(ar->arHtcTarget, -+ arWMIStream2EndpointID(ar,WMI_HIGHEST_PRI), -+ AR6K_DATA_PKT_TAG); -+} -+ -+/* This function does one time initialization for the lifetime of the device */ -+int ar6000_init(struct net_device *dev) -+{ -+ AR_SOFTC_T *ar; -+ A_STATUS status; -+ A_INT32 timeleft; -+ -+ if((ar = netdev_priv(dev)) == NULL) -+ { -+ return(-EIO); -+ } -+ -+ /* Do we need to finish the BMI phase */ -+ if(BMIDone(ar->arHifDevice) != A_OK) -+ { -+ return -EIO; -+ } -+ -+ if (!bypasswmi) -+ { -+#if 0 /* TBDXXX */ -+ if (ar->arVersion.host_ver != ar->arVersion.target_ver) { -+ A_PRINTF("WARNING: Host version 0x%x does not match Target " -+ " version 0x%x!\n", -+ ar->arVersion.host_ver, ar->arVersion.target_ver); -+ } -+#endif -+ -+ /* Indicate that WMI is enabled (although not ready yet) */ -+ ar->arWmiEnabled = TRUE; -+ if ((ar->arWmi = wmi_init((void *) ar)) == NULL) -+ { -+ AR_DEBUG_PRINTF("%s() Failed to initialize WMI.\n", __func__); -+ return(-EIO); -+ } -+ -+ AR_DEBUG_PRINTF("%s() Got WMI @ 0x%08x.\n", __func__, -+ (unsigned int) ar->arWmi); -+ } -+ -+ do { -+ HTC_SERVICE_CONNECT_REQ connect; -+ -+ /* the reason we have to wait for the target here is that the driver layer -+ * has to init BMI in order to set the host block size, -+ */ -+ status = HTCWaitTarget(ar->arHtcTarget); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ A_MEMZERO(&connect,sizeof(connect)); -+ /* meta data is unused for now */ -+ connect.pMetaData = NULL; -+ connect.MetaDataLength = 0; -+ /* these fields are the same for all service endpoints */ -+ connect.EpCallbacks.pContext = ar; -+ connect.EpCallbacks.EpTxComplete = ar6000_tx_complete; -+ connect.EpCallbacks.EpRecv = ar6000_rx; -+ connect.EpCallbacks.EpRecvRefill = ar6000_rx_refill; -+ connect.EpCallbacks.EpSendFull = ar6000_tx_queue_full; -+ /* set the max queue depth so that our ar6000_tx_queue_full handler gets called. -+ * Linux has the peculiarity of not providing flow control between the -+ * NIC and the network stack. There is no API to indicate that a TX packet -+ * was sent which could provide some back pressure to the network stack. -+ * Under linux you would have to wait till the network stack consumed all sk_buffs -+ * before any back-flow kicked in. Which isn't very friendly. -+ * So we have to manage this ourselves */ -+ connect.MaxSendQueueDepth = 32; -+ -+ /* connect to control service */ -+ connect.ServiceID = WMI_CONTROL_SVC; -+ status = ar6000_connectservice(ar, -+ &connect, -+ WMI_CONTROL_PRI, -+ "WMI CONTROL"); -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* for the remaining data services set the connection flag to reduce dribbling, -+ * if configured to do so */ -+ if (reduce_credit_dribble) { -+ connect.ConnectionFlags |= HTC_CONNECT_FLAGS_REDUCE_CREDIT_DRIBBLE; -+ /* the credit dribble trigger threshold is (reduce_credit_dribble - 1) for a value -+ * of 0-3 */ -+ connect.ConnectionFlags &= ~HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_MASK; -+ connect.ConnectionFlags |= -+ ((A_UINT16)reduce_credit_dribble - 1) & HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_MASK; -+ } -+ /* connect to best-effort service */ -+ connect.ServiceID = WMI_DATA_BE_SVC; -+ -+ status = ar6000_connectservice(ar, -+ &connect, -+ WMI_BEST_EFFORT_PRI, -+ "WMI DATA BE"); -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* connect to back-ground -+ * map this to WMI LOW_PRI */ -+ connect.ServiceID = WMI_DATA_BK_SVC; -+ status = ar6000_connectservice(ar, -+ &connect, -+ WMI_LOW_PRI, -+ "WMI DATA BK"); -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* connect to Video service, map this to -+ * to HI PRI */ -+ connect.ServiceID = WMI_DATA_VI_SVC; -+ status = ar6000_connectservice(ar, -+ &connect, -+ WMI_HIGH_PRI, -+ "WMI DATA VI"); -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* connect to VO service, this is currently not -+ * mapped to a WMI priority stream due to historical reasons. -+ * WMI originally defined 3 priorities over 3 mailboxes -+ * We can change this when WMI is reworked so that priorities are not -+ * dependent on mailboxes */ -+ connect.ServiceID = WMI_DATA_VO_SVC; -+ status = ar6000_connectservice(ar, -+ &connect, -+ WMI_HIGHEST_PRI, -+ "WMI DATA VO"); -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ A_ASSERT(arWMIStream2EndpointID(ar,WMI_CONTROL_PRI) != 0); -+ A_ASSERT(arWMIStream2EndpointID(ar,WMI_BEST_EFFORT_PRI) != 0); -+ A_ASSERT(arWMIStream2EndpointID(ar,WMI_LOW_PRI) != 0); -+ A_ASSERT(arWMIStream2EndpointID(ar,WMI_HIGH_PRI) != 0); -+ A_ASSERT(arWMIStream2EndpointID(ar,WMI_HIGHEST_PRI) != 0); -+ } while (FALSE); -+ -+ if (A_FAILED(status)) { -+ return (-EIO); -+ } -+ -+ /* -+ * give our connected endpoints some buffers -+ */ -+ ar6000_rx_refill(ar, arWMIStream2EndpointID(ar,WMI_CONTROL_PRI)); -+ -+ ar6000_rx_refill(ar, arWMIStream2EndpointID(ar,WMI_BEST_EFFORT_PRI)); -+ -+ /* -+ * We will post the receive buffers only for SPE testing and so we are -+ * making it conditional on the 'bypasswmi' flag. -+ */ -+ if (bypasswmi) { -+ ar6000_rx_refill(ar,arWMIStream2EndpointID(ar,WMI_LOW_PRI)); -+ ar6000_rx_refill(ar,arWMIStream2EndpointID(ar,WMI_HIGH_PRI)); -+ } -+ -+ /* setup credit distribution */ -+ ar6000_setup_credit_dist(ar->arHtcTarget, &ar->arCreditStateInfo); -+ -+ /* Since cookies are used for HTC transports, they should be */ -+ /* initialized prior to enabling HTC. */ -+ ar6000_cookie_init(ar); -+ -+ /* start HTC */ -+ status = HTCStart(ar->arHtcTarget); -+ -+ if (status != A_OK) { -+ if (ar->arWmiEnabled == TRUE) { -+ wmi_shutdown(ar->arWmi); -+ ar->arWmiEnabled = FALSE; -+ ar->arWmi = NULL; -+ } -+ ar6000_cookie_cleanup(ar); -+ return -EIO; -+ } -+ -+ if (!bypasswmi) { -+ /* Wait for Wmi event to be ready */ -+ timeleft = wait_event_interruptible_timeout(arEvent, -+ (ar->arWmiReady == TRUE), wmitimeout * HZ); -+ -+ if(!timeleft || signal_pending(current)) -+ { -+ AR_DEBUG_PRINTF("WMI is not ready or wait was interrupted\n"); -+#if defined(DWSIM) /* TBDXXX */ -+ AR_DEBUG_PRINTF(".....but proceed anyway.\n"); -+#else -+ return -EIO; -+#endif -+ } -+ -+ AR_DEBUG_PRINTF("%s() WMI is ready\n", __func__); -+ -+ /* Communicate the wmi protocol verision to the target */ -+ if ((ar6000_set_host_app_area(ar)) != A_OK) { -+ AR_DEBUG_PRINTF("Unable to set the host app area\n"); -+ } -+ } -+ -+ ar->arNumDataEndPts = 1; -+ -+ return(0); -+} -+ -+ -+void -+ar6000_bitrate_rx(void *devt, A_INT32 rateKbps) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ -+ ar->arBitRate = rateKbps; -+ wake_up(&arEvent); -+} -+ -+void -+ar6000_ratemask_rx(void *devt, A_UINT16 ratemask) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ -+ ar->arRateMask = ratemask; -+ wake_up(&arEvent); -+} -+ -+void -+ar6000_txPwr_rx(void *devt, A_UINT8 txPwr) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ -+ ar->arTxPwr = txPwr; -+ wake_up(&arEvent); -+} -+ -+ -+void -+ar6000_channelList_rx(void *devt, A_INT8 numChan, A_UINT16 *chanList) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ -+ A_MEMCPY(ar->arChannelList, chanList, numChan * sizeof (A_UINT16)); -+ ar->arNumChannels = numChan; -+ -+ wake_up(&arEvent); -+} -+ -+A_UINT8 -+ar6000_ibss_map_epid(struct sk_buff *skb, struct net_device *dev, A_UINT32 * mapNo) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ A_UINT8 *datap; -+ ATH_MAC_HDR *macHdr; -+ A_UINT32 i, eptMap; -+ -+ (*mapNo) = 0; -+ datap = A_NETBUF_DATA(skb); -+ macHdr = (ATH_MAC_HDR *)(datap + sizeof(WMI_DATA_HDR)); -+ if (IEEE80211_IS_MULTICAST(macHdr->dstMac)) { -+ return ENDPOINT_2; -+ } -+ -+ eptMap = -1; -+ for (i = 0; i < ar->arNodeNum; i ++) { -+ if (IEEE80211_ADDR_EQ(macHdr->dstMac, ar->arNodeMap[i].macAddress)) { -+ (*mapNo) = i + 1; -+ ar->arNodeMap[i].txPending ++; -+ return ar->arNodeMap[i].epId; -+ } -+ -+ if ((eptMap == -1) && !ar->arNodeMap[i].txPending) { -+ eptMap = i; -+ } -+ } -+ -+ if (eptMap == -1) { -+ eptMap = ar->arNodeNum; -+ ar->arNodeNum ++; -+ A_ASSERT(ar->arNodeNum <= MAX_NODE_NUM); -+ } -+ -+ A_MEMCPY(ar->arNodeMap[eptMap].macAddress, macHdr->dstMac, IEEE80211_ADDR_LEN); -+ -+ for (i = ENDPOINT_2; i <= ENDPOINT_5; i ++) { -+ if (!ar->arTxPending[i]) { -+ ar->arNodeMap[eptMap].epId = i; -+ break; -+ } -+ // No free endpoint is available, start redistribution on the inuse endpoints. -+ if (i == ENDPOINT_5) { -+ ar->arNodeMap[eptMap].epId = ar->arNexEpId; -+ ar->arNexEpId ++; -+ if (ar->arNexEpId > ENDPOINT_5) { -+ ar->arNexEpId = ENDPOINT_2; -+ } -+ } -+ } -+ -+ (*mapNo) = eptMap + 1; -+ ar->arNodeMap[eptMap].txPending ++; -+ -+ return ar->arNodeMap[eptMap].epId; -+} -+ -+#ifdef DEBUG -+static void ar6000_dump_skb(struct sk_buff *skb) -+{ -+ u_char *ch; -+ for (ch = A_NETBUF_DATA(skb); -+ (A_UINT32)ch < ((A_UINT32)A_NETBUF_DATA(skb) + -+ A_NETBUF_LEN(skb)); ch++) -+ { -+ AR_DEBUG_PRINTF("%2.2x ", *ch); -+ } -+ AR_DEBUG_PRINTF("\n"); -+} -+#endif -+ -+static int -+ar6000_data_tx(struct sk_buff *skb, struct net_device *dev) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_PRI_STREAM_ID streamID = WMI_NOT_MAPPED; -+ A_UINT32 mapNo = 0; -+ int len; -+ struct ar_cookie *cookie; -+ A_BOOL checkAdHocPsMapping = FALSE; -+ -+#if LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,13) -+ skb->list = NULL; -+#endif -+ -+ AR_DEBUG2_PRINTF("ar6000_data_tx start - skb=0x%x, data=0x%x, len=0x%x\n", -+ (A_UINT32)skb, (A_UINT32)A_NETBUF_DATA(skb), -+ A_NETBUF_LEN(skb)); -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+ /* TCMD doesnt support any data, free the buf and return */ -+ if(ar->arTargetMode == AR6000_TCMD_MODE) { -+ A_NETBUF_FREE(skb); -+ return 0; -+ } -+#endif -+ do { -+ -+ if (ar->arWmiReady == FALSE && bypasswmi == 0) { -+ break; -+ } -+ -+#ifdef BLOCK_TX_PATH_FLAG -+ if (blocktx) { -+ break; -+ } -+#endif /* BLOCK_TX_PATH_FLAG */ -+ -+ if (ar->arWmiEnabled) { -+ if (A_NETBUF_HEADROOM(skb) < dev->hard_header_len) { -+ struct sk_buff *newbuf; -+ /* -+ * We really should have gotten enough headroom but sometimes -+ * we still get packets with not enough headroom. Copy the packet. -+ */ -+ len = A_NETBUF_LEN(skb); -+ newbuf = A_NETBUF_ALLOC(len); -+ if (newbuf == NULL) { -+ break; -+ } -+ A_NETBUF_PUT(newbuf, len); -+ A_MEMCPY(A_NETBUF_DATA(newbuf), A_NETBUF_DATA(skb), len); -+ A_NETBUF_FREE(skb); -+ skb = newbuf; -+ /* fall through and assemble header */ -+ } -+ -+ if (wmi_dix_2_dot3(ar->arWmi, skb) != A_OK) { -+ AR_DEBUG_PRINTF("ar6000_data_tx - wmi_dix_2_dot3 failed\n"); -+ break; -+ } -+ -+ if (wmi_data_hdr_add(ar->arWmi, skb, DATA_MSGTYPE) != A_OK) { -+ AR_DEBUG_PRINTF("ar6000_data_tx - wmi_data_hdr_add failed\n"); -+ break; -+ } -+ -+ if ((ar->arNetworkType == ADHOC_NETWORK) && -+ ar->arIbssPsEnable && ar->arConnected) { -+ /* flag to check adhoc mapping once we take the lock below: */ -+ checkAdHocPsMapping = TRUE; -+ -+ } else { -+ /* get the stream mapping */ -+ if (ar->arWmmEnabled) { -+ streamID = wmi_get_stream_id(ar->arWmi, -+ wmi_implicit_create_pstream(ar->arWmi, skb, UPLINK_TRAFFIC, UNDEFINED_PRI)); -+ } else { -+ streamID = WMI_BEST_EFFORT_PRI; -+ } -+ } -+ -+ } else { -+ struct iphdr *ipHdr; -+ /* -+ * the endpoint is directly based on the TOS field in the IP -+ * header **** only for testing ****** -+ */ -+ ipHdr = A_NETBUF_DATA(skb) + sizeof(ATH_MAC_HDR); -+ /* here we map the TOS field to an endpoint number, this is for -+ * the endpointping test application */ -+ streamID = IP_TOS_TO_WMI_PRI(ipHdr->tos); -+ } -+ -+ } while (FALSE); -+ -+ /* did we succeed ? */ -+ if ((streamID == WMI_NOT_MAPPED) && !checkAdHocPsMapping) { -+ /* cleanup and exit */ -+ A_NETBUF_FREE(skb); -+ AR6000_STAT_INC(ar, tx_dropped); -+ AR6000_STAT_INC(ar, tx_aborted_errors); -+ return 0; -+ } -+ -+ cookie = NULL; -+ -+ /* take the lock to protect driver data */ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ do { -+ -+ if (checkAdHocPsMapping) { -+ streamID = ar6000_ibss_map_epid(skb, dev, &mapNo); -+ } -+ -+ A_ASSERT(streamID != WMI_NOT_MAPPED); -+ -+ /* validate that the endpoint is connected */ -+ if (arWMIStream2EndpointID(ar,streamID) == 0) { -+ AR_DEBUG_PRINTF("Stream %d is NOT mapped!\n",streamID); -+ break; -+ } -+ /* allocate resource for this packet */ -+ cookie = ar6000_alloc_cookie(ar); -+ -+ if (cookie != NULL) { -+ /* update counts while the lock is held */ -+ ar->arTxPending[streamID]++; -+ ar->arTotalTxDataPending++; -+ } -+ -+ } while (FALSE); -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ -+ if (cookie != NULL) { -+ cookie->arc_bp[0] = (A_UINT32)skb; -+ cookie->arc_bp[1] = mapNo; -+ SET_HTC_PACKET_INFO_TX(&cookie->HtcPkt, -+ cookie, -+ A_NETBUF_DATA(skb), -+ A_NETBUF_LEN(skb), -+ arWMIStream2EndpointID(ar,streamID), -+ AR6K_DATA_PKT_TAG); -+ -+#ifdef DEBUG -+ if (debugdriver >= 3) { -+ ar6000_dump_skb(skb); -+ } -+#endif -+ /* HTC interface is asynchronous, if this fails, cleanup will happen in -+ * the ar6000_tx_complete callback */ -+ HTCSendPkt(ar->arHtcTarget, &cookie->HtcPkt); -+ } else { -+ /* no packet to send, cleanup */ -+ A_NETBUF_FREE(skb); -+ AR6000_STAT_INC(ar, tx_dropped); -+ AR6000_STAT_INC(ar, tx_aborted_errors); -+ } -+ -+ return 0; -+} -+ -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+static void -+tvsub(register struct timeval *out, register struct timeval *in) -+{ -+ if((out->tv_usec -= in->tv_usec) < 0) { -+ out->tv_sec--; -+ out->tv_usec += 1000000; -+ } -+ out->tv_sec -= in->tv_sec; -+} -+ -+void -+applyAPTCHeuristics(AR_SOFTC_T *ar) -+{ -+ A_UINT32 duration; -+ A_UINT32 numbytes; -+ A_UINT32 throughput; -+ struct timeval ts; -+ A_STATUS status; -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ if ((enableAPTCHeuristics) && (!aptcTR.timerScheduled)) { -+ do_gettimeofday(&ts); -+ tvsub(&ts, &aptcTR.samplingTS); -+ duration = ts.tv_sec * 1000 + ts.tv_usec / 1000; /* ms */ -+ numbytes = aptcTR.bytesTransmitted + aptcTR.bytesReceived; -+ -+ if (duration > APTC_TRAFFIC_SAMPLING_INTERVAL) { -+ /* Initialize the time stamp and byte count */ -+ aptcTR.bytesTransmitted = aptcTR.bytesReceived = 0; -+ do_gettimeofday(&aptcTR.samplingTS); -+ -+ /* Calculate and decide based on throughput thresholds */ -+ throughput = ((numbytes * 8) / duration); -+ if (throughput > APTC_UPPER_THROUGHPUT_THRESHOLD) { -+ /* Disable Sleep and schedule a timer */ -+ A_ASSERT(ar->arWmiReady == TRUE); -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ status = wmi_powermode_cmd(ar->arWmi, MAX_PERF_POWER); -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ A_TIMEOUT_MS(&aptcTimer, APTC_TRAFFIC_SAMPLING_INTERVAL, 0); -+ aptcTR.timerScheduled = TRUE; -+ } -+ } -+ } -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+} -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ -+static void ar6000_tx_queue_full(void *Context, HTC_ENDPOINT_ID Endpoint) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Context; -+ -+ -+ if (Endpoint == arWMIStream2EndpointID(ar,WMI_CONTROL_PRI)) { -+ if (!bypasswmi) { -+ /* under normal WMI if this is getting full, then something is running rampant -+ * the host should not be exhausting the WMI queue with too many commands -+ * the only exception to this is during testing using endpointping */ -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ /* set flag to handle subsequent messages */ -+ ar->arWMIControlEpFull = TRUE; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ AR_DEBUG_PRINTF("WMI Control Endpoint is FULL!!! \n"); -+ } -+ } else { -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ ar->arNetQueueStopped = TRUE; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ /* one of the data endpoints queues is getting full..need to stop network stack -+ * the queue will resume in ar6000_tx_complete() */ -+ netif_stop_queue(ar->arNetDev); -+ } -+ -+ -+} -+ -+ -+static void -+ar6000_tx_complete(void *Context, HTC_PACKET *pPacket) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Context; -+ void *cookie = (void *)pPacket->pPktContext; -+ struct sk_buff *skb = NULL; -+ A_UINT32 mapNo = 0; -+ A_STATUS status; -+ struct ar_cookie * ar_cookie; -+ WMI_PRI_STREAM_ID streamID; -+ A_BOOL wakeEvent = FALSE; -+ -+ status = pPacket->Status; -+ ar_cookie = (struct ar_cookie *)cookie; -+ skb = (struct sk_buff *)ar_cookie->arc_bp[0]; -+ streamID = arEndpoint2WMIStreamID(ar,pPacket->Endpoint); -+ mapNo = ar_cookie->arc_bp[1]; -+ -+ A_ASSERT(skb); -+ A_ASSERT(pPacket->pBuffer == A_NETBUF_DATA(skb)); -+ -+ if (A_SUCCESS(status)) { -+ A_ASSERT(pPacket->ActualLength == A_NETBUF_LEN(skb)); -+ } -+ -+ AR_DEBUG2_PRINTF("ar6000_tx_complete skb=0x%x data=0x%x len=0x%x sid=%d ", -+ (A_UINT32)skb, (A_UINT32)pPacket->pBuffer, -+ pPacket->ActualLength, -+ streamID); -+ -+ /* lock the driver as we update internal state */ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ ar->arTxPending[streamID]--; -+ -+ if ((streamID != WMI_CONTROL_PRI) || bypasswmi) { -+ ar->arTotalTxDataPending--; -+ } -+ -+ if (streamID == WMI_CONTROL_PRI) -+ { -+ if (ar->arWMIControlEpFull) { -+ /* since this packet completed, the WMI EP is no longer full */ -+ ar->arWMIControlEpFull = FALSE; -+ } -+ -+ if (ar->arTxPending[streamID] == 0) { -+ wakeEvent = TRUE; -+ } -+ } -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF("%s() -TX ERROR, status: 0x%x\n", __func__, -+ status); -+ AR6000_STAT_INC(ar, tx_errors); -+ } else { -+ AR_DEBUG2_PRINTF("OK\n"); -+ AR6000_STAT_INC(ar, tx_packets); -+ ar->arNetStats.tx_bytes += A_NETBUF_LEN(skb); -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+ aptcTR.bytesTransmitted += a_netbuf_to_len(skb); -+ applyAPTCHeuristics(ar); -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ } -+ -+ // TODO this needs to be looked at -+ if ((ar->arNetworkType == ADHOC_NETWORK) && ar->arIbssPsEnable -+ && (streamID != WMI_CONTROL_PRI) && mapNo) -+ { -+ mapNo --; -+ ar->arNodeMap[mapNo].txPending --; -+ -+ if (!ar->arNodeMap[mapNo].txPending && (mapNo == (ar->arNodeNum - 1))) { -+ A_UINT32 i; -+ for (i = ar->arNodeNum; i > 0; i --) { -+ if (!ar->arNodeMap[i - 1].txPending) { -+ A_MEMZERO(&ar->arNodeMap[i - 1], sizeof(struct ar_node_mapping)); -+ ar->arNodeNum --; -+ } else { -+ break; -+ } -+ } -+ } -+ } -+ -+ /* Freeing a cookie should not be contingent on either of */ -+ /* these flags, just if we have a cookie or not. */ -+ /* Can we even get here without a cookie? Fix later. */ -+ if (ar->arWmiReady == TRUE || (bypasswmi)) -+ { -+ ar6000_free_cookie(ar, cookie); -+ } -+ -+ if (ar->arNetQueueStopped) { -+ ar->arNetQueueStopped = FALSE; -+ } -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ -+ /* lock is released, we can freely call other kernel APIs */ -+ -+ /* this indirectly frees the HTC_PACKET */ -+ A_NETBUF_FREE(skb); -+ -+ if ((ar->arConnected == TRUE) || (bypasswmi)) { -+ if (status != A_ECANCELED) { -+ /* don't wake the queue if we are flushing, other wise it will just -+ * keep queueing packets, which will keep failing */ -+ netif_wake_queue(ar->arNetDev); -+ } -+ } -+ -+ if (wakeEvent) { -+ wake_up(&arEvent); -+ } -+ -+} -+ -+/* -+ * Receive event handler. This is called by HTC when a packet is received -+ */ -+int pktcount; -+static void -+ar6000_rx(void *Context, HTC_PACKET *pPacket) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Context; -+ struct sk_buff *skb = (struct sk_buff *)pPacket->pPktContext; -+ int minHdrLen; -+ A_STATUS status = pPacket->Status; -+ WMI_PRI_STREAM_ID streamID = arEndpoint2WMIStreamID(ar,pPacket->Endpoint); -+ HTC_ENDPOINT_ID ept = pPacket->Endpoint; -+ -+ A_ASSERT((status != A_OK) || (pPacket->pBuffer == (A_NETBUF_DATA(skb) + HTC_HEADER_LEN))); -+ -+ AR_DEBUG2_PRINTF("ar6000_rx ar=0x%x sid=%d, skb=0x%x, data=0x%x, len=0x%x ", -+ (A_UINT32)ar, streamID, (A_UINT32)skb, (A_UINT32)pPacket->pBuffer, -+ pPacket->ActualLength); -+ if (status != A_OK) { -+ AR_DEBUG2_PRINTF("ERR\n"); -+ } else { -+ AR_DEBUG2_PRINTF("OK\n"); -+ } -+ -+ /* take lock to protect buffer counts -+ * and adaptive power throughput state */ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ ar->arRxBuffers[streamID]--; -+ -+ if (A_SUCCESS(status)) { -+ AR6000_STAT_INC(ar, rx_packets); -+ ar->arNetStats.rx_bytes += pPacket->ActualLength; -+#ifdef ADAPTIVE_POWER_THROUGHPUT_CONTROL -+ aptcTR.bytesReceived += a_netbuf_to_len(skb); -+ applyAPTCHeuristics(ar); -+#endif /* ADAPTIVE_POWER_THROUGHPUT_CONTROL */ -+ -+ A_NETBUF_PUT(skb, pPacket->ActualLength + HTC_HEADER_LEN); -+ A_NETBUF_PULL(skb, HTC_HEADER_LEN); -+ -+#ifdef DEBUG -+ if (debugdriver >= 2) { -+ ar6000_dump_skb(skb); -+ } -+#endif /* DEBUG */ -+ } -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ -+ if (status != A_OK) { -+ AR6000_STAT_INC(ar, rx_errors); -+ A_NETBUF_FREE(skb); -+ } else if (ar->arWmiEnabled == TRUE) { -+ if (streamID == WMI_CONTROL_PRI) { -+ /* -+ * this is a wmi control msg -+ */ -+ wmi_control_rx(ar->arWmi, skb); -+ } else { -+ WMI_DATA_HDR *dhdr = (WMI_DATA_HDR *)A_NETBUF_DATA(skb); -+ if (WMI_DATA_HDR_IS_MSG_TYPE(dhdr, CNTL_MSGTYPE)) { -+ /* -+ * this is a wmi control msg -+ */ -+ /* strip off WMI hdr */ -+ wmi_data_hdr_remove(ar->arWmi, skb); -+ wmi_control_rx(ar->arWmi, skb); -+ } else { -+ /* -+ * this is a wmi data packet -+ */ -+ minHdrLen = sizeof (WMI_DATA_HDR) + sizeof(ATH_MAC_HDR) + -+ sizeof(ATH_LLC_SNAP_HDR); -+ -+ if ((pPacket->ActualLength < minHdrLen) || -+ (pPacket->ActualLength > AR6000_BUFFER_SIZE)) -+ { -+ /* -+ * packet is too short or too long -+ */ -+ AR_DEBUG_PRINTF("TOO SHORT or TOO LONG\n"); -+ AR6000_STAT_INC(ar, rx_errors); -+ AR6000_STAT_INC(ar, rx_length_errors); -+ A_NETBUF_FREE(skb); -+ } else { -+ if (ar->arWmmEnabled) { -+ wmi_implicit_create_pstream(ar->arWmi, skb, -+ DNLINK_TRAFFIC, UNDEFINED_PRI); -+ } -+#if 0 -+ /* Access RSSI values here */ -+ AR_DEBUG_PRINTF("RSSI %d\n", -+ ((WMI_DATA_HDR *) A_NETBUF_DATA(skb))->rssi); -+#endif -+ wmi_data_hdr_remove(ar->arWmi, skb); -+ wmi_dot3_2_dix(ar->arWmi, skb); -+ -+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0) -+ /* -+ * extra push and memcpy, for eth_type_trans() of 2.4 kernel -+ * will pull out hard_header_len bytes of the skb. -+ */ -+ A_NETBUF_PUSH(skb, sizeof(WMI_DATA_HDR) + sizeof(ATH_LLC_SNAP_HDR) + HTC_HEADER_LEN); -+ A_MEMCPY(A_NETBUF_DATA(skb), A_NETBUF_DATA(skb) + sizeof(WMI_DATA_HDR) + -+ sizeof(ATH_LLC_SNAP_HDR) + HTC_HEADER_LEN, sizeof(ATH_MAC_HDR)); -+#endif -+ if ((ar->arNetDev->flags & IFF_UP) == IFF_UP) -+ { -+ skb->dev = ar->arNetDev; -+ skb->protocol = eth_type_trans(skb, ar->arNetDev); -+ netif_rx(skb); -+ } -+ else -+ { -+ A_NETBUF_FREE(skb); -+ } -+ } -+ } -+ } -+ } else { -+ if ((ar->arNetDev->flags & IFF_UP) == IFF_UP) -+ { -+ skb->dev = ar->arNetDev; -+ skb->protocol = eth_type_trans(skb, ar->arNetDev); -+ netif_rx(skb); -+ } -+ else -+ { -+ A_NETBUF_FREE(skb); -+ } -+ } -+ -+ if (status != A_ECANCELED) { -+ /* -+ * HTC provides A_ECANCELED status when it doesn't want to be refilled -+ * (probably due to a shutdown) -+ */ -+ ar6000_rx_refill(Context, ept); -+ } -+ -+ -+} -+ -+static void -+ar6000_rx_refill(void *Context, HTC_ENDPOINT_ID Endpoint) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Context; -+ void *osBuf; -+ int RxBuffers; -+ int buffersToRefill; -+ HTC_PACKET *pPacket; -+ WMI_PRI_STREAM_ID streamId = arEndpoint2WMIStreamID(ar,Endpoint); -+ -+ buffersToRefill = (int)AR6000_MAX_RX_BUFFERS - -+ (int)ar->arRxBuffers[streamId]; -+ -+ if (buffersToRefill <= 0) { -+ /* fast return, nothing to fill */ -+ return; -+ } -+ -+ AR_DEBUG2_PRINTF("ar6000_rx_refill: providing htc with %d buffers at eid=%d\n", -+ buffersToRefill, Endpoint); -+ -+ for (RxBuffers = 0; RxBuffers < buffersToRefill; RxBuffers++) { -+ osBuf = A_NETBUF_ALLOC(AR6000_BUFFER_SIZE); -+ if (NULL == osBuf) { -+ break; -+ } -+ /* the HTC packet wrapper is at the head of the reserved area -+ * in the skb */ -+ pPacket = (HTC_PACKET *)(A_NETBUF_HEAD(osBuf)); -+ /* set re-fill info */ -+ SET_HTC_PACKET_INFO_RX_REFILL(pPacket,osBuf,A_NETBUF_DATA(osBuf),AR6000_BUFFER_SIZE,Endpoint); -+ /* add this packet */ -+ HTCAddReceivePkt(ar->arHtcTarget, pPacket); -+ } -+ -+ /* update count */ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ ar->arRxBuffers[streamId] += RxBuffers; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+} -+ -+static struct net_device_stats * -+ar6000_get_stats(struct net_device *dev) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ return &ar->arNetStats; -+} -+ -+static struct iw_statistics * -+ar6000_get_iwstats(struct net_device * dev) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ TARGET_STATS *pStats = &ar->arTargetStats; -+ struct iw_statistics * pIwStats = &ar->arIwStats; -+ -+ if ((ar->arWmiReady == FALSE) -+ /* -+ * The in_atomic function is used to determine if the scheduling is -+ * allowed in the current context or not. This was introduced in 2.6 -+ * From what I have read on the differences between 2.4 and 2.6, the -+ * 2.4 kernel did not support preemption and so this check might not -+ * be required for 2.4 kernels. -+ */ -+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0) -+ || (in_atomic()) -+#endif -+ ) -+ { -+ pIwStats->status = 0; -+ pIwStats->qual.qual = 0; -+ pIwStats->qual.level =0; -+ pIwStats->qual.noise = 0; -+ pIwStats->discard.code =0; -+ pIwStats->discard.retries=0; -+ pIwStats->miss.beacon =0; -+ return pIwStats; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ pIwStats->status = 0; -+ return pIwStats; -+ } -+ -+ -+ ar->statsUpdatePending = TRUE; -+ -+ if(wmi_get_stats_cmd(ar->arWmi) != A_OK) { -+ up(&ar->arSem); -+ pIwStats->status = 0; -+ return pIwStats; -+ } -+ -+ wait_event_interruptible_timeout(arEvent, ar->statsUpdatePending == FALSE, wmitimeout * HZ); -+ -+ if (signal_pending(current)) { -+ AR_DEBUG_PRINTF("ar6000 : WMI get stats timeout \n"); -+ up(&ar->arSem); -+ pIwStats->status = 0; -+ return pIwStats; -+ } -+ pIwStats->status = 1 ; -+ pIwStats->qual.qual = pStats->cs_aveBeacon_rssi; -+ pIwStats->qual.level =pStats->cs_aveBeacon_rssi + 161; /* noise is -95 dBm */ -+ pIwStats->qual.noise = pStats->noise_floor_calibation; -+ pIwStats->discard.code = pStats->rx_decrypt_err; -+ pIwStats->discard.retries = pStats->tx_retry_cnt; -+ pIwStats->miss.beacon = pStats->cs_bmiss_cnt; -+ up(&ar->arSem); -+ return pIwStats; -+} -+ -+void -+ar6000_ready_event(void *devt, A_UINT8 *datap, A_UINT8 phyCap) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ struct net_device *dev = ar->arNetDev; -+ -+ ar->arWmiReady = TRUE; -+ wake_up(&arEvent); -+ A_MEMCPY(dev->dev_addr, datap, AR6000_ETH_ADDR_LEN); -+ AR_DEBUG_PRINTF("mac address = %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x\n", -+ dev->dev_addr[0], dev->dev_addr[1], -+ dev->dev_addr[2], dev->dev_addr[3], -+ dev->dev_addr[4], dev->dev_addr[5]); -+ -+ ar->arPhyCapability = phyCap; -+} -+ -+A_UINT8 -+ar6000_iptos_to_userPriority(A_UINT8 *pkt) -+{ -+ struct iphdr *ipHdr = (struct iphdr *)pkt; -+ A_UINT8 userPriority; -+ -+ /* -+ * IP Tos format : -+ * (Refer Pg 57 WMM-test-plan-v1.2) -+ * IP-TOS - 8bits -+ * : DSCP(6-bits) ECN(2-bits) -+ * : DSCP - P2 P1 P0 X X X -+ * where (P2 P1 P0) form 802.1D -+ */ -+ userPriority = ipHdr->tos >> 5; -+ return (userPriority & 0x7); -+} -+ -+void -+ar6000_connect_event(AR_SOFTC_T *ar, A_UINT16 channel, A_UINT8 *bssid, -+ A_UINT16 listenInterval, A_UINT16 beaconInterval, -+ NETWORK_TYPE networkType, A_UINT8 beaconIeLen, -+ A_UINT8 assocReqLen, A_UINT8 assocRespLen, -+ A_UINT8 *assocInfo) -+{ -+ union iwreq_data wrqu; -+ int i, beacon_ie_pos, assoc_resp_ie_pos, assoc_req_ie_pos; -+ static const char *tag1 = "ASSOCINFO(ReqIEs="; -+ static const char *tag2 = "ASSOCRESPIE="; -+ static const char *beaconIetag = "BEACONIE="; -+ char buf[WMI_CONTROL_MSG_MAX_LEN * 2 + sizeof(tag1)]; -+ char *pos; -+ A_UINT8 key_op_ctrl; -+ -+ A_MEMCPY(ar->arBssid, bssid, sizeof(ar->arBssid)); -+ ar->arBssChannel = channel; -+ -+ A_PRINTF("AR6000 connected event on freq %d ", channel); -+ A_PRINTF("with bssid %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x " -+ " listenInterval=%d, beaconInterval = %d, beaconIeLen = %d assocReqLen=%d" -+ " assocRespLen =%d\n", -+ bssid[0], bssid[1], bssid[2], -+ bssid[3], bssid[4], bssid[5], -+ listenInterval, beaconInterval, -+ beaconIeLen, assocReqLen, assocRespLen); -+ if (networkType & ADHOC_NETWORK) { -+ if (networkType & ADHOC_CREATOR) { -+ A_PRINTF("Network: Adhoc (Creator)\n"); -+ } else { -+ A_PRINTF("Network: Adhoc (Joiner)\n"); -+ } -+ } else { -+ A_PRINTF("Network: Infrastructure\n"); -+ } -+ -+ if (beaconIeLen && (sizeof(buf) > (9 + beaconIeLen * 2))) { -+ AR_DEBUG_PRINTF("\nBeaconIEs= "); -+ -+ beacon_ie_pos = 0; -+ A_MEMZERO(buf, sizeof(buf)); -+ sprintf(buf, "%s", beaconIetag); -+ pos = buf + 9; -+ for (i = beacon_ie_pos; i < beacon_ie_pos + beaconIeLen; i++) { -+ AR_DEBUG_PRINTF("%2.2x ", assocInfo[i]); -+ sprintf(pos, "%2.2x", assocInfo[i]); -+ pos += 2; -+ } -+ AR_DEBUG_PRINTF("\n"); -+ -+ A_MEMZERO(&wrqu, sizeof(wrqu)); -+ wrqu.data.length = strlen(buf); -+ wireless_send_event(ar->arNetDev, IWEVCUSTOM, &wrqu, buf); -+ } -+ -+ if (assocRespLen && (sizeof(buf) > (12 + (assocRespLen * 2)))) -+ { -+ assoc_resp_ie_pos = beaconIeLen + assocReqLen + -+ sizeof(A_UINT16) + /* capinfo*/ -+ sizeof(A_UINT16) + /* status Code */ -+ sizeof(A_UINT16) ; /* associd */ -+ A_MEMZERO(buf, sizeof(buf)); -+ sprintf(buf, "%s", tag2); -+ pos = buf + 12; -+ AR_DEBUG_PRINTF("\nAssocRespIEs= "); -+ /* -+ * The Association Response Frame w.o. the WLAN header is delivered to -+ * the host, so skip over to the IEs -+ */ -+ for (i = assoc_resp_ie_pos; i < assoc_resp_ie_pos + assocRespLen - 6; i++) -+ { -+ AR_DEBUG_PRINTF("%2.2x ", assocInfo[i]); -+ sprintf(pos, "%2.2x", assocInfo[i]); -+ pos += 2; -+ } -+ AR_DEBUG_PRINTF("\n"); -+ -+ A_MEMZERO(&wrqu, sizeof(wrqu)); -+ wrqu.data.length = strlen(buf); -+ wireless_send_event(ar->arNetDev, IWEVCUSTOM, &wrqu, buf); -+ } -+ -+ if (assocReqLen && (sizeof(buf) > (17 + (assocReqLen * 2)))) { -+ /* -+ * assoc Request includes capability and listen interval. Skip these. -+ */ -+ assoc_req_ie_pos = beaconIeLen + -+ sizeof(A_UINT16) + /* capinfo*/ -+ sizeof(A_UINT16); /* listen interval */ -+ -+ A_MEMZERO(buf, sizeof(buf)); -+ sprintf(buf, "%s", tag1); -+ pos = buf + 17; -+ AR_DEBUG_PRINTF("AssocReqIEs= "); -+ for (i = assoc_req_ie_pos; i < assoc_req_ie_pos + assocReqLen - 4; i++) { -+ AR_DEBUG_PRINTF("%2.2x ", assocInfo[i]); -+ sprintf(pos, "%2.2x", assocInfo[i]); -+ pos += 2;; -+ } -+ AR_DEBUG_PRINTF("\n"); -+ -+ A_MEMZERO(&wrqu, sizeof(wrqu)); -+ wrqu.data.length = strlen(buf); -+ wireless_send_event(ar->arNetDev, IWEVCUSTOM, &wrqu, buf); -+ } -+ -+#ifdef USER_KEYS -+ if (ar->user_savedkeys_stat == USER_SAVEDKEYS_STAT_RUN && -+ ar->user_saved_keys.keyOk == TRUE) -+ { -+ -+ key_op_ctrl = KEY_OP_VALID_MASK & ~KEY_OP_INIT_TSC; -+ if (ar->user_key_ctrl & AR6000_USER_SETKEYS_RSC_UNCHANGED) { -+ key_op_ctrl &= ~KEY_OP_INIT_RSC; -+ } else { -+ key_op_ctrl |= KEY_OP_INIT_RSC; -+ } -+ ar6000_reinstall_keys(ar, key_op_ctrl); -+ } -+#endif /* USER_KEYS */ -+ -+ /* flush data queues */ -+ ar6000_TxDataCleanup(ar); -+ -+ netif_wake_queue(ar->arNetDev); -+ -+ if ((OPEN_AUTH == ar->arDot11AuthMode) && -+ (NONE_AUTH == ar->arAuthMode) && -+ (WEP_CRYPT == ar->arPairwiseCrypto)) -+ { -+ if (!ar->arConnected) { -+ ar6000_install_static_wep_keys(ar); -+ } -+ } -+ -+ ar->arConnected = TRUE; -+ ar->arConnectPending = FALSE; -+ -+ reconnect_flag = 0; -+ -+ A_MEMZERO(&wrqu, sizeof(wrqu)); -+ A_MEMCPY(wrqu.addr.sa_data, bssid, IEEE80211_ADDR_LEN); -+ wrqu.addr.sa_family = ARPHRD_ETHER; -+ wireless_send_event(ar->arNetDev, SIOCGIWAP, &wrqu, NULL); -+ if ((ar->arNetworkType == ADHOC_NETWORK) && ar->arIbssPsEnable) { -+ A_MEMZERO(ar->arNodeMap, sizeof(ar->arNodeMap)); -+ ar->arNodeNum = 0; -+ ar->arNexEpId = ENDPOINT_2; -+ } -+ -+} -+ -+void ar6000_set_numdataendpts(AR_SOFTC_T *ar, A_UINT32 num) -+{ -+ A_ASSERT(num <= (HTC_MAILBOX_NUM_MAX - 1)); -+ ar->arNumDataEndPts = num; -+} -+ -+void -+ar6000_disconnect_event(AR_SOFTC_T *ar, A_UINT8 reason, A_UINT8 *bssid, -+ A_UINT8 assocRespLen, A_UINT8 *assocInfo, A_UINT16 protocolReasonStatus) -+{ -+ A_UINT8 i; -+ -+ A_PRINTF("AR6000 disconnected"); -+ if (bssid[0] || bssid[1] || bssid[2] || bssid[3] || bssid[4] || bssid[5]) { -+ A_PRINTF(" from %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x ", -+ bssid[0], bssid[1], bssid[2], bssid[3], bssid[4], bssid[5]); -+ } -+ A_PRINTF("\n"); -+ -+ AR_DEBUG_PRINTF("\nDisconnect Reason is %d", reason); -+ AR_DEBUG_PRINTF("\nProtocol Reason/Status Code is %d", protocolReasonStatus); -+ AR_DEBUG_PRINTF("\nAssocResp Frame = %s", -+ assocRespLen ? " " : "NULL"); -+ for (i = 0; i < assocRespLen; i++) { -+ if (!(i % 0x10)) { -+ AR_DEBUG_PRINTF("\n"); -+ } -+ AR_DEBUG_PRINTF("%2.2x ", assocInfo[i]); -+ } -+ AR_DEBUG_PRINTF("\n"); -+ /* -+ * If the event is due to disconnect cmd from the host, only they the target -+ * would stop trying to connect. Under any other condition, target would -+ * keep trying to connect. -+ * -+ */ -+ if( reason == DISCONNECT_CMD) -+ { -+ ar->arConnectPending = FALSE; -+ } else { -+ ar->arConnectPending = TRUE; -+ if (((reason == ASSOC_FAILED) && (protocolReasonStatus == 0x11)) || -+ ((reason == ASSOC_FAILED) && (protocolReasonStatus == 0x0) && (reconnect_flag == 1))) { -+ ar->arConnected = TRUE; -+ return; -+ } -+ } -+ ar->arConnected = FALSE; -+ -+ if( (reason != CSERV_DISCONNECT) || (reconnect_flag != 1) ) { -+ reconnect_flag = 0; -+ } -+ -+#ifdef USER_KEYS -+ if (reason != CSERV_DISCONNECT) -+ { -+ ar->user_savedkeys_stat = USER_SAVEDKEYS_STAT_INIT; -+ ar->user_key_ctrl = 0; -+ } -+#endif /* USER_KEYS */ -+ -+ netif_stop_queue(ar->arNetDev); -+ A_MEMZERO(ar->arBssid, sizeof(ar->arBssid)); -+ ar->arBssChannel = 0; -+ ar->arBeaconInterval = 0; -+ -+ ar6000_TxDataCleanup(ar); -+} -+ -+void -+ar6000_regDomain_event(AR_SOFTC_T *ar, A_UINT32 regCode) -+{ -+ A_PRINTF("AR6000 Reg Code = 0x%x\n", regCode); -+ ar->arRegCode = regCode; -+} -+ -+void -+ar6000_neighborReport_event(AR_SOFTC_T *ar, int numAps, WMI_NEIGHBOR_INFO *info) -+{ -+ static const char *tag = "PRE-AUTH"; -+ char buf[128]; -+ union iwreq_data wrqu; -+ int i; -+ -+ AR_DEBUG_PRINTF("AR6000 Neighbor Report Event\n"); -+ for (i=0; i < numAps; info++, i++) { -+ AR_DEBUG_PRINTF("bssid %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x ", -+ info->bssid[0], info->bssid[1], info->bssid[2], -+ info->bssid[3], info->bssid[4], info->bssid[5]); -+ if (info->bssFlags & WMI_PREAUTH_CAPABLE_BSS) { -+ AR_DEBUG_PRINTF("preauth-cap"); -+ } -+ if (info->bssFlags & WMI_PMKID_VALID_BSS) { -+ AR_DEBUG_PRINTF(" pmkid-valid\n"); -+ continue; /* we skip bss if the pmkid is already valid */ -+ } -+ AR_DEBUG_PRINTF("\n"); -+ snprintf(buf, sizeof(buf), "%s%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x%2.2x", -+ tag, -+ info->bssid[0], info->bssid[1], info->bssid[2], -+ info->bssid[3], info->bssid[4], info->bssid[5], -+ i, info->bssFlags); -+ A_MEMZERO(&wrqu, sizeof(wrqu)); -+ wrqu.data.length = strlen(buf); -+ wireless_send_event(ar->arNetDev, IWEVCUSTOM, &wrqu, buf); -+ } -+} -+ -+void -+ar6000_tkip_micerr_event(AR_SOFTC_T *ar, A_UINT8 keyid, A_BOOL ismcast) -+{ -+ static const char *tag = "MLME-MICHAELMICFAILURE.indication"; -+ char buf[128]; -+ union iwreq_data wrqu; -+ -+ A_PRINTF("AR6000 TKIP MIC error received for keyid %d %scast\n", -+ keyid, ismcast ? "multi": "uni"); -+ snprintf(buf, sizeof(buf), "%s(keyid=%d %scat)", tag, keyid, -+ ismcast ? "multi" : "uni"); -+ memset(&wrqu, 0, sizeof(wrqu)); -+ wrqu.data.length = strlen(buf); -+ wireless_send_event(ar->arNetDev, IWEVCUSTOM, &wrqu, buf); -+} -+ -+void -+ar6000_scanComplete_event(AR_SOFTC_T *ar, A_STATUS status) -+{ -+ AR_DEBUG_PRINTF("AR6000 scan complete: %d\n", status); -+ -+ ar->scan_complete = 1; -+ wake_up_interruptible(&ar6000_scan_queue); -+} -+ -+void -+ar6000_targetStats_event(AR_SOFTC_T *ar, WMI_TARGET_STATS *pTarget) -+{ -+ TARGET_STATS *pStats = &ar->arTargetStats; -+ A_UINT8 ac; -+ -+ /*A_PRINTF("AR6000 updating target stats\n");*/ -+ pStats->tx_packets += pTarget->txrxStats.tx_stats.tx_packets; -+ pStats->tx_bytes += pTarget->txrxStats.tx_stats.tx_bytes; -+ pStats->tx_unicast_pkts += pTarget->txrxStats.tx_stats.tx_unicast_pkts; -+ pStats->tx_unicast_bytes += pTarget->txrxStats.tx_stats.tx_unicast_bytes; -+ pStats->tx_multicast_pkts += pTarget->txrxStats.tx_stats.tx_multicast_pkts; -+ pStats->tx_multicast_bytes += pTarget->txrxStats.tx_stats.tx_multicast_bytes; -+ pStats->tx_broadcast_pkts += pTarget->txrxStats.tx_stats.tx_broadcast_pkts; -+ pStats->tx_broadcast_bytes += pTarget->txrxStats.tx_stats.tx_broadcast_bytes; -+ pStats->tx_rts_success_cnt += pTarget->txrxStats.tx_stats.tx_rts_success_cnt; -+ for(ac = 0; ac < WMM_NUM_AC; ac++) -+ pStats->tx_packet_per_ac[ac] += pTarget->txrxStats.tx_stats.tx_packet_per_ac[ac]; -+ pStats->tx_errors += pTarget->txrxStats.tx_stats.tx_errors; -+ pStats->tx_failed_cnt += pTarget->txrxStats.tx_stats.tx_failed_cnt; -+ pStats->tx_retry_cnt += pTarget->txrxStats.tx_stats.tx_retry_cnt; -+ pStats->tx_rts_fail_cnt += pTarget->txrxStats.tx_stats.tx_rts_fail_cnt; -+ pStats->tx_unicast_rate = wmi_get_rate(pTarget->txrxStats.tx_stats.tx_unicast_rate); -+ -+ pStats->rx_packets += pTarget->txrxStats.rx_stats.rx_packets; -+ pStats->rx_bytes += pTarget->txrxStats.rx_stats.rx_bytes; -+ pStats->rx_unicast_pkts += pTarget->txrxStats.rx_stats.rx_unicast_pkts; -+ pStats->rx_unicast_bytes += pTarget->txrxStats.rx_stats.rx_unicast_bytes; -+ pStats->rx_multicast_pkts += pTarget->txrxStats.rx_stats.rx_multicast_pkts; -+ pStats->rx_multicast_bytes += pTarget->txrxStats.rx_stats.rx_multicast_bytes; -+ pStats->rx_broadcast_pkts += pTarget->txrxStats.rx_stats.rx_broadcast_pkts; -+ pStats->rx_broadcast_bytes += pTarget->txrxStats.rx_stats.rx_broadcast_bytes; -+ pStats->rx_fragment_pkt += pTarget->txrxStats.rx_stats.rx_fragment_pkt; -+ pStats->rx_errors += pTarget->txrxStats.rx_stats.rx_errors; -+ pStats->rx_crcerr += pTarget->txrxStats.rx_stats.rx_crcerr; -+ pStats->rx_key_cache_miss += pTarget->txrxStats.rx_stats.rx_key_cache_miss; -+ pStats->rx_decrypt_err += pTarget->txrxStats.rx_stats.rx_decrypt_err; -+ pStats->rx_duplicate_frames += pTarget->txrxStats.rx_stats.rx_duplicate_frames; -+ pStats->rx_unicast_rate = wmi_get_rate(pTarget->txrxStats.rx_stats.rx_unicast_rate); -+ -+ -+ pStats->tkip_local_mic_failure -+ += pTarget->txrxStats.tkipCcmpStats.tkip_local_mic_failure; -+ pStats->tkip_counter_measures_invoked -+ += pTarget->txrxStats.tkipCcmpStats.tkip_counter_measures_invoked; -+ pStats->tkip_replays += pTarget->txrxStats.tkipCcmpStats.tkip_replays; -+ pStats->tkip_format_errors += pTarget->txrxStats.tkipCcmpStats.tkip_format_errors; -+ pStats->ccmp_format_errors += pTarget->txrxStats.tkipCcmpStats.ccmp_format_errors; -+ pStats->ccmp_replays += pTarget->txrxStats.tkipCcmpStats.ccmp_replays; -+ -+ -+ pStats->power_save_failure_cnt += pTarget->pmStats.power_save_failure_cnt; -+ pStats->noise_floor_calibation = pTarget->noise_floor_calibation; -+ -+ pStats->cs_bmiss_cnt += pTarget->cservStats.cs_bmiss_cnt; -+ pStats->cs_lowRssi_cnt += pTarget->cservStats.cs_lowRssi_cnt; -+ pStats->cs_connect_cnt += pTarget->cservStats.cs_connect_cnt; -+ pStats->cs_disconnect_cnt += pTarget->cservStats.cs_disconnect_cnt; -+ pStats->cs_aveBeacon_snr = pTarget->cservStats.cs_aveBeacon_snr; -+ pStats->cs_aveBeacon_rssi = pTarget->cservStats.cs_aveBeacon_rssi; -+ pStats->cs_lastRoam_msec = pTarget->cservStats.cs_lastRoam_msec; -+ pStats->cs_snr = pTarget->cservStats.cs_snr; -+ pStats->cs_rssi = pTarget->cservStats.cs_rssi; -+ -+ pStats->lq_val = pTarget->lqVal; -+ -+ pStats->wow_num_pkts_dropped += pTarget->wowStats.wow_num_pkts_dropped; -+ pStats->wow_num_host_pkt_wakeups += pTarget->wowStats.wow_num_host_pkt_wakeups; -+ pStats->wow_num_host_event_wakeups += pTarget->wowStats.wow_num_host_event_wakeups; -+ pStats->wow_num_events_discarded += pTarget->wowStats.wow_num_events_discarded; -+ -+ ar->statsUpdatePending = FALSE; -+ wake_up(&arEvent); -+} -+ -+void -+ar6000_rssiThreshold_event(AR_SOFTC_T *ar, WMI_RSSI_THRESHOLD_VAL newThreshold, A_INT16 rssi) -+{ -+ USER_RSSI_THOLD userRssiThold; -+ -+ userRssiThold.tag = rssi_map[newThreshold].tag; -+ userRssiThold.rssi = rssi; -+ AR_DEBUG2_PRINTF("rssi Threshold range = %d tag = %d rssi = %d\n", newThreshold, userRssiThold.tag, rssi); -+#ifdef SEND_EVENT_TO_APP -+ ar6000_send_event_to_app(ar, WMI_RSSI_THRESHOLD_EVENTID,(A_UINT8 *)&userRssiThold, sizeof(USER_RSSI_THOLD)); -+#endif -+} -+ -+ -+void -+ar6000_hbChallengeResp_event(AR_SOFTC_T *ar, A_UINT32 cookie, A_UINT32 source) -+{ -+ if (source == APP_HB_CHALLENGE) { -+ /* Report it to the app in case it wants a positive acknowledgement */ -+#ifdef SEND_EVENT_TO_APP -+ ar6000_send_event_to_app(ar, WMIX_HB_CHALLENGE_RESP_EVENTID, -+ (A_UINT8 *)&cookie, sizeof(cookie)); -+#endif -+ } else { -+ /* This would ignore the replys that come in after their due time */ -+ if (cookie == ar->arHBChallengeResp.seqNum) { -+ ar->arHBChallengeResp.outstanding = FALSE; -+ } -+ } -+} -+ -+ -+void -+ar6000_reportError_event(AR_SOFTC_T *ar, WMI_TARGET_ERROR_VAL errorVal) -+{ -+ char *errString[] = { -+ [WMI_TARGET_PM_ERR_FAIL] "WMI_TARGET_PM_ERR_FAIL", -+ [WMI_TARGET_KEY_NOT_FOUND] "WMI_TARGET_KEY_NOT_FOUND", -+ [WMI_TARGET_DECRYPTION_ERR] "WMI_TARGET_DECRYPTION_ERR", -+ [WMI_TARGET_BMISS] "WMI_TARGET_BMISS", -+ [WMI_PSDISABLE_NODE_JOIN] "WMI_PSDISABLE_NODE_JOIN" -+ }; -+ -+ A_PRINTF("AR6000 Error on Target. Error = 0x%x\n", errorVal); -+ -+ /* One error is reported at a time, and errorval is a bitmask */ -+ if(errorVal & (errorVal - 1)) -+ return; -+ -+ A_PRINTF("AR6000 Error type = "); -+ switch(errorVal) -+ { -+ case WMI_TARGET_PM_ERR_FAIL: -+ case WMI_TARGET_KEY_NOT_FOUND: -+ case WMI_TARGET_DECRYPTION_ERR: -+ case WMI_TARGET_BMISS: -+ case WMI_PSDISABLE_NODE_JOIN: -+ A_PRINTF("%s\n", errString[errorVal]); -+ break; -+ default: -+ A_PRINTF("INVALID\n"); -+ break; -+ } -+ -+} -+ -+ -+void -+ar6000_cac_event(AR_SOFTC_T *ar, A_UINT8 ac, A_UINT8 cacIndication, -+ A_UINT8 statusCode, A_UINT8 *tspecSuggestion) -+{ -+ WMM_TSPEC_IE *tspecIe; -+ -+ /* -+ * This is the TSPEC IE suggestion from AP. -+ * Suggestion provided by AP under some error -+ * cases, could be helpful for the host app. -+ * Check documentation. -+ */ -+ tspecIe = (WMM_TSPEC_IE *)tspecSuggestion; -+ -+ /* -+ * What do we do, if we get TSPEC rejection? One thought -+ * that comes to mind is implictly delete the pstream... -+ */ -+ A_PRINTF("AR6000 CAC notification. " -+ "AC = %d, cacIndication = 0x%x, statusCode = 0x%x\n", -+ ac, cacIndication, statusCode); -+} -+ -+#define AR6000_PRINT_BSSID(_pBss) do { \ -+ A_PRINTF("%2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x ",\ -+ (_pBss)[0],(_pBss)[1],(_pBss)[2],(_pBss)[3],\ -+ (_pBss)[4],(_pBss)[5]); \ -+} while(0) -+ -+void -+ar6000_roam_tbl_event(AR_SOFTC_T *ar, WMI_TARGET_ROAM_TBL *pTbl) -+{ -+ A_UINT8 i; -+ -+ A_PRINTF("ROAM TABLE NO OF ENTRIES is %d ROAM MODE is %d\n", -+ pTbl->numEntries, pTbl->roamMode); -+ for (i= 0; i < pTbl->numEntries; i++) { -+ A_PRINTF("[%d]bssid %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x ", i, -+ pTbl->bssRoamInfo[i].bssid[0], pTbl->bssRoamInfo[i].bssid[1], -+ pTbl->bssRoamInfo[i].bssid[2], -+ pTbl->bssRoamInfo[i].bssid[3], -+ pTbl->bssRoamInfo[i].bssid[4], -+ pTbl->bssRoamInfo[i].bssid[5]); -+ A_PRINTF("RSSI %d RSSIDT %d LAST RSSI %d UTIL %d ROAM_UTIL %d" -+ " BIAS %d\n", -+ pTbl->bssRoamInfo[i].rssi, -+ pTbl->bssRoamInfo[i].rssidt, -+ pTbl->bssRoamInfo[i].last_rssi, -+ pTbl->bssRoamInfo[i].util, -+ pTbl->bssRoamInfo[i].roam_util, -+ pTbl->bssRoamInfo[i].bias); -+ } -+} -+ -+void -+ar6000_wow_list_event(struct ar6_softc *ar, A_UINT8 num_filters, WMI_GET_WOW_LIST_REPLY *wow_reply) -+{ -+ A_UINT8 i,j; -+ -+ /*Each event now contains exactly one filter, see bug 26613*/ -+ A_PRINTF("WOW pattern %d of %d patterns\n", wow_reply->this_filter_num, wow_reply->num_filters); -+ A_PRINTF("wow mode = %s host mode = %s\n", -+ (wow_reply->wow_mode == 0? "disabled":"enabled"), -+ (wow_reply->host_mode == 1 ? "awake":"asleep")); -+ -+ -+ /*If there are no patterns, the reply will only contain generic -+ WoW information. Pattern information will exist only if there are -+ patterns present. Bug 26716*/ -+ -+ /* If this event contains pattern information, display it*/ -+ if (wow_reply->this_filter_num) { -+ i=0; -+ A_PRINTF("id=%d size=%d offset=%d\n", -+ wow_reply->wow_filters[i].wow_filter_id, -+ wow_reply->wow_filters[i].wow_filter_size, -+ wow_reply->wow_filters[i].wow_filter_offset); -+ A_PRINTF("wow pattern = "); -+ for (j=0; j< wow_reply->wow_filters[i].wow_filter_size; j++) { -+ A_PRINTF("%2.2x",wow_reply->wow_filters[i].wow_filter_pattern[j]); -+ } -+ -+ A_PRINTF("\nwow mask = "); -+ for (j=0; j< wow_reply->wow_filters[i].wow_filter_size; j++) { -+ A_PRINTF("%2.2x",wow_reply->wow_filters[i].wow_filter_mask[j]); -+ } -+ A_PRINTF("\n"); -+ } -+} -+ -+/* -+ * Report the Roaming related data collected on the target -+ */ -+void -+ar6000_display_roam_time(WMI_TARGET_ROAM_TIME *p) -+{ -+ A_PRINTF("Disconnect Data : BSSID: "); -+ AR6000_PRINT_BSSID(p->disassoc_bssid); -+ A_PRINTF(" RSSI %d DISASSOC Time %d NO_TXRX_TIME %d\n", -+ p->disassoc_bss_rssi,p->disassoc_time, -+ p->no_txrx_time); -+ A_PRINTF("Connect Data: BSSID: "); -+ AR6000_PRINT_BSSID(p->assoc_bssid); -+ A_PRINTF(" RSSI %d ASSOC Time %d TXRX_TIME %d\n", -+ p->assoc_bss_rssi,p->assoc_time, -+ p->allow_txrx_time); -+ A_PRINTF("Last Data Tx Time (b4 Disassoc) %d "\ -+ "First Data Tx Time (after Assoc) %d\n", -+ p->last_data_txrx_time, p->first_data_txrx_time); -+} -+ -+void -+ar6000_roam_data_event(AR_SOFTC_T *ar, WMI_TARGET_ROAM_DATA *p) -+{ -+ switch (p->roamDataType) { -+ case ROAM_DATA_TIME: -+ ar6000_display_roam_time(&p->u.roamTime); -+ break; -+ default: -+ break; -+ } -+} -+ -+void -+ar6000_bssInfo_event_rx(AR_SOFTC_T *ar, A_UINT8 *datap, int len) -+{ -+ struct sk_buff *skb; -+ WMI_BSS_INFO_HDR *bih = (WMI_BSS_INFO_HDR *)datap; -+ -+ -+ if (!ar->arMgmtFilter) { -+ return; -+ } -+ if (((ar->arMgmtFilter & IEEE80211_FILTER_TYPE_BEACON) && -+ (bih->frameType != BEACON_FTYPE)) || -+ ((ar->arMgmtFilter & IEEE80211_FILTER_TYPE_PROBE_RESP) && -+ (bih->frameType != PROBERESP_FTYPE))) -+ { -+ return; -+ } -+ -+ if ((skb = A_NETBUF_ALLOC_RAW(len)) != NULL) { -+ -+ A_NETBUF_PUT(skb, len); -+ A_MEMCPY(A_NETBUF_DATA(skb), datap, len); -+ skb->dev = ar->arNetDev; -+ printk("MAC RAW...\n"); -+// skb->mac.raw = A_NETBUF_DATA(skb); -+ skb->ip_summed = CHECKSUM_NONE; -+ skb->pkt_type = PACKET_OTHERHOST; -+ skb->protocol = __constant_htons(0x0019); -+ netif_rx(skb); -+ } -+} -+ -+A_UINT32 wmiSendCmdNum; -+ -+A_STATUS -+ar6000_control_tx(void *devt, void *osbuf, WMI_PRI_STREAM_ID streamID) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ A_STATUS status = A_OK; -+ struct ar_cookie *cookie = NULL; -+ int i; -+ -+ /* take lock to protect ar6000_alloc_cookie() */ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ do { -+ -+ AR_DEBUG2_PRINTF("ar_contrstatus = ol_tx: skb=0x%x, len=0x%x, sid=%d\n", -+ (A_UINT32)osbuf, A_NETBUF_LEN(osbuf), streamID); -+ -+ if ((streamID == WMI_CONTROL_PRI) && (ar->arWMIControlEpFull)) { -+ /* control endpoint is full, don't allocate resources, we -+ * are just going to drop this packet */ -+ cookie = NULL; -+ AR_DEBUG_PRINTF(" WMI Control EP full, dropping packet : 0x%X, len:%d \n", -+ (A_UINT32)osbuf, A_NETBUF_LEN(osbuf)); -+ } else { -+ cookie = ar6000_alloc_cookie(ar); -+ } -+ -+ if (cookie == NULL) { -+ status = A_NO_MEMORY; -+ break; -+ } -+ -+ if(logWmiRawMsgs) { -+ A_PRINTF("WMI cmd send, msgNo %d :", wmiSendCmdNum); -+ for(i = 0; i < a_netbuf_to_len(osbuf); i++) -+ A_PRINTF("%x ", ((A_UINT8 *)a_netbuf_to_data(osbuf))[i]); -+ A_PRINTF("\n"); -+ } -+ -+ wmiSendCmdNum++; -+ -+ } while (FALSE); -+ -+ if (cookie != NULL) { -+ /* got a structure to send it out on */ -+ ar->arTxPending[streamID]++; -+ -+ if (streamID != WMI_CONTROL_PRI) { -+ ar->arTotalTxDataPending++; -+ } -+ } -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ -+ if (cookie != NULL) { -+ cookie->arc_bp[0] = (A_UINT32)osbuf; -+ cookie->arc_bp[1] = 0; -+ SET_HTC_PACKET_INFO_TX(&cookie->HtcPkt, -+ cookie, -+ A_NETBUF_DATA(osbuf), -+ A_NETBUF_LEN(osbuf), -+ arWMIStream2EndpointID(ar,streamID), -+ AR6K_CONTROL_PKT_TAG); -+ /* this interface is asynchronous, if there is an error, cleanup will happen in the -+ * TX completion callback */ -+ HTCSendPkt(ar->arHtcTarget, &cookie->HtcPkt); -+ status = A_OK; -+ } -+ -+ return status; -+} -+ -+/* indicate tx activity or inactivity on a WMI stream */ -+void ar6000_indicate_tx_activity(void *devt, A_UINT8 TrafficClass, A_BOOL Active) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ WMI_PRI_STREAM_ID streamid; -+ -+ if (ar->arWmiEnabled) { -+ streamid = wmi_get_stream_id(ar->arWmi, TrafficClass); -+ } else { -+ /* for mbox ping testing, the traffic class is mapped directly as a stream ID, -+ * see handling of AR6000_XIOCTL_TRAFFIC_ACTIVITY_CHANGE in ioctl.c */ -+ streamid = (WMI_PRI_STREAM_ID)TrafficClass; -+ } -+ -+ /* notify HTC, this may cause credit distribution changes */ -+ -+ HTCIndicateActivityChange(ar->arHtcTarget, -+ arWMIStream2EndpointID(ar,streamid), -+ Active); -+ -+} -+ -+module_init(ar6000_init_module); -+module_exit(ar6000_cleanup_module); -+ -+/* Init cookie queue */ -+static void -+ar6000_cookie_init(AR_SOFTC_T *ar) -+{ -+ A_UINT32 i; -+ -+ ar->arCookieList = NULL; -+ A_MEMZERO(s_ar_cookie_mem, sizeof(s_ar_cookie_mem)); -+ -+ for (i = 0; i < MAX_COOKIE_NUM; i++) { -+ ar6000_free_cookie(ar, &s_ar_cookie_mem[i]); -+ } -+} -+ -+/* cleanup cookie queue */ -+static void -+ar6000_cookie_cleanup(AR_SOFTC_T *ar) -+{ -+ /* It is gone .... */ -+ ar->arCookieList = NULL; -+} -+ -+/* Init cookie queue */ -+static void -+ar6000_free_cookie(AR_SOFTC_T *ar, struct ar_cookie * cookie) -+{ -+ /* Insert first */ -+ A_ASSERT(ar != NULL); -+ A_ASSERT(cookie != NULL); -+ cookie->arc_list_next = ar->arCookieList; -+ ar->arCookieList = cookie; -+} -+ -+/* cleanup cookie queue */ -+static struct ar_cookie * -+ar6000_alloc_cookie(AR_SOFTC_T *ar) -+{ -+ struct ar_cookie *cookie; -+ -+ cookie = ar->arCookieList; -+ if(cookie != NULL) -+ { -+ ar->arCookieList = cookie->arc_list_next; -+ } -+ -+ return cookie; -+} -+ -+#ifdef SEND_EVENT_TO_APP -+/* -+ * This function is used to send event which come from taget to -+ * the application. The buf which send to application is include -+ * the event ID and event content. -+ */ -+#define EVENT_ID_LEN 2 -+void ar6000_send_event_to_app(AR_SOFTC_T *ar, A_UINT16 eventId, -+ A_UINT8 *datap, int len) -+{ -+ -+#if (WIRELESS_EXT >= 15) -+ -+/* note: IWEVCUSTOM only exists in wireless extensions after version 15 */ -+ -+ char *buf; -+ A_UINT16 size; -+ union iwreq_data wrqu; -+ -+ size = len + EVENT_ID_LEN; -+ -+ if (size > IW_CUSTOM_MAX) { -+ AR_DEBUG_PRINTF("WMI event ID : 0x%4.4X, len = %d too big for IWEVCUSTOM (max=%d) \n", -+ eventId, size, IW_CUSTOM_MAX); -+ return; -+ } -+ -+ buf = A_MALLOC_NOWAIT(size); -+ A_MEMZERO(buf, size); -+ A_MEMCPY(buf, &eventId, EVENT_ID_LEN); -+ A_MEMCPY(buf+EVENT_ID_LEN, datap, len); -+ -+ //AR_DEBUG_PRINTF("event ID = %d,len = %d\n",*(A_UINT16*)buf, size); -+ A_MEMZERO(&wrqu, sizeof(wrqu)); -+ wrqu.data.length = size; -+ wireless_send_event(ar->arNetDev, IWEVCUSTOM, &wrqu, buf); -+ -+ A_FREE(buf); -+#endif -+ -+ -+} -+#endif -+ -+ -+void -+ar6000_tx_retry_err_event(void *devt) -+{ -+ AR_DEBUG2_PRINTF("Tx retries reach maximum!\n"); -+} -+ -+void -+ar6000_snrThresholdEvent_rx(void *devt, WMI_SNR_THRESHOLD_VAL newThreshold, A_UINT8 snr) -+{ -+ AR_DEBUG2_PRINTF("snr threshold range %d, snr %d\n", newThreshold, snr); -+} -+ -+void -+ar6000_lqThresholdEvent_rx(void *devt, WMI_LQ_THRESHOLD_VAL newThreshold, A_UINT8 lq) -+{ -+ AR_DEBUG2_PRINTF("lq threshold range %d, lq %d\n", newThreshold, lq); -+} -+ -+ -+ -+A_UINT32 -+a_copy_to_user(void *to, const void *from, A_UINT32 n) -+{ -+ return(copy_to_user(to, from, n)); -+} -+ -+A_UINT32 -+a_copy_from_user(void *to, const void *from, A_UINT32 n) -+{ -+ return(copy_from_user(to, from, n)); -+} -+ -+ -+A_STATUS -+ar6000_get_driver_cfg(struct net_device *dev, -+ A_UINT16 cfgParam, -+ void *result) -+{ -+ -+ A_STATUS ret = 0; -+ -+ switch(cfgParam) -+ { -+ case AR6000_DRIVER_CFG_GET_WLANNODECACHING: -+ *((A_UINT32 *)result) = wlanNodeCaching; -+ break; -+ case AR6000_DRIVER_CFG_LOG_RAW_WMI_MSGS: -+ *((A_UINT32 *)result) = logWmiRawMsgs; -+ break; -+ default: -+ ret = EINVAL; -+ break; -+ } -+ -+ return ret; -+} -+ -+void -+ar6000_keepalive_rx(void *devt, A_UINT8 configured) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ -+ ar->arKeepaliveConfigured = configured; -+ wake_up(&arEvent); -+} -+ -+void -+ar6000_pmkid_list_event(void *devt, A_UINT8 numPMKID, WMI_PMKID *pmkidList) -+{ -+ A_UINT8 i, j; -+ -+ A_PRINTF("Number of Cached PMKIDs is %d\n", numPMKID); -+ -+ for (i = 0; i < numPMKID; i++) { -+ A_PRINTF("\nPMKID %d ", i); -+ for (j = 0; j < WMI_PMKID_LEN; j++) { -+ A_PRINTF("%2.2x", pmkidList->pmkid[j]); -+ } -+ pmkidList++; -+ } -+} -+ -+#ifdef USER_KEYS -+static A_STATUS -+ -+ar6000_reinstall_keys(AR_SOFTC_T *ar, A_UINT8 key_op_ctrl) -+{ -+ A_STATUS status = A_OK; -+ struct ieee80211req_key *uik = &ar->user_saved_keys.ucast_ik; -+ struct ieee80211req_key *bik = &ar->user_saved_keys.bcast_ik; -+ CRYPTO_TYPE keyType = ar->user_saved_keys.keyType; -+ -+ if (IEEE80211_CIPHER_CCKM_KRK != uik->ik_type) { -+ if (NONE_CRYPT == keyType) { -+ goto _reinstall_keys_out; -+ } -+ -+ if (uik->ik_keylen) { -+ status = wmi_addKey_cmd(ar->arWmi, uik->ik_keyix, -+ ar->user_saved_keys.keyType, PAIRWISE_USAGE, -+ uik->ik_keylen, (A_UINT8 *)&uik->ik_keyrsc, -+ uik->ik_keydata, key_op_ctrl, SYNC_BEFORE_WMIFLAG); -+ } -+ -+ } else { -+ status = wmi_add_krk_cmd(ar->arWmi, uik->ik_keydata); -+ } -+ -+ if (IEEE80211_CIPHER_CCKM_KRK != bik->ik_type) { -+ if (NONE_CRYPT == keyType) { -+ goto _reinstall_keys_out; -+ } -+ -+ if (bik->ik_keylen) { -+ status = wmi_addKey_cmd(ar->arWmi, bik->ik_keyix, -+ ar->user_saved_keys.keyType, GROUP_USAGE, -+ bik->ik_keylen, (A_UINT8 *)&bik->ik_keyrsc, -+ bik->ik_keydata, key_op_ctrl, NO_SYNC_WMIFLAG); -+ } -+ } else { -+ status = wmi_add_krk_cmd(ar->arWmi, bik->ik_keydata); -+ } -+ -+_reinstall_keys_out: -+ ar->user_savedkeys_stat = USER_SAVEDKEYS_STAT_INIT; -+ ar->user_key_ctrl = 0; -+ -+ return status; -+} -+#endif /* USER_KEYS */ -+ -+ -+void -+ar6000_dset_open_req( -+ void *context, -+ A_UINT32 id, -+ A_UINT32 targHandle, -+ A_UINT32 targReplyFn, -+ A_UINT32 targReplyArg) -+{ -+} -+ -+void -+ar6000_dset_close( -+ void *context, -+ A_UINT32 access_cookie) -+{ -+ return; -+} -+ -+void -+ar6000_dset_data_req( -+ void *context, -+ A_UINT32 accessCookie, -+ A_UINT32 offset, -+ A_UINT32 length, -+ A_UINT32 targBuf, -+ A_UINT32 targReplyFn, -+ A_UINT32 targReplyArg) -+{ -+} ---- /dev/null -+++ b/drivers/ar6000/ar6000/ar6000_drv.h -@@ -0,0 +1,361 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _AR6000_H_ -+#define _AR6000_H_ -+ -+#include <linux/version.h> -+ -+ -+#include <linux/autoconf.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/spinlock.h> -+#include <linux/skbuff.h> -+#include <linux/if_ether.h> -+#include <linux/netdevice.h> -+#include <linux/etherdevice.h> -+#include <net/iw_handler.h> -+#include <linux/if_arp.h> -+#include <linux/ip.h> -+#include <linux/semaphore.h> -+#include <linux/wireless.h> -+#include <linux/module.h> -+#include <asm/io.h> -+ -+#include <a_config.h> -+#include <athdefs.h> -+#include "a_types.h" -+#include "a_osapi.h" -+#include "htc_api.h" -+#include "wmi.h" -+#include "a_drv.h" -+#include "bmi.h" -+#include <ieee80211.h> -+#include <ieee80211_ioctl.h> -+#include <wlan_api.h> -+#include <wmi_api.h> -+#include "gpio_api.h" -+#include "gpio.h" -+#include <host_version.h> -+#include <linux/rtnetlink.h> -+#include <linux/init.h> -+#include <linux/moduleparam.h> -+#include "AR6Khwreg.h" -+#include "ar6000_api.h" -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+#include <testcmd.h> -+#endif -+ -+#include "targaddrs.h" -+#include "dbglog_api.h" -+#include "ar6000_diag.h" -+#include "common_drv.h" -+ -+#ifndef __dev_put -+#define __dev_put(dev) dev_put(dev) -+#endif -+ -+#ifdef USER_KEYS -+ -+#define USER_SAVEDKEYS_STAT_INIT 0 -+#define USER_SAVEDKEYS_STAT_RUN 1 -+ -+// TODO this needs to move into the AR_SOFTC struct -+struct USER_SAVEDKEYS { -+ struct ieee80211req_key ucast_ik; -+ struct ieee80211req_key bcast_ik; -+ CRYPTO_TYPE keyType; -+ A_BOOL keyOk; -+}; -+#endif -+ -+#define DBG_INFO 0x00000001 -+#define DBG_ERROR 0x00000002 -+#define DBG_WARNING 0x00000004 -+#define DBG_SDIO 0x00000008 -+#define DBG_HIF 0x00000010 -+#define DBG_HTC 0x00000020 -+#define DBG_WMI 0x00000040 -+#define DBG_WMI2 0x00000080 -+#define DBG_DRIVER 0x00000100 -+ -+#define DBG_DEFAULTS (DBG_ERROR|DBG_WARNING) -+ -+ -+#ifdef DEBUG -+#define AR_DEBUG_PRINTF(args...) if (debugdriver) A_PRINTF(args); -+#define AR_DEBUG2_PRINTF(args...) if (debugdriver >= 2) A_PRINTF(args); -+extern int debugdriver; -+#else -+#define AR_DEBUG_PRINTF(args...) -+#define AR_DEBUG2_PRINTF(args...) -+#endif -+ -+A_STATUS ar6000_ReadRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data); -+A_STATUS ar6000_WriteRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data); -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+#define MAX_AR6000 1 -+#define AR6000_MAX_RX_BUFFERS 16 -+#define AR6000_BUFFER_SIZE 1664 -+#define AR6000_TX_TIMEOUT 10 -+#define AR6000_ETH_ADDR_LEN 6 -+#define AR6000_MAX_ENDPOINTS 4 -+#define MAX_NODE_NUM 15 -+#define MAX_COOKIE_NUM 150 -+#define AR6000_HB_CHALLENGE_RESP_FREQ_DEFAULT 1 -+#define AR6000_HB_CHALLENGE_RESP_MISS_THRES_DEFAULT 1 -+ -+enum { -+ DRV_HB_CHALLENGE = 0, -+ APP_HB_CHALLENGE -+}; -+ -+/* HTC RAW streams */ -+typedef enum _HTC_RAW_STREAM_ID { -+ HTC_RAW_STREAM_NOT_MAPPED = -1, -+ HTC_RAW_STREAM_0 = 0, -+ HTC_RAW_STREAM_1 = 1, -+ HTC_RAW_STREAM_2 = 2, -+ HTC_RAW_STREAM_3 = 3, -+ HTC_RAW_STREAM_NUM_MAX -+} HTC_RAW_STREAM_ID; -+ -+#define RAW_HTC_READ_BUFFERS_NUM 4 -+#define RAW_HTC_WRITE_BUFFERS_NUM 4 -+ -+typedef struct { -+ int currPtr; -+ int length; -+ unsigned char data[AR6000_BUFFER_SIZE]; -+ HTC_PACKET HTCPacket; -+} raw_htc_buffer; -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+/* -+ * add TCMD_MODE besides wmi and bypasswmi -+ * in TCMD_MODE, only few TCMD releated wmi commands -+ * counld be hanlder -+ */ -+enum { -+ AR6000_WMI_MODE = 0, -+ AR6000_BYPASS_MODE, -+ AR6000_TCMD_MODE, -+ AR6000_WLAN_MODE -+}; -+#endif /* CONFIG_HOST_TCMD_SUPPORT */ -+ -+struct ar_wep_key { -+ A_UINT8 arKeyIndex; -+ A_UINT8 arKeyLen; -+ A_UINT8 arKey[64]; -+} ; -+ -+struct ar_node_mapping { -+ A_UINT8 macAddress[6]; -+ A_UINT8 epId; -+ A_UINT8 txPending; -+}; -+ -+struct ar_cookie { -+ A_UINT32 arc_bp[2]; /* Must be first field */ -+ HTC_PACKET HtcPkt; /* HTC packet wrapper */ -+ struct ar_cookie *arc_list_next; -+}; -+ -+struct ar_hb_chlng_resp { -+ A_TIMER timer; -+ A_UINT32 frequency; -+ A_UINT32 seqNum; -+ A_BOOL outstanding; -+ A_UINT8 missCnt; -+ A_UINT8 missThres; -+}; -+ -+typedef struct ar6_softc { -+ struct net_device *arNetDev; /* net_device pointer */ -+ void *arWmi; -+ int arTxPending[WMI_PRI_MAX_COUNT]; -+ int arTotalTxDataPending; -+ A_UINT8 arNumDataEndPts; -+ A_BOOL arWmiEnabled; -+ A_BOOL arWmiReady; -+ A_BOOL arConnected; -+ A_BOOL arRadioSwitch; -+ HTC_HANDLE arHtcTarget; -+ void *arHifDevice; -+ spinlock_t arLock; -+ struct semaphore arSem; -+ int arRxBuffers[WMI_PRI_MAX_COUNT]; -+ int arSsidLen; -+ u_char arSsid[32]; -+ A_UINT8 arNetworkType; -+ A_UINT8 arDot11AuthMode; -+ A_UINT8 arAuthMode; -+ A_UINT8 arPairwiseCrypto; -+ A_UINT8 arPairwiseCryptoLen; -+ A_UINT8 arGroupCrypto; -+ A_UINT8 arGroupCryptoLen; -+ A_UINT8 arDefTxKeyIndex; -+ struct ar_wep_key arWepKeyList[WMI_MAX_KEY_INDEX + 1]; -+ A_UINT8 arBssid[6]; -+ A_UINT8 arReqBssid[6]; -+ A_UINT16 arChannelHint; -+ A_UINT16 arBssChannel; -+ A_UINT16 arListenInterval; -+ struct ar6000_version arVersion; -+ A_UINT32 arTargetType; -+ A_INT8 arRssi; -+ A_UINT8 arTxPwr; -+ A_BOOL arTxPwrSet; -+ A_INT32 arBitRate; -+ struct net_device_stats arNetStats; -+ struct iw_statistics arIwStats; -+ A_INT8 arNumChannels; -+ A_UINT16 arChannelList[32]; -+ A_UINT32 arRegCode; -+ A_BOOL statsUpdatePending; -+ TARGET_STATS arTargetStats; -+ A_INT8 arMaxRetries; -+ A_UINT8 arPhyCapability; -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+ A_UINT8 tcmdRxReport; -+ A_UINT32 tcmdRxTotalPkt; -+ A_INT32 tcmdRxRssi; -+ A_UINT32 tcmdPm; -+ A_UINT32 arTargetMode; -+#endif -+ AR6000_WLAN_STATE arWlanState; -+ struct ar_node_mapping arNodeMap[MAX_NODE_NUM]; -+ A_UINT8 arIbssPsEnable; -+ A_UINT8 arNodeNum; -+ A_UINT8 arNexEpId; -+ struct ar_cookie *arCookieList; -+ A_UINT16 arRateMask; -+ A_UINT8 arSkipScan; -+ A_UINT16 arBeaconInterval; -+ A_BOOL arConnectPending; -+ A_BOOL arWmmEnabled; -+ struct ar_hb_chlng_resp arHBChallengeResp; -+ A_UINT8 arKeepaliveConfigured; -+ A_UINT32 arMgmtFilter; -+ HTC_ENDPOINT_ID arWmi2EpMapping[WMI_PRI_MAX_COUNT]; -+ WMI_PRI_STREAM_ID arEp2WmiMapping[ENDPOINT_MAX]; -+#ifdef HTC_RAW_INTERFACE -+ HTC_ENDPOINT_ID arRaw2EpMapping[HTC_RAW_STREAM_NUM_MAX]; -+ HTC_RAW_STREAM_ID arEp2RawMapping[ENDPOINT_MAX]; -+ struct semaphore raw_htc_read_sem[HTC_RAW_STREAM_NUM_MAX]; -+ struct semaphore raw_htc_write_sem[HTC_RAW_STREAM_NUM_MAX]; -+ wait_queue_head_t raw_htc_read_queue[HTC_RAW_STREAM_NUM_MAX]; -+ wait_queue_head_t raw_htc_write_queue[HTC_RAW_STREAM_NUM_MAX]; -+ raw_htc_buffer *raw_htc_read_buffer[HTC_RAW_STREAM_NUM_MAX][RAW_HTC_READ_BUFFERS_NUM]; -+ raw_htc_buffer *raw_htc_write_buffer[HTC_RAW_STREAM_NUM_MAX][RAW_HTC_WRITE_BUFFERS_NUM]; -+ A_BOOL write_buffer_available[HTC_RAW_STREAM_NUM_MAX]; -+ A_BOOL read_buffer_available[HTC_RAW_STREAM_NUM_MAX]; -+#endif -+ A_BOOL arNetQueueStopped; -+ A_BOOL arRawIfInit; -+ int arDeviceIndex; -+ COMMON_CREDIT_STATE_INFO arCreditStateInfo; -+ A_BOOL arWMIControlEpFull; -+ A_BOOL dbgLogFetchInProgress; -+ A_UCHAR log_buffer[DBGLOG_HOST_LOG_BUFFER_SIZE]; -+ A_UINT32 log_cnt; -+ A_UINT32 dbglog_init_done; -+ A_UINT32 arConnectCtrlFlags; -+ A_UINT32 scan_complete; -+#ifdef USER_KEYS -+ A_INT32 user_savedkeys_stat; -+ A_UINT32 user_key_ctrl; -+ struct USER_SAVEDKEYS user_saved_keys; -+#endif -+} AR_SOFTC_T; -+ -+ -+#define arWMIStream2EndpointID(ar,wmi) (ar)->arWmi2EpMapping[(wmi)] -+#define arSetWMIStream2EndpointIDMap(ar,wmi,ep) \ -+{ (ar)->arWmi2EpMapping[(wmi)] = (ep); \ -+ (ar)->arEp2WmiMapping[(ep)] = (wmi); } -+#define arEndpoint2WMIStreamID(ar,ep) (ar)->arEp2WmiMapping[(ep)] -+ -+#define arRawIfEnabled(ar) (ar)->arRawIfInit -+#define arRawStream2EndpointID(ar,raw) (ar)->arRaw2EpMapping[(raw)] -+#define arSetRawStream2EndpointIDMap(ar,raw,ep) \ -+{ (ar)->arRaw2EpMapping[(raw)] = (ep); \ -+ (ar)->arEp2RawMapping[(ep)] = (raw); } -+#define arEndpoint2RawStreamID(ar,ep) (ar)->arEp2RawMapping[(ep)] -+ -+struct ar_giwscan_param { -+ char *current_ev; -+ char *end_buf; -+ A_BOOL firstPass; -+}; -+ -+#define AR6000_STAT_INC(ar, stat) (ar->arNetStats.stat++) -+ -+#define AR6000_SPIN_LOCK(lock, param) do { \ -+ if (irqs_disabled()) { \ -+ AR_DEBUG_PRINTF("IRQs disabled:AR6000_LOCK\n"); \ -+ } \ -+ spin_lock_bh(lock); \ -+} while (0) -+ -+#define AR6000_SPIN_UNLOCK(lock, param) do { \ -+ if (irqs_disabled()) { \ -+ AR_DEBUG_PRINTF("IRQs disabled: AR6000_UNLOCK\n"); \ -+ } \ -+ spin_unlock_bh(lock); \ -+} while (0) -+ -+int ar6000_ioctl(struct net_device *dev, struct ifreq *rq, int cmd); -+int ar6000_ioctl_dispatcher(struct net_device *dev, struct ifreq *rq, int cmd); -+void ar6000_ioctl_iwsetup(struct iw_handler_def *def); -+void ar6000_gpio_init(void); -+void ar6000_init_profile_info(AR_SOFTC_T *ar); -+void ar6000_install_static_wep_keys(AR_SOFTC_T *ar); -+int ar6000_init(struct net_device *dev); -+int ar6000_dbglog_get_debug_logs(AR_SOFTC_T *ar); -+A_STATUS ar6000_SetHTCBlockSize(AR_SOFTC_T *ar); -+ -+#ifdef HTC_RAW_INTERFACE -+ -+#ifndef __user -+#define __user -+#endif -+ -+int ar6000_htc_raw_open(AR_SOFTC_T *ar); -+int ar6000_htc_raw_close(AR_SOFTC_T *ar); -+ssize_t ar6000_htc_raw_read(AR_SOFTC_T *ar, -+ HTC_RAW_STREAM_ID StreamID, -+ char __user *buffer, size_t count); -+ssize_t ar6000_htc_raw_write(AR_SOFTC_T *ar, -+ HTC_RAW_STREAM_ID StreamID, -+ char __user *buffer, size_t count); -+ -+#endif /* HTC_RAW_INTERFACE */ -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _AR6000_H_ */ ---- /dev/null -+++ b/drivers/ar6000/ar6000/ar6000_raw_if.c -@@ -0,0 +1,439 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "ar6000_drv.h" -+ -+#ifdef HTC_RAW_INTERFACE -+ -+static void -+ar6000_htc_raw_read_cb(void *Context, HTC_PACKET *pPacket) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Context; -+ raw_htc_buffer *busy; -+ HTC_RAW_STREAM_ID streamID; -+ -+ busy = (raw_htc_buffer *)pPacket->pPktContext; -+ A_ASSERT(busy != NULL); -+ -+ if (pPacket->Status == A_ECANCELED) { -+ /* -+ * HTC provides A_ECANCELED status when it doesn't want to be refilled -+ * (probably due to a shutdown) -+ */ -+ return; -+ } -+ -+ streamID = arEndpoint2RawStreamID(ar,pPacket->Endpoint); -+ A_ASSERT(streamID != HTC_RAW_STREAM_NOT_MAPPED); -+ -+#ifdef CF -+ if (down_trylock(&ar->raw_htc_read_sem[streamID])) { -+#else -+ if (down_interruptible(&ar->raw_htc_read_sem[streamID])) { -+#endif /* CF */ -+ AR_DEBUG2_PRINTF("Unable to down the semaphore\n"); -+ } -+ -+ A_ASSERT((pPacket->Status != A_OK) || -+ (pPacket->pBuffer == (busy->data + HTC_HEADER_LEN))); -+ -+ busy->length = pPacket->ActualLength + HTC_HEADER_LEN; -+ busy->currPtr = HTC_HEADER_LEN; -+ ar->read_buffer_available[streamID] = TRUE; -+ //AR_DEBUG_PRINTF("raw read cb: 0x%X 0x%X \n", busy->currPtr,busy->length); -+ up(&ar->raw_htc_read_sem[streamID]); -+ -+ /* Signal the waiting process */ -+ AR_DEBUG2_PRINTF("Waking up the StreamID(%d) read process\n", streamID); -+ wake_up_interruptible(&ar->raw_htc_read_queue[streamID]); -+} -+ -+static void -+ar6000_htc_raw_write_cb(void *Context, HTC_PACKET *pPacket) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)Context; -+ raw_htc_buffer *free; -+ HTC_RAW_STREAM_ID streamID; -+ -+ free = (raw_htc_buffer *)pPacket->pPktContext; -+ A_ASSERT(free != NULL); -+ -+ if (pPacket->Status == A_ECANCELED) { -+ /* -+ * HTC provides A_ECANCELED status when it doesn't want to be refilled -+ * (probably due to a shutdown) -+ */ -+ return; -+ } -+ -+ streamID = arEndpoint2RawStreamID(ar,pPacket->Endpoint); -+ A_ASSERT(streamID != HTC_RAW_STREAM_NOT_MAPPED); -+ -+#ifdef CF -+ if (down_trylock(&ar->raw_htc_write_sem[streamID])) { -+#else -+ if (down_interruptible(&ar->raw_htc_write_sem[streamID])) { -+#endif -+ AR_DEBUG2_PRINTF("Unable to down the semaphore\n"); -+ } -+ -+ A_ASSERT(pPacket->pBuffer == (free->data + HTC_HEADER_LEN)); -+ -+ free->length = 0; -+ ar->write_buffer_available[streamID] = TRUE; -+ up(&ar->raw_htc_write_sem[streamID]); -+ -+ /* Signal the waiting process */ -+ AR_DEBUG2_PRINTF("Waking up the StreamID(%d) write process\n", streamID); -+ wake_up_interruptible(&ar->raw_htc_write_queue[streamID]); -+} -+ -+/* connect to a service */ -+static A_STATUS ar6000_connect_raw_service(AR_SOFTC_T *ar, -+ HTC_RAW_STREAM_ID StreamID) -+{ -+ A_STATUS status; -+ HTC_SERVICE_CONNECT_RESP response; -+ A_UINT8 streamNo; -+ HTC_SERVICE_CONNECT_REQ connect; -+ -+ do { -+ -+ A_MEMZERO(&connect,sizeof(connect)); -+ /* pass the stream ID as meta data to the RAW streams service */ -+ streamNo = (A_UINT8)StreamID; -+ connect.pMetaData = &streamNo; -+ connect.MetaDataLength = sizeof(A_UINT8); -+ /* these fields are the same for all endpoints */ -+ connect.EpCallbacks.pContext = ar; -+ connect.EpCallbacks.EpTxComplete = ar6000_htc_raw_write_cb; -+ connect.EpCallbacks.EpRecv = ar6000_htc_raw_read_cb; -+ /* simple interface, we don't need these optional callbacks */ -+ connect.EpCallbacks.EpRecvRefill = NULL; -+ connect.EpCallbacks.EpSendFull = NULL; -+ connect.MaxSendQueueDepth = RAW_HTC_WRITE_BUFFERS_NUM; -+ -+ /* connect to the raw streams service, we may be able to get 1 or more -+ * connections, depending on WHAT is running on the target */ -+ connect.ServiceID = HTC_RAW_STREAMS_SVC; -+ -+ A_MEMZERO(&response,sizeof(response)); -+ -+ /* try to connect to the raw stream, it is okay if this fails with -+ * status HTC_SERVICE_NO_MORE_EP */ -+ status = HTCConnectService(ar->arHtcTarget, -+ &connect, -+ &response); -+ -+ if (A_FAILED(status)) { -+ if (response.ConnectRespCode == HTC_SERVICE_NO_MORE_EP) { -+ AR_DEBUG_PRINTF("HTC RAW , No more streams allowed \n"); -+ status = A_OK; -+ } -+ break; -+ } -+ -+ /* set endpoint mapping for the RAW HTC streams */ -+ arSetRawStream2EndpointIDMap(ar,StreamID,response.Endpoint); -+ -+ AR_DEBUG_PRINTF("HTC RAW : stream ID: %d, endpoint: %d\n", -+ StreamID, arRawStream2EndpointID(ar,StreamID)); -+ -+ } while (FALSE); -+ -+ return status; -+} -+ -+int ar6000_htc_raw_open(AR_SOFTC_T *ar) -+{ -+ A_STATUS status; -+ int streamID, endPt, count2; -+ raw_htc_buffer *buffer; -+ HTC_SERVICE_ID servicepriority; -+ -+ A_ASSERT(ar->arHtcTarget != NULL); -+ -+ /* wait for target */ -+ status = HTCWaitTarget(ar->arHtcTarget); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF("HTCWaitTarget failed (%d)\n", status); -+ return -ENODEV; -+ } -+ -+ for (endPt = 0; endPt < ENDPOINT_MAX; endPt++) { -+ ar->arEp2RawMapping[endPt] = HTC_RAW_STREAM_NOT_MAPPED; -+ } -+ -+ for (streamID = HTC_RAW_STREAM_0; streamID < HTC_RAW_STREAM_NUM_MAX; streamID++) { -+ /* Initialize the data structures */ -+ init_MUTEX(&ar->raw_htc_read_sem[streamID]); -+ init_MUTEX(&ar->raw_htc_write_sem[streamID]); -+ init_waitqueue_head(&ar->raw_htc_read_queue[streamID]); -+ init_waitqueue_head(&ar->raw_htc_write_queue[streamID]); -+ -+ /* try to connect to the raw service */ -+ status = ar6000_connect_raw_service(ar,streamID); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ if (arRawStream2EndpointID(ar,streamID) == 0) { -+ break; -+ } -+ -+ for (count2 = 0; count2 < RAW_HTC_READ_BUFFERS_NUM; count2 ++) { -+ /* Initialize the receive buffers */ -+ buffer = ar->raw_htc_write_buffer[streamID][count2]; -+ memset(buffer, 0, sizeof(raw_htc_buffer)); -+ buffer = ar->raw_htc_read_buffer[streamID][count2]; -+ memset(buffer, 0, sizeof(raw_htc_buffer)); -+ -+ SET_HTC_PACKET_INFO_RX_REFILL(&buffer->HTCPacket, -+ buffer, -+ buffer->data, -+ AR6000_BUFFER_SIZE, -+ arRawStream2EndpointID(ar,streamID)); -+ -+ /* Queue buffers to HTC for receive */ -+ if ((status = HTCAddReceivePkt(ar->arHtcTarget, &buffer->HTCPacket)) != A_OK) -+ { -+ BMIInit(); -+ return -EIO; -+ } -+ } -+ -+ for (count2 = 0; count2 < RAW_HTC_WRITE_BUFFERS_NUM; count2 ++) { -+ /* Initialize the receive buffers */ -+ buffer = ar->raw_htc_write_buffer[streamID][count2]; -+ memset(buffer, 0, sizeof(raw_htc_buffer)); -+ } -+ -+ ar->read_buffer_available[streamID] = FALSE; -+ ar->write_buffer_available[streamID] = TRUE; -+ } -+ -+ if (A_FAILED(status)) { -+ return -EIO; -+ } -+ -+ AR_DEBUG_PRINTF("HTC RAW, number of streams the target supports: %d \n", streamID); -+ -+ servicepriority = HTC_RAW_STREAMS_SVC; /* only 1 */ -+ -+ /* set callbacks and priority list */ -+ HTCSetCreditDistribution(ar->arHtcTarget, -+ ar, -+ NULL, /* use default */ -+ NULL, /* use default */ -+ &servicepriority, -+ 1); -+ -+ /* Start the HTC component */ -+ if ((status = HTCStart(ar->arHtcTarget)) != A_OK) { -+ BMIInit(); -+ return -EIO; -+ } -+ -+ (ar)->arRawIfInit = TRUE; -+ -+ return 0; -+} -+ -+int ar6000_htc_raw_close(AR_SOFTC_T *ar) -+{ -+ A_PRINTF("ar6000_htc_raw_close called \n"); -+ HTCStop(ar->arHtcTarget); -+ -+ /* reset the device */ -+ ar6000_reset_device(ar->arHifDevice, ar->arTargetType); -+ /* Initialize the BMI component */ -+ BMIInit(); -+ -+ return 0; -+} -+ -+raw_htc_buffer * -+get_filled_buffer(AR_SOFTC_T *ar, HTC_RAW_STREAM_ID StreamID) -+{ -+ int count; -+ raw_htc_buffer *busy; -+ -+ /* Check for data */ -+ for (count = 0; count < RAW_HTC_READ_BUFFERS_NUM; count ++) { -+ busy = ar->raw_htc_read_buffer[StreamID][count]; -+ if (busy->length) { -+ break; -+ } -+ } -+ if (busy->length) { -+ ar->read_buffer_available[StreamID] = TRUE; -+ } else { -+ ar->read_buffer_available[StreamID] = FALSE; -+ } -+ -+ return busy; -+} -+ -+ssize_t ar6000_htc_raw_read(AR_SOFTC_T *ar, HTC_RAW_STREAM_ID StreamID, -+ char __user *buffer, size_t length) -+{ -+ int readPtr; -+ raw_htc_buffer *busy; -+ -+ if (arRawStream2EndpointID(ar,StreamID) == 0) { -+ AR_DEBUG_PRINTF("StreamID(%d) not connected! \n", StreamID); -+ return -EFAULT; -+ } -+ -+ if (down_interruptible(&ar->raw_htc_read_sem[StreamID])) { -+ return -ERESTARTSYS; -+ } -+ -+ busy = get_filled_buffer(ar,StreamID); -+ while (!ar->read_buffer_available[StreamID]) { -+ up(&ar->raw_htc_read_sem[StreamID]); -+ -+ /* Wait for the data */ -+ AR_DEBUG2_PRINTF("Sleeping StreamID(%d) read process\n", StreamID); -+ if (wait_event_interruptible(ar->raw_htc_read_queue[StreamID], -+ ar->read_buffer_available[StreamID])) -+ { -+ return -EINTR; -+ } -+ if (down_interruptible(&ar->raw_htc_read_sem[StreamID])) { -+ return -ERESTARTSYS; -+ } -+ busy = get_filled_buffer(ar,StreamID); -+ } -+ -+ /* Read the data */ -+ readPtr = busy->currPtr; -+ if (length > busy->length - HTC_HEADER_LEN) { -+ length = busy->length - HTC_HEADER_LEN; -+ } -+ if (copy_to_user(buffer, &busy->data[readPtr], length)) { -+ up(&ar->raw_htc_read_sem[StreamID]); -+ return -EFAULT; -+ } -+ -+ busy->currPtr += length; -+ -+ //AR_DEBUG_PRINTF("raw read ioctl: currPTR : 0x%X 0x%X \n", busy->currPtr,busy->length); -+ -+ if (busy->currPtr == busy->length) -+ { -+ busy->currPtr = 0; -+ busy->length = 0; -+ HTC_PACKET_RESET_RX(&busy->HTCPacket); -+ //AR_DEBUG_PRINTF("raw read ioctl: ep for packet:%d \n", busy->HTCPacket.Endpoint); -+ HTCAddReceivePkt(ar->arHtcTarget, &busy->HTCPacket); -+ } -+ ar->read_buffer_available[StreamID] = FALSE; -+ up(&ar->raw_htc_read_sem[StreamID]); -+ -+ return length; -+} -+ -+static raw_htc_buffer * -+get_free_buffer(AR_SOFTC_T *ar, HTC_ENDPOINT_ID StreamID) -+{ -+ int count; -+ raw_htc_buffer *free; -+ -+ free = NULL; -+ for (count = 0; count < RAW_HTC_WRITE_BUFFERS_NUM; count ++) { -+ free = ar->raw_htc_write_buffer[StreamID][count]; -+ if (free->length == 0) { -+ break; -+ } -+ } -+ if (!free->length) { -+ ar->write_buffer_available[StreamID] = TRUE; -+ } else { -+ ar->write_buffer_available[StreamID] = FALSE; -+ } -+ -+ return free; -+} -+ -+ssize_t ar6000_htc_raw_write(AR_SOFTC_T *ar, HTC_RAW_STREAM_ID StreamID, -+ char __user *buffer, size_t length) -+{ -+ int writePtr; -+ raw_htc_buffer *free; -+ -+ if (arRawStream2EndpointID(ar,StreamID) == 0) { -+ AR_DEBUG_PRINTF("StreamID(%d) not connected! \n", StreamID); -+ return -EFAULT; -+ } -+ -+ if (down_interruptible(&ar->raw_htc_write_sem[StreamID])) { -+ return -ERESTARTSYS; -+ } -+ -+ /* Search for a free buffer */ -+ free = get_free_buffer(ar,StreamID); -+ -+ /* Check if there is space to write else wait */ -+ while (!ar->write_buffer_available[StreamID]) { -+ up(&ar->raw_htc_write_sem[StreamID]); -+ -+ /* Wait for buffer to become free */ -+ AR_DEBUG2_PRINTF("Sleeping StreamID(%d) write process\n", StreamID); -+ if (wait_event_interruptible(ar->raw_htc_write_queue[StreamID], -+ ar->write_buffer_available[StreamID])) -+ { -+ return -EINTR; -+ } -+ if (down_interruptible(&ar->raw_htc_write_sem[StreamID])) { -+ return -ERESTARTSYS; -+ } -+ free = get_free_buffer(ar,StreamID); -+ } -+ -+ /* Send the data */ -+ writePtr = HTC_HEADER_LEN; -+ if (length > (AR6000_BUFFER_SIZE - HTC_HEADER_LEN)) { -+ length = AR6000_BUFFER_SIZE - HTC_HEADER_LEN; -+ } -+ -+ if (copy_from_user(&free->data[writePtr], buffer, length)) { -+ up(&ar->raw_htc_read_sem[StreamID]); -+ return -EFAULT; -+ } -+ -+ free->length = length; -+ -+ SET_HTC_PACKET_INFO_TX(&free->HTCPacket, -+ free, -+ &free->data[writePtr], -+ length, -+ arRawStream2EndpointID(ar,StreamID), -+ AR6K_DATA_PKT_TAG); -+ -+ HTCSendPkt(ar->arHtcTarget,&free->HTCPacket); -+ -+ ar->write_buffer_available[StreamID] = FALSE; -+ up(&ar->raw_htc_write_sem[StreamID]); -+ -+ return length; -+} -+#endif /* HTC_RAW_INTERFACE */ ---- /dev/null -+++ b/drivers/ar6000/ar6000/ar6xapi_linux.h -@@ -0,0 +1,128 @@ -+#ifndef _AR6XAPI_LINUX_H -+#define _AR6XAPI_LINUX_H -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+struct ar6_softc; -+ -+void ar6000_ready_event(void *devt, A_UINT8 *datap, A_UINT8 phyCap); -+A_UINT8 ar6000_iptos_to_userPriority(A_UINT8 *pkt); -+A_STATUS ar6000_control_tx(void *devt, void *osbuf, WMI_PRI_STREAM_ID streamID); -+void ar6000_connect_event(struct ar6_softc *ar, A_UINT16 channel, -+ A_UINT8 *bssid, A_UINT16 listenInterval, -+ A_UINT16 beaconInterval, NETWORK_TYPE networkType, -+ A_UINT8 beaconIeLen, A_UINT8 assocReqLen, -+ A_UINT8 assocRespLen,A_UINT8 *assocInfo); -+void ar6000_disconnect_event(struct ar6_softc *ar, A_UINT8 reason, -+ A_UINT8 *bssid, A_UINT8 assocRespLen, -+ A_UINT8 *assocInfo, A_UINT16 protocolReasonStatus); -+void ar6000_tkip_micerr_event(struct ar6_softc *ar, A_UINT8 keyid, -+ A_BOOL ismcast); -+void ar6000_bitrate_rx(void *devt, A_INT32 rateKbps); -+void ar6000_channelList_rx(void *devt, A_INT8 numChan, A_UINT16 *chanList); -+void ar6000_regDomain_event(struct ar6_softc *ar, A_UINT32 regCode); -+void ar6000_txPwr_rx(void *devt, A_UINT8 txPwr); -+void ar6000_keepalive_rx(void *devt, A_UINT8 configured); -+void ar6000_neighborReport_event(struct ar6_softc *ar, int numAps, -+ WMI_NEIGHBOR_INFO *info); -+void ar6000_set_numdataendpts(struct ar6_softc *ar, A_UINT32 num); -+void ar6000_scanComplete_event(struct ar6_softc *ar, A_STATUS status); -+void ar6000_targetStats_event(struct ar6_softc *ar, WMI_TARGET_STATS *pStats); -+void ar6000_rssiThreshold_event(struct ar6_softc *ar, -+ WMI_RSSI_THRESHOLD_VAL newThreshold, -+ A_INT16 rssi); -+void ar6000_reportError_event(struct ar6_softc *, WMI_TARGET_ERROR_VAL errorVal); -+void ar6000_cac_event(struct ar6_softc *ar, A_UINT8 ac, A_UINT8 cac_indication, -+ A_UINT8 statusCode, A_UINT8 *tspecSuggestion); -+void ar6000_hbChallengeResp_event(struct ar6_softc *, A_UINT32 cookie, A_UINT32 source); -+void -+ar6000_roam_tbl_event(struct ar6_softc *ar, WMI_TARGET_ROAM_TBL *pTbl); -+ -+void -+ar6000_roam_data_event(struct ar6_softc *ar, WMI_TARGET_ROAM_DATA *p); -+ -+void -+ar6000_wow_list_event(struct ar6_softc *ar, A_UINT8 num_filters, -+ WMI_GET_WOW_LIST_REPLY *wow_reply); -+ -+void ar6000_pmkid_list_event(void *devt, A_UINT8 numPMKID, -+ WMI_PMKID *pmkidList); -+ -+void ar6000_gpio_intr_rx(A_UINT32 intr_mask, A_UINT32 input_values); -+void ar6000_gpio_data_rx(A_UINT32 reg_id, A_UINT32 value); -+void ar6000_gpio_ack_rx(void); -+ -+void ar6000_dbglog_init_done(struct ar6_softc *ar); -+ -+#ifdef SEND_EVENT_TO_APP -+void ar6000_send_event_to_app(struct ar6_softc *ar, A_UINT16 eventId, A_UINT8 *datap, int len); -+#endif -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+void ar6000_tcmd_rx_report_event(void *devt, A_UINT8 * results, int len); -+#endif -+ -+void ar6000_tx_retry_err_event(void *devt); -+ -+void ar6000_snrThresholdEvent_rx(void *devt, -+ WMI_SNR_THRESHOLD_VAL newThreshold, -+ A_UINT8 snr); -+ -+void ar6000_lqThresholdEvent_rx(void *devt, WMI_LQ_THRESHOLD_VAL range, A_UINT8 lqVal); -+ -+ -+void ar6000_ratemask_rx(void *devt, A_UINT16 ratemask); -+ -+A_STATUS ar6000_get_driver_cfg(struct net_device *dev, -+ A_UINT16 cfgParam, -+ void *result); -+void ar6000_bssInfo_event_rx(struct ar6_softc *ar, A_UINT8 *data, int len); -+ -+void ar6000_dbglog_event(struct ar6_softc *ar, A_UINT32 dropped, -+ A_INT8 *buffer, A_UINT32 length); -+ -+int ar6000_dbglog_get_debug_logs(struct ar6_softc *ar); -+ -+void ar6000_indicate_tx_activity(void *devt, A_UINT8 trafficClass, A_BOOL Active); -+ -+void ar6000_dset_open_req(void *devt, -+ A_UINT32 id, -+ A_UINT32 targ_handle, -+ A_UINT32 targ_reply_fn, -+ A_UINT32 targ_reply_arg); -+void ar6000_dset_close(void *devt, A_UINT32 access_cookie); -+void ar6000_dset_data_req(void *devt, -+ A_UINT32 access_cookie, -+ A_UINT32 offset, -+ A_UINT32 length, -+ A_UINT32 targ_buf, -+ A_UINT32 targ_reply_fn, -+ A_UINT32 targ_reply_arg); -+ -+ -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/ar6000/athdrv_linux.h -@@ -0,0 +1,993 @@ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _ATHDRV_LINUX_H -+#define _ATHDRV_LINUX_H -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+ -+/* -+ * There are two types of ioctl's here: Standard ioctls and -+ * eXtended ioctls. All extended ioctls (XIOCTL) are multiplexed -+ * off of the single ioctl command, AR6000_IOCTL_EXTENDED. The -+ * arguments for every XIOCTL starts with a 32-bit command word -+ * that is used to select which extended ioctl is in use. After -+ * the command word are command-specific arguments. -+ */ -+ -+/* Linux standard Wireless Extensions, private ioctl interfaces */ -+#define IEEE80211_IOCTL_SETPARAM (SIOCIWFIRSTPRIV+0) -+#define IEEE80211_IOCTL_GETPARAM (SIOCIWFIRSTPRIV+1) -+#define IEEE80211_IOCTL_SETKEY (SIOCIWFIRSTPRIV+2) -+#define IEEE80211_IOCTL_SETWMMPARAMS (SIOCIWFIRSTPRIV+3) -+#define IEEE80211_IOCTL_DELKEY (SIOCIWFIRSTPRIV+4) -+#define IEEE80211_IOCTL_GETWMMPARAMS (SIOCIWFIRSTPRIV+5) -+#define IEEE80211_IOCTL_SETOPTIE (SIOCIWFIRSTPRIV+6) -+#define IEEE80211_IOCTL_SETMLME (SIOCIWFIRSTPRIV+7) -+//#define IEEE80211_IOCTL_GETOPTIE (SIOCIWFIRSTPRIV+7) -+#define IEEE80211_IOCTL_ADDPMKID (SIOCIWFIRSTPRIV+8) -+//#define IEEE80211_IOCTL_SETAUTHALG (SIOCIWFIRSTPRIV+10) -+#define IEEE80211_IOCTL_LASTONE (SIOCIWFIRSTPRIV+9) -+ -+ -+ -+/* ====WMI Ioctls==== */ -+/* -+ * -+ * Many ioctls simply provide WMI services to application code: -+ * an application makes such an ioctl call with a set of arguments -+ * that are packaged into the corresponding WMI message, and sent -+ * to the Target. -+ */ -+ -+#define AR6000_IOCTL_WMI_GETREV (SIOCIWFIRSTPRIV+10) -+/* -+ * arguments: -+ * ar6000_version *revision -+ */ -+ -+#define AR6000_IOCTL_WMI_SETPWR (SIOCIWFIRSTPRIV+11) -+/* -+ * arguments: -+ * WMI_POWER_MODE_CMD pwrModeCmd (see include/wmi.h) -+ * uses: WMI_SET_POWER_MODE_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SETSCAN (SIOCIWFIRSTPRIV+12) -+/* -+ * arguments: -+ * WMI_SCAN_PARAMS_CMD scanParams (see include/wmi.h) -+ * uses: WMI_SET_SCAN_PARAMS_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SETLISTENINT (SIOCIWFIRSTPRIV+13) -+/* -+ * arguments: -+ * UINT32 listenInterval -+ * uses: WMI_SET_LISTEN_INT_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SETBSSFILTER (SIOCIWFIRSTPRIV+14) -+/* -+ * arguments: -+ * WMI_BSS_FILTER filter (see include/wmi.h) -+ * uses: WMI_SET_BSS_FILTER_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_CHANNELPARAMS (SIOCIWFIRSTPRIV+16) -+/* -+ * arguments: -+ * WMI_CHANNEL_PARAMS_CMD chParams -+ * uses: WMI_SET_CHANNEL_PARAMS_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_PROBEDSSID (SIOCIWFIRSTPRIV+17) -+/* -+ * arguments: -+ * WMI_PROBED_SSID_CMD probedSsids (see include/wmi.h) -+ * uses: WMI_SETPROBED_SSID_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_PMPARAMS (SIOCIWFIRSTPRIV+18) -+/* -+ * arguments: -+ * WMI_POWER_PARAMS_CMD powerParams (see include/wmi.h) -+ * uses: WMI_SET_POWER_PARAMS_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_BADAP (SIOCIWFIRSTPRIV+19) -+/* -+ * arguments: -+ * WMI_ADD_BAD_AP_CMD badAPs (see include/wmi.h) -+ * uses: WMI_ADD_BAD_AP_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_GET_QOS_QUEUE (SIOCIWFIRSTPRIV+20) -+/* -+ * arguments: -+ * ar6000_queuereq queueRequest (see below) -+ */ -+ -+#define AR6000_IOCTL_WMI_CREATE_QOS (SIOCIWFIRSTPRIV+21) -+/* -+ * arguments: -+ * WMI_CREATE_PSTREAM createPstreamCmd (see include/wmi.h) -+ * uses: WMI_CREATE_PSTREAM_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_DELETE_QOS (SIOCIWFIRSTPRIV+22) -+/* -+ * arguments: -+ * WMI_DELETE_PSTREAM_CMD deletePstreamCmd (see include/wmi.h) -+ * uses: WMI_DELETE_PSTREAM_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_SNRTHRESHOLD (SIOCIWFIRSTPRIV+23) -+/* -+ * arguments: -+ * WMI_SNR_THRESHOLD_PARAMS_CMD thresholdParams (see include/wmi.h) -+ * uses: WMI_SNR_THRESHOLD_PARAMS_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_ERROR_REPORT_BITMASK (SIOCIWFIRSTPRIV+24) -+/* -+ * arguments: -+ * WMI_TARGET_ERROR_REPORT_BITMASK errorReportBitMask (see include/wmi.h) -+ * uses: WMI_TARGET_ERROR_REPORT_BITMASK_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_GET_TARGET_STATS (SIOCIWFIRSTPRIV+25) -+/* -+ * arguments: -+ * TARGET_STATS *targetStats (see below) -+ * uses: WMI_GET_STATISTICS_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_ASSOC_INFO (SIOCIWFIRSTPRIV+26) -+/* -+ * arguments: -+ * WMI_SET_ASSOC_INFO_CMD setAssocInfoCmd -+ * uses: WMI_SET_ASSOC_INFO_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_ACCESS_PARAMS (SIOCIWFIRSTPRIV+27) -+/* -+ * arguments: -+ * WMI_SET_ACCESS_PARAMS_CMD setAccessParams (see include/wmi.h) -+ * uses: WMI_SET_ACCESS_PARAMS_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_BMISS_TIME (SIOCIWFIRSTPRIV+28) -+/* -+ * arguments: -+ * UINT32 beaconMissTime -+ * uses: WMI_SET_BMISS_TIME_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_DISC_TIMEOUT (SIOCIWFIRSTPRIV+29) -+/* -+ * arguments: -+ * WMI_DISC_TIMEOUT_CMD disconnectTimeoutCmd (see include/wmi.h) -+ * uses: WMI_SET_DISC_TIMEOUT_CMDID -+ */ -+ -+#define AR6000_IOCTL_WMI_SET_IBSS_PM_CAPS (SIOCIWFIRSTPRIV+30) -+/* -+ * arguments: -+ * WMI_IBSS_PM_CAPS_CMD ibssPowerMgmtCapsCmd -+ * uses: WMI_SET_IBSS_PM_CAPS_CMDID -+ */ -+ -+/* -+ * There is a very small space available for driver-private -+ * wireless ioctls. In order to circumvent this limitation, -+ * we multiplex a bunch of ioctls (XIOCTLs) on top of a -+ * single AR6000_IOCTL_EXTENDED ioctl. -+ */ -+#define AR6000_IOCTL_EXTENDED (SIOCIWFIRSTPRIV+31) -+ -+ -+/* ====BMI Extended Ioctls==== */ -+ -+#define AR6000_XIOCTL_BMI_DONE 1 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_BMI_DONE) -+ * uses: BMI_DONE -+ */ -+ -+#define AR6000_XIOCTL_BMI_READ_MEMORY 2 -+/* -+ * arguments: -+ * union { -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_BMI_READ_MEMORY) -+ * UINT32 address -+ * UINT32 length -+ * } -+ * char results[length] -+ * } -+ * uses: BMI_READ_MEMORY -+ */ -+ -+#define AR6000_XIOCTL_BMI_WRITE_MEMORY 3 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_BMI_WRITE_MEMORY) -+ * UINT32 address -+ * UINT32 length -+ * char data[length] -+ * uses: BMI_WRITE_MEMORY -+ */ -+ -+#define AR6000_XIOCTL_BMI_EXECUTE 4 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_BMI_EXECUTE) -+ * UINT32 TargetAddress -+ * UINT32 parameter -+ * uses: BMI_EXECUTE -+ */ -+ -+#define AR6000_XIOCTL_BMI_SET_APP_START 5 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_BMI_SET_APP_START) -+ * UINT32 TargetAddress -+ * uses: BMI_SET_APP_START -+ */ -+ -+#define AR6000_XIOCTL_BMI_READ_SOC_REGISTER 6 -+/* -+ * arguments: -+ * union { -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_BMI_READ_SOC_REGISTER) -+ * UINT32 TargetAddress, 32-bit aligned -+ * } -+ * UINT32 result -+ * } -+ * uses: BMI_READ_SOC_REGISTER -+ */ -+ -+#define AR6000_XIOCTL_BMI_WRITE_SOC_REGISTER 7 -+/* -+ * arguments: -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_BMI_WRITE_SOC_REGISTER) -+ * UINT32 TargetAddress, 32-bit aligned -+ * UINT32 newValue -+ * } -+ * uses: BMI_WRITE_SOC_REGISTER -+ */ -+ -+#define AR6000_XIOCTL_BMI_TEST 8 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_BMI_TEST) -+ * UINT32 address -+ * UINT32 length -+ * UINT32 count -+ */ -+ -+ -+ -+/* Historical Host-side DataSet support */ -+#define AR6000_XIOCTL_UNUSED9 9 -+#define AR6000_XIOCTL_UNUSED10 10 -+#define AR6000_XIOCTL_UNUSED11 11 -+ -+/* ====Misc Extended Ioctls==== */ -+ -+#define AR6000_XIOCTL_FORCE_TARGET_RESET 12 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_FORCE_TARGET_RESET) -+ */ -+ -+ -+#ifdef HTC_RAW_INTERFACE -+/* HTC Raw Interface Ioctls */ -+#define AR6000_XIOCTL_HTC_RAW_OPEN 13 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_HTC_RAW_OPEN) -+ */ -+ -+#define AR6000_XIOCTL_HTC_RAW_CLOSE 14 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_HTC_RAW_CLOSE) -+ */ -+ -+#define AR6000_XIOCTL_HTC_RAW_READ 15 -+/* -+ * arguments: -+ * union { -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_HTC_RAW_READ) -+ * UINT32 mailboxID -+ * UINT32 length -+ * } -+ * results[length] -+ * } -+ */ -+ -+#define AR6000_XIOCTL_HTC_RAW_WRITE 16 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_HTC_RAW_WRITE) -+ * UINT32 mailboxID -+ * UINT32 length -+ * char buffer[length] -+ */ -+#endif /* HTC_RAW_INTERFACE */ -+ -+#define AR6000_XIOCTL_CHECK_TARGET_READY 17 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_CHECK_TARGET_READY) -+ */ -+ -+ -+ -+/* ====GPIO (General Purpose I/O) Extended Ioctls==== */ -+ -+#define AR6000_XIOCTL_GPIO_OUTPUT_SET 18 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_GPIO_OUTPUT_SET) -+ * ar6000_gpio_output_set_cmd_s (see below) -+ * uses: WMIX_GPIO_OUTPUT_SET_CMDID -+ */ -+ -+#define AR6000_XIOCTL_GPIO_INPUT_GET 19 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_GPIO_INPUT_GET) -+ * uses: WMIX_GPIO_INPUT_GET_CMDID -+ */ -+ -+#define AR6000_XIOCTL_GPIO_REGISTER_SET 20 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_GPIO_REGISTER_SET) -+ * ar6000_gpio_register_cmd_s (see below) -+ * uses: WMIX_GPIO_REGISTER_SET_CMDID -+ */ -+ -+#define AR6000_XIOCTL_GPIO_REGISTER_GET 21 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_GPIO_REGISTER_GET) -+ * ar6000_gpio_register_cmd_s (see below) -+ * uses: WMIX_GPIO_REGISTER_GET_CMDID -+ */ -+ -+#define AR6000_XIOCTL_GPIO_INTR_ACK 22 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_GPIO_INTR_ACK) -+ * ar6000_cpio_intr_ack_cmd_s (see below) -+ * uses: WMIX_GPIO_INTR_ACK_CMDID -+ */ -+ -+#define AR6000_XIOCTL_GPIO_INTR_WAIT 23 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_GPIO_INTR_WAIT) -+ */ -+ -+ -+ -+/* ====more wireless commands==== */ -+ -+#define AR6000_XIOCTL_SET_ADHOC_BSSID 24 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_SET_ADHOC_BSSID) -+ * WMI_SET_ADHOC_BSSID_CMD setAdHocBssidCmd (see include/wmi.h) -+ */ -+ -+#define AR6000_XIOCTL_SET_OPT_MODE 25 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_SET_OPT_MODE) -+ * WMI_SET_OPT_MODE_CMD setOptModeCmd (see include/wmi.h) -+ * uses: WMI_SET_OPT_MODE_CMDID -+ */ -+ -+#define AR6000_XIOCTL_OPT_SEND_FRAME 26 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_OPT_SEND_FRAME) -+ * WMI_OPT_TX_FRAME_CMD optTxFrameCmd (see include/wmi.h) -+ * uses: WMI_OPT_TX_FRAME_CMDID -+ */ -+ -+#define AR6000_XIOCTL_SET_ADHOC_BEACON_INTVAL 27 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_SET_ADHOC_BEACON_INTVAL) -+ * WMI_BEACON_INT_CMD beaconIntCmd (see include/wmi.h) -+ * uses: WMI_SET_BEACON_INT_CMDID -+ */ -+ -+ -+#define IEEE80211_IOCTL_SETAUTHALG 28 -+ -+ -+#define AR6000_XIOCTL_SET_VOICE_PKT_SIZE 29 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_SET_VOICE_PKT_SIZE) -+ * WMI_SET_VOICE_PKT_SIZE_CMD setVoicePktSizeCmd (see include/wmi.h) -+ * uses: WMI_SET_VOICE_PKT_SIZE_CMDID -+ */ -+ -+ -+#define AR6000_XIOCTL_SET_MAX_SP 30 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_SET_MAX_SP) -+ * WMI_SET_MAX_SP_LEN_CMD maxSPLen(see include/wmi.h) -+ * uses: WMI_SET_MAX_SP_LEN_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_GET_ROAM_TBL 31 -+ -+#define AR6000_XIOCTL_WMI_SET_ROAM_CTRL 32 -+ -+#define AR6000_XIOCTRL_WMI_SET_POWERSAVE_TIMERS 33 -+ -+ -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTRL_WMI_SET_POWERSAVE_TIMERS) -+ * WMI_SET_POWERSAVE_TIMERS_CMD powerSaveTimers(see include/wmi.h) -+ * WMI_SET_POWERSAVE_TIMERS_CMDID -+ */ -+ -+#define AR6000_XIOCTRL_WMI_GET_POWER_MODE 34 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTRL_WMI_GET_POWER_MODE) -+ */ -+ -+#define AR6000_XIOCTRL_WMI_SET_WLAN_STATE 35 -+typedef enum { -+ WLAN_DISABLED, -+ WLAN_ENABLED -+} AR6000_WLAN_STATE; -+/* -+ * arguments: -+ * enable/disable -+ */ -+ -+#define AR6000_XIOCTL_WMI_GET_ROAM_DATA 36 -+ -+#define AR6000_XIOCTL_WMI_SETRETRYLIMITS 37 -+/* -+ * arguments: -+ * WMI_SET_RETRY_LIMITS_CMD ibssSetRetryLimitsCmd -+ * uses: WMI_SET_RETRY_LIMITS_CMDID -+ */ -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+/* ====extended commands for radio test ==== */ -+ -+#define AR6000_XIOCTL_TCMD_CONT_TX 38 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_TCMD_CONT_TX) -+ * WMI_TCMD_CONT_TX_CMD contTxCmd (see include/wmi.h) -+ * uses: WMI_TCMD_CONT_TX_CMDID -+ */ -+ -+#define AR6000_XIOCTL_TCMD_CONT_RX 39 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_TCMD_CONT_RX) -+ * WMI_TCMD_CONT_RX_CMD rxCmd (see include/wmi.h) -+ * uses: WMI_TCMD_CONT_RX_CMDID -+ */ -+ -+#define AR6000_XIOCTL_TCMD_PM 40 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_TCMD_PM) -+ * WMI_TCMD_PM_CMD pmCmd (see include/wmi.h) -+ * uses: WMI_TCMD_PM_CMDID -+ */ -+ -+#endif /* CONFIG_HOST_TCMD_SUPPORT */ -+ -+#define AR6000_XIOCTL_WMI_STARTSCAN 41 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_WMI_STARTSCAN) -+ * UINT8 scanType -+ * UINT8 scanConnected -+ * A_BOOL forceFgScan -+ * uses: WMI_START_SCAN_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_SETFIXRATES 42 -+ -+#define AR6000_XIOCTL_WMI_GETFIXRATES 43 -+ -+ -+#define AR6000_XIOCTL_WMI_SET_RSSITHRESHOLD 44 -+/* -+ * arguments: -+ * WMI_RSSI_THRESHOLD_PARAMS_CMD thresholdParams (see include/wmi.h) -+ * uses: WMI_RSSI_THRESHOLD_PARAMS_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_CLR_RSSISNR 45 -+/* -+ * arguments: -+ * WMI_CLR_RSSISNR_CMD thresholdParams (see include/wmi.h) -+ * uses: WMI_CLR_RSSISNR_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_SET_LQTHRESHOLD 46 -+/* -+ * arguments: -+ * WMI_LQ_THRESHOLD_PARAMS_CMD thresholdParams (see include/wmi.h) -+ * uses: WMI_LQ_THRESHOLD_PARAMS_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_SET_RTS 47 -+/* -+ * arguments: -+ * WMI_SET_RTS_MODE_CMD (see include/wmi.h) -+ * uses: WMI_SET_RTS_MODE_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_SET_LPREAMBLE 48 -+ -+#define AR6000_XIOCTL_WMI_SET_AUTHMODE 49 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_WMI_SET_AUTHMODE) -+ * UINT8 mode -+ * uses: WMI_SET_RECONNECT_AUTH_MODE_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_SET_REASSOCMODE 50 -+ -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_WMI_SET_WMM) -+ * UINT8 mode -+ * uses: WMI_SET_WMM_CMDID -+ */ -+#define AR6000_XIOCTL_WMI_SET_WMM 51 -+ -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_WMI_SET_HB_CHALLENGE_RESP_PARAMS) -+ * UINT32 frequency -+ * UINT8 threshold -+ */ -+#define AR6000_XIOCTL_WMI_SET_HB_CHALLENGE_RESP_PARAMS 52 -+ -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_WMI_GET_HB_CHALLENGE_RESP) -+ * UINT32 cookie -+ */ -+#define AR6000_XIOCTL_WMI_GET_HB_CHALLENGE_RESP 53 -+ -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_WMI_GET_RD) -+ * UINT32 regDomain -+ */ -+#define AR6000_XIOCTL_WMI_GET_RD 54 -+ -+#define AR6000_XIOCTL_DIAG_READ 55 -+ -+#define AR6000_XIOCTL_DIAG_WRITE 56 -+ -+/* -+ * arguments cmd (AR6000_XIOCTL_SET_TXOP) -+ * WMI_TXOP_CFG txopEnable -+ */ -+#define AR6000_XIOCTL_WMI_SET_TXOP 57 -+ -+#ifdef USER_KEYS -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_USER_SETKEYS) -+ * UINT32 keyOpCtrl -+ * uses AR6000_USER_SETKEYS_INFO -+ */ -+#define AR6000_XIOCTL_USER_SETKEYS 58 -+#endif /* USER_KEYS */ -+ -+#define AR6000_XIOCTL_WMI_SET_KEEPALIVE 59 -+/* -+ * arguments: -+ * UINT8 cmd (AR6000_XIOCTL_WMI_SET_KEEPALIVE) -+ * UINT8 keepaliveInterval -+ * uses: WMI_SET_KEEPALIVE_CMDID -+ */ -+ -+#define AR6000_XIOCTL_WMI_GET_KEEPALIVE 60 -+/* -+ * arguments: -+ * UINT8 cmd (AR6000_XIOCTL_WMI_GET_KEEPALIVE) -+ * UINT8 keepaliveInterval -+ * A_BOOL configured -+ * uses: WMI_GET_KEEPALIVE_CMDID -+ */ -+ -+/* ====ROM Patching Extended Ioctls==== */ -+ -+#define AR6000_XIOCTL_BMI_ROMPATCH_INSTALL 61 -+/* -+ * arguments: -+ * union { -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_BMI_ROMPATCH_INSTALL) -+ * UINT32 ROM Address -+ * UINT32 RAM Address -+ * UINT32 number of bytes -+ * UINT32 activate? (0 or 1) -+ * } -+ * A_UINT32 resulting rompatch ID -+ * } -+ * uses: BMI_ROMPATCH_INSTALL -+ */ -+ -+#define AR6000_XIOCTL_BMI_ROMPATCH_UNINSTALL 62 -+/* -+ * arguments: -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_BMI_ROMPATCH_UNINSTALL) -+ * UINT32 rompatch ID -+ * } -+ * uses: BMI_ROMPATCH_UNINSTALL -+ */ -+ -+#define AR6000_XIOCTL_BMI_ROMPATCH_ACTIVATE 63 -+/* -+ * arguments: -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_BMI_ROMPATCH_ACTIVATE) -+ * UINT32 rompatch count -+ * UINT32 rompatch IDs[rompatch count] -+ * } -+ * uses: BMI_ROMPATCH_ACTIVATE -+ */ -+ -+#define AR6000_XIOCTL_BMI_ROMPATCH_DEACTIVATE 64 -+/* -+ * arguments: -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_BMI_ROMPATCH_DEACTIVATE) -+ * UINT32 rompatch count -+ * UINT32 rompatch IDs[rompatch count] -+ * } -+ * uses: BMI_ROMPATCH_DEACTIVATE -+ */ -+ -+#define AR6000_XIOCTL_WMI_SET_APPIE 65 -+/* -+ * arguments: -+ * struct { -+ * UINT32 cmd (AR6000_XIOCTL_WMI_SET_APPIE) -+ * UINT32 app_frmtype; -+ * UINT32 app_buflen; -+ * UINT8 app_buf[]; -+ * } -+ */ -+#define AR6000_XIOCTL_WMI_SET_MGMT_FRM_RX_FILTER 66 -+/* -+ * arguments: -+ * A_UINT32 filter_type; -+ */ -+ -+#define AR6000_XIOCTL_DBGLOG_CFG_MODULE 67 -+ -+#define AR6000_XIOCTL_DBGLOG_GET_DEBUG_LOGS 68 -+ -+#define AR6000_XIOCTL_WMI_SET_WSC_STATUS 70 -+/* -+ * arguments: -+ * A_UINT32 wsc_status; -+ * (WSC_REG_INACTIVE or WSC_REG_ACTIVE) -+ */ -+ -+/* -+ * arguments: -+ * struct { -+ * A_UINT8 streamType; -+ * A_UINT8 status; -+ * } -+ * uses: WMI_SET_BT_STATUS_CMDID -+ */ -+#define AR6000_XIOCTL_WMI_SET_BT_STATUS 71 -+ -+/* -+ * arguments: -+ * struct { -+ * A_UINT8 paramType; -+ * union { -+ * A_UINT8 noSCOPkts; -+ * BT_PARAMS_A2DP a2dpParams; -+ * BT_COEX_REGS regs; -+ * }; -+ * } -+ * uses: WMI_SET_BT_PARAM_CMDID -+ */ -+#define AR6000_XIOCTL_WMI_SET_BT_PARAMS 72 -+ -+#define AR6000_XIOCTL_WMI_SET_HOST_SLEEP_MODE 73 -+#define AR6000_XIOCTL_WMI_SET_WOW_MODE 74 -+#define AR6000_XIOCTL_WMI_GET_WOW_LIST 75 -+#define AR6000_XIOCTL_WMI_ADD_WOW_PATTERN 76 -+#define AR6000_XIOCTL_WMI_DEL_WOW_PATTERN 77 -+ -+ -+ -+#define AR6000_XIOCTL_TARGET_INFO 78 -+/* -+ * arguments: -+ * UINT32 cmd (AR6000_XIOCTL_TARGET_INFO) -+ * A_UINT32 TargetVersion (returned) -+ * A_UINT32 TargetType (returned) -+ * (See also bmi_msg.h target_ver and target_type) -+ */ -+ -+#define AR6000_XIOCTL_DUMP_HTC_CREDIT_STATE 79 -+/* -+ * arguments: -+ * none -+ */ -+ -+#define AR6000_XIOCTL_TRAFFIC_ACTIVITY_CHANGE 80 -+/* -+ * This ioctl is used to emulate traffic activity -+ * timeouts. Activity/inactivity will trigger the driver -+ * to re-balance credits. -+ * -+ * arguments: -+ * ar6000_traffic_activity_change -+ */ -+ -+#define AR6000_XIOCTL_WMI_SET_CONNECT_CTRL_FLAGS 81 -+/* -+ * This ioctl is used to set the connect control flags -+ * -+ * arguments: -+ * A_UINT32 connectCtrlFlags -+ */ -+ -+#define AR6000_XIOCTL_WMI_SET_AKMP_PARAMS 82 -+/* -+ * This IOCTL sets any Authentication,Key Management and Protection -+ * related parameters. This is used along with the information set in -+ * Connect Command. -+ * Currently this enables Multiple PMKIDs to an AP. -+ * -+ * arguments: -+ * struct { -+ * A_UINT32 akmpInfo; -+ * } -+ * uses: WMI_SET_AKMP_PARAMS_CMD -+ */ -+ -+#define AR6000_XIOCTL_WMI_GET_PMKID_LIST 83 -+ -+#define AR6000_XIOCTL_WMI_SET_PMKID_LIST 84 -+/* -+ * This IOCTL is used to set a list of PMKIDs. This list of -+ * PMKIDs is used in the [Re]AssocReq Frame. This list is used -+ * only if the MultiPMKID option is enabled via the -+ * AR6000_XIOCTL_WMI_SET_AKMP_PARAMS IOCTL. -+ * -+ * arguments: -+ * struct { -+ * A_UINT32 numPMKID; -+ * WMI_PMKID pmkidList[WMI_MAX_PMKID_CACHE]; -+ * } -+ * uses: WMI_SET_PMKIDLIST_CMD -+ */ -+ -+/* Historical DSETPATCH support for INI patches */ -+#define AR6000_XIOCTL_UNUSED90 90 -+ -+ -+ -+/* used by AR6000_IOCTL_WMI_GETREV */ -+struct ar6000_version { -+ A_UINT32 host_ver; -+ A_UINT32 target_ver; -+}; -+ -+/* used by AR6000_IOCTL_WMI_GET_QOS_QUEUE */ -+struct ar6000_queuereq { -+ A_UINT8 trafficClass; -+ A_UINT16 activeTsids; -+}; -+ -+/* used by AR6000_IOCTL_WMI_GET_TARGET_STATS */ -+typedef struct targetStats_t { -+ A_UINT64 tx_packets; -+ A_UINT64 tx_bytes; -+ A_UINT64 tx_unicast_pkts; -+ A_UINT64 tx_unicast_bytes; -+ A_UINT64 tx_multicast_pkts; -+ A_UINT64 tx_multicast_bytes; -+ A_UINT64 tx_broadcast_pkts; -+ A_UINT64 tx_broadcast_bytes; -+ A_UINT64 tx_rts_success_cnt; -+ A_UINT64 tx_packet_per_ac[4]; -+ -+ A_UINT64 tx_errors; -+ A_UINT64 tx_failed_cnt; -+ A_UINT64 tx_retry_cnt; -+ A_UINT64 tx_rts_fail_cnt; -+ A_INT32 tx_unicast_rate; -+ A_UINT64 rx_packets; -+ A_UINT64 rx_bytes; -+ A_UINT64 rx_unicast_pkts; -+ A_UINT64 rx_unicast_bytes; -+ A_UINT64 rx_multicast_pkts; -+ A_UINT64 rx_multicast_bytes; -+ A_UINT64 rx_broadcast_pkts; -+ A_UINT64 rx_broadcast_bytes; -+ A_UINT64 rx_fragment_pkt; -+ -+ A_UINT64 rx_errors; -+ A_UINT64 rx_crcerr; -+ A_UINT64 rx_key_cache_miss; -+ A_UINT64 rx_decrypt_err; -+ A_UINT64 rx_duplicate_frames; -+ A_INT32 rx_unicast_rate; -+ -+ A_UINT64 tkip_local_mic_failure; -+ A_UINT64 tkip_counter_measures_invoked; -+ A_UINT64 tkip_replays; -+ A_UINT64 tkip_format_errors; -+ A_UINT64 ccmp_format_errors; -+ A_UINT64 ccmp_replays; -+ -+ A_UINT64 power_save_failure_cnt; -+ A_INT16 noise_floor_calibation; -+ -+ A_UINT64 cs_bmiss_cnt; -+ A_UINT64 cs_lowRssi_cnt; -+ A_UINT64 cs_connect_cnt; -+ A_UINT64 cs_disconnect_cnt; -+ A_UINT8 cs_aveBeacon_snr; -+ A_INT16 cs_aveBeacon_rssi; -+ A_UINT8 cs_lastRoam_msec; -+ A_UINT8 cs_snr; -+ A_INT16 cs_rssi; -+ -+ A_UINT32 lq_val; -+ -+ A_UINT32 wow_num_pkts_dropped; -+ A_UINT8 wow_num_host_pkt_wakeups; -+ A_UINT8 wow_num_host_event_wakeups; -+ A_UINT16 wow_num_events_discarded; -+ -+}TARGET_STATS; -+ -+typedef struct targetStats_cmd_t { -+ TARGET_STATS targetStats; -+ int clearStats; -+} TARGET_STATS_CMD; -+ -+/* used by AR6000_XIOCTL_USER_SETKEYS */ -+ -+/* -+ * Setting this bit to 1 doesnot initialize the RSC on the firmware -+ */ -+#define AR6000_XIOCTL_USER_SETKEYS_RSC_CTRL 1 -+#define AR6000_USER_SETKEYS_RSC_UNCHANGED 0x00000002 -+ -+typedef struct { -+ A_UINT32 keyOpCtrl; /* Bit Map of Key Mgmt Ctrl Flags */ -+} AR6000_USER_SETKEYS_INFO; -+ -+ -+/* used by AR6000_XIOCTL_GPIO_OUTPUT_SET */ -+struct ar6000_gpio_output_set_cmd_s { -+ A_UINT32 set_mask; -+ A_UINT32 clear_mask; -+ A_UINT32 enable_mask; -+ A_UINT32 disable_mask; -+}; -+ -+/* -+ * used by AR6000_XIOCTL_GPIO_REGISTER_GET and AR6000_XIOCTL_GPIO_REGISTER_SET -+ */ -+struct ar6000_gpio_register_cmd_s { -+ A_UINT32 gpioreg_id; -+ A_UINT32 value; -+}; -+ -+/* used by AR6000_XIOCTL_GPIO_INTR_ACK */ -+struct ar6000_gpio_intr_ack_cmd_s { -+ A_UINT32 ack_mask; -+}; -+ -+/* used by AR6000_XIOCTL_GPIO_INTR_WAIT */ -+struct ar6000_gpio_intr_wait_cmd_s { -+ A_UINT32 intr_mask; -+ A_UINT32 input_values; -+}; -+ -+/* used by the AR6000_XIOCTL_DBGLOG_CFG_MODULE */ -+typedef struct ar6000_dbglog_module_config_s { -+ A_UINT32 valid; -+ A_UINT16 mmask; -+ A_UINT16 tsr; -+ A_BOOL rep; -+ A_UINT16 size; -+} DBGLOG_MODULE_CONFIG; -+ -+typedef struct user_rssi_thold_t { -+ A_INT16 tag; -+ A_INT16 rssi; -+} USER_RSSI_THOLD; -+ -+typedef struct user_rssi_params_t { -+ A_UINT8 weight; -+ A_UINT32 pollTime; -+ USER_RSSI_THOLD tholds[12]; -+} USER_RSSI_PARAMS; -+ -+/* -+ * Host driver may have some config parameters. Typically, these -+ * config params are one time config parameters. These could -+ * correspond to any of the underlying modules. Host driver exposes -+ * an api for the underlying modules to get this config. -+ */ -+#define AR6000_DRIVER_CFG_BASE 0x8000 -+ -+/* Should driver perform wlan node caching? */ -+#define AR6000_DRIVER_CFG_GET_WLANNODECACHING 0x8001 -+/*Should we log raw WMI msgs */ -+#define AR6000_DRIVER_CFG_LOG_RAW_WMI_MSGS 0x8002 -+ -+/* used by AR6000_XIOCTL_DIAG_READ & AR6000_XIOCTL_DIAG_WRITE */ -+struct ar6000_diag_window_cmd_s { -+ unsigned int addr; -+ unsigned int value; -+}; -+ -+ -+struct ar6000_traffic_activity_change { -+ A_UINT32 StreamID; /* stream ID to indicate activity change */ -+ A_UINT32 Active; /* active (1) or inactive (0) */ -+}; -+ -+#ifdef __cplusplus -+} -+#endif -+#endif ---- /dev/null -+++ b/drivers/ar6000/ar6000/athtypes_linux.h -@@ -0,0 +1,47 @@ -+/* -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/os/linux/include/athtypes_linux.h#1 $ -+ * -+ * This file contains the definitions of the basic atheros data types. -+ * It is used to map the data types in atheros files to a platform specific -+ * type. -+ * -+ * Copyright 2003-2005 Atheros Communications, Inc., All Rights Reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _ATHTYPES_LINUX_H_ -+#define _ATHTYPES_LINUX_H_ -+ -+#ifdef __KERNEL__ -+#include <linux/types.h> -+#endif -+ -+typedef int8_t A_INT8; -+typedef int16_t A_INT16; -+typedef int32_t A_INT32; -+typedef int64_t A_INT64; -+ -+typedef u_int8_t A_UINT8; -+typedef u_int16_t A_UINT16; -+typedef u_int32_t A_UINT32; -+typedef u_int64_t A_UINT64; -+ -+typedef int A_BOOL; -+typedef char A_CHAR; -+typedef unsigned char A_UCHAR; -+typedef unsigned long A_ATH_TIMER; -+ -+ -+#endif /* _ATHTYPES_LINUX_H_ */ ---- /dev/null -+++ b/drivers/ar6000/ar6000/config_linux.h -@@ -0,0 +1,44 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _CONFIG_LINUX_H_ -+#define _CONFIG_LINUX_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+/* -+ * Host-side GPIO support is optional. -+ * If run-time access to GPIO pins is not required, then -+ * this should be changed to #undef. -+ */ -+#define CONFIG_HOST_GPIO_SUPPORT -+ -+/* -+ * Host side Test Command support -+ */ -+#define CONFIG_HOST_TCMD_SUPPORT -+ -+#define USE_4BYTE_REGISTER_ACCESS -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/ar6000/debug_linux.h -@@ -0,0 +1,86 @@ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _DEBUG_LINUX_H_ -+#define _DEBUG_LINUX_H_ -+ -+#define DBG_DEFAULTS (DBG_ERROR|DBG_WARNING) -+ -+extern A_UINT32 g_dbg_flags; -+ -+#define DBGFMT "%s() : " -+#define DBGARG __func__ -+#define DBGFN A_PRINTF -+ -+/* ------- Debug related stuff ------- */ -+enum { -+ ATH_DEBUG_SEND = 0x0001, -+ ATH_DEBUG_RECV = 0x0002, -+ ATH_DEBUG_SYNC = 0x0004, -+ ATH_DEBUG_DUMP = 0x0008, -+ ATH_DEBUG_IRQ = 0x0010, -+ ATH_DEBUG_TRC = 0x0020, -+ ATH_DEBUG_WARN = 0x0040, -+ ATH_DEBUG_ERR = 0x0080, -+ ATH_LOG_INF = 0x0100, -+ ATH_DEBUG_BMI = 0x0110, -+ ATH_DEBUG_WMI = 0x0120, -+ ATH_DEBUG_HIF = 0x0140, -+ ATH_DEBUG_HTC = 0x0180, -+ ATH_DEBUG_WLAN = 0x1000, -+ ATH_LOG_ERR = 0x1010, -+ ATH_DEBUG_ANY = 0xFFFF, -+}; -+ -+#ifdef DEBUG -+ -+#define A_DPRINTF(f, a) \ -+ if(g_dbg_flags & (f)) \ -+ { \ -+ DBGFN a ; \ -+ } -+ -+ -+// TODO FIX usage of A_PRINTF! -+#define AR_DEBUG_LVL_CHECK(lvl) (debughtc & (lvl)) -+#define AR_DEBUG_PRINTBUF(buffer, length, desc) do { \ -+ if (debughtc & ATH_DEBUG_DUMP) { \ -+ DebugDumpBytes(buffer, length,desc); \ -+ } \ -+} while(0) -+#define PRINTX_ARG(arg...) arg -+#define AR_DEBUG_PRINTF(flags, args) do { \ -+ if (debughtc & (flags)) { \ -+ A_PRINTF(KERN_ALERT PRINTX_ARG args); \ -+ } \ -+} while (0) -+#define AR_DEBUG_ASSERT(test) do { \ -+ if (!(test)) { \ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Debug Assert Caught, File %s, Line: %d, Test:%s \n",__FILE__, __LINE__,#test)); \ -+ } \ -+} while(0) -+extern int debughtc; -+#else -+#define AR_DEBUG_PRINTF(flags, args) -+#define AR_DEBUG_PRINTBUF(buffer, length, desc) -+#define AR_DEBUG_ASSERT(test) -+#define AR_DEBUG_LVL_CHECK(lvl) 0 -+#define A_DPRINTF(f, a) -+#endif -+ -+#endif /* _DEBUG_LINUX_H_ */ ---- /dev/null -+++ b/drivers/ar6000/ar6000/ioctl.c -@@ -0,0 +1,2540 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "ar6000_drv.h" -+ -+static A_UINT8 bcast_mac[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff}; -+static A_UINT8 null_mac[] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0}; -+extern USER_RSSI_THOLD rssi_map[12]; -+extern unsigned int wmitimeout; -+extern A_WAITQUEUE_HEAD arEvent; -+extern int tspecCompliance; -+extern int bmienable; -+extern int bypasswmi; -+ -+static int -+ar6000_ioctl_get_roam_tbl(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if(wmi_get_roam_tbl_cmd(ar->arWmi) != A_OK) { -+ return -EIO; -+ } -+ -+ return 0; -+} -+ -+static int -+ar6000_ioctl_get_roam_data(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ -+ /* currently assume only roam times are required */ -+ if(wmi_get_roam_data_cmd(ar->arWmi, ROAM_DATA_TIME) != A_OK) { -+ return -EIO; -+ } -+ -+ -+ return 0; -+} -+ -+static int -+ar6000_ioctl_set_roam_ctrl(struct net_device *dev, char *userdata) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_ROAM_CTRL_CMD cmd; -+ A_UINT8 size = sizeof(cmd); -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ -+ if (copy_from_user(&cmd, userdata, size)) { -+ return -EFAULT; -+ } -+ -+ if (cmd.roamCtrlType == WMI_SET_HOST_BIAS) { -+ if (cmd.info.bssBiasInfo.numBss > 1) { -+ size += (cmd.info.bssBiasInfo.numBss - 1) * sizeof(WMI_BSS_BIAS); -+ } -+ } -+ -+ if (copy_from_user(&cmd, userdata, size)) { -+ return -EFAULT; -+ } -+ -+ if(wmi_set_roam_ctrl_cmd(ar->arWmi, &cmd, size) != A_OK) { -+ return -EIO; -+ } -+ -+ return 0; -+} -+ -+static int -+ar6000_ioctl_set_powersave_timers(struct net_device *dev, char *userdata) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_POWERSAVE_TIMERS_POLICY_CMD cmd; -+ A_UINT8 size = sizeof(cmd); -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, userdata, size)) { -+ return -EFAULT; -+ } -+ -+ if (copy_from_user(&cmd, userdata, size)) { -+ return -EFAULT; -+ } -+ -+ if(wmi_set_powersave_timers_cmd(ar->arWmi, &cmd, size) != A_OK) { -+ return -EIO; -+ } -+ -+ return 0; -+} -+ -+static int -+ar6000_ioctl_set_wmm(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_WMM_CMD cmd; -+ A_STATUS ret; -+ -+ if ((dev->flags & IFF_UP) != IFF_UP) { -+ return -EIO; -+ } -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, (char *)((unsigned int*)rq->ifr_data + 1), -+ sizeof(cmd))) -+ { -+ return -EFAULT; -+ } -+ -+ if (cmd.status == WMI_WMM_ENABLED) { -+ ar->arWmmEnabled = TRUE; -+ } else { -+ ar->arWmmEnabled = FALSE; -+ } -+ -+ ret = wmi_set_wmm_cmd(ar->arWmi, cmd.status); -+ -+ switch (ret) { -+ case A_OK: -+ return 0; -+ case A_EBUSY : -+ return -EBUSY; -+ case A_NO_MEMORY: -+ return -ENOMEM; -+ case A_EINVAL: -+ default: -+ return -EFAULT; -+ } -+} -+ -+static int -+ar6000_ioctl_set_txop(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_WMM_TXOP_CMD cmd; -+ A_STATUS ret; -+ -+ if ((dev->flags & IFF_UP) != IFF_UP) { -+ return -EIO; -+ } -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, (char *)((unsigned int*)rq->ifr_data + 1), -+ sizeof(cmd))) -+ { -+ return -EFAULT; -+ } -+ -+ ret = wmi_set_wmm_txop(ar->arWmi, cmd.txopEnable); -+ -+ switch (ret) { -+ case A_OK: -+ return 0; -+ case A_EBUSY : -+ return -EBUSY; -+ case A_NO_MEMORY: -+ return -ENOMEM; -+ case A_EINVAL: -+ default: -+ return -EFAULT; -+ } -+} -+ -+static int -+ar6000_ioctl_get_rd(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ A_STATUS ret = 0; -+ -+ if ((dev->flags & IFF_UP) != IFF_UP || ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if(copy_to_user((char *)((unsigned int*)rq->ifr_data + 1), -+ &ar->arRegCode, sizeof(ar->arRegCode))) -+ ret = -EFAULT; -+ -+ return ret; -+} -+ -+ -+/* Get power mode command */ -+static int -+ar6000_ioctl_get_power_mode(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_POWER_MODE_CMD power_mode; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ power_mode.powerMode = wmi_get_power_mode_cmd(ar->arWmi); -+ if (copy_to_user(rq->ifr_data, &power_mode, sizeof(WMI_POWER_MODE_CMD))) { -+ ret = -EFAULT; -+ } -+ -+ return ret; -+} -+ -+ -+static int -+ar6000_ioctl_set_channelParams(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_CHANNEL_PARAMS_CMD cmd, *cmdp; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (cmd.numChannels > 1) { -+ cmdp = A_MALLOC(130); -+ if (copy_from_user(cmdp, rq->ifr_data, -+ sizeof (*cmdp) + -+ ((cmd.numChannels - 1) * sizeof(A_UINT16)))) -+ { -+ kfree(cmdp); -+ return -EFAULT; -+ } -+ } else { -+ cmdp = &cmd; -+ } -+ -+ if ((ar->arPhyCapability == WMI_11G_CAPABILITY) && -+ ((cmdp->phyMode == WMI_11A_MODE) || (cmdp->phyMode == WMI_11AG_MODE))) -+ { -+ ret = -EINVAL; -+ } -+ -+ if (!ret && -+ (wmi_set_channelParams_cmd(ar->arWmi, cmdp->scanParam, cmdp->phyMode, -+ cmdp->numChannels, cmdp->channelList) -+ != A_OK)) -+ { -+ ret = -EIO; -+ } -+ -+ if (cmd.numChannels > 1) { -+ kfree(cmdp); -+ } -+ -+ return ret; -+} -+ -+static int -+ar6000_ioctl_set_snr_threshold(struct net_device *dev, struct ifreq *rq) -+{ -+ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SNR_THRESHOLD_PARAMS_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if( wmi_set_snr_threshold_params(ar->arWmi, &cmd) != A_OK ) { -+ ret = -EIO; -+ } -+ -+ return ret; -+} -+ -+static int -+ar6000_ioctl_set_rssi_threshold(struct net_device *dev, struct ifreq *rq) -+{ -+#define SWAP_THOLD(thold1, thold2) do { \ -+ USER_RSSI_THOLD tmpThold; \ -+ tmpThold.tag = thold1.tag; \ -+ tmpThold.rssi = thold1.rssi; \ -+ thold1.tag = thold2.tag; \ -+ thold1.rssi = thold2.rssi; \ -+ thold2.tag = tmpThold.tag; \ -+ thold2.rssi = tmpThold.rssi; \ -+} while (0) -+ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_RSSI_THRESHOLD_PARAMS_CMD cmd; -+ USER_RSSI_PARAMS rssiParams; -+ A_INT32 i, j; -+ -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user((char *)&rssiParams, (char *)((unsigned int *)rq->ifr_data + 1), sizeof(USER_RSSI_PARAMS))) { -+ return -EFAULT; -+ } -+ cmd.weight = rssiParams.weight; -+ cmd.pollTime = rssiParams.pollTime; -+ -+ A_MEMCPY(rssi_map, &rssiParams.tholds, sizeof(rssi_map)); -+ /* -+ * only 6 elements, so use bubble sorting, in ascending order -+ */ -+ for (i = 5; i > 0; i--) { -+ for (j = 0; j < i; j++) { /* above tholds */ -+ if (rssi_map[j+1].rssi < rssi_map[j].rssi) { -+ SWAP_THOLD(rssi_map[j+1], rssi_map[j]); -+ } else if (rssi_map[j+1].rssi == rssi_map[j].rssi) { -+ return EFAULT; -+ } -+ } -+ } -+ for (i = 11; i > 6; i--) { -+ for (j = 6; j < i; j++) { /* below tholds */ -+ if (rssi_map[j+1].rssi < rssi_map[j].rssi) { -+ SWAP_THOLD(rssi_map[j+1], rssi_map[j]); -+ } else if (rssi_map[j+1].rssi == rssi_map[j].rssi) { -+ return EFAULT; -+ } -+ } -+ } -+ -+#ifdef DEBUG -+ for (i = 0; i < 12; i++) { -+ AR_DEBUG2_PRINTF("thold[%d].tag: %d, thold[%d].rssi: %d \n", -+ i, rssi_map[i].tag, i, rssi_map[i].rssi); -+ } -+#endif -+ cmd.thresholdAbove1_Val = rssi_map[0].rssi; -+ cmd.thresholdAbove2_Val = rssi_map[1].rssi; -+ cmd.thresholdAbove3_Val = rssi_map[2].rssi; -+ cmd.thresholdAbove4_Val = rssi_map[3].rssi; -+ cmd.thresholdAbove5_Val = rssi_map[4].rssi; -+ cmd.thresholdAbove6_Val = rssi_map[5].rssi; -+ cmd.thresholdBelow1_Val = rssi_map[6].rssi; -+ cmd.thresholdBelow2_Val = rssi_map[7].rssi; -+ cmd.thresholdBelow3_Val = rssi_map[8].rssi; -+ cmd.thresholdBelow4_Val = rssi_map[9].rssi; -+ cmd.thresholdBelow5_Val = rssi_map[10].rssi; -+ cmd.thresholdBelow6_Val = rssi_map[11].rssi; -+ -+ if( wmi_set_rssi_threshold_params(ar->arWmi, &cmd) != A_OK ) { -+ ret = -EIO; -+ } -+ -+ return ret; -+} -+ -+static int -+ar6000_ioctl_set_lq_threshold(struct net_device *dev, struct ifreq *rq) -+{ -+ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_LQ_THRESHOLD_PARAMS_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, (char *)((unsigned int *)rq->ifr_data + 1), sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if( wmi_set_lq_threshold_params(ar->arWmi, &cmd) != A_OK ) { -+ ret = -EIO; -+ } -+ -+ return ret; -+} -+ -+ -+static int -+ar6000_ioctl_set_probedSsid(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_PROBED_SSID_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (wmi_probedSsid_cmd(ar->arWmi, cmd.entryIndex, cmd.flag, cmd.ssidLength, -+ cmd.ssid) != A_OK) -+ { -+ ret = -EIO; -+ } -+ -+ return ret; -+} -+ -+static int -+ar6000_ioctl_set_badAp(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_ADD_BAD_AP_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (cmd.badApIndex > WMI_MAX_BAD_AP_INDEX) { -+ return -EIO; -+ } -+ -+ if (A_MEMCMP(cmd.bssid, null_mac, AR6000_ETH_ADDR_LEN) == 0) { -+ /* -+ * This is a delete badAP. -+ */ -+ if (wmi_deleteBadAp_cmd(ar->arWmi, cmd.badApIndex) != A_OK) { -+ ret = -EIO; -+ } -+ } else { -+ if (wmi_addBadAp_cmd(ar->arWmi, cmd.badApIndex, cmd.bssid) != A_OK) { -+ ret = -EIO; -+ } -+ } -+ -+ return ret; -+} -+ -+static int -+ar6000_ioctl_create_qos(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_CREATE_PSTREAM_CMD cmd; -+ A_STATUS ret; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ ret = wmi_verify_tspec_params(&cmd, tspecCompliance); -+ if (ret == A_OK) -+ ret = wmi_create_pstream_cmd(ar->arWmi, &cmd); -+ -+ switch (ret) { -+ case A_OK: -+ return 0; -+ case A_EBUSY : -+ return -EBUSY; -+ case A_NO_MEMORY: -+ return -ENOMEM; -+ case A_EINVAL: -+ default: -+ return -EFAULT; -+ } -+} -+ -+static int -+ar6000_ioctl_delete_qos(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_DELETE_PSTREAM_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ ret = wmi_delete_pstream_cmd(ar->arWmi, cmd.trafficClass, cmd.tsid); -+ -+ switch (ret) { -+ case A_OK: -+ return 0; -+ case A_EBUSY : -+ return -EBUSY; -+ case A_NO_MEMORY: -+ return -ENOMEM; -+ case A_EINVAL: -+ default: -+ return -EFAULT; -+ } -+} -+ -+static int -+ar6000_ioctl_get_qos_queue(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct ar6000_queuereq qreq; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if( copy_from_user(&qreq, rq->ifr_data, -+ sizeof(struct ar6000_queuereq))) -+ return -EFAULT; -+ -+ qreq.activeTsids = wmi_get_mapped_qos_queue(ar->arWmi, qreq.trafficClass); -+ -+ if (copy_to_user(rq->ifr_data, &qreq, -+ sizeof(struct ar6000_queuereq))) -+ { -+ ret = -EFAULT; -+ } -+ -+ return ret; -+} -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+static A_STATUS -+ar6000_ioctl_tcmd_get_rx_report(struct net_device *dev, -+ struct ifreq *rq, A_UINT8 *data, A_UINT32 len) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ A_UINT32 buf[2]; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ ar->tcmdRxReport = 0; -+ if (wmi_test_cmd(ar->arWmi, data, len) != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ -+ wait_event_interruptible_timeout(arEvent, ar->tcmdRxReport != 0, wmitimeout * HZ); -+ -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } -+ -+ buf[0] = ar->tcmdRxTotalPkt; -+ buf[1] = ar->tcmdRxRssi; -+ if (!ret && copy_to_user(rq->ifr_data, buf, sizeof(buf))) { -+ ret = -EFAULT; -+ } -+ -+ up(&ar->arSem); -+ -+ return ret; -+} -+ -+void -+ar6000_tcmd_rx_report_event(void *devt, A_UINT8 * results, int len) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)devt; -+ TCMD_CONT_RX * rx_rep = (TCMD_CONT_RX *)results; -+ -+ ar->tcmdRxTotalPkt = rx_rep->u.report.totalPkt; -+ ar->tcmdRxRssi = rx_rep->u.report.rssiInDBm; -+ ar->tcmdRxReport = 1; -+ -+ wake_up(&arEvent); -+} -+#endif /* CONFIG_HOST_TCMD_SUPPORT*/ -+ -+static int -+ar6000_ioctl_set_error_report_bitmask(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_TARGET_ERROR_REPORT_BITMASK cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ ret = wmi_set_error_report_bitmask(ar->arWmi, cmd.bitmask); -+ -+ return (ret==0 ? ret : -EINVAL); -+} -+ -+static int -+ar6000_clear_target_stats(struct net_device *dev) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ TARGET_STATS *pStats = &ar->arTargetStats; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ A_MEMZERO(pStats, sizeof(TARGET_STATS)); -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ return ret; -+} -+ -+static int -+ar6000_ioctl_get_target_stats(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ TARGET_STATS_CMD cmd; -+ TARGET_STATS *pStats = &ar->arTargetStats; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ -+ ar->statsUpdatePending = TRUE; -+ -+ if(wmi_get_stats_cmd(ar->arWmi) != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ -+ wait_event_interruptible_timeout(arEvent, ar->statsUpdatePending == FALSE, wmitimeout * HZ); -+ -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } -+ -+ if (!ret && copy_to_user(rq->ifr_data, pStats, sizeof(*pStats))) { -+ ret = -EFAULT; -+ } -+ -+ if (cmd.clearStats == 1) { -+ ret = ar6000_clear_target_stats(dev); -+ } -+ -+ up(&ar->arSem); -+ -+ return ret; -+} -+ -+static int -+ar6000_ioctl_set_access_params(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_ACCESS_PARAMS_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (wmi_set_access_params_cmd(ar->arWmi, cmd.txop, cmd.eCWmin, cmd.eCWmax, -+ cmd.aifsn) == A_OK) -+ { -+ ret = 0; -+ } else { -+ ret = -EINVAL; -+ } -+ -+ return (ret); -+} -+ -+static int -+ar6000_ioctl_set_disconnect_timeout(struct net_device *dev, struct ifreq *rq) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_DISC_TIMEOUT_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, rq->ifr_data, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (wmi_disctimeout_cmd(ar->arWmi, cmd.disconnectTimeout) == A_OK) -+ { -+ ret = 0; -+ } else { -+ ret = -EINVAL; -+ } -+ -+ return (ret); -+} -+ -+static int -+ar6000_xioctl_set_voice_pkt_size(struct net_device *dev, char * userdata) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_VOICE_PKT_SIZE_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, userdata, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (wmi_set_voice_pkt_size_cmd(ar->arWmi, cmd.voicePktSize) == A_OK) -+ { -+ ret = 0; -+ } else { -+ ret = -EINVAL; -+ } -+ -+ -+ return (ret); -+} -+ -+static int -+ar6000_xioctl_set_max_sp_len(struct net_device *dev, char * userdata) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_MAX_SP_LEN_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, userdata, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (wmi_set_max_sp_len_cmd(ar->arWmi, cmd.maxSPLen) == A_OK) -+ { -+ ret = 0; -+ } else { -+ ret = -EINVAL; -+ } -+ -+ return (ret); -+} -+ -+ -+static int -+ar6000_xioctl_set_bt_status_cmd(struct net_device *dev, char * userdata) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_BT_STATUS_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, userdata, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (wmi_set_bt_status_cmd(ar->arWmi, cmd.streamType, cmd.status) == A_OK) -+ { -+ ret = 0; -+ } else { -+ ret = -EINVAL; -+ } -+ -+ return (ret); -+} -+ -+static int -+ar6000_xioctl_set_bt_params_cmd(struct net_device *dev, char * userdata) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_SET_BT_PARAMS_CMD cmd; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (copy_from_user(&cmd, userdata, sizeof(cmd))) { -+ return -EFAULT; -+ } -+ -+ if (wmi_set_bt_params_cmd(ar->arWmi, &cmd) == A_OK) -+ { -+ ret = 0; -+ } else { -+ ret = -EINVAL; -+ } -+ -+ return (ret); -+} -+ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+struct ar6000_gpio_intr_wait_cmd_s gpio_intr_results; -+/* gpio_reg_results and gpio_data_available are protected by arSem */ -+static struct ar6000_gpio_register_cmd_s gpio_reg_results; -+static A_BOOL gpio_data_available; /* Requested GPIO data available */ -+static A_BOOL gpio_intr_available; /* GPIO interrupt info available */ -+static A_BOOL gpio_ack_received; /* GPIO ack was received */ -+ -+/* Host-side initialization for General Purpose I/O support */ -+void ar6000_gpio_init(void) -+{ -+ gpio_intr_available = FALSE; -+ gpio_data_available = FALSE; -+ gpio_ack_received = FALSE; -+} -+ -+/* -+ * Called when a GPIO interrupt is received from the Target. -+ * intr_values shows which GPIO pins have interrupted. -+ * input_values shows a recent value of GPIO pins. -+ */ -+void -+ar6000_gpio_intr_rx(A_UINT32 intr_mask, A_UINT32 input_values) -+{ -+ gpio_intr_results.intr_mask = intr_mask; -+ gpio_intr_results.input_values = input_values; -+ *((volatile A_BOOL *)&gpio_intr_available) = TRUE; -+ wake_up(&arEvent); -+} -+ -+/* -+ * This is called when a response is received from the Target -+ * for a previous or ar6000_gpio_input_get or ar6000_gpio_register_get -+ * call. -+ */ -+void -+ar6000_gpio_data_rx(A_UINT32 reg_id, A_UINT32 value) -+{ -+ gpio_reg_results.gpioreg_id = reg_id; -+ gpio_reg_results.value = value; -+ *((volatile A_BOOL *)&gpio_data_available) = TRUE; -+ wake_up(&arEvent); -+} -+ -+/* -+ * This is called when an acknowledgement is received from the Target -+ * for a previous or ar6000_gpio_output_set or ar6000_gpio_register_set -+ * call. -+ */ -+void -+ar6000_gpio_ack_rx(void) -+{ -+ gpio_ack_received = TRUE; -+ wake_up(&arEvent); -+} -+ -+A_STATUS -+ar6000_gpio_output_set(struct net_device *dev, -+ A_UINT32 set_mask, -+ A_UINT32 clear_mask, -+ A_UINT32 enable_mask, -+ A_UINT32 disable_mask) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ gpio_ack_received = FALSE; -+ return wmi_gpio_output_set(ar->arWmi, -+ set_mask, clear_mask, enable_mask, disable_mask); -+} -+ -+static A_STATUS -+ar6000_gpio_input_get(struct net_device *dev) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ *((volatile A_BOOL *)&gpio_data_available) = FALSE; -+ return wmi_gpio_input_get(ar->arWmi); -+} -+ -+static A_STATUS -+ar6000_gpio_register_set(struct net_device *dev, -+ A_UINT32 gpioreg_id, -+ A_UINT32 value) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ gpio_ack_received = FALSE; -+ return wmi_gpio_register_set(ar->arWmi, gpioreg_id, value); -+} -+ -+static A_STATUS -+ar6000_gpio_register_get(struct net_device *dev, -+ A_UINT32 gpioreg_id) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ *((volatile A_BOOL *)&gpio_data_available) = FALSE; -+ return wmi_gpio_register_get(ar->arWmi, gpioreg_id); -+} -+ -+static A_STATUS -+ar6000_gpio_intr_ack(struct net_device *dev, -+ A_UINT32 ack_mask) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ gpio_intr_available = FALSE; -+ return wmi_gpio_intr_ack(ar->arWmi, ack_mask); -+} -+#endif /* CONFIG_HOST_GPIO_SUPPORT */ -+ -+int ar6000_ioctl(struct net_device *dev, struct ifreq *rq, int cmd) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ HIF_DEVICE *hifDevice = ar->arHifDevice; -+ int ret, param, param2; -+ unsigned int address = 0; -+ unsigned int length = 0; -+ unsigned char *buffer; -+ char *userdata; -+ A_UINT32 connectCtrlFlags; -+ -+ -+ static WMI_SCAN_PARAMS_CMD scParams = {0, 0, 0, 0, 0, -+ WMI_SHORTSCANRATIO_DEFAULT, -+ DEFAULT_SCAN_CTRL_FLAGS, -+ 0}; -+ WMI_SET_AKMP_PARAMS_CMD akmpParams; -+ WMI_SET_PMKID_LIST_CMD pmkidInfo; -+ -+ if (cmd == AR6000_IOCTL_EXTENDED) -+ { -+ /* -+ * This allows for many more wireless ioctls than would otherwise -+ * be available. Applications embed the actual ioctl command in -+ * the first word of the parameter block, and use the command -+ * AR6000_IOCTL_EXTENDED_CMD on the ioctl call. -+ */ -+ get_user(cmd, (int *)rq->ifr_data); -+ userdata = (char *)(((unsigned int *)rq->ifr_data)+1); -+ } -+ else -+ { -+ userdata = (char *)rq->ifr_data; -+ } -+ -+ if ((ar->arWlanState == WLAN_DISABLED) && -+ ((cmd != AR6000_XIOCTRL_WMI_SET_WLAN_STATE) && -+ (cmd != AR6000_XIOCTL_DIAG_READ) && -+ (cmd != AR6000_XIOCTL_DIAG_WRITE))) -+ { -+ return -EIO; -+ } -+ -+ ret = 0; -+ switch(cmd) -+ { -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+ case AR6000_XIOCTL_TCMD_CONT_TX: -+ { -+ TCMD_CONT_TX txCmd; -+ -+ if (ar->tcmdPm == TCMD_PM_SLEEP) { -+ A_PRINTF("Can NOT send tx tcmd when target is asleep! \n"); -+ return -EFAULT; -+ } -+ -+ if(copy_from_user(&txCmd, userdata, sizeof(TCMD_CONT_TX))) -+ return -EFAULT; -+ wmi_test_cmd(ar->arWmi,(A_UINT8 *)&txCmd, sizeof(TCMD_CONT_TX)); -+ } -+ break; -+ case AR6000_XIOCTL_TCMD_CONT_RX: -+ { -+ TCMD_CONT_RX rxCmd; -+ -+ if (ar->tcmdPm == TCMD_PM_SLEEP) { -+ A_PRINTF("Can NOT send rx tcmd when target is asleep! \n"); -+ return -EFAULT; -+ } -+ if(copy_from_user(&rxCmd, userdata, sizeof(TCMD_CONT_RX))) -+ return -EFAULT; -+ switch(rxCmd.act) -+ { -+ case TCMD_CONT_RX_PROMIS: -+ case TCMD_CONT_RX_FILTER: -+ case TCMD_CONT_RX_SETMAC: -+ wmi_test_cmd(ar->arWmi,(A_UINT8 *)&rxCmd, -+ sizeof(TCMD_CONT_RX)); -+ break; -+ case TCMD_CONT_RX_REPORT: -+ ar6000_ioctl_tcmd_get_rx_report(dev, rq, -+ (A_UINT8 *)&rxCmd, sizeof(TCMD_CONT_RX)); -+ break; -+ default: -+ A_PRINTF("Unknown Cont Rx mode: %d\n",rxCmd.act); -+ return -EINVAL; -+ } -+ } -+ break; -+ case AR6000_XIOCTL_TCMD_PM: -+ { -+ TCMD_PM pmCmd; -+ -+ if(copy_from_user(&pmCmd, userdata, sizeof(TCMD_PM))) -+ return -EFAULT; -+ ar->tcmdPm = pmCmd.mode; -+ wmi_test_cmd(ar->arWmi, (A_UINT8*)&pmCmd, sizeof(TCMD_PM)); -+ } -+ break; -+#endif /* CONFIG_HOST_TCMD_SUPPORT */ -+ -+ case AR6000_XIOCTL_BMI_DONE: -+ if(bmienable) -+ { -+ ret = ar6000_init(dev); -+ } -+ else -+ { -+ ret = BMIDone(hifDevice); -+ } -+ break; -+ -+ case AR6000_XIOCTL_BMI_READ_MEMORY: -+ get_user(address, (unsigned int *)userdata); -+ get_user(length, (unsigned int *)userdata + 1); -+ AR_DEBUG_PRINTF("Read Memory (address: 0x%x, length: %d)\n", -+ address, length); -+ if ((buffer = (unsigned char *)A_MALLOC(length)) != NULL) { -+ A_MEMZERO(buffer, length); -+ ret = BMIReadMemory(hifDevice, address, buffer, length); -+ if (copy_to_user(rq->ifr_data, buffer, length)) { -+ ret = -EFAULT; -+ } -+ A_FREE(buffer); -+ } else { -+ ret = -ENOMEM; -+ } -+ break; -+ -+ case AR6000_XIOCTL_BMI_WRITE_MEMORY: -+ get_user(address, (unsigned int *)userdata); -+ get_user(length, (unsigned int *)userdata + 1); -+ AR_DEBUG_PRINTF("Write Memory (address: 0x%x, length: %d)\n", -+ address, length); -+ if ((buffer = (unsigned char *)A_MALLOC(length)) != NULL) { -+ A_MEMZERO(buffer, length); -+ if (copy_from_user(buffer, &userdata[sizeof(address) + -+ sizeof(length)], length)) -+ { -+ ret = -EFAULT; -+ } else { -+ ret = BMIWriteMemory(hifDevice, address, buffer, length); -+ } -+ A_FREE(buffer); -+ } else { -+ ret = -ENOMEM; -+ } -+ break; -+ -+ case AR6000_XIOCTL_BMI_TEST: -+ AR_DEBUG_PRINTF("No longer supported\n"); -+ ret = -EOPNOTSUPP; -+ break; -+ -+ case AR6000_XIOCTL_BMI_EXECUTE: -+ get_user(address, (unsigned int *)userdata); -+ get_user(param, (unsigned int *)userdata + 1); -+ AR_DEBUG_PRINTF("Execute (address: 0x%x, param: %d)\n", -+ address, param); -+ ret = BMIExecute(hifDevice, address, ¶m); -+ put_user(param, (unsigned int *)rq->ifr_data); /* return value */ -+ break; -+ -+ case AR6000_XIOCTL_BMI_SET_APP_START: -+ get_user(address, (unsigned int *)userdata); -+ AR_DEBUG_PRINTF("Set App Start (address: 0x%x)\n", address); -+ ret = BMISetAppStart(hifDevice, address); -+ break; -+ -+ case AR6000_XIOCTL_BMI_READ_SOC_REGISTER: -+ get_user(address, (unsigned int *)userdata); -+ ret = BMIReadSOCRegister(hifDevice, address, ¶m); -+ put_user(param, (unsigned int *)rq->ifr_data); /* return value */ -+ break; -+ -+ case AR6000_XIOCTL_BMI_WRITE_SOC_REGISTER: -+ get_user(address, (unsigned int *)userdata); -+ get_user(param, (unsigned int *)userdata + 1); -+ ret = BMIWriteSOCRegister(hifDevice, address, param); -+ break; -+ -+#ifdef HTC_RAW_INTERFACE -+ case AR6000_XIOCTL_HTC_RAW_OPEN: -+ ret = A_OK; -+ if (!arRawIfEnabled(ar)) { -+ /* make sure block size is set in case the target was reset since last -+ * BMI phase (i.e. flashup downloads) */ -+ ret = ar6000_SetHTCBlockSize(ar); -+ if (A_FAILED(ret)) { -+ break; -+ } -+ /* Terminate the BMI phase */ -+ ret = BMIDone(hifDevice); -+ if (ret == A_OK) { -+ ret = ar6000_htc_raw_open(ar); -+ } -+ } -+ break; -+ -+ case AR6000_XIOCTL_HTC_RAW_CLOSE: -+ if (arRawIfEnabled(ar)) { -+ ret = ar6000_htc_raw_close(ar); -+ arRawIfEnabled(ar) = FALSE; -+ } else { -+ ret = A_ERROR; -+ } -+ break; -+ -+ case AR6000_XIOCTL_HTC_RAW_READ: -+ if (arRawIfEnabled(ar)) { -+ unsigned int streamID; -+ get_user(streamID, (unsigned int *)userdata); -+ get_user(length, (unsigned int *)userdata + 1); -+ buffer = rq->ifr_data + sizeof(length); -+ ret = ar6000_htc_raw_read(ar, (HTC_RAW_STREAM_ID)streamID, -+ buffer, length); -+ put_user(ret, (unsigned int *)rq->ifr_data); -+ } else { -+ ret = A_ERROR; -+ } -+ break; -+ -+ case AR6000_XIOCTL_HTC_RAW_WRITE: -+ if (arRawIfEnabled(ar)) { -+ unsigned int streamID; -+ get_user(streamID, (unsigned int *)userdata); -+ get_user(length, (unsigned int *)userdata + 1); -+ buffer = userdata + sizeof(streamID) + sizeof(length); -+ ret = ar6000_htc_raw_write(ar, (HTC_RAW_STREAM_ID)streamID, -+ buffer, length); -+ put_user(ret, (unsigned int *)rq->ifr_data); -+ } else { -+ ret = A_ERROR; -+ } -+ break; -+#endif /* HTC_RAW_INTERFACE */ -+ -+ case AR6000_IOCTL_WMI_GETREV: -+ { -+ if (copy_to_user(rq->ifr_data, &ar->arVersion, -+ sizeof(ar->arVersion))) -+ { -+ ret = -EFAULT; -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SETPWR: -+ { -+ WMI_POWER_MODE_CMD pwrModeCmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&pwrModeCmd, userdata, -+ sizeof(pwrModeCmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_powermode_cmd(ar->arWmi, pwrModeCmd.powerMode) -+ != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_IBSS_PM_CAPS: -+ { -+ WMI_IBSS_PM_CAPS_CMD ibssPmCaps; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&ibssPmCaps, userdata, -+ sizeof(ibssPmCaps))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_ibsspmcaps_cmd(ar->arWmi, ibssPmCaps.power_saving, ibssPmCaps.ttl, -+ ibssPmCaps.atim_windows, ibssPmCaps.timeout_value) != A_OK) -+ { -+ ret = -EIO; -+ } -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ ar->arIbssPsEnable = ibssPmCaps.power_saving; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_PMPARAMS: -+ { -+ WMI_POWER_PARAMS_CMD pmParams; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&pmParams, userdata, -+ sizeof(pmParams))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_pmparams_cmd(ar->arWmi, pmParams.idle_period, -+ pmParams.pspoll_number, -+ pmParams.dtim_policy) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SETSCAN: -+ { -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&scParams, userdata, -+ sizeof(scParams))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (CAN_SCAN_IN_CONNECT(scParams.scanCtrlFlags)) { -+ ar->arSkipScan = FALSE; -+ } else { -+ ar->arSkipScan = TRUE; -+ } -+ -+ if (wmi_scanparams_cmd(ar->arWmi, scParams.fg_start_period, -+ scParams.fg_end_period, -+ scParams.bg_period, -+ scParams.minact_chdwell_time, -+ scParams.maxact_chdwell_time, -+ scParams.pas_chdwell_time, -+ scParams.shortScanRatio, -+ scParams.scanCtrlFlags, -+ scParams.max_dfsch_act_time) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SETLISTENINT: -+ { -+ WMI_LISTEN_INT_CMD listenCmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&listenCmd, userdata, -+ sizeof(listenCmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_listeninterval_cmd(ar->arWmi, listenCmd.listenInterval, listenCmd.numBeacons) != A_OK) { -+ ret = -EIO; -+ } else { -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ ar->arListenInterval = param; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ } -+ -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_BMISS_TIME: -+ { -+ WMI_BMISS_TIME_CMD bmissCmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&bmissCmd, userdata, -+ sizeof(bmissCmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_bmisstime_cmd(ar->arWmi, bmissCmd.bmissTime, bmissCmd.numBeacons) != A_OK) { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SETBSSFILTER: -+ { -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else { -+ -+ get_user(param, (unsigned char *)userdata); -+ get_user(param2, (unsigned int *)(userdata + 1)); -+ printk("SETBSSFILTER: filter 0x%x, mask: 0x%x\n", param, param2); -+ if (wmi_bssfilter_cmd(ar->arWmi, param, param2) != A_OK) { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_SNRTHRESHOLD: -+ { -+ ret = ar6000_ioctl_set_snr_threshold(dev, rq); -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_RSSITHRESHOLD: -+ { -+ ret = ar6000_ioctl_set_rssi_threshold(dev, rq); -+ break; -+ } -+ case AR6000_XIOCTL_WMI_CLR_RSSISNR: -+ { -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } -+ ret = wmi_clr_rssi_snr(ar->arWmi); -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_LQTHRESHOLD: -+ { -+ ret = ar6000_ioctl_set_lq_threshold(dev, rq); -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_LPREAMBLE: -+ { -+ WMI_SET_LPREAMBLE_CMD setLpreambleCmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setLpreambleCmd, userdata, -+ sizeof(setLpreambleCmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_lpreamble_cmd(ar->arWmi, setLpreambleCmd.status) -+ != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_RTS: -+ { -+ WMI_SET_RTS_CMD rtsCmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&rtsCmd, userdata, -+ sizeof(rtsCmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_rts_cmd(ar->arWmi, rtsCmd.threshold) -+ != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_WMM: -+ { -+ ret = ar6000_ioctl_set_wmm(dev, rq); -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_TXOP: -+ { -+ ret = ar6000_ioctl_set_txop(dev, rq); -+ break; -+ } -+ case AR6000_XIOCTL_WMI_GET_RD: -+ { -+ ret = ar6000_ioctl_get_rd(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_CHANNELPARAMS: -+ { -+ ret = ar6000_ioctl_set_channelParams(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_PROBEDSSID: -+ { -+ ret = ar6000_ioctl_set_probedSsid(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_BADAP: -+ { -+ ret = ar6000_ioctl_set_badAp(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_CREATE_QOS: -+ { -+ ret = ar6000_ioctl_create_qos(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_DELETE_QOS: -+ { -+ ret = ar6000_ioctl_delete_qos(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_GET_QOS_QUEUE: -+ { -+ ret = ar6000_ioctl_get_qos_queue(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_GET_TARGET_STATS: -+ { -+ ret = ar6000_ioctl_get_target_stats(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_ERROR_REPORT_BITMASK: -+ { -+ ret = ar6000_ioctl_set_error_report_bitmask(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_ASSOC_INFO: -+ { -+ WMI_SET_ASSOC_INFO_CMD cmd; -+ A_UINT8 assocInfo[WMI_MAX_ASSOC_INFO_LEN]; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else { -+ get_user(cmd.ieType, userdata); -+ if (cmd.ieType >= WMI_MAX_ASSOC_INFO_TYPE) { -+ ret = -EIO; -+ } else { -+ get_user(cmd.bufferSize, userdata + 1); -+ if (cmd.bufferSize > WMI_MAX_ASSOC_INFO_LEN) { -+ ret = -EFAULT; -+ break; -+ } -+ if (copy_from_user(assocInfo, userdata + 2, -+ cmd.bufferSize)) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_associnfo_cmd(ar->arWmi, cmd.ieType, -+ cmd.bufferSize, -+ assocInfo) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ } -+ } -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_ACCESS_PARAMS: -+ { -+ ret = ar6000_ioctl_set_access_params(dev, rq); -+ break; -+ } -+ case AR6000_IOCTL_WMI_SET_DISC_TIMEOUT: -+ { -+ ret = ar6000_ioctl_set_disconnect_timeout(dev, rq); -+ break; -+ } -+ case AR6000_XIOCTL_FORCE_TARGET_RESET: -+ { -+ if (ar->arHtcTarget) -+ { -+// HTCForceReset(htcTarget); -+ } -+ else -+ { -+ AR_DEBUG_PRINTF("ar6000_ioctl cannot attempt reset.\n"); -+ } -+ break; -+ } -+ case AR6000_XIOCTL_TARGET_INFO: -+ case AR6000_XIOCTL_CHECK_TARGET_READY: /* backwards compatibility */ -+ { -+ /* If we made it to here, then the Target exists and is ready. */ -+ -+ if (cmd == AR6000_XIOCTL_TARGET_INFO) { -+ if (copy_to_user((A_UINT32 *)rq->ifr_data, &ar->arVersion.target_ver, -+ sizeof(ar->arVersion.target_ver))) -+ { -+ ret = -EFAULT; -+ } -+ if (copy_to_user(((A_UINT32 *)rq->ifr_data)+1, &ar->arTargetType, -+ sizeof(ar->arTargetType))) -+ { -+ ret = -EFAULT; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_HB_CHALLENGE_RESP_PARAMS: -+ { -+ WMI_SET_HB_CHALLENGE_RESP_PARAMS_CMD hbparam; -+ -+ if (copy_from_user(&hbparam, userdata, sizeof(hbparam))) -+ { -+ ret = -EFAULT; -+ } else { -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ /* Start a cyclic timer with the parameters provided. */ -+ if (hbparam.frequency) { -+ ar->arHBChallengeResp.frequency = hbparam.frequency; -+ } -+ if (hbparam.threshold) { -+ ar->arHBChallengeResp.missThres = hbparam.threshold; -+ } -+ -+ /* Delete the pending timer and start a new one */ -+ if (timer_pending(&ar->arHBChallengeResp.timer)) { -+ A_UNTIMEOUT(&ar->arHBChallengeResp.timer); -+ } -+ A_TIMEOUT_MS(&ar->arHBChallengeResp.timer, ar->arHBChallengeResp.frequency * 1000, 0); -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_GET_HB_CHALLENGE_RESP: -+ { -+ A_UINT32 cookie; -+ -+ if (copy_from_user(&cookie, userdata, sizeof(cookie))) { -+ return -EFAULT; -+ } -+ -+ /* Send the challenge on the control channel */ -+ if (wmi_get_challenge_resp_cmd(ar->arWmi, cookie, APP_HB_CHALLENGE) != A_OK) { -+ return -EIO; -+ } -+ break; -+ } -+#ifdef USER_KEYS -+ case AR6000_XIOCTL_USER_SETKEYS: -+ { -+ -+ ar->user_savedkeys_stat = USER_SAVEDKEYS_STAT_RUN; -+ -+ if (copy_from_user(&ar->user_key_ctrl, userdata, -+ sizeof(ar->user_key_ctrl))) -+ { -+ return -EFAULT; -+ } -+ -+ A_PRINTF("ar6000 USER set key %x\n", ar->user_key_ctrl); -+ break; -+ } -+#endif /* USER_KEYS */ -+ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+ case AR6000_XIOCTL_GPIO_OUTPUT_SET: -+ { -+ struct ar6000_gpio_output_set_cmd_s gpio_output_set_cmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ -+ if (copy_from_user(&gpio_output_set_cmd, userdata, -+ sizeof(gpio_output_set_cmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ ret = ar6000_gpio_output_set(dev, -+ gpio_output_set_cmd.set_mask, -+ gpio_output_set_cmd.clear_mask, -+ gpio_output_set_cmd.enable_mask, -+ gpio_output_set_cmd.disable_mask); -+ if (ret != A_OK) { -+ ret = EIO; -+ } -+ } -+ up(&ar->arSem); -+ break; -+ } -+ case AR6000_XIOCTL_GPIO_INPUT_GET: -+ { -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ -+ ret = ar6000_gpio_input_get(dev); -+ if (ret != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ -+ /* Wait for Target to respond. */ -+ wait_event_interruptible(arEvent, gpio_data_available); -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } else { -+ A_ASSERT(gpio_reg_results.gpioreg_id == GPIO_ID_NONE); -+ -+ if (copy_to_user(userdata, &gpio_reg_results.value, -+ sizeof(gpio_reg_results.value))) -+ { -+ ret = -EFAULT; -+ } -+ } -+ up(&ar->arSem); -+ break; -+ } -+ case AR6000_XIOCTL_GPIO_REGISTER_SET: -+ { -+ struct ar6000_gpio_register_cmd_s gpio_register_cmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ -+ if (copy_from_user(&gpio_register_cmd, userdata, -+ sizeof(gpio_register_cmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ ret = ar6000_gpio_register_set(dev, -+ gpio_register_cmd.gpioreg_id, -+ gpio_register_cmd.value); -+ if (ret != A_OK) { -+ ret = EIO; -+ } -+ -+ /* Wait for acknowledgement from Target */ -+ wait_event_interruptible(arEvent, gpio_ack_received); -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } -+ } -+ up(&ar->arSem); -+ break; -+ } -+ case AR6000_XIOCTL_GPIO_REGISTER_GET: -+ { -+ struct ar6000_gpio_register_cmd_s gpio_register_cmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ -+ if (copy_from_user(&gpio_register_cmd, userdata, -+ sizeof(gpio_register_cmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ ret = ar6000_gpio_register_get(dev, gpio_register_cmd.gpioreg_id); -+ if (ret != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ -+ /* Wait for Target to respond. */ -+ wait_event_interruptible(arEvent, gpio_data_available); -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } else { -+ A_ASSERT(gpio_register_cmd.gpioreg_id == gpio_reg_results.gpioreg_id); -+ if (copy_to_user(userdata, &gpio_reg_results, -+ sizeof(gpio_reg_results))) -+ { -+ ret = -EFAULT; -+ } -+ } -+ } -+ up(&ar->arSem); -+ break; -+ } -+ case AR6000_XIOCTL_GPIO_INTR_ACK: -+ { -+ struct ar6000_gpio_intr_ack_cmd_s gpio_intr_ack_cmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ -+ if (copy_from_user(&gpio_intr_ack_cmd, userdata, -+ sizeof(gpio_intr_ack_cmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ ret = ar6000_gpio_intr_ack(dev, gpio_intr_ack_cmd.ack_mask); -+ if (ret != A_OK) { -+ ret = EIO; -+ } -+ } -+ up(&ar->arSem); -+ break; -+ } -+ case AR6000_XIOCTL_GPIO_INTR_WAIT: -+ { -+ /* Wait for Target to report an interrupt. */ -+ dev_hold(dev); -+ rtnl_unlock(); -+ wait_event_interruptible(arEvent, gpio_intr_available); -+ rtnl_lock(); -+ __dev_put(dev); -+ -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } else { -+ if (copy_to_user(userdata, &gpio_intr_results, -+ sizeof(gpio_intr_results))) -+ { -+ ret = -EFAULT; -+ } -+ } -+ break; -+ } -+#endif /* CONFIG_HOST_GPIO_SUPPORT */ -+ -+ case AR6000_XIOCTL_DBGLOG_CFG_MODULE: -+ { -+ struct ar6000_dbglog_module_config_s config; -+ -+ if (copy_from_user(&config, userdata, sizeof(config))) { -+ return -EFAULT; -+ } -+ -+ /* Send the challenge on the control channel */ -+ if (wmi_config_debug_module_cmd(ar->arWmi, config.mmask, -+ config.tsr, config.rep, -+ config.size, config.valid) != A_OK) -+ { -+ return -EIO; -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_DBGLOG_GET_DEBUG_LOGS: -+ { -+ /* Send the challenge on the control channel */ -+ if (ar6000_dbglog_get_debug_logs(ar) != A_OK) -+ { -+ return -EIO; -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_SET_ADHOC_BSSID: -+ { -+ WMI_SET_ADHOC_BSSID_CMD adhocBssid; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&adhocBssid, userdata, -+ sizeof(adhocBssid))) -+ { -+ ret = -EFAULT; -+ } else if (A_MEMCMP(adhocBssid.bssid, bcast_mac, -+ AR6000_ETH_ADDR_LEN) == 0) -+ { -+ ret = -EFAULT; -+ } else { -+ -+ A_MEMCPY(ar->arReqBssid, adhocBssid.bssid, sizeof(ar->arReqBssid)); -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_SET_OPT_MODE: -+ { -+ WMI_SET_OPT_MODE_CMD optModeCmd; -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&optModeCmd, userdata, -+ sizeof(optModeCmd))) -+ { -+ ret = -EFAULT; -+ } else if (ar->arConnected && optModeCmd.optMode == SPECIAL_ON) { -+ ret = -EFAULT; -+ -+ } else if (wmi_set_opt_mode_cmd(ar->arWmi, optModeCmd.optMode) -+ != A_OK) -+ { -+ ret = -EIO; -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_OPT_SEND_FRAME: -+ { -+ WMI_OPT_TX_FRAME_CMD optTxFrmCmd; -+ A_UINT8 data[MAX_OPT_DATA_LEN]; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&optTxFrmCmd, userdata, -+ sizeof(optTxFrmCmd))) -+ { -+ ret = -EFAULT; -+ } else if (copy_from_user(data, -+ userdata+sizeof(WMI_OPT_TX_FRAME_CMD)-1, -+ optTxFrmCmd.optIEDataLen)) -+ { -+ ret = -EFAULT; -+ } else { -+ ret = wmi_opt_tx_frame_cmd(ar->arWmi, -+ optTxFrmCmd.frmType, -+ optTxFrmCmd.dstAddr, -+ optTxFrmCmd.bssid, -+ optTxFrmCmd.optIEDataLen, -+ data); -+ } -+ -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SETRETRYLIMITS: -+ { -+ WMI_SET_RETRY_LIMITS_CMD setRetryParams; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setRetryParams, userdata, -+ sizeof(setRetryParams))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_retry_limits_cmd(ar->arWmi, setRetryParams.frameType, -+ setRetryParams.trafficClass, -+ setRetryParams.maxRetries, -+ setRetryParams.enableNotify) != A_OK) -+ { -+ ret = -EIO; -+ } -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ ar->arMaxRetries = setRetryParams.maxRetries; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_SET_ADHOC_BEACON_INTVAL: -+ { -+ WMI_BEACON_INT_CMD bIntvlCmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&bIntvlCmd, userdata, -+ sizeof(bIntvlCmd))) -+ { -+ ret = -EFAULT; -+ } else if (wmi_set_adhoc_bconIntvl_cmd(ar->arWmi, bIntvlCmd.beaconInterval) -+ != A_OK) -+ { -+ ret = -EIO; -+ } -+ break; -+ } -+ case IEEE80211_IOCTL_SETAUTHALG: -+ { -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct ieee80211req_authalg req; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&req, userdata, -+ sizeof(struct ieee80211req_authalg))) -+ { -+ ret = -EFAULT; -+ } else if (req.auth_alg == AUTH_ALG_OPEN_SYSTEM) { -+ ar->arDot11AuthMode = OPEN_AUTH; -+ ar->arPairwiseCrypto = NONE_CRYPT; -+ ar->arGroupCrypto = NONE_CRYPT; -+ } else if (req.auth_alg == AUTH_ALG_LEAP) { -+ ar->arDot11AuthMode = LEAP_AUTH; -+ } else { -+ ret = -EIO; -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_SET_VOICE_PKT_SIZE: -+ ret = ar6000_xioctl_set_voice_pkt_size(dev, userdata); -+ break; -+ -+ case AR6000_XIOCTL_SET_MAX_SP: -+ ret = ar6000_xioctl_set_max_sp_len(dev, userdata); -+ break; -+ -+ case AR6000_XIOCTL_WMI_GET_ROAM_TBL: -+ ret = ar6000_ioctl_get_roam_tbl(dev, rq); -+ break; -+ case AR6000_XIOCTL_WMI_SET_ROAM_CTRL: -+ ret = ar6000_ioctl_set_roam_ctrl(dev, userdata); -+ break; -+ case AR6000_XIOCTRL_WMI_SET_POWERSAVE_TIMERS: -+ ret = ar6000_ioctl_set_powersave_timers(dev, userdata); -+ break; -+ case AR6000_XIOCTRL_WMI_GET_POWER_MODE: -+ ret = ar6000_ioctl_get_power_mode(dev, rq); -+ break; -+ case AR6000_XIOCTRL_WMI_SET_WLAN_STATE: -+ get_user(ar->arWlanState, (unsigned int *)userdata); -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ break; -+ } -+ -+ if (ar->arWlanState == WLAN_ENABLED) { -+ /* Enable foreground scanning */ -+ if (wmi_scanparams_cmd(ar->arWmi, scParams.fg_start_period, -+ scParams.fg_end_period, -+ scParams.bg_period, -+ scParams.minact_chdwell_time, -+ scParams.maxact_chdwell_time, -+ scParams.pas_chdwell_time, -+ scParams.shortScanRatio, -+ scParams.scanCtrlFlags, -+ scParams.max_dfsch_act_time) != A_OK) -+ { -+ ret = -EIO; -+ } -+ if (ar->arSsidLen) { -+ ar->arConnectPending = TRUE; -+ if (wmi_connect_cmd(ar->arWmi, ar->arNetworkType, -+ ar->arDot11AuthMode, ar->arAuthMode, -+ ar->arPairwiseCrypto, -+ ar->arPairwiseCryptoLen, -+ ar->arGroupCrypto, ar->arGroupCryptoLen, -+ ar->arSsidLen, ar->arSsid, -+ ar->arReqBssid, ar->arChannelHint, -+ ar->arConnectCtrlFlags) != A_OK) -+ { -+ ret = -EIO; -+ ar->arConnectPending = FALSE; -+ } -+ } -+ } else { -+ /* Disconnect from the AP and disable foreground scanning */ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ if (ar->arConnected == TRUE || ar->arConnectPending == TRUE) { -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ wmi_disconnect_cmd(ar->arWmi); -+ } else { -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ } -+ -+ if (wmi_scanparams_cmd(ar->arWmi, 0xFFFF, 0, 0, 0, 0, 0, 0, 0xFF, 0) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ case AR6000_XIOCTL_WMI_GET_ROAM_DATA: -+ ret = ar6000_ioctl_get_roam_data(dev, rq); -+ break; -+ case AR6000_XIOCTL_WMI_SET_BT_STATUS: -+ ret = ar6000_xioctl_set_bt_status_cmd(dev, userdata); -+ break; -+ case AR6000_XIOCTL_WMI_SET_BT_PARAMS: -+ ret = ar6000_xioctl_set_bt_params_cmd(dev, userdata); -+ break; -+ case AR6000_XIOCTL_WMI_STARTSCAN: -+ { -+ WMI_START_SCAN_CMD setStartScanCmd; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setStartScanCmd, userdata, -+ sizeof(setStartScanCmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_startscan_cmd(ar->arWmi, setStartScanCmd.scanType, -+ setStartScanCmd.forceFgScan, -+ setStartScanCmd.isLegacy, -+ setStartScanCmd.homeDwellTime, -+ setStartScanCmd.forceScanInterval) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SETFIXRATES: -+ { -+ WMI_FIX_RATES_CMD setFixRatesCmd; -+ A_STATUS returnStatus; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setFixRatesCmd, userdata, -+ sizeof(setFixRatesCmd))) -+ { -+ ret = -EFAULT; -+ } else { -+ returnStatus = wmi_set_fixrates_cmd(ar->arWmi, setFixRatesCmd.fixRateMask); -+ if (returnStatus == A_EINVAL) -+ { -+ ret = -EINVAL; -+ } -+ else if(returnStatus != A_OK) { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_WMI_GETFIXRATES: -+ { -+ WMI_FIX_RATES_CMD getFixRatesCmd; -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ /* Used copy_from_user/copy_to_user to access user space data */ -+ if (copy_from_user(&getFixRatesCmd, userdata, sizeof(getFixRatesCmd))) { -+ ret = -EFAULT; -+ } else { -+ ar->arRateMask = 0xFFFF; -+ -+ if (wmi_get_ratemask_cmd(ar->arWmi) != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ -+ wait_event_interruptible_timeout(arEvent, ar->arRateMask != 0xFFFF, wmitimeout * HZ); -+ -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } -+ -+ if (!ret) { -+ getFixRatesCmd.fixRateMask = ar->arRateMask; -+ } -+ -+ if(copy_to_user(userdata, &getFixRatesCmd, sizeof(getFixRatesCmd))) { -+ ret = -EFAULT; -+ } -+ -+ up(&ar->arSem); -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_AUTHMODE: -+ { -+ WMI_SET_AUTH_MODE_CMD setAuthMode; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setAuthMode, userdata, -+ sizeof(setAuthMode))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_authmode_cmd(ar->arWmi, setAuthMode.mode) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_REASSOCMODE: -+ { -+ WMI_SET_REASSOC_MODE_CMD setReassocMode; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setReassocMode, userdata, -+ sizeof(setReassocMode))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_reassocmode_cmd(ar->arWmi, setReassocMode.mode) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_DIAG_READ: -+ { -+ A_UINT32 addr, data; -+ get_user(addr, (unsigned int *)userdata); -+ if (ar6000_ReadRegDiag(ar->arHifDevice, &addr, &data) != A_OK) { -+ ret = -EIO; -+ } -+ put_user(data, (unsigned int *)userdata + 1); -+ break; -+ } -+ case AR6000_XIOCTL_DIAG_WRITE: -+ { -+ A_UINT32 addr, data; -+ get_user(addr, (unsigned int *)userdata); -+ get_user(data, (unsigned int *)userdata + 1); -+ if (ar6000_WriteRegDiag(ar->arHifDevice, &addr, &data) != A_OK) { -+ ret = -EIO; -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_KEEPALIVE: -+ { -+ WMI_SET_KEEPALIVE_CMD setKeepAlive; -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } else if (copy_from_user(&setKeepAlive, userdata, -+ sizeof(setKeepAlive))){ -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_keepalive_cmd(ar->arWmi, setKeepAlive.keepaliveInterval) != A_OK) { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_GET_KEEPALIVE: -+ { -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ WMI_GET_KEEPALIVE_CMD getKeepAlive; -+ int ret = 0; -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ if (copy_from_user(&getKeepAlive, userdata,sizeof(getKeepAlive))) { -+ ret = -EFAULT; -+ } else { -+ getKeepAlive.keepaliveInterval = wmi_get_keepalive_cmd(ar->arWmi); -+ ar->arKeepaliveConfigured = 0xFF; -+ if (wmi_get_keepalive_configured(ar->arWmi) != A_OK){ -+ up(&ar->arSem); -+ return -EIO; -+ } -+ wait_event_interruptible_timeout(arEvent, ar->arKeepaliveConfigured != 0xFF, wmitimeout * HZ); -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } -+ -+ if (!ret) { -+ getKeepAlive.configured = ar->arKeepaliveConfigured; -+ } -+ if (copy_to_user(userdata, &getKeepAlive, sizeof(getKeepAlive))) { -+ ret = -EFAULT; -+ } -+ up(&ar->arSem); -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_APPIE: -+ { -+ WMI_SET_APPIE_CMD appIEcmd; -+ A_UINT8 appIeInfo[IEEE80211_APPIE_FRAME_MAX_LEN]; -+ A_UINT32 fType,ieLen; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ get_user(fType, (A_UINT32 *)userdata); -+ appIEcmd.mgmtFrmType = fType; -+ if (appIEcmd.mgmtFrmType >= IEEE80211_APPIE_NUM_OF_FRAME) { -+ ret = -EIO; -+ } else { -+ get_user(ieLen, (A_UINT32 *)(userdata + 4)); -+ appIEcmd.ieLen = ieLen; -+ if (appIEcmd.ieLen > IEEE80211_APPIE_FRAME_MAX_LEN) { -+ ret = -EIO; -+ break; -+ } -+ if (copy_from_user(appIeInfo, userdata + 8, appIEcmd.ieLen)) { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_appie_cmd(ar->arWmi, appIEcmd.mgmtFrmType, -+ appIEcmd.ieLen, appIeInfo) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_MGMT_FRM_RX_FILTER: -+ { -+ WMI_BSS_FILTER_CMD cmd; -+ A_UINT32 filterType; -+ -+ if (copy_from_user(&filterType, userdata, sizeof(A_UINT32))) -+ { -+ return -EFAULT; -+ } -+ if (filterType & (IEEE80211_FILTER_TYPE_BEACON | -+ IEEE80211_FILTER_TYPE_PROBE_RESP)) -+ { -+ cmd.bssFilter = ALL_BSS_FILTER; -+ } else { -+ cmd.bssFilter = NONE_BSS_FILTER; -+ } -+ if (wmi_bssfilter_cmd(ar->arWmi, cmd.bssFilter, 0) != A_OK) { -+ ret = -EIO; -+ } -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ ar->arMgmtFilter = filterType; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_WSC_STATUS: -+ { -+ A_UINT32 wsc_status; -+ -+ if (copy_from_user(&wsc_status, userdata, sizeof(A_UINT32))) -+ { -+ return -EFAULT; -+ } -+ if (wmi_set_wsc_status_cmd(ar->arWmi, wsc_status) != A_OK) { -+ ret = -EIO; -+ } -+ break; -+ } -+ case AR6000_XIOCTL_BMI_ROMPATCH_INSTALL: -+ { -+ A_UINT32 ROM_addr; -+ A_UINT32 RAM_addr; -+ A_UINT32 nbytes; -+ A_UINT32 do_activate; -+ A_UINT32 rompatch_id; -+ -+ get_user(ROM_addr, (A_UINT32 *)userdata); -+ get_user(RAM_addr, (A_UINT32 *)userdata + 1); -+ get_user(nbytes, (A_UINT32 *)userdata + 2); -+ get_user(do_activate, (A_UINT32 *)userdata + 3); -+ AR_DEBUG_PRINTF("Install rompatch from ROM: 0x%x to RAM: 0x%x length: %d\n", -+ ROM_addr, RAM_addr, nbytes); -+ ret = BMIrompatchInstall(hifDevice, ROM_addr, RAM_addr, -+ nbytes, do_activate, &rompatch_id); -+ if (ret == A_OK) { -+ put_user(rompatch_id, (unsigned int *)rq->ifr_data); /* return value */ -+ } -+ break; -+ } -+ -+ case AR6000_XIOCTL_BMI_ROMPATCH_UNINSTALL: -+ { -+ A_UINT32 rompatch_id; -+ -+ get_user(rompatch_id, (A_UINT32 *)userdata); -+ AR_DEBUG_PRINTF("UNinstall rompatch_id %d\n", rompatch_id); -+ ret = BMIrompatchUninstall(hifDevice, rompatch_id); -+ break; -+ } -+ -+ case AR6000_XIOCTL_BMI_ROMPATCH_ACTIVATE: -+ case AR6000_XIOCTL_BMI_ROMPATCH_DEACTIVATE: -+ { -+ A_UINT32 rompatch_count; -+ -+ get_user(rompatch_count, (A_UINT32 *)userdata); -+ AR_DEBUG_PRINTF("Change rompatch activation count=%d\n", rompatch_count); -+ length = sizeof(A_UINT32) * rompatch_count; -+ if ((buffer = (unsigned char *)A_MALLOC(length)) != NULL) { -+ A_MEMZERO(buffer, length); -+ if (copy_from_user(buffer, &userdata[sizeof(rompatch_count)], length)) -+ { -+ ret = -EFAULT; -+ } else { -+ if (cmd == AR6000_XIOCTL_BMI_ROMPATCH_ACTIVATE) { -+ ret = BMIrompatchActivate(hifDevice, rompatch_count, (A_UINT32 *)buffer); -+ } else { -+ ret = BMIrompatchDeactivate(hifDevice, rompatch_count, (A_UINT32 *)buffer); -+ } -+ } -+ A_FREE(buffer); -+ } else { -+ ret = -ENOMEM; -+ } -+ -+ break; -+ } -+ -+ case AR6000_XIOCTL_WMI_SET_HOST_SLEEP_MODE: -+ { -+ WMI_SET_HOST_SLEEP_MODE_CMD setHostSleepMode; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setHostSleepMode, userdata, -+ sizeof(setHostSleepMode))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_host_sleep_mode_cmd(ar->arWmi, -+ &setHostSleepMode) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_SET_WOW_MODE: -+ { -+ WMI_SET_WOW_MODE_CMD setWowMode; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&setWowMode, userdata, -+ sizeof(setWowMode))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_wow_mode_cmd(ar->arWmi, -+ &setWowMode) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_GET_WOW_LIST: -+ { -+ WMI_GET_WOW_LIST_CMD getWowList; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&getWowList, userdata, -+ sizeof(getWowList))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_get_wow_list_cmd(ar->arWmi, -+ &getWowList) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_WMI_ADD_WOW_PATTERN: -+ { -+#define WOW_PATTERN_SIZE 64 -+#define WOW_MASK_SIZE 64 -+ -+ WMI_ADD_WOW_PATTERN_CMD cmd; -+ A_UINT8 mask_data[WOW_PATTERN_SIZE]={0}; -+ A_UINT8 pattern_data[WOW_PATTERN_SIZE]={0}; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else { -+ -+ if(copy_from_user(&cmd, userdata, -+ sizeof(WMI_ADD_WOW_PATTERN_CMD))) -+ return -EFAULT; -+ if (copy_from_user(pattern_data, -+ userdata + 3, -+ cmd.filter_size)){ -+ ret = -EFAULT; -+ break; -+ } -+ if (copy_from_user(mask_data, -+ (userdata + 3 + cmd.filter_size), -+ cmd.filter_size)){ -+ ret = -EFAULT; -+ break; -+ } else { -+ if (wmi_add_wow_pattern_cmd(ar->arWmi, -+ &cmd, pattern_data, mask_data, cmd.filter_size) != A_OK){ -+ ret = -EIO; -+ } -+ } -+ } -+#undef WOW_PATTERN_SIZE -+#undef WOW_MASK_SIZE -+ break; -+ } -+ case AR6000_XIOCTL_WMI_DEL_WOW_PATTERN: -+ { -+ WMI_DEL_WOW_PATTERN_CMD delWowPattern; -+ -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&delWowPattern, userdata, -+ sizeof(delWowPattern))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_del_wow_pattern_cmd(ar->arWmi, -+ &delWowPattern) != A_OK) -+ { -+ ret = -EIO; -+ } -+ } -+ break; -+ } -+ case AR6000_XIOCTL_DUMP_HTC_CREDIT_STATE: -+ if (ar->arHtcTarget != NULL) { -+ HTCDumpCreditStates(ar->arHtcTarget); -+ } -+ break; -+ case AR6000_XIOCTL_TRAFFIC_ACTIVITY_CHANGE: -+ if (ar->arHtcTarget != NULL) { -+ struct ar6000_traffic_activity_change data; -+ -+ if (copy_from_user(&data, userdata, sizeof(data))) -+ { -+ return -EFAULT; -+ } -+ /* note, this is used for testing (mbox ping testing), indicate activity -+ * change using the stream ID as the traffic class */ -+ ar6000_indicate_tx_activity(ar, -+ (A_UINT8)data.StreamID, -+ data.Active ? TRUE : FALSE); -+ } -+ break; -+ case AR6000_XIOCTL_WMI_SET_CONNECT_CTRL_FLAGS: -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&connectCtrlFlags, userdata, -+ sizeof(connectCtrlFlags))) -+ { -+ ret = -EFAULT; -+ } else { -+ ar->arConnectCtrlFlags = connectCtrlFlags; -+ } -+ break; -+ case AR6000_XIOCTL_WMI_SET_AKMP_PARAMS: -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else if (copy_from_user(&akmpParams, userdata, -+ sizeof(WMI_SET_AKMP_PARAMS_CMD))) -+ { -+ ret = -EFAULT; -+ } else { -+ if (wmi_set_akmp_params_cmd(ar->arWmi, &akmpParams) != A_OK) { -+ ret = -EIO; -+ } -+ } -+ break; -+ case AR6000_XIOCTL_WMI_SET_PMKID_LIST: -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else { -+ if (copy_from_user(&pmkidInfo.numPMKID, userdata, -+ sizeof(pmkidInfo.numPMKID))) -+ { -+ ret = -EFAULT; -+ break; -+ } -+ if (copy_from_user(&pmkidInfo.pmkidList, -+ userdata + sizeof(pmkidInfo.numPMKID), -+ pmkidInfo.numPMKID * sizeof(WMI_PMKID))) -+ { -+ ret = -EFAULT; -+ break; -+ } -+ if (wmi_set_pmkid_list_cmd(ar->arWmi, &pmkidInfo) != A_OK) { -+ ret = -EIO; -+ } -+ } -+ break; -+ case AR6000_XIOCTL_WMI_GET_PMKID_LIST: -+ if (ar->arWmiReady == FALSE) { -+ ret = -EIO; -+ } else { -+ if (wmi_get_pmkid_list_cmd(ar->arWmi) != A_OK) { -+ ret = -EIO; -+ } -+ } -+ break; -+ default: -+ ret = -EOPNOTSUPP; -+ } -+ return ret; -+} -+ ---- /dev/null -+++ b/drivers/ar6000/ar6000/netbuf.c -@@ -0,0 +1,225 @@ -+ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+#include <linux/kernel.h> -+#include <linux/skbuff.h> -+#include <a_config.h> -+#include "athdefs.h" -+#include "a_types.h" -+#include "a_osapi.h" -+#include "htc_packet.h" -+ -+#define AR6000_DATA_OFFSET 64 -+ -+void a_netbuf_enqueue(A_NETBUF_QUEUE_T *q, void *pkt) -+{ -+ skb_queue_tail((struct sk_buff_head *) q, (struct sk_buff *) pkt); -+} -+ -+void a_netbuf_prequeue(A_NETBUF_QUEUE_T *q, void *pkt) -+{ -+ skb_queue_head((struct sk_buff_head *) q, (struct sk_buff *) pkt); -+} -+ -+void *a_netbuf_dequeue(A_NETBUF_QUEUE_T *q) -+{ -+ return((void *) skb_dequeue((struct sk_buff_head *) q)); -+} -+ -+int a_netbuf_queue_size(A_NETBUF_QUEUE_T *q) -+{ -+ return(skb_queue_len((struct sk_buff_head *) q)); -+} -+ -+int a_netbuf_queue_empty(A_NETBUF_QUEUE_T *q) -+{ -+ return(skb_queue_empty((struct sk_buff_head *) q)); -+} -+ -+void a_netbuf_queue_init(A_NETBUF_QUEUE_T *q) -+{ -+ skb_queue_head_init((struct sk_buff_head *) q); -+} -+ -+void * -+a_netbuf_alloc(int size) -+{ -+ struct sk_buff *skb; -+ skb = dev_alloc_skb(AR6000_DATA_OFFSET + sizeof(HTC_PACKET) + size); -+ skb_reserve(skb, AR6000_DATA_OFFSET + sizeof(HTC_PACKET)); -+ return ((void *)skb); -+} -+ -+/* -+ * Allocate an SKB w.o. any encapsulation requirement. -+ */ -+void * -+a_netbuf_alloc_raw(int size) -+{ -+ struct sk_buff *skb; -+ -+ skb = dev_alloc_skb(size); -+ -+ return ((void *)skb); -+} -+ -+void -+a_netbuf_free(void *bufPtr) -+{ -+ struct sk_buff *skb = (struct sk_buff *)bufPtr; -+ -+ dev_kfree_skb(skb); -+} -+ -+A_UINT32 -+a_netbuf_to_len(void *bufPtr) -+{ -+ return (((struct sk_buff *)bufPtr)->len); -+} -+ -+void * -+a_netbuf_to_data(void *bufPtr) -+{ -+ return (((struct sk_buff *)bufPtr)->data); -+} -+ -+/* -+ * Add len # of bytes to the beginning of the network buffer -+ * pointed to by bufPtr -+ */ -+A_STATUS -+a_netbuf_push(void *bufPtr, A_INT32 len) -+{ -+ skb_push((struct sk_buff *)bufPtr, len); -+ -+ return A_OK; -+} -+ -+/* -+ * Add len # of bytes to the beginning of the network buffer -+ * pointed to by bufPtr and also fill with data -+ */ -+A_STATUS -+a_netbuf_push_data(void *bufPtr, char *srcPtr, A_INT32 len) -+{ -+ skb_push((struct sk_buff *) bufPtr, len); -+ A_MEMCPY(((struct sk_buff *)bufPtr)->data, srcPtr, len); -+ -+ return A_OK; -+} -+ -+/* -+ * Add len # of bytes to the end of the network buffer -+ * pointed to by bufPtr -+ */ -+A_STATUS -+a_netbuf_put(void *bufPtr, A_INT32 len) -+{ -+ skb_put((struct sk_buff *)bufPtr, len); -+ -+ return A_OK; -+} -+ -+/* -+ * Add len # of bytes to the end of the network buffer -+ * pointed to by bufPtr and also fill with data -+ */ -+A_STATUS -+a_netbuf_put_data(void *bufPtr, char *srcPtr, A_INT32 len) -+{ -+ char *start = ((struct sk_buff *)bufPtr)->data + -+ ((struct sk_buff *)bufPtr)->len; -+ skb_put((struct sk_buff *)bufPtr, len); -+ A_MEMCPY(start, srcPtr, len); -+ -+ return A_OK; -+} -+ -+ -+/* -+ * Trim the network buffer pointed to by bufPtr to len # of bytes -+ */ -+A_STATUS -+a_netbuf_setlen(void *bufPtr, A_INT32 len) -+{ -+ skb_trim((struct sk_buff *)bufPtr, len); -+ -+ return A_OK; -+} -+ -+/* -+ * Chop of len # of bytes from the end of the buffer. -+ */ -+A_STATUS -+a_netbuf_trim(void *bufPtr, A_INT32 len) -+{ -+ skb_trim((struct sk_buff *)bufPtr, ((struct sk_buff *)bufPtr)->len - len); -+ -+ return A_OK; -+} -+ -+/* -+ * Chop of len # of bytes from the end of the buffer and return the data. -+ */ -+A_STATUS -+a_netbuf_trim_data(void *bufPtr, char *dstPtr, A_INT32 len) -+{ -+ char *start = ((struct sk_buff *)bufPtr)->data + -+ (((struct sk_buff *)bufPtr)->len - len); -+ -+ A_MEMCPY(dstPtr, start, len); -+ skb_trim((struct sk_buff *)bufPtr, ((struct sk_buff *)bufPtr)->len - len); -+ -+ return A_OK; -+} -+ -+ -+/* -+ * Returns the number of bytes available to a a_netbuf_push() -+ */ -+A_INT32 -+a_netbuf_headroom(void *bufPtr) -+{ -+ return (skb_headroom((struct sk_buff *)bufPtr)); -+} -+ -+/* -+ * Removes specified number of bytes from the beginning of the buffer -+ */ -+A_STATUS -+a_netbuf_pull(void *bufPtr, A_INT32 len) -+{ -+ skb_pull((struct sk_buff *)bufPtr, len); -+ -+ return A_OK; -+} -+ -+/* -+ * Removes specified number of bytes from the beginning of the buffer -+ * and return the data -+ */ -+A_STATUS -+a_netbuf_pull_data(void *bufPtr, char *dstPtr, A_INT32 len) -+{ -+ A_MEMCPY(dstPtr, ((struct sk_buff *)bufPtr)->data, len); -+ skb_pull((struct sk_buff *)bufPtr, len); -+ -+ return A_OK; -+} -+ ---- /dev/null -+++ b/drivers/ar6000/ar6000/osapi_linux.h -@@ -0,0 +1,319 @@ -+/* -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/os/linux/include/osapi_linux.h#1 $ -+ * -+ * This file contains the definitions of the basic atheros data types. -+ * It is used to map the data types in atheros files to a platform specific -+ * type. -+ * -+ * Copyright 2003-2005 Atheros Communications, Inc., All Rights Reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _OSAPI_LINUX_H_ -+#define _OSAPI_LINUX_H_ -+ -+#ifdef __KERNEL__ -+ -+#include <linux/version.h> -+#include <linux/types.h> -+#include <linux/kernel.h> -+#include <linux/string.h> -+#include <linux/skbuff.h> -+#include <linux/netdevice.h> -+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0) -+#include <linux/jiffies.h> -+#endif -+#include <linux/timer.h> -+#include <linux/delay.h> -+#include <linux/wait.h> -+#ifdef KERNEL_2_4 -+#include <asm/arch/irq.h> -+#include <asm/irq.h> -+#endif -+ -+#ifdef __GNUC__ -+#define __ATTRIB_PACK __attribute__ ((packed)) -+#define __ATTRIB_PRINTF __attribute__ ((format (printf, 1, 2))) -+#define __ATTRIB_NORETURN __attribute__ ((noreturn)) -+#ifndef INLINE -+#define INLINE __inline__ -+#endif -+#else /* Not GCC */ -+#define __ATTRIB_PACK -+#define __ATTRIB_PRINTF -+#define __ATTRIB_NORETURN -+#ifndef INLINE -+#define INLINE __inline -+#endif -+#endif /* End __GNUC__ */ -+ -+#define PREPACK -+#define POSTPACK __ATTRIB_PACK -+ -+/* -+ * Endianes macros -+ */ -+#define A_BE2CPU8(x) ntohb(x) -+#define A_BE2CPU16(x) ntohs(x) -+#define A_BE2CPU32(x) ntohl(x) -+ -+#define A_LE2CPU8(x) (x) -+#define A_LE2CPU16(x) (x) -+#define A_LE2CPU32(x) (x) -+ -+#define A_CPU2BE8(x) htonb(x) -+#define A_CPU2BE16(x) htons(x) -+#define A_CPU2BE32(x) htonl(x) -+ -+#define A_MEMCPY(dst, src, len) memcpy((A_UINT8 *)(dst), (src), (len)) -+#define A_MEMZERO(addr, len) memset(addr, 0, len) -+#define A_MEMCMP(addr1, addr2, len) memcmp((addr1), (addr2), (len)) -+#define A_MALLOC(size) kmalloc((size), GFP_KERNEL) -+#define A_MALLOC_NOWAIT(size) kmalloc((size), GFP_ATOMIC) -+#define A_FREE(addr) kfree(addr) -+#define A_PRINTF(args...) printk(args) -+ -+/* Mutual Exclusion */ -+typedef spinlock_t A_MUTEX_T; -+#define A_MUTEX_INIT(mutex) spin_lock_init(mutex) -+#define A_MUTEX_LOCK(mutex) spin_lock_bh(mutex) -+#define A_MUTEX_UNLOCK(mutex) spin_unlock_bh(mutex) -+#define A_IS_MUTEX_VALID(mutex) TRUE /* okay to return true, since A_MUTEX_DELETE does nothing */ -+#define A_MUTEX_DELETE(mutex) /* spin locks are not kernel resources so nothing to free.. */ -+ -+/* Get current time in ms adding a constant offset (in ms) */ -+#define A_GET_MS(offset) \ -+ (jiffies + ((offset) / 1000) * HZ) -+ -+/* -+ * Timer Functions -+ */ -+#define A_MDELAY(msecs) mdelay(msecs) -+typedef struct timer_list A_TIMER; -+ -+#define A_INIT_TIMER(pTimer, pFunction, pArg) do { \ -+ init_timer(pTimer); \ -+ (pTimer)->function = (pFunction); \ -+ (pTimer)->data = (unsigned long)(pArg); \ -+} while (0) -+ -+/* -+ * Start a Timer that elapses after 'periodMSec' milli-seconds -+ * Support is provided for a one-shot timer. The 'repeatFlag' is -+ * ignored. -+ */ -+#define A_TIMEOUT_MS(pTimer, periodMSec, repeatFlag) do { \ -+ if (repeatFlag) { \ -+ printk("\n" __FILE__ ":%d: Timer Repeat requested\n",__LINE__); \ -+ panic("Timer Repeat"); \ -+ } \ -+ mod_timer((pTimer), jiffies + HZ * (periodMSec) / 1000); \ -+} while (0) -+ -+/* -+ * Cancel the Timer. -+ */ -+#define A_UNTIMEOUT(pTimer) do { \ -+ del_timer((pTimer)); \ -+} while (0) -+ -+#define A_DELETE_TIMER(pTimer) do { \ -+} while (0) -+ -+/* -+ * Wait Queue related functions -+ */ -+typedef wait_queue_head_t A_WAITQUEUE_HEAD; -+#define A_INIT_WAITQUEUE_HEAD(head) init_waitqueue_head(head) -+#ifndef wait_event_interruptible_timeout -+#define __wait_event_interruptible_timeout(wq, condition, ret) \ -+do { \ -+ wait_queue_t __wait; \ -+ init_waitqueue_entry(&__wait, current); \ -+ \ -+ add_wait_queue(&wq, &__wait); \ -+ for (;;) { \ -+ set_current_state(TASK_INTERRUPTIBLE); \ -+ if (condition) \ -+ break; \ -+ if (!signal_pending(current)) { \ -+ ret = schedule_timeout(ret); \ -+ if (!ret) \ -+ break; \ -+ continue; \ -+ } \ -+ ret = -ERESTARTSYS; \ -+ break; \ -+ } \ -+ current->state = TASK_RUNNING; \ -+ remove_wait_queue(&wq, &__wait); \ -+} while (0) -+ -+#define wait_event_interruptible_timeout(wq, condition, timeout) \ -+({ \ -+ long __ret = timeout; \ -+ if (!(condition)) \ -+ __wait_event_interruptible_timeout(wq, condition, __ret); \ -+ __ret; \ -+}) -+#endif /* wait_event_interruptible_timeout */ -+ -+#define A_WAIT_EVENT_INTERRUPTIBLE_TIMEOUT(head, condition, timeout) do { \ -+ wait_event_interruptible_timeout(head, condition, timeout); \ -+} while (0) -+ -+#define A_WAKE_UP(head) wake_up(head) -+ -+#ifdef DEBUG -+#define A_ASSERT(expr) \ -+ if (!(expr)) { \ -+ printk(KERN_ALERT "\n" __FILE__ ":%d: Assertion " #expr " failed!\n",__LINE__); \ -+ panic(#expr); \ -+ } -+ -+#else -+#define A_ASSERT(expr) -+#endif /* DEBUG */ -+ -+/* -+ * Initialization of the network buffer subsystem -+ */ -+#define A_NETBUF_INIT() -+ -+/* -+ * Network buffer queue support -+ */ -+typedef struct sk_buff_head A_NETBUF_QUEUE_T; -+ -+#define A_NETBUF_QUEUE_INIT(q) \ -+ a_netbuf_queue_init(q) -+ -+#define A_NETBUF_ENQUEUE(q, pkt) \ -+ a_netbuf_enqueue((q), (pkt)) -+#define A_NETBUF_PREQUEUE(q, pkt) \ -+ a_netbuf_prequeue((q), (pkt)) -+#define A_NETBUF_DEQUEUE(q) \ -+ (a_netbuf_dequeue(q)) -+#define A_NETBUF_QUEUE_SIZE(q) \ -+ a_netbuf_queue_size(q) -+#define A_NETBUF_QUEUE_EMPTY(q) \ -+ a_netbuf_queue_empty(q) -+ -+/* -+ * Network buffer support -+ */ -+#define A_NETBUF_ALLOC(size) \ -+ a_netbuf_alloc(size) -+#define A_NETBUF_ALLOC_RAW(size) \ -+ a_netbuf_alloc_raw(size) -+#define A_NETBUF_FREE(bufPtr) \ -+ a_netbuf_free(bufPtr) -+#define A_NETBUF_DATA(bufPtr) \ -+ a_netbuf_to_data(bufPtr) -+#define A_NETBUF_LEN(bufPtr) \ -+ a_netbuf_to_len(bufPtr) -+#define A_NETBUF_PUSH(bufPtr, len) \ -+ a_netbuf_push(bufPtr, len) -+#define A_NETBUF_PUT(bufPtr, len) \ -+ a_netbuf_put(bufPtr, len) -+#define A_NETBUF_TRIM(bufPtr,len) \ -+ a_netbuf_trim(bufPtr, len) -+#define A_NETBUF_PULL(bufPtr, len) \ -+ a_netbuf_pull(bufPtr, len) -+#define A_NETBUF_HEADROOM(bufPtr)\ -+ a_netbuf_headroom(bufPtr) -+#define A_NETBUF_SETLEN(bufPtr,len) \ -+ a_netbuf_setlen(bufPtr, len) -+ -+/* Add data to end of a buffer */ -+#define A_NETBUF_PUT_DATA(bufPtr, srcPtr, len) \ -+ a_netbuf_put_data(bufPtr, srcPtr, len) -+ -+/* Add data to start of the buffer */ -+#define A_NETBUF_PUSH_DATA(bufPtr, srcPtr, len) \ -+ a_netbuf_push_data(bufPtr, srcPtr, len) -+ -+/* Remove data at start of the buffer */ -+#define A_NETBUF_PULL_DATA(bufPtr, dstPtr, len) \ -+ a_netbuf_pull_data(bufPtr, dstPtr, len) -+ -+/* Remove data from the end of the buffer */ -+#define A_NETBUF_TRIM_DATA(bufPtr, dstPtr, len) \ -+ a_netbuf_trim_data(bufPtr, dstPtr, len) -+ -+/* View data as "size" contiguous bytes of type "t" */ -+#define A_NETBUF_VIEW_DATA(bufPtr, t, size) \ -+ (t )( ((struct skbuf *)(bufPtr))->data) -+ -+/* return the beginning of the headroom for the buffer */ -+#define A_NETBUF_HEAD(bufPtr) \ -+ ((((struct sk_buff *)(bufPtr))->head)) -+ -+/* -+ * OS specific network buffer access routines -+ */ -+void *a_netbuf_alloc(int size); -+void *a_netbuf_alloc_raw(int size); -+void a_netbuf_free(void *bufPtr); -+void *a_netbuf_to_data(void *bufPtr); -+A_UINT32 a_netbuf_to_len(void *bufPtr); -+A_STATUS a_netbuf_push(void *bufPtr, A_INT32 len); -+A_STATUS a_netbuf_push_data(void *bufPtr, char *srcPtr, A_INT32 len); -+A_STATUS a_netbuf_put(void *bufPtr, A_INT32 len); -+A_STATUS a_netbuf_put_data(void *bufPtr, char *srcPtr, A_INT32 len); -+A_STATUS a_netbuf_pull(void *bufPtr, A_INT32 len); -+A_STATUS a_netbuf_pull_data(void *bufPtr, char *dstPtr, A_INT32 len); -+A_STATUS a_netbuf_trim(void *bufPtr, A_INT32 len); -+A_STATUS a_netbuf_trim_data(void *bufPtr, char *dstPtr, A_INT32 len); -+A_STATUS a_netbuf_setlen(void *bufPtr, A_INT32 len); -+A_INT32 a_netbuf_headroom(void *bufPtr); -+void a_netbuf_enqueue(A_NETBUF_QUEUE_T *q, void *pkt); -+void a_netbuf_prequeue(A_NETBUF_QUEUE_T *q, void *pkt); -+void *a_netbuf_dequeue(A_NETBUF_QUEUE_T *q); -+int a_netbuf_queue_size(A_NETBUF_QUEUE_T *q); -+int a_netbuf_queue_empty(A_NETBUF_QUEUE_T *q); -+int a_netbuf_queue_empty(A_NETBUF_QUEUE_T *q); -+void a_netbuf_queue_init(A_NETBUF_QUEUE_T *q); -+ -+/* -+ * Kernel v.s User space functions -+ */ -+A_UINT32 a_copy_to_user(void *to, const void *from, A_UINT32 n); -+A_UINT32 a_copy_from_user(void *to, const void *from, A_UINT32 n); -+ -+#else /* __KERNEL__ */ -+ -+#ifdef __GNUC__ -+#define __ATTRIB_PACK __attribute__ ((packed)) -+#define __ATTRIB_PRINTF __attribute__ ((format (printf, 1, 2))) -+#define __ATTRIB_NORETURN __attribute__ ((noreturn)) -+#ifndef INLINE -+#define INLINE __inline__ -+#endif -+#else /* Not GCC */ -+#define __ATTRIB_PACK -+#define __ATTRIB_PRINTF -+#define __ATTRIB_NORETURN -+#ifndef INLINE -+#define INLINE __inline -+#endif -+#endif /* End __GNUC__ */ -+ -+#define PREPACK -+#define POSTPACK __ATTRIB_PACK -+ -+#endif /* __KERNEL__ */ -+ -+#endif /* _OSAPI_LINUX_H_ */ ---- /dev/null -+++ b/drivers/ar6000/ar6000/wireless_ext.c -@@ -0,0 +1,1972 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "ar6000_drv.h" -+ -+static A_UINT8 bcast_mac[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff}; -+static void ar6000_set_quality(struct iw_quality *iq, A_INT8 rssi); -+extern unsigned int wmitimeout; -+extern A_WAITQUEUE_HEAD arEvent; -+extern wait_queue_head_t ar6000_scan_queue; -+ -+/* -+ * Encode a WPA or RSN information element as a custom -+ * element using the hostap format. -+ */ -+static u_int -+encode_ie(void *buf, size_t bufsize, -+ const u_int8_t *ie, size_t ielen, -+ const char *leader, size_t leader_len) -+{ -+ u_int8_t *p; -+ int i; -+ -+ if (bufsize < leader_len) -+ return 0; -+ p = buf; -+ memcpy(p, leader, leader_len); -+ bufsize -= leader_len; -+ p += leader_len; -+ for (i = 0; i < ielen && bufsize > 2; i++) -+ p += sprintf(p, "%02x", ie[i]); -+ return (i == ielen ? p - (u_int8_t *)buf : 0); -+} -+ -+void -+ar6000_scan_node(void *arg, bss_t *ni) -+{ -+ struct iw_event iwe; -+#if WIRELESS_EXT > 14 -+ char buf[64*2 + 30]; -+#endif -+ struct ar_giwscan_param *param; -+ A_CHAR *current_ev; -+ A_CHAR *end_buf; -+ struct ieee80211_common_ie *cie; -+ struct iw_request_info info; -+ -+ info.cmd = 0; -+ info.flags = 0; -+ -+ param = (struct ar_giwscan_param *)arg; -+ -+ if (param->current_ev >= param->end_buf) { -+ return; -+ } -+ if ((param->firstPass == TRUE) && -+ ((ni->ni_cie.ie_wpa == NULL) && (ni->ni_cie.ie_rsn == NULL))) { -+ /* -+ * Only forward wpa bss's in first pass -+ */ -+ return; -+ } -+ -+ if ((param->firstPass == FALSE) && -+ ((ni->ni_cie.ie_wpa != NULL) || (ni->ni_cie.ie_rsn != NULL))) { -+ /* -+ * Only forward non-wpa bss's in 2nd pass -+ */ -+ return; -+ } -+ -+ current_ev = param->current_ev; -+ end_buf = param->end_buf; -+ -+ cie = &ni->ni_cie; -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = SIOCGIWAP; -+ iwe.u.ap_addr.sa_family = ARPHRD_ETHER; -+ A_MEMCPY(iwe.u.ap_addr.sa_data, ni->ni_macaddr, 6); -+ current_ev = iwe_stream_add_event(&info, current_ev, end_buf, &iwe, -+ IW_EV_ADDR_LEN); -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = SIOCGIWESSID; -+ iwe.u.data.flags = 1; -+ iwe.u.data.length = cie->ie_ssid[1]; -+ current_ev = iwe_stream_add_point(&info, current_ev, end_buf, &iwe, -+ &cie->ie_ssid[2]); -+ -+ if (cie->ie_capInfo & (IEEE80211_CAPINFO_ESS|IEEE80211_CAPINFO_IBSS)) { -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = SIOCGIWMODE; -+ iwe.u.mode = cie->ie_capInfo & IEEE80211_CAPINFO_ESS ? -+ IW_MODE_MASTER : IW_MODE_ADHOC; -+ current_ev = iwe_stream_add_event(&info, current_ev, end_buf, &iwe, -+ IW_EV_UINT_LEN); -+ } -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = SIOCGIWFREQ; -+ iwe.u.freq.m = cie->ie_chan * 100000; -+ iwe.u.freq.e = 1; -+ current_ev = iwe_stream_add_event(&info, current_ev, end_buf, &iwe, -+ IW_EV_FREQ_LEN); -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = IWEVQUAL; -+ ar6000_set_quality(&iwe.u.qual, ni->ni_snr); -+ current_ev = iwe_stream_add_event(&info, current_ev, end_buf, &iwe, -+ IW_EV_QUAL_LEN); -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = SIOCGIWENCODE; -+ if (cie->ie_capInfo & IEEE80211_CAPINFO_PRIVACY) { -+ iwe.u.data.flags = IW_ENCODE_ENABLED | IW_ENCODE_NOKEY; -+ } else { -+ iwe.u.data.flags = IW_ENCODE_DISABLED; -+ } -+ iwe.u.data.length = 0; -+ current_ev = iwe_stream_add_point(&info, current_ev, end_buf, &iwe, ""); -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = IWEVCUSTOM; -+ snprintf(buf, sizeof(buf), "bcn_int=%d", cie->ie_beaconInt); -+ iwe.u.data.length = strlen(buf); -+ current_ev = iwe_stream_add_point(&info, current_ev, end_buf, &iwe, buf); -+ -+ if (cie->ie_wpa != NULL) { -+ static const char wpa_leader[] = "wpa_ie="; -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = IWEVCUSTOM; -+ iwe.u.data.length = encode_ie(buf, sizeof(buf), cie->ie_wpa, -+ cie->ie_wpa[1]+2, -+ wpa_leader, sizeof(wpa_leader)-1); -+ -+ if (iwe.u.data.length != 0) { -+ current_ev = iwe_stream_add_point(&info, current_ev, end_buf, &iwe, -+ buf); -+ } -+ } -+ -+ if (cie->ie_rsn != NULL && cie->ie_rsn[0] == IEEE80211_ELEMID_RSN) { -+ static const char rsn_leader[] = "rsn_ie="; -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = IWEVCUSTOM; -+ iwe.u.data.length = encode_ie(buf, sizeof(buf), cie->ie_rsn, -+ cie->ie_rsn[1]+2, -+ rsn_leader, sizeof(rsn_leader)-1); -+ -+ if (iwe.u.data.length != 0) { -+ current_ev = iwe_stream_add_point(&info, current_ev, end_buf, &iwe, -+ buf); -+ } -+ } -+ -+ if (cie->ie_wmm != NULL) { -+ static const char wmm_leader[] = "wmm_ie="; -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = IWEVCUSTOM; -+ iwe.u.data.length = encode_ie(buf, sizeof(buf), cie->ie_wmm, -+ cie->ie_wmm[1]+2, -+ wmm_leader, sizeof(wmm_leader)-1); -+ if (iwe.u.data.length != 0) { -+ current_ev = iwe_stream_add_point(&info, current_ev, end_buf, &iwe, -+ buf); -+ } -+ } -+ -+ if (cie->ie_ath != NULL) { -+ static const char ath_leader[] = "ath_ie="; -+ -+ A_MEMZERO(&iwe, sizeof(iwe)); -+ iwe.cmd = IWEVCUSTOM; -+ iwe.u.data.length = encode_ie(buf, sizeof(buf), cie->ie_ath, -+ cie->ie_ath[1]+2, -+ ath_leader, sizeof(ath_leader)-1); -+ if (iwe.u.data.length != 0) { -+ current_ev = iwe_stream_add_point(&info, current_ev, end_buf, &iwe, -+ buf); -+ } -+ } -+ -+ param->current_ev = current_ev; -+} -+ -+int -+ar6000_ioctl_giwscan(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *data, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct ar_giwscan_param param; -+ int i; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ param.current_ev = extra; -+ param.end_buf = extra + IW_SCAN_MAX_DATA; -+ param.firstPass = TRUE; -+ -+ /* -+ * Do two passes to insure WPA scan candidates -+ * are sorted to the front. This is a hack to deal with -+ * the wireless extensions capping scan results at -+ * IW_SCAN_MAX_DATA bytes. In densely populated environments -+ * it's easy to overflow this buffer (especially with WPA/RSN -+ * information elements). Note this sorting hack does not -+ * guarantee we won't overflow anyway. -+ */ -+ for (i = 0; i < 2; i++) { -+ /* -+ * Translate data to WE format. -+ */ -+ wmi_iterate_nodes(ar->arWmi, ar6000_scan_node, ¶m); -+ param.firstPass = FALSE; -+ if (param.current_ev >= param.end_buf) { -+ data->length = param.current_ev - extra; -+ return -E2BIG; -+ } -+ } -+ -+ if(!(data->length = param.current_ev - extra)) { -+ printk("%s(): data length %d\n", __FUNCTION__, data->length); -+ return -EAGAIN; -+ } -+ return 0; -+} -+ -+extern int reconnect_flag; -+/* SIOCSIWESSID */ -+static int -+ar6000_ioctl_siwessid(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *data, char *ssid) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ A_STATUS status; -+ A_UINT8 arNetworkType; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ /* -+ * iwconfig passes a string with length excluding any trailing NUL. -+ * FIXME: we should be able to set an ESSID of 32 bytes, yet things fall -+ * over badly if we do. So we limit the ESSID to 31 bytes. -+ */ -+ if (data->flags && (!data->length || data->length >= sizeof(ar->arSsid))) { -+ /* -+ * ssid is invalid -+ */ -+ return -EINVAL; -+ } -+ /* Added for bug 25178, return an IOCTL error instead of target returning -+ Illegal parameter error when either the BSSID or channel is missing -+ and we cannot scan during connect. -+ */ -+ if (data->flags) { -+ if (ar->arSkipScan == TRUE && -+ (ar->arChannelHint == 0 || -+ (!ar->arReqBssid[0] && !ar->arReqBssid[1] && !ar->arReqBssid[2] && -+ !ar->arReqBssid[3] && !ar->arReqBssid[4] && !ar->arReqBssid[5]))) -+ { -+ return -EINVAL; -+ } -+ } -+ -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ -+ if (ar->arTxPending[WMI_CONTROL_PRI]) { -+ /* -+ * sleep until the command queue drains -+ */ -+ wait_event_interruptible_timeout(arEvent, -+ ar->arTxPending[WMI_CONTROL_PRI] == 0, wmitimeout * HZ); -+ if (signal_pending(current)) { -+ return -EINTR; -+ } -+ } -+ -+ if (!data->flags) { -+ arNetworkType = ar->arNetworkType; -+ ar6000_init_profile_info(ar); -+ ar->arNetworkType = arNetworkType; -+ } -+ -+ /* -+ * The original logic here prevented a disconnect if issuing an "essid off" -+ * if no ESSID was set, presumably to prevent sending multiple disconnects -+ * to the WMI. -+ * -+ * Unfortunately, this also meant that no disconnect was sent when we were -+ * already connected, but the profile has been changed since (which also -+ * clears the ESSID as a reminder that the WMI needs updating.) -+ * -+ * The "1 ||" makes sure we always disconnect or reconnect. The WMI doesn't -+ * seem to mind being sent multiple disconnects. -+ */ -+ if (1 || (ar->arSsidLen) || (!data->flags)) -+ { -+ if ((!data->flags) || -+ (A_MEMCMP(ar->arSsid, ssid, ar->arSsidLen) != 0) || -+ (ar->arSsidLen != (data->length))) -+ { -+ /* -+ * SSID set previously or essid off has been issued. -+ * -+ * Disconnect Command is issued in two cases after wmi is ready -+ * (1) ssid is different from the previous setting -+ * (2) essid off has been issued -+ * -+ */ -+ if (ar->arWmiReady == TRUE) { -+ reconnect_flag = 0; -+ status = wmi_disconnect_cmd(ar->arWmi); -+ A_MEMZERO(ar->arSsid, sizeof(ar->arSsid)); -+ ar->arSsidLen = 0; -+ if (ar->arSkipScan == FALSE) { -+ A_MEMZERO(ar->arReqBssid, sizeof(ar->arReqBssid)); -+ } -+ if (!data->flags) { -+ up(&ar->arSem); -+ return 0; -+ } -+ } else { -+ up(&ar->arSem); -+ } -+ } -+ else -+ { -+ /* -+ * SSID is same, so we assume profile hasn't changed. -+ * If the interface is up and wmi is ready, we issue -+ * a reconnect cmd. Issue a reconnect only we are already -+ * connected. -+ */ -+ if((ar->arConnected == TRUE) && (ar->arWmiReady == TRUE)) -+ { -+ reconnect_flag = TRUE; -+ status = wmi_reconnect_cmd(ar->arWmi,ar->arReqBssid, -+ ar->arChannelHint); -+ up(&ar->arSem); -+ if (status != A_OK) { -+ return -EIO; -+ } -+ return 0; -+ } -+ else{ -+ /* -+ * Dont return if connect is pending. -+ */ -+ if(!(ar->arConnectPending)) { -+ up(&ar->arSem); -+ return 0; -+ } -+ } -+ } -+ } -+ -+ ar->arSsidLen = data->length; -+ A_MEMCPY(ar->arSsid, ssid, ar->arSsidLen); -+ -+ /* The ssid length check prevents second "essid off" from the user, -+ to be treated as a connect cmd. The second "essid off" is ignored. -+ */ -+ if((ar->arWmiReady == TRUE) && (ar->arSsidLen > 0) ) -+ { -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ if (SHARED_AUTH == ar->arDot11AuthMode) { -+ ar6000_install_static_wep_keys(ar); -+ } -+ AR_DEBUG_PRINTF("Connect called with authmode %d dot11 auth %d"\ -+ " PW crypto %d PW crypto Len %d GRP crypto %d"\ -+ " GRP crypto Len %d\n", -+ ar->arAuthMode, ar->arDot11AuthMode, -+ ar->arPairwiseCrypto, ar->arPairwiseCryptoLen, -+ ar->arGroupCrypto, ar->arGroupCryptoLen); -+ reconnect_flag = 0; -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ status = wmi_connect_cmd(ar->arWmi, ar->arNetworkType, -+ ar->arDot11AuthMode, ar->arAuthMode, -+ ar->arPairwiseCrypto, ar->arPairwiseCryptoLen, -+ ar->arGroupCrypto,ar->arGroupCryptoLen, -+ ar->arSsidLen, ar->arSsid, -+ ar->arReqBssid, ar->arChannelHint, -+ ar->arConnectCtrlFlags); -+ -+ -+ up(&ar->arSem); -+ -+ if (status != A_OK) { -+ return -EIO; -+ } -+ ar->arConnectPending = TRUE; -+ }else{ -+ up(&ar->arSem); -+ } -+ return 0; -+} -+ -+/* SIOCGIWESSID */ -+static int -+ar6000_ioctl_giwessid(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *data, char *essid) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ data->flags = 1; -+ data->length = ar->arSsidLen; -+ A_MEMCPY(essid, ar->arSsid, ar->arSsidLen); -+ -+ return 0; -+} -+ -+ -+void ar6000_install_static_wep_keys(AR_SOFTC_T *ar) -+{ -+ A_UINT8 index; -+ A_UINT8 keyUsage; -+ -+ for (index = WMI_MIN_KEY_INDEX; index <= WMI_MAX_KEY_INDEX; index++) { -+ if (ar->arWepKeyList[index].arKeyLen) { -+ keyUsage = GROUP_USAGE; -+ if (index == ar->arDefTxKeyIndex) { -+ keyUsage |= TX_USAGE; -+ } -+ wmi_addKey_cmd(ar->arWmi, -+ index, -+ WEP_CRYPT, -+ keyUsage, -+ ar->arWepKeyList[index].arKeyLen, -+ NULL, -+ ar->arWepKeyList[index].arKey, KEY_OP_INIT_VAL, -+ NO_SYNC_WMIFLAG); -+ } -+ } -+} -+ -+int -+ar6000_ioctl_delkey(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ return 0; -+} -+ -+int -+ar6000_ioctl_setmlme(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct ieee80211req_mlme *mlme = (struct ieee80211req_mlme *)extra; -+ -+ if ((ar->arWmiReady == FALSE) || (ar->arConnected != TRUE)) -+ return -EIO; -+ -+ switch (mlme->im_op) { -+ case IEEE80211_MLME_DISASSOC: -+ case IEEE80211_MLME_DEAUTH: -+ /* Not Supported */ -+ break; -+ default: -+ break; -+ } -+ return 0; -+} -+ -+ -+int -+ar6000_ioctl_setwmmparams(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ return -EIO; /* for now */ -+} -+ -+int -+ar6000_ioctl_getwmmparams(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ return -EIO; /* for now */ -+} -+ -+int ar6000_ioctl_setoptie(struct net_device *dev, struct iw_request_info *info, -+ struct iw_point *data, char *extra) -+{ -+ /* The target generates the WPA/RSN IE */ -+ return 0; -+} -+ -+int -+ar6000_ioctl_setauthalg(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct ieee80211req_authalg *req = (struct ieee80211req_authalg *)extra; -+ int ret = 0; -+ -+ -+ AR6000_SPIN_LOCK(&ar->arLock, 0); -+ -+ if (req->auth_alg == AUTH_ALG_OPEN_SYSTEM) { -+ ar->arDot11AuthMode = OPEN_AUTH; -+ } else if (req->auth_alg == AUTH_ALG_LEAP) { -+ ar->arDot11AuthMode = LEAP_AUTH; -+ ar->arPairwiseCrypto = WEP_CRYPT; -+ ar->arGroupCrypto = WEP_CRYPT; -+ } else { -+ ret = -EIO; -+ } -+ -+ AR6000_SPIN_UNLOCK(&ar->arLock, 0); -+ -+ return ret; -+} -+static int -+ar6000_ioctl_addpmkid(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct ieee80211req_addpmkid *req = (struct ieee80211req_addpmkid *)extra; -+ A_STATUS status; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ AR_DEBUG_PRINTF("Add pmkid for %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x en=%d\n", -+ req->pi_bssid[0], req->pi_bssid[1], req->pi_bssid[2], -+ req->pi_bssid[3], req->pi_bssid[4], req->pi_bssid[5], -+ req->pi_enable); -+ -+ status = wmi_setPmkid_cmd(ar->arWmi, req->pi_bssid, req->pi_pmkid, -+ req->pi_enable); -+ -+ if (status != A_OK) { -+ return -EIO; -+ } -+ -+ return 0; -+} -+ -+/* -+ * SIOCSIWRATE -+ */ -+int -+ar6000_ioctl_siwrate(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *rrq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ A_UINT32 kbps; -+ -+ if (rrq->fixed) { -+ kbps = rrq->value / 1000; /* rrq->value is in bps */ -+ } else { -+ kbps = -1; /* -1 indicates auto rate */ -+ } -+ if(kbps != -1 && wmi_validate_bitrate(ar->arWmi, kbps) == A_EINVAL) -+ { -+ AR_DEBUG_PRINTF("BitRate is not Valid %d\n", kbps); -+ return -EINVAL; -+ } -+ ar->arBitRate = kbps; -+ if(ar->arWmiReady == TRUE) -+ { -+ if (wmi_set_bitrate_cmd(ar->arWmi, kbps) != A_OK) { -+ return -EINVAL; -+ } -+ } -+ return 0; -+} -+ -+/* -+ * SIOCGIWRATE -+ */ -+int -+ar6000_ioctl_giwrate(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *rrq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ int ret = 0; -+ -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ if(ar->arWmiReady == TRUE) -+ { -+ ar->arBitRate = 0xFFFF; -+ if (wmi_get_bitrate_cmd(ar->arWmi) != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ wait_event_interruptible_timeout(arEvent, ar->arBitRate != 0xFFFF, wmitimeout * HZ); -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } -+ } -+ /* If the interface is down or wmi is not ready or the target is not -+ connected - return the value stored in the device structure */ -+ if (!ret) { -+ if (ar->arBitRate == -1) { -+ rrq->fixed = TRUE; -+ rrq->value = 0; -+ } else { -+ rrq->value = ar->arBitRate * 1000; -+ } -+ } -+ -+ up(&ar->arSem); -+ -+ return ret; -+} -+ -+/* -+ * SIOCSIWTXPOW -+ */ -+static int -+ar6000_ioctl_siwtxpow(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *rrq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ A_UINT8 dbM; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ar->arRadioSwitch == WLAN_ENABLED -+ && rrq->disabled) { -+ if (wmi_switch_radio(ar->arWmi, WLAN_DISABLED) < 0) -+ return -EIO; -+ ar->arRadioSwitch = WLAN_DISABLED; -+ } else if (ar->arRadioSwitch == WLAN_DISABLED -+ && !rrq->disabled) { -+ if (wmi_switch_radio(ar->arWmi, WLAN_ENABLED) < 0) -+ return -EIO; -+ ar->arRadioSwitch = WLAN_ENABLED; -+ } -+ -+ if (rrq->fixed) { -+ if (rrq->flags != IW_TXPOW_DBM) { -+ return -EOPNOTSUPP; -+ } -+ ar->arTxPwr= dbM = rrq->value; -+ ar->arTxPwrSet = TRUE; -+ } else { -+ ar->arTxPwr = dbM = 0; -+ ar->arTxPwrSet = FALSE; -+ } -+ if(ar->arWmiReady == TRUE) -+ { -+ AR_DEBUG_PRINTF("Set tx pwr cmd %d dbM\n", dbM); -+ wmi_set_txPwr_cmd(ar->arWmi, dbM); -+ } -+ return 0; -+} -+ -+/* -+ * SIOCGIWTXPOW -+ */ -+int -+ar6000_ioctl_giwtxpow(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *rrq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ int ret = 0; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ar->arRadioSwitch == WLAN_DISABLED) { -+ rrq->disabled = 1; -+ return 0; -+ } -+ -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ if((ar->arWmiReady == TRUE) && (ar->arConnected == TRUE)) -+ { -+ ar->arTxPwr = 0; -+ -+ if (wmi_get_txPwr_cmd(ar->arWmi) != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ -+ wait_event_interruptible_timeout(arEvent, ar->arTxPwr != 0, wmitimeout * HZ); -+ -+ if (signal_pending(current)) { -+ ret = -EINTR; -+ } -+ } -+ /* If the interace is down or wmi is not ready or target is not connected -+ then return value stored in the device structure */ -+ -+ if (!ret) { -+ if (ar->arTxPwrSet == TRUE) { -+ rrq->fixed = TRUE; -+ } -+ rrq->value = ar->arTxPwr; -+ rrq->flags = IW_TXPOW_DBM; -+ } -+ -+ up(&ar->arSem); -+ -+ return ret; -+} -+ -+/* -+ * SIOCSIWRETRY -+ * since iwconfig only provides us with one max retry value, we use it -+ * to apply to data frames of the BE traffic class. -+ */ -+static int -+ar6000_ioctl_siwretry(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *rrq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (rrq->disabled) { -+ return -EOPNOTSUPP; -+ } -+ -+ if ((rrq->flags & IW_RETRY_TYPE) != IW_RETRY_LIMIT) { -+ return -EOPNOTSUPP; -+ } -+ -+ if ( !(rrq->value >= WMI_MIN_RETRIES) || !(rrq->value <= WMI_MAX_RETRIES)) { -+ return - EINVAL; -+ } -+ if(ar->arWmiReady == TRUE) -+ { -+ if (wmi_set_retry_limits_cmd(ar->arWmi, DATA_FRAMETYPE, WMM_AC_BE, -+ rrq->value, 0) != A_OK){ -+ return -EINVAL; -+ } -+ } -+ ar->arMaxRetries = rrq->value; -+ return 0; -+} -+ -+/* -+ * SIOCGIWRETRY -+ */ -+static int -+ar6000_ioctl_giwretry(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *rrq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ rrq->disabled = 0; -+ switch (rrq->flags & IW_RETRY_TYPE) { -+ case IW_RETRY_LIFETIME: -+ return -EOPNOTSUPP; -+ break; -+ case IW_RETRY_LIMIT: -+ rrq->flags = IW_RETRY_LIMIT; -+ switch (rrq->flags & IW_RETRY_MODIFIER) { -+ case IW_RETRY_MIN: -+ rrq->flags |= IW_RETRY_MIN; -+ rrq->value = WMI_MIN_RETRIES; -+ break; -+ case IW_RETRY_MAX: -+ rrq->flags |= IW_RETRY_MAX; -+ rrq->value = ar->arMaxRetries; -+ break; -+ } -+ break; -+ } -+ return 0; -+} -+ -+/* -+ * SIOCSIWENCODE -+ */ -+static int -+ar6000_ioctl_siwencode(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *erq, char *keybuf) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ int index; -+ A_INT32 auth = ar->arDot11AuthMode; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ index = erq->flags & IW_ENCODE_INDEX; -+ -+ if (index && (((index - 1) < WMI_MIN_KEY_INDEX) || -+ ((index - 1) > WMI_MAX_KEY_INDEX))) -+ { -+ return -EIO; -+ } -+ -+ if (erq->flags & IW_ENCODE_DISABLED) { -+ /* -+ * Encryption disabled -+ */ -+ if (index) { -+ /* -+ * If key index was specified then clear the specified key -+ */ -+ index--; -+ A_MEMZERO(ar->arWepKeyList[index].arKey, -+ sizeof(ar->arWepKeyList[index].arKey)); -+ ar->arWepKeyList[index].arKeyLen = 0; -+ } -+ ar->arDot11AuthMode = OPEN_AUTH; -+ ar->arPairwiseCrypto = NONE_CRYPT; -+ ar->arGroupCrypto = NONE_CRYPT; -+ ar->arAuthMode = NONE_AUTH; -+ } else { -+ /* -+ * Enabling WEP encryption -+ */ -+ if (index) { -+ index--; /* keyindex is off base 1 in iwconfig */ -+ } -+ -+ if (erq->flags & IW_ENCODE_OPEN) { -+ auth = OPEN_AUTH; -+ } else if (erq->flags & IW_ENCODE_RESTRICTED) { -+ auth = SHARED_AUTH; -+ } -+ -+ if (erq->length) { -+ if (!IEEE80211_IS_VALID_WEP_CIPHER_LEN(erq->length)) { -+ return -EIO; -+ } -+ -+ A_MEMZERO(ar->arWepKeyList[index].arKey, -+ sizeof(ar->arWepKeyList[index].arKey)); -+ A_MEMCPY(ar->arWepKeyList[index].arKey, keybuf, erq->length); -+ ar->arWepKeyList[index].arKeyLen = erq->length; -+ } else { -+ if (ar->arWepKeyList[index].arKeyLen == 0) { -+ return -EIO; -+ } -+ ar->arDefTxKeyIndex = index; -+ } -+ -+ ar->arPairwiseCrypto = WEP_CRYPT; -+ ar->arGroupCrypto = WEP_CRYPT; -+ ar->arDot11AuthMode = auth; -+ ar->arAuthMode = NONE_AUTH; -+ } -+ -+ /* -+ * profile has changed. Erase ssid to signal change -+ */ -+ A_MEMZERO(ar->arSsid, sizeof(ar->arSsid)); -+ ar->arSsidLen = 0; -+ -+ return 0; -+} -+ -+static int -+ar6000_ioctl_giwencode(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *erq, char *key) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)netdev_priv(dev); -+ A_UINT8 keyIndex; -+ struct ar_wep_key *wk; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ar->arPairwiseCrypto == NONE_CRYPT) { -+ erq->length = 0; -+ erq->flags = IW_ENCODE_DISABLED; -+ } else { -+ /* get the keyIndex */ -+ keyIndex = erq->flags & IW_ENCODE_INDEX; -+ if (0 == keyIndex) { -+ keyIndex = ar->arDefTxKeyIndex; -+ } else if ((keyIndex - 1 < WMI_MIN_KEY_INDEX) || -+ (keyIndex - 1 > WMI_MAX_KEY_INDEX)) -+ { -+ keyIndex = WMI_MIN_KEY_INDEX; -+ } else { -+ keyIndex--; -+ } -+ erq->flags = keyIndex + 1; -+ erq->flags |= IW_ENCODE_ENABLED; -+ wk = &ar->arWepKeyList[keyIndex]; -+ if (erq->length > wk->arKeyLen) { -+ erq->length = wk->arKeyLen; -+ } -+ if (wk->arKeyLen) { -+ A_MEMCPY(key, wk->arKey, erq->length); -+ } -+ if (ar->arDot11AuthMode == OPEN_AUTH) { -+ erq->flags |= IW_ENCODE_OPEN; -+ } else if (ar->arDot11AuthMode == SHARED_AUTH) { -+ erq->flags |= IW_ENCODE_RESTRICTED; -+ } -+ } -+ -+ return 0; -+} -+ -+static int ar6000_ioctl_siwpower(struct net_device *dev, -+ struct iw_request_info *info, -+ union iwreq_data *wrqu, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)netdev_priv(dev); -+ WMI_POWER_MODE power_mode; -+ -+ if (wrqu->power.disabled) -+ power_mode = MAX_PERF_POWER; -+ else -+ power_mode = REC_POWER; -+ -+ if (wmi_powermode_cmd(ar->arWmi, power_mode) < 0) -+ return -EIO; -+ -+ return 0; -+} -+ -+static int ar6000_ioctl_giwpower(struct net_device *dev, -+ struct iw_request_info *info, -+ union iwreq_data *wrqu, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)netdev_priv(dev); -+ -+ return wmi_get_power_mode_cmd(ar->arWmi); -+} -+ -+static int ar6000_ioctl_siwgenie(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *dwrq, -+ char *extra) -+{ -+ /* The target does that for us */ -+ return 0; -+} -+ -+static int ar6000_ioctl_giwgenie(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *dwrq, -+ char *extra) -+{ -+ return 0; -+} -+ -+static int ar6000_ioctl_siwauth(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *param, -+ char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)netdev_priv(dev); -+ int reset = 0; -+ -+ switch (param->flags & IW_AUTH_INDEX) { -+ case IW_AUTH_WPA_VERSION: -+ if (param->value & IW_AUTH_WPA_VERSION_DISABLED) { -+ ar->arAuthMode = NONE_AUTH; -+ } -+ if (param->value & IW_AUTH_WPA_VERSION_WPA) { -+ ar->arAuthMode = WPA_AUTH; -+ } -+ if (param->value & IW_AUTH_WPA_VERSION_WPA2) { -+ ar->arAuthMode = WPA2_AUTH; -+ } -+ -+ reset = 1; -+ break; -+ case IW_AUTH_CIPHER_PAIRWISE: -+ if (param->value & IW_AUTH_CIPHER_NONE) { -+ ar->arPairwiseCrypto = NONE_CRYPT; -+ } -+ if (param->value & IW_AUTH_CIPHER_WEP40) { -+ ar->arPairwiseCrypto = WEP_CRYPT; -+ } -+ if (param->value & IW_AUTH_CIPHER_TKIP) { -+ ar->arPairwiseCrypto = TKIP_CRYPT; -+ } -+ if (param->value & IW_AUTH_CIPHER_CCMP) { -+ ar->arPairwiseCrypto = AES_CRYPT; -+ } -+ -+ reset = 1; -+ break; -+ case IW_AUTH_CIPHER_GROUP: -+ if (param->value & IW_AUTH_CIPHER_NONE) { -+ ar->arGroupCrypto = NONE_CRYPT; -+ } -+ if (param->value & IW_AUTH_CIPHER_WEP40) { -+ ar->arGroupCrypto = WEP_CRYPT; -+ } -+ if (param->value & IW_AUTH_CIPHER_TKIP) { -+ ar->arGroupCrypto = TKIP_CRYPT; -+ } -+ if (param->value & IW_AUTH_CIPHER_CCMP) { -+ ar->arGroupCrypto = AES_CRYPT; -+ } -+ -+ reset = 1; -+ break; -+ case IW_AUTH_KEY_MGMT: -+ if (param->value & IW_AUTH_KEY_MGMT_PSK) { -+ if (ar->arAuthMode == WPA_AUTH) { -+ ar->arAuthMode = WPA_PSK_AUTH; -+ } else if (ar->arAuthMode == WPA2_AUTH) { -+ ar->arAuthMode = WPA2_PSK_AUTH; -+ } -+ -+ reset = 1; -+ } -+ break; -+ -+ case IW_AUTH_TKIP_COUNTERMEASURES: -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ wmi_set_tkip_countermeasures_cmd(ar->arWmi, param->value); -+ break; -+ -+ case IW_AUTH_DROP_UNENCRYPTED: -+ break; -+ -+ case IW_AUTH_80211_AUTH_ALG: -+ if (param->value & IW_AUTH_ALG_OPEN_SYSTEM) { -+ ar->arDot11AuthMode = OPEN_AUTH; -+ } -+ if (param->value & IW_AUTH_ALG_SHARED_KEY) { -+ ar->arDot11AuthMode = SHARED_AUTH; -+ } -+ if (param->value & IW_AUTH_ALG_LEAP) { -+ ar->arDot11AuthMode = LEAP_AUTH; -+ ar->arPairwiseCrypto = WEP_CRYPT; -+ ar->arGroupCrypto = WEP_CRYPT; -+ } -+ -+ reset = 1; -+ break; -+ -+ case IW_AUTH_WPA_ENABLED: -+ reset = 1; -+ break; -+ -+ case IW_AUTH_RX_UNENCRYPTED_EAPOL: -+ break; -+ -+ case IW_AUTH_PRIVACY_INVOKED: -+ break; -+ -+ default: -+ printk("%s(): Unknown flag 0x%x\n", __FUNCTION__, param->flags); -+ return -EOPNOTSUPP; -+ } -+ -+ if (reset) { -+ A_MEMZERO(ar->arSsid, sizeof(ar->arSsid)); -+ ar->arSsidLen = 0; -+ } -+ -+ return 0; -+} -+ -+static int ar6000_ioctl_giwauth(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *dwrq, -+ char *extra) -+{ -+ return 0; -+} -+ -+static int ar6000_ioctl_siwencodeext(struct net_device *dev, -+ struct iw_request_info *info, -+ union iwreq_data *wrqu, -+ char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)netdev_priv(dev); -+ struct iw_point *encoding = &wrqu->encoding; -+ struct iw_encode_ext *ext = (struct iw_encode_ext *)extra; -+ int alg = ext->alg, idx; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ /* Determine and validate the key index */ -+ idx = (encoding->flags & IW_ENCODE_INDEX) - 1; -+ if (idx) { -+ if (idx < 0 || idx > 3) -+ return -EINVAL; -+ } -+ -+ if ((alg == IW_ENCODE_ALG_TKIP) || (alg == IW_ENCODE_ALG_CCMP)) { -+ struct ieee80211req_key ik; -+ KEY_USAGE key_usage; -+ CRYPTO_TYPE key_type = NONE_CRYPT; -+ int status; -+ -+ ar->user_saved_keys.keyOk = FALSE; -+ -+ if (alg == IW_ENCODE_ALG_TKIP) { -+ key_type = TKIP_CRYPT; -+ ik.ik_type = IEEE80211_CIPHER_TKIP; -+ } else { -+ key_type = AES_CRYPT; -+ ik.ik_type = IEEE80211_CIPHER_AES_CCM; -+ } -+ -+ ik.ik_keyix = idx; -+ ik.ik_keylen = ext->key_len; -+ ik.ik_flags = IEEE80211_KEY_RECV; -+ if (ext->ext_flags & IW_ENCODE_EXT_SET_TX_KEY) { -+ ik.ik_flags |= IEEE80211_KEY_XMIT -+ | IEEE80211_KEY_DEFAULT; -+ } -+ -+ if (ext->ext_flags & IW_ENCODE_EXT_RX_SEQ_VALID) { -+ memcpy(&ik.ik_keyrsc, ext->rx_seq, 8); -+ } -+ -+ memcpy(ik.ik_keydata, ext->key, ext->key_len); -+ -+ ar->user_saved_keys.keyType = key_type; -+ if (ext->ext_flags & IW_ENCODE_EXT_GROUP_KEY) { -+ key_usage = GROUP_USAGE; -+ memset(ik.ik_macaddr, 0, ETH_ALEN); -+ memcpy(&ar->user_saved_keys.bcast_ik, &ik, -+ sizeof(struct ieee80211req_key)); -+ } else { -+ key_usage = PAIRWISE_USAGE; -+ memcpy(ik.ik_macaddr, ext->addr.sa_data, ETH_ALEN); -+ memcpy(&ar->user_saved_keys.ucast_ik, &ik, -+ sizeof(struct ieee80211req_key)); -+ } -+ -+ status = wmi_addKey_cmd(ar->arWmi, ik.ik_keyix, key_type, -+ key_usage, ik.ik_keylen, -+ (A_UINT8 *)&ik.ik_keyrsc, -+ ik.ik_keydata, -+ KEY_OP_INIT_VAL, SYNC_BEFORE_WMIFLAG); -+ -+ if (status < 0) -+ return -EIO; -+ -+ ar->user_saved_keys.keyOk = TRUE; -+ -+ return 0; -+ -+ } else { -+ /* WEP falls back to SIWENCODE */ -+ return -EOPNOTSUPP; -+ } -+ -+ return 0; -+} -+ -+ -+static int ar6000_ioctl_giwencodeext(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *dwrq, -+ char *extra) -+{ -+ return 0; -+} -+ -+ -+static int -+ar6000_ioctl_setparam(struct net_device *dev, -+ struct iw_request_info *info, -+ void *erq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ int *i = (int *)extra; -+ int param = i[0]; -+ int value = i[1]; -+ int ret = 0; -+ A_BOOL profChanged = FALSE; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ switch (param) { -+ case IEEE80211_PARAM_WPA: -+ switch (value) { -+ case WPA_MODE_WPA1: -+ ar->arAuthMode = WPA_AUTH; -+ profChanged = TRUE; -+ break; -+ case WPA_MODE_WPA2: -+ ar->arAuthMode = WPA2_AUTH; -+ profChanged = TRUE; -+ break; -+ case WPA_MODE_NONE: -+ ar->arAuthMode = NONE_AUTH; -+ profChanged = TRUE; -+ break; -+ default: -+ printk("IEEE80211_PARAM_WPA: Unknown value %d\n", value); -+ } -+ break; -+ case IEEE80211_PARAM_AUTHMODE: -+ switch(value) { -+ case IEEE80211_AUTH_WPA_PSK: -+ if (WPA_AUTH == ar->arAuthMode) { -+ ar->arAuthMode = WPA_PSK_AUTH; -+ profChanged = TRUE; -+ } else if (WPA2_AUTH == ar->arAuthMode) { -+ ar->arAuthMode = WPA2_PSK_AUTH; -+ profChanged = TRUE; -+ } else { -+ AR_DEBUG_PRINTF("Error - Setting PSK mode when WPA "\ -+ "param was set to %d\n", -+ ar->arAuthMode); -+ ret = -1; -+ } -+ break; -+ case IEEE80211_AUTH_WPA_CCKM: -+ if (WPA2_AUTH == ar->arAuthMode) { -+ ar->arAuthMode = WPA2_AUTH_CCKM; -+ } else { -+ ar->arAuthMode = WPA_AUTH_CCKM; -+ } -+ break; -+ default: -+ break; -+ } -+ break; -+ case IEEE80211_PARAM_UCASTCIPHER: -+ switch (value) { -+ case IEEE80211_CIPHER_AES_CCM: -+ ar->arPairwiseCrypto = AES_CRYPT; -+ profChanged = TRUE; -+ break; -+ case IEEE80211_CIPHER_TKIP: -+ ar->arPairwiseCrypto = TKIP_CRYPT; -+ profChanged = TRUE; -+ break; -+ case IEEE80211_CIPHER_WEP: -+ ar->arPairwiseCrypto = WEP_CRYPT; -+ profChanged = TRUE; -+ break; -+ case IEEE80211_CIPHER_NONE: -+ ar->arPairwiseCrypto = NONE_CRYPT; -+ profChanged = TRUE; -+ break; -+ } -+ break; -+ case IEEE80211_PARAM_UCASTKEYLEN: -+ if (!IEEE80211_IS_VALID_WEP_CIPHER_LEN(value)) { -+ ret = -EIO; -+ } else { -+ ar->arPairwiseCryptoLen = value; -+ } -+ break; -+ case IEEE80211_PARAM_MCASTCIPHER: -+ switch (value) { -+ case IEEE80211_CIPHER_AES_CCM: -+ ar->arGroupCrypto = AES_CRYPT; -+ profChanged = TRUE; -+ break; -+ case IEEE80211_CIPHER_TKIP: -+ ar->arGroupCrypto = TKIP_CRYPT; -+ profChanged = TRUE; -+ break; -+ case IEEE80211_CIPHER_WEP: -+ ar->arGroupCrypto = WEP_CRYPT; -+ profChanged = TRUE; -+ break; -+ case IEEE80211_CIPHER_NONE: -+ ar->arGroupCrypto = NONE_CRYPT; -+ profChanged = TRUE; -+ break; -+ } -+ break; -+ case IEEE80211_PARAM_MCASTKEYLEN: -+ if (!IEEE80211_IS_VALID_WEP_CIPHER_LEN(value)) { -+ ret = -EIO; -+ } else { -+ ar->arGroupCryptoLen = value; -+ } -+ break; -+ case IEEE80211_PARAM_COUNTERMEASURES: -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ wmi_set_tkip_countermeasures_cmd(ar->arWmi, value); -+ break; -+ default: -+ break; -+ } -+ -+ if (profChanged == TRUE) { -+ /* -+ * profile has changed. Erase ssid to signal change -+ */ -+ A_MEMZERO(ar->arSsid, sizeof(ar->arSsid)); -+ ar->arSsidLen = 0; -+ } -+ -+ return ret; -+} -+ -+int -+ar6000_ioctl_getparam(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ return -EIO; /* for now */ -+} -+ -+int -+ar6000_ioctl_setkey(struct net_device *dev, struct iw_request_info *info, -+ void *w, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct ieee80211req_key *ik = (struct ieee80211req_key *)extra; -+ KEY_USAGE keyUsage; -+ A_STATUS status; -+ CRYPTO_TYPE keyType = NONE_CRYPT; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ ar->user_saved_keys.keyOk = FALSE; -+ -+ if ( 0 == memcmp(ik->ik_macaddr, "\x00\x00\x00\x00\x00\x00", -+ IEEE80211_ADDR_LEN)) { -+ keyUsage = GROUP_USAGE; -+ A_MEMCPY(&ar->user_saved_keys.bcast_ik, ik, -+ sizeof(struct ieee80211req_key)); -+ } else { -+ keyUsage = PAIRWISE_USAGE; -+ A_MEMCPY(&ar->user_saved_keys.ucast_ik, ik, -+ sizeof(struct ieee80211req_key)); -+ } -+ -+ switch (ik->ik_type) { -+ case IEEE80211_CIPHER_WEP: -+ keyType = WEP_CRYPT; -+ break; -+ case IEEE80211_CIPHER_TKIP: -+ keyType = TKIP_CRYPT; -+ break; -+ case IEEE80211_CIPHER_AES_CCM: -+ keyType = AES_CRYPT; -+ break; -+ default: -+ break; -+ } -+ ar->user_saved_keys.keyType = keyType; -+ -+ if (IEEE80211_CIPHER_CCKM_KRK != ik->ik_type) { -+ if (NONE_CRYPT == keyType) { -+ return -EIO; -+ } -+ -+ status = wmi_addKey_cmd(ar->arWmi, ik->ik_keyix, keyType, keyUsage, -+ ik->ik_keylen, (A_UINT8 *)&ik->ik_keyrsc, -+ ik->ik_keydata, KEY_OP_INIT_VAL, -+ SYNC_BEFORE_WMIFLAG); -+ -+ if (status != A_OK) { -+ return -EIO; -+ } -+ } else { -+ status = wmi_add_krk_cmd(ar->arWmi, ik->ik_keydata); -+ } -+ -+ ar->user_saved_keys.keyOk = TRUE; -+ -+ return 0; -+} -+ -+ -+/* -+ * SIOCGIWNAME -+ */ -+int -+ar6000_ioctl_giwname(struct net_device *dev, -+ struct iw_request_info *info, -+ char *name, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ switch (ar->arPhyCapability) { -+ case (WMI_11A_CAPABILITY): -+ strncpy(name, "AR6000 802.11a", IFNAMSIZ); -+ break; -+ case (WMI_11G_CAPABILITY): -+ strncpy(name, "AR6000 802.11g", IFNAMSIZ); -+ break; -+ case (WMI_11AG_CAPABILITY): -+ strncpy(name, "AR6000 802.11ag", IFNAMSIZ); -+ break; -+ default: -+ strncpy(name, "AR6000 802.11", IFNAMSIZ); -+ break; -+ } -+ -+ return 0; -+} -+ -+/* -+ * SIOCSIWFREQ -+ */ -+int -+ar6000_ioctl_siwfreq(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_freq *freq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ /* -+ * We support limiting the channels via wmiconfig. -+ * -+ * We use this command to configure the channel hint for the connect cmd -+ * so it is possible the target will end up connecting to a different -+ * channel. -+ */ -+ if (freq->e > 1) { -+ return -EINVAL; -+ } else if (freq->e == 1) { -+ ar->arChannelHint = freq->m / 100000; -+ } else { -+ ar->arChannelHint = wlan_ieee2freq(freq->m); -+ } -+ -+ A_PRINTF("channel hint set to %d\n", ar->arChannelHint); -+ return 0; -+} -+ -+/* -+ * SIOCGIWFREQ -+ */ -+int -+ar6000_ioctl_giwfreq(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_freq *freq, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ar->arConnected != TRUE) { -+ return -EINVAL; -+ } -+ -+ freq->m = ar->arBssChannel * 100000; -+ freq->e = 1; -+ -+ return 0; -+} -+ -+/* -+ * SIOCSIWMODE -+ */ -+int -+ar6000_ioctl_siwmode(struct net_device *dev, -+ struct iw_request_info *info, -+ __u32 *mode, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ switch (*mode) { -+ case IW_MODE_INFRA: -+ ar->arNetworkType = INFRA_NETWORK; -+ break; -+ case IW_MODE_ADHOC: -+ ar->arNetworkType = ADHOC_NETWORK; -+ break; -+ default: -+ return -EINVAL; -+ } -+ -+ return 0; -+} -+ -+/* -+ * SIOCGIWMODE -+ */ -+int -+ar6000_ioctl_giwmode(struct net_device *dev, -+ struct iw_request_info *info, -+ __u32 *mode, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ switch (ar->arNetworkType) { -+ case INFRA_NETWORK: -+ *mode = IW_MODE_INFRA; -+ break; -+ case ADHOC_NETWORK: -+ *mode = IW_MODE_ADHOC; -+ break; -+ default: -+ return -EIO; -+ } -+ return 0; -+} -+ -+/* -+ * SIOCSIWSENS -+ */ -+int -+ar6000_ioctl_siwsens(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *sens, char *extra) -+{ -+ return 0; -+} -+ -+/* -+ * SIOCGIWSENS -+ */ -+int -+ar6000_ioctl_giwsens(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_param *sens, char *extra) -+{ -+ sens->value = 0; -+ sens->fixed = 1; -+ -+ return 0; -+} -+ -+/* -+ * SIOCGIWRANGE -+ */ -+int -+ar6000_ioctl_giwrange(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *data, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ struct iw_range *range = (struct iw_range *) extra; -+ int i, ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (down_interruptible(&ar->arSem)) { -+ return -ERESTARTSYS; -+ } -+ ar->arNumChannels = -1; -+ A_MEMZERO(ar->arChannelList, sizeof (ar->arChannelList)); -+ -+ if (wmi_get_channelList_cmd(ar->arWmi) != A_OK) { -+ up(&ar->arSem); -+ return -EIO; -+ } -+ -+ wait_event_interruptible_timeout(arEvent, ar->arNumChannels != -1, wmitimeout * HZ); -+ -+ if (signal_pending(current)) { -+ up(&ar->arSem); -+ return -EINTR; -+ } -+ -+ data->length = sizeof(struct iw_range); -+ A_MEMZERO(range, sizeof(struct iw_range)); -+ -+ range->txpower_capa = IW_TXPOW_DBM; -+ -+ range->min_pmp = 1 * 1024; -+ range->max_pmp = 65535 * 1024; -+ range->min_pmt = 1 * 1024; -+ range->max_pmt = 1000 * 1024; -+ range->pmp_flags = IW_POWER_PERIOD; -+ range->pmt_flags = IW_POWER_TIMEOUT; -+ range->pm_capa = 0; -+ -+ range->we_version_compiled = WIRELESS_EXT; -+ range->we_version_source = 13; -+ -+ range->retry_capa = IW_RETRY_LIMIT; -+ range->retry_flags = IW_RETRY_LIMIT; -+ range->min_retry = 0; -+ range->max_retry = 255; -+ -+ range->num_frequency = range->num_channels = ar->arNumChannels; -+ for (i = 0; i < ar->arNumChannels; i++) { -+ range->freq[i].i = wlan_freq2ieee(ar->arChannelList[i]); -+ range->freq[i].m = ar->arChannelList[i] * 100000; -+ range->freq[i].e = 1; -+ /* -+ * Linux supports max of 32 channels, bail out once you -+ * reach the max. -+ */ -+ if (i == IW_MAX_FREQUENCIES) { -+ break; -+ } -+ } -+ -+ /* Max quality is max field value minus noise floor */ -+ range->max_qual.qual = 0xff - 161; -+ -+ /* -+ * In order to use dBm measurements, 'level' must be lower -+ * than any possible measurement (see iw_print_stats() in -+ * wireless tools). It's unclear how this is meant to be -+ * done, but setting zero in these values forces dBm and -+ * the actual numbers are not used. -+ */ -+ range->max_qual.level = 0; -+ range->max_qual.noise = 0; -+ -+ range->sensitivity = 3; -+ -+ range->max_encoding_tokens = 4; -+ /* XXX query driver to find out supported key sizes */ -+ range->num_encoding_sizes = 3; -+ range->encoding_size[0] = 5; /* 40-bit */ -+ range->encoding_size[1] = 13; /* 104-bit */ -+ range->encoding_size[2] = 16; /* 128-bit */ -+ -+ range->num_bitrates = 0; -+ -+ /* estimated maximum TCP throughput values (bps) */ -+ range->throughput = 22000000; -+ -+ range->min_rts = 0; -+ range->max_rts = 2347; -+ range->min_frag = 256; -+ range->max_frag = 2346; -+ -+ up(&ar->arSem); -+ -+ return ret; -+} -+ -+ -+/* -+ * SIOCSIWAP -+ * This ioctl is used to set the desired bssid for the connect command. -+ */ -+int -+ar6000_ioctl_siwap(struct net_device *dev, -+ struct iw_request_info *info, -+ struct sockaddr *ap_addr, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ap_addr->sa_family != ARPHRD_ETHER) { -+ return -EIO; -+ } -+ -+ if (A_MEMCMP(&ap_addr->sa_data, bcast_mac, AR6000_ETH_ADDR_LEN) == 0) { -+ A_MEMZERO(ar->arReqBssid, sizeof(ar->arReqBssid)); -+ } else { -+ A_MEMCPY(ar->arReqBssid, &ap_addr->sa_data, sizeof(ar->arReqBssid)); -+ } -+ -+ return 0; -+} -+ -+/* -+ * SIOCGIWAP -+ */ -+int -+ar6000_ioctl_giwap(struct net_device *dev, -+ struct iw_request_info *info, -+ struct sockaddr *ap_addr, char *extra) -+{ -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ if (ar->arConnected != TRUE) { -+ return -EINVAL; -+ } -+ -+ A_MEMCPY(&ap_addr->sa_data, ar->arBssid, sizeof(ar->arBssid)); -+ ap_addr->sa_family = ARPHRD_ETHER; -+ -+ return 0; -+} -+ -+/* -+ * SIOCGIWAPLIST -+ */ -+int -+ar6000_ioctl_iwaplist(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *data, char *extra) -+{ -+ return -EIO; /* for now */ -+} -+ -+/* -+ * SIOCSIWSCAN -+ */ -+int -+ar6000_ioctl_siwscan(struct net_device *dev, -+ struct iw_request_info *info, -+ struct iw_point *data, char *extra) -+{ -+#define ACT_DWELLTIME_DEFAULT 105 -+#define HOME_TXDRAIN_TIME 100 -+#define SCAN_INT HOME_TXDRAIN_TIME + ACT_DWELLTIME_DEFAULT -+ AR_SOFTC_T *ar = (AR_SOFTC_T *)dev->priv; -+ int ret = 0; -+ -+ if (ar->arWmiReady == FALSE) { -+ return -EIO; -+ } -+ -+ if (ar->arWlanState == WLAN_DISABLED) { -+ return -EIO; -+ } -+ -+ /* We ask for everything from the target */ -+ if (wmi_bssfilter_cmd(ar->arWmi, ALL_BSS_FILTER, 0) != A_OK) { -+ printk("Couldn't set filtering\n"); -+ ret = -EIO; -+ } -+ -+ if (wmi_startscan_cmd(ar->arWmi, WMI_LONG_SCAN, FALSE, FALSE, \ -+ HOME_TXDRAIN_TIME, SCAN_INT) != A_OK) { -+ ret = -EIO; -+ } -+ -+ ar->scan_complete = 0; -+ wait_event_interruptible_timeout(ar6000_scan_queue, ar->scan_complete, -+ 5 * HZ); -+ -+ if (wmi_bssfilter_cmd(ar->arWmi, NONE_BSS_FILTER, 0) != A_OK) { -+ printk("Couldn't set filtering\n"); -+ ret = -EIO; -+ } -+ -+ return ret; -+#undef ACT_DWELLTIME_DEFAULT -+#undef HOME_TXDRAIN_TIME -+#undef SCAN_INT -+} -+ -+ -+/* -+ * Units are in db above the noise floor. That means the -+ * rssi values reported in the tx/rx descriptors in the -+ * driver are the SNR expressed in db. -+ * -+ * If you assume that the noise floor is -95, which is an -+ * excellent assumption 99.5 % of the time, then you can -+ * derive the absolute signal level (i.e. -95 + rssi). -+ * There are some other slight factors to take into account -+ * depending on whether the rssi measurement is from 11b, -+ * 11g, or 11a. These differences are at most 2db and -+ * can be documented. -+ * -+ * NB: various calculations are based on the orinoco/wavelan -+ * drivers for compatibility -+ */ -+static void -+ar6000_set_quality(struct iw_quality *iq, A_INT8 rssi) -+{ -+ if (rssi < 0) { -+ iq->qual = 0; -+ } else { -+ iq->qual = rssi; -+ } -+ -+ /* NB: max is 94 because noise is hardcoded to 161 */ -+ if (iq->qual > 94) -+ iq->qual = 94; -+ -+ iq->noise = 161; /* -95dBm */ -+ iq->level = iq->noise + iq->qual; -+ iq->updated = 7; -+} -+ -+ -+/* Structures to export the Wireless Handlers */ -+static const iw_handler ath_handlers[] = { -+ (iw_handler) NULL, /* SIOCSIWCOMMIT */ -+ (iw_handler) ar6000_ioctl_giwname, /* SIOCGIWNAME */ -+ (iw_handler) NULL, /* SIOCSIWNWID */ -+ (iw_handler) NULL, /* SIOCGIWNWID */ -+ (iw_handler) ar6000_ioctl_siwfreq, /* SIOCSIWFREQ */ -+ (iw_handler) ar6000_ioctl_giwfreq, /* SIOCGIWFREQ */ -+ (iw_handler) ar6000_ioctl_siwmode, /* SIOCSIWMODE */ -+ (iw_handler) ar6000_ioctl_giwmode, /* SIOCGIWMODE */ -+ (iw_handler) ar6000_ioctl_siwsens, /* SIOCSIWSENS */ -+ (iw_handler) ar6000_ioctl_giwsens, /* SIOCGIWSENS */ -+ (iw_handler) NULL /* not _used */, /* SIOCSIWRANGE */ -+ (iw_handler) ar6000_ioctl_giwrange, /* SIOCGIWRANGE */ -+ (iw_handler) NULL /* not used */, /* SIOCSIWPRIV */ -+ (iw_handler) NULL /* kernel code */, /* SIOCGIWPRIV */ -+ (iw_handler) NULL /* not used */, /* SIOCSIWSTATS */ -+ (iw_handler) NULL /* kernel code */, /* SIOCGIWSTATS */ -+ (iw_handler) NULL, /* SIOCSIWSPY */ -+ (iw_handler) NULL, /* SIOCGIWSPY */ -+ (iw_handler) NULL, /* SIOCSIWTHRSPY */ -+ (iw_handler) NULL, /* SIOCGIWTHRSPY */ -+ (iw_handler) ar6000_ioctl_siwap, /* SIOCSIWAP */ -+ (iw_handler) ar6000_ioctl_giwap, /* SIOCGIWAP */ -+ (iw_handler) NULL, /* -- hole -- */ -+ (iw_handler) ar6000_ioctl_iwaplist, /* SIOCGIWAPLIST */ -+ (iw_handler) ar6000_ioctl_siwscan, /* SIOCSIWSCAN */ -+ (iw_handler) ar6000_ioctl_giwscan, /* SIOCGIWSCAN */ -+ (iw_handler) ar6000_ioctl_siwessid, /* SIOCSIWESSID */ -+ (iw_handler) ar6000_ioctl_giwessid, /* SIOCGIWESSID */ -+ (iw_handler) NULL, /* SIOCSIWNICKN */ -+ (iw_handler) NULL, /* SIOCGIWNICKN */ -+ (iw_handler) NULL, /* -- hole -- */ -+ (iw_handler) NULL, /* -- hole -- */ -+ (iw_handler) ar6000_ioctl_siwrate, /* SIOCSIWRATE */ -+ (iw_handler) ar6000_ioctl_giwrate, /* SIOCGIWRATE */ -+ (iw_handler) NULL, /* SIOCSIWRTS */ -+ (iw_handler) NULL, /* SIOCGIWRTS */ -+ (iw_handler) NULL, /* SIOCSIWFRAG */ -+ (iw_handler) NULL, /* SIOCGIWFRAG */ -+ (iw_handler) ar6000_ioctl_siwtxpow, /* SIOCSIWTXPOW */ -+ (iw_handler) ar6000_ioctl_giwtxpow, /* SIOCGIWTXPOW */ -+ (iw_handler) ar6000_ioctl_siwretry, /* SIOCSIWRETRY */ -+ (iw_handler) ar6000_ioctl_giwretry, /* SIOCGIWRETRY */ -+ (iw_handler) ar6000_ioctl_siwencode, /* SIOCSIWENCODE */ -+ (iw_handler) ar6000_ioctl_giwencode, /* SIOCGIWENCODE */ -+ (iw_handler) ar6000_ioctl_siwpower, /* SIOCSIWPOWER */ -+ (iw_handler) ar6000_ioctl_giwpower, /* SIOCGIWPOWER */ -+ (iw_handler) NULL, /* -- hole -- */ -+ (iw_handler) NULL, /* -- hole -- */ -+ (iw_handler) ar6000_ioctl_siwgenie, /* SIOCSIWGENIE */ -+ (iw_handler) ar6000_ioctl_giwgenie, /* SIOCGIWGENIE */ -+ (iw_handler) ar6000_ioctl_siwauth, /* SIOCSIWAUTH */ -+ (iw_handler) ar6000_ioctl_giwauth, /* SIOCGIWAUTH */ -+ (iw_handler) ar6000_ioctl_siwencodeext,/* SIOCSIWENCODEEXT */ -+ (iw_handler) ar6000_ioctl_giwencodeext,/* SIOCGIWENCODEEXT */ -+ (iw_handler) NULL, /* SIOCSIWPMKSA */ -+}; -+ -+static const iw_handler ath_priv_handlers[] = { -+ (iw_handler) ar6000_ioctl_setparam, /* SIOCWFIRSTPRIV+0 */ -+ (iw_handler) ar6000_ioctl_getparam, /* SIOCWFIRSTPRIV+1 */ -+ (iw_handler) ar6000_ioctl_setkey, /* SIOCWFIRSTPRIV+2 */ -+ (iw_handler) ar6000_ioctl_setwmmparams, /* SIOCWFIRSTPRIV+3 */ -+ (iw_handler) ar6000_ioctl_delkey, /* SIOCWFIRSTPRIV+4 */ -+ (iw_handler) ar6000_ioctl_getwmmparams, /* SIOCWFIRSTPRIV+5 */ -+ (iw_handler) ar6000_ioctl_setoptie, /* SIOCWFIRSTPRIV+6 */ -+ (iw_handler) ar6000_ioctl_setmlme, /* SIOCWFIRSTPRIV+7 */ -+ (iw_handler) ar6000_ioctl_addpmkid, /* SIOCWFIRSTPRIV+8 */ -+}; -+ -+#define IW_PRIV_TYPE_KEY \ -+ (IW_PRIV_TYPE_BYTE | sizeof(struct ieee80211req_key)) -+#define IW_PRIV_TYPE_DELKEY \ -+ (IW_PRIV_TYPE_BYTE | sizeof(struct ieee80211req_del_key)) -+#define IW_PRIV_TYPE_MLME \ -+ (IW_PRIV_TYPE_BYTE | sizeof(struct ieee80211req_mlme)) -+#define IW_PRIV_TYPE_ADDPMKID \ -+ (IW_PRIV_TYPE_BYTE | sizeof(struct ieee80211req_addpmkid)) -+ -+static const struct iw_priv_args ar6000_priv_args[] = { -+ { IEEE80211_IOCTL_SETKEY, -+ IW_PRIV_TYPE_KEY | IW_PRIV_SIZE_FIXED, 0, "setkey"}, -+ { IEEE80211_IOCTL_DELKEY, -+ IW_PRIV_TYPE_DELKEY | IW_PRIV_SIZE_FIXED, 0, "delkey"}, -+ { IEEE80211_IOCTL_SETPARAM, -+ IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 2, 0, "setparam"}, -+ { IEEE80211_IOCTL_GETPARAM, -+ IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, -+ IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, "getparam"}, -+ { IEEE80211_IOCTL_SETWMMPARAMS, -+ IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 4, 0, "setwmmparams"}, -+ { IEEE80211_IOCTL_GETWMMPARAMS, -+ IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 3, -+ IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, "getwmmparams"}, -+ { IEEE80211_IOCTL_SETOPTIE, -+ IW_PRIV_TYPE_BYTE, 0, "setie"}, -+ { IEEE80211_IOCTL_SETMLME, -+ IW_PRIV_TYPE_MLME, 0, "setmlme"}, -+ { IEEE80211_IOCTL_ADDPMKID, -+ IW_PRIV_TYPE_ADDPMKID | IW_PRIV_SIZE_FIXED, 0, "addpmkid"}, -+}; -+ -+void ar6000_ioctl_iwsetup(struct iw_handler_def *def) -+{ -+ def->private_args = (struct iw_priv_args *)ar6000_priv_args; -+ def->num_private_args = ARRAY_SIZE(ar6000_priv_args); -+} -+ -+struct iw_handler_def ath_iw_handler_def = { -+ .standard = (iw_handler *)ath_handlers, -+ .num_standard = ARRAY_SIZE(ath_handlers), -+ .private = (iw_handler *)ath_priv_handlers, -+ .num_private = ARRAY_SIZE(ath_priv_handlers), -+}; -+ -+ ---- /dev/null -+++ b/drivers/ar6000/bmi/bmi.c -@@ -0,0 +1,657 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "hif.h" -+#include "bmi.h" -+#include "htc_api.h" -+#include "bmi_internal.h" -+ -+/* -+Although we had envisioned BMI to run on top of HTC, this is not what the -+final implementation boiled down to on dragon. Its a part of BSP and does -+not use the HTC protocol either. On the host side, however, we were still -+living with the original idea. I think the time has come to accept the truth -+and separate it from HTC which has been carrying BMI's burden all this while. -+It shall make HTC state machine relatively simpler -+*/ -+ -+/* APIs visible to the driver */ -+void -+BMIInit(void) -+{ -+ bmiDone = FALSE; -+} -+ -+A_STATUS -+BMIDone(HIF_DEVICE *device) -+{ -+ A_STATUS status; -+ A_UINT32 cid; -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF (ATH_DEBUG_BMI, ("BMIDone skipped\n")); -+ return A_OK; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Done: Enter (device: 0x%p)\n", device)); -+ bmiDone = TRUE; -+ cid = BMI_DONE; -+ -+ status = bmiBufferSend(device, (A_UCHAR *)&cid, sizeof(cid)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Done: Exit\n")); -+ -+ return A_OK; -+} -+ -+A_STATUS -+BMIGetTargetInfo(HIF_DEVICE *device, struct bmi_target_info *targ_info) -+{ -+ A_STATUS status; -+ A_UINT32 cid; -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Get Target Info: Enter (device: 0x%p)\n", device)); -+ cid = BMI_GET_TARGET_INFO; -+ -+ status = bmiBufferSend(device, (A_UCHAR *)&cid, sizeof(cid)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ status = bmiBufferReceive(device, (A_UCHAR *)&targ_info->target_ver, -+ sizeof(targ_info->target_ver)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read Target Version from the device\n")); -+ return A_ERROR; -+ } -+ -+ if (targ_info->target_ver == TARGET_VERSION_SENTINAL) { -+ /* Determine how many bytes are in the Target's targ_info */ -+ status = bmiBufferReceive(device, (A_UCHAR *)&targ_info->target_info_byte_count, -+ sizeof(targ_info->target_info_byte_count)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read Target Info Byte Count from the device\n")); -+ return A_ERROR; -+ } -+ -+ /* -+ * The Target's targ_info doesn't match the Host's targ_info. -+ * We need to do some backwards compatibility work to make this OK. -+ */ -+ A_ASSERT(targ_info->target_info_byte_count == sizeof(*targ_info)); -+ -+ /* Read the remainder of the targ_info */ -+ status = bmiBufferReceive(device, -+ ((A_UCHAR *)targ_info)+sizeof(targ_info->target_info_byte_count), -+ sizeof(*targ_info)-sizeof(targ_info->target_info_byte_count)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read Target Info (%d bytes) from the device\n", -+ targ_info->target_info_byte_count)); -+ return A_ERROR; -+ } -+ } else { -+ /* -+ * Target must be an AR6001 whose firmware does not -+ * support BMI_GET_TARGET_INFO. Construct the data -+ * that it would have sent. -+ */ -+ targ_info->target_info_byte_count = sizeof(targ_info); -+ targ_info->target_type = TARGET_TYPE_AR6001; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Get Target Info: Exit (ver: 0x%x type: 0x%x)\n", -+ targ_info->target_ver, targ_info->target_type)); -+ printk("BMI Get Target Info: Exit (ver: 0x%x type: 0x%x)\n", -+ targ_info->target_ver, targ_info->target_type); -+ -+ return A_OK; -+} -+ -+A_STATUS -+BMIReadMemory(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UCHAR *buffer, -+ A_UINT32 length) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ A_UINT32 remaining, rxlen; -+ static A_UCHAR data[BMI_DATASZ_MAX + sizeof(cid) + sizeof(address) + sizeof(length)]; -+ memset (&data, 0, BMI_DATASZ_MAX + sizeof(cid) + sizeof(address) + sizeof(length)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI Read Memory: Enter (device: 0x%p, address: 0x%x, length: %d)\n", -+ device, address, length)); -+ -+ cid = BMI_READ_MEMORY; -+ -+ remaining = length; -+ -+ while (remaining) -+ { -+ rxlen = (remaining < BMI_DATASZ_MAX) ? remaining : BMI_DATASZ_MAX; -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &address, sizeof(address)); -+ offset += sizeof(address); -+ A_MEMCPY(&data[offset], &rxlen, sizeof(rxlen)); -+ offset += sizeof(length); -+ -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ status = bmiBufferReceive(device, data, rxlen); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read from the device\n")); -+ return A_ERROR; -+ } -+ A_MEMCPY(&buffer[length - remaining], data, rxlen); -+ remaining -= rxlen; address += rxlen; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Read Memory: Exit\n")); -+ return A_OK; -+} -+ -+A_STATUS -+BMIWriteMemory(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UCHAR *buffer, -+ A_UINT32 length) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ A_UINT32 remaining, txlen; -+ const A_UINT32 header = sizeof(cid) + sizeof(address) + sizeof(length); -+ static A_UCHAR data[BMI_DATASZ_MAX + sizeof(cid) + sizeof(address) + sizeof(length)]; -+ memset (&data, 0, header); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI Write Memory: Enter (device: 0x%p, address: 0x%x, length: %d)\n", -+ device, address, length)); -+ -+ cid = BMI_WRITE_MEMORY; -+ -+ remaining = length; -+ while (remaining) -+ { -+ txlen = (remaining < (BMI_DATASZ_MAX - header)) ? -+ remaining : (BMI_DATASZ_MAX - header); -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &address, sizeof(address)); -+ offset += sizeof(address); -+ A_MEMCPY(&data[offset], &txlen, sizeof(txlen)); -+ offset += sizeof(txlen); -+ A_MEMCPY(&data[offset], &buffer[length - remaining], txlen); -+ offset += txlen; -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ remaining -= txlen; address += txlen; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Write Memory: Exit\n")); -+ -+ return A_OK; -+} -+ -+A_STATUS -+BMIExecute(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UINT32 *param) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ static A_UCHAR data[sizeof(cid) + sizeof(address) + sizeof(*param)]; -+ memset (&data, 0, sizeof(cid) + sizeof(address) + sizeof(*param)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI Execute: Enter (device: 0x%p, address: 0x%x, param: %d)\n", -+ device, address, *param)); -+ -+ cid = BMI_EXECUTE; -+ -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &address, sizeof(address)); -+ offset += sizeof(address); -+ A_MEMCPY(&data[offset], param, sizeof(*param)); -+ offset += sizeof(*param); -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ status = bmiBufferReceive(device, data, sizeof(*param)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read from the device\n")); -+ return A_ERROR; -+ } -+ -+ A_MEMCPY(param, data, sizeof(*param)); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Execute: Exit (param: %d)\n", *param)); -+ return A_OK; -+} -+ -+A_STATUS -+BMISetAppStart(HIF_DEVICE *device, -+ A_UINT32 address) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ static A_UCHAR data[sizeof(cid) + sizeof(address)]; -+ memset (&data, 0, sizeof(cid) + sizeof(address)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI Set App Start: Enter (device: 0x%p, address: 0x%x)\n", -+ device, address)); -+ -+ cid = BMI_SET_APP_START; -+ -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &address, sizeof(address)); -+ offset += sizeof(address); -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Set App Start: Exit\n")); -+ return A_OK; -+} -+ -+A_STATUS -+BMIReadSOCRegister(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UINT32 *param) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ static A_UCHAR data[sizeof(cid) + sizeof(address)]; -+ memset (&data, 0, sizeof(cid) + sizeof(address)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI Read SOC Register: Enter (device: 0x%p, address: 0x%x)\n", -+ device, address)); -+ -+ cid = BMI_READ_SOC_REGISTER; -+ -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &address, sizeof(address)); -+ offset += sizeof(address); -+ -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ status = bmiBufferReceive(device, data, sizeof(*param)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read from the device\n")); -+ return A_ERROR; -+ } -+ A_MEMCPY(param, data, sizeof(*param)); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Read SOC Register: Exit (value: %d)\n", *param)); -+ return A_OK; -+} -+ -+A_STATUS -+BMIWriteSOCRegister(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UINT32 param) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ static A_UCHAR data[sizeof(cid) + sizeof(address) + sizeof(param)]; -+ -+ memset (&data, 0, sizeof(cid) + sizeof(address) + sizeof(param)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI Write SOC Register: Enter (device: 0x%p, address: 0x%x, param: %d)\n", -+ device, address, param)); -+ -+ cid = BMI_WRITE_SOC_REGISTER; -+ -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &address, sizeof(address)); -+ offset += sizeof(address); -+ A_MEMCPY(&data[offset], ¶m, sizeof(param)); -+ offset += sizeof(param); -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Read SOC Register: Exit\n")); -+ return A_OK; -+} -+ -+A_STATUS -+BMIrompatchInstall(HIF_DEVICE *device, -+ A_UINT32 ROM_addr, -+ A_UINT32 RAM_addr, -+ A_UINT32 nbytes, -+ A_UINT32 do_activate, -+ A_UINT32 *rompatch_id) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ static A_UCHAR data[sizeof(cid) + sizeof(ROM_addr) + sizeof(RAM_addr) + -+ sizeof(nbytes) + sizeof(do_activate)]; -+ -+ memset (&data, 0, sizeof(cid) + sizeof(ROM_addr) + sizeof(RAM_addr) + -+ sizeof(nbytes) + sizeof(do_activate)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI rompatch Install: Enter (device: 0x%p, ROMaddr: 0x%x, RAMaddr: 0x%x length: %d activate: %d)\n", -+ device, ROM_addr, RAM_addr, nbytes, do_activate)); -+ -+ cid = BMI_ROMPATCH_INSTALL; -+ -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &ROM_addr, sizeof(ROM_addr)); -+ offset += sizeof(ROM_addr); -+ A_MEMCPY(&data[offset], &RAM_addr, sizeof(RAM_addr)); -+ offset += sizeof(RAM_addr); -+ A_MEMCPY(&data[offset], &nbytes, sizeof(nbytes)); -+ offset += sizeof(nbytes); -+ A_MEMCPY(&data[offset], &do_activate, sizeof(do_activate)); -+ offset += sizeof(do_activate); -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ status = bmiBufferReceive(device, (A_UCHAR *)rompatch_id, sizeof(*rompatch_id)); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read from the device\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI rompatch Install: (rompatch_id=%d)\n", *rompatch_id)); -+ return A_OK; -+} -+ -+A_STATUS -+BMIrompatchUninstall(HIF_DEVICE *device, -+ A_UINT32 rompatch_id) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ static A_UCHAR data[sizeof(cid) + sizeof(rompatch_id)]; -+ memset (&data, 0, sizeof(cid) + sizeof(rompatch_id)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI rompatch Uninstall: Enter (device: 0x%p, rompatch_id: %d)\n", -+ device, rompatch_id)); -+ -+ cid = BMI_ROMPATCH_UNINSTALL; -+ -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &rompatch_id, sizeof(rompatch_id)); -+ offset += sizeof(rompatch_id); -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI rompatch UNinstall: (rompatch_id=0x%x)\n", rompatch_id)); -+ return A_OK; -+} -+ -+static A_STATUS -+_BMIrompatchChangeActivation(HIF_DEVICE *device, -+ A_UINT32 rompatch_count, -+ A_UINT32 *rompatch_list, -+ A_UINT32 do_activate) -+{ -+ A_UINT32 cid; -+ A_STATUS status; -+ A_UINT32 offset; -+ static A_UCHAR data[BMI_DATASZ_MAX + sizeof(cid) + sizeof(rompatch_count)]; -+ A_UINT32 length; -+ -+ memset (&data, 0, BMI_DATASZ_MAX + sizeof(cid) + sizeof(rompatch_count)); -+ -+ if (bmiDone) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Command disallowed\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, -+ ("BMI Change rompatch Activation: Enter (device: 0x%p, count: %d)\n", -+ device, rompatch_count)); -+ -+ cid = do_activate ? BMI_ROMPATCH_ACTIVATE : BMI_ROMPATCH_DEACTIVATE; -+ -+ offset = 0; -+ A_MEMCPY(&data[offset], &cid, sizeof(cid)); -+ offset += sizeof(cid); -+ A_MEMCPY(&data[offset], &rompatch_count, sizeof(rompatch_count)); -+ offset += sizeof(rompatch_count); -+ length = rompatch_count * sizeof(*rompatch_list); -+ A_MEMCPY(&data[offset], rompatch_list, length); -+ offset += length; -+ status = bmiBufferSend(device, data, offset); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to write to the device\n")); -+ return A_ERROR; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Change rompatch Activation: Exit\n")); -+ -+ return A_OK; -+} -+ -+A_STATUS -+BMIrompatchActivate(HIF_DEVICE *device, -+ A_UINT32 rompatch_count, -+ A_UINT32 *rompatch_list) -+{ -+ return _BMIrompatchChangeActivation(device, rompatch_count, rompatch_list, 1); -+} -+ -+A_STATUS -+BMIrompatchDeactivate(HIF_DEVICE *device, -+ A_UINT32 rompatch_count, -+ A_UINT32 *rompatch_list) -+{ -+ return _BMIrompatchChangeActivation(device, rompatch_count, rompatch_list, 0); -+} -+ -+/* BMI Access routines */ -+A_STATUS -+bmiBufferSend(HIF_DEVICE *device, -+ A_UCHAR *buffer, -+ A_UINT32 length) -+{ -+ A_STATUS status; -+ A_UINT32 timeout; -+ A_UINT32 address; -+ static A_UINT32 cmdCredits; -+ A_UINT32 mboxAddress[HTC_MAILBOX_NUM_MAX]; -+ -+ HIFConfigureDevice(device, HIF_DEVICE_GET_MBOX_ADDR, -+ &mboxAddress, sizeof(mboxAddress)); -+ -+ cmdCredits = 0; -+ timeout = BMI_COMMUNICATION_TIMEOUT; -+ -+ while(timeout-- && !cmdCredits) { -+ /* Read the counter register to get the command credits */ -+ address = COUNT_DEC_ADDRESS + (HTC_MAILBOX_NUM_MAX + ENDPOINT1) * 4; -+ /* hit the credit counter with a 4-byte access, the first byte read will hit the counter and cause -+ * a decrement, while the remaining 3 bytes has no effect. The rationale behind this is to -+ * make all HIF accesses 4-byte aligned */ -+ status = HIFReadWrite(device, address, (A_UINT8 *)&cmdCredits, 4, -+ HIF_RD_SYNC_BYTE_INC, NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to decrement the command credit count register\n")); -+ return A_ERROR; -+ } -+ /* the counter is only 8=bits, ignore anything in the upper 3 bytes */ -+ cmdCredits &= 0xFF; -+ } -+ -+ if (cmdCredits) { -+ address = mboxAddress[ENDPOINT1]; -+ status = HIFReadWrite(device, address, buffer, length, -+ HIF_WR_SYNC_BYTE_INC, NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to send the BMI data to the device\n")); -+ return A_ERROR; -+ } -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("BMI Communication timeout\n")); -+ return A_ERROR; -+ } -+ -+ return status; -+} -+ -+A_STATUS -+bmiBufferReceive(HIF_DEVICE *device, -+ A_UCHAR *buffer, -+ A_UINT32 length) -+{ -+ A_STATUS status; -+ A_UINT32 address; -+ A_UINT32 timeout; -+ static A_UINT32 cmdCredits; -+ A_UINT32 mboxAddress[HTC_MAILBOX_NUM_MAX]; -+ -+ HIFConfigureDevice(device, HIF_DEVICE_GET_MBOX_ADDR, -+ &mboxAddress, sizeof(mboxAddress)); -+ -+ cmdCredits = 0; -+ timeout = BMI_COMMUNICATION_TIMEOUT; -+ while(timeout-- && !cmdCredits) { -+ /* Read the counter register to get the command credits */ -+ address = COUNT_ADDRESS + (HTC_MAILBOX_NUM_MAX + ENDPOINT1) * 1; -+ /* read the counter using a 4-byte read. Since the counter is NOT auto-decrementing, -+ * we can read this counter multiple times using a non-incrementing address mode. -+ * The rationale here is to make all HIF accesses a multiple of 4 bytes */ -+ status = HIFReadWrite(device, address, (A_UINT8 *)&cmdCredits, sizeof(cmdCredits), -+ HIF_RD_SYNC_BYTE_FIX, NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read the command credit count register\n")); -+ return A_ERROR; -+ } -+ /* we did a 4-byte read to the same count register so mask off upper bytes */ -+ cmdCredits &= 0xFF; -+ status = A_ERROR; -+ } -+ -+ if (cmdCredits) { -+ address = mboxAddress[ENDPOINT1]; -+ status = HIFReadWrite(device, address, buffer, length, -+ HIF_RD_SYNC_BYTE_INC, NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to read the BMI data from the device\n")); -+ return A_ERROR; -+ } -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_BMI, ("BMI Communication timeout\n")); -+ return A_ERROR; -+ } -+ -+ return status; -+} ---- /dev/null -+++ b/drivers/ar6000/bmi/bmi_internal.h -@@ -0,0 +1,45 @@ -+#ifndef BMI_INTERNAL_H -+#define BMI_INTERNAL_H -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "a_osapi.h" -+#include "a_debug.h" -+#include "AR6Khwreg.h" -+#include "bmi_msg.h" -+ -+#define BMI_COMMUNICATION_TIMEOUT 100000 -+ -+/* ------ Global Variable Declarations ------- */ -+A_BOOL bmiDone; -+ -+A_STATUS -+bmiBufferSend(HIF_DEVICE *device, -+ A_UCHAR *buffer, -+ A_UINT32 length); -+ -+A_STATUS -+bmiBufferReceive(HIF_DEVICE *device, -+ A_UCHAR *buffer, -+ A_UINT32 length); -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/hif/hif2.c -@@ -0,0 +1,646 @@ -+/* -+ * hif2.c - HIF layer re-implementation for the Linux SDIO stack -+ * -+ * Copyright (C) 2008 by OpenMoko, Inc. -+ * Written by Werner Almesberger <werner@openmoko.org> -+ * All Rights Reserved -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Based on: -+ * -+ * @abstract: HIF layer reference implementation for Atheros SDIO stack -+ * @notice: Copyright (c) 2004-2006 Atheros Communications Inc. -+ */ -+ -+ -+#include <linux/kernel.h> -+#include <linux/kthread.h> -+#include <linux/list.h> -+#include <linux/wait.h> -+#include <linux/spinlock.h> -+#include <linux/sched.h> -+#include <linux/mmc/sdio_func.h> -+#include <linux/mmc/sdio.h> -+#include <linux/mmc/sdio_ids.h> -+#include <asm/gpio.h> -+ -+#include "athdefs.h" -+#include "a_types.h" -+#include "hif.h" -+ -+ -+/* -+ * KNOWN BUGS: -+ * -+ * - HIF_DEVICE_IRQ_ASYNC_SYNC doesn't work yet (gets MMC errors) -+ * - latency can reach hundreds of ms, probably because of scheduling delays -+ * - packets go through about three queues before finally hitting the network -+ */ -+ -+/* -+ * Differences from Atheros' HIFs: -+ * -+ * - synchronous and asynchronous requests may get reordered with respect to -+ * each other, e.g., if HIFReadWrite returns for an asynchronous request and -+ * then HIFReadWrite is called for a synchronous request, the synchronous -+ * request may be executed before the asynchronous request. -+ * -+ * - request queue locking seems unnecessarily complex in the Atheros HIFs. -+ * -+ * - Atheros mask interrupts by calling sdio_claim_irq/sdio_release_irq, which -+ * can cause quite a bit of overhead. This HIF has its own light-weight -+ * interrupt masking. -+ * -+ * - Atheros call deviceInsertedHandler from a thread spawned off the probe or -+ * device insertion function. The original explanation for the Atheros SDIO -+ * stack said that this is done because a delay is needed to let the chip -+ * complete initialization. There is indeed a one second delay in the thread. -+ * -+ * The Atheros Linux SDIO HIF removes the delay and only retains the thread. -+ * Experimentally removing the thread didn't show any conflicts, so let's get -+ * rid of it for good. -+ * -+ * - The Atheros SDIO stack with Samuel's driver sets SDIO_CCCR_POWER in -+ * SDIO_POWER_EMPC. Atheros' Linux SDIO code apparently doesn't. We don't -+ * either, and this seems to work fine. -+ * @@@ Need to check this with Atheros. -+ */ -+ -+ -+#define MBOXES 4 -+ -+#define HIF_MBOX_BLOCK_SIZE 128 -+#define HIF_MBOX_BASE_ADDR 0x800 -+#define HIF_MBOX_WIDTH 0x800 -+#define HIF_MBOX_START_ADDR(mbox) \ -+ (HIF_MBOX_BASE_ADDR+(mbox)*HIF_MBOX_WIDTH) -+ -+ -+struct hif_device { -+ void *htc_handle; -+ struct sdio_func *func; -+ -+ /* -+ * @@@ our sweet little bit of bogosity - the mechanism that lets us -+ * use the SDIO stack from softirqs. This really wants to use skbs. -+ */ -+ struct list_head queue; -+ spinlock_t queue_lock; -+ struct task_struct *io_task; -+ wait_queue_head_t wait; -+}; -+ -+struct hif_request { -+ struct list_head list; -+ struct sdio_func *func; -+ int (*read)(struct sdio_func *func, -+ void *dst, unsigned int addr, int count); -+ int (*write)(struct sdio_func *func, -+ unsigned int addr, void *src, int count); -+ void *buf; -+ unsigned long addr; -+ int len; -+ A_STATUS (*completion)(void *context, A_STATUS status); -+ void *context; -+}; -+ -+ -+static HTC_CALLBACKS htcCallbacks; -+ -+/* -+ * shutdown_lock prevents recursion through HIFShutDownDevice -+ */ -+static DEFINE_MUTEX(shutdown_lock); -+ -+ -+/* ----- Request processing ------------------------------------------------ */ -+ -+ -+static A_STATUS process_request(struct hif_request *req) -+{ -+ int ret; -+ A_STATUS status; -+ -+ dev_dbg(&req->func->dev, "process_request(req %p)\n", req); -+ sdio_claim_host(req->func); -+ if (req->read) -+ ret = req->read(req->func, req->buf, req->addr, req->len); -+ else -+ ret = req->write(req->func, req->addr, req->buf, req->len); -+ sdio_release_host(req->func); -+ status = ret ? A_ERROR : A_OK; -+ if (req->completion) -+ req->completion(req->context, status); -+ kfree(req); -+ return status; -+} -+ -+ -+static void enqueue_request(struct hif_device *hif, struct hif_request *req) -+{ -+ unsigned long flags; -+ -+ dev_dbg(&req->func->dev, "enqueue_request(req %p)\n", req); -+ spin_lock_irqsave(&hif->queue_lock, flags); -+ list_add_tail(&req->list, &hif->queue); -+ spin_unlock_irqrestore(&hif->queue_lock, flags); -+ wake_up(&hif->wait); -+} -+ -+ -+static struct hif_request *dequeue_request(struct hif_device *hif) -+{ -+ struct hif_request *req; -+ unsigned long flags; -+ -+ spin_lock_irqsave(&hif->queue_lock, flags); -+ if (list_empty(&hif->queue)) -+ req = NULL; -+ else { -+ req = list_first_entry(&hif->queue, -+ struct hif_request, list); -+ list_del(&req->list); -+ } -+ spin_unlock_irqrestore(&hif->queue_lock, flags); -+ return req; -+} -+ -+ -+static void wait_queue_empty(struct hif_device *hif) -+{ -+ unsigned long flags; -+ int empty; -+ -+ while (1) { -+ spin_lock_irqsave(&hif->queue_lock, flags); -+ empty = list_empty(&hif->queue); -+ spin_unlock_irqrestore(&hif->queue_lock, flags); -+ if (empty) -+ break; -+ else -+ yield(); -+ } -+} -+ -+ -+static int io(void *data) -+{ -+ struct hif_device *hif = data; -+ struct sched_param param = { .sched_priority = 2 }; -+ /* one priority level slower than ksdioirqd (which is at 1) */ -+ DEFINE_WAIT(wait); -+ struct hif_request *req; -+ -+ sched_setscheduler(current, SCHED_FIFO, ¶m); -+ -+ while (1) { -+ while (1) { -+ /* -+ * Since we never use signals here, one might think -+ * that this ought to be TASK_UNINTERRUPTIBLE. However, -+ * such a task would increase the load average and, -+ * worse, it would trigger the softlockup check. -+ */ -+ prepare_to_wait(&hif->wait, &wait, TASK_INTERRUPTIBLE); -+ if (kthread_should_stop()) { -+ finish_wait(&hif->wait, &wait); -+ return 0; -+ } -+ req = dequeue_request(hif); -+ if (req) -+ break; -+ schedule(); -+ } -+ finish_wait(&hif->wait, &wait); -+ -+ (void) process_request(req); -+ } -+ return 0; -+} -+ -+ -+A_STATUS HIFReadWrite(HIF_DEVICE *hif, A_UINT32 address, A_UCHAR *buffer, -+ A_UINT32 length, A_UINT32 request, void *context) -+{ -+ struct device *dev = HIFGetOSDevice(hif); -+ struct hif_request *req; -+ -+ dev_dbg(dev, "HIFReadWrite(device %p, address 0x%x, buffer %p, " -+ "length %d, request 0x%x, context %p)\n", -+ hif, address, buffer, length, request, context); -+ -+ BUG_ON(!(request & (HIF_SYNCHRONOUS | HIF_ASYNCHRONOUS))); -+ BUG_ON(!(request & (HIF_BYTE_BASIS | HIF_BLOCK_BASIS))); -+ BUG_ON(!(request & (HIF_READ | HIF_WRITE))); -+ BUG_ON(!(request & HIF_EXTENDED_IO)); -+ -+ if (address >= HIF_MBOX_START_ADDR(0) && -+ address < HIF_MBOX_START_ADDR(MBOXES+1)) { -+ BUG_ON(length > HIF_MBOX_WIDTH); -+ /* Adjust the address so that the last byte falls on the EOM -+ address. */ -+ address += HIF_MBOX_WIDTH-length; -+ } -+ -+ req = kzalloc(sizeof(*req), GFP_ATOMIC); -+ if (!req) { -+ if (request & HIF_ASYNCHRONOUS) -+ htcCallbacks.rwCompletionHandler(context, A_ERROR); -+ return A_ERROR; -+ } -+ -+ req->func = hif->func; -+ req->addr = address; -+ req->buf = buffer; -+ req->len = length; -+ -+ if (request & HIF_READ) { -+ if (request & HIF_FIXED_ADDRESS) -+ req->read = sdio_readsb; -+ else -+ req->read = sdio_memcpy_fromio; -+ } else { -+ if (request & HIF_FIXED_ADDRESS) -+ req->write = sdio_writesb; -+ else -+ req->write = sdio_memcpy_toio; -+ } -+ -+ if (!(request & HIF_ASYNCHRONOUS)) -+ return process_request(req); -+ -+ req->completion = htcCallbacks.rwCompletionHandler; -+ req->context = context; -+ enqueue_request(hif, req); -+ -+ return A_OK; -+} -+ -+ -+/* ----- Interrupt handling ------------------------------------------------ */ -+ -+/* -+ * Volatile ought to be good enough to make gcc do the right thing on S3C24xx. -+ * No need to use atomic or put barriers, keeping the code more readable. -+ * -+ * Warning: this story changes if going SMP/SMT. -+ */ -+ -+static volatile int masked = 1; -+static volatile int pending; -+static volatile int in_interrupt; -+ -+ -+static void ar6000_do_irq(struct sdio_func *func) -+{ -+ HIF_DEVICE *hif = sdio_get_drvdata(func); -+ struct device *dev = HIFGetOSDevice(hif); -+ A_STATUS status; -+ -+ dev_dbg(dev, "ar6000_do_irq -> %p\n", htcCallbacks.dsrHandler); -+ -+ status = htcCallbacks.dsrHandler(hif->htc_handle); -+ BUG_ON(status != A_OK); -+} -+ -+ -+static void sdio_ar6000_irq(struct sdio_func *func) -+{ -+ HIF_DEVICE *hif = sdio_get_drvdata(func); -+ struct device *dev = HIFGetOSDevice(hif); -+ -+ dev_dbg(dev, "sdio_ar6000_irq\n"); -+ -+ in_interrupt = 1; -+ if (masked) { -+ in_interrupt = 0; -+ pending++; -+ return; -+ } -+ /* -+ * @@@ This is ugly. If we don't drop the lock, we'll deadlock when -+ * the handler tries to do SDIO. So there are four choices: -+ * -+ * 1) Break the call chain by calling the callback from a workqueue. -+ * Ugh. -+ * 2) Make process_request aware that we already have the lock. -+ * 3) Drop the lock. Which is ugly but should be safe as long as we're -+ * making sure the device doesn't go away. -+ * 4) Change the AR6k driver such that it only issues asynchronous -+ * quests when called from an interrupt. -+ * -+ * Solution 2) is probably the best for now. Will try it later. -+ */ -+ sdio_release_host(func); -+ ar6000_do_irq(func); -+ sdio_claim_host(func); -+ in_interrupt = 0; -+} -+ -+ -+void HIFAckInterrupt(HIF_DEVICE *hif) -+{ -+ struct device *dev = HIFGetOSDevice(hif); -+ -+ dev_dbg(dev, "HIFAckInterrupt\n"); -+ /* do nothing */ -+} -+ -+ -+void HIFUnMaskInterrupt(HIF_DEVICE *hif) -+{ -+ struct device *dev = HIFGetOSDevice(hif); -+ -+ dev_dbg(dev, "HIFUnMaskInterrupt\n"); -+ do { -+ masked = 1; -+ if (pending) { -+ pending = 0; -+ ar6000_do_irq(hif->func); -+ /* We may take an interrupt before unmasking and thus -+ get it pending. In this case, we just loop back. */ -+ } -+ masked = 0; -+ } -+ while (pending); -+} -+ -+ -+void HIFMaskInterrupt(HIF_DEVICE *hif) -+{ -+ struct device *dev = HIFGetOSDevice(hif); -+ -+ dev_dbg(dev, "HIFMaskInterrupt\n"); -+ /* -+ * Since sdio_ar6000_irq can also be called from a process context, we -+ * may conceivably end up racing with it. Thus, we need to wait until -+ * we can be sure that no concurrent interrupt processing is going on -+ * before we return. -+ * -+ * Note: this may be a bit on the paranoid side - the callers may -+ * actually be nice enough to disable scheduling. Check later. -+ */ -+ masked = 1; -+ while (in_interrupt) -+ yield(); -+} -+ -+ -+/* ----- HIF API glue functions -------------------------------------------- */ -+ -+ -+struct device *HIFGetOSDevice(HIF_DEVICE *hif) -+{ -+ return &hif->func->dev; -+} -+ -+ -+void HIFSetHandle(void *hif_handle, void *handle) -+{ -+ HIF_DEVICE *hif = (HIF_DEVICE *) hif_handle; -+ -+ hif->htc_handle = handle; -+} -+ -+ -+/* ----- Device configuration (HIF side) ----------------------------------- */ -+ -+ -+A_STATUS HIFConfigureDevice(HIF_DEVICE *hif, -+ HIF_DEVICE_CONFIG_OPCODE opcode, void *config, A_UINT32 configLen) -+{ -+ struct device *dev = HIFGetOSDevice(hif); -+ HIF_DEVICE_IRQ_PROCESSING_MODE *ipm_cfg = config; -+ A_UINT32 *mbs_cfg = config; -+ int i; -+ -+ dev_dbg(dev, "HIFConfigureDevice\n"); -+ -+ switch (opcode) { -+ case HIF_DEVICE_GET_MBOX_BLOCK_SIZE: -+ for (i = 0; i != MBOXES; i++) -+ mbs_cfg[i] = HIF_MBOX_BLOCK_SIZE; -+ break; -+ case HIF_DEVICE_GET_MBOX_ADDR: -+ for (i = 0; i != MBOXES; i++) -+ mbs_cfg[i] = HIF_MBOX_START_ADDR(i); -+ break; -+ case HIF_DEVICE_GET_IRQ_PROC_MODE: -+ *ipm_cfg = HIF_DEVICE_IRQ_SYNC_ONLY; -+// *ipm_cfg = HIF_DEVICE_IRQ_ASYNC_SYNC; -+ break; -+ default: -+ return A_ERROR; -+ } -+ return A_OK; -+} -+ -+ -+/* ----- Device probe and removal (Linux side) ----------------------------- */ -+ -+ -+static int sdio_ar6000_probe(struct sdio_func *func, -+ const struct sdio_device_id *id) -+{ -+ struct device *dev = &func->dev; -+ struct hif_device *hif; -+ int ret; -+ -+ dev_dbg(dev, "sdio_ar6000_probe\n"); -+ BUG_ON(!htcCallbacks.deviceInsertedHandler); -+ -+ hif = kzalloc(sizeof(*hif), GFP_KERNEL); -+ if (!hif) -+ return -ENOMEM; -+ -+ sdio_set_drvdata(func, hif); -+ sdio_claim_host(func); -+ sdio_enable_func(func); -+ -+ hif->func = func; -+ INIT_LIST_HEAD(&hif->queue); -+ init_waitqueue_head(&hif->wait); -+ spin_lock_init(&hif->queue_lock); -+ -+ ret = sdio_set_block_size(func, HIF_MBOX_BLOCK_SIZE); -+ if (ret < 0) { -+ dev_err(dev, "sdio_set_block_size returns %d\n", ret); -+ goto out_enabled; -+ } -+ ret = sdio_claim_irq(func, sdio_ar6000_irq); -+ if (ret) { -+ dev_err(dev, "sdio_claim_irq returns %d\n", ret); -+ goto out_enabled; -+ } -+ /* Set SDIO_BUS_CD_DISABLE in SDIO_CCCR_IF ? */ -+#if 0 -+ sdio_f0_writeb(func, SDIO_CCCR_CAP_E4MI, SDIO_CCCR_CAPS, &ret); -+ if (ret) { -+ dev_err(dev, "sdio_f0_writeb(SDIO_CCCR_CAPS) returns %d\n", -+ ret); -+ goto out_got_irq; -+ } -+#else -+ if (0) /* avoid warning */ -+ goto out_got_irq; -+#endif -+ -+ sdio_release_host(func); -+ -+ hif->io_task = kthread_run(io, hif, "ar6000_io"); -+ if (IS_ERR(hif->io_task)) { -+ dev_err(dev, "kthread_run(ar6000_io): %d\n", ret); -+ goto out_func_ready; -+ } -+ -+ ret = htcCallbacks.deviceInsertedHandler(hif); -+ if (ret == A_OK) -+ return 0; -+ -+ dev_err(dev, "deviceInsertedHandler: %d\n", ret); -+ -+ ret = kthread_stop(hif->io_task); -+ if (ret) -+ dev_err(dev, "kthread_stop (ar6000_io): %d\n", ret); -+ -+out_func_ready: -+ sdio_claim_host(func); -+ -+out_got_irq: -+ sdio_release_irq(func); -+ -+out_enabled: -+ sdio_set_drvdata(func, NULL); -+ sdio_disable_func(func); -+ sdio_release_host(func); -+ -+ return ret; -+} -+ -+ -+static void sdio_ar6000_remove(struct sdio_func *func) -+{ -+ struct device *dev = &func->dev; -+ HIF_DEVICE *hif = sdio_get_drvdata(func); -+ int ret; -+ -+ dev_dbg(dev, "sdio_ar6000_remove\n"); -+ if (mutex_trylock(&shutdown_lock)) { -+ /* -+ * Funny, Atheros' HIF does this call, but this just puts us in -+ * a recursion through HTCShutDown/HIFShutDown if unloading the -+ * module. -+ * -+ * However, we need it for suspend/resume. See the comment at -+ * HIFShutDown, below. -+ */ -+ ret = htcCallbacks.deviceRemovedHandler(hif->htc_handle, A_OK); -+ if (ret != A_OK) -+ dev_err(dev, "deviceRemovedHandler: %d\n", ret); -+ mutex_unlock(&shutdown_lock); -+ } -+ wait_queue_empty(hif); -+ ret = kthread_stop(hif->io_task); -+ if (ret) -+ dev_err(dev, "kthread_stop (ar6000_io): %d\n", ret); -+ sdio_claim_host(func); -+ sdio_release_irq(func); -+ sdio_set_drvdata(func, NULL); -+ sdio_disable_func(func); -+ sdio_release_host(func); -+ kfree(hif); -+} -+ -+ -+/* ----- Device registration/unregistration (called by HIF) ---------------- */ -+ -+ -+#define ATHEROS_SDIO_DEVICE(id, offset) \ -+ SDIO_DEVICE(SDIO_VENDOR_ID_ATHEROS, SDIO_DEVICE_ID_ATHEROS_##id | (offset)) -+ -+static const struct sdio_device_id sdio_ar6000_ids[] = { -+ { ATHEROS_SDIO_DEVICE(AR6000, 0) }, -+ { ATHEROS_SDIO_DEVICE(AR6000, 0x1) }, -+ { ATHEROS_SDIO_DEVICE(AR6000, 0x8) }, -+ { ATHEROS_SDIO_DEVICE(AR6000, 0x9) }, -+ { ATHEROS_SDIO_DEVICE(AR6000, 0xa) }, -+ { ATHEROS_SDIO_DEVICE(AR6000, 0xb) }, -+ { /* end: all zeroes */ }, -+}; -+ -+MODULE_DEVICE_TABLE(sdio, sdio_ar6000_ids); -+ -+ -+static struct sdio_driver sdio_ar6000_driver = { -+ .probe = sdio_ar6000_probe, -+ .remove = sdio_ar6000_remove, -+ .name = "sdio_ar6000", -+ .id_table = sdio_ar6000_ids, -+}; -+ -+ -+int HIFInit(HTC_CALLBACKS *callbacks) -+{ -+ int ret; -+ -+ BUG_ON(!callbacks); -+ -+ printk(KERN_DEBUG "HIFInit\n"); -+ htcCallbacks = *callbacks; -+ -+ ret = sdio_register_driver(&sdio_ar6000_driver); -+ if (ret) { -+ printk(KERN_ERR -+ "sdio_register_driver(sdio_ar6000_driver): %d\n", ret); -+ return A_ERROR; -+ } -+ -+ return 0; -+} -+ -+ -+/* -+ * We have three possible call chains here: -+ * -+ * System shutdown/reboot: -+ * -+ * kernel_restart_prepare ...> device_shutdown ... > s3cmci_shutdown -> -+ * mmc_remove_host ..> sdio_bus_remove -> sdio_ar6000_remove -> -+ * deviceRemovedHandler (HTCTargetRemovedHandler) -> HIFShutDownDevice -+ * -+ * This is roughly the same sequence as suspend, described below. -+ * -+ * Module removal: -+ * -+ * sys_delete_module -> ar6000_cleanup_module -> HTCShutDown -> -+ * HIFShutDownDevice -> sdio_unregister_driver ...> sdio_bus_remove -> -+ * sdio_ar6000_remove -+ * -+ * In this case, HIFShutDownDevice must call sdio_unregister_driver to -+ * notify the driver about its removal. sdio_ar6000_remove must not call -+ * deviceRemovedHandler, because that would loop back into HIFShutDownDevice. -+ * -+ * Suspend: -+ * -+ * device_suspend ...> s3cmci_suspend ...> sdio_bus_remove -> -+ * sdio_ar6000_remove -> deviceRemovedHandler (HTCTargetRemovedHandler) -> -+ * HIFShutDownDevice -+ * -+ * We must call deviceRemovedHandler to inform the ar6k stack that the device -+ * has been removed. Since HTCTargetRemovedHandler calls back into -+ * HIFShutDownDevice, we must also prevent the call to -+ * sdio_unregister_driver, or we'd end up recursing into the SDIO stack, -+ * eventually deadlocking somewhere. -+ */ -+ -+void HIFShutDownDevice(HIF_DEVICE *hif) -+{ -+ /* Beware, HTCShutDown calls us with hif == NULL ! */ -+ if (mutex_trylock(&shutdown_lock)) { -+ sdio_unregister_driver(&sdio_ar6000_driver); -+ mutex_unlock(&shutdown_lock); -+ } -+} ---- /dev/null -+++ b/drivers/ar6000/hif/hif.c -@@ -0,0 +1,824 @@ -+/* -+ * @file: hif.c -+ * -+ * @abstract: HIF layer reference implementation for Atheros SDIO stack -+ * -+ * @notice: Copyright (c) 2004-2006 Atheros Communications Inc. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "hif_internal.h" -+ -+/* ------ Static Variables ------ */ -+ -+/* ------ Global Variable Declarations ------- */ -+SD_PNP_INFO Ids[] = { -+ { -+ .SDIO_ManufacturerID = MANUFACTURER_ID_AR6001_BASE | 0xB, -+ .SDIO_ManufacturerCode = MANUFACTURER_CODE, -+ .SDIO_FunctionClass = FUNCTION_CLASS, -+ .SDIO_FunctionNo = 1 -+ }, -+ { -+ .SDIO_ManufacturerID = MANUFACTURER_ID_AR6001_BASE | 0xA, -+ .SDIO_ManufacturerCode = MANUFACTURER_CODE, -+ .SDIO_FunctionClass = FUNCTION_CLASS, -+ .SDIO_FunctionNo = 1 -+ }, -+ { -+ .SDIO_ManufacturerID = MANUFACTURER_ID_AR6001_BASE | 0x9, -+ .SDIO_ManufacturerCode = MANUFACTURER_CODE, -+ .SDIO_FunctionClass = FUNCTION_CLASS, -+ .SDIO_FunctionNo = 1 -+ }, -+ { -+ .SDIO_ManufacturerID = MANUFACTURER_ID_AR6001_BASE | 0x8, -+ .SDIO_ManufacturerCode = MANUFACTURER_CODE, -+ .SDIO_FunctionClass = FUNCTION_CLASS, -+ .SDIO_FunctionNo = 1 -+ }, -+ { -+ .SDIO_ManufacturerID = MANUFACTURER_ID_AR6002_BASE | 0x0, -+ .SDIO_ManufacturerCode = MANUFACTURER_CODE, -+ .SDIO_FunctionClass = FUNCTION_CLASS, -+ .SDIO_FunctionNo = 1 -+ }, -+ { -+ .SDIO_ManufacturerID = MANUFACTURER_ID_AR6002_BASE | 0x1, -+ .SDIO_ManufacturerCode = MANUFACTURER_CODE, -+ .SDIO_FunctionClass = FUNCTION_CLASS, -+ .SDIO_FunctionNo = 1 -+ }, -+ { -+ } //list is null termintaed -+}; -+ -+TARGET_FUNCTION_CONTEXT FunctionContext = { -+ .function.Version = CT_SDIO_STACK_VERSION_CODE, -+ .function.pName = "sdio_wlan", -+ .function.MaxDevices = 1, -+ .function.NumDevices = 0, -+ .function.pIds = Ids, -+ .function.pProbe = hifDeviceInserted, -+ .function.pRemove = hifDeviceRemoved, -+ .function.pSuspend = NULL, -+ .function.pResume = NULL, -+ .function.pWake = NULL, -+ .function.pContext = &FunctionContext, -+}; -+ -+HIF_DEVICE hifDevice[HIF_MAX_DEVICES]; -+HTC_CALLBACKS htcCallbacks; -+BUS_REQUEST busRequest[BUS_REQUEST_MAX_NUM]; -+static BUS_REQUEST *s_busRequestFreeQueue = NULL; -+OS_CRITICALSECTION lock; -+extern A_UINT32 onebitmode; -+extern A_UINT32 busspeedlow; -+ -+#ifdef DEBUG -+extern A_UINT32 debughif; -+#define ATH_DEBUG_ERROR 1 -+#define ATH_DEBUG_WARN 2 -+#define ATH_DEBUG_TRACE 3 -+#define _AR_DEBUG_PRINTX_ARG(arg...) arg -+#define AR_DEBUG_PRINTF(lvl, args)\ -+ {if (lvl <= debughif)\ -+ A_PRINTF(KERN_ALERT _AR_DEBUG_PRINTX_ARG args);\ -+ } -+#else -+#define AR_DEBUG_PRINTF(lvl, args) -+#endif -+ -+static BUS_REQUEST *hifAllocateBusRequest(void); -+static void hifFreeBusRequest(BUS_REQUEST *busrequest); -+static THREAD_RETURN insert_helper_func(POSKERNEL_HELPER pHelper); -+static void ResetAllCards(void); -+ -+/* ------ Functions ------ */ -+int HIFInit(HTC_CALLBACKS *callbacks) -+{ -+ SDIO_STATUS status; -+ DBG_ASSERT(callbacks != NULL); -+ -+ /* Store the callback and event handlers */ -+ htcCallbacks.deviceInsertedHandler = callbacks->deviceInsertedHandler; -+ htcCallbacks.deviceRemovedHandler = callbacks->deviceRemovedHandler; -+ htcCallbacks.deviceSuspendHandler = callbacks->deviceSuspendHandler; -+ htcCallbacks.deviceResumeHandler = callbacks->deviceResumeHandler; -+ htcCallbacks.deviceWakeupHandler = callbacks->deviceWakeupHandler; -+ htcCallbacks.rwCompletionHandler = callbacks->rwCompletionHandler; -+ htcCallbacks.dsrHandler = callbacks->dsrHandler; -+ -+ CriticalSectionInit(&lock); -+ -+ /* Register with bus driver core */ -+ status = SDIO_RegisterFunction(&FunctionContext.function); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+ -+ return(0); -+} -+ -+A_STATUS -+HIFReadWrite(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UCHAR *buffer, -+ A_UINT32 length, -+ A_UINT32 request, -+ void *context) -+{ -+ A_UINT8 rw; -+ A_UINT8 mode; -+ A_UINT8 funcNo; -+ A_UINT8 opcode; -+ A_UINT16 count; -+ SDREQUEST *sdrequest; -+ SDIO_STATUS sdiostatus; -+ BUS_REQUEST *busrequest; -+ A_STATUS status = A_OK; -+ -+ DBG_ASSERT(device != NULL); -+ DBG_ASSERT(device->handle != NULL); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Device: %p\n", device)); -+ -+ do { -+ busrequest = hifAllocateBusRequest(); -+ if (busrequest == NULL) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, ("HIF Unable to allocate bus request\n")); -+ status = A_NO_RESOURCE; -+ break; -+ } -+ -+ sdrequest = busrequest->request; -+ busrequest->context = context; -+ -+ sdrequest->pDataBuffer = buffer; -+ if (request & HIF_SYNCHRONOUS) { -+ sdrequest->Flags = SDREQ_FLAGS_RESP_SDIO_R5 | SDREQ_FLAGS_DATA_TRANS; -+ sdrequest->pCompleteContext = NULL; -+ sdrequest->pCompletion = NULL; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Execution mode: Synchronous\n")); -+ } else if (request & HIF_ASYNCHRONOUS) { -+ sdrequest->Flags = SDREQ_FLAGS_RESP_SDIO_R5 | SDREQ_FLAGS_DATA_TRANS | -+ SDREQ_FLAGS_TRANS_ASYNC; -+ sdrequest->pCompleteContext = busrequest; -+ sdrequest->pCompletion = hifRWCompletionHandler; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Execution mode: Asynchronous\n")); -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Invalid execution mode: 0x%08x\n", request)); -+ status = A_EINVAL; -+ break; -+ } -+ -+ if (request & HIF_EXTENDED_IO) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Command type: CMD53\n")); -+ sdrequest->Command = CMD53; -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Invalid command type: 0x%08x\n", request)); -+ status = A_EINVAL; -+ break; -+ } -+ -+ if (request & HIF_BLOCK_BASIS) { -+ mode = CMD53_BLOCK_BASIS; -+ sdrequest->BlockLen = HIF_MBOX_BLOCK_SIZE; -+ sdrequest->BlockCount = length / HIF_MBOX_BLOCK_SIZE; -+ count = sdrequest->BlockCount; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("Block mode (BlockLen: %d, BlockCount: %d)\n", -+ sdrequest->BlockLen, sdrequest->BlockCount)); -+ } else if (request & HIF_BYTE_BASIS) { -+ mode = CMD53_BYTE_BASIS; -+ sdrequest->BlockLen = length; -+ sdrequest->BlockCount = 1; -+ count = sdrequest->BlockLen; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("Byte mode (BlockLen: %d, BlockCount: %d)\n", -+ sdrequest->BlockLen, sdrequest->BlockCount)); -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Invalid data mode: 0x%08x\n", request)); -+ status = A_EINVAL; -+ break; -+ } -+ -+#if 0 -+ /* useful for checking register accesses */ -+ if (length & 0x3) { -+ A_PRINTF(KERN_ALERT"HIF (%s) is not a multiple of 4 bytes, addr:0x%X, len:%d\n", -+ request & HIF_WRITE ? "write":"read", address, length); -+ } -+#endif -+ -+ if ((address >= HIF_MBOX_START_ADDR(0)) && -+ (address <= HIF_MBOX_END_ADDR(3))) -+ { -+ -+ DBG_ASSERT(length <= HIF_MBOX_WIDTH); -+ -+ /* -+ * Mailbox write. Adjust the address so that the last byte -+ * falls on the EOM address. -+ */ -+ address += (HIF_MBOX_WIDTH - length); -+ } -+ -+ -+ -+ if (request & HIF_WRITE) { -+ rw = CMD53_WRITE; -+ sdrequest->Flags |= SDREQ_FLAGS_DATA_WRITE; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Direction: Write\n")); -+ } else if (request & HIF_READ) { -+ rw = CMD53_READ; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Direction: Read\n")); -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Invalid direction: 0x%08x\n", request)); -+ status = A_EINVAL; -+ break; -+ } -+ -+ if (request & HIF_FIXED_ADDRESS) { -+ opcode = CMD53_FIXED_ADDRESS; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Address mode: Fixed\n")); -+ } else if (request & HIF_INCREMENTAL_ADDRESS) { -+ opcode = CMD53_INCR_ADDRESS; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Address mode: Incremental\n")); -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Invalid address mode: 0x%08x\n", request)); -+ status = A_EINVAL; -+ break; -+ } -+ -+ funcNo = SDDEVICE_GET_SDIO_FUNCNO(device->handle); -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Function number: %d\n", funcNo)); -+ SDIO_SET_CMD53_ARG(sdrequest->Argument, rw, funcNo, -+ mode, opcode, address, count); -+ -+ /* Send the command out */ -+ sdiostatus = SDDEVICE_CALL_REQUEST_FUNC(device->handle, sdrequest); -+ -+ if (!SDIO_SUCCESS(sdiostatus)) { -+ status = A_ERROR; -+ } -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status) || (request & HIF_SYNCHRONOUS)) { -+ if (busrequest != NULL) { -+ hifFreeBusRequest(busrequest); -+ } -+ } -+ -+ if (A_FAILED(status) && (request & HIF_ASYNCHRONOUS)) { -+ /* call back async handler on failure */ -+ htcCallbacks.rwCompletionHandler(context, status); -+ } -+ -+ return status; -+} -+ -+A_STATUS -+HIFConfigureDevice(HIF_DEVICE *device, HIF_DEVICE_CONFIG_OPCODE opcode, -+ void *config, A_UINT32 configLen) -+{ -+ A_UINT32 count; -+ -+ switch(opcode) { -+ case HIF_DEVICE_GET_MBOX_BLOCK_SIZE: -+ ((A_UINT32 *)config)[0] = HIF_MBOX0_BLOCK_SIZE; -+ ((A_UINT32 *)config)[1] = HIF_MBOX1_BLOCK_SIZE; -+ ((A_UINT32 *)config)[2] = HIF_MBOX2_BLOCK_SIZE; -+ ((A_UINT32 *)config)[3] = HIF_MBOX3_BLOCK_SIZE; -+ break; -+ -+ case HIF_DEVICE_GET_MBOX_ADDR: -+ for (count = 0; count < 4; count ++) { -+ ((A_UINT32 *)config)[count] = HIF_MBOX_START_ADDR(count); -+ } -+ break; -+ case HIF_DEVICE_GET_IRQ_PROC_MODE: -+ /* the SDIO stack allows the interrupts to be processed either way, ASYNC or SYNC */ -+ *((HIF_DEVICE_IRQ_PROCESSING_MODE *)config) = HIF_DEVICE_IRQ_ASYNC_SYNC; -+ break; -+ default: -+ AR_DEBUG_PRINTF(ATH_DEBUG_WARN, -+ ("Unsupported configuration opcode: %d\n", opcode)); -+ return A_ERROR; -+ } -+ -+ return A_OK; -+} -+ -+void -+HIFShutDownDevice(HIF_DEVICE *device) -+{ -+ A_UINT8 data; -+ A_UINT32 count; -+ SDIO_STATUS status; -+ SDCONFIG_BUS_MODE_DATA busSettings; -+ SDCONFIG_FUNC_ENABLE_DISABLE_DATA fData; -+ -+ if (device != NULL) { -+ DBG_ASSERT(device->handle != NULL); -+ -+ /* Remove the allocated current if any */ -+ status = SDLIB_IssueConfig(device->handle, -+ SDCONFIG_FUNC_FREE_SLOT_CURRENT, NULL, 0); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+ -+ /* Disable the card */ -+ fData.EnableFlags = SDCONFIG_DISABLE_FUNC; -+ fData.TimeOut = 1; -+ status = SDLIB_IssueConfig(device->handle, SDCONFIG_FUNC_ENABLE_DISABLE, -+ &fData, sizeof(fData)); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+ -+ /* Perform a soft I/O reset */ -+ data = SDIO_IO_RESET; -+ status = SDLIB_IssueCMD52(device->handle, 0, SDIO_IO_ABORT_REG, -+ &data, 1, 1); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+ -+ /* -+ * WAR - Codetelligence driver does not seem to shutdown correctly in 1 -+ * bit mode. By default it configures the HC in the 4 bit. Its later in -+ * our driver that we switch to 1 bit mode. If we try to shutdown, the -+ * driver hangs so we revert to 4 bit mode, to be transparent to the -+ * underlying bus driver. -+ */ -+ if (onebitmode) { -+ ZERO_OBJECT(busSettings); -+ busSettings.BusModeFlags = SDDEVICE_GET_BUSMODE_FLAGS(device->handle); -+ SDCONFIG_SET_BUS_WIDTH(busSettings.BusModeFlags, -+ SDCONFIG_BUS_WIDTH_4_BIT); -+ -+ /* Issue config request to change the bus width to 4 bit */ -+ status = SDLIB_IssueConfig(device->handle, SDCONFIG_BUS_MODE_CTRL, -+ &busSettings, -+ sizeof(SDCONFIG_BUS_MODE_DATA)); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+ } -+ -+ /* Free the bus requests */ -+ for (count = 0; count < BUS_REQUEST_MAX_NUM; count ++) { -+ SDDeviceFreeRequest(device->handle, busRequest[count].request); -+ } -+ /* Clean up the queue */ -+ s_busRequestFreeQueue = NULL; -+ } else { -+ /* since we are unloading the driver anyways, reset all cards in case the SDIO card -+ * is externally powered and we are unloading the SDIO stack. This avoids the problem when -+ * the SDIO stack is reloaded and attempts are made to re-enumerate a card that is already -+ * enumerated */ -+ ResetAllCards(); -+ /* Unregister with bus driver core */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("Unregistering with the bus driver\n")); -+ status = SDIO_UnregisterFunction(&FunctionContext.function); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+ } -+} -+ -+void -+hifRWCompletionHandler(SDREQUEST *request) -+{ -+ A_STATUS status; -+ void *context; -+ BUS_REQUEST *busrequest; -+ -+ if (SDIO_SUCCESS(request->Status)) { -+ status = A_OK; -+ } else { -+ status = A_ERROR; -+ } -+ -+ DBG_ASSERT(status == A_OK); -+ busrequest = (BUS_REQUEST *) request->pCompleteContext; -+ context = (void *) busrequest->context; -+ /* free the request before calling the callback, in case the -+ * callback submits another request, this guarantees that -+ * there is at least 1 free request available everytime the callback -+ * is invoked */ -+ hifFreeBusRequest(busrequest); -+ htcCallbacks.rwCompletionHandler(context, status); -+} -+ -+void -+hifIRQHandler(void *context) -+{ -+ A_STATUS status; -+ HIF_DEVICE *device; -+ -+ device = (HIF_DEVICE *)context; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Device: %p\n", device)); -+ status = htcCallbacks.dsrHandler(device->htc_handle); -+ DBG_ASSERT(status == A_OK); -+} -+ -+BOOL -+hifDeviceInserted(SDFUNCTION *function, SDDEVICE *handle) -+{ -+ BOOL enabled; -+ A_UINT8 data; -+ A_UINT32 count; -+ HIF_DEVICE *device; -+ SDIO_STATUS status; -+ A_UINT16 maxBlocks; -+ A_UINT16 maxBlockSize; -+ SDCONFIG_BUS_MODE_DATA busSettings; -+ SDCONFIG_FUNC_ENABLE_DISABLE_DATA fData; -+ TARGET_FUNCTION_CONTEXT *functionContext; -+ SDCONFIG_FUNC_SLOT_CURRENT_DATA slotCurrent; -+ SD_BUSCLOCK_RATE currentBusClock; -+ -+ DBG_ASSERT(function != NULL); -+ DBG_ASSERT(handle != NULL); -+ -+ device = addHifDevice(handle); -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Device: %p\n", device)); -+ functionContext = (TARGET_FUNCTION_CONTEXT *)function->pContext; -+ -+ /* -+ * Issue commands to get the manufacturer ID and stuff and compare it -+ * against the rev Id derived from the ID registered during the -+ * initialization process. Report the device only in the case there -+ * is a match. In the case od SDIO, the bus driver has already queried -+ * these details so we just need to use their data structures to get the -+ * relevant values. Infact, the driver has already matched it against -+ * the Ids that we registered with it so we dont need to the step here. -+ */ -+ -+ /* Configure the SDIO Bus Width */ -+ if (onebitmode) { -+ data = SDIO_BUS_WIDTH_1_BIT; -+ status = SDLIB_IssueCMD52(handle, 0, SDIO_BUS_IF_REG, &data, 1, 1); -+ if (!SDIO_SUCCESS(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Unable to set the bus width to 1 bit\n")); -+ return FALSE; -+ } -+ } -+ -+ /* Get current bus flags */ -+ ZERO_OBJECT(busSettings); -+ -+ busSettings.BusModeFlags = SDDEVICE_GET_BUSMODE_FLAGS(handle); -+ if (onebitmode) { -+ SDCONFIG_SET_BUS_WIDTH(busSettings.BusModeFlags, -+ SDCONFIG_BUS_WIDTH_1_BIT); -+ } -+ -+ /* get the current operating clock, the bus driver sets us up based -+ * on what our CIS reports and what the host controller can handle -+ * we can use this to determine whether we want to drop our clock rate -+ * down */ -+ currentBusClock = SDDEVICE_GET_OPER_CLOCK(handle); -+ busSettings.ClockRate = currentBusClock; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("HIF currently running at: %d \n",currentBusClock)); -+ -+ /* see if HIF wants to run at a lower clock speed, we may already be -+ * at that lower clock speed */ -+ if (currentBusClock > (SDIO_CLOCK_FREQUENCY_DEFAULT >> busspeedlow)) { -+ busSettings.ClockRate = SDIO_CLOCK_FREQUENCY_DEFAULT >> busspeedlow; -+ AR_DEBUG_PRINTF(ATH_DEBUG_WARN, -+ ("HIF overriding clock to %d \n",busSettings.ClockRate)); -+ } -+ -+ /* Issue config request to override clock rate */ -+ status = SDLIB_IssueConfig(handle, SDCONFIG_FUNC_CHANGE_BUS_MODE, &busSettings, -+ sizeof(SDCONFIG_BUS_MODE_DATA)); -+ if (!SDIO_SUCCESS(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Unable to configure the host clock\n")); -+ return FALSE; -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("Configured clock: %d, Maximum clock: %d\n", -+ busSettings.ActualClockRate, -+ SDDEVICE_GET_MAX_CLOCK(handle))); -+ } -+ -+ /* -+ * Check if the target supports block mode. This result of this check -+ * can be used to implement the HIFReadWrite API. -+ */ -+ if (SDDEVICE_GET_SDIO_FUNC_MAXBLKSIZE(handle)) { -+ /* Limit block size to operational block limit or card function -+ capability */ -+ maxBlockSize = min(SDDEVICE_GET_OPER_BLOCK_LEN(handle), -+ SDDEVICE_GET_SDIO_FUNC_MAXBLKSIZE(handle)); -+ -+ /* check if the card support multi-block transfers */ -+ if (!(SDDEVICE_GET_SDIOCARD_CAPS(handle) & SDIO_CAPS_MULTI_BLOCK)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Byte basis only\n")); -+ -+ /* Limit block size to max byte basis */ -+ maxBlockSize = min(maxBlockSize, -+ (A_UINT16)SDIO_MAX_LENGTH_BYTE_BASIS); -+ maxBlocks = 1; -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Multi-block capable\n")); -+ maxBlocks = SDDEVICE_GET_OPER_BLOCKS(handle); -+ status = SDLIB_SetFunctionBlockSize(handle, HIF_MBOX_BLOCK_SIZE); -+ if (!SDIO_SUCCESS(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Failed to set block size. Err:%d\n", status)); -+ return FALSE; -+ } -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("Bytes Per Block: %d bytes, Block Count:%d \n", -+ maxBlockSize, maxBlocks)); -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Function does not support Block Mode!\n")); -+ return FALSE; -+ } -+ -+ /* Allocate the slot current */ -+ status = SDLIB_GetDefaultOpCurrent(handle, &slotCurrent.SlotCurrent); -+ if (SDIO_SUCCESS(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Allocating Slot current: %d mA\n", -+ slotCurrent.SlotCurrent)); -+ status = SDLIB_IssueConfig(handle, SDCONFIG_FUNC_ALLOC_SLOT_CURRENT, -+ &slotCurrent, sizeof(slotCurrent)); -+ if (!SDIO_SUCCESS(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Failed to allocate slot current %d\n", status)); -+ return FALSE; -+ } -+ } -+ -+ /* Enable the dragon function */ -+ count = 0; -+ enabled = FALSE; -+ fData.TimeOut = 1; -+ fData.EnableFlags = SDCONFIG_ENABLE_FUNC; -+ while ((count++ < SDWLAN_ENABLE_DISABLE_TIMEOUT) && !enabled) -+ { -+ /* Enable dragon */ -+ status = SDLIB_IssueConfig(handle, SDCONFIG_FUNC_ENABLE_DISABLE, -+ &fData, sizeof(fData)); -+ if (!SDIO_SUCCESS(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("Attempting to enable the card again\n")); -+ continue; -+ } -+ -+ /* Mark the status as enabled */ -+ enabled = TRUE; -+ } -+ -+ /* Check if we were succesful in enabling the target */ -+ if (!enabled) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, -+ ("Failed to communicate with the target\n")); -+ return FALSE; -+ } -+ -+ /* Allocate the bus requests to be used later */ -+ A_MEMZERO(busRequest, sizeof(busRequest)); -+ for (count = 0; count < BUS_REQUEST_MAX_NUM; count ++) { -+ if ((busRequest[count].request = SDDeviceAllocRequest(handle)) == NULL){ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERROR, ("Unable to allocate memory\n")); -+ /* TODO: Free the memory that has already been allocated */ -+ return FALSE; -+ } -+ hifFreeBusRequest(&busRequest[count]); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("0x%08x = busRequest[%d].request = 0x%08x\n", -+ (unsigned int) &busRequest[count], count, -+ (unsigned int) busRequest[count].request)); -+ } -+ -+ /* Schedule a worker to handle device inserted, this is a temporary workaround -+ * to fix a deadlock if the device fails to intialize in the insertion handler -+ * The failure causes the instance to shutdown the HIF layer and unregister the -+ * function driver within the busdriver probe context which can deadlock -+ * -+ * NOTE: we cannot use the default work queue because that would block -+ * SD bus request processing for all synchronous I/O. We must use a kernel -+ * thread that is creating using the helper library. -+ * */ -+ -+ if (SDIO_SUCCESS(SDLIB_OSCreateHelper(&device->insert_helper, -+ insert_helper_func, -+ device))) { -+ device->helper_started = TRUE; -+ } -+ -+ return TRUE; -+} -+ -+static THREAD_RETURN insert_helper_func(POSKERNEL_HELPER pHelper) -+{ -+ -+ /* -+ * Adding a wait of around a second before we issue the very first -+ * command to dragon. During the process of loading/unloading the -+ * driver repeatedly it was observed that we get a data timeout -+ * while accessing function 1 registers in the chip. The theory at -+ * this point is that some initialization delay in dragon is -+ * causing the SDIO state in dragon core to be not ready even after -+ * the ready bit indicates that function 1 is ready. Accomodating -+ * for this behavior by adding some delay in the driver before it -+ * issues the first command after switching on dragon. Need to -+ * investigate this a bit more - TODO -+ */ -+ -+ A_MDELAY(1000); -+ /* Inform HTC */ -+ if ((htcCallbacks.deviceInsertedHandler(SD_GET_OS_HELPER_CONTEXT(pHelper))) != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, ("Device rejected\n")); -+ } -+ -+ return 0; -+} -+ -+void -+HIFAckInterrupt(HIF_DEVICE *device) -+{ -+ SDIO_STATUS status; -+ DBG_ASSERT(device != NULL); -+ DBG_ASSERT(device->handle != NULL); -+ -+ /* Acknowledge our function IRQ */ -+ status = SDLIB_IssueConfig(device->handle, SDCONFIG_FUNC_ACK_IRQ, -+ NULL, 0); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+} -+ -+void -+HIFUnMaskInterrupt(HIF_DEVICE *device) -+{ -+ SDIO_STATUS status; -+ -+ DBG_ASSERT(device != NULL); -+ DBG_ASSERT(device->handle != NULL); -+ -+ /* Register the IRQ Handler */ -+ SDDEVICE_SET_IRQ_HANDLER(device->handle, hifIRQHandler, device); -+ -+ /* Unmask our function IRQ */ -+ status = SDLIB_IssueConfig(device->handle, SDCONFIG_FUNC_UNMASK_IRQ, -+ NULL, 0); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+} -+ -+void HIFMaskInterrupt(HIF_DEVICE *device) -+{ -+ SDIO_STATUS status; -+ DBG_ASSERT(device != NULL); -+ DBG_ASSERT(device->handle != NULL); -+ -+ /* Mask our function IRQ */ -+ status = SDLIB_IssueConfig(device->handle, SDCONFIG_FUNC_MASK_IRQ, -+ NULL, 0); -+ DBG_ASSERT(SDIO_SUCCESS(status)); -+ -+ /* Unregister the IRQ Handler */ -+ SDDEVICE_SET_IRQ_HANDLER(device->handle, NULL, NULL); -+} -+ -+static BUS_REQUEST *hifAllocateBusRequest(void) -+{ -+ BUS_REQUEST *busrequest; -+ -+ /* Acquire lock */ -+ CriticalSectionAcquire(&lock); -+ -+ /* Remove first in list */ -+ if((busrequest = s_busRequestFreeQueue) != NULL) -+ { -+ s_busRequestFreeQueue = busrequest->next; -+ } -+ -+ /* Release lock */ -+ CriticalSectionRelease(&lock); -+ -+ return busrequest; -+} -+ -+static void -+hifFreeBusRequest(BUS_REQUEST *busrequest) -+{ -+ DBG_ASSERT(busrequest != NULL); -+ -+ /* Acquire lock */ -+ CriticalSectionAcquire(&lock); -+ -+ /* Insert first in list */ -+ busrequest->next = s_busRequestFreeQueue; -+ s_busRequestFreeQueue = busrequest; -+ -+ /* Release lock */ -+ CriticalSectionRelease(&lock); -+} -+ -+void -+hifDeviceRemoved(SDFUNCTION *function, SDDEVICE *handle) -+{ -+ A_STATUS status; -+ HIF_DEVICE *device; -+ DBG_ASSERT(function != NULL); -+ DBG_ASSERT(handle != NULL); -+ -+ device = getHifDevice(handle); -+ status = htcCallbacks.deviceRemovedHandler(device->htc_handle, A_OK); -+ -+ /* cleanup the helper thread */ -+ if (device->helper_started) { -+ SDLIB_OSDeleteHelper(&device->insert_helper); -+ device->helper_started = FALSE; -+ } -+ -+ delHifDevice(handle); -+ DBG_ASSERT(status == A_OK); -+} -+ -+HIF_DEVICE * -+addHifDevice(SDDEVICE *handle) -+{ -+ DBG_ASSERT(handle != NULL); -+ hifDevice[0].handle = handle; -+ return &hifDevice[0]; -+} -+ -+HIF_DEVICE * -+getHifDevice(SDDEVICE *handle) -+{ -+ DBG_ASSERT(handle != NULL); -+ return &hifDevice[0]; -+} -+ -+void -+delHifDevice(SDDEVICE *handle) -+{ -+ DBG_ASSERT(handle != NULL); -+ hifDevice[0].handle = NULL; -+} -+ -+struct device* -+HIFGetOSDevice(HIF_DEVICE *device) -+{ -+ return &device->handle->Device->dev; -+} -+ -+static void ResetAllCards(void) -+{ -+ UINT8 data; -+ SDIO_STATUS status; -+ int i; -+ -+ data = SDIO_IO_RESET; -+ -+ /* set the I/O CARD reset bit: -+ * NOTE: we are exploiting a "feature" of the SDIO core that resets the core when you -+ * set the RES bit in the SDIO_IO_ABORT register. This bit however "normally" resets the -+ * I/O functions leaving the SDIO core in the same state (as per SDIO spec). -+ * In this design, this reset can be used to reset the SDIO core itself */ -+ for (i = 0; i < HIF_MAX_DEVICES; i++) { -+ if (hifDevice[i].handle != NULL) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRACE, -+ ("Issuing I/O Card reset for instance: %d \n",i)); -+ /* set the I/O Card reset bit */ -+ status = SDLIB_IssueCMD52(hifDevice[i].handle, -+ 0, /* function 0 space */ -+ SDIO_IO_ABORT_REG, -+ &data, -+ 1, /* 1 byte */ -+ TRUE); /* write */ -+ } -+ } -+ -+} -+ -+void HIFSetHandle(void *hif_handle, void *handle) -+{ -+ HIF_DEVICE *device = (HIF_DEVICE *) hif_handle; -+ -+ device->htc_handle = handle; -+ -+ return; -+} ---- /dev/null -+++ b/drivers/ar6000/hif/hif_internal.h -@@ -0,0 +1,102 @@ -+/* -+ * @file: hif_internal.h -+ * -+ * @abstract: internal header file for hif layer -+ * -+ * @notice: Copyright (c) 2004-2006 Atheros Communications Inc. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include <linux/sdio/ctsystem.h> -+#include <linux/sdio/sdio_busdriver.h> -+#include <linux/sdio/_sdio_defs.h> -+#include <linux/sdio/sdio_lib.h> -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "a_osapi.h" -+#include "hif.h" -+ -+#define MANUFACTURER_ID_AR6001_BASE 0x100 -+#define MANUFACTURER_ID_AR6002_BASE 0x200 -+#define FUNCTION_CLASS 0x0 -+#define MANUFACTURER_CODE 0x271 -+ -+#define BUS_REQUEST_MAX_NUM 64 -+ -+#define SDIO_CLOCK_FREQUENCY_DEFAULT 25000000 -+#define SDWLAN_ENABLE_DISABLE_TIMEOUT 20 -+#define FLAGS_CARD_ENAB 0x02 -+#define FLAGS_CARD_IRQ_UNMSK 0x04 -+ -+#define HIF_MBOX_BLOCK_SIZE 128 -+#define HIF_MBOX_BASE_ADDR 0x800 -+#define HIF_MBOX_WIDTH 0x800 -+#define HIF_MBOX0_BLOCK_SIZE 1 -+#define HIF_MBOX1_BLOCK_SIZE HIF_MBOX_BLOCK_SIZE -+#define HIF_MBOX2_BLOCK_SIZE HIF_MBOX_BLOCK_SIZE -+#define HIF_MBOX3_BLOCK_SIZE HIF_MBOX_BLOCK_SIZE -+ -+#define HIF_MBOX_START_ADDR(mbox) \ -+ HIF_MBOX_BASE_ADDR + mbox * HIF_MBOX_WIDTH -+ -+#define HIF_MBOX_END_ADDR(mbox) \ -+ HIF_MBOX_START_ADDR(mbox) + HIF_MBOX_WIDTH - 1 -+ -+struct hif_device { -+ SDDEVICE *handle; -+ void *htc_handle; -+ OSKERNEL_HELPER insert_helper; -+ BOOL helper_started; -+}; -+ -+typedef struct target_function_context { -+ SDFUNCTION function; /* function description of the bus driver */ -+ OS_SEMAPHORE instanceSem; /* instance lock. Unused */ -+ SDLIST instanceList; /* list of instances. Unused */ -+} TARGET_FUNCTION_CONTEXT; -+ -+typedef struct bus_request { -+ struct bus_request *next; -+ SDREQUEST *request; -+ void *context; -+} BUS_REQUEST; -+ -+BOOL -+hifDeviceInserted(SDFUNCTION *function, SDDEVICE *device); -+ -+void -+hifDeviceRemoved(SDFUNCTION *function, SDDEVICE *device); -+ -+SDREQUEST * -+hifAllocateDeviceRequest(SDDEVICE *device); -+ -+void -+hifFreeDeviceRequest(SDREQUEST *request); -+ -+void -+hifRWCompletionHandler(SDREQUEST *request); -+ -+void -+hifIRQHandler(void *context); -+ -+HIF_DEVICE * -+addHifDevice(SDDEVICE *handle); -+ -+HIF_DEVICE * -+getHifDevice(SDDEVICE *handle); -+ -+void -+delHifDevice(SDDEVICE *handle); ---- /dev/null -+++ b/drivers/ar6000/htc/ar6k.c -@@ -0,0 +1,991 @@ -+/* -+ * AR6K device layer that handles register level I/O -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "AR6Khwreg.h" -+#include "a_osapi.h" -+#include "a_debug.h" -+#include "hif.h" -+#include "htc_packet.h" -+#include "ar6k.h" -+ -+#define MAILBOX_FOR_BLOCK_SIZE 1 -+ -+extern A_UINT32 resetok; -+ -+static A_STATUS DevEnableInterrupts(AR6K_DEVICE *pDev); -+static A_STATUS DevDisableInterrupts(AR6K_DEVICE *pDev); -+ -+#define LOCK_AR6K(p) A_MUTEX_LOCK(&(p)->Lock); -+#define UNLOCK_AR6K(p) A_MUTEX_UNLOCK(&(p)->Lock); -+ -+void AR6KFreeIOPacket(AR6K_DEVICE *pDev, HTC_PACKET *pPacket) -+{ -+ LOCK_AR6K(pDev); -+ HTC_PACKET_ENQUEUE(&pDev->RegisterIOList,pPacket); -+ UNLOCK_AR6K(pDev); -+} -+ -+HTC_PACKET *AR6KAllocIOPacket(AR6K_DEVICE *pDev) -+{ -+ HTC_PACKET *pPacket; -+ -+ LOCK_AR6K(pDev); -+ pPacket = HTC_PACKET_DEQUEUE(&pDev->RegisterIOList); -+ UNLOCK_AR6K(pDev); -+ -+ return pPacket; -+} -+ -+A_STATUS DevSetup(AR6K_DEVICE *pDev) -+{ -+ A_UINT32 mailboxaddrs[AR6K_MAILBOXES]; -+ A_UINT32 blocksizes[AR6K_MAILBOXES]; -+ A_STATUS status = A_OK; -+ int i; -+ -+ AR_DEBUG_ASSERT(AR6K_IRQ_PROC_REGS_SIZE == 16); -+ AR_DEBUG_ASSERT(AR6K_IRQ_ENABLE_REGS_SIZE == 4); -+ -+ do { -+ /* give a handle to HIF for this target */ -+ HIFSetHandle(pDev->HIFDevice, (void *)pDev); -+ /* initialize our free list of IO packets */ -+ INIT_HTC_PACKET_QUEUE(&pDev->RegisterIOList); -+ A_MUTEX_INIT(&pDev->Lock); -+ -+ /* get the addresses for all 4 mailboxes */ -+ status = HIFConfigureDevice(pDev->HIFDevice, HIF_DEVICE_GET_MBOX_ADDR, -+ mailboxaddrs, sizeof(mailboxaddrs)); -+ -+ if (status != A_OK) { -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* carve up register I/O packets (these are for ASYNC register I/O ) */ -+ for (i = 0; i < AR6K_MAX_REG_IO_BUFFERS; i++) { -+ HTC_PACKET *pIOPacket; -+ pIOPacket = &pDev->RegIOBuffers[i].HtcPacket; -+ SET_HTC_PACKET_INFO_RX_REFILL(pIOPacket, -+ pDev, -+ pDev->RegIOBuffers[i].Buffer, -+ AR6K_REG_IO_BUFFER_SIZE, -+ 0); /* don't care */ -+ AR6KFreeIOPacket(pDev,pIOPacket); -+ } -+ -+ /* get the address of the mailbox we are using */ -+ pDev->MailboxAddress = mailboxaddrs[HTC_MAILBOX]; -+ -+ /* get the block sizes */ -+ status = HIFConfigureDevice(pDev->HIFDevice, HIF_DEVICE_GET_MBOX_BLOCK_SIZE, -+ blocksizes, sizeof(blocksizes)); -+ -+ if (status != A_OK) { -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* note: we actually get the block size of a mailbox other than 0, for SDIO the block -+ * size on mailbox 0 is artificially set to 1. So we use the block size that is set -+ * for the other 3 mailboxes */ -+ pDev->BlockSize = blocksizes[MAILBOX_FOR_BLOCK_SIZE]; -+ /* must be a power of 2 */ -+ AR_DEBUG_ASSERT((pDev->BlockSize & (pDev->BlockSize - 1)) == 0); -+ -+ /* assemble mask, used for padding to a block */ -+ pDev->BlockMask = pDev->BlockSize - 1; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC,("BlockSize: %d, MailboxAddress:0x%X \n", -+ pDev->BlockSize, pDev->MailboxAddress)); -+ -+ pDev->GetPendingEventsFunc = NULL; -+ /* see if the HIF layer implements the get pending events function */ -+ HIFConfigureDevice(pDev->HIFDevice, -+ HIF_DEVICE_GET_PENDING_EVENTS_FUNC, -+ &pDev->GetPendingEventsFunc, -+ sizeof(pDev->GetPendingEventsFunc)); -+ -+ /* assume we can process HIF interrupt events asynchronously */ -+ pDev->HifIRQProcessingMode = HIF_DEVICE_IRQ_ASYNC_SYNC; -+ -+ /* see if the HIF layer overrides this assumption */ -+ HIFConfigureDevice(pDev->HIFDevice, -+ HIF_DEVICE_GET_IRQ_PROC_MODE, -+ &pDev->HifIRQProcessingMode, -+ sizeof(pDev->HifIRQProcessingMode)); -+ -+ switch (pDev->HifIRQProcessingMode) { -+ case HIF_DEVICE_IRQ_SYNC_ONLY: -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC,("HIF Interrupt processing is SYNC ONLY\n")); -+ break; -+ case HIF_DEVICE_IRQ_ASYNC_SYNC: -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC,("HIF Interrupt processing is ASYNC and SYNC\n")); -+ break; -+ default: -+ AR_DEBUG_ASSERT(FALSE); -+ } -+ -+ pDev->HifMaskUmaskRecvEvent = NULL; -+ -+ /* see if the HIF layer implements the mask/unmask recv events function */ -+ HIFConfigureDevice(pDev->HIFDevice, -+ HIF_DEVICE_GET_RECV_EVENT_MASK_UNMASK_FUNC, -+ &pDev->HifMaskUmaskRecvEvent, -+ sizeof(pDev->HifMaskUmaskRecvEvent)); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC,("HIF special overrides : 0x%X , 0x%X\n", -+ (A_UINT32)pDev->GetPendingEventsFunc, (A_UINT32)pDev->HifMaskUmaskRecvEvent)); -+ -+ status = DevDisableInterrupts(pDev); -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status)) { -+ /* make sure handle is cleared */ -+ HIFSetHandle(pDev->HIFDevice, NULL); -+ } -+ -+ return status; -+ -+} -+ -+static A_STATUS DevEnableInterrupts(AR6K_DEVICE *pDev) -+{ -+ A_STATUS status; -+ AR6K_IRQ_ENABLE_REGISTERS regs; -+ -+ LOCK_AR6K(pDev); -+ -+ /* Enable all the interrupts except for the dragon interrupt */ -+ pDev->IrqEnableRegisters.int_status_enable = INT_STATUS_ENABLE_ERROR_SET(0x01) | -+ INT_STATUS_ENABLE_CPU_SET(0x01) | -+ INT_STATUS_ENABLE_COUNTER_SET(0x01); -+ -+ if (NULL == pDev->GetPendingEventsFunc) { -+ pDev->IrqEnableRegisters.int_status_enable |= INT_STATUS_ENABLE_MBOX_DATA_SET(0x01); -+ } else { -+ /* The HIF layer provided us with a pending events function which means that -+ * the detection of pending mbox messages is handled in the HIF layer. -+ * This is the case for the SPI2 interface. -+ * In the normal case we enable MBOX interrupts, for the case -+ * with HIFs that offer this mechanism, we keep these interrupts -+ * masked */ -+ pDev->IrqEnableRegisters.int_status_enable &= ~INT_STATUS_ENABLE_MBOX_DATA_SET(0x01); -+ } -+ -+ -+ /* Set up the CPU Interrupt Status Register */ -+ pDev->IrqEnableRegisters.cpu_int_status_enable = CPU_INT_STATUS_ENABLE_BIT_SET(0x00); -+ -+ /* Set up the Error Interrupt Status Register */ -+ pDev->IrqEnableRegisters.error_status_enable = -+ ERROR_STATUS_ENABLE_RX_UNDERFLOW_SET(0x01) | -+ ERROR_STATUS_ENABLE_TX_OVERFLOW_SET(0x01); -+ -+ /* Set up the Counter Interrupt Status Register (only for debug interrupt to catch fatal errors) */ -+ pDev->IrqEnableRegisters.counter_int_status_enable = -+ COUNTER_INT_STATUS_ENABLE_BIT_SET(AR6K_TARGET_DEBUG_INTR_MASK); -+ -+ /* copy into our temp area */ -+ A_MEMCPY(®s,&pDev->IrqEnableRegisters,AR6K_IRQ_ENABLE_REGS_SIZE); -+ -+ UNLOCK_AR6K(pDev); -+ -+ /* always synchronous */ -+ status = HIFReadWrite(pDev->HIFDevice, -+ INT_STATUS_ENABLE_ADDRESS, -+ ®s.int_status_enable, -+ AR6K_IRQ_ENABLE_REGS_SIZE, -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ -+ if (status != A_OK) { -+ /* Can't write it for some reason */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("Failed to update interrupt control registers err: %d\n", status)); -+ -+ } -+ -+ return status; -+} -+ -+static A_STATUS DevDisableInterrupts(AR6K_DEVICE *pDev) -+{ -+ AR6K_IRQ_ENABLE_REGISTERS regs; -+ -+ LOCK_AR6K(pDev); -+ /* Disable all interrupts */ -+ pDev->IrqEnableRegisters.int_status_enable = 0; -+ pDev->IrqEnableRegisters.cpu_int_status_enable = 0; -+ pDev->IrqEnableRegisters.error_status_enable = 0; -+ pDev->IrqEnableRegisters.counter_int_status_enable = 0; -+ /* copy into our temp area */ -+ A_MEMCPY(®s,&pDev->IrqEnableRegisters,AR6K_IRQ_ENABLE_REGS_SIZE); -+ -+ UNLOCK_AR6K(pDev); -+ -+ /* always synchronous */ -+ return HIFReadWrite(pDev->HIFDevice, -+ INT_STATUS_ENABLE_ADDRESS, -+ ®s.int_status_enable, -+ AR6K_IRQ_ENABLE_REGS_SIZE, -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+} -+ -+/* enable device interrupts */ -+A_STATUS DevUnmaskInterrupts(AR6K_DEVICE *pDev) -+{ -+ /* Unmask the host controller interrupts */ -+ HIFUnMaskInterrupt(pDev->HIFDevice); -+ -+ return DevEnableInterrupts(pDev); -+} -+ -+/* disable all device interrupts */ -+A_STATUS DevMaskInterrupts(AR6K_DEVICE *pDev) -+{ -+ A_STATUS status; -+ -+ status = DevDisableInterrupts(pDev); -+ -+ if (A_SUCCESS(status)) { -+ /* Disable the interrupt at the HIF layer */ -+ HIFMaskInterrupt(pDev->HIFDevice); -+ } -+ -+ return status; -+} -+ -+/* callback when our fetch to enable/disable completes */ -+static void DevDoEnableDisableRecvAsyncHandler(void *Context, HTC_PACKET *pPacket) -+{ -+ AR6K_DEVICE *pDev = (AR6K_DEVICE *)Context; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("+DevDoEnableDisableRecvAsyncHandler: (dev: 0x%X)\n", (A_UINT32)pDev)); -+ -+ if (A_FAILED(pPacket->Status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ (" Failed to disable receiver, status:%d \n", pPacket->Status)); -+ } -+ /* free this IO packet */ -+ AR6KFreeIOPacket(pDev,pPacket); -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("-DevDoEnableDisableRecvAsyncHandler \n")); -+} -+ -+/* disable packet reception (used in case the host runs out of buffers) -+ * this is the "override" method when the HIF reports another methods to -+ * disable recv events */ -+static A_STATUS DevDoEnableDisableRecvOverride(AR6K_DEVICE *pDev, A_BOOL EnableRecv, A_BOOL AsyncMode) -+{ -+ A_STATUS status = A_OK; -+ HTC_PACKET *pIOPacket = NULL; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC,("DevDoEnableDisableRecvOverride: Enable:%d Mode:%d\n", -+ EnableRecv,AsyncMode)); -+ -+ do { -+ -+ if (AsyncMode) { -+ -+ pIOPacket = AR6KAllocIOPacket(pDev); -+ -+ if (NULL == pIOPacket) { -+ status = A_NO_MEMORY; -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* stick in our completion routine when the I/O operation completes */ -+ pIOPacket->Completion = DevDoEnableDisableRecvAsyncHandler; -+ pIOPacket->pContext = pDev; -+ -+ /* call the HIF layer override and do this asynchronously */ -+ status = pDev->HifMaskUmaskRecvEvent(pDev->HIFDevice, -+ EnableRecv ? HIF_UNMASK_RECV : HIF_MASK_RECV, -+ pIOPacket); -+ break; -+ } -+ -+ /* if we get here we are doing it synchronously */ -+ status = pDev->HifMaskUmaskRecvEvent(pDev->HIFDevice, -+ EnableRecv ? HIF_UNMASK_RECV : HIF_MASK_RECV, -+ NULL); -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status) && (pIOPacket != NULL)) { -+ AR6KFreeIOPacket(pDev,pIOPacket); -+ } -+ -+ return status; -+} -+ -+/* disable packet reception (used in case the host runs out of buffers) -+ * this is the "normal" method using the interrupt enable registers through -+ * the host I/F */ -+static A_STATUS DevDoEnableDisableRecvNormal(AR6K_DEVICE *pDev, A_BOOL EnableRecv, A_BOOL AsyncMode) -+{ -+ A_STATUS status = A_OK; -+ HTC_PACKET *pIOPacket = NULL; -+ AR6K_IRQ_ENABLE_REGISTERS regs; -+ -+ /* take the lock to protect interrupt enable shadows */ -+ LOCK_AR6K(pDev); -+ -+ if (EnableRecv) { -+ pDev->IrqEnableRegisters.int_status_enable |= INT_STATUS_ENABLE_MBOX_DATA_SET(0x01); -+ } else { -+ pDev->IrqEnableRegisters.int_status_enable &= ~INT_STATUS_ENABLE_MBOX_DATA_SET(0x01); -+ } -+ -+ /* copy into our temp area */ -+ A_MEMCPY(®s,&pDev->IrqEnableRegisters,AR6K_IRQ_ENABLE_REGS_SIZE); -+ UNLOCK_AR6K(pDev); -+ -+ do { -+ -+ if (AsyncMode) { -+ -+ pIOPacket = AR6KAllocIOPacket(pDev); -+ -+ if (NULL == pIOPacket) { -+ status = A_NO_MEMORY; -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* copy values to write to our async I/O buffer */ -+ A_MEMCPY(pIOPacket->pBuffer,®s,AR6K_IRQ_ENABLE_REGS_SIZE); -+ -+ /* stick in our completion routine when the I/O operation completes */ -+ pIOPacket->Completion = DevDoEnableDisableRecvAsyncHandler; -+ pIOPacket->pContext = pDev; -+ -+ /* write it out asynchronously */ -+ HIFReadWrite(pDev->HIFDevice, -+ INT_STATUS_ENABLE_ADDRESS, -+ pIOPacket->pBuffer, -+ AR6K_IRQ_ENABLE_REGS_SIZE, -+ HIF_WR_ASYNC_BYTE_INC, -+ pIOPacket); -+ break; -+ } -+ -+ /* if we get here we are doing it synchronously */ -+ -+ status = HIFReadWrite(pDev->HIFDevice, -+ INT_STATUS_ENABLE_ADDRESS, -+ ®s.int_status_enable, -+ AR6K_IRQ_ENABLE_REGS_SIZE, -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status) && (pIOPacket != NULL)) { -+ AR6KFreeIOPacket(pDev,pIOPacket); -+ } -+ -+ return status; -+} -+ -+ -+A_STATUS DevStopRecv(AR6K_DEVICE *pDev, A_BOOL AsyncMode) -+{ -+ if (NULL == pDev->HifMaskUmaskRecvEvent) { -+ return DevDoEnableDisableRecvNormal(pDev,FALSE,AsyncMode); -+ } else { -+ return DevDoEnableDisableRecvOverride(pDev,FALSE,AsyncMode); -+ } -+} -+ -+A_STATUS DevEnableRecv(AR6K_DEVICE *pDev, A_BOOL AsyncMode) -+{ -+ if (NULL == pDev->HifMaskUmaskRecvEvent) { -+ return DevDoEnableDisableRecvNormal(pDev,TRUE,AsyncMode); -+ } else { -+ return DevDoEnableDisableRecvOverride(pDev,TRUE,AsyncMode); -+ } -+} -+ -+void DevDumpRegisters(AR6K_IRQ_PROC_REGISTERS *pIrqProcRegs, -+ AR6K_IRQ_ENABLE_REGISTERS *pIrqEnableRegs) -+{ -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, ("\n<------- Register Table -------->\n")); -+ -+ if (pIrqProcRegs != NULL) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Int Status: 0x%x\n",pIrqProcRegs->host_int_status)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("CPU Int Status: 0x%x\n",pIrqProcRegs->cpu_int_status)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Error Int Status: 0x%x\n",pIrqProcRegs->error_int_status)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Counter Int Status: 0x%x\n",pIrqProcRegs->counter_int_status)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Mbox Frame: 0x%x\n",pIrqProcRegs->mbox_frame)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Rx Lookahead Valid: 0x%x\n",pIrqProcRegs->rx_lookahead_valid)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Rx Lookahead 0: 0x%x\n",pIrqProcRegs->rx_lookahead[0])); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Rx Lookahead 1: 0x%x\n",pIrqProcRegs->rx_lookahead[1])); -+ } -+ -+ if (pIrqEnableRegs != NULL) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Int Status Enable: 0x%x\n",pIrqEnableRegs->int_status_enable)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, -+ ("Counter Int Status Enable: 0x%x\n",pIrqEnableRegs->counter_int_status_enable)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_DUMP, ("<------------------------------->\n")); -+ } -+} -+ -+ -+#ifdef MBOXHW_UNIT_TEST -+ -+ -+/* This is a mailbox hardware unit test that must be called in a schedulable context -+ * This test is very simple, it will send a list of buffers with a counting pattern -+ * and the target will invert the data and send the message back -+ * -+ * the unit test has the following constraints: -+ * -+ * The target has at least 8 buffers of 256 bytes each. The host will send -+ * the following pattern of buffers in rapid succession : -+ * -+ * 1 buffer - 128 bytes -+ * 1 buffer - 256 bytes -+ * 1 buffer - 512 bytes -+ * 1 buffer - 1024 bytes -+ * -+ * The host will send the buffers to one mailbox and wait for buffers to be reflected -+ * back from the same mailbox. The target sends the buffers FIFO order. -+ * Once the final buffer has been received for a mailbox, the next mailbox is tested. -+ * -+ * -+ * Note: To simplifythe test , we assume that the chosen buffer sizes -+ * will fall on a nice block pad -+ * -+ * It is expected that higher-order tests will be written to stress the mailboxes using -+ * a message-based protocol (with some performance timming) that can create more -+ * randomness in the packets sent over mailboxes. -+ * -+ * */ -+ -+#define A_ROUND_UP_PWR2(x, align) (((int) (x) + ((align)-1)) & ~((align)-1)) -+ -+#define BUFFER_BLOCK_PAD 128 -+ -+#if 0 -+#define BUFFER1 128 -+#define BUFFER2 256 -+#define BUFFER3 512 -+#define BUFFER4 1024 -+#endif -+ -+#if 1 -+#define BUFFER1 80 -+#define BUFFER2 200 -+#define BUFFER3 444 -+#define BUFFER4 800 -+#endif -+ -+#define TOTAL_BYTES (A_ROUND_UP_PWR2(BUFFER1,BUFFER_BLOCK_PAD) + \ -+ A_ROUND_UP_PWR2(BUFFER2,BUFFER_BLOCK_PAD) + \ -+ A_ROUND_UP_PWR2(BUFFER3,BUFFER_BLOCK_PAD) + \ -+ A_ROUND_UP_PWR2(BUFFER4,BUFFER_BLOCK_PAD) ) -+ -+#define TEST_BYTES (BUFFER1 + BUFFER2 + BUFFER3 + BUFFER4) -+ -+#define TEST_CREDITS_RECV_TIMEOUT 100 -+ -+static A_UINT8 g_Buffer[TOTAL_BYTES]; -+static A_UINT32 g_MailboxAddrs[AR6K_MAILBOXES]; -+static A_UINT32 g_BlockSizes[AR6K_MAILBOXES]; -+ -+#define BUFFER_PROC_LIST_DEPTH 4 -+ -+typedef struct _BUFFER_PROC_LIST{ -+ A_UINT8 *pBuffer; -+ A_UINT32 length; -+}BUFFER_PROC_LIST; -+ -+ -+#define PUSH_BUFF_PROC_ENTRY(pList,len,pCurrpos) \ -+{ \ -+ (pList)->pBuffer = (pCurrpos); \ -+ (pList)->length = (len); \ -+ (pCurrpos) += (len); \ -+ (pList)++; \ -+} -+ -+/* a simple and crude way to send different "message" sizes */ -+static void AssembleBufferList(BUFFER_PROC_LIST *pList) -+{ -+ A_UINT8 *pBuffer = g_Buffer; -+ -+#if BUFFER_PROC_LIST_DEPTH < 4 -+#error "Buffer processing list depth is not deep enough!!" -+#endif -+ -+ PUSH_BUFF_PROC_ENTRY(pList,BUFFER1,pBuffer); -+ PUSH_BUFF_PROC_ENTRY(pList,BUFFER2,pBuffer); -+ PUSH_BUFF_PROC_ENTRY(pList,BUFFER3,pBuffer); -+ PUSH_BUFF_PROC_ENTRY(pList,BUFFER4,pBuffer); -+ -+} -+ -+#define FILL_ZERO TRUE -+#define FILL_COUNTING FALSE -+static void InitBuffers(A_BOOL Zero) -+{ -+ A_UINT16 *pBuffer16 = (A_UINT16 *)g_Buffer; -+ int i; -+ -+ /* fill buffer with 16 bit counting pattern or zeros */ -+ for (i = 0; i < (TOTAL_BYTES / 2) ; i++) { -+ if (!Zero) { -+ pBuffer16[i] = (A_UINT16)i; -+ } else { -+ pBuffer16[i] = 0; -+ } -+ } -+} -+ -+ -+static A_BOOL CheckOneBuffer(A_UINT16 *pBuffer16, int Length) -+{ -+ int i; -+ A_UINT16 startCount; -+ A_BOOL success = TRUE; -+ -+ /* get the starting count */ -+ startCount = pBuffer16[0]; -+ /* invert it, this is the expected value */ -+ startCount = ~startCount; -+ /* scan the buffer and verify */ -+ for (i = 0; i < (Length / 2) ; i++,startCount++) { -+ /* target will invert all the data */ -+ if ((A_UINT16)pBuffer16[i] != (A_UINT16)~startCount) { -+ success = FALSE; -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Invalid Data Got:0x%X, Expecting:0x%X (offset:%d, total:%d) \n", -+ pBuffer16[i], ((A_UINT16)~startCount), i, Length)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("0x%X 0x%X 0x%X 0x%X \n", -+ pBuffer16[i], pBuffer16[i + 1], pBuffer16[i + 2],pBuffer16[i+3])); -+ break; -+ } -+ } -+ -+ return success; -+} -+ -+static A_BOOL CheckBuffers(void) -+{ -+ int i; -+ A_BOOL success = TRUE; -+ BUFFER_PROC_LIST checkList[BUFFER_PROC_LIST_DEPTH]; -+ -+ /* assemble the list */ -+ AssembleBufferList(checkList); -+ -+ /* scan the buffers and verify */ -+ for (i = 0; i < BUFFER_PROC_LIST_DEPTH ; i++) { -+ success = CheckOneBuffer((A_UINT16 *)checkList[i].pBuffer, checkList[i].length); -+ if (!success) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Buffer : 0x%X, Length:%d failed verify \n", -+ (A_UINT32)checkList[i].pBuffer, checkList[i].length)); -+ break; -+ } -+ } -+ -+ return success; -+} -+ -+ /* find the end marker for the last buffer we will be sending */ -+static A_UINT16 GetEndMarker(void) -+{ -+ A_UINT8 *pBuffer; -+ BUFFER_PROC_LIST checkList[BUFFER_PROC_LIST_DEPTH]; -+ -+ /* fill up buffers with the normal counting pattern */ -+ InitBuffers(FILL_COUNTING); -+ -+ /* assemble the list we will be sending down */ -+ AssembleBufferList(checkList); -+ /* point to the last 2 bytes of the last buffer */ -+ pBuffer = &(checkList[BUFFER_PROC_LIST_DEPTH - 1].pBuffer[(checkList[BUFFER_PROC_LIST_DEPTH - 1].length) - 2]); -+ -+ /* the last count in the last buffer is the marker */ -+ return (A_UINT16)pBuffer[0] | ((A_UINT16)pBuffer[1] << 8); -+} -+ -+#define ATH_PRINT_OUT_ZONE ATH_DEBUG_ERR -+ -+/* send the ordered buffers to the target */ -+static A_STATUS SendBuffers(AR6K_DEVICE *pDev, int mbox) -+{ -+ A_STATUS status = A_OK; -+ A_UINT32 request = HIF_WR_SYNC_BLOCK_INC; -+ BUFFER_PROC_LIST sendList[BUFFER_PROC_LIST_DEPTH]; -+ int i; -+ int totalBytes = 0; -+ int paddedLength; -+ int totalwPadding = 0; -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Sending buffers on mailbox : %d \n",mbox)); -+ -+ /* fill buffer with counting pattern */ -+ InitBuffers(FILL_COUNTING); -+ -+ /* assemble the order in which we send */ -+ AssembleBufferList(sendList); -+ -+ for (i = 0; i < BUFFER_PROC_LIST_DEPTH; i++) { -+ -+ /* we are doing block transfers, so we need to pad everything to a block size */ -+ paddedLength = (sendList[i].length + (g_BlockSizes[mbox] - 1)) & -+ (~(g_BlockSizes[mbox] - 1)); -+ -+ /* send each buffer synchronously */ -+ status = HIFReadWrite(pDev->HIFDevice, -+ g_MailboxAddrs[mbox], -+ sendList[i].pBuffer, -+ paddedLength, -+ request, -+ NULL); -+ if (status != A_OK) { -+ break; -+ } -+ totalBytes += sendList[i].length; -+ totalwPadding += paddedLength; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Sent %d bytes (%d padded bytes) to mailbox : %d \n",totalBytes,totalwPadding,mbox)); -+ -+ return status; -+} -+ -+/* poll the mailbox credit counter until we get a credit or timeout */ -+static A_STATUS GetCredits(AR6K_DEVICE *pDev, int mbox, int *pCredits) -+{ -+ A_STATUS status = A_OK; -+ int timeout = TEST_CREDITS_RECV_TIMEOUT; -+ A_UINT8 credits = 0; -+ A_UINT32 address; -+ -+ while (TRUE) { -+ -+ /* Read the counter register to get credits, this auto-decrements */ -+ address = COUNT_DEC_ADDRESS + (AR6K_MAILBOXES + mbox) * 4; -+ status = HIFReadWrite(pDev->HIFDevice, address, &credits, sizeof(credits), -+ HIF_RD_SYNC_BYTE_FIX, NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("Unable to decrement the command credit count register (mbox=%d)\n",mbox)); -+ status = A_ERROR; -+ break; -+ } -+ -+ if (credits) { -+ break; -+ } -+ -+ timeout--; -+ -+ if (timeout <= 0) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ (" Timeout reading credit registers (mbox=%d, address:0x%X) \n",mbox,address)); -+ status = A_ERROR; -+ break; -+ } -+ -+ /* delay a little, target may not be ready */ -+ A_MDELAY(1000); -+ -+ } -+ -+ if (status == A_OK) { -+ *pCredits = credits; -+ } -+ -+ return status; -+} -+ -+ -+/* wait for the buffers to come back */ -+static A_STATUS RecvBuffers(AR6K_DEVICE *pDev, int mbox) -+{ -+ A_STATUS status = A_OK; -+ A_UINT32 request = HIF_RD_SYNC_BLOCK_INC; -+ BUFFER_PROC_LIST recvList[BUFFER_PROC_LIST_DEPTH]; -+ int curBuffer; -+ int credits; -+ int i; -+ int totalBytes = 0; -+ int paddedLength; -+ int totalwPadding = 0; -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Waiting for buffers on mailbox : %d \n",mbox)); -+ -+ /* zero the buffers */ -+ InitBuffers(FILL_ZERO); -+ -+ /* assemble the order in which we should receive */ -+ AssembleBufferList(recvList); -+ -+ curBuffer = 0; -+ -+ while (curBuffer < BUFFER_PROC_LIST_DEPTH) { -+ -+ /* get number of buffers that have been completed, this blocks -+ * until we get at least 1 credit or it times out */ -+ status = GetCredits(pDev, mbox, &credits); -+ -+ if (status != A_OK) { -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Got %d messages on mailbox : %d \n",credits, mbox)); -+ -+ /* get all the buffers that are sitting on the queue */ -+ for (i = 0; i < credits; i++) { -+ AR_DEBUG_ASSERT(curBuffer < BUFFER_PROC_LIST_DEPTH); -+ /* recv the current buffer synchronously, the buffers should come back in -+ * order... with padding applied by the target */ -+ paddedLength = (recvList[curBuffer].length + (g_BlockSizes[mbox] - 1)) & -+ (~(g_BlockSizes[mbox] - 1)); -+ -+ status = HIFReadWrite(pDev->HIFDevice, -+ g_MailboxAddrs[mbox], -+ recvList[curBuffer].pBuffer, -+ paddedLength, -+ request, -+ NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Failed to read %d bytes on mailbox:%d : address:0x%X \n", -+ recvList[curBuffer].length, mbox, g_MailboxAddrs[mbox])); -+ break; -+ } -+ -+ totalwPadding += paddedLength; -+ totalBytes += recvList[curBuffer].length; -+ curBuffer++; -+ } -+ -+ if (status != A_OK) { -+ break; -+ } -+ /* go back and get some more */ -+ credits = 0; -+ } -+ -+ if (totalBytes != TEST_BYTES) { -+ AR_DEBUG_ASSERT(FALSE); -+ } else { -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Got all buffers on mbox:%d total recv :%d (w/Padding : %d) \n", -+ mbox, totalBytes, totalwPadding)); -+ } -+ -+ return status; -+ -+ -+} -+ -+static A_STATUS DoOneMboxHWTest(AR6K_DEVICE *pDev, int mbox) -+{ -+ A_STATUS status; -+ -+ do { -+ /* send out buffers */ -+ status = SendBuffers(pDev,mbox); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Sending buffers Failed : %d mbox:%d\n",status,mbox)); -+ break; -+ } -+ -+ /* go get them, this will block */ -+ status = RecvBuffers(pDev, mbox); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Recv buffers Failed : %d mbox:%d\n",status,mbox)); -+ break; -+ } -+ -+ /* check the returned data patterns */ -+ if (!CheckBuffers()) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Buffer Verify Failed : mbox:%d\n",mbox)); -+ status = A_ERROR; -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, (" Send/Recv success! mailbox : %d \n",mbox)); -+ -+ } while (FALSE); -+ -+ return status; -+} -+ -+/* here is where the test starts */ -+A_STATUS DoMboxHWTest(AR6K_DEVICE *pDev) -+{ -+ int i; -+ A_STATUS status; -+ int credits = 0; -+ A_UINT8 params[4]; -+ int numBufs; -+ int bufferSize; -+ A_UINT16 temp; -+ -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, (" DoMboxHWTest START - \n")); -+ -+ do { -+ /* get the addresses for all 4 mailboxes */ -+ status = HIFConfigureDevice(pDev->HIFDevice, HIF_DEVICE_GET_MBOX_ADDR, -+ g_MailboxAddrs, sizeof(g_MailboxAddrs)); -+ -+ if (status != A_OK) { -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* get the block sizes */ -+ status = HIFConfigureDevice(pDev->HIFDevice, HIF_DEVICE_GET_MBOX_BLOCK_SIZE, -+ g_BlockSizes, sizeof(g_BlockSizes)); -+ -+ if (status != A_OK) { -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* note, the HIF layer usually reports mbox 0 to have a block size of -+ * 1, but our test wants to run in block-mode for all mailboxes, so we treat all mailboxes -+ * the same. */ -+ g_BlockSizes[0] = g_BlockSizes[1]; -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Block Size to use: %d \n",g_BlockSizes[0])); -+ -+ if (g_BlockSizes[1] > BUFFER_BLOCK_PAD) { -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("%d Block size is too large for buffer pad %d\n", -+ g_BlockSizes[1], BUFFER_BLOCK_PAD)); -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Waiting for target.... \n")); -+ -+ /* the target lets us know it is ready by giving us 1 credit on -+ * mailbox 0 */ -+ status = GetCredits(pDev, 0, &credits); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Failed to wait for target ready \n")); -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Target is ready ...\n")); -+ -+ /* read the first 4 scratch registers */ -+ status = HIFReadWrite(pDev->HIFDevice, -+ SCRATCH_ADDRESS, -+ params, -+ 4, -+ HIF_RD_SYNC_BYTE_INC, -+ NULL); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Failed to wait get parameters \n")); -+ break; -+ } -+ -+ numBufs = params[0]; -+ bufferSize = (int)(((A_UINT16)params[2] << 8) | (A_UINT16)params[1]); -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, -+ ("Target parameters: bufs per mailbox:%d, buffer size:%d bytes (total space: %d, minimum required space (w/padding): %d) \n", -+ numBufs, bufferSize, (numBufs * bufferSize), TOTAL_BYTES)); -+ -+ if ((numBufs * bufferSize) < TOTAL_BYTES) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Not Enough buffer space to run test! need:%d, got:%d \n", -+ TOTAL_BYTES, (numBufs*bufferSize))); -+ status = A_ERROR; -+ break; -+ } -+ -+ temp = GetEndMarker(); -+ -+ status = HIFReadWrite(pDev->HIFDevice, -+ SCRATCH_ADDRESS + 4, -+ (A_UINT8 *)&temp, -+ 2, -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Failed to write end marker \n")); -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("End Marker: 0x%X \n",temp)); -+ -+ temp = (A_UINT16)g_BlockSizes[1]; -+ /* convert to a mask */ -+ temp = temp - 1; -+ status = HIFReadWrite(pDev->HIFDevice, -+ SCRATCH_ADDRESS + 6, -+ (A_UINT8 *)&temp, -+ 2, -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Failed to write block mask \n")); -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, ("Set Block Mask: 0x%X \n",temp)); -+ -+ /* execute the test on each mailbox */ -+ for (i = 0; i < AR6K_MAILBOXES; i++) { -+ status = DoOneMboxHWTest(pDev, i); -+ if (status != A_OK) { -+ break; -+ } -+ } -+ -+ } while (FALSE); -+ -+ if (status == A_OK) { -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, (" DoMboxHWTest DONE - SUCCESS! - \n")); -+ } else { -+ AR_DEBUG_PRINTF(ATH_PRINT_OUT_ZONE, (" DoMboxHWTest DONE - FAILED! - \n")); -+ } -+ /* don't let HTC_Start continue, the target is actually not running any HTC code */ -+ return A_ERROR; -+} -+#endif -+ -+ -+ ---- /dev/null -+++ b/drivers/ar6000/htc/ar6k_events.c -@@ -0,0 +1,638 @@ -+/* -+ * AR6K Driver layer event handling (i.e. interrupts, message polling) -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "AR6Khwreg.h" -+#include "a_osapi.h" -+#include "a_debug.h" -+#include "hif.h" -+#include "htc_packet.h" -+#include "ar6k.h" -+ -+extern void AR6KFreeIOPacket(AR6K_DEVICE *pDev, HTC_PACKET *pPacket); -+extern HTC_PACKET *AR6KAllocIOPacket(AR6K_DEVICE *pDev); -+ -+static A_STATUS DevServiceDebugInterrupt(AR6K_DEVICE *pDev); -+ -+#define DELAY_PER_INTERVAL_MS 10 /* 10 MS delay per polling interval */ -+ -+/* completion routine for ALL HIF layer async I/O */ -+A_STATUS DevRWCompletionHandler(void *context, A_STATUS status) -+{ -+ HTC_PACKET *pPacket = (HTC_PACKET *)context; -+ -+ COMPLETE_HTC_PACKET(pPacket,status); -+ -+ return A_OK; -+} -+ -+/* mailbox recv message polling */ -+A_STATUS DevPollMboxMsgRecv(AR6K_DEVICE *pDev, -+ A_UINT32 *pLookAhead, -+ int TimeoutMS) -+{ -+ A_STATUS status = A_OK; -+ int timeout = TimeoutMS/DELAY_PER_INTERVAL_MS; -+ -+ AR_DEBUG_ASSERT(timeout > 0); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,("+DevPollMboxMsgRecv \n")); -+ -+ while (TRUE) { -+ -+ if (pDev->GetPendingEventsFunc != NULL) -+ { -+ -+ HIF_PENDING_EVENTS_INFO events; -+ -+ /* the HIF layer uses a special mechanism to get events, do this -+ * synchronously */ -+ status = pDev->GetPendingEventsFunc(pDev->HIFDevice, -+ &events, -+ NULL); -+ if (A_FAILED(status)) -+ { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("Failed to get pending events \n")); -+ break; -+ } -+ -+ if (events.Events & HIF_RECV_MSG_AVAIL) -+ { -+ /* there is a message available, the lookahead should be valid now */ -+ *pLookAhead = events.LookAhead; -+ -+ break; -+ } -+ } -+ else -+ { -+ -+ /* this is the standard HIF way.... */ -+ /* load the register table */ -+ status = HIFReadWrite(pDev->HIFDevice, -+ HOST_INT_STATUS_ADDRESS, -+ (A_UINT8 *)&pDev->IrqProcRegisters, -+ AR6K_IRQ_PROC_REGS_SIZE, -+ HIF_RD_SYNC_BYTE_INC, -+ NULL); -+ -+ if (A_FAILED(status)) -+ { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("Failed to read register table \n")); -+ break; -+ } -+ -+ /* check for MBOX data and valid lookahead */ -+ if (pDev->IrqProcRegisters.host_int_status & (1 << HTC_MAILBOX)) -+ { -+ if (pDev->IrqProcRegisters.rx_lookahead_valid & (1 << HTC_MAILBOX)) -+ { -+ /* mailbox has a message and the look ahead is valid */ -+ *pLookAhead = pDev->IrqProcRegisters.rx_lookahead[HTC_MAILBOX]; -+ break; -+ } -+ } -+ -+ } -+ -+ timeout--; -+ -+ if (timeout <= 0) -+ { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, (" Timeout waiting for recv message \n")); -+ status = A_ERROR; -+ -+ /* check if the target asserted */ -+ if ( pDev->IrqProcRegisters.counter_int_status & AR6K_TARGET_DEBUG_INTR_MASK) { -+ /* target signaled an assert, process this pending interrupt -+ * this will call the target failure handler */ -+ DevServiceDebugInterrupt(pDev); -+ } -+ -+ break; -+ } -+ -+ /* delay a little */ -+ A_MDELAY(DELAY_PER_INTERVAL_MS); -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,(" Retry Mbox Poll : %d \n",timeout)); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,("-DevPollMboxMsgRecv \n")); -+ -+ return status; -+} -+ -+static A_STATUS DevServiceCPUInterrupt(AR6K_DEVICE *pDev) -+{ -+ A_STATUS status; -+ A_UINT8 cpu_int_status; -+ A_UINT8 regBuffer[4]; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, ("CPU Interrupt\n")); -+ cpu_int_status = pDev->IrqProcRegisters.cpu_int_status & -+ pDev->IrqEnableRegisters.cpu_int_status_enable; -+ AR_DEBUG_ASSERT(cpu_int_status); -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, -+ ("Valid interrupt source(s) in CPU_INT_STATUS: 0x%x\n", -+ cpu_int_status)); -+ -+ /* Clear the interrupt */ -+ pDev->IrqProcRegisters.cpu_int_status &= ~cpu_int_status; /* W1C */ -+ -+ /* set up the register transfer buffer to hit the register 4 times , this is done -+ * to make the access 4-byte aligned to mitigate issues with host bus interconnects that -+ * restrict bus transfer lengths to be a multiple of 4-bytes */ -+ -+ /* set W1C value to clear the interrupt, this hits the register first */ -+ regBuffer[0] = cpu_int_status; -+ /* the remaining 4 values are set to zero which have no-effect */ -+ regBuffer[1] = 0; -+ regBuffer[2] = 0; -+ regBuffer[3] = 0; -+ -+ status = HIFReadWrite(pDev->HIFDevice, -+ CPU_INT_STATUS_ADDRESS, -+ regBuffer, -+ 4, -+ HIF_WR_SYNC_BYTE_FIX, -+ NULL); -+ -+ AR_DEBUG_ASSERT(status == A_OK); -+ return status; -+} -+ -+ -+static A_STATUS DevServiceErrorInterrupt(AR6K_DEVICE *pDev) -+{ -+ A_STATUS status; -+ A_UINT8 error_int_status; -+ A_UINT8 regBuffer[4]; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, ("Error Interrupt\n")); -+ error_int_status = pDev->IrqProcRegisters.error_int_status & 0x0F; -+ AR_DEBUG_ASSERT(error_int_status); -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, -+ ("Valid interrupt source(s) in ERROR_INT_STATUS: 0x%x\n", -+ error_int_status)); -+ -+ if (ERROR_INT_STATUS_WAKEUP_GET(error_int_status)) { -+ /* Wakeup */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, ("Error : Wakeup\n")); -+ } -+ -+ if (ERROR_INT_STATUS_RX_UNDERFLOW_GET(error_int_status)) { -+ /* Rx Underflow */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Error : Rx Underflow\n")); -+ } -+ -+ if (ERROR_INT_STATUS_TX_OVERFLOW_GET(error_int_status)) { -+ /* Tx Overflow */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Error : Tx Overflow\n")); -+ } -+ -+ /* Clear the interrupt */ -+ pDev->IrqProcRegisters.error_int_status &= ~error_int_status; /* W1C */ -+ -+ /* set up the register transfer buffer to hit the register 4 times , this is done -+ * to make the access 4-byte aligned to mitigate issues with host bus interconnects that -+ * restrict bus transfer lengths to be a multiple of 4-bytes */ -+ -+ /* set W1C value to clear the interrupt, this hits the register first */ -+ regBuffer[0] = error_int_status; -+ /* the remaining 4 values are set to zero which have no-effect */ -+ regBuffer[1] = 0; -+ regBuffer[2] = 0; -+ regBuffer[3] = 0; -+ -+ status = HIFReadWrite(pDev->HIFDevice, -+ ERROR_INT_STATUS_ADDRESS, -+ regBuffer, -+ 4, -+ HIF_WR_SYNC_BYTE_FIX, -+ NULL); -+ -+ AR_DEBUG_ASSERT(status == A_OK); -+ return status; -+} -+ -+static A_STATUS DevServiceDebugInterrupt(AR6K_DEVICE *pDev) -+{ -+ A_UINT32 dummy; -+ A_STATUS status; -+ -+ /* Send a target failure event to the application */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Target debug interrupt\n")); -+ -+ if (pDev->TargetFailureCallback != NULL) { -+ pDev->TargetFailureCallback(pDev->HTCContext); -+ } -+ -+ /* clear the interrupt , the debug error interrupt is -+ * counter 0 */ -+ /* read counter to clear interrupt */ -+ status = HIFReadWrite(pDev->HIFDevice, -+ COUNT_DEC_ADDRESS, -+ (A_UINT8 *)&dummy, -+ 4, -+ HIF_RD_SYNC_BYTE_INC, -+ NULL); -+ -+ AR_DEBUG_ASSERT(status == A_OK); -+ return status; -+} -+ -+static A_STATUS DevServiceCounterInterrupt(AR6K_DEVICE *pDev) -+{ -+ A_UINT8 counter_int_status; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, ("Counter Interrupt\n")); -+ -+ counter_int_status = pDev->IrqProcRegisters.counter_int_status & -+ pDev->IrqEnableRegisters.counter_int_status_enable; -+ -+ AR_DEBUG_ASSERT(counter_int_status); -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, -+ ("Valid interrupt source(s) in COUNTER_INT_STATUS: 0x%x\n", -+ counter_int_status)); -+ -+ /* Check if the debug interrupt is pending */ -+ if (counter_int_status & AR6K_TARGET_DEBUG_INTR_MASK) { -+ return DevServiceDebugInterrupt(pDev); -+ } -+ -+ return A_OK; -+} -+ -+/* callback when our fetch to get interrupt status registers completes */ -+static void DevGetEventAsyncHandler(void *Context, HTC_PACKET *pPacket) -+{ -+ AR6K_DEVICE *pDev = (AR6K_DEVICE *)Context; -+ A_UINT32 lookAhead = 0; -+ A_BOOL otherInts = FALSE; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("+DevGetEventAsyncHandler: (dev: 0x%X)\n", (A_UINT32)pDev)); -+ -+ do { -+ -+ if (A_FAILED(pPacket->Status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ (" GetEvents I/O request failed, status:%d \n", pPacket->Status)); -+ /* bail out, don't unmask HIF interrupt */ -+ break; -+ } -+ -+ if (pDev->GetPendingEventsFunc != NULL) { -+ /* the HIF layer collected the information for us */ -+ HIF_PENDING_EVENTS_INFO *pEvents = (HIF_PENDING_EVENTS_INFO *)pPacket->pBuffer; -+ if (pEvents->Events & HIF_RECV_MSG_AVAIL) { -+ lookAhead = pEvents->LookAhead; -+ if (0 == lookAhead) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,(" DevGetEventAsyncHandler1, lookAhead is zero! \n")); -+ } -+ } -+ if (pEvents->Events & HIF_OTHER_EVENTS) { -+ otherInts = TRUE; -+ } -+ } else { -+ /* standard interrupt table handling.... */ -+ AR6K_IRQ_PROC_REGISTERS *pReg = (AR6K_IRQ_PROC_REGISTERS *)pPacket->pBuffer; -+ A_UINT8 host_int_status; -+ -+ host_int_status = pReg->host_int_status & pDev->IrqEnableRegisters.int_status_enable; -+ -+ if (host_int_status & (1 << HTC_MAILBOX)) { -+ host_int_status &= ~(1 << HTC_MAILBOX); -+ if (pReg->rx_lookahead_valid & (1 << HTC_MAILBOX)) { -+ /* mailbox has a message and the look ahead is valid */ -+ lookAhead = pReg->rx_lookahead[HTC_MAILBOX]; -+ if (0 == lookAhead) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,(" DevGetEventAsyncHandler2, lookAhead is zero! \n")); -+ } -+ } -+ } -+ -+ if (host_int_status) { -+ /* there are other interrupts to handle */ -+ otherInts = TRUE; -+ } -+ } -+ -+ if (otherInts || (lookAhead == 0)) { -+ /* if there are other interrupts to process, we cannot do this in the async handler so -+ * ack the interrupt which will cause our sync handler to run again -+ * if however there are no more messages, we can now ack the interrupt */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, -+ (" Acking interrupt from DevGetEventAsyncHandler (otherints:%d, lookahead:0x%X)\n", -+ otherInts, lookAhead)); -+ HIFAckInterrupt(pDev->HIFDevice); -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, -+ (" DevGetEventAsyncHandler : detected another message, lookahead :0x%X \n", -+ lookAhead)); -+ /* lookahead is non-zero and there are no other interrupts to service, -+ * go get the next message */ -+ pDev->MessagePendingCallback(pDev->HTCContext, lookAhead, NULL); -+ } -+ -+ } while (FALSE); -+ -+ /* free this IO packet */ -+ AR6KFreeIOPacket(pDev,pPacket); -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("-DevGetEventAsyncHandler \n")); -+} -+ -+/* called by the HTC layer when it wants us to check if the device has any more pending -+ * recv messages, this starts off a series of async requests to read interrupt registers */ -+A_STATUS DevCheckPendingRecvMsgsAsync(void *context) -+{ -+ AR6K_DEVICE *pDev = (AR6K_DEVICE *)context; -+ A_STATUS status = A_OK; -+ HTC_PACKET *pIOPacket; -+ -+ /* this is called in an ASYNC only context, we may NOT block, sleep or call any apis that can -+ * cause us to switch contexts */ -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("+DevCheckPendingRecvMsgsAsync: (dev: 0x%X)\n", (A_UINT32)pDev)); -+ -+ do { -+ -+ if (HIF_DEVICE_IRQ_SYNC_ONLY == pDev->HifIRQProcessingMode) { -+ /* break the async processing chain right here, no need to continue. -+ * The DevDsrHandler() will handle things in a loop when things are driven -+ * synchronously */ -+ break; -+ } -+ /* first allocate one of our HTC packets we created for async I/O -+ * we reuse HTC packet definitions so that we can use the completion mechanism -+ * in DevRWCompletionHandler() */ -+ pIOPacket = AR6KAllocIOPacket(pDev); -+ -+ if (NULL == pIOPacket) { -+ /* there should be only 1 asynchronous request out at a time to read these registers -+ * so this should actually never happen */ -+ status = A_NO_MEMORY; -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* stick in our completion routine when the I/O operation completes */ -+ pIOPacket->Completion = DevGetEventAsyncHandler; -+ pIOPacket->pContext = pDev; -+ -+ if (pDev->GetPendingEventsFunc) { -+ /* HIF layer has it's own mechanism, pass the IO to it.. */ -+ status = pDev->GetPendingEventsFunc(pDev->HIFDevice, -+ (HIF_PENDING_EVENTS_INFO *)pIOPacket->pBuffer, -+ pIOPacket); -+ -+ } else { -+ /* standard way, read the interrupt register table asynchronously again */ -+ status = HIFReadWrite(pDev->HIFDevice, -+ HOST_INT_STATUS_ADDRESS, -+ pIOPacket->pBuffer, -+ AR6K_IRQ_PROC_REGS_SIZE, -+ HIF_RD_ASYNC_BYTE_INC, -+ pIOPacket); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,(" Async IO issued to get interrupt status...\n")); -+ } while (FALSE); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("-DevCheckPendingRecvMsgsAsync \n")); -+ -+ return status; -+} -+ -+/* process pending interrupts synchronously */ -+static A_STATUS ProcessPendingIRQs(AR6K_DEVICE *pDev, A_BOOL *pDone, A_BOOL *pASyncProcessing) -+{ -+ A_STATUS status = A_OK; -+ A_UINT8 host_int_status = 0; -+ A_UINT32 lookAhead = 0; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("+ProcessPendingIRQs: (dev: 0x%X)\n", (A_UINT32)pDev)); -+ -+ /*** NOTE: the HIF implementation guarantees that the context of this call allows -+ * us to perform SYNCHRONOUS I/O, that is we can block, sleep or call any API that -+ * can block or switch thread/task ontexts. -+ * This is a fully schedulable context. -+ * */ -+ do { -+ -+ if (pDev->GetPendingEventsFunc != NULL) { -+ HIF_PENDING_EVENTS_INFO events; -+ -+ /* the HIF layer uses a special mechanism to get events -+ * get this synchronously */ -+ status = pDev->GetPendingEventsFunc(pDev->HIFDevice, -+ &events, -+ NULL); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ if (events.Events & HIF_RECV_MSG_AVAIL) { -+ lookAhead = events.LookAhead; -+ if (0 == lookAhead) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,(" ProcessPendingIRQs1 lookAhead is zero! \n")); -+ } -+ } -+ -+ if (!(events.Events & HIF_OTHER_EVENTS) || -+ !(pDev->IrqEnableRegisters.int_status_enable & OTHER_INTS_ENABLED)) { -+ /* no need to read the register table, no other interesting interrupts. -+ * Some interfaces (like SPI) can shadow interrupt sources without -+ * requiring the host to do a full table read */ -+ break; -+ } -+ -+ /* otherwise fall through and read the register table */ -+ } -+ -+ /* -+ * Read the first 28 bytes of the HTC register table. This will yield us -+ * the value of different int status registers and the lookahead -+ * registers. -+ * length = sizeof(int_status) + sizeof(cpu_int_status) + -+ * sizeof(error_int_status) + sizeof(counter_int_status) + -+ * sizeof(mbox_frame) + sizeof(rx_lookahead_valid) + -+ * sizeof(hole) + sizeof(rx_lookahead) + -+ * sizeof(int_status_enable) + sizeof(cpu_int_status_enable) + -+ * sizeof(error_status_enable) + -+ * sizeof(counter_int_status_enable); -+ * -+ */ -+ status = HIFReadWrite(pDev->HIFDevice, -+ HOST_INT_STATUS_ADDRESS, -+ (A_UINT8 *)&pDev->IrqProcRegisters, -+ AR6K_IRQ_PROC_REGS_SIZE, -+ HIF_RD_SYNC_BYTE_INC, -+ NULL); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ if (AR_DEBUG_LVL_CHECK(ATH_DEBUG_IRQ)) { -+ DevDumpRegisters(&pDev->IrqProcRegisters, -+ &pDev->IrqEnableRegisters); -+ } -+ -+ /* Update only those registers that are enabled */ -+ host_int_status = pDev->IrqProcRegisters.host_int_status & -+ pDev->IrqEnableRegisters.int_status_enable; -+ -+ if (NULL == pDev->GetPendingEventsFunc) { -+ /* only look at mailbox status if the HIF layer did not provide this function, -+ * on some HIF interfaces reading the RX lookahead is not valid to do */ -+ if (host_int_status & (1 << HTC_MAILBOX)) { -+ /* mask out pending mailbox value, we use "lookAhead" as the real flag for -+ * mailbox processing below */ -+ host_int_status &= ~(1 << HTC_MAILBOX); -+ if (pDev->IrqProcRegisters.rx_lookahead_valid & (1 << HTC_MAILBOX)) { -+ /* mailbox has a message and the look ahead is valid */ -+ lookAhead = pDev->IrqProcRegisters.rx_lookahead[HTC_MAILBOX]; -+ if (0 == lookAhead) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,(" ProcessPendingIRQs2, lookAhead is zero! \n")); -+ } -+ } -+ } -+ } else { -+ /* not valid to check if the HIF has another mechanism for reading mailbox pending status*/ -+ host_int_status &= ~(1 << HTC_MAILBOX); -+ } -+ -+ } while (FALSE); -+ -+ -+ do { -+ -+ /* did the interrupt status fetches succeed? */ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ if ((0 == host_int_status) && (0 == lookAhead)) { -+ /* nothing to process, the caller can use this to break out of a loop */ -+ *pDone = TRUE; -+ break; -+ } -+ -+ if (lookAhead != 0) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("Pending mailbox message, LookAhead: 0x%X\n",lookAhead)); -+ /* Mailbox Interrupt, the HTC layer may issue async requests to empty the -+ * mailbox... -+ * When emptying the recv mailbox we use the async handler above called from the -+ * completion routine of the callers read request. This can improve performance -+ * by reducing context switching when we rapidly pull packets */ -+ status = pDev->MessagePendingCallback(pDev->HTCContext, lookAhead, pASyncProcessing); -+ if (A_FAILED(status)) { -+ break; -+ } -+ } -+ -+ /* now handle the rest of them */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ, -+ (" Valid interrupt source(s) for OTHER interrupts: 0x%x\n", -+ host_int_status)); -+ -+ if (HOST_INT_STATUS_CPU_GET(host_int_status)) { -+ /* CPU Interrupt */ -+ status = DevServiceCPUInterrupt(pDev); -+ if (A_FAILED(status)){ -+ break; -+ } -+ } -+ -+ if (HOST_INT_STATUS_ERROR_GET(host_int_status)) { -+ /* Error Interrupt */ -+ status = DevServiceErrorInterrupt(pDev); -+ if (A_FAILED(status)){ -+ break; -+ } -+ } -+ -+ if (HOST_INT_STATUS_COUNTER_GET(host_int_status)) { -+ /* Counter Interrupt */ -+ status = DevServiceCounterInterrupt(pDev); -+ if (A_FAILED(status)){ -+ break; -+ } -+ } -+ -+ } while (FALSE); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("-ProcessPendingIRQs: (done:%d, async:%d) status=%d \n", -+ *pDone, *pASyncProcessing, status)); -+ -+ return status; -+} -+ -+ -+/* Synchronousinterrupt handler, this handler kicks off all interrupt processing.*/ -+A_STATUS DevDsrHandler(void *context) -+{ -+ AR6K_DEVICE *pDev = (AR6K_DEVICE *)context; -+ A_STATUS status = A_OK; -+ A_BOOL done = FALSE; -+ A_BOOL asyncProc = FALSE; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("+DevDsrHandler: (dev: 0x%X)\n", (A_UINT32)pDev)); -+ -+ -+ while (!done) { -+ status = ProcessPendingIRQs(pDev, &done, &asyncProc); -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ if (HIF_DEVICE_IRQ_SYNC_ONLY == pDev->HifIRQProcessingMode) { -+ /* the HIF layer does not allow async IRQ processing, override the asyncProc flag */ -+ asyncProc = FALSE; -+ /* this will cause us to re-enter ProcessPendingIRQ() and re-read interrupt status registers. -+ * this has a nice side effect of blocking us until all async read requests are completed. -+ * This behavior is required on some HIF implementations that do not allow ASYNC -+ * processing in interrupt handlers (like Windows CE) */ -+ } -+ -+ if (asyncProc) { -+ /* the function performed some async I/O for performance, we -+ need to exit the ISR immediately, the check below will prevent the interrupt from being -+ Ack'd while we handle it asynchronously */ -+ break; -+ } -+ -+ } -+ -+ if (A_SUCCESS(status) && !asyncProc) { -+ /* Ack the interrupt only if : -+ * 1. we did not get any errors in processing interrupts -+ * 2. there are no outstanding async processing requests */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,(" Acking interrupt from DevDsrHandler \n")); -+ HIFAckInterrupt(pDev->HIFDevice); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_IRQ,("-DevDsrHandler \n")); -+ return A_OK; -+} -+ -+ ---- /dev/null -+++ b/drivers/ar6000/htc/ar6k.h -@@ -0,0 +1,191 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef AR6K_H_ -+#define AR6K_H_ -+ -+#define AR6K_MAILBOXES 4 -+ -+/* HTC runs over mailbox 0 */ -+#define HTC_MAILBOX 0 -+ -+#define AR6K_TARGET_DEBUG_INTR_MASK 0x01 -+ -+#define OTHER_INTS_ENABLED (INT_STATUS_ENABLE_ERROR_MASK | \ -+ INT_STATUS_ENABLE_CPU_MASK | \ -+ INT_STATUS_ENABLE_COUNTER_MASK) -+ -+//#define MBOXHW_UNIT_TEST 1 -+ -+#include "athstartpack.h" -+typedef PREPACK struct _AR6K_IRQ_PROC_REGISTERS { -+ A_UINT8 host_int_status; -+ A_UINT8 cpu_int_status; -+ A_UINT8 error_int_status; -+ A_UINT8 counter_int_status; -+ A_UINT8 mbox_frame; -+ A_UINT8 rx_lookahead_valid; -+ A_UINT8 hole[2]; -+ A_UINT32 rx_lookahead[2]; -+} POSTPACK AR6K_IRQ_PROC_REGISTERS; -+ -+#define AR6K_IRQ_PROC_REGS_SIZE sizeof(AR6K_IRQ_PROC_REGISTERS) -+ -+ -+ -+typedef PREPACK struct _AR6K_IRQ_ENABLE_REGISTERS { -+ A_UINT8 int_status_enable; -+ A_UINT8 cpu_int_status_enable; -+ A_UINT8 error_status_enable; -+ A_UINT8 counter_int_status_enable; -+} POSTPACK AR6K_IRQ_ENABLE_REGISTERS; -+ -+#include "athendpack.h" -+ -+#define AR6K_IRQ_ENABLE_REGS_SIZE sizeof(AR6K_IRQ_ENABLE_REGISTERS) -+ -+#define AR6K_REG_IO_BUFFER_SIZE 32 -+#define AR6K_MAX_REG_IO_BUFFERS 8 -+ -+/* buffers for ASYNC I/O */ -+typedef struct AR6K_ASYNC_REG_IO_BUFFER { -+ HTC_PACKET HtcPacket; /* we use an HTC packet as a wrapper for our async register-based I/O */ -+ A_UINT8 Buffer[AR6K_REG_IO_BUFFER_SIZE]; -+} AR6K_ASYNC_REG_IO_BUFFER; -+ -+typedef struct _AR6K_DEVICE { -+ A_MUTEX_T Lock; -+ AR6K_IRQ_PROC_REGISTERS IrqProcRegisters; -+ AR6K_IRQ_ENABLE_REGISTERS IrqEnableRegisters; -+ void *HIFDevice; -+ A_UINT32 BlockSize; -+ A_UINT32 BlockMask; -+ A_UINT32 MailboxAddress; -+ HIF_PENDING_EVENTS_FUNC GetPendingEventsFunc; -+ void *HTCContext; -+ HTC_PACKET_QUEUE RegisterIOList; -+ AR6K_ASYNC_REG_IO_BUFFER RegIOBuffers[AR6K_MAX_REG_IO_BUFFERS]; -+ void (*TargetFailureCallback)(void *Context); -+ A_STATUS (*MessagePendingCallback)(void *Context, A_UINT32 LookAhead, A_BOOL *pAsyncProc); -+ HIF_DEVICE_IRQ_PROCESSING_MODE HifIRQProcessingMode; -+ HIF_MASK_UNMASK_RECV_EVENT HifMaskUmaskRecvEvent; -+} AR6K_DEVICE; -+ -+#define IS_DEV_IRQ_PROCESSING_ASYNC_ALLOWED(pDev) ((pDev)->HifIRQProcessingMode != HIF_DEVICE_IRQ_SYNC_ONLY) -+ -+A_STATUS DevSetup(AR6K_DEVICE *pDev); -+A_STATUS DevUnmaskInterrupts(AR6K_DEVICE *pDev); -+A_STATUS DevMaskInterrupts(AR6K_DEVICE *pDev); -+A_STATUS DevPollMboxMsgRecv(AR6K_DEVICE *pDev, -+ A_UINT32 *pLookAhead, -+ int TimeoutMS); -+A_STATUS DevRWCompletionHandler(void *context, A_STATUS status); -+A_STATUS DevDsrHandler(void *context); -+A_STATUS DevCheckPendingRecvMsgsAsync(void *context); -+void DevDumpRegisters(AR6K_IRQ_PROC_REGISTERS *pIrqProcRegs, -+ AR6K_IRQ_ENABLE_REGISTERS *pIrqEnableRegs); -+ -+#define DEV_STOP_RECV_ASYNC TRUE -+#define DEV_STOP_RECV_SYNC FALSE -+#define DEV_ENABLE_RECV_ASYNC TRUE -+#define DEV_ENABLE_RECV_SYNC FALSE -+A_STATUS DevStopRecv(AR6K_DEVICE *pDev, A_BOOL ASyncMode); -+A_STATUS DevEnableRecv(AR6K_DEVICE *pDev, A_BOOL ASyncMode); -+ -+static INLINE A_STATUS DevSendPacket(AR6K_DEVICE *pDev, HTC_PACKET *pPacket, A_UINT32 SendLength) { -+ A_UINT32 paddedLength; -+ A_BOOL sync = (pPacket->Completion == NULL) ? TRUE : FALSE; -+ A_STATUS status; -+ -+ /* adjust the length to be a multiple of block size if appropriate */ -+ paddedLength = (SendLength + (pDev->BlockMask)) & -+ (~(pDev->BlockMask)); -+#if 0 // BufferLength may not be set in , fix this... -+ if (paddedLength > pPacket->BufferLength) { -+ AR_DEBUG_ASSERT(FALSE); -+ if (pPacket->Completion != NULL) { -+ COMPLETE_HTC_PACKET(pPacket,A_EINVAL); -+ } -+ return A_EINVAL; -+ } -+#endif -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, -+ ("DevSendPacket, Padded Length: %d Mbox:0x%X (mode:%s)\n", -+ paddedLength, -+ pDev->MailboxAddress, -+ sync ? "SYNC" : "ASYNC")); -+ -+ status = HIFReadWrite(pDev->HIFDevice, -+ pDev->MailboxAddress, -+ pPacket->pBuffer, -+ paddedLength, /* the padded length */ -+ sync ? HIF_WR_SYNC_BLOCK_INC : HIF_WR_ASYNC_BLOCK_INC, -+ sync ? NULL : pPacket); /* pass the packet as the context to the HIF request */ -+ -+ if (sync) { -+ pPacket->Status = status; -+ } -+ -+ return status; -+} -+ -+static INLINE A_STATUS DevRecvPacket(AR6K_DEVICE *pDev, HTC_PACKET *pPacket, A_UINT32 RecvLength) { -+ A_UINT32 paddedLength; -+ A_STATUS status; -+ A_BOOL sync = (pPacket->Completion == NULL) ? TRUE : FALSE; -+ -+ /* adjust the length to be a multiple of block size if appropriate */ -+ paddedLength = (RecvLength + (pDev->BlockMask)) & -+ (~(pDev->BlockMask)); -+ if (paddedLength > pPacket->BufferLength) { -+ AR_DEBUG_ASSERT(FALSE); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("DevRecvPacket, Not enough space for padlen:%d recvlen:%d bufferlen:%d \n", -+ paddedLength,RecvLength,pPacket->BufferLength)); -+ if (pPacket->Completion != NULL) { -+ COMPLETE_HTC_PACKET(pPacket,A_EINVAL); -+ } -+ return A_EINVAL; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, -+ ("DevRecvPacket, Padded Length: %d Mbox:0x%X (mode:%s)\n", -+ paddedLength, -+ pDev->MailboxAddress, -+ sync ? "SYNC" : "ASYNC")); -+ -+ status = HIFReadWrite(pDev->HIFDevice, -+ pDev->MailboxAddress, -+ pPacket->pBuffer, -+ paddedLength, -+ sync ? HIF_RD_SYNC_BLOCK_INC : HIF_RD_ASYNC_BLOCK_INC, -+ sync ? NULL : pPacket); /* pass the packet as the context to the HIF request */ -+ -+ if (sync) { -+ pPacket->Status = status; -+ } -+ -+ return status; -+} -+ -+#ifdef MBOXHW_UNIT_TEST -+A_STATUS DoMboxHWTest(AR6K_DEVICE *pDev); -+#endif -+ -+#endif /*AR6K_H_*/ ---- /dev/null -+++ b/drivers/ar6000/htc/htc.c -@@ -0,0 +1,507 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "htc_internal.h" -+ -+ -+static HTC_INIT_INFO HTCInitInfo = {NULL,NULL,NULL}; -+static A_BOOL HTCInitialized = FALSE; -+ -+static A_STATUS HTCTargetInsertedHandler(void *hif_handle); -+static A_STATUS HTCTargetRemovedHandler(void *handle, A_STATUS status); -+static void HTCReportFailure(void *Context); -+ -+/* Initializes the HTC layer */ -+A_STATUS HTCInit(HTC_INIT_INFO *pInitInfo) -+{ -+ HTC_CALLBACKS htcCallbacks; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("HTCInit: Enter\n")); -+ if (HTCInitialized) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("HTCInit: Exit\n")); -+ return A_OK; -+ } -+ -+ A_MEMCPY(&HTCInitInfo,pInitInfo,sizeof(HTC_INIT_INFO)); -+ -+ A_MEMZERO(&htcCallbacks, sizeof(HTC_CALLBACKS)); -+ -+ /* setup HIF layer callbacks */ -+ htcCallbacks.deviceInsertedHandler = HTCTargetInsertedHandler; -+ htcCallbacks.deviceRemovedHandler = HTCTargetRemovedHandler; -+ /* the device layer handles these */ -+ htcCallbacks.rwCompletionHandler = DevRWCompletionHandler; -+ htcCallbacks.dsrHandler = DevDsrHandler; -+ HIFInit(&htcCallbacks); -+ HTCInitialized = TRUE; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("HTCInit: Exit\n")); -+ return A_OK; -+} -+ -+void HTCFreeControlBuffer(HTC_TARGET *target, HTC_PACKET *pPacket, HTC_PACKET_QUEUE *pList) -+{ -+ LOCK_HTC(target); -+ HTC_PACKET_ENQUEUE(pList,pPacket); -+ UNLOCK_HTC(target); -+} -+ -+HTC_PACKET *HTCAllocControlBuffer(HTC_TARGET *target, HTC_PACKET_QUEUE *pList) -+{ -+ HTC_PACKET *pPacket; -+ -+ LOCK_HTC(target); -+ pPacket = HTC_PACKET_DEQUEUE(pList); -+ UNLOCK_HTC(target); -+ -+ return pPacket; -+} -+ -+/* cleanup the HTC instance */ -+static void HTCCleanup(HTC_TARGET *target) -+{ -+ if (A_IS_MUTEX_VALID(&target->HTCLock)) { -+ A_MUTEX_DELETE(&target->HTCLock); -+ } -+ -+ if (A_IS_MUTEX_VALID(&target->HTCRxLock)) { -+ A_MUTEX_DELETE(&target->HTCRxLock); -+ } -+ -+ if (A_IS_MUTEX_VALID(&target->HTCTxLock)) { -+ A_MUTEX_DELETE(&target->HTCTxLock); -+ } -+ /* free our instance */ -+ A_FREE(target); -+} -+ -+/* registered target arrival callback from the HIF layer */ -+static A_STATUS HTCTargetInsertedHandler(void *hif_handle) -+{ -+ HTC_TARGET *target = NULL; -+ A_STATUS status; -+ int i; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("htcTargetInserted - Enter\n")); -+ -+ do { -+ -+ /* allocate target memory */ -+ if ((target = (HTC_TARGET *)A_MALLOC(sizeof(HTC_TARGET))) == NULL) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Unable to allocate memory\n")); -+ status = A_ERROR; -+ break; -+ } -+ -+ A_MEMZERO(target, sizeof(HTC_TARGET)); -+ A_MUTEX_INIT(&target->HTCLock); -+ A_MUTEX_INIT(&target->HTCRxLock); -+ A_MUTEX_INIT(&target->HTCTxLock); -+ INIT_HTC_PACKET_QUEUE(&target->ControlBufferTXFreeList); -+ INIT_HTC_PACKET_QUEUE(&target->ControlBufferRXFreeList); -+ -+ /* give device layer the hif device handle */ -+ target->Device.HIFDevice = hif_handle; -+ /* give the device layer our context (for event processing) -+ * the device layer will register it's own context with HIF -+ * so we need to set this so we can fetch it in the target remove handler */ -+ target->Device.HTCContext = target; -+ /* set device layer target failure callback */ -+ target->Device.TargetFailureCallback = HTCReportFailure; -+ /* set device layer recv message pending callback */ -+ target->Device.MessagePendingCallback = HTCRecvMessagePendingHandler; -+ target->EpWaitingForBuffers = ENDPOINT_MAX; -+ -+ /* setup device layer */ -+ status = DevSetup(&target->Device); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* carve up buffers/packets for control messages */ -+ for (i = 0; i < NUM_CONTROL_RX_BUFFERS; i++) { -+ HTC_PACKET *pControlPacket; -+ pControlPacket = &target->HTCControlBuffers[i].HtcPacket; -+ SET_HTC_PACKET_INFO_RX_REFILL(pControlPacket, -+ target, -+ target->HTCControlBuffers[i].Buffer, -+ HTC_CONTROL_BUFFER_SIZE, -+ ENDPOINT_0); -+ HTC_FREE_CONTROL_RX(target,pControlPacket); -+ } -+ -+ for (;i < NUM_CONTROL_BUFFERS;i++) { -+ HTC_PACKET *pControlPacket; -+ pControlPacket = &target->HTCControlBuffers[i].HtcPacket; -+ INIT_HTC_PACKET_INFO(pControlPacket, -+ target->HTCControlBuffers[i].Buffer, -+ HTC_CONTROL_BUFFER_SIZE); -+ HTC_FREE_CONTROL_TX(target,pControlPacket); -+ } -+ -+ } while (FALSE); -+ -+ if (A_SUCCESS(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, (" calling AddInstance callback \n")); -+ /* announce ourselves */ -+ HTCInitInfo.AddInstance((HTC_HANDLE)target); -+ } else { -+ if (target != NULL) { -+ HTCCleanup(target); -+ } -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("htcTargetInserted - Exit\n")); -+ -+ return status; -+} -+ -+/* registered removal callback from the HIF layer */ -+static A_STATUS HTCTargetRemovedHandler(void *handle, A_STATUS status) -+{ -+ HTC_TARGET *target; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("+HTCTargetRemovedHandler handle:0x%X \n",(A_UINT32)handle)); -+ -+ if (NULL == handle) { -+ /* this could be NULL in the event that target initialization failed */ -+ return A_OK; -+ } -+ -+ target = ((AR6K_DEVICE *)handle)->HTCContext; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, (" removing target:0x%X instance:0x%X ... \n", -+ (A_UINT32)target, (A_UINT32)target->pInstanceContext)); -+ -+ if (target->pInstanceContext != NULL) { -+ /* let upper layer know, it needs to call HTCStop() */ -+ HTCInitInfo.DeleteInstance(target->pInstanceContext); -+ } -+ -+ HIFShutDownDevice(target->Device.HIFDevice); -+ -+ HTCCleanup(target); -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("-HTCTargetRemovedHandler \n")); -+ return A_OK; -+} -+ -+/* get the low level HIF device for the caller , the caller may wish to do low level -+ * HIF requests */ -+void *HTCGetHifDevice(HTC_HANDLE HTCHandle) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ return target->Device.HIFDevice; -+} -+ -+/* set the instance block for this HTC handle, so that on removal, the blob can be -+ * returned to the caller */ -+void HTCSetInstance(HTC_HANDLE HTCHandle, void *Instance) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ -+ target->pInstanceContext = Instance; -+} -+ -+/* wait for the target to arrive (sends HTC Ready message) -+ * this operation is fully synchronous and the message is polled for */ -+A_STATUS HTCWaitTarget(HTC_HANDLE HTCHandle) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ A_STATUS status; -+ HTC_PACKET *pPacket = NULL; -+ HTC_READY_MSG *pRdyMsg; -+ HTC_SERVICE_CONNECT_REQ connect; -+ HTC_SERVICE_CONNECT_RESP resp; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("HTCWaitTarget - Enter (target:0x%X) \n", (A_UINT32)target)); -+ -+ do { -+ -+#ifdef MBOXHW_UNIT_TEST -+ -+ status = DoMboxHWTest(&target->Device); -+ -+ if (status != A_OK) { -+ break; -+ } -+ -+#endif -+ -+ /* we should be getting 1 control message that the target is ready */ -+ status = HTCWaitforControlMessage(target, &pPacket); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, (" Target Not Available!!\n")); -+ break; -+ } -+ -+ /* we controlled the buffer creation so it has to be properly aligned */ -+ pRdyMsg = (HTC_READY_MSG *)pPacket->pBuffer; -+ -+ if ((pRdyMsg->MessageID != HTC_MSG_READY_ID) || -+ (pPacket->ActualLength < sizeof(HTC_READY_MSG))) { -+ /* this message is not valid */ -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_EPROTO; -+ break; -+ } -+ -+ if (pRdyMsg->CreditCount == 0 || pRdyMsg->CreditSize == 0) { -+ /* this message is not valid */ -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_EPROTO; -+ break; -+ } -+ -+ target->TargetCredits = pRdyMsg->CreditCount; -+ target->TargetCreditSize = pRdyMsg->CreditSize; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, (" Target Ready: credits: %d credit size: %d\n", -+ target->TargetCredits, target->TargetCreditSize)); -+ -+ /* setup our pseudo HTC control endpoint connection */ -+ A_MEMZERO(&connect,sizeof(connect)); -+ A_MEMZERO(&resp,sizeof(resp)); -+ connect.EpCallbacks.pContext = target; -+ connect.EpCallbacks.EpTxComplete = HTCControlTxComplete; -+ connect.EpCallbacks.EpRecv = HTCControlRecv; -+ connect.EpCallbacks.EpRecvRefill = NULL; /* not needed */ -+ connect.EpCallbacks.EpSendFull = NULL; /* not nedded */ -+ connect.MaxSendQueueDepth = NUM_CONTROL_BUFFERS; -+ connect.ServiceID = HTC_CTRL_RSVD_SVC; -+ -+ /* connect fake service */ -+ status = HTCConnectService((HTC_HANDLE)target, -+ &connect, -+ &resp); -+ -+ if (!A_FAILED(status)) { -+ break; -+ } -+ -+ } while (FALSE); -+ -+ if (pPacket != NULL) { -+ HTC_FREE_CONTROL_RX(target,pPacket); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("HTCWaitTarget - Exit\n")); -+ -+ return status; -+} -+ -+ -+ -+/* Start HTC, enable interrupts and let the target know host has finished setup */ -+A_STATUS HTCStart(HTC_HANDLE HTCHandle) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ HTC_PACKET *pPacket; -+ A_STATUS status; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("HTCStart Enter\n")); -+ -+ /* now that we are starting, push control receive buffers into the -+ * HTC control endpoint */ -+ -+ while (1) { -+ pPacket = HTC_ALLOC_CONTROL_RX(target); -+ if (NULL == pPacket) { -+ break; -+ } -+ HTCAddReceivePkt((HTC_HANDLE)target,pPacket); -+ } -+ -+ do { -+ -+ AR_DEBUG_ASSERT(target->InitCredits != NULL); -+ AR_DEBUG_ASSERT(target->EpCreditDistributionListHead != NULL); -+ AR_DEBUG_ASSERT(target->EpCreditDistributionListHead->pNext != NULL); -+ -+ /* call init credits callback to do the distribution , -+ * NOTE: the first entry in the distribution list is ENDPOINT_0, so -+ * we pass the start of the list after this one. */ -+ target->InitCredits(target->pCredDistContext, -+ target->EpCreditDistributionListHead->pNext, -+ target->TargetCredits); -+ -+ if (AR_DEBUG_LVL_CHECK(ATH_DEBUG_TRC)) { -+ DumpCreditDistStates(target); -+ } -+ -+ /* the caller is done connecting to services, so we can indicate to the -+ * target that the setup phase is complete */ -+ status = HTCSendSetupComplete(target); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* unmask interrupts */ -+ status = DevUnmaskInterrupts(&target->Device); -+ -+ if (A_FAILED(status)) { -+ HTCStop(target); -+ } -+ -+ } while (FALSE); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("HTCStart Exit\n")); -+ return status; -+} -+ -+ -+/* stop HTC communications, i.e. stop interrupt reception, and flush all queued buffers */ -+void HTCStop(HTC_HANDLE HTCHandle) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("+HTCStop \n")); -+ -+ /* mark that we are shutting down .. */ -+ target->HTCStateFlags |= HTC_STATE_STOPPING; -+ -+ /* Masking interrupts is a synchronous operation, when this function returns -+ * all pending HIF I/O has completed, we can safely flush the queues */ -+ DevMaskInterrupts(&target->Device); -+ -+ /* flush all send packets */ -+ HTCFlushSendPkts(target); -+ /* flush all recv buffers */ -+ HTCFlushRecvBuffers(target); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("-HTCStop \n")); -+} -+ -+/* undo what was done in HTCInit() */ -+void HTCShutDown(void) -+{ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("+HTCShutDown: \n")); -+ HTCInitialized = FALSE; -+ /* undo HTCInit */ -+ HIFShutDownDevice(NULL); -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("-HTCShutDown: \n")); -+} -+ -+void HTCDumpCreditStates(HTC_HANDLE HTCHandle) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ -+ LOCK_HTC_TX(target); -+ -+ DumpCreditDistStates(target); -+ -+ UNLOCK_HTC_TX(target); -+} -+ -+/* report a target failure from the device, this is a callback from the device layer -+ * which uses a mechanism to report errors from the target (i.e. special interrupts) */ -+static void HTCReportFailure(void *Context) -+{ -+ HTC_TARGET *target = (HTC_TARGET *)Context; -+ -+ target->TargetFailure = TRUE; -+ -+ if ((target->pInstanceContext != NULL) && (HTCInitInfo.TargetFailure != NULL)) { -+ /* let upper layer know, it needs to call HTCStop() */ -+ HTCInitInfo.TargetFailure(target->pInstanceContext, A_ERROR); -+ } -+} -+ -+void DebugDumpBytes(A_UCHAR *buffer, A_UINT16 length, char *pDescription) -+{ -+ A_CHAR stream[60]; -+ A_UINT32 i; -+ A_UINT16 offset, count; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, ("<---------Dumping %d Bytes : %s ------>\n", length, pDescription)); -+ -+ count = 0; -+ offset = 0; -+ for(i = 0; i < length; i++) { -+ sprintf(stream + offset, "%2.2X ", buffer[i]); -+ count ++; -+ offset += 3; -+ -+ if(count == 16) { -+ count = 0; -+ offset = 0; -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, ("[H]: %s\n", stream)); -+ A_MEMZERO(stream, 60); -+ } -+ } -+ -+ if(offset != 0) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, ("[H]: %s\n", stream)); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, ("<------------------------------------------------->\n")); -+} -+ -+A_BOOL HTCGetEndpointStatistics(HTC_HANDLE HTCHandle, -+ HTC_ENDPOINT_ID Endpoint, -+ HTC_ENDPOINT_STAT_ACTION Action, -+ HTC_ENDPOINT_STATS *pStats) -+{ -+ -+#ifdef HTC_EP_STAT_PROFILING -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ A_BOOL clearStats = FALSE; -+ A_BOOL sample = FALSE; -+ -+ switch (Action) { -+ case HTC_EP_STAT_SAMPLE : -+ sample = TRUE; -+ break; -+ case HTC_EP_STAT_SAMPLE_AND_CLEAR : -+ sample = TRUE; -+ clearStats = TRUE; -+ break; -+ case HTC_EP_STAT_CLEAR : -+ clearStats = TRUE; -+ break; -+ default: -+ break; -+ } -+ -+ A_ASSERT(Endpoint < ENDPOINT_MAX); -+ -+ /* lock out TX and RX while we sample and/or clear */ -+ LOCK_HTC_TX(target); -+ LOCK_HTC_RX(target); -+ -+ if (sample) { -+ A_ASSERT(pStats != NULL); -+ /* return the stats to the caller */ -+ A_MEMCPY(pStats, &target->EndPoint[Endpoint].EndPointStats, sizeof(HTC_ENDPOINT_STATS)); -+ } -+ -+ if (clearStats) { -+ /* reset stats */ -+ A_MEMZERO(&target->EndPoint[Endpoint].EndPointStats, sizeof(HTC_ENDPOINT_STATS)); -+ } -+ -+ UNLOCK_HTC_RX(target); -+ UNLOCK_HTC_TX(target); -+ -+ return TRUE; -+#else -+ return FALSE; -+#endif -+} ---- /dev/null -+++ b/drivers/ar6000/htc/htc_debug.h -@@ -0,0 +1,65 @@ -+#ifndef HTC_DEBUG_H_ -+#define HTC_DEBUG_H_ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+/* ------- Debug related stuff ------- */ -+enum { -+ ATH_DEBUG_SEND = 0x0001, -+ ATH_DEBUG_RECV = 0x0002, -+ ATH_DEBUG_SYNC = 0x0004, -+ ATH_DEBUG_DUMP = 0x0008, -+ ATH_DEBUG_IRQ = 0x0010, -+ ATH_DEBUG_TRC = 0x0020, -+ ATH_DEBUG_WARN = 0x0040, -+ ATH_DEBUG_ERR = 0x0080, -+ ATH_DEBUG_ANY = 0xFFFF, -+}; -+ -+#ifdef DEBUG -+ -+// TODO FIX usage of A_PRINTF! -+#define AR_DEBUG_LVL_CHECK(lvl) (debughtc & (lvl)) -+#define AR_DEBUG_PRINTBUF(buffer, length, desc) do { \ -+ if (debughtc & ATH_DEBUG_DUMP) { \ -+ DebugDumpBytes(buffer, length,desc); \ -+ } \ -+} while(0) -+#define PRINTX_ARG(arg...) arg -+#define AR_DEBUG_PRINTF(flags, args) do { \ -+ if (debughtc & (flags)) { \ -+ A_PRINTF(KERN_ALERT PRINTX_ARG args); \ -+ } \ -+} while (0) -+#define AR_DEBUG_ASSERT(test) do { \ -+ if (!(test)) { \ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("Debug Assert Caught, File %s, Line: %d, Test:%s \n",__FILE__, __LINE__,#test)); \ -+ } \ -+} while(0) -+extern int debughtc; -+#else -+#define AR_DEBUG_PRINTF(flags, args) -+#define AR_DEBUG_PRINTBUF(buffer, length, desc) -+#define AR_DEBUG_ASSERT(test) -+#define AR_DEBUG_LVL_CHECK(lvl) 0 -+#endif -+ -+void DebugDumpBytes(A_UCHAR *buffer, A_UINT16 length, char *pDescription); -+ -+#endif /*HTC_DEBUG_H_*/ ---- /dev/null -+++ b/drivers/ar6000/htc/htc_internal.h -@@ -0,0 +1,168 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _HTC_INTERNAL_H_ -+#define _HTC_INTERNAL_H_ -+ -+/* for debugging, uncomment this to capture the last frame header, on frame header -+ * processing errors, the last frame header is dump for comparison */ -+//#define HTC_CAPTURE_LAST_FRAME -+ -+//#define HTC_EP_STAT_PROFILING -+ -+#ifdef __cplusplus -+extern "C" { -+#endif /* __cplusplus */ -+ -+/* Header files */ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "a_osapi.h" -+#include "a_debug.h" -+#include "htc.h" -+#include "htc_api.h" -+#include "bmi_msg.h" -+#include "hif.h" -+#include "ar6k.h" -+ -+/* HTC operational parameters */ -+#define HTC_TARGET_RESPONSE_TIMEOUT 2000 /* in ms */ -+#define HTC_TARGET_DEBUG_INTR_MASK 0x01 -+#define HTC_TARGET_CREDIT_INTR_MASK 0xF0 -+ -+typedef struct _HTC_ENDPOINT { -+ HTC_SERVICE_ID ServiceID; /* service ID this endpoint is bound to -+ non-zero value means this endpoint is in use */ -+ HTC_PACKET_QUEUE TxQueue; /* HTC frame buffer TX queue */ -+ HTC_PACKET_QUEUE RxBuffers; /* HTC frame buffer RX list */ -+ HTC_ENDPOINT_CREDIT_DIST CreditDist; /* credit distribution structure (exposed to driver layer) */ -+ HTC_EP_CALLBACKS EpCallBacks; /* callbacks associated with this endpoint */ -+ int MaxTxQueueDepth; /* max depth of the TX queue before we need to -+ call driver's full handler */ -+ int CurrentTxQueueDepth; /* current TX queue depth */ -+ int MaxMsgLength; /* max length of endpoint message */ -+#ifdef HTC_EP_STAT_PROFILING -+ HTC_ENDPOINT_STATS EndPointStats; /* endpoint statistics */ -+#endif -+} HTC_ENDPOINT; -+ -+#ifdef HTC_EP_STAT_PROFILING -+#define INC_HTC_EP_STAT(p,stat,count) (p)->EndPointStats.stat += (count); -+#else -+#define INC_HTC_EP_STAT(p,stat,count) -+#endif -+ -+#define HTC_SERVICE_TX_PACKET_TAG HTC_TX_PACKET_TAG_INTERNAL -+ -+#define NUM_CONTROL_BUFFERS 8 -+#define NUM_CONTROL_TX_BUFFERS 2 -+#define NUM_CONTROL_RX_BUFFERS (NUM_CONTROL_BUFFERS - NUM_CONTROL_TX_BUFFERS) -+ -+#define HTC_CONTROL_BUFFER_SIZE (HTC_MAX_CONTROL_MESSAGE_LENGTH + HTC_HDR_LENGTH) -+ -+typedef struct HTC_CONTROL_BUFFER { -+ HTC_PACKET HtcPacket; -+ A_UINT8 Buffer[HTC_CONTROL_BUFFER_SIZE]; -+} HTC_CONTROL_BUFFER; -+ -+/* our HTC target state */ -+typedef struct _HTC_TARGET { -+ HTC_ENDPOINT EndPoint[ENDPOINT_MAX]; -+ HTC_CONTROL_BUFFER HTCControlBuffers[NUM_CONTROL_BUFFERS]; -+ HTC_ENDPOINT_CREDIT_DIST *EpCreditDistributionListHead; -+ HTC_PACKET_QUEUE ControlBufferTXFreeList; -+ HTC_PACKET_QUEUE ControlBufferRXFreeList; -+ HTC_CREDIT_DIST_CALLBACK DistributeCredits; -+ HTC_CREDIT_INIT_CALLBACK InitCredits; -+ void *pCredDistContext; -+ int TargetCredits; -+ int TargetCreditSize; -+ A_MUTEX_T HTCLock; -+ A_MUTEX_T HTCRxLock; -+ A_MUTEX_T HTCTxLock; -+ AR6K_DEVICE Device; /* AR6K - specific state */ -+ A_UINT32 HTCStateFlags; -+ HTC_ENDPOINT_ID EpWaitingForBuffers; -+ A_BOOL TargetFailure; -+ void *pInstanceContext; -+#define HTC_STATE_WAIT_BUFFERS (1 << 0) -+#define HTC_STATE_STOPPING (1 << 1) -+#ifdef HTC_CAPTURE_LAST_FRAME -+ HTC_FRAME_HDR LastFrameHdr; /* useful for debugging */ -+ A_UINT8 LastTrailer[256]; -+ A_UINT8 LastTrailerLength; -+#endif -+} HTC_TARGET; -+ -+#define HTC_STOPPING(t) ((t)->HTCStateFlags & HTC_STATE_STOPPING) -+#define LOCK_HTC(t) A_MUTEX_LOCK(&(t)->HTCLock); -+#define UNLOCK_HTC(t) A_MUTEX_UNLOCK(&(t)->HTCLock); -+#define LOCK_HTC_RX(t) A_MUTEX_LOCK(&(t)->HTCRxLock); -+#define UNLOCK_HTC_RX(t) A_MUTEX_UNLOCK(&(t)->HTCRxLock); -+#define LOCK_HTC_TX(t) A_MUTEX_LOCK(&(t)->HTCTxLock); -+#define UNLOCK_HTC_TX(t) A_MUTEX_UNLOCK(&(t)->HTCTxLock); -+ -+#define GET_HTC_TARGET_FROM_HANDLE(hnd) ((HTC_TARGET *)(hnd)) -+#define HTC_RECYCLE_RX_PKT(target,p) \ -+{ \ -+ HTC_PACKET_RESET_RX(pPacket); \ -+ HTCAddReceivePkt((HTC_HANDLE)(target),(p)); \ -+} -+ -+/* internal HTC functions */ -+void HTCControlTxComplete(void *Context, HTC_PACKET *pPacket); -+void HTCControlRecv(void *Context, HTC_PACKET *pPacket); -+A_STATUS HTCWaitforControlMessage(HTC_TARGET *target, HTC_PACKET **ppControlPacket); -+HTC_PACKET *HTCAllocControlBuffer(HTC_TARGET *target, HTC_PACKET_QUEUE *pList); -+void HTCFreeControlBuffer(HTC_TARGET *target, HTC_PACKET *pPacket, HTC_PACKET_QUEUE *pList); -+A_STATUS HTCIssueSend(HTC_TARGET *target, HTC_PACKET *pPacket, A_UINT8 Flags); -+A_STATUS HTCIssueRecv(HTC_TARGET *target, HTC_PACKET *pPacket); -+void HTCRecvCompleteHandler(void *Context, HTC_PACKET *pPacket); -+A_STATUS HTCRecvMessagePendingHandler(void *Context, A_UINT32 LookAhead, A_BOOL *pAsyncProc); -+void HTCProcessCreditRpt(HTC_TARGET *target, HTC_CREDIT_REPORT *pRpt, int NumEntries, HTC_ENDPOINT_ID FromEndpoint); -+A_STATUS HTCSendSetupComplete(HTC_TARGET *target); -+void HTCFlushRecvBuffers(HTC_TARGET *target); -+void HTCFlushSendPkts(HTC_TARGET *target); -+void DumpCreditDist(HTC_ENDPOINT_CREDIT_DIST *pEPDist); -+void DumpCreditDistStates(HTC_TARGET *target); -+void DebugDumpBytes(A_UCHAR *buffer, A_UINT16 length, char *pDescription); -+ -+static INLINE HTC_PACKET *HTC_ALLOC_CONTROL_TX(HTC_TARGET *target) { -+ HTC_PACKET *pPacket = HTCAllocControlBuffer(target,&target->ControlBufferTXFreeList); -+ if (pPacket != NULL) { -+ /* set payload pointer area with some headroom */ -+ pPacket->pBuffer = pPacket->pBufferStart + HTC_HDR_LENGTH; -+ } -+ return pPacket; -+} -+ -+#define HTC_FREE_CONTROL_TX(t,p) HTCFreeControlBuffer((t),(p),&(t)->ControlBufferTXFreeList) -+#define HTC_ALLOC_CONTROL_RX(t) HTCAllocControlBuffer((t),&(t)->ControlBufferRXFreeList) -+#define HTC_FREE_CONTROL_RX(t,p) \ -+{ \ -+ HTC_PACKET_RESET_RX(p); \ -+ HTCFreeControlBuffer((t),(p),&(t)->ControlBufferRXFreeList); \ -+} -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _HTC_INTERNAL_H_ */ ---- /dev/null -+++ b/drivers/ar6000/htc/htc_recv.c -@@ -0,0 +1,703 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "htc_internal.h" -+ -+#define HTCIssueRecv(t, p) \ -+ DevRecvPacket(&(t)->Device, \ -+ (p), \ -+ (p)->ActualLength) -+ -+#define DO_RCV_COMPLETION(t,p,e) \ -+{ \ -+ if ((p)->ActualLength > 0) { \ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, (" completing packet 0x%X (%d bytes) on ep : %d \n", \ -+ (A_UINT32)(p), (p)->ActualLength, (p)->Endpoint)); \ -+ (e)->EpCallBacks.EpRecv((e)->EpCallBacks.pContext, \ -+ (p)); \ -+ } else { \ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, (" recycling empty packet \n")); \ -+ HTC_RECYCLE_RX_PKT((t), (p)); \ -+ } \ -+} -+ -+#ifdef HTC_EP_STAT_PROFILING -+#define HTC_RX_STAT_PROFILE(t,ep,lookAhead) \ -+{ \ -+ LOCK_HTC_RX((t)); \ -+ INC_HTC_EP_STAT((ep), RxReceived, 1); \ -+ if ((lookAhead) != 0) { \ -+ INC_HTC_EP_STAT((ep), RxLookAheads, 1); \ -+ } \ -+ UNLOCK_HTC_RX((t)); \ -+} -+#else -+#define HTC_RX_STAT_PROFILE(t,ep,lookAhead) -+#endif -+ -+static INLINE A_STATUS HTCProcessTrailer(HTC_TARGET *target, -+ A_UINT8 *pBuffer, -+ int Length, -+ A_UINT32 *pNextLookAhead, -+ HTC_ENDPOINT_ID FromEndpoint) -+{ -+ HTC_RECORD_HDR *pRecord; -+ A_UINT8 *pRecordBuf; -+ HTC_LOOKAHEAD_REPORT *pLookAhead; -+ A_UINT8 *pOrigBuffer; -+ int origLength; -+ A_STATUS status; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, ("+HTCProcessTrailer (length:%d) \n", Length)); -+ -+ if (AR_DEBUG_LVL_CHECK(ATH_DEBUG_RECV)) { -+ AR_DEBUG_PRINTBUF(pBuffer,Length,"Recv Trailer"); -+ } -+ -+ pOrigBuffer = pBuffer; -+ origLength = Length; -+ status = A_OK; -+ -+ while (Length > 0) { -+ -+ if (Length < sizeof(HTC_RECORD_HDR)) { -+ status = A_EPROTO; -+ break; -+ } -+ /* these are byte aligned structs */ -+ pRecord = (HTC_RECORD_HDR *)pBuffer; -+ Length -= sizeof(HTC_RECORD_HDR); -+ pBuffer += sizeof(HTC_RECORD_HDR); -+ -+ if (pRecord->Length > Length) { -+ /* no room left in buffer for record */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ (" invalid record length: %d (id:%d) buffer has: %d bytes left \n", -+ pRecord->Length, pRecord->RecordID, Length)); -+ status = A_EPROTO; -+ break; -+ } -+ /* start of record follows the header */ -+ pRecordBuf = pBuffer; -+ -+ switch (pRecord->RecordID) { -+ case HTC_RECORD_CREDITS: -+ AR_DEBUG_ASSERT(pRecord->Length >= sizeof(HTC_CREDIT_REPORT)); -+ HTCProcessCreditRpt(target, -+ (HTC_CREDIT_REPORT *)pRecordBuf, -+ pRecord->Length / (sizeof(HTC_CREDIT_REPORT)), -+ FromEndpoint); -+ break; -+ case HTC_RECORD_LOOKAHEAD: -+ AR_DEBUG_ASSERT(pRecord->Length >= sizeof(HTC_LOOKAHEAD_REPORT)); -+ pLookAhead = (HTC_LOOKAHEAD_REPORT *)pRecordBuf; -+ if ((pLookAhead->PreValid == ((~pLookAhead->PostValid) & 0xFF)) && -+ (pNextLookAhead != NULL)) { -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, -+ (" LookAhead Report Found (pre valid:0x%X, post valid:0x%X) \n", -+ pLookAhead->PreValid, -+ pLookAhead->PostValid)); -+ -+ /* look ahead bytes are valid, copy them over */ -+ ((A_UINT8 *)pNextLookAhead)[0] = pLookAhead->LookAhead[0]; -+ ((A_UINT8 *)pNextLookAhead)[1] = pLookAhead->LookAhead[1]; -+ ((A_UINT8 *)pNextLookAhead)[2] = pLookAhead->LookAhead[2]; -+ ((A_UINT8 *)pNextLookAhead)[3] = pLookAhead->LookAhead[3]; -+ -+ if (AR_DEBUG_LVL_CHECK(ATH_DEBUG_RECV)) { -+ DebugDumpBytes((A_UINT8 *)pNextLookAhead,4,"Next Look Ahead"); -+ } -+ } -+ break; -+ default: -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, (" unhandled record: id:%d length:%d \n", -+ pRecord->RecordID, pRecord->Length)); -+ break; -+ } -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* advance buffer past this record for next time around */ -+ pBuffer += pRecord->Length; -+ Length -= pRecord->Length; -+ } -+ -+ if (A_FAILED(status)) { -+ DebugDumpBytes(pOrigBuffer,origLength,"BAD Recv Trailer"); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, ("-HTCProcessTrailer \n")); -+ return status; -+ -+} -+ -+/* process a received message (i.e. strip off header, process any trailer data) -+ * note : locks must be released when this function is called */ -+static A_STATUS HTCProcessRecvHeader(HTC_TARGET *target, HTC_PACKET *pPacket, A_UINT32 *pNextLookAhead) -+{ -+ A_UINT8 temp; -+ A_UINT8 *pBuf; -+ A_STATUS status = A_OK; -+ A_UINT16 payloadLen; -+ A_UINT32 lookAhead; -+ -+ pBuf = pPacket->pBuffer; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, ("+HTCProcessRecvHeader \n")); -+ -+ if (AR_DEBUG_LVL_CHECK(ATH_DEBUG_RECV)) { -+ AR_DEBUG_PRINTBUF(pBuf,pPacket->ActualLength,"HTC Recv PKT"); -+ } -+ -+ do { -+ /* note, we cannot assume the alignment of pBuffer, so we use the safe macros to -+ * retrieve 16 bit fields */ -+ payloadLen = A_GET_UINT16_FIELD(pBuf, HTC_FRAME_HDR, PayloadLen); -+ -+ ((A_UINT8 *)&lookAhead)[0] = pBuf[0]; -+ ((A_UINT8 *)&lookAhead)[1] = pBuf[1]; -+ ((A_UINT8 *)&lookAhead)[2] = pBuf[2]; -+ ((A_UINT8 *)&lookAhead)[3] = pBuf[3]; -+ -+ if (lookAhead != pPacket->HTCReserved) { -+ /* somehow the lookahead that gave us the full read length did not -+ * reflect the actual header in the pending message */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("HTCProcessRecvHeader, lookahead mismatch! \n")); -+ DebugDumpBytes((A_UINT8 *)&pPacket->HTCReserved,4,"Expected Message LookAhead"); -+ DebugDumpBytes(pBuf,sizeof(HTC_FRAME_HDR),"Current Frame Header"); -+#ifdef HTC_CAPTURE_LAST_FRAME -+ DebugDumpBytes((A_UINT8 *)&target->LastFrameHdr,sizeof(HTC_FRAME_HDR),"Last Frame Header"); -+ if (target->LastTrailerLength != 0) { -+ DebugDumpBytes(target->LastTrailer, -+ target->LastTrailerLength, -+ "Last trailer"); -+ } -+#endif -+ status = A_EPROTO; -+ break; -+ } -+ -+ /* get flags */ -+ temp = A_GET_UINT8_FIELD(pBuf, HTC_FRAME_HDR, Flags); -+ -+ if (temp & HTC_FLAGS_RECV_TRAILER) { -+ /* this packet has a trailer */ -+ -+ /* extract the trailer length in control byte 0 */ -+ temp = A_GET_UINT8_FIELD(pBuf, HTC_FRAME_HDR, ControlBytes[0]); -+ -+ if ((temp < sizeof(HTC_RECORD_HDR)) || (temp > payloadLen)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("HTCProcessRecvHeader, invalid header (payloadlength should be :%d, CB[0] is:%d) \n", -+ payloadLen, temp)); -+ status = A_EPROTO; -+ break; -+ } -+ -+ /* process trailer data that follows HDR + application payload */ -+ status = HTCProcessTrailer(target, -+ (pBuf + HTC_HDR_LENGTH + payloadLen - temp), -+ temp, -+ pNextLookAhead, -+ pPacket->Endpoint); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+#ifdef HTC_CAPTURE_LAST_FRAME -+ A_MEMCPY(target->LastTrailer, (pBuf + HTC_HDR_LENGTH + payloadLen - temp), temp); -+ target->LastTrailerLength = temp; -+#endif -+ /* trim length by trailer bytes */ -+ pPacket->ActualLength -= temp; -+ } -+#ifdef HTC_CAPTURE_LAST_FRAME -+ else { -+ target->LastTrailerLength = 0; -+ } -+#endif -+ -+ /* if we get to this point, the packet is good */ -+ /* remove header and adjust length */ -+ pPacket->pBuffer += HTC_HDR_LENGTH; -+ pPacket->ActualLength -= HTC_HDR_LENGTH; -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status)) { -+ /* dump the whole packet */ -+ DebugDumpBytes(pBuf,pPacket->ActualLength,"BAD HTC Recv PKT"); -+ } else { -+#ifdef HTC_CAPTURE_LAST_FRAME -+ A_MEMCPY(&target->LastFrameHdr,pBuf,sizeof(HTC_FRAME_HDR)); -+#endif -+ if (AR_DEBUG_LVL_CHECK(ATH_DEBUG_RECV)) { -+ if (pPacket->ActualLength > 0) { -+ AR_DEBUG_PRINTBUF(pPacket->pBuffer,pPacket->ActualLength,"HTC - Application Msg"); -+ } -+ } -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, ("-HTCProcessRecvHeader \n")); -+ return status; -+} -+ -+/* asynchronous completion handler for recv packet fetching, when the device layer -+ * completes a read request, it will call this completion handler */ -+void HTCRecvCompleteHandler(void *Context, HTC_PACKET *pPacket) -+{ -+ HTC_TARGET *target = (HTC_TARGET *)Context; -+ HTC_ENDPOINT *pEndpoint; -+ A_UINT32 nextLookAhead = 0; -+ A_STATUS status; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, ("+HTCRecvCompleteHandler (status:%d, ep:%d) \n", -+ pPacket->Status, pPacket->Endpoint)); -+ -+ AR_DEBUG_ASSERT(pPacket->Endpoint < ENDPOINT_MAX); -+ pEndpoint = &target->EndPoint[pPacket->Endpoint]; -+ pPacket->Completion = NULL; -+ -+ /* get completion status */ -+ status = pPacket->Status; -+ -+ do { -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, ("HTCRecvCompleteHandler: request failed (status:%d, ep:%d) \n", -+ pPacket->Status, pPacket->Endpoint)); -+ break; -+ } -+ /* process the header for any trailer data */ -+ status = HTCProcessRecvHeader(target,pPacket,&nextLookAhead); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ /* was there a lookahead for the next packet? */ -+ if (nextLookAhead != 0) { -+ A_STATUS nextStatus; -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, -+ ("HTCRecvCompleteHandler - next look ahead was non-zero : 0x%X \n", -+ nextLookAhead)); -+ /* we have another packet, get the next packet fetch started (pipelined) before -+ * we call into the endpoint's callback, this will start another async request */ -+ nextStatus = HTCRecvMessagePendingHandler(target,nextLookAhead,NULL); -+ if (A_EPROTO == nextStatus) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("Next look ahead from recv header was INVALID\n")); -+ DebugDumpBytes((A_UINT8 *)&nextLookAhead, -+ 4, -+ "BAD lookahead from lookahead report"); -+ } -+ } else { -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, -+ ("HTCRecvCompleteHandler - rechecking for more messages...\n")); -+ /* if we did not get anything on the look-ahead, -+ * call device layer to asynchronously re-check for messages. If we can keep the async -+ * processing going we get better performance. If there is a pending message we will keep processing -+ * messages asynchronously which should pipeline things nicely */ -+ DevCheckPendingRecvMsgsAsync(&target->Device); -+ } -+ -+ HTC_RX_STAT_PROFILE(target,pEndpoint,nextLookAhead); -+ DO_RCV_COMPLETION(target,pPacket,pEndpoint); -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("HTCRecvCompleteHandler , message fetch failed (status = %d) \n", -+ status)); -+ /* recyle this packet */ -+ HTC_RECYCLE_RX_PKT(target, pPacket); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, ("-HTCRecvCompleteHandler\n")); -+} -+ -+/* synchronously wait for a control message from the target, -+ * This function is used at initialization time ONLY. At init messages -+ * on ENDPOINT 0 are expected. */ -+A_STATUS HTCWaitforControlMessage(HTC_TARGET *target, HTC_PACKET **ppControlPacket) -+{ -+ A_STATUS status; -+ A_UINT32 lookAhead; -+ HTC_PACKET *pPacket = NULL; -+ HTC_FRAME_HDR *pHdr; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,("+HTCWaitforControlMessage \n")); -+ -+ do { -+ -+ *ppControlPacket = NULL; -+ -+ /* call the polling function to see if we have a message */ -+ status = DevPollMboxMsgRecv(&target->Device, -+ &lookAhead, -+ HTC_TARGET_RESPONSE_TIMEOUT); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, -+ ("HTCWaitforControlMessage : lookAhead : 0x%X \n", lookAhead)); -+ -+ /* check the lookahead */ -+ pHdr = (HTC_FRAME_HDR *)&lookAhead; -+ -+ if (pHdr->EndpointID != ENDPOINT_0) { -+ /* unexpected endpoint number, should be zero */ -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_EPROTO; -+ break; -+ } -+ -+ if (A_FAILED(status)) { -+ /* bad message */ -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_EPROTO; -+ break; -+ } -+ -+ pPacket = HTC_ALLOC_CONTROL_RX(target); -+ -+ if (pPacket == NULL) { -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_NO_MEMORY; -+ break; -+ } -+ -+ pPacket->HTCReserved = lookAhead; -+ pPacket->ActualLength = pHdr->PayloadLen + HTC_HDR_LENGTH; -+ -+ if (pPacket->ActualLength > pPacket->BufferLength) { -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_EPROTO; -+ break; -+ } -+ -+ /* we want synchronous operation */ -+ pPacket->Completion = NULL; -+ -+ /* get the message from the device, this will block */ -+ status = HTCIssueRecv(target, pPacket); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* process receive header */ -+ status = HTCProcessRecvHeader(target,pPacket,NULL); -+ -+ pPacket->Status = status; -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("HTCWaitforControlMessage, HTCProcessRecvHeader failed (status = %d) \n", -+ status)); -+ break; -+ } -+ -+ /* give the caller this control message packet, they are responsible to free */ -+ *ppControlPacket = pPacket; -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status)) { -+ if (pPacket != NULL) { -+ /* cleanup buffer on error */ -+ HTC_FREE_CONTROL_RX(target,pPacket); -+ } -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,("-HTCWaitforControlMessage \n")); -+ -+ return status; -+} -+ -+/* callback when device layer or lookahead report parsing detects a pending message */ -+A_STATUS HTCRecvMessagePendingHandler(void *Context, A_UINT32 LookAhead, A_BOOL *pAsyncProc) -+{ -+ HTC_TARGET *target = (HTC_TARGET *)Context; -+ A_STATUS status = A_OK; -+ HTC_PACKET *pPacket = NULL; -+ HTC_FRAME_HDR *pHdr; -+ HTC_ENDPOINT *pEndpoint; -+ A_BOOL asyncProc = FALSE; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,("+HTCRecvMessagePendingHandler LookAhead:0x%X \n",LookAhead)); -+ -+ if (IS_DEV_IRQ_PROCESSING_ASYNC_ALLOWED(&target->Device)) { -+ /* We use async mode to get the packets if the device layer supports it. -+ * The device layer interfaces with HIF in which HIF may have restrictions on -+ * how interrupts are processed */ -+ asyncProc = TRUE; -+ } -+ -+ if (pAsyncProc != NULL) { -+ /* indicate to caller how we decided to process this */ -+ *pAsyncProc = asyncProc; -+ } -+ -+ while (TRUE) { -+ -+ pHdr = (HTC_FRAME_HDR *)&LookAhead; -+ -+ if (pHdr->EndpointID >= ENDPOINT_MAX) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("Invalid Endpoint in look-ahead: %d \n",pHdr->EndpointID)); -+ /* invalid endpoint */ -+ status = A_EPROTO; -+ break; -+ } -+ -+ if (pHdr->PayloadLen > HTC_MAX_PAYLOAD_LENGTH) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("Payload length %d exceeds max HTC : %d !\n", -+ pHdr->PayloadLen, HTC_MAX_PAYLOAD_LENGTH)); -+ status = A_EPROTO; -+ break; -+ } -+ -+ pEndpoint = &target->EndPoint[pHdr->EndpointID]; -+ -+ if (0 == pEndpoint->ServiceID) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("Endpoint %d is not connected !\n",pHdr->EndpointID)); -+ /* endpoint isn't even connected */ -+ status = A_EPROTO; -+ break; -+ } -+ -+ /* lock RX to get a buffer */ -+ LOCK_HTC_RX(target); -+ -+ /* get a packet from the endpoint recv queue */ -+ pPacket = HTC_PACKET_DEQUEUE(&pEndpoint->RxBuffers); -+ -+ if (NULL == pPacket) { -+ /* check for refill handler */ -+ if (pEndpoint->EpCallBacks.EpRecvRefill != NULL) { -+ UNLOCK_HTC_RX(target); -+ /* call the re-fill handler */ -+ pEndpoint->EpCallBacks.EpRecvRefill(pEndpoint->EpCallBacks.pContext, -+ pHdr->EndpointID); -+ LOCK_HTC_RX(target); -+ /* check if we have more buffers */ -+ pPacket = HTC_PACKET_DEQUEUE(&pEndpoint->RxBuffers); -+ /* fall through */ -+ } -+ } -+ -+ if (NULL == pPacket) { -+ /* this is not an error, we simply need to mark that we are waiting for buffers.*/ -+ target->HTCStateFlags |= HTC_STATE_WAIT_BUFFERS; -+ target->EpWaitingForBuffers = pHdr->EndpointID; -+ status = A_NO_MEMORY; -+ } -+ -+ UNLOCK_HTC_RX(target); -+ -+ if (A_FAILED(status)) { -+ /* no buffers */ -+ break; -+ } -+ -+ AR_DEBUG_ASSERT(pPacket->Endpoint == pHdr->EndpointID); -+ -+ /* make sure this message can fit in the endpoint buffer */ -+ if ((pHdr->PayloadLen + HTC_HDR_LENGTH) > pPacket->BufferLength) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("Payload Length Error : header reports payload of: %d, endpoint buffer size: %d \n", -+ pHdr->PayloadLen, pPacket->BufferLength)); -+ status = A_EPROTO; -+ break; -+ } -+ -+ pPacket->HTCReserved = LookAhead; /* set expected look ahead */ -+ /* set the amount of data to fetch */ -+ pPacket->ActualLength = pHdr->PayloadLen + HTC_HDR_LENGTH; -+ -+ if (asyncProc) { -+ /* we use async mode to get the packet if the device layer supports it -+ * set our callback and context */ -+ pPacket->Completion = HTCRecvCompleteHandler; -+ pPacket->pContext = target; -+ } else { -+ /* fully synchronous */ -+ pPacket->Completion = NULL; -+ } -+ -+ /* go fetch the packet */ -+ status = HTCIssueRecv(target, pPacket); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ if (asyncProc) { -+ /* we did this asynchronously so we can get out of the loop, the asynch processing -+ * creates a chain of requests to continue processing pending messages in the -+ * context of callbacks */ -+ break; -+ } -+ -+ /* in the sync case, we process the packet, check lookaheads and then repeat */ -+ -+ LookAhead = 0; -+ status = HTCProcessRecvHeader(target,pPacket,&LookAhead); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ HTC_RX_STAT_PROFILE(target,pEndpoint,LookAhead); -+ DO_RCV_COMPLETION(target,pPacket,pEndpoint); -+ -+ pPacket = NULL; -+ -+ if (0 == LookAhead) { -+ break; -+ } -+ -+ } -+ -+ if (A_NO_MEMORY == status) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ (" Endpoint :%d has no buffers, blocking receiver to prevent overrun.. \n", -+ pHdr->EndpointID)); -+ /* try to stop receive at the device layer */ -+ DevStopRecv(&target->Device, asyncProc ? DEV_STOP_RECV_ASYNC : DEV_STOP_RECV_SYNC); -+ status = A_OK; -+ } else if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("Failed to get pending message : LookAhead Value: 0x%X (status = %d) \n", -+ LookAhead, status)); -+ if (pPacket != NULL) { -+ /* clean up packet on error */ -+ HTC_RECYCLE_RX_PKT(target, pPacket); -+ } -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,("-HTCRecvMessagePendingHandler \n")); -+ -+ return status; -+} -+ -+/* Makes a buffer available to the HTC module */ -+A_STATUS HTCAddReceivePkt(HTC_HANDLE HTCHandle, HTC_PACKET *pPacket) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ HTC_ENDPOINT *pEndpoint; -+ A_BOOL unblockRecv = FALSE; -+ A_STATUS status = A_OK; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, -+ ("+- HTCAddReceivePkt: endPointId: %d, buffer: 0x%X, length: %d\n", -+ pPacket->Endpoint, (A_UINT32)pPacket->pBuffer, pPacket->BufferLength)); -+ -+ do { -+ -+ if (HTC_STOPPING(target)) { -+ status = A_ECANCELED; -+ break; -+ } -+ -+ AR_DEBUG_ASSERT(pPacket->Endpoint < ENDPOINT_MAX); -+ -+ pEndpoint = &target->EndPoint[pPacket->Endpoint]; -+ -+ LOCK_HTC_RX(target); -+ -+ /* store receive packet */ -+ HTC_PACKET_ENQUEUE(&pEndpoint->RxBuffers, pPacket); -+ -+ /* check if we are blocked waiting for a new buffer */ -+ if (target->HTCStateFlags & HTC_STATE_WAIT_BUFFERS) { -+ if (target->EpWaitingForBuffers == pPacket->Endpoint) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV,(" receiver was blocked on ep:%d, unblocking.. \n", -+ target->EpWaitingForBuffers)); -+ target->HTCStateFlags &= ~HTC_STATE_WAIT_BUFFERS; -+ target->EpWaitingForBuffers = ENDPOINT_MAX; -+ unblockRecv = TRUE; -+ } -+ } -+ -+ UNLOCK_HTC_RX(target); -+ -+ if (unblockRecv && !HTC_STOPPING(target)) { -+ /* TODO : implement a buffer threshold count? */ -+ DevEnableRecv(&target->Device,DEV_ENABLE_RECV_SYNC); -+ } -+ -+ } while (FALSE); -+ -+ return status; -+} -+ -+static void HTCFlushEndpointRX(HTC_TARGET *target, HTC_ENDPOINT *pEndpoint) -+{ -+ HTC_PACKET *pPacket; -+ -+ LOCK_HTC_RX(target); -+ -+ while (1) { -+ pPacket = HTC_PACKET_DEQUEUE(&pEndpoint->RxBuffers); -+ if (NULL == pPacket) { -+ break; -+ } -+ UNLOCK_HTC_RX(target); -+ pPacket->Status = A_ECANCELED; -+ pPacket->ActualLength = 0; -+ AR_DEBUG_PRINTF(ATH_DEBUG_RECV, (" Flushing RX packet:0x%X, length:%d, ep:%d \n", -+ (A_UINT32)pPacket, pPacket->BufferLength, pPacket->Endpoint)); -+ /* give the packet back */ -+ pEndpoint->EpCallBacks.EpRecv(pEndpoint->EpCallBacks.pContext, -+ pPacket); -+ LOCK_HTC_RX(target); -+ } -+ -+ UNLOCK_HTC_RX(target); -+ -+ -+} -+ -+void HTCFlushRecvBuffers(HTC_TARGET *target) -+{ -+ HTC_ENDPOINT *pEndpoint; -+ int i; -+ -+ /* NOTE: no need to flush endpoint 0, these buffers were -+ * allocated as part of the HTC struct */ -+ for (i = ENDPOINT_1; i < ENDPOINT_MAX; i++) { -+ pEndpoint = &target->EndPoint[i]; -+ if (pEndpoint->ServiceID == 0) { -+ /* not in use.. */ -+ continue; -+ } -+ HTCFlushEndpointRX(target,pEndpoint); -+ } -+ -+ -+} -+ -+ ---- /dev/null -+++ b/drivers/ar6000/htc/htc_send.c -@@ -0,0 +1,543 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "htc_internal.h" -+ -+#define DO_EP_TX_COMPLETION(ep,p) \ -+{ \ -+ (p)->Completion = NULL; \ -+ (ep)->EpCallBacks.EpTxComplete((ep)->EpCallBacks.pContext,(p)); \ -+} -+ -+ -+/* call the distribute credits callback with the distribution */ -+#define DO_DISTRIBUTION(t,reason,description,pList) \ -+{ \ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, \ -+ (" calling distribute function (%s) (dfn:0x%X, ctxt:0x%X, dist:0x%X) \n", \ -+ (description), \ -+ (A_UINT32)(t)->DistributeCredits, \ -+ (A_UINT32)(t)->pCredDistContext, \ -+ (A_UINT32)pList)); \ -+ (t)->DistributeCredits((t)->pCredDistContext, \ -+ (pList), \ -+ (reason)); \ -+} -+ -+/* our internal send packet completion handler when packets are submited to the AR6K device -+ * layer */ -+static void HTCSendPktCompletionHandler(void *Context, HTC_PACKET *pPacket) -+{ -+ HTC_TARGET *target = (HTC_TARGET *)Context; -+ HTC_ENDPOINT *pEndpoint = &target->EndPoint[pPacket->Endpoint]; -+ -+ -+ if (A_FAILED(pPacket->Status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("HTCSendPktCompletionHandler: request failed (status:%d, ep:%d) \n", -+ pPacket->Status, pPacket->Endpoint)); -+ } -+ /* first, fixup the head room we allocated */ -+ pPacket->pBuffer += HTC_HDR_LENGTH; -+ /* do completion */ -+ DO_EP_TX_COMPLETION(pEndpoint,pPacket); -+} -+ -+A_STATUS HTCIssueSend(HTC_TARGET *target, HTC_PACKET *pPacket, A_UINT8 SendFlags) -+{ -+ A_STATUS status; -+ A_UINT8 *pHdrBuf; -+ A_BOOL sync = FALSE; -+ -+ /* caller always provides headrooom */ -+ pPacket->pBuffer -= HTC_HDR_LENGTH; -+ pHdrBuf = pPacket->pBuffer; -+ /* setup frame header */ -+ A_SET_UINT16_FIELD(pHdrBuf,HTC_FRAME_HDR,PayloadLen,(A_UINT16)pPacket->ActualLength); -+ A_SET_UINT8_FIELD(pHdrBuf,HTC_FRAME_HDR,Flags,SendFlags); -+ A_SET_UINT8_FIELD(pHdrBuf,HTC_FRAME_HDR,EndpointID, (A_UINT8)pPacket->Endpoint); -+ -+ if (pPacket->Completion == NULL) { -+ /* mark that this request was synchronously issued */ -+ sync = TRUE; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, -+ ("+-HTCIssueSend: transmit length : %d (%s) \n", -+ pPacket->ActualLength + HTC_HDR_LENGTH, -+ sync ? "SYNC" : "ASYNC" )); -+ -+ /* send message to device */ -+ status = DevSendPacket(&target->Device, -+ pPacket, -+ pPacket->ActualLength + HTC_HDR_LENGTH); -+ -+ if (sync) { -+ /* use local sync variable. If this was issued asynchronously, pPacket is no longer -+ * safe to access. */ -+ pPacket->pBuffer += HTC_HDR_LENGTH; -+ } -+ -+ /* if this request was asynchronous, the packet completion routine will be invoked by -+ * the device layer when the HIF layer completes the request */ -+ -+ return status; -+} -+ -+/* try to send the current packet or a packet at the head of the TX queue, -+ * if there are no credits, the packet remains in the queue. -+ * this function always succeeds and returns a flag if the TX queue for -+ * the endpoint has hit the set limit */ -+static A_BOOL HTCTrySend(HTC_TARGET *target, -+ HTC_ENDPOINT *pEndpoint, -+ HTC_PACKET *pPacketToSend) -+{ -+ HTC_PACKET *pPacket; -+ int creditsRequired; -+ int remainder; -+ A_UINT8 sendFlags; -+ A_BOOL epFull = FALSE; -+ -+ LOCK_HTC_TX(target); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND,("+HTCTrySend (pPkt:0x%X)\n",(A_UINT32)pPacketToSend)); -+ -+ if (pPacketToSend != NULL) { -+ /* caller supplied us a packet to queue to the tail of the HTC TX queue before -+ * we check the tx queue */ -+ HTC_PACKET_ENQUEUE(&pEndpoint->TxQueue,pPacketToSend); -+ pEndpoint->CurrentTxQueueDepth++; -+ } -+ -+ /* now drain the TX queue for transmission as long as we have enough -+ * credits */ -+ -+ while (1) { -+ -+ if (HTC_QUEUE_EMPTY(&pEndpoint->TxQueue)) { -+ /* nothing in the queue */ -+ break; -+ } -+ -+ sendFlags = 0; -+ -+ /* get packet at head, but don't remove it */ -+ pPacket = HTC_GET_PKT_AT_HEAD(&pEndpoint->TxQueue); -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND,(" Got head packet:0x%X , Queue Depth: %d\n", -+ (A_UINT32)pPacket, pEndpoint->CurrentTxQueueDepth)); -+ -+ /* figure out how many credits this message requires */ -+ creditsRequired = (pPacket->ActualLength + HTC_HDR_LENGTH) / target->TargetCreditSize; -+ remainder = (pPacket->ActualLength + HTC_HDR_LENGTH) % target->TargetCreditSize; -+ -+ if (remainder) { -+ creditsRequired++; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND,(" Creds Required:%d Got:%d\n", -+ creditsRequired, pEndpoint->CreditDist.TxCredits)); -+ -+ if (pEndpoint->CreditDist.TxCredits < creditsRequired) { -+ -+ /* not enough credits */ -+ -+ if (pPacket->Endpoint == ENDPOINT_0) { -+ /* leave it in the queue */ -+ break; -+ } -+ /* invoke the registered distribution function only if this is not -+ * endpoint 0, we let the driver layer provide more credits if it can. -+ * We pass the credit distribution list starting at the endpoint in question -+ * */ -+ -+ /* set how many credits we need */ -+ pEndpoint->CreditDist.TxCreditsSeek = -+ creditsRequired - pEndpoint->CreditDist.TxCredits; -+ DO_DISTRIBUTION(target, -+ HTC_CREDIT_DIST_SEEK_CREDITS, -+ "Seek Credits", -+ &pEndpoint->CreditDist); -+ -+ pEndpoint->CreditDist.TxCreditsSeek = 0; -+ -+ if (pEndpoint->CreditDist.TxCredits < creditsRequired) { -+ /* still not enough credits to send, leave packet in the queue */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, -+ (" Not enough credits for ep %d leaving packet in queue..\n", -+ pPacket->Endpoint)); -+ break; -+ } -+ -+ } -+ -+ pEndpoint->CreditDist.TxCredits -= creditsRequired; -+ INC_HTC_EP_STAT(pEndpoint, TxCreditsConsummed, creditsRequired); -+ -+ /* check if we need credits */ -+ if (pEndpoint->CreditDist.TxCredits < pEndpoint->CreditDist.TxCreditsPerMaxMsg) { -+ sendFlags |= HTC_FLAGS_NEED_CREDIT_UPDATE; -+ INC_HTC_EP_STAT(pEndpoint, TxCreditLowIndications, 1); -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND,(" Host Needs Credits \n")); -+ } -+ -+ /* now we can fully dequeue */ -+ pPacket = HTC_PACKET_DEQUEUE(&pEndpoint->TxQueue); -+ pEndpoint->CurrentTxQueueDepth--; -+ -+ INC_HTC_EP_STAT(pEndpoint, TxIssued, 1); -+ -+ UNLOCK_HTC_TX(target); -+ -+ HTCIssueSend(target, pPacket, sendFlags); -+ -+ LOCK_HTC_TX(target); -+ -+ /* go back and check for more messages */ -+ } -+ -+ if (pEndpoint->CurrentTxQueueDepth >= pEndpoint->MaxTxQueueDepth) { -+ /* let caller know that this endpoint has reached the maximum depth */ -+ epFull = TRUE; -+ } -+ -+ UNLOCK_HTC_TX(target); -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND,("-HTCTrySend: \n")); -+ return epFull; -+} -+ -+/* HTC API - HTCSendPkt */ -+A_STATUS HTCSendPkt(HTC_HANDLE HTCHandle, HTC_PACKET *pPacket) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ HTC_ENDPOINT *pEndpoint; -+ HTC_ENDPOINT_ID ep; -+ A_STATUS status = A_OK; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, -+ ("+HTCSendPkt: Enter endPointId: %d, buffer: 0x%X, length: %d \n", -+ pPacket->Endpoint, (A_UINT32)pPacket->pBuffer, pPacket->ActualLength)); -+ -+ ep = pPacket->Endpoint; -+ AR_DEBUG_ASSERT(ep < ENDPOINT_MAX); -+ pEndpoint = &target->EndPoint[ep]; -+ -+ do { -+ -+ if (HTC_STOPPING(target)) { -+ status = A_ECANCELED; -+ pPacket->Status = status; -+ DO_EP_TX_COMPLETION(pEndpoint,pPacket); -+ break; -+ } -+ /* everything sent through this interface is asynchronous */ -+ /* fill in HTC completion routines */ -+ pPacket->Completion = HTCSendPktCompletionHandler; -+ pPacket->pContext = target; -+ -+ if (HTCTrySend(target, pEndpoint, pPacket)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, (" Endpoint %d, TX queue is full, Depth:%d, Max:%d \n", -+ ep, pEndpoint->CurrentTxQueueDepth, pEndpoint->MaxTxQueueDepth)); -+ /* queue is now full, let caller know */ -+ if (pEndpoint->EpCallBacks.EpSendFull != NULL) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, (" Calling driver's send full callback.... \n")); -+ pEndpoint->EpCallBacks.EpSendFull(pEndpoint->EpCallBacks.pContext, -+ ep); -+ } -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, ("-HTCSendPkt \n")); -+ } while (FALSE); -+ -+ return status; -+} -+ -+ -+/* check TX queues to drain because of credit distribution update */ -+static INLINE void HTCCheckEndpointTxQueues(HTC_TARGET *target) -+{ -+ HTC_ENDPOINT *pEndpoint; -+ HTC_ENDPOINT_CREDIT_DIST *pDistItem; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, ("+HTCCheckEndpointTxQueues \n")); -+ pDistItem = target->EpCreditDistributionListHead; -+ -+ /* run through the credit distribution list to see -+ * if there are packets queued -+ * NOTE: no locks need to be taken since the distribution list -+ * is not dynamic (cannot be re-ordered) and we are not modifying any state */ -+ while (pDistItem != NULL) { -+ pEndpoint = (HTC_ENDPOINT *)pDistItem->pHTCReserved; -+ -+ if (pEndpoint->CurrentTxQueueDepth > 0) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, (" Ep %d has %d credits and %d Packets in TX Queue \n", -+ pDistItem->Endpoint, pEndpoint->CreditDist.TxCredits, pEndpoint->CurrentTxQueueDepth)); -+ /* try to start the stalled queue, this list is ordered by priority. -+ * Highest priority queue get's processed first, if there are credits available the -+ * highest priority queue will get a chance to reclaim credits from lower priority -+ * ones */ -+ HTCTrySend(target, pEndpoint, NULL); -+ } -+ -+ pDistItem = pDistItem->pNext; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, ("-HTCCheckEndpointTxQueues \n")); -+} -+ -+/* process credit reports and call distribution function */ -+void HTCProcessCreditRpt(HTC_TARGET *target, HTC_CREDIT_REPORT *pRpt, int NumEntries, HTC_ENDPOINT_ID FromEndpoint) -+{ -+ int i; -+ HTC_ENDPOINT *pEndpoint; -+ int totalCredits = 0; -+ A_BOOL doDist = FALSE; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, ("+HTCProcessCreditRpt, Credit Report Entries:%d \n", NumEntries)); -+ -+ /* lock out TX while we update credits */ -+ LOCK_HTC_TX(target); -+ -+ for (i = 0; i < NumEntries; i++, pRpt++) { -+ if (pRpt->EndpointID >= ENDPOINT_MAX) { -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ pEndpoint = &target->EndPoint[pRpt->EndpointID]; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, (" Endpoint %d got %d credits \n", -+ pRpt->EndpointID, pRpt->Credits)); -+ -+ -+#ifdef HTC_EP_STAT_PROFILING -+ -+ INC_HTC_EP_STAT(pEndpoint, TxCreditRpts, 1); -+ INC_HTC_EP_STAT(pEndpoint, TxCreditsReturned, pRpt->Credits); -+ -+ if (FromEndpoint == pRpt->EndpointID) { -+ /* this credit report arrived on the same endpoint indicating it arrived in an RX -+ * packet */ -+ INC_HTC_EP_STAT(pEndpoint, TxCreditsFromRx, pRpt->Credits); -+ INC_HTC_EP_STAT(pEndpoint, TxCreditRptsFromRx, 1); -+ } else if (FromEndpoint == ENDPOINT_0) { -+ /* this credit arrived on endpoint 0 as a NULL message */ -+ INC_HTC_EP_STAT(pEndpoint, TxCreditsFromEp0, pRpt->Credits); -+ INC_HTC_EP_STAT(pEndpoint, TxCreditRptsFromEp0, 1); -+ } else { -+ /* arrived on another endpoint */ -+ INC_HTC_EP_STAT(pEndpoint, TxCreditsFromOther, pRpt->Credits); -+ INC_HTC_EP_STAT(pEndpoint, TxCreditRptsFromOther, 1); -+ } -+ -+#endif -+ -+ if (ENDPOINT_0 == pRpt->EndpointID) { -+ /* always give endpoint 0 credits back */ -+ pEndpoint->CreditDist.TxCredits += pRpt->Credits; -+ } else { -+ /* for all other endpoints, update credits to distribute, the distribution function -+ * will handle giving out credits back to the endpoints */ -+ pEndpoint->CreditDist.TxCreditsToDist += pRpt->Credits; -+ /* flag that we have to do the distribution */ -+ doDist = TRUE; -+ } -+ -+ totalCredits += pRpt->Credits; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, (" Report indicated %d credits to distribute \n", totalCredits)); -+ -+ if (doDist) { -+ /* this was a credit return based on a completed send operations -+ * note, this is done with the lock held */ -+ DO_DISTRIBUTION(target, -+ HTC_CREDIT_DIST_SEND_COMPLETE, -+ "Send Complete", -+ target->EpCreditDistributionListHead->pNext); -+ } -+ -+ UNLOCK_HTC_TX(target); -+ -+ if (totalCredits) { -+ HTCCheckEndpointTxQueues(target); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_SEND, ("-HTCProcessCreditRpt \n")); -+} -+ -+/* flush endpoint TX queue */ -+static void HTCFlushEndpointTX(HTC_TARGET *target, HTC_ENDPOINT *pEndpoint, HTC_TX_TAG Tag) -+{ -+ HTC_PACKET *pPacket; -+ HTC_PACKET_QUEUE discardQueue; -+ -+ /* initialize the discard queue */ -+ INIT_HTC_PACKET_QUEUE(&discardQueue); -+ -+ LOCK_HTC_TX(target); -+ -+ /* interate from the front of the TX queue and flush out packets */ -+ ITERATE_OVER_LIST_ALLOW_REMOVE(&pEndpoint->TxQueue, pPacket, HTC_PACKET, ListLink) { -+ -+ /* check for removal */ -+ if ((HTC_TX_PACKET_TAG_ALL == Tag) || (Tag == pPacket->PktInfo.AsTx.Tag)) { -+ /* remove from queue */ -+ HTC_PACKET_REMOVE(pPacket); -+ /* add it to the discard pile */ -+ HTC_PACKET_ENQUEUE(&discardQueue, pPacket); -+ pEndpoint->CurrentTxQueueDepth--; -+ } -+ -+ } ITERATE_END; -+ -+ UNLOCK_HTC_TX(target); -+ -+ /* empty the discard queue */ -+ while (1) { -+ pPacket = HTC_PACKET_DEQUEUE(&discardQueue); -+ if (NULL == pPacket) { -+ break; -+ } -+ pPacket->Status = A_ECANCELED; -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, (" Flushing TX packet:0x%X, length:%d, ep:%d tag:0x%X \n", -+ (A_UINT32)pPacket, pPacket->ActualLength, pPacket->Endpoint, pPacket->PktInfo.AsTx.Tag)); -+ DO_EP_TX_COMPLETION(pEndpoint,pPacket); -+ } -+ -+} -+ -+void DumpCreditDist(HTC_ENDPOINT_CREDIT_DIST *pEPDist) -+{ -+#ifdef DEBUG -+ HTC_ENDPOINT *pEndpoint = (HTC_ENDPOINT *)pEPDist->pHTCReserved; -+#endif -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, ("--- EP : %d ServiceID: 0x%X --------------\n", -+ pEPDist->Endpoint, pEPDist->ServiceID)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" this:0x%X next:0x%X prev:0x%X\n", -+ (A_UINT32)pEPDist, (A_UINT32)pEPDist->pNext, (A_UINT32)pEPDist->pPrev)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" DistFlags : 0x%X \n", pEPDist->DistFlags)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCreditsNorm : %d \n", pEPDist->TxCreditsNorm)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCreditsMin : %d \n", pEPDist->TxCreditsMin)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCredits : %d \n", pEPDist->TxCredits)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCreditsAssigned : %d \n", pEPDist->TxCreditsAssigned)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCreditsSeek : %d \n", pEPDist->TxCreditsSeek)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCreditSize : %d \n", pEPDist->TxCreditSize)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCreditsPerMaxMsg : %d \n", pEPDist->TxCreditsPerMaxMsg)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxCreditsToDist : %d \n", pEPDist->TxCreditsToDist)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, (" TxQueueDepth : %d \n", pEndpoint->CurrentTxQueueDepth)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_ANY, ("----------------------------------------------------\n")); -+} -+ -+void DumpCreditDistStates(HTC_TARGET *target) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pEPList = target->EpCreditDistributionListHead; -+ -+ while (pEPList != NULL) { -+ DumpCreditDist(pEPList); -+ pEPList = pEPList->pNext; -+ } -+ -+ if (target->DistributeCredits != NULL) { -+ DO_DISTRIBUTION(target, -+ HTC_DUMP_CREDIT_STATE, -+ "Dump State", -+ NULL); -+ } -+} -+ -+/* flush all send packets from all endpoint queues */ -+void HTCFlushSendPkts(HTC_TARGET *target) -+{ -+ HTC_ENDPOINT *pEndpoint; -+ int i; -+ -+ DumpCreditDistStates(target); -+ -+ for (i = ENDPOINT_0; i < ENDPOINT_MAX; i++) { -+ pEndpoint = &target->EndPoint[i]; -+ if (pEndpoint->ServiceID == 0) { -+ /* not in use.. */ -+ continue; -+ } -+ HTCFlushEndpointTX(target,pEndpoint,HTC_TX_PACKET_TAG_ALL); -+ } -+ -+ -+} -+ -+/* HTC API to flush an endpoint's TX queue*/ -+void HTCFlushEndpoint(HTC_HANDLE HTCHandle, HTC_ENDPOINT_ID Endpoint, HTC_TX_TAG Tag) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ HTC_ENDPOINT *pEndpoint = &target->EndPoint[Endpoint]; -+ -+ if (pEndpoint->ServiceID == 0) { -+ AR_DEBUG_ASSERT(FALSE); -+ /* not in use.. */ -+ return; -+ } -+ -+ HTCFlushEndpointTX(target, pEndpoint, Tag); -+} -+ -+/* HTC API to indicate activity to the credit distribution function */ -+void HTCIndicateActivityChange(HTC_HANDLE HTCHandle, -+ HTC_ENDPOINT_ID Endpoint, -+ A_BOOL Active) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ HTC_ENDPOINT *pEndpoint = &target->EndPoint[Endpoint]; -+ A_BOOL doDist = FALSE; -+ -+ if (pEndpoint->ServiceID == 0) { -+ AR_DEBUG_ASSERT(FALSE); -+ /* not in use.. */ -+ return; -+ } -+ -+ LOCK_HTC_TX(target); -+ -+ if (Active) { -+ if (!(pEndpoint->CreditDist.DistFlags & HTC_EP_ACTIVE)) { -+ /* mark active now */ -+ pEndpoint->CreditDist.DistFlags |= HTC_EP_ACTIVE; -+ doDist = TRUE; -+ } -+ } else { -+ if (pEndpoint->CreditDist.DistFlags & HTC_EP_ACTIVE) { -+ /* mark inactive now */ -+ pEndpoint->CreditDist.DistFlags &= ~HTC_EP_ACTIVE; -+ doDist = TRUE; -+ } -+ } -+ -+ if (doDist) { -+ /* do distribution again based on activity change -+ * note, this is done with the lock held */ -+ DO_DISTRIBUTION(target, -+ HTC_CREDIT_DIST_ACTIVITY_CHANGE, -+ "Activity Change", -+ target->EpCreditDistributionListHead->pNext); -+ } -+ -+ UNLOCK_HTC_TX(target); -+ -+} ---- /dev/null -+++ b/drivers/ar6000/htc/htc_services.c -@@ -0,0 +1,403 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "htc_internal.h" -+ -+void HTCControlTxComplete(void *Context, HTC_PACKET *pPacket) -+{ -+ /* not implemented -+ * we do not send control TX frames during normal runtime, only during setup */ -+ AR_DEBUG_ASSERT(FALSE); -+} -+ -+ /* callback when a control message arrives on this endpoint */ -+void HTCControlRecv(void *Context, HTC_PACKET *pPacket) -+{ -+ AR_DEBUG_ASSERT(pPacket->Endpoint == ENDPOINT_0); -+ -+ /* the only control messages we are expecting are NULL messages (credit resports), which should -+ * never get here */ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ ("HTCControlRecv, got message with length:%d \n", -+ pPacket->ActualLength + HTC_HDR_LENGTH)); -+ -+ /* dump header and message */ -+ DebugDumpBytes(pPacket->pBuffer - HTC_HDR_LENGTH, -+ pPacket->ActualLength + HTC_HDR_LENGTH, -+ "Unexpected ENDPOINT 0 Message"); -+ -+ HTC_RECYCLE_RX_PKT((HTC_TARGET*)Context,pPacket); -+} -+ -+A_STATUS HTCSendSetupComplete(HTC_TARGET *target) -+{ -+ HTC_PACKET *pSendPacket = NULL; -+ A_STATUS status; -+ HTC_SETUP_COMPLETE_MSG *pSetupComplete; -+ -+ do { -+ /* allocate a packet to send to the target */ -+ pSendPacket = HTC_ALLOC_CONTROL_TX(target); -+ -+ if (NULL == pSendPacket) { -+ status = A_NO_MEMORY; -+ break; -+ } -+ -+ /* assemble setup complete message */ -+ pSetupComplete = (HTC_SETUP_COMPLETE_MSG *)pSendPacket->pBuffer; -+ A_MEMZERO(pSetupComplete,sizeof(HTC_SETUP_COMPLETE_MSG)); -+ pSetupComplete->MessageID = HTC_MSG_SETUP_COMPLETE_ID; -+ -+ SET_HTC_PACKET_INFO_TX(pSendPacket, -+ NULL, -+ (A_UINT8 *)pSetupComplete, -+ sizeof(HTC_SETUP_COMPLETE_MSG), -+ ENDPOINT_0, -+ HTC_SERVICE_TX_PACKET_TAG); -+ -+ /* we want synchronous operation */ -+ pSendPacket->Completion = NULL; -+ /* send the message */ -+ status = HTCIssueSend(target,pSendPacket,0); -+ -+ } while (FALSE); -+ -+ if (pSendPacket != NULL) { -+ HTC_FREE_CONTROL_TX(target,pSendPacket); -+ } -+ -+ return status; -+} -+ -+ -+A_STATUS HTCConnectService(HTC_HANDLE HTCHandle, -+ HTC_SERVICE_CONNECT_REQ *pConnectReq, -+ HTC_SERVICE_CONNECT_RESP *pConnectResp) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ A_STATUS status = A_OK; -+ HTC_PACKET *pRecvPacket = NULL; -+ HTC_PACKET *pSendPacket = NULL; -+ HTC_CONNECT_SERVICE_RESPONSE_MSG *pResponseMsg; -+ HTC_CONNECT_SERVICE_MSG *pConnectMsg; -+ HTC_ENDPOINT_ID assignedEndpoint = ENDPOINT_MAX; -+ HTC_ENDPOINT *pEndpoint; -+ int maxMsgSize = 0; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("+HTCConnectService, target:0x%X SvcID:0x%X \n", -+ (A_UINT32)target, pConnectReq->ServiceID)); -+ -+ do { -+ -+ AR_DEBUG_ASSERT(pConnectReq->ServiceID != 0); -+ -+ if (HTC_CTRL_RSVD_SVC == pConnectReq->ServiceID) { -+ /* special case for pseudo control service */ -+ assignedEndpoint = ENDPOINT_0; -+ maxMsgSize = HTC_MAX_CONTROL_MESSAGE_LENGTH; -+ } else { -+ /* allocate a packet to send to the target */ -+ pSendPacket = HTC_ALLOC_CONTROL_TX(target); -+ -+ if (NULL == pSendPacket) { -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_NO_MEMORY; -+ break; -+ } -+ /* assemble connect service message */ -+ pConnectMsg = (HTC_CONNECT_SERVICE_MSG *)pSendPacket->pBuffer; -+ AR_DEBUG_ASSERT(pConnectMsg != NULL); -+ A_MEMZERO(pConnectMsg,sizeof(HTC_CONNECT_SERVICE_MSG)); -+ pConnectMsg->MessageID = HTC_MSG_CONNECT_SERVICE_ID; -+ pConnectMsg->ServiceID = pConnectReq->ServiceID; -+ pConnectMsg->ConnectionFlags = pConnectReq->ConnectionFlags; -+ /* check caller if it wants to transfer meta data */ -+ if ((pConnectReq->pMetaData != NULL) && -+ (pConnectReq->MetaDataLength <= HTC_SERVICE_META_DATA_MAX_LENGTH)) { -+ /* copy meta data into message buffer (after header ) */ -+ A_MEMCPY((A_UINT8 *)pConnectMsg + sizeof(HTC_CONNECT_SERVICE_MSG), -+ pConnectReq->pMetaData, -+ pConnectReq->MetaDataLength); -+ pConnectMsg->ServiceMetaLength = pConnectReq->MetaDataLength; -+ } -+ -+ SET_HTC_PACKET_INFO_TX(pSendPacket, -+ NULL, -+ (A_UINT8 *)pConnectMsg, -+ sizeof(HTC_CONNECT_SERVICE_MSG) + pConnectMsg->ServiceMetaLength, -+ ENDPOINT_0, -+ HTC_SERVICE_TX_PACKET_TAG); -+ -+ /* we want synchronous operation */ -+ pSendPacket->Completion = NULL; -+ -+ status = HTCIssueSend(target,pSendPacket,0); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* wait for response */ -+ status = HTCWaitforControlMessage(target, &pRecvPacket); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ /* we controlled the buffer creation so it has to be properly aligned */ -+ pResponseMsg = (HTC_CONNECT_SERVICE_RESPONSE_MSG *)pRecvPacket->pBuffer; -+ -+ if ((pResponseMsg->MessageID != HTC_MSG_CONNECT_SERVICE_RESPONSE_ID) || -+ (pRecvPacket->ActualLength < sizeof(HTC_CONNECT_SERVICE_RESPONSE_MSG))) { -+ /* this message is not valid */ -+ AR_DEBUG_ASSERT(FALSE); -+ status = A_EPROTO; -+ break; -+ } -+ -+ pConnectResp->ConnectRespCode = pResponseMsg->Status; -+ /* check response status */ -+ if (pResponseMsg->Status != HTC_SERVICE_SUCCESS) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR, -+ (" Target failed service 0x%X connect request (status:%d)\n", -+ pResponseMsg->ServiceID, pResponseMsg->Status)); -+ status = A_EPROTO; -+ break; -+ } -+ -+ assignedEndpoint = pResponseMsg->EndpointID; -+ maxMsgSize = pResponseMsg->MaxMsgSize; -+ -+ if ((pConnectResp->pMetaData != NULL) && -+ (pResponseMsg->ServiceMetaLength > 0) && -+ (pResponseMsg->ServiceMetaLength <= HTC_SERVICE_META_DATA_MAX_LENGTH)) { -+ /* caller supplied a buffer and the target responded with data */ -+ int copyLength = min((int)pConnectResp->BufferLength, (int)pResponseMsg->ServiceMetaLength); -+ /* copy the meta data */ -+ A_MEMCPY(pConnectResp->pMetaData, -+ ((A_UINT8 *)pResponseMsg) + sizeof(HTC_CONNECT_SERVICE_RESPONSE_MSG), -+ copyLength); -+ pConnectResp->ActualLength = copyLength; -+ } -+ -+ } -+ -+ /* the rest of these are parameter checks so set the error status */ -+ status = A_EPROTO; -+ -+ if (assignedEndpoint >= ENDPOINT_MAX) { -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ if (0 == maxMsgSize) { -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ pEndpoint = &target->EndPoint[assignedEndpoint]; -+ -+ if (pEndpoint->ServiceID != 0) { -+ /* endpoint already in use! */ -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ -+ /* return assigned endpoint to caller */ -+ pConnectResp->Endpoint = assignedEndpoint; -+ pConnectResp->MaxMsgLength = maxMsgSize; -+ -+ /* setup the endpoint */ -+ pEndpoint->ServiceID = pConnectReq->ServiceID; /* this marks the endpoint in use */ -+ pEndpoint->MaxTxQueueDepth = pConnectReq->MaxSendQueueDepth; -+ pEndpoint->MaxMsgLength = maxMsgSize; -+ /* copy all the callbacks */ -+ pEndpoint->EpCallBacks = pConnectReq->EpCallbacks; -+ INIT_HTC_PACKET_QUEUE(&pEndpoint->RxBuffers); -+ INIT_HTC_PACKET_QUEUE(&pEndpoint->TxQueue); -+ /* set the credit distribution info for this endpoint, this information is -+ * passed back to the credit distribution callback function */ -+ pEndpoint->CreditDist.ServiceID = pConnectReq->ServiceID; -+ pEndpoint->CreditDist.pHTCReserved = pEndpoint; -+ pEndpoint->CreditDist.Endpoint = assignedEndpoint; -+ pEndpoint->CreditDist.TxCreditSize = target->TargetCreditSize; -+ pEndpoint->CreditDist.TxCreditsPerMaxMsg = maxMsgSize / target->TargetCreditSize; -+ -+ if (0 == pEndpoint->CreditDist.TxCreditsPerMaxMsg) { -+ pEndpoint->CreditDist.TxCreditsPerMaxMsg = 1; -+ } -+ -+ status = A_OK; -+ -+ } while (FALSE); -+ -+ if (pSendPacket != NULL) { -+ HTC_FREE_CONTROL_TX(target,pSendPacket); -+ } -+ -+ if (pRecvPacket != NULL) { -+ HTC_FREE_CONTROL_RX(target,pRecvPacket); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_TRC, ("-HTCConnectService \n")); -+ -+ return status; -+} -+ -+static void AddToEndpointDistList(HTC_TARGET *target, HTC_ENDPOINT_CREDIT_DIST *pEpDist) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pCurEntry,*pLastEntry; -+ -+ if (NULL == target->EpCreditDistributionListHead) { -+ target->EpCreditDistributionListHead = pEpDist; -+ pEpDist->pNext = NULL; -+ pEpDist->pPrev = NULL; -+ return; -+ } -+ -+ /* queue to the end of the list, this does not have to be very -+ * fast since this list is built at startup time */ -+ pCurEntry = target->EpCreditDistributionListHead; -+ -+ while (pCurEntry) { -+ pLastEntry = pCurEntry; -+ pCurEntry = pCurEntry->pNext; -+ } -+ -+ pLastEntry->pNext = pEpDist; -+ pEpDist->pPrev = pLastEntry; -+ pEpDist->pNext = NULL; -+} -+ -+ -+ -+/* default credit init callback */ -+static void HTCDefaultCreditInit(void *Context, -+ HTC_ENDPOINT_CREDIT_DIST *pEPList, -+ int TotalCredits) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pCurEpDist; -+ int totalEps = 0; -+ int creditsPerEndpoint; -+ -+ pCurEpDist = pEPList; -+ /* first run through the list and figure out how many endpoints we are dealing with */ -+ while (pCurEpDist != NULL) { -+ pCurEpDist = pCurEpDist->pNext; -+ totalEps++; -+ } -+ -+ /* even distribution */ -+ creditsPerEndpoint = TotalCredits/totalEps; -+ -+ pCurEpDist = pEPList; -+ /* run through the list and set minimum and normal credits and -+ * provide the endpoint with some credits to start */ -+ while (pCurEpDist != NULL) { -+ -+ if (creditsPerEndpoint < pCurEpDist->TxCreditsPerMaxMsg) { -+ /* too many endpoints and not enough credits */ -+ AR_DEBUG_ASSERT(FALSE); -+ break; -+ } -+ /* our minimum is set for at least 1 max message */ -+ pCurEpDist->TxCreditsMin = pCurEpDist->TxCreditsPerMaxMsg; -+ /* this value is ignored by our credit alg, since we do -+ * not dynamically adjust credits, this is the policy of -+ * the "default" credit distribution, something simple and easy */ -+ pCurEpDist->TxCreditsNorm = 0xFFFF; -+ /* give the endpoint minimum credits */ -+ pCurEpDist->TxCredits = creditsPerEndpoint; -+ pCurEpDist->TxCreditsAssigned = creditsPerEndpoint; -+ pCurEpDist = pCurEpDist->pNext; -+ } -+ -+} -+ -+/* default credit distribution callback, NOTE, this callback holds the TX lock */ -+void HTCDefaultCreditDist(void *Context, -+ HTC_ENDPOINT_CREDIT_DIST *pEPDistList, -+ HTC_CREDIT_DIST_REASON Reason) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pCurEpDist; -+ -+ if (Reason == HTC_CREDIT_DIST_SEND_COMPLETE) { -+ pCurEpDist = pEPDistList; -+ /* simple distribution */ -+ while (pCurEpDist != NULL) { -+ if (pCurEpDist->TxCreditsToDist > 0) { -+ /* just give the endpoint back the credits */ -+ pCurEpDist->TxCredits += pCurEpDist->TxCreditsToDist; -+ pCurEpDist->TxCreditsToDist = 0; -+ } -+ pCurEpDist = pCurEpDist->pNext; -+ } -+ } -+ -+ /* note we do not need to handle the other reason codes as this is a very -+ * simple distribution scheme, no need to seek for more credits or handle inactivity */ -+} -+ -+void HTCSetCreditDistribution(HTC_HANDLE HTCHandle, -+ void *pCreditDistContext, -+ HTC_CREDIT_DIST_CALLBACK CreditDistFunc, -+ HTC_CREDIT_INIT_CALLBACK CreditInitFunc, -+ HTC_SERVICE_ID ServicePriorityOrder[], -+ int ListLength) -+{ -+ HTC_TARGET *target = GET_HTC_TARGET_FROM_HANDLE(HTCHandle); -+ int i; -+ int ep; -+ -+ if (CreditInitFunc != NULL) { -+ /* caller has supplied their own distribution functions */ -+ target->InitCredits = CreditInitFunc; -+ AR_DEBUG_ASSERT(CreditDistFunc != NULL); -+ target->DistributeCredits = CreditDistFunc; -+ target->pCredDistContext = pCreditDistContext; -+ } else { -+ /* caller wants HTC to do distribution */ -+ /* if caller wants service to handle distributions then -+ * it must set both of these to NULL! */ -+ AR_DEBUG_ASSERT(CreditDistFunc == NULL); -+ target->InitCredits = HTCDefaultCreditInit; -+ target->DistributeCredits = HTCDefaultCreditDist; -+ target->pCredDistContext = target; -+ } -+ -+ /* always add HTC control endpoint first, we only expose the list after the -+ * first one, this is added for TX queue checking */ -+ AddToEndpointDistList(target, &target->EndPoint[ENDPOINT_0].CreditDist); -+ -+ /* build the list of credit distribution structures in priority order -+ * supplied by the caller, these will follow endpoint 0 */ -+ for (i = 0; i < ListLength; i++) { -+ /* match services with endpoints and add the endpoints to the distribution list -+ * in FIFO order */ -+ for (ep = ENDPOINT_1; ep < ENDPOINT_MAX; ep++) { -+ if (target->EndPoint[ep].ServiceID == ServicePriorityOrder[i]) { -+ /* queue this one to the list */ -+ AddToEndpointDistList(target, &target->EndPoint[ep].CreditDist); -+ break; -+ } -+ } -+ AR_DEBUG_ASSERT(ep < ENDPOINT_MAX); -+ } -+ -+} ---- /dev/null -+++ b/drivers/ar6000/include/a_config.h -@@ -0,0 +1,27 @@ -+#ifndef _A_CONFIG_H_ -+#define _A_CONFIG_H_ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+/* -+ * This file contains software configuration options that enables -+ * specific software "features" -+ */ -+#include "../ar6000/config_linux.h" -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/include/a_debug.h -@@ -0,0 +1,41 @@ -+#ifndef _A_DEBUG_H_ -+#define _A_DEBUG_H_ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include <a_types.h> -+#include <a_osapi.h> -+ -+#define DBG_INFO 0x00000001 -+#define DBG_ERROR 0x00000002 -+#define DBG_WARNING 0x00000004 -+#define DBG_SDIO 0x00000008 -+#define DBG_HIF 0x00000010 -+#define DBG_HTC 0x00000020 -+#define DBG_WMI 0x00000040 -+#define DBG_WMI2 0x00000080 -+#define DBG_DRIVER 0x00000100 -+ -+#define DBG_DEFAULTS (DBG_ERROR|DBG_WARNING) -+ -+#include "../ar6000/debug_linux.h" -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/include/a_drv_api.h -@@ -0,0 +1,185 @@ -+#ifndef _A_DRV_API_H_ -+#define _A_DRV_API_H_ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+/****************************************************************************/ -+/****************************************************************************/ -+/** **/ -+/** WMI related hooks **/ -+/** **/ -+/****************************************************************************/ -+/****************************************************************************/ -+ -+#include <ar6000_api.h> -+ -+#define A_WMI_CHANNELLIST_RX(devt, numChan, chanList) \ -+ ar6000_channelList_rx((devt), (numChan), (chanList)) -+ -+#define A_WMI_SET_NUMDATAENDPTS(devt, num) \ -+ ar6000_set_numdataendpts((devt), (num)) -+ -+#define A_WMI_CONTROL_TX(devt, osbuf, streamID) \ -+ ar6000_control_tx((devt), (osbuf), (streamID)) -+ -+#define A_WMI_TARGETSTATS_EVENT(devt, pStats) \ -+ ar6000_targetStats_event((devt), (pStats)) -+ -+#define A_WMI_SCANCOMPLETE_EVENT(devt, status) \ -+ ar6000_scanComplete_event((devt), (status)) -+ -+#ifdef CONFIG_HOST_DSET_SUPPORT -+ -+#define A_WMI_DSET_DATA_REQ(devt, access_cookie, offset, length, targ_buf, targ_reply_fn, targ_reply_arg) \ -+ ar6000_dset_data_req((devt), (access_cookie), (offset), (length), (targ_buf), (targ_reply_fn), (targ_reply_arg)) -+ -+#define A_WMI_DSET_CLOSE(devt, access_cookie) \ -+ ar6000_dset_close((devt), (access_cookie)) -+ -+#endif -+ -+#define A_WMI_DSET_OPEN_REQ(devt, id, targ_handle, targ_reply_fn, targ_reply_arg) \ -+ ar6000_dset_open_req((devt), (id), (targ_handle), (targ_reply_fn), (targ_reply_arg)) -+ -+#define A_WMI_CONNECT_EVENT(devt, channel, bssid, listenInterval, beaconInterval, networkType, beaconIeLen, assocReqLen, assocRespLen, assocInfo) \ -+ ar6000_connect_event((devt), (channel), (bssid), (listenInterval), (beaconInterval), (networkType), (beaconIeLen), (assocReqLen), (assocRespLen), (assocInfo)) -+ -+#define A_WMI_REGDOMAIN_EVENT(devt, regCode) \ -+ ar6000_regDomain_event((devt), (regCode)) -+ -+#define A_WMI_NEIGHBORREPORT_EVENT(devt, numAps, info) \ -+ ar6000_neighborReport_event((devt), (numAps), (info)) -+ -+#define A_WMI_DISCONNECT_EVENT(devt, reason, bssid, assocRespLen, assocInfo, protocolReasonStatus) \ -+ ar6000_disconnect_event((devt), (reason), (bssid), (assocRespLen), (assocInfo), (protocolReasonStatus)) -+ -+#define A_WMI_TKIP_MICERR_EVENT(devt, keyid, ismcast) \ -+ ar6000_tkip_micerr_event((devt), (keyid), (ismcast)) -+ -+#define A_WMI_BITRATE_RX(devt, rateKbps) \ -+ ar6000_bitrate_rx((devt), (rateKbps)) -+ -+#define A_WMI_TXPWR_RX(devt, txPwr) \ -+ ar6000_txPwr_rx((devt), (txPwr)) -+ -+#define A_WMI_READY_EVENT(devt, datap, phyCap) \ -+ ar6000_ready_event((devt), (datap), (phyCap)) -+ -+#define A_WMI_DBGLOG_INIT_DONE(ar) \ -+ ar6000_dbglog_init_done(ar); -+ -+#define A_WMI_RSSI_THRESHOLD_EVENT(devt, newThreshold, rssi) \ -+ ar6000_rssiThreshold_event((devt), (newThreshold), (rssi)) -+ -+#define A_WMI_REPORT_ERROR_EVENT(devt, errorVal) \ -+ ar6000_reportError_event((devt), (errorVal)) -+ -+#define A_WMI_ROAM_TABLE_EVENT(devt, pTbl) \ -+ ar6000_roam_tbl_event((devt), (pTbl)) -+ -+#define A_WMI_ROAM_DATA_EVENT(devt, p) \ -+ ar6000_roam_data_event((devt), (p)) -+ -+#define A_WMI_WOW_LIST_EVENT(devt, num_filters, wow_filters) \ -+ ar6000_wow_list_event((devt), (num_filters), (wow_filters)) -+ -+#define A_WMI_CAC_EVENT(devt, ac, cac_indication, statusCode, tspecSuggestion) \ -+ ar6000_cac_event((devt), (ac), (cac_indication), (statusCode), (tspecSuggestion)) -+ -+#define A_WMI_IPTOS_TO_USERPRIORITY(pkt) \ -+ ar6000_iptos_to_userPriority((pkt)) -+ -+#define A_WMI_PMKID_LIST_EVENT(devt, num_pmkid, pmkid_list) \ -+ ar6000_pmkid_list_event((devt), (num_pmkid), (pmkid_list)) -+ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+ -+#define A_WMI_GPIO_INTR_RX(intr_mask, input_values) \ -+ ar6000_gpio_intr_rx((intr_mask), (input_values)) -+ -+#define A_WMI_GPIO_DATA_RX(reg_id, value) \ -+ ar6000_gpio_data_rx((reg_id), (value)) -+ -+#define A_WMI_GPIO_ACK_RX() \ -+ ar6000_gpio_ack_rx() -+ -+#endif -+ -+#ifdef SEND_EVENT_TO_APP -+ -+#define A_WMI_SEND_EVENT_TO_APP(ar, eventId, datap, len) \ -+ ar6000_send_event_to_app((ar), (eventId), (datap), (len)) -+ -+#else -+ -+#define A_WMI_SEND_EVENT_TO_APP(ar, eventId, datap, len) -+ -+#endif -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+#define A_WMI_TCMD_RX_REPORT_EVENT(devt, results, len) \ -+ ar6000_tcmd_rx_report_event((devt), (results), (len)) -+#endif -+ -+#define A_WMI_HBCHALLENGERESP_EVENT(devt, cookie, source) \ -+ ar6000_hbChallengeResp_event((devt), (cookie), (source)) -+ -+#define A_WMI_TX_RETRY_ERR_EVENT(devt) \ -+ ar6000_tx_retry_err_event((devt)) -+ -+#define A_WMI_SNR_THRESHOLD_EVENT_RX(devt, newThreshold, snr) \ -+ ar6000_snrThresholdEvent_rx((devt), (newThreshold), (snr)) -+ -+#define A_WMI_LQ_THRESHOLD_EVENT_RX(devt, range, lqVal) \ -+ ar6000_lqThresholdEvent_rx((devt), (range), (lqVal)) -+ -+#define A_WMI_RATEMASK_RX(devt, ratemask) \ -+ ar6000_ratemask_rx((devt), (ratemask)) -+ -+#define A_WMI_KEEPALIVE_RX(devt, configured) \ -+ ar6000_keepalive_rx((devt), (configured)) -+ -+#define A_WMI_BSSINFO_EVENT_RX(ar, datp, len) \ -+ ar6000_bssInfo_event_rx((ar), (datap), (len)) -+ -+#define A_WMI_DBGLOG_EVENT(ar, dropped, buffer, length) \ -+ ar6000_dbglog_event((ar), (dropped), (buffer), (length)); -+ -+#define A_WMI_STREAM_TX_ACTIVE(devt,trafficClass) \ -+ ar6000_indicate_tx_activity((devt),(trafficClass), TRUE) -+ -+#define A_WMI_STREAM_TX_INACTIVE(devt,trafficClass) \ -+ ar6000_indicate_tx_activity((devt),(trafficClass), FALSE) -+ -+/****************************************************************************/ -+/****************************************************************************/ -+/** **/ -+/** HTC related hooks **/ -+/** **/ -+/****************************************************************************/ -+/****************************************************************************/ -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/include/a_drv.h -@@ -0,0 +1,28 @@ -+#ifndef _A_DRV_H_ -+#define _A_DRV_H_ -+/* -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/a_drv.h#1 $ -+ * -+ * This file contains the definitions of the basic atheros data types. -+ * It is used to map the data types in atheros files to a platform specific -+ * type. -+ * -+ * Copyright 2003-2005 Atheros Communications, Inc., All Rights Reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "../ar6000/athdrv_linux.h" -+ -+#endif /* _ADRV_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/a_osapi.h -@@ -0,0 +1,28 @@ -+#ifndef _A_OSAPI_H_ -+#define _A_OSAPI_H_ -+/* -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/a_osapi.h#1 $ -+ * -+ * This file contains the definitions of the basic atheros data types. -+ * It is used to map the data types in atheros files to a platform specific -+ * type. -+ * -+ * Copyright 2003-2005 Atheros Communications, Inc., All Rights Reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "../ar6000/osapi_linux.h" -+ -+#endif /* _OSAPI_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/ar6000_api.h -@@ -0,0 +1,29 @@ -+#ifndef _AR6000_API_H_ -+#define _AR6000_API_H_ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * This file contains the API to access the OS dependent atheros host driver -+ * by the WMI or WLAN generic modules. -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/ar6000_api.h#1 $ -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "../ar6000/ar6xapi_linux.h" -+ -+#endif /* _AR6000_API_H */ -+ ---- /dev/null -+++ b/drivers/ar6000/include/ar6000_diag.h -@@ -0,0 +1,38 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef AR6000_DIAG_H_ -+#define AR6000_DIAG_H_ -+ -+ -+A_STATUS -+ar6000_ReadRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data); -+ -+A_STATUS -+ar6000_WriteRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data); -+ -+A_STATUS -+ar6000_ReadDataDiag(HIF_DEVICE *hifDevice, A_UINT32 address, -+ A_UCHAR *data, A_UINT32 length); -+ -+A_STATUS -+ar6000_WriteDataDiag(HIF_DEVICE *hifDevice, A_UINT32 address, -+ A_UCHAR *data, A_UINT32 length); -+ -+#endif /*AR6000_DIAG_H_*/ ---- /dev/null -+++ b/drivers/ar6000/include/AR6001_regdump.h -@@ -0,0 +1,100 @@ -+/* -+ * Copyright (c) 2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#ifndef __AR6000_REGDUMP_H__ -+#define __AR6000_REGDUMP_H__ -+ -+#if !defined(__ASSEMBLER__) -+/* -+ * Target CPU state at the time of failure is reflected -+ * in a register dump, which the Host can fetch through -+ * the diagnostic window. -+ */ -+ -+struct MIPS_exception_frame_s { -+ A_UINT32 pc; /* Program Counter */ -+ A_UINT32 at; /* MIPS General Purpose registers */ -+ A_UINT32 v0; -+ A_UINT32 v1; -+ A_UINT32 a0; -+ A_UINT32 a1; -+ A_UINT32 a2; -+ A_UINT32 a3; -+ A_UINT32 t0; -+ A_UINT32 t1; -+ A_UINT32 t2; -+ A_UINT32 t3; -+ A_UINT32 t4; -+ A_UINT32 t5; -+ A_UINT32 t6; -+ A_UINT32 t7; -+ A_UINT32 s0; -+ A_UINT32 s1; -+ A_UINT32 s2; -+ A_UINT32 s3; -+ A_UINT32 s4; -+ A_UINT32 s5; -+ A_UINT32 s6; -+ A_UINT32 s7; -+ A_UINT32 t8; -+ A_UINT32 t9; -+ A_UINT32 k0; -+ A_UINT32 k1; -+ A_UINT32 gp; -+ A_UINT32 sp; -+ A_UINT32 s8; -+ A_UINT32 ra; -+ A_UINT32 cause; /* Selected coprocessor regs */ -+ A_UINT32 status; -+}; -+typedef struct MIPS_exception_frame_s CPU_exception_frame_t; -+ -+#endif -+ -+/* -+ * Offsets into MIPS_exception_frame structure, for use in assembler code -+ * MUST MATCH C STRUCTURE ABOVE -+ */ -+#define RD_pc 0 -+#define RD_at 1 -+#define RD_v0 2 -+#define RD_v1 3 -+#define RD_a0 4 -+#define RD_a1 5 -+#define RD_a2 6 -+#define RD_a3 7 -+#define RD_t0 8 -+#define RD_t1 9 -+#define RD_t2 10 -+#define RD_t3 11 -+#define RD_t4 12 -+#define RD_t5 13 -+#define RD_t6 14 -+#define RD_t7 15 -+#define RD_s0 16 -+#define RD_s1 17 -+#define RD_s2 18 -+#define RD_s3 19 -+#define RD_s4 20 -+#define RD_s5 21 -+#define RD_s6 22 -+#define RD_s7 23 -+#define RD_t8 24 -+#define RD_t9 25 -+#define RD_k0 26 -+#define RD_k1 27 -+#define RD_gp 28 -+#define RD_sp 29 -+#define RD_s8 30 -+#define RD_ra 31 -+#define RD_cause 32 -+#define RD_status 33 -+ -+#define RD_SIZE (34*4) /* Space for this number of words */ -+ -+#endif /* __AR6000_REGDUMP_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/AR6Khwreg.h -@@ -0,0 +1,147 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * This file contains the definitions for AR6001 registers -+ * that may be directly manipulated by Host software. -+ */ -+ -+#ifndef __AR6KHWREG_H__ -+#define __AR6KHWREG_H__ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+/* Host registers */ -+#define HOST_INT_STATUS_ADDRESS 0x00000400 -+#define CPU_INT_STATUS_ADDRESS 0x00000401 -+#define ERROR_INT_STATUS_ADDRESS 0x00000402 -+#define INT_STATUS_ENABLE_ADDRESS 0x00000418 -+#define CPU_INT_STATUS_ENABLE_ADDRESS 0x00000419 -+#define COUNT_ADDRESS 0x00000420 -+#define COUNT_DEC_ADDRESS 0x00000440 -+#define WINDOW_DATA_ADDRESS 0x00000474 -+#define WINDOW_WRITE_ADDR_ADDRESS 0x00000478 -+#define WINDOW_READ_ADDR_ADDRESS 0x0000047c -+ -+/* Target addresses */ -+#define RESET_CONTROL_ADDRESS 0x0c000000 -+#define MC_REMAP_VALID_ADDRESS 0x0c004080 -+#define MC_REMAP_SIZE_ADDRESS 0x0c004100 -+#define MC_REMAP_COMPARE_ADDRESS 0x0c004180 -+#define MC_REMAP_TARGET_ADDRESS 0x0c004200 -+#define LOCAL_COUNT_ADDRESS 0x0c014080 -+#define LOCAL_SCRATCH_ADDRESS 0x0c0140c0 -+ -+ -+#define INT_STATUS_ENABLE_ERROR_MSB 7 -+#define INT_STATUS_ENABLE_ERROR_LSB 7 -+#define INT_STATUS_ENABLE_ERROR_MASK 0x00000080 -+#define INT_STATUS_ENABLE_ERROR_GET(x) (((x) & INT_STATUS_ENABLE_ERROR_MASK) >> INT_STATUS_ENABLE_ERROR_LSB) -+#define INT_STATUS_ENABLE_ERROR_SET(x) (((x) << INT_STATUS_ENABLE_ERROR_LSB) & INT_STATUS_ENABLE_ERROR_MASK) -+ -+#define INT_STATUS_ENABLE_CPU_MSB 6 -+#define INT_STATUS_ENABLE_CPU_LSB 6 -+#define INT_STATUS_ENABLE_CPU_MASK 0x00000040 -+#define INT_STATUS_ENABLE_CPU_GET(x) (((x) & INT_STATUS_ENABLE_CPU_MASK) >> INT_STATUS_ENABLE_CPU_LSB) -+#define INT_STATUS_ENABLE_CPU_SET(x) (((x) << INT_STATUS_ENABLE_CPU_LSB) & INT_STATUS_ENABLE_CPU_MASK) -+ -+#define INT_STATUS_ENABLE_COUNTER_MSB 4 -+#define INT_STATUS_ENABLE_COUNTER_LSB 4 -+#define INT_STATUS_ENABLE_COUNTER_MASK 0x00000010 -+#define INT_STATUS_ENABLE_COUNTER_GET(x) (((x) & INT_STATUS_ENABLE_COUNTER_MASK) >> INT_STATUS_ENABLE_COUNTER_LSB) -+#define INT_STATUS_ENABLE_COUNTER_SET(x) (((x) << INT_STATUS_ENABLE_COUNTER_LSB) & INT_STATUS_ENABLE_COUNTER_MASK) -+ -+#define INT_STATUS_ENABLE_MBOX_DATA_MSB 3 -+#define INT_STATUS_ENABLE_MBOX_DATA_LSB 0 -+#define INT_STATUS_ENABLE_MBOX_DATA_MASK 0x0000000f -+#define INT_STATUS_ENABLE_MBOX_DATA_GET(x) (((x) & INT_STATUS_ENABLE_MBOX_DATA_MASK) >> INT_STATUS_ENABLE_MBOX_DATA_LSB) -+#define INT_STATUS_ENABLE_MBOX_DATA_SET(x) (((x) << INT_STATUS_ENABLE_MBOX_DATA_LSB) & INT_STATUS_ENABLE_MBOX_DATA_MASK) -+ -+#define ERROR_STATUS_ENABLE_RX_UNDERFLOW_MSB 1 -+#define ERROR_STATUS_ENABLE_RX_UNDERFLOW_LSB 1 -+#define ERROR_STATUS_ENABLE_RX_UNDERFLOW_MASK 0x00000002 -+#define ERROR_STATUS_ENABLE_RX_UNDERFLOW_GET(x) (((x) & ERROR_STATUS_ENABLE_RX_UNDERFLOW_MASK) >> ERROR_STATUS_ENABLE_RX_UNDERFLOW_LSB) -+#define ERROR_STATUS_ENABLE_RX_UNDERFLOW_SET(x) (((x) << ERROR_STATUS_ENABLE_RX_UNDERFLOW_LSB) & ERROR_STATUS_ENABLE_RX_UNDERFLOW_MASK) -+ -+#define ERROR_STATUS_ENABLE_TX_OVERFLOW_MSB 0 -+#define ERROR_STATUS_ENABLE_TX_OVERFLOW_LSB 0 -+#define ERROR_STATUS_ENABLE_TX_OVERFLOW_MASK 0x00000001 -+#define ERROR_STATUS_ENABLE_TX_OVERFLOW_GET(x) (((x) & ERROR_STATUS_ENABLE_TX_OVERFLOW_MASK) >> ERROR_STATUS_ENABLE_TX_OVERFLOW_LSB) -+#define ERROR_STATUS_ENABLE_TX_OVERFLOW_SET(x) (((x) << ERROR_STATUS_ENABLE_TX_OVERFLOW_LSB) & ERROR_STATUS_ENABLE_TX_OVERFLOW_MASK) -+ -+ -+#define CPU_INT_STATUS_ENABLE_BIT_MSB 7 -+#define CPU_INT_STATUS_ENABLE_BIT_LSB 0 -+#define CPU_INT_STATUS_ENABLE_BIT_MASK 0x000000ff -+#define CPU_INT_STATUS_ENABLE_BIT_GET(x) (((x) & CPU_INT_STATUS_ENABLE_BIT_MASK) >> CPU_INT_STATUS_ENABLE_BIT_LSB) -+#define CPU_INT_STATUS_ENABLE_BIT_SET(x) (((x) << CPU_INT_STATUS_ENABLE_BIT_LSB) & CPU_INT_STATUS_ENABLE_BIT_MASK) -+ -+#define COUNTER_INT_STATUS_ENABLE_BIT_MSB 7 -+#define COUNTER_INT_STATUS_ENABLE_BIT_LSB 0 -+#define COUNTER_INT_STATUS_ENABLE_BIT_MASK 0x000000ff -+#define COUNTER_INT_STATUS_ENABLE_BIT_GET(x) (((x) & COUNTER_INT_STATUS_ENABLE_BIT_MASK) >> COUNTER_INT_STATUS_ENABLE_BIT_LSB) -+#define COUNTER_INT_STATUS_ENABLE_BIT_SET(x) (((x) << COUNTER_INT_STATUS_ENABLE_BIT_LSB) & COUNTER_INT_STATUS_ENABLE_BIT_MASK) -+ -+#define ERROR_INT_STATUS_WAKEUP_MSB 2 -+#define ERROR_INT_STATUS_WAKEUP_LSB 2 -+#define ERROR_INT_STATUS_WAKEUP_MASK 0x00000004 -+#define ERROR_INT_STATUS_WAKEUP_GET(x) (((x) & ERROR_INT_STATUS_WAKEUP_MASK) >> ERROR_INT_STATUS_WAKEUP_LSB) -+#define ERROR_INT_STATUS_WAKEUP_SET(x) (((x) << ERROR_INT_STATUS_WAKEUP_LSB) & ERROR_INT_STATUS_WAKEUP_MASK) -+ -+#define ERROR_INT_STATUS_RX_UNDERFLOW_MSB 1 -+#define ERROR_INT_STATUS_RX_UNDERFLOW_LSB 1 -+#define ERROR_INT_STATUS_RX_UNDERFLOW_MASK 0x00000002 -+#define ERROR_INT_STATUS_RX_UNDERFLOW_GET(x) (((x) & ERROR_INT_STATUS_RX_UNDERFLOW_MASK) >> ERROR_INT_STATUS_RX_UNDERFLOW_LSB) -+#define ERROR_INT_STATUS_RX_UNDERFLOW_SET(x) (((x) << ERROR_INT_STATUS_RX_UNDERFLOW_LSB) & ERROR_INT_STATUS_RX_UNDERFLOW_MASK) -+ -+#define ERROR_INT_STATUS_TX_OVERFLOW_MSB 0 -+#define ERROR_INT_STATUS_TX_OVERFLOW_LSB 0 -+#define ERROR_INT_STATUS_TX_OVERFLOW_MASK 0x00000001 -+#define ERROR_INT_STATUS_TX_OVERFLOW_GET(x) (((x) & ERROR_INT_STATUS_TX_OVERFLOW_MASK) >> ERROR_INT_STATUS_TX_OVERFLOW_LSB) -+#define ERROR_INT_STATUS_TX_OVERFLOW_SET(x) (((x) << ERROR_INT_STATUS_TX_OVERFLOW_LSB) & ERROR_INT_STATUS_TX_OVERFLOW_MASK) -+ -+#define HOST_INT_STATUS_ERROR_MSB 7 -+#define HOST_INT_STATUS_ERROR_LSB 7 -+#define HOST_INT_STATUS_ERROR_MASK 0x00000080 -+#define HOST_INT_STATUS_ERROR_GET(x) (((x) & HOST_INT_STATUS_ERROR_MASK) >> HOST_INT_STATUS_ERROR_LSB) -+#define HOST_INT_STATUS_ERROR_SET(x) (((x) << HOST_INT_STATUS_ERROR_LSB) & HOST_INT_STATUS_ERROR_MASK) -+ -+#define HOST_INT_STATUS_CPU_MSB 6 -+#define HOST_INT_STATUS_CPU_LSB 6 -+#define HOST_INT_STATUS_CPU_MASK 0x00000040 -+#define HOST_INT_STATUS_CPU_GET(x) (((x) & HOST_INT_STATUS_CPU_MASK) >> HOST_INT_STATUS_CPU_LSB) -+#define HOST_INT_STATUS_CPU_SET(x) (((x) << HOST_INT_STATUS_CPU_LSB) & HOST_INT_STATUS_CPU_MASK) -+ -+#define HOST_INT_STATUS_COUNTER_MSB 4 -+#define HOST_INT_STATUS_COUNTER_LSB 4 -+#define HOST_INT_STATUS_COUNTER_MASK 0x00000010 -+#define HOST_INT_STATUS_COUNTER_GET(x) (((x) & HOST_INT_STATUS_COUNTER_MASK) >> HOST_INT_STATUS_COUNTER_LSB) -+#define HOST_INT_STATUS_COUNTER_SET(x) (((x) << HOST_INT_STATUS_COUNTER_LSB) & HOST_INT_STATUS_COUNTER_MASK) -+ -+#define RESET_CONTROL_WARM_RST_MSB 7 -+#define RESET_CONTROL_WARM_RST_LSB 7 -+#define RESET_CONTROL_WARM_RST_MASK 0x00000080 -+#define RESET_CONTROL_WARM_RST_GET(x) (((x) & RESET_CONTROL_WARM_RST_MASK) >> RESET_CONTROL_WARM_RST_LSB) -+#define RESET_CONTROL_WARM_RST_SET(x) (((x) << RESET_CONTROL_WARM_RST_LSB) & RESET_CONTROL_WARM_RST_MASK) -+ -+#define RESET_CONTROL_COLD_RST_MSB 8 -+#define RESET_CONTROL_COLD_RST_LSB 8 -+#define RESET_CONTROL_COLD_RST_MASK 0x00000100 -+#define RESET_CONTROL_COLD_RST_GET(x) (((x) & RESET_CONTROL_COLD_RST_MASK) >> RESET_CONTROL_COLD_RST_LSB) -+#define RESET_CONTROL_COLD_RST_SET(x) (((x) << RESET_CONTROL_COLD_RST_LSB) & RESET_CONTROL_COLD_RST_MASK) -+ -+#define RESET_CAUSE_LAST_MSB 2 -+#define RESET_CAUSE_LAST_LSB 0 -+#define RESET_CAUSE_LAST_MASK 0x00000007 -+#define RESET_CAUSE_LAST_GET(x) (((x) & RESET_CAUSE_LAST_MASK) >> RESET_CAUSE_LAST_LSB) -+#define RESET_CAUSE_LAST_SET(x) (((x) << RESET_CAUSE_LAST_LSB) & RESET_CAUSE_LAST_MASK) -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* __AR6KHWREG_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/AR6K_version.h -@@ -0,0 +1,36 @@ -+#define __VER_MAJOR_ 2 -+#define __VER_MINOR_ 0 -+#define __VER_PATCH_ 0 -+ -+ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * The makear6ksdk script (used for release builds) modifies the following line. -+ */ -+#define __BUILD_NUMBER_ 18 -+ -+ -+/* Format of the version number. */ -+#define VER_MAJOR_BIT_OFFSET 28 -+#define VER_MINOR_BIT_OFFSET 24 -+#define VER_PATCH_BIT_OFFSET 16 -+#define VER_BUILD_NUM_BIT_OFFSET 0 -+ -+ -+/* -+ * The version has the following format: -+ * Bits 28-31: Major version -+ * Bits 24-27: Minor version -+ * Bits 16-23: Patch version -+ * Bits 0-15: Build number (automatically generated during build process ) -+ * E.g. Build 1.1.3.7 would be represented as 0x11030007. -+ * -+ * DO NOT split the following macro into multiple lines as this may confuse the build scripts. -+ */ -+#define AR6K_SW_VERSION ( ( __VER_MAJOR_ << VER_MAJOR_BIT_OFFSET ) + ( __VER_MINOR_ << VER_MINOR_BIT_OFFSET ) + ( __VER_PATCH_ << VER_PATCH_BIT_OFFSET ) + ( __BUILD_NUMBER_ << VER_BUILD_NUM_BIT_OFFSET ) ) -+ -+ ---- /dev/null -+++ b/drivers/ar6000/include/AR6K_version.h.NEW -@@ -0,0 +1,36 @@ -+#define __VER_MAJOR_ 2 -+#define __VER_MINOR_ 0 -+#define __VER_PATCH_ 0 -+ -+ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * The makear6ksdk script (used for release builds) modifies the following line. -+ */ -+#define __BUILD_NUMBER_ 18 -+ -+ -+/* Format of the version number. */ -+#define VER_MAJOR_BIT_OFFSET 28 -+#define VER_MINOR_BIT_OFFSET 24 -+#define VER_PATCH_BIT_OFFSET 16 -+#define VER_BUILD_NUM_BIT_OFFSET 0 -+ -+ -+/* -+ * The version has the following format: -+ * Bits 28-31: Major version -+ * Bits 24-27: Minor version -+ * Bits 16-23: Patch version -+ * Bits 0-15: Build number (automatically generated during build process ) -+ * E.g. Build 1.1.3.7 would be represented as 0x11030007. -+ * -+ * DO NOT split the following macro into multiple lines as this may confuse the build scripts. -+ */ -+#define AR6K_SW_VERSION ( ( __VER_MAJOR_ << VER_MAJOR_BIT_OFFSET ) + ( __VER_MINOR_ << VER_MINOR_BIT_OFFSET ) + ( __VER_PATCH_ << VER_PATCH_BIT_OFFSET ) + ( __BUILD_NUMBER_ << VER_BUILD_NUM_BIT_OFFSET ) ) -+ -+ ---- /dev/null -+++ b/drivers/ar6000/include/athdefs.h -@@ -0,0 +1,85 @@ -+#ifndef __ATHDEFS_H__ -+#define __ATHDEFS_H__ -+ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * This file contains definitions that may be used across both -+ * Host and Target software. Nothing here is module-dependent -+ * or platform-dependent. -+ */ -+ -+/* -+ * Generic error codes that can be used by hw, sta, ap, sim, dk -+ * and any other environments. Since these are enums, feel free to -+ * add any more codes that you need. -+ */ -+ -+typedef enum { -+ A_ERROR = -1, /* Generic error return */ -+ A_OK = 0, /* success */ -+ /* Following values start at 1 */ -+ A_DEVICE_NOT_FOUND, /* not able to find PCI device */ -+ A_NO_MEMORY, /* not able to allocate memory, not available */ -+ A_MEMORY_NOT_AVAIL, /* memory region is not free for mapping */ -+ A_NO_FREE_DESC, /* no free descriptors available */ -+ A_BAD_ADDRESS, /* address does not match descriptor */ -+ A_WIN_DRIVER_ERROR, /* used in NT_HW version, if problem at init */ -+ A_REGS_NOT_MAPPED, /* registers not correctly mapped */ -+ A_EPERM, /* Not superuser */ -+ A_EACCES, /* Access denied */ -+ A_ENOENT, /* No such entry, search failed, etc. */ -+ A_EEXIST, /* The object already exists (can't create) */ -+ A_EFAULT, /* Bad address fault */ -+ A_EBUSY, /* Object is busy */ -+ A_EINVAL, /* Invalid parameter */ -+ A_EMSGSIZE, /* Inappropriate message buffer length */ -+ A_ECANCELED, /* Operation canceled */ -+ A_ENOTSUP, /* Operation not supported */ -+ A_ECOMM, /* Communication error on send */ -+ A_EPROTO, /* Protocol error */ -+ A_ENODEV, /* No such device */ -+ A_EDEVNOTUP, /* device is not UP */ -+ A_NO_RESOURCE, /* No resources for requested operation */ -+ A_HARDWARE, /* Hardware failure */ -+ A_PENDING, /* Asynchronous routine; will send up results la -+ter (typically in callback) */ -+ A_EBADCHANNEL, /* The channel cannot be used */ -+ A_DECRYPT_ERROR, /* Decryption error */ -+ A_PHY_ERROR, /* RX PHY error */ -+ A_CONSUMED /* Object was consumed */ -+} A_STATUS; -+ -+#define A_SUCCESS(x) (x == A_OK) -+#define A_FAILED(x) (!A_SUCCESS(x)) -+ -+#ifndef TRUE -+#define TRUE 1 -+#endif -+ -+#ifndef FALSE -+#define FALSE 0 -+#endif -+ -+/* -+ * The following definition is WLAN specific definition -+ */ -+typedef enum { -+ MODE_11A = 0, /* 11a Mode */ -+ MODE_11G = 1, /* 11g + 11b Mode */ -+ MODE_11B = 2, /* 11b Mode */ -+ MODE_11GONLY = 3, /* 11g only Mode */ -+ MODE_UNKNOWN = 4, -+ MODE_MAX = 4 -+} WLAN_PHY_MODE; -+ -+typedef enum { -+ WLAN_11A_CAPABILITY = 1, -+ WLAN_11G_CAPABILITY = 2, -+ WLAN_11AG_CAPABILITY = 3, -+}WLAN_CAPABILITY; -+ -+#endif /* __ATHDEFS_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/athdrv.h -@@ -0,0 +1,32 @@ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _ATHDRV_H_ -+#define _ATHDRV_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _ATHDRV_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/athendpack.h -@@ -0,0 +1,41 @@ -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ * @file: athendpack.h -+ * -+ * @abstract: end compiler-specific structure packing -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+#ifdef VXWORKS -+#endif /* VXWORKS */ -+ -+#ifdef LINUX -+#endif /* LINUX */ -+ -+#ifdef QNX -+#endif /* QNX */ -+ -+#ifdef INTEGRITY -+#include "integrity/athendpack_integrity.h" -+#endif /* INTEGRITY */ -+ -+#ifdef NUCLEUS -+#endif /* NUCLEUS */ -+ -+#ifdef UNDER_CE -+#include "../os/wince/include/athendpack_wince.h" -+#endif /* WINCE */ -+ ---- /dev/null -+++ b/drivers/ar6000/include/athstartpack.h -@@ -0,0 +1,42 @@ -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ * @file: athstartpack.h -+ * -+ * @abstract: start compiler-specific structure packing -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifdef VXWORKS -+#endif /* VXWORKS */ -+ -+#ifdef LINUX -+#endif /* LINUX */ -+ -+#ifdef QNX -+#endif /* QNX */ -+ -+#ifdef INTEGRITY -+#include "integrity/athstartpack_integrity.h" -+#endif /* INTEGRITY */ -+ -+#ifdef NUCLEUS -+#endif /* NUCLEUS */ -+ -+#ifdef UNDER_CE -+#include "../os/wince/include/athstartpack_wince.h" -+#endif /* WINCE */ -+ ---- /dev/null -+++ b/drivers/ar6000/include/a_types.h -@@ -0,0 +1,28 @@ -+#ifndef _A_TYPES_H_ -+#define _A_TYPES_H_ -+/* -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/a_types.h#1 $ -+ * -+ * This file contains the definitions of the basic atheros data types. -+ * It is used to map the data types in atheros files to a platform specific -+ * type. -+ * -+ * Copyright 2003-2005 Atheros Communications, Inc., All Rights Reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "../ar6000/athtypes_linux.h" -+ -+#endif /* _ATHTYPES_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/bmi.h -@@ -0,0 +1,100 @@ -+#ifndef _BMI_H_ -+#define _BMI_H_ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ * BMI declarations and prototypes -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif /* __cplusplus */ -+ -+/* Header files */ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "hif.h" -+#include "a_osapi.h" -+#include "bmi_msg.h" -+ -+void -+BMIInit(void); -+ -+A_STATUS -+BMIDone(HIF_DEVICE *device); -+ -+A_STATUS -+BMIGetTargetInfo(HIF_DEVICE *device, struct bmi_target_info *targ_info); -+ -+A_STATUS -+BMIReadMemory(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UCHAR *buffer, -+ A_UINT32 length); -+ -+A_STATUS -+BMIWriteMemory(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UCHAR *buffer, -+ A_UINT32 length); -+ -+A_STATUS -+BMIExecute(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UINT32 *param); -+ -+A_STATUS -+BMISetAppStart(HIF_DEVICE *device, -+ A_UINT32 address); -+ -+A_STATUS -+BMIReadSOCRegister(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UINT32 *param); -+ -+A_STATUS -+BMIWriteSOCRegister(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UINT32 param); -+ -+A_STATUS -+BMIrompatchInstall(HIF_DEVICE *device, -+ A_UINT32 ROM_addr, -+ A_UINT32 RAM_addr, -+ A_UINT32 nbytes, -+ A_UINT32 do_activate, -+ A_UINT32 *patch_id); -+ -+A_STATUS -+BMIrompatchUninstall(HIF_DEVICE *device, -+ A_UINT32 rompatch_id); -+ -+A_STATUS -+BMIrompatchActivate(HIF_DEVICE *device, -+ A_UINT32 rompatch_count, -+ A_UINT32 *rompatch_list); -+ -+A_STATUS -+BMIrompatchDeactivate(HIF_DEVICE *device, -+ A_UINT32 rompatch_count, -+ A_UINT32 *rompatch_list); -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _BMI_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/bmi_msg.h -@@ -0,0 +1,199 @@ -+#ifndef __BMI_MSG_H__ -+#define __BMI_MSG_H__ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+/* -+ * Bootloader Messaging Interface (BMI) -+ * -+ * BMI is a very simple messaging interface used during initialization -+ * to read memory, write memory, execute code, and to define an -+ * application entry PC. -+ * -+ * It is used to download an application to AR6K, to provide -+ * patches to code that is already resident on AR6K, and generally -+ * to examine and modify state. The Host has an opportunity to use -+ * BMI only once during bootup. Once the Host issues a BMI_DONE -+ * command, this opportunity ends. -+ * -+ * The Host writes BMI requests to mailbox0, and reads BMI responses -+ * from mailbox0. BMI requests all begin with a command -+ * (see below for specific commands), and are followed by -+ * command-specific data. -+ * -+ * Flow control: -+ * The Host can only issue a command once the Target gives it a -+ * "BMI Command Credit", using AR6K Counter #4. As soon as the -+ * Target has completed a command, it issues another BMI Command -+ * Credit (so the Host can issue the next command). -+ * -+ * BMI handles all required Target-side cache flushing. -+ */ -+ -+ -+/* Maximum data size used for BMI transfers */ -+#define BMI_DATASZ_MAX 32 -+ -+/* BMI Commands */ -+ -+#define BMI_NO_COMMAND 0 -+ -+#define BMI_DONE 1 -+ /* -+ * Semantics: Host is done using BMI -+ * Request format: -+ * A_UINT32 command (BMI_DONE) -+ * Response format: none -+ */ -+ -+#define BMI_READ_MEMORY 2 -+ /* -+ * Semantics: Host reads AR6K memory -+ * Request format: -+ * A_UINT32 command (BMI_READ_MEMORY) -+ * A_UINT32 address -+ * A_UINT32 length, at most BMI_DATASZ_MAX -+ * Response format: -+ * A_UINT8 data[length] -+ */ -+ -+#define BMI_WRITE_MEMORY 3 -+ /* -+ * Semantics: Host writes AR6K memory -+ * Request format: -+ * A_UINT32 command (BMI_WRITE_MEMORY) -+ * A_UINT32 address -+ * A_UINT32 length, at most BMI_DATASZ_MAX -+ * A_UINT8 data[length] -+ * Response format: none -+ */ -+ -+#define BMI_EXECUTE 4 -+ /* -+ * Semantics: Causes AR6K to execute code -+ * Request format: -+ * A_UINT32 command (BMI_EXECUTE) -+ * A_UINT32 address -+ * A_UINT32 parameter -+ * Response format: -+ * A_UINT32 return value -+ */ -+ -+#define BMI_SET_APP_START 5 -+ /* -+ * Semantics: Set Target application starting address -+ * Request format: -+ * A_UINT32 command (BMI_SET_APP_START) -+ * A_UINT32 address -+ * Response format: none -+ */ -+ -+#define BMI_READ_SOC_REGISTER 6 -+ /* -+ * Semantics: Read a 32-bit Target SOC register. -+ * Request format: -+ * A_UINT32 command (BMI_READ_REGISTER) -+ * A_UINT32 address -+ * Response format: -+ * A_UINT32 value -+ */ -+ -+#define BMI_WRITE_SOC_REGISTER 7 -+ /* -+ * Semantics: Write a 32-bit Target SOC register. -+ * Request format: -+ * A_UINT32 command (BMI_WRITE_REGISTER) -+ * A_UINT32 address -+ * A_UINT32 value -+ * -+ * Response format: none -+ */ -+ -+#define BMI_GET_TARGET_ID 8 -+#define BMI_GET_TARGET_INFO 8 -+ /* -+ * Semantics: Fetch the 4-byte Target information -+ * Request format: -+ * A_UINT32 command (BMI_GET_TARGET_ID/INFO) -+ * Response format1 (old firmware): -+ * A_UINT32 TargetVersionID -+ * Response format2 (newer firmware): -+ * A_UINT32 TARGET_VERSION_SENTINAL -+ * struct bmi_target_info; -+ */ -+ -+struct bmi_target_info { -+ A_UINT32 target_info_byte_count; /* size of this structure */ -+ A_UINT32 target_ver; /* Target Version ID */ -+ A_UINT32 target_type; /* Target type */ -+}; -+#define TARGET_VERSION_SENTINAL 0xffffffff -+#define TARGET_TYPE_AR6001 1 -+#define TARGET_TYPE_AR6002 2 -+ -+ -+#define BMI_ROMPATCH_INSTALL 9 -+ /* -+ * Semantics: Install a ROM Patch. -+ * Request format: -+ * A_UINT32 command (BMI_ROMPATCH_INSTALL) -+ * A_UINT32 Target ROM Address -+ * A_UINT32 Target RAM Address -+ * A_UINT32 Size, in bytes -+ * A_UINT32 Activate? 1-->activate; -+ * 0-->install but do not activate -+ * Response format: -+ * A_UINT32 PatchID -+ */ -+ -+#define BMI_ROMPATCH_UNINSTALL 10 -+ /* -+ * Semantics: Uninstall a previously-installed ROM Patch, -+ * automatically deactivating, if necessary. -+ * Request format: -+ * A_UINT32 command (BMI_ROMPATCH_UNINSTALL) -+ * A_UINT32 PatchID -+ * -+ * Response format: none -+ */ -+ -+#define BMI_ROMPATCH_ACTIVATE 11 -+ /* -+ * Semantics: Activate a list of previously-installed ROM Patches. -+ * Request format: -+ * A_UINT32 command (BMI_ROMPATCH_ACTIVATE) -+ * A_UINT32 rompatch_count -+ * A_UINT32 PatchID[rompatch_count] -+ * -+ * Response format: none -+ */ -+ -+#define BMI_ROMPATCH_DEACTIVATE 12 -+ /* -+ * Semantics: Deactivate a list of active ROM Patches. -+ * Request format: -+ * A_UINT32 command (BMI_ROMPATCH_DEACTIVATE) -+ * A_UINT32 rompatch_count -+ * A_UINT32 PatchID[rompatch_count] -+ * -+ * Response format: none -+ */ -+ -+ -+#endif /* __BMI_MSG_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/common_drv.h -@@ -0,0 +1,61 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+ -+#ifndef COMMON_DRV_H_ -+#define COMMON_DRV_H_ -+ -+#include "hif.h" -+#include "htc_packet.h" -+ -+ -+ -+/* structure that is the state information for the default credit distribution callback -+ * drivers should instantiate (zero-init as well) this structure in their driver instance -+ * and pass it as a context to the HTC credit distribution functions */ -+typedef struct _COMMON_CREDIT_STATE_INFO { -+ int TotalAvailableCredits; /* total credits in the system at startup */ -+ int CurrentFreeCredits; /* credits available in the pool that have not been -+ given out to endpoints */ -+ HTC_ENDPOINT_CREDIT_DIST *pLowestPriEpDist; /* pointer to the lowest priority endpoint dist struct */ -+} COMMON_CREDIT_STATE_INFO; -+ -+ -+/* HTC TX packet tagging definitions */ -+#define AR6K_CONTROL_PKT_TAG HTC_TX_PACKET_TAG_USER_DEFINED -+#define AR6K_DATA_PKT_TAG (AR6K_CONTROL_PKT_TAG + 1) -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+/* OS-independent APIs */ -+A_STATUS ar6000_setup_credit_dist(HTC_HANDLE HTCHandle, COMMON_CREDIT_STATE_INFO *pCredInfo); -+A_STATUS ar6000_ReadRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data); -+A_STATUS ar6000_WriteRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data); -+A_STATUS ar6000_ReadDataDiag(HIF_DEVICE *hifDevice, A_UINT32 address, A_UCHAR *data, A_UINT32 length); -+A_STATUS ar6000_reset_device(HIF_DEVICE *hifDevice, A_UINT32 TargetType); -+void ar6000_dump_target_assert_info(HIF_DEVICE *hifDevice, A_UINT32 TargetType); -+A_STATUS ar6000_reset_device_skipflash(HIF_DEVICE *hifDevice); -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /*COMMON_DRV_H_*/ ---- /dev/null -+++ b/drivers/ar6000/include/dbglog_api.h -@@ -0,0 +1,46 @@ -+#ifndef _DBGLOG_API_H_ -+#define _DBGLOG_API_H_ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ * This file contains host side debug primitives. -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+#include "dbglog.h" -+ -+#define DBGLOG_HOST_LOG_BUFFER_SIZE DBGLOG_LOG_BUFFER_SIZE -+ -+#define DBGLOG_GET_DBGID(arg) \ -+ ((arg & DBGLOG_DBGID_MASK) >> DBGLOG_DBGID_OFFSET) -+ -+#define DBGLOG_GET_MODULEID(arg) \ -+ ((arg & DBGLOG_MODULEID_MASK) >> DBGLOG_MODULEID_OFFSET) -+ -+#define DBGLOG_GET_NUMARGS(arg) \ -+ ((arg & DBGLOG_NUM_ARGS_MASK) >> DBGLOG_NUM_ARGS_OFFSET) -+ -+#define DBGLOG_GET_TIMESTAMP(arg) \ -+ ((arg & DBGLOG_TIMESTAMP_MASK) >> DBGLOG_TIMESTAMP_OFFSET) -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _DBGLOG_API_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/dbglog.h -@@ -0,0 +1,107 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * This file contains the definitions and data structures associated with -+ * the log based debug mechanism. -+ * -+ */ -+ -+#ifndef _DBGLOG_H_ -+#define _DBGLOG_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+#define DBGLOG_TIMESTAMP_OFFSET 0 -+#define DBGLOG_TIMESTAMP_MASK 0x0000FFFF /* Bit 0-15. Contains bit -+ 8-23 of the LF0 timer */ -+#define DBGLOG_DBGID_OFFSET 16 -+#define DBGLOG_DBGID_MASK 0x03FF0000 /* Bit 16-25 */ -+#define DBGLOG_DBGID_NUM_MAX 256 /* Upper limit is width of mask */ -+ -+#define DBGLOG_MODULEID_OFFSET 26 -+#define DBGLOG_MODULEID_MASK 0x3C000000 /* Bit 26-29 */ -+#define DBGLOG_MODULEID_NUM_MAX 16 /* Upper limit is width of mask */ -+ -+/* -+ * Please ensure that the definition of any new module intrduced is captured -+ * between the DBGLOG_MODULEID_START and DBGLOG_MODULEID_END defines. The -+ * structure is required for the parser to correctly pick up the values for -+ * different modules. -+ */ -+#define DBGLOG_MODULEID_START -+#define DBGLOG_MODULEID_INF 0 -+#define DBGLOG_MODULEID_WMI 1 -+#define DBGLOG_MODULEID_CSERV 2 -+#define DBGLOG_MODULEID_PM 3 -+#define DBGLOG_MODULEID_TXRX_MGMTBUF 4 -+#define DBGLOG_MODULEID_TXRX_TXBUF 5 -+#define DBGLOG_MODULEID_TXRX_RXBUF 6 -+#define DBGLOG_MODULEID_WOW 7 -+#define DBGLOG_MODULEID_WHAL 8 -+#define DBGLOG_MODULEID_END -+ -+#define DBGLOG_NUM_ARGS_OFFSET 30 -+#define DBGLOG_NUM_ARGS_MASK 0xC0000000 /* Bit 30-31 */ -+#define DBGLOG_NUM_ARGS_MAX 2 /* Upper limit is width of mask */ -+ -+#define DBGLOG_MODULE_LOG_ENABLE_OFFSET 0 -+#define DBGLOG_MODULE_LOG_ENABLE_MASK 0x0000FFFF -+ -+#define DBGLOG_REPORTING_ENABLED_OFFSET 16 -+#define DBGLOG_REPORTING_ENABLED_MASK 0x00010000 -+ -+#define DBGLOG_TIMESTAMP_RESOLUTION_OFFSET 17 -+#define DBGLOG_TIMESTAMP_RESOLUTION_MASK 0x000E0000 -+ -+#define DBGLOG_REPORT_SIZE_OFFSET 20 -+#define DBGLOG_REPORT_SIZE_MASK 0x3FF00000 -+ -+#define DBGLOG_LOG_BUFFER_SIZE 1500 -+#define DBGLOG_DBGID_DEFINITION_LEN_MAX 64 -+ -+struct dbglog_buf_s { -+ struct dbglog_buf_s *next; -+ A_INT8 *buffer; -+ A_UINT32 bufsize; -+ A_UINT32 length; -+ A_UINT32 count; -+ A_UINT32 free; -+}; -+ -+struct dbglog_hdr_s { -+ struct dbglog_buf_s *dbuf; -+ A_UINT32 dropped; -+}; -+ -+struct dbglog_config_s { -+ A_UINT32 cfgvalid; /* Mask with valid config bits */ -+ union { -+ /* TODO: Take care of endianness */ -+ struct { -+ A_UINT32 mmask:16; /* Mask of modules with logging on */ -+ A_UINT32 rep:1; /* Reporting enabled or not */ -+ A_UINT32 tsr:3; /* Time stamp resolution. Def: 1 ms */ -+ A_UINT32 size:10; /* Report size in number of messages */ -+ A_UINT32 reserved:2; -+ } dbglog_config; -+ -+ A_UINT32 value; -+ } u; -+}; -+ -+#define cfgmmask u.dbglog_config.mmask -+#define cfgrep u.dbglog_config.rep -+#define cfgtsr u.dbglog_config.tsr -+#define cfgsize u.dbglog_config.size -+#define cfgvalue u.value -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _DBGLOG_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/dbglog_id.h -@@ -0,0 +1,307 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * This file contains the definitions of the debug identifiers for different -+ * modules. -+ * -+ */ -+ -+#ifndef _DBGLOG_ID_H_ -+#define _DBGLOG_ID_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+/* -+ * The nomenclature for the debug identifiers is MODULE_DESCRIPTION. -+ * Please ensure that the definition of any new debugid introduced is captured -+ * between the <MODULE>_DBGID_DEFINITION_START and -+ * <MODULE>_DBGID_DEFINITION_END defines. The structure is required for the -+ * parser to correctly pick up the values for different debug identifiers. -+ */ -+ -+/* INF debug identifier definitions */ -+#define INF_DBGID_DEFINITION_START -+#define INF_ASSERTION_FAILED 1 -+#define INF_TARGET_ID 2 -+#define INF_DBGID_DEFINITION_END -+ -+/* WMI debug identifier definitions */ -+#define WMI_DBGID_DEFINITION_START -+#define WMI_CMD_RX_XTND_PKT_TOO_SHORT 1 -+#define WMI_EXTENDED_CMD_NOT_HANDLED 2 -+#define WMI_CMD_RX_PKT_TOO_SHORT 3 -+#define WMI_CALLING_WMI_EXTENSION_FN 4 -+#define WMI_CMD_NOT_HANDLED 5 -+#define WMI_IN_SYNC 6 -+#define WMI_TARGET_WMI_SYNC_CMD 7 -+#define WMI_SET_SNR_THRESHOLD_PARAMS 8 -+#define WMI_SET_RSSI_THRESHOLD_PARAMS 9 -+#define WMI_SET_LQ_TRESHOLD_PARAMS 10 -+#define WMI_TARGET_CREATE_PSTREAM_CMD 11 -+#define WMI_WI_DTM_INUSE 12 -+#define WMI_TARGET_DELETE_PSTREAM_CMD 13 -+#define WMI_TARGET_IMPLICIT_DELETE_PSTREAM_CMD 14 -+#define WMI_TARGET_GET_BIT_RATE_CMD 15 -+#define WMI_GET_RATE_MASK_CMD_FIX_RATE_MASK_IS 16 -+#define WMI_TARGET_GET_AVAILABLE_CHANNELS_CMD 17 -+#define WMI_TARGET_GET_TX_PWR_CMD 18 -+#define WMI_FREE_EVBUF_WMIBUF 19 -+#define WMI_FREE_EVBUF_DATABUF 20 -+#define WMI_FREE_EVBUF_BADFLAG 21 -+#define WMI_HTC_RX_ERROR_DATA_PACKET 22 -+#define WMI_HTC_RX_SYNC_PAUSING_FOR_MBOX 23 -+#define WMI_INCORRECT_WMI_DATA_HDR_DROPPING_PKT 24 -+#define WMI_SENDING_READY_EVENT 25 -+#define WMI_SETPOWER_MDOE_TO_MAXPERF 26 -+#define WMI_SETPOWER_MDOE_TO_REC 27 -+#define WMI_BSSINFO_EVENT_FROM 28 -+#define WMI_TARGET_GET_STATS_CMD 29 -+#define WMI_SENDING_SCAN_COMPLETE_EVENT 30 -+#define WMI_SENDING_RSSI_INDB_THRESHOLD_EVENT 31 -+#define WMI_SENDING_RSSI_INDBM_THRESHOLD_EVENT 32 -+#define WMI_SENDING_LINK_QUALITY_THRESHOLD_EVENT 33 -+#define WMI_SENDING_ERROR_REPORT_EVENT 34 -+#define WMI_SENDING_CAC_EVENT 35 -+#define WMI_TARGET_GET_ROAM_TABLE_CMD 36 -+#define WMI_TARGET_GET_ROAM_DATA_CMD 37 -+#define WMI_SENDING_GPIO_INTR_EVENT 38 -+#define WMI_SENDING_GPIO_ACK_EVENT 39 -+#define WMI_SENDING_GPIO_DATA_EVENT 40 -+#define WMI_CMD_RX 41 -+#define WMI_CMD_RX_XTND 42 -+#define WMI_EVENT_SEND 43 -+#define WMI_EVENT_SEND_XTND 44 -+#define WMI_DBGID_DEFINITION_END -+ -+/* CSERV debug identifier definitions */ -+#define CSERV_DBGID_DEFINITION_START -+#define CSERV_BEGIN_SCAN1 1 -+#define CSERV_BEGIN_SCAN2 2 -+#define CSERV_END_SCAN1 3 -+#define CSERV_END_SCAN2 4 -+#define CSERV_CHAN_SCAN_START 5 -+#define CSERV_CHAN_SCAN_STOP 6 -+#define CSERV_CHANNEL_OPPPORTUNITY 7 -+#define CSERV_NC_TIMEOUT 8 -+#define CSERV_BACK_HOME 10 -+#define CSERV_CHMGR_CH_CALLBACK1 11 -+#define CSERV_CHMGR_CH_CALLBACK2 12 -+#define CSERV_CHMGR_CH_CALLBACK3 13 -+#define CSERV_SET_SCAN_PARAMS1 14 -+#define CSERV_SET_SCAN_PARAMS2 15 -+#define CSERV_SET_SCAN_PARAMS3 16 -+#define CSERV_SET_SCAN_PARAMS4 17 -+#define CSERV_ABORT_SCAN 18 -+#define CSERV_NEWSTATE 19 -+#define CSERV_MINCHMGR_OP_END 20 -+#define CSERV_CHMGR_OP_END 21 -+#define CSERV_DISCONNECT_TIMEOUT 22 -+#define CSERV_ROAM_TIMEOUT 23 -+#define CSERV_FORCE_SCAN1 24 -+#define CSERV_FORCE_SCAN2 25 -+#define CSERV_FORCE_SCAN3 26 -+#define CSERV_UTIL_TIMEOUT 27 -+#define CSERV_RSSIPOLLER 28 -+#define CSERV_RETRY_CONNECT_TIMEOUT 29 -+#define CSERV_RSSIINDBMPOLLER 30 -+#define CSERV_BGSCAN_ENABLE 31 -+#define CSERV_BGSCAN_DISABLE 32 -+#define CSERV_WLAN_START_SCAN_CMD1 33 -+#define CSERV_WLAN_START_SCAN_CMD2 34 -+#define CSERV_WLAN_START_SCAN_CMD3 35 -+#define CSERV_START_SCAN_CMD 36 -+#define CSERV_START_FORCE_SCAN 37 -+#define CSERV_NEXT_CHAN 38 -+#define CSERV_SET_REGCODE 39 -+#define CSERV_START_ADHOC 40 -+#define CSERV_ADHOC_AT_HOME 41 -+#define CSERV_OPT_AT_HOME 42 -+#define CSERV_WLAN_CONNECT_CMD 43 -+#define CSERV_WLAN_RECONNECT_CMD 44 -+#define CSERV_WLAN_DISCONNECT_CMD 45 -+#define CSERV_BSS_CHANGE_CHANNEL 46 -+#define CSERV_BEACON_RX 47 -+#define CSERV_KEEPALIVE_CHECK 48 -+#define CSERV_RC_BEGIN_SCAN 49 -+#define CSERV_RC_SCAN_START 50 -+#define CSERV_RC_SCAN_STOP 51 -+#define CSERV_RC_NEXT 52 -+#define CSERV_RC_SCAN_END 53 -+#define CSERV_PROBE_CALLBACK 54 -+#define CSERV_ROAM1 55 -+#define CSERV_ROAM2 56 -+#define CSERV_ROAM3 57 -+#define CSERV_CONNECT_EVENT 58 -+#define CSERV_DISCONNECT_EVENT 59 -+#define CSERV_BMISS_HANDLER1 60 -+#define CSERV_BMISS_HANDLER2 61 -+#define CSERV_BMISS_HANDLER3 62 -+#define CSERV_LOWRSSI_HANDLER 63 -+#define CSERV_WLAN_SET_PMKID_CMD 64 -+#define CSERV_RECONNECT_REQUEST 65 -+#define CSERV_KEYSPLUMBED_EVENT 66 -+#define CSERV_NEW_REG 67 -+#define CSERV_SET_RSSI_THOLD 68 -+#define CSERV_RSSITHRESHOLDCHECK 69 -+#define CSERV_RSSIINDBMTHRESHOLDCHECK 70 -+#define CSERV_WLAN_SET_OPT_CMD1 71 -+#define CSERV_WLAN_SET_OPT_CMD2 72 -+#define CSERV_WLAN_SET_OPT_CMD3 73 -+#define CSERV_WLAN_SET_OPT_CMD4 74 -+#define CSERV_SCAN_CONNECT_STOP 75 -+#define CSERV_BMISS_HANDLER4 76 -+#define CSERV_INITIALIZE_TIMER 77 -+#define CSERV_ARM_TIMER 78 -+#define CSERV_DISARM_TIMER 79 -+#define CSERV_UNINITIALIZE_TIMER 80 -+#define CSERV_DISCONNECT_EVENT2 81 -+#define CSERV_SCAN_CONNECT_START 82 -+#define CSERV_BSSINFO_MEMORY_ALLOC_FAILED 83 -+#define CSERV_SET_SCAN_PARAMS5 84 -+#define CSERV_DBGID_DEFINITION_END -+ -+/* TXRX debug identifier definitions */ -+#define TXRX_TXBUF_DBGID_DEFINITION_START -+#define TXRX_TXBUF_ALLOCATE_BUF 1 -+#define TXRX_TXBUF_QUEUE_BUF_TO_MBOX 2 -+#define TXRX_TXBUF_QUEUE_BUF_TO_TXQ 3 -+#define TXRX_TXBUF_TXQ_DEPTH 4 -+#define TXRX_TXBUF_IBSS_QUEUE_TO_SFQ 5 -+#define TXRX_TXBUF_IBSS_QUEUE_TO_TXQ_FRM_SFQ 6 -+#define TXRX_TXBUF_INITIALIZE_TIMER 7 -+#define TXRX_TXBUF_ARM_TIMER 8 -+#define TXRX_TXBUF_DISARM_TIMER 9 -+#define TXRX_TXBUF_UNINITIALIZE_TIMER 10 -+#define TXRX_TXBUF_DBGID_DEFINITION_END -+ -+#define TXRX_RXBUF_DBGID_DEFINITION_START -+#define TXRX_RXBUF_ALLOCATE_BUF 1 -+#define TXRX_RXBUF_QUEUE_TO_HOST 2 -+#define TXRX_RXBUF_QUEUE_TO_WLAN 3 -+#define TXRX_RXBUF_ZERO_LEN_BUF 4 -+#define TXRX_RXBUF_QUEUE_TO_HOST_LASTBUF_IN_RXCHAIN 5 -+#define TXRX_RXBUF_LASTBUF_IN_RXCHAIN_ZEROBUF 6 -+#define TXRX_RXBUF_QUEUE_EMPTY_QUEUE_TO_WLAN 7 -+#define TXRX_RXBUF_SEND_TO_RECV_MGMT 8 -+#define TXRX_RXBUF_SEND_TO_IEEE_LAYER 9 -+#define TXRX_RXBUF_DBGID_DEFINITION_END -+ -+#define TXRX_MGMTBUF_DBGID_DEFINITION_START -+#define TXRX_MGMTBUF_ALLOCATE_BUF 1 -+#define TXRX_MGMTBUF_ALLOCATE_SM_BUF 2 -+#define TXRX_MGMTBUF_ALLOCATE_RMBUF 3 -+#define TXRX_MGMTBUF_GET_BUF 4 -+#define TXRX_MGMTBUF_GET_SM_BUF 5 -+#define TXRX_MGMTBUF_QUEUE_BUF_TO_TXQ 6 -+#define TXRX_MGMTBUF_REAPED_BUF 7 -+#define TXRX_MGMTBUF_REAPED_SM_BUF 8 -+#define TXRX_MGMTBUF_WAIT_FOR_TXQ_DRAIN 9 -+#define TXRX_MGMTBUF_WAIT_FOR_TXQ_SFQ_DRAIN 10 -+#define TXRX_MGMTBUF_ENQUEUE_INTO_SFQ 11 -+#define TXRX_MGMTBUF_DEQUEUE_FROM_SFQ 12 -+#define TXRX_MGMTBUF_PAUSE_TXQ 13 -+#define TXRX_MGMTBUF_RESUME_TXQ 14 -+#define TXRX_MGMTBUF_WAIT_FORTXQ_DRAIN_TIMEOUT 15 -+#define TXRX_MGMTBUF_DRAINQ 16 -+#define TXRX_MGMTBUF_INDICATE_Q_DRAINED 17 -+#define TXRX_MGMTBUF_DBGID_DEFINITION_END -+ -+/* PM (Power Module) debug identifier definitions */ -+#define PM_DBGID_DEFINITION_START -+#define PM_INIT 1 -+#define PM_ENABLE 2 -+#define PM_SET_STATE 3 -+#define PM_SET_POWERMODE 4 -+#define PM_CONN_NOTIFY 5 -+#define PM_REF_COUNT_NEGATIVE 6 -+#define PM_APSD_ENABLE 7 -+#define PM_UPDATE_APSD_STATE 8 -+#define PM_CHAN_OP_REQ 9 -+#define PM_SET_MY_BEACON_POLICY 10 -+#define PM_SET_ALL_BEACON_POLICY 11 -+#define PM_SET_PM_PARAMS1 12 -+#define PM_SET_PM_PARAMS2 13 -+#define PM_ADHOC_SET_PM_CAPS_FAIL 14 -+#define PM_ADHOC_UNKNOWN_IBSS_ATTRIB_ID 15 -+#define PM_DBGID_DEFINITION_END -+ -+/* Wake on Wireless debug identifier definitions */ -+#define WOW_DBGID_DEFINITION_START -+#define WOW_INIT 1 -+#define WOW_GET_CONFIG_DSET 2 -+#define WOW_NO_CONFIG_DSET 3 -+#define WOW_INVALID_CONFIG_DSET 4 -+#define WOW_USE_DEFAULT_CONFIG 5 -+#define WOW_SETUP_GPIO 6 -+#define WOW_INIT_DONE 7 -+#define WOW_SET_GPIO_PIN 8 -+#define WOW_CLEAR_GPIO_PIN 9 -+#define WOW_SET_WOW_MODE_CMD 10 -+#define WOW_SET_HOST_MODE_CMD 11 -+#define WOW_ADD_WOW_PATTERN_CMD 12 -+#define WOW_NEW_WOW_PATTERN_AT_INDEX 13 -+#define WOW_DEL_WOW_PATTERN_CMD 14 -+#define WOW_LIST_CONTAINS_PATTERNS 15 -+#define WOW_GET_WOW_LIST_CMD 16 -+#define WOW_INVALID_FILTER_ID 17 -+#define WOW_INVALID_FILTER_LISTID 18 -+#define WOW_NO_VALID_FILTER_AT_ID 19 -+#define WOW_NO_VALID_LIST_AT_ID 20 -+#define WOW_NUM_PATTERNS_EXCEEDED 21 -+#define WOW_NUM_LISTS_EXCEEDED 22 -+#define WOW_GET_WOW_STATS 23 -+#define WOW_CLEAR_WOW_STATS 24 -+#define WOW_WAKEUP_HOST 25 -+#define WOW_EVENT_WAKEUP_HOST 26 -+#define WOW_EVENT_DISCARD 27 -+#define WOW_PATTERN_MATCH 28 -+#define WOW_PATTERN_NOT_MATCH 29 -+#define WOW_PATTERN_NOT_MATCH_OFFSET 30 -+#define WOW_DISABLED_HOST_ASLEEP 31 -+#define WOW_ENABLED_HOST_ASLEEP_NO_PATTERNS 32 -+#define WOW_ENABLED_HOST_ASLEEP_NO_MATCH_FOUND 33 -+#define WOW_DBGID_DEFINITION_END -+ -+/* WHAL debug identifier definitions */ -+#define WHAL_DBGID_DEFINITION_START -+#define WHAL_ERROR_ANI_CONTROL 1 -+#define WHAL_ERROR_CHIP_TEST1 2 -+#define WHAL_ERROR_CHIP_TEST2 3 -+#define WHAL_ERROR_EEPROM_CHECKSUM 4 -+#define WHAL_ERROR_EEPROM_MACADDR 5 -+#define WHAL_ERROR_INTERRUPT_HIU 6 -+#define WHAL_ERROR_KEYCACHE_RESET 7 -+#define WHAL_ERROR_KEYCACHE_SET 8 -+#define WHAL_ERROR_KEYCACHE_TYPE 9 -+#define WHAL_ERROR_KEYCACHE_TKIPENTRY 10 -+#define WHAL_ERROR_KEYCACHE_WEPLENGTH 11 -+#define WHAL_ERROR_PHY_INVALID_CHANNEL 12 -+#define WHAL_ERROR_POWER_AWAKE 13 -+#define WHAL_ERROR_POWER_SET 14 -+#define WHAL_ERROR_RECV_STOPDMA 15 -+#define WHAL_ERROR_RECV_STOPPCU 16 -+#define WHAL_ERROR_RESET_CHANNF1 17 -+#define WHAL_ERROR_RESET_CHANNF2 18 -+#define WHAL_ERROR_RESET_PM 19 -+#define WHAL_ERROR_RESET_OFFSETCAL 20 -+#define WHAL_ERROR_RESET_RFGRANT 21 -+#define WHAL_ERROR_RESET_RXFRAME 22 -+#define WHAL_ERROR_RESET_STOPDMA 23 -+#define WHAL_ERROR_RESET_RECOVER 24 -+#define WHAL_ERROR_XMIT_COMPUTE 25 -+#define WHAL_ERROR_XMIT_NOQUEUE 26 -+#define WHAL_ERROR_XMIT_ACTIVEQUEUE 27 -+#define WHAL_ERROR_XMIT_BADTYPE 28 -+#define WHAL_DBGID_DEFINITION_END -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _DBGLOG_ID_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/dl_list.h -@@ -0,0 +1,114 @@ -+/* -+ * -+ * Double-link list definitions (adapted from Atheros SDIO stack) -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+#ifndef __DL_LIST_H___ -+#define __DL_LIST_H___ -+ -+#define A_CONTAINING_STRUCT(address, struct_type, field_name)\ -+ ((struct_type *)((A_UINT32)(address) - (A_UINT32)(&((struct_type *)0)->field_name))) -+ -+/* list functions */ -+/* pointers for the list */ -+typedef struct _DL_LIST { -+ struct _DL_LIST *pPrev; -+ struct _DL_LIST *pNext; -+}DL_LIST, *PDL_LIST; -+/* -+ * DL_LIST_INIT , initialize doubly linked list -+*/ -+#define DL_LIST_INIT(pList)\ -+ {(pList)->pPrev = pList; (pList)->pNext = pList;} -+ -+#define DL_LIST_IS_EMPTY(pList) (((pList)->pPrev == (pList)) && ((pList)->pNext == (pList))) -+#define DL_LIST_GET_ITEM_AT_HEAD(pList) (pList)->pNext -+#define DL_LIST_GET_ITEM_AT_TAIL(pList) (pList)->pPrev -+/* -+ * ITERATE_OVER_LIST pStart is the list, pTemp is a temp list member -+ * NOT: do not use this function if the items in the list are deleted inside the -+ * iteration loop -+*/ -+#define ITERATE_OVER_LIST(pStart, pTemp) \ -+ for((pTemp) =(pStart)->pNext; pTemp != (pStart); (pTemp) = (pTemp)->pNext) -+ -+ -+/* safe iterate macro that allows the item to be removed from the list -+ * the iteration continues to the next item in the list -+ */ -+#define ITERATE_OVER_LIST_ALLOW_REMOVE(pStart,pItem,st,offset) \ -+{ \ -+ PDL_LIST pTemp; \ -+ pTemp = (pStart)->pNext; \ -+ while (pTemp != (pStart)) { \ -+ (pItem) = A_CONTAINING_STRUCT(pTemp,st,offset); \ -+ pTemp = pTemp->pNext; \ -+ -+#define ITERATE_END }} -+ -+/* -+ * DL_ListInsertTail - insert pAdd to the end of the list -+*/ -+static INLINE PDL_LIST DL_ListInsertTail(PDL_LIST pList, PDL_LIST pAdd) { -+ /* insert at tail */ -+ pAdd->pPrev = pList->pPrev; -+ pAdd->pNext = pList; -+ pList->pPrev->pNext = pAdd; -+ pList->pPrev = pAdd; -+ return pAdd; -+} -+ -+/* -+ * DL_ListInsertHead - insert pAdd into the head of the list -+*/ -+static INLINE PDL_LIST DL_ListInsertHead(PDL_LIST pList, PDL_LIST pAdd) { -+ /* insert at head */ -+ pAdd->pPrev = pList; -+ pAdd->pNext = pList->pNext; -+ pList->pNext->pPrev = pAdd; -+ pList->pNext = pAdd; -+ return pAdd; -+} -+ -+#define DL_ListAdd(pList,pItem) DL_ListInsertHead((pList),(pItem)) -+/* -+ * DL_ListRemove - remove pDel from list -+*/ -+static INLINE PDL_LIST DL_ListRemove(PDL_LIST pDel) { -+ pDel->pNext->pPrev = pDel->pPrev; -+ pDel->pPrev->pNext = pDel->pNext; -+ /* point back to itself just to be safe, incase remove is called again */ -+ pDel->pNext = pDel; -+ pDel->pPrev = pDel; -+ return pDel; -+} -+ -+/* -+ * DL_ListRemoveItemFromHead - get a list item from the head -+*/ -+static INLINE PDL_LIST DL_ListRemoveItemFromHead(PDL_LIST pList) { -+ PDL_LIST pItem = NULL; -+ if (pList->pNext != pList) { -+ pItem = pList->pNext; -+ /* remove the first item from head */ -+ DL_ListRemove(pItem); -+ } -+ return pItem; -+} -+ -+#endif /* __DL_LIST_H___ */ ---- /dev/null -+++ b/drivers/ar6000/include/dset_api.h -@@ -0,0 +1,63 @@ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/dset_api.h#1 $ -+ * -+ * Host-side DataSet API. -+ * -+ */ -+ -+#ifndef _DSET_API_H_ -+#define _DSET_API_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif /* __cplusplus */ -+ -+/* -+ * Host-side DataSet support is optional, and is not -+ * currently required for correct operation. To disable -+ * Host-side DataSet support, set this to 0. -+ */ -+#ifndef CONFIG_HOST_DSET_SUPPORT -+#define CONFIG_HOST_DSET_SUPPORT 1 -+#endif -+ -+/* Called to send a DataSet Open Reply back to the Target. */ -+A_STATUS wmi_dset_open_reply(struct wmi_t *wmip, -+ A_UINT32 status, -+ A_UINT32 access_cookie, -+ A_UINT32 size, -+ A_UINT32 version, -+ A_UINT32 targ_handle, -+ A_UINT32 targ_reply_fn, -+ A_UINT32 targ_reply_arg); -+ -+/* Called to send a DataSet Data Reply back to the Target. */ -+A_STATUS wmi_dset_data_reply(struct wmi_t *wmip, -+ A_UINT32 status, -+ A_UINT8 *host_buf, -+ A_UINT32 length, -+ A_UINT32 targ_buf, -+ A_UINT32 targ_reply_fn, -+ A_UINT32 targ_reply_arg); -+ -+#ifdef __cplusplus -+} -+#endif /* __cplusplus */ -+ -+ -+#endif /* _DSET_API_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/dsetid.h -@@ -0,0 +1,110 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#ifndef __DSETID_H__ -+#define __DSETID_H__ -+ -+/* Well-known DataSet IDs */ -+#define DSETID_UNUSED 0x00000000 -+#define DSETID_BOARD_DATA 0x00000001 /* Cal and board data */ -+#define DSETID_REGDB 0x00000002 /* Regulatory Database */ -+#define DSETID_POWER_CONTROL 0x00000003 /* TX Pwr Lim & Ant Gain */ -+#define DSETID_USER_CONFIG 0x00000004 /* User Configuration */ -+ -+#define DSETID_ANALOG_CONTROL_DATA_START 0x00000005 -+#define DSETID_ANALOG_CONTROL_DATA_END 0x00000025 -+/* -+ * Get DSETID for various reference clock speeds. -+ * For each speed there are three DataSets that correspond -+ * to the three columns of bank6 data (addr, 11a, 11b/g). -+ * This macro returns the dsetid of the first of those -+ * three DataSets. -+ */ -+#define ANALOG_CONTROL_DATA_DSETID(refclk) \ -+ (DSETID_ANALOG_CONTROL_DATA_START + 3*refclk) -+ -+/* -+ * There are TWO STARTUP_PATCH DataSets. -+ * DSETID_STARTUP_PATCH is historical, and was applied before BMI on -+ * earlier systems. On AR6002, it is applied after BMI, just like -+ * DSETID_STARTUP_PATCH2. -+ */ -+#define DSETID_STARTUP_PATCH 0x00000026 -+#define DSETID_GPIO_CONFIG_PATCH 0x00000027 -+#define DSETID_WLANREGS 0x00000028 /* override wlan regs */ -+#define DSETID_STARTUP_PATCH2 0x00000029 -+ -+#define DSETID_WOW_CONFIG 0x00000090 /* WoW Configuration */ -+ -+/* Add WHAL_INI_DATA_ID to DSETID_INI_DATA for a specific WHAL INI table. */ -+#define DSETID_INI_DATA 0x00000100 -+/* Reserved for WHAL INI Tables: 0x100..0x11f */ -+#define DSETID_INI_DATA_END 0x0000011f -+ -+#define DSETID_VENDOR_START 0x00010000 /* Vendor-defined DataSets */ -+ -+#define DSETID_INDEX_END 0xfffffffe /* Reserved to indicate the -+ end of a memory-based -+ DataSet Index */ -+#define DSETID_INDEX_FREE 0xffffffff /* An unused index entry */ -+ -+/* -+ * PATCH DataSet format: -+ * A list of patches, terminated by a patch with -+ * address=PATCH_END. -+ * -+ * This allows for patches to be stored in flash. -+ */ -+struct patch_s { -+ A_UINT32 *address; -+ A_UINT32 data; -+}; -+ -+/* -+ * Skip some patches. Can be used to erase a single patch in a -+ * patch DataSet without having to re-write the DataSet. May -+ * also be used to embed information for use by subsequent -+ * patch code. The "data" in a PATCH_SKIP tells how many -+ * bytes of length "patch_s" to skip. -+ */ -+#define PATCH_SKIP ((A_UINT32 *)0x00000000) -+ -+/* -+ * Execute code at the address specified by "data". -+ * The address of the patch structure is passed as -+ * the one parameter. -+ */ -+#define PATCH_CODE_ABS ((A_UINT32 *)0x00000001) -+ -+/* -+ * Same as PATCH_CODE_ABS, but treat "data" as an -+ * offset from the start of the patch word. -+ */ -+#define PATCH_CODE_REL ((A_UINT32 *)0x00000002) -+ -+/* Mark the end of this patch DataSet. */ -+#define PATCH_END ((A_UINT32 *)0xffffffff) -+ -+/* -+ * A DataSet which contains a Binary Patch to some other DataSet -+ * uses the original dsetid with the DSETID_BPATCH_FLAG bit set. -+ * Such a BPatch DataSet consists of BPatch metadata followed by -+ * the bdiff bytes. BPatch metadata consists of a single 32-bit -+ * word that contains the size of the BPatched final image. -+ * -+ * To create a suitable bdiff DataSet, use bdiff in host/tools/bdiff -+ * to create "diffs": -+ * bdiff -q -O -nooldmd5 -nonewmd5 -d ORIGfile NEWfile diffs -+ * Then add BPatch metadata to the start of "diffs". -+ * -+ * NB: There are some implementation-induced restrictions -+ * on which DataSets can be BPatched. -+ */ -+#define DSETID_BPATCH_FLAG 0x80000000 -+ -+#endif /* __DSETID_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/dset_internal.h -@@ -0,0 +1,39 @@ -+/* -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#ifndef __DSET_INTERNAL_H__ -+#define __DSET_INTERNAL_H__ -+ -+/* -+ * Internal dset definitions, common for DataSet layer. -+ */ -+ -+#define DSET_TYPE_STANDARD 0 -+#define DSET_TYPE_BPATCHED 1 -+#define DSET_TYPE_COMPRESSED 2 -+ -+/* Dataset descriptor */ -+ -+typedef struct dset_descriptor_s { -+ struct dset_descriptor_s *next; /* List link. NULL only at the last -+ descriptor */ -+ A_UINT16 id; /* Dset ID */ -+ A_UINT16 size; /* Dset size. */ -+ void *DataPtr; /* Pointer to raw data for standard -+ DataSet or pointer to original -+ dset_descriptor for patched -+ DataSet */ -+ A_UINT32 data_type; /* DSET_TYPE_*, above */ -+ -+ void *AuxPtr; /* Additional data that might -+ needed for data_type. For -+ example, pointer to patch -+ Dataset descriptor for BPatch. */ -+} dset_descriptor_t; -+ -+#endif /* __DSET_INTERNAL_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/gpio_api.h -@@ -0,0 +1,57 @@ -+#ifndef _GPIO_API_H_ -+#define _GPIO_API_H_ -+/* -+ * Copyright 2005 Atheros Communications, Inc., All Rights Reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+/* -+ * Host-side General Purpose I/O API. -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/gpio_api.h#1 $ -+ */ -+ -+/* -+ * Send a command to the Target in order to change output on GPIO pins. -+ */ -+A_STATUS wmi_gpio_output_set(struct wmi_t *wmip, -+ A_UINT32 set_mask, -+ A_UINT32 clear_mask, -+ A_UINT32 enable_mask, -+ A_UINT32 disable_mask); -+ -+/* -+ * Send a command to the Target requesting input state of GPIO pins. -+ */ -+A_STATUS wmi_gpio_input_get(struct wmi_t *wmip); -+ -+/* -+ * Send a command to the Target to change the value of a GPIO register. -+ */ -+A_STATUS wmi_gpio_register_set(struct wmi_t *wmip, -+ A_UINT32 gpioreg_id, -+ A_UINT32 value); -+ -+/* -+ * Send a command to the Target to fetch the value of a GPIO register. -+ */ -+A_STATUS wmi_gpio_register_get(struct wmi_t *wmip, A_UINT32 gpioreg_id); -+ -+/* -+ * Send a command to the Target, acknowledging some GPIO interrupts. -+ */ -+A_STATUS wmi_gpio_intr_ack(struct wmi_t *wmip, A_UINT32 ack_mask); -+ -+#endif /* _GPIO_API_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/gpio.h -@@ -0,0 +1,34 @@ -+/* -+ * Copyright (c) 2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#if defined(AR6001) -+#define GPIO_PIN_COUNT 18 -+#else -+#define GPIO_PIN_COUNT 18 -+#endif -+ -+/* -+ * Possible values for WMIX_GPIO_SET_REGISTER_CMDID. -+ * NB: These match hardware order, so that addresses can -+ * easily be computed. -+ */ -+#define GPIO_ID_OUT 0x00000000 -+#define GPIO_ID_OUT_W1TS 0x00000001 -+#define GPIO_ID_OUT_W1TC 0x00000002 -+#define GPIO_ID_ENABLE 0x00000003 -+#define GPIO_ID_ENABLE_W1TS 0x00000004 -+#define GPIO_ID_ENABLE_W1TC 0x00000005 -+#define GPIO_ID_IN 0x00000006 -+#define GPIO_ID_STATUS 0x00000007 -+#define GPIO_ID_STATUS_W1TS 0x00000008 -+#define GPIO_ID_STATUS_W1TC 0x00000009 -+#define GPIO_ID_PIN0 0x0000000a -+#define GPIO_ID_PIN(n) (GPIO_ID_PIN0+(n)) -+ -+#define GPIO_LAST_REGISTER_ID GPIO_ID_PIN(17) -+#define GPIO_ID_NONE 0xffffffff ---- /dev/null -+++ b/drivers/ar6000/include/hif.h -@@ -0,0 +1,296 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ * HIF specific declarations and prototypes -+ */ -+ -+#ifndef _HIF_H_ -+#define _HIF_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif /* __cplusplus */ -+ -+/* Header files */ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "a_osapi.h" -+ -+typedef struct htc_callbacks HTC_CALLBACKS; -+typedef struct hif_device HIF_DEVICE; -+ -+/* -+ * direction - Direction of transfer (HIF_READ/HIF_WRITE). -+ */ -+#define HIF_READ 0x00000001 -+#define HIF_WRITE 0x00000002 -+#define HIF_DIR_MASK (HIF_READ | HIF_WRITE) -+ -+/* -+ * type - An interface may support different kind of read/write commands. -+ * The command type is divided into a basic and an extended command -+ * and can be specified using HIF_BASIC_IO/HIF_EXTENDED_IO. -+ */ -+#define HIF_BASIC_IO 0x00000004 -+#define HIF_EXTENDED_IO 0x00000008 -+#define HIF_TYPE_MASK (HIF_BASIC_IO | HIF_EXTENDED_IO) -+ -+/* -+ * emode - This indicates the whether the command is to be executed in a -+ * blocking or non-blocking fashion (HIF_SYNCHRONOUS/ -+ * HIF_ASYNCHRONOUS). The read/write data paths in HTC have been -+ * implemented using the asynchronous mode allowing the the bus -+ * driver to indicate the completion of operation through the -+ * registered callback routine. The requirement primarily comes -+ * from the contexts these operations get called from (a driver's -+ * transmit context or the ISR context in case of receive). -+ * Support for both of these modes is essential. -+ */ -+#define HIF_SYNCHRONOUS 0x00000010 -+#define HIF_ASYNCHRONOUS 0x00000020 -+#define HIF_EMODE_MASK (HIF_SYNCHRONOUS | HIF_ASYNCHRONOUS) -+ -+/* -+ * dmode - An interface may support different kinds of commands based on -+ * the tradeoff between the amount of data it can carry and the -+ * setup time. Byte and Block modes are supported (HIF_BYTE_BASIS/ -+ * HIF_BLOCK_BASIS). In case of latter, the data is rounded off -+ * to the nearest block size by padding. The size of the block is -+ * configurable at compile time using the HIF_BLOCK_SIZE and is -+ * negotiated with the target during initialization after the -+ * dragon interrupts are enabled. -+ */ -+#define HIF_BYTE_BASIS 0x00000040 -+#define HIF_BLOCK_BASIS 0x00000080 -+#define HIF_DMODE_MASK (HIF_BYTE_BASIS | HIF_BLOCK_BASIS) -+ -+/* -+ * amode - This indicates if the address has to be incremented on dragon -+ * after every read/write operation (HIF?FIXED_ADDRESS/ -+ * HIF_INCREMENTAL_ADDRESS). -+ */ -+#define HIF_FIXED_ADDRESS 0x00000100 -+#define HIF_INCREMENTAL_ADDRESS 0x00000200 -+#define HIF_AMODE_MASK (HIF_FIXED_ADDRESS | HIF_INCREMENTAL_ADDRESS) -+ -+#define HIF_WR_ASYNC_BYTE_FIX \ -+ (HIF_WRITE | HIF_ASYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_FIXED_ADDRESS) -+#define HIF_WR_ASYNC_BYTE_INC \ -+ (HIF_WRITE | HIF_ASYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_INCREMENTAL_ADDRESS) -+#define HIF_WR_ASYNC_BLOCK_INC \ -+ (HIF_WRITE | HIF_ASYNCHRONOUS | HIF_EXTENDED_IO | HIF_BLOCK_BASIS | HIF_INCREMENTAL_ADDRESS) -+#define HIF_WR_SYNC_BYTE_FIX \ -+ (HIF_WRITE | HIF_SYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_FIXED_ADDRESS) -+#define HIF_WR_SYNC_BYTE_INC \ -+ (HIF_WRITE | HIF_SYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_INCREMENTAL_ADDRESS) -+#define HIF_WR_SYNC_BLOCK_INC \ -+ (HIF_WRITE | HIF_SYNCHRONOUS | HIF_EXTENDED_IO | HIF_BLOCK_BASIS | HIF_INCREMENTAL_ADDRESS) -+#define HIF_RD_SYNC_BYTE_INC \ -+ (HIF_READ | HIF_SYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_INCREMENTAL_ADDRESS) -+#define HIF_RD_SYNC_BYTE_FIX \ -+ (HIF_READ | HIF_SYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_FIXED_ADDRESS) -+#define HIF_RD_ASYNC_BYTE_FIX \ -+ (HIF_READ | HIF_ASYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_FIXED_ADDRESS) -+#define HIF_RD_ASYNC_BLOCK_FIX \ -+ (HIF_READ | HIF_ASYNCHRONOUS | HIF_EXTENDED_IO | HIF_BLOCK_BASIS | HIF_FIXED_ADDRESS) -+#define HIF_RD_ASYNC_BYTE_INC \ -+ (HIF_READ | HIF_ASYNCHRONOUS | HIF_EXTENDED_IO | HIF_BYTE_BASIS | HIF_INCREMENTAL_ADDRESS) -+#define HIF_RD_ASYNC_BLOCK_INC \ -+ (HIF_READ | HIF_ASYNCHRONOUS | HIF_EXTENDED_IO | HIF_BLOCK_BASIS | HIF_INCREMENTAL_ADDRESS) -+#define HIF_RD_SYNC_BLOCK_INC \ -+ (HIF_READ | HIF_SYNCHRONOUS | HIF_EXTENDED_IO | HIF_BLOCK_BASIS | HIF_INCREMENTAL_ADDRESS) -+ -+ -+typedef enum { -+ HIF_DEVICE_POWER_STATE = 0, -+ HIF_DEVICE_GET_MBOX_BLOCK_SIZE, -+ HIF_DEVICE_GET_MBOX_ADDR, -+ HIF_DEVICE_GET_PENDING_EVENTS_FUNC, -+ HIF_DEVICE_GET_IRQ_PROC_MODE, -+ HIF_DEVICE_GET_RECV_EVENT_MASK_UNMASK_FUNC, -+} HIF_DEVICE_CONFIG_OPCODE; -+ -+/* -+ * HIF CONFIGURE definitions: -+ * -+ * HIF_DEVICE_GET_MBOX_BLOCK_SIZE -+ * input : none -+ * output : array of 4 A_UINT32s -+ * notes: block size is returned for each mailbox (4) -+ * -+ * HIF_DEVICE_GET_MBOX_ADDR -+ * input : none -+ * output : array of 4 A_UINT32 -+ * notes: address is returned for each mailbox (4) in the array -+ * -+ * HIF_DEVICE_GET_PENDING_EVENTS_FUNC -+ * input : none -+ * output: HIF_PENDING_EVENTS_FUNC function pointer -+ * notes: this is optional for the HIF layer, if the request is -+ * not handled then it indicates that the upper layer can use -+ * the standard device methods to get pending events (IRQs, mailbox messages etc..) -+ * otherwise it can call the function pointer to check pending events. -+ * -+ * HIF_DEVICE_GET_IRQ_PROC_MODE -+ * input : none -+ * output : HIF_DEVICE_IRQ_PROCESSING_MODE (interrupt processing mode) -+ * note: the hif layer interfaces with the underlying OS-specific bus driver. The HIF -+ * layer can report whether IRQ processing is requires synchronous behavior or -+ * can be processed using asynchronous bus requests (typically faster). -+ * -+ * HIF_DEVICE_GET_RECV_EVENT_MASK_UNMASK_FUNC -+ * input : -+ * output : HIF_MASK_UNMASK_RECV_EVENT function pointer -+ * notes: this is optional for the HIF layer. The HIF layer may require a special mechanism -+ * to mask receive message events. The upper layer can call this pointer when it needs -+ * to mask/unmask receive events (in case it runs out of buffers). -+ * -+ * -+ */ -+ -+typedef enum { -+ HIF_DEVICE_IRQ_SYNC_ONLY, /* for HIF implementations that require the DSR to process all -+ interrupts before returning */ -+ HIF_DEVICE_IRQ_ASYNC_SYNC, /* for HIF implementations that allow DSR to process interrupts -+ using ASYNC I/O (that is HIFAckInterrupt can be called at a -+ later time */ -+} HIF_DEVICE_IRQ_PROCESSING_MODE; -+ -+#define HIF_MAX_DEVICES 1 -+ -+struct htc_callbacks { -+ A_UCHAR *name; -+ A_UINT32 id; -+ A_STATUS (* deviceInsertedHandler)(void *hif_handle); -+ A_STATUS (* deviceRemovedHandler)(void *htc_handle, A_STATUS status); -+ A_STATUS (* deviceSuspendHandler)(void *htc_handle); -+ A_STATUS (* deviceResumeHandler)(void *htc_handle); -+ A_STATUS (* deviceWakeupHandler)(void *htc_handle); -+ A_STATUS (* rwCompletionHandler)(void *context, A_STATUS status); -+ A_STATUS (* dsrHandler)(void *htc_handle); -+}; -+ -+ -+#define HIF_OTHER_EVENTS (1 << 0) /* other interrupts (non-Recv) are pending, host -+ needs to read the register table to figure out what */ -+#define HIF_RECV_MSG_AVAIL (1 << 1) /* pending recv packet */ -+ -+typedef struct _HIF_PENDING_EVENTS_INFO { -+ A_UINT32 Events; -+ A_UINT32 LookAhead; -+} HIF_PENDING_EVENTS_INFO; -+ -+ /* function to get pending events , some HIF modules use special mechanisms -+ * to detect packet available and other interrupts */ -+typedef A_STATUS ( *HIF_PENDING_EVENTS_FUNC)(HIF_DEVICE *device, -+ HIF_PENDING_EVENTS_INFO *pEvents, -+ void *AsyncContext); -+ -+#define HIF_MASK_RECV TRUE -+#define HIF_UNMASK_RECV FALSE -+ /* function to mask recv events */ -+typedef A_STATUS ( *HIF_MASK_UNMASK_RECV_EVENT)(HIF_DEVICE *device, -+ A_BOOL Mask, -+ void *AsyncContext); -+ -+ -+/* -+ * This API is used by the HTC layer to initialize the HIF layer and to -+ * register different callback routines. Support for following events has -+ * been captured - DSR, Read/Write completion, Device insertion/removal, -+ * Device suspension/resumption/wakeup. In addition to this, the API is -+ * also used to register the name and the revision of the chip. The latter -+ * can be used to verify the revision of the chip read from the device -+ * before reporting it to HTC. -+ */ -+int HIFInit(HTC_CALLBACKS *callbacks); -+ -+/* -+ * This API is used to provide the read/write interface over the specific bus -+ * interface. -+ * address - Starting address in the dragon's address space. For mailbox -+ * writes, it refers to the start of the mbox boundary. It should -+ * be ensured that the last byte falls on the mailbox's EOM. For -+ * mailbox reads, it refers to the end of the mbox boundary. -+ * buffer - Pointer to the buffer containg the data to be transmitted or -+ * received. -+ * length - Amount of data to be transmitted or received. -+ * request - Characterizes the attributes of the command. -+ */ -+A_STATUS -+HIFReadWrite(HIF_DEVICE *device, -+ A_UINT32 address, -+ A_UCHAR *buffer, -+ A_UINT32 length, -+ A_UINT32 request, -+ void *context); -+ -+/* -+ * This can be initiated from the unload driver context ie when the HTCShutdown -+ * routine is called. -+ */ -+void HIFShutDownDevice(HIF_DEVICE *device); -+ -+/* -+ * This should translate to an acknowledgment to the bus driver indicating that -+ * the previous interrupt request has been serviced and the all the relevant -+ * sources have been cleared. HTC is ready to process more interrupts. -+ * This should prevent the bus driver from raising an interrupt unless the -+ * previous one has been serviced and acknowledged using the previous API. -+ */ -+void HIFAckInterrupt(HIF_DEVICE *device); -+ -+void HIFMaskInterrupt(HIF_DEVICE *device); -+ -+void HIFUnMaskInterrupt(HIF_DEVICE *device); -+ -+/* -+ * This set of functions are to be used by the bus driver to notify -+ * the HIF module about various events. -+ * These are not implemented if the bus driver provides an alternative -+ * way for this notification though callbacks for instance. -+ */ -+int HIFInsertEventNotify(void); -+ -+int HIFRemoveEventNotify(void); -+ -+int HIFIRQEventNotify(void); -+ -+int HIFRWCompleteEventNotify(void); -+ -+/* -+ * This function associates a opaque handle with the HIF layer -+ * to be used in communication with upper layer i.e. HTC. -+ * This would normaly be a pointer to htc_target data structure. -+ */ -+void HIFSetHandle(void *hif_handle, void *handle); -+ -+A_STATUS -+HIFConfigureDevice(HIF_DEVICE *device, HIF_DEVICE_CONFIG_OPCODE opcode, -+ void *config, A_UINT32 configLen); -+ -+ -+struct device; -+struct device* -+HIFGetOSDevice(HIF_DEVICE *device); -+ -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _HIF_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/host_version.h -@@ -0,0 +1,49 @@ -+#ifndef _HOST_VERSION_H_ -+#define _HOST_VERSION_H_ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * This file contains version information for the sample host driver for the -+ * AR6000 chip -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/host_version.h#2 $ -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+#include <AR6K_version.h> -+ -+/* -+ * The version number is made up of major, minor, patch and build -+ * numbers. These are 16 bit numbers. The build and release script will -+ * set the build number using a Perforce counter. Here the build number is -+ * set to 9999 so that builds done without the build-release script are easily -+ * identifiable. -+ */ -+ -+#define ATH_SW_VER_MAJOR __VER_MAJOR_ -+#define ATH_SW_VER_MINOR __VER_MINOR_ -+#define ATH_SW_VER_PATCH __VER_PATCH_ -+#define ATH_SW_VER_BUILD 9999 -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _HOST_VERSION_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/htc_api.h -@@ -0,0 +1,436 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef _HTC_API_H_ -+#define _HTC_API_H_ -+ -+#include <htc.h> -+#include <htc_services.h> -+#include "htc_packet.h" -+ -+#ifdef __cplusplus -+extern "C" { -+#endif /* __cplusplus */ -+ -+/* TODO.. for BMI */ -+#define ENDPOINT1 0 -+// TODO -remove me, but we have to fix BMI first -+#define HTC_MAILBOX_NUM_MAX 4 -+ -+ -+/* ------ Endpoint IDS ------ */ -+typedef enum -+{ -+ ENDPOINT_UNUSED = -1, -+ ENDPOINT_0 = 0, -+ ENDPOINT_1 = 1, -+ ENDPOINT_2 = 2, -+ ENDPOINT_3, -+ ENDPOINT_4, -+ ENDPOINT_5, -+ ENDPOINT_6, -+ ENDPOINT_7, -+ ENDPOINT_8, -+ ENDPOINT_MAX, -+} HTC_ENDPOINT_ID; -+ -+/* this is the amount of header room required by users of HTC */ -+#define HTC_HEADER_LEN HTC_HDR_LENGTH -+ -+typedef void *HTC_HANDLE; -+ -+typedef A_UINT16 HTC_SERVICE_ID; -+ -+typedef struct _HTC_INIT_INFO { -+ void (*AddInstance)(HTC_HANDLE); -+ void (*DeleteInstance)(void *Instance); -+ void (*TargetFailure)(void *Instance, A_STATUS Status); -+} HTC_INIT_INFO; -+ -+/* per service connection send completion */ -+typedef void (*HTC_EP_SEND_PKT_COMPLETE)(void *,HTC_PACKET *); -+/* per service connection pkt received */ -+typedef void (*HTC_EP_RECV_PKT)(void *,HTC_PACKET *); -+ -+/* Optional per service connection receive buffer re-fill callback, -+ * On some OSes (like Linux) packets are allocated from a global pool and indicated up -+ * to the network stack. The driver never gets the packets back from the OS. For these OSes -+ * a refill callback can be used to allocate and re-queue buffers into HTC. -+ * -+ * On other OSes, the network stack can call into the driver's OS-specifc "return_packet" handler and -+ * the driver can re-queue these buffers into HTC. In this regard a refill callback is -+ * unnecessary */ -+typedef void (*HTC_EP_RECV_REFILL)(void *, HTC_ENDPOINT_ID Endpoint); -+ -+/* Optional per service connection callback when a send queue is full. This can occur if the -+ * host continues queueing up TX packets faster than credits can arrive -+ * To prevent the host (on some Oses like Linux) from continuously queueing packets -+ * and consuming resources, this callback is provided so that that the host -+ * can disable TX in the subsystem (i.e. network stack) -+ * Other OSes require a "per-packet" indication_RAW_STREAM_NUM_MAX for each completed TX packet, this -+ * closed loop mechanism will prevent the network stack from overunning the NIC */ -+typedef void (*HTC_EP_SEND_QUEUE_FULL)(void *, HTC_ENDPOINT_ID Endpoint); -+ -+typedef struct _HTC_EP_CALLBACKS { -+ void *pContext; /* context for each callback */ -+ HTC_EP_SEND_PKT_COMPLETE EpTxComplete; /* tx completion callback for connected endpoint */ -+ HTC_EP_RECV_PKT EpRecv; /* receive callback for connected endpoint */ -+ HTC_EP_RECV_REFILL EpRecvRefill; /* OPTIONAL receive re-fill callback for connected endpoint */ -+ HTC_EP_SEND_QUEUE_FULL EpSendFull; /* OPTIONAL send full callback */ -+} HTC_EP_CALLBACKS; -+ -+/* service connection information */ -+typedef struct _HTC_SERVICE_CONNECT_REQ { -+ HTC_SERVICE_ID ServiceID; /* service ID to connect to */ -+ A_UINT16 ConnectionFlags; /* connection flags, see htc protocol definition */ -+ A_UINT8 *pMetaData; /* ptr to optional service-specific meta-data */ -+ A_UINT8 MetaDataLength; /* optional meta data length */ -+ HTC_EP_CALLBACKS EpCallbacks; /* endpoint callbacks */ -+ int MaxSendQueueDepth; /* maximum depth of any send queue */ -+} HTC_SERVICE_CONNECT_REQ; -+ -+/* service connection response information */ -+typedef struct _HTC_SERVICE_CONNECT_RESP { -+ A_UINT8 *pMetaData; /* caller supplied buffer to optional meta-data */ -+ A_UINT8 BufferLength; /* length of caller supplied buffer */ -+ A_UINT8 ActualLength; /* actual length of meta data */ -+ HTC_ENDPOINT_ID Endpoint; /* endpoint to communicate over */ -+ int MaxMsgLength; /* max length of all messages over this endpoint */ -+ A_UINT8 ConnectRespCode; /* connect response code from target */ -+} HTC_SERVICE_CONNECT_RESP; -+ -+/* endpoint distribution structure */ -+typedef struct _HTC_ENDPOINT_CREDIT_DIST { -+ struct _HTC_ENDPOINT_CREDIT_DIST *pNext; -+ struct _HTC_ENDPOINT_CREDIT_DIST *pPrev; -+ HTC_SERVICE_ID ServiceID; /* Service ID (set by HTC) */ -+ HTC_ENDPOINT_ID Endpoint; /* endpoint for this distribution struct (set by HTC) */ -+ A_UINT32 DistFlags; /* distribution flags, distribution function can -+ set default activity using SET_EP_ACTIVE() macro */ -+ int TxCreditsNorm; /* credits for normal operation, anything above this -+ indicates the endpoint is over-subscribed, this field -+ is only relevant to the credit distribution function */ -+ int TxCreditsMin; /* floor for credit distribution, this field is -+ only relevant to the credit distribution function */ -+ int TxCreditsAssigned; /* number of credits assigned to this EP, this field -+ is only relevant to the credit dist function */ -+ int TxCredits; /* current credits available, this field is used by -+ HTC to determine whether a message can be sent or -+ must be queued */ -+ int TxCreditsToDist; /* pending credits to distribute on this endpoint, this -+ is set by HTC when credit reports arrive. -+ The credit distribution functions sets this to zero -+ when it distributes the credits */ -+ int TxCreditsSeek; /* this is the number of credits that the current pending TX -+ packet needs to transmit. This is set by HTC when -+ and endpoint needs credits in order to transmit */ -+ int TxCreditSize; /* size in bytes of each credit (set by HTC) */ -+ int TxCreditsPerMaxMsg; /* credits required for a maximum sized messages (set by HTC) */ -+ void *pHTCReserved; /* reserved for HTC use */ -+} HTC_ENDPOINT_CREDIT_DIST; -+ -+#define HTC_EP_ACTIVE (1 << 31) -+ -+/* macro to check if an endpoint has gone active, useful for credit -+ * distributions */ -+#define IS_EP_ACTIVE(epDist) ((epDist)->DistFlags & HTC_EP_ACTIVE) -+#define SET_EP_ACTIVE(epDist) (epDist)->DistFlags |= HTC_EP_ACTIVE -+ -+ /* credit distibution code that is passed into the distrbution function, -+ * there are mandatory and optional codes that must be handled */ -+typedef enum _HTC_CREDIT_DIST_REASON { -+ HTC_CREDIT_DIST_SEND_COMPLETE = 0, /* credits available as a result of completed -+ send operations (MANDATORY) resulting in credit reports */ -+ HTC_CREDIT_DIST_ACTIVITY_CHANGE = 1, /* a change in endpoint activity occured (OPTIONAL) */ -+ HTC_CREDIT_DIST_SEEK_CREDITS, /* an endpoint needs to "seek" credits (OPTIONAL) */ -+ HTC_DUMP_CREDIT_STATE /* for debugging, dump any state information that is kept by -+ the distribution function */ -+} HTC_CREDIT_DIST_REASON; -+ -+typedef void (*HTC_CREDIT_DIST_CALLBACK)(void *Context, -+ HTC_ENDPOINT_CREDIT_DIST *pEPList, -+ HTC_CREDIT_DIST_REASON Reason); -+ -+typedef void (*HTC_CREDIT_INIT_CALLBACK)(void *Context, -+ HTC_ENDPOINT_CREDIT_DIST *pEPList, -+ int TotalCredits); -+ -+ /* endpoint statistics action */ -+typedef enum _HTC_ENDPOINT_STAT_ACTION { -+ HTC_EP_STAT_SAMPLE = 0, /* only read statistics */ -+ HTC_EP_STAT_SAMPLE_AND_CLEAR = 1, /* sample and immediately clear statistics */ -+ HTC_EP_STAT_CLEAR /* clear only */ -+} HTC_ENDPOINT_STAT_ACTION; -+ -+ /* endpoint statistics */ -+typedef struct _HTC_ENDPOINT_STATS { -+ A_UINT32 TxCreditLowIndications; /* number of times the host set the credit-low flag in a send message on -+ this endpoint */ -+ A_UINT32 TxIssued; /* running count of TX packets issued */ -+ A_UINT32 TxCreditRpts; /* running count of total credit reports received for this endpoint */ -+ A_UINT32 TxCreditRptsFromRx; -+ A_UINT32 TxCreditRptsFromOther; -+ A_UINT32 TxCreditRptsFromEp0; -+ A_UINT32 TxCreditsFromRx; /* count of credits received via Rx packets on this endpoint */ -+ A_UINT32 TxCreditsFromOther; /* count of credits received via another endpoint */ -+ A_UINT32 TxCreditsFromEp0; /* count of credits received via another endpoint */ -+ A_UINT32 TxCreditsConsummed; /* count of consummed credits */ -+ A_UINT32 TxCreditsReturned; /* count of credits returned */ -+ A_UINT32 RxReceived; /* count of RX packets received */ -+ A_UINT32 RxLookAheads; /* count of lookahead records -+ found in messages received on this endpoint */ -+} HTC_ENDPOINT_STATS; -+ -+/* ------ Function Prototypes ------ */ -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Initialize HTC -+ @function name: HTCInit -+ @input: pInfo - initialization information -+ @output: -+ @return: A_OK on success -+ @notes: The caller initializes global HTC state and registers various instance -+ notification callbacks (see HTC_INIT_INFO). -+ -+ @example: -+ @see also: HTCShutdown -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+A_STATUS HTCInit(HTC_INIT_INFO *pInfo); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Get the underlying HIF device handle -+ @function name: HTCGetHifDevice -+ @input: HTCHandle - handle passed into the AddInstance callback -+ @output: -+ @return: opaque HIF device handle usable in HIF API calls. -+ @notes: -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void *HTCGetHifDevice(HTC_HANDLE HTCHandle); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Set the associated instance for the HTC handle -+ @function name: HTCSetInstance -+ @input: HTCHandle - handle passed into the AddInstance callback -+ Instance - caller supplied instance object -+ @output: -+ @return: -+ @notes: Caller must set the instance information for the HTC handle in order to receive -+ notifications for instance deletion (DeleteInstance callback is called) and for target -+ failure notification. -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void HTCSetInstance(HTC_HANDLE HTCHandle, void *Instance); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Set credit distribution parameters -+ @function name: HTCSetCreditDistribution -+ @input: HTCHandle - HTC handle -+ pCreditDistCont - caller supplied context to pass into distribution functions -+ CreditDistFunc - Distribution function callback -+ CreditDistInit - Credit Distribution initialization callback -+ ServicePriorityOrder - Array containing list of service IDs, lowest index is highest -+ priority -+ ListLength - number of elements in ServicePriorityOrder -+ @output: -+ @return: -+ @notes: The user can set a custom credit distribution function to handle special requirements -+ for each endpoint. A default credit distribution routine can be used by setting -+ CreditInitFunc to NULL. The default credit distribution is only provided for simple -+ "fair" credit distribution without regard to any prioritization. -+ -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void HTCSetCreditDistribution(HTC_HANDLE HTCHandle, -+ void *pCreditDistContext, -+ HTC_CREDIT_DIST_CALLBACK CreditDistFunc, -+ HTC_CREDIT_INIT_CALLBACK CreditInitFunc, -+ HTC_SERVICE_ID ServicePriorityOrder[], -+ int ListLength); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Wait for the target to indicate the HTC layer is ready -+ @function name: HTCWaitTarget -+ @input: HTCHandle - HTC handle -+ @output: -+ @return: -+ @notes: This API blocks until the target responds with an HTC ready message. -+ The caller should not connect services until the target has indicated it is -+ ready. -+ @example: -+ @see also: HTCConnectService -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+A_STATUS HTCWaitTarget(HTC_HANDLE HTCHandle); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Start target service communications -+ @function name: HTCStart -+ @input: HTCHandle - HTC handle -+ @output: -+ @return: -+ @notes: This API indicates to the target that the service connection phase is complete -+ and the target can freely start all connected services. This API should only be -+ called AFTER all service connections have been made. TCStart will issue a -+ SETUP_COMPLETE message to the target to indicate that all service connections -+ have been made and the target can start communicating over the endpoints. -+ @example: -+ @see also: HTCConnectService -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+A_STATUS HTCStart(HTC_HANDLE HTCHandle); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Add receive packet to HTC -+ @function name: HTCAddReceivePkt -+ @input: HTCHandle - HTC handle -+ pPacket - HTC receive packet to add -+ @output: -+ @return: A_OK on success -+ @notes: user must supply HTC packets for capturing incomming HTC frames. The caller -+ must initialize each HTC packet using the SET_HTC_PACKET_INFO_RX_REFILL() -+ macro. -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+A_STATUS HTCAddReceivePkt(HTC_HANDLE HTCHandle, HTC_PACKET *pPacket); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Connect to an HTC service -+ @function name: HTCConnectService -+ @input: HTCHandle - HTC handle -+ pReq - connection details -+ @output: pResp - connection response -+ @return: -+ @notes: Service connections must be performed before HTCStart. User provides callback handlers -+ for various endpoint events. -+ @example: -+ @see also: HTCStart -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+A_STATUS HTCConnectService(HTC_HANDLE HTCHandle, -+ HTC_SERVICE_CONNECT_REQ *pReq, -+ HTC_SERVICE_CONNECT_RESP *pResp); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Send an HTC packet -+ @function name: HTCSendPkt -+ @input: HTCHandle - HTC handle -+ pPacket - packet to send -+ @output: -+ @return: A_OK -+ @notes: Caller must initialize packet using SET_HTC_PACKET_INFO_TX() macro. -+ This interface is fully asynchronous. On error, HTC SendPkt will -+ call the registered Endpoint callback to cleanup the packet. -+ @example: -+ @see also: HTCFlushEndpoint -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+A_STATUS HTCSendPkt(HTC_HANDLE HTCHandle, HTC_PACKET *pPacket); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Stop HTC service communications -+ @function name: HTCStop -+ @input: HTCHandle - HTC handle -+ @output: -+ @return: -+ @notes: HTC communications is halted. All receive and pending TX packets will -+ be flushed. -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void HTCStop(HTC_HANDLE HTCHandle); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Shutdown HTC -+ @function name: HTCShutdown -+ @input: -+ @output: -+ @return: -+ @notes: This cleans up all resources allocated by HTCInit(). -+ @example: -+ @see also: HTCInit -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void HTCShutDown(void); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Flush pending TX packets -+ @function name: HTCFlushEndpoint -+ @input: HTCHandle - HTC handle -+ Endpoint - Endpoint to flush -+ Tag - flush tag -+ @output: -+ @return: -+ @notes: The Tag parameter is used to selectively flush packets with matching tags. -+ The value of 0 forces all packets to be flush regardless of tag. -+ @example: -+ @see also: HTCSendPkt -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void HTCFlushEndpoint(HTC_HANDLE HTCHandle, HTC_ENDPOINT_ID Endpoint, HTC_TX_TAG Tag); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Dump credit distribution state -+ @function name: HTCDumpCreditStates -+ @input: HTCHandle - HTC handle -+ @output: -+ @return: -+ @notes: This dumps all credit distribution information to the debugger -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void HTCDumpCreditStates(HTC_HANDLE HTCHandle); -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Indicate a traffic activity change on an endpoint -+ @function name: HTCIndicateActivityChange -+ @input: HTCHandle - HTC handle -+ Endpoint - endpoint in which activity has changed -+ Active - TRUE if active, FALSE if it has become inactive -+ @output: -+ @return: -+ @notes: This triggers the registered credit distribution function to -+ re-adjust credits for active/inactive endpoints. -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+void HTCIndicateActivityChange(HTC_HANDLE HTCHandle, -+ HTC_ENDPOINT_ID Endpoint, -+ A_BOOL Active); -+ -+/*+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ -+ @desc: Get endpoint statistics -+ @function name: HTCGetEndpointStatistics -+ @input: HTCHandle - HTC handle -+ Endpoint - Endpoint identifier -+ Action - action to take with statistics -+ @output: -+ pStats - statistics that were sampled (can be NULL if Action is HTC_EP_STAT_CLEAR) -+ -+ @return: TRUE if statistics profiling is enabled, otherwise FALSE. -+ -+ @notes: Statistics is a compile-time option and this function may return FALSE -+ if HTC is not compiled with profiling. -+ -+ The caller can specify the statistic "action" to take when sampling -+ the statistics. This includes: -+ -+ HTC_EP_STAT_SAMPLE: The pStats structure is filled with the current values. -+ HTC_EP_STAT_SAMPLE_AND_CLEAR: The structure is filled and the current statistics -+ are cleared. -+ HTC_EP_STAT_CLEA : the statistics are cleared, the called can pass a NULL value for -+ pStats -+ -+ @example: -+ @see also: -++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/ -+A_BOOL HTCGetEndpointStatistics(HTC_HANDLE HTCHandle, -+ HTC_ENDPOINT_ID Endpoint, -+ HTC_ENDPOINT_STAT_ACTION Action, -+ HTC_ENDPOINT_STATS *pStats); -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _HTC_API_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/htc.h -@@ -0,0 +1,190 @@ -+/* -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+ -+#ifndef __HTC_H__ -+#define __HTC_H__ -+ -+#ifndef ATH_TARGET -+#include "athstartpack.h" -+#endif -+ -+#define A_OFFSETOF(type,field) (int)(&(((type *)NULL)->field)) -+ -+#define ASSEMBLE_UNALIGNED_UINT16(p,highbyte,lowbyte) \ -+ (((A_UINT16)(((A_UINT8 *)(p))[(highbyte)])) << 8 | (A_UINT16)(((A_UINT8 *)(p))[(lowbyte)])) -+ -+/* alignment independent macros (little-endian) to fetch UINT16s or UINT8s from a -+ * structure using only the type and field name. -+ * Use these macros if there is the potential for unaligned buffer accesses. */ -+#define A_GET_UINT16_FIELD(p,type,field) \ -+ ASSEMBLE_UNALIGNED_UINT16(p,\ -+ A_OFFSETOF(type,field) + 1, \ -+ A_OFFSETOF(type,field)) -+ -+#define A_SET_UINT16_FIELD(p,type,field,value) \ -+{ \ -+ ((A_UINT8 *)(p))[A_OFFSETOF(type,field)] = (A_UINT8)(value); \ -+ ((A_UINT8 *)(p))[A_OFFSETOF(type,field) + 1] = (A_UINT8)((value) >> 8); \ -+} -+ -+#define A_GET_UINT8_FIELD(p,type,field) \ -+ ((A_UINT8 *)(p))[A_OFFSETOF(type,field)] -+ -+#define A_SET_UINT8_FIELD(p,type,field,value) \ -+ ((A_UINT8 *)(p))[A_OFFSETOF(type,field)] = (value) -+ -+/****** DANGER DANGER *************** -+ * -+ * The frame header length and message formats defined herein were -+ * selected to accommodate optimal alignment for target processing. This reduces code -+ * size and improves performance. -+ * -+ * Any changes to the header length may alter the alignment and cause exceptions -+ * on the target. When adding to the message structures insure that fields are -+ * properly aligned. -+ * -+ */ -+ -+/* HTC frame header */ -+typedef PREPACK struct _HTC_FRAME_HDR{ -+ /* do not remove or re-arrange these fields, these are minimally required -+ * to take advantage of 4-byte lookaheads in some hardware implementations */ -+ A_UINT8 EndpointID; -+ A_UINT8 Flags; -+ A_UINT16 PayloadLen; /* length of data (including trailer) that follows the header */ -+ -+ /***** end of 4-byte lookahead ****/ -+ -+ A_UINT8 ControlBytes[2]; -+ -+ /* message payload starts after the header */ -+ -+} POSTPACK HTC_FRAME_HDR; -+ -+/* frame header flags */ -+#define HTC_FLAGS_NEED_CREDIT_UPDATE (1 << 0) -+#define HTC_FLAGS_RECV_TRAILER (1 << 1) -+ -+ -+#define HTC_HDR_LENGTH (sizeof(HTC_FRAME_HDR)) -+#define HTC_MAX_TRAILER_LENGTH 255 -+#define HTC_MAX_PAYLOAD_LENGTH (2048 - sizeof(HTC_FRAME_HDR)) -+ -+/* HTC control message IDs */ -+typedef enum { -+ HTC_MSG_READY_ID = 1, -+ HTC_MSG_CONNECT_SERVICE_ID = 2, -+ HTC_MSG_CONNECT_SERVICE_RESPONSE_ID = 3, -+ HTC_MSG_SETUP_COMPLETE_ID = 4, -+} HTC_MSG_IDS; -+ -+#define HTC_MAX_CONTROL_MESSAGE_LENGTH 256 -+ -+/* base message ID header */ -+typedef PREPACK struct { -+ A_UINT16 MessageID; -+} POSTPACK HTC_UNKNOWN_MSG; -+ -+/* HTC ready message -+ * direction : target-to-host */ -+typedef PREPACK struct { -+ A_UINT16 MessageID; /* ID */ -+ A_UINT16 CreditCount; /* number of credits the target can offer */ -+ A_UINT16 CreditSize; /* size of each credit */ -+ A_UINT8 MaxEndpoints; /* maximum number of endpoints the target has resources for */ -+ A_UINT8 _Pad1; -+} POSTPACK HTC_READY_MSG; -+ -+#define HTC_SERVICE_META_DATA_MAX_LENGTH 128 -+ -+/* connect service -+ * direction : host-to-target */ -+typedef PREPACK struct { -+ A_UINT16 MessageID; -+ A_UINT16 ServiceID; /* service ID of the service to connect to */ -+ A_UINT16 ConnectionFlags; /* connection flags */ -+ -+#define HTC_CONNECT_FLAGS_REDUCE_CREDIT_DRIBBLE (1 << 2) /* reduce credit dribbling when -+ the host needs credits */ -+#define HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_MASK (0x3) -+#define HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_ONE_FOURTH 0x0 -+#define HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_ONE_HALF 0x1 -+#define HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_THREE_FOURTHS 0x2 -+#define HTC_CONNECT_FLAGS_THRESHOLD_LEVEL_UNITY 0x3 -+ -+ A_UINT8 ServiceMetaLength; /* length of meta data that follows */ -+ A_UINT8 _Pad1; -+ -+ /* service-specific meta data starts after the header */ -+ -+} POSTPACK HTC_CONNECT_SERVICE_MSG; -+ -+/* connect response -+ * direction : target-to-host */ -+typedef PREPACK struct { -+ A_UINT16 MessageID; -+ A_UINT16 ServiceID; /* service ID that the connection request was made */ -+ A_UINT8 Status; /* service connection status */ -+ A_UINT8 EndpointID; /* assigned endpoint ID */ -+ A_UINT16 MaxMsgSize; /* maximum expected message size on this endpoint */ -+ A_UINT8 ServiceMetaLength; /* length of meta data that follows */ -+ A_UINT8 _Pad1; -+ -+ /* service-specific meta data starts after the header */ -+ -+} POSTPACK HTC_CONNECT_SERVICE_RESPONSE_MSG; -+ -+typedef PREPACK struct { -+ A_UINT16 MessageID; -+ /* currently, no other fields */ -+} POSTPACK HTC_SETUP_COMPLETE_MSG; -+ -+ -+/* connect response status codes */ -+#define HTC_SERVICE_SUCCESS 0 /* success */ -+#define HTC_SERVICE_NOT_FOUND 1 /* service could not be found */ -+#define HTC_SERVICE_FAILED 2 /* specific service failed the connect */ -+#define HTC_SERVICE_NO_RESOURCES 3 /* no resources (i.e. no more endpoints) */ -+#define HTC_SERVICE_NO_MORE_EP 4 /* specific service is not allowing any more -+ endpoints */ -+ -+/* report record IDs */ -+typedef enum { -+ HTC_RECORD_NULL = 0, -+ HTC_RECORD_CREDITS = 1, -+ HTC_RECORD_LOOKAHEAD = 2, -+} HTC_RPT_IDS; -+ -+typedef PREPACK struct { -+ A_UINT8 RecordID; /* Record ID */ -+ A_UINT8 Length; /* Length of record */ -+} POSTPACK HTC_RECORD_HDR; -+ -+typedef PREPACK struct { -+ A_UINT8 EndpointID; /* Endpoint that owns these credits */ -+ A_UINT8 Credits; /* credits to report since last report */ -+} POSTPACK HTC_CREDIT_REPORT; -+ -+typedef PREPACK struct { -+ A_UINT8 PreValid; /* pre valid guard */ -+ A_UINT8 LookAhead[4]; /* 4 byte lookahead */ -+ A_UINT8 PostValid; /* post valid guard */ -+ -+ /* NOTE: the LookAhead array is guarded by a PreValid and Post Valid guard bytes. -+ * The PreValid bytes must equal the inverse of the PostValid byte */ -+ -+} POSTPACK HTC_LOOKAHEAD_REPORT; -+ -+#ifndef ATH_TARGET -+#include "athendpack.h" -+#endif -+ -+ -+#endif /* __HTC_H__ */ -+ ---- /dev/null -+++ b/drivers/ar6000/include/htc_packet.h -@@ -0,0 +1,138 @@ -+/* -+ * -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifndef HTC_PACKET_H_ -+#define HTC_PACKET_H_ -+ -+ -+#include "dl_list.h" -+ -+struct _HTC_PACKET; -+ -+typedef void (* HTC_PACKET_COMPLETION)(void *,struct _HTC_PACKET *); -+ -+typedef A_UINT16 HTC_TX_TAG; -+ -+typedef struct _HTC_TX_PACKET_INFO { -+ HTC_TX_TAG Tag; /* tag used to selective flush packets */ -+} HTC_TX_PACKET_INFO; -+ -+#define HTC_TX_PACKET_TAG_ALL 0 /* a tag of zero is reserved and used to flush ALL packets */ -+#define HTC_TX_PACKET_TAG_INTERNAL 1 /* internal tags start here */ -+#define HTC_TX_PACKET_TAG_USER_DEFINED (HTC_TX_PACKET_TAG_INTERNAL + 9) /* user-defined tags start here */ -+ -+typedef struct _HTC_RX_PACKET_INFO { -+ A_UINT32 Unused; /* for future use and to make compilers happy */ -+} HTC_RX_PACKET_INFO; -+ -+/* wrapper around endpoint-specific packets */ -+typedef struct _HTC_PACKET { -+ DL_LIST ListLink; /* double link */ -+ void *pPktContext; /* caller's per packet specific context */ -+ -+ A_UINT8 *pBufferStart; /* the true buffer start , the caller can -+ store the real buffer start here. In -+ receive callbacks, the HTC layer sets pBuffer -+ to the start of the payload past the header. This -+ field allows the caller to reset pBuffer when it -+ recycles receive packets back to HTC */ -+ /* -+ * Pointer to the start of the buffer. In the transmit -+ * direction this points to the start of the payload. In the -+ * receive direction, however, the buffer when queued up -+ * points to the start of the HTC header but when returned -+ * to the caller points to the start of the payload -+ */ -+ A_UINT8 *pBuffer; /* payload start (RX/TX) */ -+ A_UINT32 BufferLength; /* length of buffer */ -+ A_UINT32 ActualLength; /* actual length of payload */ -+ int Endpoint; /* endpoint that this packet was sent/recv'd from */ -+ A_STATUS Status; /* completion status */ -+ union { -+ HTC_TX_PACKET_INFO AsTx; /* Tx Packet specific info */ -+ HTC_RX_PACKET_INFO AsRx; /* Rx Packet specific info */ -+ } PktInfo; -+ -+ /* the following fields are for internal HTC use */ -+ HTC_PACKET_COMPLETION Completion; /* completion */ -+ void *pContext; /* HTC private completion context */ -+ A_UINT32 HTCReserved; /* reserved */ -+} HTC_PACKET; -+ -+ -+ -+#define COMPLETE_HTC_PACKET(p,status) \ -+{ \ -+ (p)->Status = (status); \ -+ (p)->Completion((p)->pContext,(p)); \ -+} -+ -+#define INIT_HTC_PACKET_INFO(p,b,len) \ -+{ \ -+ (p)->pBufferStart = (b); \ -+ (p)->BufferLength = (len); \ -+} -+ -+/* macro to set an initial RX packet for refilling HTC */ -+#define SET_HTC_PACKET_INFO_RX_REFILL(p,c,b,len,ep) \ -+{ \ -+ (p)->pPktContext = (c); \ -+ (p)->pBuffer = (b); \ -+ (p)->pBufferStart = (b); \ -+ (p)->BufferLength = (len); \ -+ (p)->Endpoint = (ep); \ -+} -+ -+/* fast macro to recycle an RX packet that will be re-queued to HTC */ -+#define HTC_PACKET_RESET_RX(p) \ -+ (p)->pBuffer = (p)->pBufferStart -+ -+/* macro to set packet parameters for TX */ -+#define SET_HTC_PACKET_INFO_TX(p,c,b,len,ep,tag) \ -+{ \ -+ (p)->pPktContext = (c); \ -+ (p)->pBuffer = (b); \ -+ (p)->ActualLength = (len); \ -+ (p)->Endpoint = (ep); \ -+ (p)->PktInfo.AsTx.Tag = (tag); \ -+} -+ -+/* HTC Packet Queueing Macros */ -+typedef DL_LIST HTC_PACKET_QUEUE; -+/* initialize queue */ -+#define INIT_HTC_PACKET_QUEUE(pQ) DL_LIST_INIT((pQ)) -+/* enqueue HTC packet to the tail of the queue */ -+#define HTC_PACKET_ENQUEUE(pQ,p) DL_ListInsertTail((pQ),&(p)->ListLink) -+/* test if a queue is empty */ -+#define HTC_QUEUE_EMPTY(pQ) DL_LIST_IS_EMPTY((pQ)) -+/* get packet at head without removing it */ -+#define HTC_GET_PKT_AT_HEAD(pQ) A_CONTAINING_STRUCT((DL_LIST_GET_ITEM_AT_HEAD(pQ)),HTC_PACKET,ListLink); -+/* remove a packet from the current list it is linked to */ -+#define HTC_PACKET_REMOVE(p) DL_ListRemove(&(p)->ListLink) -+ -+/* dequeue an HTC packet from the head of the queue */ -+static INLINE HTC_PACKET *HTC_PACKET_DEQUEUE(HTC_PACKET_QUEUE *queue) { -+ DL_LIST *pItem = DL_ListRemoveItemFromHead(queue); -+ if (pItem != NULL) { -+ return A_CONTAINING_STRUCT(pItem, HTC_PACKET, ListLink); -+ } -+ return NULL; -+} -+ -+#endif /*HTC_PACKET_H_*/ ---- /dev/null -+++ b/drivers/ar6000/include/htc_services.h -@@ -0,0 +1,37 @@ -+/* -+ * Copyright (c) 2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#ifndef __HTC_SERVICES_H__ -+#define __HTC_SERVICES_H__ -+ -+/* Current service IDs */ -+ -+typedef enum { -+ RSVD_SERVICE_GROUP = 0, -+ WMI_SERVICE_GROUP = 1, -+ -+ HTC_TEST_GROUP = 254, -+ HTC_SERVICE_GROUP_LAST = 255 -+}HTC_SERVICE_GROUP_IDS; -+ -+#define MAKE_SERVICE_ID(group,index) \ -+ (int)(((int)group << 8) | (int)(index)) -+ -+/* NOTE: service ID of 0x0000 is reserved and should never be used */ -+#define HTC_CTRL_RSVD_SVC MAKE_SERVICE_ID(RSVD_SERVICE_GROUP,1) -+#define WMI_CONTROL_SVC MAKE_SERVICE_ID(WMI_SERVICE_GROUP,0) -+#define WMI_DATA_BE_SVC MAKE_SERVICE_ID(WMI_SERVICE_GROUP,1) -+#define WMI_DATA_BK_SVC MAKE_SERVICE_ID(WMI_SERVICE_GROUP,2) -+#define WMI_DATA_VI_SVC MAKE_SERVICE_ID(WMI_SERVICE_GROUP,3) -+#define WMI_DATA_VO_SVC MAKE_SERVICE_ID(WMI_SERVICE_GROUP,4) -+#define WMI_MAX_SERVICES 5 -+ -+/* raw stream service (i.e. flash, tcmd, calibration apps) */ -+#define HTC_RAW_STREAMS_SVC MAKE_SERVICE_ID(HTC_TEST_GROUP,0) -+ -+#endif /*HTC_SERVICES_H_*/ ---- /dev/null -+++ b/drivers/ar6000/include/ieee80211.h -@@ -0,0 +1,342 @@ -+/*- -+ * Copyright (c) 2001 Atsushi Onoe -+ * Copyright (c) 2002-2004 Sam Leffler, Errno Consulting -+ * Copyright (c) 2006 Atheros Communications, Inc. -+ * -+ * Wireless Network driver for Atheros AR6001 -+ * All rights reserved. -+ * -+ * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR -+ * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES -+ * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -+ * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, -+ * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -+ * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -+ * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -+ * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -+ * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF -+ * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. -+ * -+ */ -+#ifndef _NET80211_IEEE80211_H_ -+#define _NET80211_IEEE80211_H_ -+ -+#include "athstartpack.h" -+ -+/* -+ * 802.11 protocol definitions. -+ */ -+ -+#define IEEE80211_ADDR_LEN 6 /* size of 802.11 address */ -+/* is 802.11 address multicast/broadcast? */ -+#define IEEE80211_IS_MULTICAST(_a) (*(_a) & 0x01) -+#define IEEE80211_ADDR_EQ(addr1, addr2) \ -+ (A_MEMCMP(addr1, addr2, IEEE80211_ADDR_LEN) == 0) -+ -+#define IEEE80211_KEYBUF_SIZE 16 -+#define IEEE80211_MICBUF_SIZE (8+8) /* space for both tx and rx */ -+ -+/* -+ * NB: these values are ordered carefully; there are lots of -+ * of implications in any reordering. In particular beware -+ * that 4 is not used to avoid conflicting with IEEE80211_F_PRIVACY. -+ */ -+#define IEEE80211_CIPHER_WEP 0 -+#define IEEE80211_CIPHER_TKIP 1 -+#define IEEE80211_CIPHER_AES_OCB 2 -+#define IEEE80211_CIPHER_AES_CCM 3 -+#define IEEE80211_CIPHER_CKIP 5 -+#define IEEE80211_CIPHER_CCKM_KRK 6 -+#define IEEE80211_CIPHER_NONE 7 /* pseudo value */ -+ -+#define IEEE80211_CIPHER_MAX (IEEE80211_CIPHER_NONE+1) -+ -+#define IEEE80211_IS_VALID_WEP_CIPHER_LEN(len) \ -+ (((len) == 5) || ((len) == 13) || ((len) == 16)) -+ -+ -+ -+/* -+ * generic definitions for IEEE 802.11 frames -+ */ -+PREPACK struct ieee80211_frame { -+ A_UINT8 i_fc[2]; -+ A_UINT8 i_dur[2]; -+ A_UINT8 i_addr1[IEEE80211_ADDR_LEN]; -+ A_UINT8 i_addr2[IEEE80211_ADDR_LEN]; -+ A_UINT8 i_addr3[IEEE80211_ADDR_LEN]; -+ A_UINT8 i_seq[2]; -+ /* possibly followed by addr4[IEEE80211_ADDR_LEN]; */ -+ /* see below */ -+} POSTPACK; -+ -+#define IEEE80211_FC0_VERSION_MASK 0x03 -+#define IEEE80211_FC0_VERSION_SHIFT 0 -+#define IEEE80211_FC0_VERSION_0 0x00 -+#define IEEE80211_FC0_TYPE_MASK 0x0c -+#define IEEE80211_FC0_TYPE_SHIFT 2 -+#define IEEE80211_FC0_TYPE_MGT 0x00 -+#define IEEE80211_FC0_TYPE_CTL 0x04 -+#define IEEE80211_FC0_TYPE_DATA 0x08 -+ -+#define IEEE80211_FC0_SUBTYPE_MASK 0xf0 -+#define IEEE80211_FC0_SUBTYPE_SHIFT 4 -+/* for TYPE_MGT */ -+#define IEEE80211_FC0_SUBTYPE_ASSOC_REQ 0x00 -+#define IEEE80211_FC0_SUBTYPE_ASSOC_RESP 0x10 -+#define IEEE80211_FC0_SUBTYPE_REASSOC_REQ 0x20 -+#define IEEE80211_FC0_SUBTYPE_REASSOC_RESP 0x30 -+#define IEEE80211_FC0_SUBTYPE_PROBE_REQ 0x40 -+#define IEEE80211_FC0_SUBTYPE_PROBE_RESP 0x50 -+#define IEEE80211_FC0_SUBTYPE_BEACON 0x80 -+#define IEEE80211_FC0_SUBTYPE_ATIM 0x90 -+#define IEEE80211_FC0_SUBTYPE_DISASSOC 0xa0 -+#define IEEE80211_FC0_SUBTYPE_AUTH 0xb0 -+#define IEEE80211_FC0_SUBTYPE_DEAUTH 0xc0 -+/* for TYPE_CTL */ -+#define IEEE80211_FC0_SUBTYPE_PS_POLL 0xa0 -+#define IEEE80211_FC0_SUBTYPE_RTS 0xb0 -+#define IEEE80211_FC0_SUBTYPE_CTS 0xc0 -+#define IEEE80211_FC0_SUBTYPE_ACK 0xd0 -+#define IEEE80211_FC0_SUBTYPE_CF_END 0xe0 -+#define IEEE80211_FC0_SUBTYPE_CF_END_ACK 0xf0 -+/* for TYPE_DATA (bit combination) */ -+#define IEEE80211_FC0_SUBTYPE_DATA 0x00 -+#define IEEE80211_FC0_SUBTYPE_CF_ACK 0x10 -+#define IEEE80211_FC0_SUBTYPE_CF_POLL 0x20 -+#define IEEE80211_FC0_SUBTYPE_CF_ACPL 0x30 -+#define IEEE80211_FC0_SUBTYPE_NODATA 0x40 -+#define IEEE80211_FC0_SUBTYPE_CFACK 0x50 -+#define IEEE80211_FC0_SUBTYPE_CFPOLL 0x60 -+#define IEEE80211_FC0_SUBTYPE_CF_ACK_CF_ACK 0x70 -+#define IEEE80211_FC0_SUBTYPE_QOS 0x80 -+#define IEEE80211_FC0_SUBTYPE_QOS_NULL 0xc0 -+ -+#define IEEE80211_FC1_DIR_MASK 0x03 -+#define IEEE80211_FC1_DIR_NODS 0x00 /* STA->STA */ -+#define IEEE80211_FC1_DIR_TODS 0x01 /* STA->AP */ -+#define IEEE80211_FC1_DIR_FROMDS 0x02 /* AP ->STA */ -+#define IEEE80211_FC1_DIR_DSTODS 0x03 /* AP ->AP */ -+ -+#define IEEE80211_FC1_MORE_FRAG 0x04 -+#define IEEE80211_FC1_RETRY 0x08 -+#define IEEE80211_FC1_PWR_MGT 0x10 -+#define IEEE80211_FC1_MORE_DATA 0x20 -+#define IEEE80211_FC1_WEP 0x40 -+#define IEEE80211_FC1_ORDER 0x80 -+ -+#define IEEE80211_SEQ_FRAG_MASK 0x000f -+#define IEEE80211_SEQ_FRAG_SHIFT 0 -+#define IEEE80211_SEQ_SEQ_MASK 0xfff0 -+#define IEEE80211_SEQ_SEQ_SHIFT 4 -+ -+#define IEEE80211_NWID_LEN 32 -+ -+/* -+ * 802.11 rate set. -+ */ -+#define IEEE80211_RATE_SIZE 8 /* 802.11 standard */ -+#define IEEE80211_RATE_MAXSIZE 15 /* max rates we'll handle */ -+ -+#define WMM_NUM_AC 4 /* 4 AC categories */ -+ -+#define WMM_PARAM_ACI_M 0x60 /* Mask for ACI field */ -+#define WMM_PARAM_ACI_S 5 /* Shift for ACI field */ -+#define WMM_PARAM_ACM_M 0x10 /* Mask for ACM bit */ -+#define WMM_PARAM_ACM_S 4 /* Shift for ACM bit */ -+#define WMM_PARAM_AIFSN_M 0x0f /* Mask for aifsn field */ -+#define WMM_PARAM_LOGCWMIN_M 0x0f /* Mask for CwMin field (in log) */ -+#define WMM_PARAM_LOGCWMAX_M 0xf0 /* Mask for CwMax field (in log) */ -+#define WMM_PARAM_LOGCWMAX_S 4 /* Shift for CwMax field */ -+ -+#define WMM_AC_TO_TID(_ac) ( \ -+ ((_ac) == WMM_AC_VO) ? 6 : \ -+ ((_ac) == WMM_AC_VI) ? 5 : \ -+ ((_ac) == WMM_AC_BK) ? 1 : \ -+ 0) -+ -+#define TID_TO_WMM_AC(_tid) ( \ -+ ((_tid) < 1) ? WMM_AC_BE : \ -+ ((_tid) < 3) ? WMM_AC_BK : \ -+ ((_tid) < 6) ? WMM_AC_VI : \ -+ WMM_AC_VO) -+/* -+ * Management information element payloads. -+ */ -+ -+enum { -+ IEEE80211_ELEMID_SSID = 0, -+ IEEE80211_ELEMID_RATES = 1, -+ IEEE80211_ELEMID_FHPARMS = 2, -+ IEEE80211_ELEMID_DSPARMS = 3, -+ IEEE80211_ELEMID_CFPARMS = 4, -+ IEEE80211_ELEMID_TIM = 5, -+ IEEE80211_ELEMID_IBSSPARMS = 6, -+ IEEE80211_ELEMID_COUNTRY = 7, -+ IEEE80211_ELEMID_CHALLENGE = 16, -+ /* 17-31 reserved for challenge text extension */ -+ IEEE80211_ELEMID_PWRCNSTR = 32, -+ IEEE80211_ELEMID_PWRCAP = 33, -+ IEEE80211_ELEMID_TPCREQ = 34, -+ IEEE80211_ELEMID_TPCREP = 35, -+ IEEE80211_ELEMID_SUPPCHAN = 36, -+ IEEE80211_ELEMID_CHANSWITCH = 37, -+ IEEE80211_ELEMID_MEASREQ = 38, -+ IEEE80211_ELEMID_MEASREP = 39, -+ IEEE80211_ELEMID_QUIET = 40, -+ IEEE80211_ELEMID_IBSSDFS = 41, -+ IEEE80211_ELEMID_ERP = 42, -+ IEEE80211_ELEMID_RSN = 48, -+ IEEE80211_ELEMID_XRATES = 50, -+ IEEE80211_ELEMID_TPC = 150, -+ IEEE80211_ELEMID_CCKM = 156, -+ IEEE80211_ELEMID_VENDOR = 221, /* vendor private */ -+}; -+ -+#define ATH_OUI 0x7f0300 /* Atheros OUI */ -+#define ATH_OUI_TYPE 0x01 -+#define ATH_OUI_SUBTYPE 0x01 -+#define ATH_OUI_VERSION 0x00 -+ -+#define WPA_OUI 0xf25000 -+#define WPA_OUI_TYPE 0x01 -+#define WPA_VERSION 1 /* current supported version */ -+ -+#define WPA_CSE_NULL 0x00 -+#define WPA_CSE_WEP40 0x01 -+#define WPA_CSE_TKIP 0x02 -+#define WPA_CSE_CCMP 0x04 -+#define WPA_CSE_WEP104 0x05 -+ -+#define WPA_ASE_NONE 0x00 -+#define WPA_ASE_8021X_UNSPEC 0x01 -+#define WPA_ASE_8021X_PSK 0x02 -+ -+#define RSN_OUI 0xac0f00 -+#define RSN_VERSION 1 /* current supported version */ -+ -+#define RSN_CSE_NULL 0x00 -+#define RSN_CSE_WEP40 0x01 -+#define RSN_CSE_TKIP 0x02 -+#define RSN_CSE_WRAP 0x03 -+#define RSN_CSE_CCMP 0x04 -+#define RSN_CSE_WEP104 0x05 -+ -+#define RSN_ASE_NONE 0x00 -+#define RSN_ASE_8021X_UNSPEC 0x01 -+#define RSN_ASE_8021X_PSK 0x02 -+ -+#define RSN_CAP_PREAUTH 0x01 -+ -+#define WMM_OUI 0xf25000 -+#define WMM_OUI_TYPE 0x02 -+#define WMM_INFO_OUI_SUBTYPE 0x00 -+#define WMM_PARAM_OUI_SUBTYPE 0x01 -+#define WMM_VERSION 1 -+ -+/* WMM stream classes */ -+#define WMM_NUM_AC 4 -+#define WMM_AC_BE 0 /* best effort */ -+#define WMM_AC_BK 1 /* background */ -+#define WMM_AC_VI 2 /* video */ -+#define WMM_AC_VO 3 /* voice */ -+ -+/* TSPEC related */ -+#define ACTION_CATEGORY_CODE_TSPEC 17 -+#define ACTION_CODE_TSPEC_ADDTS 0 -+#define ACTION_CODE_TSPEC_ADDTS_RESP 1 -+#define ACTION_CODE_TSPEC_DELTS 2 -+ -+typedef enum { -+ TSPEC_STATUS_CODE_ADMISSION_ACCEPTED = 0, -+ TSPEC_STATUS_CODE_ADDTS_INVALID_PARAMS = 0x1, -+ TSPEC_STATUS_CODE_ADDTS_REQUEST_REFUSED = 0x3, -+ TSPEC_STATUS_CODE_UNSPECIFIED_QOS_RELATED_FAILURE = 0xC8, -+ TSPEC_STATUS_CODE_REQUESTED_REFUSED_POLICY_CONFIGURATION = 0xC9, -+ TSPEC_STATUS_CODE_INSUFFCIENT_BANDWIDTH = 0xCA, -+ TSPEC_STATUS_CODE_INVALID_PARAMS = 0xCB, -+ TSPEC_STATUS_CODE_DELTS_SENT = 0x30, -+ TSPEC_STATUS_CODE_DELTS_RECV = 0x31, -+} TSPEC_STATUS_CODE; -+ -+/* -+ * WMM/802.11e Tspec Element -+ */ -+typedef PREPACK struct wmm_tspec_ie_t { -+ A_UINT8 elementId; -+ A_UINT8 len; -+ A_UINT8 oui[3]; -+ A_UINT8 ouiType; -+ A_UINT8 ouiSubType; -+ A_UINT8 version; -+ A_UINT16 tsInfo_info; -+ A_UINT8 tsInfo_reserved; -+ A_UINT16 nominalMSDU; -+ A_UINT16 maxMSDU; -+ A_UINT32 minServiceInt; -+ A_UINT32 maxServiceInt; -+ A_UINT32 inactivityInt; -+ A_UINT32 suspensionInt; -+ A_UINT32 serviceStartTime; -+ A_UINT32 minDataRate; -+ A_UINT32 meanDataRate; -+ A_UINT32 peakDataRate; -+ A_UINT32 maxBurstSize; -+ A_UINT32 delayBound; -+ A_UINT32 minPhyRate; -+ A_UINT16 sba; -+ A_UINT16 mediumTime; -+} POSTPACK WMM_TSPEC_IE; -+ -+ -+/* -+ * BEACON management packets -+ * -+ * octet timestamp[8] -+ * octet beacon interval[2] -+ * octet capability information[2] -+ * information element -+ * octet elemid -+ * octet length -+ * octet information[length] -+ */ -+ -+#define IEEE80211_BEACON_INTERVAL(beacon) \ -+ ((beacon)[8] | ((beacon)[9] << 8)) -+#define IEEE80211_BEACON_CAPABILITY(beacon) \ -+ ((beacon)[10] | ((beacon)[11] << 8)) -+ -+#define IEEE80211_CAPINFO_ESS 0x0001 -+#define IEEE80211_CAPINFO_IBSS 0x0002 -+#define IEEE80211_CAPINFO_CF_POLLABLE 0x0004 -+#define IEEE80211_CAPINFO_CF_POLLREQ 0x0008 -+#define IEEE80211_CAPINFO_PRIVACY 0x0010 -+#define IEEE80211_CAPINFO_SHORT_PREAMBLE 0x0020 -+#define IEEE80211_CAPINFO_PBCC 0x0040 -+#define IEEE80211_CAPINFO_CHNL_AGILITY 0x0080 -+/* bits 8-9 are reserved */ -+#define IEEE80211_CAPINFO_SHORT_SLOTTIME 0x0400 -+#define IEEE80211_CAPINFO_APSD 0x0800 -+/* bit 12 is reserved */ -+#define IEEE80211_CAPINFO_DSSSOFDM 0x2000 -+/* bits 14-15 are reserved */ -+ -+/* -+ * Authentication Modes -+ */ -+ -+enum ieee80211_authmode { -+ IEEE80211_AUTH_NONE = 0, -+ IEEE80211_AUTH_OPEN = 1, -+ IEEE80211_AUTH_SHARED = 2, -+ IEEE80211_AUTH_8021X = 3, -+ IEEE80211_AUTH_AUTO = 4, /* auto-select/accept */ -+ /* NB: these are used only for ioctls */ -+ IEEE80211_AUTH_WPA = 5, /* WPA/RSN w/ 802.1x */ -+ IEEE80211_AUTH_WPA_PSK = 6, /* WPA/RSN w/ PSK */ -+ IEEE80211_AUTH_WPA_CCKM = 7, /* WPA/RSN IE w/ CCKM */ -+}; -+ -+#include "athendpack.h" -+ -+#endif /* _NET80211_IEEE80211_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/ieee80211_ioctl.h -@@ -0,0 +1,163 @@ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/os/linux/include/ieee80211_ioctl.h#1 $ -+ */ -+ -+#ifndef _IEEE80211_IOCTL_H_ -+#define _IEEE80211_IOCTL_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+/* -+ * Extracted from the MADWIFI net80211/ieee80211_ioctl.h -+ */ -+ -+/* -+ * WPA/RSN get/set key request. Specify the key/cipher -+ * type and whether the key is to be used for sending and/or -+ * receiving. The key index should be set only when working -+ * with global keys (use IEEE80211_KEYIX_NONE for ``no index''). -+ * Otherwise a unicast/pairwise key is specified by the bssid -+ * (on a station) or mac address (on an ap). They key length -+ * must include any MIC key data; otherwise it should be no -+ more than IEEE80211_KEYBUF_SIZE. -+ */ -+struct ieee80211req_key { -+ u_int8_t ik_type; /* key/cipher type */ -+ u_int8_t ik_pad; -+ u_int16_t ik_keyix; /* key index */ -+ u_int8_t ik_keylen; /* key length in bytes */ -+ u_int8_t ik_flags; -+#define IEEE80211_KEY_XMIT 0x01 -+#define IEEE80211_KEY_RECV 0x02 -+#define IEEE80211_KEY_DEFAULT 0x80 /* default xmit key */ -+ u_int8_t ik_macaddr[IEEE80211_ADDR_LEN]; -+ u_int64_t ik_keyrsc; /* key receive sequence counter */ -+ u_int64_t ik_keytsc; /* key transmit sequence counter */ -+ u_int8_t ik_keydata[IEEE80211_KEYBUF_SIZE+IEEE80211_MICBUF_SIZE]; -+}; -+/* -+ * Delete a key either by index or address. Set the index -+ * to IEEE80211_KEYIX_NONE when deleting a unicast key. -+ */ -+struct ieee80211req_del_key { -+ u_int8_t idk_keyix; /* key index */ -+ u_int8_t idk_macaddr[IEEE80211_ADDR_LEN]; -+}; -+/* -+ * MLME state manipulation request. IEEE80211_MLME_ASSOC -+ * only makes sense when operating as a station. The other -+ * requests can be used when operating as a station or an -+ * ap (to effect a station). -+ */ -+struct ieee80211req_mlme { -+ u_int8_t im_op; /* operation to perform */ -+#define IEEE80211_MLME_ASSOC 1 /* associate station */ -+#define IEEE80211_MLME_DISASSOC 2 /* disassociate station */ -+#define IEEE80211_MLME_DEAUTH 3 /* deauthenticate station */ -+#define IEEE80211_MLME_AUTHORIZE 4 /* authorize station */ -+#define IEEE80211_MLME_UNAUTHORIZE 5 /* unauthorize station */ -+ u_int16_t im_reason; /* 802.11 reason code */ -+ u_int8_t im_macaddr[IEEE80211_ADDR_LEN]; -+}; -+ -+struct ieee80211req_addpmkid { -+ u_int8_t pi_bssid[IEEE80211_ADDR_LEN]; -+ u_int8_t pi_enable; -+ u_int8_t pi_pmkid[16]; -+}; -+ -+#define AUTH_ALG_OPEN_SYSTEM 0x01 -+#define AUTH_ALG_SHARED_KEY 0x02 -+#define AUTH_ALG_LEAP 0x04 -+ -+struct ieee80211req_authalg { -+ u_int8_t auth_alg; -+}; -+ -+/* -+ * Request to add an IE to a Management Frame -+ */ -+enum{ -+ IEEE80211_APPIE_FRAME_BEACON = 0, -+ IEEE80211_APPIE_FRAME_PROBE_REQ = 1, -+ IEEE80211_APPIE_FRAME_PROBE_RESP = 2, -+ IEEE80211_APPIE_FRAME_ASSOC_REQ = 3, -+ IEEE80211_APPIE_FRAME_ASSOC_RESP = 4, -+ IEEE80211_APPIE_NUM_OF_FRAME = 5 -+}; -+ -+/* -+ * The Maximum length of the IE that can be added to a Management frame -+ */ -+#define IEEE80211_APPIE_FRAME_MAX_LEN 78 -+ -+struct ieee80211req_getset_appiebuf { -+ u_int32_t app_frmtype; /* management frame type for which buffer is added */ -+ u_int32_t app_buflen; /*application supplied buffer length */ -+ u_int8_t app_buf[]; -+}; -+ -+/* -+ * The following definitions are used by an application to set filter -+ * for receiving management frames -+ */ -+enum { -+ IEEE80211_FILTER_TYPE_BEACON = 0x1, -+ IEEE80211_FILTER_TYPE_PROBE_REQ = 0x2, -+ IEEE80211_FILTER_TYPE_PROBE_RESP = 0x4, -+ IEEE80211_FILTER_TYPE_ASSOC_REQ = 0x8, -+ IEEE80211_FILTER_TYPE_ASSOC_RESP = 0x10, -+ IEEE80211_FILTER_TYPE_AUTH = 0x20, -+ IEEE80211_FILTER_TYPE_DEAUTH = 0x40, -+ IEEE80211_FILTER_TYPE_DISASSOC = 0x80, -+ IEEE80211_FILTER_TYPE_ALL = 0xFF /* used to check the valid filter bits */ -+}; -+ -+struct ieee80211req_set_filter { -+ u_int32_t app_filterype; /* management frame filter type */ -+}; -+ -+enum { -+ IEEE80211_PARAM_AUTHMODE = 3, /* Authentication Mode */ -+ IEEE80211_PARAM_MCASTCIPHER = 5, -+ IEEE80211_PARAM_MCASTKEYLEN = 6, /* multicast key length */ -+ IEEE80211_PARAM_UCASTCIPHER = 8, -+ IEEE80211_PARAM_UCASTKEYLEN = 9, /* unicast key length */ -+ IEEE80211_PARAM_WPA = 10, /* WPA mode (0,1,2) */ -+ IEEE80211_PARAM_ROAMING = 12, /* roaming mode */ -+ IEEE80211_PARAM_PRIVACY = 13, /* privacy invoked */ -+ IEEE80211_PARAM_COUNTERMEASURES = 14, /* WPA/TKIP countermeasures */ -+ IEEE80211_PARAM_DROPUNENCRYPTED = 15, /* discard unencrypted frames */ -+}; -+ -+/* -+ * Values for IEEE80211_PARAM_WPA -+ */ -+#define WPA_MODE_WPA1 1 -+#define WPA_MODE_WPA2 2 -+#define WPA_MODE_AUTO 3 -+#define WPA_MODE_NONE 4 -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _IEEE80211_IOCTL_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/ieee80211_node.h -@@ -0,0 +1,77 @@ -+/*- -+ * Copyright (c) 2001 Atsushi Onoe -+ * Copyright (c) 2002-2004 Sam Leffler, Errno Consulting -+ * Copyright (c) 2006 Atheros Communications, Inc. -+ * -+ * Wireless Network driver for Atheros AR6001 -+ * All rights reserved. -+ * -+ * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR -+ * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES -+ * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -+ * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, -+ * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -+ * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -+ * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -+ * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -+ * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF -+ * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. -+ * -+ */ -+#ifndef _IEEE80211_NODE_H_ -+#define _IEEE80211_NODE_H_ -+ -+/* -+ * Node locking definitions. -+ */ -+#define IEEE80211_NODE_LOCK_INIT(_nt) A_MUTEX_INIT(&(_nt)->nt_nodelock) -+#define IEEE80211_NODE_LOCK_DESTROY(_nt) -+#define IEEE80211_NODE_LOCK(_nt) A_MUTEX_LOCK(&(_nt)->nt_nodelock) -+#define IEEE80211_NODE_UNLOCK(_nt) A_MUTEX_UNLOCK(&(_nt)->nt_nodelock) -+#define IEEE80211_NODE_LOCK_BH(_nt) A_MUTEX_LOCK(&(_nt)->nt_nodelock) -+#define IEEE80211_NODE_UNLOCK_BH(_nt) A_MUTEX_UNLOCK(&(_nt)->nt_nodelock) -+#define IEEE80211_NODE_LOCK_ASSERT(_nt) -+ -+/* -+ * Node reference counting definitions. -+ * -+ * ieee80211_node_initref initialize the reference count to 1 -+ * ieee80211_node_incref add a reference -+ * ieee80211_node_decref remove a reference -+ * ieee80211_node_dectestref remove a reference and return 1 if this -+ * is the last reference, otherwise 0 -+ * ieee80211_node_refcnt reference count for printing (only) -+ */ -+#define ieee80211_node_initref(_ni) ((_ni)->ni_refcnt = 1) -+#define ieee80211_node_incref(_ni) ((_ni)->ni_refcnt++) -+#define ieee80211_node_decref(_ni) ((_ni)->ni_refcnt--) -+#define ieee80211_node_dectestref(_ni) (((_ni)->ni_refcnt--) == 0) -+#define ieee80211_node_refcnt(_ni) ((_ni)->ni_refcnt) -+ -+#define IEEE80211_NODE_HASHSIZE 32 -+/* simple hash is enough for variation of macaddr */ -+#define IEEE80211_NODE_HASH(addr) \ -+ (((const A_UINT8 *)(addr))[IEEE80211_ADDR_LEN - 1] % \ -+ IEEE80211_NODE_HASHSIZE) -+ -+/* -+ * Table of ieee80211_node instances. Each ieee80211com -+ * has at least one for holding the scan candidates. -+ * When operating as an access point or in ibss mode there -+ * is a second table for associated stations or neighbors. -+ */ -+struct ieee80211_node_table { -+ void *nt_wmip; /* back reference */ -+ A_MUTEX_T nt_nodelock; /* on node table */ -+ struct bss *nt_node_first; /* information of all nodes */ -+ struct bss *nt_node_last; /* information of all nodes */ -+ struct bss *nt_hash[IEEE80211_NODE_HASHSIZE]; -+ const char *nt_name; /* for debugging */ -+ A_UINT32 nt_scangen; /* gen# for timeout scan */ -+ A_TIMER nt_inact_timer; -+ A_UINT8 isTimerArmed; /* is the node timer armed */ -+}; -+ -+#define WLAN_NODE_INACT_TIMEOUT_MSEC 10000 -+ -+#endif /* _IEEE80211_NODE_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/ini_dset.h -@@ -0,0 +1,40 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+#ifndef _INI_DSET_H_ -+#define _INI_DSET_H_ -+ -+/* -+ * Each of these represents a WHAL INI table, which consists -+ * of an "address column" followed by 1 or more "value columns". -+ * -+ * Software uses the base WHAL_INI_DATA_ID+column to access a -+ * DataSet that holds a particular column of data. -+ */ -+typedef enum { -+ WHAL_INI_DATA_ID_NULL =0, -+ WHAL_INI_DATA_ID_MODE_SPECIFIC =1, /* 2,3 */ -+ WHAL_INI_DATA_ID_COMMON =4, /* 5 */ -+ WHAL_INI_DATA_ID_BB_RFGAIN =6, /* 7,8 */ -+ WHAL_INI_DATA_ID_ANALOG_BANK1 =9, /* 10 */ -+ WHAL_INI_DATA_ID_ANALOG_BANK2 =11, /* 12 */ -+ WHAL_INI_DATA_ID_ANALOG_BANK3 =13, /* 14, 15 */ -+ WHAL_INI_DATA_ID_ANALOG_BANK6 =16, /* 17, 18 */ -+ WHAL_INI_DATA_ID_ANALOG_BANK7 =19, /* 20 */ -+ WHAL_INI_DATA_ID_MODE_OVERRIDES =21, /* 22,23 */ -+ WHAL_INI_DATA_ID_COMMON_OVERRIDES =24, /* 25 */ -+ -+ WHAL_INI_DATA_ID_MAX =25 -+} WHAL_INI_DATA_ID; -+ -+typedef PREPACK struct { -+ A_UINT16 freqIndex; // 1 - A mode 2 - B or G mode 0 - common -+ A_UINT16 offset; -+ A_UINT32 newValue; -+} POSTPACK INI_DSET_REG_OVERRIDE; -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/include/regDb.h -@@ -0,0 +1,19 @@ -+/* -+ * Copyright (c) 2005 Atheros Communications, Inc. -+ * All rights reserved. -+ * -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * This module contains the header files for regulatory module, -+ * which include the DB schema and DB values. -+ * $Id: -+ */ -+ -+#ifndef __REG_DB_H__ -+#define __REG_DB_H__ -+ -+#include "./regulatory/reg_dbschema.h" -+#include "./regulatory/reg_dbvalues.h" -+ -+#endif /* __REG_DB_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/regdump.h -@@ -0,0 +1,33 @@ -+#ifndef __REGDUMP_H__ -+#define __REGDUMP_H__ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+#if defined(AR6001) -+#include "AR6001/AR6001_regdump.h" -+#endif -+#if defined(AR6002) -+#include "AR6002/AR6002_regdump.h" -+#endif -+ -+#if !defined(__ASSEMBLER__) -+/* -+ * Target CPU state at the time of failure is reflected -+ * in a register dump, which the Host can fetch through -+ * the diagnostic window. -+ */ -+struct register_dump_s { -+ A_UINT32 target_id; /* Target ID */ -+ A_UINT32 assline; /* Line number (if assertion failure) */ -+ A_UINT32 pc; /* Program Counter at time of exception */ -+ A_UINT32 badvaddr; /* Virtual address causing exception */ -+ CPU_exception_frame_t exc_frame; /* CPU-specific exception info */ -+ -+ /* Could copy top of stack here, too.... */ -+}; -+#endif /* __ASSEMBLER__ */ -+#endif /* __REGDUMP_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/targaddrs.h -@@ -0,0 +1,158 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#ifndef __TARGADDRS_H__ -+#define __TARGADDRS_H__ -+#if defined(AR6001) -+#include "AR6001/addrs.h" -+#endif -+#if defined(AR6002) -+#include "AR6002/addrs.h" -+#endif -+ -+/* -+ * AR6K option bits, to enable/disable various features. -+ * By default, all option bits are 0. -+ * These bits can be set in LOCAL_SCRATCH register 0. -+ */ -+#define AR6K_OPTION_BMI_DISABLE 0x01 /* Disable BMI comm with Host */ -+#define AR6K_OPTION_SERIAL_ENABLE 0x02 /* Enable serial port msgs */ -+#define AR6K_OPTION_WDT_DISABLE 0x04 /* WatchDog Timer override */ -+#define AR6K_OPTION_SLEEP_DISABLE 0x08 /* Disable system sleep */ -+#define AR6K_OPTION_STOP_BOOT 0x10 /* Stop boot processes (for ATE) */ -+#define AR6K_OPTION_ENABLE_NOANI 0x20 /* Operate without ANI */ -+#define AR6K_OPTION_DSET_DISABLE 0x40 /* Ignore DataSets */ -+#define AR6K_OPTION_IGNORE_FLASH 0x80 /* Ignore flash during bootup */ -+ -+/* -+ * xxx_HOST_INTEREST_ADDRESS is the address in Target RAM of the -+ * host_interest structure. It must match the address of the _host_interest -+ * symbol (see linker script). -+ * -+ * Host Interest is shared between Host and Target in order to coordinate -+ * between the two, and is intended to remain constant (with additions only -+ * at the end) across software releases. -+ */ -+#define AR6001_HOST_INTEREST_ADDRESS 0x80000600 -+#define AR6002_HOST_INTEREST_ADDRESS 0x00500400 -+ -+#define HOST_INTEREST_MAX_SIZE 0x100 -+ -+#if !defined(__ASSEMBLER__) -+struct register_dump_s; -+struct dbglog_hdr_s; -+ -+/* -+ * These are items that the Host may need to access -+ * via BMI or via the Diagnostic Window. The position -+ * of items in this structure must remain constant -+ * across firmware revisions! -+ * -+ * Types for each item must be fixed size across -+ * target and host platforms. -+ * -+ * More items may be added at the end. -+ */ -+struct host_interest_s { -+ /* -+ * Pointer to application-defined area, if any. -+ * Set by Target application during startup. -+ */ -+ A_UINT32 hi_app_host_interest; /* 0x00 */ -+ -+ /* Pointer to register dump area, valid after Target crash. */ -+ A_UINT32 hi_failure_state; /* 0x04 */ -+ -+ /* Pointer to debug logging header */ -+ A_UINT32 hi_dbglog_hdr; /* 0x08 */ -+ -+ /* Indicates whether or not flash is present on Target. -+ * NB: flash_is_present indicator is here not just -+ * because it might be of interest to the Host; but -+ * also because it's set early on by Target's startup -+ * asm code and we need it to have a special RAM address -+ * so that it doesn't get reinitialized with the rest -+ * of data. -+ */ -+ A_UINT32 hi_flash_is_present; /* 0x0c */ -+ -+ /* -+ * General-purpose flag bits, similar to AR6000_OPTION_* flags. -+ * Can be used by application rather than by OS. -+ */ -+ A_UINT32 hi_option_flag; /* 0x10 */ -+ -+ /* -+ * Boolean that determines whether or not to -+ * display messages on the serial port. -+ */ -+ A_UINT32 hi_serial_enable; /* 0x14 */ -+ -+ /* Start address of Flash DataSet index, if any */ -+ A_UINT32 hi_dset_list_head; /* 0x18 */ -+ -+ /* Override Target application start address */ -+ A_UINT32 hi_app_start; /* 0x1c */ -+ -+ /* Clock and voltage tuning */ -+ A_UINT32 hi_skip_clock_init; /* 0x20 */ -+ A_UINT32 hi_core_clock_setting; /* 0x24 */ -+ A_UINT32 hi_cpu_clock_setting; /* 0x28 */ -+ A_UINT32 hi_system_sleep_setting; /* 0x2c */ -+ A_UINT32 hi_xtal_control_setting; /* 0x30 */ -+ A_UINT32 hi_pll_ctrl_setting_24ghz; /* 0x34 */ -+ A_UINT32 hi_pll_ctrl_setting_5ghz; /* 0x38 */ -+ A_UINT32 hi_ref_voltage_trim_setting; /* 0x3c */ -+ A_UINT32 hi_clock_info; /* 0x40 */ -+ -+ /* -+ * Flash configuration overrides, used only -+ * when firmware is not executing from flash. -+ * (When using flash, modify the global variables -+ * with equivalent names.) -+ */ -+ A_UINT32 hi_bank0_addr_value; /* 0x44 */ -+ A_UINT32 hi_bank0_read_value; /* 0x48 */ -+ A_UINT32 hi_bank0_write_value; /* 0x4c */ -+ A_UINT32 hi_bank0_config_value; /* 0x50 */ -+ -+ /* Pointer to Board Data */ -+ A_UINT32 hi_board_data; /* 0x54 */ -+ A_UINT32 hi_board_data_initialized; /* 0x58 */ -+ -+ A_UINT32 hi_dset_RAM_index_table; /* 0x5c */ -+ -+ A_UINT32 hi_desired_baud_rate; /* 0x60 */ -+ A_UINT32 hi_dbglog_config; /* 0x64 */ -+ A_UINT32 hi_end_RAM_reserve_sz; /* 0x68 */ -+ A_UINT32 hi_mbox_io_block_sz; /* 0x6c */ -+ -+ A_UINT32 hi_num_bpatch_streams; /* 0x70 */ -+ A_UINT32 hi_mbox_isr_yield_limit; /* 0x74 */ -+ -+ A_UINT32 hi_refclk_hz; /* 0x78 */ -+}; -+ -+/* Bits defined in hi_option_flag */ -+#define HI_OPTION_TIMER_WAR 1 /* not really used */ -+ -+/* -+ * Intended for use by Host software, this macro returns the Target RAM -+ * address of any item in the host_interest structure. -+ * Example: target_addr = AR6001_HOST_INTEREST_ITEM_ADDRESS(hi_board_data); -+ */ -+#define AR6001_HOST_INTEREST_ITEM_ADDRESS(item) \ -+ ((A_UINT32)&((((struct host_interest_s *)(AR6001_HOST_INTEREST_ADDRESS))->item))) -+ -+#define AR6002_HOST_INTEREST_ITEM_ADDRESS(item) \ -+ ((A_UINT32)&((((struct host_interest_s *)(AR6002_HOST_INTEREST_ADDRESS))->item))) -+ -+ -+#endif /* !__ASSEMBLER__ */ -+ -+#endif /* __TARGADDRS_H__ */ ---- /dev/null -+++ b/drivers/ar6000/include/testcmd.h -@@ -0,0 +1,144 @@ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#ifndef TESTCMD_H_ -+#define TESTCMD_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+typedef enum { -+ ZEROES_PATTERN = 0, -+ ONES_PATTERN, -+ REPEATING_10, -+ PN7_PATTERN, -+ PN9_PATTERN, -+ PN15_PATTERN -+}TX_DATA_PATTERN; -+ -+/* Continous tx -+ mode : TCMD_CONT_TX_OFF - Disabling continous tx -+ TCMD_CONT_TX_SINE - Enable continuous unmodulated tx -+ TCMD_CONT_TX_FRAME- Enable continuous modulated tx -+ freq : Channel freq in Mhz. (e.g 2412 for channel 1 in 11 g) -+dataRate: 0 - 1 Mbps -+ 1 - 2 Mbps -+ 2 - 5.5 Mbps -+ 3 - 11 Mbps -+ 4 - 6 Mbps -+ 5 - 9 Mbps -+ 6 - 12 Mbps -+ 7 - 18 Mbps -+ 8 - 24 Mbps -+ 9 - 36 Mbps -+ 10 - 28 Mbps -+ 11 - 54 Mbps -+ txPwr: Tx power in dBm[5 -11] for unmod Tx, [5-14] for mod Tx -+antenna: 1 - one antenna -+ 2 - two antenna -+Note : Enable/disable continuous tx test cmd works only when target is awake. -+*/ -+ -+typedef enum { -+ TCMD_CONT_TX_OFF = 0, -+ TCMD_CONT_TX_SINE, -+ TCMD_CONT_TX_FRAME, -+ TCMD_CONT_TX_TX99, -+ TCMD_CONT_TX_TX100 -+} TCMD_CONT_TX_MODE; -+ -+typedef PREPACK struct { -+ A_UINT32 testCmdId; -+ A_UINT32 mode; -+ A_UINT32 freq; -+ A_UINT32 dataRate; -+ A_INT32 txPwr; -+ A_UINT32 antenna; -+ A_UINT32 enANI; -+ A_UINT32 scramblerOff; -+ A_UINT32 aifsn; -+ A_UINT16 pktSz; -+ A_UINT16 txPattern; -+} POSTPACK TCMD_CONT_TX; -+ -+#define TCMD_TXPATTERN_ZERONE 0x1 -+#define TCMD_TXPATTERN_ZERONE_DIS_SCRAMBLE 0x2 -+ -+/* Continuous Rx -+ act: TCMD_CONT_RX_PROMIS - promiscuous mode (accept all incoming frames) -+ TCMD_CONT_RX_FILTER - filter mode (accept only frames with dest -+ address equal specified -+ mac address (set via act =3) -+ TCMD_CONT_RX_REPORT off mode (disable cont rx mode and get the -+ report from the last cont -+ Rx test) -+ -+ TCMD_CONT_RX_SETMAC - set MacAddr mode (sets the MAC address for the -+ target. This Overrides -+ the default MAC address.) -+ -+*/ -+typedef enum { -+ TCMD_CONT_RX_PROMIS =0, -+ TCMD_CONT_RX_FILTER, -+ TCMD_CONT_RX_REPORT, -+ TCMD_CONT_RX_SETMAC -+} TCMD_CONT_RX_ACT; -+ -+typedef PREPACK struct { -+ A_UINT32 testCmdId; -+ A_UINT32 act; -+ A_UINT32 enANI; -+ PREPACK union { -+ struct PREPACK TCMD_CONT_RX_PARA { -+ A_UINT32 freq; -+ A_UINT32 antenna; -+ } POSTPACK para; -+ struct PREPACK TCMD_CONT_RX_REPORT { -+ A_UINT32 totalPkt; -+ A_INT32 rssiInDBm; -+ } POSTPACK report; -+ struct PREPACK TCMD_CONT_RX_MAC { -+ A_UCHAR addr[ATH_MAC_LEN]; -+ } POSTPACK mac; -+ } POSTPACK u; -+} POSTPACK TCMD_CONT_RX; -+ -+/* Force sleep/wake test cmd -+ mode: TCMD_PM_WAKEUP - Wakeup the target -+ TCMD_PM_SLEEP - Force the target to sleep. -+ */ -+typedef enum { -+ TCMD_PM_WAKEUP = 1, /* be consistent with target */ -+ TCMD_PM_SLEEP -+} TCMD_PM_MODE; -+ -+typedef PREPACK struct { -+ A_UINT32 testCmdId; -+ A_UINT32 mode; -+} POSTPACK TCMD_PM; -+ -+typedef enum{ -+ TCMD_CONT_TX_ID, -+ TCMD_CONT_RX_ID, -+ TCMD_PM_ID -+ } TCMD_ID; -+ -+typedef PREPACK union { -+ TCMD_CONT_TX contTx; -+ TCMD_CONT_RX contRx; -+ TCMD_PM pm ; -+} POSTPACK TEST_CMD; -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* TESTCMD_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/wlan_api.h -@@ -0,0 +1,101 @@ -+#ifndef _HOST_WLAN_API_H_ -+#define _HOST_WLAN_API_H_ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * This file contains the API for the host wlan module -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/wlan_api.h#1 $ -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+struct ieee80211_node_table; -+struct ieee80211_frame; -+ -+struct ieee80211_common_ie { -+ A_UINT16 ie_chan; -+ A_UINT8 *ie_tstamp; -+ A_UINT8 *ie_ssid; -+ A_UINT8 *ie_rates; -+ A_UINT8 *ie_xrates; -+ A_UINT8 *ie_country; -+ A_UINT8 *ie_wpa; -+ A_UINT8 *ie_rsn; -+ A_UINT8 *ie_wmm; -+ A_UINT8 *ie_ath; -+ A_UINT16 ie_capInfo; -+ A_UINT16 ie_beaconInt; -+ A_UINT8 *ie_tim; -+ A_UINT8 *ie_chswitch; -+ A_UINT8 ie_erp; -+ A_UINT8 *ie_wsc; -+}; -+ -+typedef struct bss { -+ A_UINT8 ni_macaddr[6]; -+ A_UINT8 ni_snr; -+ A_INT16 ni_rssi; -+ struct bss *ni_list_next; -+ struct bss *ni_list_prev; -+ struct bss *ni_hash_next; -+ struct bss *ni_hash_prev; -+ struct ieee80211_common_ie ni_cie; -+ A_UINT8 *ni_buf; -+ struct ieee80211_node_table *ni_table; -+ A_UINT32 ni_refcnt; -+ int ni_scangen; -+ A_UINT32 ni_tstamp; -+} bss_t; -+ -+typedef void wlan_node_iter_func(void *arg, bss_t *); -+ -+bss_t *wlan_node_alloc(struct ieee80211_node_table *nt, int wh_size); -+void wlan_node_free(bss_t *ni); -+void wlan_setup_node(struct ieee80211_node_table *nt, bss_t *ni, -+ const A_UINT8 *macaddr); -+bss_t *wlan_find_node(struct ieee80211_node_table *nt, const A_UINT8 *macaddr); -+void wlan_node_reclaim(struct ieee80211_node_table *nt, bss_t *ni); -+void wlan_free_allnodes(struct ieee80211_node_table *nt); -+void wlan_iterate_nodes(struct ieee80211_node_table *nt, wlan_node_iter_func *f, -+ void *arg); -+ -+void wlan_node_table_init(void *wmip, struct ieee80211_node_table *nt); -+void wlan_node_table_reset(struct ieee80211_node_table *nt); -+void wlan_node_table_cleanup(struct ieee80211_node_table *nt); -+ -+A_STATUS wlan_parse_beacon(A_UINT8 *buf, int framelen, -+ struct ieee80211_common_ie *cie); -+ -+A_UINT16 wlan_ieee2freq(int chan); -+A_UINT32 wlan_freq2ieee(A_UINT16 freq); -+ -+ -+bss_t * -+wlan_find_Ssidnode (struct ieee80211_node_table *nt, A_UCHAR *pSsid, -+ A_UINT32 ssidLength, A_BOOL bIsWPA2); -+ -+void -+wlan_node_return (struct ieee80211_node_table *nt, bss_t *ni); -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _HOST_WLAN_API_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/wlan_dset.h -@@ -0,0 +1,20 @@ -+/* -+ * Copyright (c) 2007 Atheros Communications, Inc. -+ * All rights reserved. -+ * -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ */ -+ -+#ifndef __WLAN_DSET_H__ -+#define __WKAN_DSET_H__ -+ -+typedef PREPACK struct wow_config_dset { -+ -+ A_UINT8 valid_dset; -+ A_UINT8 gpio_enable; -+ A_UINT16 gpio_pin; -+} POSTPACK WOW_CONFIG_DSET; -+ -+#endif ---- /dev/null -+++ b/drivers/ar6000/include/wmi_api.h -@@ -0,0 +1,260 @@ -+#ifndef _WMI_API_H_ -+#define _WMI_API_H_ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * This file contains the definitions for the Wireless Module Interface (WMI). -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/include/wmi_api.h#2 $ -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+/* -+ * IP QoS Field definitions according to 802.1p -+ */ -+#define BEST_EFFORT_PRI 0 -+#define BACKGROUND_PRI 1 -+#define EXCELLENT_EFFORT_PRI 3 -+#define CONTROLLED_LOAD_PRI 4 -+#define VIDEO_PRI 5 -+#define VOICE_PRI 6 -+#define NETWORK_CONTROL_PRI 7 -+#define MAX_NUM_PRI 8 -+ -+#define UNDEFINED_PRI (0xff) -+ -+/* simple mapping of IP TOS field to a WMI priority stream -+ * this mapping was taken from the original linux driver implementation -+ * The operation maps the following -+ * -+ * */ -+#define IP_TOS_TO_WMI_PRI(tos) \ -+ ((WMI_PRI_STREAM_ID)(((tos) >> 1) & 0x03)) -+ -+#define WMI_IMPLICIT_PSTREAM_INACTIVITY_INT 5000 /* 5 seconds */ -+ -+ -+struct wmi_t; -+ -+void *wmi_init(void *devt); -+ -+void wmi_qos_state_init(struct wmi_t *wmip); -+void wmi_shutdown(struct wmi_t *wmip); -+A_UINT16 wmi_get_mapped_qos_queue(struct wmi_t *, A_UINT8); -+A_STATUS wmi_dix_2_dot3(struct wmi_t *wmip, void *osbuf); -+A_STATUS wmi_data_hdr_add(struct wmi_t *wmip, void *osbuf, A_UINT8 msgType); -+A_STATUS wmi_dot3_2_dix(struct wmi_t *wmip, void *osbuf); -+A_STATUS wmi_data_hdr_remove(struct wmi_t *wmip, void *osbuf); -+A_STATUS wmi_syncpoint(struct wmi_t *wmip); -+A_STATUS wmi_syncpoint_reset(struct wmi_t *wmip); -+WMI_PRI_STREAM_ID wmi_get_stream_id(struct wmi_t *wmip, A_UINT8 trafficClass); -+A_UINT8 wmi_implicit_create_pstream(struct wmi_t *wmip, void *osbuf, A_UINT8 dir, A_UINT8 up); -+ -+A_STATUS wmi_control_rx(struct wmi_t *wmip, void *osbuf); -+void wmi_iterate_nodes(struct wmi_t *wmip, wlan_node_iter_func *f, void *arg); -+void wmi_free_allnodes(struct wmi_t *wmip); -+bss_t *wmi_find_node(struct wmi_t *wmip, const A_UINT8 *macaddr); -+ -+ -+typedef enum { -+ NO_SYNC_WMIFLAG = 0, -+ SYNC_BEFORE_WMIFLAG, /* transmit all queued data before cmd */ -+ SYNC_AFTER_WMIFLAG, /* any new data waits until cmd execs */ -+ SYNC_BOTH_WMIFLAG, -+ END_WMIFLAG /* end marker */ -+} WMI_SYNC_FLAG; -+ -+A_STATUS wmi_cmd_send(struct wmi_t *wmip, void *osbuf, WMI_COMMAND_ID cmdId, -+ WMI_SYNC_FLAG flag); -+A_STATUS wmi_connect_cmd(struct wmi_t *wmip, -+ NETWORK_TYPE netType, -+ DOT11_AUTH_MODE dot11AuthMode, -+ AUTH_MODE authMode, -+ CRYPTO_TYPE pairwiseCrypto, -+ A_UINT8 pairwiseCryptoLen, -+ CRYPTO_TYPE groupCrypto, -+ A_UINT8 groupCryptoLen, -+ int ssidLength, -+ A_UCHAR *ssid, -+ A_UINT8 *bssid, -+ A_UINT16 channel, -+ A_UINT32 ctrl_flags); -+A_STATUS wmi_reconnect_cmd(struct wmi_t *wmip, -+ A_UINT8 *bssid, -+ A_UINT16 channel); -+A_STATUS wmi_disconnect_cmd(struct wmi_t *wmip); -+A_STATUS wmi_getrev_cmd(struct wmi_t *wmip); -+A_STATUS wmi_startscan_cmd(struct wmi_t *wmip, WMI_SCAN_TYPE scanType, -+ A_BOOL forceFgScan, A_BOOL isLegacy, -+ A_UINT32 homeDwellTime, A_UINT32 forceScanInterval); -+A_STATUS wmi_scanparams_cmd(struct wmi_t *wmip, A_UINT16 fg_start_sec, -+ A_UINT16 fg_end_sec, A_UINT16 bg_sec, -+ A_UINT16 minact_chdw_msec, -+ A_UINT16 maxact_chdw_msec, A_UINT16 pas_chdw_msec, -+ A_UINT8 shScanRatio, A_UINT8 scanCtrlFlags, -+ A_UINT32 max_dfsch_act_time); -+A_STATUS wmi_bssfilter_cmd(struct wmi_t *wmip, A_UINT8 filter, A_UINT32 ieMask); -+A_STATUS wmi_probedSsid_cmd(struct wmi_t *wmip, A_UINT8 index, A_UINT8 flag, -+ A_UINT8 ssidLength, A_UCHAR *ssid); -+A_STATUS wmi_listeninterval_cmd(struct wmi_t *wmip, A_UINT16 listenInterval, A_UINT16 listenBeacons); -+A_STATUS wmi_bmisstime_cmd(struct wmi_t *wmip, A_UINT16 bmisstime, A_UINT16 bmissbeacons); -+A_STATUS wmi_associnfo_cmd(struct wmi_t *wmip, A_UINT8 ieType, -+ A_UINT8 ieLen, A_UINT8 *ieInfo); -+A_STATUS wmi_powermode_cmd(struct wmi_t *wmip, A_UINT8 powerMode); -+A_STATUS wmi_ibsspmcaps_cmd(struct wmi_t *wmip, A_UINT8 pmEnable, A_UINT8 ttl, -+ A_UINT16 atim_windows, A_UINT16 timeout_value); -+A_STATUS wmi_pmparams_cmd(struct wmi_t *wmip, A_UINT16 idlePeriod, -+ A_UINT16 psPollNum, A_UINT16 dtimPolicy); -+A_STATUS wmi_disctimeout_cmd(struct wmi_t *wmip, A_UINT8 timeout); -+A_STATUS wmi_sync_cmd(struct wmi_t *wmip, A_UINT8 syncNumber); -+A_STATUS wmi_create_pstream_cmd(struct wmi_t *wmip, WMI_CREATE_PSTREAM_CMD *pstream); -+A_STATUS wmi_delete_pstream_cmd(struct wmi_t *wmip, A_UINT8 trafficClass, A_UINT8 streamID); -+A_STATUS wmi_set_bitrate_cmd(struct wmi_t *wmip, A_INT32 rate); -+A_STATUS wmi_get_bitrate_cmd(struct wmi_t *wmip); -+A_INT8 wmi_validate_bitrate(struct wmi_t *wmip, A_INT32 rate); -+A_STATUS wmi_get_regDomain_cmd(struct wmi_t *wmip); -+A_STATUS wmi_get_channelList_cmd(struct wmi_t *wmip); -+A_STATUS wmi_set_channelParams_cmd(struct wmi_t *wmip, A_UINT8 scanParam, -+ WMI_PHY_MODE mode, A_INT8 numChan, -+ A_UINT16 *channelList); -+ -+A_STATUS wmi_set_snr_threshold_params(struct wmi_t *wmip, -+ WMI_SNR_THRESHOLD_PARAMS_CMD *snrCmd); -+A_STATUS wmi_set_rssi_threshold_params(struct wmi_t *wmip, -+ WMI_RSSI_THRESHOLD_PARAMS_CMD *rssiCmd); -+A_STATUS wmi_clr_rssi_snr(struct wmi_t *wmip); -+A_STATUS wmi_set_lq_threshold_params(struct wmi_t *wmip, -+ WMI_LQ_THRESHOLD_PARAMS_CMD *lqCmd); -+A_STATUS wmi_set_rts_cmd(struct wmi_t *wmip, A_UINT16 threshold); -+A_STATUS wmi_set_lpreamble_cmd(struct wmi_t *wmip, A_UINT8 status); -+ -+A_STATUS wmi_set_error_report_bitmask(struct wmi_t *wmip, A_UINT32 bitmask); -+ -+A_STATUS wmi_get_challenge_resp_cmd(struct wmi_t *wmip, A_UINT32 cookie, -+ A_UINT32 source); -+A_STATUS wmi_config_debug_module_cmd(struct wmi_t *wmip, A_UINT16 mmask, -+ A_UINT16 tsr, A_BOOL rep, A_UINT16 size, -+ A_UINT32 valid); -+A_STATUS wmi_get_stats_cmd(struct wmi_t *wmip); -+A_STATUS wmi_addKey_cmd(struct wmi_t *wmip, A_UINT8 keyIndex, -+ CRYPTO_TYPE keyType, A_UINT8 keyUsage, -+ A_UINT8 keyLength,A_UINT8 *keyRSC, -+ A_UINT8 *keyMaterial, A_UINT8 key_op_ctrl, -+ WMI_SYNC_FLAG sync_flag); -+A_STATUS wmi_add_krk_cmd(struct wmi_t *wmip, A_UINT8 *krk); -+A_STATUS wmi_delete_krk_cmd(struct wmi_t *wmip); -+A_STATUS wmi_deleteKey_cmd(struct wmi_t *wmip, A_UINT8 keyIndex); -+A_STATUS wmi_set_akmp_params_cmd(struct wmi_t *wmip, -+ WMI_SET_AKMP_PARAMS_CMD *akmpParams); -+A_STATUS wmi_get_pmkid_list_cmd(struct wmi_t *wmip); -+A_STATUS wmi_set_pmkid_list_cmd(struct wmi_t *wmip, -+ WMI_SET_PMKID_LIST_CMD *pmkInfo); -+A_STATUS wmi_set_txPwr_cmd(struct wmi_t *wmip, A_UINT8 dbM); -+A_STATUS wmi_get_txPwr_cmd(struct wmi_t *wmip); -+A_STATUS wmi_switch_radio(struct wmi_t *wmip, A_UINT8 on); -+A_STATUS wmi_addBadAp_cmd(struct wmi_t *wmip, A_UINT8 apIndex, A_UINT8 *bssid); -+A_STATUS wmi_deleteBadAp_cmd(struct wmi_t *wmip, A_UINT8 apIndex); -+A_STATUS wmi_set_tkip_countermeasures_cmd(struct wmi_t *wmip, A_BOOL en); -+A_STATUS wmi_setPmkid_cmd(struct wmi_t *wmip, A_UINT8 *bssid, A_UINT8 *pmkId, -+ A_BOOL set); -+A_STATUS wmi_set_access_params_cmd(struct wmi_t *wmip, A_UINT16 txop, -+ A_UINT8 eCWmin, A_UINT8 eCWmax, -+ A_UINT8 aifsn); -+A_STATUS wmi_set_retry_limits_cmd(struct wmi_t *wmip, A_UINT8 frameType, -+ A_UINT8 trafficClass, A_UINT8 maxRetries, -+ A_UINT8 enableNotify); -+ -+void wmi_get_current_bssid(struct wmi_t *wmip, A_UINT8 *bssid); -+ -+A_STATUS wmi_get_roam_tbl_cmd(struct wmi_t *wmip); -+A_STATUS wmi_get_roam_data_cmd(struct wmi_t *wmip, A_UINT8 roamDataType); -+A_STATUS wmi_set_roam_ctrl_cmd(struct wmi_t *wmip, WMI_SET_ROAM_CTRL_CMD *p, -+ A_UINT8 size); -+A_STATUS wmi_set_powersave_timers_cmd(struct wmi_t *wmip, -+ WMI_POWERSAVE_TIMERS_POLICY_CMD *pCmd, -+ A_UINT8 size); -+ -+A_STATUS wmi_set_opt_mode_cmd(struct wmi_t *wmip, A_UINT8 optMode); -+A_STATUS wmi_opt_tx_frame_cmd(struct wmi_t *wmip, -+ A_UINT8 frmType, -+ A_UINT8 *dstMacAddr, -+ A_UINT8 *bssid, -+ A_UINT16 optIEDataLen, -+ A_UINT8 *optIEData); -+ -+A_STATUS wmi_set_adhoc_bconIntvl_cmd(struct wmi_t *wmip, A_UINT16 intvl); -+A_STATUS wmi_set_voice_pkt_size_cmd(struct wmi_t *wmip, A_UINT16 voicePktSize); -+A_STATUS wmi_set_max_sp_len_cmd(struct wmi_t *wmip, A_UINT8 maxSpLen); -+A_UINT8 convert_userPriority_to_trafficClass(A_UINT8 userPriority); -+A_UINT8 wmi_get_power_mode_cmd(struct wmi_t *wmip); -+A_STATUS wmi_verify_tspec_params(WMI_CREATE_PSTREAM_CMD *pCmd, A_BOOL tspecCompliance); -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+A_STATUS wmi_test_cmd(struct wmi_t *wmip, A_UINT8 *buf, A_UINT32 len); -+#endif -+ -+A_STATUS wmi_set_bt_status_cmd(struct wmi_t *wmip, A_UINT8 streamType, A_UINT8 status); -+A_STATUS wmi_set_bt_params_cmd(struct wmi_t *wmip, WMI_SET_BT_PARAMS_CMD* cmd); -+ -+ -+/* -+ * This function is used to configure the fix rates mask to the target. -+ */ -+A_STATUS wmi_set_fixrates_cmd(struct wmi_t *wmip, A_INT16 fixRatesMask); -+A_STATUS wmi_get_ratemask_cmd(struct wmi_t *wmip); -+ -+A_STATUS wmi_set_authmode_cmd(struct wmi_t *wmip, A_UINT8 mode); -+ -+A_STATUS wmi_set_reassocmode_cmd(struct wmi_t *wmip, A_UINT8 mode); -+ -+A_STATUS wmi_set_wmm_cmd(struct wmi_t *wmip, WMI_WMM_STATUS status); -+A_STATUS wmi_set_wmm_txop(struct wmi_t *wmip, WMI_TXOP_CFG txEnable); -+ -+A_STATUS wmi_get_keepalive_configured(struct wmi_t *wmip); -+A_UINT8 wmi_get_keepalive_cmd(struct wmi_t *wmip); -+A_STATUS wmi_set_keepalive_cmd(struct wmi_t *wmip, A_UINT8 keepaliveInterval); -+ -+A_STATUS wmi_set_appie_cmd(struct wmi_t *wmip, A_UINT8 mgmtFrmType, -+ A_UINT8 ieLen,A_UINT8 *ieInfo); -+ -+A_STATUS wmi_set_halparam_cmd(struct wmi_t *wmip, A_UINT8 *cmd, A_UINT16 dataLen); -+A_INT32 wmi_get_rate(A_INT8 rateindex); -+ -+/*Wake on Wireless WMI commands*/ -+A_STATUS wmi_set_host_sleep_mode_cmd(struct wmi_t *wmip, WMI_SET_HOST_SLEEP_MODE_CMD *cmd); -+A_STATUS wmi_set_wow_mode_cmd(struct wmi_t *wmip, WMI_SET_WOW_MODE_CMD *cmd); -+A_STATUS wmi_get_wow_list_cmd(struct wmi_t *wmip, WMI_GET_WOW_LIST_CMD *cmd); -+A_STATUS wmi_add_wow_pattern_cmd(struct wmi_t *wmip, -+ WMI_ADD_WOW_PATTERN_CMD *cmd, A_UINT8* pattern, A_UINT8* mask, A_UINT8 pattern_size); -+A_STATUS wmi_del_wow_pattern_cmd(struct wmi_t *wmip, -+ WMI_DEL_WOW_PATTERN_CMD *cmd); -+A_STATUS wmi_set_wsc_status_cmd(struct wmi_t *wmip, A_UINT32 status); -+ -+bss_t * -+wmi_find_Ssidnode (struct wmi_t *wmip, A_UCHAR *pSsid, -+ A_UINT32 ssidLength, A_BOOL bIsWPA2); -+ -+void -+wmi_node_return (struct wmi_t *wmip, bss_t *bss); -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _WMI_API_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/wmi.h -@@ -0,0 +1,1743 @@ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * This file contains the definitions of the WMI protocol specified in the -+ * Wireless Module Interface (WMI). It includes definitions of all the -+ * commands and events. Commands are messages from the host to the WM. -+ * Events and Replies are messages from the WM to the host. -+ * -+ * Ownership of correctness in regards to WMI commands -+ * belongs to the host driver and the WM is not required to validate -+ * parameters for value, proper range, or any other checking. -+ * -+ */ -+ -+#ifndef _WMI_H_ -+#define _WMI_H_ -+ -+#ifndef ATH_TARGET -+#include "athstartpack.h" -+#endif -+ -+#include "wmix.h" -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+#define WMI_PROTOCOL_VERSION 0x0002 -+#define WMI_PROTOCOL_REVISION 0x0000 -+ -+#define ATH_MAC_LEN 6 /* length of mac in bytes */ -+#define WMI_CMD_MAX_LEN 100 -+#define WMI_CONTROL_MSG_MAX_LEN 256 -+#define WMI_OPT_CONTROL_MSG_MAX_LEN 1536 -+#define IS_ETHERTYPE(_typeOrLen) ((_typeOrLen) >= 0x0600) -+#define RFC1042OUI {0x00, 0x00, 0x00} -+ -+#define IP_ETHERTYPE 0x0800 -+ -+#define WMI_IMPLICIT_PSTREAM 0xFF -+#define WMI_MAX_THINSTREAM 15 -+ -+struct host_app_area_s { -+ A_UINT32 wmi_protocol_ver; -+}; -+ -+/* -+ * Data Path -+ */ -+typedef PREPACK struct { -+ A_UINT8 dstMac[ATH_MAC_LEN]; -+ A_UINT8 srcMac[ATH_MAC_LEN]; -+ A_UINT16 typeOrLen; -+} POSTPACK ATH_MAC_HDR; -+ -+typedef PREPACK struct { -+ A_UINT8 dsap; -+ A_UINT8 ssap; -+ A_UINT8 cntl; -+ A_UINT8 orgCode[3]; -+ A_UINT16 etherType; -+} POSTPACK ATH_LLC_SNAP_HDR; -+ -+typedef enum { -+ DATA_MSGTYPE = 0x0, -+ CNTL_MSGTYPE, -+ SYNC_MSGTYPE -+} WMI_MSG_TYPE; -+ -+ -+typedef PREPACK struct { -+ A_INT8 rssi; -+ A_UINT8 info; /* WMI_MSG_TYPE in lower 2 bits - b1b0 */ -+ /* UP in next 3 bits - b4b3b2 */ -+#define WMI_DATA_HDR_MSG_TYPE_MASK 0x03 -+#define WMI_DATA_HDR_MSG_TYPE_SHIFT 0 -+#define WMI_DATA_HDR_UP_MASK 0x07 -+#define WMI_DATA_HDR_UP_SHIFT 2 -+#define WMI_DATA_HDR_IS_MSG_TYPE(h, t) (((h)->info & (WMI_DATA_HDR_MSG_TYPE_MASK)) == (t)) -+} POSTPACK WMI_DATA_HDR; -+ -+ -+#define WMI_DATA_HDR_SET_MSG_TYPE(h, t) (h)->info = (((h)->info & ~(WMI_DATA_HDR_MSG_TYPE_MASK << WMI_DATA_HDR_MSG_TYPE_SHIFT)) | (t << WMI_DATA_HDR_MSG_TYPE_SHIFT)) -+#define WMI_DATA_HDR_SET_UP(h, p) (h)->info = (((h)->info & ~(WMI_DATA_HDR_UP_MASK << WMI_DATA_HDR_UP_SHIFT)) | (p << WMI_DATA_HDR_UP_SHIFT)) -+ -+/* -+ * Control Path -+ */ -+typedef PREPACK struct { -+ A_UINT16 commandId; -+} POSTPACK WMI_CMD_HDR; /* used for commands and events */ -+ -+/* -+ * List of Commnands -+ */ -+typedef enum { -+ WMI_CONNECT_CMDID = 0x0001, -+ WMI_RECONNECT_CMDID, -+ WMI_DISCONNECT_CMDID, -+ WMI_SYNCHRONIZE_CMDID, -+ WMI_CREATE_PSTREAM_CMDID, -+ WMI_DELETE_PSTREAM_CMDID, -+ WMI_START_SCAN_CMDID, -+ WMI_SET_SCAN_PARAMS_CMDID, -+ WMI_SET_BSS_FILTER_CMDID, -+ WMI_SET_PROBED_SSID_CMDID, -+ WMI_SET_LISTEN_INT_CMDID, -+ WMI_SET_BMISS_TIME_CMDID, -+ WMI_SET_DISC_TIMEOUT_CMDID, -+ WMI_GET_CHANNEL_LIST_CMDID, -+ WMI_SET_BEACON_INT_CMDID, -+ WMI_GET_STATISTICS_CMDID, -+ WMI_SET_CHANNEL_PARAMS_CMDID, -+ WMI_SET_POWER_MODE_CMDID, -+ WMI_SET_IBSS_PM_CAPS_CMDID, -+ WMI_SET_POWER_PARAMS_CMDID, -+ WMI_SET_POWERSAVE_TIMERS_POLICY_CMDID, -+ WMI_ADD_CIPHER_KEY_CMDID, -+ WMI_DELETE_CIPHER_KEY_CMDID, -+ WMI_ADD_KRK_CMDID, -+ WMI_DELETE_KRK_CMDID, -+ WMI_SET_PMKID_CMDID, -+ WMI_SET_TX_PWR_CMDID, -+ WMI_GET_TX_PWR_CMDID, -+ WMI_SET_ASSOC_INFO_CMDID, -+ WMI_ADD_BAD_AP_CMDID, -+ WMI_DELETE_BAD_AP_CMDID, -+ WMI_SET_TKIP_COUNTERMEASURES_CMDID, -+ WMI_RSSI_THRESHOLD_PARAMS_CMDID, -+ WMI_TARGET_ERROR_REPORT_BITMASK_CMDID, -+ WMI_SET_ACCESS_PARAMS_CMDID, -+ WMI_SET_RETRY_LIMITS_CMDID, -+ WMI_SET_OPT_MODE_CMDID, -+ WMI_OPT_TX_FRAME_CMDID, -+ WMI_SET_VOICE_PKT_SIZE_CMDID, -+ WMI_SET_MAX_SP_LEN_CMDID, -+ WMI_SET_ROAM_CTRL_CMDID, -+ WMI_GET_ROAM_TBL_CMDID, -+ WMI_GET_ROAM_DATA_CMDID, -+ WMI_ENABLE_RM_CMDID, -+ WMI_SET_MAX_OFFHOME_DURATION_CMDID, -+ WMI_EXTENSION_CMDID, /* Non-wireless extensions */ -+ WMI_SNR_THRESHOLD_PARAMS_CMDID, -+ WMI_LQ_THRESHOLD_PARAMS_CMDID, -+ WMI_SET_LPREAMBLE_CMDID, -+ WMI_SET_RTS_CMDID, -+ WMI_CLR_RSSI_SNR_CMDID, -+ WMI_SET_FIXRATES_CMDID, -+ WMI_GET_FIXRATES_CMDID, -+ WMI_SET_AUTH_MODE_CMDID, -+ WMI_SET_REASSOC_MODE_CMDID, -+ WMI_SET_WMM_CMDID, -+ WMI_SET_WMM_TXOP_CMDID, -+ WMI_TEST_CMDID, -+ WMI_SET_BT_STATUS_CMDID, -+ WMI_SET_BT_PARAMS_CMDID, -+ -+ WMI_SET_KEEPALIVE_CMDID, -+ WMI_GET_KEEPALIVE_CMDID, -+ WMI_SET_APPIE_CMDID, -+ WMI_GET_APPIE_CMDID, -+ WMI_SET_WSC_STATUS_CMDID, -+ -+ /* Wake on Wireless */ -+ WMI_SET_HOST_SLEEP_MODE_CMDID, -+ WMI_SET_WOW_MODE_CMDID, -+ WMI_GET_WOW_LIST_CMDID, -+ WMI_ADD_WOW_PATTERN_CMDID, -+ WMI_DEL_WOW_PATTERN_CMDID, -+ WMI_SET_MAC_ADDRESS_CMDID, -+ WMI_SET_AKMP_PARAMS_CMDID, -+ WMI_SET_PMKID_LIST_CMDID, -+ WMI_GET_PMKID_LIST_CMDID, -+ -+ /* -+ * Developer commands starts at 0xF000 -+ */ -+ WMI_SET_BITRATE_CMDID = 0xF000, -+ WMI_GET_BITRATE_CMDID, -+ WMI_SET_WHALPARAM_CMDID, -+ -+} WMI_COMMAND_ID; -+ -+/* -+ * Frame Types -+ */ -+typedef enum { -+ WMI_FRAME_BEACON = 0, -+ WMI_FRAME_PROBE_REQ, -+ WMI_FRAME_PROBE_RESP, -+ WMI_FRAME_ASSOC_REQ, -+ WMI_FRAME_ASSOC_RESP, -+ WMI_NUM_MGMT_FRAME -+} WMI_MGMT_FRAME_TYPE; -+ -+/* -+ * Connect Command -+ */ -+typedef enum { -+ INFRA_NETWORK = 0x01, -+ ADHOC_NETWORK = 0x02, -+ ADHOC_CREATOR = 0x04, -+} NETWORK_TYPE; -+ -+typedef enum { -+ OPEN_AUTH = 0x01, -+ SHARED_AUTH = 0x02, -+ LEAP_AUTH = 0x04, /* different from IEEE_AUTH_MODE definitions */ -+} DOT11_AUTH_MODE; -+ -+typedef enum { -+ NONE_AUTH = 0x01, -+ WPA_AUTH = 0x02, -+ WPA_PSK_AUTH = 0x03, -+ WPA2_AUTH = 0x04, -+ WPA2_PSK_AUTH = 0x05, -+ WPA_AUTH_CCKM = 0x06, -+ WPA2_AUTH_CCKM = 0x07, -+} AUTH_MODE; -+ -+typedef enum { -+ NONE_CRYPT = 0x01, -+ WEP_CRYPT = 0x02, -+ TKIP_CRYPT = 0x03, -+ AES_CRYPT = 0x04, -+} CRYPTO_TYPE; -+ -+#define WMI_MIN_CRYPTO_TYPE NONE_CRYPT -+#define WMI_MAX_CRYPTO_TYPE (AES_CRYPT + 1) -+ -+#define WMI_MIN_KEY_INDEX 0 -+#define WMI_MAX_KEY_INDEX 3 -+ -+#define WMI_MAX_KEY_LEN 32 -+ -+#define WMI_MAX_SSID_LEN 32 -+ -+typedef enum { -+ CONNECT_ASSOC_POLICY_USER = 0x0001, -+ CONNECT_SEND_REASSOC = 0x0002, -+ CONNECT_IGNORE_WPAx_GROUP_CIPHER = 0x0004, -+ CONNECT_PROFILE_MATCH_DONE = 0x0008, -+ CONNECT_IGNORE_AAC_BEACON = 0x0010, -+ CONNECT_CSA_FOLLOW_BSS = 0x0020, -+} WMI_CONNECT_CTRL_FLAGS_BITS; -+ -+#define DEFAULT_CONNECT_CTRL_FLAGS (CONNECT_CSA_FOLLOW_BSS) -+ -+typedef PREPACK struct { -+ A_UINT8 networkType; -+ A_UINT8 dot11AuthMode; -+ A_UINT8 authMode; -+ A_UINT8 pairwiseCryptoType; -+ A_UINT8 pairwiseCryptoLen; -+ A_UINT8 groupCryptoType; -+ A_UINT8 groupCryptoLen; -+ A_UINT8 ssidLength; -+ A_UCHAR ssid[WMI_MAX_SSID_LEN]; -+ A_UINT16 channel; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT32 ctrl_flags; -+} POSTPACK WMI_CONNECT_CMD; -+ -+/* -+ * WMI_RECONNECT_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT16 channel; /* hint */ -+ A_UINT8 bssid[ATH_MAC_LEN]; /* mandatory if set */ -+} POSTPACK WMI_RECONNECT_CMD; -+ -+/* -+ * WMI_ADD_CIPHER_KEY_CMDID -+ */ -+typedef enum { -+ PAIRWISE_USAGE = 0x00, -+ GROUP_USAGE = 0x01, -+ TX_USAGE = 0x02, /* default Tx Key - Static WEP only */ -+} KEY_USAGE; -+ -+/* -+ * Bit Flag -+ * Bit 0 - Initialise TSC - default is Initialize -+ */ -+#define KEY_OP_INIT_TSC 0x01 -+#define KEY_OP_INIT_RSC 0x02 -+ -+#define KEY_OP_INIT_VAL 0x03 /* Default Initialise the TSC & RSC */ -+#define KEY_OP_VALID_MASK 0x03 -+ -+typedef PREPACK struct { -+ A_UINT8 keyIndex; -+ A_UINT8 keyType; -+ A_UINT8 keyUsage; /* KEY_USAGE */ -+ A_UINT8 keyLength; -+ A_UINT8 keyRSC[8]; /* key replay sequence counter */ -+ A_UINT8 key[WMI_MAX_KEY_LEN]; -+ A_UINT8 key_op_ctrl; /* Additional Key Control information */ -+} POSTPACK WMI_ADD_CIPHER_KEY_CMD; -+ -+/* -+ * WMI_DELETE_CIPHER_KEY_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 keyIndex; -+} POSTPACK WMI_DELETE_CIPHER_KEY_CMD; -+ -+#define WMI_KRK_LEN 16 -+/* -+ * WMI_ADD_KRK_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 krk[WMI_KRK_LEN]; -+} POSTPACK WMI_ADD_KRK_CMD; -+ -+/* -+ * WMI_SET_TKIP_COUNTERMEASURES_CMDID -+ */ -+typedef enum { -+ WMI_TKIP_CM_DISABLE = 0x0, -+ WMI_TKIP_CM_ENABLE = 0x1, -+} WMI_TKIP_CM_CONTROL; -+ -+typedef PREPACK struct { -+ A_UINT8 cm_en; /* WMI_TKIP_CM_CONTROL */ -+} POSTPACK WMI_SET_TKIP_COUNTERMEASURES_CMD; -+ -+/* -+ * WMI_SET_PMKID_CMDID -+ */ -+ -+#define WMI_PMKID_LEN 16 -+ -+typedef enum { -+ PMKID_DISABLE = 0, -+ PMKID_ENABLE = 1, -+} PMKID_ENABLE_FLG; -+ -+typedef PREPACK struct { -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT8 enable; /* PMKID_ENABLE_FLG */ -+ A_UINT8 pmkid[WMI_PMKID_LEN]; -+} POSTPACK WMI_SET_PMKID_CMD; -+ -+/* -+ * WMI_START_SCAN_CMD -+ */ -+typedef enum { -+ WMI_LONG_SCAN = 0, -+ WMI_SHORT_SCAN = 1, -+} WMI_SCAN_TYPE; -+ -+typedef PREPACK struct { -+ A_BOOL forceFgScan; -+ A_BOOL isLegacy; /* For Legacy Cisco AP compatibility */ -+ A_UINT32 homeDwellTime; /* Maximum duration in the home channel(milliseconds) */ -+ A_UINT32 forceScanInterval; /* Time interval between scans (milliseconds)*/ -+ A_UINT8 scanType; /* WMI_SCAN_TYPE */ -+} POSTPACK WMI_START_SCAN_CMD; -+ -+/* -+ * WMI_SET_SCAN_PARAMS_CMDID -+ */ -+#define WMI_SHORTSCANRATIO_DEFAULT 3 -+typedef enum { -+ CONNECT_SCAN_CTRL_FLAGS = 0x01, /* set if can scan in the Connect cmd */ -+ SCAN_CONNECTED_CTRL_FLAGS = 0x02, /* set if scan for the SSID it is */ -+ /* already connected to */ -+ ACTIVE_SCAN_CTRL_FLAGS = 0x04, /* set if enable active scan */ -+ ROAM_SCAN_CTRL_FLAGS = 0x08, /* set if enable roam scan when bmiss and lowrssi */ -+ REPORT_BSSINFO_CTRL_FLAGS = 0x10, /* set if follows customer BSSINFO reporting rule */ -+ ENABLE_AUTO_CTRL_FLAGS = 0x20, /* if disabled, target doesn't -+ scan after a disconnect event */ -+ ENABLE_SCAN_ABORT_EVENT = 0x40 /* Scan complete event with canceled status will be generated when a scan is prempted before it gets completed */ -+ -+} WMI_SCAN_CTRL_FLAGS_BITS; -+ -+#define CAN_SCAN_IN_CONNECT(flags) (flags & CONNECT_SCAN_CTRL_FLAGS) -+#define CAN_SCAN_CONNECTED(flags) (flags & SCAN_CONNECTED_CTRL_FLAGS) -+#define ENABLE_ACTIVE_SCAN(flags) (flags & ACTIVE_SCAN_CTRL_FLAGS) -+#define ENABLE_ROAM_SCAN(flags) (flags & ROAM_SCAN_CTRL_FLAGS) -+#define CONFIG_REPORT_BSSINFO(flags) (flags & REPORT_BSSINFO_CTRL_FLAGS) -+#define IS_AUTO_SCAN_ENABLED(flags) (flags & ENABLE_AUTO_CTRL_FLAGS) -+#define SCAN_ABORT_EVENT_ENABLED(flags) (flags & ENABLE_SCAN_ABORT_EVENT) -+ -+#define DEFAULT_SCAN_CTRL_FLAGS (CONNECT_SCAN_CTRL_FLAGS| SCAN_CONNECTED_CTRL_FLAGS| ACTIVE_SCAN_CTRL_FLAGS| ROAM_SCAN_CTRL_FLAGS | ENABLE_AUTO_CTRL_FLAGS) -+ -+ -+typedef PREPACK struct { -+ A_UINT16 fg_start_period; /* seconds */ -+ A_UINT16 fg_end_period; /* seconds */ -+ A_UINT16 bg_period; /* seconds */ -+ A_UINT16 maxact_chdwell_time; /* msec */ -+ A_UINT16 pas_chdwell_time; /* msec */ -+ A_UINT8 shortScanRatio; /* how many shorts scan for one long */ -+ A_UINT8 scanCtrlFlags; -+ A_UINT16 minact_chdwell_time; /* msec */ -+ A_UINT32 max_dfsch_act_time; /* msecs */ -+} POSTPACK WMI_SCAN_PARAMS_CMD; -+ -+/* -+ * WMI_SET_BSS_FILTER_CMDID -+ */ -+typedef enum { -+ NONE_BSS_FILTER = 0x0, /* no beacons forwarded */ -+ ALL_BSS_FILTER, /* all beacons forwarded */ -+ PROFILE_FILTER, /* only beacons matching profile */ -+ ALL_BUT_PROFILE_FILTER, /* all but beacons matching profile */ -+ CURRENT_BSS_FILTER, /* only beacons matching current BSS */ -+ ALL_BUT_BSS_FILTER, /* all but beacons matching BSS */ -+ PROBED_SSID_FILTER, /* beacons matching probed ssid */ -+ LAST_BSS_FILTER, /* marker only */ -+} WMI_BSS_FILTER; -+ -+typedef PREPACK struct { -+ A_UINT8 bssFilter; /* see WMI_BSS_FILTER */ -+ A_UINT32 ieMask; -+} POSTPACK WMI_BSS_FILTER_CMD; -+ -+/* -+ * WMI_SET_PROBED_SSID_CMDID -+ */ -+#define MAX_PROBED_SSID_INDEX 5 -+ -+typedef enum { -+ DISABLE_SSID_FLAG = 0, /* disables entry */ -+ SPECIFIC_SSID_FLAG = 0x01, /* probes specified ssid */ -+ ANY_SSID_FLAG = 0x02, /* probes for any ssid */ -+} WMI_SSID_FLAG; -+ -+typedef PREPACK struct { -+ A_UINT8 entryIndex; /* 0 to MAX_PROBED_SSID_INDEX */ -+ A_UINT8 flag; /* WMI_SSID_FLG */ -+ A_UINT8 ssidLength; -+ A_UINT8 ssid[32]; -+} POSTPACK WMI_PROBED_SSID_CMD; -+ -+/* -+ * WMI_SET_LISTEN_INT_CMDID -+ * The Listen interval is between 15 and 3000 TUs -+ */ -+#define MIN_LISTEN_INTERVAL 15 -+#define MAX_LISTEN_INTERVAL 5000 -+#define MIN_LISTEN_BEACONS 1 -+#define MAX_LISTEN_BEACONS 50 -+ -+typedef PREPACK struct { -+ A_UINT16 listenInterval; -+ A_UINT16 numBeacons; -+} POSTPACK WMI_LISTEN_INT_CMD; -+ -+/* -+ * WMI_SET_BEACON_INT_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT16 beaconInterval; -+} POSTPACK WMI_BEACON_INT_CMD; -+ -+/* -+ * WMI_SET_BMISS_TIME_CMDID -+ * valid values are between 1000 and 5000 TUs -+ */ -+ -+#define MIN_BMISS_TIME 1000 -+#define MAX_BMISS_TIME 5000 -+#define MIN_BMISS_BEACONS 1 -+#define MAX_BMISS_BEACONS 50 -+ -+typedef PREPACK struct { -+ A_UINT16 bmissTime; -+ A_UINT16 numBeacons; -+} POSTPACK WMI_BMISS_TIME_CMD; -+ -+/* -+ * WMI_SET_POWER_MODE_CMDID -+ */ -+typedef enum { -+ REC_POWER = 0x01, -+ MAX_PERF_POWER, -+} WMI_POWER_MODE; -+ -+typedef PREPACK struct { -+ A_UINT8 powerMode; /* WMI_POWER_MODE */ -+} POSTPACK WMI_POWER_MODE_CMD; -+ -+/* -+ * WMI_SET_POWER_PARAMS_CMDID -+ */ -+typedef enum { -+ IGNORE_DTIM = 0x01, -+ NORMAL_DTIM = 0x02, -+ STICK_DTIM = 0x03, -+} WMI_DTIM_POLICY; -+ -+typedef PREPACK struct { -+ A_UINT16 idle_period; /* msec */ -+ A_UINT16 pspoll_number; -+ A_UINT16 dtim_policy; -+} POSTPACK WMI_POWER_PARAMS_CMD; -+ -+typedef PREPACK struct { -+ A_UINT8 power_saving; -+ A_UINT8 ttl; /* number of beacon periods */ -+ A_UINT16 atim_windows; /* msec */ -+ A_UINT16 timeout_value; /* msec */ -+} POSTPACK WMI_IBSS_PM_CAPS_CMD; -+ -+/* -+ * WMI_SET_POWERSAVE_TIMERS_POLICY_CMDID -+ */ -+typedef enum { -+ IGNORE_TIM_ALL_QUEUES_APSD = 0, -+ PROCESS_TIM_ALL_QUEUES_APSD = 1, -+ IGNORE_TIM_SIMULATED_APSD = 2, -+ PROCESS_TIM_SIMULATED_APSD = 3, -+} APSD_TIM_POLICY; -+ -+typedef PREPACK struct { -+ A_UINT16 psPollTimeout; /* msec */ -+ A_UINT16 triggerTimeout; /* msec */ -+ A_UINT32 apsdTimPolicy; /* TIM behavior with ques APSD enabled. Default is IGNORE_TIM_ALL_QUEUES_APSD */ -+ A_UINT32 simulatedAPSDTimPolicy; /* TIM behavior with simulated APSD enabled. Default is PROCESS_TIM_SIMULATED_APSD */ -+} POSTPACK WMI_POWERSAVE_TIMERS_POLICY_CMD; -+ -+/* -+ * WMI_SET_VOICE_PKT_SIZE_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT16 voicePktSize; -+} POSTPACK WMI_SET_VOICE_PKT_SIZE_CMD; -+ -+/* -+ * WMI_SET_MAX_SP_LEN_CMDID -+ */ -+typedef enum { -+ DELIVER_ALL_PKT = 0x0, -+ DELIVER_2_PKT = 0x1, -+ DELIVER_4_PKT = 0x2, -+ DELIVER_6_PKT = 0x3, -+} APSD_SP_LEN_TYPE; -+ -+typedef PREPACK struct { -+ A_UINT8 maxSPLen; -+} POSTPACK WMI_SET_MAX_SP_LEN_CMD; -+ -+/* -+ * WMI_SET_DISC_TIMEOUT_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 disconnectTimeout; /* seconds */ -+} POSTPACK WMI_DISC_TIMEOUT_CMD; -+ -+typedef enum { -+ UPLINK_TRAFFIC = 0, -+ DNLINK_TRAFFIC = 1, -+ BIDIR_TRAFFIC = 2, -+} DIR_TYPE; -+ -+typedef enum { -+ DISABLE_FOR_THIS_AC = 0, -+ ENABLE_FOR_THIS_AC = 1, -+ ENABLE_FOR_ALL_AC = 2, -+} VOICEPS_CAP_TYPE; -+ -+typedef enum { -+ TRAFFIC_TYPE_APERIODIC = 0, -+ TRAFFIC_TYPE_PERIODIC = 1, -+}TRAFFIC_TYPE; -+ -+/* -+ * WMI_CREATE_PSTREAM_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT32 minServiceInt; /* in milli-sec */ -+ A_UINT32 maxServiceInt; /* in milli-sec */ -+ A_UINT32 inactivityInt; /* in milli-sec */ -+ A_UINT32 suspensionInt; /* in milli-sec */ -+ A_UINT32 serviceStartTime; -+ A_UINT32 minDataRate; /* in bps */ -+ A_UINT32 meanDataRate; /* in bps */ -+ A_UINT32 peakDataRate; /* in bps */ -+ A_UINT32 maxBurstSize; -+ A_UINT32 delayBound; -+ A_UINT32 minPhyRate; /* in bps */ -+ A_UINT32 sba; -+ A_UINT32 mediumTime; -+ A_UINT16 nominalMSDU; /* in octects */ -+ A_UINT16 maxMSDU; /* in octects */ -+ A_UINT8 trafficClass; -+ A_UINT8 trafficType; /* TRAFFIC_TYPE */ -+ A_UINT8 trafficDirection; /* TRAFFIC_DIR */ -+ A_UINT8 voicePSCapability; /* VOICEPS_CAP_TYPE */ -+ A_UINT8 tsid; -+ A_UINT8 userPriority; /* 802.1D user priority */ -+} POSTPACK WMI_CREATE_PSTREAM_CMD; -+ -+/* -+ * WMI_DELETE_PSTREAM_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 trafficClass; -+ A_UINT8 tsid; -+} POSTPACK WMI_DELETE_PSTREAM_CMD; -+ -+/* -+ * WMI_SET_CHANNEL_PARAMS_CMDID -+ */ -+typedef enum { -+ WMI_11A_MODE = 0x1, -+ WMI_11G_MODE = 0x2, -+ WMI_11AG_MODE = 0x3, -+ WMI_11B_MODE = 0x4, -+ WMI_11GONLY_MODE = 0x5, -+} WMI_PHY_MODE; -+ -+#define WMI_MAX_CHANNELS 32 -+ -+typedef PREPACK struct { -+ A_UINT8 reserved1; -+ A_UINT8 scanParam; /* set if enable scan */ -+ A_UINT8 phyMode; /* see WMI_PHY_MODE */ -+ A_UINT8 numChannels; /* how many channels follow */ -+ A_UINT16 channelList[1]; /* channels in Mhz */ -+} POSTPACK WMI_CHANNEL_PARAMS_CMD; -+ -+ -+/* -+ * WMI_RSSI_THRESHOLD_PARAMS_CMDID -+ * Setting the polltime to 0 would disable polling. -+ * Threshold values are in the ascending order, and should agree to: -+ * (lowThreshold_lowerVal < lowThreshold_upperVal < highThreshold_lowerVal -+ * < highThreshold_upperVal) -+ */ -+ -+typedef PREPACK struct WMI_RSSI_THRESHOLD_PARAMS{ -+ A_UINT32 pollTime; /* Polling time as a factor of LI */ -+ A_INT16 thresholdAbove1_Val; /* lowest of upper */ -+ A_INT16 thresholdAbove2_Val; -+ A_INT16 thresholdAbove3_Val; -+ A_INT16 thresholdAbove4_Val; -+ A_INT16 thresholdAbove5_Val; -+ A_INT16 thresholdAbove6_Val; /* highest of upper */ -+ A_INT16 thresholdBelow1_Val; /* lowest of bellow */ -+ A_INT16 thresholdBelow2_Val; -+ A_INT16 thresholdBelow3_Val; -+ A_INT16 thresholdBelow4_Val; -+ A_INT16 thresholdBelow5_Val; -+ A_INT16 thresholdBelow6_Val; /* highest of bellow */ -+ A_UINT8 weight; /* "alpha" */ -+ A_UINT8 reserved[3]; -+} POSTPACK WMI_RSSI_THRESHOLD_PARAMS_CMD; -+ -+/* -+ * WMI_SNR_THRESHOLD_PARAMS_CMDID -+ * Setting the polltime to 0 would disable polling. -+ */ -+ -+typedef PREPACK struct WMI_SNR_THRESHOLD_PARAMS{ -+ A_UINT32 pollTime; /* Polling time as a factor of LI */ -+ A_UINT8 weight; /* "alpha" */ -+ A_UINT8 thresholdAbove1_Val; /* lowest of uppper*/ -+ A_UINT8 thresholdAbove2_Val; -+ A_UINT8 thresholdAbove3_Val; -+ A_UINT8 thresholdAbove4_Val; /* highest of upper */ -+ A_UINT8 thresholdBelow1_Val; /* lowest of bellow */ -+ A_UINT8 thresholdBelow2_Val; -+ A_UINT8 thresholdBelow3_Val; -+ A_UINT8 thresholdBelow4_Val; /* highest of bellow */ -+ A_UINT8 reserved[3]; -+} POSTPACK WMI_SNR_THRESHOLD_PARAMS_CMD; -+ -+/* -+ * WMI_LQ_THRESHOLD_PARAMS_CMDID -+ */ -+typedef PREPACK struct WMI_LQ_THRESHOLD_PARAMS { -+ A_UINT8 enable; -+ A_UINT8 thresholdAbove1_Val; -+ A_UINT8 thresholdAbove2_Val; -+ A_UINT8 thresholdAbove3_Val; -+ A_UINT8 thresholdAbove4_Val; -+ A_UINT8 thresholdBelow1_Val; -+ A_UINT8 thresholdBelow2_Val; -+ A_UINT8 thresholdBelow3_Val; -+ A_UINT8 thresholdBelow4_Val; -+ A_UINT8 reserved[3]; -+} POSTPACK WMI_LQ_THRESHOLD_PARAMS_CMD; -+ -+typedef enum { -+ WMI_LPREAMBLE_DISABLED = 0, -+ WMI_LPREAMBLE_ENABLED -+} WMI_LPREAMBLE_STATUS; -+ -+typedef PREPACK struct { -+ A_UINT8 status; -+}POSTPACK WMI_SET_LPREAMBLE_CMD; -+ -+typedef PREPACK struct { -+ A_UINT16 threshold; -+}POSTPACK WMI_SET_RTS_CMD; -+ -+/* -+ * WMI_TARGET_ERROR_REPORT_BITMASK_CMDID -+ * Sets the error reporting event bitmask in target. Target clears it -+ * upon an error. Subsequent errors are counted, but not reported -+ * via event, unless the bitmask is set again. -+ */ -+typedef PREPACK struct { -+ A_UINT32 bitmask; -+} POSTPACK WMI_TARGET_ERROR_REPORT_BITMASK; -+ -+/* -+ * WMI_SET_TX_PWR_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 dbM; /* in dbM units */ -+} POSTPACK WMI_SET_TX_PWR_CMD, WMI_TX_PWR_REPLY; -+ -+/* -+ * WMI_SET_ASSOC_INFO_CMDID -+ * -+ * A maximum of 2 private IEs can be sent in the [Re]Assoc request. -+ * A 3rd one, the CCX version IE can also be set from the host. -+ */ -+#define WMI_MAX_ASSOC_INFO_TYPE 2 -+#define WMI_CCX_VER_IE 2 /* ieType to set CCX Version IE */ -+ -+#define WMI_MAX_ASSOC_INFO_LEN 240 -+ -+typedef PREPACK struct { -+ A_UINT8 ieType; -+ A_UINT8 bufferSize; -+ A_UINT8 assocInfo[1]; /* up to WMI_MAX_ASSOC_INFO_LEN */ -+} POSTPACK WMI_SET_ASSOC_INFO_CMD; -+ -+ -+/* -+ * WMI_GET_TX_PWR_CMDID does not take any parameters -+ */ -+ -+/* -+ * WMI_ADD_BAD_AP_CMDID -+ */ -+#define WMI_MAX_BAD_AP_INDEX 1 -+ -+typedef PREPACK struct { -+ A_UINT8 badApIndex; /* 0 to WMI_MAX_BAD_AP_INDEX */ -+ A_UINT8 bssid[ATH_MAC_LEN]; -+} POSTPACK WMI_ADD_BAD_AP_CMD; -+ -+/* -+ * WMI_DELETE_BAD_AP_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 badApIndex; /* 0 to WMI_MAX_BAD_AP_INDEX */ -+} POSTPACK WMI_DELETE_BAD_AP_CMD; -+ -+/* -+ * WMI_SET_ACCESS_PARAMS_CMDID -+ */ -+#define WMI_DEFAULT_TXOP_ACPARAM 0 /* implies one MSDU */ -+#define WMI_DEFAULT_ECWMIN_ACPARAM 4 /* corresponds to CWmin of 15 */ -+#define WMI_DEFAULT_ECWMAX_ACPARAM 10 /* corresponds to CWmax of 1023 */ -+#define WMI_MAX_CW_ACPARAM 15 /* maximum eCWmin or eCWmax */ -+#define WMI_DEFAULT_AIFSN_ACPARAM 2 -+#define WMI_MAX_AIFSN_ACPARAM 15 -+typedef PREPACK struct { -+ A_UINT16 txop; /* in units of 32 usec */ -+ A_UINT8 eCWmin; -+ A_UINT8 eCWmax; -+ A_UINT8 aifsn; -+} POSTPACK WMI_SET_ACCESS_PARAMS_CMD; -+ -+ -+/* -+ * WMI_SET_RETRY_LIMITS_CMDID -+ * -+ * This command is used to customize the number of retries the -+ * wlan device will perform on a given frame. -+ */ -+#define WMI_MIN_RETRIES 2 -+#define WMI_MAX_RETRIES 13 -+typedef enum { -+ MGMT_FRAMETYPE = 0, -+ CONTROL_FRAMETYPE = 1, -+ DATA_FRAMETYPE = 2 -+} WMI_FRAMETYPE; -+ -+typedef PREPACK struct { -+ A_UINT8 frameType; /* WMI_FRAMETYPE */ -+ A_UINT8 trafficClass; /* applies only to DATA_FRAMETYPE */ -+ A_UINT8 maxRetries; -+ A_UINT8 enableNotify; -+} POSTPACK WMI_SET_RETRY_LIMITS_CMD; -+ -+/* -+ * WMI_SET_ROAM_CTRL_CMDID -+ * -+ * This command is used to influence the Roaming behaviour -+ * Set the host biases of the BSSs before setting the roam mode as bias -+ * based. -+ */ -+ -+/* -+ * Different types of Roam Control -+ */ -+ -+typedef enum { -+ WMI_FORCE_ROAM = 1, /* Roam to the specified BSSID */ -+ WMI_SET_ROAM_MODE = 2, /* default ,progd bias, no roam */ -+ WMI_SET_HOST_BIAS = 3, /* Set the Host Bias */ -+ WMI_SET_LOWRSSI_SCAN_PARAMS = 4, /* Set lowrssi Scan parameters */ -+} WMI_ROAM_CTRL_TYPE; -+ -+#define WMI_MIN_ROAM_CTRL_TYPE WMI_FORCE_ROAM -+#define WMI_MAX_ROAM_CTRL_TYPE WMI_SET_LOWRSSI_SCAN_PARAMS -+ -+/* -+ * ROAM MODES -+ */ -+ -+typedef enum { -+ WMI_DEFAULT_ROAM_MODE = 1, /* RSSI based ROAM */ -+ WMI_HOST_BIAS_ROAM_MODE = 2, /* HOST BIAS based ROAM */ -+ WMI_LOCK_BSS_MODE = 3 /* Lock to the Current BSS - no Roam */ -+} WMI_ROAM_MODE; -+ -+/* -+ * BSS HOST BIAS INFO -+ */ -+ -+typedef PREPACK struct { -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_INT8 bias; -+} POSTPACK WMI_BSS_BIAS; -+ -+typedef PREPACK struct { -+ A_UINT8 numBss; -+ WMI_BSS_BIAS bssBias[1]; -+} POSTPACK WMI_BSS_BIAS_INFO; -+ -+typedef PREPACK struct WMI_LOWRSSI_SCAN_PARAMS { -+ A_UINT16 lowrssi_scan_period; -+ A_INT16 lowrssi_scan_threshold; -+ A_INT16 lowrssi_roam_threshold; -+ A_UINT8 roam_rssi_floor; -+ A_UINT8 reserved[1]; /* For alignment */ -+} POSTPACK WMI_LOWRSSI_SCAN_PARAMS; -+ -+typedef PREPACK struct { -+ PREPACK union { -+ A_UINT8 bssid[ATH_MAC_LEN]; /* WMI_FORCE_ROAM */ -+ A_UINT8 roamMode; /* WMI_SET_ROAM_MODE */ -+ WMI_BSS_BIAS_INFO bssBiasInfo; /* WMI_SET_HOST_BIAS */ -+ WMI_LOWRSSI_SCAN_PARAMS lrScanParams; -+ } POSTPACK info; -+ A_UINT8 roamCtrlType ; -+} POSTPACK WMI_SET_ROAM_CTRL_CMD; -+ -+/* -+ * WMI_ENABLE_RM_CMDID -+ */ -+typedef PREPACK struct { -+ A_BOOL enable_radio_measurements; -+} POSTPACK WMI_ENABLE_RM_CMD; -+ -+/* -+ * WMI_SET_MAX_OFFHOME_DURATION_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 max_offhome_duration; -+} POSTPACK WMI_SET_MAX_OFFHOME_DURATION_CMD; -+ -+typedef PREPACK struct { -+ A_UINT32 frequency; -+ A_UINT8 threshold; -+} POSTPACK WMI_SET_HB_CHALLENGE_RESP_PARAMS_CMD; -+ -+typedef enum { -+ BT_STREAM_UNDEF = 0, -+ BT_STREAM_SCO, /* SCO stream */ -+ BT_STREAM_A2DP, /* A2DP stream */ -+ BT_STREAM_MAX -+} BT_STREAM_TYPE; -+ -+typedef enum { -+ BT_PARAM_SCO = 1, /* SCO stream parameters */ -+ BT_PARAM_A2DP, /* A2DP stream parameters */ -+ BT_PARAM_MISC, /* miscellaneous parameters */ -+ BT_PARAM_REGS, /* co-existence register parameters */ -+ BT_PARAM_MAX -+} BT_PARAM_TYPE; -+ -+typedef enum { -+ BT_STATUS_UNDEF = 0, -+ BT_STATUS_START, -+ BT_STATUS_STOP, -+ BT_STATUS_RESUME, -+ BT_STATUS_SUSPEND, -+ BT_STATUS_MAX -+} BT_STREAM_STATUS; -+ -+typedef PREPACK struct { -+ A_UINT8 streamType; -+ A_UINT8 status; -+} POSTPACK WMI_SET_BT_STATUS_CMD; -+ -+typedef PREPACK struct { -+ A_UINT8 noSCOPkts; -+ A_UINT8 pspollTimeout; -+ A_UINT8 stompbt; -+} POSTPACK BT_PARAMS_SCO; -+ -+typedef PREPACK struct { -+ A_UINT32 period; -+ A_UINT32 dutycycle; -+ A_UINT8 stompbt; -+} POSTPACK BT_PARAMS_A2DP; -+ -+typedef PREPACK struct { -+ A_UINT32 mode; -+ A_UINT32 scoWghts; -+ A_UINT32 a2dpWghts; -+ A_UINT32 genWghts; -+ A_UINT32 mode2; -+ A_UINT8 setVal; -+} POSTPACK BT_COEX_REGS; -+ -+typedef enum { -+ WLAN_PROTECT_POLICY = 1, -+ WLAN_COEX_CTRL_FLAGS -+} BT_PARAMS_MISC_TYPE; -+ -+typedef enum { -+ WLAN_PROTECT_PER_STREAM = 0x01, /* default */ -+ WLAN_PROTECT_ANY_TX = 0x02 -+} WLAN_PROTECT_FLAGS; -+ -+ -+#define WLAN_DISABLE_COEX_IN_DISCONNECT 0x01 /* default */ -+#define WLAN_KEEP_COEX_IN_DISCONNECT 0x02 -+#define WLAN_STOMPBT_IN_DISCONNECT 0x04 -+ -+#define WLAN_DISABLE_COEX_IN_ROAM 0x10 /* default */ -+#define WLAN_KEEP_COEX_IN_ROAM 0x20 -+#define WLAN_STOMPBT_IN_ROAM 0x40 -+ -+#define WLAN_DISABLE_COEX_IN_SCAN 0x100 /* default */ -+#define WLAN_KEEP_COEX_IN_SCAN 0x200 -+#define WLAN_STOMPBT_IN_SCAN 0x400 -+ -+#define WLAN_DISABLE_COEX_BT_OFF 0x1000 /* default */ -+#define WLAN_KEEP_COEX_BT_OFF 0x2000 -+#define WLAN_STOMPBT_BT_OFF 0x4000 -+ -+typedef PREPACK struct { -+ A_UINT32 period; -+ A_UINT32 dutycycle; -+ A_UINT8 stompbt; -+ A_UINT8 policy; -+} POSTPACK WLAN_PROTECT_POLICY_TYPE; -+ -+typedef PREPACK struct { -+ PREPACK union { -+ WLAN_PROTECT_POLICY_TYPE protectParams; -+ A_UINT16 wlanCtrlFlags; -+ } POSTPACK info; -+ A_UINT8 paramType; -+} POSTPACK BT_PARAMS_MISC; -+ -+typedef PREPACK struct { -+ PREPACK union { -+ BT_PARAMS_SCO scoParams; -+ BT_PARAMS_A2DP a2dpParams; -+ BT_PARAMS_MISC miscParams; -+ BT_COEX_REGS regs; -+ } POSTPACK info; -+ A_UINT8 paramType; -+} POSTPACK WMI_SET_BT_PARAMS_CMD; -+ -+/* -+ * Command Replies -+ */ -+ -+/* -+ * WMI_GET_CHANNEL_LIST_CMDID reply -+ */ -+typedef PREPACK struct { -+ A_UINT8 reserved1; -+ A_UINT8 numChannels; /* number of channels in reply */ -+ A_UINT16 channelList[1]; /* channel in Mhz */ -+} POSTPACK WMI_CHANNEL_LIST_REPLY; -+ -+typedef enum { -+ A_SUCCEEDED = A_OK, -+ A_FAILED_DELETE_STREAM_DOESNOT_EXIST=250, -+ A_SUCCEEDED_MODIFY_STREAM=251, -+ A_FAILED_INVALID_STREAM = 252, -+ A_FAILED_MAX_THINSTREAMS = 253, -+ A_FAILED_CREATE_REMOVE_PSTREAM_FIRST = 254, -+} PSTREAM_REPLY_STATUS; -+ -+/* -+ * List of Events (target to host) -+ */ -+typedef enum { -+ WMI_READY_EVENTID = 0x1001, -+ WMI_CONNECT_EVENTID, -+ WMI_DISCONNECT_EVENTID, -+ WMI_BSSINFO_EVENTID, -+ WMI_CMDERROR_EVENTID, -+ WMI_REGDOMAIN_EVENTID, -+ WMI_PSTREAM_TIMEOUT_EVENTID, -+ WMI_NEIGHBOR_REPORT_EVENTID, -+ WMI_TKIP_MICERR_EVENTID, -+ WMI_SCAN_COMPLETE_EVENTID, -+ WMI_REPORT_STATISTICS_EVENTID, -+ WMI_RSSI_THRESHOLD_EVENTID, -+ WMI_ERROR_REPORT_EVENTID, -+ WMI_OPT_RX_FRAME_EVENTID, -+ WMI_REPORT_ROAM_TBL_EVENTID, -+ WMI_EXTENSION_EVENTID, -+ WMI_CAC_EVENTID, -+ WMI_SNR_THRESHOLD_EVENTID, -+ WMI_LQ_THRESHOLD_EVENTID, -+ WMI_TX_RETRY_ERR_EVENTID, -+ WMI_REPORT_ROAM_DATA_EVENTID, -+ WMI_TEST_EVENTID, -+ WMI_APLIST_EVENTID, -+ WMI_GET_WOW_LIST_EVENTID, -+ WMI_GET_PMKID_LIST_EVENTID -+} WMI_EVENT_ID; -+ -+typedef enum { -+ WMI_11A_CAPABILITY = 1, -+ WMI_11G_CAPABILITY = 2, -+ WMI_11AG_CAPABILITY = 3, -+} WMI_PHY_CAPABILITY; -+ -+typedef PREPACK struct { -+ A_UINT8 macaddr[ATH_MAC_LEN]; -+ A_UINT8 phyCapability; /* WMI_PHY_CAPABILITY */ -+} POSTPACK WMI_READY_EVENT; -+ -+/* -+ * Connect Event -+ */ -+typedef PREPACK struct { -+ A_UINT16 channel; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT16 listenInterval; -+ A_UINT16 beaconInterval; -+ A_UINT32 networkType; -+ A_UINT8 beaconIeLen; -+ A_UINT8 assocReqLen; -+ A_UINT8 assocRespLen; -+ A_UINT8 assocInfo[1]; -+} POSTPACK WMI_CONNECT_EVENT; -+ -+/* -+ * Disconnect Event -+ */ -+typedef enum { -+ NO_NETWORK_AVAIL = 0x01, -+ LOST_LINK = 0x02, /* bmiss */ -+ DISCONNECT_CMD = 0x03, -+ BSS_DISCONNECTED = 0x04, -+ AUTH_FAILED = 0x05, -+ ASSOC_FAILED = 0x06, -+ NO_RESOURCES_AVAIL = 0x07, -+ CSERV_DISCONNECT = 0x08, -+ INVALID_PROFILE = 0x0a, -+ DOT11H_CHANNEL_SWITCH = 0x0b, -+} WMI_DISCONNECT_REASON; -+ -+typedef PREPACK struct { -+ A_UINT16 protocolReasonStatus; /* reason code, see 802.11 spec. */ -+ A_UINT8 bssid[ATH_MAC_LEN]; /* set if known */ -+ A_UINT8 disconnectReason ; /* see WMI_DISCONNECT_REASON */ -+ A_UINT8 assocRespLen; -+ A_UINT8 assocInfo[1]; -+} POSTPACK WMI_DISCONNECT_EVENT; -+ -+/* -+ * BSS Info Event. -+ * Mechanism used to inform host of the presence and characteristic of -+ * wireless networks present. Consists of bss info header followed by -+ * the beacon or probe-response frame body. The 802.11 header is not included. -+ */ -+typedef enum { -+ BEACON_FTYPE = 0x1, -+ PROBERESP_FTYPE, -+ ACTION_MGMT_FTYPE, -+} WMI_BI_FTYPE; -+ -+enum { -+ BSS_ELEMID_CHANSWITCH = 0x01, -+ BSS_ELEMID_ATHEROS = 0x02, -+}; -+ -+typedef PREPACK struct { -+ A_UINT16 channel; -+ A_UINT8 frameType; /* see WMI_BI_FTYPE */ -+ A_UINT8 snr; -+ A_INT16 rssi; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT32 ieMask; -+} POSTPACK WMI_BSS_INFO_HDR; -+ -+/* -+ * Command Error Event -+ */ -+typedef enum { -+ INVALID_PARAM = 0x01, -+ ILLEGAL_STATE = 0x02, -+ INTERNAL_ERROR = 0x03, -+} WMI_ERROR_CODE; -+ -+typedef PREPACK struct { -+ A_UINT16 commandId; -+ A_UINT8 errorCode; -+} POSTPACK WMI_CMD_ERROR_EVENT; -+ -+/* -+ * New Regulatory Domain Event -+ */ -+typedef PREPACK struct { -+ A_UINT32 regDomain; -+} POSTPACK WMI_REG_DOMAIN_EVENT; -+ -+typedef PREPACK struct { -+ A_UINT8 trafficClass; -+} POSTPACK WMI_PSTREAM_TIMEOUT_EVENT; -+ -+/* -+ * The WMI_NEIGHBOR_REPORT Event is generated by the target to inform -+ * the host of BSS's it has found that matches the current profile. -+ * It can be used by the host to cache PMKs and/to initiate pre-authentication -+ * if the BSS supports it. The first bssid is always the current associated -+ * BSS. -+ * The bssid and bssFlags information repeats according to the number -+ * or APs reported. -+ */ -+typedef enum { -+ WMI_DEFAULT_BSS_FLAGS = 0x00, -+ WMI_PREAUTH_CAPABLE_BSS = 0x01, -+ WMI_PMKID_VALID_BSS = 0x02, -+} WMI_BSS_FLAGS; -+ -+typedef PREPACK struct { -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT8 bssFlags; /* see WMI_BSS_FLAGS */ -+} POSTPACK WMI_NEIGHBOR_INFO; -+ -+typedef PREPACK struct { -+ A_INT8 numberOfAps; -+ WMI_NEIGHBOR_INFO neighbor[1]; -+} POSTPACK WMI_NEIGHBOR_REPORT_EVENT; -+ -+/* -+ * TKIP MIC Error Event -+ */ -+typedef PREPACK struct { -+ A_UINT8 keyid; -+ A_UINT8 ismcast; -+} POSTPACK WMI_TKIP_MICERR_EVENT; -+ -+/* -+ * WMI_SCAN_COMPLETE_EVENTID - no parameters (old), staus parameter (new) -+ */ -+typedef PREPACK struct { -+ A_STATUS status; -+} POSTPACK WMI_SCAN_COMPLETE_EVENT; -+ -+#define MAX_OPT_DATA_LEN 1400 -+ -+/* -+ * WMI_SET_ADHOC_BSSID_CMDID -+ */ -+typedef PREPACK struct { -+ A_UINT8 bssid[ATH_MAC_LEN]; -+} POSTPACK WMI_SET_ADHOC_BSSID_CMD; -+ -+/* -+ * WMI_SET_OPT_MODE_CMDID -+ */ -+typedef enum { -+ SPECIAL_OFF, -+ SPECIAL_ON, -+} OPT_MODE_TYPE; -+ -+typedef PREPACK struct { -+ A_UINT8 optMode; -+} POSTPACK WMI_SET_OPT_MODE_CMD; -+ -+/* -+ * WMI_TX_OPT_FRAME_CMDID -+ */ -+typedef enum { -+ OPT_PROBE_REQ = 0x01, -+ OPT_PROBE_RESP = 0x02, -+ OPT_CPPP_START = 0x03, -+ OPT_CPPP_STOP = 0x04, -+} WMI_OPT_FTYPE; -+ -+typedef PREPACK struct { -+ A_UINT16 optIEDataLen; -+ A_UINT8 frmType; -+ A_UINT8 dstAddr[ATH_MAC_LEN]; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT8 reserved; /* For alignment */ -+ A_UINT8 optIEData[1]; -+} POSTPACK WMI_OPT_TX_FRAME_CMD; -+ -+/* -+ * Special frame receive Event. -+ * Mechanism used to inform host of the receiption of the special frames. -+ * Consists of special frame info header followed by special frame body. -+ * The 802.11 header is not included. -+ */ -+typedef PREPACK struct { -+ A_UINT16 channel; -+ A_UINT8 frameType; /* see WMI_OPT_FTYPE */ -+ A_INT8 snr; -+ A_UINT8 srcAddr[ATH_MAC_LEN]; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+} POSTPACK WMI_OPT_RX_INFO_HDR; -+ -+/* -+ * Reporting statistics. -+ */ -+typedef PREPACK struct { -+ A_UINT32 tx_packets; -+ A_UINT32 tx_bytes; -+ A_UINT32 tx_unicast_pkts; -+ A_UINT32 tx_unicast_bytes; -+ A_UINT32 tx_multicast_pkts; -+ A_UINT32 tx_multicast_bytes; -+ A_UINT32 tx_broadcast_pkts; -+ A_UINT32 tx_broadcast_bytes; -+ A_UINT32 tx_rts_success_cnt; -+ A_UINT32 tx_packet_per_ac[4]; -+ A_UINT32 tx_errors_per_ac[4]; -+ -+ A_UINT32 tx_errors; -+ A_UINT32 tx_failed_cnt; -+ A_UINT32 tx_retry_cnt; -+ A_UINT32 tx_rts_fail_cnt; -+ A_INT32 tx_unicast_rate; -+}POSTPACK tx_stats_t; -+ -+typedef PREPACK struct { -+ A_UINT32 rx_packets; -+ A_UINT32 rx_bytes; -+ A_UINT32 rx_unicast_pkts; -+ A_UINT32 rx_unicast_bytes; -+ A_UINT32 rx_multicast_pkts; -+ A_UINT32 rx_multicast_bytes; -+ A_UINT32 rx_broadcast_pkts; -+ A_UINT32 rx_broadcast_bytes; -+ A_UINT32 rx_fragment_pkt; -+ -+ A_UINT32 rx_errors; -+ A_UINT32 rx_crcerr; -+ A_UINT32 rx_key_cache_miss; -+ A_UINT32 rx_decrypt_err; -+ A_UINT32 rx_duplicate_frames; -+ A_INT32 rx_unicast_rate; -+}POSTPACK rx_stats_t; -+ -+typedef PREPACK struct { -+ A_UINT32 tkip_local_mic_failure; -+ A_UINT32 tkip_counter_measures_invoked; -+ A_UINT32 tkip_replays; -+ A_UINT32 tkip_format_errors; -+ A_UINT32 ccmp_format_errors; -+ A_UINT32 ccmp_replays; -+}POSTPACK tkip_ccmp_stats_t; -+ -+typedef PREPACK struct { -+ A_UINT32 power_save_failure_cnt; -+}POSTPACK pm_stats_t; -+ -+typedef PREPACK struct { -+ A_UINT32 cs_bmiss_cnt; -+ A_UINT32 cs_lowRssi_cnt; -+ A_UINT16 cs_connect_cnt; -+ A_UINT16 cs_disconnect_cnt; -+ A_INT16 cs_aveBeacon_rssi; -+ A_UINT16 cs_roam_count; -+ A_UINT16 cs_rssi; -+ A_UINT8 cs_snr; -+ A_UINT8 cs_aveBeacon_snr; -+ A_UINT8 cs_lastRoam_msec; -+} POSTPACK cserv_stats_t; -+ -+typedef PREPACK struct { -+ tx_stats_t tx_stats; -+ rx_stats_t rx_stats; -+ tkip_ccmp_stats_t tkipCcmpStats; -+}POSTPACK wlan_net_stats_t; -+ -+typedef PREPACK struct { -+ A_UINT32 wow_num_pkts_dropped; -+ A_UINT16 wow_num_events_discarded; -+ A_UINT8 wow_num_host_pkt_wakeups; -+ A_UINT8 wow_num_host_event_wakeups; -+} POSTPACK wlan_wow_stats_t; -+ -+typedef PREPACK struct { -+ A_UINT32 lqVal; -+ A_INT32 noise_floor_calibation; -+ pm_stats_t pmStats; -+ wlan_net_stats_t txrxStats; -+ wlan_wow_stats_t wowStats; -+ cserv_stats_t cservStats; -+} POSTPACK WMI_TARGET_STATS; -+ -+/* -+ * WMI_RSSI_THRESHOLD_EVENTID. -+ * Indicate the RSSI events to host. Events are indicated when we breach a -+ * thresold value. -+ */ -+typedef enum{ -+ WMI_RSSI_THRESHOLD1_ABOVE = 0, -+ WMI_RSSI_THRESHOLD2_ABOVE, -+ WMI_RSSI_THRESHOLD3_ABOVE, -+ WMI_RSSI_THRESHOLD4_ABOVE, -+ WMI_RSSI_THRESHOLD5_ABOVE, -+ WMI_RSSI_THRESHOLD6_ABOVE, -+ WMI_RSSI_THRESHOLD1_BELOW, -+ WMI_RSSI_THRESHOLD2_BELOW, -+ WMI_RSSI_THRESHOLD3_BELOW, -+ WMI_RSSI_THRESHOLD4_BELOW, -+ WMI_RSSI_THRESHOLD5_BELOW, -+ WMI_RSSI_THRESHOLD6_BELOW -+}WMI_RSSI_THRESHOLD_VAL; -+ -+typedef PREPACK struct { -+ A_INT16 rssi; -+ A_UINT8 range; -+}POSTPACK WMI_RSSI_THRESHOLD_EVENT; -+ -+/* -+ * WMI_ERROR_REPORT_EVENTID -+ */ -+typedef enum{ -+ WMI_TARGET_PM_ERR_FAIL = 0x00000001, -+ WMI_TARGET_KEY_NOT_FOUND = 0x00000002, -+ WMI_TARGET_DECRYPTION_ERR = 0x00000004, -+ WMI_TARGET_BMISS = 0x00000008, -+ WMI_PSDISABLE_NODE_JOIN = 0x00000010, -+ WMI_TARGET_COM_ERR = 0x00000020, -+ WMI_TARGET_FATAL_ERR = 0x00000040 -+} WMI_TARGET_ERROR_VAL; -+ -+typedef PREPACK struct { -+ A_UINT32 errorVal; -+}POSTPACK WMI_TARGET_ERROR_REPORT_EVENT; -+ -+typedef PREPACK struct { -+ A_UINT8 retrys; -+}POSTPACK WMI_TX_RETRY_ERR_EVENT; -+ -+typedef enum{ -+ WMI_SNR_THRESHOLD1_ABOVE = 1, -+ WMI_SNR_THRESHOLD1_BELOW, -+ WMI_SNR_THRESHOLD2_ABOVE, -+ WMI_SNR_THRESHOLD2_BELOW, -+ WMI_SNR_THRESHOLD3_ABOVE, -+ WMI_SNR_THRESHOLD3_BELOW, -+ WMI_SNR_THRESHOLD4_ABOVE, -+ WMI_SNR_THRESHOLD4_BELOW -+} WMI_SNR_THRESHOLD_VAL; -+ -+typedef PREPACK struct { -+ A_UINT8 range; /* WMI_SNR_THRESHOLD_VAL */ -+ A_UINT8 snr; -+}POSTPACK WMI_SNR_THRESHOLD_EVENT; -+ -+typedef enum{ -+ WMI_LQ_THRESHOLD1_ABOVE = 1, -+ WMI_LQ_THRESHOLD1_BELOW, -+ WMI_LQ_THRESHOLD2_ABOVE, -+ WMI_LQ_THRESHOLD2_BELOW, -+ WMI_LQ_THRESHOLD3_ABOVE, -+ WMI_LQ_THRESHOLD3_BELOW, -+ WMI_LQ_THRESHOLD4_ABOVE, -+ WMI_LQ_THRESHOLD4_BELOW -+} WMI_LQ_THRESHOLD_VAL; -+ -+typedef PREPACK struct { -+ A_INT32 lq; -+ A_UINT8 range; /* WMI_LQ_THRESHOLD_VAL */ -+}POSTPACK WMI_LQ_THRESHOLD_EVENT; -+/* -+ * WMI_REPORT_ROAM_TBL_EVENTID -+ */ -+#define MAX_ROAM_TBL_CAND 5 -+ -+typedef PREPACK struct { -+ A_INT32 roam_util; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_INT8 rssi; -+ A_INT8 rssidt; -+ A_INT8 last_rssi; -+ A_INT8 util; -+ A_INT8 bias; -+ A_UINT8 reserved; /* For alignment */ -+} POSTPACK WMI_BSS_ROAM_INFO; -+ -+ -+typedef PREPACK struct { -+ A_UINT16 roamMode; -+ A_UINT16 numEntries; -+ WMI_BSS_ROAM_INFO bssRoamInfo[1]; -+} POSTPACK WMI_TARGET_ROAM_TBL; -+ -+/* -+ * WMI_CAC_EVENTID -+ */ -+typedef enum { -+ CAC_INDICATION_ADMISSION = 0x00, -+ CAC_INDICATION_ADMISSION_RESP = 0x01, -+ CAC_INDICATION_DELETE = 0x02, -+ CAC_INDICATION_NO_RESP = 0x03, -+}CAC_INDICATION; -+ -+#define WMM_TSPEC_IE_LEN 63 -+ -+typedef PREPACK struct { -+ A_UINT8 ac; -+ A_UINT8 cac_indication; -+ A_UINT8 statusCode; -+ A_UINT8 tspecSuggestion[WMM_TSPEC_IE_LEN]; -+}POSTPACK WMI_CAC_EVENT; -+ -+/* -+ * WMI_APLIST_EVENTID -+ */ -+ -+typedef enum { -+ APLIST_VER1 = 1, -+} APLIST_VER; -+ -+typedef PREPACK struct { -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT16 channel; -+} POSTPACK WMI_AP_INFO_V1; -+ -+typedef PREPACK union { -+ WMI_AP_INFO_V1 apInfoV1; -+} POSTPACK WMI_AP_INFO; -+ -+typedef PREPACK struct { -+ A_UINT8 apListVer; -+ A_UINT8 numAP; -+ WMI_AP_INFO apList[1]; -+} POSTPACK WMI_APLIST_EVENT; -+ -+/* -+ * developer commands -+ */ -+ -+/* -+ * WMI_SET_BITRATE_CMDID -+ * -+ * Get bit rate cmd uses same definition as set bit rate cmd -+ */ -+typedef enum { -+ RATE_AUTO = -1, -+ RATE_1Mb = 0, -+ RATE_2Mb = 1, -+ RATE_5_5Mb = 2, -+ RATE_11Mb = 3, -+ RATE_6Mb = 4, -+ RATE_9Mb = 5, -+ RATE_12Mb = 6, -+ RATE_18Mb = 7, -+ RATE_24Mb = 8, -+ RATE_36Mb = 9, -+ RATE_48Mb = 10, -+ RATE_54Mb = 11, -+} WMI_BIT_RATE; -+ -+typedef PREPACK struct { -+ A_INT8 rateIndex; /* see WMI_BIT_RATE */ -+} POSTPACK WMI_BIT_RATE_CMD, WMI_BIT_RATE_REPLY; -+ -+/* -+ * WMI_SET_FIXRATES_CMDID -+ * -+ * Get fix rates cmd uses same definition as set fix rates cmd -+ */ -+typedef enum { -+ FIX_RATE_1Mb = 0x1, -+ FIX_RATE_2Mb = 0x2, -+ FIX_RATE_5_5Mb = 0x4, -+ FIX_RATE_11Mb = 0x8, -+ FIX_RATE_6Mb = 0x10, -+ FIX_RATE_9Mb = 0x20, -+ FIX_RATE_12Mb = 0x40, -+ FIX_RATE_18Mb = 0x80, -+ FIX_RATE_24Mb = 0x100, -+ FIX_RATE_36Mb = 0x200, -+ FIX_RATE_48Mb = 0x400, -+ FIX_RATE_54Mb = 0x800, -+} WMI_FIX_RATES_MASK; -+ -+typedef PREPACK struct { -+ A_UINT16 fixRateMask; /* see WMI_BIT_RATE */ -+} POSTPACK WMI_FIX_RATES_CMD, WMI_FIX_RATES_REPLY; -+ -+/* -+ * WMI_SET_RECONNECT_AUTH_MODE_CMDID -+ * -+ * Set authentication mode -+ */ -+typedef enum { -+ RECONN_DO_AUTH = 0x00, -+ RECONN_NOT_AUTH = 0x01 -+} WMI_AUTH_MODE; -+ -+typedef PREPACK struct { -+ A_UINT8 mode; -+} POSTPACK WMI_SET_AUTH_MODE_CMD; -+ -+/* -+ * WMI_SET_REASSOC_MODE_CMDID -+ * -+ * Set authentication mode -+ */ -+typedef enum { -+ REASSOC_DO_DISASSOC = 0x00, -+ REASSOC_DONOT_DISASSOC = 0x01 -+} WMI_REASSOC_MODE; -+ -+typedef PREPACK struct { -+ A_UINT8 mode; -+}POSTPACK WMI_SET_REASSOC_MODE_CMD; -+ -+typedef enum { -+ ROAM_DATA_TIME = 1, /* Get The Roam Time Data */ -+} ROAM_DATA_TYPE; -+ -+typedef PREPACK struct { -+ A_UINT32 disassoc_time; -+ A_UINT32 no_txrx_time; -+ A_UINT32 assoc_time; -+ A_UINT32 allow_txrx_time; -+ A_UINT32 last_data_txrx_time; -+ A_UINT32 first_data_txrx_time; -+ A_UINT8 disassoc_bssid[ATH_MAC_LEN]; -+ A_INT8 disassoc_bss_rssi; -+ A_UINT8 assoc_bssid[ATH_MAC_LEN]; -+ A_INT8 assoc_bss_rssi; -+} POSTPACK WMI_TARGET_ROAM_TIME; -+ -+typedef PREPACK struct { -+ PREPACK union { -+ WMI_TARGET_ROAM_TIME roamTime; -+ } POSTPACK u; -+ A_UINT8 roamDataType ; -+} POSTPACK WMI_TARGET_ROAM_DATA; -+ -+typedef enum { -+ WMI_WMM_DISABLED = 0, -+ WMI_WMM_ENABLED -+} WMI_WMM_STATUS; -+ -+typedef PREPACK struct { -+ A_UINT8 status; -+}POSTPACK WMI_SET_WMM_CMD; -+ -+typedef enum { -+ WMI_TXOP_DISABLED = 0, -+ WMI_TXOP_ENABLED -+} WMI_TXOP_CFG; -+ -+typedef PREPACK struct { -+ A_UINT8 txopEnable; -+}POSTPACK WMI_SET_WMM_TXOP_CMD; -+ -+typedef PREPACK struct { -+ A_UINT8 keepaliveInterval; -+} POSTPACK WMI_SET_KEEPALIVE_CMD; -+ -+typedef PREPACK struct { -+ A_BOOL configured; -+ A_UINT8 keepaliveInterval; -+} POSTPACK WMI_GET_KEEPALIVE_CMD; -+ -+/* -+ * Add Application specified IE to a management frame -+ */ -+#define WMI_MAX_IE_LEN 78 -+ -+typedef PREPACK struct { -+ A_UINT8 mgmtFrmType; /* one of WMI_MGMT_FRAME_TYPE */ -+ A_UINT8 ieLen; /* Length of the IE that should be added to the MGMT frame */ -+ A_UINT8 ieInfo[1]; -+} POSTPACK WMI_SET_APPIE_CMD; -+ -+/* -+ * Notify the WSC registration status to the target -+ */ -+#define WSC_REG_ACTIVE 1 -+#define WSC_REG_INACTIVE 0 -+/* Generic Hal Interface for setting hal paramters. */ -+/* Add new Set HAL Param cmdIds here for newer params */ -+typedef enum { -+ WHAL_SETCABTO_CMDID = 1, -+}WHAL_CMDID; -+ -+typedef PREPACK struct { -+ A_UINT8 cabTimeOut; -+} POSTPACK WHAL_SETCABTO_PARAM; -+ -+typedef PREPACK struct { -+ A_UINT8 whalCmdId; -+ A_UINT8 data[1]; -+} POSTPACK WHAL_PARAMCMD; -+ -+ -+#define WOW_MAX_FILTER_LISTS 1 /*4*/ -+#define WOW_MAX_FILTERS_PER_LIST 4 -+#define WOW_PATTERN_SIZE 64 -+#define WOW_MASK_SIZE 64 -+ -+typedef PREPACK struct { -+ A_UINT8 wow_valid_filter; -+ A_UINT8 wow_filter_id; -+ A_UINT8 wow_filter_size; -+ A_UINT8 wow_filter_offset; -+ A_UINT8 wow_filter_mask[WOW_MASK_SIZE]; -+ A_UINT8 wow_filter_pattern[WOW_PATTERN_SIZE]; -+} POSTPACK WOW_FILTER; -+ -+ -+typedef PREPACK struct { -+ A_UINT8 wow_valid_list; -+ A_UINT8 wow_list_id; -+ A_UINT8 wow_num_filters; -+ A_UINT8 wow_total_list_size; -+ WOW_FILTER list[WOW_MAX_FILTERS_PER_LIST]; -+} POSTPACK WOW_FILTER_LIST; -+ -+typedef PREPACK struct { -+ A_BOOL awake; -+ A_BOOL asleep; -+} POSTPACK WMI_SET_HOST_SLEEP_MODE_CMD; -+ -+typedef PREPACK struct { -+ A_BOOL enable_wow; -+} POSTPACK WMI_SET_WOW_MODE_CMD; -+ -+typedef PREPACK struct { -+ A_UINT8 filter_list_id; -+} POSTPACK WMI_GET_WOW_LIST_CMD; -+ -+/* -+ * WMI_GET_WOW_LIST_CMD reply -+ */ -+typedef PREPACK struct { -+ A_UINT8 num_filters; /* number of patterns in reply */ -+ A_UINT8 this_filter_num; /* this is filter # x of total num_filters */ -+ A_UINT8 wow_mode; -+ A_UINT8 host_mode; -+ WOW_FILTER wow_filters[1]; -+} POSTPACK WMI_GET_WOW_LIST_REPLY; -+ -+typedef PREPACK struct { -+ A_UINT8 filter_list_id; -+ A_UINT8 filter_size; -+ A_UINT8 filter_offset; -+ A_UINT8 filter[1]; -+} POSTPACK WMI_ADD_WOW_PATTERN_CMD; -+ -+typedef PREPACK struct { -+ A_UINT16 filter_list_id; -+ A_UINT16 filter_id; -+} POSTPACK WMI_DEL_WOW_PATTERN_CMD; -+ -+typedef PREPACK struct { -+ A_UINT8 macaddr[ATH_MAC_LEN]; -+} POSTPACK WMI_SET_MAC_ADDRESS_CMD; -+ -+/* -+ * WMI_SET_AKMP_PARAMS_CMD -+ */ -+ -+#define WMI_AKMP_MULTI_PMKID_EN 0x000001 -+ -+typedef PREPACK struct { -+ A_UINT32 akmpInfo; -+} POSTPACK WMI_SET_AKMP_PARAMS_CMD; -+ -+typedef PREPACK struct { -+ A_UINT8 pmkid[WMI_PMKID_LEN]; -+} POSTPACK WMI_PMKID; -+ -+/* -+ * WMI_SET_PMKID_LIST_CMD -+ */ -+#define WMI_MAX_PMKID_CACHE 8 -+ -+typedef PREPACK struct { -+ A_UINT32 numPMKID; -+ WMI_PMKID pmkidList[WMI_MAX_PMKID_CACHE]; -+} POSTPACK WMI_SET_PMKID_LIST_CMD; -+ -+/* -+ * WMI_GET_PMKID_LIST_CMD Reply -+ * Following the Number of PMKIDs is the list of PMKIDs -+ */ -+typedef PREPACK struct { -+ A_UINT32 numPMKID; -+ WMI_PMKID pmkidList[1]; -+} POSTPACK WMI_PMKID_LIST_REPLY; -+ -+/* index used for priority streams */ -+typedef enum { -+ WMI_NOT_MAPPED = -1, -+ WMI_CONTROL_PRI = 0, -+ WMI_BEST_EFFORT_PRI = 1, -+ WMI_LOW_PRI = 2, -+ WMI_HIGH_PRI = 3, -+ WMI_HIGHEST_PRI, -+ WMI_PRI_MAX_COUNT -+} WMI_PRI_STREAM_ID; -+ -+#ifndef ATH_TARGET -+#include "athendpack.h" -+#endif -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _WMI_H_ */ ---- /dev/null -+++ b/drivers/ar6000/include/wmix.h -@@ -0,0 +1,233 @@ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * $ATH_LICENSE_HOSTSDK0_C$ -+ * -+ * This file contains extensions of the WMI protocol specified in the -+ * Wireless Module Interface (WMI). It includes definitions of all -+ * extended commands and events. Extensions include useful commands -+ * that are not directly related to wireless activities. They may -+ * be hardware-specific, and they might not be supported on all -+ * implementations. -+ * -+ * Extended WMIX commands are encapsulated in a WMI message with -+ * cmd=WMI_EXTENSION_CMD. -+ * -+ */ -+ -+#ifndef _WMIX_H_ -+#define _WMIX_H_ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+#ifndef ATH_TARGET -+#include "athstartpack.h" -+#endif -+ -+#include "dbglog.h" -+ -+/* -+ * Extended WMI commands are those that are needed during wireless -+ * operation, but which are not really wireless commands. This allows, -+ * for instance, platform-specific commands. Extended WMI commands are -+ * embedded in a WMI command message with WMI_COMMAND_ID=WMI_EXTENSION_CMDID. -+ * Extended WMI events are similarly embedded in a WMI event message with -+ * WMI_EVENT_ID=WMI_EXTENSION_EVENTID. -+ */ -+typedef PREPACK struct { -+ A_UINT32 commandId; -+} POSTPACK WMIX_CMD_HDR; -+ -+typedef enum { -+ WMIX_DSETOPEN_REPLY_CMDID = 0x2001, -+ WMIX_DSETDATA_REPLY_CMDID, -+ WMIX_GPIO_OUTPUT_SET_CMDID, -+ WMIX_GPIO_INPUT_GET_CMDID, -+ WMIX_GPIO_REGISTER_SET_CMDID, -+ WMIX_GPIO_REGISTER_GET_CMDID, -+ WMIX_GPIO_INTR_ACK_CMDID, -+ WMIX_HB_CHALLENGE_RESP_CMDID, -+ WMIX_DBGLOG_CFG_MODULE_CMDID, -+} WMIX_COMMAND_ID; -+ -+typedef enum { -+ WMIX_DSETOPENREQ_EVENTID = 0x3001, -+ WMIX_DSETCLOSE_EVENTID, -+ WMIX_DSETDATAREQ_EVENTID, -+ WMIX_GPIO_INTR_EVENTID, -+ WMIX_GPIO_DATA_EVENTID, -+ WMIX_GPIO_ACK_EVENTID, -+ WMIX_HB_CHALLENGE_RESP_EVENTID, -+ WMIX_DBGLOG_EVENTID, -+} WMIX_EVENT_ID; -+ -+/* -+ * =============DataSet support================= -+ */ -+ -+/* -+ * WMIX_DSETOPENREQ_EVENTID -+ * DataSet Open Request Event -+ */ -+typedef PREPACK struct { -+ A_UINT32 dset_id; -+ A_UINT32 targ_dset_handle; /* echo'ed, not used by Host, */ -+ A_UINT32 targ_reply_fn; /* echo'ed, not used by Host, */ -+ A_UINT32 targ_reply_arg; /* echo'ed, not used by Host, */ -+} POSTPACK WMIX_DSETOPENREQ_EVENT; -+ -+/* -+ * WMIX_DSETCLOSE_EVENTID -+ * DataSet Close Event -+ */ -+typedef PREPACK struct { -+ A_UINT32 access_cookie; -+} POSTPACK WMIX_DSETCLOSE_EVENT; -+ -+/* -+ * WMIX_DSETDATAREQ_EVENTID -+ * DataSet Data Request Event -+ */ -+typedef PREPACK struct { -+ A_UINT32 access_cookie; -+ A_UINT32 offset; -+ A_UINT32 length; -+ A_UINT32 targ_buf; /* echo'ed, not used by Host, */ -+ A_UINT32 targ_reply_fn; /* echo'ed, not used by Host, */ -+ A_UINT32 targ_reply_arg; /* echo'ed, not used by Host, */ -+} POSTPACK WMIX_DSETDATAREQ_EVENT; -+ -+typedef PREPACK struct { -+ A_UINT32 status; -+ A_UINT32 targ_dset_handle; -+ A_UINT32 targ_reply_fn; -+ A_UINT32 targ_reply_arg; -+ A_UINT32 access_cookie; -+ A_UINT32 size; -+ A_UINT32 version; -+} POSTPACK WMIX_DSETOPEN_REPLY_CMD; -+ -+typedef PREPACK struct { -+ A_UINT32 status; -+ A_UINT32 targ_buf; -+ A_UINT32 targ_reply_fn; -+ A_UINT32 targ_reply_arg; -+ A_UINT32 length; -+ A_UINT8 buf[1]; -+} POSTPACK WMIX_DSETDATA_REPLY_CMD; -+ -+ -+/* -+ * =============GPIO support================= -+ * All masks are 18-bit masks with bit N operating on GPIO pin N. -+ */ -+ -+#include "gpio.h" -+ -+/* -+ * Set GPIO pin output state. -+ * In order for output to be driven, a pin must be enabled for output. -+ * This can be done during initialization through the GPIO Configuration -+ * DataSet, or during operation with the enable_mask. -+ * -+ * If a request is made to simultaneously set/clear or set/disable or -+ * clear/disable or disable/enable, results are undefined. -+ */ -+typedef PREPACK struct { -+ A_UINT32 set_mask; /* pins to set */ -+ A_UINT32 clear_mask; /* pins to clear */ -+ A_UINT32 enable_mask; /* pins to enable for output */ -+ A_UINT32 disable_mask; /* pins to disable/tristate */ -+} POSTPACK WMIX_GPIO_OUTPUT_SET_CMD; -+ -+/* -+ * Set a GPIO register. For debug/exceptional cases. -+ * Values for gpioreg_id are GPIO_REGISTER_IDs, defined in a -+ * platform-dependent header. -+ */ -+typedef PREPACK struct { -+ A_UINT32 gpioreg_id; /* GPIO register ID */ -+ A_UINT32 value; /* value to write */ -+} POSTPACK WMIX_GPIO_REGISTER_SET_CMD; -+ -+/* Get a GPIO register. For debug/exceptional cases. */ -+typedef PREPACK struct { -+ A_UINT32 gpioreg_id; /* GPIO register to read */ -+} POSTPACK WMIX_GPIO_REGISTER_GET_CMD; -+ -+/* -+ * Host acknowledges and re-arms GPIO interrupts. A single -+ * message should be used to acknowledge all interrupts that -+ * were delivered in an earlier WMIX_GPIO_INTR_EVENT message. -+ */ -+typedef PREPACK struct { -+ A_UINT32 ack_mask; /* interrupts to acknowledge */ -+} POSTPACK WMIX_GPIO_INTR_ACK_CMD; -+ -+/* -+ * Target informs Host of GPIO interrupts that have ocurred since the -+ * last WMIX_GIPO_INTR_ACK_CMD was received. Additional information -- -+ * the current GPIO input values is provided -- in order to support -+ * use of a GPIO interrupt as a Data Valid signal for other GPIO pins. -+ */ -+typedef PREPACK struct { -+ A_UINT32 intr_mask; /* pending GPIO interrupts */ -+ A_UINT32 input_values; /* recent GPIO input values */ -+} POSTPACK WMIX_GPIO_INTR_EVENT; -+ -+/* -+ * Target responds to Host's earlier WMIX_GPIO_INPUT_GET_CMDID request -+ * using a GPIO_DATA_EVENT with -+ * value set to the mask of GPIO pin inputs and -+ * reg_id set to GPIO_ID_NONE -+ * -+ * -+ * Target responds to Hosts's earlier WMIX_GPIO_REGISTER_GET_CMDID request -+ * using a GPIO_DATA_EVENT with -+ * value set to the value of the requested register and -+ * reg_id identifying the register (reflects the original request) -+ * NB: reg_id supports the future possibility of unsolicited -+ * WMIX_GPIO_DATA_EVENTs (for polling GPIO input), and it may -+ * simplify Host GPIO support. -+ */ -+typedef PREPACK struct { -+ A_UINT32 value; -+ A_UINT32 reg_id; -+} POSTPACK WMIX_GPIO_DATA_EVENT; -+ -+/* -+ * =============Error Detection support================= -+ */ -+ -+/* -+ * WMIX_HB_CHALLENGE_RESP_CMDID -+ * Heartbeat Challenge Response command -+ */ -+typedef PREPACK struct { -+ A_UINT32 cookie; -+ A_UINT32 source; -+} POSTPACK WMIX_HB_CHALLENGE_RESP_CMD; -+ -+/* -+ * WMIX_HB_CHALLENGE_RESP_EVENTID -+ * Heartbeat Challenge Response Event -+ */ -+#define WMIX_HB_CHALLENGE_RESP_EVENT WMIX_HB_CHALLENGE_RESP_CMD -+ -+typedef PREPACK struct { -+ struct dbglog_config_s config; -+} POSTPACK WMIX_DBGLOG_CFG_MODULE_CMD; -+ -+#ifndef ATH_TARGET -+#include "athendpack.h" -+#endif -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _WMIX_H_ */ ---- /dev/null -+++ b/drivers/ar6000/Kconfig -@@ -0,0 +1,7 @@ -+config AR6000_WLAN -+ tristate "AR6000 wireless networking over SDIO" -+ depends on MMC -+ select WIRELESS_EXT -+ default m -+ help -+ good luck. ---- /dev/null -+++ b/drivers/ar6000/Makefile -@@ -0,0 +1,38 @@ -+REV ?= 2 -+ -+PWD := $(shell pwd) -+ -+EXTRA_CFLAGS += -I$(src)/include -+ -+EXTRA_CFLAGS += -DLINUX -D__KERNEL__ -DHTC_RAW_INTERFACE\ -+ -DTCMD -DUSER_KEYS \ -+ -DNO_SYNC_FLUSH #\ -+ -DMULTIPLE_FRAMES_PER_INTERRUPT -DAR6000REV$(REV) \ -+ -DBLOCK_TX_PATH_FLAG \ -+ -DSDIO \ -+ -+EXTRA_CFLAGS += -DKERNEL_2_6 -+ -+obj-$(CONFIG_AR6000_WLAN) += ar6000.o -+ -+ar6000-objs += htc/ar6k.o \ -+ htc/ar6k_events.o \ -+ htc/htc_send.o \ -+ htc/htc_recv.o \ -+ htc/htc_services.o \ -+ htc/htc.o \ -+ hif/hif2.o \ -+ bmi/bmi.o \ -+ ar6000/ar6000_drv.o \ -+ ar6000/ar6000_raw_if.o \ -+ ar6000/netbuf.o \ -+ ar6000/wireless_ext.o \ -+ ar6000/ioctl.o \ -+ miscdrv/common_drv.o \ -+ miscdrv/credit_dist.o \ -+ wmi/wmi.o \ -+ wlan/wlan_node.o \ -+ wlan/wlan_recv_beacon.o \ -+ wlan/wlan_utils.o -+ -+ ---- /dev/null -+++ b/drivers/ar6000/miscdrv/common_drv.c -@@ -0,0 +1,467 @@ -+ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "AR6Khwreg.h" -+#include "targaddrs.h" -+#include "a_osapi.h" -+#include "hif.h" -+#include "htc_api.h" -+#include "bmi.h" -+#include "bmi_msg.h" -+#include "common_drv.h" -+#include "a_debug.h" -+#include "targaddrs.h" -+ -+#define HOST_INTEREST_ITEM_ADDRESS(target, item) \ -+(((TargetType) == TARGET_TYPE_AR6001) ? \ -+ AR6001_HOST_INTEREST_ITEM_ADDRESS(item) : \ -+ AR6002_HOST_INTEREST_ITEM_ADDRESS(item)) -+ -+ -+/* Compile the 4BYTE version of the window register setup routine, -+ * This mitigates host interconnect issues with non-4byte aligned bus requests, some -+ * interconnects use bus adapters that impose strict limitations. -+ * Since diag window access is not intended for performance critical operations, the 4byte mode should -+ * be satisfactory even though it generates 4X the bus activity. */ -+ -+#ifdef USE_4BYTE_REGISTER_ACCESS -+ -+ /* set the window address register (using 4-byte register access ). */ -+A_STATUS ar6000_SetAddressWindowRegister(HIF_DEVICE *hifDevice, A_UINT32 RegisterAddr, A_UINT32 Address) -+{ -+ A_STATUS status; -+ A_UINT8 addrValue[4]; -+ int i; -+ -+ /* write bytes 1,2,3 of the register to set the upper address bytes, the LSB is written -+ * last to initiate the access cycle */ -+ -+ for (i = 1; i <= 3; i++) { -+ /* fill the buffer with the address byte value we want to hit 4 times*/ -+ addrValue[0] = ((A_UINT8 *)&Address)[i]; -+ addrValue[1] = addrValue[0]; -+ addrValue[2] = addrValue[0]; -+ addrValue[3] = addrValue[0]; -+ -+ /* hit each byte of the register address with a 4-byte write operation to the same address, -+ * this is a harmless operation */ -+ status = HIFReadWrite(hifDevice, -+ RegisterAddr+i, -+ addrValue, -+ 4, -+ HIF_WR_SYNC_BYTE_FIX, -+ NULL); -+ if (status != A_OK) { -+ break; -+ } -+ } -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Cannot write initial bytes of 0x%x to window reg: 0x%X \n", -+ RegisterAddr, Address)); -+ return status; -+ } -+ -+ /* write the address register again, this time write the whole 4-byte value. -+ * The effect here is that the LSB write causes the cycle to start, the extra -+ * 3 byte write to bytes 1,2,3 has no effect since we are writing the same values again */ -+ status = HIFReadWrite(hifDevice, -+ RegisterAddr, -+ (A_UCHAR *)(&Address), -+ 4, -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Cannot write 0x%x to window reg: 0x%X \n", -+ RegisterAddr, Address)); -+ return status; -+ } -+ -+ return A_OK; -+ -+ -+ -+} -+ -+ -+#else -+ -+ /* set the window address register */ -+A_STATUS ar6000_SetAddressWindowRegister(HIF_DEVICE *hifDevice, A_UINT32 RegisterAddr, A_UINT32 Address) -+{ -+ A_STATUS status; -+ -+ /* write bytes 1,2,3 of the register to set the upper address bytes, the LSB is written -+ * last to initiate the access cycle */ -+ status = HIFReadWrite(hifDevice, -+ RegisterAddr+1, /* write upper 3 bytes */ -+ ((A_UCHAR *)(&Address))+1, -+ sizeof(A_UINT32)-1, -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Cannot write initial bytes of 0x%x to window reg: 0x%X \n", -+ RegisterAddr, Address)); -+ return status; -+ } -+ -+ /* write the LSB of the register, this initiates the operation */ -+ status = HIFReadWrite(hifDevice, -+ RegisterAddr, -+ (A_UCHAR *)(&Address), -+ sizeof(A_UINT8), -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Cannot write 0x%x to window reg: 0x%X \n", -+ RegisterAddr, Address)); -+ return status; -+ } -+ -+ return A_OK; -+} -+ -+#endif -+ -+/* -+ * Read from the AR6000 through its diagnostic window. -+ * No cooperation from the Target is required for this. -+ */ -+A_STATUS -+ar6000_ReadRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data) -+{ -+ A_STATUS status; -+ -+ /* set window register to start read cycle */ -+ status = ar6000_SetAddressWindowRegister(hifDevice, -+ WINDOW_READ_ADDR_ADDRESS, -+ *address); -+ -+ if (status != A_OK) { -+ return status; -+ } -+ -+ /* read the data */ -+ status = HIFReadWrite(hifDevice, -+ WINDOW_DATA_ADDRESS, -+ (A_UCHAR *)data, -+ sizeof(A_UINT32), -+ HIF_RD_SYNC_BYTE_INC, -+ NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Cannot read from WINDOW_DATA_ADDRESS\n")); -+ return status; -+ } -+ -+ return status; -+} -+ -+ -+/* -+ * Write to the AR6000 through its diagnostic window. -+ * No cooperation from the Target is required for this. -+ */ -+A_STATUS -+ar6000_WriteRegDiag(HIF_DEVICE *hifDevice, A_UINT32 *address, A_UINT32 *data) -+{ -+ A_STATUS status; -+ -+ /* set write data */ -+ status = HIFReadWrite(hifDevice, -+ WINDOW_DATA_ADDRESS, -+ (A_UCHAR *)data, -+ sizeof(A_UINT32), -+ HIF_WR_SYNC_BYTE_INC, -+ NULL); -+ if (status != A_OK) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Cannot write 0x%x to WINDOW_DATA_ADDRESS\n", *data)); -+ return status; -+ } -+ -+ /* set window register, which starts the write cycle */ -+ return ar6000_SetAddressWindowRegister(hifDevice, -+ WINDOW_WRITE_ADDR_ADDRESS, -+ *address); -+} -+ -+A_STATUS -+ar6000_ReadDataDiag(HIF_DEVICE *hifDevice, A_UINT32 address, -+ A_UCHAR *data, A_UINT32 length) -+{ -+ A_UINT32 count; -+ A_STATUS status = A_OK; -+ -+ for (count = 0; count < length; count += 4, address += 4) { -+ if ((status = ar6000_ReadRegDiag(hifDevice, &address, -+ (A_UINT32 *)&data[count])) != A_OK) -+ { -+ break; -+ } -+ } -+ -+ return status; -+} -+ -+A_STATUS -+ar6000_WriteDataDiag(HIF_DEVICE *hifDevice, A_UINT32 address, -+ A_UCHAR *data, A_UINT32 length) -+{ -+ A_UINT32 count; -+ A_STATUS status = A_OK; -+ -+ for (count = 0; count < length; count += 4, address += 4) { -+ if ((status = ar6000_WriteRegDiag(hifDevice, &address, -+ (A_UINT32 *)&data[count])) != A_OK) -+ { -+ break; -+ } -+ } -+ -+ return status; -+} -+ -+A_STATUS -+ar6000_reset_device_skipflash(HIF_DEVICE *hifDevice) -+{ -+ int i; -+ struct forceROM_s { -+ A_UINT32 addr; -+ A_UINT32 data; -+ }; -+ struct forceROM_s *ForceROM; -+ int szForceROM; -+ A_UINT32 instruction; -+ -+ static struct forceROM_s ForceROM_REV2[] = { -+ /* NB: This works for old REV2 ROM (old). */ -+ {0x00001ff0, 0x175b0027}, /* jump instruction at 0xa0001ff0 */ -+ {0x00001ff4, 0x00000000}, /* nop instruction at 0xa0001ff4 */ -+ -+ {MC_REMAP_TARGET_ADDRESS, 0x00001ff0}, /* remap to 0xa0001ff0 */ -+ {MC_REMAP_COMPARE_ADDRESS, 0x01000040},/* ...from 0xbfc00040 */ -+ {MC_REMAP_SIZE_ADDRESS, 0x00000000}, /* ...1 cache line */ -+ {MC_REMAP_VALID_ADDRESS, 0x00000001}, /* ...remap is valid */ -+ -+ {LOCAL_COUNT_ADDRESS+0x10, 0}, /* clear BMI credit counter */ -+ -+ {RESET_CONTROL_ADDRESS, RESET_CONTROL_WARM_RST_MASK}, -+ }; -+ -+ static struct forceROM_s ForceROM_NEW[] = { -+ /* NB: This works for AR6000 ROM REV3 and beyond. */ -+ {LOCAL_SCRATCH_ADDRESS, AR6K_OPTION_IGNORE_FLASH}, -+ {LOCAL_COUNT_ADDRESS+0x10, 0}, /* clear BMI credit counter */ -+ {RESET_CONTROL_ADDRESS, RESET_CONTROL_WARM_RST_MASK}, -+ }; -+ -+ /* -+ * Examine a semi-arbitrary instruction that's different -+ * in REV2 and other revisions. -+ * NB: If a Host port does not require simultaneous support -+ * for multiple revisions of Target ROM, this code can be elided. -+ */ -+ (void)ar6000_ReadDataDiag(hifDevice, 0x01000040, -+ (A_UCHAR *)&instruction, 4); -+ -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("instruction=0x%x\n", instruction)); -+ -+ if (instruction == 0x3c1aa200) { -+ /* It's an old ROM */ -+ ForceROM = ForceROM_REV2; -+ szForceROM = sizeof(ForceROM_REV2)/sizeof(*ForceROM); -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Using OLD method\n")); -+ } else { -+ ForceROM = ForceROM_NEW; -+ szForceROM = sizeof(ForceROM_NEW)/sizeof(*ForceROM); -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Using NEW method\n")); -+ } -+ -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Force Target to execute from ROM....\n")); -+ for (i = 0; i < szForceROM; i++) -+ { -+ if (ar6000_WriteRegDiag(hifDevice, -+ &ForceROM[i].addr, -+ &ForceROM[i].data) != A_OK) -+ { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Cannot force Target to execute ROM!\n")); -+ return A_ERROR; -+ } -+ } -+ -+ A_MDELAY(50); /* delay to allow dragon to come to BMI phase */ -+ return A_OK; -+} -+ -+/* reset device */ -+A_STATUS ar6000_reset_device(HIF_DEVICE *hifDevice, A_UINT32 TargetType) -+{ -+ -+#if !defined(DWSIM) -+ A_STATUS status = A_OK; -+ A_UINT32 address; -+ A_UINT32 data; -+ -+ do { -+ -+ // address = RESET_CONTROL_ADDRESS; -+ data = RESET_CONTROL_COLD_RST_MASK; -+ -+ /* Hardcode the address of RESET_CONTROL_ADDRESS based on the target type */ -+ if (TargetType == TARGET_TYPE_AR6001) { -+ address = 0x0C000000; -+ } else { -+ if (TargetType == TARGET_TYPE_AR6002) { -+ address = 0x00004000; -+ } else { -+ A_ASSERT(0); -+ } -+ } -+ -+ status = ar6000_WriteRegDiag(hifDevice, &address, &data); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ /* -+ * Read back the RESET CAUSE register to ensure that the cold reset -+ * went through. -+ */ -+ A_MDELAY(2000); /* 2 second delay to allow things to settle down */ -+ -+ -+ // address = RESET_CAUSE_ADDRESS; -+ /* Hardcode the address of RESET_CAUSE_ADDRESS based on the target type */ -+ if (TargetType == TARGET_TYPE_AR6001) { -+ address = 0x0C0000CC; -+ } else { -+ if (TargetType == TARGET_TYPE_AR6002) { -+ address = 0x000040C0; -+ } else { -+ A_ASSERT(0); -+ } -+ } -+ -+ data = 0; -+ status = ar6000_ReadRegDiag(hifDevice, &address, &data); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Reset Cause readback: 0x%X \n",data)); -+ data &= RESET_CAUSE_LAST_MASK; -+ if (data != 2) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Unable to cold reset the target \n")); -+ } -+ -+ } while (FALSE); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_LOG_ERR, ("Failed to reset target \n")); -+ } -+#endif -+ return A_OK; -+} -+ -+#define REG_DUMP_COUNT_AR6001 38 /* WORDs, derived from AR6001_regdump.h */ -+#define REG_DUMP_COUNT_AR6002 32 /* WORDs, derived from AR6002_regdump.h */ -+ -+ -+#if REG_DUMP_COUNT_AR6001 <= REG_DUMP_COUNT_AR6002 -+#define REGISTER_DUMP_LEN_MAX REG_DUMP_COUNT_AR6002 -+#else -+#define REGISTER_DUMP_LEN_MAX REG_DUMP_COUNT_AR6001 -+#endif -+ -+void ar6000_dump_target_assert_info(HIF_DEVICE *hifDevice, A_UINT32 TargetType) -+{ -+ A_UINT32 address; -+ A_UINT32 regDumpArea = 0; -+ A_STATUS status; -+ A_UINT32 regDumpValues[REGISTER_DUMP_LEN_MAX]; -+ A_UINT32 regDumpCount = 0; -+ A_UINT32 i; -+ -+ do { -+ -+ /* the reg dump pointer is copied to the host interest area */ -+ address = HOST_INTEREST_ITEM_ADDRESS(TargetType, hi_failure_state); -+ -+ if (TargetType == TARGET_TYPE_AR6001) { -+ /* for AR6001, this is a fixed location because the ptr is actually stuck in cache, -+ * this may be fixed in later firmware versions */ -+ address = 0x18a0; -+ regDumpCount = REG_DUMP_COUNT_AR6001; -+ -+ } else if (TargetType == TARGET_TYPE_AR6002) { -+ -+ regDumpCount = REG_DUMP_COUNT_AR6002; -+ -+ } else { -+ A_ASSERT(0); -+ } -+ -+ /* read RAM location through diagnostic window */ -+ status = ar6000_ReadRegDiag(hifDevice, &address, ®DumpArea); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("AR6K: Failed to get ptr to register dump area \n")); -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("AR6K: Location of register dump data: 0x%X \n",regDumpArea)); -+ -+ if (regDumpArea == 0) { -+ /* no reg dump */ -+ break; -+ } -+ -+ if (TargetType == TARGET_TYPE_AR6001) { -+ regDumpArea &= 0x0FFFFFFF; /* convert to physical address in target memory */ -+ } -+ -+ /* fetch register dump data */ -+ status = ar6000_ReadDataDiag(hifDevice, -+ regDumpArea, -+ (A_UCHAR *)®DumpValues[0], -+ regDumpCount * (sizeof(A_UINT32))); -+ -+ if (A_FAILED(status)) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("AR6K: Failed to get register dump \n")); -+ break; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,("AR6K: Register Dump: \n")); -+ -+ for (i = 0; i < regDumpCount; i++) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_ERR,(" %d : 0x%8.8X \n",i, regDumpValues[i])); -+ } -+ -+ } while (FALSE); -+ -+} -+ ---- /dev/null -+++ b/drivers/ar6000/miscdrv/credit_dist.c -@@ -0,0 +1,346 @@ -+ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "a_osapi.h" -+#include "a_debug.h" -+#include "htc_api.h" -+#include "common_drv.h" -+ -+/********* CREDIT DISTRIBUTION FUNCTIONS ******************************************/ -+ -+#define NO_VO_SERVICE 1 /* currently WMI only uses 3 data streams, so we leave VO service inactive */ -+ -+#ifdef NO_VO_SERVICE -+#define DATA_SVCS_USED 3 -+#else -+#define DATA_SVCS_USED 4 -+#endif -+ -+static void RedistributeCredits(COMMON_CREDIT_STATE_INFO *pCredInfo, -+ HTC_ENDPOINT_CREDIT_DIST *pEPDistList); -+ -+static void SeekCredits(COMMON_CREDIT_STATE_INFO *pCredInfo, -+ HTC_ENDPOINT_CREDIT_DIST *pEPDistList); -+ -+/* reduce an ep's credits back to a set limit */ -+static INLINE void ReduceCredits(COMMON_CREDIT_STATE_INFO *pCredInfo, -+ HTC_ENDPOINT_CREDIT_DIST *pEpDist, -+ int Limit) -+{ -+ int credits; -+ -+ /* set the new limit */ -+ pEpDist->TxCreditsAssigned = Limit; -+ -+ if (pEpDist->TxCredits <= Limit) { -+ return; -+ } -+ -+ /* figure out how much to take away */ -+ credits = pEpDist->TxCredits - Limit; -+ /* take them away */ -+ pEpDist->TxCredits -= credits; -+ pCredInfo->CurrentFreeCredits += credits; -+} -+ -+/* give an endpoint some credits from the free credit pool */ -+#define GiveCredits(pCredInfo,pEpDist,credits) \ -+{ \ -+ (pEpDist)->TxCredits += (credits); \ -+ (pEpDist)->TxCreditsAssigned += (credits); \ -+ (pCredInfo)->CurrentFreeCredits -= (credits); \ -+} -+ -+ -+/* default credit init callback. -+ * This function is called in the context of HTCStart() to setup initial (application-specific) -+ * credit distributions */ -+static void ar6000_credit_init(void *Context, -+ HTC_ENDPOINT_CREDIT_DIST *pEPList, -+ int TotalCredits) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pCurEpDist; -+ int count; -+ COMMON_CREDIT_STATE_INFO *pCredInfo = (COMMON_CREDIT_STATE_INFO *)Context; -+ -+ pCredInfo->CurrentFreeCredits = TotalCredits; -+ pCredInfo->TotalAvailableCredits = TotalCredits; -+ -+ pCurEpDist = pEPList; -+ -+ /* run through the list and initialize */ -+ while (pCurEpDist != NULL) { -+ -+ /* set minimums for each endpoint */ -+ pCurEpDist->TxCreditsMin = pCurEpDist->TxCreditsPerMaxMsg; -+ -+ if (pCurEpDist->ServiceID == WMI_CONTROL_SVC) { -+ /* give control service some credits */ -+ GiveCredits(pCredInfo,pCurEpDist,pCurEpDist->TxCreditsMin); -+ /* control service is always marked active, it never goes inactive EVER */ -+ SET_EP_ACTIVE(pCurEpDist); -+ } else if (pCurEpDist->ServiceID == WMI_DATA_BK_SVC) { -+ /* this is the lowest priority data endpoint, save this off for easy access */ -+ pCredInfo->pLowestPriEpDist = pCurEpDist; -+ } -+ -+ /* Streams have to be created (explicit | implicit)for all kinds -+ * of traffic. BE endpoints are also inactive in the beginning. -+ * When BE traffic starts it creates implicit streams that -+ * redistributes credits. -+ */ -+ -+ /* note, all other endpoints have minimums set but are initially given NO credits. -+ * Credits will be distributed as traffic activity demands */ -+ pCurEpDist = pCurEpDist->pNext; -+ } -+ -+ if (pCredInfo->CurrentFreeCredits <= 0) { -+ AR_DEBUG_PRINTF(ATH_LOG_INF, ("Not enough credits (%d) to do credit distributions \n", TotalCredits)); -+ A_ASSERT(FALSE); -+ return; -+ } -+ -+ /* reset list */ -+ pCurEpDist = pEPList; -+ /* now run through the list and set max operating credit limits for everyone */ -+ while (pCurEpDist != NULL) { -+ if (pCurEpDist->ServiceID == WMI_CONTROL_SVC) { -+ /* control service max is just 1 max message */ -+ pCurEpDist->TxCreditsNorm = pCurEpDist->TxCreditsPerMaxMsg; -+ } else { -+ /* for the remaining data endpoints, we assume that each TxCreditsPerMaxMsg are -+ * the same. -+ * We use a simple calculation here, we take the remaining credits and -+ * determine how many max messages this can cover and then set each endpoint's -+ * normal value equal to half this amount. -+ * */ -+ count = (pCredInfo->CurrentFreeCredits/pCurEpDist->TxCreditsPerMaxMsg) * pCurEpDist->TxCreditsPerMaxMsg; -+ count = count >> 1; -+ count = max(count,pCurEpDist->TxCreditsPerMaxMsg); -+ /* set normal */ -+ pCurEpDist->TxCreditsNorm = count; -+ -+ } -+ pCurEpDist = pCurEpDist->pNext; -+ } -+ -+} -+ -+ -+/* default credit distribution callback -+ * This callback is invoked whenever endpoints require credit distributions. -+ * A lock is held while this function is invoked, this function shall NOT block. -+ * The pEPDistList is a list of distribution structures in prioritized order as -+ * defined by the call to the HTCSetCreditDistribution() api. -+ * -+ */ -+static void ar6000_credit_distribute(void *Context, -+ HTC_ENDPOINT_CREDIT_DIST *pEPDistList, -+ HTC_CREDIT_DIST_REASON Reason) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pCurEpDist; -+ COMMON_CREDIT_STATE_INFO *pCredInfo = (COMMON_CREDIT_STATE_INFO *)Context; -+ -+ switch (Reason) { -+ case HTC_CREDIT_DIST_SEND_COMPLETE : -+ pCurEpDist = pEPDistList; -+ /* we are given the start of the endpoint distribution list. -+ * There may be one or more endpoints to service. -+ * Run through the list and distribute credits */ -+ while (pCurEpDist != NULL) { -+ -+ if (pCurEpDist->TxCreditsToDist > 0) { -+ /* return the credits back to the endpoint */ -+ pCurEpDist->TxCredits += pCurEpDist->TxCreditsToDist; -+ /* always zero out when we are done */ -+ pCurEpDist->TxCreditsToDist = 0; -+ -+ if (pCurEpDist->TxCredits > pCurEpDist->TxCreditsAssigned) { -+ /* reduce to the assigned limit, previous credit reductions -+ * could have caused the limit to change */ -+ ReduceCredits(pCredInfo, pCurEpDist, pCurEpDist->TxCreditsAssigned); -+ } -+ -+ if (pCurEpDist->TxCredits > pCurEpDist->TxCreditsNorm) { -+ /* oversubscribed endpoints need to reduce back to normal */ -+ ReduceCredits(pCredInfo, pCurEpDist, pCurEpDist->TxCreditsNorm); -+ } -+ } -+ -+ pCurEpDist = pCurEpDist->pNext; -+ } -+ -+ A_ASSERT(pCredInfo->CurrentFreeCredits <= pCredInfo->TotalAvailableCredits); -+ -+ break; -+ -+ case HTC_CREDIT_DIST_ACTIVITY_CHANGE : -+ RedistributeCredits(pCredInfo,pEPDistList); -+ break; -+ case HTC_CREDIT_DIST_SEEK_CREDITS : -+ SeekCredits(pCredInfo,pEPDistList); -+ break; -+ case HTC_DUMP_CREDIT_STATE : -+ AR_DEBUG_PRINTF(ATH_LOG_INF, ("Credit Distribution, total : %d, free : %d\n", -+ pCredInfo->TotalAvailableCredits, pCredInfo->CurrentFreeCredits)); -+ break; -+ default: -+ break; -+ -+ } -+ -+} -+ -+/* redistribute credits based on activity change */ -+static void RedistributeCredits(COMMON_CREDIT_STATE_INFO *pCredInfo, -+ HTC_ENDPOINT_CREDIT_DIST *pEPDistList) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pCurEpDist = pEPDistList; -+ -+ /* walk through the list and remove credits from inactive endpoints */ -+ while (pCurEpDist != NULL) { -+ -+ if (pCurEpDist->ServiceID != WMI_CONTROL_SVC) { -+ if (!IS_EP_ACTIVE(pCurEpDist)) { -+ /* EP is inactive, reduce credits back to zero */ -+ ReduceCredits(pCredInfo, pCurEpDist, 0); -+ } -+ } -+ -+ /* NOTE in the active case, we do not need to do anything further, -+ * when an EP goes active and needs credits, HTC will call into -+ * our distribution function using a reason code of HTC_CREDIT_DIST_SEEK_CREDITS */ -+ -+ pCurEpDist = pCurEpDist->pNext; -+ } -+ -+ A_ASSERT(pCredInfo->CurrentFreeCredits <= pCredInfo->TotalAvailableCredits); -+ -+} -+ -+/* HTC has an endpoint that needs credits, pEPDist is the endpoint in question */ -+static void SeekCredits(COMMON_CREDIT_STATE_INFO *pCredInfo, -+ HTC_ENDPOINT_CREDIT_DIST *pEPDist) -+{ -+ HTC_ENDPOINT_CREDIT_DIST *pCurEpDist; -+ int credits = 0; -+ int need; -+ -+ do { -+ -+ if (pEPDist->ServiceID == WMI_CONTROL_SVC) { -+ /* we never oversubscribe on the control service, this is not -+ * a high performance path and the target never holds onto control -+ * credits for too long */ -+ break; -+ } -+ -+ /* for all other services, we follow a simple algorithm of -+ * 1. checking the free pool for credits -+ * 2. checking lower priority endpoints for credits to take */ -+ -+ if (pCredInfo->CurrentFreeCredits >= 2 * pEPDist->TxCreditsSeek) { -+ /* try to give more credits than it needs */ -+ credits = 2 * pEPDist->TxCreditsSeek; -+ } else { -+ /* give what we can */ -+ credits = min(pCredInfo->CurrentFreeCredits,pEPDist->TxCreditsSeek); -+ } -+ -+ if (credits >= pEPDist->TxCreditsSeek) { -+ /* we found some to fullfill the seek request */ -+ break; -+ } -+ -+ /* we don't have enough in the free pool, try taking away from lower priority services -+ * -+ * The rule for taking away credits: -+ * 1. Only take from lower priority endpoints -+ * 2. Only take what is allocated above the minimum (never starve an endpoint completely) -+ * 3. Only take what you need. -+ * -+ * */ -+ -+ /* starting at the lowest priority */ -+ pCurEpDist = pCredInfo->pLowestPriEpDist; -+ -+ /* work backwards until we hit the endpoint again */ -+ while (pCurEpDist != pEPDist) { -+ /* calculate how many we need so far */ -+ need = pEPDist->TxCreditsSeek - pCredInfo->CurrentFreeCredits; -+ -+ if ((pCurEpDist->TxCreditsAssigned - need) > pCurEpDist->TxCreditsMin) { -+ /* the current one has been allocated more than it's minimum and it -+ * has enough credits assigned above it's minimum to fullfill our need -+ * try to take away just enough to fullfill our need */ -+ ReduceCredits(pCredInfo, -+ pCurEpDist, -+ pCurEpDist->TxCreditsAssigned - need); -+ -+ if (pCredInfo->CurrentFreeCredits >= pEPDist->TxCreditsSeek) { -+ /* we have enough */ -+ break; -+ } -+ } -+ -+ pCurEpDist = pCurEpDist->pPrev; -+ } -+ -+ /* return what we can get */ -+ credits = min(pCredInfo->CurrentFreeCredits,pEPDist->TxCreditsSeek); -+ -+ } while (FALSE); -+ -+ /* did we find some credits? */ -+ if (credits) { -+ /* give what we can */ -+ GiveCredits(pCredInfo, pEPDist, credits); -+ } -+ -+} -+ -+/* initialize and setup credit distribution */ -+A_STATUS ar6000_setup_credit_dist(HTC_HANDLE HTCHandle, COMMON_CREDIT_STATE_INFO *pCredInfo) -+{ -+ HTC_SERVICE_ID servicepriority[5]; -+ -+ A_MEMZERO(pCredInfo,sizeof(COMMON_CREDIT_STATE_INFO)); -+ -+ servicepriority[0] = WMI_CONTROL_SVC; /* highest */ -+ servicepriority[1] = WMI_DATA_VO_SVC; -+ servicepriority[2] = WMI_DATA_VI_SVC; -+ servicepriority[3] = WMI_DATA_BE_SVC; -+ servicepriority[4] = WMI_DATA_BK_SVC; /* lowest */ -+ -+ /* set callbacks and priority list */ -+ HTCSetCreditDistribution(HTCHandle, -+ pCredInfo, -+ ar6000_credit_distribute, -+ ar6000_credit_init, -+ servicepriority, -+ 5); -+ -+ return A_OK; -+} -+ ---- /dev/null -+++ b/drivers/ar6000/wlan/wlan_node.c -@@ -0,0 +1,371 @@ -+/*- -+ * Copyright (c) 2001 Atsushi Onoe -+ * Copyright (c) 2002-2004 Sam Leffler, Errno Consulting -+ * Copyright (c) 2004-2005 Atheros Communications -+ * All rights reserved. -+ * -+ * Redistribution and use in source and binary forms, with or without -+ * modification, are permitted provided that the following conditions -+ * are met: -+ * 1. Redistributions of source code must retain the above copyright -+ * notice, this list of conditions and the following disclaimer. -+ * 2. Redistributions in binary form must reproduce the above copyright -+ * notice, this list of conditions and the following disclaimer in the -+ * documentation and/or other materials provided with the distribution. -+ * 3. The name of the author may not be used to endorse or promote products -+ * derived from this software without specific prior written permission. -+ * -+ * Alternatively, this software may be distributed under the terms of the -+ * GNU General Public License ("GPL") version 2 as published by the Free -+ * Software Foundation. -+ * -+ * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR -+ * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES -+ * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -+ * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, -+ * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -+ * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -+ * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -+ * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -+ * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF -+ * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/wlan/src/wlan_node.c#1 $ -+ */ -+/* -+ * IEEE 802.11 node handling support. -+ */ -+#include <a_config.h> -+#include <athdefs.h> -+#include <a_types.h> -+#include <a_osapi.h> -+#include <a_debug.h> -+#include <ieee80211.h> -+#include <wlan_api.h> -+#include <ieee80211_node.h> -+#include <htc_api.h> -+#include <wmi.h> -+#include <wmi_api.h> -+ -+static void wlan_node_timeout(A_ATH_TIMER arg); -+static bss_t * _ieee80211_find_node(struct ieee80211_node_table *nt, -+ const A_UINT8 *macaddr); -+ -+bss_t * -+wlan_node_alloc(struct ieee80211_node_table *nt, int wh_size) -+{ -+ bss_t *ni; -+ -+ ni = A_MALLOC_NOWAIT(sizeof(bss_t)); -+ -+ if (ni != NULL) { -+ ni->ni_buf = A_MALLOC_NOWAIT(wh_size); -+ if (ni->ni_buf == NULL) { -+ A_FREE(ni); -+ ni = NULL; -+ return ni; -+ } -+ } else { -+ return ni; -+ } -+ -+ /* Make sure our lists are clean */ -+ ni->ni_list_next = NULL; -+ ni->ni_list_prev = NULL; -+ ni->ni_hash_next = NULL; -+ ni->ni_hash_prev = NULL; -+ -+ // -+ // ni_scangen never initialized before and during suspend/resume of winmobile, customer (LG/SEMCO) identified -+ // that some junk has been stored in this, due to this scan list didn't properly updated -+ // -+ ni->ni_scangen = 0; -+ -+ return ni; -+} -+ -+void -+wlan_node_free(bss_t *ni) -+{ -+ if (ni->ni_buf != NULL) { -+ A_FREE(ni->ni_buf); -+ } -+ A_FREE(ni); -+} -+ -+void -+wlan_setup_node(struct ieee80211_node_table *nt, bss_t *ni, -+ const A_UINT8 *macaddr) -+{ -+ int hash; -+ -+ A_MEMCPY(ni->ni_macaddr, macaddr, IEEE80211_ADDR_LEN); -+ hash = IEEE80211_NODE_HASH(macaddr); -+ ieee80211_node_initref(ni); /* mark referenced */ -+ -+ ni->ni_tstamp = A_GET_MS(WLAN_NODE_INACT_TIMEOUT_MSEC); -+ IEEE80211_NODE_LOCK_BH(nt); -+ -+ /* Insert at the end of the node list */ -+ ni->ni_list_next = NULL; -+ ni->ni_list_prev = nt->nt_node_last; -+ if(nt->nt_node_last != NULL) -+ { -+ nt->nt_node_last->ni_list_next = ni; -+ } -+ nt->nt_node_last = ni; -+ if(nt->nt_node_first == NULL) -+ { -+ nt->nt_node_first = ni; -+ } -+ -+ /* Insert into the hash list i.e. the bucket */ -+ if((ni->ni_hash_next = nt->nt_hash[hash]) != NULL) -+ { -+ nt->nt_hash[hash]->ni_hash_prev = ni; -+ } -+ ni->ni_hash_prev = NULL; -+ nt->nt_hash[hash] = ni; -+ -+ if (!nt->isTimerArmed) { -+ A_TIMEOUT_MS(&nt->nt_inact_timer, WLAN_NODE_INACT_TIMEOUT_MSEC, 0); -+ nt->isTimerArmed = TRUE; -+ } -+ -+ IEEE80211_NODE_UNLOCK_BH(nt); -+} -+ -+static bss_t * -+_ieee80211_find_node(struct ieee80211_node_table *nt, -+ const A_UINT8 *macaddr) -+{ -+ bss_t *ni; -+ int hash; -+ -+ IEEE80211_NODE_LOCK_ASSERT(nt); -+ -+ hash = IEEE80211_NODE_HASH(macaddr); -+ for(ni = nt->nt_hash[hash]; ni; ni = ni->ni_hash_next) { -+ if (IEEE80211_ADDR_EQ(ni->ni_macaddr, macaddr)) { -+ ieee80211_node_incref(ni); /* mark referenced */ -+ return ni; -+ } -+ } -+ return NULL; -+} -+ -+bss_t * -+wlan_find_node(struct ieee80211_node_table *nt, const A_UINT8 *macaddr) -+{ -+ bss_t *ni; -+ -+ IEEE80211_NODE_LOCK(nt); -+ ni = _ieee80211_find_node(nt, macaddr); -+ IEEE80211_NODE_UNLOCK(nt); -+ return ni; -+} -+ -+/* -+ * Reclaim a node. If this is the last reference count then -+ * do the normal free work. Otherwise remove it from the node -+ * table and mark it gone by clearing the back-reference. -+ */ -+void -+wlan_node_reclaim(struct ieee80211_node_table *nt, bss_t *ni) -+{ -+ IEEE80211_NODE_LOCK(nt); -+ -+ if(ni->ni_list_prev == NULL) -+ { -+ /* First in list so fix the list head */ -+ nt->nt_node_first = ni->ni_list_next; -+ } -+ else -+ { -+ ni->ni_list_prev->ni_list_next = ni->ni_list_next; -+ } -+ -+ if(ni->ni_list_next == NULL) -+ { -+ /* Last in list so fix list tail */ -+ nt->nt_node_last = ni->ni_list_prev; -+ } -+ else -+ { -+ ni->ni_list_next->ni_list_prev = ni->ni_list_prev; -+ } -+ -+ if(ni->ni_hash_prev == NULL) -+ { -+ /* First in list so fix the list head */ -+ int hash; -+ hash = IEEE80211_NODE_HASH(ni->ni_macaddr); -+ nt->nt_hash[hash] = ni->ni_hash_next; -+ } -+ else -+ { -+ ni->ni_hash_prev->ni_hash_next = ni->ni_hash_next; -+ } -+ -+ if(ni->ni_hash_next != NULL) -+ { -+ ni->ni_hash_next->ni_hash_prev = ni->ni_hash_prev; -+ } -+ wlan_node_free(ni); -+ -+ IEEE80211_NODE_UNLOCK(nt); -+} -+ -+static void -+wlan_node_dec_free(bss_t *ni) -+{ -+ if (ieee80211_node_dectestref(ni)) { -+ wlan_node_free(ni); -+ } -+} -+ -+void -+wlan_free_allnodes(struct ieee80211_node_table *nt) -+{ -+ bss_t *ni; -+ -+ while ((ni = nt->nt_node_first) != NULL) { -+ wlan_node_reclaim(nt, ni); -+ } -+} -+ -+void -+wlan_iterate_nodes(struct ieee80211_node_table *nt, wlan_node_iter_func *f, -+ void *arg) -+{ -+ bss_t *ni; -+ A_UINT32 gen; -+ -+ gen = ++nt->nt_scangen; -+ -+ IEEE80211_NODE_LOCK(nt); -+ for (ni = nt->nt_node_first; ni; ni = ni->ni_list_next) { -+ if (ni->ni_scangen != gen) { -+ ni->ni_scangen = gen; -+ (void) ieee80211_node_incref(ni); -+ (*f)(arg, ni); -+ wlan_node_dec_free(ni); -+ } -+ } -+ IEEE80211_NODE_UNLOCK(nt); -+} -+ -+/* -+ * Node table support. -+ */ -+void -+wlan_node_table_init(void *wmip, struct ieee80211_node_table *nt) -+{ -+ int i; -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_WLAN, ("node table = 0x%x\n", (A_UINT32)nt)); -+ IEEE80211_NODE_LOCK_INIT(nt); -+ -+ nt->nt_node_first = nt->nt_node_last = NULL; -+ for(i = 0; i < IEEE80211_NODE_HASHSIZE; i++) -+ { -+ nt->nt_hash[i] = NULL; -+ } -+ A_INIT_TIMER(&nt->nt_inact_timer, wlan_node_timeout, nt); -+ nt->isTimerArmed = FALSE; -+ nt->nt_wmip = wmip; -+} -+ -+static void -+wlan_node_timeout(A_ATH_TIMER arg) -+{ -+ struct ieee80211_node_table *nt = (struct ieee80211_node_table *)arg; -+ bss_t *bss, *nextBss; -+ A_UINT8 myBssid[IEEE80211_ADDR_LEN], reArmTimer = FALSE; -+ -+ wmi_get_current_bssid(nt->nt_wmip, myBssid); -+ -+ bss = nt->nt_node_first; -+ while (bss != NULL) -+ { -+ nextBss = bss->ni_list_next; -+ if (A_MEMCMP(myBssid, bss->ni_macaddr, sizeof(myBssid)) != 0) -+ { -+ -+ if (bss->ni_tstamp <= A_GET_MS(0)) -+ { -+ /* -+ * free up all but the current bss - if set -+ */ -+ wlan_node_reclaim(nt, bss); -+ } -+ else -+ { -+ /* -+ * Re-arm timer, only when we have a bss other than -+ * current bss AND it is not aged-out. -+ */ -+ reArmTimer = TRUE; -+ } -+ } -+ bss = nextBss; -+ } -+ -+ if(reArmTimer) -+ A_TIMEOUT_MS(&nt->nt_inact_timer, WLAN_NODE_INACT_TIMEOUT_MSEC, 0); -+ -+ nt->isTimerArmed = reArmTimer; -+} -+ -+void -+wlan_node_table_cleanup(struct ieee80211_node_table *nt) -+{ -+ A_UNTIMEOUT(&nt->nt_inact_timer); -+ A_DELETE_TIMER(&nt->nt_inact_timer); -+ wlan_free_allnodes(nt); -+ IEEE80211_NODE_LOCK_DESTROY(nt); -+} -+ -+bss_t * -+wlan_find_Ssidnode (struct ieee80211_node_table *nt, A_UCHAR *pSsid, -+ A_UINT32 ssidLength, A_BOOL bIsWPA2) -+{ -+ bss_t *ni = NULL; -+ A_UCHAR *pIESsid = NULL; -+ -+ IEEE80211_NODE_LOCK (nt); -+ -+ for (ni = nt->nt_node_first; ni; ni = ni->ni_list_next) { -+ pIESsid = ni->ni_cie.ie_ssid; -+ if (pIESsid[1] <= 32) { -+ -+ // Step 1 : Check SSID -+ if (0x00 == memcmp (pSsid, &pIESsid[2], ssidLength)) { -+ -+ // Step 2 : if SSID matches, check WPA or WPA2 -+ if (TRUE == bIsWPA2 && NULL != ni->ni_cie.ie_rsn) { -+ ieee80211_node_incref (ni); /* mark referenced */ -+ IEEE80211_NODE_UNLOCK (nt); -+ return ni; -+ } -+ if (FALSE == bIsWPA2 && NULL != ni->ni_cie.ie_wpa) { -+ ieee80211_node_incref(ni); /* mark referenced */ -+ IEEE80211_NODE_UNLOCK (nt); -+ return ni; -+ } -+ } -+ } -+ } -+ -+ IEEE80211_NODE_UNLOCK (nt); -+ -+ return NULL; -+} -+ -+void -+wlan_node_return (struct ieee80211_node_table *nt, bss_t *ni) -+{ -+ IEEE80211_NODE_LOCK (nt); -+ wlan_node_dec_free (ni); -+ IEEE80211_NODE_UNLOCK (nt); -+} ---- /dev/null -+++ b/drivers/ar6000/wlan/wlan_recv_beacon.c -@@ -0,0 +1,192 @@ -+/*- -+ * Copyright (c) 2001 Atsushi Onoe -+ * Copyright (c) 2002-2004 Sam Leffler, Errno Consulting -+ * All rights reserved. -+ * -+ * Redistribution and use in source and binary forms, with or without -+ * modification, are permitted provided that the following conditions -+ * are met: -+ * 1. Redistributions of source code must retain the above copyright -+ * notice, this list of conditions and the following disclaimer. -+ * 2. Redistributions in binary form must reproduce the above copyright -+ * notice, this list of conditions and the following disclaimer in the -+ * documentation and/or other materials provided with the distribution. -+ * 3. The name of the author may not be used to endorse or promote products -+ * derived from this software without specific prior written permission. -+ * -+ * Alternatively, this software may be distributed under the terms of the -+ * GNU General Public License ("GPL") version 2 as published by the Free -+ * Software Foundation. -+ * -+ * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR -+ * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES -+ * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. -+ * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, -+ * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT -+ * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -+ * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -+ * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -+ * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF -+ * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. -+ */ -+/* -+ * IEEE 802.11 input handling. -+ */ -+ -+#include "a_config.h" -+#include "athdefs.h" -+#include "a_types.h" -+#include "a_osapi.h" -+#include <wmi.h> -+#include <ieee80211.h> -+#include <wlan_api.h> -+ -+#define IEEE80211_VERIFY_LENGTH(_len, _minlen) do { \ -+ if ((_len) < (_minlen)) { \ -+ return A_EINVAL; \ -+ } \ -+} while (0) -+ -+#define IEEE80211_VERIFY_ELEMENT(__elem, __maxlen) do { \ -+ if ((__elem) == NULL) { \ -+ return A_EINVAL; \ -+ } \ -+ if ((__elem)[1] > (__maxlen)) { \ -+ return A_EINVAL; \ -+ } \ -+} while (0) -+ -+ -+/* unaligned little endian access */ -+#define LE_READ_2(p) \ -+ ((A_UINT16) \ -+ ((((A_UINT8 *)(p))[0] ) | (((A_UINT8 *)(p))[1] << 8))) -+ -+#define LE_READ_4(p) \ -+ ((A_UINT32) \ -+ ((((A_UINT8 *)(p))[0] ) | (((A_UINT8 *)(p))[1] << 8) | \ -+ (((A_UINT8 *)(p))[2] << 16) | (((A_UINT8 *)(p))[3] << 24))) -+ -+ -+static int __inline -+iswpaoui(const A_UINT8 *frm) -+{ -+ return frm[1] > 3 && LE_READ_4(frm+2) == ((WPA_OUI_TYPE<<24)|WPA_OUI); -+} -+ -+static int __inline -+iswmmoui(const A_UINT8 *frm) -+{ -+ return frm[1] > 3 && LE_READ_4(frm+2) == ((WMM_OUI_TYPE<<24)|WMM_OUI); -+} -+ -+static int __inline -+iswmmparam(const A_UINT8 *frm) -+{ -+ return frm[1] > 5 && frm[6] == WMM_PARAM_OUI_SUBTYPE; -+} -+ -+static int __inline -+iswmminfo(const A_UINT8 *frm) -+{ -+ return frm[1] > 5 && frm[6] == WMM_INFO_OUI_SUBTYPE; -+} -+ -+static int __inline -+isatherosoui(const A_UINT8 *frm) -+{ -+ return frm[1] > 3 && LE_READ_4(frm+2) == ((ATH_OUI_TYPE<<24)|ATH_OUI); -+} -+ -+static int __inline -+iswscoui(const A_UINT8 *frm) -+{ -+ return frm[1] > 3 && LE_READ_4(frm+2) == ((0x04<<24)|WPA_OUI); -+} -+ -+A_STATUS -+wlan_parse_beacon(A_UINT8 *buf, int framelen, struct ieee80211_common_ie *cie) -+{ -+ A_UINT8 *frm, *efrm; -+ -+ frm = buf; -+ efrm = (A_UINT8 *) (frm + framelen); -+ -+ /* -+ * beacon/probe response frame format -+ * [8] time stamp -+ * [2] beacon interval -+ * [2] capability information -+ * [tlv] ssid -+ * [tlv] supported rates -+ * [tlv] country information -+ * [tlv] parameter set (FH/DS) -+ * [tlv] erp information -+ * [tlv] extended supported rates -+ * [tlv] WMM -+ * [tlv] WPA or RSN -+ * [tlv] Atheros Advanced Capabilities -+ */ -+ IEEE80211_VERIFY_LENGTH(efrm - frm, 12); -+ A_MEMZERO(cie, sizeof(*cie)); -+ -+ cie->ie_tstamp = frm; frm += 8; -+ cie->ie_beaconInt = A_LE2CPU16(*(A_UINT16 *)frm); frm += 2; -+ cie->ie_capInfo = A_LE2CPU16(*(A_UINT16 *)frm); frm += 2; -+ cie->ie_chan = 0; -+ -+ while (frm < efrm) { -+ switch (*frm) { -+ case IEEE80211_ELEMID_SSID: -+ cie->ie_ssid = frm; -+ break; -+ case IEEE80211_ELEMID_RATES: -+ cie->ie_rates = frm; -+ break; -+ case IEEE80211_ELEMID_COUNTRY: -+ cie->ie_country = frm; -+ break; -+ case IEEE80211_ELEMID_FHPARMS: -+ break; -+ case IEEE80211_ELEMID_DSPARMS: -+ cie->ie_chan = frm[2]; -+ break; -+ case IEEE80211_ELEMID_TIM: -+ cie->ie_tim = frm; -+ break; -+ case IEEE80211_ELEMID_IBSSPARMS: -+ break; -+ case IEEE80211_ELEMID_XRATES: -+ cie->ie_xrates = frm; -+ break; -+ case IEEE80211_ELEMID_ERP: -+ if (frm[1] != 1) { -+ //A_PRINTF("Discarding ERP Element - Bad Len\n"); -+ return A_EINVAL; -+ } -+ cie->ie_erp = frm[2]; -+ break; -+ case IEEE80211_ELEMID_RSN: -+ cie->ie_rsn = frm; -+ break; -+ case IEEE80211_ELEMID_VENDOR: -+ if (iswpaoui(frm)) { -+ cie->ie_wpa = frm; -+ } else if (iswmmoui(frm)) { -+ cie->ie_wmm = frm; -+ } else if (isatherosoui(frm)) { -+ cie->ie_ath = frm; -+ } else if(iswscoui(frm)) { -+ cie->ie_wsc = frm; -+ } -+ break; -+ default: -+ break; -+ } -+ frm += frm[1] + 2; -+ } -+ IEEE80211_VERIFY_ELEMENT(cie->ie_rates, IEEE80211_RATE_MAXSIZE); -+ IEEE80211_VERIFY_ELEMENT(cie->ie_ssid, IEEE80211_NWID_LEN); -+ -+ return A_OK; -+} ---- /dev/null -+++ b/drivers/ar6000/wlan/wlan_utils.c -@@ -0,0 +1,59 @@ -+/* -+ * Copyright (c) 2004-2005 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * This module implements frequently used wlan utilies -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/wlan/src/wlan_utils.c#1 $ -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include <a_config.h> -+#include <athdefs.h> -+#include <a_types.h> -+#include <a_osapi.h> -+ -+/* -+ * converts ieee channel number to frequency -+ */ -+A_UINT16 -+wlan_ieee2freq(int chan) -+{ -+ if (chan == 14) { -+ return 2484; -+ } -+ if (chan < 14) { /* 0-13 */ -+ return (2407 + (chan*5)); -+ } -+ if (chan < 27) { /* 15-26 */ -+ return (2512 + ((chan-15)*20)); -+ } -+ return (5000 + (chan*5)); -+} -+ -+/* -+ * Converts MHz frequency to IEEE channel number. -+ */ -+A_UINT32 -+wlan_freq2ieee(A_UINT16 freq) -+{ -+ if (freq == 2484) -+ return 14; -+ if (freq < 2484) -+ return (freq - 2407) / 5; -+ if (freq < 5000) -+ return 15 + ((freq - 2512) / 20); -+ return (freq - 5000) / 5; -+} ---- /dev/null -+++ b/drivers/ar6000/wmi/wmi.c -@@ -0,0 +1,3954 @@ -+/* -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * This module implements the hardware independent layer of the -+ * Wireless Module Interface (WMI) protocol. -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/wmi/wmi.c#3 $ -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#include <a_config.h> -+#include <athdefs.h> -+#include <a_types.h> -+#include <a_osapi.h> -+#include "htc.h" -+#include "htc_api.h" -+#include "wmi.h" -+#include <ieee80211.h> -+#include <ieee80211_node.h> -+#include <wlan_api.h> -+#include <wmi_api.h> -+#include "dset_api.h" -+#include "gpio_api.h" -+#include "wmi_host.h" -+#include "a_drv.h" -+#include "a_drv_api.h" -+#include "a_debug.h" -+#include "dbglog_api.h" -+ -+static A_STATUS wmi_ready_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+ -+static A_STATUS wmi_connect_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_disconnect_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_tkip_micerr_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_bssInfo_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_opt_frame_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_pstream_timeout_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_sync_point(struct wmi_t *wmip); -+ -+static A_STATUS wmi_bitrate_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_ratemask_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_channelList_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_regDomain_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_txPwr_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_neighborReport_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+ -+static A_STATUS wmi_dset_open_req_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+#ifdef CONFIG_HOST_DSET_SUPPORT -+static A_STATUS wmi_dset_close_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_dset_data_req_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+#endif /* CONFIG_HOST_DSET_SUPPORT */ -+ -+ -+static A_STATUS wmi_scanComplete_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_errorEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_statsEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_rssiThresholdEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_hbChallengeResp_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_reportErrorEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_cac_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_roam_tbl_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_roam_data_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS wmi_get_wow_list_event_rx(struct wmi_t *wmip, A_UINT8 *datap, -+ int len); -+static A_STATUS -+wmi_get_pmkid_list_event_rx(struct wmi_t *wmip, A_UINT8 *datap, A_UINT32 len); -+ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+static A_STATUS wmi_gpio_intr_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_gpio_data_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+static A_STATUS wmi_gpio_ack_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+#endif /* CONFIG_HOST_GPIO_SUPPORT */ -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+static A_STATUS -+wmi_tcmd_test_report_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+#endif -+ -+static A_STATUS -+wmi_txRetryErrEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+ -+static A_STATUS -+wmi_snrThresholdEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+ -+static A_STATUS -+wmi_lqThresholdEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+ -+static A_BOOL -+wmi_is_bitrate_index_valid(struct wmi_t *wmip, A_UINT32 rateIndex); -+ -+static A_STATUS -+wmi_aplistEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+ -+static A_STATUS -+wmi_dbglog_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+ -+static A_STATUS wmi_keepalive_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, int len); -+ -+int wps_enable; -+static const A_INT32 wmi_rateTable[] = { -+ 1000, -+ 2000, -+ 5500, -+ 11000, -+ 6000, -+ 9000, -+ 12000, -+ 18000, -+ 24000, -+ 36000, -+ 48000, -+ 54000, -+ 0}; -+ -+#define MODE_A_SUPPORT_RATE_START 4 -+#define MODE_A_SUPPORT_RATE_STOP 11 -+ -+#define MODE_GONLY_SUPPORT_RATE_START MODE_A_SUPPORT_RATE_START -+#define MODE_GONLY_SUPPORT_RATE_STOP MODE_A_SUPPORT_RATE_STOP -+ -+#define MODE_B_SUPPORT_RATE_START 0 -+#define MODE_B_SUPPORT_RATE_STOP 3 -+ -+#define MODE_G_SUPPORT_RATE_START 0 -+#define MODE_G_SUPPORT_RATE_STOP 11 -+ -+#define MAX_NUMBER_OF_SUPPORT_RATES (MODE_G_SUPPORT_RATE_STOP + 1) -+ -+/* 802.1d to AC mapping. Refer pg 57 of WMM-test-plan-v1.2 */ -+const A_UINT8 up_to_ac[]= { -+ WMM_AC_BE, -+ WMM_AC_BK, -+ WMM_AC_BK, -+ WMM_AC_BE, -+ WMM_AC_VI, -+ WMM_AC_VI, -+ WMM_AC_VO, -+ WMM_AC_VO, -+ }; -+ -+void * -+wmi_init(void *devt) -+{ -+ struct wmi_t *wmip; -+ -+ wmip = A_MALLOC(sizeof(struct wmi_t)); -+ if (wmip == NULL) { -+ return (NULL); -+ } -+ A_MEMZERO(wmip, sizeof(*wmip)); -+ A_MUTEX_INIT(&wmip->wmi_lock); -+ wmip->wmi_devt = devt; -+ wlan_node_table_init(wmip, &wmip->wmi_scan_table); -+ wmi_qos_state_init(wmip); -+ wmip->wmi_powerMode = REC_POWER; -+ wmip->wmi_phyMode = WMI_11G_MODE; -+ -+ return (wmip); -+} -+ -+void -+wmi_qos_state_init(struct wmi_t *wmip) -+{ -+ A_UINT8 i; -+ -+ if (wmip == NULL) { -+ return; -+ } -+ LOCK_WMI(wmip); -+ -+ /* Initialize QoS States */ -+ wmip->wmi_numQoSStream = 0; -+ -+ wmip->wmi_fatPipeExists = 0; -+ -+ for (i=0; i < WMM_NUM_AC; i++) { -+ wmip->wmi_streamExistsForAC[i]=0; -+ } -+ -+ /* Initialize the static Wmi stream Pri to WMM AC mappings Arrays */ -+ WMI_INIT_WMISTREAM_AC_MAP(wmip); -+ -+ UNLOCK_WMI(wmip); -+ -+ A_WMI_SET_NUMDATAENDPTS(wmip->wmi_devt, 1); -+} -+ -+void -+wmi_shutdown(struct wmi_t *wmip) -+{ -+ if (wmip != NULL) { -+ wlan_node_table_cleanup(&wmip->wmi_scan_table); -+ if (A_IS_MUTEX_VALID(&wmip->wmi_lock)) { -+ A_MUTEX_DELETE(&wmip->wmi_lock); -+ } -+ A_FREE(wmip); -+ } -+} -+ -+/* -+ * performs DIX to 802.3 encapsulation for transmit packets. -+ * uses passed in buffer. Returns buffer or NULL if failed. -+ * Assumes the entire DIX header is contigous and that there is -+ * enough room in the buffer for a 802.3 mac header and LLC+SNAP headers. -+ */ -+A_STATUS -+wmi_dix_2_dot3(struct wmi_t *wmip, void *osbuf) -+{ -+ A_UINT8 *datap; -+ A_UINT16 typeorlen; -+ ATH_MAC_HDR macHdr; -+ ATH_LLC_SNAP_HDR *llcHdr; -+ -+ A_ASSERT(osbuf != NULL); -+ -+ if (A_NETBUF_HEADROOM(osbuf) < -+ (sizeof(ATH_LLC_SNAP_HDR) + sizeof(WMI_DATA_HDR))) -+ { -+ return A_NO_MEMORY; -+ } -+ -+ datap = A_NETBUF_DATA(osbuf); -+ -+ typeorlen = *(A_UINT16 *)(datap + ATH_MAC_LEN + ATH_MAC_LEN); -+ -+ if (!IS_ETHERTYPE(A_BE2CPU16(typeorlen))) { -+ /* -+ * packet is already in 802.3 format - return success -+ */ -+ A_DPRINTF(DBG_WMI, (DBGFMT "packet already 802.3\n", DBGARG)); -+ return (A_OK); -+ } -+ -+ /* -+ * Save mac fields and length to be inserted later -+ */ -+ A_MEMCPY(macHdr.dstMac, datap, ATH_MAC_LEN); -+ A_MEMCPY(macHdr.srcMac, datap + ATH_MAC_LEN, ATH_MAC_LEN); -+ macHdr.typeOrLen = A_CPU2BE16(A_NETBUF_LEN(osbuf) - sizeof(ATH_MAC_HDR) + -+ sizeof(ATH_LLC_SNAP_HDR)); -+ -+ /* -+ * Make room for LLC+SNAP headers -+ */ -+ if (A_NETBUF_PUSH(osbuf, sizeof(ATH_LLC_SNAP_HDR)) != A_OK) { -+ return A_NO_MEMORY; -+ } -+ -+ datap = A_NETBUF_DATA(osbuf); -+ -+ A_MEMCPY(datap, &macHdr, sizeof (ATH_MAC_HDR)); -+ -+ llcHdr = (ATH_LLC_SNAP_HDR *)(datap + sizeof(ATH_MAC_HDR)); -+ llcHdr->dsap = 0xAA; -+ llcHdr->ssap = 0xAA; -+ llcHdr->cntl = 0x03; -+ llcHdr->orgCode[0] = 0x0; -+ llcHdr->orgCode[1] = 0x0; -+ llcHdr->orgCode[2] = 0x0; -+ llcHdr->etherType = typeorlen; -+ -+ return (A_OK); -+} -+ -+/* -+ * Adds a WMI data header -+ * Assumes there is enough room in the buffer to add header. -+ */ -+A_STATUS -+wmi_data_hdr_add(struct wmi_t *wmip, void *osbuf, A_UINT8 msgType) -+{ -+ WMI_DATA_HDR *dtHdr; -+ -+ A_ASSERT(osbuf != NULL); -+ -+ if (A_NETBUF_PUSH(osbuf, sizeof(WMI_DATA_HDR)) != A_OK) { -+ return A_NO_MEMORY; -+ } -+ -+ dtHdr = (WMI_DATA_HDR *)A_NETBUF_DATA(osbuf); -+ dtHdr->info = msgType; -+ dtHdr->rssi = 0; -+ -+ return (A_OK); -+} -+ -+A_UINT8 wmi_implicit_create_pstream(struct wmi_t *wmip, void *osbuf, A_UINT8 dir, A_UINT8 up) -+{ -+ A_UINT8 *datap; -+ A_UINT8 trafficClass = WMM_AC_BE, userPriority = up; -+ ATH_LLC_SNAP_HDR *llcHdr; -+ A_UINT16 ipType = IP_ETHERTYPE; -+ WMI_DATA_HDR *dtHdr; -+ WMI_CREATE_PSTREAM_CMD cmd; -+ A_BOOL streamExists = FALSE; -+ -+ A_ASSERT(osbuf != NULL); -+ -+ datap = A_NETBUF_DATA(osbuf); -+ -+ if (up == UNDEFINED_PRI) { -+ llcHdr = (ATH_LLC_SNAP_HDR *)(datap + sizeof(WMI_DATA_HDR) + -+ sizeof(ATH_MAC_HDR)); -+ -+ if (llcHdr->etherType == A_CPU2BE16(ipType)) { -+ /* Extract the endpoint info from the TOS field in the IP header */ -+ userPriority = A_WMI_IPTOS_TO_USERPRIORITY(((A_UINT8 *)llcHdr) + sizeof(ATH_LLC_SNAP_HDR)); -+ } -+ } -+ -+ if (userPriority < MAX_NUM_PRI) { -+ trafficClass = convert_userPriority_to_trafficClass(userPriority); -+ } -+ -+ dtHdr = (WMI_DATA_HDR *)datap; -+ if(dir==UPLINK_TRAFFIC) -+ dtHdr->info |= (userPriority & WMI_DATA_HDR_UP_MASK) << WMI_DATA_HDR_UP_SHIFT; /* lower 3-bits are 802.1d priority */ -+ -+ LOCK_WMI(wmip); -+ streamExists = wmip->wmi_fatPipeExists; -+ UNLOCK_WMI(wmip); -+ -+ if (!(streamExists & (1 << trafficClass))) { -+ -+ A_MEMZERO(&cmd, sizeof(cmd)); -+ cmd.trafficClass = trafficClass; -+ cmd.userPriority = userPriority; -+ cmd.inactivityInt = WMI_IMPLICIT_PSTREAM_INACTIVITY_INT; -+ /* Implicit streams are created with TSID 0xFF */ -+ cmd.tsid = WMI_IMPLICIT_PSTREAM; -+ wmi_create_pstream_cmd(wmip, &cmd); -+ } -+ -+ return trafficClass; -+} -+ -+WMI_PRI_STREAM_ID -+wmi_get_stream_id(struct wmi_t *wmip, A_UINT8 trafficClass) -+{ -+ return WMI_ACCESSCATEGORY_WMISTREAM(wmip, trafficClass); -+} -+ -+/* -+ * performs 802.3 to DIX encapsulation for received packets. -+ * Assumes the entire 802.3 header is contigous. -+ */ -+A_STATUS -+wmi_dot3_2_dix(struct wmi_t *wmip, void *osbuf) -+{ -+ A_UINT8 *datap; -+ ATH_MAC_HDR macHdr; -+ ATH_LLC_SNAP_HDR *llcHdr; -+ -+ A_ASSERT(osbuf != NULL); -+ datap = A_NETBUF_DATA(osbuf); -+ -+ A_MEMCPY(&macHdr, datap, sizeof(ATH_MAC_HDR)); -+ llcHdr = (ATH_LLC_SNAP_HDR *)(datap + sizeof(ATH_MAC_HDR)); -+ macHdr.typeOrLen = llcHdr->etherType; -+ -+ if (A_NETBUF_PULL(osbuf, sizeof(ATH_LLC_SNAP_HDR)) != A_OK) { -+ return A_NO_MEMORY; -+ } -+ -+ datap = A_NETBUF_DATA(osbuf); -+ -+ A_MEMCPY(datap, &macHdr, sizeof (ATH_MAC_HDR)); -+ -+ return (A_OK); -+} -+ -+/* -+ * Removes a WMI data header -+ */ -+A_STATUS -+wmi_data_hdr_remove(struct wmi_t *wmip, void *osbuf) -+{ -+ A_ASSERT(osbuf != NULL); -+ -+ return (A_NETBUF_PULL(osbuf, sizeof(WMI_DATA_HDR))); -+} -+ -+void -+wmi_iterate_nodes(struct wmi_t *wmip, wlan_node_iter_func *f, void *arg) -+{ -+ wlan_iterate_nodes(&wmip->wmi_scan_table, f, arg); -+} -+ -+/* -+ * WMI Extended Event received from Target. -+ */ -+A_STATUS -+wmi_control_rx_xtnd(struct wmi_t *wmip, void *osbuf) -+{ -+ WMIX_CMD_HDR *cmd; -+ A_UINT16 id; -+ A_UINT8 *datap; -+ A_UINT32 len; -+ A_STATUS status = A_OK; -+ -+ if (A_NETBUF_LEN(osbuf) < sizeof(WMIX_CMD_HDR)) { -+ A_DPRINTF(DBG_WMI, (DBGFMT "bad packet 1\n", DBGARG)); -+ wmip->wmi_stats.cmd_len_err++; -+ A_NETBUF_FREE(osbuf); -+ return A_ERROR; -+ } -+ -+ cmd = (WMIX_CMD_HDR *)A_NETBUF_DATA(osbuf); -+ id = cmd->commandId; -+ -+ if (A_NETBUF_PULL(osbuf, sizeof(WMIX_CMD_HDR)) != A_OK) { -+ A_DPRINTF(DBG_WMI, (DBGFMT "bad packet 2\n", DBGARG)); -+ wmip->wmi_stats.cmd_len_err++; -+ A_NETBUF_FREE(osbuf); -+ return A_ERROR; -+ } -+ -+ datap = A_NETBUF_DATA(osbuf); -+ len = A_NETBUF_LEN(osbuf); -+ -+ switch (id) { -+ case (WMIX_DSETOPENREQ_EVENTID): -+ status = wmi_dset_open_req_rx(wmip, datap, len); -+ break; -+#ifdef CONFIG_HOST_DSET_SUPPORT -+ case (WMIX_DSETCLOSE_EVENTID): -+ status = wmi_dset_close_rx(wmip, datap, len); -+ break; -+ case (WMIX_DSETDATAREQ_EVENTID): -+ status = wmi_dset_data_req_rx(wmip, datap, len); -+ break; -+#endif /* CONFIG_HOST_DSET_SUPPORT */ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+ case (WMIX_GPIO_INTR_EVENTID): -+ wmi_gpio_intr_rx(wmip, datap, len); -+ break; -+ case (WMIX_GPIO_DATA_EVENTID): -+ wmi_gpio_data_rx(wmip, datap, len); -+ break; -+ case (WMIX_GPIO_ACK_EVENTID): -+ wmi_gpio_ack_rx(wmip, datap, len); -+ break; -+#endif /* CONFIG_HOST_GPIO_SUPPORT */ -+ case (WMIX_HB_CHALLENGE_RESP_EVENTID): -+ wmi_hbChallengeResp_rx(wmip, datap, len); -+ break; -+ case (WMIX_DBGLOG_EVENTID): -+ wmi_dbglog_event_rx(wmip, datap, len); -+ break; -+ default: -+ A_DPRINTF(DBG_WMI|DBG_ERROR, -+ (DBGFMT "Unknown id 0x%x\n", DBGARG, id)); -+ wmip->wmi_stats.cmd_id_err++; -+ status = A_ERROR; -+ break; -+ } -+ -+ return status; -+} -+ -+/* -+ * Control Path -+ */ -+A_UINT32 cmdRecvNum; -+ -+A_STATUS -+wmi_control_rx(struct wmi_t *wmip, void *osbuf) -+{ -+ WMI_CMD_HDR *cmd; -+ A_UINT16 id; -+ A_UINT8 *datap; -+ A_UINT32 len, i, loggingReq; -+ A_STATUS status = A_OK; -+ -+ A_ASSERT(osbuf != NULL); -+ if (A_NETBUF_LEN(osbuf) < sizeof(WMI_CMD_HDR)) { -+ A_DPRINTF(DBG_WMI, (DBGFMT "bad packet 1\n", DBGARG)); -+ wmip->wmi_stats.cmd_len_err++; -+ A_NETBUF_FREE(osbuf); -+ return A_ERROR; -+ } -+ -+ cmd = (WMI_CMD_HDR *)A_NETBUF_DATA(osbuf); -+ id = cmd->commandId; -+ -+ if (A_NETBUF_PULL(osbuf, sizeof(WMI_CMD_HDR)) != A_OK) { -+ A_DPRINTF(DBG_WMI, (DBGFMT "bad packet 2\n", DBGARG)); -+ wmip->wmi_stats.cmd_len_err++; -+ A_NETBUF_FREE(osbuf); -+ return A_ERROR; -+ } -+ -+ datap = A_NETBUF_DATA(osbuf); -+ len = A_NETBUF_LEN(osbuf); -+ -+ ar6000_get_driver_cfg(wmip->wmi_devt, -+ AR6000_DRIVER_CFG_LOG_RAW_WMI_MSGS, -+ &loggingReq); -+ -+ if(loggingReq) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("WMI %d \n",id)); -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("WMI recv, MsgNo %d : ", cmdRecvNum)); -+ for(i = 0; i < len; i++) -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("%x ", datap[i])); -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("\n")); -+ } -+ -+ LOCK_WMI(wmip); -+ cmdRecvNum++; -+ UNLOCK_WMI(wmip); -+ -+ switch (id) { -+ case (WMI_GET_BITRATE_CMDID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_GET_BITRATE_CMDID\n", DBGARG)); -+ status = wmi_bitrate_reply_rx(wmip, datap, len); -+ break; -+ case (WMI_GET_CHANNEL_LIST_CMDID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_GET_CHANNEL_LIST_CMDID\n", DBGARG)); -+ status = wmi_channelList_reply_rx(wmip, datap, len); -+ break; -+ case (WMI_GET_TX_PWR_CMDID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_GET_TX_PWR_CMDID\n", DBGARG)); -+ status = wmi_txPwr_reply_rx(wmip, datap, len); -+ break; -+ case (WMI_READY_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_READY_EVENTID\n", DBGARG)); -+ status = wmi_ready_event_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ A_WMI_DBGLOG_INIT_DONE(wmip->wmi_devt); -+ break; -+ case (WMI_CONNECT_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_CONNECT_EVENTID\n", DBGARG)); -+ status = wmi_connect_event_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_DISCONNECT_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_DISCONNECT_EVENTID\n", DBGARG)); -+ status = wmi_disconnect_event_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_TKIP_MICERR_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_TKIP_MICERR_EVENTID\n", DBGARG)); -+ status = wmi_tkip_micerr_event_rx(wmip, datap, len); -+ break; -+ case (WMI_BSSINFO_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_BSSINFO_EVENTID\n", DBGARG)); -+ status = wmi_bssInfo_event_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_REGDOMAIN_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_REGDOMAIN_EVENTID\n", DBGARG)); -+ status = wmi_regDomain_event_rx(wmip, datap, len); -+ break; -+ case (WMI_PSTREAM_TIMEOUT_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_PSTREAM_TIMEOUT_EVENTID\n", DBGARG)); -+ status = wmi_pstream_timeout_event_rx(wmip, datap, len); -+ /* pstreams are fatpipe abstractions that get implicitly created. -+ * User apps only deal with thinstreams. creation of a thinstream -+ * by the user or data traffic flow in an AC triggers implicit -+ * pstream creation. Do we need to send this event to App..? -+ * no harm in sending it. -+ */ -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_NEIGHBOR_REPORT_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_NEIGHBOR_REPORT_EVENTID\n", DBGARG)); -+ status = wmi_neighborReport_event_rx(wmip, datap, len); -+ break; -+ case (WMI_SCAN_COMPLETE_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_SCAN_COMPLETE_EVENTID\n", DBGARG)); -+ status = wmi_scanComplete_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_CMDERROR_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_CMDERROR_EVENTID\n", DBGARG)); -+ status = wmi_errorEvent_rx(wmip, datap, len); -+ break; -+ case (WMI_REPORT_STATISTICS_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_REPORT_STATISTICS_EVENTID\n", DBGARG)); -+ status = wmi_statsEvent_rx(wmip, datap, len); -+ break; -+ case (WMI_RSSI_THRESHOLD_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_RSSI_THRESHOLD_EVENTID\n", DBGARG)); -+ status = wmi_rssiThresholdEvent_rx(wmip, datap, len); -+ break; -+ case (WMI_ERROR_REPORT_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_ERROR_REPORT_EVENTID\n", DBGARG)); -+ status = wmi_reportErrorEvent_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_OPT_RX_FRAME_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_OPT_RX_FRAME_EVENTID\n", DBGARG)); -+ status = wmi_opt_frame_event_rx(wmip, datap, len); -+ break; -+ case (WMI_REPORT_ROAM_TBL_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_REPORT_ROAM_TBL_EVENTID\n", DBGARG)); -+ status = wmi_roam_tbl_event_rx(wmip, datap, len); -+ break; -+ case (WMI_EXTENSION_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_EXTENSION_EVENTID\n", DBGARG)); -+ status = wmi_control_rx_xtnd(wmip, osbuf); -+ break; -+ case (WMI_CAC_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_CAC_EVENTID\n", DBGARG)); -+ status = wmi_cac_event_rx(wmip, datap, len); -+ break; -+ case (WMI_REPORT_ROAM_DATA_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_REPORT_ROAM_DATA_EVENTID\n", DBGARG)); -+ status = wmi_roam_data_event_rx(wmip, datap, len); -+ break; -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+ case (WMI_TEST_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_TEST_EVENTID\n", DBGARG)); -+ status = wmi_tcmd_test_report_rx(wmip, datap, len); -+ break; -+#endif -+ case (WMI_GET_FIXRATES_CMDID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_GET_FIXRATES_CMDID\n", DBGARG)); -+ status = wmi_ratemask_reply_rx(wmip, datap, len); -+ break; -+ case (WMI_TX_RETRY_ERR_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_TX_RETRY_ERR_EVENTID\n", DBGARG)); -+ status = wmi_txRetryErrEvent_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_SNR_THRESHOLD_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_SNR_THRESHOLD_EVENTID\n", DBGARG)); -+ status = wmi_snrThresholdEvent_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_LQ_THRESHOLD_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_LQ_THRESHOLD_EVENTID\n", DBGARG)); -+ status = wmi_lqThresholdEvent_rx(wmip, datap, len); -+ A_WMI_SEND_EVENT_TO_APP(wmip->wmi_devt, id, datap, len); -+ break; -+ case (WMI_APLIST_EVENTID): -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("Received APLIST Event\n")); -+ status = wmi_aplistEvent_rx(wmip, datap, len); -+ break; -+ case (WMI_GET_KEEPALIVE_CMDID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_GET_KEEPALIVE_CMDID\n", DBGARG)); -+ status = wmi_keepalive_reply_rx(wmip, datap, len); -+ break; -+ case (WMI_GET_WOW_LIST_EVENTID): -+ status = wmi_get_wow_list_event_rx(wmip, datap, len); -+ break; -+ case (WMI_GET_PMKID_LIST_EVENTID): -+ A_DPRINTF(DBG_WMI, (DBGFMT "WMI_GET_PMKID_LIST Event\n", DBGARG)); -+ status = wmi_get_pmkid_list_event_rx(wmip, datap, len); -+ break; -+ default: -+ A_DPRINTF(DBG_WMI|DBG_ERROR, -+ (DBGFMT "Unknown id 0x%x\n", DBGARG, id)); -+ wmip->wmi_stats.cmd_id_err++; -+ status = A_ERROR; -+ break; -+ } -+ -+ A_NETBUF_FREE(osbuf); -+ -+ return status; -+} -+ -+static A_STATUS -+wmi_ready_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_READY_EVENT *ev = (WMI_READY_EVENT *)datap; -+ -+ if (len < sizeof(WMI_READY_EVENT)) { -+ return A_EINVAL; -+ } -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ wmip->wmi_ready = TRUE; -+ A_WMI_READY_EVENT(wmip->wmi_devt, ev->macaddr, ev->phyCapability); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_connect_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_CONNECT_EVENT *ev; -+ -+ if (len < sizeof(WMI_CONNECT_EVENT)) { -+ return A_EINVAL; -+ } -+ ev = (WMI_CONNECT_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "freq %d bssid %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x\n", -+ DBGARG, ev->channel, -+ ev->bssid[0], ev->bssid[1], ev->bssid[2], -+ ev->bssid[3], ev->bssid[4], ev->bssid[5])); -+ -+ A_MEMCPY(wmip->wmi_bssid, ev->bssid, ATH_MAC_LEN); -+ -+ A_WMI_CONNECT_EVENT(wmip->wmi_devt, ev->channel, ev->bssid, -+ ev->listenInterval, ev->beaconInterval, -+ ev->networkType, ev->beaconIeLen, -+ ev->assocReqLen, ev->assocRespLen, -+ ev->assocInfo); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_regDomain_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_REG_DOMAIN_EVENT *ev; -+ -+ if (len < sizeof(*ev)) { -+ return A_EINVAL; -+ } -+ ev = (WMI_REG_DOMAIN_EVENT *)datap; -+ -+ A_WMI_REGDOMAIN_EVENT(wmip->wmi_devt, ev->regDomain); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_neighborReport_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_NEIGHBOR_REPORT_EVENT *ev; -+ int numAps; -+ -+ if (len < sizeof(*ev)) { -+ return A_EINVAL; -+ } -+ ev = (WMI_NEIGHBOR_REPORT_EVENT *)datap; -+ numAps = ev->numberOfAps; -+ -+ if (len < (int)(sizeof(*ev) + ((numAps - 1) * sizeof(WMI_NEIGHBOR_INFO)))) { -+ return A_EINVAL; -+ } -+ -+ A_WMI_NEIGHBORREPORT_EVENT(wmip->wmi_devt, numAps, ev->neighbor); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_disconnect_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_DISCONNECT_EVENT *ev; -+ -+ if (len < sizeof(WMI_DISCONNECT_EVENT)) { -+ return A_EINVAL; -+ } -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ ev = (WMI_DISCONNECT_EVENT *)datap; -+ -+ A_MEMZERO(wmip->wmi_bssid, sizeof(wmip->wmi_bssid)); -+ -+ A_WMI_DISCONNECT_EVENT(wmip->wmi_devt, ev->disconnectReason, ev->bssid, -+ ev->assocRespLen, ev->assocInfo, ev->protocolReasonStatus); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_tkip_micerr_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_TKIP_MICERR_EVENT *ev; -+ -+ if (len < sizeof(*ev)) { -+ return A_EINVAL; -+ } -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ ev = (WMI_TKIP_MICERR_EVENT *)datap; -+ A_WMI_TKIP_MICERR_EVENT(wmip->wmi_devt, ev->keyid, ev->ismcast); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_bssInfo_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ bss_t *bss; -+ WMI_BSS_INFO_HDR *bih; -+ A_UINT8 *buf; -+ A_UINT32 nodeCachingAllowed; -+ -+ if (len <= sizeof(WMI_BSS_INFO_HDR)) { -+ return A_EINVAL; -+ } -+ -+ A_WMI_BSSINFO_EVENT_RX(wmip->wmi_devt, datap, len); -+ /* What is driver config for wlan node caching? */ -+ if(ar6000_get_driver_cfg(wmip->wmi_devt, -+ AR6000_DRIVER_CFG_GET_WLANNODECACHING, -+ &nodeCachingAllowed) != A_OK) { -+ return A_EINVAL; -+ } -+ -+ if(!nodeCachingAllowed) { -+ return A_OK; -+ } -+ -+ -+ bih = (WMI_BSS_INFO_HDR *)datap; -+ buf = datap + sizeof(WMI_BSS_INFO_HDR); -+ len -= sizeof(WMI_BSS_INFO_HDR); -+ -+ A_DPRINTF(DBG_WMI2, (DBGFMT "bssInfo event - ch %u, rssi %02x, " -+ "bssid \"%02x:%02x:%02x:%02x:%02x:%02x\"\n", DBGARG, -+ bih->channel, (unsigned char) bih->rssi, bih->bssid[0], -+ bih->bssid[1], bih->bssid[2], bih->bssid[3], bih->bssid[4], -+ bih->bssid[5])); -+ -+ if(wps_enable && (bih->frameType == PROBERESP_FTYPE) ) { -+ printk("%s() A_OK 2\n", __FUNCTION__); -+ return A_OK; -+ } -+ -+ bss = wlan_find_node(&wmip->wmi_scan_table, bih->bssid); -+ if (bss != NULL) { -+ /* -+ * Free up the node. Not the most efficient process given -+ * we are about to allocate a new node but it is simple and should be -+ * adequate. -+ */ -+ wlan_node_reclaim(&wmip->wmi_scan_table, bss); -+ } -+ -+ bss = wlan_node_alloc(&wmip->wmi_scan_table, len); -+ if (bss == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ bss->ni_snr = bih->snr; -+ bss->ni_rssi = bih->rssi; -+ A_ASSERT(bss->ni_buf != NULL); -+ A_MEMCPY(bss->ni_buf, buf, len); -+ -+ if (wlan_parse_beacon(bss->ni_buf, len, &bss->ni_cie) != A_OK) { -+ wlan_node_free(bss); -+ return A_EINVAL; -+ } -+ -+ /* -+ * Update the frequency in ie_chan, overwriting of channel number -+ * which is done in wlan_parse_beacon -+ */ -+ bss->ni_cie.ie_chan = bih->channel; -+ wlan_setup_node(&wmip->wmi_scan_table, bss, bih->bssid); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_opt_frame_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ bss_t *bss; -+ WMI_OPT_RX_INFO_HDR *bih; -+ A_UINT8 *buf; -+ -+ if (len <= sizeof(WMI_OPT_RX_INFO_HDR)) { -+ return A_EINVAL; -+ } -+ -+ bih = (WMI_OPT_RX_INFO_HDR *)datap; -+ buf = datap + sizeof(WMI_OPT_RX_INFO_HDR); -+ len -= sizeof(WMI_OPT_RX_INFO_HDR); -+ -+ A_DPRINTF(DBG_WMI2, (DBGFMT "opt frame event %2.2x:%2.2x\n", DBGARG, -+ bih->bssid[4], bih->bssid[5])); -+ -+ bss = wlan_find_node(&wmip->wmi_scan_table, bih->bssid); -+ if (bss != NULL) { -+ /* -+ * Free up the node. Not the most efficient process given -+ * we are about to allocate a new node but it is simple and should be -+ * adequate. -+ */ -+ wlan_node_reclaim(&wmip->wmi_scan_table, bss); -+ } -+ -+ bss = wlan_node_alloc(&wmip->wmi_scan_table, len); -+ if (bss == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ bss->ni_snr = bih->snr; -+ bss->ni_cie.ie_chan = bih->channel; -+ A_ASSERT(bss->ni_buf != NULL); -+ A_MEMCPY(bss->ni_buf, buf, len); -+ wlan_setup_node(&wmip->wmi_scan_table, bss, bih->bssid); -+ -+ return A_OK; -+} -+ -+ /* This event indicates inactivity timeout of a fatpipe(pstream) -+ * at the target -+ */ -+static A_STATUS -+wmi_pstream_timeout_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_PSTREAM_TIMEOUT_EVENT *ev; -+ -+ if (len < sizeof(WMI_PSTREAM_TIMEOUT_EVENT)) { -+ return A_EINVAL; -+ } -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "wmi_pstream_timeout_event_rx\n", DBGARG)); -+ -+ ev = (WMI_PSTREAM_TIMEOUT_EVENT *)datap; -+ -+ /* When the pstream (fat pipe == AC) timesout, it means there were no -+ * thinStreams within this pstream & it got implicitly created due to -+ * data flow on this AC. We start the inactivity timer only for -+ * implicitly created pstream. Just reset the host state. -+ */ -+ /* Set the activeTsids for this AC to 0 */ -+ LOCK_WMI(wmip); -+ wmip->wmi_streamExistsForAC[ev->trafficClass]=0; -+ wmip->wmi_fatPipeExists &= ~(1 << ev->trafficClass); -+ UNLOCK_WMI(wmip); -+ -+ /*Indicate inactivity to driver layer for this fatpipe (pstream)*/ -+ A_WMI_STREAM_TX_INACTIVE(wmip->wmi_devt, ev->trafficClass); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_bitrate_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_BIT_RATE_CMD *reply; -+ A_INT32 rate; -+ -+ if (len < sizeof(WMI_BIT_RATE_CMD)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_BIT_RATE_CMD *)datap; -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - rateindex %d\n", DBGARG, reply->rateIndex)); -+ -+ if (reply->rateIndex == RATE_AUTO) { -+ rate = RATE_AUTO; -+ } else { -+ rate = wmi_rateTable[(A_UINT32) reply->rateIndex]; -+ } -+ -+ A_WMI_BITRATE_RX(wmip->wmi_devt, rate); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_ratemask_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_FIX_RATES_CMD *reply; -+ -+ if (len < sizeof(WMI_BIT_RATE_CMD)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_FIX_RATES_CMD *)datap; -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - fixed rate mask %x\n", DBGARG, reply->fixRateMask)); -+ -+ A_WMI_RATEMASK_RX(wmip->wmi_devt, reply->fixRateMask); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_channelList_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_CHANNEL_LIST_REPLY *reply; -+ -+ if (len < sizeof(WMI_CHANNEL_LIST_REPLY)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_CHANNEL_LIST_REPLY *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_CHANNELLIST_RX(wmip->wmi_devt, reply->numChannels, -+ reply->channelList); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_txPwr_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_TX_PWR_REPLY *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_TX_PWR_REPLY *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_TXPWR_RX(wmip->wmi_devt, reply->dbM); -+ -+ return A_OK; -+} -+static A_STATUS -+wmi_keepalive_reply_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_GET_KEEPALIVE_CMD *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_GET_KEEPALIVE_CMD *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_KEEPALIVE_RX(wmip->wmi_devt, reply->configured); -+ -+ return A_OK; -+} -+ -+ -+static A_STATUS -+wmi_dset_open_req_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMIX_DSETOPENREQ_EVENT *dsetopenreq; -+ -+ if (len < sizeof(WMIX_DSETOPENREQ_EVENT)) { -+ return A_EINVAL; -+ } -+ dsetopenreq = (WMIX_DSETOPENREQ_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - dset_id=0x%x\n", DBGARG, dsetopenreq->dset_id)); -+ A_WMI_DSET_OPEN_REQ(wmip->wmi_devt, -+ dsetopenreq->dset_id, -+ dsetopenreq->targ_dset_handle, -+ dsetopenreq->targ_reply_fn, -+ dsetopenreq->targ_reply_arg); -+ -+ return A_OK; -+} -+ -+#ifdef CONFIG_HOST_DSET_SUPPORT -+static A_STATUS -+wmi_dset_close_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMIX_DSETCLOSE_EVENT *dsetclose; -+ -+ if (len < sizeof(WMIX_DSETCLOSE_EVENT)) { -+ return A_EINVAL; -+ } -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ dsetclose = (WMIX_DSETCLOSE_EVENT *)datap; -+ A_WMI_DSET_CLOSE(wmip->wmi_devt, dsetclose->access_cookie); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_dset_data_req_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMIX_DSETDATAREQ_EVENT *dsetdatareq; -+ -+ if (len < sizeof(WMIX_DSETDATAREQ_EVENT)) { -+ return A_EINVAL; -+ } -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ dsetdatareq = (WMIX_DSETDATAREQ_EVENT *)datap; -+ A_WMI_DSET_DATA_REQ(wmip->wmi_devt, -+ dsetdatareq->access_cookie, -+ dsetdatareq->offset, -+ dsetdatareq->length, -+ dsetdatareq->targ_buf, -+ dsetdatareq->targ_reply_fn, -+ dsetdatareq->targ_reply_arg); -+ -+ return A_OK; -+} -+#endif /* CONFIG_HOST_DSET_SUPPORT */ -+ -+static A_STATUS -+wmi_scanComplete_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_SCAN_COMPLETE_EVENT *ev; -+ -+ ev = (WMI_SCAN_COMPLETE_EVENT *)datap; -+ A_WMI_SCANCOMPLETE_EVENT(wmip->wmi_devt, ev->status); -+ -+ return A_OK; -+} -+ -+/* -+ * Target is reporting a programming error. This is for -+ * developer aid only. Target only checks a few common violations -+ * and it is responsibility of host to do all error checking. -+ * Behavior of target after wmi error event is undefined. -+ * A reset is recommended. -+ */ -+static A_STATUS -+wmi_errorEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_CMD_ERROR_EVENT *ev; -+ -+ ev = (WMI_CMD_ERROR_EVENT *)datap; -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("Programming Error: cmd=%d ", ev->commandId)); -+ switch (ev->errorCode) { -+ case (INVALID_PARAM): -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("Illegal Parameter\n")); -+ break; -+ case (ILLEGAL_STATE): -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("Illegal State\n")); -+ break; -+ case (INTERNAL_ERROR): -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("Internal Error\n")); -+ break; -+ } -+ -+ return A_OK; -+} -+ -+ -+static A_STATUS -+wmi_statsEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_TARGET_STATS *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_TARGET_STATS *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_TARGETSTATS_EVENT(wmip->wmi_devt, reply); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_rssiThresholdEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_RSSI_THRESHOLD_EVENT *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_RSSI_THRESHOLD_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_RSSI_THRESHOLD_EVENT(wmip->wmi_devt, reply->range, reply->rssi); -+ -+ return A_OK; -+} -+ -+ -+static A_STATUS -+wmi_reportErrorEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_TARGET_ERROR_REPORT_EVENT *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_TARGET_ERROR_REPORT_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_REPORT_ERROR_EVENT(wmip->wmi_devt, reply->errorVal); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_cac_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_CAC_EVENT *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_CAC_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_CAC_EVENT(wmip->wmi_devt, reply->ac, -+ reply->cac_indication, reply->statusCode, -+ reply->tspecSuggestion); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_hbChallengeResp_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMIX_HB_CHALLENGE_RESP_EVENT *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMIX_HB_CHALLENGE_RESP_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "wmi: challenge response event\n", DBGARG)); -+ -+ A_WMI_HBCHALLENGERESP_EVENT(wmip->wmi_devt, reply->cookie, reply->source); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_roam_tbl_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_TARGET_ROAM_TBL *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_TARGET_ROAM_TBL *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_ROAM_TABLE_EVENT(wmip->wmi_devt, reply); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_roam_data_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_TARGET_ROAM_DATA *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_TARGET_ROAM_DATA *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_ROAM_DATA_EVENT(wmip->wmi_devt, reply); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_txRetryErrEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_TX_RETRY_ERR_EVENT *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_TX_RETRY_ERR_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_TX_RETRY_ERR_EVENT(wmip->wmi_devt); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_snrThresholdEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_SNR_THRESHOLD_EVENT *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_SNR_THRESHOLD_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_SNR_THRESHOLD_EVENT_RX(wmip->wmi_devt, reply->range, reply->snr); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_lqThresholdEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_LQ_THRESHOLD_EVENT *reply; -+ -+ if (len < sizeof(*reply)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_LQ_THRESHOLD_EVENT *)datap; -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_LQ_THRESHOLD_EVENT_RX(wmip->wmi_devt, reply->range, reply->lq); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_aplistEvent_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ A_UINT16 ap_info_entry_size; -+ WMI_APLIST_EVENT *ev = (WMI_APLIST_EVENT *)datap; -+ WMI_AP_INFO_V1 *ap_info_v1; -+ A_UINT8 i; -+ -+ if (len < sizeof(WMI_APLIST_EVENT)) { -+ return A_EINVAL; -+ } -+ -+ if (ev->apListVer == APLIST_VER1) { -+ ap_info_entry_size = sizeof(WMI_AP_INFO_V1); -+ ap_info_v1 = (WMI_AP_INFO_V1 *)ev->apList; -+ } else { -+ return A_EINVAL; -+ } -+ -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("Number of APs in APLIST Event is %d\n", ev->numAP)); -+ if (len < (int)(sizeof(WMI_APLIST_EVENT) + -+ (ev->numAP - 1) * ap_info_entry_size)) -+ { -+ return A_EINVAL; -+ } -+ -+ /* -+ * AP List Ver1 Contents -+ */ -+ for (i = 0; i < ev->numAP; i++) { -+ AR_DEBUG_PRINTF(ATH_DEBUG_WMI, ("AP#%d BSSID %2.2x %2.2x %2.2x %2.2x %2.2x %2.2x "\ -+ "Channel %d\n", i, -+ ap_info_v1->bssid[0], ap_info_v1->bssid[1], -+ ap_info_v1->bssid[2], ap_info_v1->bssid[3], -+ ap_info_v1->bssid[4], ap_info_v1->bssid[5], -+ ap_info_v1->channel)); -+ ap_info_v1++; -+ } -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_dbglog_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ A_UINT32 dropped; -+ -+ dropped = *((A_UINT32 *)datap); -+ datap += sizeof(dropped); -+ len -= sizeof(dropped); -+ A_WMI_DBGLOG_EVENT(wmip->wmi_devt, dropped, datap, len); -+ return A_OK; -+} -+ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+static A_STATUS -+wmi_gpio_intr_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMIX_GPIO_INTR_EVENT *gpio_intr = (WMIX_GPIO_INTR_EVENT *)datap; -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - intrmask=0x%x input=0x%x.\n", DBGARG, -+ gpio_intr->intr_mask, gpio_intr->input_values)); -+ -+ A_WMI_GPIO_INTR_RX(gpio_intr->intr_mask, gpio_intr->input_values); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_gpio_data_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMIX_GPIO_DATA_EVENT *gpio_data = (WMIX_GPIO_DATA_EVENT *)datap; -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - reg=%d value=0x%x\n", DBGARG, -+ gpio_data->reg_id, gpio_data->value)); -+ -+ A_WMI_GPIO_DATA_RX(gpio_data->reg_id, gpio_data->value); -+ -+ return A_OK; -+} -+ -+static A_STATUS -+wmi_gpio_ack_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_GPIO_ACK_RX(); -+ -+ return A_OK; -+} -+#endif /* CONFIG_HOST_GPIO_SUPPORT */ -+ -+/* -+ * Called to send a wmi command. Command specific data is already built -+ * on osbuf and current osbuf->data points to it. -+ */ -+A_STATUS -+wmi_cmd_send(struct wmi_t *wmip, void *osbuf, WMI_COMMAND_ID cmdId, -+ WMI_SYNC_FLAG syncflag) -+{ -+#define IS_LONG_CMD(cmdId) ((cmdId == WMI_OPT_TX_FRAME_CMDID) || (cmdId == WMI_ADD_WOW_PATTERN_CMDID)) -+ WMI_CMD_HDR *cHdr; -+ WMI_PRI_STREAM_ID streamID = WMI_CONTROL_PRI; -+ -+ A_ASSERT(osbuf != NULL); -+ -+ if (syncflag >= END_WMIFLAG) { -+ return A_EINVAL; -+ } -+ -+ if ((syncflag == SYNC_BEFORE_WMIFLAG) || (syncflag == SYNC_BOTH_WMIFLAG)) { -+ /* -+ * We want to make sure all data currently queued is transmitted before -+ * the cmd execution. Establish a new sync point. -+ */ -+ wmi_sync_point(wmip); -+ } -+ -+ if (A_NETBUF_PUSH(osbuf, sizeof(WMI_CMD_HDR)) != A_OK) { -+ return A_NO_MEMORY; -+ } -+ -+ cHdr = (WMI_CMD_HDR *)A_NETBUF_DATA(osbuf); -+ cHdr->commandId = cmdId; -+ -+ /* -+ * Send cmd, some via control pipe, others via data pipe -+ */ -+ if (IS_LONG_CMD(cmdId)) { -+ wmi_data_hdr_add(wmip, osbuf, CNTL_MSGTYPE); -+ // TODO ... these can now go through the control endpoint via HTC 2.0 -+ streamID = WMI_BEST_EFFORT_PRI; -+ } -+ A_WMI_CONTROL_TX(wmip->wmi_devt, osbuf, streamID); -+ -+ if ((syncflag == SYNC_AFTER_WMIFLAG) || (syncflag == SYNC_BOTH_WMIFLAG)) { -+ /* -+ * We want to make sure all new data queued waits for the command to -+ * execute. Establish a new sync point. -+ */ -+ wmi_sync_point(wmip); -+ } -+ return (A_OK); -+#undef IS_LONG_CMD -+} -+ -+A_STATUS -+wmi_cmd_send_xtnd(struct wmi_t *wmip, void *osbuf, WMI_COMMAND_ID cmdId, -+ WMI_SYNC_FLAG syncflag) -+{ -+ WMIX_CMD_HDR *cHdr; -+ -+ if (A_NETBUF_PUSH(osbuf, sizeof(WMIX_CMD_HDR)) != A_OK) { -+ return A_NO_MEMORY; -+ } -+ -+ cHdr = (WMIX_CMD_HDR *)A_NETBUF_DATA(osbuf); -+ cHdr->commandId = cmdId; -+ -+ return wmi_cmd_send(wmip, osbuf, WMI_EXTENSION_CMDID, syncflag); -+} -+ -+A_STATUS -+wmi_connect_cmd(struct wmi_t *wmip, NETWORK_TYPE netType, -+ DOT11_AUTH_MODE dot11AuthMode, AUTH_MODE authMode, -+ CRYPTO_TYPE pairwiseCrypto, A_UINT8 pairwiseCryptoLen, -+ CRYPTO_TYPE groupCrypto,A_UINT8 groupCryptoLen, -+ int ssidLength, A_UCHAR *ssid, -+ A_UINT8 *bssid, A_UINT16 channel, A_UINT32 ctrl_flags) -+{ -+ void *osbuf; -+ WMI_CONNECT_CMD *cc; -+ -+ if ((pairwiseCrypto == NONE_CRYPT) && (groupCrypto != NONE_CRYPT)) { -+ return A_EINVAL; -+ } -+ if ((pairwiseCrypto != NONE_CRYPT) && (groupCrypto == NONE_CRYPT)) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(WMI_CONNECT_CMD)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(WMI_CONNECT_CMD)); -+ -+ cc = (WMI_CONNECT_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cc, sizeof(*cc)); -+ -+ A_MEMCPY(cc->ssid, ssid, ssidLength); -+ cc->ssidLength = ssidLength; -+ cc->networkType = netType; -+ cc->dot11AuthMode = dot11AuthMode; -+ cc->authMode = authMode; -+ cc->pairwiseCryptoType = pairwiseCrypto; -+ cc->pairwiseCryptoLen = pairwiseCryptoLen; -+ cc->groupCryptoType = groupCrypto; -+ cc->groupCryptoLen = groupCryptoLen; -+ cc->channel = channel; -+ cc->ctrl_flags = ctrl_flags; -+ -+ if (bssid != NULL) { -+ A_MEMCPY(cc->bssid, bssid, ATH_MAC_LEN); -+ } -+ if (wmi_set_keepalive_cmd(wmip, wmip->wmi_keepaliveInterval) != A_OK) { -+ return(A_ERROR); -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_CONNECT_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_reconnect_cmd(struct wmi_t *wmip, A_UINT8 *bssid, A_UINT16 channel) -+{ -+ void *osbuf; -+ WMI_RECONNECT_CMD *cc; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(WMI_RECONNECT_CMD)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(WMI_RECONNECT_CMD)); -+ -+ cc = (WMI_RECONNECT_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cc, sizeof(*cc)); -+ -+ cc->channel = channel; -+ -+ if (bssid != NULL) { -+ A_MEMCPY(cc->bssid, bssid, ATH_MAC_LEN); -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_RECONNECT_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_disconnect_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ A_STATUS status; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ /* Bug fix for 24817(elevator bug) - the disconnect command does not -+ need to do a SYNC before.*/ -+ status = (wmi_cmd_send(wmip, osbuf, WMI_DISCONNECT_CMDID, -+ NO_SYNC_WMIFLAG)); -+ -+ return status; -+} -+ -+A_STATUS -+wmi_startscan_cmd(struct wmi_t *wmip, WMI_SCAN_TYPE scanType, -+ A_BOOL forceFgScan, A_BOOL isLegacy, -+ A_UINT32 homeDwellTime, A_UINT32 forceScanInterval) -+{ -+ void *osbuf; -+ WMI_START_SCAN_CMD *sc; -+ -+ if ((scanType != WMI_LONG_SCAN) && (scanType != WMI_SHORT_SCAN)) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*sc)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*sc)); -+ -+ sc = (WMI_START_SCAN_CMD *)(A_NETBUF_DATA(osbuf)); -+ sc->scanType = scanType; -+ sc->forceFgScan = forceFgScan; -+ sc->isLegacy = isLegacy; -+ sc->homeDwellTime = homeDwellTime; -+ sc->forceScanInterval = forceScanInterval; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_START_SCAN_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_scanparams_cmd(struct wmi_t *wmip, A_UINT16 fg_start_sec, -+ A_UINT16 fg_end_sec, A_UINT16 bg_sec, -+ A_UINT16 minact_chdw_msec, A_UINT16 maxact_chdw_msec, -+ A_UINT16 pas_chdw_msec, -+ A_UINT8 shScanRatio, A_UINT8 scanCtrlFlags, -+ A_UINT32 max_dfsch_act_time) -+{ -+ void *osbuf; -+ WMI_SCAN_PARAMS_CMD *sc; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*sc)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*sc)); -+ -+ sc = (WMI_SCAN_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(sc, sizeof(*sc)); -+ sc->fg_start_period = fg_start_sec; -+ sc->fg_end_period = fg_end_sec; -+ sc->bg_period = bg_sec; -+ sc->minact_chdwell_time = minact_chdw_msec; -+ sc->maxact_chdwell_time = maxact_chdw_msec; -+ sc->pas_chdwell_time = pas_chdw_msec; -+ sc->shortScanRatio = shScanRatio; -+ sc->scanCtrlFlags = scanCtrlFlags; -+ sc->max_dfsch_act_time = max_dfsch_act_time; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_SCAN_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_bssfilter_cmd(struct wmi_t *wmip, A_UINT8 filter, A_UINT32 ieMask) -+{ -+ void *osbuf; -+ WMI_BSS_FILTER_CMD *cmd; -+ -+ if (filter >= LAST_BSS_FILTER) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_BSS_FILTER_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->bssFilter = filter; -+ cmd->ieMask = ieMask; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_BSS_FILTER_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_probedSsid_cmd(struct wmi_t *wmip, A_UINT8 index, A_UINT8 flag, -+ A_UINT8 ssidLength, A_UCHAR *ssid) -+{ -+ void *osbuf; -+ WMI_PROBED_SSID_CMD *cmd; -+ -+ if (index > MAX_PROBED_SSID_INDEX) { -+ return A_EINVAL; -+ } -+ if (ssidLength > sizeof(cmd->ssid)) { -+ return A_EINVAL; -+ } -+ if ((flag & (DISABLE_SSID_FLAG | ANY_SSID_FLAG)) && (ssidLength > 0)) { -+ return A_EINVAL; -+ } -+ if ((flag & SPECIFIC_SSID_FLAG) && !ssidLength) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_PROBED_SSID_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->entryIndex = index; -+ cmd->flag = flag; -+ cmd->ssidLength = ssidLength; -+ A_MEMCPY(cmd->ssid, ssid, ssidLength); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_PROBED_SSID_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_listeninterval_cmd(struct wmi_t *wmip, A_UINT16 listenInterval, A_UINT16 listenBeacons) -+{ -+ void *osbuf; -+ WMI_LISTEN_INT_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_LISTEN_INT_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->listenInterval = listenInterval; -+ cmd->numBeacons = listenBeacons; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_LISTEN_INT_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_bmisstime_cmd(struct wmi_t *wmip, A_UINT16 bmissTime, A_UINT16 bmissBeacons) -+{ -+ void *osbuf; -+ WMI_BMISS_TIME_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_BMISS_TIME_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->bmissTime = bmissTime; -+ cmd->numBeacons = bmissBeacons; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_BMISS_TIME_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_associnfo_cmd(struct wmi_t *wmip, A_UINT8 ieType, -+ A_UINT8 ieLen, A_UINT8 *ieInfo) -+{ -+ void *osbuf; -+ WMI_SET_ASSOC_INFO_CMD *cmd; -+ A_UINT16 cmdLen; -+ -+ cmdLen = sizeof(*cmd) + ieLen - 1; -+ osbuf = A_NETBUF_ALLOC(cmdLen); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, cmdLen); -+ -+ cmd = (WMI_SET_ASSOC_INFO_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, cmdLen); -+ cmd->ieType = ieType; -+ cmd->bufferSize = ieLen; -+ A_MEMCPY(cmd->assocInfo, ieInfo, ieLen); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_ASSOC_INFO_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_powermode_cmd(struct wmi_t *wmip, A_UINT8 powerMode) -+{ -+ void *osbuf; -+ WMI_POWER_MODE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_POWER_MODE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->powerMode = powerMode; -+ wmip->wmi_powerMode = powerMode; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_POWER_MODE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_ibsspmcaps_cmd(struct wmi_t *wmip, A_UINT8 pmEnable, A_UINT8 ttl, -+ A_UINT16 atim_windows, A_UINT16 timeout_value) -+{ -+ void *osbuf; -+ WMI_IBSS_PM_CAPS_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_IBSS_PM_CAPS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->power_saving = pmEnable; -+ cmd->ttl = ttl; -+ cmd->atim_windows = atim_windows; -+ cmd->timeout_value = timeout_value; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_IBSS_PM_CAPS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_pmparams_cmd(struct wmi_t *wmip, A_UINT16 idlePeriod, -+ A_UINT16 psPollNum, A_UINT16 dtimPolicy) -+{ -+ void *osbuf; -+ WMI_POWER_PARAMS_CMD *pm; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*pm)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*pm)); -+ -+ pm = (WMI_POWER_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(pm, sizeof(*pm)); -+ pm->idle_period = idlePeriod; -+ pm->pspoll_number = psPollNum; -+ pm->dtim_policy = dtimPolicy; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_POWER_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_disctimeout_cmd(struct wmi_t *wmip, A_UINT8 timeout) -+{ -+ void *osbuf; -+ WMI_DISC_TIMEOUT_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_DISC_TIMEOUT_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->disconnectTimeout = timeout; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_DISC_TIMEOUT_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_addKey_cmd(struct wmi_t *wmip, A_UINT8 keyIndex, CRYPTO_TYPE keyType, -+ A_UINT8 keyUsage, A_UINT8 keyLength, A_UINT8 *keyRSC, -+ A_UINT8 *keyMaterial, A_UINT8 key_op_ctrl, -+ WMI_SYNC_FLAG sync_flag) -+{ -+ void *osbuf; -+ WMI_ADD_CIPHER_KEY_CMD *cmd; -+ -+ if ((keyIndex > WMI_MAX_KEY_INDEX) || (keyLength > WMI_MAX_KEY_LEN) || -+ (keyMaterial == NULL)) -+ { -+ return A_EINVAL; -+ } -+ -+ if ((WEP_CRYPT != keyType) && (NULL == keyRSC)) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_ADD_CIPHER_KEY_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->keyIndex = keyIndex; -+ cmd->keyType = keyType; -+ cmd->keyUsage = keyUsage; -+ cmd->keyLength = keyLength; -+ A_MEMCPY(cmd->key, keyMaterial, keyLength); -+ if (NULL != keyRSC) { -+ A_MEMCPY(cmd->keyRSC, keyRSC, sizeof(cmd->keyRSC)); -+ } -+ cmd->key_op_ctrl = key_op_ctrl; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_ADD_CIPHER_KEY_CMDID, sync_flag)); -+} -+ -+A_STATUS -+wmi_add_krk_cmd(struct wmi_t *wmip, A_UINT8 *krk) -+{ -+ void *osbuf; -+ WMI_ADD_KRK_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_ADD_KRK_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ A_MEMCPY(cmd->krk, krk, WMI_KRK_LEN); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_ADD_KRK_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_delete_krk_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); -+ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_DELETE_KRK_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_deleteKey_cmd(struct wmi_t *wmip, A_UINT8 keyIndex) -+{ -+ void *osbuf; -+ WMI_DELETE_CIPHER_KEY_CMD *cmd; -+ -+ if (keyIndex > WMI_MAX_KEY_INDEX) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_DELETE_CIPHER_KEY_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->keyIndex = keyIndex; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_DELETE_CIPHER_KEY_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_setPmkid_cmd(struct wmi_t *wmip, A_UINT8 *bssid, A_UINT8 *pmkId, -+ A_BOOL set) -+{ -+ void *osbuf; -+ WMI_SET_PMKID_CMD *cmd; -+ -+ if (bssid == NULL) { -+ return A_EINVAL; -+ } -+ -+ if ((set == TRUE) && (pmkId == NULL)) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_PMKID_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMCPY(cmd->bssid, bssid, sizeof(cmd->bssid)); -+ if (set == TRUE) { -+ A_MEMCPY(cmd->pmkid, pmkId, sizeof(cmd->pmkid)); -+ cmd->enable = PMKID_ENABLE; -+ } else { -+ A_MEMZERO(cmd->pmkid, sizeof(cmd->pmkid)); -+ cmd->enable = PMKID_DISABLE; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_PMKID_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_tkip_countermeasures_cmd(struct wmi_t *wmip, A_BOOL en) -+{ -+ void *osbuf; -+ WMI_SET_TKIP_COUNTERMEASURES_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_TKIP_COUNTERMEASURES_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->cm_en = (en == TRUE)? WMI_TKIP_CM_ENABLE : WMI_TKIP_CM_DISABLE; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_TKIP_COUNTERMEASURES_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_akmp_params_cmd(struct wmi_t *wmip, -+ WMI_SET_AKMP_PARAMS_CMD *akmpParams) -+{ -+ void *osbuf; -+ WMI_SET_AKMP_PARAMS_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ cmd = (WMI_SET_AKMP_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->akmpInfo = akmpParams->akmpInfo; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_AKMP_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_pmkid_list_cmd(struct wmi_t *wmip, -+ WMI_SET_PMKID_LIST_CMD *pmkInfo) -+{ -+ void *osbuf; -+ WMI_SET_PMKID_LIST_CMD *cmd; -+ A_UINT16 cmdLen; -+ A_UINT8 i; -+ -+ cmdLen = sizeof(pmkInfo->numPMKID) + -+ pmkInfo->numPMKID * sizeof(WMI_PMKID); -+ -+ osbuf = A_NETBUF_ALLOC(cmdLen); -+ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, cmdLen); -+ cmd = (WMI_SET_PMKID_LIST_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->numPMKID = pmkInfo->numPMKID; -+ -+ for (i = 0; i < cmd->numPMKID; i++) { -+ A_MEMCPY(&cmd->pmkidList[i], &pmkInfo->pmkidList[i], -+ WMI_PMKID_LEN); -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_PMKID_LIST_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_pmkid_list_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_PMKID_LIST_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_dataSync_send(struct wmi_t *wmip, void *osbuf, WMI_PRI_STREAM_ID streamID) -+{ -+ WMI_DATA_HDR *dtHdr; -+ -+ A_ASSERT(streamID != WMI_CONTROL_PRI); -+ A_ASSERT(osbuf != NULL); -+ -+ if (A_NETBUF_PUSH(osbuf, sizeof(WMI_DATA_HDR)) != A_OK) { -+ return A_NO_MEMORY; -+ } -+ -+ dtHdr = (WMI_DATA_HDR *)A_NETBUF_DATA(osbuf); -+ dtHdr->info = -+ (SYNC_MSGTYPE & WMI_DATA_HDR_MSG_TYPE_MASK) << WMI_DATA_HDR_MSG_TYPE_SHIFT; -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter - streamID %d\n", DBGARG, streamID)); -+ -+ return (A_WMI_CONTROL_TX(wmip->wmi_devt, osbuf, streamID)); -+} -+ -+typedef struct _WMI_DATA_SYNC_BUFS { -+ A_UINT8 trafficClass; -+ void *osbuf; -+}WMI_DATA_SYNC_BUFS; -+ -+static A_STATUS -+wmi_sync_point(struct wmi_t *wmip) -+{ -+ void *cmd_osbuf; -+ WMI_DATA_SYNC_BUFS dataSyncBufs[WMM_NUM_AC]; -+ A_UINT8 i,numPriStreams=0; -+ A_STATUS status; -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ memset(dataSyncBufs,0,sizeof(dataSyncBufs)); -+ -+ /* lock out while we walk through the priority list and assemble our local array */ -+ LOCK_WMI(wmip); -+ -+ for (i=0; i < WMM_NUM_AC ; i++) { -+ if (wmip->wmi_fatPipeExists & (1 << i)) { -+ numPriStreams++; -+ dataSyncBufs[numPriStreams-1].trafficClass = i; -+ } -+ } -+ -+ UNLOCK_WMI(wmip); -+ -+ /* dataSyncBufs is now filled with entries (starting at index 0) containing valid streamIDs */ -+ -+ do { -+ /* -+ * We allocate all network buffers needed so we will be able to -+ * send all required frames. -+ */ -+ cmd_osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (cmd_osbuf == NULL) { -+ status = A_NO_MEMORY; -+ break; -+ } -+ -+ for (i=0; i < numPriStreams ; i++) { -+ dataSyncBufs[i].osbuf = A_NETBUF_ALLOC(0); -+ if (dataSyncBufs[i].osbuf == NULL) { -+ status = A_NO_MEMORY; -+ break; -+ } -+ } //end for -+ -+ /* -+ * Send sync cmd followed by sync data messages on all endpoints being -+ * used -+ */ -+ status = wmi_cmd_send(wmip, cmd_osbuf, WMI_SYNCHRONIZE_CMDID, -+ NO_SYNC_WMIFLAG); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ /* cmd buffer sent, we no longer own it */ -+ cmd_osbuf = NULL; -+ -+ for(i=0; i < numPriStreams; i++) { -+ A_ASSERT(dataSyncBufs[i].osbuf != NULL); -+ -+ status = wmi_dataSync_send(wmip, dataSyncBufs[i].osbuf, -+ WMI_ACCESSCATEGORY_WMISTREAM(wmip,dataSyncBufs[i].trafficClass)); -+ -+ if (A_FAILED(status)) { -+ break; -+ } -+ /* we don't own this buffer anymore, NULL it out of the array so it -+ * won't get cleaned up */ -+ dataSyncBufs[i].osbuf = NULL; -+ } //end for -+ -+ } while(FALSE); -+ -+ /* free up any resources left over (possibly due to an error) */ -+ -+ if (cmd_osbuf != NULL) { -+ A_NETBUF_FREE(cmd_osbuf); -+ } -+ -+ for (i = 0; i < numPriStreams; i++) { -+ if (dataSyncBufs[i].osbuf != NULL) { -+ A_NETBUF_FREE(dataSyncBufs[i].osbuf); -+ } -+ } -+ -+ return (status); -+} -+ -+A_STATUS -+wmi_create_pstream_cmd(struct wmi_t *wmip, WMI_CREATE_PSTREAM_CMD *params) -+{ -+ void *osbuf; -+ WMI_CREATE_PSTREAM_CMD *cmd; -+ A_UINT16 activeTsids=0; -+ A_UINT8 fatPipeExistsForAC=0; -+ -+ /* Validate all the parameters. */ -+ if( !((params->userPriority < 8) && -+ (params->userPriority <= 0x7) && -+ (convert_userPriority_to_trafficClass(params->userPriority) == params->trafficClass) && -+ (params->trafficDirection == UPLINK_TRAFFIC || -+ params->trafficDirection == DNLINK_TRAFFIC || -+ params->trafficDirection == BIDIR_TRAFFIC) && -+ (params->trafficType == TRAFFIC_TYPE_APERIODIC || -+ params->trafficType == TRAFFIC_TYPE_PERIODIC ) && -+ (params->voicePSCapability == DISABLE_FOR_THIS_AC || -+ params->voicePSCapability == ENABLE_FOR_THIS_AC || -+ params->voicePSCapability == ENABLE_FOR_ALL_AC) && -+ (params->tsid == WMI_IMPLICIT_PSTREAM || params->tsid <= WMI_MAX_THINSTREAM)) ) -+ { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Sending create_pstream_cmd: ac=%d tsid:%d\n", DBGARG, -+ params->trafficClass, params->tsid)); -+ -+ cmd = (WMI_CREATE_PSTREAM_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ A_MEMCPY(cmd, params, sizeof(*cmd)); -+ -+ /* this is an implicitly created Fat pipe */ -+ if (params->tsid == WMI_IMPLICIT_PSTREAM) { -+ LOCK_WMI(wmip); -+ fatPipeExistsForAC = (wmip->wmi_fatPipeExists & (1 << params->trafficClass)); -+ wmip->wmi_fatPipeExists |= (1<<params->trafficClass); -+ UNLOCK_WMI(wmip); -+ } else { -+ /* this is an explicitly created thin stream within a fat pipe */ -+ LOCK_WMI(wmip); -+ fatPipeExistsForAC = (wmip->wmi_fatPipeExists & (1 << params->trafficClass)); -+ activeTsids = wmip->wmi_streamExistsForAC[params->trafficClass]; -+ wmip->wmi_streamExistsForAC[params->trafficClass] |= (1<<params->tsid); -+ /* if a thinstream becomes active, the fat pipe automatically -+ * becomes active -+ */ -+ wmip->wmi_fatPipeExists |= (1<<params->trafficClass); -+ UNLOCK_WMI(wmip); -+ } -+ -+ /* Indicate activty change to driver layer only if this is the -+ * first TSID to get created in this AC explicitly or an implicit -+ * fat pipe is getting created. -+ */ -+ if (!fatPipeExistsForAC) { -+ A_WMI_STREAM_TX_ACTIVE(wmip->wmi_devt, params->trafficClass); -+ } -+ -+ /* mike: should be SYNC_BEFORE_WMIFLAG */ -+ return (wmi_cmd_send(wmip, osbuf, WMI_CREATE_PSTREAM_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_delete_pstream_cmd(struct wmi_t *wmip, A_UINT8 trafficClass, A_UINT8 tsid) -+{ -+ void *osbuf; -+ WMI_DELETE_PSTREAM_CMD *cmd; -+ A_STATUS status; -+ A_UINT16 activeTsids=0; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_DELETE_PSTREAM_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ -+ cmd->trafficClass = trafficClass; -+ cmd->tsid = tsid; -+ -+ LOCK_WMI(wmip); -+ activeTsids = wmip->wmi_streamExistsForAC[trafficClass]; -+ UNLOCK_WMI(wmip); -+ -+ /* Check if the tsid was created & exists */ -+ if (!(activeTsids & (1<<tsid))) { -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "TSID %d does'nt exist for trafficClass: %d\n", DBGARG, tsid, trafficClass)); -+ /* TODO: return a more appropriate err code */ -+ return A_ERROR; -+ } -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Sending delete_pstream_cmd: trafficClass: %d tsid=%d\n", DBGARG, trafficClass, tsid)); -+ -+ status = (wmi_cmd_send(wmip, osbuf, WMI_DELETE_PSTREAM_CMDID, -+ SYNC_BEFORE_WMIFLAG)); -+ -+ LOCK_WMI(wmip); -+ wmip->wmi_streamExistsForAC[trafficClass] &= ~(1<<tsid); -+ activeTsids = wmip->wmi_streamExistsForAC[trafficClass]; -+ UNLOCK_WMI(wmip); -+ -+ -+ /* Indicate stream inactivity to driver layer only if all tsids -+ * within this AC are deleted. -+ */ -+ if(!activeTsids) { -+ A_WMI_STREAM_TX_INACTIVE(wmip->wmi_devt, trafficClass); -+ wmip->wmi_fatPipeExists &= ~(1<<trafficClass); -+ } -+ -+ return status; -+} -+ -+/* -+ * used to set the bit rate. rate is in Kbps. If rate == -1 -+ * then auto selection is used. -+ */ -+A_STATUS -+wmi_set_bitrate_cmd(struct wmi_t *wmip, A_INT32 rate) -+{ -+ void *osbuf; -+ WMI_BIT_RATE_CMD *cmd; -+ A_INT8 index; -+ -+ if (rate != -1) { -+ index = wmi_validate_bitrate(wmip, rate); -+ if(index == A_EINVAL){ -+ return A_EINVAL; -+ } -+ } else { -+ index = -1; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_BIT_RATE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ -+ cmd->rateIndex = index; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_BITRATE_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_bitrate_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_BITRATE_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+/* -+ * Returns TRUE iff the given rate index is legal in the current PHY mode. -+ */ -+A_BOOL -+wmi_is_bitrate_index_valid(struct wmi_t *wmip, A_UINT32 rateIndex) -+{ -+ WMI_PHY_MODE phyMode = wmip->wmi_phyMode; -+ A_BOOL isValid = TRUE; -+ switch(phyMode) { -+ case WMI_11A_MODE: -+ if ((rateIndex < MODE_A_SUPPORT_RATE_START) || (rateIndex > MODE_A_SUPPORT_RATE_STOP)) { -+ isValid = FALSE; -+ } -+ break; -+ -+ case WMI_11B_MODE: -+ if ((rateIndex < MODE_B_SUPPORT_RATE_START) || (rateIndex > MODE_B_SUPPORT_RATE_STOP)) { -+ isValid = FALSE; -+ } -+ break; -+ -+ case WMI_11GONLY_MODE: -+ if ((rateIndex < MODE_GONLY_SUPPORT_RATE_START) || (rateIndex > MODE_GONLY_SUPPORT_RATE_STOP)) { -+ isValid = FALSE; -+ } -+ break; -+ -+ case WMI_11G_MODE: -+ case WMI_11AG_MODE: -+ if ((rateIndex < MODE_G_SUPPORT_RATE_START) || (rateIndex > MODE_G_SUPPORT_RATE_STOP)) { -+ isValid = FALSE; -+ } -+ break; -+ -+ default: -+ A_ASSERT(FALSE); -+ break; -+ } -+ -+ return isValid; -+} -+ -+A_INT8 -+wmi_validate_bitrate(struct wmi_t *wmip, A_INT32 rate) -+{ -+ A_INT8 i; -+ if (rate != -1) -+ { -+ for (i=0;;i++) -+ { -+ if (wmi_rateTable[(A_UINT32) i] == 0) { -+ return A_EINVAL; -+ } -+ if (wmi_rateTable[(A_UINT32) i] == rate) { -+ break; -+ } -+ } -+ } -+ else{ -+ i = -1; -+ } -+ -+ if(wmi_is_bitrate_index_valid(wmip, i) != TRUE) { -+ return A_EINVAL; -+ } -+ -+ return i; -+} -+ -+A_STATUS -+wmi_set_fixrates_cmd(struct wmi_t *wmip, A_INT16 fixRatesMask) -+{ -+ void *osbuf; -+ WMI_FIX_RATES_CMD *cmd; -+ A_UINT32 rateIndex; -+ -+ /* Make sure all rates in the mask are valid in the current PHY mode */ -+ for(rateIndex = 0; rateIndex < MAX_NUMBER_OF_SUPPORT_RATES; rateIndex++) { -+ if((1 << rateIndex) & (A_UINT32)fixRatesMask) { -+ if(wmi_is_bitrate_index_valid(wmip, rateIndex) != TRUE) { -+ A_DPRINTF(DBG_WMI, (DBGFMT "Set Fix Rates command failed: Given rate is illegal in current PHY mode\n", DBGARG)); -+ return A_EINVAL; -+ } -+ } -+ } -+ -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_FIX_RATES_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ -+ cmd->fixRateMask = fixRatesMask; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_FIXRATES_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_ratemask_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_FIXRATES_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_channelList_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_CHANNEL_LIST_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+/* -+ * used to generate a wmi sey channel Parameters cmd. -+ * mode should always be specified and corresponds to the phy mode of the -+ * wlan. -+ * numChan should alway sbe specified. If zero indicates that all available -+ * channels should be used. -+ * channelList is an array of channel frequencies (in Mhz) which the radio -+ * should limit its operation to. It should be NULL if numChan == 0. Size of -+ * array should correspond to numChan entries. -+ */ -+A_STATUS -+wmi_set_channelParams_cmd(struct wmi_t *wmip, A_UINT8 scanParam, -+ WMI_PHY_MODE mode, A_INT8 numChan, -+ A_UINT16 *channelList) -+{ -+ void *osbuf; -+ WMI_CHANNEL_PARAMS_CMD *cmd; -+ A_INT8 size; -+ -+ size = sizeof (*cmd); -+ -+ if (numChan) { -+ if (numChan > WMI_MAX_CHANNELS) { -+ return A_EINVAL; -+ } -+ size += sizeof(A_UINT16) * (numChan - 1); -+ } -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_CHANNEL_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ -+ wmip->wmi_phyMode = mode; -+ cmd->scanParam = scanParam; -+ cmd->phyMode = mode; -+ cmd->numChannels = numChan; -+ A_MEMCPY(cmd->channelList, channelList, numChan * sizeof(A_UINT16)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_CHANNEL_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_rssi_threshold_params(struct wmi_t *wmip, -+ WMI_RSSI_THRESHOLD_PARAMS_CMD *rssiCmd) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_RSSI_THRESHOLD_PARAMS_CMD *cmd; -+ /* These values are in ascending order */ -+ if( rssiCmd->thresholdAbove6_Val <= rssiCmd->thresholdAbove5_Val || -+ rssiCmd->thresholdAbove5_Val <= rssiCmd->thresholdAbove4_Val || -+ rssiCmd->thresholdAbove4_Val <= rssiCmd->thresholdAbove3_Val || -+ rssiCmd->thresholdAbove3_Val <= rssiCmd->thresholdAbove2_Val || -+ rssiCmd->thresholdAbove2_Val <= rssiCmd->thresholdAbove1_Val || -+ rssiCmd->thresholdBelow6_Val <= rssiCmd->thresholdBelow5_Val || -+ rssiCmd->thresholdBelow5_Val <= rssiCmd->thresholdBelow4_Val || -+ rssiCmd->thresholdBelow4_Val <= rssiCmd->thresholdBelow3_Val || -+ rssiCmd->thresholdBelow3_Val <= rssiCmd->thresholdBelow2_Val || -+ rssiCmd->thresholdBelow2_Val <= rssiCmd->thresholdBelow1_Val) { -+ -+ return A_EINVAL; -+ } -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_RSSI_THRESHOLD_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ A_MEMCPY(cmd, rssiCmd, sizeof(WMI_RSSI_THRESHOLD_PARAMS_CMD)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_RSSI_THRESHOLD_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_host_sleep_mode_cmd(struct wmi_t *wmip, -+ WMI_SET_HOST_SLEEP_MODE_CMD *hostModeCmd) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_SET_HOST_SLEEP_MODE_CMD *cmd; -+ -+ if( hostModeCmd->awake == hostModeCmd->asleep) { -+ return A_EINVAL; -+ } -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_SET_HOST_SLEEP_MODE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ A_MEMCPY(cmd, hostModeCmd, sizeof(WMI_SET_HOST_SLEEP_MODE_CMD)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_HOST_SLEEP_MODE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_wow_mode_cmd(struct wmi_t *wmip, -+ WMI_SET_WOW_MODE_CMD *wowModeCmd) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_SET_WOW_MODE_CMD *cmd; -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_SET_WOW_MODE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ A_MEMCPY(cmd, wowModeCmd, sizeof(WMI_SET_WOW_MODE_CMD)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_WOW_MODE_CMDID, -+ NO_SYNC_WMIFLAG)); -+ -+} -+ -+A_STATUS -+wmi_get_wow_list_cmd(struct wmi_t *wmip, -+ WMI_GET_WOW_LIST_CMD *wowListCmd) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_GET_WOW_LIST_CMD *cmd; -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_GET_WOW_LIST_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ A_MEMCPY(cmd, wowListCmd, sizeof(WMI_GET_WOW_LIST_CMD)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_WOW_LIST_CMDID, -+ NO_SYNC_WMIFLAG)); -+ -+} -+ -+static A_STATUS -+wmi_get_wow_list_event_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ WMI_GET_WOW_LIST_REPLY *reply; -+ -+ if (len < sizeof(WMI_GET_WOW_LIST_REPLY)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_GET_WOW_LIST_REPLY *)datap; -+ -+ A_WMI_WOW_LIST_EVENT(wmip->wmi_devt, reply->num_filters, -+ reply); -+ -+ return A_OK; -+} -+ -+A_STATUS wmi_add_wow_pattern_cmd(struct wmi_t *wmip, -+ WMI_ADD_WOW_PATTERN_CMD *addWowCmd, -+ A_UINT8* pattern, A_UINT8* mask, -+ A_UINT8 pattern_size) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_ADD_WOW_PATTERN_CMD *cmd; -+ A_UINT8 *filter_mask = NULL; -+ -+ size = sizeof (*cmd); -+ -+ size += ((2 * addWowCmd->filter_size)* sizeof(A_UINT8)); -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_ADD_WOW_PATTERN_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->filter_list_id = addWowCmd->filter_list_id; -+ cmd->filter_offset = addWowCmd->filter_offset; -+ cmd->filter_size = addWowCmd->filter_size; -+ -+ A_MEMCPY(cmd->filter, pattern, addWowCmd->filter_size); -+ -+ filter_mask = (A_UINT8*)(cmd->filter + cmd->filter_size); -+ A_MEMCPY(filter_mask, mask, addWowCmd->filter_size); -+ -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_ADD_WOW_PATTERN_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_del_wow_pattern_cmd(struct wmi_t *wmip, -+ WMI_DEL_WOW_PATTERN_CMD *delWowCmd) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_DEL_WOW_PATTERN_CMD *cmd; -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_DEL_WOW_PATTERN_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ A_MEMCPY(cmd, delWowCmd, sizeof(WMI_DEL_WOW_PATTERN_CMD)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_DEL_WOW_PATTERN_CMDID, -+ NO_SYNC_WMIFLAG)); -+ -+} -+ -+A_STATUS -+wmi_set_snr_threshold_params(struct wmi_t *wmip, -+ WMI_SNR_THRESHOLD_PARAMS_CMD *snrCmd) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_SNR_THRESHOLD_PARAMS_CMD *cmd; -+ /* These values are in ascending order */ -+ if( snrCmd->thresholdAbove4_Val <= snrCmd->thresholdAbove3_Val || -+ snrCmd->thresholdAbove3_Val <= snrCmd->thresholdAbove2_Val || -+ snrCmd->thresholdAbove2_Val <= snrCmd->thresholdAbove1_Val || -+ snrCmd->thresholdBelow4_Val <= snrCmd->thresholdBelow3_Val || -+ snrCmd->thresholdBelow3_Val <= snrCmd->thresholdBelow2_Val || -+ snrCmd->thresholdBelow2_Val <= snrCmd->thresholdBelow1_Val) { -+ -+ return A_EINVAL; -+ } -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_SNR_THRESHOLD_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ A_MEMCPY(cmd, snrCmd, sizeof(WMI_SNR_THRESHOLD_PARAMS_CMD)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SNR_THRESHOLD_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_clr_rssi_snr(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(int)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_CLR_RSSI_SNR_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_lq_threshold_params(struct wmi_t *wmip, -+ WMI_LQ_THRESHOLD_PARAMS_CMD *lqCmd) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_LQ_THRESHOLD_PARAMS_CMD *cmd; -+ /* These values are in ascending order */ -+ if( lqCmd->thresholdAbove4_Val <= lqCmd->thresholdAbove3_Val || -+ lqCmd->thresholdAbove3_Val <= lqCmd->thresholdAbove2_Val || -+ lqCmd->thresholdAbove2_Val <= lqCmd->thresholdAbove1_Val || -+ lqCmd->thresholdBelow4_Val <= lqCmd->thresholdBelow3_Val || -+ lqCmd->thresholdBelow3_Val <= lqCmd->thresholdBelow2_Val || -+ lqCmd->thresholdBelow2_Val <= lqCmd->thresholdBelow1_Val ) { -+ -+ return A_EINVAL; -+ } -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_LQ_THRESHOLD_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ A_MEMCPY(cmd, lqCmd, sizeof(WMI_LQ_THRESHOLD_PARAMS_CMD)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_LQ_THRESHOLD_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_error_report_bitmask(struct wmi_t *wmip, A_UINT32 mask) -+{ -+ void *osbuf; -+ A_INT8 size; -+ WMI_TARGET_ERROR_REPORT_BITMASK *cmd; -+ -+ size = sizeof (*cmd); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_TARGET_ERROR_REPORT_BITMASK *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ -+ cmd->bitmask = mask; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_TARGET_ERROR_REPORT_BITMASK_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_challenge_resp_cmd(struct wmi_t *wmip, A_UINT32 cookie, A_UINT32 source) -+{ -+ void *osbuf; -+ WMIX_HB_CHALLENGE_RESP_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMIX_HB_CHALLENGE_RESP_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->cookie = cookie; -+ cmd->source = source; -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_HB_CHALLENGE_RESP_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_config_debug_module_cmd(struct wmi_t *wmip, A_UINT16 mmask, -+ A_UINT16 tsr, A_BOOL rep, A_UINT16 size, -+ A_UINT32 valid) -+{ -+ void *osbuf; -+ WMIX_DBGLOG_CFG_MODULE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMIX_DBGLOG_CFG_MODULE_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->config.cfgmmask = mmask; -+ cmd->config.cfgtsr = tsr; -+ cmd->config.cfgrep = rep; -+ cmd->config.cfgsize = size; -+ cmd->config.cfgvalid = valid; -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_DBGLOG_CFG_MODULE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_stats_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_STATISTICS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_addBadAp_cmd(struct wmi_t *wmip, A_UINT8 apIndex, A_UINT8 *bssid) -+{ -+ void *osbuf; -+ WMI_ADD_BAD_AP_CMD *cmd; -+ -+ if ((bssid == NULL) || (apIndex > WMI_MAX_BAD_AP_INDEX)) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_ADD_BAD_AP_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->badApIndex = apIndex; -+ A_MEMCPY(cmd->bssid, bssid, sizeof(cmd->bssid)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_ADD_BAD_AP_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_deleteBadAp_cmd(struct wmi_t *wmip, A_UINT8 apIndex) -+{ -+ void *osbuf; -+ WMI_DELETE_BAD_AP_CMD *cmd; -+ -+ if (apIndex > WMI_MAX_BAD_AP_INDEX) { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_DELETE_BAD_AP_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->badApIndex = apIndex; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_DELETE_BAD_AP_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_txPwr_cmd(struct wmi_t *wmip, A_UINT8 dbM) -+{ -+ void *osbuf; -+ WMI_SET_TX_PWR_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_TX_PWR_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->dbM = dbM; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_TX_PWR_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_txPwr_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_TX_PWR_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_switch_radio(struct wmi_t *wmip, A_UINT8 on) -+{ -+ WMI_SCAN_PARAMS_CMD scParams = {0, 0, 0, 0, 0, -+ WMI_SHORTSCANRATIO_DEFAULT, -+ DEFAULT_SCAN_CTRL_FLAGS, -+ 0}; -+ -+ if (on) { -+ /* Enable foreground scanning */ -+ if (wmi_scanparams_cmd(wmip, scParams.fg_start_period, -+ scParams.fg_end_period, -+ scParams.bg_period, -+ scParams.minact_chdwell_time, -+ scParams.maxact_chdwell_time, -+ scParams.pas_chdwell_time, -+ scParams.shortScanRatio, -+ scParams.scanCtrlFlags, -+ scParams.max_dfsch_act_time) != A_OK) { -+ return -EIO; -+ } -+ } else { -+ wmi_disconnect_cmd(wmip); -+ if (wmi_scanparams_cmd(wmip, 0xFFFF, 0, 0, 0, -+ 0, 0, 0, 0xFF, 0) != A_OK) { -+ return -EIO; -+ } -+ } -+ -+ return A_OK; -+} -+ -+ -+A_UINT16 -+wmi_get_mapped_qos_queue(struct wmi_t *wmip, A_UINT8 trafficClass) -+{ -+ A_UINT16 activeTsids=0; -+ -+ LOCK_WMI(wmip); -+ activeTsids = wmip->wmi_streamExistsForAC[trafficClass]; -+ UNLOCK_WMI(wmip); -+ -+ return activeTsids; -+} -+ -+A_STATUS -+wmi_get_roam_tbl_cmd(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ osbuf = A_NETBUF_ALLOC(0); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_ROAM_TBL_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_roam_data_cmd(struct wmi_t *wmip, A_UINT8 roamDataType) -+{ -+ void *osbuf; -+ A_UINT32 size = sizeof(A_UINT8); -+ WMI_TARGET_ROAM_DATA *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(size); /* no payload */ -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_TARGET_ROAM_DATA *)(A_NETBUF_DATA(osbuf)); -+ cmd->roamDataType = roamDataType; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_ROAM_DATA_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_roam_ctrl_cmd(struct wmi_t *wmip, WMI_SET_ROAM_CTRL_CMD *p, -+ A_UINT8 size) -+{ -+ void *osbuf; -+ WMI_SET_ROAM_CTRL_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_SET_ROAM_CTRL_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ -+ A_MEMCPY(cmd, p, size); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_ROAM_CTRL_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_powersave_timers_cmd(struct wmi_t *wmip, -+ WMI_POWERSAVE_TIMERS_POLICY_CMD *pCmd, -+ A_UINT8 size) -+{ -+ void *osbuf; -+ WMI_POWERSAVE_TIMERS_POLICY_CMD *cmd; -+ -+ /* These timers can't be zero */ -+ if(!pCmd->psPollTimeout || !pCmd->triggerTimeout || -+ !(pCmd->apsdTimPolicy == IGNORE_TIM_ALL_QUEUES_APSD || -+ pCmd->apsdTimPolicy == PROCESS_TIM_ALL_QUEUES_APSD) || -+ !(pCmd->simulatedAPSDTimPolicy == IGNORE_TIM_SIMULATED_APSD || -+ pCmd->simulatedAPSDTimPolicy == PROCESS_TIM_SIMULATED_APSD)) -+ return A_EINVAL; -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, size); -+ -+ cmd = (WMI_POWERSAVE_TIMERS_POLICY_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, size); -+ -+ A_MEMCPY(cmd, pCmd, size); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_POWERSAVE_TIMERS_POLICY_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+#ifdef CONFIG_HOST_GPIO_SUPPORT -+/* Send a command to Target to change GPIO output pins. */ -+A_STATUS -+wmi_gpio_output_set(struct wmi_t *wmip, -+ A_UINT32 set_mask, -+ A_UINT32 clear_mask, -+ A_UINT32 enable_mask, -+ A_UINT32 disable_mask) -+{ -+ void *osbuf; -+ WMIX_GPIO_OUTPUT_SET_CMD *output_set; -+ int size; -+ -+ size = sizeof(*output_set); -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - set=0x%x clear=0x%x enb=0x%x dis=0x%x\n", DBGARG, -+ set_mask, clear_mask, enable_mask, disable_mask)); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ A_NETBUF_PUT(osbuf, size); -+ output_set = (WMIX_GPIO_OUTPUT_SET_CMD *)(A_NETBUF_DATA(osbuf)); -+ -+ output_set->set_mask = set_mask; -+ output_set->clear_mask = clear_mask; -+ output_set->enable_mask = enable_mask; -+ output_set->disable_mask = disable_mask; -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_GPIO_OUTPUT_SET_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+/* Send a command to the Target requesting state of the GPIO input pins */ -+A_STATUS -+wmi_gpio_input_get(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ osbuf = A_NETBUF_ALLOC(0); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_GPIO_INPUT_GET_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+/* Send a command to the Target that changes the value of a GPIO register. */ -+A_STATUS -+wmi_gpio_register_set(struct wmi_t *wmip, -+ A_UINT32 gpioreg_id, -+ A_UINT32 value) -+{ -+ void *osbuf; -+ WMIX_GPIO_REGISTER_SET_CMD *register_set; -+ int size; -+ -+ size = sizeof(*register_set); -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - reg=%d value=0x%x\n", DBGARG, gpioreg_id, value)); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ A_NETBUF_PUT(osbuf, size); -+ register_set = (WMIX_GPIO_REGISTER_SET_CMD *)(A_NETBUF_DATA(osbuf)); -+ -+ register_set->gpioreg_id = gpioreg_id; -+ register_set->value = value; -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_GPIO_REGISTER_SET_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+/* Send a command to the Target to fetch the value of a GPIO register. */ -+A_STATUS -+wmi_gpio_register_get(struct wmi_t *wmip, -+ A_UINT32 gpioreg_id) -+{ -+ void *osbuf; -+ WMIX_GPIO_REGISTER_GET_CMD *register_get; -+ int size; -+ -+ size = sizeof(*register_get); -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter - reg=%d\n", DBGARG, gpioreg_id)); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ A_NETBUF_PUT(osbuf, size); -+ register_get = (WMIX_GPIO_REGISTER_GET_CMD *)(A_NETBUF_DATA(osbuf)); -+ -+ register_get->gpioreg_id = gpioreg_id; -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_GPIO_REGISTER_GET_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+/* Send a command to the Target acknowledging some GPIO interrupts. */ -+A_STATUS -+wmi_gpio_intr_ack(struct wmi_t *wmip, -+ A_UINT32 ack_mask) -+{ -+ void *osbuf; -+ WMIX_GPIO_INTR_ACK_CMD *intr_ack; -+ int size; -+ -+ size = sizeof(*intr_ack); -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter ack_mask=0x%x\n", DBGARG, ack_mask)); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ A_NETBUF_PUT(osbuf, size); -+ intr_ack = (WMIX_GPIO_INTR_ACK_CMD *)(A_NETBUF_DATA(osbuf)); -+ -+ intr_ack->ack_mask = ack_mask; -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_GPIO_INTR_ACK_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+#endif /* CONFIG_HOST_GPIO_SUPPORT */ -+ -+A_STATUS -+wmi_set_access_params_cmd(struct wmi_t *wmip, A_UINT16 txop, A_UINT8 eCWmin, -+ A_UINT8 eCWmax, A_UINT8 aifsn) -+{ -+ void *osbuf; -+ WMI_SET_ACCESS_PARAMS_CMD *cmd; -+ -+ if ((eCWmin > WMI_MAX_CW_ACPARAM) || (eCWmax > WMI_MAX_CW_ACPARAM) || -+ (aifsn > WMI_MAX_AIFSN_ACPARAM)) -+ { -+ return A_EINVAL; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_ACCESS_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->txop = txop; -+ cmd->eCWmin = eCWmin; -+ cmd->eCWmax = eCWmax; -+ cmd->aifsn = aifsn; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_ACCESS_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_retry_limits_cmd(struct wmi_t *wmip, A_UINT8 frameType, -+ A_UINT8 trafficClass, A_UINT8 maxRetries, -+ A_UINT8 enableNotify) -+{ -+ void *osbuf; -+ WMI_SET_RETRY_LIMITS_CMD *cmd; -+ -+ if ((frameType != MGMT_FRAMETYPE) && (frameType != CONTROL_FRAMETYPE) && -+ (frameType != DATA_FRAMETYPE)) -+ { -+ return A_EINVAL; -+ } -+ -+ if (maxRetries > WMI_MAX_RETRIES) { -+ return A_EINVAL; -+ } -+ -+ if (frameType != DATA_FRAMETYPE) { -+ trafficClass = 0; -+ } -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_RETRY_LIMITS_CMD *)(A_NETBUF_DATA(osbuf)); -+ cmd->frameType = frameType; -+ cmd->trafficClass = trafficClass; -+ cmd->maxRetries = maxRetries; -+ cmd->enableNotify = enableNotify; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_RETRY_LIMITS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+void -+wmi_get_current_bssid(struct wmi_t *wmip, A_UINT8 *bssid) -+{ -+ if (bssid != NULL) { -+ A_MEMCPY(bssid, wmip->wmi_bssid, ATH_MAC_LEN); -+ } -+} -+ -+A_STATUS -+wmi_set_opt_mode_cmd(struct wmi_t *wmip, A_UINT8 optMode) -+{ -+ void *osbuf; -+ WMI_SET_OPT_MODE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_OPT_MODE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->optMode = optMode; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_OPT_MODE_CMDID, -+ SYNC_BOTH_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_opt_tx_frame_cmd(struct wmi_t *wmip, -+ A_UINT8 frmType, -+ A_UINT8 *dstMacAddr, -+ A_UINT8 *bssid, -+ A_UINT16 optIEDataLen, -+ A_UINT8 *optIEData) -+{ -+ void *osbuf; -+ WMI_OPT_TX_FRAME_CMD *cmd; -+ osbuf = A_NETBUF_ALLOC(optIEDataLen + sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, (optIEDataLen + sizeof(*cmd))); -+ -+ cmd = (WMI_OPT_TX_FRAME_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, (optIEDataLen + sizeof(*cmd)-1)); -+ -+ cmd->frmType = frmType; -+ cmd->optIEDataLen = optIEDataLen; -+ //cmd->optIEData = (A_UINT8 *)((int)cmd + sizeof(*cmd)); -+ A_MEMCPY(cmd->bssid, bssid, sizeof(cmd->bssid)); -+ A_MEMCPY(cmd->dstAddr, dstMacAddr, sizeof(cmd->dstAddr)); -+ A_MEMCPY(&cmd->optIEData[0], optIEData, optIEDataLen); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_OPT_TX_FRAME_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_adhoc_bconIntvl_cmd(struct wmi_t *wmip, A_UINT16 intvl) -+{ -+ void *osbuf; -+ WMI_BEACON_INT_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_BEACON_INT_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->beaconInterval = intvl; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_BEACON_INT_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+ -+A_STATUS -+wmi_set_voice_pkt_size_cmd(struct wmi_t *wmip, A_UINT16 voicePktSize) -+{ -+ void *osbuf; -+ WMI_SET_VOICE_PKT_SIZE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_VOICE_PKT_SIZE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->voicePktSize = voicePktSize; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_VOICE_PKT_SIZE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+ -+A_STATUS -+wmi_set_max_sp_len_cmd(struct wmi_t *wmip, A_UINT8 maxSPLen) -+{ -+ void *osbuf; -+ WMI_SET_MAX_SP_LEN_CMD *cmd; -+ -+ /* maxSPLen is a two-bit value. If user trys to set anything -+ * other than this, then its invalid -+ */ -+ if(maxSPLen & ~0x03) -+ return A_EINVAL; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_MAX_SP_LEN_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->maxSPLen = maxSPLen; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_MAX_SP_LEN_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_UINT8 -+convert_userPriority_to_trafficClass(A_UINT8 userPriority) -+{ -+ return (up_to_ac[userPriority & 0x7]); -+} -+ -+A_UINT8 -+wmi_get_power_mode_cmd(struct wmi_t *wmip) -+{ -+ return wmip->wmi_powerMode; -+} -+ -+A_STATUS -+wmi_verify_tspec_params(WMI_CREATE_PSTREAM_CMD *pCmd, A_BOOL tspecCompliance) -+{ -+ return A_OK; -+} -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+static A_STATUS -+wmi_tcmd_test_report_rx(struct wmi_t *wmip, A_UINT8 *datap, int len) -+{ -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ A_WMI_TCMD_RX_REPORT_EVENT(wmip->wmi_devt, datap, len); -+ -+ return A_OK; -+} -+ -+#endif /* CONFIG_HOST_TCMD_SUPPORT*/ -+ -+A_STATUS -+wmi_set_authmode_cmd(struct wmi_t *wmip, A_UINT8 mode) -+{ -+ void *osbuf; -+ WMI_SET_AUTH_MODE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_AUTH_MODE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->mode = mode; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_AUTH_MODE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_reassocmode_cmd(struct wmi_t *wmip, A_UINT8 mode) -+{ -+ void *osbuf; -+ WMI_SET_REASSOC_MODE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_REASSOC_MODE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->mode = mode; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_REASSOC_MODE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_lpreamble_cmd(struct wmi_t *wmip, A_UINT8 status) -+{ -+ void *osbuf; -+ WMI_SET_LPREAMBLE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_LPREAMBLE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->status = status; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_LPREAMBLE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_rts_cmd(struct wmi_t *wmip, A_UINT16 threshold) -+{ -+ void *osbuf; -+ WMI_SET_RTS_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_RTS_CMD*)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->threshold = threshold; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_RTS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_wmm_cmd(struct wmi_t *wmip, WMI_WMM_STATUS status) -+{ -+ void *osbuf; -+ WMI_SET_WMM_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_WMM_CMD*)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->status = status; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_WMM_CMDID, -+ NO_SYNC_WMIFLAG)); -+ -+} -+ -+A_STATUS -+wmi_set_wmm_txop(struct wmi_t *wmip, WMI_TXOP_CFG cfg) -+{ -+ void *osbuf; -+ WMI_SET_WMM_TXOP_CMD *cmd; -+ -+ if( !((cfg == WMI_TXOP_DISABLED) || (cfg == WMI_TXOP_ENABLED)) ) -+ return A_EINVAL; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_WMM_TXOP_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->txopEnable = cfg; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_WMM_TXOP_CMDID, -+ NO_SYNC_WMIFLAG)); -+ -+} -+ -+#ifdef CONFIG_HOST_TCMD_SUPPORT -+/* WMI layer doesn't need to know the data type of the test cmd. -+ This would be beneficial for customers like Qualcomm, who might -+ have different test command requirements from differnt manufacturers -+ */ -+A_STATUS -+wmi_test_cmd(struct wmi_t *wmip, A_UINT8 *buf, A_UINT32 len) -+{ -+ void *osbuf; -+ char *data; -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter\n", DBGARG)); -+ -+ osbuf= A_NETBUF_ALLOC(len); -+ if(osbuf == NULL) -+ { -+ return A_NO_MEMORY; -+ } -+ A_NETBUF_PUT(osbuf, len); -+ data = A_NETBUF_DATA(osbuf); -+ A_MEMCPY(data, buf, len); -+ -+ return(wmi_cmd_send(wmip, osbuf, WMI_TEST_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+#endif -+ -+A_STATUS -+wmi_set_bt_status_cmd(struct wmi_t *wmip, A_UINT8 streamType, A_UINT8 status) -+{ -+ void *osbuf; -+ WMI_SET_BT_STATUS_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_BT_STATUS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->streamType = streamType; -+ cmd->status = status; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_BT_STATUS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_bt_params_cmd(struct wmi_t *wmip, WMI_SET_BT_PARAMS_CMD* cmd) -+{ -+ void *osbuf; -+ WMI_SET_BT_PARAMS_CMD* alloc_cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ alloc_cmd = (WMI_SET_BT_PARAMS_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(alloc_cmd, sizeof(*cmd)); -+ A_MEMCPY(alloc_cmd, cmd, sizeof(*cmd)); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_BT_PARAMS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_get_keepalive_configured(struct wmi_t *wmip) -+{ -+ void *osbuf; -+ WMI_GET_KEEPALIVE_CMD *cmd; -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ cmd = (WMI_GET_KEEPALIVE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ return (wmi_cmd_send(wmip, osbuf, WMI_GET_KEEPALIVE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_UINT8 -+wmi_get_keepalive_cmd(struct wmi_t *wmip) -+{ -+ return wmip->wmi_keepaliveInterval; -+} -+ -+A_STATUS -+wmi_set_keepalive_cmd(struct wmi_t *wmip, A_UINT8 keepaliveInterval) -+{ -+ void *osbuf; -+ WMI_SET_KEEPALIVE_CMD *cmd; -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*cmd)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*cmd)); -+ -+ cmd = (WMI_SET_KEEPALIVE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd->keepaliveInterval = keepaliveInterval; -+ wmip->wmi_keepaliveInterval = keepaliveInterval; -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_KEEPALIVE_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_appie_cmd(struct wmi_t *wmip, A_UINT8 mgmtFrmType, A_UINT8 ieLen, -+ A_UINT8 *ieInfo) -+{ -+ void *osbuf; -+ WMI_SET_APPIE_CMD *cmd; -+ A_UINT16 cmdLen; -+ -+ if (ieLen > WMI_MAX_IE_LEN) { -+ return A_ERROR; -+ } -+ cmdLen = sizeof(*cmd) + ieLen - 1; -+ osbuf = A_NETBUF_ALLOC(cmdLen); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, cmdLen); -+ -+ cmd = (WMI_SET_APPIE_CMD *)(A_NETBUF_DATA(osbuf)); -+ A_MEMZERO(cmd, cmdLen); -+ -+ cmd->mgmtFrmType = mgmtFrmType; -+ cmd->ieLen = ieLen; -+ A_MEMCPY(cmd->ieInfo, ieInfo, ieLen); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_APPIE_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_STATUS -+wmi_set_halparam_cmd(struct wmi_t *wmip, A_UINT8 *cmd, A_UINT16 dataLen) -+{ -+ void *osbuf; -+ A_UINT8 *data; -+ -+ osbuf = A_NETBUF_ALLOC(dataLen); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, dataLen); -+ -+ data = A_NETBUF_DATA(osbuf); -+ -+ A_MEMCPY(data, cmd, dataLen); -+ -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_WHALPARAM_CMDID, NO_SYNC_WMIFLAG)); -+} -+ -+A_INT32 -+wmi_get_rate(A_INT8 rateindex) -+{ -+ if (rateindex == RATE_AUTO) { -+ return 0; -+ } else { -+ return(wmi_rateTable[(A_UINT32) rateindex]); -+ } -+} -+ -+void -+wmi_node_return (struct wmi_t *wmip, bss_t *bss) -+{ -+ if (NULL != bss) -+ { -+ wlan_node_return (&wmip->wmi_scan_table, bss); -+ } -+} -+ -+bss_t * -+wmi_find_Ssidnode (struct wmi_t *wmip, A_UCHAR *pSsid, -+ A_UINT32 ssidLength, A_BOOL bIsWPA2) -+{ -+ bss_t *node = NULL; -+ node = wlan_find_Ssidnode (&wmip->wmi_scan_table, pSsid, -+ ssidLength, bIsWPA2); -+ return node; -+} -+ -+void -+wmi_free_allnodes(struct wmi_t *wmip) -+{ -+ wlan_free_allnodes(&wmip->wmi_scan_table); -+} -+ -+bss_t * -+wmi_find_node(struct wmi_t *wmip, const A_UINT8 *macaddr) -+{ -+ bss_t *ni=NULL; -+ ni=wlan_find_node(&wmip->wmi_scan_table,macaddr); -+ return ni; -+} -+ -+A_STATUS -+wmi_dset_open_reply(struct wmi_t *wmip, -+ A_UINT32 status, -+ A_UINT32 access_cookie, -+ A_UINT32 dset_size, -+ A_UINT32 dset_version, -+ A_UINT32 targ_handle, -+ A_UINT32 targ_reply_fn, -+ A_UINT32 targ_reply_arg) -+{ -+ void *osbuf; -+ WMIX_DSETOPEN_REPLY_CMD *open_reply; -+ -+ A_DPRINTF(DBG_WMI, (DBGFMT "Enter - wmip=0x%x\n", DBGARG, (int)wmip)); -+ -+ osbuf = A_NETBUF_ALLOC(sizeof(*open_reply)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ A_NETBUF_PUT(osbuf, sizeof(*open_reply)); -+ open_reply = (WMIX_DSETOPEN_REPLY_CMD *)(A_NETBUF_DATA(osbuf)); -+ -+ open_reply->status = status; -+ open_reply->targ_dset_handle = targ_handle; -+ open_reply->targ_reply_fn = targ_reply_fn; -+ open_reply->targ_reply_arg = targ_reply_arg; -+ open_reply->access_cookie = access_cookie; -+ open_reply->size = dset_size; -+ open_reply->version = dset_version; -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_DSETOPEN_REPLY_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ -+static A_STATUS -+wmi_get_pmkid_list_event_rx(struct wmi_t *wmip, A_UINT8 *datap, A_UINT32 len) -+{ -+ WMI_PMKID_LIST_REPLY *reply; -+ A_UINT32 expected_len; -+ -+ if (len < sizeof(WMI_PMKID_LIST_REPLY)) { -+ return A_EINVAL; -+ } -+ reply = (WMI_PMKID_LIST_REPLY *)datap; -+ expected_len = sizeof(reply->numPMKID) + reply->numPMKID * WMI_PMKID_LEN; -+ -+ if (len < expected_len) { -+ return A_EINVAL; -+ } -+ -+ A_WMI_PMKID_LIST_EVENT(wmip->wmi_devt, reply->numPMKID, -+ reply->pmkidList); -+ -+ return A_OK; -+} -+ -+#ifdef CONFIG_HOST_DSET_SUPPORT -+A_STATUS -+wmi_dset_data_reply(struct wmi_t *wmip, -+ A_UINT32 status, -+ A_UINT8 *user_buf, -+ A_UINT32 length, -+ A_UINT32 targ_buf, -+ A_UINT32 targ_reply_fn, -+ A_UINT32 targ_reply_arg) -+{ -+ void *osbuf; -+ WMIX_DSETDATA_REPLY_CMD *data_reply; -+ int size; -+ -+ size = sizeof(*data_reply) + length; -+ -+ A_DPRINTF(DBG_WMI, -+ (DBGFMT "Enter - length=%d status=%d\n", DBGARG, length, status)); -+ -+ osbuf = A_NETBUF_ALLOC(size); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ A_NETBUF_PUT(osbuf, size); -+ data_reply = (WMIX_DSETDATA_REPLY_CMD *)(A_NETBUF_DATA(osbuf)); -+ -+ data_reply->status = status; -+ data_reply->targ_buf = targ_buf; -+ data_reply->targ_reply_fn = targ_reply_fn; -+ data_reply->targ_reply_arg = targ_reply_arg; -+ data_reply->length = length; -+ -+ if (status == A_OK) { -+ if (a_copy_from_user(data_reply->buf, user_buf, length)) { -+ return A_ERROR; -+ } -+ } -+ -+ return (wmi_cmd_send_xtnd(wmip, osbuf, WMIX_DSETDATA_REPLY_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+#endif /* CONFIG_HOST_DSET_SUPPORT */ -+ -+A_STATUS -+wmi_set_wsc_status_cmd(struct wmi_t *wmip, A_UINT32 status) -+{ -+ void *osbuf; -+ char *cmd; -+ -+ wps_enable = status; -+ -+ osbuf = a_netbuf_alloc(sizeof(1)); -+ if (osbuf == NULL) { -+ return A_NO_MEMORY; -+ } -+ -+ a_netbuf_put(osbuf, sizeof(1)); -+ -+ cmd = (char *)(a_netbuf_to_data(osbuf)); -+ -+ A_MEMZERO(cmd, sizeof(*cmd)); -+ cmd[0] = (status?1:0); -+ return (wmi_cmd_send(wmip, osbuf, WMI_SET_WSC_STATUS_CMDID, -+ NO_SYNC_WMIFLAG)); -+} -+ ---- /dev/null -+++ b/drivers/ar6000/wmi/wmi_doc.h -@@ -0,0 +1,4421 @@ -+/* -+ * -+ * Copyright (c) 2004-2007 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+ -+#if 0 -+Wireless Module Interface (WMI) Documentaion -+ -+ This section describes the format and the usage model for WMI control and -+ data messages between the host and the AR6000-based targets. The header -+ file include/wmi.h contains all command and event manifest constants as -+ well as structure typedefs for each set of command and reply parameters. -+ -+Data Frames -+ -+ The data payload transmitted and received by the target follows RFC-1042 -+ encapsulation and thus starts with an 802.2-style LLC-SNAP header. The -+ WLAN module completes 802.11 encapsulation of the payload, including the -+ MAC header, FCS, and WLAN security related fields. At the interface to the -+ message transport (HTC), a data frame is encapsulated in a WMI message. -+ -+WMI Message Structure -+ -+ The WMI protocol leverages an 802.3-style Ethernet header in communicating -+ the source and destination information between the host and the AR6000 -+ modules using a 14-byte 802.3 header ahead of the 802.2-style payload. In -+ addition, the WMI protocol adds a header to all data messages: -+ -+ { -+ INT8 rssi -+ The RSSI of the received packet and its units are shown in db above the -+ noise floor, and the noise floor is shown in dbm. -+ UINT8 info -+ Contains information on message type and user priority. Message type -+ differentiates between a data packet and a synchronization message. -+ } WMI_DATA_HDR -+ -+ User priority contains the 802.1d user priority info from host to target. Host -+ software translates the host Ethernet format to 802.3 format prior to Tx and -+ 802.3 format to host format in the Rx direction. The host does not transmit the -+ FCS that follows the data. MsgType differentiates between a regular data -+ packet (msgType=0) and a synchronization message (msgType=1). -+ -+Data Endpoints -+ -+ The AR6000 chipset provides several data endpoints to support quality of -+ service (QoS) and maintains separate queues and separate DMA engines for -+ each data endpoint. A data endpoint can be bi-directional. -+ -+ Best effort (BE) class traffic uses the default data endpoint (2). The host can -+ establish up to two additional data endpoints for other traffic classes. Once -+ such a data endpoint is established, it sends and receives corresponding QoS -+ traffic in a manner similar to the default data endpoint. -+ -+ If QoS is desired over the interconnect, host software must classify each data -+ packet and place it on the appropriate data endpoint. The information -+ required to classify data is generally available in-band as an 802.1p/q style -+ tag or as the ToS field in the IP header. The information may also be available -+ out-of-band depending on the host DDI. -+ -+Connection States -+ -+ Table B-1 describes the AR6000 WLAN connection states: -+ -+ Table B-1. AR6000 Connection States -+ -+Connection State -+ Description -+ -+ DISCONNECTED -+ In this state, the AR6000 device is not connected to a wireless -+ network. The device is in this state after reset when it sends the -+ WIRELESS MODULE “READY” EVENT, after it processes a -+ DISCONNECT command, and when it loses its link with the -+ access point (AP) that it was connected to. The device signals a -+ transition to the DISCONNECTED state with a “DISCONNECT” -+ event. -+ -+CONNECTED -+ In this state, the AR6000 device is connected to wireless networks. -+ The device enters this state after successfully processing a -+ CONNECT, which establishes a connection with a wireless -+ network. The device signals a transition to the CONNECTED state -+ with a “CONNECT” event. -+ -+ -+Message Types -+ -+ WMI uses commands, replies, and events for the control and configuration of -+ the AR6000 device. The control protocol is asynchronous. Table B-2 describes -+ AR6000 message types: -+ -+Table B-2. AR6000 Message Types -+ -+Message Type -+ Description -+ -+Commands -+ Control messages that flow from the host to the device -+ -+Replies/Events -+ Control messages that flow from the device to the host. -+ -+ The device issues a reply to some WMI commands, but not to others. -+ The payload in a reply is command-specific, and some commands do -+ not trigger a reply message at all. Events are control messages issued -+ by the device to signal the occurrence of an asynchronous event. -+ -+ -+WMI Message Format -+ -+ All WMI control commands, replies and events use the header format: -+ -+ WMI_CMD_HDR Header Format -+ { -+ UINT16 id -+ This 16-bit constant identifies which WMI command the host is issuing, -+ which command the target is replying to, or which event has occurred. -+ WMI_CMD_HDR -+ } -+ -+ -+ A variable-size command-, reply-, or event-specific payload follows the -+ header. Over the interconnect, all fields in control messages (including -+ WMI_CMD_HDR and the command specific payload) use 32-bit little Endian -+ byte ordering and fields are packed. The AR6000 device always executes -+ commands in order, and the host may send multiple commands without -+ waiting for previous commands to complete. A majority of commands are -+ processed to completion once received. Other commands trigger a longer -+ duration activity whose completion is signaled to the host through an event. -+ -+Command Restrictions -+ -+ Some commands may only be issued when the AR6000 device is in a certain -+ state. The host is required to wait for an event signaling a state transition -+ before such a command can be issued. For example, if a command requires -+ the device to be in the CONNECTED state, then the host is required to wait -+ for a “CONNECT” event before it issues that command. -+ -+ The device ignores any commands inappropriate for its current state. If the -+ command triggers a reply, the device generates an error reply. Otherwise, the -+ device silently ignores the inappropriate command. -+ -+Command and Data Synchronization -+ -+ WMI provides a mechanism for a host to advise the device of necessary -+ synchronization between commands and data. The device implements -+ synchronization; no implicit synchronization exists between endpoints. -+ -+ The host controls synchronization using the “SYNCHRONIZE” command -+ over the control channel and synchronization messages over data channels. -+ The device stops each data channel upon receiving a synchronization message -+ on that channel, processing all data packets received prior to that message. -+ After the device receives synchronization messages for each data endpoint -+ and the “SYNCHRONIZE” command, it resumes all channels. -+ -+ When the host must guarantee a command executes before processing new -+ data packets, it first issues the command, then issues the “SYNCHRONIZE” -+ command and sends synchronization messages on data channels. When the -+ host must guarantee the device has processed all old data packets before a -+ processing a new command, it issues a “SYNCHRONIZE” command and -+ synchronization messages on all data channels, then issues the desired -+ command. -+ -+ -+ -+WMI Commands -+ -+ ADD_BAD_AP -+ Cause the AR6000 device to avoid a particular AP -+ ADD_CIPHER_KEY -+ Add or replace any of the four AR6000 encryption keys -+ ADD_WOW_PATTERN -+ Used to add a pattern to the WoW pattern list -+ CLR_RSSI_SNR -+ Clear the current calculated RSSI and SNR value -+ CONNECT_CMD -+ Request that the AR6000 device establish a wireless connection -+ with the specified SSID -+ CREATE_PSTREAM -+ Create prioritized data endpoint between the host and device -+ DELETE_BAD_AP -+ Clear an entry in the bad AP table -+ DELETE_CIPHER_KEY -+ Delete a previously added cipher key -+ DELETE_PSTREAM -+ Delete a prioritized data endpoint -+ DELETE_WOW_PATTERN -+ Remove a pre-specified pattern from the WoW pattern list -+ EXTENSION -+ WMI message interface command -+ GET_BIT_RATE -+ Retrieve rate most recently used by the AR6000 -+ GET_CHANNEL_LIST -+ Retrieve list of channels used by the AR6000 -+ GET_FIXRATES -+ Retrieves the rate-mask set via the SET_FIXRATES command. -+ GET_PMKID_LIST_CMD -+ Retrieve the firmware list of PMKIDs -+ GET_ROAM_DATA -+ Internal use for data collection; available in special build only -+ GET_ROAM_TBL -+ Retrieve the roaming table maintained on the target -+ GET_TARGET_STATS -+ Request that the target send the statistics it maintains -+ GET_TX_PWR -+ Retrieve the current AR6000 device Tx power levels -+ GET_WOW_LIST -+ Retrieve the current list of WoW patterns -+ LQ_THRESHOLD_PARAMS -+ Set the link quality thresholds -+ OPT_TX_FRAME -+ Send a special frame (special feature) -+ RECONNECT -+ Request a reconnection to a BSS -+ RSSI_THRESHOLD_PARAMS -+ Configure how the AR6000 device monitors and reports signal -+ strength (RSSI) of the connected BSS -+ SCAN_PARAMS -+ Determine dwell time and changes scanned channels -+ SET_ACCESS_PARAMS -+ Set access parameters for the wireless network -+ SET_ADHOC_BSSID -+ Set the BSSID for an ad hoc network -+ SET_AKMP_PARAMS -+ Set multiPMKID mode -+ SET_APPIE -+ Add application-specified IE to a management frame -+ SET_ASSOC_INFO -+ Specify the IEs the device should add to association or -+ reassociation requests -+ SET_AUTH_MODE -+ Set 802.11 authentication mode of reconnection -+ SET_BEACON_INT -+ Set the beacon interval for an ad hoc network -+ SET_BIT_RATE -+ Set the AR6000 to a specific fixed bit rate -+ SET_BMISS_TIME -+ Set the beacon miss time -+ SET_BSS_FILTER -+ Inform the AR6000 of network types about which it wants to -+ receive information using a “BSSINFO” event -+ SET_BT_PARAMS -+ Set the status of a Bluetooth stream (SCO or A2DP) or set -+ Bluetooth coexistence register parameters -+ SET_BT_STATUS -+ Set the status of a Bluetooth stream (SCO or A2DP) -+ SET_CHANNEL_PARAMETERS -+ Configure WLAN channel parameters -+ SET_DISC_TIMEOUT -+ Set the amount of time the AR6000 spends attempting to -+ reestablish a connection -+ SET_FIXRATES -+ Set the device to a specific fixed PHY rate (supported subset) -+ SET_HALPARAM -+ Internal AR6000 command to set certain hardware parameters -+ SET_HOST_SLEEP_MODE -+ Set the host mode to asleep or awake -+ SET_IBSS_PM_CAPS -+ Support a non-standard power management scheme for an -+ ad hoc network -+ SET_LISTEN_INT -+ Request a listen interval -+ SET_LPREAMBLE -+ Override the short preamble capability of the AR6000 device -+ SET_MAX_SP_LEN -+ Set the maximum service period -+ SET_OPT_MODE -+ Set the special mode on/off (special feature) -+ SET_PMKID -+ Set the pairwise master key ID (PMKID) -+ SET_PMKID_LIST_CMD -+ Configure the firmware list of PMKIDs -+ SET_POWER_MODE -+ Set guidelines on trade-off between power utilization -+ SET_POWER_PARAMS -+ Configure power parameters -+ SET_POWERSAVE_PARAMS -+ Set the two AR6000 power save timers -+ SET_PROBED_SSID -+ Provide list of SSIDs the device should seek -+ SET_REASSOC_MODE -+ Specify whether the disassociated frame should be sent upon -+ reassociation -+ SET_RETRY_LIMITS -+ Limit how many times the device tries to send a frame -+ SET_ROAM_CTRL -+ Control roaming behavior -+ SET_RTS -+ Determine when RTS should be sent -+ SET_SCAN_PARAMS -+ Set the AR6000 scan parameters -+ SET_TKIP_COUNTERMEASURES -+ Enable/disable reports of TKIP MIC errors -+ SET_TX_PWR -+ Specify the AR6000 device Tx power levels -+ SET_VOICE_PKT_SIZE -+ Set voice packet size -+ SET_WMM -+ Override the AR6000 WMM capability -+ SET_WMM_TXOP -+ Configure TxOP bursting when sending traffic to a WMM- -+ capable AP -+ SET_WOW_MODE -+ Enable/disable WoW mode -+ SET_WSC_STATUS -+ Enable/disable profile check in cserv when the WPS protocol -+ is in progress -+ SNR_THRESHOLD_PARAMS -+ Configure how the device monitors and reports SNR of BSS -+ START_SCAN -+ Start a long or short channel scan -+ SYNCHRONIZE -+ Force a synchronization point between command and data -+ paths -+ TARGET_REPORT_ERROR_BITMASK -+ Control “ERROR_REPORT” events from the AR6000 -+ -+ -+ -+ -+Name -+ ADD_BAD_AP -+ -+Synopsis -+ The host uses this command to cause the AR6000 to avoid a particular AP. The -+ AR6000 maintain a table with up to two APs to avoid. An ADD_BAD_AP command -+ adds or replaces the specified entry in this bad AP table. -+ -+ If the AR6000 are currently connected to the AP specified in this command, they -+ disassociate. -+ -+Command -+ wmiconfig eth1 --badap <bssid> <badApIndex> -+ -+Command Parameters -+ UINT8 badApIndex Index [0...1] that identifies which entry in the -+ bad AP table to use -+ -+ -+ UINT8 bssid[6] MAC address of the AP to avoid -+ -+Command Values -+ badApIndex = 0, 1 Entry in the bad AP table to use -+ -+Reset Value -+ The bad AP table is cleared -+ -+Restrictions -+ None -+ -+See Also -+ “DELETE_BAD_AP” on page B-13 -+ -+===================================================================== -+Name -+ ADD_CIPHER_KEY -+ -+Synopsis -+ The host uses this command to add/replace any of four encryption keys on the -+ AR6000. The ADD_CIPHER_KEY command is issued after the CONNECT event -+ has been received by the host for all dot11Auth modes except for SHARED_AUTH. -+ When the dot11AuthMode is SHARED_AUTH, then the ADD_CIPHER_KEY -+ command should be issued before the “CONNECT” command. -+ -+Command -+ wmiconfig eth1 --cipherkey <keyIndex> <keyType> <keyUsage> -+ <keyLength> <keyopctrl> <keyRSC> <key> -+ -+Command Parameters -+ UINT8 keyIndex Index (0...3) of the key to add/replace; -+ uniquely identifies the key -+ UINT8 keyType CRYPTO_TYPE -+ UINT8 keyUsage Specifies usage parameters of the key when -+ keyType = WEP_CRYPT -+ UINT8 keyLength Length of the key in bytes -+ UINT8 keyOpCtrl bit[0] = Initialize TSC (default), -+ bit[1] = Initialize RSC -+ UINT8 keyRSC[8] Key replay sequence counter (RSC) initial -+ value the device should use -+ UINT8 key[32] Key material used for this connection -+ Command Values -+ { -+ NONE_CRYPT = 1 -+ WEP_CRYPT = 2 -+ TKIP_CRYPT = 3 -+ AES_CRYPT = 4 -+ KEY_OP_INIT_TSC 0x01 -+ KEY_OP_INIT_RSC 0x02 -+ KEY_OP_INIT_VAL 0x03 -+ Default is to Initialize the TSC -+ KEY_OP_VALID_MASK 0x04 -+ Two operations defined -+ } CRYPTO_TYPE -+ -+ { -+ PAIRWISE_USAGE = 0 Set if the key is used for unicast traffic only -+ GROUP_USAGE = 1 Set if the key is used to receive multicast -+ traffic (also set for static WEP keys) -+ TX_USAGE = 2 Set for the GROUP key used to transmit frames -+ All others are reserved -+ } KEY_USAGE -+ -+Reset Value -+ The four available keys are disabled. -+ -+Restrictions -+ The cipher should correspond to the encryption mode specified in the “CONNECT” -+ command. -+ -+See Also -+ “DELETE_CIPHER_KEY” -+ -+===================================================================== -+ -+ -+Name -+ ADD_WOW_PATTERN -+ -+Synopsis -+ The host uses this command to add a pattern to the WoW pattern list; used for -+ pattern-matching for host wakeups by the WoW module. If the host mode is asleep -+ and WoW is enabled, all packets are matched against the existing WoW patterns. If a -+ packet matches any of the patterns specified, the target will wake up the host. All -+ non-matching packets are discarded by the target without being sent up to the host. -+ -+Command -+ wmiconfig –addwowpattern <list-id> <filter-size> <filter-offset> -+ <pattern> <mask> -+ -+Command Parameters -+ A_UINT8 filter_list_id ID of the list that is to include the new pattern -+ A_UINT8 filter_size Size of the new pattern -+ A_UINT8 filter_offset Offset at which the pattern matching for this -+ new pattern should begin at -+ A_UINT8 filter[1] Byte stream that contains both the pattern and -+ the mask of the new WoW wake-up pattern -+ -+Reply Parameters -+ None -+ -+Reset Value -+ None defined (default host mode is awake) -+ -+Restrictions -+ None -+ -+See Also -+ “DELETE_WOW_PATTERN” -+ -+===================================================================== -+ -+ -+Name -+ CLR_RSSI_SNR -+ -+Synopsis -+ Clears the current calculated RSSI and SNR value. RSSI and SNR are reported by -+ running-average value. This command will clear the history and have a fresh start -+ for the running-average mechanism. -+ -+Command -+ wmiconfig eth1 --cleanRssiSnr -+ -+Command Parameters -+ None -+ -+Reply Parameters -+ None -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+Name -+ CONNECT_CMD -+ -+Synopsis -+ New connect control information (connectCtrl) is added, with 32 possible modifiers. -+ -+ CONNECT_SEND_REASSOC -+ Valid only for a host-controlled connection to a -+ particular AP. If this bit is set, a reassociation frame is -+ sent. If this bit is clear, an association request frame is -+ sent to the AP. -+ -+ CONNECT_IGNORE_WPAx_GROUP_CIPHER -+ No group key is issued in the CONNECT command, -+ so use the group key advertised by the AP. In a target- -+ initiated roaming situation this allows a STA to roam -+ between APs that support different multicast ciphers. -+ -+ CONNECT_PROFILE_MATCH_DONE -+ In a host-controlled connection case, it is possible that -+ during connect, firmware may not have the -+ information for a profile match (e.g, when the AP -+ supports hidden SSIDs and the device may not -+ transmit probe requests during connect). By setting -+ this bit in the connection control information, the -+ firmware waits for a beacon from the AP with the -+ BSSID supplied in the CONNECT command. No -+ additional profile checks are done. -+ -+ CONNECT_IGNORE_AAC_BEACON -+ Ignore the Admission Capacity information in the -+ beacon of the AP -+ -+ CONNECT_ASSOC_POLICY_USER -+ When set, the CONNECT_SEND_REASSOC setting -+ determines if an Assoc or Reassoc is sent to an AP -+ -+Command -+ wmiconfig --setconnectctrl <ctrl flags bitmask> -+ -+Command Parameters -+ typedef struct{ -+ A_UINT8 networktype; -+ A_UINT8 dot11authmode; -+ A_UINT8 authmode; -+ A_UINT8 pairwiseCryptoType; /*CRYPTO_TYPE*/ -+ A_UINT8 pairwiseCryptoLen; -+ A_UINT8 groupCryptoType; /*CRYPTO_TYPE*/ -+ A_UINT8 groupCryptoLen; -+ A_UINT8 ssidLength; -+ A_UCHAR ssid[WMI_MAX_SSID_LEN]; -+ A_UINT16 channel; -+ A_UINT8 bssid[AUTH_MAC_LEN]; -+ A_UINT8 ctrl_flags; /*WMI_CONNECT_CTRL_FLAGS_BITS*/ -+ } WMI_CONNECT_CMD; -+ -+ ctrl flags bitmask -+ = 0x0001 CONNECT_ASSOC_POLICY_USER -+ Assoc frames are sent using the policy specified by -+ the flag -+ = 0x0002 CONNECT_SEND_REASSOC -+ Send Reassoc frame while connecting, otherwise send -+ assoc frames -+ = 0x0004 CONNECT_IGNORE_WPAx_GROUP_CIPHER -+ Ignore WPAx group cipher for WPA/WPA2 -+ = 0x0008 CONNECT_PROFILE_MATCH_DONE -+ Ignore any profile check -+ = 0x0010 CONNECT_IGNORE_AAC_BEACON -+ Ignore the admission control information in the -+ beacon -+ ... CONNECT_CMD, continued -+ Command Values -+ typedef enum { -+ INFRA_NETWORK = 0x01, -+ ADHOC_NETWORK = 0x02, -+ ADHOC_CREATOR = 0x04, -+ } NETWORK_TYPE; -+ -+ typedef enum { -+ OPEN_AUTH = 0x01, -+ SHARED_AUTH = 0x02, -+ LEAP_AUTH = 0x04, -+ } DOT11_AUTH_MODE; -+ typedef enum { -+ NONE_AUTH = 0x01, -+ WPA_AUTH = 0x02, -+ WPA_PSK_AUTH = 0x03, -+ WPA2_AUTH = 0x04, -+ WPA2_PSK_AUTH = 0x05, -+ WPA_AUTH_CCKM = 0x06, -+ WPA2_AUTH_CCKM = 0x07, -+ } AUTH_MODE; -+ typedef enum { -+ NONE_CRYPT = 0x01, -+ WEP_CRYPT = 0x02, -+ TKIP_CRYPT = 0x03, -+ AES_CRYPT = 0x04, -+ } CRYPTO_TYPE; -+ typedef enum { -+ CONNECT_ASSOC_POLICY_USER = 0x0001, -+ CONNECT_SEND_REASSOC = 0x0002, -+ CONNECT_IGNORE_WPAx_GROUP_CIPHER = 0x0004, -+ CONNECT_PROFILE_MATCH_DONE = 0x0008, -+ CONNECT_IGNORE_AAC_BEACON = 0x0010, -+ } WMI_CONNECT_CTRL_FLAGS_BITS; -+ -+ pairwiseCryptoLen and groupCryptoLen are valid when the respective -+ CryptoTypesis WEP_CRYPT, otherwise this value should be 0. This is the length in -+ bytes. -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ CREATE_PSTREAM -+ -+Synopsis -+ The host uses this command to create a new prioritized data endpoint between the -+ host and the AR6000 device that carries a prioritized stream of data. If the AP that the -+ device connects to requires TSPEC stream establishment, the device requests the -+ corresponding TSPEC with the AP. The maximum and minimum service interval -+ ranges from 0 – 0x7FFFFFFF (ms), where 0 = disabled. The device does not send a -+ reply event for this command, as it is always assumed the command has succeeded. -+ An AP admission control response comes to the host via a WMI_CAC_INDICATION -+ event, once the response for the ADDTS frame comes. -+ -+ Examples of cases where reassociation is generated (when WMM) and cases where -+ ADDTS is generated (when WMM and enabling ACM) are when: -+ Changing UAPSD flags in WMM mode, reassociation is generated -+ Changing the interval of sending auto QoS Null frame in WMM mode; -+ reassociation is not generated -+ Issuing a command with same previous parameters in WMM mode and enabling -+ ACM, an ADDTS request is generated -+ Changing the interval of a QoS null frame sending in WMM mode and enabling -+ ACM, an ADDTS request is generated -+ Issuing the command in disconnected state, reassociation or ADDTS is not -+ generated but the parameters are available after (re)association -+ -+Command -+ --createqos <user priority> <direction> <traffic class> -+<trafficType> <voice PS capability> <min service interval> <max -+service interval> <inactivity interval> <suspension interval> -+<service start time> <tsid> <nominal MSDU> <max MSDU> <min data -+rate> <mean data rate> <peak data rate> <max burst size> <delay -+bound> <min phy rate> <sba> <medium time> where: -+ -+ <user priority> -+ 802.1D user priority range (0–7) -+ <direction> -+ = 0 Tx (uplink) traffic -+ = 1 Rx (downlink) traffic -+ = 2 Bi-directional traffic -+ <traffic class> -+ = 1 BK -+ = 2 VI -+ = 3 VO -+ <trafficType> -+ = 0 Aperiodic -+ = 1 Periodic -+ <voice PS capability> -+ Specifies whether the voice power save mechanism -+ (APSD if AP supports it or legacy/simulated APSD -+ [using PS-Poll]) should be used -+ = 0 Disable voice power save for traffic class -+ = 1 Enable APSD voice power save for traffic class -+ = 2 Enable voice power save for all traffic classes -+ <min service interval> -+ (In ms) -+ <max service interval> -+ Inactivity interval (in ms) (0 = Infinite) -+ <suspension interval> -+ (In ms) -+ <service start time> -+ Service start time -+ <tsid> -+ TSID range (0–15) -+ <nominal MSDU> -+ Nominal MAC SDU size -+ <max MSDU> -+ Maximum MAC SDU size -+ <min data rate> -+ Minimum data rate (in bps) -+ <mean data rate> -+ Mean data rate (in bps) -+ <peak data rate> -+ Peak data rate (in bps) -+ <max burst size> -+ Maximum burst size (in bps) -+ <delay bound> -+ Delay bound -+ <min phy rate> -+ Minimum PHY rate (in bps) -+ <sba> -+ Surplus bandwidth allowance -+ <medium time> -+ Medium time in TU of 32-ms periods per sec -+ ... CREATE_PSTREAM (continued) -+ -+Command Parameters -+ UINT8 trafficClass TRAFFIC_CLASS value -+ UINT8 traffic -+ Direction -+ DIR_TYPE value -+ UINT8 rxQueueNum -+ AR6000 device mailbox index (2 or 3) -+ corresponding to the endpoint the host -+ wishes to use to receive packets for the -+ prioritized stream -+ UINT8 trafficType TRAFFIC_TYPE value -+ UINT8 voicePS -+Capability -+ VOICEPS_CAP_TYPE value -+ UINT8 tsid Traffic stream ID -+ UINT8 userPriority 802.1D user priority -+ UINT16 nominalMSDU Nominal MSDU in octets -+ UINT16 maxMSDU Maximum MSDU in octets -+ UINT32 minServiceInt Minimum service interval: the min. -+ period of traffic specified (in ms) -+ UINT32 maxServiceInt Maximum service interval: the max. -+ period of traffic specified (in ms) -+ UINT32 inactivityInt Indicates how many ms an established -+ stream is inactive before the prioritized -+ data endpoint is taken down and the -+ corresponding T-SPEC deleted -+ UINT32 suspensionInt Suspension interval (in ms) -+ UINT32 service StartTime Service start time -+ UINT32 minDataRate Minimum data rate (in bps) -+ UINT32 meanDataRate Mean data rate (in bps) -+ UINT32 peakDataRate Peak data rate (in bps) -+ UINT32 maxBurstSize -+ UINT32 delayBound -+ UINT32 minPhyRate Minimum PHY rate for TSPEC (in bps) -+ UINT32 sba Surplus bandwidth allowance -+ UINT32 mediumTime Medium TSPEC time (in units of 32 ms) -+Command Values -+ { -+ WMM_AC_BE = 0 Best Effort -+ WMM_AC_BK = 1 Background -+ WMM_AC_VI = 2 Video -+ WMM_AC_VO = 3 Voice -+ All other values reserved -+ } TRAFFIC_CLASS -+ { -+ UPLINK_TRAFFIC = 0 From the AR6000 device to the AP -+ DOWNLINK_TRAFFIC = 1 From the AP to the AR6000 device -+ BIDIR_TRAFFIC = 2 Bi-directional traffic -+ All other values reserved -+ } DIR_TYPE -+ { -+ DISABLE_FOR_THIS_AC = 0 -+ ENABLE_FOR_THIS_AC = 1 -+ ENABLE_FOR_ALL_AC = 2 -+ All other values reserved -+ } VOICEPS_CAP_TYPE -+ -+ ... CREATE_PSTREAM (continued) -+ -+ -+ VI BE BK Supported, Y/N? -+ 0 0 0 0 Y -+ 0 0 0 1 Y -+ 0 0 1 0 N -+ 0 0 1 1 N -+ 0 1 0 0 Y -+ 0 1 0 1 Y -+ 0 1 1 0 N -+ 0 1 1 1 N -+ 1 0 0 0 Y -+ 1 0 0 1 Y -+ 1 0 1 0 N -+ 1 1 0 0 N -+ 1 1 0 1 Y -+ 1 1 0 0 N -+ 1 1 1 0 N -+ 1 1 1 1 Y -+ -+Reset Value -+ No pstream is present after reset; each of the BE, BK, VI,VO pstreams must be created -+ (either implicitly by data flow or explicitly by user) -+ -+Restrictions -+ This command can only be issued when the device is in the CONNECTED state. If -+ the device receives the command while in DISCONNECTED state, it replies with a -+ failure indication. At most four prioritized data endpoints can be created, one for -+ each AC. -+ -+See Also -+ “DELETE_PSTREAM” -+===================================================================== -+ -+Name -+ DELETE_BAD_AP -+ -+Synopsis -+ The host uses this command to clear a particular entry in the bad AP table -+ -+Command -+ wmiconfig eth1 --rmAP [--num=<index>] // used to clear a badAP -+ entry. num is index from 0-3 -+ -+Command Parameters -+ UINT8 badApIndex Index [0...n] that identifies the entry in the bad -+ AP table to delete -+ -+Command Values -+ badApIndex = 0, 1, 2, 3 -+ Entry in the bad AP table -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+See Also -+ “ADD_BAD_AP” -+ -+===================================================================== -+ -+ -+Name -+ DELETE_CIPHER_KEY -+ -+Synopsis -+ The host uses this command to delete a key that was previously added with the -+ “ADD_CIPHER_KEY” command. -+ -+Command -+ TBD -+ -+Command Parameters -+ UINT8 keyIndex Index (0...3) of the key to be deleted -+ -+Command Values -+ keyIndex = 0, 1,2, 3 Key to delete -+ -+Reset Value -+ None -+ -+Restrictions -+ The host should not delete a key that is currently in use by the AR6000. -+ -+See Also -+ “ADD_CIPHER_KEY” -+ -+===================================================================== -+ -+Name -+ DELETE_PSTREAM -+ -+Synopsis -+ The host uses this command to delete a prioritized data endpoint created by a -+ previous “CREATE_PSTREAM” command -+ -+Command -+ --deleteqos <trafficClass> <tsid>, where: -+ -+ <traffic class> -+ = 0 BE -+ = 1 BK -+ = 2 VI -+ = 3 VO -+ <tsid> -+ The TSpec ID; use the -qosqueue option -+ to get the active TSpec IDs for each traffic class -+ -+Command Parameters -+ A_UINT8 trafficClass Indicate the traffic class of the stream -+ being deleted -+ -+Command Values -+ { -+ WMM_AC_BE = 0 Best effort -+ WMM_AC_BK = 1 Background -+ WMM_AC_VI = 2 Video -+ WMM_AC_VO = 3 Voice -+ } TRAFFIC CLASS -+ -+ 0-15 for TSID -+ -+Reply Values -+ N/A -+ -+Restrictions -+ This command should only be issued after a “CREATE_PSTREAM” command has -+ successfully created a prioritized stream -+ -+See Also -+ “CREATE_PSTREAM” -+ -+===================================================================== -+ -+ -+Name -+ DELETE_WOW_PATTERN -+ -+Synopsis -+ The host uses this command to remove a pre-specified pattern from the -+ WoW pattern list. -+ -+Command -+ wmiconfig –delwowpattern <list-id> <pattern-id> -+ -+Command Parameters -+ A_UINT8 filter_list_id ID of the list that contains the WoW filter -+ pattern to delete -+ A_UINT8 filter_id ID of the WoW filter pattern to delete -+ -+Reply Parameters -+ None -+ -+ -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+See Also -+ “ADD_WOW_PATTERN” -+ -+===================================================================== -+ -+ -+Name -+ EXTENSION -+ -+Synopsis -+ The WMI message interface is used mostly for wireless control messages to a wireless -+ module applicable to wireless module management regardless of the target platform -+ implementation. However, some commands only peripherally related to wireless -+ management are desired during operation. These wireless extension commands may -+ be platform-specific or implementation-dependent. -+ -+Command -+ N/A -+ -+Command Parameters -+ Command-specific -+ -+Command Values -+ Command-specific -+ -+Reply Parameters -+ Command-specific -+ -+Reset Values -+ None defined -+ -+Restrictions -+ None defined -+ -+===================================================================== -+ -+ -+Name -+ GET_BIT_RATE -+ -+Synopsis -+ Used by the host to obtain the rate most recently used by the AR6000 device -+ -+Command -+ wmiconfig eth1 --getfixrates -+ -+Command Parameters -+ None -+ -+ -+ -+Reply Parameters -+ INT8 -+ rateIndex -+ See the “SET_BIT_RATE” command -+ -+Reset Values -+ None -+ -+Restrictions -+ This command should only be used during development/debug; it is not intended -+for use in production. It is only valid when the device is in the CONNECTED state -+ -+See Also -+ “SET_BIT_RATE” -+ -+===================================================================== -+ -+ -+Name -+ GET_CHANNEL_LIST -+ -+Synopsis -+ Used by the host uses to retrieve the list of channels that can be used by the device -+ while in the current wireless mode and in the current regulatory domain. -+ -+Command -+ TBD -+ -+Command Parameters -+ None -+ -+Reply Parameters -+ UINT8 reserved Reserved -+ UINT8 numberOfChannels Number of channels the reply contains -+ UINT16 channelList[numberOfChannels] Array of channel frequencies (in MHz) -+ -+Reset Values -+ None defined -+ -+Restrictions -+ The maximum number of channels that can be reported are 32 -+ -+===================================================================== -+ -+ -+Name -+ GET_FIXRATES -+ -+Synopsis -+ Clears the current calculated RSSI and SNR value. RSSI and SNR are reported by -+ running-average value. This command will clear the history and have a fresh start for -+ the running-average mechanism. -+ -+Synopsis -+ This returns rate-mask set via WMI_SET_FIXRATES to retrieve the current fixed rate -+ that the AR6001 or AR6001 is using. See “SET_FIXRATES”. -+ -+Command -+ wmiconfig eth1 --getfixrates -+ -+Command Parameters -+ A_UINT16 fixRateMask; Note: if this command is used prior to -+ using WMI_SET_FIXRATES, AR6000 -+ returns 0xffff as fixRateMask, indicating -+ all the rates are enabled -+ -+Reply Parameters -+ None -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+See Also -+ “SET_FIXRATES” -+ -+===================================================================== -+ -+ -+ -+Name -+ GET_PMKID_LIST_CMD -+ -+Synopsis -+ Retrieves the list of PMKIDs on the firmware. The -+ WMI_GET_PMKID_LIST_EVENT is generated by the firmware. -+ -+Command -+ TBD -+ -+Command Parameters -+ -+Reset Values -+ None -+ -+Restrictions -+ None -+ -+See Also -+ SET_PMKID_LIST_CMD GET_PMKID_LIST_EVENT -+ -+===================================================================== -+ -+ -+Name -+ GET_ROAM_TBL -+ -+Synopsis -+ Retrieve the roaming table maintained on the target. The response is reported -+ asynchronously through the ROAM_TBL_EVENT. -+ -+Command -+ wmiconfig --getroamtable <roamctrl> <info> -+ -+Command Parameters -+ A_UINT8 roamCtrlType; -+ A_UINT16 roamMode -+ A_UINT16 numEntries -+ WMI_BSS_ROAM_INFO bssRoamInfo[1] -+ -+Reply Value -+ Reported asynchronously through the ROAM_TBL_EVENT -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+See Also -+ SET_KEEPALIVE -+ -+===================================================================== -+ -+ -+Name -+ GET_TARGET_STATS -+ -+Synopsis -+ The host uses this command to request that the target send the statistics that it -+ maintains. The statistics obtained from the target are accrued in the host every time -+ the GET_TARGET_STATS command is issued. The --clearStats option is added to -+ clear the target statistics maintained in the host. -+ -+Command -+ wmiconfig --getTargetStats --clearStats -+ -+Command Parameters -+ TARGET_STATS targetStats -+ WMI_TARGET_STATS -+ UINT8 clearStats -+ -+ -+Reply Value -+ RSSI return value (0–100) -+ -+Reset Values -+ All statistics are cleared (zeroed) -+ -+Restrictions -+ The --getTargetStats option must be used; the --clearStats option is also available also -+ -+ -+===================================================================== -+ -+Name -+ GET_TX_PWR -+ -+Synopsis -+ The host uses this command to retrieve the current Tx power level -+ -+Command -+ wmiconfig -i eth1 --getpower -+ -+Command Parameters -+ None -+ -+Reply Parameters -+ UINT16 dbM The current Tx power level specified in dbM -+ -+Reset Values -+ The maximum permitted by the regulatory domain -+ -+Restrictions -+ None -+ -+See Also -+ “SET_TX_PWR” -+ -+===================================================================== -+ -+ -+Name -+ GET_WOW_LIST -+ -+Synopsis -+ The host uses this command to retrieve the current list of WoW patterns. -+ -+Command -+ wmiconfig –getwowlist <list-id> -+ -+Command Parameters -+ A_UINT8 filter_list_id ID of the list of WoW patterns to retrieve -+ -+Reply Value(s) -+ A_UINT16 num_filters Number of WoW patterns contained in the list -+ A_UINT8 wow_mode Current mode of WoW (enabled or disabled) -+ A_UINT8 host_mode Current host mode (asleep or awake) -+ WOW_FILTER wow_filters[1] -+ Contents of the WoW filter pattern list -+ (contains mask, pattern, offset and size -+ information for each of the patterns) -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+See Also -+ “SET_WSC_STATUS” -+ -+===================================================================== -+ -+ -+Name -+ LQ_THRESHOLD_PARAMS -+ -+Synopsis -+ Sets Link Quality thresholds, the sampling will happen at every unicast data frame -+ Tx if a certain threshold is met, and the corresponding event will be sent to the host. -+ -+Command -+ --lqThreshold <enable> <upper_threshold_1> ... -+ <upper_threshold_4> <lower_threshold_1> ... <lower_threshold_4> -+ -+Command Parameters -+ <enable> = 0 Disable link quality sampling -+ = 1 Enable link quality sampling -+ <upper_threshold_x> Above thresholds (value in [0,100]), in -+ ascending order -+ <lower_threshold_x> Below thresholds (value in [0,100]), in -+ ascending order -+ -+Command Values -+ See command parameters -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ OPT_TX_FRAME -+ -+Synopsis -+ Special feature, sends a special frame. -+ -+Command -+ wmiconfig --sendframe <frmType> <dstaddr> <bssid> <optIEDatalen> -+ <optIEData> -+ -+Command Parameters -+ { -+ A_UINT16 optIEDataLen; -+ A_UINT8 frmType; -+ A_UINT8 dstAddr[ATH_MAC_LEN]; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT8 optIEData[1]; -+ } WMI_OPT_TX_FRAME_CMD; -+ -+Command Values -+ <frmtype> = 1 Probe request frame -+ = 2 Probe response frame -+ = 3 CPPP start -+ = 4 CPPP stop -+ -+Reset Value -+ None defined -+ -+Restrictions -+ Send a special frame only when special mode is on. -+ -+===================================================================== -+ -+ -+Name -+ RECONNECT -+ -+Synopsis -+ This command requests a reconnection to a BSS to which the AR6000 device was -+ formerly connected -+ -+Command -+ TBD -+ -+Command Parameters -+ UINT16 channel Provides a hint as to which channel was -+ used for a previous connection -+ UINT8 bssid[6] If set, indicates which BSSID to connect to -+ -+Command Values -+ None -+ -+Reset Values -+ None -+ -+Restrictions -+ None -+ -+See Also -+ “CONNECT_CMD” -+ -+===================================================================== -+ -+ -+Name -+ RSSI_THRESHOLD_PARAMS -+ -+Synopsis -+ Configures how the AR6000 device monitors and reports signal strength (RSSI) of the -+ connected BSS, which is used as a link quality metric. The four RSSI threshold sets (in -+ dbM) of the host specification divide the signal strength range into six segments. -+ When signal strength increases or decreases across one of the boundaries, an -+ RSSI_THRESHOLD event is signaled to the host. The host may then choose to take -+ action (such as influencing roaming). -+ -+Command -+ wmiconfig eth1 --rssiThreshold <weight> <pollTime> -+ <above_threshold_val_1> ... <above_threshold_tag_6> -+ <above_threshold_val_6> -+ <below_threshold_tag_1> <below_threshold_val_1> ... -+ <below_threshold_tag_6> <below_threshold_val_6> -+ -+Command Parameters -+ UINT8 weight Range in [1, 16] used to calculate average RSSI -+ UINT32 pollTime RSSI (signal strength) sampling frequency in -+ seconds (if pollTime = 0, single strength -+ sampling is disabled) -+ USER_RSS__THOLD tholds[12] Thresholds (6 x 2) -+ -+Command Values -+ None defined -+ -+Reset Values -+ pollTime is 0, and sampling is disabled -+ -+Restrictions -+ Can only be issued if the AR6000 device is connected -+ -+ -+===================================================================== -+ -+Name -+ SCAN_PARAMS -+ -+Synopsis -+ The minact parameter determines the minimum active channel dwell time, within -+ which if the STA receives any beacon, it remains on that channel until the maxact -+ channel dwell time. If the STA does not receive a beacon within the minact dwell -+ time, it switches to scan the next channel. -+ -+Command -+ wmiconfig -scan -minact=<ms> --maxact=<ms> -+ -+Command Parameters -+ UINT16 maxact Channel dwell time (in ms), default = 0 -+ UINT16 minact Channel dwell time (in ms), default = 105 -+ -+Command Values -+ See channel parameters -+ -+Reset Values -+ None defined -+ -+Restrictions -+ The minact value should be greater than 0; maxact should be between 5–65535 ms -+ and greater than minact -+ -+===================================================================== -+ -+ -+Name -+ SET_ACCESS_PARAMS -+ -+Synopsis -+ Allows the host to set access parameters for the wireless network. A thorough -+ understanding of IEEE 802.11 is required to properly manipulate these parameters. -+ -+Command -+ wmiconfig eth1 --acparams --txop <limit> --cwmin <0-15> -+ --cwmax <0-15> --aifsn<0-15> -+ -+Command Parameters -+ UINT16 txop The maximum time (expressed in units of -+ 32 ms) the device can spend transmitting -+ after acquiring the right to transmit -+ UINT8 eCWmin Minimum contention window -+ UINT8 eCWmax Maximum contention window -+ UINT8 aifsn The arbitration inter-frame space number -+ -+Command Values -+ None -+ -+Reset Values -+ Reasonable defaults that vary, between endpoints (prioritized streams) -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_ADHOC_BSSID -+ -+Synopsis -+ Allows the host to set the BSSID for an ad hoc network. If a network with this BSSID -+ is not found, the target creates an ad hoc network with this BSSID after the connect -+ WMI command is triggered (e.g., by the SIOCSIWESSID IOCTL). -+ -+Command -+ wmiconfig eth1 --adhocbssid <bssid> -+ -+Command Parameters -+ A_UINT8 bssid[ATH_MAC_LEN] BSSID is specified in xx:xx:xx:xx:xx:xx format -+ -+Command Values -+ None -+ -+Reset Values -+ None -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_AKMP_PARAMS -+ -+Synopsis -+ Enables or disables multi PMKID mode. -+ -+Command -+ wmiconfig eth1 --setakmp --multipmkid=<on/off> -+ -+Command Parameters -+ typedef struct { -+ A_UINT32 akmpInfo; -+ } WMI_SET_AKMP_PARAMS_CMD; -+ -+Command Values -+ akmpInfo; -+ bit[0] = 0 -+ MultiPMKID mode is disabled and PMKIDs that -+ were set using the WMI_SET_PMKID_CMD are -+ used in the [Re]AssocRequest frame. -+ bit[0] = 1 -+ MultiPMKID mode is enabled and PMKIDs issued -+ by the WMI_SET_PMKID_LIST_CMD are used in -+ the next [Re]AssocRequest sent to the AP. -+ -+Reset Values -+ MultiPMKID mode is disabled -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_APPIE -+ -+Synopsis -+ Add an application-specified IE to a management frame. The maximum length is -+ 76 bytes. Including the length and the element ID, this translates to 78 bytes. -+ -+Command -+ wmiconfig --setappie <frame> <IE>, where: -+ -+ frame -+ One of beacon, probe, respon, assoc -+ -+ IE -+ A hex string beginning with DD (if = 0, no -+ IE is sent in the management frame) -+ -+Command Parameters -+ mgmtFrmType; -+ A WMI_MGMT_FRAME_TYPE -+ -+ ieLen; -+ Length of the IE to add to the GMT frame -+ -+Command Values -+ None -+ -+Reset Value -+ None defined -+ -+Restrictions -+ Supported only for the probe request and association request management frame -+types. Also, only one IE can be added per management frame type. -+ -+===================================================================== -+ -+ -+Name -+ SET_ASSOC_INFO -+ -+Synopsis -+ The host uses this command to specify any information elements (IEs) it wishes the -+ AR6000 device to add to all future association and reassociation requests. IEs must be -+ correct and are used as is by the device. IEs specified through this command are -+ cleared with a DISCONNECT. -+ -+Command -+ wmiconfig eth1 --setAssocIe <IE> -+ -+Command Parameters -+ UINT8 ieType Used directly in 802.11 frames -+ UINT8 bufferSize Size of assocInfo (in bytes) ranging from -+ 0–240. If = 0, previously set IEs are cleared. -+ UINT8 assocInfo[bufferSize] Used directly in 802.11 frames -+ -+Command Values -+ None -+ -+Reset Values -+ IEs are cleared -+ -+Restrictions -+ This command can only be issued in the DISCONNECTED state -+ -+===================================================================== -+ -+ -+Name -+ SET_AUTHMODE -+ -+Synopsis -+ Sets the 802.11 authentication mode of reconnection -+ -+Command -+ wmiconfig eth1 --setauthmode <mode> -+ -+Command Parameters -+ UINT8 mode -+ -+Command Values -+ mode = 0x00 Proceed with authentication during reconnect -+ = 0x01 Do not proceed with authentication during reconnect -+ -+Reset Values -+ Authentication -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_BEACON_INT -+ -+Synopsis -+ Sets the beacon interval for an ad hoc network. Beacon interval selection may have an -+ impact on power savings. To some degree, a longer interval reduces power -+ consumption but also decreases throughput. A thorough understanding of IEEE -+ 802.11 ad hoc networks is required to use this command effectively. -+ -+Command -+ wmiconfig eth1 --ibssconintv -+ -+Command Parameters -+ UINT16 beaconInterval Specifies the beacon interval in TU units (1024 ms) -+ -+Command Values -+ None -+ -+Reset Values -+ The default beacon interval is 100 TUs (102.4 ms) -+ -+Restrictions -+ This command can only be issued before the AR6000 device starts an ad hoc network -+ -+See Also -+ “SET_IBSS_PM_CAPS” -+ -+===================================================================== -+ -+ -+Name -+ SET_BIT_RATE -+ -+Synopsis -+ The host uses this command to set the AR6000 device to a specific fixed rate. -+ -+Command -+ wmiconfig eth1 --setfixrates <rate_0> ... <rate_n> -+ -+Command Parameters -+ INT8 rateIndex -+ A WMI_BIT_RATE value -+ { -+ RATE_AUTO = -1 -+ RATE_1Mb = 0 -+ RATE_2Mb = 1 -+ RATE_5_5M = 2 -+ RATE_11Mb = 3 -+ RATE_6Mb = 4 -+ RATE_9Mb = 5 -+ RATE_12Mb = 6 -+ RATE_18Mb = 7 -+ RATE_24Mb = 8 -+ RATE_36Mb = 9 -+ RATE_48Mb = 10 -+ RATE_54Mb = 11 -+ } WMI_BIT_RATE -+ -+ -+Command Values -+ See command parameters -+ -+Reset Values -+ The dynamic rate is determined by the AR6000 device -+ -+Restrictions -+ This command is intended for use only during development/debug; it is not -+intended for use in production -+ -+See Also -+ “GET_BIT_RATE” -+ -+===================================================================== -+ -+ -+Name -+ SET_BMISS_TIME -+ -+Synopsis -+ This command sets the beacon miss (BMISS) time, which the AR6000 hardware use -+ to recognize missed beacons. When an excessive number (15) of consecutive beacons -+ are missed, the AR6000 consider switching to a different BSS. The time can be -+ specified in number of beacons or in TUs. -+ -+Command(s) -+ wmiconfig eth1 --setbmissbeacons=<val> -+ wmiconfig eth1 --setbmisstime=<val> -+ -+Command Parameters -+ UINT16 bmissTime Specifies the beacon miss time -+ [1000...5000] in TUs (1024 ms) -+ UINT16 bmissbeacons Specifies the number of beacons [5...50] -+ -+Command Values -+ None -+ -+Reset Values -+ bmissTime is 1500 TUs (1536 ms) -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_BSS_FILTER -+ -+Synopsis -+ The host uses this to inform the AR6000 device of the types of networks about which -+ it wants to receive information from the “BSSINFO” event. As the device performs -+ either foreground or background scans, it applies the filter and sends “BSSINFO” -+ events only for the networks that pass the filter. If any of the bssFilter or the ieMask -+ filter matches, a BSS Info is sent to the host. The ieMask currently is used as a match -+ for the IEs in the beacons, probe reponses and channel switch action management -+ frame. See also “Scan and Roam” on page C-1. -+ -+ The BSS filter command has been enhanced to support IE based filtering. The IEs can -+ be specified as a bitmask through this command using this enum. -+ -+Command -+ wmiconfig eth1 –filter = <filter> --ieMask 0x<mask> -+ -+Command Parameters -+ UINT8 BssFilter -+ -+ Command Values -+ typedef struct { -+ A_UINT8 bssFilter; See WMI_BSS_FILTER -+ A_UINT32 ieMask; -+ } __ATTRIB_PACK WMI_BSS_FILTER_CMD; -+ -+ The ieMask can take this combination of values: -+ -+ enum { -+ BSS_ELEMID_CHANSWITCH = 0x01 -+ BSS_ELEMID_ATHEROS = 0x02, -+ } -+ -+Reply Value -+ None -+ -+Reset Value -+ BssFilter = NONE_BSS_FILTER (0) -+ -+Restrictions -+ None -+ -+See Also -+ “CONNECT_CMD” -+ -+===================================================================== -+ -+ -+Name -+ SET_BT_PARAMS -+ -+Synopsis -+ This command is used to set the status of a Bluetooth stream or set Bluetooth -+ coexistence register parameters. The stream may be an SCO or an A2DP stream and -+ its status can be started/stopped/suspended/resumed. -+ -+Command -+ wmiconfig –setBTparams <paramType> <params> -+ -+Command Parameters -+ struct { -+ union { -+ BT_PARAMS_SCO scoParams; -+ BT_PARAMS_A2DP a2dpParams; -+ BT_PARAMS_MISC miscParams; -+ BT_COEX_REGS regs; -+ } info; -+ A_UINT8 paramType; -+ struct { -+ A_UINT8 noSCOPkts; Number of SCO packets between consecutive PS-POLLs -+ A_UINT8 pspollTimeout; -+ A_UINT8 stompbt; -+ } BT_PARAMS_SCO; -+ struct { -+ A2DP BT stream parameters -+ A_UINT32 period; -+ A_UINT32 dutycycle; -+ A_UINT8 stompbt; -+ } BT_PARAMS_A2DP; -+ struct { -+ union { -+ WLAN_PROTECT_POLICY_TYPE protectParams; -+ A_UINT16 wlanCtrlFlags; -+ }info; -+ A_UINT8 paramType; -+ } BT_PARAMS_MISC; -+ struct { -+ BT coexistence registers values -+ A_UINT32 mode; Coexistence mode -+ A_UINT32 scoWghts; WLAN and BT weights -+ A_UINT32 a2dpWghts; -+ A_UINT32 genWghts; -+ A_UINT32 mode2; Coexistence mode2 -+ A_UINT8 setVal; -+ } BT_COEX_REGS; -+ -+Command Values -+ None defined -+ -+Reset Value -+ None -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_BT_STATUS -+ -+Synopsis -+ Sets the status of a Bluetooth stream. The stream may be a SCO or an A2DP stream -+ and its status can be started/stopped/suspended/resumed. -+ -+Command -+ wmiconfig –setBTstatus <streamType> <status> -+ -+Command Parameters -+ { -+ A_UINT8 streamType; Stream type -+ A_UINT8 status; Stream status -+ }WMI_SET_BT_STATUS_CMD; -+ -+Command Values -+ { -+ BT_STREAM_UNDEF = 0 -+ BT_STREAM_SCO -+ SCO stream -+ BT_STREAM_A2DP -+ A2DP stream -+ BT_STREAM_MAX -+ } BT_STREAM_TYPE; -+ -+ { -+ BT_STATUS_UNDEF = 0 -+ BT_STATUS_START -+ BT_STATUS_STOP -+ BT_STATUS_RESUME -+ BT_STATUS_SUSPEND -+ BT_STATUS_MAX -+ } BT_STREAM_STATUS; -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_CHANNEL_PARAMETERS -+ -+Synopsis -+ Configures various WLAN parameters related to channels, sets the wireless mode, -+ and can restrict the AR6000 device to a subset of available channels. The list of -+ available channels varies depending on the wireless mode and the regulatory -+ domain. The device never operates on a channel outside of its regulatory domain. The -+ device starts to scan the list of channels right after this command. -+ -+Command -+ wmiconfig eth1 --wmode <mode> <list> -+ -+Command Parameters -+ UINT8 phyMode See Values below. -+ UINT8 numberOfChannels -+ Number of channels in the channel array that -+ follows. If = 0, then the device uses all of the -+ channels permitted by the regulatory domain -+ and by the specified phyMode. -+ UINT16 channel[numberOfChannels] -+ Array listing the subset of channels (expressed -+ as frequencies in MHz) the host wants the -+ device to use. Any channel not permitted by -+ the specified phyMode or by the specified -+ regulatory domain is ignored by the device. -+ -+Command Values -+ phyMode = { -+ Wireless mode -+ 11a = 0x01 -+ 11g = 0x02 -+ 11ag = 0x03 -+ 11b = 0x04 -+ 11g only = 0x05 -+ } -+ -+Reset Values -+ phyMode -+ 11ag -+ 802.11a/g modules -+ 11g -+ 802.11g module -+ channels -+ Defaults to all channels permitted by the -+ current regulatory domain. -+ -+Restrictions -+ This command, if issued, should be issued soon after reset and prior to the first -+ connection. This command should only be issued in the DISCONNECTED state. -+ -+===================================================================== -+ -+ -+Name -+ SET_DISC_TIMEOUT -+ -+Synopsis -+ The host uses this command to configure the amount of time that the AR6000 should -+ spend when it attempts to reestablish a connection after losing link with its current -+ BSS. If this time limit is exceeded, the AR6000 send a “DISCONNECT” event. After -+ sending the “DISCONNECT” event the AR6000 continues to attempt to reestablish a -+ connection, but they do so at the interval corresponding to a foreground scan as -+ established by the “SET_SCAN_PARAMS” command. -+ -+ A timeout value of 0 indicates that the AR6000 will disable all autonomous roaming, -+ so that the AR6000 will not perform any scans after sending a “DISCONNECT” -+ event to the host. The state is maintained until a shutdown or host sets different -+ timeout value from 0. -+ -+Command -+ wmiconfig eth1 --disc=<timeout in seconds> -+ -+Command Parameters -+ UINT8 disconnectTimeout -+ Specifies the time limit (in seconds) after -+ which a failure to reestablish a connection -+ results in a “DISCONNECT” event -+ -+Command Values -+ None -+ -+Reset Values -+ disconnectTimeout is 10 seconds -+ -+Restrictions -+ This command can only be issued while in a DISCONNECTED state -+ -+===================================================================== -+ -+ -+Name -+ SET_FIXRATES -+ -+Synopsis -+ By default, the AR6000 device uses all PHY rates based on mode of operation. If the -+ host application requires the device to use subset of supported rates, it can set those -+ rates with this command. In 802.11g mode, the AR6000 device takes the entire -+ 802.11g basic rate set and the rates specified with this command and uses it as the -+ supported rate set. -+ -+ This rate set is advertised in the probe request and the assoc/re-assoc request as -+ supported rates. Upon successful association, the device modifies the rate set pool -+ using the: intersection of AP-supported rates with the union of the 802.11g basic rate -+ set and rates set using this command. The device picks transmission rates from this -+ pool based on a rate control algorithm. -+ -+Command -+ TBD -+ -+Command Parameters -+ A_UINT16 fixRateMask; -+ The individual bit is an index for rate table, -+ and setting the that index to 1 would set that -+ corresponding rate. E.g., fixRateMask = 9 -+ (1001) sets 1 Mbps and 11 Mbps. -+ -+Command Values -+ None -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+See Also -+ “GET_FIXRATES” -+ -+===================================================================== -+ -+ -+Name -+ SET_WHAL_PARAM -+ -+Synopsis -+ An internal AR6000 command that is used to set certain hardware parameters. The -+ description of this command is in $WORKAREA/include/halapi.h. -+ -+Command -+ TBD -+ -+Command Parameters -+ ATH_HAL_SETCABTO_CMDID -+ Sets the timeout waiting for the multicast -+ traffic after a DTIM beacon (in TUs). -+ -+Command Values -+ None -+ -+Reset Value -+ Default = 10 TUs -+ -+Restrictions -+ This command should be executed before issuing a connect command. -+ -+===================================================================== -+ -+ -+Name -+ SET_HOST_SLEEP_MODE -+ -+Synopsis -+ The host uses this command to set the host mode to asleep or awake. All packets are -+ delivered to the host when the host mode is awake. When host mode is asleep, only if -+ WoW is enabled and the incoming packet matches one of the specified WoW -+ patterns, will the packet be delivered to the host. The host will also be woken up by -+ the target for pattern-matching packets and important events. -+ -+Command -+ wmiconfig –sethostmode=<asleep/awake> -+ -+Command Parameters -+ A_BOOL awake Set the host mode to awake -+ A_BOOL asleep Set the host mode to asleep -+ -+Command Values -+ 1 = awake, 0 = asleep -+ -+Reset Value -+ None defined (default host mode is awake) -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ SET_IBSS_PM_CAPS -+ -+Synopsis -+ Used to support a non-standard power management scheme for an ad hoc wireless -+ network consisting of up to eight stations (STAs) that support this form of power -+ saving (e.g., Atheros-based STAs). A thorough understanding of IEEE 802.11 ad hoc -+ networks is required to use this command effectively. -+ -+Command -+ wmiconfig eth1 --ibsspmcaps --ps=<enable/disable> -+ --aw=<ATIM Windows in ms> -+ --ttl=<Time to live in number of beacon periods> -+ --to=<timeout in ms> -+ -+Command Parameters -+ UINT8 power_saving -+ = 0 -+ The non-standard power saving scheme is -+ disabled and maximum throughput (with no -+ power saving) is obtained. -+ -+ = 1 -+ Ad hoc power saving scheme is enabled (but -+ throughput may be decreased) -+ -+ UINT16 atim_windows -+ Specifies the length (in ms) of the ad hoc traffic -+ indication message (ATIM) windows used in an ad -+ hoc network. All Atheros-based STAs that join the -+ network use this duration ATIM window. -+ -+ The duration is communicated between wireless -+ STAs through an IE in beacons and probe responses. -+ -+ The host sets atim_windows to control trade-offs -+ between power use and throughput. The value -+ chosen should be based on the beacon interval (see -+ the “SET_BEACON_INT” command) on the -+ expected number of STAs in the IBSS, and on the -+ amount of traffic and traffic patterns between STAs. -+ -+ UINT16 timeout_value -+ Specifies the timeout (in ms). The value is the same -+ for all ad hoc connections, but tracks separately for -+ each. -+ -+ Applicable only for a beacon period and used to -+ derive actual timeout values on the Tx and Rx sides. -+ On the Tx side, the value defines a window during -+ which the STA accepts the frame(s) from the host for a -+ particular connection. Until closed, the window -+ restarts with every frame received from the host. On -+ the Rx side, indicates the time until which the STA -+ continues accepting frames from a particular -+ connection. The value resets with every frame -+ received. The value can be used to determine the -+ trade off between throughput and power. -+ Default = 10 ms -+ -+ UINT8 ttl -+ Specifies the value in number of beacon periods. The -+ value is used to set a limit on the time until which a -+ frame is kept alive in the AR6001 before being -+ discarded. Default = 5 -+ -+Command Values -+ None -+ -+Reset Values -+ By default, power_saving is enabled with atim_window = 20 ms -+ -+Restrictions -+ Can only be issued before the AR6000 starts an ad hoc network -+ -+See Also -+ “SET_BEACON_INT” -+ -+===================================================================== -+ -+ -+ -+Name -+ SET_LISTEN_INT -+ -+Synopsis -+ The host uses this command to request a listen interval, which determines how often -+ the AR6000 device should wake up and listen for traffic. The listen interval can be set -+ by the TUs or by the number of beacons. The device may not be able to comply with -+ the request (e.g., if the beacon interval is greater than the requested listen interval, the -+ device sets the listen interval to the beacon interval). The actual listen interval used -+ by the device is available in the “CONNECT” event. -+ -+Command -+ wmiconfig eth1 --listen=<#of TUs, can range from 15 to 3000> -+ -+ --listenbeacons=<#of beacons, can range from 1 to 50> -+ -+Command Parameters -+ UINT16 listenInterval -+ Specifies the listen interval in Kms -+ (1024 ms), ranging from 100 to 1000 -+ -+ UINT16 listenbeacons -+ Specifies the listen interval in beacons, -+ ranging from 1 to 50 -+ -+Command Values -+ None -+ -+Reset Values -+ The device sets the listen interval equal to the beacon interval of the AP it associates -+ to. -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_LPREAMBLE -+ -+Synopsis -+ Overrides the short preamble capability of the AR6000 device -+ -+Command -+ TBD -+ -+Command Parameters -+ WMI_LPREAMBLE_DISABLED -+ The device is short-preamble capable -+ -+ WMI_LPREAMBLE_ENABLED -+ The device supports only the long- -+ preamble mode -+ -+Command Values -+ None -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ SET_MAX_SP_LEN -+ -+Synopsis -+ Set the maximum service period; indicates the number of packets the AR6001 can -+ receive from the AP when triggered -+ -+Command -+ wmiconfig eth1 --setMaxSPLength <maxSPLen> -+ -+Command Parameters -+ UINT8 maxSPLen -+ An APSD_SP_LEN_TYPE value -+ -+Command Values -+ { -+ DELIVER_ALL_PKT = 0x0 -+ DELIVER_2_PKT = 0x1 -+ DELIVER_4_PKT = 0x2 -+ DELIVER_6_PKT = 0x3 -+ }APSD_SP_LEN_TYPE -+ -+ -+Reset Values -+ maxSPLen is DELIVER_ALL_PKT -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_OPT_MODE -+ -+Synopsis -+ Special feature, sets the special mode on/off -+ -+Command -+ wmiconfig eth1 --mode <mode> -+ Set the optional mode, where mode is special or off -+ -+Command Parameters -+ enum { -+ SPECIAL_OFF -+ SPECIAL_ON -+ } OPT_MODE_TYPE; -+ -+Command Values -+ -+Reset Value -+ Mode = Off -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_PMKID -+ -+Synopsis -+ The host uses this command to enable or disable a pairwise master key ID (PMKID) -+ in the AR6000 PMKID cache. The AR6000 clears its PMKID cache on receipt of a -+ DISCONNECT command from the host. Individual entries in the cache might be -+ deleted as the AR6000 detect new APs and decides to remove old ones. -+ -+Command -+ wmiconfig eth1 --setbsspmkid --bssid=<aabbccddeeff> -+ --bsspmkid=<pmkid> -+ -+Command Parameters -+ UINT8 bssid[6] -+ The MAC address of the AP that the -+ PMKID corresponds to (6 bytes in hex -+ format) -+ -+ UINT8 enable -+ Either PMKID_DISABLE (0) to disable -+ the PMKID or PMKID_ENABLE (1) to -+ enable it (16 bytes in hex format) -+ -+ UINT8 pmkid[16] -+ Meaningful only if enable is -+ PMKID_ENABLE, when it is the PMKID -+ that the AR6000 should use on the next -+ reassociation with the specified AP -+ -+Command Values -+ enable -+ = 0 (disable), 1 (enable) -+ PKMID enabled/disabled -+ -+Reset Values -+ None defined -+ -+Restrictions -+ Only supported in infrastructure networks -+ -+===================================================================== -+ -+ -+Name -+ SET_PMKID_LIST_CMD -+ -+Synopsis -+ Configures the list of PMKIDs on the firmware. -+ -+Command -+ wmiconfig --setpmkidlist --numpmkid=<n> --pmkid=<pmkid_1> -+ ... --pmkid=<pmkid_n> -+ -+ Where n is the number of pmkids (maximum = 8) and pmkid_i is the ith pmkid (16 -+ bytes in hex format) -+ -+Command Parameters -+ { -+ A_UINT8 pmkid[WMI_PMKID_LEN]; -+ } __ATTRIB_PACK WMI_PMKID; -+ -+ { -+ A_UINT32 numPMKID; -+ WMI_PMKID pmkidList[WMI_MAX_PMKID_CACHE]; -+ } __ATTRIB_PACK WMI_SET_PMKID_LIST_CMD; -+ -+Command Values -+ None -+ -+Reset Values -+ None -+ -+Restrictions -+ Supported only in infrastructure modes -+ -+===================================================================== -+ -+ -+Name -+ SET_POWER_MODE -+ -+Synopsis -+ The host uses this command to provide the AR6000 device with guidelines on the -+ desired trade-off between power utilization and performance. -+ -+ In normal power mode, the device enters a sleep state if they have nothing to do, -+ which conserves power but may cost performance as it can take up to 2 ms to -+ resume operation after leaving sleep state. -+ -+ In maximum performance mode, the device never enters sleep state, thus no time -+ is spent waking up, resulting in higher power consumption and better -+ performance. -+ -+Command -+ TBD -+ -+Command Parameters -+ UINT8 powerMode -+ WMI_POWER_MODE value -+ { -+ REC_POWER = 1 -+ (Recommended setting) Tries to conserve -+ power without sacrificing performance -+ MAX_PERF_POWER = 2 -+ Setting that maximizes performance at -+ the expense of power -+ -+ All other values are reserved -+ } WMI_POWER_MODE -+ -+Command Values -+ See command parameters -+ -+Reset Values -+ powerMode is REC_POWER -+ -+Restrictions -+ This command should only be issued in the DISCONNECTED state for the -+ infrastructure network. -+ -+ For a PM-disabled ad hoc network, the power mode should remain in -+ MAX_PERF_POWER. -+ -+ For a PM-enabled ad hoc network, the device can have REC_POWER or -+ MAX_PERF_POWER set, but either way it must follow the power save ad hoc -+ protocol. The host can change power modes in the CONNECTED state. -+ -+ Host changes to the PS setting when the STA is off the home channel take no effect -+ and cause a TARGET_PM_FAIL event. -+ -+===================================================================== -+ -+ -+Name -+ SET_POWER_PARAMS -+ -+Synopsis -+ The host uses this command to configure power parameters -+ -+Command -+ wmiconfig eth1 --pmparams --it=<ms> --np=<number of PS POLL> -+ --dp=<DTIM policy: ignore/normal/stick> -+ -+Command Parameters -+ UINT16 idle_period -+ Length of time (in ms) the AR6000 device -+ remains awake after frame Rx/Tx before going -+ to SLEEP state -+ -+ UINT16 pspoll_number -+ The number of PowerSavePoll (PS-poll) -+ messages the device should send before -+ notifying the AP it is awake -+ -+ UINT16 dtim_policy -+ A WMI_POWER_PARAMS_CMD value -+ -+ { -+ IGNORE_DTIM =1 -+ The device does not listen to any content after -+ beacon (CAB) traffic -+ NORMAL_DTIM = 2 -+ DTIM period follows the listen interval (e.g., if -+ the listen interval is 4 and the DTIM period is 2, -+ the device wakes up every fourth beacon) -+ STICK_DTIM = 3 -+ Device attempt to receive all CAB traffic (e.g., if -+ the DTIM period is 2 and the listen interval is 4, -+ the device wakes up every second beacon) -+ } WMI_POWER_PARAMS_CMD -+ -+Command Parameters -+ See command parameters -+ -+Reset Values -+ idle_period -+ 200 ms -+ -+ pspoll_number -+ = 1 -+ -+ dtim_policy -+ = NORMAL_DTIM -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_POWERSAVE_PARAMS -+ -+Synopsis -+ Set the two AR6000 power save timers (PS-POLL timer and APSD trigger timer) and -+ the two ASPD TIM policies -+ -+Command -+ wmiconfig eth1--psparams --psPollTimer=<psPollTimeout in ms> -+ --triggerTimer=<triggerTimeout in ms> --apsdTimPolicy=<ignore/ -+ adhere> --simulatedAPSDTimPolicy=<ignore/adhere> -+ -+Command Parameters -+ typedef struct { -+ A_UINT16 psPollTimeout; -+ Timeout (in ms) after sending PS-POLL; the -+ AR6000 device sleeps if it does not receive a -+ data packet from the AP -+ -+ A_UINT16 triggerTimeout; -+ Timeout (in ms) after sending a trigger; the -+ device sleeps if it does not receive any data -+ or null frame from the AP -+ -+ APSD_TIM_POLICY apsdTimPolicy; -+ TIM behavior with queue APSD enabled -+ -+ APSD_TIM_POLICY simulatedAPSD -+ -+ TimPolicy; -+ TIM behavior with simulated APSD -+ enabled -+ -+ typedef enum { -+ IGNORE_TIM_ALL_QUEUES_APSD = 0, -+ PROCESS_TIM_ALL_QUEUES_APSD = 1, -+ IGNORE_TIM_SIMULATED_APSD = 2, -+ POWERSAVE_TIMERS_POLICY = 3, -+ } APSD_TIM_POLICY; -+ -+Command Values -+ None -+ -+Reset Values -+ psPollTimeout is 50 ms; triggerTimeout is 10 ms; -+ apsdTimPolicy = IGNORE_TIM_ALL_QUEUES_APSD; -+ simulatedAPSDTimPolicy = POWERSAVE_TIMERS_POLICY -+ -+Restrictions -+ When this command is used, all parameters must be set; this command does not -+ allow setting only one parameter. -+ -+===================================================================== -+ -+ -+Name -+ SET_PROBED_SSID -+ -+Synopsis -+ The host uses this command to provide a list of up to MAX_PROBED_SSID_INDEX -+ (six) SSIDs that the AR6000 device should actively look for. It lists the active SSID -+ table. By default, the device actively looks for only the SSID specified in the -+ “CONNECT_CMD” command, and only when the regulatory domain allows active -+ probing. With this command, specified SSIDs are probed for, even if they are hidden. -+ -+Command -+ wmiconfig eth1 --ssid=<ssid> [--num=<index>] -+ -+Command Parameters -+ { -+ A_UINT8 numSsids -+ A number from 0 to -+ MAX_PROBED_SSID_INDEX indicating -+ the active SSID table entry index for this -+ command (if the specified entry index -+ already has an SSID, the SSID specified in -+ this command replaces it) -+ -+ WMI_PROBED_SSID_INFO probedSSID[1] -+ } WMI_PROBED_SSID_CMD -+ -+ { -+ A_UINT8 flag -+ WMI_SSID_FLAG indicates the current -+ entry in the active SSID table -+ A_UINT8 ssidLength -+ Length of the specified SSID in bytes. -+ If = 0, the entry corresponding to the -+ index is erased -+ A_UINT8 ssid[32] -+ SSID string actively probed for when -+ permitted by the regulatory domain -+ } WMI_PROBED_SSID_INFO -+ -+Command Values -+ WMI_SSID_FLAG -+ { -+ DISABLE_SSID_FLAG = 0 -+ Disables entry -+ SPECIFIC_SSID_FLAG = 1 -+ Probes specified SSID -+ ANY_SSID_FLAG = 2 -+ Probes for any SSID -+ } WMI_SSID_FLAG -+ -+Reset Value -+ The entries are unused. -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_REASSOC_MODE -+ -+Synopsis -+ Specify whether the disassociated frame should be sent or not upon reassociation. -+ -+Command -+ wmiconfig eth1 --setreassocmode <mode> -+ -+Command Parameters -+ UINT8 mode -+ -+Command Values -+ mode -+ = 0x00 -+ Send disassoc to a previously connected AP -+ upon reassociation -+ = 0x01 -+ Do not send disassoc to previously connected -+ AP upon reassociation -+ -+Reset Values -+ None defined -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ SET_RETRY_LIMITS -+ -+Synopsis -+ Allows the host to influence the number of times that the AR6000 device should -+ attempt to send a frame before they give up. -+ -+Command -+ wmiconfig --setretrylimits <frameType> <trafficClass> <maxRetries> -+ <enableNotify> -+ -+Command Parameters -+ { -+ UINT8 frameType -+ A WMI_FRAMETYPE specifying -+ which type of frame is of interest. -+ UINT8 trafficClass -+ Specifies a traffic class (see -+ “CREATE_PSTREAM”). This -+ parameter is only significant when -+ frameType = DATA_FRAMETYPE. -+ UINT8 maxRetries -+ Maximum number of times the -+ device attempts to retry a frame Tx, -+ ranging from WMI_MIN_RETRIES -+ (2) to WMI_MAX_RETRIES (15). If -+ the special value 0 is used, -+ maxRetries is set to 15. -+ A_UINT8 enableNotify -+ Notify when enabled -+ } WMI_RETRY_LIMIT_INFO -+ -+ { -+ A_UINT8 numEntries -+ WMI_RETRY_LIMIT_INFO retryLimitInfo[1] -+ } WMI_SET_RETRY_LIMITS_CMD -+ -+Command Values -+ { -+ MGMT_FRAMETYPE = 0 Management frame -+ CONTROL_FRAMETYPE = 1 Control frame -+ DATA_FRAMETYPE = 2 Data frame -+ } WMI_FRAMETYPE -+ -+Reset Values -+ Retries are set to 15 -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_ROAM_CTRL -+ -+Synopsis -+ Affects how the AR6000 device selects a BSS. The host uses this command to set and -+ enable low RSSI scan parameters. The time period of low RSSI background scan is -+ mentioned in scan period. Low RSSI scan is triggered when the current RSSI -+ threshold (75% of current RSSI) is equal to or less than scan threshold. -+ -+ Low RSSI roam is triggered when the current RSSI threshold falls below the roam -+ threshold and roams to a better AP by the end of the scan cycle. During Low RSSI -+ roam, if the STA finds a new AP with an RSSI greater than roam RSSI to floor, during -+ scan, it roams immediately to it instead of waiting for the end of the scan cycle. See -+ also “Scan and Roam” on page C-1. -+ -+Command -+ wmiconfig --roam <roamctrl> <info>, where info is <scan period> -+ <scan threshold> <roam threshold> <roam rssi floor> -+ -+Command Parameters -+ A_UINT8 roamCtrlType; -+ -+Command Values -+ WMI_FORCE_ROAM = 1 -+ Roam to the specified BSSID -+ -+ WMI_SET_ROAM_MODE = 2 -+ Default, progd bias, no roam -+ -+ WMI_SET_HOST_BIAS = 3 -+ Set the host bias -+ -+ WMI_SET_LOWRSSI_SCAN_PARAMS = 4 -+ Info parameters -+ -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ WMI_FORCE_ROAM -+ -+ A_UINT8 roamMode; -+ WMI_SET_ROAM_MODE -+ -+ A_UINT8 bssBiasInfo; -+ WMI_SET_HOST_BIAS -+ -+ A_UINT16 lowrssi_scan_period; -+ WMI_SET_LOWRSSI_SCAN_PARAMS -+ -+ A_INT16 -+ lowrssi_scan_threshold; -+ WMI_SET_LOWRSSI_SCAN_PARAMS -+ -+ A_INT16 lowrssi_roam_threshold; -+ WMI_SET_LOWRSSI_SCAN_PARAMS -+ -+ A_UINT8 roam_rssi_floor; -+ WMI_SET_LOWRSSI_SCAN_PARAMS -+ -+Reset Value -+ None defined (default lowrssi scan is disabled. Enabled only when scan period is set.) -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_RTS -+ -+Synopsis -+ Decides when RTS should be sent. -+ -+Command -+ wmiconfig eth1 --setRTS <pkt length threshold> -+ -+Command Parameters -+ A_UINT16 -+ threshold; -+ Command parameter threshold in bytes. An RTS is -+ sent if the data length is more than this threshold. -+ The default is to NOT send RTS. -+ -+Command Values -+ None -+ -+Reset Value -+ Not to send RTS. -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ SET_SCAN_PARAMS -+ -+Synopsis -+ The host uses this command to set the AR6000 scan parameters, including the duty -+ cycle for both foreground and background scanning. Foreground scanning takes -+ place when the AR6000 device is not connected, and discovers all available wireless -+ networks to find the best BSS to join. Background scanning takes place when the -+ device is already connected to a network and scans for potential roaming candidates -+ and maintains them in order of best to worst. A second priority of background -+ scanning is to find new wireless networks. -+ -+ The device initiates a scan when necessary. For example, a foreground scan is always -+ started on receipt of a “CONNECT_CMD” command or when the device cannot find -+ a BSS to connect to. Foreground scanning is disabled by default until receipt of a -+ CONNECT command. Background scanning is enabled by default and occurs every -+ 60 seconds after the device is connected. -+ -+ The device implements a binary backoff interval for foreground scanning when it -+ enters the DISCONNECTED state after losing connectivity with an AP or when a -+ CONNECT command is received. The first interval is ForegroundScanStartPeriod, -+ which doubles after each scan until the interval reaches ForegroundScanEndPeriod. -+ If the host terminates a connection with DISCONNECT, the foreground scan period -+ is ForegroundScanEndPeriod. All scan intervals are measured from the time a full -+ scan ends to the time the next full scan starts. The host starts a scan by issuing a -+ “START_SCAN” command. See also “Scan and Roam” on page C-1. -+ -+Command -+ wmiconfig eth1 --scan --fgstart=<sec> --fgend=<sec> --bg=<sec> -- -+ act=<msec> --pas=<msec> --sr=<short scan ratio> --scanctrlflags -+ <connScan> <scanConnected> <activeScan> <reportBSSINFO> -+ -+Command Parameters -+ UINT16 fgStartPeriod -+ First interval used by the device when it -+ disconnects from an AP or receives a -+ CONNECT command, specified in seconds (0– -+ 65535). If = 0, the device uses the reset value. -+ If = 65535, the device disables foreground -+ scanning. -+ -+ UINT16 fgEndPeriod -+ The maximum interval the device waits between -+ foreground scans specified in seconds (from -+ ForegroundScanStartPeriod to 65535). If = 0, the -+ device uses the reset value. -+ -+ UINT16 bgScanPeriod -+ The period of background scan specified in -+ seconds (0–65535). By default, it is set to the reset -+ value of 60 seconds. If 0 or 65535 is specified, the -+ device disables background scanning. -+ -+ UINT16 maxactChDwellTime -+ The period of time the device stays on a -+ particular channel while active scanning. It is -+ specified in ms (10–65535). If the special value of -+ 0 is specified, the device uses the reset value. -+ -+ UINT16 PasChDwellTime -+ The period of time the device remains on a -+ particular channel while passive scanning. It is -+ specified in ms (10–65535). If the special value of -+ 0 is specified, the device uses the reset value. -+ -+ UINT8 shortScanRatio -+ Number of short scans to perform for each -+ long scan. -+ -+ UINT8 scanCtrlFlasgs -+ -+ UINT16 minactChDwellTime -+ Specified in ms -+ -+ UINT32 maxDFSchActTime -+ The maximum time a DFS channel can stay -+ active before being marked passive, specified in -+ ms. -+ -+Command Values -+ None -+ -+Reset Values -+ ForegroundScanStart -+Period -+ 1 sec -+ -+ ForegroundScanEndPeriod -+ 60 sec -+ -+ BackgroundScanPeriod -+ 60 sec -+ -+ ActiveChannelDwellTime -+ 105 ms -+ -+===================================================================== -+ -+ -+Name -+ SET_TKIP_COUNTERMEASURES -+ -+Synopsis -+ The host issues this command to tell the target whether to enable or disable TKIP -+ countermeasures. -+ -+Command -+ TBD -+ -+Command Parameters -+ UINT8 WMI_TKIP_CM_ENABLE -+ Enables the countermeasures -+ -+ -+ UINT8 TKIP_CM_DISABLE -+ Disables the countermeasures -+ -+Command Values -+ None -+ -+Reset Values -+ By default, TKIP MIC reporting is disabled -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_TX_PWR -+ -+Synopsis -+ The host uses this command to specify the Tx power level of the AR6000. Cannot be -+ used to exceed the power limit permitted by the regulatory domain. The maximum -+ output power is limited in the chip to 31.5 dBm; the range is 0 – 31.5 dbm. -+ -+Command -+ wmiconfig --power <dbM> -+ -+Command Parameters -+ UINT8 dbM -+ The desired Tx power specified in dbM. -+ If = 0, the device chooses the maximum -+ permitted by the regulatory domain. -+ -+Command Values -+ None -+ -+Reset Values -+ The maximum permitted by the regulatory domain -+ -+Restrictions -+ None -+ -+See Also -+ “GET_TX_PWR” -+ -+ -+===================================================================== -+ -+Name -+ SET_VOICE_PKT_SIZE -+ -+Synopsis -+ If an AP does not support WMM, it has no way to differentiate voice from data. -+ Because the voice packet is typically small, packet in size less than voicePktSize are -+ assumed to be voice, otherwise it is treated as data. -+ -+Command -+ wmiconfig eth1 --setVoicePktSize <size-in-bytes> -+ -+Command Parameters -+ UINT16 voicePktSize -+ Packet size in octets -+ -+Command Values -+ None -+ -+Reset Values -+ voicePktSize default is 400 bytes -+ -+Restrictions -+ No effect if WMM is unavailable -+ -+ -+===================================================================== -+ -+Name -+ SET_WMM -+ -+Synopsis -+ Overrides the AR6000 device WMM capability -+ -+Command -+ wmiconfig eth1 --setwmm <enable> -+ -+Command Parameters -+ WMI_WMM_ENABLED -+ Enables WMM -+ -+ WMI_WMM_DISABLED -+ Disables WMM support -+ -+Command Values -+ 0 = disabled -+ 1 = enabled -+ -+Reset Value -+ WMM Disabled -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ SET_WMM_TXOP -+ -+Synopsis -+ Configures TxOP Bursting when sending traffic to a WMM capable AP -+ -+Command -+ wmiconfig eth1 --txopbursting <burstEnable> -+ -+ <burstEnable> -+ = 0 -+ Disallow TxOp bursting -+ -+ = 1 -+ Allow TxOp bursting -+ -+Command Parameters -+ txopEnable -+ = WMI_TXOP_DISABLED -+ Disabled -+ -+ = WMI_TXOP_ENABLED -+ Enabled -+ -+Command Values -+ txopEnable -+ = 0 Disabled -+ -+ = 1 Enabled -+ -+Reset Value -+ Bursting is off by default -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ SET_WOW_MODE -+ -+Synopsis -+ The host uses this command to enable or disable the WoW mode. When WoW mode -+ is enabled and the host is asleep, pattern matching takes place at the target level. -+ Only packets that match any of the pre-specified WoW filter patterns, will be passed -+ up to the host. The host will also be woken up by the target. Packets which do not -+ match any of the WoW patterns are discarded. -+ -+Command -+ wmiconfig –setwowmode <enable/disable> -+ -+Command Parameters -+ A_BOOL enable_wow -+ Enable or disable WoW: -+ -+Command Values -+ = 0 -+ Disable WoW -+ -+ = 1 -+ Enable WoW -+ -+Reset Value -+ None defined (default WoW mode is disabled). -+ -+Restrictions -+ None -+ -+See Also -+ “GET_WOW_LIST” -+ -+ -+===================================================================== -+ -+Name -+ SET_WSC_STATUS -+ -+Synopsis -+ The supplicant uses this command to inform the target about the status of the WSC -+ registration protocol. During the WSC registration protocol, a flag is set so the target -+ bypasses some of the checks in the CSERV module. At the end of the registration, this -+ flag is reset. -+ -+Command -+ N/A -+ -+Command Parameters -+ A_BOOL status -+ = 1 WSC registration in progress -+ = 0 WSC protocol not running -+ -+Reply Parameters -+ None -+ -+Reset Value -+ None defined (default = 0) -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ SNR_THRESHOLD_PARAMS -+ -+Synopsis -+ Configures how the AR6000 device monitors and reports SNR of the connected BSS, -+ used as a link quality metric. -+ -+Command -+ --snrThreshold <weight> <upper_threshold_1> ... -+ <upper_threshold_4> <lower_threshold_1> ... <lower_threshold_4> -+ <pollTimer> -+ -+Command Parameters -+ <weight> -+ Share with rssiThreshold. Range in [1, 16], used -+ in the formula to calculate average RSSI -+ -+ <upper_threshold_x> -+ Above thresholds expressed in db, in ascending -+ order -+ -+ <lower_threshold_x> -+ Below thresholds expressed in db, in ascending -+ order -+ -+ <pollTimer> -+ The signal strength sampling frequency in -+ seconds. If polltime = 0, signal strength -+ sampling is disabled -+ -+Command Values -+ None -+ -+Reset Value -+ None defined -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ START_SCAN -+ -+Synopsis -+ The host uses this command to start a long or short channel scan. All future scans are -+ relative to the time the AR6000 device processes this command. The device performs -+ a channel scan on receipt of this command, even if a scan was already in progress. -+ The host uses this command when it wishes to refresh its cached database of wireless -+ networks. The isLegacy field will be removed (0 for now) because it is achieved by -+ setting CONNECT_PROFILE_MATCH_DONE in the CONNECT command. See also -+ “Scan and Roam” -+ -+Command -+ wmiconfig eth1 --startscan <scan type> <forcefgscan> 0 -+ <homeDwellTime> <forceScanInterval> -+ -+Command Parameters -+ UINT8 scanType -+ WMI_SCAN_TYPE -+ -+Command Values -+ { -+ WMI_LONG_SCAN =0x0 -+ Requests a full scan -+ WMI_SHORT_SCAN =0x1 -+ Requests a short scan -+ } WMI_SCAN_TYPE -+ -+ A_BOOL forceFgScan -+ forceFgScan -+ = 0 -+ Disable the foreground scan -+ -+ forceFgScan -+ = 1 -+ Forces a foreground scan -+ -+ A_UINT32 homeDwellTime -+ Maximum duration in the home -+ channel (in ms) -+ -+ A_UINT32 forceScanInterval -+ Time interval between scans (in ms) -+ -+ A_UINT32 scanType -+ WMI_SCAN_TYPE -+ -+Reset Value -+ Disable forcing foreground scan -+ -+Restrictions -+ isLegacy field will no longer be supported (pass as 0 for now) -+ -+ -+===================================================================== -+ -+Name -+ SYNCHRONIZE -+ -+Synopsis -+ The host uses this command to force a synchronization point between the command -+ and data paths -+ -+Command -+ TBD -+ -+Command Parameters -+ None -+ -+ -+ -+Command Values -+ None -+ -+ -+ -+Reset Values -+ None -+ -+ -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ TARGET_ERROR_REPORT_BITMASK -+ -+Synopsis -+ Allows the host to control “ERROR_REPORT” events from the AR6000 device. -+ -+ If error reporting is disabled for an error type, a count of errors of that type is -+ maintained by the device. -+ -+ If error reporting is enabled for an error type, an “ERROR_REPORT” event is -+ sent when an error occurs and the error report bit is cleared. -+ -+ Error counts for each error type are available through the “GET_TARGET_STATS” -+ command. -+ -+Command -+ wmiconfig eth1 --setErrorReportingBitmask -+ -+Command Parameters -+ UINT32 bitmask -+ Represents the set of -+ WMI_TARGET_ERROR_VAL error types -+ enabled for reporting -+ -+Command Values -+ { -+ WMI_TARGET_PM_ERR_FAIL = 0x00000001 -+ Power save fails (only two cases): -+ Retry out of null function/QoS null -+ function to associated AP for PS -+ indication' -+ Host changes the PS setting when -+ STA is off home channel -+ -+ WMI_TARGET_KEY_NOT_FOUND = 0x00000002 -+ No cipher key -+ WMI_TARGET_DECRYPTION_ERR = 0x00000004 -+ Decryption error -+ WMI_TARGET_BMISS = 0x00000008 -+ Beacon miss -+ WMI_PSDISABLE_NODE_JOIN = 0x00000010 -+ A non-PS-enabled STA joined the -+ PS-enabled network -+ WMI_TARGET_COM_ERR = 0x00000020 -+ Host/target communication error -+ WMI_TARGET_FATAL_ERR = 0x00000040 -+ Fatal error -+ } WMI_TARGET_ERROR_VAL -+ -+Reset Values -+ Bitmask is 0, and all error reporting is disabled -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+WMI Events -+ -+Event -+ Description -+ Page -+ -+ -+BSSINFO -+ Contains information describing BSSs collected during a scan -+ -+CAC_EVENTID -+ Indicates signalling events in admission control -+ -+CMDERROR -+ The AR6000 device encounters an error while attempting to process -+ a command -+ -+CONNECT -+ The device has connected to a wireless network -+ -+DISCONNECT -+ The device lost connectivity with a wireless network -+ -+ERROR_REPORT -+ An error has occurred for which the host previously requested -+ notification with the command -+ “TARGET_ERROR_REPORT_BITMASK” -+ -+EXTENSION -+ WMI extension event -+ -+GET_PMKID_LIST_EVENT -+ Created in response to a “GET_PMKID_LIST_CMD” command -+ -+GET_WOW_LIST_EVENT -+ Response to the wmiconfig “GET_WOW_LIST” command to -+ retrieve the configured WoW patterns -+ -+NEIGHBOR_REPORT -+ Neighbor APs that match the current profile were detected -+ -+OPT_RX_FRAME_EVENT -+ (Special feature) informs the host of the reception of a special frame -+ -+PSTREAM_TIMEOUT -+ A prioritized stream has been idle for a specified interval -+ -+READY -+ The AR6000 device is ready to accept commands -+ -+REGDOMAIN -+ The regulatory domain has changed -+ -+REPORT_ROAM_DATA_EVENT -+ Reports the roam time calculations made by the device -+ (generated with a special build) -+ — -+ -+REPORT_STATISTICS -+ Reply to a “GET_TARGET_STATS” command -+ -+ROAM_TBL_EVENT -+ Reports the roam table -+ -+RSSI_THRESHOLD -+ Signal strength from the connected AP has crossed the threshold -+ defined in the “RSSI_THRESHOLD_PARAMS” command -+ -+SCAN_COMPLETE_EVENT -+ A scan has completed (added status SCAN_ABORTED in release 2.0) -+ -+TEST_EVENT -+ Event generated by the TCMD -+ -+TKIP_MICERROR -+ TKIP MIC errors were detected -+ -+===================================================================== -+ -+Name -+ BSSINFO -+ -+Synopsis -+ Contains information describing one or more BSSs as collected during a scan. -+ Information includes the BSSID, SSID, RSSI, network type, channel, supported rates, -+ and IEs. BSSINFO events are sent only after the device receives a beacon or probe- -+ response frame that pass the filter specified in the “SET_BSS_FILTER” command. -+ BSSINFO events consist of a small header followed by a copy of the beacon or probe -+ response frame. The 802.11 header is not present. For formats of beacon and probe- -+ response frames please consult the IEEE 802.11 specification. -+ -+ The beacons or probe responses containing the IE specified by the -+ WMI_BSS_FILTER_CMD are passed to the host through the -+ WMI_BSSINFO_EVENT. The event carries a 32-bit bitmask that indicates the IEs that -+ were detected in the management frame. The frame type field has been extended to -+ indicate action management frames. This would be helpful to route these frames -+ through the same event mechanism as used by the beacon processing function. -+ -+ If the bssFilter in the SET_BSS_FILTER matches, then the ieMask is not relevant -+ because the BSSINFO event is sent to the host. If the bssFilter doesnot match in the -+ beacons/probe respones, then the ieMask match dictates whether the BSSINFO -+ event is sent to the host. In the case of action management frames, the ieMask is the -+ filter that is applied. -+ -+Event ID -+ 0x1004 -+ -+Event Parameters -+ typedef struct { -+ A_UINT16 channel; -+ Specifies the frequency (in MHz) where the -+ frame was received -+ A_UINT8 frameType; -+ A WMI_BI_FTYPE value -+ A_UINT8 snr; -+ A_INT16 rssi; -+ Indicates signal strength -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ A_UINT32 ieMask; -+ } _ATTRIB_PACK_WMI_BSS_INFO_HDR; -+ -+ Beacon or Probe Response Frame -+ -+Event Values -+ { -+ BEACON_FTYPE = 0x1 -+ Indicates a beacon frame -+ PROBERESP_FTYPE -+ Indicates a probe response frame -+ ACTION_MGMT_FTYPE -+ } WMI_BI_FTYPE -+ -+===================================================================== -+ -+Name -+ CAC_EVENTID -+ -+Synopsis -+ Indicates signalling events in admission control. Events are generated when -+ admission is accepted, rejected, or deleted by either the host or the AP. If the AP does -+ not respond to an admission request within a timeout of 500 ms, an event is -+ generated to the host. -+ -+Event ID -+ 0x1011 -+ -+Event Parameters -+ UINT8 -+ ac -+ Access class pertaining to the -+signalling -+ -+ UINT8 cac_indication -+ Type of indication; indications are -+ listed in WMI_CAC_INDICATION -+ -+ UINT8 statusCode -+ AP response status code for a -+ request -+ -+ UINT8 tspecSuggestion[63] -+ Suggested TSPEC from AP -+ -+Event Values -+ { -+ CAC_INDICATION_ADMISSION = 0x00 -+ CAC_INDICATION_ADMISSION_RESP = 0x01 -+ CAC_INDICATION_DELETE = 0x02 -+ CAC_INDICATION_NO_RESP = 0x03 -+ } WMI_CAC_INDICATION -+ -+ -+===================================================================== -+ -+ -+Name -+ CMDERROR -+ -+Synopsis -+ Indicates that the AR6000 device encountered an error while attempting to process a -+ command. This error is fatal and indicates that the device requires a reset. -+ -+Event ID -+ 0x1005 -+ -+Event Parameters -+ UINT16 commandId -+ Corresponds to the command which generated -+ the error -+ UINT8 errorCode -+ A WMI_ERROR_CODE value -+ -+Event Values -+ { -+ INVALID_PARAM = 1 -+ Invalid parameter -+ ILLEGAL_STATE = 2 -+ Illegal state -+ INTERNAL_ERROR = 3 -+ Internal Error -+ All other values reserved -+ } WMI_ERROR_CODE -+ -+ -+===================================================================== -+ -+ -+Name -+ CONNECT -+ -+Synopsis -+ Signals that the AR6000 connected to a wireless network. Connection occurs due to a -+ “CONNECT” command or roaming to a new AP. For infrastructure networks, shows -+ that the AR6000 successfully performed 802.11 authentication and AP association. -+ -+Event ID -+ 0x1002 -+ -+Event Parameters -+ UINT16 channel -+ Channel frequency (in MHz) of the network the -+ AR6000 are connected to -+ -+ UINT8 bssid[6] -+ MAC address of the AP the AR6000 are -+ connected to or the BSSID of the ad hoc -+ network -+ -+ UINT16 listenInterval -+ Listen interval (in Kms) that the AR6000 are -+ using -+ -+ UINT 8 beaconIeLen -+ Length (in bytes) of the beacon IEs -+ -+ UINT8 assocInfo -+ Pointer to an array containing beacon IEs, -+ followed first by association request IEs then by -+ association response IEs -+ -+ UINT8 assocReqLen -+ Length (in bytes) of the assocReqIEs array -+ -+ UINT8 assocRespLen -+ Length (in bytes) of the assocRespIEs array -+ -+Event Values -+ None defined -+ -+===================================================================== -+ -+ -+Name -+ DISCONNECT -+ -+Synopsis -+ Signals that the AR6000 device lost connectivity with the wireless network. -+ DISCONENCT is generated when the device fails to complete a “CONNECT” -+ command or as a result of a transition from a connected state to disconnected state. -+ -+ After sending the “DISCONNECT” event the device continually tries to re-establish -+ a connection. A LOST_LINK occurs when STA cannot receive beacons within the -+ specified time for the SET_BMISS_TIME command. -+ -+Event ID -+ 0x1003 -+ -+Event Parameters -+ UINT8 disconnect -+ Reason -+ A WMI_DISCONNECT_REASON value -+ -+ UINT8 bssid[6] -+ Indicates which BSS the device was connected to -+ -+ UINT8 assocRespLen -+ Length of the 802.11 association response frame -+ that triggered this event, or 0 if not applicable -+ -+ UINT8 assocInfo[assocRespLen] -+ Copy of the 802.11 association response frame -+ -+Event Values -+ { -+ NO_NETWORK_AVAIL =0x01 -+ Indicates that the device was unable to -+ establish or find the desired network -+ LOST_LINK =0x02 -+ Indicates the devices is no longer receiving -+ beacons from the BSS it was previously -+ connected to -+ -+ DISCONNECT_CMD =0x03 -+ Indicates a “DISCONNECT” command was -+ processed -+ BSS_DISCONNECTED =0x04 -+ Indicates the BSS explicitly disconnected the -+ device. Possible mechanisms include the AP -+ sending 802.11 management frames -+ (e.g., disassociate or deauthentication -+ messages). -+ AUTH_FAILED =0x05 -+ Indicates that the device failed 802.11 -+ authentication with the BSS -+ ASSOC_FAILED =0x06 -+ Indicates that the device failed 802.11 -+ association with the BSS -+ NO_RESOURCES_AVAIL =0x07 -+ Indicates that a connection failed because the -+ AP had insufficient resources to complete the -+ connection -+ CSERV_DISCONNECT =0x08 -+ Indicates that the device’s connection services -+ module decided to disconnect from a BSS, -+ which can happen for a variety of reasons (e.g., -+ the host marks the current connected AP as a -+ bad AP). -+ INVALID_PROFILE =0x0A -+ Indicates that an attempt was made to -+ reconnect to a BSS that no longer matches the -+ current profile -+ All other values are reserved -+ } WMI_DISCONNECT_REASON -+ -+ -+===================================================================== -+ -+ -+Name -+ ERROR_REPORT -+ -+Synopsis -+ Signals that a type of error has occurred for which the host previously requested -+ notification through the “TARGET_ERROR_REPORT_BITMASK” command. -+ -+Event ID -+ 0x100D -+ -+Event Parameters -+ UINT32 errorVal -+ WMI_TARGET_ERROR_VAL value. See -+ “TARGET_ERROR_REPORT_BITMASK”. -+ -+Event Values -+ errorVal -+ = 0x00000001 -+ Power save fails -+ -+ = 0x00000002 -+ No cipher key -+ -+ = 0x00000004 -+ Decryption error -+ -+ = 0x00000008 -+ Beacon miss -+ -+ = 0x00000010 -+ A non-power save disabled node has joined -+ the PS-enabled network -+ -+ -+===================================================================== -+ -+ -+Name -+ EXTENSION -+ -+Synopsis -+ The WMI is used mostly for wireless control messages to a wireless module that -+ apply to wireless module management regardless of the target platform -+ implementation. However, some events peripherally related to wireless management -+ are desired during operation. These wireless extension events may be platform- -+ specific or implementation-dependent. See “WMI Extension Commands” -+ -+ -+Event ID -+ 0x1010 -+ -+ -+===================================================================== -+ -+ -+Name -+ GET_PMKID_LIST_EVENT -+ -+Synopsis -+ Generated by firmware in response to a “GET_PMKID_LIST_CMD” command. -+ -+Event Parameters -+ typedef struct { -+ A_UINT32 numPMKID; -+ Contains the number of PMKIDs in the reply -+ WMI_PMKID pmkidList[1]; -+ } __ATTRIB_PACK WMI_PMKID_LIST_REPLY; -+ -+Event Values -+ None -+ -+ -+===================================================================== -+ -+ -+Name -+ GET_WOW_LIST_EVENT -+ -+Synopsis -+ Response to the wmiconfig –getwowlist command to retrieve the configured Wake on -+ Wireless patterns -+ -+Event ID -+ 0x10018 -+ -+Event Parameters -+ { -+ -+ A_UINT8 num_filters -+ Total number of patterns in the list -+ A_UINT8 this_filter_num -+ The filter number -+ A_UINT8 wow_mode -+ Shows whether WoW is enabled or disabled -+ A_UINT8 host_mode -+ Shows whether the host is asleep or awake -+ WOW_FILTER wow_filters[1] -+ List of WoW filters (pattern and mask data bytes) -+ } WMI_GET_WOW_LIST_REPLY; -+ -+ { -+ Each wow_filter_list element shows: -+ A_UINT8 wow_valid_filter -+ Whether the filter is valid -+ A_UINT8 wow_filter_list_id -+ Filter List ID (23 = default) -+ A_UINT8 wow_filter_size -+ Size in bytes of the filter -+ A_UINT8 wow_filter_offset -+ Offset of the pattern to search in the data packet -+ A_UINT8 wow_filter_mask[MASK_SIZE] -+ The mask to be applied to the pattern -+ A_UINT8 wow_filter_pattern[WOW_PATTERN_SIZE] -+ The pattern that to match to wake up the host -+ } WOW_FILTER -+ -+Event Values -+ None -+ -+===================================================================== -+ -+ -+ -+Name -+ NEIGHBOR_REPORT -+ -+Synopsis -+ Indicates the existence of neighbor APs that match the current profile. The host uses -+ this event to populate the PMKID cache on the AR6000 and/or to perform -+ preauthentication. This event is only generated in infrastructure mode. -+ -+ A total of numberOfAps pairs of bssid/bssFlags exist, one pair for each AP. -+ -+Event ID -+ 0x1008 -+ -+Event Parameters -+ UINT8 numberOfAps -+ The number of APs reported about in -+ this event -+ { -+ UINT8 bssid[6] -+ MAC address of a neighbor AP -+ UINT8 bssFlags -+ A WMI_BSS_FLAGS value -+ }[numberOfAps] -+ -+ -+Event Values -+ { -+ WMI_DEFAULT_BSS_FLAGS = 0 -+ Logical OR of 1 or more -+ WMI_BSS_FLAGS -+ WMI_PREAUTH_CAPABLE_BSS -+ = 1 -+ Indicates that this AP is capable of -+ preauthentication -+ WMI_PMKID_VALID_BSS -+ = 2 -+ Indicates that the AR6000 have a -+ valid pairwise master key for this AP -+ } WMI_BSS_FLAGS -+ -+ -+===================================================================== -+ -+ -+ -+Name -+ OPT_RX_FRAME_EVENT -+ -+Synopsis -+ Special feature, informs host of the reception of a special frame. -+ -+Event ID -+ 0x100E -+ -+Event Parameters -+ { -+ A_UINT16 channel; -+ A_UINT8 frameType; -+ A_INT8 snr; -+ A_UINT8 srcAddr[ATH_MAC_LEN]; -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ }WMI_OPT_RX_INFO_HDR -+ -+Event Values -+ None -+ -+===================================================================== -+ -+ -+ -+Name -+ PSTREAM_TIMEOUT -+ -+Synopsis -+ Indicates that a priority stream that got created as a result of priority-marked data -+ flow (priority marked in IP TOS) being idle for the default inactivity interval period -+ (specified in the “CREATE_PSTREAM” command) used for priority streams created -+ implicitly by the driver. This event is not indicated for user-created priority streams. -+ User-created priority streams exist until the users delete them explicitly. They do not -+ timeout due to data inactivity. -+ -+Event ID -+ 0x1007 -+ -+Event Parameters -+ A_UINT8 -+ trafficClass -+ Indicated the traffic class of priority -+ stream that timed out -+ -+Event Values -+ { -+ WMM_AC_BE = 0 -+ Best effort -+ WMM_AC_BK = 1 -+ Background -+ WMM_AC_VI = 2 -+ Video -+ WMM_AC_VO = 3 -+ Voice -+ } TRAFFIC CLASS -+ -+ -+===================================================================== -+ -+Name -+ READY -+ -+Synopsis -+ Indicates that the AR6000 device is prepared to accept commands. It is sent once after -+ power on or reset. It also indicates the MAC address of the device. -+ -+Event ID -+ 0x1001 -+ -+Event Parameters -+ UINT8 macAddr[6] -+ Device MAC address -+ UINT8 phyCapability -+ A WMI_PHY_CAPABILITY value. Indicates the -+ capabilities of the device wireless module’s radio -+ -+Event Values -+ { -+ WMI_11A_CAPABILITY = 1 -+ WMI_11G_CAPABILITY = 2 -+ WMI_11AG_CAPABILITY = 3 -+ } WMI_PHY_CAPABILITY -+ -+ -+===================================================================== -+ -+Name -+ REGDOMAIN -+ -+Synopsis -+ Indicates that the regulatory domain has changed. It initially occurs when the -+ AR6000 device reads the board data information. The regulatory domain can also -+ change when the device is a world-mode SKU. In this case, the regulatory domain is -+ based on the country advertised by APs per the IEEE 802.11d specification. A -+ potential side effect of a regulatory domain change is a change in the list of available -+ channels. Any channel restrictions that exist as a result of a previous -+ “SET_CHANNEL_PARAMETERS” command are lifted. -+ -+Event ID -+ 0x1006 -+ -+Event Parameters -+ UINT32 regDomain -+ The range of 0x0000 – 0x00FF -+ corresponds to an ISO country code. -+ -+ Other regCodes are reserved for world -+ mode settings and specific regulatory -+ domains. -+ -+Event Values -+ None -+ -+ -+===================================================================== -+ -+ -+ -+Name -+ REPORT_STATISTICS -+ -+Synopsis -+ A reply to a “GET_TARGET_STATS” command. -+ -+Event ID -+ 0x100B -+ -+Event Parameters -+ When the statistics are sent to the host, the AR6001 clear them so that a new set of -+ statistics are collected for the next report. -+ -+ UINT32 tx_packets -+ UINT32 tx_bytes -+ UINT32 tx_unicast_pkts -+ UINT32 tx_unicast_bytes -+ UINT32 tx_multicast_pkts -+ UINT32 tx_multicast_bytes -+ UINT32 tx_broadcast_pkts -+ UINT32 tx_broadcast_bytes -+ UINT32 tx_rts_success_cnt -+ UINT32 tx_packet_per_ac[4] -+ Tx packets per AC: [0] = BE, [1] = BK, -+ [2] = VI, [3] = VO -+ UINT32 tx_errors -+ Number of packets which failed Tx, due -+ to all failures -+ ... REPORT_STATISTICS, continued -+ UINT32 tx_failed_cnt -+ Number of data packets that failed Tx -+ UINT32 tx_retry_cnt -+ Number of Tx retries for all packets -+ UINT32 tx_rts_fail_cnt -+ Number of RTS Tx failed count -+ UINT32 rx_packets -+ UINT32 rx_bytes -+ UINT32 rx_unicast_pkts -+ UINT32 rx_unicast_bytes -+ UINT32 rx_multicast_pkts -+ UINT32 rx_multicast_bytes -+ UINT32 rx_broadcast_pkts -+ UINT32 rx_broadcast_bytes -+ UINT32 rx_fragment_pkt -+ Number of fragmented packets received -+ UINT32 rx_errors -+ Number of Rx errors due to all failures -+ UINT32 rx_crcerr -+ Number of Rx errors due to CRC errors -+ UINT32 rx_key_cache_miss -+ Number of Rx errors due to a key not -+ being plumbed -+ UINT32 rx_decrypt_err -+ Number of Rx errors due to decryption -+ failure -+ UINT32 rx_duplicate_frames -+ Number of duplicate frames received -+ UINT32 tkip_local_mic_failure -+ Number of TKIP MIC errors detected -+ UINT32 tkip_counter_measures_invoked -+ Number of times TKIP countermeasures -+ were invoked -+ UINT32 tkip_replays -+ Number of frames that replayed a TKIP -+ encrypted frame received earlier -+ UINT32 tkip_format_errors -+ Number of frames that did not conform -+ to the TKIP frame format -+ UINT32 ccmp_format_errors -+ Number of frames that did not conform -+ to the CCMP frame format -+ UINT32 ccmp_replays -+ Number of frames that replayed a CCMP -+ encrypted frame received earlier -+ UINT32 power_save_failure_cnt -+ Number of failures that occurred when -+ the AR6001 could not go to sleep -+ UINT32 cs_bmiss_cnt -+ Number of BMISS interrupts since -+ connection -+ UINT32 cs_lowRssi_cnt -+ Number of the times the RSSI went below -+ the low RSSI threshold -+ UINT16 cs_connect_cnt -+ Number of connection times -+ UINT16 cs_disconnect_cnt -+ Number of disconnection times -+ UINT8 cs_aveBeacon_rssi -+ The current averaged value of the RSSI -+ from the beacons of the connected BSS -+ UINT8 cs_lastRoam_msec -+ Time that the last roaming took, in ms. -+ This time is the difference between -+ roaming start and actual connection. -+ -+Event Values -+ None defined -+ -+ -+===================================================================== -+ -+Name -+ ROAM_TBL_EVENT -+ -+Synopsis -+ Reports the roam table, which contains the current roam mode and this information -+ for every BSS: -+ -+Event ID -+ 0x100F -+ -+Event Parameters -+ A_UINT8 bssid[ATH_MAC_LEN]; -+ BSSID -+ A_UINT8 rssi -+ Averaged RSSI -+ A_UINT8 rssidt -+ Change in RSSI -+ A_UINT8 last_rssi -+ Last recorded RSSI -+ A_UINT8 roam_util -+ Utility value used in roaming decision -+ A_UINT8 util -+ Base utility with the BSS -+ A_UINT8 bias -+ Host configured for this BSS -+ -+Event Values -+ roamMode -+ Current roam mode -+ -+ = 1 -+ RSSI based roam -+ -+ = 2 -+ Host bias-based roam -+ -+ = 3 -+ Lock to the current BSS -+ -+ = 4 -+ Autonomous roaming disabled -+ -+ -+===================================================================== -+ -+Name -+ RSSI_THRESHOLD -+ -+Synopsis -+ Alerts the host that the signal strength from the connected AP has crossed a -+ interesting threshold as defined in a previous “RSSI_THRESHOLD_PARAMS” -+ command. -+ -+Event ID -+ 0x100C -+ -+Event Parameters -+ UINT8 range -+ A WMI_RSSI_THRESHOLD_VAL -+ value, which indicates the range of -+ the average signal strength -+ -+Event Values -+ { -+ WMI_RSSI_LOWTHRESHOLD_BELOW_LOWERVAL = 1 -+ WMI_RSSI_LOWTHRESHOLD_LOWERVAL = 2 -+ WMI_RSSI_LOWTHRESHOLD_UPPERVAL = 3 -+ WMI_RSSI_HIGHTHRESHOLD_LOWERVAL = 4 -+ WMI_RSSI_HIGHTHRESHOLD_HIGHERVAL = 5 -+ } WMI_RSSI_THRESHOLD_VAL -+ -+ -+===================================================================== -+ -+Name -+ SCAN_COMPLETE_EVENT -+ -+Synopsis -+ Indicates the scan status. if the Scan was not completed, this event is generated with -+ the status A_ECANCELED. -+ -+Event ID -+ 0x100A -+ -+Event Parameters -+ A_UINT8 scanStatus -+ -+Event Values -+ { -+ #define SCAN_ABORTED 16 -+ #define SCAN_COMPLETED 0 -+ A_UINT8 scanStatus -+ A_OK or A_ECANCELED -+ } WMI_SCAN_COMPLETE_EVENT; -+ -+ -+===================================================================== -+ -+Name -+ TEST_EVENT -+ -+Synopsis -+ The TCMD application uses a single WMI event (WMI_TEST_EVENTID) to -+ communicate events from target to host. The events are parsed by the TCMD -+ application and WMI layer is oblivious of it. -+ -+Event ID -+ 0x1016 -+ -+Event Parameters -+ WMI_TEST_EVENTID -+ -+ -+Event Values -+ None -+ -+ -+===================================================================== -+ -+ -+ -+Name -+ TKIP_MICERR -+ -+Synopsis -+ Indicates that TKIP MIC errors were detected. -+ -+Event ID -+ 0x1009 -+ -+Event Parameters -+ UINT8 keyid -+ Indicates the TKIP key ID -+ -+ UINT8 ismcast -+ 0 = Unicast -+ 1 = Multicast -+ -+Event Values -+ See event parameters -+ -+===================================================================== -+ -+WMI Extension Commands -+ -+The WMI EXTENSION command is used to multiplex a collection of -+commands that: -+ -+ Are not generic wireless commands -+ May be implementation-specific -+ May be target platform-specific -+ May be optional for a host implementation -+ -+ An extension command is sent to the AR6000 targets like any other WMI -+command message and uses the WMI_EXTENSION. The first field of the -+payload for this EXTENSION command is another commandId, sometimes -+called the subcommandId, which indicates which extension command is -+being used. A subcommandId-specific payload follows the subcommandId. -+ -+All extensions (subcommandIds) are listed in the header file include/wmix.h. -+See also “WMI Extension Events” on page B-58. -+ -+ -+WMI Extension Commands -+ -+ -+GPIO_INPUT_GET -+ Read GPIO pins configured for input -+ -+GPIO_INTR_ACK -+ Acknowledge and re-arm GPIO interrupts reported earlier -+ -+GPIO_OUTPUT_SET -+ Manage output on GPIO pins configured for output -+ -+GPIO_REGISTER_GET -+ Read an arbitrary GPIO register -+ -+GPIO_REGISTER_SET -+ Dynamically change GPIO configuration -+ -+SET_LQTHRESHOLD -+ Set link quality thresholds; the sampling happens at every unicast -+ data frame Tx, if certain thresholds are met, and corresponding -+ events are sent to the host -+ -+ -+===================================================================== -+ -+Name -+ GPIO_INPUT_GET -+ -+Synopsis -+ Allows the host to read GPIO pins that are configured for input. The values read are -+ returned through a “GPIO_DATA” extension event. -+ -+NOTE: Support for GPIO is optional. -+ -+Command -+ N/A -+ -+Command Parameters -+ None -+ -+ -+ -+Reply Parameters -+ None -+ -+ -+Reset Value -+ None -+ -+ -+ -+Restrictions -+ None -+ -+===================================================================== -+ -+ -+Name -+ GPIO_INTR_ACK -+ -+Synopsis -+ The host uses this command to acknowledge and to re-arm GPIO interrupts reported -+ through an earlier “GPIO_INTR” extension event. A single “GPIO_INTR_ACK” -+ command should be used to acknowledge all GPIO interrupts that the host knows to -+ be outstanding (if pending interrupts are not acknowledged through -+ “GPIO_INTR_ACK”, another “GPIO_INTR” extension event is raised). -+ -+NOTE: Support for GPIO is optional. -+ -+Command -+ N/A -+ -+Command Parameters -+ UINT32 ack_mask -+ A mask of interrupting GPIO pins (e.g., ack_mask -+ bit [3] acknowledges an interrupt from the pin GPIO3). -+ -+Command Values -+ None -+ -+Reset Value -+ None -+ -+Restrictions -+ The host should acknowledge only interrupts about which it was notified. -+ -+ -+===================================================================== -+ -+Name -+ GPIO_OUTPUT_SET -+ -+Synopsis -+ Manages output on GPIO pins configured for output. -+ -+ Conflicts between set_mask and clear_mask or enable_mask and disable_mask result -+ in undefined behavior. -+ -+NOTE: Support for GPIO is optional. -+ -+Command -+ N/A -+ -+Command Parameters -+ UINT32 set_mask -+ Specifies which pins should drive a 1 out -+ UINT32 clear_mask -+ Specifies which pins should drive a 0 out -+ UINT32 enable_mask -+ Specifies which pins should be enabled for output -+ UINT32 disable_mask -+ Specifies which pins should be disabled for output -+ -+Command Values -+ None -+ -+ -+Reset Value -+ None -+ -+ -+Restrictions -+ None -+ -+ -+ -+===================================================================== -+ -+ -+Name -+ GPIO_REGISTER_GET -+ -+Synopsis -+ Allows the host to read an arbitrary GPIO register. It is intended for use during -+ bringup/debug. The target responds to this command with a “GPIO_DATA” event. -+ -+NOTE: Support for GPIO is optional. -+ -+Command -+ N/A -+ -+Command Parameters -+ UINT32 -+ gpioreg_id -+ Specifies a GPIO register identifier, as defined -+in include/AR6000/AR6000_gpio.h -+ -+Reply Parameters -+ None -+ -+Reset Value -+ N/A -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+Name -+ GPIO_REGISTER_SET -+ -+Synopsis -+ Allows the host to dynamically change GPIO configuration (usually handled -+ statically through the GPIO configuration DataSet). -+ -+NOTE: Support for GPIO is optional. -+ -+Command -+ N/A -+ -+Command Parameters -+ UINT32 gpioreg_id -+ Specifies a GPIO register identifier, as defined in -+ include/AR6000/AR6000_gpio.h -+ UINT32 value -+ Specifies a value to write to the specified -+ GPIO register -+ -+Command Values -+ None -+ -+ -+Reset Value -+ Initial hardware configuration is as defined in the AR6001 or AR6002 ROCmTM -+ Single-Chip MAC/BB/Radio for 2.4/5 GHz Embedded WLAN Applications data sheet. This -+ configuration is modified by the GPIO Configuration DataSet, if one exists. -+ -+Restrictions -+ None -+ -+ -+===================================================================== -+ -+ -+Name -+ SET_LQTHRESHOLD -+ -+Synopsis -+ Set link quality thresholds, the sampling happens at every unicast data frame Tx, if -+ certain threshold is met, corresponding event will be sent to host. -+ -+Command -+ wmiconfig eth1 --lqThreshold <enable> <upper_threshold_1>... -+ <upper_threshold_4> <lower_threshold_1>... <lower_threshold_4> -+ -+Command Parameters -+ A_UINT8 enable; -+ A_UINT8 thresholdAbove1_Val; -+ A_UINT8 thresholdAbove2_Val; -+ A_UINT8 thresholdAbove3_Val; -+ A_UINT8 thresholdAbove4_Val; -+ A_UINT8 thresholdBelow1_Val; -+ A_UINT8 thresholdBelow2_Val; -+ A_UINT8 thresholdBelow3_Val; -+ A_UINT8 thresholdBelow4_Val; -+ -+Command Values -+ enable -+ = 0 -+ Disable link quality sampling -+ -+ = 1 -+ Enable link quality sampling -+ -+ -+ thresholdAbove_Val -+ [1...4] -+ Above thresholds (value in [0,100]), in ascending -+ order threshold -+ -+ Below_Val [1...4] = below thresholds (value -+ in [0,100]), in ascending order -+ -+Reset Values -+ None -+ -+Restrictions -+ None -+ -+===================================================================== -+WMI Extension Events -+ -+The WMI EXTENSION event is used for a collection of events that: -+ -+ Are not generic wireless events -+ May be implementation-specific -+ May be target platform-specific -+ May be optional for a host implementation -+ -+ An extension event is sent from the AR6000 device targets to the host just like -+any other WMI event message, using the WMI_EXTENSION_EVENTID. The -+first field of the payload for this “EXTENSION” event is another commandId -+(sometimes called the subcommandId) that indicates which “EXTENSION” -+event is being used. A subcommandId-specific payload follows the -+subcommandId. -+ -+All extensions (subcommandIds) are listed in the header file include/wmix.h. -+See also “WMI Extension Commands” on page B-55. -+ -+ -+WMI Extension Events -+ -+ -+GPIO_ACK -+ Acknowledges a host set command has been processed by the device -+ -+GPIO_DATA -+ Response to a host’s request for data -+ -+GPIO_INTR -+ Signals that GPIO interrupts are pending -+ -+ -+===================================================================== -+ -+Name -+ GPIO_ACK -+ -+Synopsis -+ Acknowledges that a host set command (either “GPIO_OUTPUT_SET” or -+ “GPIO_REGISTER_SET”) has been processed by the AR6000 device. -+ -+NOTE: Support for GPIO is optional. -+ -+Event ID -+ N/A -+ -+Event Parameters -+ None -+ -+ -+Event Values -+ None -+ -+===================================================================== -+ -+ -+Name -+ GPIO_DATA -+ -+Synopsis -+ The AR6000 device uses this event to respond to the host’s earlier request for data -+ (through either a “GPIO_REGISTER_GET” or a “GPIO_INPUT_GET” command). -+ -+NOTE: Support for GPIO is optional. -+ -+Event ID -+ N/A -+ -+Event Parameters -+ UINT32 value -+ Holds the data of interest, which is either a register value -+ (in the case of “GPIO_REGISTER_GET”) or a mask of -+ pin inputs (in the case of “GPIO_INPUT_GET”). -+ UINT32 reg_id -+ Indicates which register was read (in the case of -+ “GPIO_REGISTER_GET”) or is GPIO_ID_NONE (in the -+ case of “GPIO_INPUT_GET”) -+ -+Event Values -+ None -+ -+ -+===================================================================== -+ -+ -+ -+Name -+ GPIO_INTR -+ -+Synopsis -+ The AR6000 device raises this event to signal that GPIO interrupts are pending. -+ These GPIOs may be interrupts that occurred after the last “GPIO_INTR_ACK” -+ command was issued, or may be GPIO interrupts that the host failed to acknowledge -+ in the last “GPIO_INTR_ACK”. The AR6000 will not raise another GPIO_INTR -+ event until this event is acknowledged through a “GPIO_INTR_ACK” command. -+ -+NOTE: Support for GPIO is optional. -+ -+Event ID -+ N/A -+ -+Event Parameters -+ UINT32 intr_mask -+ Indicates which GPIO interrupts are currently pending -+ -+ UINT32 input_values -+ A recent copy of the GPIO input values, taken at the -+ time the most recent GPIO interrupt was processed -+ -+Event Values -+ None -+ -+ -+ -+===================================================================== -+#endif ---- /dev/null -+++ b/drivers/ar6000/wmi/wmi_host.h -@@ -0,0 +1,71 @@ -+#ifndef _WMI_HOST_H_ -+#define _WMI_HOST_H_ -+/* -+ * Copyright (c) 2004-2006 Atheros Communications Inc. -+ * All rights reserved. -+ * -+ * This file contains local definitios for the wmi host module. -+ * -+ * $Id: //depot/sw/releases/olca2.0-GPL/host/wmi/wmi_host.h#1 $ -+ * -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation; -+ * -+ * Software distributed under the License is distributed on an "AS -+ * IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or -+ * implied. See the License for the specific language governing -+ * rights and limitations under the License. -+ * -+ * -+ * -+ */ -+ -+#ifdef __cplusplus -+extern "C" { -+#endif -+ -+struct wmi_stats { -+ A_UINT32 cmd_len_err; -+ A_UINT32 cmd_id_err; -+}; -+ -+struct wmi_t { -+ A_BOOL wmi_ready; -+ A_BOOL wmi_numQoSStream; -+ A_UINT8 wmi_wmiStream2AcMapping[WMI_PRI_MAX_COUNT]; -+ WMI_PRI_STREAM_ID wmi_ac2WmiStreamMapping[WMM_NUM_AC]; -+ A_UINT16 wmi_streamExistsForAC[WMM_NUM_AC]; -+ A_UINT8 wmi_fatPipeExists; -+ void *wmi_devt; -+ struct wmi_stats wmi_stats; -+ struct ieee80211_node_table wmi_scan_table; -+ A_UINT8 wmi_bssid[ATH_MAC_LEN]; -+ A_UINT8 wmi_powerMode; -+ A_UINT8 wmi_phyMode; -+ A_UINT8 wmi_keepaliveInterval; -+ A_MUTEX_T wmi_lock; -+}; -+ -+#define WMI_INIT_WMISTREAM_AC_MAP(w) \ -+{ (w)->wmi_wmiStream2AcMapping[WMI_BEST_EFFORT_PRI] = WMM_AC_BE; \ -+ (w)->wmi_wmiStream2AcMapping[WMI_LOW_PRI] = WMM_AC_BK; \ -+ (w)->wmi_wmiStream2AcMapping[WMI_HIGH_PRI] = WMM_AC_VI; \ -+ (w)->wmi_wmiStream2AcMapping[WMI_HIGHEST_PRI] = WMM_AC_VO; \ -+ (w)->wmi_ac2WmiStreamMapping[WMM_AC_BE] = WMI_BEST_EFFORT_PRI; \ -+ (w)->wmi_ac2WmiStreamMapping[WMM_AC_BK] = WMI_LOW_PRI; \ -+ (w)->wmi_ac2WmiStreamMapping[WMM_AC_VI] = WMI_HIGH_PRI; \ -+ (w)->wmi_ac2WmiStreamMapping[WMM_AC_VO] = WMI_HIGHEST_PRI; } -+ -+#define WMI_WMISTREAM_ACCESSCATEGORY(w,s) (w)->wmi_wmiStream2AcMapping[s] -+#define WMI_ACCESSCATEGORY_WMISTREAM(w,ac) (w)->wmi_ac2WmiStreamMapping[ac] -+ -+#define LOCK_WMI(w) A_MUTEX_LOCK(&(w)->wmi_lock); -+#define UNLOCK_WMI(w) A_MUTEX_UNLOCK(&(w)->wmi_lock); -+ -+#ifdef __cplusplus -+} -+#endif -+ -+#endif /* _WMI_HOST_H_ */ ---- a/drivers/base/bus.c -+++ b/drivers/base/bus.c -@@ -141,6 +141,29 @@ void bus_remove_file(struct bus_type *bu - } - EXPORT_SYMBOL_GPL(bus_remove_file); - -+int bus_create_device_link(struct bus_type *bus, struct kobject *target, -+ const char *name) -+{ -+ int error; -+ if (bus_get(bus)) { -+ error = sysfs_create_link(&bus->p->devices_kset->kobj, target, -+ name); -+ bus_put(bus); -+ } else -+ error = -EINVAL; -+ return error; -+} -+EXPORT_SYMBOL_GPL(bus_create_device_link); -+ -+void bus_remove_device_link(struct bus_type *bus, const char *name) -+{ -+ if (bus_get(bus)) { -+ sysfs_remove_link(&bus->p->devices_kset->kobj, name); -+ bus_put(bus); -+ } -+} -+EXPORT_SYMBOL_GPL(bus_remove_device_link); -+ - static struct kobj_type bus_ktype = { - .sysfs_ops = &bus_sysfs_ops, - }; ---- a/drivers/base/core.c -+++ b/drivers/base/core.c -@@ -55,6 +55,11 @@ static inline int device_is_not_partitio - */ - const char *dev_driver_string(const struct device *dev) - { -+ if (!dev) { -+ printk(KERN_ERR"Null dev to dev_driver_string\n"); -+ dump_stack(); -+ return "*NULL*"; -+ } - return dev->driver ? dev->driver->name : - (dev->bus ? dev->bus->name : - (dev->class ? dev->class->name : "")); ---- a/drivers/base/power/main.c -+++ b/drivers/base/power/main.c -@@ -69,9 +69,9 @@ void device_pm_unlock(void) - */ - void device_pm_add(struct device *dev) - { -- pr_debug("PM: Adding info for %s:%s\n", -+ /* pr_debug("PM: Adding info for %s:%s\n", - dev->bus ? dev->bus->name : "No Bus", -- kobject_name(&dev->kobj)); -+ kobject_name(&dev->kobj)); */ - mutex_lock(&dpm_list_mtx); - if (dev->parent) { - if (dev->parent->power.status >= DPM_SUSPENDING) ---- a/drivers/char/Kconfig -+++ b/drivers/char/Kconfig -@@ -66,6 +66,18 @@ config VT_CONSOLE - - If unsure, say Y. - -+config NR_TTY_DEVICES -+ int "Maximum tty device number" -+ depends on VT -+ default 63 -+ ---help--- -+ This is the highest numbered device created in /dev. You will actually have -+ NR_TTY_DEVICES+1 devices in /dev. The default is 63, which will result in -+ 64 /dev entries. The lowest number you can set is 11, anything below that, -+ and it will default to 11. 63 is also the upper limit so we don't overrun -+ the serial consoles. -+ -+ - config HW_CONSOLE - bool - depends on VT && !S390 && !UML ---- a/drivers/gpio/gpiolib.c -+++ b/drivers/gpio/gpiolib.c -@@ -6,8 +6,7 @@ - #include <linux/err.h> - #include <linux/debugfs.h> - #include <linux/seq_file.h> --#include <linux/gpio.h> -- -+#include <mach/gpio.h> - - /* Optional implementation infrastructure for GPIO interfaces. - * ---- a/drivers/i2c/busses/i2c-s3c2410.c -+++ b/drivers/i2c/busses/i2c-s3c2410.c -@@ -34,14 +34,12 @@ - #include <linux/platform_device.h> - #include <linux/clk.h> - #include <linux/cpufreq.h> -+#include <linux/io.h> - --#include <mach/hardware.h> - #include <asm/irq.h> --#include <asm/io.h> - --#include <mach/regs-gpio.h> --#include <asm/plat-s3c/regs-iic.h> --#include <asm/plat-s3c/iic.h> -+#include <plat/regs-iic.h> -+#include <plat/iic.h> - - /* i2c controller state */ - -@@ -64,6 +62,7 @@ struct s3c24xx_i2c { - unsigned int msg_ptr; - - unsigned int tx_setup; -+ unsigned int irq; - - enum s3c24xx_i2c_state state; - unsigned long clkrate; -@@ -71,7 +70,6 @@ struct s3c24xx_i2c { - void __iomem *regs; - struct clk *clk; - struct device *dev; -- struct resource *irq; - struct resource *ioarea; - struct i2c_adapter adap; - -@@ -80,16 +78,7 @@ struct s3c24xx_i2c { - #endif - }; - --/* default platform data to use if not supplied in the platform_device --*/ -- --static struct s3c2410_platform_i2c s3c24xx_i2c_default_platform = { -- .flags = 0, -- .slave_addr = 0x10, -- .bus_freq = 100*1000, -- .max_freq = 400*1000, -- .sda_delay = S3C2410_IICLC_SDA_DELAY5 | S3C2410_IICLC_FILTER_ON, --}; -+/* default platform data removed, dev should always carry data. */ - - /* s3c24xx_i2c_is2440() - * -@@ -103,21 +92,6 @@ static inline int s3c24xx_i2c_is2440(str - return !strcmp(pdev->name, "s3c2440-i2c"); - } - -- --/* s3c24xx_i2c_get_platformdata -- * -- * get the platform data associated with the given device, or return -- * the default if there is none --*/ -- --static inline struct s3c2410_platform_i2c *s3c24xx_i2c_get_platformdata(struct device *dev) --{ -- if (dev->platform_data != NULL) -- return (struct s3c2410_platform_i2c *)dev->platform_data; -- -- return &s3c24xx_i2c_default_platform; --} -- - /* s3c24xx_i2c_master_complete - * - * complete the message and wake up the caller, using the given return code, -@@ -130,7 +104,7 @@ static inline void s3c24xx_i2c_master_co - - i2c->msg_ptr = 0; - i2c->msg = NULL; -- i2c->msg_idx ++; -+ i2c->msg_idx++; - i2c->msg_num = 0; - if (ret) - i2c->msg_idx = ret; -@@ -141,19 +115,17 @@ static inline void s3c24xx_i2c_master_co - static inline void s3c24xx_i2c_disable_ack(struct s3c24xx_i2c *i2c) - { - unsigned long tmp; -- -+ - tmp = readl(i2c->regs + S3C2410_IICCON); - writel(tmp & ~S3C2410_IICCON_ACKEN, i2c->regs + S3C2410_IICCON); -- - } - - static inline void s3c24xx_i2c_enable_ack(struct s3c24xx_i2c *i2c) - { - unsigned long tmp; -- -+ - tmp = readl(i2c->regs + S3C2410_IICCON); - writel(tmp | S3C2410_IICCON_ACKEN, i2c->regs + S3C2410_IICCON); -- - } - - /* irq enable/disable functions */ -@@ -161,15 +133,23 @@ static inline void s3c24xx_i2c_enable_ac - static inline void s3c24xx_i2c_disable_irq(struct s3c24xx_i2c *i2c) - { - unsigned long tmp; -- -+ - tmp = readl(i2c->regs + S3C2410_IICCON); -+ -+/* S3c2442 datasheet -+ * -+ * If the IICCON[5]=0, IICCON[4] does not operate correctly. -+ * So, It is recommended that you should set IICCON[5]=1, -+ * although you does not use the IIC interrupt. -+ */ -+ - writel(tmp & ~S3C2410_IICCON_IRQEN, i2c->regs + S3C2410_IICCON); - } - - static inline void s3c24xx_i2c_enable_irq(struct s3c24xx_i2c *i2c) - { - unsigned long tmp; -- -+ - tmp = readl(i2c->regs + S3C2410_IICCON); - writel(tmp | S3C2410_IICCON_IRQEN, i2c->regs + S3C2410_IICCON); - } -@@ -177,10 +157,10 @@ static inline void s3c24xx_i2c_enable_ir - - /* s3c24xx_i2c_message_start - * -- * put the start of a message onto the bus -+ * put the start of a message onto the bus - */ - --static void s3c24xx_i2c_message_start(struct s3c24xx_i2c *i2c, -+static void s3c24xx_i2c_message_start(struct s3c24xx_i2c *i2c, - struct i2c_msg *msg) - { - unsigned int addr = (msg->addr & 0x7f) << 1; -@@ -199,15 +179,15 @@ static void s3c24xx_i2c_message_start(st - if (msg->flags & I2C_M_REV_DIR_ADDR) - addr ^= 1; - -- // todo - check for wether ack wanted or not -+ /* todo - check for wether ack wanted or not */ - s3c24xx_i2c_enable_ack(i2c); - - iiccon = readl(i2c->regs + S3C2410_IICCON); - writel(stat, i2c->regs + S3C2410_IICSTAT); -- -+ - dev_dbg(i2c->dev, "START: %08lx to IICSTAT, %02x to DS\n", stat, addr); - writeb(addr, i2c->regs + S3C2410_IICDS); -- -+ - /* delay here to ensure the data byte has gotten onto the bus - * before the transaction is started */ - -@@ -215,8 +195,8 @@ static void s3c24xx_i2c_message_start(st - - dev_dbg(i2c->dev, "iiccon, %08lx\n", iiccon); - writel(iiccon, i2c->regs + S3C2410_IICCON); -- -- stat |= S3C2410_IICSTAT_START; -+ -+ stat |= S3C2410_IICSTAT_START; - writel(stat, i2c->regs + S3C2410_IICSTAT); - } - -@@ -227,11 +207,11 @@ static inline void s3c24xx_i2c_stop(stru - dev_dbg(i2c->dev, "STOP\n"); - - /* stop the transfer */ -- iicstat &= ~ S3C2410_IICSTAT_START; -+ iicstat &= ~S3C2410_IICSTAT_START; - writel(iicstat, i2c->regs + S3C2410_IICSTAT); -- -+ - i2c->state = STATE_STOP; -- -+ - s3c24xx_i2c_master_complete(i2c, ret); - s3c24xx_i2c_disable_irq(i2c); - } -@@ -241,7 +221,7 @@ static inline void s3c24xx_i2c_stop(stru - - /* is_lastmsg() - * -- * returns TRUE if the current message is the last in the set -+ * returns TRUE if the current message is the last in the set - */ - - static inline int is_lastmsg(struct s3c24xx_i2c *i2c) -@@ -289,14 +269,14 @@ static int i2s_s3c_irq_nextbyte(struct s - - case STATE_STOP: - dev_err(i2c->dev, "%s: called in STATE_STOP\n", __func__); -- s3c24xx_i2c_disable_irq(i2c); -+ s3c24xx_i2c_disable_irq(i2c); - goto out_ack; - - case STATE_START: - /* last thing we did was send a start condition on the - * bus, or started a new i2c message - */ -- -+ - if (iicstat & S3C2410_IICSTAT_LASTBIT && - !(i2c->msg->flags & I2C_M_IGNORE_NAK)) { - /* ack was not received... */ -@@ -322,7 +302,7 @@ static int i2s_s3c_irq_nextbyte(struct s - if (i2c->state == STATE_READ) - goto prepare_read; - -- /* fall through to the write state, as we will need to -+ /* fall through to the write state, as we will need to - * send a byte as well */ - - case STATE_WRITE: -@@ -339,7 +319,7 @@ static int i2s_s3c_irq_nextbyte(struct s - } - } - -- retry_write: -+ retry_write: - - if (!is_msgend(i2c)) { - byte = i2c->msg->buf[i2c->msg_ptr++]; -@@ -359,9 +339,9 @@ static int i2s_s3c_irq_nextbyte(struct s - dev_dbg(i2c->dev, "WRITE: Next Message\n"); - - i2c->msg_ptr = 0; -- i2c->msg_idx ++; -+ i2c->msg_idx++; - i2c->msg++; -- -+ - /* check to see if we need to do another message */ - if (i2c->msg->flags & I2C_M_NOSTART) { - -@@ -375,7 +355,6 @@ static int i2s_s3c_irq_nextbyte(struct s - - goto retry_write; - } else { -- - /* send the new start */ - s3c24xx_i2c_message_start(i2c, i2c->msg); - i2c->state = STATE_START; -@@ -389,7 +368,7 @@ static int i2s_s3c_irq_nextbyte(struct s - break; - - case STATE_READ: -- /* we have a byte of data in the data register, do -+ /* we have a byte of data in the data register, do - * something with it, and then work out wether we are - * going to do any more read/write - */ -@@ -397,13 +376,13 @@ static int i2s_s3c_irq_nextbyte(struct s - byte = readb(i2c->regs + S3C2410_IICDS); - i2c->msg->buf[i2c->msg_ptr++] = byte; - -- prepare_read: -+ prepare_read: - if (is_msglast(i2c)) { - /* last byte of buffer */ - - if (is_lastmsg(i2c)) - s3c24xx_i2c_disable_ack(i2c); -- -+ - } else if (is_msgend(i2c)) { - /* ok, we've read the entire buffer, see if there - * is anything else we need to do */ -@@ -429,7 +408,7 @@ static int i2s_s3c_irq_nextbyte(struct s - /* acknowlegde the IRQ and get back on with the work */ - - out_ack: -- tmp = readl(i2c->regs + S3C2410_IICCON); -+ tmp = readl(i2c->regs + S3C2410_IICCON); - tmp &= ~S3C2410_IICCON_IRQPEND; - writel(tmp, i2c->regs + S3C2410_IICCON); - out: -@@ -450,19 +429,19 @@ static irqreturn_t s3c24xx_i2c_irq(int i - status = readl(i2c->regs + S3C2410_IICSTAT); - - if (status & S3C2410_IICSTAT_ARBITR) { -- // deal with arbitration loss -+ /* deal with arbitration loss */ - dev_err(i2c->dev, "deal with arbitration loss\n"); - } - - if (i2c->state == STATE_IDLE) { - dev_dbg(i2c->dev, "IRQ: error i2c->state == IDLE\n"); - -- tmp = readl(i2c->regs + S3C2410_IICCON); -+ tmp = readl(i2c->regs + S3C2410_IICCON); - tmp &= ~S3C2410_IICCON_IRQPEND; - writel(tmp, i2c->regs + S3C2410_IICCON); - goto out; - } -- -+ - /* pretty much this leaves us with the fact that we've - * transmitted or received whatever byte we last sent */ - -@@ -485,16 +464,13 @@ static int s3c24xx_i2c_set_master(struct - - while (timeout-- > 0) { - iicstat = readl(i2c->regs + S3C2410_IICSTAT); -- -+ - if (!(iicstat & S3C2410_IICSTAT_BUSBUSY)) - return 0; - - msleep(1); - } - -- dev_dbg(i2c->dev, "timeout: GPEDAT is %08x\n", -- __raw_readl(S3C2410_GPEDAT)); -- - return -ETIMEDOUT; - } - -@@ -503,7 +479,8 @@ static int s3c24xx_i2c_set_master(struct - * this starts an i2c transfer - */ - --static int s3c24xx_i2c_doxfer(struct s3c24xx_i2c *i2c, struct i2c_msg *msgs, int num) -+static int s3c24xx_i2c_doxfer(struct s3c24xx_i2c *i2c, -+ struct i2c_msg *msgs, int num) - { - unsigned long timeout; - int ret; -@@ -511,6 +488,15 @@ static int s3c24xx_i2c_doxfer(struct s3c - if (i2c->suspended) - return -EIO; - -+ if (i2c->suspended) { -+ dev_err(i2c->dev, -+ "Hey I am still asleep (suspended: %d), retry later\n", -+ i2c->suspended); -+ dump_stack(); -+ ret = -EAGAIN; -+ goto out; -+ } -+ - ret = s3c24xx_i2c_set_master(i2c); - if (ret != 0) { - dev_err(i2c->dev, "cannot get bus (error %d)\n", ret); -@@ -529,12 +515,12 @@ static int s3c24xx_i2c_doxfer(struct s3c - s3c24xx_i2c_enable_irq(i2c); - s3c24xx_i2c_message_start(i2c, msgs); - spin_unlock_irq(&i2c->lock); -- -+ - timeout = wait_event_timeout(i2c->wait, i2c->msg_num == 0, HZ * 5); - - ret = i2c->msg_idx; - -- /* having these next two as dev_err() makes life very -+ /* having these next two as dev_err() makes life very - * noisy when doing an i2cdetect */ - - if (timeout == 0) -@@ -591,19 +577,6 @@ static const struct i2c_algorithm s3c24x - .functionality = s3c24xx_i2c_func, - }; - --static struct s3c24xx_i2c s3c24xx_i2c = { -- .lock = __SPIN_LOCK_UNLOCKED(s3c24xx_i2c.lock), -- .wait = __WAIT_QUEUE_HEAD_INITIALIZER(s3c24xx_i2c.wait), -- .tx_setup = 50, -- .adap = { -- .name = "s3c2410-i2c", -- .owner = THIS_MODULE, -- .algo = &s3c24xx_i2c_algorithm, -- .retries = 2, -- .class = I2C_CLASS_HWMON | I2C_CLASS_SPD, -- }, --}; -- - /* s3c24xx_i2c_calcdivisor - * - * return the divisor settings for a given frequency -@@ -643,7 +616,7 @@ static inline int freq_acceptable(unsign - { - int diff = freq - wanted; - -- return (diff >= -2 && diff <= 2); -+ return diff >= -2 && diff <= 2; - } - - /* s3c24xx_i2c_clockrate -@@ -655,7 +628,7 @@ static inline int freq_acceptable(unsign - - static int s3c24xx_i2c_clockrate(struct s3c24xx_i2c *i2c, unsigned int *got) - { -- struct s3c2410_platform_i2c *pdata; -+ struct s3c2410_platform_i2c *pdata = i2c->dev->platform_data; - unsigned long clkin = clk_get_rate(i2c->clk); - unsigned int divs, div1; - u32 iiccon; -@@ -663,10 +636,8 @@ static int s3c24xx_i2c_clockrate(struct - int start, end; - - i2c->clkrate = clkin; -- -- pdata = s3c24xx_i2c_get_platformdata(i2c->adap.dev.parent); - clkin /= 1000; /* clkin now in KHz */ -- -+ - dev_dbg(i2c->dev, "pdata %p, freq %lu %lu..%lu\n", - pdata, pdata->bus_freq, pdata->min_freq, pdata->max_freq); - -@@ -774,7 +745,7 @@ static inline void s3c24xx_i2c_deregiste - - /* s3c24xx_i2c_init - * -- * initialise the controller, set the IO lines and frequency -+ * initialise the controller, set the IO lines and frequency - */ - - static int s3c24xx_i2c_init(struct s3c24xx_i2c *i2c) -@@ -785,15 +756,15 @@ static int s3c24xx_i2c_init(struct s3c24 - - /* get the plafrom data */ - -- pdata = s3c24xx_i2c_get_platformdata(i2c->adap.dev.parent); -+ pdata = i2c->dev->platform_data; - - /* inititalise the gpio */ - -- s3c2410_gpio_cfgpin(S3C2410_GPE15, S3C2410_GPE15_IICSDA); -- s3c2410_gpio_cfgpin(S3C2410_GPE14, S3C2410_GPE14_IICSCL); -+ if (pdata->cfg_gpio) -+ pdata->cfg_gpio(to_platform_device(i2c->dev)); - - /* write slave address */ -- -+ - writeb(pdata->slave_addr, i2c->regs + S3C2410_IICADD); - - dev_info(i2c->dev, "slave address 0x%02x\n", pdata->slave_addr); -@@ -831,12 +802,32 @@ static int s3c24xx_i2c_init(struct s3c24 - - static int s3c24xx_i2c_probe(struct platform_device *pdev) - { -- struct s3c24xx_i2c *i2c = &s3c24xx_i2c; -+ struct s3c24xx_i2c *i2c; - struct s3c2410_platform_i2c *pdata; - struct resource *res; - int ret; - -- pdata = s3c24xx_i2c_get_platformdata(&pdev->dev); -+ pdata = pdev->dev.platform_data; -+ if (!pdata) { -+ dev_err(&pdev->dev, "no platform data\n"); -+ return -EINVAL; -+ } -+ -+ i2c = kzalloc(sizeof(struct s3c24xx_i2c), GFP_KERNEL); -+ if (!i2c) { -+ dev_err(&pdev->dev, "no memory for state\n"); -+ return -ENOMEM; -+ } -+ -+ strlcpy(i2c->adap.name, "s3c2410-i2c", sizeof(i2c->adap.name)); -+ i2c->adap.owner = THIS_MODULE; -+ i2c->adap.algo = &s3c24xx_i2c_algorithm; -+ i2c->adap.retries = 2; -+ i2c->adap.class = I2C_CLASS_HWMON | I2C_CLASS_SPD; -+ i2c->tx_setup = 50; -+ -+ spin_lock_init(&i2c->lock); -+ init_waitqueue_head(&i2c->wait); - - /* find the clock and enable it */ - -@@ -878,7 +869,8 @@ static int s3c24xx_i2c_probe(struct plat - goto err_ioarea; - } - -- dev_dbg(&pdev->dev, "registers %p (%p, %p)\n", i2c->regs, i2c->ioarea, res); -+ dev_dbg(&pdev->dev, "registers %p (%p, %p)\n", -+ i2c->regs, i2c->ioarea, res); - - /* setup info block for the i2c core */ - -@@ -892,29 +884,23 @@ static int s3c24xx_i2c_probe(struct plat - goto err_iomap; - - /* find the IRQ for this unit (note, this relies on the init call to -- * ensure no current IRQs pending -+ * ensure no current IRQs pending - */ - -- res = platform_get_resource(pdev, IORESOURCE_IRQ, 0); -- if (res == NULL) { -+ i2c->irq = ret = platform_get_irq(pdev, 0); -+ if (ret <= 0) { - dev_err(&pdev->dev, "cannot find IRQ\n"); -- ret = -ENOENT; - goto err_iomap; - } - -- ret = request_irq(res->start, s3c24xx_i2c_irq, IRQF_DISABLED, -- pdev->name, i2c); -+ ret = request_irq(i2c->irq, s3c24xx_i2c_irq, IRQF_DISABLED, -+ dev_name(&pdev->dev), i2c); - - if (ret != 0) { -- dev_err(&pdev->dev, "cannot claim IRQ\n"); -+ dev_err(&pdev->dev, "cannot claim IRQ %d\n", i2c->irq); - goto err_iomap; - } - -- i2c->irq = res; -- -- dev_dbg(&pdev->dev, "irq resource %p (%lu)\n", res, -- (unsigned long)res->start); -- - ret = s3c24xx_i2c_register_cpufreq(i2c); - if (ret < 0) { - dev_err(&pdev->dev, "failed to register cpufreq notifier\n"); -@@ -944,7 +930,7 @@ static int s3c24xx_i2c_probe(struct plat - s3c24xx_i2c_deregister_cpufreq(i2c); - - err_irq: -- free_irq(i2c->irq->start, i2c); -+ free_irq(i2c->irq, i2c); - - err_iomap: - iounmap(i2c->regs); -@@ -958,6 +944,7 @@ static int s3c24xx_i2c_probe(struct plat - clk_put(i2c->clk); - - err_noclk: -+ kfree(i2c); - return ret; - } - -@@ -973,7 +960,7 @@ static int s3c24xx_i2c_remove(struct pla - s3c24xx_i2c_deregister_cpufreq(i2c); - - i2c_del_adapter(&i2c->adap); -- free_irq(i2c->irq->start, i2c); -+ free_irq(i2c->irq, i2c); - - clk_disable(i2c->clk); - clk_put(i2c->clk); -@@ -982,6 +969,7 @@ static int s3c24xx_i2c_remove(struct pla - - release_resource(i2c->ioarea); - kfree(i2c->ioarea); -+ kfree(i2c); - - return 0; - } ---- a/drivers/i2c/busses/Kconfig -+++ b/drivers/i2c/busses/Kconfig -@@ -455,11 +455,12 @@ config I2C_PXA_SLAVE - I2C bus. - - config I2C_S3C2410 -- tristate "S3C2410 I2C Driver" -- depends on ARCH_S3C2410 -+ tristate "Samsung SoC I2C Driver (S3C24XX and S3C64XX series)" -+ depends on ARCH_S3C2410 || ARCH_S3C64XX - help - Say Y here to include support for I2C controller in the -- Samsung S3C2410 based System-on-Chip devices. -+ Samsung S3C based System-on-Chip devices such as the S3C2410, -+ S3C2440, S3C2442, S3C2443 and S3C6410. - - config I2C_SH7760 - tristate "Renesas SH7760 I2C Controller" ---- a/drivers/i2c/chips/Kconfig -+++ b/drivers/i2c/chips/Kconfig -@@ -53,6 +53,26 @@ config SENSORS_EEPROM - This driver can also be built as a module. If so, the module - will be called eeprom. - -+config SENSORS_PCF50606 -+ tristate "Philips/NXP PCF50606" -+ depends on I2C -+ help -+ If you say yes here you get support for Philips/NXP PCF50606 -+ PMU (Power Management Unit) chips. -+ -+ This driver can also be built as a module. If so, the module -+ will be called pcf50606. -+ -+config SENSORS_PCF50633 -+ tristate "Philips PCF50633" -+ depends on I2C -+ help -+ If you say yes here you get support for Philips PCF50633 -+ PMU (Power Management Unit) chips. -+ -+ This driver can also be built as a module. If so, the module -+ will be called pcf50633. -+ - config SENSORS_PCF8574 - tristate "Philips PCF8574 and PCF8574A (DEPRECATED)" - depends on EXPERIMENTAL && GPIO_PCF857X = "n" -@@ -185,4 +205,23 @@ config MCU_MPC8349EMITX - also register MCU GPIOs with the generic GPIO API, so you'll able - to use MCU pins as GPIOs. - -+config SENSORS_TSL256X -+ tristate "Texas TSL256X Ambient Light Sensor" -+ depends on I2C -+ help -+ If you say yes here you get support for the Texas TSL256X -+ ambient light sensor chip. -+ -+ This driver can also be built as a module. If so, the module -+ will be called tsl256x. -+ -+config PCA9632 -+ tristate "Philips/NXP PCA9632 low power LED driver" -+ depends on I2C -+ help -+ If you say yes here you get support for the Philips/NXP PCA9632 -+ LED driver. -+ -+ This driver can also be built as a module. If so, the module -+ will be called pca9632. - endmenu ---- a/drivers/i2c/chips/Makefile -+++ b/drivers/i2c/chips/Makefile -@@ -15,6 +15,8 @@ obj-$(CONFIG_AT24) += at24.o - obj-$(CONFIG_SENSORS_EEPROM) += eeprom.o - obj-$(CONFIG_SENSORS_MAX6875) += max6875.o - obj-$(CONFIG_SENSORS_PCA9539) += pca9539.o -+obj-$(CONFIG_SENSORS_PCF50606) += pcf50606.o -+obj-$(CONFIG_SENSORS_PCF50633) += pcf50633.o - obj-$(CONFIG_SENSORS_PCF8574) += pcf8574.o - obj-$(CONFIG_PCF8575) += pcf8575.o - obj-$(CONFIG_SENSORS_PCF8591) += pcf8591.o -@@ -23,6 +25,8 @@ obj-$(CONFIG_TPS65010) += tps65010.o - obj-$(CONFIG_MENELAUS) += menelaus.o - obj-$(CONFIG_SENSORS_TSL2550) += tsl2550.o - obj-$(CONFIG_MCU_MPC8349EMITX) += mcu_mpc8349emitx.o -+obj-$(CONFIG_SENSORS_TSL256X) += tsl256x.o -+obj-$(CONFIG_PCA9632) += pca9632.o - - ifeq ($(CONFIG_I2C_DEBUG_CHIP),y) - EXTRA_CFLAGS += -DDEBUG ---- /dev/null -+++ b/drivers/i2c/chips/pca9632.c -@@ -0,0 +1,551 @@ -+/* -+ * Philips/NXP PCA9632 low power LED driver. -+ * Copyright (C) 2008 Matt Hsu <matt_hsu@openmoko.org> -+ * -+ * low_level implementation are based on pcf50606 driver -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; version 2 of the License. -+ * -+ * TODO: -+ * - attach ledclass?? -+ * - add platform data -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/i2c.h> -+#include <linux/platform_device.h> -+ -+#include "pca9632.h" -+ -+/* Addresses to scan */ -+static unsigned short normal_i2c[] = { 0x62, I2C_CLIENT_END }; -+ -+/* Insmod parameters */ -+I2C_CLIENT_INSMOD_1(pca9632); -+ -+enum pca9632_pwr_state { -+ PCA9632_NORMAL, -+ PCA9632_SLEEP, -+}; -+ -+enum pca9632_led_output { -+ PCA9632_OFF, -+ PCA9632_ON, -+ PCA9632_CTRL_BY_PWM, -+ PCA9632_CTRL_BY_PWM_GRPPWM, -+}; -+ -+static const char *led_output_name[] = { -+ [PCA9632_OFF] = "off", -+ [PCA9632_ON] = "fully-on", -+ [PCA9632_CTRL_BY_PWM] = "ctrl-by-pwm", -+ [PCA9632_CTRL_BY_PWM_GRPPWM] = "ctrl-by-pwm-grppwm", -+}; -+ -+struct pca9632_data { -+ struct i2c_client client; -+ struct mutex lock; -+}; -+ -+static struct i2c_driver pca9632_driver; -+static struct platform_device *pca9632_pdev; -+ -+static int pca9632_attach_adapter(struct i2c_adapter *adapter); -+static int pca9632_detach_client(struct i2c_client *client); -+ -+static int __reg_write(struct pca9632_data *pca, u_int8_t reg, u_int8_t val) -+{ -+ return i2c_smbus_write_byte_data(&pca->client, reg, val); -+} -+ -+static int reg_write(struct pca9632_data *pca, u_int8_t reg, u_int8_t val) -+{ -+ int ret; -+ -+ mutex_lock(&pca->lock); -+ ret = __reg_write(pca, reg, val); -+ mutex_unlock(&pca->lock); -+ -+ return ret; -+} -+ -+static int32_t __reg_read(struct pca9632_data *pca, u_int8_t reg) -+{ -+ int32_t ret; -+ -+ ret = i2c_smbus_read_byte_data(&pca->client, reg); -+ -+ return ret; -+} -+ -+static u_int8_t reg_read(struct pca9632_data *pca, u_int8_t reg) -+{ -+ int32_t ret; -+ -+ mutex_lock(&pca->lock); -+ ret = __reg_read(pca, reg); -+ mutex_unlock(&pca->lock); -+ -+ return ret & 0xff; -+} -+ -+static int reg_set_bit_mask(struct pca9632_data *pca, -+ u_int8_t reg, u_int8_t mask, u_int8_t val) -+{ -+ int ret; -+ u_int8_t tmp; -+ -+ val &= mask; -+ -+ mutex_lock(&pca->lock); -+ -+ tmp = __reg_read(pca, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ ret = __reg_write(pca, reg, tmp); -+ -+ mutex_unlock(&pca->lock); -+ -+ return ret; -+} -+ -+static inline int calc_dc(uint8_t idc) -+{ -+ return (idc * 100) / 256; -+} -+ -+/* -+ * Software reset -+ */ -+static int software_rst(struct i2c_adapter *adapter) -+{ -+ u8 buf[] = { 0xa5, 0x5a }; -+ -+ struct i2c_msg msg[] = { -+ { -+ .addr = 0x3, -+ .flags = 0, -+ .buf = &buf, -+ .len = sizeof(buf) -+ } -+ }; -+ -+ return i2c_transfer(adapter, msg, 1); -+} -+ -+/* -+ * Group dmblnk control -+ */ -+static void config_group_dmblnk(struct pca9632_data *pca, int group_dmblnk_mode) -+{ -+ reg_set_bit_mask(pca, PCA9632_REG_MODE2, 0x20, -+ group_dmblnk_mode << PCA9632_DMBLNK_SHIFT); -+} -+ -+static int get_group_dmblnk(struct pca9632_data *pca) -+{ -+ return reg_read(pca, PCA9632_REG_MODE2) >> PCA9632_DMBLNK_SHIFT; -+} -+ -+static ssize_t show_group_dmblnk(struct device *dev, struct device_attribute -+ *attr, char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ -+ if (get_group_dmblnk(pca)) -+ return sprintf(buf, "blinking\n"); -+ else -+ return sprintf(buf, "dimming\n"); -+} -+ -+static ssize_t set_group_dmblnk(struct device *dev, struct device_attribute -+ *attr, const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ unsigned int mode = simple_strtoul(buf, NULL, 10); -+ -+ if (mode) -+ dev_info(&pca->client.dev, "blinking\n"); -+ else -+ dev_info(&pca->client.dev, "dimming\n"); -+ -+ config_group_dmblnk(pca, mode); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(group_dmblnk, S_IRUGO | S_IWUSR, show_group_dmblnk, -+ set_group_dmblnk); -+ -+static int reg_id_by_name(const char *name) -+{ -+ int reg_id = -1; -+ -+ if (!strncmp(name, "led0", 4)) -+ reg_id = PCA9632_REG_PWM0; -+ else if (!strncmp(name, "led1", 4)) -+ reg_id = PCA9632_REG_PWM1; -+ else if (!strncmp(name, "led2", 4)) -+ reg_id = PCA9632_REG_PWM2; -+ else if (!strncmp(name, "led3", 4)) -+ reg_id = PCA9632_REG_PWM3; -+ -+ return reg_id; -+} -+ -+static int get_led_output(struct pca9632_data *pca, int ldrx) -+{ -+ u_int8_t led_state; -+ -+ ldrx = ldrx - 2; -+ led_state = reg_read(pca, PCA9632_REG_LEDOUT); -+ led_state = (led_state >> (2 * ldrx)) & 0x03; -+ -+ return led_state; -+} -+ -+static void config_led_output(struct pca9632_data *pca, int ldrx, -+ enum pca9632_led_output led_output) -+{ -+ u_int8_t mask; -+ int tmp; -+ -+ ldrx = ldrx - 2; -+ mask = 0x03 << (2 * ldrx); -+ tmp = reg_set_bit_mask(pca, PCA9632_REG_LEDOUT, -+ mask, led_output << (2 * ldrx)); -+} -+ -+/* -+ * Individual brightness control -+ */ -+static ssize_t show_brightness(struct device *dev, struct device_attribute -+ *attr, char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ int ldrx; -+ -+ ldrx = reg_id_by_name(attr->attr.name); -+ -+ switch (get_led_output(pca, ldrx)) { -+ -+ case PCA9632_OFF: -+ case PCA9632_ON: -+ return sprintf(buf, "%s", -+ led_output_name[get_led_output(pca, ldrx)]); -+ -+ case PCA9632_CTRL_BY_PWM: -+ return sprintf(buf, "%d%% \n", calc_dc(reg_read(pca, ldrx))); -+ -+ case PCA9632_CTRL_BY_PWM_GRPPWM: -+ /* check group dmblnk */ -+ if (get_group_dmblnk(pca)) -+ return sprintf(buf, "%d%% \n", -+ calc_dc(reg_read(pca, ldrx))); -+ return sprintf(buf, "%d%% \n", -+ calc_dc((reg_read(pca, ldrx) & 0xfc))); -+ default: -+ break; -+ } -+ -+ return sprintf(buf, "invalid argument\n"); -+} -+ -+static ssize_t set_brightness(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ unsigned int pwm = simple_strtoul(buf, NULL, 10); -+ int ldrx; -+ -+ ldrx = reg_id_by_name(attr->attr.name); -+ reg_set_bit_mask(pca, ldrx, 0xff, pwm); -+ -+ return count; -+} -+ -+static -+DEVICE_ATTR(led0_pwm, S_IRUGO | S_IWUSR, show_brightness, set_brightness); -+static -+DEVICE_ATTR(led1_pwm, S_IRUGO | S_IWUSR, show_brightness, set_brightness); -+static -+DEVICE_ATTR(led2_pwm, S_IRUGO | S_IWUSR, show_brightness, set_brightness); -+static -+DEVICE_ATTR(led3_pwm, S_IRUGO | S_IWUSR, show_brightness, set_brightness); -+ -+/* -+ * Group frequency control -+ */ -+static ssize_t show_group_freq(struct device *dev, struct device_attribute -+ *attr, char *buf) -+{ -+ uint32_t period; -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ -+ period = ((reg_read(pca, PCA9632_REG_GRPFREQ) + 1) * 1000) / 24; -+ -+ return sprintf(buf, "%d ms\n", period); -+} -+ -+static ssize_t set_group_freq(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ -+ unsigned int freq = simple_strtoul(buf, NULL, 10); -+ reg_write(pca, PCA9632_REG_GRPFREQ, freq); -+ return count; -+} -+ -+static -+DEVICE_ATTR(group_freq, S_IRUGO | S_IWUSR, show_group_freq, set_group_freq); -+ -+/* -+ * Group duty cycle tonrol* -+ */ -+static ssize_t show_group_dc(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ -+ if (get_group_dmblnk(pca)) { -+ -+ if (reg_read(pca, PCA9632_REG_GRPFREQ) <= 0x03) -+ return sprintf(buf, "%d%% \n", -+ calc_dc(reg_read(pca, PCA9632_REG_GRPPWM) & 0xfc)); -+ -+ return sprintf(buf, "%d%% \n", calc_dc(reg_read(pca, -+ PCA9632_REG_GRPPWM))); -+ } -+ -+ return sprintf(buf, "%d%% \n", calc_dc(reg_read(pca, -+ PCA9632_REG_GRPPWM) & 0xf0)); -+} -+ -+static ssize_t set_group_dc(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ -+ unsigned int dc = simple_strtoul(buf, NULL, 10); -+ -+ reg_set_bit_mask(pca, PCA9632_REG_GRPPWM, 0xff, dc); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(group_dc, S_IRUGO | S_IWUSR, show_group_dc, set_group_dc); -+ -+/* -+ * LED driver output -+ */ -+static ssize_t show_led_output(struct device *dev, struct device_attribute -+ *attr, char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ int ldrx; -+ -+ ldrx = reg_id_by_name(attr->attr.name); -+ -+ return sprintf(buf, "%s \n", -+ led_output_name[get_led_output(pca, ldrx)]); -+ -+} -+static ssize_t set_led_output(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pca9632_data *pca = i2c_get_clientdata(client); -+ enum pca9632_led_output led_output; -+ int ldrx; -+ -+ led_output = simple_strtoul(buf, NULL, 10); -+ ldrx = reg_id_by_name(attr->attr.name); -+ config_led_output(pca, ldrx, led_output); -+ -+ return count; -+} -+ -+static -+DEVICE_ATTR(led0_output, S_IRUGO | S_IWUSR, show_led_output, set_led_output); -+static -+DEVICE_ATTR(led1_output, S_IRUGO | S_IWUSR, show_led_output, set_led_output); -+static -+DEVICE_ATTR(led2_output, S_IRUGO | S_IWUSR, show_led_output, set_led_output); -+static -+DEVICE_ATTR(led3_output, S_IRUGO | S_IWUSR, show_led_output, set_led_output); -+ -+static struct attribute *pca_sysfs_entries[] = { -+ &dev_attr_group_dmblnk.attr, -+ &dev_attr_led0_pwm.attr, -+ &dev_attr_led1_pwm.attr, -+ &dev_attr_led2_pwm.attr, -+ &dev_attr_led3_pwm.attr, -+ &dev_attr_group_dc.attr, -+ &dev_attr_group_freq.attr, -+ &dev_attr_led0_output.attr, -+ &dev_attr_led1_output.attr, -+ &dev_attr_led2_output.attr, -+ &dev_attr_led3_output.attr, -+ NULL -+}; -+ -+static struct attribute_group pca_attr_group = { -+ .name = NULL, /* put in device directory */ -+ .attrs = pca_sysfs_entries, -+}; -+ -+#ifdef CONFIG_PM -+static int pca9632_suspend(struct device *dev, pm_message_t state) -+{ -+ /* FIXME: Not implemented */ -+ return 0; -+} -+ -+static int pca9632_resume(struct device *dev) -+{ -+ /* FIXME: Not implemented */ -+ return 0; -+} -+#else -+#define pca9632_suspend NULL -+#define pca9632_resume NULL -+#endif -+ -+static struct i2c_driver pca9632_driver = { -+ .driver = { -+ .name = "pca9632", -+ .suspend = pca9632_suspend, -+ .resume = pca9632_resume, -+ }, -+ .id = I2C_DRIVERID_PCA9632, -+ .attach_adapter = pca9632_attach_adapter, -+ .detach_client = pca9632_detach_client, -+}; -+ -+static int pca9632_detect(struct i2c_adapter *adapter, int address, int kind) -+{ -+ struct i2c_client *new_client; -+ struct pca9632_data *pca; -+ int err; -+ -+ pca = kzalloc(sizeof(struct pca9632_data), GFP_KERNEL); -+ if (!pca) -+ return -ENOMEM; -+ -+ mutex_init(&pca->lock); -+ -+ new_client = &pca->client; -+ i2c_set_clientdata(new_client, pca); -+ new_client->addr = address; -+ new_client->adapter = adapter; -+ new_client->driver = &pca9632_driver; -+ new_client->flags = 0; -+ -+ strlcpy(new_client->name, "pca9632", I2C_NAME_SIZE); -+ -+ /* register with i2c core */ -+ err = i2c_attach_client(new_client); -+ if (err) -+ goto exit_kfree; -+ -+ err = sysfs_create_group(&new_client->dev.kobj, &pca_attr_group); -+ if (err) -+ goto exit_detach; -+ -+ /* software reset */ -+ if (!software_rst(adapter)) -+ dev_info(&pca->client.dev, "pca9632 sw-rst done\n"); -+ -+ /* enter normal mode */ -+ reg_set_bit_mask(pca, PCA9632_REG_MODE1, 0x10, PCA9632_NORMAL); -+ -+ return 0; -+ -+exit_detach: -+ i2c_detach_client(new_client); -+exit_kfree: -+ kfree(pca); -+ -+ return err; -+} -+ -+static int pca9632_attach_adapter(struct i2c_adapter *adapter) -+{ -+ return i2c_probe(adapter, &addr_data, pca9632_detect); -+} -+ -+static int pca9632_detach_client(struct i2c_client *client) -+{ -+ int err; -+ -+ sysfs_remove_group(&client->dev.kobj, &pca_attr_group); -+ err = i2c_detach_client(client); -+ -+ if (err) -+ return err; -+ -+ kfree(i2c_get_clientdata(client)); -+ -+ return 0; -+} -+ -+static int __init pca9632_plat_probe(struct platform_device *pdev) -+{ -+ /* FIXME: platform data should be attached here */ -+ pca9632_pdev = pdev; -+ -+ return 0; -+} -+ -+static int pca9632_plat_remove(struct platform_device *pdev) -+{ -+ return 0; -+} -+ -+static struct platform_driver pca9632_plat_driver = { -+ .probe = pca9632_plat_probe, -+ .remove = pca9632_plat_remove, -+ .driver = { -+ .owner = THIS_MODULE, -+ .name = "pca9632", -+ }, -+}; -+ -+static int __init pca9632_init(void) -+{ -+ int rc; -+ -+ rc = platform_driver_register(&pca9632_plat_driver); -+ if (!rc) -+ i2c_add_driver(&pca9632_driver); -+ -+ return rc; -+} -+ -+static void __exit pca9632_exit(void) -+{ -+ i2c_del_driver(&pca9632_driver); -+ -+ platform_driver_unregister(&pca9632_plat_driver); -+} -+ -+MODULE_AUTHOR("Matt Hsu <matt_hsu@openmoko.org>"); -+MODULE_DESCRIPTION("NXP PCA9632 driver"); -+MODULE_LICENSE("GPL"); -+ -+module_init(pca9632_init); -+module_exit(pca9632_exit); ---- /dev/null -+++ b/drivers/i2c/chips/pca9632.h -@@ -0,0 +1,24 @@ -+#ifndef _PCA9632_H -+#define _PCA9632_H -+ -+ -+enum pca9632_regs{ -+ -+ PCA9632_REG_MODE1 = 0x00, -+ PCA9632_REG_MODE2 = 0x01, -+ PCA9632_REG_PWM0 = 0x02, -+ PCA9632_REG_PWM1 = 0x03, -+ PCA9632_REG_PWM2 = 0x04, -+ PCA9632_REG_PWM3 = 0x05, -+ PCA9632_REG_GRPPWM = 0x06, -+ PCA9632_REG_GRPFREQ = 0x07, -+ PCA9632_REG_LEDOUT = 0x08, -+ PCA9632_REG_SUBADDR1 = 0x09, -+ PCA9632_REG_SUBADDR2 = 0x0a, -+ PCA9632_REG_SUBADDR3 = 0x0b, -+ PCA9632_REG_ALLCALLADR1 = 0x0c, -+}; -+ -+#define PCA9632_DMBLNK_SHIFT 5 -+ -+#endif /* _PCA9632_H */ ---- /dev/null -+++ b/drivers/i2c/chips/pcf50606.c -@@ -0,0 +1,2193 @@ -+/* Philips/NXP PCF50606 Power Management Unit (PMU) driver -+ * -+ * (C) 2006-2007 by Openmoko, Inc. -+ * Authors: Harald Welte <laforge@openmoko.org>, -+ * Matt Hsu <matt@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ * This driver is a monster ;) It provides the following features -+ * - voltage control for a dozen different voltage domains -+ * - charging control for main and backup battery -+ * - rtc / alarm -+ * - watchdog -+ * - adc driver (hw_sensors like) -+ * - pwm driver -+ * - backlight -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/i2c.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/irq.h> -+#include <linux/workqueue.h> -+#include <linux/delay.h> -+#include <linux/rtc.h> -+#include <linux/bcd.h> -+#include <linux/watchdog.h> -+#include <linux/miscdevice.h> -+#include <linux/input.h> -+#include <linux/fb.h> -+#include <linux/backlight.h> -+#include <linux/sched.h> -+#include <linux/platform_device.h> -+#include <linux/pcf50606.h> -+#include <linux/apm-emulation.h> -+ -+#include <asm/mach-types.h> -+#include <mach/gta01.h> -+ -+#include "pcf50606.h" -+ -+/* we use dev_dbg() throughout the code, but sometimes don't want to -+ * write an entire line of debug related information. This DEBUGPC -+ * macro is a continuation for dev_dbg() */ -+#ifdef DEBUG -+#define DEBUGPC(x, args ...) printk(x, ## args) -+#else -+#define DEBUGPC(x, args ...) -+#endif -+ -+/*********************************************************************** -+ * Static data / structures -+ ***********************************************************************/ -+ -+static unsigned short normal_i2c[] = { 0x08, I2C_CLIENT_END }; -+ -+I2C_CLIENT_INSMOD_1(pcf50606); -+ -+#define PCF50606_B_CHG_FAST 0 /* Charger Fast allowed */ -+#define PCF50606_B_CHG_PRESENT 1 /* Charger present */ -+#define PCF50606_B_CHG_FOK 2 /* Fast OK for battery */ -+#define PCF50606_B_CHG_ERR 3 /* Charger Error */ -+#define PCF50606_B_CHG_PROT 4 /* Charger Protection */ -+#define PCF50606_B_CHG_READY 5 /* Charging completed */ -+ -+#define PCF50606_F_CHG_FAST (1<<PCF50606_B_CHG_FAST) -+#define PCF50606_F_CHG_PRESENT (1<<PCF50606_B_CHG_PRESENT) -+#define PCF50606_F_CHG_FOK (1<<PCF50606_B_CHG_FOK) -+#define PCF50606_F_CHG_ERR (1<<PCF50606_B_CHG_ERR) -+#define PCF50606_F_CHG_PROT (1<<PCF50606_B_CHG_PROT) -+#define PCF50606_F_CHG_READY (1<<PCF50606_B_CHG_READY) -+#define PCF50606_F_CHG_MASK 0x000000fc -+ -+#define PCF50606_F_PWR_PRESSED 0x00000100 -+#define PCF50606_F_RTC_SECOND 0x00000200 -+ -+enum close_state { -+ CLOSE_STATE_NOT, -+ CLOSE_STATE_ALLOW = 0x2342, -+}; -+ -+enum pcf50606_suspend_states { -+ PCF50606_SS_RUNNING, -+ PCF50606_SS_STARTING_SUSPEND, -+ PCF50606_SS_COMPLETED_SUSPEND, -+ PCF50606_SS_RESUMING_BUT_NOT_US_YET, -+ PCF50606_SS_STARTING_RESUME, -+ PCF50606_SS_COMPLETED_RESUME, -+}; -+ -+struct pcf50606_data { -+ struct i2c_client client; -+ struct pcf50606_platform_data *pdata; -+ struct backlight_device *backlight; -+ struct mutex lock; -+ unsigned int flags; -+ unsigned int working; -+ struct mutex working_lock; -+ struct work_struct work; -+ struct rtc_device *rtc; -+ struct input_dev *input_dev; -+ int allow_close; -+ int onkey_seconds; -+ int irq; -+ int coldplug_done; -+ int suppress_onkey_events; -+ enum pcf50606_suspend_states suspend_state; -+#ifdef CONFIG_PM -+ struct { -+ u_int8_t dcdc1, dcdc2; -+ u_int8_t dcdec1; -+ u_int8_t dcudc1; -+ u_int8_t ioregc; -+ u_int8_t d1regc1; -+ u_int8_t d2regc1; -+ u_int8_t d3regc1; -+ u_int8_t lpregc1; -+ u_int8_t adcc1, adcc2; -+ u_int8_t pwmc1; -+ u_int8_t int1m, int2m, int3m; -+ } standby_regs; -+#endif -+}; -+ -+static struct i2c_driver pcf50606_driver; -+ -+/* This is an ugly construct on how to access the (currently single/global) -+ * pcf50606 handle from other code in the kernel. I didn't really come up with -+ * a more decent method of dynamically resolving this */ -+struct pcf50606_data *pcf50606_global; -+EXPORT_SYMBOL_GPL(pcf50606_global); -+ -+static struct platform_device *pcf50606_pdev; -+ -+/* This is a 10k, B=3370 NTC Thermistor -10..79 centigrade */ -+/* Table entries are offset by +0.5C so a properly rounded value is generated */ -+static const u_int16_t ntc_table_10k_3370B[] = { -+ /* -10 */ -+ 43888, 41819, 39862, 38010, 36257, 34596, 33024, 31534, 30121, 28781, -+ 27510, 26304, 25159, 24071, 23038, 22056, 21122, 20234, 19390, 18586, -+ 17821, 17093, 16399, 15738, 15107, 14506, 13933, 13387, 12865, 12367, -+ 11891, 11437, 11003, 10588, 10192, 9813, 9450, 9103, 8771, 8453, -+ 8149, 7857, 7578, 7310, 7054, 6808, 6572, 6346, 6129, 5920, -+ 5720, 5528, 5344, 5167, 4996, 4833, 4675, 4524, 4379, 4239, -+ 4104, 3975, 3850, 3730, 3614, 3503, 3396, 3292, 3193, 3097, -+ 3004, 2915, 2829, 2745, 2665, 2588, 2513, 2441, 2371, 2304, -+ 2239, 2176, 2116, 2057, 2000, 1945, 1892, 1841, 1791, 1743, -+}; -+ -+ -+/*********************************************************************** -+ * Low-Level routines -+ ***********************************************************************/ -+ -+static inline int __reg_write(struct pcf50606_data *pcf, u_int8_t reg, -+ u_int8_t val) -+{ -+ if (pcf->suspend_state == PCF50606_SS_COMPLETED_SUSPEND) { -+ dev_err(&pcf->client.dev, "__reg_write while suspended.\n"); -+ dump_stack(); -+ } -+ return i2c_smbus_write_byte_data(&pcf->client, reg, val); -+} -+ -+static int reg_write(struct pcf50606_data *pcf, u_int8_t reg, u_int8_t val) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = __reg_write(pcf, reg, val); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+ -+static inline int32_t __reg_read(struct pcf50606_data *pcf, u_int8_t reg) -+{ -+ int32_t ret; -+ -+ if (pcf->suspend_state == PCF50606_SS_COMPLETED_SUSPEND) { -+ dev_err(&pcf->client.dev, "__reg_read while suspended.\n"); -+ dump_stack(); -+ } -+ ret = i2c_smbus_read_byte_data(&pcf->client, reg); -+ -+ return ret; -+} -+ -+static u_int8_t reg_read(struct pcf50606_data *pcf, u_int8_t reg) -+{ -+ int32_t ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = __reg_read(pcf, reg); -+ mutex_unlock(&pcf->lock); -+ -+ return ret & 0xff; -+} -+ -+static int reg_set_bit_mask(struct pcf50606_data *pcf, -+ u_int8_t reg, u_int8_t mask, u_int8_t val) -+{ -+ int ret; -+ u_int8_t tmp; -+ -+ val &= mask; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = __reg_read(pcf, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ ret = __reg_write(pcf, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+ -+static int reg_clear_bits(struct pcf50606_data *pcf, u_int8_t reg, u_int8_t val) -+{ -+ int ret; -+ u_int8_t tmp; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = __reg_read(pcf, reg); -+ tmp &= ~val; -+ ret = __reg_write(pcf, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+ -+/* synchronously read one ADC channel (busy-wait for result to be complete) */ -+static u_int16_t adc_read(struct pcf50606_data *pcf, int channel, -+ u_int16_t *data2) -+{ -+ u_int8_t adcs2, adcs1; -+ u_int16_t ret; -+ -+ dev_dbg(&pcf->client.dev, "entering (pcf=%p, channel=%u, data2=%p)\n", -+ pcf, channel, data2); -+ -+ channel &= PCF50606_ADCC2_ADCMUX_MASK; -+ -+ mutex_lock(&pcf->lock); -+ -+ /* start ADC conversion of selected channel */ -+ __reg_write(pcf, PCF50606_REG_ADCC2, channel | -+ PCF50606_ADCC2_ADCSTART | PCF50606_ADCC2_RES_10BIT); -+ -+ do { -+ adcs2 = __reg_read(pcf, PCF50606_REG_ADCS2); -+ } while (!(adcs2 & PCF50606_ADCS2_ADCRDY)); -+ -+ adcs1 = __reg_read(pcf, PCF50606_REG_ADCS1); -+ ret = (adcs1 << 2) | (adcs2 & 0x03); -+ -+ if (data2) { -+ adcs1 = __reg_read(pcf, PCF50606_REG_ADCS3); -+ *data2 = (adcs1 << 2) | ((adcs2 & 0x0c) >> 2); -+ } -+ -+ mutex_unlock(&pcf->lock); -+ -+ dev_dbg(&pcf->client.dev, "returning %u %u\n", ret, -+ data2 ? *data2 : 0); -+ -+ return ret; -+} -+ -+/*********************************************************************** -+ * Voltage / ADC -+ ***********************************************************************/ -+ -+static u_int8_t dcudc_voltage(unsigned int millivolts) -+{ -+ if (millivolts < 900) -+ return 0; -+ if (millivolts > 5500) -+ return 0x1f; -+ if (millivolts <= 3300) { -+ millivolts -= 900; -+ return millivolts/300; -+ } -+ if (millivolts < 4000) -+ return 0x0f; -+ else { -+ millivolts -= 4000; -+ return millivolts/100; -+ } -+} -+ -+static unsigned int dcudc_2voltage(u_int8_t bits) -+{ -+ bits &= 0x1f; -+ if (bits < 0x08) -+ return 900 + bits * 300; -+ else if (bits < 0x10) -+ return 3300; -+ else -+ return 4000 + bits * 100; -+} -+ -+static u_int8_t dcdec_voltage(unsigned int millivolts) -+{ -+ if (millivolts < 900) -+ return 0; -+ else if (millivolts > 3300) -+ return 0x0f; -+ -+ millivolts -= 900; -+ return millivolts/300; -+} -+ -+static unsigned int dcdec_2voltage(u_int8_t bits) -+{ -+ bits &= 0x0f; -+ return 900 + bits*300; -+} -+ -+static u_int8_t dcdc_voltage(unsigned int millivolts) -+{ -+ if (millivolts < 900) -+ return 0; -+ else if (millivolts > 3600) -+ return 0x1f; -+ -+ if (millivolts < 1500) { -+ millivolts -= 900; -+ return millivolts/25; -+ } else { -+ millivolts -= 1500; -+ return 0x18 + millivolts/300; -+ } -+} -+ -+static unsigned int dcdc_2voltage(u_int8_t bits) -+{ -+ bits &= 0x1f; -+ if ((bits & 0x18) == 0x18) -+ return 1500 + ((bits & 0x7) * 300); -+ else -+ return 900 + (bits * 25); -+} -+ -+static u_int8_t dx_voltage(unsigned int millivolts) -+{ -+ if (millivolts < 900) -+ return 0; -+ else if (millivolts > 3300) -+ return 0x18; -+ -+ millivolts -= 900; -+ return millivolts/100; -+} -+ -+static unsigned int dx_2voltage(u_int8_t bits) -+{ -+ bits &= 0x1f; -+ return 900 + (bits * 100); -+} -+ -+static const u_int8_t regulator_registers[__NUM_PCF50606_REGULATORS] = { -+ [PCF50606_REGULATOR_DCD] = PCF50606_REG_DCDC1, -+ [PCF50606_REGULATOR_DCDE] = PCF50606_REG_DCDEC1, -+ [PCF50606_REGULATOR_DCUD] = PCF50606_REG_DCUDC1, -+ [PCF50606_REGULATOR_D1REG] = PCF50606_REG_D1REGC1, -+ [PCF50606_REGULATOR_D2REG] = PCF50606_REG_D2REGC1, -+ [PCF50606_REGULATOR_D3REG] = PCF50606_REG_D3REGC1, -+ [PCF50606_REGULATOR_LPREG] = PCF50606_REG_LPREGC1, -+ [PCF50606_REGULATOR_IOREG] = PCF50606_REG_IOREGC, -+}; -+ -+int pcf50606_onoff_set(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg, int on) -+{ -+ u_int8_t addr; -+ -+ if (reg >= __NUM_PCF50606_REGULATORS) -+ return -EINVAL; -+ -+ /* IOREG cannot be powered off since it powers the PMU I2C */ -+ if (reg == PCF50606_REGULATOR_IOREG) -+ return -EIO; -+ -+ addr = regulator_registers[reg]; -+ -+ if (on == 0) -+ reg_set_bit_mask(pcf, addr, 0xe0, 0x00); -+ else -+ reg_set_bit_mask(pcf, addr, 0xe0, 0xe0); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50606_onoff_set); -+ -+int pcf50606_onoff_get(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg) -+{ -+ u_int8_t val, addr; -+ -+ if (reg >= __NUM_PCF50606_REGULATORS) -+ return -EINVAL; -+ -+ addr = regulator_registers[reg]; -+ val = (reg_read(pcf, addr) & 0xe0) >> 5; -+ -+ /* PWREN1 = 1, PWREN2 = 1, see table 16 of datasheet */ -+ switch (val) { -+ case 0: -+ case 5: -+ return 0; -+ default: -+ return 1; -+ } -+} -+EXPORT_SYMBOL_GPL(pcf50606_onoff_get); -+ -+int pcf50606_voltage_set(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg, -+ unsigned int millivolts) -+{ -+ u_int8_t volt_bits; -+ u_int8_t regnr; -+ int rc; -+ -+ dev_dbg(&pcf->client.dev, "pcf=%p, reg=%d, mvolts=%d\n", pcf, reg, -+ millivolts); -+ -+ if (reg >= __NUM_PCF50606_REGULATORS) -+ return -EINVAL; -+ -+ if (millivolts > pcf->pdata->rails[reg].voltage.max) -+ return -EINVAL; -+ -+ switch (reg) { -+ case PCF50606_REGULATOR_DCD: -+ volt_bits = dcdc_voltage(millivolts); -+ rc = reg_set_bit_mask(pcf, PCF50606_REG_DCDC1, 0x1f, -+ volt_bits); -+ break; -+ case PCF50606_REGULATOR_DCDE: -+ volt_bits = dcdec_voltage(millivolts); -+ rc = reg_set_bit_mask(pcf, PCF50606_REG_DCDEC1, 0x0f, -+ volt_bits); -+ break; -+ case PCF50606_REGULATOR_DCUD: -+ volt_bits = dcudc_voltage(millivolts); -+ rc = reg_set_bit_mask(pcf, PCF50606_REG_DCUDC1, 0x1f, -+ volt_bits); -+ break; -+ case PCF50606_REGULATOR_D1REG: -+ case PCF50606_REGULATOR_D2REG: -+ case PCF50606_REGULATOR_D3REG: -+ regnr = PCF50606_REG_D1REGC1 + (reg - PCF50606_REGULATOR_D1REG); -+ volt_bits = dx_voltage(millivolts); -+ rc = reg_set_bit_mask(pcf, regnr, 0x1f, volt_bits); -+ break; -+ case PCF50606_REGULATOR_LPREG: -+ volt_bits = dx_voltage(millivolts); -+ rc = reg_set_bit_mask(pcf, PCF50606_REG_LPREGC1, 0x1f, -+ volt_bits); -+ break; -+ case PCF50606_REGULATOR_IOREG: -+ if (millivolts < 1800) -+ return -EINVAL; -+ volt_bits = dx_voltage(millivolts); -+ rc = reg_set_bit_mask(pcf, PCF50606_REG_IOREGC, 0x1f, -+ volt_bits); -+ break; -+ default: -+ return -EINVAL; -+ } -+ -+ return rc; -+} -+EXPORT_SYMBOL_GPL(pcf50606_voltage_set); -+ -+unsigned int pcf50606_voltage_get(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg) -+{ -+ u_int8_t volt_bits; -+ u_int8_t regnr; -+ unsigned int rc = 0; -+ -+ if (reg >= __NUM_PCF50606_REGULATORS) -+ return -EINVAL; -+ -+ switch (reg) { -+ case PCF50606_REGULATOR_DCD: -+ volt_bits = reg_read(pcf, PCF50606_REG_DCDC1) & 0x1f; -+ rc = dcdc_2voltage(volt_bits); -+ break; -+ case PCF50606_REGULATOR_DCDE: -+ volt_bits = reg_read(pcf, PCF50606_REG_DCDEC1) & 0x0f; -+ rc = dcdec_2voltage(volt_bits); -+ break; -+ case PCF50606_REGULATOR_DCUD: -+ volt_bits = reg_read(pcf, PCF50606_REG_DCUDC1) & 0x1f; -+ rc = dcudc_2voltage(volt_bits); -+ break; -+ case PCF50606_REGULATOR_D1REG: -+ case PCF50606_REGULATOR_D2REG: -+ case PCF50606_REGULATOR_D3REG: -+ regnr = PCF50606_REG_D1REGC1 + (reg - PCF50606_REGULATOR_D1REG); -+ volt_bits = reg_read(pcf, regnr) & 0x1f; -+ if (volt_bits > 0x18) -+ volt_bits = 0x18; -+ rc = dx_2voltage(volt_bits); -+ break; -+ case PCF50606_REGULATOR_LPREG: -+ volt_bits = reg_read(pcf, PCF50606_REG_LPREGC1) & 0x1f; -+ if (volt_bits > 0x18) -+ volt_bits = 0x18; -+ rc = dx_2voltage(volt_bits); -+ break; -+ case PCF50606_REGULATOR_IOREG: -+ volt_bits = reg_read(pcf, PCF50606_REG_IOREGC) & 0x1f; -+ if (volt_bits > 0x18) -+ volt_bits = 0x18; -+ rc = dx_2voltage(volt_bits); -+ break; -+ default: -+ return -EINVAL; -+ } -+ -+ return rc; -+} -+EXPORT_SYMBOL_GPL(pcf50606_voltage_get); -+ -+/* go into 'STANDBY' mode, i.e. power off the main CPU and peripherals */ -+void pcf50606_go_standby(void) -+{ -+ reg_write(pcf50606_global, PCF50606_REG_OOCC1, -+ PCF50606_OOCC1_GOSTDBY); -+} -+EXPORT_SYMBOL_GPL(pcf50606_go_standby); -+ -+void pcf50606_gpo0_set(struct pcf50606_data *pcf, int on) -+{ -+ u_int8_t val; -+ -+ if (on) -+ val = 0x07; -+ else -+ val = 0x0f; -+ -+ reg_set_bit_mask(pcf, PCF50606_REG_GPOC1, 0x0f, val); -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo0_set); -+ -+int pcf50606_gpo0_get(struct pcf50606_data *pcf) -+{ -+ u_int8_t reg = reg_read(pcf, PCF50606_REG_GPOC1) & 0x0f; -+ -+ if (reg == 0x07 || reg == 0x08) -+ return 1; -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo0_get); -+ -+static void pcf50606_work(struct work_struct *work) -+{ -+ struct pcf50606_data *pcf = -+ container_of(work, struct pcf50606_data, work); -+ u_int8_t pcfirq[3]; -+ int ret; -+ -+ mutex_lock(&pcf->working_lock); -+ pcf->working = 1; -+ -+ /* sanity */ -+ if (!&pcf->client.dev) -+ goto bail; -+ -+ /* -+ * if we are presently suspending, we are not in a position to deal -+ * with pcf50606 interrupts at all. -+ * -+ * Because we didn't clear the int pending registers, there will be -+ * no edge / interrupt waiting for us when we wake. But it is OK -+ * because at the end of our resume, we call this workqueue function -+ * gratuitously, clearing the pending register and re-enabling -+ * servicing this interrupt. -+ */ -+ -+ if ((pcf->suspend_state == PCF50606_SS_STARTING_SUSPEND) || -+ (pcf->suspend_state == PCF50606_SS_COMPLETED_SUSPEND)) -+ goto bail; -+ -+ /* -+ * If we are inside suspend -> resume completion time we don't attempt -+ * service until we have fully resumed. Although we could talk to the -+ * device as soon as I2C is up, the regs in the device which we might -+ * choose to modify as part of the service action have not been -+ * reloaded with their pre-suspend states yet. Therefore we will -+ * defer our service if we are called like that until our resume has -+ * completed. -+ * -+ * This shouldn't happen any more because we disable servicing this -+ * interrupt in suspend and don't re-enable it until resume is -+ * completed. -+ */ -+ -+ if (pcf->suspend_state && -+ (pcf->suspend_state != PCF50606_SS_COMPLETED_RESUME)) -+ goto reschedule; -+ -+ /* this is the case early in resume! Sanity check! */ -+ if (i2c_get_clientdata(&pcf->client) == NULL) -+ goto reschedule; -+ -+ /* -+ * p35 pcf50606 datasheet rev 2.2: -+ * ''The system controller shall read all interrupt registers in -+ * one I2C read action'' -+ * because if you don't INT# gets stuck asserted forever after a -+ * while -+ */ -+ ret = i2c_smbus_read_i2c_block_data(&pcf->client, PCF50606_REG_INT1, -+ sizeof(pcfirq), pcfirq); -+ if (ret != sizeof(pcfirq)) { -+ DEBUGPC("Oh crap PMU IRQ register read failed %d\n", ret); -+ /* -+ * it shouldn't fail, we no longer attempt to use -+ * I2C while it can be suspended. But we don't have -+ * much option but to retry if if it ever did fail, -+ * because if we don't service the interrupt to clear -+ * it, we will never see another PMU interrupt edge. -+ */ -+ goto reschedule; -+ } -+ -+ /* hey did we just resume? (because we don't get here unless we are -+ * running normally or the first call after resumption) -+ * -+ * pcf50606 resume is really really over now then. -+ */ -+ if (pcf->suspend_state != PCF50606_SS_RUNNING) { -+ pcf->suspend_state = PCF50606_SS_RUNNING; -+ -+ /* peek at the IRQ reason, if power button then set a flag -+ * so that we do not signal the event to userspace -+ */ -+ if (pcfirq[0] & (PCF50606_INT1_ONKEYF | PCF50606_INT1_ONKEYR)) { -+ pcf->suppress_onkey_events = 1; -+ dev_dbg(&pcf->client.dev, -+ "Wake by ONKEY, suppressing ONKEY events"); -+ } else { -+ pcf->suppress_onkey_events = 0; -+ } -+ } -+ -+ if (!pcf->coldplug_done) { -+ DEBUGPC("PMU Coldplug init\n"); -+ -+ /* we used SECOND to kick ourselves started -- turn it off */ -+ pcfirq[0] &= ~PCF50606_INT1_SECOND; -+ reg_set_bit_mask(pcf, PCF50606_REG_INT1M, PCF50606_INT1_SECOND, -+ PCF50606_INT1_SECOND); -+ -+ /* coldplug the USB if present */ -+ if (__reg_read(pcf, PCF50606_REG_OOCS) & PCF50606_OOCS_EXTON) { -+ /* Charger inserted */ -+ DEBUGPC("COLD CHGINS "); -+ input_report_key(pcf->input_dev, KEY_BATTERY, 1); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags |= PCF50606_F_CHG_PRESENT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client.dev, -+ PCF50606_FEAT_MBC, -+ PMU_EVT_INSERT); -+ } -+ -+ pcf->coldplug_done = 1; -+ } -+ -+ -+ dev_dbg(&pcf->client.dev, "INT1=0x%02x INT2=0x%02x INT3=0x%02x:", -+ pcfirq[0], pcfirq[1], pcfirq[2]); -+ -+ if (pcfirq[0] & PCF50606_INT1_ONKEYF) { -+ /* ONKEY falling edge (start of button press) */ -+ pcf->flags |= PCF50606_F_PWR_PRESSED; -+ if (!pcf->suppress_onkey_events) { -+ DEBUGPC("ONKEYF "); -+ input_report_key(pcf->input_dev, KEY_POWER, 1); -+ } else { -+ DEBUGPC("ONKEYF(unreported) "); -+ } -+ } -+ if (pcfirq[0] & PCF50606_INT1_ONKEY1S) { -+ /* ONKEY pressed for more than 1 second */ -+ pcf->onkey_seconds = 0; -+ DEBUGPC("ONKEY1S "); -+ /* Tell PMU we are taking care of this */ -+ reg_set_bit_mask(pcf, PCF50606_REG_OOCC1, -+ PCF50606_OOCC1_TOTRST, -+ PCF50606_OOCC1_TOTRST); -+ /* enable SECOND interrupt (hz tick) */ -+ reg_clear_bits(pcf, PCF50606_REG_INT1M, PCF50606_INT1_SECOND); -+ } -+ if (pcfirq[0] & PCF50606_INT1_ONKEYR) { -+ /* ONKEY rising edge (end of button press) */ -+ pcf->flags &= ~PCF50606_F_PWR_PRESSED; -+ pcf->onkey_seconds = -1; -+ if (!pcf->suppress_onkey_events) { -+ DEBUGPC("ONKEYR "); -+ input_report_key(pcf->input_dev, KEY_POWER, 0); -+ } else { -+ DEBUGPC("ONKEYR(suppressed) "); -+ /* don't suppress any more power button events */ -+ pcf->suppress_onkey_events = 0; -+ } -+ /* disable SECOND interrupt in case RTC didn't -+ * request it */ -+ if (!(pcf->flags & PCF50606_F_RTC_SECOND)) -+ reg_set_bit_mask(pcf, PCF50606_REG_INT1M, -+ PCF50606_INT1_SECOND, -+ PCF50606_INT1_SECOND); -+ } -+ if (pcfirq[0] & PCF50606_INT1_EXTONR) { -+ DEBUGPC("EXTONR "); -+ input_report_key(pcf->input_dev, KEY_POWER2, 1); -+ } -+ if (pcfirq[0] & PCF50606_INT1_EXTONF) { -+ DEBUGPC("EXTONF "); -+ input_report_key(pcf->input_dev, KEY_POWER2, 0); -+ } -+ if (pcfirq[0] & PCF50606_INT1_SECOND) { -+ DEBUGPC("SECOND "); -+ if (pcf->flags & PCF50606_F_RTC_SECOND) -+ rtc_update_irq(pcf->rtc, 1, -+ RTC_PF | RTC_IRQF); -+ -+ if (pcf->onkey_seconds >= 0 && -+ pcf->flags & PCF50606_F_PWR_PRESSED) { -+ DEBUGPC("ONKEY_SECONDS(%u, OOCC1=0x%02x) ", -+ pcf->onkey_seconds, -+ reg_read(pcf, PCF50606_REG_OOCC1)); -+ pcf->onkey_seconds++; -+ if (pcf->onkey_seconds >= -+ pcf->pdata->onkey_seconds_required) { -+ /* Ask init to do 'ctrlaltdel' */ -+ /* -+ * currently Linux reacts badly to issuing a -+ * signal to PID #1 before init is started. -+ * What happens is that the next kernel thread -+ * to start, which is the JFFS2 Garbage -+ * collector in our case, gets the signal -+ * instead and proceeds to fail to fork -- -+ * which is very bad. Therefore we confirm -+ * PID #1 exists before issuing the signal -+ */ -+ if (find_task_by_pid_ns(1, &init_pid_ns)) { -+ kill_pid(task_pid(find_task_by_pid_ns(1, -+ &init_pid_ns)), SIGINT, 1); -+ DEBUGPC("SIGINT(init) "); -+ } -+ /* FIXME: what to do if userspace doesn't -+ * shut down? Do we want to force it? */ -+ } -+ } -+ } -+ if (pcfirq[0] & PCF50606_INT1_ALARM) { -+ DEBUGPC("ALARM "); -+ if (pcf->pdata->used_features & PCF50606_FEAT_RTC) -+ rtc_update_irq(pcf->rtc, 1, -+ RTC_AF | RTC_IRQF); -+ } -+ -+ if (pcfirq[1] & PCF50606_INT2_CHGINS) { -+ /* Charger inserted */ -+ DEBUGPC("CHGINS "); -+ input_report_key(pcf->input_dev, KEY_BATTERY, 1); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags |= PCF50606_F_CHG_PRESENT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client.dev, -+ PCF50606_FEAT_MBC, PMU_EVT_INSERT); -+ /* FIXME: how to signal this to userspace */ -+ } -+ if (pcfirq[1] & PCF50606_INT2_CHGRM) { -+ /* Charger removed */ -+ DEBUGPC("CHGRM "); -+ input_report_key(pcf->input_dev, KEY_BATTERY, 0); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags &= ~(PCF50606_F_CHG_MASK|PCF50606_F_CHG_PRESENT); -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client.dev, -+ PCF50606_FEAT_MBC, PMU_EVT_INSERT); -+ /* FIXME: how signal this to userspace */ -+ } -+ if (pcfirq[1] & PCF50606_INT2_CHGFOK) { -+ /* Battery ready for fast charging */ -+ DEBUGPC("CHGFOK "); -+ pcf->flags |= PCF50606_F_CHG_FOK; -+ /* FIXME: how to signal this to userspace */ -+ } -+ if (pcfirq[1] & PCF50606_INT2_CHGERR) { -+ /* Error in charge mode */ -+ DEBUGPC("CHGERR "); -+ pcf->flags |= PCF50606_F_CHG_ERR; -+ pcf->flags &= ~(PCF50606_F_CHG_FOK|PCF50606_F_CHG_READY); -+ /* FIXME: how to signal this to userspace */ -+ } -+ if (pcfirq[1] & PCF50606_INT2_CHGFRDY) { -+ /* Fast charge completed */ -+ DEBUGPC("CHGFRDY "); -+ pcf->flags |= PCF50606_F_CHG_READY; -+ pcf->flags &= ~PCF50606_F_CHG_FOK; -+ /* FIXME: how to signal this to userspace */ -+ } -+ if (pcfirq[1] & PCF50606_INT2_CHGPROT) { -+ /* Charging protection interrupt */ -+ DEBUGPC("CHGPROT "); -+ pcf->flags &= ~(PCF50606_F_CHG_FOK|PCF50606_F_CHG_READY); -+ /* FIXME: signal this to userspace */ -+ } -+ if (pcfirq[1] & PCF50606_INT2_CHGWD10S) { -+ /* Charger watchdog will expire in 10 seconds */ -+ DEBUGPC("CHGWD10S "); -+ reg_set_bit_mask(pcf, PCF50606_REG_OOCC1, -+ PCF50606_OOCC1_WDTRST, -+ PCF50606_OOCC1_WDTRST); -+ } -+ if (pcfirq[1] & PCF50606_INT2_CHGWDEXP) { -+ /* Charger watchdog expires */ -+ DEBUGPC("CHGWDEXP "); -+ /* FIXME: how to signal this to userspace */ -+ } -+ -+ if (pcfirq[2] & PCF50606_INT3_ADCRDY) { -+ /* ADC result ready */ -+ DEBUGPC("ADCRDY "); -+ } -+ if (pcfirq[2] & PCF50606_INT3_ACDINS) { -+ /* Accessory insertion detected */ -+ DEBUGPC("ACDINS "); -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client.dev, -+ PCF50606_FEAT_ACD, PMU_EVT_INSERT); -+ } -+ if (pcfirq[2] & PCF50606_INT3_ACDREM) { -+ /* Accessory removal detected */ -+ DEBUGPC("ACDREM "); -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client.dev, -+ PCF50606_FEAT_ACD, PMU_EVT_REMOVE); -+ } -+ /* FIXME: TSCPRES */ -+ if (pcfirq[2] & PCF50606_INT3_LOWBAT) { -+ if (__reg_read(pcf, PCF50606_REG_OOCS) & PCF50606_OOCS_EXTON) { -+ /* -+ * hey no need to freak out, we have some kind of -+ * valid charger power -+ */ -+ DEBUGPC("(NO)BAT "); -+ } else { -+ /* Really low battery voltage, we have 8 seconds left */ -+ DEBUGPC("LOWBAT "); -+ /* -+ * currently Linux reacts badly to issuing a signal to -+ * PID #1 before init is started. What happens is that -+ * the next kernel thread to start, which is the JFFS2 -+ * Garbage collector in our case, gets the signal -+ * instead and proceeds to fail to fork -- which is -+ * very bad. Therefore we confirm PID #1 exists -+ * before issuing SPIGPWR -+ */ -+ if (find_task_by_pid_ns(1, &init_pid_ns)) { -+ apm_queue_event(APM_LOW_BATTERY); -+ DEBUGPC("SIGPWR(init) "); -+ kill_pid(task_pid(find_task_by_pid_ns(1, &init_pid_ns)), SIGPWR, 1); -+ } else -+ /* -+ * well, our situation is like this: we do not -+ * have any external power, we have a low -+ * battery and since PID #1 doesn't exist yet, -+ * we are early in the boot, likely before -+ * rootfs mount. We should just call it a day -+ */ -+ apm_queue_event(APM_CRITICAL_SUSPEND); -+ } -+ /* Tell PMU we are taking care of this */ -+ reg_set_bit_mask(pcf, PCF50606_REG_OOCC1, -+ PCF50606_OOCC1_TOTRST, -+ PCF50606_OOCC1_TOTRST); -+ } -+ if (pcfirq[2] & PCF50606_INT3_HIGHTMP) { -+ /* High temperature */ -+ DEBUGPC("HIGHTMP "); -+ apm_queue_event(APM_CRITICAL_SUSPEND); -+ } -+ -+ DEBUGPC("\n"); -+ -+bail: -+ pcf->working = 0; -+ input_sync(pcf->input_dev); -+ put_device(&pcf->client.dev); -+ mutex_unlock(&pcf->working_lock); -+ -+ return; -+ -+reschedule: -+ -+ if ((pcf->suspend_state != PCF50606_SS_STARTING_SUSPEND) && -+ (pcf->suspend_state != PCF50606_SS_COMPLETED_SUSPEND)) { -+ msleep(10); -+ dev_info(&pcf->client.dev, "rescheduling interrupt service\n"); -+ } -+ if (!schedule_work(&pcf->work)) -+ dev_err(&pcf->client.dev, "int service reschedule failed\n"); -+ -+ /* we don't put the device here, hold it for next time */ -+ mutex_unlock(&pcf->working_lock); -+} -+ -+static irqreturn_t pcf50606_irq(int irq, void *_pcf) -+{ -+ struct pcf50606_data *pcf = _pcf; -+ -+ dev_dbg(&pcf->client.dev, "entering(irq=%u, pcf=%p): scheduling work\n", -+ irq, _pcf); -+ get_device(&pcf->client.dev); -+ if (!schedule_work(&pcf->work) && !pcf->working) -+ dev_err(&pcf->client.dev, "pcf irq work already queued.\n"); -+ -+ return IRQ_HANDLED; -+} -+ -+static u_int16_t adc_to_batt_millivolts(u_int16_t adc) -+{ -+ u_int16_t mvolts; -+ -+ mvolts = (adc * 6000) / 1024; -+ -+ return mvolts; -+} -+ -+#define BATTVOLT_SCALE_START 2800 -+#define BATTVOLT_SCALE_END 4200 -+#define BATTVOLT_SCALE_DIVIDER ((BATTVOLT_SCALE_END - BATTVOLT_SCALE_START)/100) -+ -+static u_int8_t battvolt_scale(u_int16_t battvolt) -+{ -+ /* FIXME: this linear scale is completely bogus */ -+ u_int16_t battvolt_relative = battvolt - BATTVOLT_SCALE_START; -+ unsigned int percent = battvolt_relative / BATTVOLT_SCALE_DIVIDER; -+ -+ return percent; -+} -+ -+u_int16_t pcf50606_battvolt(struct pcf50606_data *pcf) -+{ -+ u_int16_t adc; -+ adc = adc_read(pcf, PCF50606_ADCMUX_BATVOLT_RES, NULL); -+ -+ return adc_to_batt_millivolts(adc); -+} -+EXPORT_SYMBOL_GPL(pcf50606_battvolt); -+ -+static ssize_t show_battvolt(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ -+ return sprintf(buf, "%u\n", pcf50606_battvolt(pcf)); -+} -+static DEVICE_ATTR(battvolt, S_IRUGO | S_IWUSR, show_battvolt, NULL); -+ -+static int reg_id_by_name(const char *name) -+{ -+ int reg_id; -+ -+ if (!strcmp(name, "voltage_dcd")) -+ reg_id = PCF50606_REGULATOR_DCD; -+ else if (!strcmp(name, "voltage_dcde")) -+ reg_id = PCF50606_REGULATOR_DCDE; -+ else if (!strcmp(name, "voltage_dcud")) -+ reg_id = PCF50606_REGULATOR_DCUD; -+ else if (!strcmp(name, "voltage_d1reg")) -+ reg_id = PCF50606_REGULATOR_D1REG; -+ else if (!strcmp(name, "voltage_d2reg")) -+ reg_id = PCF50606_REGULATOR_D2REG; -+ else if (!strcmp(name, "voltage_d3reg")) -+ reg_id = PCF50606_REGULATOR_D3REG; -+ else if (!strcmp(name, "voltage_lpreg")) -+ reg_id = PCF50606_REGULATOR_LPREG; -+ else if (!strcmp(name, "voltage_ioreg")) -+ reg_id = PCF50606_REGULATOR_IOREG; -+ else -+ reg_id = -1; -+ -+ return reg_id; -+} -+ -+static ssize_t show_vreg(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ unsigned int reg_id; -+ -+ reg_id = reg_id_by_name(attr->attr.name); -+ if (reg_id < 0) -+ return 0; -+ -+ if (pcf50606_onoff_get(pcf, reg_id) > 0) -+ return sprintf(buf, "%u\n", pcf50606_voltage_get(pcf, reg_id)); -+ else -+ return strlcpy(buf, "0\n", PAGE_SIZE); -+} -+ -+static ssize_t set_vreg(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ unsigned long mvolts = simple_strtoul(buf, NULL, 10); -+ unsigned int reg_id; -+ -+ reg_id = reg_id_by_name(attr->attr.name); -+ if (reg_id < 0) -+ return -EIO; -+ -+ dev_dbg(dev, "attempting to set %s(%d) to %lu mvolts\n", -+ attr->attr.name, reg_id, mvolts); -+ -+ if (mvolts == 0) { -+ pcf50606_onoff_set(pcf, reg_id, 0); -+ } else { -+ if (pcf50606_voltage_set(pcf, reg_id, mvolts) < 0) { -+ dev_warn(dev, "refusing to set %s(%d) to %lu mvolts " -+ "(max=%u)\n", attr->attr.name, reg_id, mvolts, -+ pcf->pdata->rails[reg_id].voltage.max); -+ return -EINVAL; -+ } -+ pcf50606_onoff_set(pcf, reg_id, 1); -+ } -+ -+ return count; -+} -+ -+static DEVICE_ATTR(voltage_dcd, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+static DEVICE_ATTR(voltage_dcde, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+static DEVICE_ATTR(voltage_dcud, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+static DEVICE_ATTR(voltage_d1reg, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+static DEVICE_ATTR(voltage_d2reg, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+static DEVICE_ATTR(voltage_d3reg, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+static DEVICE_ATTR(voltage_lpreg, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+static DEVICE_ATTR(voltage_ioreg, S_IRUGO | S_IWUSR, show_vreg, set_vreg); -+ -+/*********************************************************************** -+ * Charger Control -+ ***********************************************************************/ -+ -+/* Enable/disable fast charging (500mA in the GTA01) */ -+void pcf50606_charge_fast(struct pcf50606_data *pcf, int on) -+{ -+ if (!(pcf->pdata->used_features & PCF50606_FEAT_MBC)) -+ return; -+ -+ if (on) { -+ /* We can allow PCF to automatically charge -+ * using Ifast */ -+ pcf->flags |= PCF50606_F_CHG_FAST; -+ reg_set_bit_mask(pcf, PCF50606_REG_MBCC1, -+ PCF50606_MBCC1_AUTOFST, -+ PCF50606_MBCC1_AUTOFST); -+ } else { -+ pcf->flags &= ~PCF50606_F_CHG_FAST; -+ /* disable automatic fast-charge */ -+ reg_clear_bits(pcf, PCF50606_REG_MBCC1, -+ PCF50606_MBCC1_AUTOFST); -+ /* switch to idle mode to abort existing charge -+ * process */ -+ reg_set_bit_mask(pcf, PCF50606_REG_MBCC1, -+ PCF50606_MBCC1_CHGMOD_MASK, -+ PCF50606_MBCC1_CHGMOD_IDLE); -+ } -+} -+EXPORT_SYMBOL_GPL(pcf50606_charge_fast); -+ -+static inline u_int16_t adc_to_rntc(struct pcf50606_data *pcf, u_int16_t adc) -+{ -+ u_int32_t r_ntc = (adc * (u_int32_t)pcf->pdata->r_fix_batt) -+ / (1023 - adc); -+ -+ return r_ntc; -+} -+ -+static inline int16_t rntc_to_temp(u_int16_t rntc) -+{ -+ int i; -+ -+ for (i = 0; i < ARRAY_SIZE(ntc_table_10k_3370B); i++) { -+ if (rntc > ntc_table_10k_3370B[i]) -+ return i - 10; /* First element is -10 */ -+ } -+ return -99; /* Below our range */ -+} -+ -+static ssize_t show_battemp(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int16_t adc; -+ -+ adc = adc_read(pcf, PCF50606_ADCMUX_BATTEMP, NULL); -+ -+ return sprintf(buf, "%d\n", rntc_to_temp(adc_to_rntc(pcf, adc))); -+} -+static DEVICE_ATTR(battemp, S_IRUGO | S_IWUSR, show_battemp, NULL); -+ -+static inline int16_t adc_to_chg_milliamps(struct pcf50606_data *pcf, -+ u_int16_t adc_adcin1, -+ u_int16_t adc_batvolt) -+{ -+ int32_t res = (adc_adcin1 - adc_batvolt) * 2400; -+ return (res * 1000) / (pcf->pdata->r_sense_milli * 1024); -+} -+ -+static ssize_t show_chgcur(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int16_t adc_batvolt, adc_adcin1; -+ int16_t ma; -+ -+ adc_batvolt = adc_read(pcf, PCF50606_ADCMUX_BATVOLT_ADCIN1, -+ &adc_adcin1); -+ ma = adc_to_chg_milliamps(pcf, adc_adcin1, adc_batvolt); -+ -+ return sprintf(buf, "%d\n", ma); -+} -+static DEVICE_ATTR(chgcur, S_IRUGO | S_IWUSR, show_chgcur, NULL); -+ -+static const char *chgmode_names[] = { -+ [PCF50606_MBCC1_CHGMOD_QUAL] = "qualification", -+ [PCF50606_MBCC1_CHGMOD_PRE] = "pre", -+ [PCF50606_MBCC1_CHGMOD_TRICKLE] = "trickle", -+ [PCF50606_MBCC1_CHGMOD_FAST_CCCV] = "fast_cccv", -+ [PCF50606_MBCC1_CHGMOD_FAST_NOCC] = "fast_nocc", -+ [PCF50606_MBCC1_CHGMOD_FAST_NOCV] = "fast_nocv", -+ [PCF50606_MBCC1_CHGMOD_FAST_SW] = "fast_switch", -+ [PCF50606_MBCC1_CHGMOD_IDLE] = "idle", -+}; -+ -+static ssize_t show_chgmode(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int8_t mbcc1 = reg_read(pcf, PCF50606_REG_MBCC1); -+ u_int8_t chgmod = (mbcc1 & PCF50606_MBCC1_CHGMOD_MASK); -+ -+ return sprintf(buf, "%s\n", chgmode_names[chgmod]); -+} -+ -+static ssize_t set_chgmode(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int8_t mbcc1 = reg_read(pcf, PCF50606_REG_MBCC1); -+ -+ mbcc1 &= ~PCF50606_MBCC1_CHGMOD_MASK; -+ -+ if (!strcmp(buf, "qualification")) -+ mbcc1 |= PCF50606_MBCC1_CHGMOD_QUAL; -+ else if (!strcmp(buf, "pre")) -+ mbcc1 |= PCF50606_MBCC1_CHGMOD_PRE; -+ else if (!strcmp(buf, "trickle")) -+ mbcc1 |= PCF50606_MBCC1_CHGMOD_TRICKLE; -+ else if (!strcmp(buf, "fast_cccv")) -+ mbcc1 |= PCF50606_MBCC1_CHGMOD_FAST_CCCV; -+ /* We don't allow the other fast modes for security reasons */ -+ else if (!strcmp(buf, "idle")) -+ mbcc1 |= PCF50606_MBCC1_CHGMOD_IDLE; -+ else -+ return -EINVAL; -+ -+ reg_write(pcf, PCF50606_REG_MBCC1, mbcc1); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(chgmode, S_IRUGO | S_IWUSR, show_chgmode, set_chgmode); -+ -+static const char *chgstate_names[] = { -+ [PCF50606_B_CHG_FAST] = "fast_enabled", -+ [PCF50606_B_CHG_PRESENT] = "present", -+ [PCF50606_B_CHG_FOK] = "fast_ok", -+ [PCF50606_B_CHG_ERR] = "error", -+ [PCF50606_B_CHG_PROT] = "protection", -+ [PCF50606_B_CHG_READY] = "ready", -+}; -+ -+static ssize_t show_chgstate(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ char *b = buf; -+ int i; -+ -+ for (i = 0; i < 32; i++) -+ if (pcf->flags & (1 << i) && i < ARRAY_SIZE(chgstate_names)) -+ b += sprintf(b, "%s ", chgstate_names[i]); -+ -+ if (b > buf) -+ b += sprintf(b, "\n"); -+ -+ return b - buf; -+} -+static DEVICE_ATTR(chgstate, S_IRUGO | S_IWUSR, show_chgstate, NULL); -+ -+/*********************************************************************** -+ * APM emulation -+ ***********************************************************************/ -+ -+static void pcf50606_get_power_status(struct apm_power_info *info) -+{ -+ struct pcf50606_data *pcf = pcf50606_global; -+ u_int8_t mbcc1 = reg_read(pcf, PCF50606_REG_MBCC1); -+ u_int8_t chgmod = mbcc1 & PCF50606_MBCC1_CHGMOD_MASK; -+ u_int16_t battvolt = pcf50606_battvolt(pcf); -+ -+ if (reg_read(pcf, PCF50606_REG_OOCS) & PCF50606_OOCS_EXTON) -+ info->ac_line_status = APM_AC_ONLINE; -+ else -+ info->ac_line_status = APM_AC_OFFLINE; -+ -+ switch (chgmod) { -+ case PCF50606_MBCC1_CHGMOD_QUAL: -+ case PCF50606_MBCC1_CHGMOD_PRE: -+ case PCF50606_MBCC1_CHGMOD_IDLE: -+ info->battery_life = battvolt_scale(battvolt); -+ break; -+ default: -+ info->battery_status = APM_BATTERY_STATUS_CHARGING; -+ info->battery_flag = APM_BATTERY_FLAG_CHARGING; -+ break; -+ } -+} -+ -+/*********************************************************************** -+ * RTC -+ ***********************************************************************/ -+ -+struct pcf50606_time { -+ u_int8_t sec; -+ u_int8_t min; -+ u_int8_t hour; -+ u_int8_t wkday; -+ u_int8_t day; -+ u_int8_t month; -+ u_int8_t year; -+}; -+ -+static void pcf2rtc_time(struct rtc_time *rtc, struct pcf50606_time *pcf) -+{ -+ rtc->tm_sec = bcd2bin(pcf->sec); -+ rtc->tm_min = bcd2bin(pcf->min); -+ rtc->tm_hour = bcd2bin(pcf->hour); -+ rtc->tm_wday = bcd2bin(pcf->wkday); -+ rtc->tm_mday = bcd2bin(pcf->day); -+ rtc->tm_mon = bcd2bin(pcf->month); -+ rtc->tm_year = bcd2bin(pcf->year) + 100; -+} -+ -+static void rtc2pcf_time(struct pcf50606_time *pcf, struct rtc_time *rtc) -+{ -+ pcf->sec = bin2bcd(rtc->tm_sec); -+ pcf->min = bin2bcd(rtc->tm_min); -+ pcf->hour = bin2bcd(rtc->tm_hour); -+ pcf->wkday = bin2bcd(rtc->tm_wday); -+ pcf->day = bin2bcd(rtc->tm_mday); -+ pcf->month = bin2bcd(rtc->tm_mon); -+ pcf->year = bin2bcd(rtc->tm_year - 100); -+} -+ -+static int pcf50606_rtc_ioctl(struct device *dev, unsigned int cmd, -+ unsigned long arg) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ -+ switch (cmd) { -+ case RTC_AIE_OFF: -+ /* disable the alarm interrupt */ -+ reg_set_bit_mask(pcf, PCF50606_REG_INT1M, -+ PCF50606_INT1_ALARM, PCF50606_INT1_ALARM); -+ return 0; -+ case RTC_AIE_ON: -+ /* enable the alarm interrupt */ -+ reg_clear_bits(pcf, PCF50606_REG_INT1M, PCF50606_INT1_ALARM); -+ return 0; -+ case RTC_PIE_OFF: -+ /* disable periodic interrupt (hz tick) */ -+ pcf->flags &= ~PCF50606_F_RTC_SECOND; -+ reg_set_bit_mask(pcf, PCF50606_REG_INT1M, -+ PCF50606_INT1_SECOND, PCF50606_INT1_SECOND); -+ return 0; -+ case RTC_PIE_ON: -+ /* ensable periodic interrupt (hz tick) */ -+ pcf->flags |= PCF50606_F_RTC_SECOND; -+ reg_clear_bits(pcf, PCF50606_REG_INT1M, PCF50606_INT1_SECOND); -+ return 0; -+ } -+ return -ENOIOCTLCMD; -+} -+ -+static int pcf50606_rtc_read_time(struct device *dev, struct rtc_time *tm) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ struct pcf50606_time pcf_tm; -+ -+ mutex_lock(&pcf->lock); -+ pcf_tm.sec = __reg_read(pcf, PCF50606_REG_RTCSC); -+ pcf_tm.min = __reg_read(pcf, PCF50606_REG_RTCMN); -+ pcf_tm.hour = __reg_read(pcf, PCF50606_REG_RTCHR); -+ pcf_tm.wkday = __reg_read(pcf, PCF50606_REG_RTCWD); -+ pcf_tm.day = __reg_read(pcf, PCF50606_REG_RTCDT); -+ pcf_tm.month = __reg_read(pcf, PCF50606_REG_RTCMT); -+ pcf_tm.year = __reg_read(pcf, PCF50606_REG_RTCYR); -+ mutex_unlock(&pcf->lock); -+ -+ dev_dbg(dev, "PCF_TIME: %02x.%02x.%02x %02x:%02x:%02x\n", -+ pcf_tm.day, pcf_tm.month, pcf_tm.year, -+ pcf_tm.hour, pcf_tm.min, pcf_tm.sec); -+ -+ pcf2rtc_time(tm, &pcf_tm); -+ -+ dev_dbg(dev, "RTC_TIME: %u.%u.%u %u:%u:%u\n", -+ tm->tm_mday, tm->tm_mon, tm->tm_year, -+ tm->tm_hour, tm->tm_min, tm->tm_sec); -+ -+ return 0; -+} -+ -+static int pcf50606_rtc_set_time(struct device *dev, struct rtc_time *tm) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ struct pcf50606_time pcf_tm; -+ u_int8_t int1m; -+ -+ dev_dbg(dev, "RTC_TIME: %u.%u.%u %u:%u:%u\n", -+ tm->tm_mday, tm->tm_mon, tm->tm_year, -+ tm->tm_hour, tm->tm_min, tm->tm_sec); -+ rtc2pcf_time(&pcf_tm, tm); -+ dev_dbg(dev, "PCF_TIME: %02x.%02x.%02x %02x:%02x:%02x\n", -+ pcf_tm.day, pcf_tm.month, pcf_tm.year, -+ pcf_tm.hour, pcf_tm.min, pcf_tm.sec); -+ -+ mutex_lock(&pcf->lock); -+ -+ /* disable SECOND interrupt */ -+ int1m = __reg_read(pcf, PCF50606_REG_INT1M); -+ __reg_write(pcf, PCF50606_REG_INT1M, int1m | PCF50606_INT1_SECOND); -+ -+ __reg_write(pcf, PCF50606_REG_RTCSC, pcf_tm.sec); -+ __reg_write(pcf, PCF50606_REG_RTCMN, pcf_tm.min); -+ __reg_write(pcf, PCF50606_REG_RTCHR, pcf_tm.hour); -+ __reg_write(pcf, PCF50606_REG_RTCWD, pcf_tm.wkday); -+ __reg_write(pcf, PCF50606_REG_RTCDT, pcf_tm.day); -+ __reg_write(pcf, PCF50606_REG_RTCMT, pcf_tm.month); -+ __reg_write(pcf, PCF50606_REG_RTCYR, pcf_tm.year); -+ -+ /* restore INT1M, potentially re-enable SECOND interrupt */ -+ __reg_write(pcf, PCF50606_REG_INT1M, int1m); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return 0; -+} -+ -+static int pcf50606_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alrm) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ struct pcf50606_time pcf_tm; -+ -+ mutex_lock(&pcf->lock); -+ alrm->enabled = -+ __reg_read(pcf, PCF50606_REG_INT1M) & PCF50606_INT1_ALARM -+ ? 0 : 1; -+ pcf_tm.sec = __reg_read(pcf, PCF50606_REG_RTCSCA); -+ pcf_tm.min = __reg_read(pcf, PCF50606_REG_RTCMNA); -+ pcf_tm.hour = __reg_read(pcf, PCF50606_REG_RTCHRA); -+ pcf_tm.wkday = __reg_read(pcf, PCF50606_REG_RTCWDA); -+ pcf_tm.day = __reg_read(pcf, PCF50606_REG_RTCDTA); -+ pcf_tm.month = __reg_read(pcf, PCF50606_REG_RTCMTA); -+ pcf_tm.year = __reg_read(pcf, PCF50606_REG_RTCYRA); -+ mutex_unlock(&pcf->lock); -+ -+ pcf2rtc_time(&alrm->time, &pcf_tm); -+ -+ return 0; -+} -+ -+static int pcf50606_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alrm) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ struct pcf50606_time pcf_tm; -+ u_int8_t irqmask; -+ -+ rtc2pcf_time(&pcf_tm, &alrm->time); -+ -+ mutex_lock(&pcf->lock); -+ -+ /* disable alarm interrupt */ -+ irqmask = __reg_read(pcf, PCF50606_REG_INT1M); -+ irqmask |= PCF50606_INT1_ALARM; -+ __reg_write(pcf, PCF50606_REG_INT1M, irqmask); -+ -+ __reg_write(pcf, PCF50606_REG_RTCSCA, pcf_tm.sec); -+ __reg_write(pcf, PCF50606_REG_RTCMNA, pcf_tm.min); -+ __reg_write(pcf, PCF50606_REG_RTCHRA, pcf_tm.hour); -+ __reg_write(pcf, PCF50606_REG_RTCWDA, pcf_tm.wkday); -+ __reg_write(pcf, PCF50606_REG_RTCDTA, pcf_tm.day); -+ __reg_write(pcf, PCF50606_REG_RTCMTA, pcf_tm.month); -+ __reg_write(pcf, PCF50606_REG_RTCYRA, pcf_tm.year); -+ -+ if (alrm->enabled) { -+ /* (re-)enaable alarm interrupt */ -+ irqmask = __reg_read(pcf, PCF50606_REG_INT1M); -+ irqmask &= ~PCF50606_INT1_ALARM; -+ __reg_write(pcf, PCF50606_REG_INT1M, irqmask); -+ } -+ -+ mutex_unlock(&pcf->lock); -+ -+ /* FIXME */ -+ return 0; -+} -+ -+static struct rtc_class_ops pcf50606_rtc_ops = { -+ .ioctl = pcf50606_rtc_ioctl, -+ .read_time = pcf50606_rtc_read_time, -+ .set_time = pcf50606_rtc_set_time, -+ .read_alarm = pcf50606_rtc_read_alarm, -+ .set_alarm = pcf50606_rtc_set_alarm, -+}; -+ -+/*********************************************************************** -+ * Watchdog -+ ***********************************************************************/ -+ -+static void pcf50606_wdt_start(struct pcf50606_data *pcf) -+{ -+ reg_set_bit_mask(pcf, PCF50606_REG_OOCC1, PCF50606_OOCC1_WDTRST, -+ PCF50606_OOCC1_WDTRST); -+} -+ -+static void pcf50606_wdt_stop(struct pcf50606_data *pcf) -+{ -+ reg_clear_bits(pcf, PCF50606_REG_OOCS, PCF50606_OOCS_WDTEXP); -+} -+ -+static void pcf50606_wdt_keepalive(struct pcf50606_data *pcf) -+{ -+ pcf50606_wdt_start(pcf); -+} -+ -+static int pcf50606_wdt_open(struct inode *inode, struct file *file) -+{ -+ struct pcf50606_data *pcf = pcf50606_global; -+ -+ file->private_data = pcf; -+ -+ /* start the timer */ -+ pcf50606_wdt_start(pcf); -+ -+ return nonseekable_open(inode, file); -+} -+ -+static int pcf50606_wdt_release(struct inode *inode, struct file *file) -+{ -+ struct pcf50606_data *pcf = file->private_data; -+ -+ if (pcf->allow_close == CLOSE_STATE_ALLOW) -+ pcf50606_wdt_stop(pcf); -+ else { -+ printk(KERN_CRIT "Unexpected close, not stopping watchdog!\n"); -+ pcf50606_wdt_keepalive(pcf); -+ } -+ -+ pcf->allow_close = CLOSE_STATE_NOT; -+ -+ return 0; -+} -+ -+static ssize_t pcf50606_wdt_write(struct file *file, const char __user *data, -+ size_t len, loff_t *ppos) -+{ -+ struct pcf50606_data *pcf = file->private_data; -+ if (len) { -+ size_t i; -+ -+ for (i = 0; i != len; i++) { -+ char c; -+ if (get_user(c, data + i)) -+ return -EFAULT; -+ if (c == 'V') -+ pcf->allow_close = CLOSE_STATE_ALLOW; -+ } -+ pcf50606_wdt_keepalive(pcf); -+ } -+ -+ return len; -+} -+ -+static struct watchdog_info pcf50606_wdt_ident = { -+ .options = WDIOF_MAGICCLOSE, -+ .firmware_version = 0, -+ .identity = "PCF50606 Watchdog", -+}; -+ -+static int pcf50606_wdt_ioctl(struct inode *inode, struct file *file, -+ unsigned int cmd, unsigned long arg) -+{ -+ struct pcf50606_data *pcf = file->private_data; -+ void __user *argp = (void __user *)arg; -+ int __user *p = argp; -+ -+ switch (cmd) { -+ case WDIOC_GETSUPPORT: -+ return copy_to_user(argp, &pcf50606_wdt_ident, -+ sizeof(pcf50606_wdt_ident)) ? -EFAULT : 0; -+ break; -+ case WDIOC_GETSTATUS: -+ case WDIOC_GETBOOTSTATUS: -+ return put_user(0, p); -+ case WDIOC_KEEPALIVE: -+ pcf50606_wdt_keepalive(pcf); -+ return 0; -+ case WDIOC_GETTIMEOUT: -+ return put_user(8, p); -+ default: -+ return -ENOIOCTLCMD; -+ } -+} -+ -+static struct file_operations pcf50606_wdt_fops = { -+ .owner = THIS_MODULE, -+ .llseek = no_llseek, -+ .write = &pcf50606_wdt_write, -+ .ioctl = &pcf50606_wdt_ioctl, -+ .open = &pcf50606_wdt_open, -+ .release = &pcf50606_wdt_release, -+}; -+ -+static struct miscdevice pcf50606_wdt_miscdev = { -+ .minor = WATCHDOG_MINOR, -+ .name = "watchdog", -+ .fops = &pcf50606_wdt_fops, -+}; -+ -+/*********************************************************************** -+ * PWM -+ ***********************************************************************/ -+ -+static const char *pwm_dc_table[] = { -+ "0/16", "1/16", "2/16", "3/16", -+ "4/16", "5/16", "6/16", "7/16", -+ "8/16", "9/16", "10/16", "11/16", -+ "12/16", "13/16", "14/16", "15/16", -+}; -+ -+static ssize_t show_pwm_dc(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int8_t val; -+ -+ val = reg_read(pcf, PCF50606_REG_PWMC1) >> PCF50606_PWMC1_DC_SHIFT; -+ val &= 0xf; -+ -+ return sprintf(buf, "%s\n", pwm_dc_table[val]); -+} -+ -+static ssize_t set_pwm_dc(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int8_t i; -+ -+ for (i = 0; i < ARRAY_SIZE(pwm_dc_table); i++) { -+ if (!strncmp(buf, pwm_dc_table[i], strlen(pwm_dc_table[i]))) { -+ dev_dbg(dev, "setting pwm dc %s\n\r", pwm_dc_table[i]); -+ reg_set_bit_mask(pcf, PCF50606_REG_PWMC1, 0x1e, -+ (i << PCF50606_PWMC1_DC_SHIFT)); -+ } -+ } -+ return count; -+} -+ -+static DEVICE_ATTR(pwm_dc, S_IRUGO | S_IWUSR, show_pwm_dc, set_pwm_dc); -+ -+static const char *pwm_clk_table[] = { -+ "512", "256", "128", "64", -+ "56300", "28100", "14100", "7000", -+}; -+ -+static ssize_t show_pwm_clk(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int8_t val; -+ -+ val = reg_read(pcf, PCF50606_REG_PWMC1) >> PCF50606_PWMC1_CLK_SHIFT; -+ val &= 0x7; -+ -+ return sprintf(buf, "%s\n", pwm_clk_table[val]); -+} -+ -+static ssize_t set_pwm_clk(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ u_int8_t i; -+ -+ for (i = 0; i < ARRAY_SIZE(pwm_clk_table); i++) { -+ if (!strncmp(buf, pwm_clk_table[i], strlen(pwm_clk_table[i]))) { -+ dev_dbg(dev, "setting pwm clk %s\n\r", -+ pwm_clk_table[i]); -+ reg_set_bit_mask(pcf, PCF50606_REG_PWMC1, 0xe0, -+ (i << PCF50606_PWMC1_CLK_SHIFT)); -+ } -+ } -+ return count; -+} -+ -+static DEVICE_ATTR(pwm_clk, S_IRUGO | S_IWUSR, show_pwm_clk, set_pwm_clk); -+ -+static int pcf50606bl_get_intensity(struct backlight_device *bd) -+{ -+ struct pcf50606_data *pcf = bl_get_data(bd); -+ int intensity = reg_read(pcf, PCF50606_REG_PWMC1); -+ intensity = (intensity >> PCF50606_PWMC1_DC_SHIFT); -+ -+ return intensity & 0xf; -+} -+ -+static int pcf50606bl_set_intensity(struct backlight_device *bd) -+{ -+ struct pcf50606_data *pcf = bl_get_data(bd); -+ int intensity = bd->props.brightness; -+ -+ if (bd->props.power != FB_BLANK_UNBLANK) -+ intensity = 0; -+ if (bd->props.fb_blank != FB_BLANK_UNBLANK) -+ intensity = 0; -+ -+ return reg_set_bit_mask(pcf, PCF50606_REG_PWMC1, 0x1e, -+ (intensity << PCF50606_PWMC1_DC_SHIFT)); -+} -+ -+static struct backlight_ops pcf50606bl_ops = { -+ .get_brightness = pcf50606bl_get_intensity, -+ .update_status = pcf50606bl_set_intensity, -+}; -+ -+/*********************************************************************** -+ * Driver initialization -+ ***********************************************************************/ -+ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+/* We currently place those platform devices here to make sure the device -+ * suspend/resume order is correct */ -+static struct platform_device gta01_pm_gps_dev = { -+ .name = "neo1973-pm-gps", -+}; -+ -+static struct platform_device gta01_pm_bt_dev = { -+ .name = "neo1973-pm-bt", -+}; -+#endif -+ -+static struct attribute *pcf_sysfs_entries[16] = { -+ &dev_attr_voltage_dcd.attr, -+ &dev_attr_voltage_dcde.attr, -+ &dev_attr_voltage_dcud.attr, -+ &dev_attr_voltage_d1reg.attr, -+ &dev_attr_voltage_d2reg.attr, -+ &dev_attr_voltage_d3reg.attr, -+ &dev_attr_voltage_lpreg.attr, -+ &dev_attr_voltage_ioreg.attr, -+ NULL -+}; -+ -+static struct attribute_group pcf_attr_group = { -+ .name = NULL, /* put in device directory */ -+ .attrs = pcf_sysfs_entries, -+}; -+ -+static void populate_sysfs_group(struct pcf50606_data *pcf) -+{ -+ int i = 0; -+ struct attribute **attr; -+ -+ for (attr = pcf_sysfs_entries; *attr; attr++) -+ i++; -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_MBC) { -+ pcf_sysfs_entries[i++] = &dev_attr_chgstate.attr; -+ pcf_sysfs_entries[i++] = &dev_attr_chgmode.attr; -+ } -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_CHGCUR) -+ pcf_sysfs_entries[i++] = &dev_attr_chgcur.attr; -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_BATVOLT) -+ pcf_sysfs_entries[i++] = &dev_attr_battvolt.attr; -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_BATTEMP) -+ pcf_sysfs_entries[i++] = &dev_attr_battemp.attr; -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_PWM) { -+ pcf_sysfs_entries[i++] = &dev_attr_pwm_dc.attr; -+ pcf_sysfs_entries[i++] = &dev_attr_pwm_clk.attr; -+ } -+} -+ -+static int pcf50606_detect(struct i2c_adapter *adapter, int address, int kind) -+{ -+ struct i2c_client *new_client; -+ struct pcf50606_data *data; -+ int err = 0; -+ int irq; -+ -+ if (!pcf50606_pdev) { -+ printk(KERN_ERR "pcf50606: driver needs a platform_device!\n"); -+ return -EIO; -+ } -+ -+ irq = platform_get_irq(pcf50606_pdev, 0); -+ if (irq < 0) { -+ dev_err(&pcf50606_pdev->dev, "no irq in platform resources!\n"); -+ return -EIO; -+ } -+ -+ /* At the moment, we only support one PCF50606 in a system */ -+ if (pcf50606_global) { -+ dev_err(&pcf50606_pdev->dev, -+ "currently only one chip supported\n"); -+ return -EBUSY; -+ } -+ -+ data = kzalloc(sizeof(*data), GFP_KERNEL); -+ if (!data) -+ return -ENOMEM; -+ -+ mutex_init(&data->lock); -+ mutex_init(&data->working_lock); -+ INIT_WORK(&data->work, pcf50606_work); -+ data->irq = irq; -+ data->working = 0; -+ data->suppress_onkey_events = 0; -+ data->onkey_seconds = -1; -+ data->pdata = pcf50606_pdev->dev.platform_data; -+ -+ new_client = &data->client; -+ i2c_set_clientdata(new_client, data); -+ new_client->addr = address; -+ new_client->adapter = adapter; -+ new_client->driver = &pcf50606_driver; -+ new_client->flags = 0; -+ strlcpy(new_client->name, "pcf50606", I2C_NAME_SIZE); -+ -+ /* now we try to detect the chip */ -+ -+ /* register with i2c core */ -+ err = i2c_attach_client(new_client); -+ if (err) { -+ dev_err(&new_client->dev, -+ "error during i2c_attach_client()\n"); -+ goto exit_free; -+ } -+ -+ populate_sysfs_group(data); -+ -+ err = sysfs_create_group(&new_client->dev.kobj, &pcf_attr_group); -+ if (err) { -+ dev_err(&new_client->dev, "error creating sysfs group\n"); -+ goto exit_detach; -+ } -+ -+ /* create virtual charger 'device' */ -+ -+ /* input device registration */ -+ data->input_dev = input_allocate_device(); -+ if (!data->input_dev) -+ goto exit_sysfs; -+ -+ data->input_dev->name = "FIC Neo1973 PMU events"; -+ data->input_dev->phys = "I2C"; -+ data->input_dev->id.bustype = BUS_I2C; -+ -+ data->input_dev->evbit[0] = BIT(EV_KEY) | BIT(EV_PWR); -+ set_bit(KEY_POWER, data->input_dev->keybit); -+ set_bit(KEY_POWER2, data->input_dev->keybit); -+ set_bit(KEY_BATTERY, data->input_dev->keybit); -+ -+ err = input_register_device(data->input_dev); -+ if (err) -+ goto exit_sysfs; -+ -+ /* register power off handler with core power management */ -+ pm_power_off = &pcf50606_go_standby; -+ -+ /* configure interrupt mask */ -+ /* we don't mask SECOND here, because we want one to do coldplug with */ -+ reg_write(data, PCF50606_REG_INT1M, 0x00); -+ reg_write(data, PCF50606_REG_INT2M, 0x00); -+ reg_write(data, PCF50606_REG_INT3M, PCF50606_INT3_TSCPRES); -+ -+ err = request_irq(irq, pcf50606_irq, IRQF_TRIGGER_FALLING, -+ "pcf50606", data); -+ if (err < 0) -+ goto exit_input; -+ -+ if (enable_irq_wake(irq) < 0) -+ dev_err(&new_client->dev, "IRQ %u cannot be enabled as wake-up" -+ "source in this hardware revision!", irq); -+ -+ pcf50606_global = data; -+ -+ if (data->pdata->used_features & PCF50606_FEAT_RTC) { -+ data->rtc = rtc_device_register("pcf50606", &new_client->dev, -+ &pcf50606_rtc_ops, THIS_MODULE); -+ if (IS_ERR(data->rtc)) { -+ err = PTR_ERR(data->rtc); -+ goto exit_irq; -+ } -+ } -+ -+ if (data->pdata->used_features & PCF50606_FEAT_WDT) { -+ err = misc_register(&pcf50606_wdt_miscdev); -+ if (err) { -+ dev_err(&new_client->dev, "cannot register miscdev on " -+ "minor=%d (%d)\n", WATCHDOG_MINOR, err); -+ goto exit_rtc; -+ } -+ } -+ -+ if (data->pdata->used_features & PCF50606_FEAT_PWM) { -+ /* enable PWM controller */ -+ reg_set_bit_mask(data, PCF50606_REG_PWMC1, -+ PCF50606_PWMC1_ACTSET, -+ PCF50606_PWMC1_ACTSET); -+ } -+ -+ if (data->pdata->used_features & PCF50606_FEAT_PWM_BL) { -+ data->backlight = backlight_device_register("pcf50606-bl", -+ &new_client->dev, -+ data, -+ &pcf50606bl_ops); -+ if (!data->backlight) -+ goto exit_misc; -+ data->backlight->props.max_brightness = 16; -+ data->backlight->props.power = FB_BLANK_UNBLANK; -+ data->backlight->props.brightness = -+ data->pdata->init_brightness; -+ backlight_update_status(data->backlight); -+ } -+ -+ apm_get_power_status = pcf50606_get_power_status; -+ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ if (machine_is_neo1973_gta01()) { -+ gta01_pm_gps_dev.dev.parent = &new_client->dev; -+ switch (system_rev) { -+ case GTA01Bv2_SYSTEM_REV: -+ case GTA01Bv3_SYSTEM_REV: -+ case GTA01Bv4_SYSTEM_REV: -+ gta01_pm_bt_dev.dev.parent = &new_client->dev; -+ platform_device_register(>a01_pm_bt_dev); -+ break; -+ } -+ platform_device_register(>a01_pm_gps_dev); -+ /* a link for gllin compatibility */ -+ err = bus_create_device_link(&platform_bus_type, -+ >a01_pm_gps_dev.dev.kobj, "gta01-pm-gps.0"); -+ if (err) -+ printk(KERN_ERR -+ "sysfs_create_link (gta01-pm-gps.0): %d\n", err); -+ } -+#endif -+ -+ if (data->pdata->used_features & PCF50606_FEAT_ACD) -+ reg_set_bit_mask(data, PCF50606_REG_ACDC1, -+ PCF50606_ACDC1_ACDAPE, PCF50606_ACDC1_ACDAPE); -+ else -+ reg_clear_bits(data, PCF50606_REG_ACDC1, -+ PCF50606_ACDC1_ACDAPE); -+ -+ return 0; -+ -+exit_misc: -+ if (data->pdata->used_features & PCF50606_FEAT_WDT) -+ misc_deregister(&pcf50606_wdt_miscdev); -+exit_rtc: -+ if (data->pdata->used_features & PCF50606_FEAT_RTC) -+ rtc_device_unregister(pcf50606_global->rtc); -+exit_irq: -+ free_irq(pcf50606_global->irq, pcf50606_global); -+ pcf50606_global = NULL; -+exit_input: -+ pm_power_off = NULL; -+ input_unregister_device(data->input_dev); -+exit_sysfs: -+ sysfs_remove_group(&new_client->dev.kobj, &pcf_attr_group); -+exit_detach: -+ i2c_detach_client(new_client); -+exit_free: -+ kfree(data); -+ return err; -+} -+ -+static int pcf50606_attach_adapter(struct i2c_adapter *adapter) -+{ -+ return i2c_probe(adapter, &addr_data, &pcf50606_detect); -+} -+ -+static int pcf50606_detach_client(struct i2c_client *client) -+{ -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ -+ apm_get_power_status = NULL; -+ input_unregister_device(pcf->input_dev); -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_PWM_BL) -+ backlight_device_unregister(pcf->backlight); -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_WDT) -+ misc_deregister(&pcf50606_wdt_miscdev); -+ -+ if (pcf->pdata->used_features & PCF50606_FEAT_RTC) -+ rtc_device_unregister(pcf->rtc); -+ -+ free_irq(pcf->irq, pcf); -+ -+ sysfs_remove_group(&client->dev.kobj, &pcf_attr_group); -+ -+ pm_power_off = NULL; -+ -+ kfree(pcf); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+#define INT1M_RESUMERS (PCF50606_INT1_ALARM | \ -+ PCF50606_INT1_ONKEYF | \ -+ PCF50606_INT1_EXTONR) -+#define INT2M_RESUMERS (PCF50606_INT2_CHGWD10S | \ -+ PCF50606_INT2_CHGPROT | \ -+ PCF50606_INT2_CHGERR) -+#define INT3M_RESUMERS (PCF50606_INT3_LOWBAT | \ -+ PCF50606_INT3_HIGHTMP | \ -+ PCF50606_INT3_ACDINS) -+static int pcf50606_suspend(struct device *dev, pm_message_t state) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ int i; -+ -+ /* we suspend once (!) as late as possible in the suspend sequencing */ -+ -+ if ((state.event != PM_EVENT_SUSPEND) || -+ (pcf->suspend_state != PCF50606_SS_RUNNING)) -+ return -EBUSY; -+ -+ /* The general idea is to power down all unused power supplies, -+ * and then mask all PCF50606 interrup sources but EXTONR, ONKEYF -+ * and ALARM */ -+ -+ mutex_lock(&pcf->lock); -+ -+ pcf->suspend_state = PCF50606_SS_STARTING_SUSPEND; -+ -+ /* we are not going to service any further interrupts until we -+ * resume. If the IRQ workqueue is still pending in the background, -+ * it will bail when it sees we set suspend state above. -+ */ -+ -+ disable_irq(pcf->irq); -+ -+ /* Save all registers that don't "survive" standby state */ -+ pcf->standby_regs.dcdc1 = __reg_read(pcf, PCF50606_REG_DCDC1); -+ pcf->standby_regs.dcdc2 = __reg_read(pcf, PCF50606_REG_DCDC2); -+ pcf->standby_regs.dcdec1 = __reg_read(pcf, PCF50606_REG_DCDEC1); -+ pcf->standby_regs.dcudc1 = __reg_read(pcf, PCF50606_REG_DCUDC1); -+ pcf->standby_regs.ioregc = __reg_read(pcf, PCF50606_REG_IOREGC); -+ pcf->standby_regs.d1regc1 = __reg_read(pcf, PCF50606_REG_D1REGC1); -+ pcf->standby_regs.d2regc1 = __reg_read(pcf, PCF50606_REG_D2REGC1); -+ pcf->standby_regs.d3regc1 = __reg_read(pcf, PCF50606_REG_D3REGC1); -+ pcf->standby_regs.lpregc1 = __reg_read(pcf, PCF50606_REG_LPREGC1); -+ pcf->standby_regs.adcc1 = __reg_read(pcf, PCF50606_REG_ADCC1); -+ pcf->standby_regs.adcc2 = __reg_read(pcf, PCF50606_REG_ADCC2); -+ pcf->standby_regs.pwmc1 = __reg_read(pcf, PCF50606_REG_PWMC1); -+ -+ /* switch off power supplies that are not needed during suspend */ -+ for (i = 0; i < __NUM_PCF50606_REGULATORS; i++) { -+ if (!(pcf->pdata->rails[i].flags & PMU_VRAIL_F_SUSPEND_ON)) { -+ u_int8_t tmp; -+ -+ /* IOREG powers the I@C interface so we cannot switch -+ * it off */ -+ if (i == PCF50606_REGULATOR_IOREG) -+ continue; -+ -+ dev_dbg(dev, "disabling pcf50606 regulator %u\n", i); -+ /* we cannot use pcf50606_onoff_set() because we're -+ * already under the mutex */ -+ tmp = __reg_read(pcf, regulator_registers[i]); -+ tmp &= 0x1f; -+ __reg_write(pcf, regulator_registers[i], tmp); -+ } -+ } -+ -+ pcf->standby_regs.int1m = __reg_read(pcf, PCF50606_REG_INT1M); -+ pcf->standby_regs.int2m = __reg_read(pcf, PCF50606_REG_INT2M); -+ pcf->standby_regs.int3m = __reg_read(pcf, PCF50606_REG_INT3M); -+ __reg_write(pcf, PCF50606_REG_INT1M, ~INT1M_RESUMERS & 0xff); -+ __reg_write(pcf, PCF50606_REG_INT2M, ~INT2M_RESUMERS & 0xff); -+ __reg_write(pcf, PCF50606_REG_INT3M, ~INT3M_RESUMERS & 0xff); -+ -+ pcf->suspend_state = PCF50606_SS_COMPLETED_SUSPEND; -+ -+ mutex_unlock(&pcf->lock); -+ -+ return 0; -+} -+ -+static int pcf50606_resume(struct device *dev) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50606_data *pcf = i2c_get_clientdata(client); -+ -+ mutex_lock(&pcf->lock); -+ -+ pcf->suspend_state = PCF50606_SS_STARTING_RESUME; -+ -+ /* Resume all saved registers that don't "survive" standby state */ -+ __reg_write(pcf, PCF50606_REG_INT1M, pcf->standby_regs.int1m); -+ __reg_write(pcf, PCF50606_REG_INT2M, pcf->standby_regs.int2m); -+ __reg_write(pcf, PCF50606_REG_INT3M, pcf->standby_regs.int3m); -+ -+ __reg_write(pcf, PCF50606_REG_DCDC1, pcf->standby_regs.dcdc1); -+ __reg_write(pcf, PCF50606_REG_DCDC2, pcf->standby_regs.dcdc2); -+ __reg_write(pcf, PCF50606_REG_DCDEC1, pcf->standby_regs.dcdec1); -+ __reg_write(pcf, PCF50606_REG_DCUDC1, pcf->standby_regs.dcudc1); -+ __reg_write(pcf, PCF50606_REG_IOREGC, pcf->standby_regs.ioregc); -+ __reg_write(pcf, PCF50606_REG_D1REGC1, pcf->standby_regs.d1regc1); -+ __reg_write(pcf, PCF50606_REG_D2REGC1, pcf->standby_regs.d2regc1); -+ __reg_write(pcf, PCF50606_REG_D3REGC1, pcf->standby_regs.d3regc1); -+ __reg_write(pcf, PCF50606_REG_LPREGC1, pcf->standby_regs.lpregc1); -+ __reg_write(pcf, PCF50606_REG_ADCC1, pcf->standby_regs.adcc1); -+ __reg_write(pcf, PCF50606_REG_ADCC2, pcf->standby_regs.adcc2); -+ __reg_write(pcf, PCF50606_REG_PWMC1, pcf->standby_regs.pwmc1); -+ -+ pcf->suspend_state = PCF50606_SS_COMPLETED_RESUME; -+ -+ enable_irq(pcf->irq); -+ -+ mutex_unlock(&pcf->lock); -+ -+ /* Call PCF work function; this fixes an issue on the gta01 where -+ * the power button "goes away" if it is used to wake the device. -+ */ -+ get_device(&pcf->client.dev); -+ pcf50606_work(&pcf->work); -+ -+ return 0; -+} -+#else -+#define pcf50606_suspend NULL -+#define pcf50606_resume NULL -+#endif -+ -+static struct i2c_driver pcf50606_driver = { -+ .driver = { -+ .name = "pcf50606", -+ .suspend = pcf50606_suspend, -+ .resume = pcf50606_resume, -+ }, -+ .id = I2C_DRIVERID_PCF50606, -+ .attach_adapter = pcf50606_attach_adapter, -+ .detach_client = pcf50606_detach_client, -+}; -+ -+/* platform driver, since i2c devices don't have platform_data */ -+static int __init pcf50606_plat_probe(struct platform_device *pdev) -+{ -+ struct pcf50606_platform_data *pdata = pdev->dev.platform_data; -+ -+ if (!pdata) -+ return -ENODEV; -+ -+ pcf50606_pdev = pdev; -+ -+ return 0; -+} -+ -+static int pcf50606_plat_remove(struct platform_device *pdev) -+{ -+ return 0; -+} -+ -+/* We have this purely to capture an early indication that we are coming out -+ * of suspend, before our device resume got called; async interrupt service is -+ * interested in this. -+ */ -+ -+static int pcf50606_plat_resume(struct platform_device *pdev) -+{ -+ /* i2c_get_clientdata(to_i2c_client(&pdev->dev)) returns NULL at this -+ * early resume time so we have to use pcf50606_global -+ */ -+ pcf50606_global->suspend_state = PCF50606_SS_RESUMING_BUT_NOT_US_YET; -+ -+ return 0; -+} -+ -+static struct platform_driver pcf50606_plat_driver = { -+ .probe = pcf50606_plat_probe, -+ .remove = pcf50606_plat_remove, -+ .resume_early = pcf50606_plat_resume, -+ .driver = { -+ .owner = THIS_MODULE, -+ .name = "pcf50606", -+ }, -+}; -+ -+static int __init pcf50606_init(void) -+{ -+ int rc; -+ -+ rc = platform_driver_register(&pcf50606_plat_driver); -+ if (!rc) -+ rc = i2c_add_driver(&pcf50606_driver); -+ -+ return rc; -+} -+ -+static void pcf50606_exit(void) -+{ -+ i2c_del_driver(&pcf50606_driver); -+ platform_driver_unregister(&pcf50606_plat_driver); -+} -+ -+MODULE_DESCRIPTION("I2C chip driver for NXP PCF50606 power management unit"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(pcf50606_init); -+module_exit(pcf50606_exit); ---- /dev/null -+++ b/drivers/i2c/chips/pcf50606.h -@@ -0,0 +1,302 @@ -+#ifndef _PCF50606_H -+#define _PCF50606_H -+ -+/* Philips PCF50606 Power Managemnt Unit (PMU) driver -+ * (C) 2006-2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * -+ */ -+ -+enum pfc50606_regs { -+ PCF50606_REG_ID = 0x00, -+ PCF50606_REG_OOCS = 0x01, -+ PCF50606_REG_INT1 = 0x02, /* Interrupt Status */ -+ PCF50606_REG_INT2 = 0x03, /* Interrupt Status */ -+ PCF50606_REG_INT3 = 0x04, /* Interrupt Status */ -+ PCF50606_REG_INT1M = 0x05, /* Interrupt Mask */ -+ PCF50606_REG_INT2M = 0x06, /* Interrupt Mask */ -+ PCF50606_REG_INT3M = 0x07, /* Interrupt Mask */ -+ PCF50606_REG_OOCC1 = 0x08, -+ PCF50606_REG_OOCC2 = 0x09, -+ PCF50606_REG_RTCSC = 0x0a, /* Second */ -+ PCF50606_REG_RTCMN = 0x0b, /* Minute */ -+ PCF50606_REG_RTCHR = 0x0c, /* Hour */ -+ PCF50606_REG_RTCWD = 0x0d, /* Weekday */ -+ PCF50606_REG_RTCDT = 0x0e, /* Day */ -+ PCF50606_REG_RTCMT = 0x0f, /* Month */ -+ PCF50606_REG_RTCYR = 0x10, /* Year */ -+ PCF50606_REG_RTCSCA = 0x11, /* Alarm Second */ -+ PCF50606_REG_RTCMNA = 0x12, /* Alarm Minute */ -+ PCF50606_REG_RTCHRA = 0x13, /* Alarm Hour */ -+ PCF50606_REG_RTCWDA = 0x14, /* Alarm Weekday */ -+ PCF50606_REG_RTCDTA = 0x15, /* Alarm Day */ -+ PCF50606_REG_RTCMTA = 0x16, /* Alarm Month */ -+ PCF50606_REG_RTCYRA = 0x17, /* Alarm Year */ -+ PCF50606_REG_PSSC = 0x18, /* Power sequencing */ -+ PCF50606_REG_PWROKM = 0x19, /* PWROK mask */ -+ PCF50606_REG_PWROKS = 0x1a, /* PWROK status */ -+ PCF50606_REG_DCDC1 = 0x1b, -+ PCF50606_REG_DCDC2 = 0x1c, -+ PCF50606_REG_DCDC3 = 0x1d, -+ PCF50606_REG_DCDC4 = 0x1e, -+ PCF50606_REG_DCDEC1 = 0x1f, -+ PCF50606_REG_DCDEC2 = 0x20, -+ PCF50606_REG_DCUDC1 = 0x21, -+ PCF50606_REG_DCUDC2 = 0x22, -+ PCF50606_REG_IOREGC = 0x23, -+ PCF50606_REG_D1REGC1 = 0x24, -+ PCF50606_REG_D2REGC1 = 0x25, -+ PCF50606_REG_D3REGC1 = 0x26, -+ PCF50606_REG_LPREGC1 = 0x27, -+ PCF50606_REG_LPREGC2 = 0x28, -+ PCF50606_REG_MBCC1 = 0x29, -+ PCF50606_REG_MBCC2 = 0x2a, -+ PCF50606_REG_MBCC3 = 0x2b, -+ PCF50606_REG_MBCS1 = 0x2c, -+ PCF50606_REG_BBCC = 0x2d, -+ PCF50606_REG_ADCC1 = 0x2e, -+ PCF50606_REG_ADCC2 = 0x2f, -+ PCF50606_REG_ADCS1 = 0x30, -+ PCF50606_REG_ADCS2 = 0x31, -+ PCF50606_REG_ADCS3 = 0x32, -+ PCF50606_REG_ACDC1 = 0x33, -+ PCF50606_REG_BVMC = 0x34, -+ PCF50606_REG_PWMC1 = 0x35, -+ PCF50606_REG_LEDC1 = 0x36, -+ PCF50606_REG_LEDC2 = 0x37, -+ PCF50606_REG_GPOC1 = 0x38, -+ PCF50606_REG_GPOC2 = 0x39, -+ PCF50606_REG_GPOC3 = 0x3a, -+ PCF50606_REG_GPOC4 = 0x3b, -+ PCF50606_REG_GPOC5 = 0x3c, -+ __NUM_PCF50606_REGS -+}; -+ -+enum pcf50606_reg_oocs { -+ PFC50606_OOCS_ONKEY = 0x01, -+ PCF50606_OOCS_EXTON = 0x02, -+ PCF50606_OOCS_PWROKRST = 0x04, -+ PCF50606_OOCS_BATOK = 0x08, -+ PCF50606_OOCS_BACKOK = 0x10, -+ PCF50606_OOCS_CHGOK = 0x20, -+ PCF50606_OOCS_TEMPOK = 0x40, -+ PCF50606_OOCS_WDTEXP = 0x80, -+}; -+ -+enum pcf50606_reg_oocc1 { -+ PCF50606_OOCC1_GOSTDBY = 0x01, -+ PCF50606_OOCC1_TOTRST = 0x02, -+ PCF50606_OOCC1_CLK32ON = 0x04, -+ PCF50606_OOCC1_WDTRST = 0x08, -+ PCF50606_OOCC1_RTCWAK = 0x10, -+ PCF50606_OOCC1_CHGWAK = 0x20, -+ PCF50606_OOCC1_EXTONWAK_HIGH = 0x40, -+ PCF50606_OOCC1_EXTONWAK_LOW = 0x80, -+}; -+ -+enum pcf50606_reg_oocc2 { -+ PCF50606_OOCC2_ONKEYDB_NONE = 0x00, -+ PCF50606_OOCC2_ONKEYDB_14ms = 0x01, -+ PCF50606_OOCC2_ONKEYDB_62ms = 0x02, -+ PCF50606_OOCC2_ONKEYDB_500ms = 0x03, -+ PCF50606_OOCC2_EXTONDB_NONE = 0x00, -+ PCF50606_OOCC2_EXTONDB_14ms = 0x04, -+ PCF50606_OOCC2_EXTONDB_62ms = 0x08, -+ PCF50606_OOCC2_EXTONDB_500ms = 0x0c, -+}; -+ -+enum pcf50606_reg_int1 { -+ PCF50606_INT1_ONKEYR = 0x01, /* ONKEY rising edge */ -+ PCF50606_INT1_ONKEYF = 0x02, /* ONKEY falling edge */ -+ PCF50606_INT1_ONKEY1S = 0x04, /* OMKEY at least 1sec low */ -+ PCF50606_INT1_EXTONR = 0x08, /* EXTON rising edge */ -+ PCF50606_INT1_EXTONF = 0x10, /* EXTON falling edge */ -+ PCF50606_INT1_SECOND = 0x40, /* RTC periodic second interrupt */ -+ PCF50606_INT1_ALARM = 0x80, /* RTC alarm time is reached */ -+}; -+ -+enum pcf50606_reg_int2 { -+ PCF50606_INT2_CHGINS = 0x01, /* Charger inserted */ -+ PCF50606_INT2_CHGRM = 0x02, /* Charger removed */ -+ PCF50606_INT2_CHGFOK = 0x04, /* Fast charging OK */ -+ PCF50606_INT2_CHGERR = 0x08, /* Error in charging mode */ -+ PCF50606_INT2_CHGFRDY = 0x10, /* Fast charge completed */ -+ PCF50606_INT2_CHGPROT = 0x20, /* Charging protection interrupt */ -+ PCF50606_INT2_CHGWD10S = 0x40, /* Charger watchdig expires in 10s */ -+ PCF50606_INT2_CHGWDEXP = 0x80, /* Charger watchdog expires */ -+}; -+ -+enum pcf50606_reg_int3 { -+ PCF50606_INT3_ADCRDY = 0x01, /* ADC conversion finished */ -+ PCF50606_INT3_ACDINS = 0x02, /* Accessory inserted */ -+ PCF50606_INT3_ACDREM = 0x04, /* Accessory removed */ -+ PCF50606_INT3_TSCPRES = 0x08, /* Touch screen pressed */ -+ PCF50606_INT3_LOWBAT = 0x40, /* Low battery voltage */ -+ PCF50606_INT3_HIGHTMP = 0x80, /* High temperature */ -+}; -+ -+/* used by PSSC, PWROKM, PWROKS, */ -+enum pcf50606_regu { -+ PCF50606_REGU_DCD = 0x01, /* DCD in phase 2 */ -+ PCF50606_REGU_DCDE = 0x02, /* DCDE in phase 2 */ -+ PCF50606_REGU_DCUD = 0x04, /* DCDU in phase 2 */ -+ PCF50606_REGU_IO = 0x08, /* IO in phase 2 */ -+ PCF50606_REGU_D1 = 0x10, /* D1 in phase 2 */ -+ PCF50606_REGU_D2 = 0x20, /* D2 in phase 2 */ -+ PCF50606_REGU_D3 = 0x40, /* D3 in phase 2 */ -+ PCF50606_REGU_LP = 0x80, /* LP in phase 2 */ -+}; -+ -+enum pcf50606_reg_dcdc4 { -+ PCF50606_DCDC4_MODE_AUTO = 0x00, -+ PCF50606_DCDC4_MODE_PWM = 0x01, -+ PCF50606_DCDC4_MODE_PCF = 0x02, -+ PCF50606_DCDC4_OFF_FLOAT = 0x00, -+ PCF50606_DCDC4_OFF_BYPASS = 0x04, -+ PCF50606_DCDC4_OFF_PULLDOWN = 0x08, -+ PCF50606_DCDC4_CURLIM_500mA = 0x00, -+ PCF50606_DCDC4_CURLIM_750mA = 0x10, -+ PCF50606_DCDC4_CURLIM_1000mA = 0x20, -+ PCF50606_DCDC4_CURLIM_1250mA = 0x30, -+ PCF50606_DCDC4_TOGGLE = 0x40, -+ PCF50606_DCDC4_REGSEL_DCDC2 = 0x80, -+}; -+ -+enum pcf50606_reg_dcdec2 { -+ PCF50606_DCDEC2_MODE_AUTO = 0x00, -+ PCF50606_DCDEC2_MODE_PWM = 0x01, -+ PCF50606_DCDEC2_MODE_PCF = 0x02, -+ PCF50606_DCDEC2_OFF_FLOAT = 0x00, -+ PCF50606_DCDEC2_OFF_BYPASS = 0x04, -+}; -+ -+enum pcf50606_reg_dcudc2 { -+ PCF50606_DCUDC2_MODE_AUTO = 0x00, -+ PCF50606_DCUDC2_MODE_PWM = 0x01, -+ PCF50606_DCUDC2_MODE_PCF = 0x02, -+ PCF50606_DCUDC2_OFF_FLOAT = 0x00, -+ PCF50606_DCUDC2_OFF_BYPASS = 0x04, -+}; -+ -+enum pcf50606_reg_adcc1 { -+ PCF50606_ADCC1_TSCMODACT = 0x01, -+ PCF50606_ADCC1_TSCMODSTB = 0x02, -+ PCF50606_ADCC1_TRATSET = 0x04, -+ PCF50606_ADCC1_NTCSWAPE = 0x08, -+ PCF50606_ADCC1_NTCSWAOFF = 0x10, -+ PCF50606_ADCC1_EXTSYNCBREAK = 0x20, -+ /* reserved */ -+ PCF50606_ADCC1_TSCINT = 0x80, -+}; -+ -+enum pcf50606_reg_adcc2 { -+ PCF50606_ADCC2_ADCSTART = 0x01, -+ /* see enum pcf50606_adcc2_adcmux */ -+ PCF50606_ADCC2_SYNC_NONE = 0x00, -+ PCF50606_ADCC2_SYNC_TXON = 0x20, -+ PCF50606_ADCC2_SYNC_PWREN1 = 0x40, -+ PCF50606_ADCC2_SYNC_PWREN2 = 0x60, -+ PCF50606_ADCC2_RES_10BIT = 0x00, -+ PCF50606_ADCC2_RES_8BIT = 0x80, -+}; -+ -+#define PCF50606_ADCC2_ADCMUX_MASK (0xf << 1) -+ -+#define ADCMUX_SHIFT 1 -+enum pcf50606_adcc2_adcmux { -+ PCF50606_ADCMUX_BATVOLT_RES = 0x0 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_BATVOLT_SUBTR = 0x1 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_ADCIN1_RES = 0x2 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_ADCIN1_SUBTR = 0x3 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_BATTEMP = 0x4 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_ADCIN2 = 0x5 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_ADCIN3 = 0x6 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_ADCIN3_RATIO = 0x7 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_XPOS = 0x8 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_YPOS = 0x9 << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_P1 = 0xa << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_P2 = 0xb << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_BATVOLT_ADCIN1 = 0xc << ADCMUX_SHIFT, -+ PCF50606_ADCMUX_XY_SEQUENCE = 0xe << ADCMUX_SHIFT, -+ PCF50606_P1_P2_RESISTANCE = 0xf << ADCMUX_SHIFT, -+}; -+ -+enum pcf50606_adcs2 { -+ PCF50606_ADCS2_ADCRDY = 0x80, -+}; -+ -+enum pcf50606_reg_mbcc1 { -+ PCF50606_MBCC1_CHGAPE = 0x01, -+ PCF50606_MBCC1_AUTOFST = 0x02, -+#define PCF50606_MBCC1_CHGMOD_MASK 0x1c -+#define PCF50606_MBCC1_CHGMOD_SHIFT 2 -+ PCF50606_MBCC1_CHGMOD_QUAL = 0x00, -+ PCF50606_MBCC1_CHGMOD_PRE = 0x04, -+ PCF50606_MBCC1_CHGMOD_TRICKLE = 0x08, -+ PCF50606_MBCC1_CHGMOD_FAST_CCCV = 0x0c, -+ PCF50606_MBCC1_CHGMOD_FAST_NOCC = 0x10, -+ PCF50606_MBCC1_CHGMOD_FAST_NOCV = 0x14, -+ PCF50606_MBCC1_CHGMOD_FAST_SW = 0x18, -+ PCF50606_MBCC1_CHGMOD_IDLE = 0x1c, -+ PCF50606_MBCC1_DETMOD_LOWCHG = 0x20, -+ PCF50606_MBCC1_DETMOD_WDRST = 0x40, -+}; -+ -+enum pcf50606_reg_acdc1 { -+ PCF50606_ACDC1_ACDDET = 0x01, -+ PCF50606_ACDC1_THRSHLD_1V0 = 0x00, -+ PCF50606_ACDC1_THRSHLD_1V2 = 0x02, -+ PCF50606_ACDC1_THRSHLD_1V4 = 0x04, -+ PCF50606_ACDC1_THRSHLD_1V6 = 0x06, -+ PCF50606_ACDC1_THRSHLD_1V8 = 0x08, -+ PCF50606_ACDC1_THRSHLD_2V0 = 0x0a, -+ PCF50606_ACDC1_THRSHLD_2V2 = 0x0c, -+ PCF50606_ACDC1_THRSHLD_2V4 = 0x0e, -+ PCF50606_ACDC1_DISDB = 0x10, -+ PCF50606_ACDC1_ACDAPE = 0x80, -+}; -+ -+enum pcf50606_reg_bvmc { -+ PCF50606_BVMC_LOWBAT = 0x01, -+ PCF50606_BVMC_THRSHLD_NULL = 0x00, -+ PCF50606_BVMC_THRSHLD_2V8 = 0x02, -+ PCF50606_BVMC_THRSHLD_2V9 = 0x04, -+ PCF50606_BVMC_THRSHLD_3V = 0x08, -+ PCF50606_BVMC_THRSHLD_3V1 = 0x08, -+ PCF50606_BVMC_THRSHLD_3V2 = 0x0a, -+ PCF50606_BVMC_THRSHLD_3V3 = 0x0c, -+ PCF50606_BVMC_THRSHLD_3V4 = 0x0e, -+ PCF50606_BVMC_DISDB = 0x10, -+}; -+ -+enum pcf50606_reg_pwmc1 { -+ PCF50606_PWMC1_ACTSET = 0x01, -+ PCF50606_PWMC1_PWMDC_0_16 = 0x00, -+ PCF50606_PWMC1_PWMDC_1_16 = 0x02, -+ PCF50606_PWMC1_PWMDC_2_16 = 0x04, -+ PCF50606_PWMC1_PWMDC_3_16 = 0x06, -+ PCF50606_PWMC1_PWMDC_4_16 = 0x08, -+ PCF50606_PWMC1_PWMDC_5_16 = 0x0a, -+ PCF50606_PWMC1_PWMDC_6_16 = 0x0c, -+ PCF50606_PWMC1_PWMDC_7_16 = 0x0e, -+ PCF50606_PWMC1_PWMDC_8_16 = 0x10, -+ PCF50606_PWMC1_PWMDC_9_16 = 0x12, -+ PCF50606_PWMC1_PWMDC_10_16 = 0x14, -+ PCF50606_PWMC1_PWMDC_11_16 = 0x16, -+ PCF50606_PWMC1_PWMDC_12_16 = 0x18, -+ PCF50606_PWMC1_PWMDC_13_16 = 0x1a, -+ PCF50606_PWMC1_PWMDC_14_16 = 0x1c, -+ PCF50606_PWMC1_PWMDC_15_16 = 0x1e, -+ PCF50606_PWMC1_PRESC_512Hz = 0x20, -+ PCF50606_PWMC1_PRESC_256Hz = 0x40, -+ PCF50606_PWMC1_PRESC_64Hz = 0x60, -+ PCF50606_PWMC1_PRESC_56kHz = 0x80, -+ PCF50606_PWMC1_PRESC_28kHz = 0xa0, -+ PCF50606_PWMC1_PRESC_14kHz = 0xc0, -+ PCF50606_PWMC1_PRESC_7kHz = 0xe0, -+}; -+#define PCF50606_PWMC1_CLK_SHIFT 5 -+#define PCF50606_PWMC1_DC_SHIFT 1 -+ -+#endif /* _PCF50606_H */ -+ ---- /dev/null -+++ b/drivers/i2c/chips/pcf50633.c -@@ -0,0 +1,1883 @@ -+/* Philips PCF50633 Power Management Unit (PMU) driver -+ * -+ * (C) 2006-2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ * This driver is a monster ;) It provides the following features -+ * - voltage control for a dozen different voltage domains -+ * - charging control for main and backup battery -+ * - adc driver (hw_sensors like) -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/i2c.h> -+#include <linux/types.h> -+#include <linux/interrupt.h> -+#include <linux/irq.h> -+#include <linux/workqueue.h> -+#include <linux/delay.h> -+#include <linux/rtc.h> -+#include <linux/bcd.h> -+#include <linux/watchdog.h> -+#include <linux/miscdevice.h> -+#include <linux/input.h> -+#include <linux/fb.h> -+#include <linux/sched.h> -+#include <linux/platform_device.h> -+#include <linux/pcf50633.h> -+#include <linux/apm-emulation.h> -+#include <linux/jiffies.h> -+ -+#include <asm/mach-types.h> -+ -+#include <linux/pcf50633.h> -+#include <linux/regulator/pcf50633.h> -+#include <linux/rtc/pcf50633.h> -+ -+#if 0 -+#define DEBUGP(x, args ...) printk("%s: " x, __FUNCTION__, ## args) -+#define DEBUGPC(x, args ...) printk(x, ## args) -+#else -+#define DEBUGP(x, args ...) -+#define DEBUGPC(x, args ...) -+#endif -+ -+/*********************************************************************** -+ * Static data / structures -+ ***********************************************************************/ -+ -+static unsigned short normal_i2c[] = { 0x73, I2C_CLIENT_END }; -+ -+I2C_CLIENT_INSMOD_1(pcf50633); -+ -+enum close_state { -+ CLOSE_STATE_NOT, -+ CLOSE_STATE_ALLOW = 0x2342, -+}; -+ -+static struct i2c_driver pcf50633_driver; -+ -+static void pcf50633_usb_curlim_set(struct pcf50633_data *pcf, int ma); -+static void pcf50633_charge_enable(struct pcf50633_data *pcf, int on); -+ -+ -+/*********************************************************************** -+ * Low-Level routines -+ ***********************************************************************/ -+ -+/* Read a block of upto 32 regs -+ * -+ * Locks assumed to be held by caller -+ */ -+int pcf50633_read(struct pcf50633_data *pcf, u_int8_t reg, int nr_regs, u_int8_t *data) -+{ -+ return i2c_smbus_read_i2c_block_data(pcf->client, reg, nr_regs, data); -+} -+EXPORT_SYMBOL(pcf50633_read); -+ -+/* Read a block of upto 32 regs -+ * -+ * Locks assumed to be held by caller -+ */ -+int pcf50633_write(struct pcf50633_data *pcf, u_int8_t reg, int nr_regs, u_int8_t *data) -+{ -+ return i2c_smbus_write_i2c_block_data(pcf->client, reg, nr_regs, data); -+} -+EXPORT_SYMBOL(pcf50633_write); -+ -+static int __reg_write(struct pcf50633_data *pcf, u_int8_t reg, u_int8_t val) -+{ -+ if (pcf->suspend_state == PCF50633_SS_COMPLETED_SUSPEND) { -+ dev_err(&pcf->client->dev, "__reg_write while suspended\n"); -+ dump_stack(); -+ } -+ return i2c_smbus_write_byte_data(pcf->client, reg, val); -+} -+ -+int pcf50633_reg_write(struct pcf50633_data *pcf, u_int8_t reg, u_int8_t val) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = __reg_write(pcf, reg, val); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL(pcf50633_reg_write); -+ -+static int32_t __reg_read(struct pcf50633_data *pcf, u_int8_t reg) -+{ -+ int32_t ret; -+ -+ if (pcf->suspend_state == PCF50633_SS_COMPLETED_SUSPEND) { -+ dev_err(&pcf->client->dev, "__reg_read while suspended\n"); -+ dump_stack(); -+ } -+ ret = i2c_smbus_read_byte_data(pcf->client, reg); -+ -+ return ret; -+} -+ -+u_int8_t pcf50633_reg_read(struct pcf50633_data *pcf, u_int8_t reg) -+{ -+ int32_t ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = __reg_read(pcf, reg); -+ mutex_unlock(&pcf->lock); -+ -+ return ret & 0xff; -+} -+EXPORT_SYMBOL(pcf50633_reg_read); -+ -+int pcf50633_reg_set_bit_mask(struct pcf50633_data *pcf, -+ u_int8_t reg, u_int8_t mask, u_int8_t val) -+{ -+ int ret; -+ u_int8_t tmp; -+ -+ val &= mask; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = __reg_read(pcf, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ ret = __reg_write(pcf, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL(pcf50633_reg_set_bit_mask); -+ -+int pcf50633_reg_clear_bits(struct pcf50633_data *pcf, u_int8_t reg, u_int8_t val) -+{ -+ int ret; -+ u_int8_t tmp; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = __reg_read(pcf, reg); -+ tmp &= ~val; -+ ret = __reg_write(pcf, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL(pcf50633_reg_clear_bits); -+ -+/* asynchronously setup reading one ADC channel */ -+static void async_adc_read_setup(struct pcf50633_data *pcf, -+ int channel, int avg) -+{ -+ channel &= PCF50633_ADCC1_ADCMUX_MASK; -+ -+ /* kill ratiometric, but enable ACCSW biasing */ -+ __reg_write(pcf, PCF50633_REG_ADCC2, 0x00); -+ __reg_write(pcf, PCF50633_REG_ADCC3, 0x01); -+ -+ /* start ADC conversion of selected channel */ -+ __reg_write(pcf, PCF50633_REG_ADCC1, channel | avg | -+ PCF50633_ADCC1_ADCSTART | PCF50633_ADCC1_RES_10BIT); -+ -+} -+ -+static u_int16_t adc_read_result(struct pcf50633_data *pcf) -+{ -+ u_int16_t ret = (__reg_read(pcf, PCF50633_REG_ADCS1) << 2) | -+ (__reg_read(pcf, PCF50633_REG_ADCS3) & -+ PCF50633_ADCS3_ADCDAT1L_MASK); -+ -+ DEBUGPC("adc result = %d\n", ret); -+ -+ return ret; -+} -+ -+/* go into 'STANDBY' mode, i.e. power off the main CPU and peripherals */ -+void pcf50633_go_standby(struct pcf50633_data *pcf) -+{ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_OOCSHDWN, -+ PCF50633_OOCSHDWN_GOSTDBY, PCF50633_OOCSHDWN_GOSTDBY); -+} -+EXPORT_SYMBOL_GPL(pcf50633_go_standby); -+ -+void pcf50633_gpio_set(struct pcf50633_data *pcf, enum pcf50633_gpio gpio, -+ int on) -+{ -+ u_int8_t reg = gpio - PCF50633_GPIO1 + PCF50633_REG_GPIO1CFG; -+ -+ if (on) -+ pcf50633_reg_set_bit_mask(pcf, reg, 0x0f, 0x07); -+ else -+ pcf50633_reg_set_bit_mask(pcf, reg, 0x0f, 0x00); -+} -+EXPORT_SYMBOL_GPL(pcf50633_gpio_set); -+ -+int pcf50633_gpio_get(struct pcf50633_data *pcf, enum pcf50633_gpio gpio) -+{ -+ u_int8_t reg = gpio - PCF50633_GPIO1 + PCF50633_REG_GPIO1CFG; -+ u_int8_t val = pcf50633_reg_read(pcf, reg) & 0x0f; -+ -+ if (val == PCF50633_GPOCFG_GPOSEL_1 || -+ val == (PCF50633_GPOCFG_GPOSEL_0|PCF50633_GPOCFG_GPOSEL_INVERSE)) -+ return 1; -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50633_gpio_get); -+ -+static int interpret_charger_type_from_adc(struct pcf50633_data *pcf, -+ int sample) -+{ -+ /* 1A capable charger? */ -+ -+ if (sample < ((ADC_NOM_CHG_DETECT_NONE + ADC_NOM_CHG_DETECT_1A) / 2)) -+ return CHARGER_TYPE_1A; -+ -+ /* well then, nothing in the USB hole, or USB host / unk adapter */ -+ -+ if (pcf->flags & PCF50633_F_USB_PRESENT) /* ooh power is in there */ -+ return CHARGER_TYPE_HOSTUSB; /* HOSTUSB is the catchall */ -+ -+ return CHARGER_TYPE_NONE; /* no really -- nothing in there */ -+} -+ -+ -+ -+static void -+configure_pmu_for_charger(struct pcf50633_data *pcf, -+ void *unused, int adc_result_raw) -+{ -+ int type; -+ -+ type = interpret_charger_type_from_adc( -+ pcf, adc_result_raw); -+ switch (type) { -+ case CHARGER_TYPE_NONE: -+ pcf50633_usb_curlim_set(pcf, 0); -+ break; -+ /* -+ * the PCF50633 has a feature that it will supply only excess current -+ * from the charger that is not used to power the device. So this -+ * 500mA setting is "up to 500mA" according to that. -+ */ -+ case CHARGER_TYPE_HOSTUSB: -+ /* USB subsystem should call pcf50633_usb_curlim_set to set -+ * what was negotiated with the host when it is enumerated -+ * successfully. If we get called again after a good -+ * negotiation, we keep what was negotiated. (Removal of -+ * USB plug destroys pcf->last_curlim_set to 0) -+ */ -+ if (pcf->last_curlim_set > 100) -+ pcf50633_usb_curlim_set(pcf, pcf->last_curlim_set); -+ else -+ pcf50633_usb_curlim_set(pcf, 100); -+ break; -+ case CHARGER_TYPE_1A: -+ pcf50633_usb_curlim_set(pcf, 1000); -+ /* -+ * stop GPO / EN_HOSTUSB power driving out on the same -+ * USB power pins we have a 1A charger on right now! -+ */ -+ dev_dbg(&pcf->client->dev, "Charger -> CHARGER_TYPE_1A\n"); -+ __reg_write(pcf, PCF50633_GPO - PCF50633_GPIO1 + -+ PCF50633_REG_GPIO1CFG, -+ __reg_read(pcf, PCF50633_GPO - PCF50633_GPIO1 + -+ PCF50633_REG_GPIO1CFG) & 0xf0); -+ break; -+ } -+ -+ /* max out USB fast charge current -- actual current drawn is -+ * additionally limited by USB limit so no worries -+ */ -+ __reg_write(pcf, PCF50633_REG_MBCC5, 0xff); -+ -+} -+ -+static void trigger_next_adc_job_if_any(struct pcf50633_data *pcf) -+{ -+ if (pcf->adc_queue_head == pcf->adc_queue_tail) -+ return; -+ async_adc_read_setup(pcf, -+ pcf->adc_queue[pcf->adc_queue_tail]->mux, -+ pcf->adc_queue[pcf->adc_queue_tail]->avg); -+} -+ -+ -+static void -+adc_add_request_to_queue(struct pcf50633_data *pcf, struct adc_request *req) -+{ -+ int old_head = pcf->adc_queue_head; -+ pcf->adc_queue[pcf->adc_queue_head] = req; -+ -+ pcf->adc_queue_head = (pcf->adc_queue_head + 1) & -+ (MAX_ADC_FIFO_DEPTH - 1); -+ -+ /* it was idle before we just added this? we need to kick it then */ -+ if (old_head == pcf->adc_queue_tail) -+ trigger_next_adc_job_if_any(pcf); -+} -+ -+static void -+__pcf50633_adc_sync_read_callback(struct pcf50633_data *pcf, void *param, int result) -+{ -+ struct adc_request *req; -+ -+ /*We know here that the passed param is an adc_request object */ -+ req = (struct adc_request *)param; -+ -+ req->result = result; -+ complete(&req->completion); -+} -+ -+int pcf50633_adc_sync_read(struct pcf50633_data *pcf, int mux, int avg) -+{ -+ -+ struct adc_request *req; -+ int result; -+ -+ /* req is freed when the result is ready, in pcf50633_work*/ -+ req = kmalloc(sizeof(*req), GFP_KERNEL); -+ if (!req) -+ return -ENOMEM; -+ -+ req->mux = mux; -+ req->avg = avg; -+ req->callback = __pcf50633_adc_sync_read_callback; -+ req->callback_param = req; -+ init_completion(&req->completion); -+ -+ adc_add_request_to_queue(pcf, req); -+ -+ wait_for_completion(&req->completion); -+ result = req->result; -+ -+ return result; -+} -+ -+int pcf50633_adc_async_read(struct pcf50633_data *pcf, int mux, int avg, -+ void (*callback)(struct pcf50633_data *, void *,int), -+ void *callback_param) -+{ -+ struct adc_request *req; -+ -+ /* req is freed when the result is ready, in pcf50633_work*/ -+ req = kmalloc(sizeof(*req), GFP_KERNEL); -+ if (!req) -+ return -ENOMEM; -+ -+ req->mux = mux; -+ req->avg = avg; -+ req->callback = callback; -+ req->callback_param = callback_param; -+ -+ adc_add_request_to_queue(pcf, req); -+ -+ return 0; -+} -+ -+/* -+ * we get run to handle servicing the async notification from USB stack that -+ * we got enumerated and allowed to draw a particular amount of current -+ */ -+ -+static void pcf50633_work_usbcurlim(struct work_struct *work) -+{ -+ struct pcf50633_data *pcf = -+ container_of(work, struct pcf50633_data, work_usb_curlimit); -+ -+ mutex_lock(&pcf->working_lock_usb_curlimit); -+ -+ /* just can't cope with it if we are suspending, don't reschedule */ -+ if ((pcf->suspend_state == PCF50633_SS_STARTING_SUSPEND) || -+ (pcf->suspend_state == PCF50633_SS_COMPLETED_SUSPEND)) -+ goto bail; -+ -+ dev_dbg(&pcf->client->dev, "pcf50633_work_usbcurlim\n"); -+ -+ if (!pcf->probe_completed) -+ goto reschedule; -+ -+ /* we got a notification from USB stack before we completed resume... -+ * that can only make trouble, reschedule for a retry -+ */ -+ if (pcf->suspend_state && -+ (pcf->suspend_state < PCF50633_SS_COMPLETED_RESUME)) -+ goto reschedule; -+ -+ /* -+ * did he pull USB before we managed to set the limit? -+ */ -+ if (pcf->usb_removal_count_usb_curlimit != pcf->usb_removal_count) -+ goto bail; -+ -+ /* OK let's set the requested limit and finish */ -+ -+ dev_dbg(&pcf->client->dev, "pcf50633_work_usbcurlim setting %dmA\n", -+ pcf->pending_curlimit); -+ pcf50633_usb_curlim_set(pcf, pcf->pending_curlimit); -+ -+bail: -+ mutex_unlock(&pcf->working_lock_usb_curlimit); -+ return; -+ -+reschedule: -+ dev_dbg(&pcf->client->dev, "pcf50633_work_usbcurlim rescheduling\n"); -+ if (!schedule_work(&pcf->work_usb_curlimit)) -+ dev_err(&pcf->client->dev, "curlim reschedule work " -+ "already queued\n"); -+ -+ mutex_unlock(&pcf->working_lock_usb_curlimit); -+ /* don't spew, delaying whatever else is happening */ -+ msleep(1); -+} -+ -+ -+/* this is an export to allow machine to set USB current limit according to -+ * notifications of USB stack about enumeration state. We spawn a work -+ * function to handle the actual setting, because suspend / resume and such -+ * can be in a bad state since this gets called externally asychronous to -+ * anything else going on in pcf50633. -+ */ -+ -+int pcf50633_notify_usb_current_limit_change(struct pcf50633_data *pcf, -+ unsigned int ma) -+{ -+ /* can happen if he calls before probe -+ * have to bail with error since we can't even schedule the work -+ */ -+ if (!pcf) { -+ printk(KERN_ERR "pcf50633_notify_usb_current_limit called with NULL pcf\n"); -+ return -EBUSY; -+ } -+ -+ dev_dbg(&pcf->client->dev, -+ "pcf50633_notify_usb_current_limit_change %dmA\n", ma); -+ -+ /* prepare to detect USB power removal before we complete */ -+ pcf->usb_removal_count_usb_curlimit = pcf->usb_removal_count; -+ -+ pcf->pending_curlimit = ma; -+ -+ if (!schedule_work(&pcf->work_usb_curlimit)) -+ dev_err(&pcf->client->dev, "curlim work item already queued\n"); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50633_notify_usb_current_limit_change); -+ -+ -+/* we are run when we see a NOBAT situation, because there is no interrupt -+ * source in pcf50633 that triggers on resuming charging. It watches to see -+ * if charging resumes, it reassesses the charging source if it does. If the -+ * USB power disappears, it is also a sign there must be a battery and it is -+ * NOT being charged, so it exits since the next move must be USB insertion for -+ * change of charger state -+ */ -+ -+static void pcf50633_work_nobat(struct work_struct *work) -+{ -+ struct pcf50633_data *pcf = -+ container_of(work, struct pcf50633_data, work_nobat); -+ -+ mutex_lock(&pcf->working_lock_nobat); -+ pcf->working_nobat = 1; -+ mutex_unlock(&pcf->working_lock_nobat); -+ -+ while (1) { -+ msleep(1000); -+ -+ if (pcf->suspend_state != PCF50633_SS_RUNNING) -+ continue; -+ -+ /* there's a battery in there now? */ -+ if (pcf50633_reg_read(pcf, PCF50633_REG_MBCS3) & 0x40) { -+ -+ pcf->jiffies_last_bat_ins = jiffies; -+ -+ /* figure out our charging stance */ -+ (void)pcf50633_adc_async_read(pcf, PCF50633_ADCC1_MUX_ADCIN1, -+ PCF50633_ADCC1_AVERAGE_16, -+ configure_pmu_for_charger, -+ NULL); -+ goto bail; -+ } -+ -+ /* he pulled USB cable since we were started? exit then */ -+ if (pcf->usb_removal_count_nobat != pcf->usb_removal_count) -+ goto bail; -+ } -+ -+bail: -+ mutex_lock(&pcf->working_lock_nobat); -+ pcf->working_nobat = 0; -+ mutex_unlock(&pcf->working_lock_nobat); -+} -+ -+ -+static void pcf50633_work(struct work_struct *work) -+{ -+ struct pcf50633_data *pcf = -+ container_of(work, struct pcf50633_data, work); -+ u_int8_t pcfirq[5]; -+ int ret; -+ int tail; -+ struct adc_request *req; -+ -+ mutex_lock(&pcf->working_lock); -+ pcf->working = 1; -+ -+ /* sanity */ -+ if (!&pcf->client->dev) -+ goto bail; -+ -+ /* -+ * if we are presently suspending, we are not in a position to deal -+ * with pcf50633 interrupts at all. -+ * -+ * Because we didn't clear the int pending registers, there will be -+ * no edge / interrupt waiting for us when we wake. But it is OK -+ * because at the end of our resume, we call this workqueue function -+ * gratuitously, clearing the pending register and re-enabling -+ * servicing this interrupt. -+ */ -+ -+ if ((pcf->suspend_state == PCF50633_SS_STARTING_SUSPEND) || -+ (pcf->suspend_state == PCF50633_SS_COMPLETED_SUSPEND)) -+ goto bail; -+ -+ /* -+ * If we are inside suspend -> resume completion time we don't attempt -+ * service until we have fully resumed. Although we could talk to the -+ * device as soon as I2C is up, the regs in the device which we might -+ * choose to modify as part of the service action have not been -+ * reloaded with their pre-suspend states yet. Therefore we will -+ * defer our service if we are called like that until our resume has -+ * completed. -+ * -+ * This shouldn't happen any more because we disable servicing this -+ * interrupt in suspend and don't re-enable it until resume is -+ * completed. -+ */ -+ -+ if (pcf->suspend_state && -+ (pcf->suspend_state != PCF50633_SS_COMPLETED_RESUME)) -+ goto reschedule; -+ -+ /* this is the case early in resume! Sanity check! */ -+ if (i2c_get_clientdata(pcf->client) == NULL) -+ goto reschedule; -+ -+ /* -+ * datasheet says we have to read the five IRQ -+ * status regs in one transaction -+ */ -+ ret = pcf50633_read(pcf, PCF50633_REG_INT1, -+ sizeof(pcfirq), pcfirq); -+ if (ret != sizeof(pcfirq)) { -+ dev_info(&pcf->client->dev, -+ "Oh crap PMU IRQ register read failed -- " -+ "retrying later %d\n", ret); -+ /* -+ * it shouldn't fail, we no longer attempt to use -+ * I2C while it can be suspended. But we don't have -+ * much option but to retry if if it ever did fail, -+ * because if we don't service the interrupt to clear -+ * it, we will never see another PMU interrupt edge. -+ */ -+ goto reschedule; -+ } -+ -+ /* hey did we just resume? (because we don't get here unless we are -+ * running normally or the first call after resumption) -+ */ -+ -+ if (pcf->suspend_state != PCF50633_SS_RUNNING) { -+ /* -+ * grab a copy of resume interrupt reasons -+ * from pcf50633 POV -+ */ -+ memcpy(pcf->pcfirq_resume, pcfirq, sizeof(pcf->pcfirq_resume)); -+ -+ /* pcf50633 resume is really really over now then */ -+ pcf->suspend_state = PCF50633_SS_RUNNING; -+ -+ /* peek at the IRQ reason, if power button then set a flag -+ * so that we do not signal the event to userspace -+ */ -+ if (pcfirq[1] & (PCF50633_INT2_ONKEYF | PCF50633_INT2_ONKEYR)) { -+ pcf->suppress_onkey_events = 1; -+ DEBUGP("Wake by ONKEY, suppressing ONKEY event"); -+ } else { -+ pcf->suppress_onkey_events = 0; -+ } -+ } -+ -+ if (!pcf->coldplug_done) { -+ DEBUGP("PMU Coldplug init\n"); -+ -+ /* we used SECOND to kick ourselves started -- turn it off */ -+ pcfirq[0] &= ~PCF50633_INT1_SECOND; -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_INT1M, -+ PCF50633_INT1_SECOND, -+ PCF50633_INT1_SECOND); -+ -+ /* coldplug the USB if present */ -+ if ((__reg_read(pcf, PCF50633_REG_MBCS1) & -+ (PCF50633_MBCS1_USBPRES | PCF50633_MBCS1_USBOK)) == -+ (PCF50633_MBCS1_USBPRES | PCF50633_MBCS1_USBOK)) { -+ DEBUGPC("COLD USBINS\n"); -+ input_report_key(pcf->input_dev, KEY_POWER2, 1); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags |= PCF50633_F_USB_PRESENT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_USB_INSERT); -+ } -+ -+ /* figure out our initial charging stance */ -+ (void)pcf50633_adc_async_read(pcf, PCF50633_ADCC1_MUX_ADCIN1, -+ PCF50633_ADCC1_AVERAGE_16, -+ configure_pmu_for_charger, NULL); -+ -+ pcf->coldplug_done = 1; -+ } -+ -+ DEBUGP("INT1=0x%02x INT2=0x%02x INT3=0x%02x INT4=0x%02x INT5=0x%02x\n", -+ pcfirq[0], pcfirq[1], pcfirq[2], pcfirq[3], pcfirq[4]); -+ -+ if (pcfirq[0] & PCF50633_INT1_ADPINS) { -+ /* Charger inserted */ -+ DEBUGPC("ADPINS "); -+ input_report_key(pcf->input_dev, KEY_BATTERY, 1); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags |= PCF50633_F_CHG_PRESENT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_INSERT); -+ } -+ if (pcfirq[0] & PCF50633_INT1_ADPREM) { -+ /* Charger removed */ -+ DEBUGPC("ADPREM "); -+ input_report_key(pcf->input_dev, KEY_BATTERY, 0); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags &= ~PCF50633_F_CHG_PRESENT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_REMOVE); -+ } -+ if (pcfirq[0] & PCF50633_INT1_USBINS) { -+ DEBUGPC("USBINS "); -+ input_report_key(pcf->input_dev, KEY_POWER2, 1); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags |= PCF50633_F_USB_PRESENT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_USB_INSERT); -+ msleep(500); /* debounce, allow to see any ID resistor */ -+ /* completion irq will figure out our charging stance */ -+ (void)pcf50633_adc_async_read(pcf, PCF50633_ADCC1_MUX_ADCIN1, -+ PCF50633_ADCC1_AVERAGE_16, -+ configure_pmu_for_charger, NULL); -+ } -+ if (pcfirq[0] & PCF50633_INT1_USBREM && -+ !(pcfirq[0] & PCF50633_INT1_USBINS)) { -+ /* the occurrence of USBINS and USBREM -+ * should be exclusive in one schedule work -+ */ -+ DEBUGPC("USBREM "); -+ -+ pcf->usb_removal_count++; -+ -+ /* only deal if we had understood it was in */ -+ if (pcf->flags & PCF50633_F_USB_PRESENT) { -+ input_report_key(pcf->input_dev, KEY_POWER2, 0); -+ apm_queue_event(APM_POWER_STATUS_CHANGE); -+ pcf->flags &= ~PCF50633_F_USB_PRESENT; -+ -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_USB_REMOVE); -+ -+ /* destroy any memory of grant of power from host */ -+ pcf->last_curlim_set = 0; -+ -+ /* completion irq will figure out our charging stance */ -+ (void)pcf50633_adc_async_read(pcf, PCF50633_ADCC1_MUX_ADCIN1, -+ PCF50633_ADCC1_AVERAGE_16, -+ configure_pmu_for_charger, NULL); -+ } -+ } -+ if (pcfirq[0] & PCF50633_INT1_ALARM) { -+ DEBUGPC("ALARM "); -+ if (pcf->pdata->used_features & PCF50633_FEAT_RTC) -+ pcf50633_rtc_handle_event(pcf, -+ PCF50633_RTC_EVENT_ALARM); -+ } -+ if (pcfirq[0] & PCF50633_INT1_SECOND) { -+ DEBUGPC("SECOND "); -+ if (pcf->flags & PCF50633_F_RTC_SECOND) -+ pcf50633_rtc_handle_event(pcf, -+ PCF50633_RTC_EVENT_SECOND); -+ -+ if (pcf->onkey_seconds >= 0 && -+ pcf->flags & PCF50633_F_PWR_PRESSED) { -+ DEBUGP("ONKEY_SECONDS(%u, OOCSTAT=0x%02x) ", -+ pcf->onkey_seconds, -+ pcf50633_reg_read(pcf, PCF50633_REG_OOCSTAT)); -+ pcf->onkey_seconds++; -+ if (pcf->onkey_seconds >= -+ pcf->pdata->onkey_seconds_sig_init) { -+ /* Ask init to do 'ctrlaltdel' */ -+ /* -+ * currently Linux reacts badly to issuing a -+ * signal to PID #1 before init is started. -+ * What happens is that the next kernel thread -+ * to start, which is the JFFS2 Garbage -+ * collector in our case, gets the signal -+ * instead and proceeds to fail to fork -- -+ * which is very bad. Therefore we confirm -+ * PID #1 exists before issuing the signal -+ */ -+ if (find_task_by_pid_ns(1, &init_pid_ns)) { -+ kill_pid(task_pid(find_task_by_pid_ns(1, -+ &init_pid_ns)), SIGPWR, 1); -+ DEBUGPC("SIGINT(init) "); -+ } -+ /* FIXME: what if userspace doesn't shut down? */ -+ } -+ if (pcf->onkey_seconds >= -+ pcf->pdata->onkey_seconds_shutdown) { -+ DEBUGPC("Power Off "); -+ pcf50633_go_standby(pcf); -+ } -+ } -+ } -+ -+ if (pcfirq[1] & PCF50633_INT2_ONKEYF) { -+ /* ONKEY falling edge (start of button press) */ -+ pcf->flags |= PCF50633_F_PWR_PRESSED; -+ if (!pcf->suppress_onkey_events) { -+ DEBUGPC("ONKEYF "); -+ input_report_key(pcf->input_dev, KEY_POWER, 1); -+ } else { -+ DEBUGPC("ONKEYF(unreported) "); -+ } -+ } -+ if (pcfirq[1] & PCF50633_INT2_ONKEYR) { -+ /* ONKEY rising edge (end of button press) */ -+ pcf->flags &= ~PCF50633_F_PWR_PRESSED; -+ pcf->onkey_seconds = -1; -+ if (!pcf->suppress_onkey_events) { -+ DEBUGPC("ONKEYR "); -+ input_report_key(pcf->input_dev, KEY_POWER, 0); -+ } else { -+ DEBUGPC("ONKEYR(unreported) "); -+ /* don't suppress any more power button events */ -+ pcf->suppress_onkey_events = 0; -+ } -+ /* disable SECOND interrupt in case RTC didn't -+ * request it */ -+ if (!(pcf->flags & PCF50633_F_RTC_SECOND)) -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_INT1M, -+ PCF50633_INT1_SECOND, -+ PCF50633_INT1_SECOND); -+ } -+ /* FIXME: we don't use EXTON1/2/3. thats why we skip it */ -+ -+ if (pcfirq[2] & PCF50633_INT3_BATFULL) { -+ DEBUGPC("BATFULL "); -+ -+ /* the problem is, we get a false BATFULL if we inserted battery -+ * while USB powered. Defeat BATFULL if we recently inserted -+ * battery -+ */ -+ -+ if ((jiffies - pcf->jiffies_last_bat_ins) < (HZ * 2)) { -+ -+ DEBUGPC("*** Ignoring BATFULL ***\n"); -+ -+ ret = pcf50633_reg_read(pcf, PCF50633_REG_MBCC7) & -+ PCF56033_MBCC7_USB_MASK; -+ -+ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC7, -+ PCF56033_MBCC7_USB_MASK, -+ PCF50633_MBCC7_USB_SUSPEND); -+ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC7, -+ PCF56033_MBCC7_USB_MASK, -+ ret); -+ } else { -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_IDLE); -+ } -+ -+ /* FIXME: signal this to userspace */ -+ } -+ if (pcfirq[2] & PCF50633_INT3_CHGHALT) { -+ DEBUGPC("CHGHALT "); -+ /* -+ * this is really "battery not pulling current" -- it can -+ * appear with no battery attached -+ */ -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_CHANGE); -+ } -+ if (pcfirq[2] & PCF50633_INT3_THLIMON) { -+ DEBUGPC("THLIMON "); -+ pcf->flags |= PCF50633_F_CHG_PROT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_CHANGE); -+ } -+ if (pcfirq[2] & PCF50633_INT3_THLIMOFF) { -+ DEBUGPC("THLIMOFF "); -+ pcf->flags &= ~PCF50633_F_CHG_PROT; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_CHANGE); -+ } -+ if (pcfirq[2] & PCF50633_INT3_USBLIMON) { -+ DEBUGPC("USBLIMON "); -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_CHANGE); -+ } -+ if (pcfirq[2] & PCF50633_INT3_USBLIMOFF) { -+ DEBUGPC("USBLIMOFF "); -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_CHANGE); -+ } -+ if (pcfirq[2] & PCF50633_INT3_ADCRDY) { -+ /* ADC result ready */ -+ DEBUGPC("ADCRDY "); -+ tail = pcf->adc_queue_tail; -+ pcf->adc_queue_tail = (pcf->adc_queue_tail + 1) & -+ (MAX_ADC_FIFO_DEPTH - 1); -+ req = pcf->adc_queue[tail]; -+ req->callback(pcf, req->callback_param, -+ adc_read_result(pcf)); -+ kfree(req); -+ -+ trigger_next_adc_job_if_any(pcf); -+ } -+ if (pcfirq[2] & PCF50633_INT3_ONKEY1S) { -+ /* ONKEY pressed for more than 1 second */ -+ pcf->onkey_seconds = 0; -+ DEBUGPC("ONKEY1S "); -+ /* Tell PMU we are taking care of this */ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_OOCSHDWN, -+ PCF50633_OOCSHDWN_TOTRST, -+ PCF50633_OOCSHDWN_TOTRST); -+ /* enable SECOND interrupt (hz tick) */ -+ pcf50633_reg_clear_bits(pcf, PCF50633_REG_INT1M, PCF50633_INT1_SECOND); -+ } -+ -+ if (pcfirq[3] & (PCF50633_INT4_LOWBAT|PCF50633_INT4_LOWSYS)) { -+ if ((__reg_read(pcf, PCF50633_REG_MBCS1) & -+ (PCF50633_MBCS1_USBPRES | PCF50633_MBCS1_USBOK)) == -+ (PCF50633_MBCS1_USBPRES | PCF50633_MBCS1_USBOK)) { -+ /* -+ * hey no need to freak out, we have some kind of -+ * valid charger power to keep us going -- but note that -+ * we are not actually charging anything -+ */ -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_IDLE); -+ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, -+ PCF50633_MBCC1_RESUME, -+ PCF50633_MBCC1_RESUME); -+ -+ /* -+ * Well, we are not charging anything right this second -+ * ... however in the next ~30s before we get the next -+ * NOBAT, he might insert a battery. So we schedule a -+ * work function checking to see if -+ * we started charging something during that time. -+ * USB removal as well as charging terminates the work -+ * function so we can't get terminally confused -+ */ -+ mutex_lock(&pcf->working_lock_nobat); -+ if (!pcf->working_nobat) { -+ pcf->usb_removal_count_nobat = -+ pcf->usb_removal_count; -+ -+ if (!schedule_work(&pcf->work_nobat)) -+ DEBUGPC("failed to schedule nobat\n"); -+ } -+ mutex_unlock(&pcf->working_lock_nobat); -+ -+ -+ DEBUGPC("(NO)BAT "); -+ } else { -+ /* Really low battery voltage, we have 8 seconds left */ -+ DEBUGPC("LOWBAT "); -+ /* -+ * currently Linux reacts badly to issuing a signal to -+ * PID #1 before init is started. What happens is that -+ * the next kernel thread to start, which is the JFFS2 -+ * Garbage collector in our case, gets the signal -+ * instead and proceeds to fail to fork -- which is -+ * very bad. Therefore we confirm PID #1 exists -+ * before issuing SPIGPWR -+ */ -+ -+ if (find_task_by_pid_ns(1, &init_pid_ns)) { -+ apm_queue_event(APM_LOW_BATTERY); -+ DEBUGPC("SIGPWR(init) "); -+ kill_pid(task_pid(find_task_by_pid_ns(1, &init_pid_ns)), SIGPWR, 1); -+ } else -+ /* -+ * well, our situation is like this: we do not -+ * have any external power, we have a low -+ * battery and since PID #1 doesn't exist yet, -+ * we are early in the boot, likely before -+ * rootfs mount. We should just call it a day -+ */ -+ apm_queue_event(APM_CRITICAL_SUSPEND); -+ } -+ -+ /* Tell PMU we are taking care of this */ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_OOCSHDWN, -+ PCF50633_OOCSHDWN_TOTRST, -+ PCF50633_OOCSHDWN_TOTRST); -+ } -+ if (pcfirq[3] & PCF50633_INT4_HIGHTMP) { -+ /* High temperature */ -+ DEBUGPC("HIGHTMP "); -+ apm_queue_event(APM_CRITICAL_SUSPEND); -+ } -+ if (pcfirq[3] & PCF50633_INT4_AUTOPWRFAIL) { -+ DEBUGPC("PCF50633_INT4_AUTOPWRFAIL "); -+ /* FIXME: deal with this */ -+ } -+ if (pcfirq[3] & PCF50633_INT4_DWN1PWRFAIL) { -+ DEBUGPC("PCF50633_INT4_DWN1PWRFAIL "); -+ /* FIXME: deal with this */ -+ } -+ if (pcfirq[3] & PCF50633_INT4_DWN2PWRFAIL) { -+ DEBUGPC("PCF50633_INT4_DWN2PWRFAIL "); -+ /* FIXME: deal with this */ -+ } -+ if (pcfirq[3] & PCF50633_INT4_LEDPWRFAIL) { -+ DEBUGPC("PCF50633_INT4_LEDPWRFAIL "); -+ /* FIXME: deal with this */ -+ } -+ if (pcfirq[3] & PCF50633_INT4_LEDOVP) { -+ DEBUGPC("PCF50633_INT4_LEDOVP "); -+ /* FIXME: deal with this */ -+ } -+ -+ DEBUGPC("\n"); -+ -+bail: -+ pcf->working = 0; -+ input_sync(pcf->input_dev); -+ put_device(&pcf->client->dev); -+ mutex_unlock(&pcf->working_lock); -+ -+ return; -+ -+reschedule: -+ /* don't spew, delaying whatever else is happening */ -+ /* EXCEPTION: if we are in the middle of suspending, we don't have -+ * time to hang around since we may be turned off core 1V3 already -+ */ -+ if ((pcf->suspend_state != PCF50633_SS_STARTING_SUSPEND) && -+ (pcf->suspend_state != PCF50633_SS_COMPLETED_SUSPEND)) { -+ msleep(10); -+ dev_dbg(&pcf->client->dev, "rescheduling interrupt service\n"); -+ } -+ if (!schedule_work(&pcf->work)) -+ dev_err(&pcf->client->dev, "int service reschedule failed\n"); -+ -+ /* we don't put the device here, hold it for next time */ -+ mutex_unlock(&pcf->working_lock); -+} -+ -+static irqreturn_t pcf50633_irq(int irq, void *_pcf) -+{ -+ struct pcf50633_data *pcf = _pcf; -+ -+ DEBUGP("entering(irq=%u, pcf=%p): scheduling work\n", irq, _pcf); -+ dev_dbg(&pcf->client->dev, "pcf50633_irq scheduling work\n"); -+ -+ get_device(&pcf->client->dev); -+ if (!schedule_work(&pcf->work) && !pcf->working) -+ dev_err(&pcf->client->dev, "pcf irq work already queued\n"); -+ -+ return IRQ_HANDLED; -+} -+ -+static u_int16_t adc_to_batt_millivolts(u_int16_t adc) -+{ -+ u_int16_t mvolts; -+ -+ mvolts = (adc * 6000) / 1024; -+ -+ return mvolts; -+} -+ -+#define BATTVOLT_SCALE_START 2800 -+#define BATTVOLT_SCALE_END 4200 -+#define BATTVOLT_SCALE_DIVIDER ((BATTVOLT_SCALE_END - BATTVOLT_SCALE_START)/100) -+ -+static u_int8_t battvolt_scale(u_int16_t battvolt) -+{ -+ /* FIXME: this linear scale is completely bogus */ -+ u_int16_t battvolt_relative = battvolt - BATTVOLT_SCALE_START; -+ unsigned int percent = battvolt_relative / BATTVOLT_SCALE_DIVIDER; -+ -+ return percent; -+} -+ -+u_int16_t pcf50633_battvolt(struct pcf50633_data *pcf) -+{ -+ int ret; -+ -+ ret = pcf50633_adc_sync_read(pcf, PCF50633_ADCC1_MUX_BATSNS_RES, -+ PCF50633_ADCC1_AVERAGE_16); -+ -+ if (ret < 0) -+ return ret; -+ -+ return adc_to_batt_millivolts(ret); -+} -+ -+EXPORT_SYMBOL_GPL(pcf50633_battvolt); -+ -+static ssize_t show_battvolt(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ -+ return sprintf(buf, "%u\n", pcf50633_battvolt(pcf)); -+} -+static DEVICE_ATTR(battvolt, S_IRUGO | S_IWUSR, show_battvolt, NULL); -+ -+/*********************************************************************** -+ * Charger Control -+ ***********************************************************************/ -+ -+/* Set maximum USB current limit */ -+static void pcf50633_usb_curlim_set(struct pcf50633_data *pcf, int ma) -+{ -+ u_int8_t bits; -+ int active = 0; -+ -+ pcf->last_curlim_set = ma; -+ -+ dev_dbg(&pcf->client->dev, "setting usb current limit to %d ma", ma); -+ -+ if (ma >= 1000) { -+ bits = PCF50633_MBCC7_USB_1000mA; -+ } -+ else if (ma >= 500) -+ bits = PCF50633_MBCC7_USB_500mA; -+ else if (ma >= 100) -+ bits = PCF50633_MBCC7_USB_100mA; -+ else -+ bits = PCF50633_MBCC7_USB_SUSPEND; -+ -+ /* set the nearest charging limit */ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC7, PCF56033_MBCC7_USB_MASK, -+ bits); -+ -+ /* with this charging limit, is charging actually meaningful? */ -+ switch (bits) { -+ case PCF50633_MBCC7_USB_500mA: -+ case PCF50633_MBCC7_USB_1000mA: -+ /* yes with this charging limit, we can do real charging */ -+ active = 1; -+ break; -+ default: /* right charging context that if there is power, we charge */ -+ if (pcf->flags & PCF50633_F_USB_PRESENT) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_ACTIVE); -+ break; -+ } -+ /* -+ * enable or disable charging according to current limit -- this will -+ * also throw a platform notification callback about it -+ */ -+ pcf50633_charge_enable(pcf, active); -+ -+ /* clear batfull */ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, -+ PCF50633_MBCC1_AUTORES, -+ 0); -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, -+ PCF50633_MBCC1_RESUME, -+ PCF50633_MBCC1_RESUME); -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, -+ PCF50633_MBCC1_AUTORES, -+ PCF50633_MBCC1_AUTORES); -+ -+} -+ -+static ssize_t show_usblim(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ u_int8_t usblim = pcf50633_reg_read(pcf, PCF50633_REG_MBCC7) & -+ PCF56033_MBCC7_USB_MASK; -+ unsigned int ma; -+ -+ if (usblim == PCF50633_MBCC7_USB_1000mA) -+ ma = 1000; -+ else if (usblim == PCF50633_MBCC7_USB_500mA) -+ ma = 500; -+ else if (usblim == PCF50633_MBCC7_USB_100mA) -+ ma = 100; -+ else -+ ma = 0; -+ -+ return sprintf(buf, "%u\n", ma); -+} -+static DEVICE_ATTR(usb_curlim, S_IRUGO | S_IWUSR, show_usblim, NULL); -+ -+/* Enable/disable charging */ -+static void pcf50633_charge_enable(struct pcf50633_data *pcf, int on) -+{ -+ u_int8_t bits; -+ u_int8_t usblim; -+ -+ if (!(pcf->pdata->used_features & PCF50633_FEAT_MBC)) -+ return; -+ -+ DEBUGPC("pcf50633_charge_enable %d\n", on); -+ -+ if (on) { -+ pcf->flags |= PCF50633_F_CHG_ENABLED; -+ bits = PCF50633_MBCC1_CHGENA; -+ usblim = pcf50633_reg_read(pcf, PCF50633_REG_MBCC7) & -+ PCF56033_MBCC7_USB_MASK; -+ switch (usblim) { -+ case PCF50633_MBCC7_USB_1000mA: -+ case PCF50633_MBCC7_USB_500mA: -+ if (pcf->flags & PCF50633_F_USB_PRESENT) -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, -+ PMU_EVT_CHARGER_ACTIVE); -+ break; -+ default: -+ break; -+ } -+ } else { -+ pcf->flags &= ~PCF50633_F_CHG_ENABLED; -+ bits = 0; -+ if (pcf->pdata->cb) -+ pcf->pdata->cb(&pcf->client->dev, -+ PCF50633_FEAT_MBC, PMU_EVT_CHARGER_IDLE); -+ } -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, PCF50633_MBCC1_CHGENA, -+ bits); -+} -+ -+#if 0 -+#define ONE 1000000 -+static u_int16_t adc_to_rntc(struct pcf50633_data *pcf, u_int16_t adc) -+{ -+ u_int32_t r_batt = (adc * pcf->pdata->r_fix_batt) / (1023 - adc); -+ u_int16_t r_ntc; -+ -+ /* The battery NTC has a parallell 10kOhms resistor */ -+ r_ntc = ONE / ((ONE/r_batt) - (ONE/pcf->pdata->r_fix_batt_par)); -+ -+ return r_ntc; -+} -+#endif -+static ssize_t show_battemp(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ return sprintf(buf, "\n"); -+} -+static DEVICE_ATTR(battemp, S_IRUGO | S_IWUSR, show_battemp, NULL); -+#if 0 -+static u_int16_t adc_to_chg_milliamps(struct pcf50633_data *pcf, -+ u_int16_t adc_adcin1, -+ u_int16_t adc_batvolt) -+{ -+ u_int32_t res = ((adc_adcin1 - adc_batvolt) * 6000); -+ return res / (pcf->pdata->r_sense_milli * 1024 / 1000); -+} -+#endif -+static ssize_t show_chgcur(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ return sprintf(buf, "\n"); -+} -+static DEVICE_ATTR(chgcur, S_IRUGO | S_IWUSR, show_chgcur, NULL); -+ -+static const char *chgmode_names[] = { -+ [PCF50633_MBCS2_MBC_PLAY] = "play-only", -+ [PCF50633_MBCS2_MBC_USB_PRE] = "pre", -+ [PCF50633_MBCS2_MBC_ADP_PRE] = "pre", -+ [PCF50633_MBCS2_MBC_USB_PRE_WAIT] = "pre-wait", -+ [PCF50633_MBCS2_MBC_ADP_PRE_WAIT] = "pre-wait", -+ [PCF50633_MBCS2_MBC_USB_FAST] = "fast", -+ [PCF50633_MBCS2_MBC_ADP_FAST] = "fast", -+ [PCF50633_MBCS2_MBC_USB_FAST_WAIT] = "fast-wait", -+ [PCF50633_MBCS2_MBC_ADP_FAST_WAIT] = "fast-wait", -+ [PCF50633_MBCS2_MBC_ADP_FAST_WAIT] = "bat-full", -+}; -+ -+static ssize_t show_chgmode(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ u_int8_t mbcs2 = pcf50633_reg_read(pcf, PCF50633_REG_MBCS2); -+ u_int8_t chgmod = (mbcs2 & PCF50633_MBCS2_MBC_MASK); -+ -+ return sprintf(buf, "%s\n", chgmode_names[chgmod]); -+} -+ -+static ssize_t set_chgmode(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ -+ /* As opposed to the PCF50606, we can only enable or disable -+ * charging and not directly jump into a certain mode! */ -+ -+ if (!strcmp(buf, "0\n")) -+ pcf50633_charge_enable(pcf, 0); -+ else -+ pcf50633_charge_enable(pcf, 1); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(chgmode, S_IRUGO | S_IWUSR, show_chgmode, set_chgmode); -+ -+static const char *chgstate_names[] = { -+ [PCF50633_FIDX_CHG_ENABLED] = "enabled", -+ [PCF50633_FIDX_CHG_PRESENT] = "charger_present", -+ [PCF50633_FIDX_USB_PRESENT] = "usb_present", -+ [PCF50633_FIDX_CHG_ERR] = "error", -+ [PCF50633_FIDX_CHG_PROT] = "protection", -+ [PCF50633_FIDX_CHG_READY] = "ready", -+}; -+ -+static ssize_t show_chgstate(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ -+ char *b = buf; -+ int i; -+ -+ for (i = 0; i < 32; i++) -+ if (pcf->flags & (1 << i) && i < ARRAY_SIZE(chgstate_names)) -+ b += sprintf(b, "%s ", chgstate_names[i]); -+ -+ if (b > buf) -+ b += sprintf(b, "\n"); -+ -+ return b - buf; -+} -+static DEVICE_ATTR(chgstate, S_IRUGO | S_IWUSR, show_chgstate, NULL); -+ -+/* -+ * Charger type -+ */ -+ -+static ssize_t show_charger_type(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ int adc_raw_result, charger_type; -+ -+ static const char *names_charger_type[] = { -+ [CHARGER_TYPE_NONE] = "none", -+ [CHARGER_TYPE_HOSTUSB] = "host/500mA usb", -+ [CHARGER_TYPE_1A] = "charger 1A", -+ }; -+ static const char *names_charger_modes[] = { -+ [PCF50633_MBCC7_USB_1000mA] = "1A", -+ [PCF50633_MBCC7_USB_500mA] = "500mA", -+ [PCF50633_MBCC7_USB_100mA] = "100mA", -+ [PCF50633_MBCC7_USB_SUSPEND] = "suspend", -+ }; -+ int mode = pcf50633_reg_read(pcf, PCF50633_REG_MBCC7) & PCF56033_MBCC7_USB_MASK; -+ -+ adc_raw_result = pcf50633_adc_sync_read(pcf, PCF50633_ADCC1_MUX_ADCIN1, -+ PCF50633_ADCC1_AVERAGE_16); -+ charger_type = interpret_charger_type_from_adc(pcf, adc_raw_result); -+ return sprintf(buf, "%s mode %s\n", -+ names_charger_type[charger_type], -+ names_charger_modes[mode]); -+} -+ -+static DEVICE_ATTR(charger_type, 0444, show_charger_type, NULL); -+ -+static ssize_t force_usb_limit_dangerous(struct device *dev, -+ struct device_attribute *attr, const char *buf, size_t count) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ int ma = simple_strtoul(buf, NULL, 10); -+ -+ pcf50633_usb_curlim_set(pcf, ma); -+ return count; -+} -+ -+static DEVICE_ATTR(force_usb_limit_dangerous, 0600, -+ NULL, force_usb_limit_dangerous); -+ -+/* -+ * Charger adc -+ */ -+ -+static ssize_t show_charger_adc(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ int result; -+ -+ result = pcf50633_adc_sync_read(pcf, PCF50633_ADCC1_MUX_ADCIN1, -+ PCF50633_ADCC1_AVERAGE_16); -+ if (result < 0) -+ return result; -+ -+ return sprintf(buf, "%d\n", result); -+} -+ -+static DEVICE_ATTR(charger_adc, 0444, show_charger_adc, NULL); -+ -+/* -+ * Dump regs -+ */ -+ -+static ssize_t show_dump_regs(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ u8 dump[16]; -+ int n, n1, idx = 0; -+ char *buf1 = buf; -+ static u8 address_no_read[] = { /* must be ascending */ -+ PCF50633_REG_INT1, -+ PCF50633_REG_INT2, -+ PCF50633_REG_INT3, -+ PCF50633_REG_INT4, -+ PCF50633_REG_INT5, -+ 0 /* terminator */ -+ }; -+ -+ for (n = 0; n < 256; n += sizeof(dump)) { -+ -+ for (n1 = 0; n1 < sizeof(dump); n1++) -+ if (n == address_no_read[idx]) { -+ idx++; -+ dump[n1] = 0x00; -+ } else -+ dump[n1] = pcf50633_reg_read(pcf, n + n1); -+ -+ hex_dump_to_buffer(dump, sizeof(dump), 16, 1, buf1, 128, 0); -+ buf1 += strlen(buf1); -+ *buf1++ = '\n'; -+ *buf1 = '\0'; -+ } -+ -+ return buf1 - buf; -+} -+ -+static DEVICE_ATTR(dump_regs, 0400, show_dump_regs, NULL); -+ -+ -+/*********************************************************************** -+ * Driver initialization -+ ***********************************************************************/ -+ -+/* -+ * CARE! This table is modified at runtime! -+ */ -+static struct attribute *pcf_sysfs_entries[] = { -+ &dev_attr_charger_type.attr, -+ &dev_attr_force_usb_limit_dangerous.attr, -+ &dev_attr_charger_adc.attr, -+ &dev_attr_dump_regs.attr, -+ NULL, /* going to add things at this point! */ -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+ NULL, -+}; -+ -+static struct attribute_group pcf_attr_group = { -+ .name = NULL, /* put in device directory */ -+ .attrs = pcf_sysfs_entries, -+}; -+ -+static void populate_sysfs_group(struct pcf50633_data *pcf) -+{ -+ int i = 0; -+ struct attribute **attr; -+ -+ for (attr = pcf_sysfs_entries; *attr; attr++) -+ i++; -+ -+ if (pcf->pdata->used_features & PCF50633_FEAT_MBC) { -+ pcf_sysfs_entries[i++] = &dev_attr_chgstate.attr; -+ pcf_sysfs_entries[i++] = &dev_attr_chgmode.attr; -+ pcf_sysfs_entries[i++] = &dev_attr_usb_curlim.attr; -+ } -+ -+ if (pcf->pdata->used_features & PCF50633_FEAT_CHGCUR) -+ pcf_sysfs_entries[i++] = &dev_attr_chgcur.attr; -+ -+ if (pcf->pdata->used_features & PCF50633_FEAT_BATVOLT) -+ pcf_sysfs_entries[i++] = &dev_attr_battvolt.attr; -+ -+ if (pcf->pdata->used_features & PCF50633_FEAT_BATTEMP) -+ pcf_sysfs_entries[i++] = &dev_attr_battemp.attr; -+ -+} -+ -+static struct platform_device pcf50633_rtc_pdev = { -+ .name = "pcf50633-rtc", -+ .id = -1, -+}; -+ -+static int pcf50633_probe(struct i2c_client *client, const struct i2c_device_id *ids) -+{ -+ struct pcf50633_data *pcf; -+ struct pcf50633_platform_data *pdata; -+ int err = 0; -+ int irq; -+ int i; -+ -+ DEBUGP("entering probe\n"); -+ -+ pdata = client->dev.platform_data; -+ -+ pcf = kzalloc(sizeof(*pcf), GFP_KERNEL); -+ if (!pcf) -+ return -ENOMEM; -+ -+ i2c_set_clientdata(client, pcf); -+ irq = client->irq; -+ mutex_init(&pcf->lock); -+ mutex_init(&pcf->working_lock); -+ mutex_init(&pcf->working_lock_nobat); -+ mutex_init(&pcf->working_lock_usb_curlimit); -+ INIT_WORK(&pcf->work, pcf50633_work); -+ INIT_WORK(&pcf->work_nobat, pcf50633_work_nobat); -+ INIT_WORK(&pcf->work_usb_curlimit, pcf50633_work_usbcurlim); -+ -+ pcf->client = client; -+ pcf->irq = irq; -+ pcf->working = 0; -+ pcf->suppress_onkey_events = 0; -+ pcf->onkey_seconds = -1; -+ pcf->pdata = pdata; -+ -+ /* FIXME: now we try to detect the chip */ -+ -+ populate_sysfs_group(pcf); -+ -+ err = sysfs_create_group(&client->dev.kobj, &pcf_attr_group); -+ if (err) { -+ dev_err(&client->dev, "error creating sysfs group\n"); -+ goto exit_free; -+ } -+ -+ /* create virtual charger 'device' */ -+ -+ /* register power off handler with core power management */ -+ /* FIXME : pm_power_off = &pcf50633_go_standby; */ -+ -+ pcf->input_dev = input_allocate_device(); -+ if (!pcf->input_dev) -+ goto exit_sysfs; -+ -+ pcf->input_dev->name = "GTA02 PMU events"; -+ pcf->input_dev->phys = "FIXME"; -+ pcf->input_dev->id.bustype = BUS_I2C; -+ -+ pcf->input_dev->evbit[0] = BIT(EV_KEY) | BIT(EV_PWR); -+ set_bit(KEY_POWER, pcf->input_dev->keybit); -+ set_bit(KEY_POWER2, pcf->input_dev->keybit); -+ set_bit(KEY_BATTERY, pcf->input_dev->keybit); -+ -+ err = input_register_device(pcf->input_dev); -+ if (err) -+ goto exit_sysfs; -+ -+ /* configure interrupt mask */ -+ -+ /* we want SECOND to kick for the coldplug initialisation */ -+ pcf50633_reg_write(pcf, PCF50633_REG_INT1M, 0x00); -+ -+ pcf50633_reg_write(pcf, PCF50633_REG_INT2M, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_INT3M, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_INT4M, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_INT5M, 0x00); -+ -+ /* force the backlight up, Qi does not do this for us */ -+ -+ /* pcf50633 manual p60 -+ * "led_out should never be set to 000000, as this would result -+ * in a deadlock making it impossible to program another value. -+ * If led_out should be inadvertently set to 000000, the -+ * LEDOUT register can be reset by disabling and enabling the -+ * LED converter via control bit led_on in the LEDENA register" -+ */ -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDDIM, 0x01); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDENA, 0x01); -+ pcf50633_reg_write(pcf, PCF50633_REG_LEDOUT, 0x3f); -+ -+ err = request_irq(irq, pcf50633_irq, IRQF_TRIGGER_FALLING, -+ "pcf50633", pcf); -+ if (err < 0) -+ goto exit_input; -+ -+ if (enable_irq_wake(irq) < 0) -+ dev_err(&client->dev, "IRQ %u cannot be enabled as wake-up" -+ "source in this hardware revision!\n", irq); -+ -+ if (pcf->pdata->used_features & PCF50633_FEAT_RTC) { -+ pcf50633_rtc_pdev.dev.platform_data = pcf; -+ -+ err = platform_device_register(&pcf50633_rtc_pdev); -+ if (err) -+ goto exit_irq; -+ } -+ -+ if (pcf->pdata->flag_use_apm_emulation) -+ apm_get_power_status = NULL; -+ -+ pdata->pcf = pcf; -+ -+ /* Create platform regulator devices from the platform data */ -+ for (i = 0; i < __NUM_PCF50633_REGULATORS; i++) { -+ struct platform_device *pdev; -+ -+ pdev = kzalloc(sizeof(*pdev), GFP_KERNEL); -+ /* FIXME : Handle failure */ -+ -+ pdev->name = "pcf50633-regltr"; -+ pdev->id = i; -+ pdev->dev.parent = &client->dev; -+ pdev->dev.platform_data = &pdata->reg_init_data[i]; -+ pdev->dev.driver_data = pcf; -+ pcf->regulator_pdev[i] = pdev; -+ -+ platform_device_register(pdev); -+ } -+ -+ pcf->probe_completed = 1; -+ -+ /* if platform was interested, give him a chance to register -+ * platform devices that switch power with us as the parent -+ * at registration time -- ensures suspend / resume ordering -+ */ -+ if (pcf->pdata->attach_child_devices) -+ (pcf->pdata->attach_child_devices)(&client->dev); -+ -+ dev_info(&client->dev, "probe completed\n"); -+ -+ return 0; -+exit_irq: -+ free_irq(pcf->irq, pcf); -+exit_input: -+ input_unregister_device(pcf->input_dev); -+exit_sysfs: -+ pm_power_off = NULL; -+ sysfs_remove_group(&client->dev.kobj, &pcf_attr_group); -+exit_free: -+ kfree(pcf); -+ return err; -+} -+ -+static int pcf50633_remove(struct i2c_client *client) -+{ -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ -+ DEBUGP("entering\n"); -+ -+ apm_get_power_status = NULL; -+ -+ free_irq(pcf->irq, pcf); -+ -+ input_unregister_device(pcf->input_dev); -+ -+ if (pcf->pdata->used_features & PCF50633_FEAT_RTC) -+ rtc_device_unregister(pcf->rtc); -+ -+ sysfs_remove_group(&client->dev.kobj, &pcf_attr_group); -+ -+ pm_power_off = NULL; -+ -+ kfree(pcf); -+ -+ return 0; -+} -+ -+/* you're going to need >300 bytes in buf */ -+ -+int pcf50633_report_resumers(struct pcf50633_data *pcf, char *buf) -+{ -+ static char *int_names[] = { -+ "adpins", -+ "adprem", -+ "usbins", -+ "usbrem", -+ NULL, -+ NULL, -+ "rtcalarm", -+ "second", -+ -+ "onkeyr", -+ "onkeyf", -+ "exton1r", -+ "exton1f", -+ "exton2r", -+ "exton2f", -+ "exton3r", -+ "exton3f", -+ -+ "batfull", -+ "chghalt", -+ "thlimon", -+ "thlimoff", -+ "usblimon", -+ "usblimoff", -+ "adcrdy", -+ "onkey1s", -+ -+ "lowsys", -+ "lowbat", -+ "hightmp", -+ "autopwrfail", -+ "dwn1pwrfail", -+ "dwn2pwrfail", -+ "ledpwrfail", -+ "ledovp", -+ -+ "ldo1pwrfail", -+ "ldo2pwrfail", -+ "ldo3pwrfail", -+ "ldo4pwrfail", -+ "ldo5pwrfail", -+ "ldo6pwrfail", -+ "hcidopwrfail", -+ "hcidoovl" -+ }; -+ char *end = buf; -+ int n; -+ -+ for (n = 0; n < ARRAY_SIZE(int_names); n++) -+ if (int_names[n]) { -+ if (pcf->pcfirq_resume[n >> 3] & (1 >> (n & 7))) -+ end += sprintf(end, " * %s\n", int_names[n]); -+ else -+ end += sprintf(end, " %s\n", int_names[n]); -+ } -+ -+ return end - buf; -+} -+ -+ -+#ifdef CONFIG_PM -+ -+static int pcf50633_suspend(struct device *dev, pm_message_t state) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ int i; -+ int ret; -+ u_int8_t res[5]; -+ -+ dev_err(dev, "pcf50633_suspend\n"); -+ -+ /* we suspend once (!) as late as possible in the suspend sequencing */ -+ -+ if ((state.event != PM_EVENT_SUSPEND) || -+ (pcf->suspend_state != PCF50633_SS_RUNNING)) -+ return -EBUSY; -+ -+ /* The general idea is to power down all unused power supplies, -+ * and then mask all PCF50633 interrupt sources but EXTONR, ONKEYF -+ * and ALARM */ -+ -+ mutex_lock(&pcf->lock); -+ -+ pcf->suspend_state = PCF50633_SS_STARTING_SUSPEND; -+ -+ /* we are not going to service any further interrupts until we -+ * resume. If the IRQ workqueue is still pending in the background, -+ * it will bail when it sees we set suspend state above -+ */ -+ -+ disable_irq(pcf->irq); -+ -+ /* set interrupt masks so only those sources we want to wake -+ * us are able to -+ */ -+ for (i = 0; i < 5; i++) -+ res[i] = ~pcf->pdata->resumers[i]; -+ -+ ret = pcf50633_write(pcf, PCF50633_REG_INT1M, 5, &res[0]); -+ if (ret) -+ dev_err(dev, "Failed to set wake masks :-( %d\n", ret); -+ -+ pcf->suspend_state = PCF50633_SS_COMPLETED_SUSPEND; -+ -+ mutex_unlock(&pcf->lock); -+ -+ return 0; -+} -+ -+ -+int pcf50633_ready(struct pcf50633_data *pcf) -+{ -+ if (!pcf) -+ return -EACCES; -+ -+ /* this was seen during boot with Qi, mmc_rescan racing us */ -+ if (!pcf->probe_completed) -+ return -EACCES; -+ -+ if ((pcf->suspend_state != PCF50633_SS_RUNNING) && -+ (pcf->suspend_state < PCF50633_SS_COMPLETED_RESUME)) -+ return -EBUSY; -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50633_ready); -+ -+int pcf50633_wait_for_ready(struct pcf50633_data *pcf, int timeout_ms, -+ char *name) -+{ -+ /* so we always go once */ -+ timeout_ms += 5; -+ -+ while ((timeout_ms >= 5) && (pcf50633_ready(pcf))) { -+ timeout_ms -= 5; /* well, it isn't very accurate, but OK */ -+ msleep(5); -+ } -+ -+ if (timeout_ms < 5) { -+ printk(KERN_ERR"pcf50633_wait_for_ready: " -+ "%s BAILING on timeout\n", name); -+ return -EBUSY; -+ } -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50633_wait_for_ready); -+ -+static int pcf50633_resume(struct device *dev) -+{ -+ struct i2c_client *client = to_i2c_client(dev); -+ struct pcf50633_data *pcf = i2c_get_clientdata(client); -+ int ret; -+ u8 res[5]; -+ -+ dev_dbg(dev, "pcf50633_resume suspended on entry = %d\n", -+ (int)pcf->suspend_state); -+ mutex_lock(&pcf->lock); -+ -+ pcf->suspend_state = PCF50633_SS_STARTING_RESUME; -+ -+ memset(res, 0, sizeof(res)); -+ /* not interested in second on resume */ -+ res[0] = PCF50633_INT1_SECOND; -+ ret = pcf50633_write(pcf, PCF50633_REG_INT1M, 5, &res[0]); -+ if (ret) -+ dev_err(dev, "Failed to set int masks :-( %d\n", ret); -+ -+ pcf->suspend_state = PCF50633_SS_COMPLETED_RESUME; -+ -+ enable_irq(pcf->irq); -+ -+ mutex_unlock(&pcf->lock); -+ -+ /* gratuitous call to PCF work function, in the case that the PCF -+ * interrupt edge was missed during resume, this forces the pending -+ * register clear and lifts the interrupt back high again. In the -+ * case nothing is waiting for service, no harm done. -+ */ -+ -+ get_device(&pcf->client->dev); -+ pcf50633_work(&pcf->work); -+ -+ return 0; -+} -+#else -+#define pcf50633_suspend NULL -+#define pcf50633_resume NULL -+#endif -+ -+static struct i2c_device_id pcf50633_id_table[] = { -+ {"pcf50633", 0x73}, -+}; -+ -+static struct i2c_driver pcf50633_driver = { -+ .driver = { -+ .name = "pcf50633", -+ .suspend= pcf50633_suspend, -+ .resume = pcf50633_resume, -+ }, -+ .id_table = pcf50633_id_table, -+ .probe = pcf50633_probe, -+ .remove = pcf50633_remove, -+}; -+ -+static int __init pcf50633_init(void) -+{ -+ return i2c_add_driver(&pcf50633_driver); -+} -+ -+static void pcf50633_exit(void) -+{ -+ i2c_del_driver(&pcf50633_driver); -+} -+ -+MODULE_DESCRIPTION("I2C chip driver for NXP PCF50633 power management unit"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(pcf50633_init); -+module_exit(pcf50633_exit); ---- a/drivers/i2c/i2c-core.c -+++ b/drivers/i2c/i2c-core.c -@@ -1,4 +1,3 @@ --/* i2c-core.c - a device driver for the iic-bus interface */ - /* ------------------------------------------------------------------------- */ - /* Copyright (C) 1995-99 Simon G. Vogl - -@@ -158,10 +157,16 @@ static int i2c_device_suspend(struct dev - - if (!dev->driver) - return 0; -+#if 0 - driver = to_i2c_driver(dev->driver); - if (!driver->suspend) - return 0; - return driver->suspend(to_i2c_client(dev), mesg); -+#else -+ if (!dev->driver->suspend) -+ return 0; -+ return dev->driver->suspend(dev, mesg); -+#endif - } - - static int i2c_device_resume(struct device * dev) -@@ -170,10 +175,16 @@ static int i2c_device_resume(struct devi - - if (!dev->driver) - return 0; -+#if 0 - driver = to_i2c_driver(dev->driver); - if (!driver->resume) - return 0; - return driver->resume(to_i2c_client(dev)); -+#else -+ if (!dev->driver->resume) -+ return 0; -+ return dev->driver->resume(dev); -+#endif - } - - static void i2c_client_release(struct device *dev) -@@ -1129,11 +1140,11 @@ static int i2c_probe_address(struct i2c_ - int err; - - /* Make sure the address is valid */ -- if (addr < 0x03 || addr > 0x77) { -+ /*if (addr < 0x03 || addr > 0x77) { - dev_warn(&adapter->dev, "Invalid probe address 0x%02x\n", - addr); - return -EINVAL; -- } -+ }*/ - - /* Skip if already in use */ - if (i2c_check_addr(adapter, addr)) ---- a/drivers/input/keyboard/gpio_keys.c -+++ b/drivers/input/keyboard/gpio_keys.c -@@ -23,7 +23,7 @@ - #include <linux/input.h> - #include <linux/gpio_keys.h> - --#include <asm/gpio.h> -+#include <mach/gpio.h> - - struct gpio_button_data { - struct gpio_keys_button *button; ---- a/drivers/input/keyboard/Kconfig -+++ b/drivers/input/keyboard/Kconfig -@@ -323,4 +323,21 @@ config KEYBOARD_SH_KEYSC - - To compile this driver as a module, choose M here: the - module will be called sh_keysc. -+config KEYBOARD_NEO1973 -+ tristate "FIC Neo1973 buttons" -+ depends on MACH_NEO1973 -+ default y -+ help -+ Say Y here to enable the buttons on the FIC Neo1973 -+ GSM phone. -+ -+ To compile this driver as a module, choose M here: the -+ module will be called neo1973kbd. -+ -+config KEYBOARD_QT2410 -+ tristate "QT2410 buttons" -+ depends on MACH_QT2410 -+ default y -+ -+ - endif ---- a/drivers/input/keyboard/Makefile -+++ b/drivers/input/keyboard/Makefile -@@ -14,6 +14,8 @@ obj-$(CONFIG_KEYBOARD_LOCOMO) += locomo - obj-$(CONFIG_KEYBOARD_NEWTON) += newtonkbd.o - obj-$(CONFIG_KEYBOARD_STOWAWAY) += stowaway.o - obj-$(CONFIG_KEYBOARD_CORGI) += corgikbd.o -+obj-$(CONFIG_KEYBOARD_NEO1973) += neo1973kbd.o -+obj-$(CONFIG_KEYBOARD_QT2410) += qt2410kbd.o - obj-$(CONFIG_KEYBOARD_SPITZ) += spitzkbd.o - obj-$(CONFIG_KEYBOARD_TOSA) += tosakbd.o - obj-$(CONFIG_KEYBOARD_HIL) += hil_kbd.o ---- /dev/null -+++ b/drivers/input/keyboard/neo1973kbd.c -@@ -0,0 +1,465 @@ -+/* -+ * Keyboard driver for FIC Neo1973 GSM phone -+ * -+ * (C) 2006-2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * inspired by corkgbd.c by Richard Purdie -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ */ -+ -+#include <linux/delay.h> -+#include <linux/platform_device.h> -+#include <linux/init.h> -+#include <linux/input.h> -+#include <linux/interrupt.h> -+#include <linux/jiffies.h> -+#include <linux/module.h> -+#include <linux/slab.h> -+#include <linux/workqueue.h> -+ -+#include <mach/gpio.h> -+#include <asm/mach-types.h> -+ -+extern int global_inside_suspend; -+ -+struct neo1973kbd { -+ struct platform_device *pdev; -+ struct input_dev *input; -+ struct device *cdev; -+ struct work_struct work; -+ int aux_state; -+ int work_in_progress; -+ int hp_irq_count_in_work; -+ int hp_irq_count; -+ int jack_irq; -+}; -+ -+static struct class *neo1973kbd_switch_class; -+ -+enum keys { -+ NEO1973_KEY_AUX, /* GTA01 / 02 only */ -+ NEO1973_KEY_HOLD, -+ NEO1973_KEY_JACK, -+ NEO1973_KEY_PLUS, /* GTA03 only */ -+ NEO1973_KEY_MINUS, /* GTA03 only */ -+}; -+ -+struct neo1973kbd_key { -+ const char * name; -+ irqreturn_t (*isr)(int irq, void *dev_id); -+ int irq; -+ int input_key; -+}; -+ -+static irqreturn_t neo1973kbd_aux_irq(int irq, void *dev_id); -+static irqreturn_t neo1973kbd_headphone_irq(int irq, void *dev_id); -+static irqreturn_t neo1973kbd_default_key_irq(int irq, void *dev_id); -+ -+ -+static struct neo1973kbd_key keys[] = { -+ [NEO1973_KEY_AUX] = { -+ .name = "Neo1973 AUX button", -+ .isr = neo1973kbd_aux_irq, -+ .input_key = KEY_PHONE, -+ }, -+ [NEO1973_KEY_HOLD] = { -+ .name = "Neo1973 HOLD button", -+ .isr = neo1973kbd_default_key_irq, -+ .input_key = KEY_PAUSE, -+ }, -+ [NEO1973_KEY_JACK] = { -+ .name = "Neo1973 Headphone jack", -+ .isr = neo1973kbd_headphone_irq, -+ }, -+ [NEO1973_KEY_PLUS] = { -+ .name = "GTA03 PLUS button", -+ .isr = neo1973kbd_default_key_irq, -+ .input_key = KEY_KPPLUS, -+ }, -+ [NEO1973_KEY_MINUS] = { -+ .name = "GTA03 MINUS button", -+ .isr = neo1973kbd_default_key_irq, -+ .input_key = KEY_KPMINUS, -+ }, -+}; -+ -+/* This timer section filters AUX button IRQ bouncing */ -+ -+static void aux_key_timer_f(unsigned long data); -+ -+static struct timer_list aux_key_timer = -+ TIMER_INITIALIZER(aux_key_timer_f, 0, 0); -+ -+#define AUX_TIMER_TIMEOUT (HZ >> 7) -+#define AUX_TIMER_ALLOWED_NOOP 2 -+#define AUX_TIMER_CONSECUTIVE_EVENTS 5 -+ -+struct neo1973kbd *timer_kbd; -+ -+static void aux_key_timer_f(unsigned long data) -+{ -+ static int noop_counter; -+ static int last_key = -1; -+ static int last_count; -+ int key_pressed; -+ -+ key_pressed = -+ !gpio_get_value(timer_kbd->pdev->resource[NEO1973_KEY_AUX].start); -+ if (machine_is_neo1973_gta02()) -+ key_pressed = !key_pressed; -+ -+ if (likely(key_pressed == last_key)) -+ last_count++; -+ else { -+ last_count = 1; -+ last_key = key_pressed; -+ } -+ -+ if (unlikely(last_count >= AUX_TIMER_CONSECUTIVE_EVENTS)) { -+ if (timer_kbd->aux_state != last_key) { -+ input_report_key(timer_kbd->input, KEY_PHONE, last_key); -+ input_sync(timer_kbd->input); -+ -+ timer_kbd->aux_state = last_key; -+ noop_counter = 0; -+ } -+ last_count = 0; -+ if (unlikely(++noop_counter > AUX_TIMER_ALLOWED_NOOP)) { -+ noop_counter = 0; -+ return; -+ } -+ } -+ -+ mod_timer(&aux_key_timer, jiffies + AUX_TIMER_TIMEOUT); -+} -+ -+static irqreturn_t neo1973kbd_aux_irq(int irq, void *dev) -+{ -+ int *p = NULL; -+ -+ /* if you stall inside resume then AUX will force a panic, -+ which in turn forces a dump of the pending syslog */ -+ -+ if (global_inside_suspend) -+ printk(KERN_ERR "death %d\n", *p); -+ -+ mod_timer(&aux_key_timer, jiffies + AUX_TIMER_TIMEOUT); -+ -+ return IRQ_HANDLED; -+} -+ -+static irqreturn_t neo1973kbd_default_key_irq(int irq, void *dev_id) -+{ -+ struct neo1973kbd *kbd = dev_id; -+ int n; -+ -+ for (n = 0; n < ARRAY_SIZE(keys); n++) { -+ -+ if (irq != keys[n].irq) -+ continue; -+ -+ input_report_key(kbd->input, keys[n].input_key, -+ gpio_get_value(kbd->pdev->resource[n].start)); -+ input_sync(kbd->input); -+ } -+ -+ return IRQ_HANDLED; -+} -+ -+ -+static const char *event_array_jack[2][4] = { -+ [0] = { -+ "SWITCH_NAME=headset", -+ "SWITCH_STATE=0", -+ "EVENT=remove", -+ NULL -+ }, -+ [1] = { -+ "SWITCH_NAME=headset", -+ "SWITCH_STATE=1", -+ "EVENT=insert", -+ NULL -+ }, -+}; -+ -+static void neo1973kbd_jack_event(struct device *dev, int num) -+{ -+ kobject_uevent_env(&dev->kobj, KOBJ_CHANGE, (char **)event_array_jack[!!num]); -+} -+ -+ -+static void neo1973kbd_debounce_jack(struct work_struct *work) -+{ -+ struct neo1973kbd *kbd = container_of(work, struct neo1973kbd, work); -+ unsigned long flags; -+ int loop = 0; -+ int level; -+ -+ do { -+ /* -+ * we wait out any multiple interrupt -+ * stuttering in 100ms lumps -+ */ -+ do { -+ kbd->hp_irq_count_in_work = kbd->hp_irq_count; -+ msleep(100); -+ } while (kbd->hp_irq_count != kbd->hp_irq_count_in_work); -+ /* -+ * no new interrupts on jack for 100ms... -+ * ok we will report it -+ */ -+ level = gpio_get_value(kbd->pdev->resource[NEO1973_KEY_JACK].start); -+ input_report_switch(kbd->input, SW_HEADPHONE_INSERT, level); -+ input_sync(kbd->input); -+ neo1973kbd_jack_event(kbd->cdev, level); -+ /* -+ * we go around the outer loop again if we detect that more -+ * interrupts came while we are servicing here. But we have -+ * to sequence it carefully with interrupts off -+ */ -+ local_save_flags(flags); -+ /* no interrupts during this work means we can exit the work */ -+ loop = !!(kbd->hp_irq_count != kbd->hp_irq_count_in_work); -+ if (!loop) -+ kbd->work_in_progress = 0; -+ local_irq_restore(flags); -+ /* -+ * interrupt that comes here will either queue a new work action -+ * since work_in_progress is cleared now, or be dealt with -+ * when we loop. -+ */ -+ } while (loop); -+} -+ -+ -+static irqreturn_t neo1973kbd_headphone_irq(int irq, void *dev_id) -+{ -+ struct neo1973kbd *neo1973kbd_data = dev_id; -+ -+ /* -+ * this interrupt is prone to bouncing and userspace doesn't like -+ * to have to deal with that kind of thing. So we do not accept -+ * that a jack interrupt is equal to a jack event. Instead we fire -+ * some work on the first interrupt, and it hangs about in 100ms units -+ * until no more interrupts come. Then it accepts the state it finds -+ * for jack insert and reports it once -+ */ -+ -+ neo1973kbd_data->hp_irq_count++; -+ /* -+ * the first interrupt we see for a while, we fire the work item -+ * and record the interrupt count when we did that. If more interrupts -+ * come in the meanwhile, we can tell by the difference in that -+ * stored count and hp_irq_count which increments every interrupt -+ */ -+ if (!neo1973kbd_data->work_in_progress) { -+ neo1973kbd_data->jack_irq = irq; -+ neo1973kbd_data->hp_irq_count_in_work = -+ neo1973kbd_data->hp_irq_count; -+ if (!schedule_work(&neo1973kbd_data->work)) -+ printk(KERN_ERR -+ "Unable to schedule headphone debounce\n"); -+ else -+ neo1973kbd_data->work_in_progress = 1; -+ } -+ -+ return IRQ_HANDLED; -+} -+ -+#ifdef CONFIG_PM -+static int neo1973kbd_suspend(struct platform_device *dev, pm_message_t state) -+{ -+ return 0; -+} -+ -+static int neo1973kbd_resume(struct platform_device *dev) -+{ -+ return 0; -+} -+#else -+#define neo1973kbd_suspend NULL -+#define neo1973kbd_resume NULL -+#endif -+ -+static ssize_t neo1973kbd_switch_name_show(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ return sprintf(buf, "%s\n", "neo1973 Headset Jack"); -+} -+ -+static ssize_t neo1973kbd_switch_state_show(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ struct neo1973kbd *kbd = dev_get_drvdata(dev); -+ return sprintf(buf, "%d\n", -+ gpio_get_value(kbd->pdev->resource[NEO1973_KEY_JACK].start)); -+} -+ -+static DEVICE_ATTR(name, S_IRUGO , neo1973kbd_switch_name_show, NULL); -+static DEVICE_ATTR(state, S_IRUGO , neo1973kbd_switch_state_show, NULL); -+ -+static int neo1973kbd_probe(struct platform_device *pdev) -+{ -+ struct neo1973kbd *neo1973kbd; -+ struct input_dev *input_dev; -+ int rc; -+ int irq; -+ int n; -+ -+ neo1973kbd = kzalloc(sizeof(struct neo1973kbd), GFP_KERNEL); -+ input_dev = input_allocate_device(); -+ if (!neo1973kbd || !input_dev) { -+ kfree(neo1973kbd); -+ input_free_device(input_dev); -+ return -ENOMEM; -+ } -+ -+ neo1973kbd->pdev = pdev; -+ timer_kbd = neo1973kbd; -+ -+ if (pdev->resource[0].flags != 0) -+ return -EINVAL; -+ -+ platform_set_drvdata(pdev, neo1973kbd); -+ -+ neo1973kbd->input = input_dev; -+ -+ INIT_WORK(&neo1973kbd->work, neo1973kbd_debounce_jack); -+ -+ input_dev->name = "Neo1973 Buttons"; -+ input_dev->phys = "neo1973kbd/input0"; -+ input_dev->id.bustype = BUS_HOST; -+ input_dev->id.vendor = 0x0001; -+ input_dev->id.product = 0x0001; -+ input_dev->id.version = 0x0100; -+ input_dev->dev.parent = &pdev->dev; -+ -+ input_dev->evbit[0] = BIT(EV_KEY) | BIT(EV_SW); -+ set_bit(SW_HEADPHONE_INSERT, input_dev->swbit); -+ set_bit(KEY_PHONE, input_dev->keybit); -+ set_bit(KEY_PAUSE, input_dev->keybit); -+ -+ rc = input_register_device(neo1973kbd->input); -+ if (rc) -+ goto out_register; -+ -+ neo1973kbd->cdev = device_create(neo1973kbd_switch_class, -+ &pdev->dev, 0, neo1973kbd, "headset"); -+ if (unlikely(IS_ERR(neo1973kbd->cdev))) { -+ rc = PTR_ERR(neo1973kbd->cdev); -+ goto out_device_create; -+ } -+ -+ rc = device_create_file(neo1973kbd->cdev, &dev_attr_name); -+ if(rc) -+ goto out_device_create_file; -+ -+ rc = device_create_file(neo1973kbd->cdev, &dev_attr_state); -+ if(rc) -+ goto out_device_create_file; -+ -+ /* register GPIO IRQs */ -+ -+ for(n = 0; n < ARRAY_SIZE(keys); n++) { -+ -+ if (!pdev->resource[0].start) -+ continue; -+ -+ irq = gpio_to_irq(pdev->resource[n].start); -+ if (irq < 0) -+ continue; -+ -+ if (request_irq(irq, keys[n].isr, IRQF_DISABLED | -+ IRQF_TRIGGER_RISING | IRQF_TRIGGER_FALLING, -+ keys[n].name, neo1973kbd)) { -+ dev_err(&pdev->dev, "Can't get IRQ %u\n", irq); -+ -+ /* unwind any irq registrations and fail */ -+ -+ while (n > 0) { -+ n--; -+ free_irq(gpio_to_irq(pdev->resource[n].start), -+ neo1973kbd); -+ } -+ goto out_device_create_file; -+ } -+ -+ keys[n].irq = irq; -+ } -+ -+ /* -+ * GTA01 revisions before Bv4 can't be resumed by the PMU, so we use -+ * resume by AUX. -+ */ -+ if (machine_is_neo1973_gta01()) -+ enable_irq_wake(keys[NEO1973_KEY_AUX].irq); -+ -+ enable_irq_wake(keys[NEO1973_KEY_JACK].irq); -+ -+ return 0; -+ -+out_device_create_file: -+ device_unregister(neo1973kbd->cdev); -+out_device_create: -+ input_unregister_device(neo1973kbd->input); -+out_register: -+ input_free_device(neo1973kbd->input); -+ platform_set_drvdata(pdev, NULL); -+ kfree(neo1973kbd); -+ -+ return -ENODEV; -+} -+ -+static int neo1973kbd_remove(struct platform_device *pdev) -+{ -+ struct neo1973kbd *neo1973kbd = platform_get_drvdata(pdev); -+ -+ free_irq(gpio_to_irq(pdev->resource[2].start), neo1973kbd); -+ free_irq(gpio_to_irq(pdev->resource[1].start), neo1973kbd); -+ free_irq(gpio_to_irq(pdev->resource[0].start), neo1973kbd); -+ -+ device_unregister(neo1973kbd->cdev); -+ input_unregister_device(neo1973kbd->input); -+ input_free_device(neo1973kbd->input); -+ platform_set_drvdata(pdev, NULL); -+ kfree(neo1973kbd); -+ -+ return 0; -+} -+ -+static struct platform_driver neo1973kbd_driver = { -+ .probe = neo1973kbd_probe, -+ .remove = neo1973kbd_remove, -+ .suspend = neo1973kbd_suspend, -+ .resume = neo1973kbd_resume, -+ .driver = { -+ .name = "neo1973-button", -+ }, -+}; -+ -+static int __devinit neo1973kbd_init(void) -+{ -+ neo1973kbd_switch_class = class_create(THIS_MODULE, "switch"); -+ if (IS_ERR(neo1973kbd_switch_class)) -+ return PTR_ERR(neo1973kbd_switch_class); -+ return platform_driver_register(&neo1973kbd_driver); -+} -+ -+static void __exit neo1973kbd_exit(void) -+{ -+ platform_driver_unregister(&neo1973kbd_driver); -+ class_destroy(neo1973kbd_switch_class); -+} -+ -+module_init(neo1973kbd_init); -+module_exit(neo1973kbd_exit); -+ -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("FIC Neo1973 buttons input driver"); -+MODULE_LICENSE("GPL"); ---- /dev/null -+++ b/drivers/input/keyboard/qt2410kbd.c -@@ -0,0 +1,231 @@ -+/* -+ * Keyboard driver for Armzone QT2410 -+ * -+ * (C) 2006 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ */ -+ -+#include <linux/delay.h> -+#include <linux/platform_device.h> -+#include <linux/init.h> -+#include <linux/input.h> -+#include <linux/interrupt.h> -+#include <linux/jiffies.h> -+#include <linux/module.h> -+#include <linux/slab.h> -+ -+#include <mach/hardware.h> -+#include <mach/gta01.h> -+ -+struct gta01kbd { -+ struct input_dev *input; -+ unsigned int suspended; -+ unsigned long suspend_jiffies; -+}; -+ -+static irqreturn_t gta01kbd_interrupt(int irq, void *dev_id) -+{ -+ struct gta01kbd *gta01kbd_data = dev_id; -+ -+ /* FIXME: use GPIO from platform_dev resources */ -+ if (s3c2410_gpio_getpin(S3C2410_GPF0)) -+ input_report_key(gta01kbd_data->input, KEY_PHONE, 1); -+ else -+ input_report_key(gta01kbd_data->input, KEY_PHONE, 0); -+ -+ input_sync(gta01kbd_data->input); -+ -+ return IRQ_HANDLED; -+} -+ -+ -+#ifdef CONFIG_PM -+static int gta01kbd_suspend(struct platform_device *dev, pm_message_t state) -+{ -+ struct gta01kbd *gta01kbd = platform_get_drvdata(dev); -+ -+ gta01kbd->suspended = 1; -+ -+ return 0; -+} -+ -+static int gta01kbd_resume(struct platform_device *dev) -+{ -+ struct gta01kbd *gta01kbd = platform_get_drvdata(dev); -+ -+ gta01kbd->suspended = 0; -+ -+ return 0; -+} -+#else -+#define gta01kbd_suspend NULL -+#define gta01kbd_resume NULL -+#endif -+ -+static int gta01kbd_probe(struct platform_device *pdev) -+{ -+ struct gta01kbd *gta01kbd; -+ struct input_dev *input_dev; -+ int irq_911; -+ int rc = 0; -+ -+ gta01kbd = kzalloc(sizeof(struct gta01kbd), GFP_KERNEL); -+ if (!gta01kbd) { -+ rc = -ENOMEM; -+ goto bail; -+ } -+ input_dev = input_allocate_device(); -+ if (!gta01kbd || !input_dev) { -+ rc = -ENOMEM; -+ goto bail_free; -+ } -+ -+ if (pdev->resource[0].flags != 0) {\ -+ rc = -EINVAL; -+ goto bail_free_dev; -+ } -+ -+ irq_911 = s3c2410_gpio_getirq(pdev->resource[0].start); -+ if (irq_911 < 0) { -+ rc = -EINVAL; -+ goto bail_free_dev; -+ } -+ -+ platform_set_drvdata(pdev, gta01kbd); -+ -+ gta01kbd->input = input_dev; -+ -+#if 0 -+ spin_lock_init(>a01kbd->lock); -+ /* Init Keyboard rescan timer */ -+ init_timer(&corgikbd->timer); -+ corgikbd->timer.function = corgikbd_timer_callback; -+ corgikbd->timer.data = (unsigned long) corgikbd; -+ -+ /* Init Hinge Timer */ -+ init_timer(&corgikbd->htimer); -+ corgikbd->htimer.function = corgikbd_hinge_timer; -+ corgikbd->htimer.data = (unsigned long) corgikbd; -+ -+ corgikbd->suspend_jiffies=jiffies; -+ -+ memcpy(corgikbd->keycode, corgikbd_keycode, sizeof(corgikbd->keycode)); -+#endif -+ -+ input_dev->name = "QT2410 Buttons"; -+ input_dev->phys = "qt2410kbd/input0"; -+ input_dev->id.bustype = BUS_HOST; -+ input_dev->id.vendor = 0x0001; -+ input_dev->id.product = 0x0001; -+ input_dev->id.version = 0x0100; -+ -+ input_dev->evbit[0] = BIT(EV_KEY); -+#if 0 -+ input_dev->keycode = gta01kbd->keycode; -+ input_dev->keycodesize = sizeof(unsigned char); -+ input_dev->keycodemax = ARRAY_SIZE(corgikbd_keycode); -+ -+ for (i = 0; i < ARRAY_SIZE(corgikbd_keycode); i++) -+ set_bit(corgikbd->keycode[i], input_dev->keybit); -+ clear_bit(0, input_dev->keybit); -+ set_bit(SW_LID, input_dev->swbit); -+ set_bit(SW_TABLET_MODE, input_dev->swbit); -+ set_bit(SW_HEADPHONE_INSERT, input_dev->swbit); -+#endif -+ -+ rc = input_register_device(gta01kbd->input); -+ if (rc) -+ goto bail_free_dev; -+ -+ s3c2410_gpio_cfgpin(S3C2410_GPF0, S3C2410_GPF0_EINT0); -+ if (request_irq(irq_911, gta01kbd_interrupt, -+ IRQF_DISABLED | IRQF_TRIGGER_RISING | -+ IRQF_TRIGGER_FALLING, "qt2410kbd_eint0", gta01kbd)) -+ printk(KERN_WARNING "gta01kbd: Can't get IRQ\n"); -+ enable_irq_wake(irq_911); -+ -+ /* FIXME: headphone insert */ -+ -+#if 0 -+ mod_timer(&corgikbd->htimer, jiffies + msecs_to_jiffies(HINGE_SCAN_INTERVAL)); -+ -+ /* Setup sense interrupts - RisingEdge Detect, sense lines as inputs */ -+ for (i = 0; i < CORGI_KEY_SENSE_NUM; i++) { -+ pxa_gpio_mode(CORGI_GPIO_KEY_SENSE(i) | GPIO_IN); -+ if (request_irq(CORGI_IRQ_GPIO_KEY_SENSE(i), corgikbd_interrupt, -+ SA_INTERRUPT | SA_TRIGGER_RISING, -+ "corgikbd", corgikbd)) -+ printk(KERN_WARNING "corgikbd: Can't get IRQ: %d!\n", i); -+ } -+ -+ /* Set Strobe lines as outputs - set high */ -+ for (i = 0; i < CORGI_KEY_STROBE_NUM; i++) -+ pxa_gpio_mode(CORGI_GPIO_KEY_STROBE(i) | GPIO_OUT | GPIO_DFLT_HIGH); -+ -+ /* Setup the headphone jack as an input */ -+ pxa_gpio_mode(CORGI_GPIO_AK_INT | GPIO_IN); -+#endif -+ -+ return 0; -+ -+bail_free_dev: -+ input_free_device(input_dev); -+bail_free: -+ kfree(gta01kbd); -+bail: -+ return rc; -+} -+ -+static int gta01kbd_remove(struct platform_device *pdev) -+{ -+ struct gta01kbd *gta01kbd = platform_get_drvdata(pdev); -+ -+ free_irq(s3c2410_gpio_getirq(pdev->resource[0].start), gta01kbd); -+#if 0 -+ int i; -+ -+ for (i = 0; i < CORGI_KEY_SENSE_NUM; i++) -+ free_irq(CORGI_IRQ_GPIO_KEY_SENSE(i), corgikbd); -+ -+ del_timer_sync(&corgikbd->htimer); -+ del_timer_sync(&corgikbd->timer); -+#endif -+ input_unregister_device(gta01kbd->input); -+ -+ kfree(gta01kbd); -+ -+ return 0; -+} -+ -+static struct platform_driver gta01kbd_driver = { -+ .probe = gta01kbd_probe, -+ .remove = gta01kbd_remove, -+ .suspend = gta01kbd_suspend, -+ .resume = gta01kbd_resume, -+ .driver = { -+ .name = "qt2410-button", -+ }, -+}; -+ -+static int __devinit gta01kbd_init(void) -+{ -+ return platform_driver_register(>a01kbd_driver); -+} -+ -+static void __exit gta01kbd_exit(void) -+{ -+ platform_driver_unregister(>a01kbd_driver); -+} -+ -+module_init(gta01kbd_init); -+module_exit(gta01kbd_exit); -+ -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("Armzone QT2410 Buttons Driver"); -+MODULE_LICENSE("GPL"); ---- a/drivers/input/misc/Kconfig -+++ b/drivers/input/misc/Kconfig -@@ -236,4 +236,25 @@ config INPUT_GPIO_BUTTONS - To compile this driver as a module, choose M here: the - module will be called gpio-buttons. - -+config INPUT_LIS302DL -+ tristate "STmicro LIS302DL 3-axis accelerometer" -+ depends on SPI_MASTER -+ help -+ SPI driver for the STmicro LIS302DL 3-axis accelerometer. -+ -+ The userspece interface is a 3-axis (X/Y/Z) relative movement -+ Linux input device, reporting REL_[XYZ] events. -+ -+config INPUT_PCF50633_PMU -+ tristate "PCF50633 PMU events" -+ depends on MFD_PCF50633 -+ help -+ Say Y to include support for input events on NXP PCF50633. -+ -+config INPUT_PCF50606_PMU -+ tristate "PCF50606 PMU events" -+ depends on MFD_PCF50606 -+ help -+ Say Y to include support for input events on NXP PCF50606. -+ - endif ---- /dev/null -+++ b/drivers/input/misc/lis302dl.c -@@ -0,0 +1,874 @@ -+/* Linux kernel driver for the ST LIS302D 3-axis accelerometer -+ * -+ * Copyright (C) 2007-2008 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * converted to private bitbang by: -+ * Andy Green <andy@openmoko.com> -+ * ability to set acceleration threshold added by: -+ * Simon Kagstrom <simon.kagstrom@gmail.com> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ * TODO -+ * * statistics for overflow events -+ * * configuration interface (sysfs) for -+ * * enable/disable x/y/z axis data ready -+ * * enable/disable resume from freee fall / click -+ * * free fall / click parameters -+ * * high pass filter parameters -+ */ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/module.h> -+#include <linux/device.h> -+#include <linux/platform_device.h> -+#include <linux/delay.h> -+#include <linux/irq.h> -+#include <linux/interrupt.h> -+#include <linux/sysfs.h> -+ -+#include <linux/lis302dl.h> -+ -+/* Utility functions */ -+static u8 __reg_read(struct lis302dl_info *lis, u8 reg) -+{ -+ return (lis->pdata->lis302dl_bitbang_reg_read)(lis, reg); -+} -+ -+static void __reg_write(struct lis302dl_info *lis, u8 reg, u8 val) -+{ -+ (lis->pdata->lis302dl_bitbang_reg_write)(lis, reg, val); -+} -+ -+static void __reg_set_bit_mask(struct lis302dl_info *lis, u8 reg, u8 mask, -+ u8 val) -+{ -+ u_int8_t tmp; -+ -+ val &= mask; -+ -+ tmp = __reg_read(lis, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ __reg_write(lis, reg, tmp); -+} -+ -+static int __ms_to_duration(struct lis302dl_info *lis, int ms) -+{ -+ /* If we have 400 ms sampling rate, the stepping is 2.5 ms, -+ * on 100 ms the stepping is 10ms */ -+ if (lis->flags & LIS302DL_F_DR) -+ return min((ms * 10) / 25, 637); -+ -+ return min(ms / 10, 2550); -+} -+ -+static int __duration_to_ms(struct lis302dl_info *lis, int duration) -+{ -+ if (lis->flags & LIS302DL_F_DR) -+ return (duration * 25) / 10; -+ -+ return duration * 10; -+} -+ -+static u8 __mg_to_threshold(struct lis302dl_info *lis, int mg) -+{ -+ /* If FS is set each bit is 71mg, otherwise 18mg. The THS register -+ * has 7 bits for the threshold value */ -+ if (lis->flags & LIS302DL_F_FS) -+ return min(mg / 71, 127); -+ -+ return min(mg / 18, 127); -+} -+ -+static int __threshold_to_mg(struct lis302dl_info *lis, u8 threshold) -+{ -+ if (lis->flags & LIS302DL_F_FS) -+ return threshold * 71; -+ -+ return threshold * 18; -+} -+ -+/* interrupt handling related */ -+ -+enum lis302dl_intmode { -+ LIS302DL_INTMODE_GND = 0x00, -+ LIS302DL_INTMODE_FF_WU_1 = 0x01, -+ LIS302DL_INTMODE_FF_WU_2 = 0x02, -+ LIS302DL_INTMODE_FF_WU_12 = 0x03, -+ LIS302DL_INTMODE_DATA_READY = 0x04, -+ LIS302DL_INTMODE_CLICK = 0x07, -+}; -+ -+static void __lis302dl_int_mode(struct device *dev, int int_pin, -+ enum lis302dl_intmode mode) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ -+ switch (int_pin) { -+ case 1: -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL3, 0x07, mode); -+ break; -+ case 2: -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL3, 0x38, mode << 3); -+ break; -+ default: -+ BUG(); -+ } -+} -+ -+static void __enable_wakeup(struct lis302dl_info *lis) -+{ -+ __reg_write(lis, LIS302DL_REG_CTRL1, 0); -+ -+ /* First zero to get to a known state */ -+ __reg_write(lis, LIS302DL_REG_FF_WU_CFG_1, LIS302DL_FFWUCFG_XHIE | -+ LIS302DL_FFWUCFG_YHIE | LIS302DL_FFWUCFG_ZHIE | -+ LIS302DL_FFWUCFG_LIR); -+ __reg_write(lis, LIS302DL_REG_FF_WU_THS_1, -+ __mg_to_threshold(lis, lis->wakeup.threshold)); -+ __reg_write(lis, LIS302DL_REG_FF_WU_DURATION_1, -+ __ms_to_duration(lis, lis->wakeup.duration)); -+ -+ /* Route the interrupt for wakeup */ -+ __lis302dl_int_mode(lis->dev, 1, -+ LIS302DL_INTMODE_FF_WU_1); -+ -+ __reg_read(lis, LIS302DL_REG_HP_FILTER_RESET); -+ __reg_read(lis, LIS302DL_REG_OUT_X); -+ __reg_read(lis, LIS302DL_REG_OUT_Y); -+ __reg_read(lis, LIS302DL_REG_OUT_Z); -+ __reg_read(lis, LIS302DL_REG_STATUS); -+ __reg_read(lis, LIS302DL_REG_FF_WU_SRC_1); -+ __reg_read(lis, LIS302DL_REG_FF_WU_SRC_2); -+ __reg_write(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_PD | 7); -+} -+ -+static void __enable_data_collection(struct lis302dl_info *lis) -+{ -+ u_int8_t ctrl1 = LIS302DL_CTRL1_PD | LIS302DL_CTRL1_Xen | -+ LIS302DL_CTRL1_Yen | LIS302DL_CTRL1_Zen; -+ -+ /* make sure we're powered up and generate data ready */ -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL1, ctrl1, ctrl1); -+ -+ /* If the threshold is zero, let the device generated an interrupt -+ * on each datum */ -+ if (lis->threshold == 0) { -+ __reg_write(lis, LIS302DL_REG_CTRL2, 0); -+ __lis302dl_int_mode(lis->dev, 1, LIS302DL_INTMODE_DATA_READY); -+ __lis302dl_int_mode(lis->dev, 2, LIS302DL_INTMODE_DATA_READY); -+ } else { -+ __reg_write(lis, LIS302DL_REG_CTRL2, -+ LIS302DL_CTRL2_HPFF1); -+ __reg_write(lis, LIS302DL_REG_FF_WU_THS_1, -+ __mg_to_threshold(lis, lis->threshold)); -+ __reg_write(lis, LIS302DL_REG_FF_WU_DURATION_1, -+ __ms_to_duration(lis, lis->duration)); -+ -+ /* Clear the HP filter "starting point" */ -+ __reg_read(lis, LIS302DL_REG_HP_FILTER_RESET); -+ __reg_write(lis, LIS302DL_REG_FF_WU_CFG_1, -+ LIS302DL_FFWUCFG_XHIE | LIS302DL_FFWUCFG_YHIE | -+ LIS302DL_FFWUCFG_ZHIE | LIS302DL_FFWUCFG_LIR); -+ __lis302dl_int_mode(lis->dev, 1, LIS302DL_INTMODE_FF_WU_12); -+ __lis302dl_int_mode(lis->dev, 2, LIS302DL_INTMODE_FF_WU_12); -+ } -+} -+ -+#if 0 -+static void _report_btn_single(struct input_dev *inp, int btn) -+{ -+ input_report_key(inp, btn, 1); -+ input_sync(inp); -+ input_report_key(inp, btn, 0); -+} -+ -+static void _report_btn_double(struct input_dev *inp, int btn) -+{ -+ input_report_key(inp, btn, 1); -+ input_sync(inp); -+ input_report_key(inp, btn, 0); -+ input_sync(inp); -+ input_report_key(inp, btn, 1); -+ input_sync(inp); -+ input_report_key(inp, btn, 0); -+} -+#endif -+ -+ -+static void lis302dl_bitbang_read_sample(struct lis302dl_info *lis) -+{ -+ u8 data = 0xc0 | LIS302DL_REG_OUT_X; /* read, autoincrement */ -+ u8 read[5]; -+ unsigned long flags; -+ int mg_per_sample; -+ -+ local_irq_save(flags); -+ mg_per_sample = __threshold_to_mg(lis, 1); -+ -+ (lis->pdata->lis302dl_bitbang)(lis, &data, 1, &read[0], 5); -+ -+ local_irq_restore(flags); -+ -+ input_report_rel(lis->input_dev, REL_X, mg_per_sample * (s8)read[0]); -+ input_report_rel(lis->input_dev, REL_Y, mg_per_sample * (s8)read[2]); -+ input_report_rel(lis->input_dev, REL_Z, mg_per_sample * (s8)read[4]); -+ -+ input_sync(lis->input_dev); -+ -+ /* Reset the HP filter */ -+ __reg_read(lis, LIS302DL_REG_HP_FILTER_RESET); -+ __reg_read(lis, LIS302DL_REG_FF_WU_SRC_1); -+} -+ -+static irqreturn_t lis302dl_interrupt(int irq, void *_lis) -+{ -+ struct lis302dl_info *lis = _lis; -+ -+ lis302dl_bitbang_read_sample(lis); -+ return IRQ_HANDLED; -+} -+ -+/* sysfs */ -+ -+static ssize_t show_rate(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ u8 ctrl1; -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ ctrl1 = __reg_read(lis, LIS302DL_REG_CTRL1); -+ local_irq_restore(flags); -+ -+ return sprintf(buf, "%d\n", ctrl1 & LIS302DL_CTRL1_DR ? 400 : 100); -+} -+ -+static ssize_t set_rate(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ if (!strcmp(buf, "400\n")) { -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_DR, -+ LIS302DL_CTRL1_DR); -+ lis->flags |= LIS302DL_F_DR; -+ } else { -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_DR, -+ 0); -+ lis->flags &= ~LIS302DL_F_DR; -+ } -+ local_irq_restore(flags); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(sample_rate, S_IRUGO | S_IWUSR, show_rate, set_rate); -+ -+static ssize_t show_scale(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ u_int8_t ctrl1; -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ ctrl1 = __reg_read(lis, LIS302DL_REG_CTRL1); -+ local_irq_restore(flags); -+ -+ return sprintf(buf, "%s\n", ctrl1 & LIS302DL_CTRL1_FS ? "9.2" : "2.3"); -+} -+ -+static ssize_t set_scale(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ if (!strcmp(buf, "9.2\n")) { -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_FS, -+ LIS302DL_CTRL1_FS); -+ lis->flags |= LIS302DL_F_FS; -+ } else { -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_FS, -+ 0); -+ lis->flags &= ~LIS302DL_F_FS; -+ } -+ -+ if (lis->flags & LIS302DL_F_INPUT_OPEN) -+ __enable_data_collection(lis); -+ -+ local_irq_restore(flags); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(full_scale, S_IRUGO | S_IWUSR, show_scale, set_scale); -+ -+static ssize_t show_threshold(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ -+ /* Display the device view of the threshold setting */ -+ return sprintf(buf, "%d\n", __threshold_to_mg(lis, -+ __mg_to_threshold(lis, lis->threshold))); -+} -+ -+static ssize_t set_threshold(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ unsigned int val; -+ -+ if (sscanf(buf, "%u\n", &val) != 1) -+ return -EINVAL; -+ /* 8g is the maximum if FS is 1 */ -+ if (val > 8000) -+ return -ERANGE; -+ -+ /* Set the threshold and write it out if the device is used */ -+ lis->threshold = val; -+ -+ if (lis->flags & LIS302DL_F_INPUT_OPEN) { -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ __enable_data_collection(lis); -+ local_irq_restore(flags); -+ } -+ -+ return count; -+} -+ -+static DEVICE_ATTR(threshold, S_IRUGO | S_IWUSR, show_threshold, set_threshold); -+ -+static ssize_t show_duration(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ -+ return sprintf(buf, "%d\n", __duration_to_ms(lis, -+ __ms_to_duration(lis, lis->duration))); -+} -+ -+static ssize_t set_duration(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ unsigned int val; -+ -+ if (sscanf(buf, "%u\n", &val) != 1) -+ return -EINVAL; -+ if (val > 2550) -+ return -ERANGE; -+ -+ lis->duration = val; -+ if (lis->flags & LIS302DL_F_INPUT_OPEN) -+ __reg_write(lis, LIS302DL_REG_FF_WU_DURATION_1, -+ __ms_to_duration(lis, lis->duration)); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(duration, S_IRUGO | S_IWUSR, show_duration, set_duration); -+ -+static ssize_t lis302dl_dump(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ int n = 0; -+ u8 reg[0x40]; -+ char *end = buf; -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ for (n = 0; n < sizeof(reg); n++) -+ reg[n] = __reg_read(lis, n); -+ -+ local_irq_restore(flags); -+ -+ for (n = 0; n < sizeof(reg); n += 16) { -+ hex_dump_to_buffer(reg + n, 16, 16, 1, end, 128, 0); -+ end += strlen(end); -+ *end++ = '\n'; -+ *end++ = '\0'; -+ } -+ -+ return end - buf; -+} -+static DEVICE_ATTR(dump, S_IRUGO, lis302dl_dump, NULL); -+ -+/* Configure freefall/wakeup interrupts */ -+static ssize_t set_wakeup_threshold(struct device *dev, -+ struct device_attribute *attr, const char *buf, size_t count) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ unsigned int threshold; -+ -+ if (sscanf(buf, "%u\n", &threshold) != 1) -+ return -EINVAL; -+ -+ if (threshold > 8000) -+ return -ERANGE; -+ -+ /* Zero turns the feature off */ -+ if (threshold == 0) { -+ if (lis->flags & LIS302DL_F_IRQ_WAKE) { -+ disable_irq_wake(lis->pdata->interrupt); -+ lis->flags &= ~LIS302DL_F_IRQ_WAKE; -+ } -+ -+ return count; -+ } -+ -+ lis->wakeup.threshold = threshold; -+ -+ if (!(lis->flags & LIS302DL_F_IRQ_WAKE)) { -+ enable_irq_wake(lis->pdata->interrupt); -+ lis->flags |= LIS302DL_F_IRQ_WAKE; -+ } -+ -+ return count; -+} -+ -+static ssize_t show_wakeup_threshold(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ -+ /* All events off? */ -+ if (lis->wakeup.threshold == 0) -+ return sprintf(buf, "off\n"); -+ -+ return sprintf(buf, "%u\n", lis->wakeup.threshold); -+} -+ -+static DEVICE_ATTR(wakeup_threshold, S_IRUGO | S_IWUSR, show_wakeup_threshold, -+ set_wakeup_threshold); -+ -+static ssize_t set_wakeup_duration(struct device *dev, -+ struct device_attribute *attr, const char *buf, size_t count) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ unsigned int duration; -+ -+ if (sscanf(buf, "%u\n", &duration) != 1) -+ return -EINVAL; -+ -+ if (duration > 2550) -+ return -ERANGE; -+ -+ lis->wakeup.duration = duration; -+ -+ return count; -+} -+ -+static ssize_t show_wakeup_duration(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(dev); -+ -+ return sprintf(buf, "%u\n", lis->wakeup.duration); -+} -+ -+static DEVICE_ATTR(wakeup_duration, S_IRUGO | S_IWUSR, show_wakeup_duration, -+ set_wakeup_duration); -+ -+static struct attribute *lis302dl_sysfs_entries[] = { -+ &dev_attr_sample_rate.attr, -+ &dev_attr_full_scale.attr, -+ &dev_attr_threshold.attr, -+ &dev_attr_duration.attr, -+ &dev_attr_dump.attr, -+ &dev_attr_wakeup_threshold.attr, -+ &dev_attr_wakeup_duration.attr, -+ NULL -+}; -+ -+static struct attribute_group lis302dl_attr_group = { -+ .name = NULL, -+ .attrs = lis302dl_sysfs_entries, -+}; -+ -+/* input device handling and driver core interaction */ -+ -+static int lis302dl_input_open(struct input_dev *inp) -+{ -+ struct lis302dl_info *lis = input_get_drvdata(inp); -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ __enable_data_collection(lis); -+ lis->flags |= LIS302DL_F_INPUT_OPEN; -+ -+ local_irq_restore(flags); -+ -+ return 0; -+} -+ -+static void lis302dl_input_close(struct input_dev *inp) -+{ -+ struct lis302dl_info *lis = input_get_drvdata(inp); -+ u_int8_t ctrl1 = LIS302DL_CTRL1_Xen | LIS302DL_CTRL1_Yen | -+ LIS302DL_CTRL1_Zen; -+ unsigned long flags; -+ -+ local_irq_save(flags); -+ -+ /* since the input core already serializes access and makes sure we -+ * only see close() for the close of the last user, we can safely -+ * disable the data ready events */ -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL1, ctrl1, 0x00); -+ lis->flags &= ~LIS302DL_F_INPUT_OPEN; -+ -+ /* however, don't power down the whole device if still needed */ -+ if (!(lis->flags & LIS302DL_F_WUP_FF || -+ lis->flags & LIS302DL_F_WUP_CLICK)) { -+ __reg_set_bit_mask(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_PD, -+ 0x00); -+ } -+ local_irq_restore(flags); -+} -+ -+/* get the device to reload its coefficients from EEPROM and wait for it -+ * to complete -+ */ -+ -+static int __lis302dl_reset_device(struct lis302dl_info *lis) -+{ -+ int timeout = 10; -+ -+ __reg_write(lis, LIS302DL_REG_CTRL2, -+ LIS302DL_CTRL2_BOOT | LIS302DL_CTRL2_FDS); -+ -+ while ((__reg_read(lis, LIS302DL_REG_CTRL2) -+ & LIS302DL_CTRL2_BOOT) && (timeout--)) -+ mdelay(1); -+ -+ return !!(timeout < 0); -+} -+ -+static int __devinit lis302dl_probe(struct platform_device *pdev) -+{ -+ int rc; -+ struct lis302dl_info *lis; -+ u_int8_t wai; -+ unsigned long flags; -+ struct lis302dl_platform_data *pdata = pdev->dev.platform_data; -+ -+ lis = kzalloc(sizeof(*lis), GFP_KERNEL); -+ if (!lis) -+ return -ENOMEM; -+ -+ lis->dev = &pdev->dev; -+ -+ dev_set_drvdata(lis->dev, lis); -+ -+ lis->pdata = pdata; -+ -+ rc = sysfs_create_group(&lis->dev->kobj, &lis302dl_attr_group); -+ if (rc) { -+ dev_err(lis->dev, "error creating sysfs group\n"); -+ goto bail_free_lis; -+ } -+ -+ /* initialize input layer details */ -+ lis->input_dev = input_allocate_device(); -+ if (!lis->input_dev) { -+ dev_err(lis->dev, "Unable to allocate input device\n"); -+ goto bail_sysfs; -+ } -+ -+ input_set_drvdata(lis->input_dev, lis); -+ lis->input_dev->name = pdata->name; -+ /* SPI Bus not defined as a valid bus for input subsystem*/ -+ lis->input_dev->id.bustype = BUS_I2C; /* lie about it */ -+ lis->input_dev->open = lis302dl_input_open; -+ lis->input_dev->close = lis302dl_input_close; -+ -+ rc = input_register_device(lis->input_dev); -+ if (rc) { -+ dev_err(lis->dev, "error %d registering input device\n", rc); -+ goto bail_inp_dev; -+ } -+ -+ local_irq_save(flags); -+ /* Configure our IO */ -+ (lis->pdata->lis302dl_suspend_io)(lis, 1); -+ -+ wai = __reg_read(lis, LIS302DL_REG_WHO_AM_I); -+ if (wai != LIS302DL_WHO_AM_I_MAGIC) { -+ dev_err(lis->dev, "unknown who_am_i signature 0x%02x\n", wai); -+ dev_set_drvdata(lis->dev, NULL); -+ rc = -ENODEV; -+ local_irq_restore(flags); -+ goto bail_inp_reg; -+ } -+ -+ set_bit(EV_REL, lis->input_dev->evbit); -+ set_bit(REL_X, lis->input_dev->relbit); -+ set_bit(REL_Y, lis->input_dev->relbit); -+ set_bit(REL_Z, lis->input_dev->relbit); -+/* set_bit(EV_KEY, lis->input_dev->evbit); -+ set_bit(BTN_X, lis->input_dev->keybit); -+ set_bit(BTN_Y, lis->input_dev->keybit); -+ set_bit(BTN_Z, lis->input_dev->keybit); -+*/ -+ lis->threshold = 0; -+ lis->duration = 0; -+ memset(&lis->wakeup, 0, sizeof(lis->wakeup)); -+ -+ if (__lis302dl_reset_device(lis)) -+ dev_err(lis->dev, "device BOOT reload failed\n"); -+ -+ /* force us powered */ -+ __reg_write(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_PD | -+ LIS302DL_CTRL1_Xen | -+ LIS302DL_CTRL1_Yen | -+ LIS302DL_CTRL1_Zen); -+ mdelay(1); -+ -+ __reg_write(lis, LIS302DL_REG_CTRL2, 0); -+ __reg_write(lis, LIS302DL_REG_CTRL3, -+ LIS302DL_CTRL3_PP_OD | LIS302DL_CTRL3_IHL); -+ __reg_write(lis, LIS302DL_REG_FF_WU_THS_1, 0x0); -+ __reg_write(lis, LIS302DL_REG_FF_WU_DURATION_1, 0x00); -+ __reg_write(lis, LIS302DL_REG_FF_WU_CFG_1, 0x0); -+ -+ /* start off in powered down mode; we power up when someone opens us */ -+ __reg_write(lis, LIS302DL_REG_CTRL1, LIS302DL_CTRL1_Xen | -+ LIS302DL_CTRL1_Yen | LIS302DL_CTRL1_Zen); -+ -+ if (pdata->open_drain) -+ /* switch interrupt to open collector, active-low */ -+ __reg_write(lis, LIS302DL_REG_CTRL3, -+ LIS302DL_CTRL3_PP_OD | LIS302DL_CTRL3_IHL); -+ else -+ /* push-pull, active-low */ -+ __reg_write(lis, LIS302DL_REG_CTRL3, LIS302DL_CTRL3_IHL); -+ -+ __lis302dl_int_mode(lis->dev, 1, LIS302DL_INTMODE_GND); -+ __lis302dl_int_mode(lis->dev, 2, LIS302DL_INTMODE_GND); -+ -+ __reg_read(lis, LIS302DL_REG_STATUS); -+ __reg_read(lis, LIS302DL_REG_FF_WU_SRC_1); -+ __reg_read(lis, LIS302DL_REG_FF_WU_SRC_2); -+ __reg_read(lis, LIS302DL_REG_CLICK_SRC); -+ local_irq_restore(flags); -+ -+ dev_info(lis->dev, "Found %s\n", pdata->name); -+ -+ lis->pdata = pdata; -+ -+ set_irq_handler(lis->pdata->interrupt, handle_level_irq); -+ -+ rc = request_irq(lis->pdata->interrupt, lis302dl_interrupt, -+ IRQF_TRIGGER_LOW, "lis302dl", lis); -+ -+ if (rc < 0) { -+ dev_err(lis->dev, "error requesting IRQ %d\n", -+ lis->pdata->interrupt); -+ goto bail_inp_reg; -+ } -+ return 0; -+ -+bail_inp_reg: -+ input_unregister_device(lis->input_dev); -+bail_inp_dev: -+ input_free_device(lis->input_dev); -+bail_sysfs: -+ sysfs_remove_group(&lis->dev->kobj, &lis302dl_attr_group); -+bail_free_lis: -+ kfree(lis); -+ return rc; -+} -+ -+static int __devexit lis302dl_remove(struct platform_device *pdev) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(&pdev->dev); -+ unsigned long flags; -+ -+ /* Disable interrupts */ -+ if (lis->flags & LIS302DL_F_IRQ_WAKE) -+ disable_irq_wake(lis->pdata->interrupt); -+ free_irq(lis->pdata->interrupt, lis); -+ -+ /* Reset and power down the device */ -+ local_irq_save(flags); -+ __reg_write(lis, LIS302DL_REG_CTRL3, 0x00); -+ __reg_write(lis, LIS302DL_REG_CTRL2, 0x00); -+ __reg_write(lis, LIS302DL_REG_CTRL1, 0x00); -+ local_irq_restore(flags); -+ -+ /* Cleanup resources */ -+ sysfs_remove_group(&pdev->dev.kobj, &lis302dl_attr_group); -+ input_unregister_device(lis->input_dev); -+ if (lis->input_dev) -+ input_free_device(lis->input_dev); -+ dev_set_drvdata(lis->dev, NULL); -+ kfree(lis); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+ -+static u8 regs_to_save[] = { -+ LIS302DL_REG_CTRL1, -+ LIS302DL_REG_CTRL2, -+ LIS302DL_REG_CTRL3, -+ LIS302DL_REG_FF_WU_CFG_1, -+ LIS302DL_REG_FF_WU_THS_1, -+ LIS302DL_REG_FF_WU_DURATION_1, -+ LIS302DL_REG_FF_WU_CFG_2, -+ LIS302DL_REG_FF_WU_THS_2, -+ LIS302DL_REG_FF_WU_DURATION_2, -+ LIS302DL_REG_CLICK_CFG, -+ LIS302DL_REG_CLICK_THSY_X, -+ LIS302DL_REG_CLICK_THSZ, -+ LIS302DL_REG_CLICK_TIME_LIMIT, -+ LIS302DL_REG_CLICK_LATENCY, -+ LIS302DL_REG_CLICK_WINDOW, -+ -+}; -+ -+static int lis302dl_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(&pdev->dev); -+ unsigned long flags; -+ u_int8_t tmp; -+ int n; -+ -+ /* determine if we want to wake up from the accel. */ -+ if (lis->flags & LIS302DL_F_WUP_CLICK) -+ return 0; -+ -+ disable_irq(lis->pdata->interrupt); -+ local_irq_save(flags); -+ -+ /* -+ * When we share SPI over multiple sensors, there is a race here -+ * that one or more sensors will lose. In that case, the shared -+ * SPI bus GPIO will be in sleep mode and partially pulled down. So -+ * we explicitly put our IO into "wake" mode here before the final -+ * traffic to the sensor. -+ */ -+ (lis->pdata->lis302dl_suspend_io)(lis, 1); -+ -+ /* save registers */ -+ for (n = 0; n < ARRAY_SIZE(regs_to_save); n++) -+ lis->regs[regs_to_save[n]] = -+ __reg_read(lis, regs_to_save[n]); -+ -+ /* power down or enable wakeup */ -+ -+ if (lis->wakeup.threshold == 0) { -+ tmp = __reg_read(lis, LIS302DL_REG_CTRL1); -+ tmp &= ~LIS302DL_CTRL1_PD; -+ __reg_write(lis, LIS302DL_REG_CTRL1, tmp); -+ } else -+ __enable_wakeup(lis); -+ -+ /* place our IO to the device in sleep-compatible states */ -+ (lis->pdata->lis302dl_suspend_io)(lis, 0); -+ -+ local_irq_restore(flags); -+ -+ return 0; -+} -+ -+static int lis302dl_resume(struct platform_device *pdev) -+{ -+ struct lis302dl_info *lis = dev_get_drvdata(&pdev->dev); -+ unsigned long flags; -+ int n; -+ -+ if (lis->flags & LIS302DL_F_WUP_CLICK) -+ return 0; -+ -+ local_irq_save(flags); -+ -+ /* get our IO to the device back in operational states */ -+ (lis->pdata->lis302dl_suspend_io)(lis, 1); -+ -+ /* resume from powerdown first! */ -+ __reg_write(lis, LIS302DL_REG_CTRL1, -+ LIS302DL_CTRL1_PD | -+ LIS302DL_CTRL1_Xen | -+ LIS302DL_CTRL1_Yen | -+ LIS302DL_CTRL1_Zen); -+ mdelay(1); -+ -+ if (__lis302dl_reset_device(lis)) -+ dev_err(&pdev->dev, "device BOOT reload failed\n"); -+ -+ lis->regs[LIS302DL_REG_CTRL1] |= LIS302DL_CTRL1_PD | -+ LIS302DL_CTRL1_Xen | -+ LIS302DL_CTRL1_Yen | -+ LIS302DL_CTRL1_Zen; -+ -+ /* restore registers after resume */ -+ for (n = 0; n < ARRAY_SIZE(regs_to_save); n++) -+ __reg_write(lis, regs_to_save[n], lis->regs[regs_to_save[n]]); -+ -+ local_irq_restore(flags); -+ enable_irq(lis->pdata->interrupt); -+ -+ return 0; -+} -+#else -+#define lis302dl_suspend NULL -+#define lis302dl_resume NULL -+#endif -+ -+static struct platform_driver lis302dl_driver = { -+ .driver = { -+ .name = "lis302dl", -+ .owner = THIS_MODULE, -+ }, -+ -+ .probe = lis302dl_probe, -+ .remove = __devexit_p(lis302dl_remove), -+ .suspend = lis302dl_suspend, -+ .resume = lis302dl_resume, -+}; -+ -+static int __devinit lis302dl_init(void) -+{ -+ return platform_driver_register(&lis302dl_driver); -+} -+ -+static void __exit lis302dl_exit(void) -+{ -+ platform_driver_unregister(&lis302dl_driver); -+} -+ -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(lis302dl_init); -+module_exit(lis302dl_exit); ---- a/drivers/input/misc/Makefile -+++ b/drivers/input/misc/Makefile -@@ -22,3 +22,6 @@ obj-$(CONFIG_INPUT_UINPUT) += uinput.o - obj-$(CONFIG_INPUT_APANEL) += apanel.o - obj-$(CONFIG_INPUT_SGI_BTNS) += sgi_btns.o - obj-$(CONFIG_INPUT_GPIO_BUTTONS) += gpio_buttons.o -+obj-$(CONFIG_INPUT_LIS302DL) += lis302dl.o -+obj-$(CONFIG_INPUT_PCF50633_PMU) += pcf50633-input.o -+obj-$(CONFIG_INPUT_PCF50606_PMU) += pcf50606-input.o ---- /dev/null -+++ b/drivers/input/misc/pcf50606-input.c -@@ -0,0 +1,123 @@ -+/* Philips PCF50606 Input Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50606 driver mainly by -+ * Harald Welte, Matt Hsu, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 060, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/input.h> -+ -+#include <linux/mfd/pcf50606/core.h> -+#include <linux/mfd/pcf50606/input.h> -+ -+static void -+pcf50606_input_irq(struct pcf50606 *pcf, int irq, void *data) -+{ -+ struct input_dev *input_dev = pcf->input.input_dev; -+ int onkey_released; -+ -+ /* We report only one event depending on if the key status */ -+ onkey_released = pcf50606_reg_read(pcf, PCF50606_REG_OOCS) & -+ PCF50606_OOCS_ONKEY; -+ -+ if (irq == PCF50606_IRQ_ONKEYF && !onkey_released) -+ input_report_key(input_dev, KEY_POWER, 1); -+ else if (irq == PCF50606_IRQ_ONKEYR && onkey_released) -+ input_report_key(input_dev, KEY_POWER, 0); -+ -+ input_sync(input_dev); -+} -+ -+int __init pcf50606_input_probe(struct platform_device *pdev) -+{ -+ struct pcf50606 *pcf; -+ struct input_dev *input_dev; -+ int ret; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ input_dev = input_allocate_device(); -+ if (!input_dev) -+ return -ENODEV; -+ -+ input_dev->name = "PCF50606 PMU events"; -+ input_dev->id.bustype = BUS_I2C; -+ -+ input_dev->evbit[0] = BIT(EV_KEY) | BIT(EV_PWR); -+ set_bit(KEY_POWER, input_dev->keybit); -+ set_bit(KEY_POWER2, input_dev->keybit); -+ -+ ret = input_register_device(input_dev); -+ if (ret) -+ goto out; -+ -+ pcf->input.input_dev = input_dev; -+ -+ /* Currently we care only about ONKEY and USBINS/USBREM -+ * -+ * USBINS/USBREM are told to us by mbc driver as we can't setup -+ * two handlers for an IRQ -+ */ -+ pcf->irq_handler[PCF50606_IRQ_ONKEYR].handler = pcf50606_input_irq; -+ -+ pcf->irq_handler[PCF50606_IRQ_ONKEYF].handler = pcf50606_input_irq; -+ -+ return 0; -+ -+out: -+ input_free_device(input_dev); -+ return ret; -+} -+ -+static int __devexit pcf50606_input_remove(struct platform_device *pdev) -+{ -+ struct pcf50606 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ input_unregister_device(pcf->input.input_dev); -+ -+ return 0; -+} -+ -+struct platform_driver pcf50606_input_driver = { -+ .driver = { -+ .name = "pcf50606-input", -+ }, -+ .probe = pcf50606_input_probe, -+ .remove = __devexit_p(pcf50606_input_remove), -+}; -+ -+static int __init pcf50606_input_init(void) -+{ -+ return platform_driver_register(&pcf50606_input_driver); -+} -+module_init(pcf50606_input_init); -+ -+static void __exit pcf50606_input_exit(void) -+{ -+ platform_driver_unregister(&pcf50606_input_driver); -+} -+module_exit(pcf50606_input_exit); -+ -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_DESCRIPTION("PCF50606 input driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:pcf50606-input"); ---- /dev/null -+++ b/drivers/input/misc/pcf50633-input.c -@@ -0,0 +1,123 @@ -+/* Philips PCF50633 Input Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50633 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/input.h> -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/input.h> -+ -+static void -+pcf50633_input_irq(struct pcf50633 *pcf, int irq, void *data) -+{ -+ struct input_dev *input_dev = pcf->input.input_dev; -+ int onkey_released; -+ -+ /* We report only one event depending on if the key status */ -+ onkey_released = pcf50633_reg_read(pcf, PCF50633_REG_OOCSTAT) & -+ PCF50633_OOCSTAT_ONKEY; -+ -+ if (irq == PCF50633_IRQ_ONKEYF && !onkey_released) -+ input_report_key(input_dev, KEY_POWER, 1); -+ else if (irq == PCF50633_IRQ_ONKEYR && onkey_released) -+ input_report_key(input_dev, KEY_POWER, 0); -+ -+ input_sync(input_dev); -+} -+ -+int __init pcf50633_input_probe(struct platform_device *pdev) -+{ -+ struct pcf50633 *pcf; -+ struct input_dev *input_dev; -+ int ret; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ input_dev = input_allocate_device(); -+ if (!input_dev) -+ return -ENODEV; -+ -+ input_dev->name = "GTA02 PMU events"; -+ input_dev->id.bustype = BUS_I2C; -+ -+ input_dev->evbit[0] = BIT(EV_KEY) | BIT(EV_PWR); -+ set_bit(KEY_POWER, input_dev->keybit); -+ set_bit(KEY_POWER2, input_dev->keybit); -+ -+ ret = input_register_device(input_dev); -+ if (ret) -+ goto out; -+ -+ pcf->input.input_dev = input_dev; -+ -+ /* Currently we care only about ONKEY and USBINS/USBREM -+ * -+ * USBINS/USBREM are told to us by mbc driver as we can't setup -+ * two handlers for an IRQ -+ */ -+ pcf->irq_handler[PCF50633_IRQ_ONKEYR].handler = pcf50633_input_irq; -+ -+ pcf->irq_handler[PCF50633_IRQ_ONKEYF].handler = pcf50633_input_irq; -+ -+ return 0; -+ -+out: -+ input_free_device(input_dev); -+ return ret; -+} -+ -+static int __devexit pcf50633_input_remove(struct platform_device *pdev) -+{ -+ struct pcf50633 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ input_unregister_device(pcf->input.input_dev); -+ -+ return 0; -+} -+ -+struct platform_driver pcf50633_input_driver = { -+ .driver = { -+ .name = "pcf50633-input", -+ }, -+ .probe = pcf50633_input_probe, -+ .remove = __devexit_p(pcf50633_input_remove), -+}; -+ -+static int __init pcf50633_input_init(void) -+{ -+ return platform_driver_register(&pcf50633_input_driver); -+} -+module_init(pcf50633_input_init); -+ -+static void __exit pcf50633_input_exit(void) -+{ -+ platform_driver_unregister(&pcf50633_input_driver); -+} -+module_exit(pcf50633_input_exit); -+ -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_DESCRIPTION("PCF50633 input driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:pcf50633-input"); ---- a/drivers/input/mousedev.c -+++ b/drivers/input/mousedev.c -@@ -1016,6 +1016,7 @@ static const struct input_device_id mous - .evbit = { BIT_MASK(EV_KEY) | BIT_MASK(EV_REL) }, - .relbit = { BIT_MASK(REL_WHEEL) }, - }, /* A separate scrollwheel */ -+#if 0 - { - .flags = INPUT_DEVICE_ID_MATCH_EVBIT | - INPUT_DEVICE_ID_MATCH_KEYBIT | -@@ -1025,6 +1026,7 @@ static const struct input_device_id mous - .absbit = { BIT_MASK(ABS_X) | BIT_MASK(ABS_Y) }, - }, /* A tablet like device, at least touch detection, - two absolute axes */ -+#endif - { - .flags = INPUT_DEVICE_ID_MATCH_EVBIT | - INPUT_DEVICE_ID_MATCH_KEYBIT | ---- a/drivers/input/touchscreen/Kconfig -+++ b/drivers/input/touchscreen/Kconfig -@@ -11,6 +11,50 @@ menuconfig INPUT_TOUCHSCREEN - - if INPUT_TOUCHSCREEN - -+menuconfig TOUCHSCREEN_FILTER -+ boolean "Touchscreen Filtering" -+ depends on INPUT_TOUCHSCREEN -+ help -+ Select this to include kernel touchscreen filter support. The filters -+ can be combined in any order in your machine init and the parameters -+ for them can also be set there. -+ -+if TOUCHSCREEN_FILTER -+ -+config TOUCHSCREEN_FILTER_GROUP -+ bool "Group Touchscreen Filter" -+ depends on INPUT_TOUCHSCREEN && TOUCHSCREEN_FILTER -+ default Y -+ help -+ Say Y here if you want to use the Group touchscreen filter, it -+ avoids using atypical samples. -+ -+config TOUCHSCREEN_FILTER_MEDIAN -+ bool "Median Average Touchscreen Filter" -+ depends on INPUT_TOUCHSCREEN && TOUCHSCREEN_FILTER -+ default Y -+ help -+ Say Y here if you want to use the Median touchscreen filter, it's -+ highly effective if you data is noisy with occasional excursions. -+ -+config TOUCHSCREEN_FILTER_MEAN -+ bool "Mean Average Touchscreen Filter" -+ depends on INPUT_TOUCHSCREEN && TOUCHSCREEN_FILTER -+ default Y -+ help -+ Say Y here if you want to use the Mean touchscreen filter, it -+ can further improve decent quality data by removing jitter -+ -+config TOUCHSCREEN_FILTER_LINEAR -+ bool "Linear Touchscreen Filter" -+ depends on INPUT_TOUCHSCREEN && TOUCHSCREEN_FILTER -+ default Y -+ help -+ Say Y here if you want to use the Mean touchscreen filter, it -+ enables the use of calibration data for the touchscreen. -+ -+endif -+ - config TOUCHSCREEN_ADS7846 - tristate "ADS7846/TSC2046 and ADS7843 based touchscreens" - depends on SPI_MASTER -@@ -71,6 +115,25 @@ config TOUCHSCREEN_FUJITSU - To compile this driver as a module, choose M here: the - module will be called fujitsu-ts. - -+config TOUCHSCREEN_S3C2410 -+ tristate "Samsung S3C2410 touchscreen input driver" -+ depends on ARCH_S3C2410 && INPUT && INPUT_TOUCHSCREEN -+ select SERIO -+ select TOUCHSCREEN_FILTER -+ help -+ Say Y here if you have the s3c2410 touchscreen. -+ -+ If unsure, say N. -+ -+ To compile this driver as a module, choose M here: the -+ module will be called s3c2410_ts. -+ -+config TOUCHSCREEN_S3C2410_DEBUG -+ boolean "Samsung S3C2410 touchscreen debug messages" -+ depends on TOUCHSCREEN_S3C2410 -+ help -+ Select this if you want debug messages -+ - config TOUCHSCREEN_GUNZE - tristate "Gunze AHL-51S touchscreen" - select SERIO -@@ -376,4 +439,15 @@ config TOUCHSCREEN_TOUCHIT213 - To compile this driver as a module, choose M here: the - module will be called touchit213. - -+config TOUCHSCREEN_PCAP7200 -+ tristate "EETI Projected capacitive touchscreen controller" -+ help -+ Say Y here if you have the EETI PCAP7200 touchscreen -+ controller chip in your system. -+ -+ If unsure, say N. -+ -+ To compile this driver as a module, choose M here: the -+ module will be called pcap7200. - endif -+ ---- a/drivers/input/touchscreen/Makefile -+++ b/drivers/input/touchscreen/Makefile -@@ -31,3 +31,10 @@ wm97xx-ts-$(CONFIG_TOUCHSCREEN_WM9705) + - wm97xx-ts-$(CONFIG_TOUCHSCREEN_WM9712) += wm9712.o - wm97xx-ts-$(CONFIG_TOUCHSCREEN_WM9713) += wm9713.o - obj-$(CONFIG_TOUCHSCREEN_WM97XX_MAINSTONE) += mainstone-wm97xx.o -+obj-$(CONFIG_TOUCHSCREEN_S3C2410) += s3c2410_ts.o -+obj-$(CONFIG_TOUCHSCREEN_FILTER) += ts_filter.o -+obj-$(CONFIG_TOUCHSCREEN_FILTER_GROUP) += ts_filter_group.o -+obj-$(CONFIG_TOUCHSCREEN_FILTER_LINEAR) += ts_filter_linear.o -+obj-$(CONFIG_TOUCHSCREEN_FILTER_MEDIAN) += ts_filter_median.o -+obj-$(CONFIG_TOUCHSCREEN_FILTER_MEAN) += ts_filter_mean.o -+obj-$(CONFIG_TOUCHSCREEN_PCAP7200) += pcap7200_ts.o ---- /dev/null -+++ b/drivers/input/touchscreen/s3c2410_ts.c -@@ -0,0 +1,618 @@ -+/* -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ * -+ * Copyright (c) 2004 Arnaud Patard <arnaud.patard@rtp-net.org> -+ * iPAQ H1940 touchscreen support -+ * -+ * ChangeLog -+ * -+ * 2004-09-05: Herbert Pötzl <herbert@13thfloor.at> -+ * - added clock (de-)allocation code -+ * -+ * 2005-03-06: Arnaud Patard <arnaud.patard@rtp-net.org> -+ * - h1940_ -> s3c2410 (this driver is now also used on the n30 -+ * machines :P) -+ * - Debug messages are now enabled with the config option -+ * TOUCHSCREEN_S3C2410_DEBUG -+ * - Changed the way the value are read -+ * - Input subsystem should now work -+ * - Use ioremap and readl/writel -+ * -+ * 2005-03-23: Arnaud Patard <arnaud.patard@rtp-net.org> -+ * - Make use of some undocumented features of the touchscreen -+ * controller -+ * -+ * 2007-05-23: Harald Welte <laforge@openmoko.org> -+ * - Add proper support for S32440 -+ * -+ * 2008-06-23: Andy Green <andy@openmoko.com> -+ * - removed averaging system -+ * - added generic Touchscreen filter stuff -+ * -+ * 2008-11-27: Nelson Castillo <arhuaco@freaks-unidos.net> -+ * - improve interrupt handling -+ */ -+ -+#include <linux/errno.h> -+#include <linux/kernel.h> -+#include <linux/module.h> -+#include <linux/slab.h> -+#include <linux/input.h> -+#include <linux/init.h> -+#include <linux/serio.h> -+#include <linux/timer.h> -+#include <linux/kfifo.h> -+#include <linux/delay.h> -+#include <linux/platform_device.h> -+#include <linux/clk.h> -+#include <asm/io.h> -+#include <asm/irq.h> -+ -+#include <mach/regs-gpio.h> -+#include <mach/ts.h> -+ -+#include <plat/regs-adc.h> -+ -+#include <linux/ts_filter.h> -+ -+/* For ts.dev.id.version */ -+#define S3C2410TSVERSION 0x0101 -+ -+#define TSC_SLEEP (S3C2410_ADCTSC_PULL_UP_DISABLE | S3C2410_ADCTSC_XY_PST(0)) -+ -+#define WAIT4INT(x) (((x)<<8) | \ -+ S3C2410_ADCTSC_YM_SEN | \ -+ S3C2410_ADCTSC_YP_SEN | \ -+ S3C2410_ADCTSC_XP_SEN | \ -+ S3C2410_ADCTSC_XY_PST(3)) -+ -+#define AUTOPST (S3C2410_ADCTSC_YM_SEN | \ -+ S3C2410_ADCTSC_YP_SEN | \ -+ S3C2410_ADCTSC_XP_SEN | \ -+ S3C2410_ADCTSC_AUTO_PST | \ -+ S3C2410_ADCTSC_XY_PST(0)) -+ -+#define DEBUG_LVL KERN_DEBUG -+ -+MODULE_AUTHOR("Arnaud Patard <arnaud.patard@rtp-net.org>"); -+MODULE_DESCRIPTION("s3c2410 touchscreen driver"); -+MODULE_LICENSE("GPL"); -+ -+/* -+ * Definitions & global arrays. -+ */ -+ -+static char *s3c2410ts_name = "s3c2410 TouchScreen"; -+ -+#define TS_RELEASE_TIMEOUT (HZ >> 4) /* ~ 60 milliseconds */ -+#define TS_EVENT_FIFO_SIZE (2 << 6) /* must be a power of 2 */ -+ -+#define TS_STATE_STANDBY 0 /* initial state */ -+#define TS_STATE_PRESSED 1 -+#define TS_STATE_RELEASE_PENDING 2 -+#define TS_STATE_RELEASE 3 -+ -+/* -+ * Per-touchscreen data. -+ */ -+ -+struct s3c2410ts { -+ struct input_dev *dev; -+ struct ts_filter *tsf[MAX_TS_FILTER_CHAIN]; -+ int coords[2]; /* just X and Y for us */ -+ int is_down; -+ int state; -+ struct kfifo *event_fifo; -+}; -+ -+static struct s3c2410ts ts; -+ -+static void __iomem *base_addr; -+ -+/* -+ * A few low level functions. -+ */ -+ -+static inline void s3c2410_ts_connect(void) -+{ -+ s3c2410_gpio_cfgpin(S3C2410_GPG12, S3C2410_GPG12_XMON); -+ s3c2410_gpio_cfgpin(S3C2410_GPG13, S3C2410_GPG13_nXPON); -+ s3c2410_gpio_cfgpin(S3C2410_GPG14, S3C2410_GPG14_YMON); -+ s3c2410_gpio_cfgpin(S3C2410_GPG15, S3C2410_GPG15_nYPON); -+} -+ -+static void s3c2410_ts_start_adc_conversion(void) -+{ -+ writel(S3C2410_ADCTSC_PULL_UP_DISABLE | AUTOPST, -+ base_addr + S3C2410_ADCTSC); -+ writel(readl(base_addr + S3C2410_ADCCON) | S3C2410_ADCCON_ENABLE_START, -+ base_addr + S3C2410_ADCCON); -+} -+ -+/* -+ * Just send the input events. -+ */ -+ -+enum ts_input_event {IE_DOWN = 0, IE_UP}; -+ -+static void ts_input_report(int event, int coords[]) -+{ -+#ifdef CONFIG_TOUCHSCREEN_S3C2410_DEBUG -+ static char *s[] = {"down", "up"}; -+ struct timeval tv; -+ -+ do_gettimeofday(&tv); -+#endif -+ -+ if (event == IE_DOWN) { -+ input_report_abs(ts.dev, ABS_X, coords[0]); -+ input_report_abs(ts.dev, ABS_Y, coords[1]); -+ input_report_key(ts.dev, BTN_TOUCH, 1); -+ input_report_abs(ts.dev, ABS_PRESSURE, 1); -+ -+#ifdef CONFIG_TOUCHSCREEN_S3C2410_DEBUG -+ printk(DEBUG_LVL "T:%06d %6s (X:%03d, Y:%03d)\n", -+ (int)tv.tv_usec, s[event], coords[0], coords[1]); -+#endif -+ } else { -+ input_report_key(ts.dev, BTN_TOUCH, 0); -+ input_report_abs(ts.dev, ABS_PRESSURE, 0); -+ -+#ifdef CONFIG_TOUCHSCREEN_S3C2410_DEBUG -+ printk(DEBUG_LVL "T:%06d %6s\n", -+ (int)tv.tv_usec, s[event]); -+#endif -+ } -+ -+ input_sync(ts.dev); -+} -+ -+/* -+ * Manage the state of the touchscreen. -+ */ -+ -+static void event_send_timer_f(unsigned long data); -+ -+static struct timer_list event_send_timer = -+ TIMER_INITIALIZER(event_send_timer_f, 0, 0); -+ -+static void event_send_timer_f(unsigned long data) -+{ -+ static unsigned long running; -+ static int noop_counter; -+ int event_type; -+ -+ if (unlikely(test_and_set_bit(0, &running))) { -+ mod_timer(&event_send_timer, -+ jiffies + TS_RELEASE_TIMEOUT); -+ return; -+ } -+ -+ while (__kfifo_get(ts.event_fifo, (unsigned char *)&event_type, -+ sizeof(int))) { -+ int buf[2]; -+ -+ switch (event_type) { -+ case 'D': -+ if (ts.state == TS_STATE_RELEASE_PENDING) -+ /* Ignore short UP event */ -+ ts.state = TS_STATE_PRESSED; -+ break; -+ -+ case 'U': -+ ts.state = TS_STATE_RELEASE_PENDING; -+ break; -+ -+ case 'P': -+ if (ts.is_down) /* stylus_action needs a conversion */ -+ s3c2410_ts_start_adc_conversion(); -+ -+ if (unlikely(__kfifo_get(ts.event_fifo, -+ (unsigned char *)buf, -+ sizeof(int) * 2) -+ != sizeof(int) * 2)) -+ goto ts_exit_error; -+ -+ ts_input_report(IE_DOWN, buf); -+ ts.state = TS_STATE_PRESSED; -+ break; -+ -+ default: -+ goto ts_exit_error; -+ } -+ -+ noop_counter = 0; -+ } -+ -+ if (noop_counter++ >= 1) { -+ noop_counter = 0; -+ if (ts.state == TS_STATE_RELEASE_PENDING) { -+ /* We delay the UP event for a -+ * while to avoid jitter. If we get a DOWN -+ * event we do not send it. */ -+ -+ ts_input_report(IE_UP, NULL); -+ ts.state = TS_STATE_STANDBY; -+ -+ if (ts.tsf[0]) -+ (ts.tsf[0]->api->clear)(ts.tsf[0]); -+ } -+ } else { -+ mod_timer(&event_send_timer, jiffies + TS_RELEASE_TIMEOUT); -+ } -+ -+ clear_bit(0, &running); -+ -+ return; -+ -+ts_exit_error: /* should not happen unless we have a bug */ -+ printk(KERN_ERR __FILE__ ": event_send_timer_f failed\n"); -+} -+ -+/* -+ * Manage interrupts. -+ */ -+ -+static irqreturn_t stylus_updown(int irq, void *dev_id) -+{ -+ unsigned long data0; -+ unsigned long data1; -+ int event_type; -+ -+ data0 = readl(base_addr+S3C2410_ADCDAT0); -+ data1 = readl(base_addr+S3C2410_ADCDAT1); -+ -+ ts.is_down = (!(data0 & S3C2410_ADCDAT0_UPDOWN)) && -+ (!(data1 & S3C2410_ADCDAT0_UPDOWN)); -+ -+ event_type = ts.is_down ? 'D' : 'U'; -+ -+ if (unlikely(__kfifo_put(ts.event_fifo, (unsigned char *)&event_type, -+ sizeof(int)) != sizeof(int))) /* should not happen */ -+ printk(KERN_ERR __FILE__": stylus_updown lost event!\n"); -+ -+ if (ts.is_down) -+ s3c2410_ts_start_adc_conversion(); -+ else -+ writel(WAIT4INT(0), base_addr+S3C2410_ADCTSC); -+ -+ mod_timer(&event_send_timer, jiffies + 1); -+ -+ return IRQ_HANDLED; -+} -+ -+static irqreturn_t stylus_action(int irq, void *dev_id) -+{ -+ int buf[3]; -+ -+ /* grab the ADC results */ -+ ts.coords[0] = readl(base_addr + S3C2410_ADCDAT0) & -+ S3C2410_ADCDAT0_XPDATA_MASK; -+ ts.coords[1] = readl(base_addr + S3C2410_ADCDAT1) & -+ S3C2410_ADCDAT1_YPDATA_MASK; -+ -+ if (ts.tsf[0]) { /* filtering is enabled, don't use raw directly */ -+ switch ((ts.tsf[0]->api->process)(ts.tsf[0], &ts.coords[0])) { -+ case 0: /* -+ * no real sample came out of processing yet, -+ * get another raw result to feed it -+ */ -+ s3c2410_ts_start_adc_conversion(); -+ return IRQ_HANDLED; -+ case 1: /* filters are ready to deliver a sample */ -+ (ts.tsf[0]->api->scale)(ts.tsf[0], &ts.coords[0]); -+ break; -+ case -1: -+ /* error in filters, ignore the event */ -+ (ts.tsf[0]->api->clear)(ts.tsf[0]); -+ writel(WAIT4INT(1), base_addr + S3C2410_ADCTSC); -+ return IRQ_HANDLED; -+ default: -+ printk(KERN_ERR":stylus_action error\n"); -+ } -+ } -+ -+ /* We use a buffer because want an atomic operation */ -+ buf[0] = 'P'; -+ buf[1] = ts.coords[0]; -+ buf[2] = ts.coords[1]; -+ -+ if (unlikely(__kfifo_put(ts.event_fifo, (unsigned char *)buf, -+ sizeof(int) * 3) != sizeof(int) * 3)) -+ /* should not happen */ -+ printk(KERN_ERR":stylus_action error\n"); -+ -+ writel(WAIT4INT(1), base_addr + S3C2410_ADCTSC); -+ mod_timer(&event_send_timer, jiffies + 1); -+ -+ return IRQ_HANDLED; -+} -+ -+static struct clk *adc_clock; -+ -+/* -+ * The functions for inserting/removing us as a module. -+ */ -+ -+static int __init s3c2410ts_probe(struct platform_device *pdev) -+{ -+ int rc; -+ struct s3c2410_ts_mach_info *info; -+ struct input_dev *input_dev; -+ int ret = 0; -+ -+ dev_info(&pdev->dev, "Starting\n"); -+ -+ info = (struct s3c2410_ts_mach_info *)pdev->dev.platform_data; -+ -+ if (!info) -+ { -+ dev_err(&pdev->dev, "Hm... too bad: no platform data for ts\n"); -+ return -EINVAL; -+ } -+ -+#ifdef CONFIG_TOUCHSCREEN_S3C2410_DEBUG -+ printk(DEBUG_LVL "Entering s3c2410ts_init\n"); -+#endif -+ -+ adc_clock = clk_get(NULL, "adc"); -+ if (!adc_clock) { -+ dev_err(&pdev->dev, "failed to get adc clock source\n"); -+ return -ENOENT; -+ } -+ clk_enable(adc_clock); -+ -+#ifdef CONFIG_TOUCHSCREEN_S3C2410_DEBUG -+ printk(DEBUG_LVL "got and enabled clock\n"); -+#endif -+ -+ base_addr = ioremap(S3C2410_PA_ADC,0x20); -+ if (base_addr == NULL) { -+ dev_err(&pdev->dev, "Failed to remap register block\n"); -+ ret = -ENOMEM; -+ goto bail0; -+ } -+ -+ -+ /* If we acutally are a S3C2410: Configure GPIOs */ -+ if (!strcmp(pdev->name, "s3c2410-ts")) -+ s3c2410_ts_connect(); -+ -+ if ((info->presc & 0xff) > 0) -+ writel(S3C2410_ADCCON_PRSCEN | -+ S3C2410_ADCCON_PRSCVL(info->presc&0xFF), -+ base_addr + S3C2410_ADCCON); -+ else -+ writel(0, base_addr+S3C2410_ADCCON); -+ -+ /* Initialise registers */ -+ if ((info->delay & 0xffff) > 0) -+ writel(info->delay & 0xffff, base_addr + S3C2410_ADCDLY); -+ -+ writel(WAIT4INT(0), base_addr + S3C2410_ADCTSC); -+ -+ /* Initialise input stuff */ -+ memset(&ts, 0, sizeof(struct s3c2410ts)); -+ input_dev = input_allocate_device(); -+ -+ if (!input_dev) { -+ dev_err(&pdev->dev, "Unable to allocate the input device\n"); -+ ret = -ENOMEM; -+ goto bail1; -+ } -+ -+ ts.dev = input_dev; -+ ts.dev->evbit[0] = BIT_MASK(EV_SYN) | BIT_MASK(EV_KEY) | -+ BIT_MASK(EV_ABS); -+ ts.dev->keybit[BIT_WORD(BTN_TOUCH)] = BIT_MASK(BTN_TOUCH); -+ input_set_abs_params(ts.dev, ABS_X, 0, 0x3FF, 0, 0); -+ input_set_abs_params(ts.dev, ABS_Y, 0, 0x3FF, 0, 0); -+ input_set_abs_params(ts.dev, ABS_PRESSURE, 0, 1, 0, 0); -+ -+ ts.dev->name = s3c2410ts_name; -+ ts.dev->id.bustype = BUS_RS232; -+ ts.dev->id.vendor = 0xDEAD; -+ ts.dev->id.product = 0xBEEF; -+ ts.dev->id.version = S3C2410TSVERSION; -+ ts.state = TS_STATE_STANDBY; -+ ts.event_fifo = kfifo_alloc(TS_EVENT_FIFO_SIZE, GFP_KERNEL, NULL); -+ if (IS_ERR(ts.event_fifo)) { -+ ret = -EIO; -+ goto bail2; -+ } -+ -+ /* create the filter chain set up for the 2 coordinates we produce */ -+ ret = ts_filter_create_chain( -+ pdev, (struct ts_filter_api **)&info->filter_sequence, -+ (void *)&info->filter_config, ts.tsf, ARRAY_SIZE(ts.coords)); -+ if (ret) -+ dev_info(&pdev->dev, "%d filter(s) initialized\n", ret); -+ else /* this is OK, just means there won't be any filtering */ -+ dev_info(&pdev->dev, "Unfiltered output selected\n"); -+ -+ if (ts.tsf[0]) -+ (ts.tsf[0]->api->clear)(ts.tsf[0]); -+ else -+ dev_info(&pdev->dev, "No filtering\n"); -+ -+ /* Get irqs */ -+ if (request_irq(IRQ_ADC, stylus_action, IRQF_SAMPLE_RANDOM, -+ "s3c2410_action", ts.dev)) { -+ dev_err(&pdev->dev, "Could not allocate ts IRQ_ADC !\n"); -+ iounmap(base_addr); -+ ret = -EIO; -+ goto bail3; -+ } -+ if (request_irq(IRQ_TC, stylus_updown, IRQF_SAMPLE_RANDOM, -+ "s3c2410_action", ts.dev)) { -+ dev_err(&pdev->dev, "Could not allocate ts IRQ_TC !\n"); -+ free_irq(IRQ_ADC, ts.dev); -+ iounmap(base_addr); -+ ret = -EIO; -+ goto bail4; -+ } -+ -+ dev_info(&pdev->dev, "successfully loaded\n"); -+ -+ /* All went ok, so register to the input system */ -+ rc = input_register_device(ts.dev); -+ if (rc) { -+ ret = -EIO; -+ goto bail5; -+ } -+ -+ return 0; -+ -+bail5: -+ free_irq(IRQ_TC, ts.dev); -+ free_irq(IRQ_ADC, ts.dev); -+ clk_disable(adc_clock); -+ iounmap(base_addr); -+ disable_irq(IRQ_TC); -+bail4: -+ disable_irq(IRQ_ADC); -+bail3: -+ ts_filter_destroy_chain(pdev, ts.tsf); -+ kfifo_free(ts.event_fifo); -+bail2: -+ input_unregister_device(ts.dev); -+bail1: -+ iounmap(base_addr); -+bail0: -+ -+ return ret; -+} -+ -+static int s3c2410ts_remove(struct platform_device *pdev) -+{ -+ disable_irq(IRQ_ADC); -+ disable_irq(IRQ_TC); -+ free_irq(IRQ_TC,ts.dev); -+ free_irq(IRQ_ADC,ts.dev); -+ -+ if (adc_clock) { -+ clk_disable(adc_clock); -+ clk_put(adc_clock); -+ adc_clock = NULL; -+ } -+ -+ input_unregister_device(ts.dev); -+ iounmap(base_addr); -+ -+ ts_filter_destroy_chain(pdev, ts.tsf); -+ -+ kfifo_free(ts.event_fifo); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+static int s3c2410ts_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ writel(TSC_SLEEP, base_addr+S3C2410_ADCTSC); -+ writel(readl(base_addr+S3C2410_ADCCON) | S3C2410_ADCCON_STDBM, -+ base_addr+S3C2410_ADCCON); -+ -+ disable_irq(IRQ_ADC); -+ disable_irq(IRQ_TC); -+ -+ clk_disable(adc_clock); -+ -+ return 0; -+} -+ -+static int s3c2410ts_resume(struct platform_device *pdev) -+{ -+ struct s3c2410_ts_mach_info *info = -+ ( struct s3c2410_ts_mach_info *)pdev->dev.platform_data; -+ -+ clk_enable(adc_clock); -+ mdelay(1); -+ -+ if (ts.tsf[0]) -+ (ts.tsf[0]->api->clear)(ts.tsf[0]); -+ -+ enable_irq(IRQ_ADC); -+ enable_irq(IRQ_TC); -+ -+ if ((info->presc&0xff) > 0) -+ writel(S3C2410_ADCCON_PRSCEN | -+ S3C2410_ADCCON_PRSCVL(info->presc&0xFF), -+ base_addr+S3C2410_ADCCON); -+ else -+ writel(0,base_addr+S3C2410_ADCCON); -+ -+ /* Initialise registers */ -+ if ((info->delay & 0xffff) > 0) -+ writel(info->delay & 0xffff, base_addr+S3C2410_ADCDLY); -+ -+ writel(WAIT4INT(0), base_addr+S3C2410_ADCTSC); -+ -+ return 0; -+} -+ -+#else -+#define s3c2410ts_suspend NULL -+#define s3c2410ts_resume NULL -+#endif -+ -+static struct platform_driver s3c2410ts_driver = { -+ .driver = { -+ .name = "s3c2410-ts", -+ .owner = THIS_MODULE, -+ }, -+ .probe = s3c2410ts_probe, -+ .remove = s3c2410ts_remove, -+ .suspend = s3c2410ts_suspend, -+ .resume = s3c2410ts_resume, -+ -+}; -+ -+static struct platform_driver s3c2440ts_driver = { -+ .driver = { -+ .name = "s3c2440-ts", -+ .owner = THIS_MODULE, -+ }, -+ .probe = s3c2410ts_probe, -+ .remove = s3c2410ts_remove, -+ .suspend = s3c2410ts_suspend, -+ .resume = s3c2410ts_resume, -+ -+}; -+ -+static int __init s3c2410ts_init(void) -+{ -+ int rc; -+ -+ rc = platform_driver_register(&s3c2410ts_driver); -+ if (rc < 0) -+ return rc; -+ -+ rc = platform_driver_register(&s3c2440ts_driver); -+ if (rc < 0) -+ platform_driver_unregister(&s3c2410ts_driver); -+ -+ return rc; -+} -+ -+static void __exit s3c2410ts_exit(void) -+{ -+ platform_driver_unregister(&s3c2440ts_driver); -+ platform_driver_unregister(&s3c2410ts_driver); -+} -+ -+module_init(s3c2410ts_init); -+module_exit(s3c2410ts_exit); -+ ---- /dev/null -+++ b/drivers/input/touchscreen/ts_filter.c -@@ -0,0 +1,64 @@ -+/* -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ * -+ * Copyright (c) 2008 Andy Green <andy@openmoko.com> -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/device.h> -+#include <linux/ts_filter.h> -+ -+int ts_filter_create_chain(struct platform_device *pdev, -+ struct ts_filter_api **api, void **config, -+ struct ts_filter **list, int count_coords) -+{ -+ int count = 0; -+ struct ts_filter *last = NULL; -+ -+ if (!api) -+ return 0; -+ -+ while (*api && count < MAX_TS_FILTER_CHAIN) { -+ *list = ((*api)->create)(pdev, *config++, count_coords); -+ if (!*list) { -+ printk(KERN_ERR "Filter %d failed init\n", count); -+ return count; -+ } -+ (*list)->api = *api++; -+ if (last) -+ last->next = *list; -+ last = *list; -+ list++; -+ count++; -+ } -+ -+ return count; -+} -+EXPORT_SYMBOL_GPL(ts_filter_create_chain); -+ -+void ts_filter_destroy_chain(struct platform_device *pdev, -+ struct ts_filter **list) -+{ -+ struct ts_filter **first; -+ int count = 0; -+ -+ first = list; -+ while (*list && count++ < MAX_TS_FILTER_CHAIN) { -+ ((*list)->api->destroy)(pdev, *list); -+ list++; -+ } -+ *first = NULL; -+} -+EXPORT_SYMBOL_GPL(ts_filter_destroy_chain); ---- /dev/null -+++ b/drivers/input/touchscreen/ts_filter_group.c -@@ -0,0 +1,219 @@ -+/* -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ * -+ * Copyright (C) 2008 by Openmoko, Inc. -+ * Author: Nelson Castillo <arhuaco@freaks-unidos.net> -+ * All rights reserved. -+ * -+ * This filter is useful to reject samples that are not reliable. We consider -+ * that a sample is not reliable if it deviates form the Majority. -+ * -+ * 1) We collect S samples. -+ * -+ * 2) For each dimension: -+ * -+ * - We sort the points. -+ * - Points that are "close enough" are considered to be in the same set. -+ * - We choose the set with more elements. If more than "threshold" -+ * points are in this set we use the first and the last point of the set -+ * to define the valid range for this dimension [min, max], otherwise we -+ * discard all the points and go to step 1. -+ * -+ * 3) We consider the unsorted S samples and try to feed them to the next -+ * filter in the chain. If one of the points of each sample -+ * is not in the allowed range for its dimension, we discard the sample. -+ * -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/slab.h> -+#include <linux/sort.h> -+#include <linux/ts_filter_group.h> -+ -+static void ts_filter_group_clear_internal(struct ts_filter_group *tsfg, -+ int attempts) -+{ -+ tsfg->N = 0; -+ tsfg->tries_left = attempts; -+} -+ -+static void ts_filter_group_clear(struct ts_filter *tsf) -+{ -+ struct ts_filter_group *tsfg = (struct ts_filter_group *)tsf; -+ -+ ts_filter_group_clear_internal(tsfg, tsfg->config->attempts); -+ -+ if (tsf->next) /* chain */ -+ (tsf->next->api->clear)(tsf->next); -+} -+ -+static struct ts_filter *ts_filter_group_create(struct platform_device *pdev, -+ void *conf, int count_coords) -+{ -+ struct ts_filter_group *tsfg; -+ int i; -+ -+ BUG_ON((count_coords < 1) || (count_coords > MAX_TS_FILTER_COORDS)); -+ -+ tsfg = kzalloc(sizeof(struct ts_filter_group), GFP_KERNEL); -+ if (!tsfg) -+ return NULL; -+ -+ tsfg->config = (struct ts_filter_group_configuration *)conf; -+ tsfg->tsf.count_coords = count_coords; -+ -+ BUG_ON(tsfg->config->attempts <= 0); -+ -+ tsfg->samples[0] = kmalloc((2 + count_coords) * sizeof(int) * -+ tsfg->config->extent, GFP_KERNEL); -+ if (!tsfg->samples[0]) { -+ kfree(tsfg); -+ return NULL; -+ } -+ for (i = 1; i < count_coords; ++i) -+ tsfg->samples[i] = tsfg->samples[0] + i * tsfg->config->extent; -+ tsfg->sorted_samples = tsfg->samples[0] + count_coords * -+ tsfg->config->extent; -+ tsfg->group_size = tsfg->samples[0] + (1 + count_coords) * -+ tsfg->config->extent; -+ -+ ts_filter_group_clear_internal(tsfg, tsfg->config->attempts); -+ -+ printk(KERN_INFO" Created group ts filter len %d depth %d close %d " -+ "thresh %d\n", tsfg->config->extent, count_coords, -+ tsfg->config->close_enough, tsfg->config->threshold); -+ -+ return &tsfg->tsf; -+} -+ -+static void ts_filter_group_destroy(struct platform_device *pdev, -+ struct ts_filter *tsf) -+{ -+ struct ts_filter_group *tsfg = (struct ts_filter_group *)tsf; -+ -+ kfree(tsfg->samples[0]); /* first guy has pointer from kmalloc */ -+ kfree(tsf); -+} -+ -+static void ts_filter_group_scale(struct ts_filter *tsf, int *coords) -+{ -+ if (tsf->next) -+ (tsf->next->api->scale)(tsf->next, coords); -+} -+ -+static int int_cmp(const void *_a, const void *_b) -+{ -+ const int *a = _a; -+ const int *b = _b; -+ -+ if (*a > *b) -+ return 1; -+ if (*a < *b) -+ return -1; -+ return 0; -+} -+ -+static int ts_filter_group_process(struct ts_filter *tsf, int *coords) -+{ -+ struct ts_filter_group *tsfg = (struct ts_filter_group *)tsf; -+ int n; -+ int i; -+ int ret = 0; /* ask for more samples by default */ -+ -+ BUG_ON(tsfg->N >= tsfg->config->extent); -+ -+ for (n = 0; n < tsf->count_coords; n++) -+ tsfg->samples[n][tsfg->N] = coords[n]; -+ -+ if (++tsfg->N < tsfg->config->extent) -+ return 0; /* we meed more samples */ -+ -+ for (n = 0; n < tsfg->tsf.count_coords; n++) { -+ int *v = tsfg->sorted_samples; -+ int ngroups = 0; -+ int best_size; -+ int best_idx = 0; -+ int idx = 0; -+ -+ memcpy(v, tsfg->samples[n], tsfg->N * sizeof(int)); -+ sort(v, tsfg->N, sizeof(int), int_cmp, NULL); -+ -+ tsfg->group_size[0] = 1; -+ for (i = 1; i < tsfg->N; ++i) { -+ if (v[i] - v[i - 1] <= tsfg->config->close_enough) -+ tsfg->group_size[ngroups]++; -+ else -+ tsfg->group_size[++ngroups] = 1; -+ } -+ ngroups++; -+ -+ best_size = tsfg->group_size[0]; -+ for (i = 1; i < ngroups; i++) { -+ idx += tsfg->group_size[i - 1]; -+ if (best_size < tsfg->group_size[i]) { -+ best_size = tsfg->group_size[i]; -+ best_idx = idx; -+ } -+ } -+ -+ if (best_size < tsfg->config->threshold) { -+ /* this set is not good enough for us */ -+ if (--tsfg->tries_left) { -+ ts_filter_group_clear_internal -+ (tsfg, tsfg->tries_left); -+ return 0; /* ask for more samples */ -+ } -+ return -1; /* we give up */ -+ } -+ -+ tsfg->range_min[n] = v[best_idx]; -+ tsfg->range_max[n] = v[best_idx + best_size - 1]; -+ } -+ -+ BUG_ON(!tsf->next); -+ -+ for (i = 0; i < tsfg->N; ++i) { -+ int r; -+ -+ for (n = 0; n < tsfg->tsf.count_coords; ++n) { -+ coords[n] = tsfg->samples[n][i]; -+ if (coords[n] < tsfg->range_min[n] || -+ coords[n] > tsfg->range_max[n]) -+ break; -+ } -+ -+ if (n != tsfg->tsf.count_coords) /* sample not OK */ -+ continue; -+ -+ r = (tsf->next->api->process)(tsf->next, coords); -+ if (r) { -+ ret = r; -+ break; -+ } -+ } -+ -+ ts_filter_group_clear_internal(tsfg, tsfg->config->attempts); -+ -+ return ret; -+} -+ -+struct ts_filter_api ts_filter_group_api = { -+ .create = ts_filter_group_create, -+ .destroy = ts_filter_group_destroy, -+ .clear = ts_filter_group_clear, -+ .process = ts_filter_group_process, -+ .scale = ts_filter_group_scale, -+}; -+ ---- /dev/null -+++ b/drivers/input/touchscreen/ts_filter_linear.c -@@ -0,0 +1,178 @@ -+/* -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ * -+ * Copyright (C) 2008 by Openmoko, Inc. -+ * Author: Nelson Castillo <arhuaco@freaks-unidos.net> -+ * All rights reserved. -+ * -+ * Linearly scale touchscreen values. -+ * -+ * Expose the TS_FILTER_LINEAR_NCONSTANTS for the linear transformation -+ * using sysfs. -+ * -+ */ -+ -+#include <linux/ts_filter_linear.h> -+#include <linux/kernel.h> -+#include <linux/slab.h> -+#include <linux/string.h> -+ -+ -+/* -+ * sysfs functions -+ */ -+ -+ -+static ssize_t const_attr_show(struct kobject *kobj, -+ struct attribute *attr, -+ char *buf) -+{ -+ struct const_attribute *a = to_const_attr(attr); -+ -+ return a->show(to_const_obj(kobj), a, buf); -+} -+ -+static ssize_t const_attr_store(struct kobject *kobj, -+ struct attribute *attr, -+ const char *buf, size_t len) -+{ -+ struct const_attribute *a = to_const_attr(attr); -+ -+ return a->store(to_const_obj(kobj), a, buf, len); -+} -+ -+static struct sysfs_ops const_sysfs_ops = { -+ .show = const_attr_show, -+ .store = const_attr_store, -+}; -+ -+static void const_release(struct kobject *kobj) -+{ -+ kfree(to_const_obj(kobj)->tsfl); -+} -+ -+static ssize_t const_show(struct const_obj *obj, struct const_attribute *attr, -+ char *buf) -+{ -+ int who; -+ -+ sscanf(attr->attr.name, "%d", &who); -+ return sprintf(buf, "%d\n", obj->tsfl->constants[who]); -+} -+ -+static ssize_t const_store(struct const_obj *obj, struct const_attribute *attr, -+ const char *buf, size_t count) -+{ -+ int who; -+ -+ sscanf(attr->attr.name, "%d", &who); -+ sscanf(buf, "%d", &obj->tsfl->constants[who]); -+ return count; -+} -+ -+/* -+ * filter functions -+ */ -+ -+static struct ts_filter *ts_filter_linear_create(struct platform_device *pdev, -+ void *conf, int count_coords) -+{ -+ struct ts_filter_linear *tsfl; -+ int i; -+ int ret; -+ -+ tsfl = kzalloc(sizeof(struct ts_filter_linear), GFP_KERNEL); -+ if (!tsfl) -+ return NULL; -+ -+ tsfl->config = (struct ts_filter_linear_configuration *)conf; -+ tsfl->tsf.count_coords = count_coords; -+ -+ for (i = 0; i < TS_FILTER_LINEAR_NCONSTANTS; ++i) { -+ tsfl->constants[i] = tsfl->config->constants[i]; -+ -+ /* sysfs */ -+ sprintf(tsfl->attr_names[i], "%d", i); -+ tsfl->kattrs[i].attr.name = tsfl->attr_names[i]; -+ tsfl->kattrs[i].attr.mode = 0666; -+ tsfl->kattrs[i].show = const_show; -+ tsfl->kattrs[i].store = const_store; -+ tsfl->attrs[i] = &tsfl->kattrs[i].attr; -+ } -+ tsfl->attrs[i] = NULL; -+ -+ tsfl->const_ktype.sysfs_ops = &const_sysfs_ops; -+ tsfl->const_ktype.release = const_release; -+ tsfl->const_ktype.default_attrs = tsfl->attrs; -+ tsfl->c_obj.tsfl = tsfl; /* kernel frees tsfl in const_release */ -+ -+ /* TODO: /sys/ts-calibration is not OK */ -+ ret = kobject_init_and_add(&tsfl->c_obj.kobj, &tsfl->const_ktype, -+ &pdev->dev.kobj, "calibration"); -+ if (ret) { -+ kobject_put(&tsfl->c_obj.kobj); -+ return NULL; -+ } -+ -+ printk(KERN_INFO" Created Linear ts filter depth %d\n", count_coords); -+ -+ return &tsfl->tsf; -+} -+ -+static void ts_filter_linear_destroy(struct platform_device *pdev, -+ struct ts_filter *tsf) -+{ -+ struct ts_filter_linear *tsfl = (struct ts_filter_linear *)tsf; -+ -+ /* kernel frees tsfl in const_release */ -+ kobject_put(&tsfl->c_obj.kobj); -+} -+ -+static void ts_filter_linear_clear(struct ts_filter *tsf) -+{ -+ if (tsf->next) /* chain */ -+ (tsf->next->api->clear)(tsf->next); -+} -+ -+ -+static void ts_filter_linear_scale(struct ts_filter *tsf, int *coords) -+{ -+ struct ts_filter_linear *tsfl = (struct ts_filter_linear *)tsf; -+ int *k = tsfl->constants; -+ int c0 = coords[tsfl->config->coord0]; -+ int c1 = coords[tsfl->config->coord1]; -+ -+ coords[tsfl->config->coord0] = (k[2] + k[0] * c0 + k[1] * c1) / k[6]; -+ coords[tsfl->config->coord1] = (k[5] + k[3] * c0 + k[4] * c1) / k[6]; -+ -+ if (tsf->next) -+ (tsf->next->api->scale)(tsf->next, coords); -+} -+ -+static int ts_filter_linear_process(struct ts_filter *tsf, int *coords) -+{ -+ if (tsf->next) -+ return (tsf->next->api->process)(tsf->next, coords); -+ -+ return 1; -+} -+ -+struct ts_filter_api ts_filter_linear_api = { -+ .create = ts_filter_linear_create, -+ .destroy = ts_filter_linear_destroy, -+ .clear = ts_filter_linear_clear, -+ .process = ts_filter_linear_process, -+ .scale = ts_filter_linear_scale, -+}; ---- /dev/null -+++ b/drivers/input/touchscreen/ts_filter_mean.c -@@ -0,0 +1,172 @@ -+/* -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ * -+ * Copyright (c) 2008 Andy Green <andy@openmoko.com> -+ * -+ * -+ * Mean has no effect if the samples are changing by more that the -+ * threshold set by averaging_threshold in the configuration. -+ * -+ * However while samples come in that don't go outside this threshold from -+ * the last reported sample, Mean replaces the samples with a simple mean -+ * of a configurable number of samples (set by bits_filter_length in config, -+ * which is 2^n, so 5 there makes 32 sample averaging). -+ * -+ * Mean works well if the input data is already good quality, reducing + / - 1 -+ * sample jitter when the stylus is still, or moving very slowly, without -+ * introducing abrupt transitions or reducing ability to follow larger -+ * movements. If you set the threshold higher than the dynamic range of the -+ * coordinates, you can just use it as a simple mean average. -+ */ -+ -+#include <linux/errno.h> -+#include <linux/kernel.h> -+#include <linux/slab.h> -+#include <linux/ts_filter_mean.h> -+ -+static void ts_filter_mean_clear_internal(struct ts_filter *tsf) -+{ -+ struct ts_filter_mean *tsfs = (struct ts_filter_mean *)tsf; -+ int n; -+ -+ for (n = 0; n < tsfs->tsf.count_coords; n++) { -+ tsfs->fhead[n] = 0; -+ tsfs->ftail[n] = 0; -+ tsfs->lowpass[n] = 0; -+ } -+} -+ -+static void ts_filter_mean_clear(struct ts_filter *tsf) -+{ -+ ts_filter_mean_clear_internal(tsf); -+ -+ if (tsf->next) /* chain */ -+ (tsf->next->api->clear)(tsf->next); -+} -+ -+static struct ts_filter *ts_filter_mean_create(struct platform_device *pdev, -+ void *config, int count_coords) -+{ -+ int *p; -+ int n; -+ struct ts_filter_mean *tsfs = kzalloc( -+ sizeof(struct ts_filter_mean), GFP_KERNEL); -+ -+ if (!tsfs) -+ return NULL; -+ -+ BUG_ON((count_coords < 1) || (count_coords > MAX_TS_FILTER_COORDS)); -+ tsfs->tsf.count_coords = count_coords; -+ -+ tsfs->config = (struct ts_filter_mean_configuration *)config; -+ -+ tsfs->config->extent = 1 << tsfs->config->bits_filter_length; -+ BUG_ON((tsfs->config->extent > 256) || (!tsfs->config->extent)); -+ -+ p = kmalloc(tsfs->config->extent * sizeof(int) * count_coords, -+ GFP_KERNEL); -+ if (!p) -+ return NULL; -+ -+ for (n = 0; n < count_coords; n++) { -+ tsfs->fifo[n] = p; -+ p += tsfs->config->extent; -+ } -+ -+ if (!tsfs->config->averaging_threshold) -+ tsfs->config->averaging_threshold = 0xffff; /* always active */ -+ -+ ts_filter_mean_clear_internal(&tsfs->tsf); -+ -+ printk(KERN_INFO" Created Mean ts filter len %d depth %d thresh %d\n", -+ tsfs->config->extent, count_coords, -+ tsfs->config->averaging_threshold); -+ -+ return &tsfs->tsf; -+} -+ -+static void ts_filter_mean_destroy(struct platform_device *pdev, -+ struct ts_filter *tsf) -+{ -+ struct ts_filter_mean *tsfs = (struct ts_filter_mean *)tsf; -+ -+ kfree(tsfs->fifo[0]); /* first guy has pointer from kmalloc */ -+ kfree(tsf); -+} -+ -+static void ts_filter_mean_scale(struct ts_filter *tsf, int *coords) -+{ -+ if (tsf->next) /* chain */ -+ (tsf->next->api->scale)(tsf->next, coords); -+} -+ -+/* give us the raw sample data in x and y, and if we return 1 then you can -+ * get a filtered coordinate from tsm->x and tsm->y: if we return 0 you didn't -+ * fill the filter with samples yet. -+ */ -+ -+static int ts_filter_mean_process(struct ts_filter *tsf, int *coords) -+{ -+ struct ts_filter_mean *tsfs = (struct ts_filter_mean *)tsf; -+ int n; -+ int len; -+ -+ for (n = 0; n < tsf->count_coords; n++) { -+ -+ /* has he moved far enough away that we should abandon current -+ * low pass filtering state? -+ */ -+ if ((coords[n] < (tsfs->reported[n] - -+ tsfs->config->averaging_threshold)) || -+ (coords[n] > (tsfs->reported[n] + -+ tsfs->config->averaging_threshold))) { -+ tsfs->fhead[n] = 0; -+ tsfs->ftail[n] = 0; -+ tsfs->lowpass[n] = 0; -+ } -+ -+ /* capture this sample into fifo and sum */ -+ tsfs->fifo[n][tsfs->fhead[n]++] = coords[n]; -+ if (tsfs->fhead[n] == tsfs->config->extent) -+ tsfs->fhead[n] = 0; -+ tsfs->lowpass[n] += coords[n]; -+ -+ /* adjust the sum into an average and use that*/ -+ len = (tsfs->fhead[n] - tsfs->ftail[n]) & -+ (tsfs->config->extent - 1); -+ coords[n] = (tsfs->lowpass[n] + (len >> 1)) / len; -+ tsfs->reported[n] = coords[n]; -+ -+ /* remove oldest sample if we are full */ -+ if (len == (tsfs->config->extent - 1)) { -+ tsfs->lowpass[n] -= tsfs->fifo[n][tsfs->ftail[n]++]; -+ if (tsfs->ftail[n] == tsfs->config->extent) -+ tsfs->ftail[n] = 0; -+ } -+ } -+ -+ if (tsf->next) /* chain */ -+ return (tsf->next->api->process)(tsf->next, coords); -+ -+ return 1; -+} -+ -+struct ts_filter_api ts_filter_mean_api = { -+ .create = ts_filter_mean_create, -+ .destroy = ts_filter_mean_destroy, -+ .clear = ts_filter_mean_clear, -+ .process = ts_filter_mean_process, -+ .scale = ts_filter_mean_scale, -+}; ---- /dev/null -+++ b/drivers/input/touchscreen/ts_filter_median.c -@@ -0,0 +1,215 @@ -+/* -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License as published by -+ * the Free Software Foundation; either version 2 of the License, or -+ * (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA -+ * -+ * Copyright (c) 2008 Andy Green <andy@openmoko.com> -+ * -+ * -+ * Median averaging stuff. We sort incoming raw samples into an array of -+ * MEDIAN_SIZE length, discarding the oldest sample each time once we are full. -+ * We then return the sum of the middle three samples for X and Y. It means -+ * the final result must be divided by (3 * scaling factor) to correct for -+ * avoiding the repeated /3. -+ * -+ * This strongly rejects brief excursions away from a central point that is -+ * sticky in time compared to the excursion duration. -+ * -+ * Thanks to Dale Schumacher (who wrote some example code) and Carl-Daniel -+ * Halifinger who pointed out this would be a good method. -+ */ -+ -+#include <linux/errno.h> -+#include <linux/kernel.h> -+#include <linux/slab.h> -+#include <linux/ts_filter_median.h> -+ -+static void ts_filter_median_insert(int *p, int sample, int count) -+{ -+ int n; -+ -+ /* search through what we got so far to find where to put sample */ -+ for (n = 0; n < count; n++) -+ /* we met somebody bigger than us? */ -+ if (sample < p[n]) { -+ /* starting from the end, push bigger guys down one */ -+ for (count--; count >= n; count--) -+ p[count + 1] = p[count]; -+ p[n] = sample; /* and put us in place of first bigger */ -+ return; -+ } -+ -+ p[count] = sample; /* nobody was bigger than us, add us on the end */ -+} -+ -+static void ts_filter_median_del(int *p, int value, int count) -+{ -+ int index; -+ -+ for (index = 0; index < count; index++) -+ if (p[index] == value) { -+ for (; index < count; index++) -+ p[index] = p[index + 1]; -+ return; -+ } -+} -+ -+ -+static void ts_filter_median_clear_internal(struct ts_filter *tsf) -+{ -+ struct ts_filter_median *tsfm = (struct ts_filter_median *)tsf; -+ -+ tsfm->pos = 0; -+ tsfm->valid = 0; -+ -+} -+static void ts_filter_median_clear(struct ts_filter *tsf) -+{ -+ ts_filter_median_clear_internal(tsf); -+ -+ if (tsf->next) /* chain */ -+ (tsf->next->api->clear)(tsf->next); -+} -+ -+static struct ts_filter *ts_filter_median_create(struct platform_device *pdev, -+ void *conf, int count_coords) -+{ -+ int *p; -+ int n; -+ struct ts_filter_median *tsfm = kzalloc(sizeof(struct ts_filter_median), -+ GFP_KERNEL); -+ -+ if (!tsfm) -+ return NULL; -+ -+ tsfm->config = (struct ts_filter_median_configuration *)conf; -+ BUG_ON((count_coords < 1) || (count_coords > MAX_TS_FILTER_COORDS)); -+ tsfm->tsf.count_coords = count_coords; -+ -+ tsfm->config->midpoint = (tsfm->config->extent >> 1) + 1; -+ -+ p = kmalloc(2 * count_coords * sizeof(int) * (tsfm->config->extent + 1), -+ GFP_KERNEL); -+ if (!p) { -+ kfree(tsfm); -+ return NULL; -+ } -+ -+ for (n = 0; n < count_coords; n++) { -+ tsfm->sort[n] = p; -+ p += tsfm->config->extent + 1; -+ tsfm->fifo[n] = p; -+ p += tsfm->config->extent + 1; -+ } -+ -+ ts_filter_median_clear_internal(&tsfm->tsf); -+ -+ printk(KERN_INFO" Created Median ts filter len %d depth %d dec %d\n", -+ tsfm->config->extent, count_coords, -+ tsfm->config->decimation_threshold); -+ -+ return &tsfm->tsf; -+} -+ -+static void ts_filter_median_destroy(struct platform_device *pdev, -+ struct ts_filter *tsf) -+{ -+ struct ts_filter_median *tsfm = (struct ts_filter_median *)tsf; -+ -+ kfree(tsfm->sort[0]); /* first guy has pointer from kmalloc */ -+ kfree(tsf); -+} -+ -+static void ts_filter_median_scale(struct ts_filter *tsf, int *coords) -+{ -+ int n; -+ -+ for (n = 0; n < tsf->count_coords; n++) -+ coords[n] = (coords[n] + 2) / 3; -+ -+ if (tsf->next) /* chain */ -+ (tsf->next->api->scale)(tsf->next, coords); -+} -+ -+/* give us the raw sample data coords, and if we return 1 then you can -+ * get a filtered coordinate from coords: if we return 0 you didn't -+ * fill all the filters with samples yet. -+ */ -+ -+static int ts_filter_median_process(struct ts_filter *tsf, int *coords) -+{ -+ struct ts_filter_median *tsfm = (struct ts_filter_median *)tsf; -+ int n; -+ int movement = 1; -+ -+ for (n = 0; n < tsf->count_coords; n++) { -+ /* grab copy in insertion order to remove when oldest */ -+ tsfm->fifo[n][tsfm->pos] = coords[n]; -+ /* insert these samples in sorted order in the median arrays */ -+ ts_filter_median_insert(tsfm->sort[n], coords[n], tsfm->valid); -+ } -+ /* move us on in the fifo */ -+ if (++tsfm->pos == (tsfm->config->extent + 1)) -+ tsfm->pos = 0; -+ -+ /* we have finished a median sampling? */ -+ if (++tsfm->valid != tsfm->config->extent) -+ return 0; /* no valid sample to use */ -+ -+ /* discard the oldest sample in median sorted array */ -+ tsfm->valid--; -+ -+ /* sum the middle 3 in the median sorted arrays. We don't divide back -+ * down which increases the sum resolution by a factor of 3 until the -+ * scale API is called -+ */ -+ for (n = 0; n < tsfm->tsf.count_coords; n++) -+ /* perform the deletion of the oldest sample */ -+ ts_filter_median_del(tsfm->sort[n], tsfm->fifo[n][tsfm->pos], -+ tsfm->valid); -+ -+ tsfm->decimation_count--; -+ if (tsfm->decimation_count >= 0) -+ return 0; -+ -+ for (n = 0; n < tsfm->tsf.count_coords; n++) { -+ /* give the coordinate result from summing median 3 */ -+ coords[n] = tsfm->sort[n][tsfm->config->midpoint - 1] + -+ tsfm->sort[n][tsfm->config->midpoint] + -+ tsfm->sort[n][tsfm->config->midpoint + 1] -+ ; -+ -+ movement += abs(tsfm->last_issued[n] - coords[n]); -+ } -+ -+ if (movement > tsfm->config->decimation_threshold) /* fast */ -+ tsfm->decimation_count = tsfm->config->decimation_above; -+ else -+ tsfm->decimation_count = tsfm->config->decimation_below; -+ -+ memcpy(&tsfm->last_issued[0], coords, -+ tsfm->tsf.count_coords * sizeof(int)); -+ -+ if (tsf->next) /* chain */ -+ return (tsf->next->api->process)(tsf->next, coords); -+ -+ return 1; -+} -+ -+struct ts_filter_api ts_filter_median_api = { -+ .create = ts_filter_median_create, -+ .destroy = ts_filter_median_destroy, -+ .clear = ts_filter_median_clear, -+ .process = ts_filter_median_process, -+ .scale = ts_filter_median_scale, -+}; ---- a/drivers/Kconfig -+++ b/drivers/Kconfig -@@ -107,4 +107,6 @@ source "drivers/uio/Kconfig" - source "drivers/xen/Kconfig" - - source "drivers/staging/Kconfig" -+ -+source "drivers/android/Kconfig" - endmenu ---- a/drivers/leds/Kconfig -+++ b/drivers/leds/Kconfig -@@ -33,7 +33,7 @@ config LEDS_LOCOMO - - config LEDS_S3C24XX - tristate "LED Support for Samsung S3C24XX GPIO LEDs" -- depends on LEDS_CLASS && ARCH_S3C2410 -+ depends on LEDS_CLASS && ARCH_S3C2410 && S3C2410_PWM - help - This option enables support for LEDs connected to GPIO lines - on Samsung S3C24XX series CPUs, such as the S3C2410 and S3C2440. -@@ -171,6 +171,18 @@ config LEDS_DA903X - This option enables support for on-chip LED drivers found - on Dialog Semiconductor DA9030/DA9034 PMICs. - -+config LEDS_NEO1973_VIBRATOR -+ tristate "Vibrator Support for the FIC Neo1973 GSM phone" -+ depends on LEDS_CLASS && MACH_NEO1973 -+ help -+ This option enables support for the vibrator on the FIC Neo1973. -+ -+config LEDS_NEO1973_GTA02 -+ tristate "LED Support for the FIC Neo1973 (GTA02)" -+ depends on LEDS_CLASS && MACH_NEO1973_GTA02 -+ help -+ This option enables support for the LEDs on the FIC Neo1973. -+ - comment "LED Triggers" - - config LEDS_TRIGGERS ---- a/drivers/leds/led-class.c -+++ b/drivers/leds/led-class.c -@@ -56,8 +56,10 @@ static ssize_t led_brightness_store(stru - if (count == size) { - ret = count; - -+#if 0 /* This is really bad. Don't do it!!!! */ - if (state == LED_OFF) - led_trigger_remove(led_cdev); -+#endif - led_set_brightness(led_cdev, state); - } - ---- /dev/null -+++ b/drivers/leds/leds-neo1973-gta02.c -@@ -0,0 +1,179 @@ -+/* -+ * LED driver for the Openmoko GTA02 GSM phone -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/platform_device.h> -+#include <linux/leds.h> -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+#include <mach/gta02.h> -+#include <plat/regs-timer.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+ -+#define MAX_LEDS 3 -+#define COUNTER 256 -+ -+struct gta02_led_priv -+{ -+ spinlock_t lock; -+ struct led_classdev cdev; -+ unsigned int gpio; -+}; -+ -+struct gta02_led_bundle -+{ -+ int num_leds; -+ struct gta02_led_priv led[MAX_LEDS]; -+}; -+ -+static inline struct gta02_led_priv *to_priv(struct led_classdev *led_cdev) -+{ -+ return container_of(led_cdev, struct gta02_led_priv, cdev); -+} -+ -+static inline struct gta02_led_bundle *to_bundle(struct led_classdev *led_cdev) -+{ -+ return dev_get_drvdata(led_cdev->dev->parent); -+} -+ -+static void gta02led_set(struct led_classdev *led_cdev, -+ enum led_brightness value) -+{ -+ unsigned long flags; -+ struct gta02_led_priv *lp = to_priv(led_cdev); -+ -+ spin_lock_irqsave(&lp->lock, flags); -+ neo1973_gpb_setpin(lp->gpio, value ? 1 : 0); -+ spin_unlock_irqrestore(&lp->lock, flags); -+} -+ -+#ifdef CONFIG_PM -+static int gta02led_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ struct gta02_led_bundle *bundle = platform_get_drvdata(pdev); -+ int i; -+ -+ for (i = 0; i < bundle->num_leds; i++) -+ led_classdev_suspend(&bundle->led[i].cdev); -+ -+ return 0; -+} -+ -+static int gta02led_resume(struct platform_device *pdev) -+{ -+ struct gta02_led_bundle *bundle = platform_get_drvdata(pdev); -+ int i; -+ -+ for (i = 0; i < bundle->num_leds; i++) -+ led_classdev_resume(&bundle->led[i].cdev); -+ -+ return 0; -+} -+#endif -+ -+static int __init gta02led_probe(struct platform_device *pdev) -+{ -+ int i, rc; -+ struct gta02_led_bundle *bundle; -+ -+ if (!machine_is_neo1973_gta02()) -+ return -EIO; -+ -+ bundle = kzalloc(sizeof(struct gta02_led_bundle), GFP_KERNEL); -+ if (!bundle) -+ return -ENOMEM; -+ platform_set_drvdata(pdev, bundle); -+ -+ for (i = 0; i < pdev->num_resources; i++) { -+ struct gta02_led_priv *lp; -+ struct resource *r; -+ -+ if (i >= MAX_LEDS) -+ break; -+ -+ r = platform_get_resource(pdev, 0, i); -+ if (!r || !r->start || !r->name) -+ continue; -+ -+ lp = &bundle->led[i]; -+ -+ lp->gpio = r->start; -+ lp->cdev.name = r->name; -+ lp->cdev.brightness_set = gta02led_set; -+ -+ switch (lp->gpio) { -+ case S3C2410_GPB0: -+ case S3C2410_GPB1: -+ case S3C2410_GPB2: -+ s3c2410_gpio_cfgpin(lp->gpio, S3C2410_GPIO_OUTPUT); -+ neo1973_gpb_add_shadow_gpio(lp->gpio); -+ break; -+ default: -+ break; -+ } -+ -+ spin_lock_init(&lp->lock); -+ rc = led_classdev_register(&pdev->dev, &lp->cdev); -+ } -+ -+ bundle->num_leds = i; -+ -+ return 0; -+} -+ -+static int gta02led_remove(struct platform_device *pdev) -+{ -+ struct gta02_led_bundle *bundle = platform_get_drvdata(pdev); -+ int i; -+ -+ for (i = 0; i < bundle->num_leds; i++) { -+ struct gta02_led_priv *lp = &bundle->led[i]; -+ gta02led_set(&lp->cdev, 0); -+ led_classdev_unregister(&lp->cdev); -+ } -+ -+ platform_set_drvdata(pdev, NULL); -+ kfree(bundle); -+ -+ return 0; -+} -+ -+static struct platform_driver gta02led_driver = { -+ .probe = gta02led_probe, -+ .remove = gta02led_remove, -+#ifdef CONFIG_PM -+ .suspend = gta02led_suspend, -+ .resume = gta02led_resume, -+#endif -+ .driver = { -+ .name = "gta02-led", -+ }, -+}; -+ -+static int __init gta02led_init(void) -+{ -+ return platform_driver_register(>a02led_driver); -+} -+ -+static void __exit gta02led_exit(void) -+{ -+ platform_driver_unregister(>a02led_driver); -+} -+ -+module_init(gta02led_init); -+module_exit(gta02led_exit); -+ -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("Openmoko GTA02 LED driver"); -+MODULE_LICENSE("GPL"); ---- /dev/null -+++ b/drivers/leds/leds-neo1973-vibrator.c -@@ -0,0 +1,209 @@ -+/* -+ * LED driver for the vibrator of the Openmoko GTA01/GTA02 GSM Phones -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * Javi Roman <javiroman@kernel-labs.org>: -+ * Implement PWM support for GTA01Bv4 and later -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/platform_device.h> -+#include <linux/leds.h> -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+#include <mach/pwm.h> -+#include <mach/gta01.h> -+#include <plat/regs-timer.h> -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+#include <mach/fiq_ipc_gta02.h> -+#endif -+#include <asm/plat-s3c24xx/neo1973.h> -+ -+#define COUNTER 64 -+ -+struct neo1973_vib_priv { -+ struct led_classdev cdev; -+ unsigned int gpio; -+ spinlock_t lock; -+ unsigned int has_pwm; -+ struct s3c2410_pwm pwm; -+}; -+ -+static void neo1973_vib_vib_set(struct led_classdev *led_cdev, -+ enum led_brightness value) -+{ -+ unsigned long flags; -+ struct neo1973_vib_priv *vp = container_of(led_cdev, -+ struct neo1973_vib_priv, -+ cdev); -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+ if (machine_is_neo1973_gta02()) { /* use FIQ to control GPIO */ -+ fiq_ipc.vib_pwm = value; /* set it for FIQ */ -+ fiq_kick(); /* start up FIQs if not already going */ -+ return; -+ } -+#endif -+ /* -+ * value == 255 -> 99% duty cycle (full power) -+ * value == 128 -> 50% duty cycle (medium power) -+ * value == 0 -> 0% duty cycle (zero power) -+ */ -+ spin_lock_irqsave(&vp->lock, flags); -+ if (vp->has_pwm) { -+ s3c2410_pwm_duty_cycle(value / 4, &vp->pwm); -+ } -+ else { -+ neo1973_gpb_setpin(vp->gpio, value ? 1 : 0); -+ } -+ spin_unlock_irqrestore(&vp->lock, flags); -+} -+ -+static struct neo1973_vib_priv neo1973_vib_led = { -+ .cdev = { -+ .name = "neo1973:vibrator", -+ .brightness_set = neo1973_vib_vib_set, -+ }, -+}; -+ -+static int neo1973_vib_init_hw(struct neo1973_vib_priv *vp) -+{ -+ int rc; -+ -+ rc = s3c2410_pwm_init(&vp->pwm); -+ if (rc) -+ return rc; -+ -+ vp->pwm.timerid = PWM3; -+ /* use same prescaler as arch/arm/plat-s3c24xx/time.c */ -+ vp->pwm.prescaler = (6 - 1) / 2; -+ vp->pwm.divider = S3C2410_TCFG1_MUX3_DIV2; -+ vp->pwm.counter = COUNTER; -+ vp->pwm.comparer = COUNTER; -+ -+ rc = s3c2410_pwm_enable(&vp->pwm); -+ if (rc) -+ return rc; -+ -+ s3c2410_pwm_start(&vp->pwm); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+static int neo1973_vib_suspend(struct platform_device *dev, pm_message_t state) -+{ -+ led_classdev_suspend(&neo1973_vib_led.cdev); -+ return 0; -+} -+ -+static int neo1973_vib_resume(struct platform_device *dev) -+{ -+ struct neo1973_vib_priv *vp = platform_get_drvdata(dev); -+ -+ if (vp->has_pwm) -+ neo1973_vib_init_hw(vp); -+ -+ led_classdev_resume(&neo1973_vib_led.cdev); -+ -+ return 0; -+} -+#endif /* CONFIG_PM */ -+ -+static int __init neo1973_vib_probe(struct platform_device *pdev) -+{ -+ struct resource *r; -+ int rc; -+ -+ if (!machine_is_neo1973_gta01() && !machine_is_neo1973_gta02()) -+ return -EIO; -+ -+ r = platform_get_resource(pdev, 0, 0); -+ if (!r || !r->start) -+ return -EIO; -+ -+ neo1973_vib_led.gpio = r->start; -+ platform_set_drvdata(pdev, &neo1973_vib_led); -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+ if (machine_is_neo1973_gta02()) { /* use FIQ to control GPIO */ -+ neo1973_gpb_setpin(neo1973_vib_led.gpio, 0); /* off */ -+ s3c2410_gpio_cfgpin(neo1973_vib_led.gpio, S3C2410_GPIO_OUTPUT); -+ /* safe, kmalloc'd copy needed for FIQ ISR */ -+ fiq_ipc.vib_gpio_pin = neo1973_vib_led.gpio; -+ fiq_ipc.vib_pwm = 0; /* off */ -+ goto configured; -+ } -+#endif -+ -+ /* TOUT3 */ -+ if (neo1973_vib_led.gpio == S3C2410_GPB3) { -+ rc = neo1973_vib_init_hw(&neo1973_vib_led); -+ if (rc) -+ return rc; -+ -+ s3c2410_pwm_duty_cycle(0, &neo1973_vib_led.pwm); -+ s3c2410_gpio_cfgpin(neo1973_vib_led.gpio, S3C2410_GPB3_TOUT3); -+ neo1973_vib_led.has_pwm = 1; -+ } -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+configured: -+#endif -+ spin_lock_init(&neo1973_vib_led.lock); -+ -+ return led_classdev_register(&pdev->dev, &neo1973_vib_led.cdev); -+} -+ -+static int neo1973_vib_remove(struct platform_device *pdev) -+{ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+ if (machine_is_neo1973_gta02()) /* use FIQ to control GPIO */ -+ fiq_ipc.vib_pwm = 0; /* off */ -+ /* would only need kick if already off so no kick needed */ -+#endif -+ -+ if (neo1973_vib_led.has_pwm) -+ s3c2410_pwm_disable(&neo1973_vib_led.pwm); -+ -+ led_classdev_unregister(&neo1973_vib_led.cdev); -+ -+ return 0; -+} -+ -+static struct platform_driver neo1973_vib_driver = { -+ .probe = neo1973_vib_probe, -+ .remove = neo1973_vib_remove, -+#ifdef CONFIG_PM -+ .suspend = neo1973_vib_suspend, -+ .resume = neo1973_vib_resume, -+#endif -+ .driver = { -+ .name = "neo1973-vibrator", -+ }, -+}; -+ -+static int __init neo1973_vib_init(void) -+{ -+ return platform_driver_register(&neo1973_vib_driver); -+} -+ -+static void __exit neo1973_vib_exit(void) -+{ -+ platform_driver_unregister(&neo1973_vib_driver); -+} -+ -+module_init(neo1973_vib_init); -+module_exit(neo1973_vib_exit); -+ -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("Openmoko GTA01/GTA02 vibrator driver"); -+MODULE_LICENSE("GPL"); ---- a/drivers/leds/Makefile -+++ b/drivers/leds/Makefile -@@ -24,6 +24,8 @@ obj-$(CONFIG_LEDS_FSG) += leds-fsg.o - obj-$(CONFIG_LEDS_PCA955X) += leds-pca955x.o - obj-$(CONFIG_LEDS_DA903X) += leds-da903x.o - obj-$(CONFIG_LEDS_HP_DISK) += leds-hp-disk.o -+obj-$(CONFIG_LEDS_NEO1973_VIBRATOR) += leds-neo1973-vibrator.o -+obj-$(CONFIG_LEDS_NEO1973_GTA02) += leds-neo1973-gta02.o - - # LED Triggers - obj-$(CONFIG_LEDS_TRIGGER_TIMER) += ledtrig-timer.o ---- a/drivers/Makefile -+++ b/drivers/Makefile -@@ -86,6 +86,7 @@ obj-$(CONFIG_CPU_IDLE) += cpuidle/ - obj-y += idle/ - obj-$(CONFIG_MMC) += mmc/ - obj-$(CONFIG_MEMSTICK) += memstick/ -+obj-$(CONFIG_AR6000_WLAN) += ar6000/ - obj-$(CONFIG_NEW_LEDS) += leds/ - obj-$(CONFIG_INFINIBAND) += infiniband/ - obj-$(CONFIG_SGI_SN) += sn/ -@@ -98,6 +99,7 @@ obj-$(CONFIG_DCA) += dca/ - obj-$(CONFIG_HID) += hid/ - obj-$(CONFIG_PPC_PS3) += ps3/ - obj-$(CONFIG_OF) += of/ -+obj-y += android/ - obj-$(CONFIG_SSB) += ssb/ - obj-$(CONFIG_VIRTIO) += virtio/ - obj-$(CONFIG_REGULATOR) += regulator/ ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-core.c -@@ -0,0 +1,1399 @@ -+/* Smedia Glamo 336x/337x driver -+ * -+ * (C) 2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/errno.h> -+#include <linux/string.h> -+#include <linux/mm.h> -+#include <linux/tty.h> -+#include <linux/slab.h> -+#include <linux/delay.h> -+#include <linux/fb.h> -+#include <linux/init.h> -+#include <linux/irq.h> -+#include <linux/interrupt.h> -+#include <linux/workqueue.h> -+#include <linux/wait.h> -+#include <linux/platform_device.h> -+#include <linux/kernel_stat.h> -+#include <linux/spinlock.h> -+#include <linux/glamofb.h> -+#include <linux/mmc/mmc.h> -+#include <linux/mmc/host.h> -+ -+#include <asm/io.h> -+#include <asm/uaccess.h> -+#include <asm/div64.h> -+ -+//#include <mach/regs-irq.h> -+ -+#ifdef CONFIG_PM -+#include <linux/pm.h> -+#endif -+ -+#include "glamo-regs.h" -+#include "glamo-core.h" -+ -+#define RESSIZE(ressource) (((ressource)->end - (ressource)->start)+1) -+ -+#define GLAMO_MEM_REFRESH_COUNT 0x100 -+ -+struct reg_range { -+ int start; -+ int count; -+ char *name; -+ char dump; -+}; -+struct reg_range reg_range[] = { -+ { 0x0000, 0x76, "General", 1 }, -+ { 0x0200, 0x16, "Host Bus", 1 }, -+ { 0x0300, 0x38, "Memory", 1 }, -+/* { 0x0400, 0x100, "Sensor", 0 }, */ -+/* { 0x0500, 0x300, "ISP", 0 }, */ -+/* { 0x0800, 0x400, "JPEG", 0 }, */ -+/* { 0x0c00, 0xcc, "MPEG", 0 }, */ -+ { 0x1100, 0xb2, "LCD 1", 1 }, -+ { 0x1200, 0x64, "LCD 2", 1 }, -+ { 0x1400, 0x40, "MMC", 1 }, -+/* { 0x1500, 0x080, "MPU 0", 0 }, -+ { 0x1580, 0x080, "MPU 1", 0 }, -+ { 0x1600, 0x080, "Cmd Queue", 0 }, -+ { 0x1680, 0x080, "RISC CPU", 0 }, -+ { 0x1700, 0x400, "2D Unit", 0 }, -+ { 0x1b00, 0x900, "3D Unit", 0 }, */ -+}; -+ -+static struct glamo_core *glamo_handle; -+ -+static inline void __reg_write(struct glamo_core *glamo, -+ u_int16_t reg, u_int16_t val) -+{ -+ writew(val, glamo->base + reg); -+} -+ -+static inline u_int16_t __reg_read(struct glamo_core *glamo, -+ u_int16_t reg) -+{ -+ return readw(glamo->base + reg); -+} -+ -+static void __reg_set_bit_mask(struct glamo_core *glamo, -+ u_int16_t reg, u_int16_t mask, -+ u_int16_t val) -+{ -+ u_int16_t tmp; -+ -+ val &= mask; -+ -+ tmp = __reg_read(glamo, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ __reg_write(glamo, reg, tmp); -+} -+ -+static void reg_set_bit_mask(struct glamo_core *glamo, -+ u_int16_t reg, u_int16_t mask, -+ u_int16_t val) -+{ -+ spin_lock(&glamo->lock); -+ __reg_set_bit_mask(glamo, reg, mask, val); -+ spin_unlock(&glamo->lock); -+} -+ -+static inline void __reg_set_bit(struct glamo_core *glamo, -+ u_int16_t reg, u_int16_t bit) -+{ -+ __reg_set_bit_mask(glamo, reg, bit, 0xffff); -+} -+ -+static inline void __reg_clear_bit(struct glamo_core *glamo, -+ u_int16_t reg, u_int16_t bit) -+{ -+ __reg_set_bit_mask(glamo, reg, bit, 0); -+} -+ -+static inline void glamo_vmem_write(struct glamo_core *glamo, u_int32_t addr, -+ u_int16_t *src, int len) -+{ -+ if (addr & 0x0001 || (unsigned long)src & 0x0001 || len & 0x0001) { -+ dev_err(&glamo->pdev->dev, "unaligned write(0x%08x, 0x%p, " -+ "0x%x)!!\n", addr, src, len); -+ } -+ -+} -+ -+static inline void glamo_vmem_read(struct glamo_core *glamo, u_int16_t *buf, -+ u_int32_t addr, int len) -+{ -+ if (addr & 0x0001 || (unsigned long) buf & 0x0001 || len & 0x0001) { -+ dev_err(&glamo->pdev->dev, "unaligned read(0x%p, 0x08%x, " -+ "0x%x)!!\n", buf, addr, len); -+ } -+ -+ -+} -+ -+/*********************************************************************** -+ * resources of sibling devices -+ ***********************************************************************/ -+ -+#if 0 -+static struct resource glamo_core_resources[] = { -+ { -+ .start = GLAMO_REGOFS_GENERIC, -+ .end = GLAMO_REGOFS_GENERIC + 0x400, -+ .flags = IORESOURCE_MEM, -+ }, { -+ .start = 0, -+ .end = 0, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+static struct platform_device glamo_core_dev = { -+ .name = "glamo-core", -+ .resource = &glamo_core_resources, -+ .num_resources = ARRAY_SIZE(glamo_core_resources), -+}; -+#endif -+ -+static struct resource glamo_jpeg_resources[] = { -+ { -+ .start = GLAMO_REGOFS_JPEG, -+ .end = GLAMO_REGOFS_MPEG - 1, -+ .flags = IORESOURCE_MEM, -+ }, { -+ .start = IRQ_GLAMO_JPEG, -+ .end = IRQ_GLAMO_JPEG, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+static struct platform_device glamo_jpeg_dev = { -+ .name = "glamo-jpeg", -+ .resource = glamo_jpeg_resources, -+ .num_resources = ARRAY_SIZE(glamo_jpeg_resources), -+}; -+ -+static struct resource glamo_mpeg_resources[] = { -+ { -+ .start = GLAMO_REGOFS_MPEG, -+ .end = GLAMO_REGOFS_LCD - 1, -+ .flags = IORESOURCE_MEM, -+ }, { -+ .start = IRQ_GLAMO_MPEG, -+ .end = IRQ_GLAMO_MPEG, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+static struct platform_device glamo_mpeg_dev = { -+ .name = "glamo-mpeg", -+ .resource = glamo_mpeg_resources, -+ .num_resources = ARRAY_SIZE(glamo_mpeg_resources), -+}; -+ -+static struct resource glamo_2d_resources[] = { -+ { -+ .start = GLAMO_REGOFS_2D, -+ .end = GLAMO_REGOFS_3D - 1, -+ .flags = IORESOURCE_MEM, -+ }, { -+ .start = IRQ_GLAMO_2D, -+ .end = IRQ_GLAMO_2D, -+ .flags = IORESOURCE_IRQ, -+ }, -+}; -+ -+static struct platform_device glamo_2d_dev = { -+ .name = "glamo-2d", -+ .resource = glamo_2d_resources, -+ .num_resources = ARRAY_SIZE(glamo_2d_resources), -+}; -+ -+static struct resource glamo_3d_resources[] = { -+ { -+ .start = GLAMO_REGOFS_3D, -+ .end = GLAMO_REGOFS_END - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+}; -+ -+static struct platform_device glamo_3d_dev = { -+ .name = "glamo-3d", -+ .resource = glamo_3d_resources, -+ .num_resources = ARRAY_SIZE(glamo_3d_resources), -+}; -+ -+static struct platform_device glamo_spigpio_dev = { -+ .name = "glamo-spi-gpio", -+}; -+ -+static struct resource glamo_fb_resources[] = { -+ /* FIXME: those need to be incremented by parent base */ -+ { -+ .name = "glamo-fb-regs", -+ .start = GLAMO_REGOFS_LCD, -+ .end = GLAMO_REGOFS_MMC - 1, -+ .flags = IORESOURCE_MEM, -+ }, { -+ .name = "glamo-fb-mem", -+ .start = GLAMO_OFFSET_FB, -+ .end = GLAMO_OFFSET_FB + GLAMO_FB_SIZE - 1, -+ .flags = IORESOURCE_MEM, -+ }, -+}; -+ -+static struct platform_device glamo_fb_dev = { -+ .name = "glamo-fb", -+ .resource = glamo_fb_resources, -+ .num_resources = ARRAY_SIZE(glamo_fb_resources), -+}; -+ -+static struct resource glamo_mmc_resources[] = { -+ { -+ /* FIXME: those need to be incremented by parent base */ -+ .start = GLAMO_REGOFS_MMC, -+ .end = GLAMO_REGOFS_MPROC0 - 1, -+ .flags = IORESOURCE_MEM -+ }, { -+ .start = IRQ_GLAMO_MMC, -+ .end = IRQ_GLAMO_MMC, -+ .flags = IORESOURCE_IRQ, -+ }, { /* our data buffer for MMC transfers */ -+ .start = GLAMO_OFFSET_FB + GLAMO_FB_SIZE, -+ .end = GLAMO_OFFSET_FB + GLAMO_FB_SIZE + -+ GLAMO_MMC_BUFFER_SIZE - 1, -+ .flags = IORESOURCE_MEM -+ }, -+}; -+ -+struct glamo_mci_pdata glamo_mci_def_pdata = { -+ .gpio_detect = 0, -+ .glamo_can_set_mci_power = NULL, /* filled in from MFD platform data */ -+ .ocr_avail = MMC_VDD_20_21 | -+ MMC_VDD_21_22 | -+ MMC_VDD_22_23 | -+ MMC_VDD_23_24 | -+ MMC_VDD_24_25 | -+ MMC_VDD_25_26 | -+ MMC_VDD_26_27 | -+ MMC_VDD_27_28 | -+ MMC_VDD_28_29 | -+ MMC_VDD_29_30 | -+ MMC_VDD_30_31 | -+ MMC_VDD_32_33, -+ .glamo_irq_is_wired = NULL, /* filled in from MFD platform data */ -+ .mci_suspending = NULL, /* filled in from MFD platform data */ -+ .mci_all_dependencies_resumed = NULL, /* filled in from MFD platform data */ -+}; -+EXPORT_SYMBOL_GPL(glamo_mci_def_pdata); -+ -+ -+ -+static void mangle_mem_resources(struct resource *res, int num_res, -+ struct resource *parent) -+{ -+ int i; -+ -+ for (i = 0; i < num_res; i++) { -+ if (res[i].flags != IORESOURCE_MEM) -+ continue; -+ res[i].start += parent->start; -+ res[i].end += parent->start; -+ res[i].parent = parent; -+ } -+} -+ -+/*********************************************************************** -+ * IRQ demultiplexer -+ ***********************************************************************/ -+#define irq2glamo(x) (x - IRQ_GLAMO(0)) -+ -+static void glamo_ack_irq(unsigned int irq) -+{ -+ /* clear interrupt source */ -+ __reg_write(glamo_handle, GLAMO_REG_IRQ_CLEAR, -+ 1 << irq2glamo(irq)); -+} -+ -+static void glamo_mask_irq(unsigned int irq) -+{ -+ u_int16_t tmp; -+ -+ /* clear bit in enable register */ -+ tmp = __reg_read(glamo_handle, GLAMO_REG_IRQ_ENABLE); -+ tmp &= ~(1 << irq2glamo(irq)); -+ __reg_write(glamo_handle, GLAMO_REG_IRQ_ENABLE, tmp); -+} -+ -+static void glamo_unmask_irq(unsigned int irq) -+{ -+ u_int16_t tmp; -+ -+ /* set bit in enable register */ -+ tmp = __reg_read(glamo_handle, GLAMO_REG_IRQ_ENABLE); -+ tmp |= (1 << irq2glamo(irq)); -+ __reg_write(glamo_handle, GLAMO_REG_IRQ_ENABLE, tmp); -+} -+ -+static struct irq_chip glamo_irq_chip = { -+ .ack = glamo_ack_irq, -+ .mask = glamo_mask_irq, -+ .unmask = glamo_unmask_irq, -+}; -+ -+static void glamo_irq_demux_handler(unsigned int irq, struct irq_desc *desc) -+{ -+ const unsigned int cpu = smp_processor_id(); -+ -+ desc->status &= ~(IRQ_REPLAY | IRQ_WAITING); -+ -+ if (unlikely(desc->status & IRQ_INPROGRESS)) { -+ desc->status |= (IRQ_PENDING | IRQ_MASKED); -+ desc->chip->mask(irq); -+ desc->chip->ack(irq); -+ return; -+ } -+ -+ kstat_cpu(cpu).irqs[irq]++; -+ desc->chip->ack(irq); -+ desc->status |= IRQ_INPROGRESS; -+ -+ do { -+ u_int16_t irqstatus; -+ int i; -+ -+ if (unlikely((desc->status & -+ (IRQ_PENDING | IRQ_MASKED | IRQ_DISABLED)) == -+ (IRQ_PENDING | IRQ_MASKED))) { -+ /* dealing with pending IRQ, unmasking */ -+ desc->chip->unmask(irq); -+ desc->status &= ~IRQ_MASKED; -+ } -+ -+ desc->status &= ~IRQ_PENDING; -+ -+ /* read IRQ status register */ -+ irqstatus = __reg_read(glamo_handle, GLAMO_REG_IRQ_STATUS); -+ for (i = 0; i < 9; i++) -+ if (irqstatus & (1 << i)) -+ desc_handle_irq(IRQ_GLAMO(i), -+ irq_desc+IRQ_GLAMO(i)); -+ -+ } while ((desc->status & (IRQ_PENDING | IRQ_DISABLED)) == IRQ_PENDING); -+ -+ desc->status &= ~IRQ_INPROGRESS; -+} -+ -+ -+static ssize_t regs_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ unsigned long reg = simple_strtoul(buf, NULL, 10); -+ struct glamo_core *glamo = dev_get_drvdata(dev); -+ -+ while (*buf && (*buf != ' ')) -+ buf++; -+ if (*buf != ' ') -+ return -EINVAL; -+ while (*buf && (*buf == ' ')) -+ buf++; -+ if (!*buf) -+ return -EINVAL; -+ -+ printk(KERN_INFO"reg 0x%02lX <-- 0x%04lX\n", -+ reg, simple_strtoul(buf, NULL, 10)); -+ -+ __reg_write(glamo, reg, simple_strtoul(buf, NULL, 10)); -+ -+ return count; -+} -+ -+static ssize_t regs_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct glamo_core *glamo = dev_get_drvdata(dev); -+ int n, n1 = 0, r; -+ char * end = buf; -+ -+ spin_lock(&glamo->lock); -+ -+ for (r = 0; r < ARRAY_SIZE(reg_range); r++) { -+ if (!reg_range[r].dump) -+ continue; -+ n1 = 0; -+ end += sprintf(end, "\n%s\n", reg_range[r].name); -+ for (n = reg_range[r].start; -+ n < reg_range[r].start + reg_range[r].count; n += 2) { -+ if (((n1++) & 7) == 0) -+ end += sprintf(end, "\n%04X: ", n); -+ end += sprintf(end, "%04x ", __reg_read(glamo, n)); -+ } -+ end += sprintf(end, "\n"); -+ if (!attr) { -+ printk("%s", buf); -+ end = buf; -+ } -+ } -+ spin_unlock(&glamo->lock); -+ -+ return end - buf; -+} -+ -+static DEVICE_ATTR(regs, 0644, regs_read, regs_write); -+static struct attribute *glamo_sysfs_entries[] = { -+ &dev_attr_regs.attr, -+ NULL -+}; -+static struct attribute_group glamo_attr_group = { -+ .name = NULL, -+ .attrs = glamo_sysfs_entries, -+}; -+ -+ -+ -+/*********************************************************************** -+ * 'engine' support -+ ***********************************************************************/ -+ -+int __glamo_engine_enable(struct glamo_core *glamo, enum glamo_engine engine) -+{ -+ switch (engine) { -+ case GLAMO_ENGINE_LCD: -+ __reg_set_bit_mask(glamo, GLAMO_REG_HOSTBUS(2), -+ GLAMO_HOSTBUS2_MMIO_EN_LCD, -+ GLAMO_HOSTBUS2_MMIO_EN_LCD); -+ __reg_write(glamo, GLAMO_REG_CLOCK_LCD, -+ GLAMO_CLOCK_LCD_EN_M5CLK | -+ GLAMO_CLOCK_LCD_EN_DHCLK | -+ GLAMO_CLOCK_LCD_EN_DMCLK | -+ GLAMO_CLOCK_LCD_EN_DCLK | -+ GLAMO_CLOCK_LCD_DG_M5CLK | -+ GLAMO_CLOCK_LCD_DG_DMCLK); -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_GEN5_1, -+ GLAMO_CLOCK_GEN51_EN_DIV_DHCLK | -+ GLAMO_CLOCK_GEN51_EN_DIV_DMCLK | -+ GLAMO_CLOCK_GEN51_EN_DIV_DCLK, 0xffff); -+ break; -+ case GLAMO_ENGINE_MMC: -+ __reg_set_bit_mask(glamo, GLAMO_REG_HOSTBUS(2), -+ GLAMO_HOSTBUS2_MMIO_EN_MMC, -+ GLAMO_HOSTBUS2_MMIO_EN_MMC); -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_MMC, -+ GLAMO_CLOCK_MMC_EN_M9CLK | -+ GLAMO_CLOCK_MMC_EN_TCLK | -+ GLAMO_CLOCK_MMC_DG_M9CLK | -+ GLAMO_CLOCK_MMC_DG_TCLK, 0xffff); -+ /* enable the TCLK divider clk input */ -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_GEN5_1, -+ GLAMO_CLOCK_GEN51_EN_DIV_TCLK, -+ GLAMO_CLOCK_GEN51_EN_DIV_TCLK); -+ break; -+ case GLAMO_ENGINE_2D: -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_2D, -+ GLAMO_CLOCK_2D_EN_M7CLK | -+ GLAMO_CLOCK_2D_EN_GCLK | -+ GLAMO_CLOCK_2D_DG_M7CLK | -+ GLAMO_CLOCK_2D_DG_GCLK, 0xffff); -+ __reg_set_bit_mask(glamo, GLAMO_REG_HOSTBUS(2), -+ GLAMO_HOSTBUS2_MMIO_EN_2D, -+ GLAMO_HOSTBUS2_MMIO_EN_2D); -+ break; -+ case GLAMO_ENGINE_CMDQ: -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_2D, -+ GLAMO_CLOCK_2D_EN_M6CLK, 0xffff); -+ __reg_set_bit_mask(glamo, GLAMO_REG_HOSTBUS(2), -+ GLAMO_HOSTBUS2_MMIO_EN_CQ, -+ GLAMO_HOSTBUS2_MMIO_EN_CQ); -+ break; -+ /* FIXME: Implementation */ -+ default: -+ break; -+ } -+ -+ glamo->engine_enabled_bitfield |= 1 << engine; -+ -+ return 0; -+} -+ -+int glamo_engine_enable(struct glamo_core *glamo, enum glamo_engine engine) -+{ -+ int ret; -+ -+ spin_lock(&glamo->lock); -+ -+ ret = __glamo_engine_enable(glamo, engine); -+ -+ spin_unlock(&glamo->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(glamo_engine_enable); -+ -+int __glamo_engine_disable(struct glamo_core *glamo, enum glamo_engine engine) -+{ -+ switch (engine) { -+ case GLAMO_ENGINE_LCD: -+ /* remove pixel clock to LCM */ -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_LCD, -+ GLAMO_CLOCK_LCD_EN_DCLK, 0); -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_LCD, -+ GLAMO_CLOCK_LCD_EN_DHCLK | -+ GLAMO_CLOCK_LCD_EN_DMCLK, 0); -+ /* kill memory clock */ -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_LCD, -+ GLAMO_CLOCK_LCD_EN_M5CLK, 0); -+ /* stop dividing the clocks */ -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_GEN5_1, -+ GLAMO_CLOCK_GEN51_EN_DIV_DHCLK | -+ GLAMO_CLOCK_GEN51_EN_DIV_DMCLK | -+ GLAMO_CLOCK_GEN51_EN_DIV_DCLK, 0); -+ break; -+ -+ case GLAMO_ENGINE_MMC: -+// __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_MMC, -+// GLAMO_CLOCK_MMC_EN_M9CLK | -+// GLAMO_CLOCK_MMC_EN_TCLK | -+// GLAMO_CLOCK_MMC_DG_M9CLK | -+// GLAMO_CLOCK_MMC_DG_TCLK, 0); -+ /* disable the TCLK divider clk input */ -+// __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_GEN5_1, -+// GLAMO_CLOCK_GEN51_EN_DIV_TCLK, 0); -+ -+ default: -+ break; -+ } -+ -+ glamo->engine_enabled_bitfield &= ~(1 << engine); -+ -+ return 0; -+} -+int glamo_engine_disable(struct glamo_core *glamo, enum glamo_engine engine) -+{ -+ int ret; -+ -+ spin_lock(&glamo->lock); -+ -+ ret = __glamo_engine_disable(glamo, engine); -+ -+ spin_unlock(&glamo->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(glamo_engine_disable); -+ -+static const u_int16_t engine_clock_regs[__NUM_GLAMO_ENGINES] = { -+ [GLAMO_ENGINE_LCD] = GLAMO_REG_CLOCK_LCD, -+ [GLAMO_ENGINE_MMC] = GLAMO_REG_CLOCK_MMC, -+ [GLAMO_ENGINE_ISP] = GLAMO_REG_CLOCK_ISP, -+ [GLAMO_ENGINE_JPEG] = GLAMO_REG_CLOCK_JPEG, -+ [GLAMO_ENGINE_3D] = GLAMO_REG_CLOCK_3D, -+ [GLAMO_ENGINE_2D] = GLAMO_REG_CLOCK_2D, -+ [GLAMO_ENGINE_MPEG_ENC] = GLAMO_REG_CLOCK_MPEG, -+ [GLAMO_ENGINE_MPEG_DEC] = GLAMO_REG_CLOCK_MPEG, -+}; -+ -+void glamo_engine_clkreg_set(struct glamo_core *glamo, -+ enum glamo_engine engine, -+ u_int16_t mask, u_int16_t val) -+{ -+ reg_set_bit_mask(glamo, engine_clock_regs[engine], mask, val); -+} -+EXPORT_SYMBOL_GPL(glamo_engine_clkreg_set); -+ -+u_int16_t glamo_engine_clkreg_get(struct glamo_core *glamo, -+ enum glamo_engine engine) -+{ -+ u_int16_t val; -+ -+ spin_lock(&glamo->lock); -+ val = __reg_read(glamo, engine_clock_regs[engine]); -+ spin_unlock(&glamo->lock); -+ -+ return val; -+} -+EXPORT_SYMBOL_GPL(glamo_engine_clkreg_get); -+ -+struct glamo_script reset_regs[] = { -+ [GLAMO_ENGINE_LCD] = { -+ GLAMO_REG_CLOCK_LCD, GLAMO_CLOCK_LCD_RESET -+ }, -+#if 0 -+ [GLAMO_ENGINE_HOST] = { -+ GLAMO_REG_CLOCK_HOST, GLAMO_CLOCK_HOST_RESET -+ }, -+ [GLAMO_ENGINE_MEM] = { -+ GLAMO_REG_CLOCK_MEM, GLAMO_CLOCK_MEM_RESET -+ }, -+#endif -+ [GLAMO_ENGINE_MMC] = { -+ GLAMO_REG_CLOCK_MMC, GLAMO_CLOCK_MMC_RESET -+ }, -+ [GLAMO_ENGINE_2D] = { -+ GLAMO_REG_CLOCK_2D, GLAMO_CLOCK_2D_RESET -+ }, -+ [GLAMO_ENGINE_JPEG] = { -+ GLAMO_REG_CLOCK_JPEG, GLAMO_CLOCK_JPEG_RESET -+ }, -+}; -+ -+void glamo_engine_reset(struct glamo_core *glamo, enum glamo_engine engine) -+{ -+ struct glamo_script *rst; -+ -+ if (engine >= ARRAY_SIZE(reset_regs)) { -+ dev_warn(&glamo->pdev->dev, "unknown engine %u ", engine); -+ return; -+ } -+ -+ rst = &reset_regs[engine]; -+ -+ spin_lock(&glamo->lock); -+ __reg_set_bit(glamo, rst->reg, rst->val); -+ __reg_clear_bit(glamo, rst->reg, rst->val); -+ spin_unlock(&glamo->lock); -+} -+EXPORT_SYMBOL_GPL(glamo_engine_reset); -+ -+void glamo_lcm_reset(int level) -+{ -+ if (!glamo_handle) -+ return; -+ -+ glamo_gpio_setpin(glamo_handle, GLAMO_GPIO4, level); -+ glamo_gpio_cfgpin(glamo_handle, GLAMO_GPIO4_OUTPUT); -+ -+} -+EXPORT_SYMBOL_GPL(glamo_lcm_reset); -+ -+enum glamo_pll { -+ GLAMO_PLL1, -+ GLAMO_PLL2, -+}; -+ -+static int glamo_pll_rate(struct glamo_core *glamo, -+ enum glamo_pll pll) -+{ -+ u_int16_t reg; -+ unsigned int div = 512; -+ /* FIXME: move osci into platform_data */ -+ unsigned int osci = 32768; -+ -+ if (osci == 32768) -+ div = 1; -+ -+ switch (pll) { -+ case GLAMO_PLL1: -+ reg = __reg_read(glamo, GLAMO_REG_PLL_GEN1); -+ break; -+ case GLAMO_PLL2: -+ reg = __reg_read(glamo, GLAMO_REG_PLL_GEN3); -+ break; -+ default: -+ return -EINVAL; -+ } -+ return (osci/div)*reg; -+} -+ -+int glamo_engine_reclock(struct glamo_core *glamo, -+ enum glamo_engine engine, -+ int ps) -+{ -+ int pll, khz; -+ u_int16_t reg, mask, val = 0; -+ -+ if (!ps) -+ return 0; -+ -+ switch (engine) { -+ case GLAMO_ENGINE_LCD: -+ pll = GLAMO_PLL1; -+ reg = GLAMO_REG_CLOCK_GEN7; -+ mask = 0xff; -+ break; -+ default: -+ dev_warn(&glamo->pdev->dev, -+ "reclock of engine 0x%x not supported\n", engine); -+ return -EINVAL; -+ break; -+ } -+ -+ pll = glamo_pll_rate(glamo, pll); -+ khz = 1000000000UL / ps; -+ -+ if (khz) -+ val = (pll / khz) / 1000; -+ -+ dev_dbg(&glamo->pdev->dev, -+ "PLL %d, kHZ %d, div %d\n", pll, khz, val); -+ -+ if (val) { -+ val--; -+ reg_set_bit_mask(glamo, reg, mask, val); -+ mdelay(5); /* wait some time to stabilize */ -+ -+ return 0; -+ } else { -+ return -EINVAL; -+ } -+} -+EXPORT_SYMBOL_GPL(glamo_engine_reclock); -+ -+/*********************************************************************** -+ * script support -+ ***********************************************************************/ -+ -+int glamo_run_script(struct glamo_core *glamo, struct glamo_script *script, -+ int len, int may_sleep) -+{ -+ int i; -+ -+ for (i = 0; i < len; i++) { -+ struct glamo_script *line = &script[i]; -+ -+ switch (line->reg) { -+ case 0xffff: -+ return 0; -+ case 0xfffe: -+ if (may_sleep) -+ msleep(line->val); -+ else -+ mdelay(line->val * 4); -+ break; -+ case 0xfffd: -+ /* spin until PLLs lock */ -+ while ((__reg_read(glamo, GLAMO_REG_PLL_GEN5) & 3) != 3) -+ ; -+ break; -+ default: -+ __reg_write(glamo, script[i].reg, script[i].val); -+ break; -+ } -+ } -+ -+ return 0; -+} -+EXPORT_SYMBOL(glamo_run_script); -+ -+static struct glamo_script glamo_init_script[] = { -+ { GLAMO_REG_CLOCK_HOST, 0x1000 }, -+ { 0xfffe, 2 }, -+ { GLAMO_REG_CLOCK_MEMORY, 0x1000 }, -+ { GLAMO_REG_CLOCK_MEMORY, 0x2000 }, -+ { GLAMO_REG_CLOCK_LCD, 0x1000 }, -+ { GLAMO_REG_CLOCK_MMC, 0x1000 }, -+ { GLAMO_REG_CLOCK_ISP, 0x1000 }, -+ { GLAMO_REG_CLOCK_ISP, 0x3000 }, -+ { GLAMO_REG_CLOCK_JPEG, 0x1000 }, -+ { GLAMO_REG_CLOCK_3D, 0x1000 }, -+ { GLAMO_REG_CLOCK_3D, 0x3000 }, -+ { GLAMO_REG_CLOCK_2D, 0x1000 }, -+ { GLAMO_REG_CLOCK_2D, 0x3000 }, -+ { GLAMO_REG_CLOCK_RISC1, 0x1000 }, -+ { GLAMO_REG_CLOCK_MPEG, 0x3000 }, -+ { GLAMO_REG_CLOCK_MPEG, 0x3000 }, -+ { GLAMO_REG_CLOCK_MPROC, 0x1000 /*0x100f*/ }, -+ { 0xfffe, 2 }, -+ { GLAMO_REG_CLOCK_HOST, 0x0000 }, -+ { GLAMO_REG_CLOCK_MEMORY, 0x0000 }, -+ { GLAMO_REG_CLOCK_LCD, 0x0000 }, -+ { GLAMO_REG_CLOCK_MMC, 0x0000 }, -+#if 0 -+/* unused engines must be left in reset to stop MMC block read "blackouts" */ -+ { GLAMO_REG_CLOCK_ISP, 0x0000 }, -+ { GLAMO_REG_CLOCK_ISP, 0x0000 }, -+ { GLAMO_REG_CLOCK_JPEG, 0x0000 }, -+ { GLAMO_REG_CLOCK_3D, 0x0000 }, -+ { GLAMO_REG_CLOCK_3D, 0x0000 }, -+ { GLAMO_REG_CLOCK_2D, 0x0000 }, -+ { GLAMO_REG_CLOCK_2D, 0x0000 }, -+ { GLAMO_REG_CLOCK_RISC1, 0x0000 }, -+ { GLAMO_REG_CLOCK_MPEG, 0x0000 }, -+ { GLAMO_REG_CLOCK_MPEG, 0x0000 }, -+#endif -+ { GLAMO_REG_PLL_GEN1, 0x05db }, /* 48MHz */ -+ { GLAMO_REG_PLL_GEN3, 0x0aba }, /* 90MHz */ -+ { 0xfffd, 0 }, -+ /* -+ * b9 of this register MUST be zero to get any interrupts on INT# -+ * the other set bits enable all the engine interrupt sources -+ */ -+ { GLAMO_REG_IRQ_ENABLE, 0x01ff }, -+ { GLAMO_REG_CLOCK_GEN6, 0x2000 }, -+ { GLAMO_REG_CLOCK_GEN7, 0x0101 }, -+ { GLAMO_REG_CLOCK_GEN8, 0x0100 }, -+ { GLAMO_REG_CLOCK_HOST, 0x000d }, -+ /* -+ * b7..b4 = 0 = no wait states on read or write -+ * b0 = 1 select PLL2 for Host interface, b1 = enable it -+ */ -+ { 0x200, 0x0e03 }, -+ { 0x202, 0x07ff }, -+ { 0x212, 0x0000 }, -+ { 0x214, 0x4000 }, -+ { 0x216, 0xf00e }, -+ -+ /* S-Media recommended "set tiling mode to 512 mode for memory access -+ * more efficiency when 640x480" */ -+ { GLAMO_REG_MEM_TYPE, 0x0c74 }, /* 8MB, 16 word pg wr+rd */ -+ { GLAMO_REG_MEM_GEN, 0xafaf }, /* 63 grants min + max */ -+ -+ { GLAMO_REGOFS_HOSTBUS + 2, 0xffff }, /* enable on MMIO*/ -+ -+ { GLAMO_REG_MEM_TIMING1, 0x0108 }, -+ { GLAMO_REG_MEM_TIMING2, 0x0010 }, /* Taa = 3 MCLK */ -+ { GLAMO_REG_MEM_TIMING3, 0x0000 }, -+ { GLAMO_REG_MEM_TIMING4, 0x0000 }, /* CE1# delay fall/rise */ -+ { GLAMO_REG_MEM_TIMING5, 0x0000 }, /* UB# LB# */ -+ { GLAMO_REG_MEM_TIMING6, 0x0000 }, /* OE# */ -+ { GLAMO_REG_MEM_TIMING7, 0x0000 }, /* WE# */ -+ { GLAMO_REG_MEM_TIMING8, 0x1002 }, /* MCLK delay, was 0x1000 */ -+ { GLAMO_REG_MEM_TIMING9, 0x6006 }, -+ { GLAMO_REG_MEM_TIMING10, 0x00ff }, -+ { GLAMO_REG_MEM_TIMING11, 0x0001 }, -+ { GLAMO_REG_MEM_POWER1, 0x0020 }, -+ { GLAMO_REG_MEM_POWER2, 0x0000 }, -+ { GLAMO_REG_MEM_DRAM1, 0x0000 }, -+ { 0xfffe, 1 }, -+ { GLAMO_REG_MEM_DRAM1, 0xc100 }, -+ { 0xfffe, 1 }, -+ { GLAMO_REG_MEM_DRAM1, 0xe100 }, -+ { GLAMO_REG_MEM_DRAM2, 0x01d6 }, -+ { GLAMO_REG_CLOCK_MEMORY, 0x000b }, -+ { GLAMO_REG_GPIO_GEN1, 0x000f }, -+ { GLAMO_REG_GPIO_GEN2, 0x111e }, -+ { GLAMO_REG_GPIO_GEN3, 0xccc3 }, -+ { GLAMO_REG_GPIO_GEN4, 0x111e }, -+ { GLAMO_REG_GPIO_GEN5, 0x000f }, -+}; -+#if 0 -+static struct glamo_script glamo_resume_script[] = { -+ -+ { GLAMO_REG_PLL_GEN1, 0x05db }, /* 48MHz */ -+ { GLAMO_REG_PLL_GEN3, 0x0aba }, /* 90MHz */ -+ { GLAMO_REG_DFT_GEN6, 1 }, -+ { 0xfffe, 100 }, -+ { 0xfffd, 0 }, -+ { 0x200, 0x0e03 }, -+ -+ /* -+ * b9 of this register MUST be zero to get any interrupts on INT# -+ * the other set bits enable all the engine interrupt sources -+ */ -+ { GLAMO_REG_IRQ_ENABLE, 0x01ff }, -+ { GLAMO_REG_CLOCK_HOST, 0x0018 }, -+ { GLAMO_REG_CLOCK_GEN5_1, 0x18b1 }, -+ -+ { GLAMO_REG_MEM_DRAM1, 0x0000 }, -+ { 0xfffe, 1 }, -+ { GLAMO_REG_MEM_DRAM1, 0xc100 }, -+ { 0xfffe, 1 }, -+ { GLAMO_REG_MEM_DRAM1, 0xe100 }, -+ { GLAMO_REG_MEM_DRAM2, 0x01d6 }, -+ { GLAMO_REG_CLOCK_MEMORY, 0x000b }, -+}; -+#endif -+ -+enum glamo_power { -+ GLAMO_POWER_ON, -+ GLAMO_POWER_SUSPEND, -+}; -+ -+static void glamo_power(struct glamo_core *glamo, -+ enum glamo_power new_state) -+{ -+ int n; -+ unsigned long flags; -+ -+ spin_lock_irqsave(&glamo->lock, flags); -+ -+ dev_info(&glamo->pdev->dev, "***** glamo_power -> %d\n", new_state); -+ -+ /* -+Power management -+static const REG_VALUE_MASK_TYPE reg_powerOn[] = -+{ -+ { REG_GEN_DFT6, REG_BIT_ALL, REG_DATA(1u << 0) }, -+ { REG_GEN_PLL3, 0u, REG_DATA(1u << 13) }, -+ { REG_GEN_MEM_CLK, REG_BIT_ALL, REG_BIT_EN_MOCACLK }, -+ { REG_MEM_DRAM2, 0u, REG_BIT_EN_DEEP_POWER_DOWN }, -+ { REG_MEM_DRAM1, 0u, REG_BIT_SELF_REFRESH } -+}; -+ -+static const REG_VALUE_MASK_TYPE reg_powerStandby[] = -+{ -+ { REG_MEM_DRAM1, REG_BIT_ALL, REG_BIT_SELF_REFRESH }, -+ { REG_GEN_MEM_CLK, 0u, REG_BIT_EN_MOCACLK }, -+ { REG_GEN_PLL3, REG_BIT_ALL, REG_DATA(1u << 13) }, -+ { REG_GEN_DFT5, REG_BIT_ALL, REG_DATA(1u << 0) } -+}; -+ -+static const REG_VALUE_MASK_TYPE reg_powerSuspend[] = -+{ -+ { REG_MEM_DRAM2, REG_BIT_ALL, REG_BIT_EN_DEEP_POWER_DOWN }, -+ { REG_GEN_MEM_CLK, 0u, REG_BIT_EN_MOCACLK }, -+ { REG_GEN_PLL3, REG_BIT_ALL, REG_DATA(1u << 13) }, -+ { REG_GEN_DFT5, REG_BIT_ALL, REG_DATA(1u << 0) } -+}; -+*/ -+ -+ switch (new_state) { -+ case GLAMO_POWER_ON: -+ -+ /* -+ * glamo state on resume is nondeterministic in some -+ * fundamental way, it has also been observed that the -+ * Glamo reset pin can get asserted by, eg, touching it with -+ * a scope probe. So the only answer is to roll with it and -+ * force an external reset on the Glamo during resume. -+ */ -+ -+ (glamo->pdata->glamo_external_reset)(0); -+ udelay(10); -+ (glamo->pdata->glamo_external_reset)(1); -+ mdelay(5); -+ -+ glamo_run_script(glamo, glamo_init_script, -+ ARRAY_SIZE(glamo_init_script), 0); -+ -+ break; -+ -+ case GLAMO_POWER_SUSPEND: -+ -+ /* nuke interrupts */ -+ __reg_write(glamo, GLAMO_REG_IRQ_ENABLE, 0x200); -+ -+ /* stash a copy of which engines were running */ -+ glamo->engine_enabled_bitfield_suspend = -+ glamo->engine_enabled_bitfield; -+ -+ /* take down each engine before we kill mem and pll */ -+ for (n = 0; n < __NUM_GLAMO_ENGINES; n++) -+ if (glamo->engine_enabled_bitfield & (1 << n)) -+ __glamo_engine_disable(glamo, n); -+ -+ /* enable self-refresh */ -+ -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM1, -+ GLAMO_MEM_DRAM1_EN_DRAM_REFRESH | -+ GLAMO_MEM_DRAM1_EN_GATE_CKE | -+ GLAMO_MEM_DRAM1_SELF_REFRESH | -+ GLAMO_MEM_REFRESH_COUNT); -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM1, -+ GLAMO_MEM_DRAM1_EN_MODEREG_SET | -+ GLAMO_MEM_DRAM1_EN_DRAM_REFRESH | -+ GLAMO_MEM_DRAM1_EN_GATE_CKE | -+ GLAMO_MEM_DRAM1_SELF_REFRESH | -+ GLAMO_MEM_REFRESH_COUNT); -+ -+ /* force RAM into deep powerdown */ -+ -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM2, -+ GLAMO_MEM_DRAM2_DEEP_PWRDOWN | -+ (7 << 6) | /* tRC */ -+ (1 << 4) | /* tRP */ -+ (1 << 2) | /* tRCD */ -+ 2); /* CAS latency */ -+ -+ /* disable clocks to memory */ -+ __reg_write(glamo, GLAMO_REG_CLOCK_MEMORY, 0); -+ -+ /* all dividers from OSCI */ -+ __reg_set_bit_mask(glamo, GLAMO_REG_CLOCK_GEN5_1, 0x400, 0x400); -+ -+ /* PLL2 into bypass */ -+ __reg_set_bit_mask(glamo, GLAMO_REG_PLL_GEN3, 1 << 12, 1 << 12); -+ -+ __reg_write(glamo, 0x200, 0x0e00); -+ -+ -+ /* kill PLLS 1 then 2 */ -+ __reg_write(glamo, GLAMO_REG_DFT_GEN5, 0x0001); -+ __reg_set_bit_mask(glamo, GLAMO_REG_PLL_GEN3, 1 << 13, 1 << 13); -+ -+ break; -+ } -+ -+ spin_unlock_irqrestore(&glamo->lock, flags); -+} -+ -+#if 0 -+#define MEMDETECT_RETRY 6 -+static unsigned int detect_memsize(struct glamo_core *glamo) -+{ -+ int i; -+ -+ /*static const u_int16_t pattern[] = { -+ 0x1111, 0x8a8a, 0x2222, 0x7a7a, -+ 0x3333, 0x6a6a, 0x4444, 0x5a5a, -+ 0x5555, 0x4a4a, 0x6666, 0x3a3a, -+ 0x7777, 0x2a2a, 0x8888, 0x1a1a -+ }; */ -+ -+ for (i = 0; i < MEMDETECT_RETRY; i++) { -+ switch (glamo->type) { -+ case 3600: -+ __reg_write(glamo, GLAMO_REG_MEM_TYPE, 0x0072); -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM1, 0xc100); -+ break; -+ case 3650: -+ switch (glamo->revision) { -+ case GLAMO_CORE_REV_A0: -+ if (i & 1) -+ __reg_write(glamo, GLAMO_REG_MEM_TYPE, -+ 0x097a); -+ else -+ __reg_write(glamo, GLAMO_REG_MEM_TYPE, -+ 0x0173); -+ -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM1, 0x0000); -+ msleep(1); -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM1, 0xc100); -+ break; -+ default: -+ if (i & 1) -+ __reg_write(glamo, GLAMO_REG_MEM_TYPE, -+ 0x0972); -+ else -+ __reg_write(glamo, GLAMO_REG_MEM_TYPE, -+ 0x0872); -+ -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM1, 0x0000); -+ msleep(1); -+ __reg_write(glamo, GLAMO_REG_MEM_DRAM1, 0xe100); -+ break; -+ } -+ break; -+ case 3700: -+ /* FIXME */ -+ default: -+ break; -+ } -+ -+#if 0 -+ /* FIXME: finish implementation */ -+ for (j = 0; j < 8; j++) { -+ __ -+#endif -+ } -+ -+ return 0; -+} -+#endif -+ -+/* Find out if we can support this version of the Glamo chip */ -+static int glamo_supported(struct glamo_core *glamo) -+{ -+ u_int16_t dev_id, rev_id; /*, memsize; */ -+ -+ dev_id = __reg_read(glamo, GLAMO_REG_DEVICE_ID); -+ rev_id = __reg_read(glamo, GLAMO_REG_REVISION_ID); -+ -+ switch (dev_id) { -+ case 0x3650: -+ switch (rev_id) { -+ case GLAMO_CORE_REV_A2: -+ break; -+ case GLAMO_CORE_REV_A0: -+ case GLAMO_CORE_REV_A1: -+ case GLAMO_CORE_REV_A3: -+ dev_warn(&glamo->pdev->dev, "untested core revision " -+ "%04x, your mileage may vary\n", rev_id); -+ break; -+ default: -+ dev_warn(&glamo->pdev->dev, "unknown glamo revision " -+ "%04x, your mileage may vary\n", rev_id); -+ /* maybe should abort ? */ -+ } -+ break; -+ case 0x3600: -+ case 0x3700: -+ default: -+ dev_err(&glamo->pdev->dev, "unsupported Glamo device %04x\n", -+ dev_id); -+ return 0; -+ } -+ -+ dev_dbg(&glamo->pdev->dev, "Detected Glamo core %04x Revision %04x " -+ "(%uHz CPU / %uHz Memory)\n", dev_id, rev_id, -+ glamo_pll_rate(glamo, GLAMO_PLL1), -+ glamo_pll_rate(glamo, GLAMO_PLL2)); -+ -+ return 1; -+} -+ -+static int __init glamo_probe(struct platform_device *pdev) -+{ -+ int rc = 0, irq; -+ struct glamo_core *glamo; -+ struct platform_device *glamo_mmc_dev; -+ -+ if (glamo_handle) { -+ dev_err(&pdev->dev, -+ "This driver supports only one instance\n"); -+ return -EBUSY; -+ } -+ -+ glamo = kmalloc(GFP_KERNEL, sizeof(*glamo)); -+ if (!glamo) -+ return -ENOMEM; -+ -+ spin_lock_init(&glamo->lock); -+ glamo_handle = glamo; -+ glamo->pdev = pdev; -+ glamo->mem = platform_get_resource(pdev, IORESOURCE_MEM, 0); -+ glamo->irq = platform_get_irq(pdev, 0); -+ glamo->pdata = pdev->dev.platform_data; -+ if (!glamo->mem || !glamo->pdata) { -+ dev_err(&pdev->dev, "platform device with no MEM/PDATA ?\n"); -+ rc = -ENOENT; -+ goto bail_free; -+ } -+ -+ /* register a number of sibling devices whoise IOMEM resources -+ * are siblings of pdev's IOMEM resource */ -+#if 0 -+ glamo_core_dev.dev.parent = &pdev.dev; -+ mangle_mem_resources(glamo_core_dev.resources, -+ glamo_core_dev.num_resources, glamo->mem); -+ glamo_core_dev.resources[1].start = glamo->irq; -+ glamo_core_dev.resources[1].end = glamo->irq; -+ platform_device_register(&glamo_core_dev); -+#endif -+ /* only remap the generic, hostbus and memory controller registers */ -+ glamo->base = ioremap(glamo->mem->start, 0x4000 /*GLAMO_REGOFS_VIDCAP*/); -+ if (!glamo->base) { -+ dev_err(&pdev->dev, "failed to ioremap() memory region\n"); -+ goto bail_free; -+ } -+ -+ platform_set_drvdata(pdev, glamo); -+ -+ (glamo->pdata->glamo_external_reset)(0); -+ udelay(10); -+ (glamo->pdata->glamo_external_reset)(1); -+ mdelay(10); -+ -+ /* -+ * finally set the mfd interrupts up -+ * can't do them earlier or sibling probes blow up -+ */ -+ -+ for (irq = IRQ_GLAMO(0); irq <= IRQ_GLAMO(8); irq++) { -+ set_irq_chip(irq, &glamo_irq_chip); -+ set_irq_handler(irq, handle_level_irq); -+ set_irq_flags(irq, IRQF_VALID); -+ } -+ -+ if (glamo->pdata->glamo_irq_is_wired && -+ !glamo->pdata->glamo_irq_is_wired()) { -+ set_irq_chained_handler(glamo->irq, glamo_irq_demux_handler); -+ set_irq_type(glamo->irq, IRQ_TYPE_EDGE_FALLING); -+ dev_info(&pdev->dev, "Glamo interrupt registered\n"); -+ glamo->irq_works = 1; -+ } else { -+ dev_err(&pdev->dev, "Glamo interrupt not used\n"); -+ glamo->irq_works = 0; -+ } -+ -+ -+ /* confirm it isn't insane version */ -+ if (!glamo_supported(glamo)) { -+ dev_err(&pdev->dev, "This Glamo is not supported\n"); -+ goto bail_irq; -+ } -+ -+ /* sysfs */ -+ rc = sysfs_create_group(&pdev->dev.kobj, &glamo_attr_group); -+ if (rc < 0) { -+ dev_err(&pdev->dev, "cannot create sysfs group\n"); -+ goto bail_irq; -+ } -+ -+ /* init the chip with canned register set */ -+ -+ dev_dbg(&glamo->pdev->dev, "running init script\n"); -+ glamo_run_script(glamo, glamo_init_script, -+ ARRAY_SIZE(glamo_init_script), 1); -+ -+ dev_info(&glamo->pdev->dev, "Glamo core PLL1: %uHz, PLL2: %uHz\n", -+ glamo_pll_rate(glamo, GLAMO_PLL1), -+ glamo_pll_rate(glamo, GLAMO_PLL2)); -+ -+ /* bring MCI specific stuff over from our MFD platform data */ -+ glamo_mci_def_pdata.glamo_can_set_mci_power = -+ glamo->pdata->glamo_can_set_mci_power; -+ glamo_mci_def_pdata.glamo_mci_use_slow = -+ glamo->pdata->glamo_mci_use_slow; -+ glamo_mci_def_pdata.glamo_irq_is_wired = -+ glamo->pdata->glamo_irq_is_wired; -+ -+ /* start creating the siblings */ -+ -+ glamo_2d_dev.dev.parent = &pdev->dev; -+ mangle_mem_resources(glamo_2d_dev.resource, -+ glamo_2d_dev.num_resources, glamo->mem); -+ platform_device_register(&glamo_2d_dev); -+ -+ glamo_3d_dev.dev.parent = &pdev->dev; -+ mangle_mem_resources(glamo_3d_dev.resource, -+ glamo_3d_dev.num_resources, glamo->mem); -+ platform_device_register(&glamo_3d_dev); -+ -+ glamo_jpeg_dev.dev.parent = &pdev->dev; -+ mangle_mem_resources(glamo_jpeg_dev.resource, -+ glamo_jpeg_dev.num_resources, glamo->mem); -+ platform_device_register(&glamo_jpeg_dev); -+ -+ glamo_mpeg_dev.dev.parent = &pdev->dev; -+ mangle_mem_resources(glamo_mpeg_dev.resource, -+ glamo_mpeg_dev.num_resources, glamo->mem); -+ platform_device_register(&glamo_mpeg_dev); -+ -+ glamo->pdata->glamo = glamo; -+ glamo_fb_dev.dev.parent = &pdev->dev; -+ glamo_fb_dev.dev.platform_data = glamo->pdata; -+ mangle_mem_resources(glamo_fb_dev.resource, -+ glamo_fb_dev.num_resources, glamo->mem); -+ platform_device_register(&glamo_fb_dev); -+ -+ glamo->pdata->spigpio_info->glamo = glamo; -+ glamo_spigpio_dev.dev.parent = &pdev->dev; -+ glamo_spigpio_dev.dev.platform_data = glamo->pdata->spigpio_info; -+ platform_device_register(&glamo_spigpio_dev); -+ -+ glamo_mmc_dev = glamo->pdata->mmc_dev; -+ glamo_mmc_dev->name = "glamo-mci"; -+ glamo_mmc_dev->dev.parent = &pdev->dev; -+ glamo_mmc_dev->resource = glamo_mmc_resources; -+ glamo_mmc_dev->num_resources = ARRAY_SIZE(glamo_mmc_resources); -+ -+ /* we need it later to give to the engine enable and disable */ -+ glamo_mci_def_pdata.pglamo = glamo; -+ mangle_mem_resources(glamo_mmc_dev->resource, -+ glamo_mmc_dev->num_resources, glamo->mem); -+ platform_device_register(glamo_mmc_dev); -+ -+ /* only request the generic, hostbus and memory controller MMIO */ -+ glamo->mem = request_mem_region(glamo->mem->start, -+ GLAMO_REGOFS_VIDCAP, "glamo-core"); -+ if (!glamo->mem) { -+ dev_err(&pdev->dev, "failed to request memory region\n"); -+ goto bail_irq; -+ } -+ -+ return 0; -+ -+bail_irq: -+ disable_irq(glamo->irq); -+ set_irq_chained_handler(glamo->irq, NULL); -+ -+ for (irq = IRQ_GLAMO(0); irq <= IRQ_GLAMO(8); irq++) { -+ set_irq_flags(irq, 0); -+ set_irq_chip(irq, NULL); -+ } -+ -+ iounmap(glamo->base); -+bail_free: -+ platform_set_drvdata(pdev, NULL); -+ glamo_handle = NULL; -+ kfree(glamo); -+ -+ return rc; -+} -+ -+static int glamo_remove(struct platform_device *pdev) -+{ -+ struct glamo_core *glamo = platform_get_drvdata(pdev); -+ int irq; -+ -+ disable_irq(glamo->irq); -+ set_irq_chained_handler(glamo->irq, NULL); -+ -+ for (irq = IRQ_GLAMO(0); irq <= IRQ_GLAMO(8); irq++) { -+ set_irq_flags(irq, 0); -+ set_irq_chip(irq, NULL); -+ } -+ -+ platform_set_drvdata(pdev, NULL); -+ platform_device_unregister(&glamo_fb_dev); -+ platform_device_unregister(glamo->pdata->mmc_dev); -+ iounmap(glamo->base); -+ release_mem_region(glamo->mem->start, GLAMO_REGOFS_VIDCAP); -+ glamo_handle = NULL; -+ kfree(glamo); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+ -+static int glamo_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ glamo_handle->suspending = 1; -+ glamo_power(glamo_handle, GLAMO_POWER_SUSPEND); -+ -+ return 0; -+} -+ -+static int glamo_resume(struct platform_device *pdev) -+{ -+ glamo_power(glamo_handle, GLAMO_POWER_ON); -+ glamo_handle->suspending = 0; -+ -+ return 0; -+} -+ -+#else -+#define glamo_suspend NULL -+#define glamo_resume NULL -+#endif -+ -+static struct platform_driver glamo_driver = { -+ .probe = glamo_probe, -+ .remove = glamo_remove, -+ .suspend = glamo_suspend, -+ .resume = glamo_resume, -+ .driver = { -+ .name = "glamo3362", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+static int __devinit glamo_init(void) -+{ -+ return platform_driver_register(&glamo_driver); -+} -+ -+static void __exit glamo_cleanup(void) -+{ -+ platform_driver_unregister(&glamo_driver); -+} -+ -+module_init(glamo_init); -+module_exit(glamo_cleanup); -+ -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("Smedia Glamo 336x/337x core/resource driver"); -+MODULE_LICENSE("GPL"); ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-core.h -@@ -0,0 +1,92 @@ -+#ifndef __GLAMO_CORE_H -+#define __GLAMO_CORE_H -+ -+#include <asm/system.h> -+ -+/* for the time being, we put the on-screen framebuffer into the lowest -+ * VRAM space. This should make the code easily compatible with the various -+ * 2MB/4MB/8MB variants of the Smedia chips */ -+#define GLAMO_OFFSET_VRAM 0x800000 -+#define GLAMO_OFFSET_FB (GLAMO_OFFSET_VRAM) -+ -+/* we only allocate the minimum possible size for the framebuffer to make -+ * sure we have sufficient memory for other functions of the chip */ -+//#define GLAMO_FB_SIZE (640*480*4) /* == 0x12c000 */ -+#define GLAMO_INTERNAL_RAM_SIZE 0x800000 -+#define GLAMO_MMC_BUFFER_SIZE (64 * 1024) -+#define GLAMO_FB_SIZE (GLAMO_INTERNAL_RAM_SIZE - GLAMO_MMC_BUFFER_SIZE) -+ -+struct glamo_core { -+ int irq; -+ int irq_works; /* 0 means PCB does not support Glamo IRQ */ -+ struct resource *mem; -+ struct resource *mem_core; -+ void __iomem *base; -+ struct platform_device *pdev; -+ struct glamofb_platform_data *pdata; -+ u_int16_t type; -+ u_int16_t revision; -+ spinlock_t lock; -+ u32 engine_enabled_bitfield; -+ u32 engine_enabled_bitfield_suspend; -+ int suspending; -+}; -+ -+struct glamo_script { -+ u_int16_t reg; -+ u_int16_t val; -+}; -+ -+int glamo_run_script(struct glamo_core *glamo, -+ struct glamo_script *script, int len, int may_sleep); -+ -+enum glamo_engine { -+ GLAMO_ENGINE_CAPTURE, -+ GLAMO_ENGINE_ISP, -+ GLAMO_ENGINE_JPEG, -+ GLAMO_ENGINE_MPEG_ENC, -+ GLAMO_ENGINE_MPEG_DEC, -+ GLAMO_ENGINE_LCD, -+ GLAMO_ENGINE_CMDQ, -+ GLAMO_ENGINE_2D, -+ GLAMO_ENGINE_3D, -+ GLAMO_ENGINE_MMC, -+ GLAMO_ENGINE_MICROP0, -+ GLAMO_ENGINE_RISC, -+ GLAMO_ENGINE_MICROP1_MPEG_ENC, -+ GLAMO_ENGINE_MICROP1_MPEG_DEC, -+#if 0 -+ GLAMO_ENGINE_H264_DEC, -+ GLAMO_ENGINE_RISC1, -+ GLAMO_ENGINE_SPI, -+#endif -+ __NUM_GLAMO_ENGINES -+}; -+ -+struct glamo_mci_pdata { -+ struct glamo_core * pglamo; -+ unsigned int gpio_detect; -+ unsigned int gpio_wprotect; -+ unsigned long ocr_avail; -+ int (*glamo_can_set_mci_power)(void); -+ /* glamo-mci asking if it should use the slow clock to card */ -+ int (*glamo_mci_use_slow)(void); -+ int (*glamo_irq_is_wired)(void); -+ void (*mci_suspending)(struct platform_device *dev); -+ int (*mci_all_dependencies_resumed)(struct platform_device *dev); -+ -+}; -+ -+int glamo_engine_enable(struct glamo_core *glamo, enum glamo_engine engine); -+int glamo_engine_disable(struct glamo_core *glamo, enum glamo_engine engine); -+void glamo_engine_reset(struct glamo_core *glamo, enum glamo_engine engine); -+int glamo_engine_reclock(struct glamo_core *glamo, -+ enum glamo_engine engine, int ps); -+ -+void glamo_engine_clkreg_set(struct glamo_core *glamo, -+ enum glamo_engine engine, -+ u_int16_t mask, u_int16_t val); -+ -+u_int16_t glamo_engine_clkreg_get(struct glamo_core *glamo, -+ enum glamo_engine engine); -+#endif /* __GLAMO_CORE_H */ ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-fb.c -@@ -0,0 +1,1048 @@ -+/* Smedia Glamo 336x/337x driver -+ * -+ * (C) 2007-2008 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/errno.h> -+#include <linux/string.h> -+#include <linux/mm.h> -+#include <linux/slab.h> -+#include <linux/delay.h> -+#include <linux/fb.h> -+#include <linux/init.h> -+#include <linux/vmalloc.h> -+#include <linux/dma-mapping.h> -+#include <linux/interrupt.h> -+#include <linux/workqueue.h> -+#include <linux/wait.h> -+#include <linux/platform_device.h> -+#include <linux/clk.h> -+#include <linux/spinlock.h> -+ -+#include <asm/io.h> -+#include <asm/uaccess.h> -+#include <asm/div64.h> -+ -+#ifdef CONFIG_PM -+#include <linux/pm.h> -+#endif -+ -+#include <linux/glamofb.h> -+ -+#include "glamo-regs.h" -+#include "glamo-core.h" -+ -+#ifndef DEBUG -+#define GLAMO_LOG(...) -+#else -+#define GLAMO_LOG(...) \ -+do { \ -+ printk(KERN_DEBUG "in %s:%s:%d", __FILE__, __func__, __LINE__); \ -+ printk(KERN_DEBUG __VA_ARGS__); \ -+} while (0); -+#endif -+ -+ -+#define RESSIZE(ressource) (((ressource)->end - (ressource)->start)+1) -+ -+struct glamofb_handle { -+ struct fb_info *fb; -+ struct device *dev; -+ struct resource *reg; -+ struct resource *fb_res; -+ char __iomem *base; -+ struct glamofb_platform_data *mach_info; -+ char __iomem *cursor_addr; -+ int cursor_on; -+ u_int32_t pseudo_pal[16]; -+ spinlock_t lock_cmd; -+}; -+ -+/* 'sibling' spi device for lcm init */ -+static struct platform_device glamo_spi_dev = { -+ .name = "glamo-lcm-spi", -+}; -+ -+ -+static int reg_read(struct glamofb_handle *glamo, -+ u_int16_t reg) -+{ -+ return readw(glamo->base + reg); -+} -+ -+static void reg_write(struct glamofb_handle *glamo, -+ u_int16_t reg, u_int16_t val) -+{ -+ writew(val, glamo->base + reg); -+} -+ -+static struct glamo_script glamo_regs[] = { -+ { GLAMO_REG_LCD_MODE1, 0x0020 }, -+ /* no display rotation, no hardware cursor, no dither, no gamma, -+ * no retrace flip, vsync low-active, hsync low active, -+ * no TVCLK, no partial display, hw dest color from fb, -+ * no partial display mode, LCD1, software flip, */ -+ { GLAMO_REG_LCD_MODE2, 0x9020 }, -+ /* video flip, no ptr, no ptr, dhclk off, -+ * normal mode, no cpuif, -+ * res, serial msb first, single fb, no fr ctrl, -+ * cpu if bits all zero, no crc -+ * 0000 0000 0010 0000 */ -+ { GLAMO_REG_LCD_MODE3, 0x0b40 }, -+ /* src data rgb565, res, 18bit rgb666 -+ * 000 01 011 0100 0000 */ -+ { GLAMO_REG_LCD_POLARITY, 0x440c }, -+ /* DE high active, no cpu/lcd if, cs0 force low, a0 low active, -+ * np cpu if, 9bit serial data, sclk rising edge latch data -+ * 01 00 0 100 0 000 01 0 0 */ -+ /* The following values assume 640*480@16bpp */ -+ { GLAMO_REG_LCD_A_BASE1, 0x0000 }, /* display A base address 15:0 */ -+ { GLAMO_REG_LCD_A_BASE2, 0x0000 }, /* display A base address 22:16 */ -+ { GLAMO_REG_LCD_B_BASE1, 0x6000 }, /* display B base address 15:0 */ -+ { GLAMO_REG_LCD_B_BASE2, 0x0009 }, /* display B base address 22:16 */ -+ { GLAMO_REG_LCD_CURSOR_BASE1, 0xC000 }, /* cursor base address 15:0 */ -+ { GLAMO_REG_LCD_CURSOR_BASE2, 0x0012 }, /* cursor base address 22:16 */ -+ { GLAMO_REG_LCD_COMMAND2, 0x0000 }, /* display page A */ -+}; -+ -+static int glamofb_run_script(struct glamofb_handle *glamo, -+ struct glamo_script *script, int len) -+{ -+ int i; -+ -+ if (glamo->mach_info->glamo->suspending) { -+ dev_err(&glamo->mach_info->glamo->pdev->dev, "IGNORING glamofb_run_script while " -+ "suspended\n"); -+ return -EBUSY; -+ } -+ -+ for (i = 0; i < len; i++) { -+ struct glamo_script *line = &script[i]; -+ -+ if (line->reg == 0xffff) -+ return 0; -+ else if (line->reg == 0xfffe) -+ msleep(line->val); -+ else -+ reg_write(glamo, script[i].reg, script[i].val); -+ } -+ -+ return 0; -+} -+ -+static int glamofb_check_var(struct fb_var_screeninfo *var, -+ struct fb_info *info) -+{ -+ struct glamofb_handle *glamo = info->par; -+ -+ if (glamo->mach_info->glamo->suspending) { -+ dev_err(&glamo->mach_info->glamo->pdev->dev, "IGNORING glamofb_check_var while " -+ "suspended\n"); -+ return -EBUSY; -+ } -+ -+ if (var->yres > glamo->mach_info->yres.max) -+ var->yres = glamo->mach_info->yres.max; -+ else if (var->yres < glamo->mach_info->yres.min) -+ var->yres = glamo->mach_info->yres.min; -+ -+ if (var->xres > glamo->mach_info->xres.max) -+ var->xres = glamo->mach_info->xres.max; -+ else if (var->xres < glamo->mach_info->xres.min) -+ var->xres = glamo->mach_info->xres.min; -+ -+ if (var->bits_per_pixel > glamo->mach_info->bpp.max) -+ var->bits_per_pixel = glamo->mach_info->bpp.max; -+ else if (var->bits_per_pixel < glamo->mach_info->bpp.min) -+ var->bits_per_pixel = glamo->mach_info->bpp.min; -+ -+ /* FIXME: set rgb positions */ -+ switch (var->bits_per_pixel) { -+ case 16: -+ switch (reg_read(glamo, GLAMO_REG_LCD_MODE3) & 0xc000) { -+ case GLAMO_LCD_SRC_RGB565: -+ var->red.offset = 11; -+ var->green.offset = 5; -+ var->blue.offset = 0; -+ var->red.length = 5; -+ var->green.length = 6; -+ var->blue.length = 5; -+ var->transp.length = 0; -+ break; -+ case GLAMO_LCD_SRC_ARGB1555: -+ var->transp.offset = 15; -+ var->red.offset = 10; -+ var->green.offset = 5; -+ var->blue.offset = 0; -+ var->transp.length = 1; -+ var->red.length = 5; -+ var->green.length = 5; -+ var->blue.length = 5; -+ break; -+ case GLAMO_LCD_SRC_ARGB4444: -+ var->transp.offset = 12; -+ var->red.offset = 8; -+ var->green.offset = 4; -+ var->blue.offset = 0; -+ var->transp.length = 4; -+ var->red.length = 4; -+ var->green.length = 4; -+ var->blue.length = 4; -+ break; -+ } -+ break; -+ case 24: -+ case 32: -+ default: -+ /* The Smedia Glamo doesn't support anything but 16bit color */ -+ printk(KERN_ERR -+ "Smedia driver does not [yet?] support 24/32bpp\n"); -+ return -EINVAL; -+ } -+ -+ return 0; -+} -+ -+static void reg_set_bit_mask(struct glamofb_handle *glamo, -+ u_int16_t reg, u_int16_t mask, -+ u_int16_t val) -+{ -+ u_int16_t tmp; -+ -+ val &= mask; -+ -+ tmp = reg_read(glamo, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ reg_write(glamo, reg, tmp); -+} -+ -+#define GLAMO_LCD_WIDTH_MASK 0x03FF -+#define GLAMO_LCD_HEIGHT_MASK 0x03FF -+#define GLAMO_LCD_PITCH_MASK 0x07FE -+#define GLAMO_LCD_HV_TOTAL_MASK 0x03FF -+#define GLAMO_LCD_HV_RETR_START_MASK 0x03FF -+#define GLAMO_LCD_HV_RETR_END_MASK 0x03FF -+#define GLAMO_LCD_HV_RETR_DISP_START_MASK 0x03FF -+#define GLAMO_LCD_HV_RETR_DISP_END_MASK 0x03FF -+ -+enum orientation { -+ ORIENTATION_PORTRAIT, -+ ORIENTATION_LANDSCAPE -+}; -+ -+ -+/* the caller has to enxure lock_cmd is held and we are in cmd mode */ -+static void __rotate_lcd(struct glamofb_handle *glamo, __u32 rotation) -+{ -+ int glamo_rot; -+ -+ if (glamo->mach_info->glamo->suspending) { -+ dev_err(&glamo->mach_info->glamo->pdev->dev, "IGNORING rotate_lcd while " -+ "suspended\n"); -+ return; -+ } -+ -+ switch (rotation) { -+ case FB_ROTATE_UR: -+ glamo_rot = GLAMO_LCD_ROT_MODE_0; -+ break; -+ case FB_ROTATE_CW: -+ glamo_rot = GLAMO_LCD_ROT_MODE_90; -+ break; -+ case FB_ROTATE_UD: -+ glamo_rot = GLAMO_LCD_ROT_MODE_180; -+ break; -+ case FB_ROTATE_CCW: -+ glamo_rot = GLAMO_LCD_ROT_MODE_270; -+ break; -+ default: -+ glamo_rot = GLAMO_LCD_ROT_MODE_0; -+ break; -+ } -+ -+ reg_set_bit_mask(glamo, -+ GLAMO_REG_LCD_WIDTH, -+ GLAMO_LCD_ROT_MODE_MASK, -+ glamo_rot); -+ reg_set_bit_mask(glamo, -+ GLAMO_REG_LCD_MODE1, -+ GLAMO_LCD_MODE1_ROTATE_EN, -+ (glamo_rot != GLAMO_LCD_ROT_MODE_0)? -+ GLAMO_LCD_MODE1_ROTATE_EN : 0); -+} -+ -+static enum orientation get_orientation(struct fb_var_screeninfo *var) -+{ -+ if (var->xres <= var->yres) -+ return ORIENTATION_PORTRAIT; -+ -+ return ORIENTATION_LANDSCAPE; -+} -+ -+static int will_orientation_change(struct fb_var_screeninfo *var) -+{ -+ enum orientation orient = get_orientation(var); -+ -+ switch (orient) { -+ case ORIENTATION_LANDSCAPE: -+ if (var->rotate == FB_ROTATE_UR || -+ var->rotate == FB_ROTATE_UD) -+ return 1; -+ break; -+ case ORIENTATION_PORTRAIT: -+ if (var->rotate == FB_ROTATE_CW || -+ var->rotate == FB_ROTATE_CCW) -+ return 1; -+ break; -+ } -+ return 0; -+} -+ -+static void glamofb_update_lcd_controller(struct glamofb_handle *glamo, -+ struct fb_var_screeninfo *var) -+{ -+ int sync, bp, disp, fp, total, xres, yres, pitch, orientation_changing; -+ unsigned long flags; -+ -+ if (!glamo || !var) -+ return; -+ -+ if (glamo->mach_info->glamo->suspending) { -+ dev_err(&glamo->mach_info->glamo->pdev->dev, "IGNORING glamofb_update_lcd_controller while " -+ "suspended\n"); -+ return; -+ } -+ -+ dev_dbg(&glamo->mach_info->glamo->pdev->dev, -+ "glamofb_update_lcd_controller spin_lock_irqsave\n"); -+ spin_lock_irqsave(&glamo->lock_cmd, flags); -+ -+ if (glamofb_cmd_mode(glamo, 1)) -+ goto out_unlock; -+ -+ if (var->pixclock) -+ glamo_engine_reclock(glamo->mach_info->glamo, -+ GLAMO_ENGINE_LCD, -+ var->pixclock); -+ -+ xres = var->xres; -+ yres = var->yres; -+ -+ /* figure out if orientation is going to change */ -+ orientation_changing = will_orientation_change(var); -+ -+ /* adjust the pitch according to new orientation to come */ -+ -+ if (orientation_changing) { -+ pitch = var->yres * var->bits_per_pixel / 8; -+ } else { -+ pitch = var->xres * var->bits_per_pixel / 8; -+ } -+ -+ /* -+ * set the desired LCD geometry -+ */ -+ reg_set_bit_mask(glamo, -+ GLAMO_REG_LCD_WIDTH, -+ GLAMO_LCD_WIDTH_MASK, -+ xres); -+ reg_set_bit_mask(glamo, -+ GLAMO_REG_LCD_HEIGHT, -+ GLAMO_LCD_HEIGHT_MASK, -+ yres); -+ reg_set_bit_mask(glamo, -+ GLAMO_REG_LCD_PITCH, -+ GLAMO_LCD_PITCH_MASK, -+ pitch); -+ -+ /* honour the rotation request */ -+ __rotate_lcd(glamo, var->rotate); -+ -+ /* update the reported geometry of the framebuffer. */ -+ if (orientation_changing) { -+ var->xres_virtual = var->xres = yres; -+ var->xres_virtual *= 2; -+ var->yres_virtual = var->yres = xres; -+ } else { -+ var->xres_virtual = var->xres = xres; -+ var->yres_virtual = var->yres = yres; -+ var->yres_virtual *= 2; -+ } -+ -+ /* update scannout timings */ -+ sync = 0; -+ bp = sync + var->hsync_len; -+ disp = bp + var->left_margin; -+ fp = disp + xres; -+ total = fp + var->right_margin; -+ -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_HORIZ_TOTAL, -+ GLAMO_LCD_HV_TOTAL_MASK, total); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_HORIZ_RETR_START, -+ GLAMO_LCD_HV_RETR_START_MASK, sync); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_HORIZ_RETR_END, -+ GLAMO_LCD_HV_RETR_END_MASK, bp); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_HORIZ_DISP_START, -+ GLAMO_LCD_HV_RETR_DISP_START_MASK, disp); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_HORIZ_DISP_END, -+ GLAMO_LCD_HV_RETR_DISP_END_MASK, fp); -+ -+ sync = 0; -+ bp = sync + var->vsync_len; -+ disp = bp + var->upper_margin; -+ fp = disp + yres; -+ total = fp + var->lower_margin; -+ -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_VERT_TOTAL, -+ GLAMO_LCD_HV_TOTAL_MASK, total); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_VERT_RETR_START, -+ GLAMO_LCD_HV_RETR_START_MASK, sync); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_VERT_RETR_END, -+ GLAMO_LCD_HV_RETR_END_MASK, bp); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_VERT_DISP_START, -+ GLAMO_LCD_HV_RETR_DISP_START_MASK, disp); -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_VERT_DISP_END, -+ GLAMO_LCD_HV_RETR_DISP_END_MASK, fp); -+ -+ glamofb_cmd_mode(glamo, 0); -+ -+out_unlock: -+ dev_dbg(&glamo->mach_info->glamo->pdev->dev, -+ "glamofb_update_lcd_controller spin_unlock_irqrestore\n"); -+ spin_unlock_irqrestore(&glamo->lock_cmd, flags); -+} -+ -+static int glamofb_pan_display(struct fb_var_screeninfo *var, struct fb_info *info) -+{ -+ struct glamofb_handle *glamo = info->par; -+ u_int16_t page = var->yoffset / glamo->mach_info->yres.defval; -+ reg_write(glamo, GLAMO_REG_LCD_COMMAND2, page); -+ -+ return 0; -+} -+ -+static int glamofb_set_par(struct fb_info *info) -+{ -+ struct glamofb_handle *glamo = info->par; -+ struct fb_var_screeninfo *var = &info->var; -+ -+ if (glamo->mach_info->glamo->suspending) { -+ dev_err(&glamo->mach_info->glamo->pdev->dev, "IGNORING glamofb_set_par while " -+ "suspended\n"); -+ return -EBUSY; -+ } -+ -+ switch (var->bits_per_pixel) { -+ case 16: -+ info->fix.visual = FB_VISUAL_TRUECOLOR; -+ break; -+ default: -+ printk("Smedia driver doesn't support != 16bpp\n"); -+ return -EINVAL; -+ } -+ -+ info->fix.line_length = (var->xres * var->bits_per_pixel) / 8; -+ -+ glamofb_update_lcd_controller(glamo, var); -+ -+ return 0; -+} -+ -+ -+static void notify_blank(struct fb_info *info, int blank_mode) -+{ -+ struct fb_event event; -+ -+ event.info = info; -+ event.data = &blank_mode; -+ fb_notifier_call_chain(FB_EVENT_CONBLANK, &event); -+} -+ -+ -+static int glamofb_blank(int blank_mode, struct fb_info *info) -+{ -+ struct glamofb_handle *gfb = info->par; -+ struct glamo_core *gcore = gfb->mach_info->glamo; -+ -+ dev_dbg(gfb->dev, "glamofb_blank(%u)\n", blank_mode); -+ -+ switch (blank_mode) { -+ case FB_BLANK_VSYNC_SUSPEND: -+ case FB_BLANK_HSYNC_SUSPEND: -+ /* FIXME: add pdata hook/flag to indicate whether -+ * we should already switch off pixel clock here */ -+ break; -+ case FB_BLANK_POWERDOWN: -+ /* disable the pixel clock */ -+ glamo_engine_clkreg_set(gcore, GLAMO_ENGINE_LCD, -+ GLAMO_CLOCK_LCD_EN_DCLK, 0); -+ break; -+ case FB_BLANK_UNBLANK: -+ case FB_BLANK_NORMAL: -+ /* enable the pixel clock */ -+ glamo_engine_clkreg_set(gcore, GLAMO_ENGINE_LCD, -+ GLAMO_CLOCK_LCD_EN_DCLK, -+ GLAMO_CLOCK_LCD_EN_DCLK); -+ notify_blank(info, blank_mode); -+ break; -+ } -+ -+ /* FIXME: once we have proper clock management in glamo-core, -+ * we can determine if other units need MCLK1 or the PLL, and -+ * disable it if not used. */ -+ return 0; -+} -+ -+static inline unsigned int chan_to_field(unsigned int chan, -+ struct fb_bitfield *bf) -+{ -+ chan &= 0xffff; -+ chan >>= 16 - bf->length; -+ return chan << bf->offset; -+} -+ -+static int glamofb_setcolreg(unsigned regno, -+ unsigned red, unsigned green, unsigned blue, -+ unsigned transp, struct fb_info *info) -+{ -+ struct glamofb_handle *glamo = info->par; -+ unsigned int val; -+ -+ if (glamo->mach_info->glamo->suspending) { -+ dev_err(&glamo->mach_info->glamo->pdev->dev, "IGNORING glamofb_set_par while " -+ "suspended\n"); -+ return -EBUSY; -+ } -+ -+ switch (glamo->fb->fix.visual) { -+ case FB_VISUAL_TRUECOLOR: -+ case FB_VISUAL_DIRECTCOLOR: -+ /* true-colour, use pseuo-palette */ -+ -+ if (regno < 16) { -+ u32 *pal = glamo->fb->pseudo_palette; -+ -+ val = chan_to_field(red, &glamo->fb->var.red); -+ val |= chan_to_field(green, &glamo->fb->var.green); -+ val |= chan_to_field(blue, &glamo->fb->var.blue); -+ -+ pal[regno] = val; -+ }; -+ break; -+ default: -+ return 1; /* unknown type */ -+ } -+ -+ return 0; -+} -+ -+#ifdef CONFIG_MFD_GLAMO_HWACCEL -+static inline void glamofb_vsync_wait(struct glamofb_handle *glamo, -+ int line, int size, int range) -+{ -+ int count[2]; -+ -+ do { -+ count[0] = reg_read(glamo, GLAMO_REG_LCD_STATUS2) & 0x3ff; -+ count[1] = reg_read(glamo, GLAMO_REG_LCD_STATUS2) & 0x3ff; -+ } while (count[0] != count[1] || -+ (line < count[0] + range && -+ size > count[0] - range) || -+ count[0] < range * 2); -+} -+ -+/* -+ * Enable/disable the hardware cursor mode altogether -+ * (for blinking and such, use glamofb_cursor()). -+ */ -+static void glamofb_cursor_onoff(struct glamofb_handle *glamo, int on) -+{ -+ int y, size; -+ -+ if (glamo->cursor_on) { -+ y = reg_read(glamo, GLAMO_REG_LCD_CURSOR_Y_POS); -+ size = reg_read(glamo, GLAMO_REG_LCD_CURSOR_Y_SIZE); -+ -+ glamofb_vsync_wait(glamo, y, size, 30); -+ } -+ -+ reg_set_bit_mask(glamo, GLAMO_REG_LCD_MODE1, -+ GLAMO_LCD_MODE1_CURSOR_EN, -+ on ? GLAMO_LCD_MODE1_CURSOR_EN : 0); -+ glamo->cursor_on = on; -+ -+ /* Hide the cursor by default */ -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_X_SIZE, 0); -+} -+ -+static int glamofb_cursor(struct fb_info *info, struct fb_cursor *cursor) -+{ -+ struct glamofb_handle *glamo = info->par; -+ unsigned long flags; -+ -+ spin_lock_irqsave(&glamo->lock_cmd, flags); -+ -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_X_SIZE, -+ cursor->enable ? cursor->image.width : 0); -+ -+ if (cursor->set & FB_CUR_SETPOS) { -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_X_POS, -+ cursor->image.dx); -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_Y_POS, -+ cursor->image.dy); -+ } -+ -+ if (cursor->set & FB_CUR_SETCMAP) { -+ uint16_t fg = glamo->pseudo_pal[cursor->image.fg_color]; -+ uint16_t bg = glamo->pseudo_pal[cursor->image.bg_color]; -+ -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_FG_COLOR, fg); -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_BG_COLOR, bg); -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_DST_COLOR, fg); -+ } -+ -+ if (cursor->set & FB_CUR_SETHOT) -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_PRESET, -+ (cursor->hot.x << 8) | cursor->hot.y); -+ -+ if ((cursor->set & FB_CUR_SETSIZE) || -+ (cursor->set & (FB_CUR_SETIMAGE | FB_CUR_SETSHAPE))) { -+ int x, y, pitch, op; -+ const uint8_t *pcol = cursor->image.data; -+ const uint8_t *pmsk = cursor->mask; -+ uint8_t __iomem *dst = glamo->cursor_addr; -+ uint8_t dcol = 0; -+ uint8_t dmsk = 0; -+ uint8_t byte = 0; -+ -+ if (cursor->image.depth > 1) { -+ spin_unlock_irqrestore(&glamo->lock_cmd, flags); -+ return -EINVAL; -+ } -+ -+ pitch = ((cursor->image.width + 7) >> 2) & ~1; -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_PITCH, -+ pitch); -+ reg_write(glamo, GLAMO_REG_LCD_CURSOR_Y_SIZE, -+ cursor->image.height); -+ -+ for (y = 0; y < cursor->image.height; y++) { -+ byte = 0; -+ for (x = 0; x < cursor->image.width; x++) { -+ if ((x % 8) == 0) { -+ dcol = *pcol++; -+ dmsk = *pmsk++; -+ } else { -+ dcol >>= 1; -+ dmsk >>= 1; -+ } -+ -+ if (cursor->rop == ROP_COPY) -+ op = (dmsk & 1) ? -+ (dcol & 1) ? 1 : 3 : 0; -+ else -+ op = ((dmsk & 1) << 1) | -+ ((dcol & 1) << 0); -+ byte |= op << ((x & 3) << 1); -+ -+ if (x % 4 == 3) { -+ writeb(byte, dst + x / 4); -+ byte = 0; -+ } -+ } -+ if (x % 4) { -+ writeb(byte, dst + x / 4); -+ byte = 0; -+ } -+ -+ dst += pitch; -+ } -+ } -+ -+ spin_unlock_irqrestore(&glamo->lock_cmd, flags); -+ -+ return 0; -+} -+#endif -+ -+static inline int glamofb_cmdq_empty(struct glamofb_handle *gfb) -+{ -+ /* DGCMdQempty -- 1 == command queue is empty */ -+ return reg_read(gfb, GLAMO_REG_LCD_STATUS1) & (1 << 15); -+} -+ -+/* call holding gfb->lock_cmd when locking, until you unlock */ -+int glamofb_cmd_mode(struct glamofb_handle *gfb, int on) -+{ -+ int timeout = 2000000; -+ -+ if (gfb->mach_info->glamo->suspending) { -+ dev_err(&gfb->mach_info->glamo->pdev->dev, "IGNORING glamofb_cmd_mode while " -+ "suspended\n"); -+ return -EBUSY; -+ } -+ -+ dev_dbg(gfb->dev, "glamofb_cmd_mode(gfb=%p, on=%d)\n", gfb, on); -+ if (on) { -+ dev_dbg(gfb->dev, "%s: waiting for cmdq empty: ", -+ __FUNCTION__); -+ while ((!glamofb_cmdq_empty(gfb)) && (timeout--)) -+ /* yield() */; -+ if (timeout < 0) { -+ printk(KERN_ERR"*************" -+ "glamofb cmd_queue never got empty" -+ "*************\n"); -+ return -EIO; -+ } -+ dev_dbg(gfb->dev, "empty!\n"); -+ -+ /* display the entire frame then switch to command */ -+ reg_write(gfb, GLAMO_REG_LCD_COMMAND1, -+ GLAMO_LCD_CMD_TYPE_DISP | -+ GLAMO_LCD_CMD_DATA_FIRE_VSYNC); -+ -+ /* wait until lcd idle */ -+ dev_dbg(gfb->dev, "waiting for lcd idle: "); -+ timeout = 2000000; -+ while ((!reg_read(gfb, GLAMO_REG_LCD_STATUS2) & (1 << 12)) && -+ (timeout--)) -+ /* yield() */; -+ if (timeout < 0) { -+ printk(KERN_ERR"*************" -+ "glamofb lcd never idle" -+ "*************\n"); -+ return -EIO; -+ } -+ -+ mdelay(100); -+ -+ dev_dbg(gfb->dev, "cmd mode entered\n"); -+ -+ } else { -+ /* RGB interface needs vsync/hsync */ -+ if (reg_read(gfb, GLAMO_REG_LCD_MODE3) & GLAMO_LCD_MODE3_RGB) -+ reg_write(gfb, GLAMO_REG_LCD_COMMAND1, -+ GLAMO_LCD_CMD_TYPE_DISP | -+ GLAMO_LCD_CMD_DATA_DISP_SYNC); -+ -+ reg_write(gfb, GLAMO_REG_LCD_COMMAND1, -+ GLAMO_LCD_CMD_TYPE_DISP | -+ GLAMO_LCD_CMD_DATA_DISP_FIRE); -+ } -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(glamofb_cmd_mode); -+ -+ -+int glamofb_cmd_write(struct glamofb_handle *gfb, u_int16_t val) -+{ -+ int timeout = 200000; -+ -+ if (gfb->mach_info->glamo->suspending) { -+ dev_err(&gfb->mach_info->glamo->pdev->dev, "IGNORING glamofb_cmd_write while " -+ "suspended\n"); -+ return -EBUSY; -+ } -+ -+ dev_dbg(gfb->dev, "%s: waiting for cmdq empty\n", __FUNCTION__); -+ while ((!glamofb_cmdq_empty(gfb)) && (timeout--)) -+ yield(); -+ if (timeout < 0) { -+ printk(KERN_ERR"*************" -+ "glamofb cmd_queue never got empty" -+ "*************\n"); -+ return 1; -+ } -+ dev_dbg(gfb->dev, "idle, writing 0x%04x\n", val); -+ -+ reg_write(gfb, GLAMO_REG_LCD_COMMAND1, val); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(glamofb_cmd_write); -+ -+static struct fb_ops glamofb_ops = { -+ .owner = THIS_MODULE, -+ .fb_check_var = glamofb_check_var, -+ .fb_pan_display = glamofb_pan_display, -+ .fb_set_par = glamofb_set_par, -+ .fb_blank = glamofb_blank, -+ .fb_setcolreg = glamofb_setcolreg, -+#ifdef CONFIG_MFD_GLAMO_HWACCEL -+ .fb_cursor = glamofb_cursor, -+#endif -+ .fb_fillrect = cfb_fillrect, -+ .fb_copyarea = cfb_copyarea, -+ .fb_imageblit = cfb_imageblit, -+}; -+ -+static int glamofb_init_regs(struct glamofb_handle *glamo) -+{ -+ struct fb_info *info = glamo->fb; -+ -+ glamofb_check_var(&info->var, info); -+ glamofb_run_script(glamo, glamo_regs, ARRAY_SIZE(glamo_regs)); -+ glamofb_set_par(info); -+ -+ return 0; -+} -+ -+static int __init glamofb_probe(struct platform_device *pdev) -+{ -+ int rc = -EIO; -+ struct fb_info *fbinfo; -+ struct glamofb_handle *glamofb; -+ struct glamofb_platform_data *mach_info = pdev->dev.platform_data; -+ -+ printk(KERN_INFO "SMEDIA Glamo frame buffer driver (C) 2007 " -+ "Openmoko, Inc.\n"); -+ -+ fbinfo = framebuffer_alloc(sizeof(struct glamofb_handle), &pdev->dev); -+ if (!fbinfo) -+ return -ENOMEM; -+ -+ glamofb = fbinfo->par; -+ glamofb->fb = fbinfo; -+ glamofb->dev = &pdev->dev; -+ -+ strcpy(fbinfo->fix.id, "SMedia Glamo"); -+ -+ glamofb->reg = platform_get_resource_byname(pdev, IORESOURCE_MEM, -+ "glamo-fb-regs"); -+ if (!glamofb->reg) { -+ dev_err(&pdev->dev, "platform device with no registers?\n"); -+ rc = -ENOENT; -+ goto out_free; -+ } -+ -+ glamofb->fb_res = platform_get_resource_byname(pdev, IORESOURCE_MEM, -+ "glamo-fb-mem"); -+ if (!glamofb->fb_res) { -+ dev_err(&pdev->dev, "platform device with no memory ?\n"); -+ rc = -ENOENT; -+ goto out_free; -+ } -+ -+ glamofb->reg = request_mem_region(glamofb->reg->start, -+ RESSIZE(glamofb->reg), pdev->name); -+ if (!glamofb->reg) { -+ dev_err(&pdev->dev, "failed to request mmio region\n"); -+ goto out_free; -+ } -+ -+ glamofb->fb_res = request_mem_region(glamofb->fb_res->start, -+ mach_info->fb_mem_size, -+ pdev->name); -+ if (!glamofb->fb_res) { -+ dev_err(&pdev->dev, "failed to request vram region\n"); -+ goto out_release_reg; -+ } -+ -+ /* we want to remap only the registers required for this core -+ * driver. */ -+ glamofb->base = ioremap(glamofb->reg->start, RESSIZE(glamofb->reg)); -+ if (!glamofb->base) { -+ dev_err(&pdev->dev, "failed to ioremap() mmio memory\n"); -+ goto out_release_fb; -+ } -+ fbinfo->fix.smem_start = (unsigned long) glamofb->fb_res->start; -+ fbinfo->fix.smem_len = mach_info->fb_mem_size; -+ -+ fbinfo->screen_base = ioremap(glamofb->fb_res->start, -+ RESSIZE(glamofb->fb_res)); -+ if (!fbinfo->screen_base) { -+ dev_err(&pdev->dev, "failed to ioremap() vram memory\n"); -+ goto out_release_fb; -+ } -+ glamofb->cursor_addr = fbinfo->screen_base + 0x12C000; -+ -+ platform_set_drvdata(pdev, glamofb); -+ -+ glamofb->mach_info = pdev->dev.platform_data; -+ -+ fbinfo->fix.visual = FB_VISUAL_TRUECOLOR; -+ fbinfo->fix.type = FB_TYPE_PACKED_PIXELS; -+ fbinfo->fix.type_aux = 0; -+ fbinfo->fix.xpanstep = 0; -+ fbinfo->fix.ypanstep = mach_info->yres.defval; -+ fbinfo->fix.ywrapstep = 0; -+ fbinfo->fix.accel = FB_ACCEL_GLAMO; -+ -+ fbinfo->var.nonstd = 0; -+ fbinfo->var.activate = FB_ACTIVATE_NOW; -+ fbinfo->var.height = mach_info->height; -+ fbinfo->var.width = mach_info->width; -+ fbinfo->var.accel_flags = 0; /* FIXME */ -+ fbinfo->var.vmode = FB_VMODE_NONINTERLACED; -+ -+ fbinfo->fbops = &glamofb_ops; -+ fbinfo->flags = FBINFO_FLAG_DEFAULT; -+ fbinfo->pseudo_palette = &glamofb->pseudo_pal; -+ -+ fbinfo->var.xres = mach_info->xres.defval; -+ fbinfo->var.xres_virtual = mach_info->xres.defval; -+ fbinfo->var.yres = mach_info->yres.defval; -+ fbinfo->var.yres_virtual = mach_info->yres.defval * 2; -+ fbinfo->var.bits_per_pixel = mach_info->bpp.defval; -+ -+ fbinfo->var.pixclock = mach_info->pixclock; -+ fbinfo->var.left_margin = mach_info->left_margin; -+ fbinfo->var.right_margin = mach_info->right_margin; -+ fbinfo->var.upper_margin = mach_info->upper_margin; -+ fbinfo->var.lower_margin = mach_info->lower_margin; -+ fbinfo->var.hsync_len = mach_info->hsync_len; -+ fbinfo->var.vsync_len = mach_info->vsync_len; -+ -+ memset(fbinfo->screen_base, 0, -+ mach_info->xres.max * -+ mach_info->yres.max * -+ mach_info->bpp.max / 8); -+ -+ glamo_engine_enable(mach_info->glamo, GLAMO_ENGINE_LCD); -+ glamo_engine_reset(mach_info->glamo, GLAMO_ENGINE_LCD); -+ -+ dev_info(&pdev->dev, "spin_lock_init\n"); -+ spin_lock_init(&glamofb->lock_cmd); -+ glamofb_init_regs(glamofb); -+#ifdef CONFIG_MFD_GLAMO_HWACCEL -+ glamofb_cursor_onoff(glamofb, 1); -+#endif -+ -+ rc = register_framebuffer(fbinfo); -+ if (rc < 0) { -+ dev_err(&pdev->dev, "failed to register framebuffer\n"); -+ goto out_unmap_fb; -+ } -+ -+ if (mach_info->spi_info) { -+ /* register the sibling spi device */ -+ mach_info->spi_info->glamofb_handle = glamofb; -+ glamo_spi_dev.dev.parent = &pdev->dev; -+ glamo_spi_dev.dev.platform_data = mach_info->spi_info; -+ platform_device_register(&glamo_spi_dev); -+ } -+ -+ printk(KERN_INFO "fb%d: %s frame buffer device\n", -+ fbinfo->node, fbinfo->fix.id); -+ -+ return 0; -+ -+out_unmap_fb: -+ iounmap(fbinfo->screen_base); -+ iounmap(glamofb->base); -+out_release_fb: -+ release_mem_region(glamofb->fb_res->start, RESSIZE(glamofb->fb_res)); -+out_release_reg: -+ release_mem_region(glamofb->reg->start, RESSIZE(glamofb->reg)); -+out_free: -+ framebuffer_release(fbinfo); -+ return rc; -+} -+ -+static int glamofb_remove(struct platform_device *pdev) -+{ -+ struct glamofb_handle *glamofb = platform_get_drvdata(pdev); -+ -+ platform_set_drvdata(pdev, NULL); -+ iounmap(glamofb->base); -+ release_mem_region(glamofb->reg->start, RESSIZE(glamofb->reg)); -+ kfree(glamofb); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+ -+static int glamofb_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ struct glamofb_handle *gfb = platform_get_drvdata(pdev); -+ -+ /* we need to stop anything touching our framebuffer */ -+// fb_blank(gfb->fb, FB_BLANK_NORMAL); -+ fb_set_suspend(gfb->fb, 1); -+ -+ /* seriously -- nobody is allowed to touch glamo memory when we -+ * are suspended or we lock on nWAIT -+ */ -+// iounmap(gfb->fb->screen_base); -+ -+ return 0; -+} -+ -+static int glamofb_resume(struct platform_device *pdev) -+{ -+ struct glamofb_handle *glamofb = platform_get_drvdata(pdev); -+ struct glamofb_platform_data *mach_info = pdev->dev.platform_data; -+ -+ /* OK let's allow framebuffer ops again */ -+// gfb->fb->screen_base = ioremap(gfb->fb_res->start, -+// RESSIZE(gfb->fb_res)); -+ glamo_engine_enable(mach_info->glamo, GLAMO_ENGINE_LCD); -+ glamo_engine_reset(mach_info->glamo, GLAMO_ENGINE_LCD); -+ -+ printk(KERN_ERR"spin_lock_init\n"); -+ spin_lock_init(&glamofb->lock_cmd); -+ glamofb_init_regs(glamofb); -+#ifdef CONFIG_MFD_GLAMO_HWACCEL -+ glamofb_cursor_onoff(glamofb, 1); -+#endif -+ -+ -+ fb_set_suspend(glamofb->fb, 0); -+// fb_blank(gfb->fb, FB_BLANK_UNBLANK); -+ -+ return 0; -+} -+#else -+#define glamo_suspend NULL -+#define glamo_resume NULL -+#endif -+ -+static struct platform_driver glamofb_driver = { -+ .probe = glamofb_probe, -+ .remove = glamofb_remove, -+ .suspend = glamofb_suspend, -+ .resume = glamofb_resume, -+ .driver = { -+ .name = "glamo-fb", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+static int __devinit glamofb_init(void) -+{ -+ return platform_driver_register(&glamofb_driver); -+} -+ -+static void __exit glamofb_cleanup(void) -+{ -+ platform_driver_unregister(&glamofb_driver); -+} -+ -+module_init(glamofb_init); -+module_exit(glamofb_cleanup); -+ -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_DESCRIPTION("Smedia Glamo 336x/337x framebuffer driver"); -+MODULE_LICENSE("GPL"); ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-gpio.c -@@ -0,0 +1,62 @@ -+ -+#include <linux/kernel.h> -+#include <linux/module.h> -+#include <linux/spinlock.h> -+#include <linux/io.h> -+ -+#include <linux/glamo-gpio.h> -+ -+#include "glamo-core.h" -+#include "glamo-regs.h" -+ -+void glamo_gpio_setpin(struct glamo_core *glamo, unsigned int pin, -+ unsigned int value) -+{ -+ unsigned int reg = REG_OF_GPIO(pin); -+ u_int16_t tmp; -+ -+ spin_lock(&glamo->lock); -+ tmp = readw(glamo->base + reg); -+ if (value) -+ tmp |= OUTPUT_BIT(pin); -+ else -+ tmp &= ~OUTPUT_BIT(pin); -+ writew(tmp, glamo->base + reg); -+ spin_unlock(&glamo->lock); -+} -+EXPORT_SYMBOL(glamo_gpio_setpin); -+ -+int glamo_gpio_getpin(struct glamo_core *glamo, unsigned int pin) -+{ -+ return readw(REG_OF_GPIO(pin)) & INPUT_BIT(pin) ? 1 : 0; -+} -+EXPORT_SYMBOL(glamo_gpio_getpin); -+ -+void glamo_gpio_cfgpin(struct glamo_core *glamo, unsigned int pinfunc) -+{ -+ unsigned int reg = REG_OF_GPIO(pinfunc); -+ u_int16_t tmp; -+ -+ spin_lock(&glamo->lock); -+ tmp = readw(glamo->base + reg); -+ -+ if ((pinfunc & 0x00f0) == GLAMO_GPIO_F_FUNC) { -+ /* pin is a function pin: clear gpio bit */ -+ tmp &= ~FUNC_BIT(pinfunc); -+ } else { -+ /* pin is gpio: set gpio bit */ -+ tmp |= FUNC_BIT(pinfunc); -+ -+ if (pinfunc & GLAMO_GPIO_F_IN) { -+ /* gpio input: set bit to disable output mode */ -+ tmp |= GPIO_OUT_BIT(pinfunc); -+ } else if (pinfunc & GLAMO_GPIO_F_OUT) { -+ /* gpio output: clear bit to enable output mode */ -+ tmp &= ~GPIO_OUT_BIT(pinfunc); -+ } -+ } -+ writew(tmp, glamo->base + reg); -+ spin_unlock(&glamo->lock); -+} -+EXPORT_SYMBOL(glamo_gpio_cfgpin); -+ ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-lcm-spi.c -@@ -0,0 +1,240 @@ -+/* -+ * Copyright (C) 2007 Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * -+ * Smedia Glamo GPIO based SPI driver -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * This driver currently only implements a minimum subset of the hardware -+ * features, esp. those features that are required to drive the jbt6k74 -+ * LCM controller asic in the TD028TTEC1 LCM. -+ * -+*/ -+ -+#define DEBUG -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/delay.h> -+#include <linux/device.h> -+#include <linux/spinlock.h> -+#include <linux/workqueue.h> -+#include <linux/platform_device.h> -+ -+#include <linux/spi/spi.h> -+#include <linux/spi/spi_bitbang.h> -+#include <linux/spi/glamo.h> -+ -+#include <linux/glamofb.h> -+ -+#include <mach/hardware.h> -+ -+#include "glamo-core.h" -+#include "glamo-regs.h" -+ -+struct glamo_spi { -+ struct spi_bitbang bitbang; -+ struct spi_master *master; -+ struct glamo_spi_info *info; -+ struct device *dev; -+}; -+ -+static inline struct glamo_spi *to_gs(struct spi_device *spi) -+{ -+ return spi->controller_data; -+} -+ -+static int glamo_spi_setupxfer(struct spi_device *spi, struct spi_transfer *t) -+{ -+ unsigned int bpw; -+ -+ bpw = t ? t->bits_per_word : spi->bits_per_word; -+ -+ if (bpw != 9 && bpw != 8) { -+ dev_err(&spi->dev, "invalid bits-per-word (%d)\n", bpw); -+ return -EINVAL; -+ } -+ -+ return 0; -+} -+ -+static void glamo_spi_chipsel(struct spi_device *spi, int value) -+{ -+#if 0 -+ struct glamo_spi *gs = to_gs(spi); -+ -+ dev_dbg(&spi->dev, "chipsel %d: spi=%p, gs=%p, info=%p, handle=%p\n", -+ value, spi, gs, gs->info, gs->info->glamofb_handle); -+ -+ glamofb_cmd_mode(gs->info->glamofb_handle, value); -+#endif -+} -+ -+static int glamo_spi_txrx(struct spi_device *spi, struct spi_transfer *t) -+{ -+ struct glamo_spi *gs = to_gs(spi); -+ const u_int16_t *ui16 = (const u_int16_t *) t->tx_buf; -+ u_int16_t nine_bits; -+ int i; -+ -+ dev_dbg(&spi->dev, "txrx: tx %p, rx %p, bpw %d, len %d\n", -+ t->tx_buf, t->rx_buf, t->bits_per_word, t->len); -+ -+ if (spi->bits_per_word == 9) -+ nine_bits = (1 << 9); -+ else -+ nine_bits = 0; -+ -+ if (t->len > 3 * sizeof(u_int16_t)) { -+ dev_err(&spi->dev, "this driver doesn't support " -+ "%u sized xfers\n", t->len); -+ return -EINVAL; -+ } -+ -+ for (i = 0; i < t->len/sizeof(u_int16_t); i++) { -+ /* actually transfer the data */ -+#if 1 -+ glamofb_cmd_write(gs->info->glamofb_handle, -+ GLAMO_LCD_CMD_TYPE_SERIAL | nine_bits | -+ (1 << 10) | (1 << 11) | (ui16[i] & 0x1ff)); -+#endif -+ /* FIXME: fire ?!? */ -+ if (i == 0 && (ui16[i] & 0x1ff) == 0x29) { -+ dev_dbg(&spi->dev, "leaving command mode\n"); -+ glamofb_cmd_mode(gs->info->glamofb_handle, 0); -+ } -+ } -+ -+ return t->len; -+} -+ -+static int glamo_spi_setup(struct spi_device *spi) -+{ -+ int ret; -+ -+ if (!spi->bits_per_word) -+ spi->bits_per_word = 9; -+ -+ /* FIXME: hardware can do this */ -+ if (spi->mode & SPI_LSB_FIRST) -+ return -EINVAL; -+ -+ ret = glamo_spi_setupxfer(spi, NULL); -+ if (ret < 0) { -+ dev_err(&spi->dev, "setupxfer returned %d\n", ret); -+ return ret; -+ } -+ -+ dev_dbg(&spi->dev, "%s: mode %d, %u bpw\n", -+ __FUNCTION__, spi->mode, spi->bits_per_word); -+ -+ return 0; -+} -+ -+static int glamo_spi_probe(struct platform_device *pdev) -+{ -+ struct spi_master *master; -+ struct glamo_spi *sp; -+ int ret; -+ int i; -+ -+ master = spi_alloc_master(&pdev->dev, sizeof(struct glamo_spi)); -+ if (master == NULL) { -+ dev_err(&pdev->dev, "failed to allocate spi master\n"); -+ ret = -ENOMEM; -+ goto err; -+ } -+ -+ sp = spi_master_get_devdata(master); -+ memset(sp, 0, sizeof(struct glamo_spi)); -+ -+ sp->master = spi_master_get(master); -+ sp->info = pdev->dev.platform_data; -+ if (!sp->info) { -+ dev_err(&pdev->dev, "can't operate without platform data\n"); -+ ret = -EIO; -+ goto err_no_pdev; -+ } -+ dev_dbg(&pdev->dev, "sp->info(pdata) = %p\n", sp->info); -+ -+ sp->dev = &pdev->dev; -+ -+ platform_set_drvdata(pdev, sp); -+ -+ sp->bitbang.master = sp->master; -+ sp->bitbang.setup_transfer = glamo_spi_setupxfer; -+ sp->bitbang.chipselect = glamo_spi_chipsel; -+ sp->bitbang.txrx_bufs = glamo_spi_txrx; -+ sp->bitbang.master->setup = glamo_spi_setup; -+ -+ ret = spi_bitbang_start(&sp->bitbang); -+ if (ret) -+ goto err_no_bitbang; -+ -+ /* register the chips to go with the board */ -+ -+ glamofb_cmd_mode(sp->info->glamofb_handle, 1); -+ -+ for (i = 0; i < sp->info->board_size; i++) { -+ dev_info(&pdev->dev, "registering %p: %s\n", -+ &sp->info->board_info[i], -+ sp->info->board_info[i].modalias); -+ -+ sp->info->board_info[i].controller_data = sp; -+ spi_new_device(master, sp->info->board_info + i); -+ } -+ -+ return 0; -+ -+err_no_bitbang: -+ platform_set_drvdata(pdev, NULL); -+err_no_pdev: -+ spi_master_put(sp->bitbang.master); -+err: -+ return ret; -+ -+} -+ -+static int glamo_spi_remove(struct platform_device *pdev) -+{ -+ struct glamo_spi *sp = platform_get_drvdata(pdev); -+ -+ spi_bitbang_stop(&sp->bitbang); -+ spi_master_put(sp->bitbang.master); -+ -+ return 0; -+} -+ -+#define glamo_spi_suspend NULL -+#define glamo_spi_resume NULL -+ -+static struct platform_driver glamo_spi_drv = { -+ .probe = glamo_spi_probe, -+ .remove = glamo_spi_remove, -+ .suspend = glamo_spi_suspend, -+ .resume = glamo_spi_resume, -+ .driver = { -+ .name = "glamo-lcm-spi", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+static int __init glamo_spi_init(void) -+{ -+ return platform_driver_register(&glamo_spi_drv); -+} -+ -+static void __exit glamo_spi_exit(void) -+{ -+ platform_driver_unregister(&glamo_spi_drv); -+} -+ -+module_init(glamo_spi_init); -+module_exit(glamo_spi_exit); -+ -+MODULE_DESCRIPTION("Smedia Glamo 336x/337x LCM serial command SPI Driver"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>") -+MODULE_LICENSE("GPL"); ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-mci.c -@@ -0,0 +1,1133 @@ -+/* -+ * linux/drivers/mmc/host/glamo-mmc.c - Glamo MMC driver -+ * -+ * Copyright (C) 2007 Openmoko, Inc, Andy Green <andy@openmoko.com> -+ * Based on S3C MMC driver that was: -+ * Copyright (C) 2004-2006 maintech GmbH, Thomas Kleffel <tk@maintech.de> -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/module.h> -+#include <linux/dma-mapping.h> -+#include <linux/clk.h> -+#include <linux/mmc/mmc.h> -+#include <linux/mmc/host.h> -+#include <linux/platform_device.h> -+#include <linux/irq.h> -+#include <linux/pcf50633.h> -+#include <linux/delay.h> -+#include <linux/interrupt.h> -+#include <linux/spinlock.h> -+ -+#include <asm/dma.h> -+#include <asm/dma-mapping.h> -+#include <asm/io.h> -+ -+#include "glamo-mci.h" -+#include "glamo-core.h" -+#include "glamo-regs.h" -+ -+/* from glamo-core.c */ -+extern struct glamo_mci_pdata glamo_mci_def_pdata; -+ -+static spinlock_t clock_lock; -+ -+#define DRIVER_NAME "glamo-mci" -+#define RESSIZE(ressource) (((ressource)->end - (ressource)->start) + 1) -+ -+static void glamo_mci_send_request(struct mmc_host *mmc); -+ -+/* -+ * Max SD clock rate -+ * -+ * held at /(3 + 1) due to concerns of 100R recommended series resistor -+ * allows 16MHz @ 4-bit --> 8MBytes/sec raw -+ * -+ * you can override this on kernel commandline using -+ * -+ * glamo_mci.sd_max_clk=10000000 -+ * -+ * for example -+ */ -+ -+static int sd_max_clk = 50000000 / 3; -+module_param(sd_max_clk, int, 0644); -+ -+/* -+ * Slow SD clock rate -+ * -+ * you can override this on kernel commandline using -+ * -+ * glamo_mci.sd_slow_ratio=8 -+ * -+ * for example -+ * -+ * platform callback is used to decide effective clock rate, if not -+ * defined then max is used, if defined and returns nonzero, rate is -+ * divided by this factor -+ */ -+ -+static int sd_slow_ratio = 8; -+module_param(sd_slow_ratio, int, 0644); -+ -+/* -+ * Post-power SD clock rate -+ * -+ * you can override this on kernel commandline using -+ * -+ * glamo_mci.sd_post_power_clock=1000000 -+ * -+ * for example -+ * -+ * After changing power to card, clock is held at this rate until first bulk -+ * transfer completes -+ */ -+ -+static int sd_post_power_clock = 1000000; -+module_param(sd_post_power_clock, int, 0644); -+ -+ -+/* -+ * SD Signal drive strength -+ * -+ * you can override this on kernel commandline using -+ * -+ * glamo_mci.sd_drive=0 -+ * -+ * for example -+ */ -+ -+static int sd_drive; -+module_param(sd_drive, int, 0644); -+ -+/* -+ * SD allow SD clock to run while idle -+ * -+ * you can override this on kernel commandline using -+ * -+ * glamo_mci.sd_idleclk=0 -+ * -+ * for example -+ */ -+ -+static int sd_idleclk = 0; /* disallow idle clock by default */ -+module_param(sd_idleclk, int, 0644); -+ -+/* used to stash real idleclk state in suspend: we force it to run in there */ -+static int suspend_sd_idleclk; -+ -+ -+unsigned char CRC7(u8 * pu8, int cnt) -+{ -+ u8 crc = 0; -+ -+ while (cnt--) { -+ int n; -+ u8 d = *pu8++; -+ for (n = 0; n < 8; n++) { -+ crc <<= 1; -+ if ((d & 0x80) ^ (crc & 0x80)) -+ crc ^= 0x09; -+ d <<= 1; -+ } -+ } -+ return (crc << 1) | 1; -+} -+ -+static int get_data_buffer(struct glamo_mci_host *host, -+ volatile u32 *words, volatile u16 **pointer) -+{ -+ struct scatterlist *sg; -+ -+ *words = 0; -+ *pointer = NULL; -+ -+ if (host->pio_active == XFER_NONE) -+ return -EINVAL; -+ -+ if ((!host->mrq) || (!host->mrq->data)) -+ return -EINVAL; -+ -+ if (host->pio_sgptr >= host->mrq->data->sg_len) { -+ dev_dbg(&host->pdev->dev, "no more buffers (%i/%i)\n", -+ host->pio_sgptr, host->mrq->data->sg_len); -+ return -EBUSY; -+ } -+ sg = &host->mrq->data->sg[host->pio_sgptr]; -+ -+ *words = sg->length >> 1; /* we are working with a 16-bit data bus */ -+ *pointer = page_address(sg_page(sg)) + sg->offset; -+ -+ BUG_ON(((long)(*pointer)) & 1); -+ -+ host->pio_sgptr++; -+ -+ /* dev_info(&host->pdev->dev, "new buffer (%i/%i)\n", -+ host->pio_sgptr, host->mrq->data->sg_len); */ -+ return 0; -+} -+ -+static void do_pio_read(struct glamo_mci_host *host) -+{ -+ int res; -+ u16 __iomem *from_ptr = host->base_data + (RESSIZE(host->mem_data) / -+ sizeof(u16) / 2); -+#ifdef DEBUG -+ u16 * block; -+#endif -+ -+ while (1) { -+ res = get_data_buffer(host, &host->pio_words, &host->pio_ptr); -+ if (res) { -+ host->pio_active = XFER_NONE; -+ host->complete_what = COMPLETION_FINALIZE; -+ -+ dev_dbg(&host->pdev->dev, "pio_read(): " -+ "complete (no more data).\n"); -+ return; -+ } -+ -+ dev_dbg(&host->pdev->dev, "pio_read(): host->pio_words: %d\n", -+ host->pio_words); -+ -+ host->pio_count += host->pio_words << 1; -+ -+#ifdef DEBUG -+ block = (u16 *)host->pio_ptr; -+ res = host->pio_words << 1; -+#endif -+#if 0 -+ /* u16-centric memcpy */ -+ while (host->pio_words--) -+ *host->pio_ptr++ = *from_ptr++; -+#else -+ /* memcpy can be faster? */ -+ memcpy((void *)host->pio_ptr, from_ptr, host->pio_words << 1); -+ host->pio_ptr += host->pio_words; -+#endif -+ -+#ifdef DEBUG -+ print_hex_dump(KERN_DEBUG, "", DUMP_PREFIX_OFFSET, 16, 1, -+ (void *)block, res, 1); -+#endif -+ } -+} -+ -+static int do_pio_write(struct glamo_mci_host *host) -+{ -+ int res = 0; -+ volatile u16 __iomem *to_ptr = host->base_data; -+ int err = 0; -+ -+ dev_dbg(&host->pdev->dev, "pio_write():\n"); -+ while (!res) { -+ res = get_data_buffer(host, &host->pio_words, &host->pio_ptr); -+ if (res) -+ continue; -+ -+ dev_dbg(&host->pdev->dev, "pio_write():new source: [%i]@[%p]\n", -+ host->pio_words, host->pio_ptr); -+ -+ host->pio_count += host->pio_words << 1; -+ while (host->pio_words--) -+ writew(*host->pio_ptr++, to_ptr++); -+ } -+ -+ dev_dbg(&host->pdev->dev, "pio_write(): complete\n"); -+ host->pio_active = XFER_NONE; -+ return err; -+} -+ -+static void __glamo_mci_fix_card_div(struct glamo_mci_host *host, int div) -+{ -+ unsigned long flags; -+ -+ spin_lock_irqsave(&clock_lock, flags); -+ -+ if (div < 0) { -+ /* stop clock - remove clock from divider input */ -+ writew(readw(glamo_mci_def_pdata.pglamo->base + -+ GLAMO_REG_CLOCK_GEN5_1) & (~GLAMO_CLOCK_GEN51_EN_DIV_TCLK), -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_CLOCK_GEN5_1); -+ -+ goto done; -+ } else { -+ /* set the nearest prescaler factor -+ * -+ * register shared with SCLK divisor -- no chance of race because -+ * we don't use sensor interface -+ */ -+ writew((readw(glamo_mci_def_pdata.pglamo->base + -+ GLAMO_REG_CLOCK_GEN8) & 0xff00) | div, -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_CLOCK_GEN8); -+ /* enable clock to divider input */ -+ writew(readw(glamo_mci_def_pdata.pglamo->base + -+ GLAMO_REG_CLOCK_GEN5_1) | GLAMO_CLOCK_GEN51_EN_DIV_TCLK, -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_CLOCK_GEN5_1); -+ } -+ -+ if (host->force_slow_during_powerup) -+ div = host->clk_rate / sd_post_power_clock; -+ else -+ if (host->pdata->glamo_mci_use_slow) -+ if ((host->pdata->glamo_mci_use_slow)()) -+ div = div * sd_slow_ratio; -+ -+ if (div > 255) -+ div = 255; -+ -+ /* -+ * set the nearest prescaler factor -+ * -+ * register shared with SCLK divisor -- no chance of race because -+ * we don't use sensor interface -+ */ -+ writew((readw(glamo_mci_def_pdata.pglamo->base + -+ GLAMO_REG_CLOCK_GEN8) & 0xff00) | div, -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_CLOCK_GEN8); -+ /* enable clock to divider input */ -+ writew(readw(glamo_mci_def_pdata.pglamo->base + -+ GLAMO_REG_CLOCK_GEN5_1) | GLAMO_CLOCK_GEN51_EN_DIV_TCLK, -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_CLOCK_GEN5_1); -+ -+done: -+ spin_unlock_irqrestore(&clock_lock, flags); -+} -+ -+static int __glamo_mci_set_card_clock(struct glamo_mci_host *host, int freq, -+ int *division) -+{ -+ int div = 0; -+ int real_rate = 0; -+ -+ if (freq) { -+ /* Set clock */ -+ for (div = 0; div < 256; div++) { -+ real_rate = host->clk_rate / (div + 1); -+ if (real_rate <= freq) -+ break; -+ } -+ if (div > 255) -+ div = 255; -+ -+ if (division) -+ *division = div; -+ -+ __glamo_mci_fix_card_div(host, div); -+ -+ } else { -+ /* stop clock */ -+ if (division) -+ *division = 0xff; -+ -+ if (!sd_idleclk && !host->force_slow_during_powerup) -+ /* clock off */ -+ __glamo_mci_fix_card_div(host, -1); -+ } -+ -+ return real_rate; -+} -+ -+static void glamo_mci_irq(unsigned int irq, struct irq_desc *desc) -+{ -+ struct glamo_mci_host *host = (struct glamo_mci_host *) -+ desc->handler_data; -+ u16 status; -+ struct mmc_command *cmd; -+ unsigned long iflags; -+ -+ if (!host) -+ return; -+ -+ if (host->suspending) { /* bad news, dangerous time */ -+ dev_err(&host->pdev->dev, "****glamo_mci_irq before resumed\n"); -+ return; -+ } -+ -+ if (!host->mrq) -+ return; -+ cmd = host->mrq->cmd; -+ if (!cmd) -+ return; -+ -+ spin_lock_irqsave(&host->complete_lock, iflags); -+ -+ status = readw(host->base + GLAMO_REG_MMC_RB_STAT1); -+ -+ /* ack this interrupt source */ -+ writew(GLAMO_IRQ_MMC, -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_IRQ_CLEAR); -+ -+ if (status & (GLAMO_STAT1_MMC_RTOUT | -+ GLAMO_STAT1_MMC_DTOUT)) -+ cmd->error = -ETIMEDOUT; -+ if (status & (GLAMO_STAT1_MMC_BWERR | -+ GLAMO_STAT1_MMC_BRERR)) -+ cmd->error = -EILSEQ; -+ if (cmd->error) { -+ dev_info(&host->pdev->dev, "Error after cmd: 0x%x\n", status); -+ goto done; -+ } -+ -+ /* disable the initial slow start after first bulk transfer */ -+ if (host->force_slow_during_powerup) -+ host->force_slow_during_powerup--; -+ -+ if (host->pio_active == XFER_READ) -+ do_pio_read(host); -+ -+ host->mrq->data->bytes_xfered = host->pio_count; -+ dev_dbg(&host->pdev->dev, "status = 0x%04x count=%d\n", -+ status, host->pio_count); -+ -+ /* issue STOP if we have been given one to use */ -+ if (host->mrq->stop) { -+ host->cmd_is_stop = 1; -+ glamo_mci_send_request(host->mmc); -+ host->cmd_is_stop = 0; -+ } -+ -+ if (!sd_idleclk && !host->force_slow_during_powerup) -+ /* clock off */ -+ __glamo_mci_fix_card_div(host, -1); -+ -+done: -+ host->complete_what = COMPLETION_NONE; -+ host->mrq = NULL; -+ mmc_request_done(host->mmc, cmd->mrq); -+ spin_unlock_irqrestore(&host->complete_lock, iflags); -+} -+ -+static int glamo_mci_send_command(struct glamo_mci_host *host, -+ struct mmc_command *cmd) -+{ -+ u8 u8a[6]; -+ u16 fire = 0; -+ -+ /* if we can't do it, reject as busy */ -+ if (!readw(host->base + GLAMO_REG_MMC_RB_STAT1) & -+ GLAMO_STAT1_MMC_IDLE) { -+ host->mrq = NULL; -+ cmd->error = -EBUSY; -+ mmc_request_done(host->mmc, host->mrq); -+ return -EBUSY; -+ } -+ -+ /* create an array in wire order for CRC computation */ -+ u8a[0] = 0x40 | (cmd->opcode & 0x3f); -+ u8a[1] = (u8)(cmd->arg >> 24); -+ u8a[2] = (u8)(cmd->arg >> 16); -+ u8a[3] = (u8)(cmd->arg >> 8); -+ u8a[4] = (u8)cmd->arg; -+ u8a[5] = CRC7(&u8a[0], 5); /* CRC7 on first 5 bytes of packet */ -+ -+ /* issue the wire-order array including CRC in register order */ -+ writew((u8a[4] << 8) | u8a[5], host->base + GLAMO_REG_MMC_CMD_REG1); -+ writew((u8a[2] << 8) | u8a[3], host->base + GLAMO_REG_MMC_CMD_REG2); -+ writew((u8a[0] << 8) | u8a[1], host->base + GLAMO_REG_MMC_CMD_REG3); -+ -+ /* command index toggle */ -+ fire |= (host->ccnt & 1) << 12; -+ -+ /* set type of command */ -+ switch (mmc_cmd_type(cmd)) { -+ case MMC_CMD_BC: -+ fire |= GLAMO_FIRE_MMC_CMDT_BNR; -+ break; -+ case MMC_CMD_BCR: -+ fire |= GLAMO_FIRE_MMC_CMDT_BR; -+ break; -+ case MMC_CMD_AC: -+ fire |= GLAMO_FIRE_MMC_CMDT_AND; -+ break; -+ case MMC_CMD_ADTC: -+ fire |= GLAMO_FIRE_MMC_CMDT_AD; -+ break; -+ } -+ /* -+ * if it expects a response, set the type expected -+ * -+ * R1, Length : 48bit, Normal response -+ * R1b, Length : 48bit, same R1, but added card busy status -+ * R2, Length : 136bit (really 128 bits with CRC snipped) -+ * R3, Length : 48bit (OCR register value) -+ * R4, Length : 48bit, SDIO_OP_CONDITION, Reverse SDIO Card -+ * R5, Length : 48bit, IO_RW_DIRECTION, Reverse SDIO Card -+ * R6, Length : 48bit (RCA register) -+ * R7, Length : 48bit (interface condition, VHS(voltage supplied), -+ * check pattern, CRC7) -+ */ -+ switch (mmc_resp_type(cmd)) { -+ case MMC_RSP_R6: /* same index as R7 and R1 */ -+ fire |= GLAMO_FIRE_MMC_RSPT_R1; -+ break; -+ case MMC_RSP_R1B: -+ fire |= GLAMO_FIRE_MMC_RSPT_R1b; -+ break; -+ case MMC_RSP_R2: -+ fire |= GLAMO_FIRE_MMC_RSPT_R2; -+ break; -+ case MMC_RSP_R3: -+ fire |= GLAMO_FIRE_MMC_RSPT_R3; -+ break; -+ /* R4 and R5 supported by chip not defined in linux/mmc/core.h (sdio) */ -+ } -+ /* -+ * From the command index, set up the command class in the host ctrllr -+ * -+ * missing guys present on chip but couldn't figure out how to use yet: -+ * 0x0 "stream read" -+ * 0x9 "cancel running command" -+ */ -+ switch (cmd->opcode) { -+ case MMC_READ_SINGLE_BLOCK: -+ fire |= GLAMO_FIRE_MMC_CC_SBR; /* single block read */ -+ break; -+ case MMC_SWITCH: /* 64 byte payload */ -+ case 0x33: /* observed issued by MCI */ -+ case MMC_READ_MULTIPLE_BLOCK: -+ /* we will get an interrupt off this */ -+ if (!cmd->mrq->stop) -+ /* multiblock no stop */ -+ fire |= GLAMO_FIRE_MMC_CC_MBRNS; -+ else -+ /* multiblock with stop */ -+ fire |= GLAMO_FIRE_MMC_CC_MBRS; -+ break; -+ case MMC_WRITE_BLOCK: -+ fire |= GLAMO_FIRE_MMC_CC_SBW; /* single block write */ -+ break; -+ case MMC_WRITE_MULTIPLE_BLOCK: -+ if (cmd->mrq->stop) -+ /* multiblock with stop */ -+ fire |= GLAMO_FIRE_MMC_CC_MBWS; -+ else -+// /* multiblock NO stop-- 'RESERVED'? */ -+ fire |= GLAMO_FIRE_MMC_CC_MBWNS; -+ break; -+ case MMC_STOP_TRANSMISSION: -+ fire |= GLAMO_FIRE_MMC_CC_STOP; /* STOP */ -+ break; -+ default: -+ fire |= GLAMO_FIRE_MMC_CC_BASIC; /* "basic command" */ -+ break; -+ } -+ -+ /* always largest timeout */ -+ writew(0xfff, host->base + GLAMO_REG_MMC_TIMEOUT); -+ -+ /* Generate interrupt on txfer */ -+ writew((readw(host->base + GLAMO_REG_MMC_BASIC) & 0x3e) | -+ 0x0800 | GLAMO_BASIC_MMC_NO_CLK_RD_WAIT | -+ GLAMO_BASIC_MMC_EN_COMPL_INT | (sd_drive << 6), -+ host->base + GLAMO_REG_MMC_BASIC); -+ -+ /* send the command out on the wire */ -+ /* dev_info(&host->pdev->dev, "Using FIRE %04X\n", fire); */ -+ writew(fire, host->base + GLAMO_REG_MMC_CMD_FIRE); -+ cmd->error = 0; -+ return 0; -+} -+ -+static int glamo_mci_prepare_pio(struct glamo_mci_host *host, -+ struct mmc_data *data) -+{ -+ /* -+ * the S-Media-internal RAM offset for our MMC buffer -+ * Read is halfway up the buffer and write is at the start -+ */ -+ if (data->flags & MMC_DATA_READ) { -+ writew((u16)(GLAMO_FB_SIZE + (RESSIZE(host->mem_data) / 2)), -+ host->base + GLAMO_REG_MMC_WDATADS1); -+ writew((u16)((GLAMO_FB_SIZE + -+ (RESSIZE(host->mem_data) / 2)) >> 16), -+ host->base + GLAMO_REG_MMC_WDATADS2); -+ } else { -+ writew((u16)GLAMO_FB_SIZE, host->base + -+ GLAMO_REG_MMC_RDATADS1); -+ writew((u16)(GLAMO_FB_SIZE >> 16), host->base + -+ GLAMO_REG_MMC_RDATADS2); -+ } -+ -+ /* set up the block info */ -+ writew(data->blksz, host->base + GLAMO_REG_MMC_DATBLKLEN); -+ writew(data->blocks, host->base + GLAMO_REG_MMC_DATBLKCNT); -+ dev_dbg(&host->pdev->dev, "(blksz=%d, count=%d)\n", -+ data->blksz, data->blocks); -+ host->pio_sgptr = 0; -+ host->pio_words = 0; -+ host->pio_count = 0; -+ host->pio_active = 0; -+ /* if write, prep the write into the shared RAM before the command */ -+ if (data->flags & MMC_DATA_WRITE) { -+ host->pio_active = XFER_WRITE; -+ return do_pio_write(host); -+ } -+ host->pio_active = XFER_READ; -+ return 0; -+} -+ -+static void glamo_mci_send_request(struct mmc_host *mmc) -+{ -+ struct glamo_mci_host *host = mmc_priv(mmc); -+ struct mmc_request *mrq = host->mrq; -+ struct mmc_command *cmd = host->cmd_is_stop ? mrq->stop : mrq->cmd; -+ u16 * pu16 = (u16 *)&cmd->resp[0]; -+ u16 * reg_resp = (u16 *)(host->base + GLAMO_REG_MMC_CMD_RSP1); -+ u16 status; -+ int n; -+ int timeout = 1000000; -+ int insanity_timeout = 1000000; -+ -+ if (host->suspending) { -+ dev_err(&host->pdev->dev, "IGNORING glamo_mci_send_request while " -+ "suspended\n"); -+ cmd->error = -EIO; -+ if (cmd->data) -+ cmd->data->error = -EIO; -+ mmc_request_done(mmc, mrq); -+ return; -+ } -+ -+ host->ccnt++; -+ /* -+ * somehow 2.6.24 MCI manages to issue MMC_WRITE_BLOCK *without* the -+ * MMC_DATA_WRITE flag, WTF? Work around the madness. -+ */ -+ if (cmd->opcode == MMC_WRITE_BLOCK) -+ if (mrq->data) -+ mrq->data->flags |= MMC_DATA_WRITE; -+ -+ /* this guy has data to read/write? */ -+ if ((!host->cmd_is_stop) && cmd->data) { -+ int res; -+ host->dcnt++; -+ res = glamo_mci_prepare_pio(host, cmd->data); -+ if (res) { -+ cmd->error = -EIO; -+ cmd->data->error = -EIO; -+ mmc_request_done(mmc, mrq); -+ return; -+ } -+ } -+ -+ dev_dbg(&host->pdev->dev,"cmd 0x%x, " -+ "arg 0x%x data=%p mrq->stop=%p flags 0x%x\n", -+ cmd->opcode, cmd->arg, cmd->data, cmd->mrq->stop, -+ cmd->flags); -+ -+ /* resume requested clock rate -+ * scale it down by sd_slow_ratio if platform requests it -+ */ -+ __glamo_mci_fix_card_div(host, host->clk_div); -+ -+ if (glamo_mci_send_command(host, cmd)) -+ goto bail; -+ -+ /* we are deselecting card? because it isn't going to ack then... */ -+ if ((cmd->opcode == 7) && (cmd->arg == 0)) -+ goto done; -+ -+ /* -+ * we must spin until response is ready or timed out -+ * -- we don't get interrupts unless there is a bulk rx -+ */ -+ do -+ status = readw(host->base + GLAMO_REG_MMC_RB_STAT1); -+ while (((((status >> 15) & 1) != (host->ccnt & 1)) || -+ (!(status & (GLAMO_STAT1_MMC_RB_RRDY | -+ GLAMO_STAT1_MMC_RTOUT | -+ GLAMO_STAT1_MMC_DTOUT | -+ GLAMO_STAT1_MMC_BWERR | -+ GLAMO_STAT1_MMC_BRERR)))) && (insanity_timeout--)); -+ -+ if (insanity_timeout < 0) -+ dev_info(&host->pdev->dev, "command timeout, continuing\n"); -+ -+ if (status & (GLAMO_STAT1_MMC_RTOUT | -+ GLAMO_STAT1_MMC_DTOUT)) -+ cmd->error = -ETIMEDOUT; -+ if (status & (GLAMO_STAT1_MMC_BWERR | -+ GLAMO_STAT1_MMC_BRERR)) -+ cmd->error = -EILSEQ; -+ -+ if (host->cmd_is_stop) -+ goto bail; -+ -+ if (cmd->error) { -+ dev_info(&host->pdev->dev, "Error after cmd: 0x%x\n", status); -+ goto done; -+ } -+ /* -+ * mangle the response registers in two different exciting -+ * undocumented ways discovered by trial and error -+ */ -+ if (mmc_resp_type(cmd) == MMC_RSP_R2) -+ /* grab the response */ -+ for (n = 0; n < 8; n++) /* super mangle power 1 */ -+ pu16[n ^ 6] = readw(®_resp[n]); -+ else -+ for (n = 0; n < 3; n++) /* super mangle power 2 */ -+ pu16[n] = (readw(®_resp[n]) >> 8) | -+ (readw(®_resp[n + 1]) << 8); -+ /* -+ * if we don't have bulk data to take care of, we're done -+ */ -+ if (!cmd->data) -+ goto done; -+ if (!(cmd->data->flags & (MMC_DATA_READ | MMC_DATA_WRITE))) -+ goto done; -+ -+ /* -+ * Otherwise can can use the interrupt as async completion -- -+ * if there is read data coming, or we wait for write data to complete, -+ * exit without mmc_request_done() as the payload interrupt -+ * will service it -+ */ -+ dev_dbg(&host->pdev->dev, "Waiting for payload data\n"); -+ /* -+ * if the glamo INT# line isn't wired (*cough* it can happen) -+ * I'm afraid we have to spin on the IRQ status bit and "be -+ * our own INT# line" -+ */ -+ if (!glamo_mci_def_pdata.pglamo->irq_works) { -+ /* -+ * we have faith we will get an "interrupt"... -+ * but something insane like suspend problems can mean -+ * we spin here forever, so we timeout after a LONG time -+ */ -+ while ((!(readw(glamo_mci_def_pdata.pglamo->base + -+ GLAMO_REG_IRQ_STATUS) & GLAMO_IRQ_MMC)) && -+ (timeout--)) -+ ; -+ -+ if (timeout < 0) { -+ if (cmd->data->error) -+ cmd->data->error = -ETIMEDOUT; -+ dev_err(&host->pdev->dev, "Payload timeout\n"); -+ goto bail; -+ } -+ -+ /* yay we are an interrupt controller! -- call the ISR -+ * it will stop clock to card -+ */ -+ glamo_mci_irq(IRQ_GLAMO(GLAMO_IRQIDX_MMC), -+ irq_desc + IRQ_GLAMO(GLAMO_IRQIDX_MMC)); -+ } -+ return; -+ -+done: -+ host->complete_what = COMPLETION_NONE; -+ host->mrq = NULL; -+ mmc_request_done(host->mmc, cmd->mrq); -+bail: -+ if (!sd_idleclk && !host->force_slow_during_powerup) -+ /* stop the clock to card */ -+ __glamo_mci_fix_card_div(host, -1); -+} -+ -+static void glamo_mci_request(struct mmc_host *mmc, struct mmc_request *mrq) -+{ -+ struct glamo_mci_host *host = mmc_priv(mmc); -+ -+ host->cmd_is_stop = 0; -+ host->mrq = mrq; -+ glamo_mci_send_request(mmc); -+} -+ -+#if 1 -+static void glamo_mci_reset(struct glamo_mci_host *host) -+{ -+ if (host->suspending) { -+ dev_err(&host->pdev->dev, "IGNORING glamo_mci_reset while " -+ "suspended\n"); -+ return; -+ } -+ dev_dbg(&host->pdev->dev, "******* glamo_mci_reset\n"); -+ /* reset MMC controller */ -+ writew(GLAMO_CLOCK_MMC_RESET | GLAMO_CLOCK_MMC_DG_TCLK | -+ GLAMO_CLOCK_MMC_EN_TCLK | GLAMO_CLOCK_MMC_DG_M9CLK | -+ GLAMO_CLOCK_MMC_EN_M9CLK, -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_CLOCK_MMC); -+ udelay(10); -+ /* and disable reset */ -+ writew(GLAMO_CLOCK_MMC_DG_TCLK | -+ GLAMO_CLOCK_MMC_EN_TCLK | GLAMO_CLOCK_MMC_DG_M9CLK | -+ GLAMO_CLOCK_MMC_EN_M9CLK, -+ glamo_mci_def_pdata.pglamo->base + GLAMO_REG_CLOCK_MMC); -+} -+#endif -+static inline int glamo_mci_get_mv(int vdd) -+{ -+ int mv = 1650; -+ -+ if (vdd > 7) -+ mv += 350 + 100 * (vdd - 8); -+ -+ return mv; -+} -+ -+static void glamo_mci_set_ios(struct mmc_host *mmc, struct mmc_ios *ios) -+{ -+ struct glamo_mci_host *host = mmc_priv(mmc); -+ struct regulator *regulator; -+ int n = 0; -+ int div; -+ int powering = 0; -+ int mv; -+ -+ if (host->suspending) { -+ dev_err(&host->pdev->dev, "IGNORING glamo_mci_set_ios while " -+ "suspended\n"); -+ return; -+ } -+ -+ regulator = host->regulator; -+ -+ /* Set power */ -+ switch(ios->power_mode) { -+ case MMC_POWER_UP: -+ if (host->pdata->glamo_can_set_mci_power()) { -+ mv = glamo_mci_get_mv(ios->vdd); -+ regulator_set_voltage(regulator, mv * 1000, mv * 1000); -+ regulator_enable(regulator); -+ } -+ break; -+ case MMC_POWER_ON: -+ /* -+ * we should use very slow clock until first bulk -+ * transfer completes OK -+ */ -+ host->force_slow_during_powerup = 1; -+ -+ if (host->vdd_current != ios->vdd) { -+ if (host->pdata->glamo_can_set_mci_power()) { -+ mv = glamo_mci_get_mv(ios->vdd); -+ regulator_set_voltage(regulator, mv * 1000, mv * 1000); -+ printk(KERN_INFO "SD power -> %dmV\n", mv); -+ } -+ host->vdd_current = ios->vdd; -+ } -+ if (host->power_mode_current == MMC_POWER_OFF) { -+ glamo_engine_enable(glamo_mci_def_pdata.pglamo, -+ GLAMO_ENGINE_MMC); -+ powering = 1; -+ } -+ break; -+ -+ case MMC_POWER_OFF: -+ default: -+ if (host->power_mode_current == MMC_POWER_OFF) -+ break; -+ /* never want clocking with dead card */ -+ __glamo_mci_fix_card_div(host, -1); -+ -+ glamo_engine_disable(glamo_mci_def_pdata.pglamo, -+ GLAMO_ENGINE_MMC); -+ regulator_disable(regulator); -+ host->vdd_current = -1; -+ break; -+ } -+ host->power_mode_current = ios->power_mode; -+ -+ host->real_rate = __glamo_mci_set_card_clock(host, ios->clock, &div); -+ host->clk_div = div; -+ -+ /* after power-up, we are meant to give it >= 74 clocks so it can -+ * initialize itself. Doubt any modern cards need it but anyway... -+ */ -+ if (powering) -+ mdelay(1); -+ -+ if (!sd_idleclk && !host->force_slow_during_powerup) -+ /* stop the clock to card, because we are idle until transfer */ -+ __glamo_mci_fix_card_div(host, -1); -+ -+ if ((ios->power_mode == MMC_POWER_ON) || -+ (ios->power_mode == MMC_POWER_UP)) { -+ dev_info(&host->pdev->dev, -+ "powered (vdd = %d) clk: %lukHz div=%d (req: %ukHz). " -+ "Bus width=%d\n",(int)ios->vdd, -+ host->real_rate / 1000, (int)host->clk_div, -+ ios->clock / 1000, (int)ios->bus_width); -+ } else -+ dev_info(&host->pdev->dev, "glamo_mci_set_ios: power down.\n"); -+ -+ /* set bus width */ -+ host->bus_width = ios->bus_width; -+ if (host->bus_width == MMC_BUS_WIDTH_4) -+ n = GLAMO_BASIC_MMC_EN_4BIT_DATA; -+ writew((readw(host->base + GLAMO_REG_MMC_BASIC) & -+ (~(GLAMO_BASIC_MMC_EN_4BIT_DATA | -+ GLAMO_BASIC_MMC_EN_DR_STR0 | -+ GLAMO_BASIC_MMC_EN_DR_STR1))) | n | -+ sd_drive << 6, host->base + GLAMO_REG_MMC_BASIC); -+} -+ -+ -+/* -+ * no physical write protect supported by us -+ */ -+static int glamo_mci_get_ro(struct mmc_host *mmc) -+{ -+ return 0; -+} -+ -+static struct mmc_host_ops glamo_mci_ops = { -+ .request = glamo_mci_request, -+ .set_ios = glamo_mci_set_ios, -+ .get_ro = glamo_mci_get_ro, -+}; -+ -+static int glamo_mci_probe(struct platform_device *pdev) -+{ -+ struct mmc_host *mmc; -+ struct glamo_mci_host *host; -+ int ret; -+ -+ dev_info(&pdev->dev, "glamo_mci driver (C)2007 Openmoko, Inc\n"); -+ -+ mmc = mmc_alloc_host(sizeof(struct glamo_mci_host), &pdev->dev); -+ if (!mmc) { -+ ret = -ENOMEM; -+ goto probe_out; -+ } -+ -+ host = mmc_priv(mmc); -+ host->mmc = mmc; -+ host->pdev = pdev; -+ host->pdata = &glamo_mci_def_pdata; -+ host->power_mode_current = MMC_POWER_OFF; -+ -+ host->complete_what = COMPLETION_NONE; -+ host->pio_active = XFER_NONE; -+ -+ spin_lock_init(&host->complete_lock); -+ -+ host->mem = platform_get_resource(pdev, IORESOURCE_MEM, 0); -+ if (!host->mem) { -+ dev_err(&pdev->dev, -+ "failed to get io memory region resouce.\n"); -+ -+ ret = -ENOENT; -+ goto probe_free_host; -+ } -+ -+ host->mem = request_mem_region(host->mem->start, -+ RESSIZE(host->mem), pdev->name); -+ -+ if (!host->mem) { -+ dev_err(&pdev->dev, "failed to request io memory region.\n"); -+ ret = -ENOENT; -+ goto probe_free_host; -+ } -+ -+ host->base = ioremap(host->mem->start, RESSIZE(host->mem)); -+ if (!host->base) { -+ dev_err(&pdev->dev, "failed to ioremap() io memory region.\n"); -+ ret = -EINVAL; -+ goto probe_free_mem_region; -+ } -+ -+ host->regulator = regulator_get(&pdev->dev, "SD_3V3"); -+ if (!host->regulator) { -+ dev_err(&pdev->dev, "Cannot proceed without regulator.\n"); -+ return -ENODEV; -+ } -+ -+ /* set the handler for our bit of the shared chip irq register */ -+ set_irq_handler(IRQ_GLAMO(GLAMO_IRQIDX_MMC), glamo_mci_irq); -+ /* stash host as our handler's private data */ -+ set_irq_data(IRQ_GLAMO(GLAMO_IRQIDX_MMC), host); -+ -+ /* Get ahold of our data buffer we use for data in and out on MMC */ -+ host->mem_data = platform_get_resource(pdev, IORESOURCE_MEM, 1); -+ if (!host->mem_data) { -+ dev_err(&pdev->dev, -+ "failed to get io memory region resource.\n"); -+ ret = -ENOENT; -+ goto probe_iounmap; -+ } -+ -+ host->mem_data = request_mem_region(host->mem_data->start, -+ RESSIZE(host->mem_data), pdev->name); -+ -+ if (!host->mem_data) { -+ dev_err(&pdev->dev, "failed to request io memory region.\n"); -+ ret = -ENOENT; -+ goto probe_iounmap; -+ } -+ host->base_data = ioremap(host->mem_data->start, -+ RESSIZE(host->mem_data)); -+ host->data_max_size = RESSIZE(host->mem_data); -+ -+ if (host->base_data == 0) { -+ dev_err(&pdev->dev, "failed to ioremap() io memory region.\n"); -+ ret = -EINVAL; -+ goto probe_free_mem_region_data; -+ } -+ -+ host->vdd_current = 0; -+ host->clk_rate = 50000000; /* really it's 49152000 */ -+ host->clk_div = 16; -+ -+ /* explain our host controller capabilities */ -+ mmc->ops = &glamo_mci_ops; -+ mmc->ocr_avail = host->pdata->ocr_avail; -+ mmc->caps = MMC_CAP_4_BIT_DATA | -+ MMC_CAP_MMC_HIGHSPEED | -+ MMC_CAP_SD_HIGHSPEED; -+ mmc->f_min = host->clk_rate / 256; -+ mmc->f_max = sd_max_clk; -+ -+ mmc->max_blk_count = (1 << 16) - 1; /* GLAMO_REG_MMC_RB_BLKCNT */ -+ mmc->max_blk_size = (1 << 12) - 1; /* GLAMO_REG_MMC_RB_BLKLEN */ -+ mmc->max_req_size = RESSIZE(host->mem_data) / 2; -+ mmc->max_seg_size = mmc->max_req_size; -+ mmc->max_phys_segs = 1; /* hw doesn't talk about segs??? */ -+ mmc->max_hw_segs = 1; -+ -+ dev_info(&host->pdev->dev, "probe: mapped mci_base:%p irq:%u.\n", -+ host->base, host->irq); -+ -+ platform_set_drvdata(pdev, mmc); -+ -+ glamo_engine_enable(glamo_mci_def_pdata.pglamo, GLAMO_ENGINE_MMC); -+ glamo_mci_reset(host); -+ -+ if ((ret = mmc_add_host(mmc))) { -+ dev_err(&pdev->dev, "failed to add mmc host.\n"); -+ goto probe_free_mem_region_data; -+ } -+ -+ dev_info(&pdev->dev,"initialisation done.\n"); -+ return 0; -+ -+ probe_free_mem_region_data: -+ release_mem_region(host->mem_data->start, RESSIZE(host->mem_data)); -+ -+ probe_iounmap: -+ iounmap(host->base); -+ -+ probe_free_mem_region: -+ release_mem_region(host->mem->start, RESSIZE(host->mem)); -+ -+ probe_free_host: -+ mmc_free_host(mmc); -+ probe_out: -+ return ret; -+} -+ -+static int glamo_mci_remove(struct platform_device *pdev) -+{ -+ struct mmc_host *mmc = platform_get_drvdata(pdev); -+ struct glamo_mci_host *host = mmc_priv(mmc); -+ struct regulator *regulator; -+ -+ mmc_remove_host(mmc); -+ /* stop using our handler, revert it to default */ -+ set_irq_handler(IRQ_GLAMO(GLAMO_IRQIDX_MMC), handle_level_irq); -+ iounmap(host->base); -+ iounmap(host->base_data); -+ release_mem_region(host->mem->start, RESSIZE(host->mem)); -+ release_mem_region(host->mem_data->start, RESSIZE(host->mem_data)); -+ -+ regulator = host->regulator; -+ regulator_put(regulator); -+ -+ mmc_free_host(mmc); -+ -+ glamo_engine_disable(glamo_mci_def_pdata.pglamo, GLAMO_ENGINE_MMC); -+ return 0; -+} -+ -+ -+#ifdef CONFIG_PM -+ -+static int glamo_mci_suspend(struct platform_device *dev, pm_message_t state) -+{ -+ struct mmc_host *mmc = platform_get_drvdata(dev); -+ struct glamo_mci_host *host = mmc_priv(mmc); -+ int ret; -+ -+ /* -+ * possible workaround for SD corruption during suspend - resume -+ * make sure the clock was running during suspend and consequently -+ * resume -+ */ -+ __glamo_mci_fix_card_div(host, host->clk_div); -+ -+ /* we are going to do more commands to override this in -+ * mmc_suspend_host(), so we need to change sd_idleclk for the -+ * duration as well -+ */ -+ suspend_sd_idleclk = sd_idleclk; -+ sd_idleclk = 1; -+ -+ ret = mmc_suspend_host(mmc, state); -+ -+ host->suspending++; -+ /* so that when we resume, we use any modified max rate */ -+ mmc->f_max = sd_max_clk; -+ -+ return ret; -+} -+ -+int glamo_mci_resume(struct platform_device *dev) -+{ -+ struct mmc_host *mmc = platform_get_drvdata(dev); -+ struct glamo_mci_host *host = mmc_priv(mmc); -+ int ret; -+ -+ sd_idleclk = 1; -+ -+ glamo_engine_enable(host->pdata->pglamo, GLAMO_ENGINE_MMC); -+ glamo_mci_reset(host); -+ -+ host->suspending--; -+ -+ ret = mmc_resume_host(mmc); -+ -+ /* put sd_idleclk back to pre-suspend state */ -+ sd_idleclk = suspend_sd_idleclk; -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(glamo_mci_resume); -+ -+#else /* CONFIG_PM */ -+#define glamo_mci_suspend NULL -+#define glamo_mci_resume NULL -+#endif /* CONFIG_PM */ -+ -+ -+static struct platform_driver glamo_mci_driver = -+{ -+ .driver.name = "glamo-mci", -+ .probe = glamo_mci_probe, -+ .remove = glamo_mci_remove, -+ .suspend = glamo_mci_suspend, -+ .resume = glamo_mci_resume, -+}; -+ -+static int __init glamo_mci_init(void) -+{ -+ spin_lock_init(&clock_lock); -+ platform_driver_register(&glamo_mci_driver); -+ return 0; -+} -+ -+static void __exit glamo_mci_exit(void) -+{ -+ platform_driver_unregister(&glamo_mci_driver); -+} -+ -+module_init(glamo_mci_init); -+module_exit(glamo_mci_exit); -+ -+MODULE_DESCRIPTION("Glamo MMC/SD Card Interface driver"); -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-mci.h -@@ -0,0 +1,83 @@ -+/* -+ * linux/drivers/mmc/host/glamo-mmc.h - GLAMO MCI driver -+ * -+ * Copyright (C) 2007-2008 Openmoko, Inc, Andy Green <andy@openmoko.com> -+ * based on S3C MMC driver --> -+ * Copyright (C) 2004-2006 Thomas Kleffel, All Rights Reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/regulator/consumer.h> -+ -+enum glamo_mci_waitfor { -+ COMPLETION_NONE, -+ COMPLETION_FINALIZE, -+ COMPLETION_CMDSENT, -+ COMPLETION_RSPFIN, -+ COMPLETION_XFERFINISH, -+ COMPLETION_XFERFINISH_RSPFIN, -+}; -+ -+struct glamo_mci_host { -+ struct platform_device *pdev; -+ struct glamo_mci_pdata *pdata; -+ struct mmc_host *mmc; -+ struct resource *mem; -+ struct resource *mem_data; -+ struct clk *clk; -+ void __iomem *base; -+ u16 __iomem *base_data; -+ int irq; -+ int irq_cd; -+ int dma; -+ int data_max_size; -+ -+ int suspending; -+ -+ int power_mode_current; -+ unsigned int vdd_current; -+ -+ unsigned long clk_rate; -+ unsigned long clk_div; -+ unsigned long real_rate; -+ u8 prescaler; -+ -+ int force_slow_during_powerup; -+ -+ unsigned sdiimsk; -+ int dodma; -+ -+ volatile int dmatogo; -+ -+ struct mmc_request *mrq; -+ int cmd_is_stop; -+ -+ spinlock_t complete_lock; -+ volatile enum glamo_mci_waitfor -+ complete_what; -+ -+ volatile int dma_complete; -+ -+ volatile u32 pio_sgptr; -+ volatile u32 pio_words; -+ volatile u32 pio_count; -+ volatile u16 *pio_ptr; -+#define XFER_NONE 0 -+#define XFER_READ 1 -+#define XFER_WRITE 2 -+ volatile u32 pio_active; -+ -+ int bus_width; -+ -+ char dbgmsg_cmd[301]; -+ char dbgmsg_dat[301]; -+ volatile char *status; -+ -+ unsigned int ccnt, dcnt; -+ struct tasklet_struct pio_tasklet; -+ -+ struct regulator *regulator; -+}; ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-regs.h -@@ -0,0 +1,632 @@ -+#ifndef _GLAMO_REGS_H -+#define _GLAMO_REGS_H -+ -+/* Smedia Glamo 336x/337x driver -+ * -+ * (C) 2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+enum glamo_regster_offsets { -+ GLAMO_REGOFS_GENERIC = 0x0000, -+ GLAMO_REGOFS_HOSTBUS = 0x0200, -+ GLAMO_REGOFS_MEMORY = 0x0300, -+ GLAMO_REGOFS_VIDCAP = 0x0400, -+ GLAMO_REGOFS_ISP = 0x0500, -+ GLAMO_REGOFS_JPEG = 0x0800, -+ GLAMO_REGOFS_MPEG = 0x0c00, -+ GLAMO_REGOFS_LCD = 0x1100, -+ GLAMO_REGOFS_MMC = 0x1400, -+ GLAMO_REGOFS_MPROC0 = 0x1500, -+ GLAMO_REGOFS_MPROC1 = 0x1580, -+ GLAMO_REGOFS_CMDQUEUE = 0x1600, -+ GLAMO_REGOFS_RISC = 0x1680, -+ GLAMO_REGOFS_2D = 0x1700, -+ GLAMO_REGOFS_3D = 0x1b00, -+ GLAMO_REGOFS_END = 0x2400, -+}; -+ -+ -+enum glamo_register_generic { -+ GLAMO_REG_GCONF1 = 0x0000, -+ GLAMO_REG_GCONF2 = 0x0002, -+#define GLAMO_REG_DEVICE_ID GLAMO_REG_GCONF2 -+ GLAMO_REG_GCONF3 = 0x0004, -+#define GLAMO_REG_REVISION_ID GLAMO_REG_GCONF3 -+ GLAMO_REG_IRQ_GEN1 = 0x0006, -+#define GLAMO_REG_IRQ_ENABLE GLAMO_REG_IRQ_GEN1 -+ GLAMO_REG_IRQ_GEN2 = 0x0008, -+#define GLAMO_REG_IRQ_SET GLAMO_REG_IRQ_GEN2 -+ GLAMO_REG_IRQ_GEN3 = 0x000a, -+#define GLAMO_REG_IRQ_CLEAR GLAMO_REG_IRQ_GEN3 -+ GLAMO_REG_IRQ_GEN4 = 0x000c, -+#define GLAMO_REG_IRQ_STATUS GLAMO_REG_IRQ_GEN4 -+ GLAMO_REG_CLOCK_HOST = 0x0010, -+ GLAMO_REG_CLOCK_MEMORY = 0x0012, -+ GLAMO_REG_CLOCK_LCD = 0x0014, -+ GLAMO_REG_CLOCK_MMC = 0x0016, -+ GLAMO_REG_CLOCK_ISP = 0x0018, -+ GLAMO_REG_CLOCK_JPEG = 0x001a, -+ GLAMO_REG_CLOCK_3D = 0x001c, -+ GLAMO_REG_CLOCK_2D = 0x001e, -+ GLAMO_REG_CLOCK_RISC1 = 0x0020, /* 3365 only? */ -+ GLAMO_REG_CLOCK_RISC2 = 0x0022, /* 3365 only? */ -+ GLAMO_REG_CLOCK_MPEG = 0x0024, -+ GLAMO_REG_CLOCK_MPROC = 0x0026, -+ -+ GLAMO_REG_CLOCK_GEN5_1 = 0x0030, -+ GLAMO_REG_CLOCK_GEN5_2 = 0x0032, -+ GLAMO_REG_CLOCK_GEN6 = 0x0034, -+ GLAMO_REG_CLOCK_GEN7 = 0x0036, -+ GLAMO_REG_CLOCK_GEN8 = 0x0038, -+ GLAMO_REG_CLOCK_GEN9 = 0x003a, -+ GLAMO_REG_CLOCK_GEN10 = 0x003c, -+ GLAMO_REG_CLOCK_GEN11 = 0x003e, -+ GLAMO_REG_PLL_GEN1 = 0x0040, -+ GLAMO_REG_PLL_GEN2 = 0x0042, -+ GLAMO_REG_PLL_GEN3 = 0x0044, -+ GLAMO_REG_PLL_GEN4 = 0x0046, -+ GLAMO_REG_PLL_GEN5 = 0x0048, -+ GLAMO_REG_GPIO_GEN1 = 0x0050, -+ GLAMO_REG_GPIO_GEN2 = 0x0052, -+ GLAMO_REG_GPIO_GEN3 = 0x0054, -+ GLAMO_REG_GPIO_GEN4 = 0x0056, -+ GLAMO_REG_GPIO_GEN5 = 0x0058, -+ GLAMO_REG_GPIO_GEN6 = 0x005a, -+ GLAMO_REG_GPIO_GEN7 = 0x005c, -+ GLAMO_REG_GPIO_GEN8 = 0x005e, -+ GLAMO_REG_GPIO_GEN9 = 0x0060, -+ GLAMO_REG_GPIO_GEN10 = 0x0062, -+ GLAMO_REG_DFT_GEN1 = 0x0070, -+ GLAMO_REG_DFT_GEN2 = 0x0072, -+ GLAMO_REG_DFT_GEN3 = 0x0074, -+ GLAMO_REG_DFT_GEN4 = 0x0076, -+ -+ GLAMO_REG_DFT_GEN5 = 0x01e0, -+ GLAMO_REG_DFT_GEN6 = 0x01f0, -+}; -+ -+#define GLAMO_REG_HOSTBUS(x) (GLAMO_REGOFS_HOSTBUS-2+(x*2)) -+ -+#define REG_MEM(x) (GLAMO_REGOFS_MEMORY+(x)) -+#define GLAMO_REG_MEM_TIMING(x) (GLAMO_REG_MEM_TIMING1-2+(x*2)) -+ -+enum glamo_register_mem { -+ GLAMO_REG_MEM_TYPE = REG_MEM(0x00), -+ GLAMO_REG_MEM_GEN = REG_MEM(0x02), -+ GLAMO_REG_MEM_TIMING1 = REG_MEM(0x04), -+ GLAMO_REG_MEM_TIMING2 = REG_MEM(0x06), -+ GLAMO_REG_MEM_TIMING3 = REG_MEM(0x08), -+ GLAMO_REG_MEM_TIMING4 = REG_MEM(0x0a), -+ GLAMO_REG_MEM_TIMING5 = REG_MEM(0x0c), -+ GLAMO_REG_MEM_TIMING6 = REG_MEM(0x0e), -+ GLAMO_REG_MEM_TIMING7 = REG_MEM(0x10), -+ GLAMO_REG_MEM_TIMING8 = REG_MEM(0x12), -+ GLAMO_REG_MEM_TIMING9 = REG_MEM(0x14), -+ GLAMO_REG_MEM_TIMING10 = REG_MEM(0x16), -+ GLAMO_REG_MEM_TIMING11 = REG_MEM(0x18), -+ GLAMO_REG_MEM_POWER1 = REG_MEM(0x1a), -+ GLAMO_REG_MEM_POWER2 = REG_MEM(0x1c), -+ GLAMO_REG_MEM_LCD_BUF1 = REG_MEM(0x1e), -+ GLAMO_REG_MEM_LCD_BUF2 = REG_MEM(0x20), -+ GLAMO_REG_MEM_LCD_BUF3 = REG_MEM(0x22), -+ GLAMO_REG_MEM_LCD_BUF4 = REG_MEM(0x24), -+ GLAMO_REG_MEM_BIST1 = REG_MEM(0x26), -+ GLAMO_REG_MEM_BIST2 = REG_MEM(0x28), -+ GLAMO_REG_MEM_BIST3 = REG_MEM(0x2a), -+ GLAMO_REG_MEM_BIST4 = REG_MEM(0x2c), -+ GLAMO_REG_MEM_BIST5 = REG_MEM(0x2e), -+ GLAMO_REG_MEM_MAH1 = REG_MEM(0x30), -+ GLAMO_REG_MEM_MAH2 = REG_MEM(0x32), -+ GLAMO_REG_MEM_DRAM1 = REG_MEM(0x34), -+ GLAMO_REG_MEM_DRAM2 = REG_MEM(0x36), -+ GLAMO_REG_MEM_CRC = REG_MEM(0x38), -+}; -+ -+#define GLAMO_MEM_TYPE_MASK 0x03 -+ -+enum glamo_reg_mem_dram1 { -+ /* b0 - b10 == refresh period, 1 -> 2048 clocks */ -+ GLAMO_MEM_DRAM1_EN_GATE_CLK = (1 << 11), -+ GLAMO_MEM_DRAM1_SELF_REFRESH = (1 << 12), -+ GLAMO_MEM_DRAM1_EN_GATE_CKE = (1 << 13), -+ GLAMO_MEM_DRAM1_EN_DRAM_REFRESH = (1 << 14), -+ GLAMO_MEM_DRAM1_EN_MODEREG_SET = (1 << 15), -+}; -+ -+enum glamo_reg_mem_dram2 { -+ GLAMO_MEM_DRAM2_DEEP_PWRDOWN = (1 << 12), -+}; -+ -+enum glamo_irq_index { -+ GLAMO_IRQIDX_HOSTBUS = 0, -+ GLAMO_IRQIDX_JPEG = 1, -+ GLAMO_IRQIDX_MPEG = 2, -+ GLAMO_IRQIDX_MPROC1 = 3, -+ GLAMO_IRQIDX_MPROC0 = 4, -+ GLAMO_IRQIDX_CMDQUEUE = 5, -+ GLAMO_IRQIDX_2D = 6, -+ GLAMO_IRQIDX_MMC = 7, -+ GLAMO_IRQIDX_RISC = 8, -+}; -+ -+enum glamo_irq { -+ GLAMO_IRQ_HOSTBUS = (1 << GLAMO_IRQIDX_HOSTBUS), -+ GLAMO_IRQ_JPEG = (1 << GLAMO_IRQIDX_JPEG), -+ GLAMO_IRQ_MPEG = (1 << GLAMO_IRQIDX_MPEG), -+ GLAMO_IRQ_MPROC1 = (1 << GLAMO_IRQIDX_MPROC1), -+ GLAMO_IRQ_MPROC0 = (1 << GLAMO_IRQIDX_MPROC0), -+ GLAMO_IRQ_CMDQUEUE = (1 << GLAMO_IRQIDX_CMDQUEUE), -+ GLAMO_IRQ_2D = (1 << GLAMO_IRQIDX_2D), -+ GLAMO_IRQ_MMC = (1 << GLAMO_IRQIDX_MMC), -+ GLAMO_IRQ_RISC = (1 << GLAMO_IRQIDX_RISC), -+}; -+ -+enum glamo_reg_clock_host { -+ GLAMO_CLOCK_HOST_DG_BCLK = 0x0001, -+ GLAMO_CLOCK_HOST_DG_M0CLK = 0x0004, -+ GLAMO_CLOCK_HOST_RESET = 0x1000, -+}; -+ -+enum glamo_reg_clock_mem { -+ GLAMO_CLOCK_MEM_DG_M1CLK = 0x0001, -+ GLAMO_CLOCK_MEM_EN_M1CLK = 0x0002, -+ GLAMO_CLOCK_MEM_DG_MOCACLK = 0x0004, -+ GLAMO_CLOCK_MEM_EN_MOCACLK = 0x0008, -+ GLAMO_CLOCK_MEM_RESET = 0x1000, -+ GLAMO_CLOCK_MOCA_RESET = 0x2000, -+}; -+ -+enum glamo_reg_clock_lcd { -+ GLAMO_CLOCK_LCD_DG_DCLK = 0x0001, -+ GLAMO_CLOCK_LCD_EN_DCLK = 0x0002, -+ GLAMO_CLOCK_LCD_DG_DMCLK = 0x0004, -+ GLAMO_CLOCK_LCD_EN_DMCLK = 0x0008, -+ // -+ GLAMO_CLOCK_LCD_EN_DHCLK = 0x0020, -+ GLAMO_CLOCK_LCD_DG_M5CLK = 0x0040, -+ GLAMO_CLOCK_LCD_EN_M5CLK = 0x0080, -+ GLAMO_CLOCK_LCD_RESET = 0x1000, -+}; -+ -+enum glamo_reg_clock_mmc { -+ GLAMO_CLOCK_MMC_DG_TCLK = 0x0001, -+ GLAMO_CLOCK_MMC_EN_TCLK = 0x0002, -+ GLAMO_CLOCK_MMC_DG_M9CLK = 0x0004, -+ GLAMO_CLOCK_MMC_EN_M9CLK = 0x0008, -+ GLAMO_CLOCK_MMC_RESET = 0x1000, -+}; -+ -+enum glamo_reg_basic_mmc { -+ /* set to disable CRC error rejection */ -+ GLAMO_BASIC_MMC_DISABLE_CRC = 0x0001, -+ /* enable completion interrupt */ -+ GLAMO_BASIC_MMC_EN_COMPL_INT = 0x0002, -+ /* stop MMC clock while enforced idle waiting for data from card */ -+ GLAMO_BASIC_MMC_NO_CLK_RD_WAIT = 0x0004, -+ /* 0 = 1-bit bus to card, 1 = use 4-bit bus (has to be negotiated) */ -+ GLAMO_BASIC_MMC_EN_4BIT_DATA = 0x0008, -+ /* enable 75K pullups on D3..D0 */ -+ GLAMO_BASIC_MMC_EN_DATA_PUPS = 0x0010, -+ /* enable 75K pullup on CMD */ -+ GLAMO_BASIC_MMC_EN_CMD_PUP = 0x0020, -+ /* IO drive strength 00=weak -> 11=strongest */ -+ GLAMO_BASIC_MMC_EN_DR_STR0 = 0x0040, -+ GLAMO_BASIC_MMC_EN_DR_STR1 = 0x0080, -+ /* TCLK delay stage A, 0000 = 500ps --> 1111 = 8ns */ -+ GLAMO_BASIC_MMC_EN_TCLK_DLYA0 = 0x0100, -+ GLAMO_BASIC_MMC_EN_TCLK_DLYA1 = 0x0200, -+ GLAMO_BASIC_MMC_EN_TCLK_DLYA2 = 0x0400, -+ GLAMO_BASIC_MMC_EN_TCLK_DLYA3 = 0x0800, -+ /* TCLK delay stage B (cumulative), 0000 = 500ps --> 1111 = 8ns */ -+ GLAMO_BASIC_MMC_EN_TCLK_DLYB0 = 0x1000, -+ GLAMO_BASIC_MMC_EN_TCLK_DLYB1 = 0x2000, -+ GLAMO_BASIC_MMC_EN_TCLK_DLYB2 = 0x4000, -+ GLAMO_BASIC_MMC_EN_TCLK_DLYB3 = 0x8000, -+}; -+ -+enum glamo_reg_stat1_mmc { -+ /* command "counter" (really: toggle) */ -+ GLAMO_STAT1_MMC_CMD_CTR = 0x8000, -+ /* engine is idle */ -+ GLAMO_STAT1_MMC_IDLE = 0x4000, -+ /* readback response is ready */ -+ GLAMO_STAT1_MMC_RB_RRDY = 0x0200, -+ /* readback data is ready */ -+ GLAMO_STAT1_MMC_RB_DRDY = 0x0100, -+ /* no response timeout */ -+ GLAMO_STAT1_MMC_RTOUT = 0x0020, -+ /* no data timeout */ -+ GLAMO_STAT1_MMC_DTOUT = 0x0010, -+ /* CRC error on block write */ -+ GLAMO_STAT1_MMC_BWERR = 0x0004, -+ /* CRC error on block read */ -+ GLAMO_STAT1_MMC_BRERR = 0x0002 -+}; -+ -+enum glamo_reg_fire_mmc { -+ /* command "counter" (really: toggle) -+ * the STAT1 register reflects this so you can ensure you don't look -+ * at status for previous command -+ */ -+ GLAMO_FIRE_MMC_CMD_CTR = 0x8000, -+ /* sets kind of response expected */ -+ GLAMO_FIRE_MMC_RES_MASK = 0x0700, -+ /* sets command type */ -+ GLAMO_FIRE_MMC_TYP_MASK = 0x00C0, -+ /* sets command class */ -+ GLAMO_FIRE_MMC_CLS_MASK = 0x000F, -+}; -+ -+enum glamo_fire_mmc_response_types { -+ GLAMO_FIRE_MMC_RSPT_R1 = 0x0000, -+ GLAMO_FIRE_MMC_RSPT_R1b = 0x0100, -+ GLAMO_FIRE_MMC_RSPT_R2 = 0x0200, -+ GLAMO_FIRE_MMC_RSPT_R3 = 0x0300, -+ GLAMO_FIRE_MMC_RSPT_R4 = 0x0400, -+ GLAMO_FIRE_MMC_RSPT_R5 = 0x0500, -+}; -+ -+enum glamo_fire_mmc_command_types { -+ /* broadcast, no response */ -+ GLAMO_FIRE_MMC_CMDT_BNR = 0x0000, -+ /* broadcast, with response */ -+ GLAMO_FIRE_MMC_CMDT_BR = 0x0040, -+ /* addressed, no data */ -+ GLAMO_FIRE_MMC_CMDT_AND = 0x0080, -+ /* addressed, with data */ -+ GLAMO_FIRE_MMC_CMDT_AD = 0x00C0, -+}; -+ -+enum glamo_fire_mmc_command_class { -+ /* "Stream Read" */ -+ GLAMO_FIRE_MMC_CC_STRR = 0x0000, -+ /* Single Block Read */ -+ GLAMO_FIRE_MMC_CC_SBR = 0x0001, -+ /* Multiple Block Read With Stop */ -+ GLAMO_FIRE_MMC_CC_MBRS = 0x0002, -+ /* Multiple Block Read No Stop */ -+ GLAMO_FIRE_MMC_CC_MBRNS = 0x0003, -+ /* RESERVED for "Stream Write" */ -+ GLAMO_FIRE_MMC_CC_STRW = 0x0004, -+ /* "Stream Write" */ -+ GLAMO_FIRE_MMC_CC_SBW = 0x0005, -+ /* RESERVED for Multiple Block Write With Stop */ -+ GLAMO_FIRE_MMC_CC_MBWS = 0x0006, -+ /* Multiple Block Write No Stop */ -+ GLAMO_FIRE_MMC_CC_MBWNS = 0x0007, -+ /* STOP command */ -+ GLAMO_FIRE_MMC_CC_STOP = 0x0008, -+ /* Cancel on Running Command */ -+ GLAMO_FIRE_MMC_CC_CANCL = 0x0009, -+ /* "Basic Command" */ -+ GLAMO_FIRE_MMC_CC_BASIC = 0x000a, -+}; -+ -+/* these are offsets from the start of the MMC register region */ -+enum glamo_register_mmc { -+ /* MMC command, b15..8 = cmd arg b7..0; b7..1 = CRC; b0 = end bit */ -+ GLAMO_REG_MMC_CMD_REG1 = 0x00, -+ /* MMC command, b15..0 = cmd arg b23 .. 8 */ -+ GLAMO_REG_MMC_CMD_REG2 = 0x02, -+ /* MMC command, b15=start, b14=transmission, -+ * b13..8=cmd idx, b7..0=cmd arg b31..24 -+ */ -+ GLAMO_REG_MMC_CMD_REG3 = 0x04, -+ GLAMO_REG_MMC_CMD_FIRE = 0x06, -+ GLAMO_REG_MMC_CMD_RSP1 = 0x10, -+ GLAMO_REG_MMC_CMD_RSP2 = 0x12, -+ GLAMO_REG_MMC_CMD_RSP3 = 0x14, -+ GLAMO_REG_MMC_CMD_RSP4 = 0x16, -+ GLAMO_REG_MMC_CMD_RSP5 = 0x18, -+ GLAMO_REG_MMC_CMD_RSP6 = 0x1a, -+ GLAMO_REG_MMC_CMD_RSP7 = 0x1c, -+ GLAMO_REG_MMC_CMD_RSP8 = 0x1e, -+ GLAMO_REG_MMC_RB_STAT1 = 0x20, -+ GLAMO_REG_MMC_RB_BLKCNT = 0x22, -+ GLAMO_REG_MMC_RB_BLKLEN = 0x24, -+ GLAMO_REG_MMC_BASIC = 0x30, -+ GLAMO_REG_MMC_RDATADS1 = 0x34, -+ GLAMO_REG_MMC_RDATADS2 = 0x36, -+ GLAMO_REG_MMC_WDATADS1 = 0x38, -+ GLAMO_REG_MMC_WDATADS2 = 0x3a, -+ GLAMO_REG_MMC_DATBLKCNT = 0x3c, -+ GLAMO_REG_MMC_DATBLKLEN = 0x3e, -+ GLAMO_REG_MMC_TIMEOUT = 0x40, -+ -+}; -+ -+enum glamo_reg_clock_isp { -+ GLAMO_CLOCK_ISP_DG_I1CLK = 0x0001, -+ GLAMO_CLOCK_ISP_EN_I1CLK = 0x0002, -+ GLAMO_CLOCK_ISP_DG_CCLK = 0x0004, -+ GLAMO_CLOCK_ISP_EN_CCLK = 0x0008, -+ // -+ GLAMO_CLOCK_ISP_EN_SCLK = 0x0020, -+ GLAMO_CLOCK_ISP_DG_M2CLK = 0x0040, -+ GLAMO_CLOCK_ISP_EN_M2CLK = 0x0080, -+ GLAMO_CLOCK_ISP_DG_M15CLK = 0x0100, -+ GLAMO_CLOCK_ISP_EN_M15CLK = 0x0200, -+ GLAMO_CLOCK_ISP1_RESET = 0x1000, -+ GLAMO_CLOCK_ISP2_RESET = 0x2000, -+}; -+ -+enum glamo_reg_clock_jpeg { -+ GLAMO_CLOCK_JPEG_DG_JCLK = 0x0001, -+ GLAMO_CLOCK_JPEG_EN_JCLK = 0x0002, -+ GLAMO_CLOCK_JPEG_DG_M3CLK = 0x0004, -+ GLAMO_CLOCK_JPEG_EN_M3CLK = 0x0008, -+ GLAMO_CLOCK_JPEG_RESET = 0x1000, -+}; -+ -+enum glamo_reg_clock_2d { -+ GLAMO_CLOCK_2D_DG_GCLK = 0x0001, -+ GLAMO_CLOCK_2D_EN_GCLK = 0x0002, -+ GLAMO_CLOCK_2D_DG_M7CLK = 0x0004, -+ GLAMO_CLOCK_2D_EN_M7CLK = 0x0008, -+ GLAMO_CLOCK_2D_DG_M6CLK = 0x0010, -+ GLAMO_CLOCK_2D_EN_M6CLK = 0x0020, -+ GLAMO_CLOCK_2D_RESET = 0x1000, -+ GLAMO_CLOCK_2D_CQ_RESET = 0x2000, -+}; -+ -+enum glamo_reg_clock_3d { -+ GLAMO_CLOCK_3D_DG_ECLK = 0x0001, -+ GLAMO_CLOCK_3D_EN_ECLK = 0x0002, -+ GLAMO_CLOCK_3D_DG_RCLK = 0x0004, -+ GLAMO_CLOCK_3D_EN_RCLK = 0x0008, -+ GLAMO_CLOCK_3D_DG_M8CLK = 0x0010, -+ GLAMO_CLOCK_3D_EN_M8CLK = 0x0020, -+ GLAMO_CLOCK_3D_BACK_RESET = 0x1000, -+ GLAMO_CLOCK_3D_FRONT_RESET = 0x2000, -+}; -+ -+enum glamo_reg_clock_mpeg { -+ GLAMO_CLOCK_MPEG_DG_X0CLK = 0x0001, -+ GLAMO_CLOCK_MPEG_EN_X0CLK = 0x0002, -+ GLAMO_CLOCK_MPEG_DG_X1CLK = 0x0004, -+ GLAMO_CLOCK_MPEG_EN_X1CLK = 0x0008, -+ GLAMO_CLOCK_MPEG_DG_X2CLK = 0x0010, -+ GLAMO_CLOCK_MPEG_EN_X2CLK = 0x0020, -+ GLAMO_CLOCK_MPEG_DG_X3CLK = 0x0040, -+ GLAMO_CLOCK_MPEG_EN_X3CLK = 0x0080, -+ GLAMO_CLOCK_MPEG_DG_X4CLK = 0x0100, -+ GLAMO_CLOCK_MPEG_EN_X4CLK = 0x0200, -+ GLAMO_CLOCK_MPEG_DG_X6CLK = 0x0400, -+ GLAMO_CLOCK_MPEG_EN_X6CLK = 0x0800, -+ GLAMO_CLOCK_MPEG_ENC_RESET = 0x1000, -+ GLAMO_CLOCK_MPEG_DEC_RESET = 0x2000, -+}; -+ -+enum glamo_reg_clock51 { -+ GLAMO_CLOCK_GEN51_EN_DIV_MCLK = 0x0001, -+ GLAMO_CLOCK_GEN51_EN_DIV_SCLK = 0x0002, -+ GLAMO_CLOCK_GEN51_EN_DIV_JCLK = 0x0004, -+ GLAMO_CLOCK_GEN51_EN_DIV_DCLK = 0x0008, -+ GLAMO_CLOCK_GEN51_EN_DIV_DMCLK = 0x0010, -+ GLAMO_CLOCK_GEN51_EN_DIV_DHCLK = 0x0020, -+ GLAMO_CLOCK_GEN51_EN_DIV_GCLK = 0x0040, -+ GLAMO_CLOCK_GEN51_EN_DIV_TCLK = 0x0080, -+ /* FIXME: higher bits */ -+}; -+ -+enum glamo_reg_hostbus2 { -+ GLAMO_HOSTBUS2_MMIO_EN_ISP = 0x0001, -+ GLAMO_HOSTBUS2_MMIO_EN_JPEG = 0x0002, -+ GLAMO_HOSTBUS2_MMIO_EN_MPEG = 0x0004, -+ GLAMO_HOSTBUS2_MMIO_EN_LCD = 0x0008, -+ GLAMO_HOSTBUS2_MMIO_EN_MMC = 0x0010, -+ GLAMO_HOSTBUS2_MMIO_EN_MICROP0 = 0x0020, -+ GLAMO_HOSTBUS2_MMIO_EN_MICROP1 = 0x0040, -+ GLAMO_HOSTBUS2_MMIO_EN_CQ = 0x0080, -+ GLAMO_HOSTBUS2_MMIO_EN_RISC = 0x0100, -+ GLAMO_HOSTBUS2_MMIO_EN_2D = 0x0200, -+ GLAMO_HOSTBUS2_MMIO_EN_3D = 0x0400, -+}; -+ -+/* LCD Controller */ -+ -+#define REG_LCD(x) (x) -+enum glamo_reg_lcd { -+ GLAMO_REG_LCD_MODE1 = REG_LCD(0x00), -+ GLAMO_REG_LCD_MODE2 = REG_LCD(0x02), -+ GLAMO_REG_LCD_MODE3 = REG_LCD(0x04), -+ GLAMO_REG_LCD_WIDTH = REG_LCD(0x06), -+ GLAMO_REG_LCD_HEIGHT = REG_LCD(0x08), -+ GLAMO_REG_LCD_POLARITY = REG_LCD(0x0a), -+ GLAMO_REG_LCD_A_BASE1 = REG_LCD(0x0c), -+ GLAMO_REG_LCD_A_BASE2 = REG_LCD(0x0e), -+ GLAMO_REG_LCD_B_BASE1 = REG_LCD(0x10), -+ GLAMO_REG_LCD_B_BASE2 = REG_LCD(0x12), -+ GLAMO_REG_LCD_C_BASE1 = REG_LCD(0x14), -+ GLAMO_REG_LCD_C_BASE2 = REG_LCD(0x16), -+ GLAMO_REG_LCD_PITCH = REG_LCD(0x18), -+ /* RES */ -+ GLAMO_REG_LCD_HORIZ_TOTAL = REG_LCD(0x1c), -+ /* RES */ -+ GLAMO_REG_LCD_HORIZ_RETR_START = REG_LCD(0x20), -+ /* RES */ -+ GLAMO_REG_LCD_HORIZ_RETR_END = REG_LCD(0x24), -+ /* RES */ -+ GLAMO_REG_LCD_HORIZ_DISP_START = REG_LCD(0x28), -+ /* RES */ -+ GLAMO_REG_LCD_HORIZ_DISP_END = REG_LCD(0x2c), -+ /* RES */ -+ GLAMO_REG_LCD_VERT_TOTAL = REG_LCD(0x30), -+ /* RES */ -+ GLAMO_REG_LCD_VERT_RETR_START = REG_LCD(0x34), -+ /* RES */ -+ GLAMO_REG_LCD_VERT_RETR_END = REG_LCD(0x38), -+ /* RES */ -+ GLAMO_REG_LCD_VERT_DISP_START = REG_LCD(0x3c), -+ /* RES */ -+ GLAMO_REG_LCD_VERT_DISP_END = REG_LCD(0x40), -+ /* RES */ -+ GLAMO_REG_LCD_POL = REG_LCD(0x44), -+ GLAMO_REG_LCD_DATA_START = REG_LCD(0x46), -+ GLAMO_REG_LCD_FRATE_CONTRO = REG_LCD(0x48), -+ GLAMO_REG_LCD_DATA_CMD_HDR = REG_LCD(0x4a), -+ GLAMO_REG_LCD_SP_START = REG_LCD(0x4c), -+ GLAMO_REG_LCD_SP_END = REG_LCD(0x4e), -+ GLAMO_REG_LCD_CURSOR_BASE1 = REG_LCD(0x50), -+ GLAMO_REG_LCD_CURSOR_BASE2 = REG_LCD(0x52), -+ GLAMO_REG_LCD_CURSOR_PITCH = REG_LCD(0x54), -+ GLAMO_REG_LCD_CURSOR_X_SIZE = REG_LCD(0x56), -+ GLAMO_REG_LCD_CURSOR_Y_SIZE = REG_LCD(0x58), -+ GLAMO_REG_LCD_CURSOR_X_POS = REG_LCD(0x5a), -+ GLAMO_REG_LCD_CURSOR_Y_POS = REG_LCD(0x5c), -+ GLAMO_REG_LCD_CURSOR_PRESET = REG_LCD(0x5e), -+ GLAMO_REG_LCD_CURSOR_FG_COLOR = REG_LCD(0x60), -+ /* RES */ -+ GLAMO_REG_LCD_CURSOR_BG_COLOR = REG_LCD(0x64), -+ /* RES */ -+ GLAMO_REG_LCD_CURSOR_DST_COLOR = REG_LCD(0x68), -+ /* RES */ -+ GLAMO_REG_LCD_STATUS1 = REG_LCD(0x80), -+ GLAMO_REG_LCD_STATUS2 = REG_LCD(0x82), -+ GLAMO_REG_LCD_STATUS3 = REG_LCD(0x84), -+ GLAMO_REG_LCD_STATUS4 = REG_LCD(0x86), -+ /* RES */ -+ GLAMO_REG_LCD_COMMAND1 = REG_LCD(0xa0), -+ GLAMO_REG_LCD_COMMAND2 = REG_LCD(0xa2), -+ /* RES */ -+ GLAMO_REG_LCD_WFORM_DELAY1 = REG_LCD(0xb0), -+ GLAMO_REG_LCD_WFORM_DELAY2 = REG_LCD(0xb2), -+ /* RES */ -+ GLAMO_REG_LCD_GAMMA_CORR = REG_LCD(0x100), -+ /* RES */ -+ GLAMO_REG_LCD_GAMMA_R_ENTRY01 = REG_LCD(0x110), -+ GLAMO_REG_LCD_GAMMA_R_ENTRY23 = REG_LCD(0x112), -+ GLAMO_REG_LCD_GAMMA_R_ENTRY45 = REG_LCD(0x114), -+ GLAMO_REG_LCD_GAMMA_R_ENTRY67 = REG_LCD(0x116), -+ GLAMO_REG_LCD_GAMMA_R_ENTRY8 = REG_LCD(0x118), -+ /* RES */ -+ GLAMO_REG_LCD_GAMMA_G_ENTRY01 = REG_LCD(0x130), -+ GLAMO_REG_LCD_GAMMA_G_ENTRY23 = REG_LCD(0x132), -+ GLAMO_REG_LCD_GAMMA_G_ENTRY45 = REG_LCD(0x134), -+ GLAMO_REG_LCD_GAMMA_G_ENTRY67 = REG_LCD(0x136), -+ GLAMO_REG_LCD_GAMMA_G_ENTRY8 = REG_LCD(0x138), -+ /* RES */ -+ GLAMO_REG_LCD_GAMMA_B_ENTRY01 = REG_LCD(0x150), -+ GLAMO_REG_LCD_GAMMA_B_ENTRY23 = REG_LCD(0x152), -+ GLAMO_REG_LCD_GAMMA_B_ENTRY45 = REG_LCD(0x154), -+ GLAMO_REG_LCD_GAMMA_B_ENTRY67 = REG_LCD(0x156), -+ GLAMO_REG_LCD_GAMMA_B_ENTRY8 = REG_LCD(0x158), -+ /* RES */ -+ GLAMO_REG_LCD_SRAM_DRIVING1 = REG_LCD(0x160), -+ GLAMO_REG_LCD_SRAM_DRIVING2 = REG_LCD(0x162), -+ GLAMO_REG_LCD_SRAM_DRIVING3 = REG_LCD(0x164), -+}; -+ -+enum glamo_reg_lcd_mode1 { -+ GLAMO_LCD_MODE1_PWRSAVE = 0x0001, -+ GLAMO_LCD_MODE1_PARTIAL_PRT = 0x0002, -+ GLAMO_LCD_MODE1_HWFLIP = 0x0004, -+ GLAMO_LCD_MODE1_LCD2 = 0x0008, -+ /* RES */ -+ GLAMO_LCD_MODE1_PARTIAL_MODE = 0x0020, -+ GLAMO_LCD_MODE1_CURSOR_DSTCOLOR = 0x0040, -+ GLAMO_LCD_MODE1_PARTIAL_ENABLE = 0x0080, -+ GLAMO_LCD_MODE1_TVCLK_IN_ENABLE = 0x0100, -+ GLAMO_LCD_MODE1_HSYNC_HIGH_ACT = 0x0200, -+ GLAMO_LCD_MODE1_VSYNC_HIGH_ACT = 0x0400, -+ GLAMO_LCD_MODE1_HSYNC_FLIP = 0x0800, -+ GLAMO_LCD_MODE1_GAMMA_COR_EN = 0x1000, -+ GLAMO_LCD_MODE1_DITHER_EN = 0x2000, -+ GLAMO_LCD_MODE1_CURSOR_EN = 0x4000, -+ GLAMO_LCD_MODE1_ROTATE_EN = 0x8000, -+}; -+ -+enum glamo_reg_lcd_mode2 { -+ GLAMO_LCD_MODE2_CRC_CHECK_EN = 0x0001, -+ GLAMO_LCD_MODE2_DCMD_PER_LINE = 0x0002, -+ GLAMO_LCD_MODE2_NOUSE_BDEF = 0x0004, -+ GLAMO_LCD_MODE2_OUT_POS_MODE = 0x0008, -+ GLAMO_LCD_MODE2_FRATE_CTRL_EN = 0x0010, -+ GLAMO_LCD_MODE2_SINGLE_BUFFER = 0x0020, -+ GLAMO_LCD_MODE2_SER_LSB_TO_MSB = 0x0040, -+ /* FIXME */ -+}; -+ -+enum glamo_reg_lcd_mode3 { -+ /* LCD color source data format */ -+ GLAMO_LCD_SRC_RGB565 = 0x0000, -+ GLAMO_LCD_SRC_ARGB1555 = 0x4000, -+ GLAMO_LCD_SRC_ARGB4444 = 0x8000, -+ /* interface type */ -+ GLAMO_LCD_MODE3_LCD = 0x1000, -+ GLAMO_LCD_MODE3_RGB = 0x0800, -+ GLAMO_LCD_MODE3_CPU = 0x0000, -+ /* mode */ -+ GLAMO_LCD_MODE3_RGB332 = 0x0000, -+ GLAMO_LCD_MODE3_RGB444 = 0x0100, -+ GLAMO_LCD_MODE3_RGB565 = 0x0200, -+ GLAMO_LCD_MODE3_RGB666 = 0x0300, -+ /* depth */ -+ GLAMO_LCD_MODE3_6BITS = 0x0000, -+ GLAMO_LCD_MODE3_8BITS = 0x0010, -+ GLAMO_LCD_MODE3_9BITS = 0x0020, -+ GLAMO_LCD_MODE3_16BITS = 0x0030, -+ GLAMO_LCD_MODE3_18BITS = 0x0040, -+}; -+ -+enum glamo_lcd_rot_mode { -+ GLAMO_LCD_ROT_MODE_0 = 0x0000, -+ GLAMO_LCD_ROT_MODE_180 = 0x2000, -+ GLAMO_LCD_ROT_MODE_MIRROR = 0x4000, -+ GLAMO_LCD_ROT_MODE_FLIP = 0x6000, -+ GLAMO_LCD_ROT_MODE_90 = 0x8000, -+ GLAMO_LCD_ROT_MODE_270 = 0xa000, -+}; -+#define GLAMO_LCD_ROT_MODE_MASK 0xe000 -+ -+enum glamo_lcd_cmd_type { -+ GLAMO_LCD_CMD_TYPE_DISP = 0x0000, -+ GLAMO_LCD_CMD_TYPE_PARALLEL = 0x4000, -+ GLAMO_LCD_CMD_TYPE_SERIAL = 0x8000, -+ GLAMO_LCD_CMD_TYPE_SERIAL_DIRECT= 0xc000, -+}; -+#define GLAMO_LCD_CMD_TYPE_MASK 0xc000 -+ -+enum glamo_lcd_cmds { -+ GLAMO_LCD_CMD_DATA_DISP_FIRE = 0x00, -+ GLAMO_LCD_CMD_DATA_DISP_SYNC = 0x01, /* RGB only */ -+ /* switch to command mode, no display */ -+ GLAMO_LCD_CMD_DATA_FIRE_NO_DISP = 0x02, -+ /* display until VSYNC, switch to command */ -+ GLAMO_LCD_CMD_DATA_FIRE_VSYNC = 0x11, -+ /* display until HSYNC, switch to command */ -+ GLAMO_LCD_CMD_DATA_FIRE_HSYNC = 0x12, -+ /* display until VSYNC, 1 black frame, VSYNC, switch to command */ -+ GLAMO_LCD_CMD_DATA_FIRE_VSYNC_B = 0x13, -+ /* don't care about display and switch to command */ -+ GLAMO_LCD_CMD_DATA_FIRE_FREE = 0x14, /* RGB only */ -+ /* don't care about display, keep data display but disable data, -+ * and switch to command */ -+ GLAMO_LCD_CMD_DATA_FIRE_FREE_D = 0x15, /* RGB only */ -+}; -+ -+enum glamo_core_revisions { -+ GLAMO_CORE_REV_A0 = 0x0000, -+ GLAMO_CORE_REV_A1 = 0x0001, -+ GLAMO_CORE_REV_A2 = 0x0002, -+ GLAMO_CORE_REV_A3 = 0x0003, -+}; -+ -+#endif /* _GLAMO_REGS_H */ ---- /dev/null -+++ b/drivers/mfd/glamo/glamo-spi-gpio.c -@@ -0,0 +1,288 @@ -+/* -+ * Copyright (C) 2007 Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * -+ * Smedia Glamo GPIO based SPI driver -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ * This driver currently only implements a minimum subset of the hardware -+ * features, esp. those features that are required to drive the jbt6k74 -+ * LCM controller asic in the TD028TTEC1 LCM. -+ * -+*/ -+ -+#define DEBUG -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/delay.h> -+#include <linux/device.h> -+#include <linux/spinlock.h> -+#include <linux/workqueue.h> -+#include <linux/platform_device.h> -+ -+#include <linux/spi/spi.h> -+#include <linux/spi/spi_bitbang.h> -+#include <linux/spi/glamo.h> -+ -+#include <linux/glamofb.h> -+ -+#include <mach/hardware.h> -+ -+#include "glamo-core.h" -+#include "glamo-regs.h" -+ -+struct glamo_spigpio { -+ struct spi_bitbang bitbang; -+ struct spi_master *master; -+ struct glamo_spigpio_info *info; -+ struct glamo_core *glamo; -+}; -+ -+static inline struct glamo_spigpio *to_sg(struct spi_device *spi) -+{ -+ return spi->controller_data; -+} -+ -+static inline void setsck(struct spi_device *dev, int on) -+{ -+ struct glamo_spigpio *sg = to_sg(dev); -+ glamo_gpio_setpin(sg->glamo, sg->info->pin_clk, on ? 1 : 0); -+} -+ -+static inline void setmosi(struct spi_device *dev, int on) -+{ -+ struct glamo_spigpio *sg = to_sg(dev); -+ glamo_gpio_setpin(sg->glamo, sg->info->pin_mosi, on ? 1 : 0); -+} -+ -+static inline u32 getmiso(struct spi_device *dev) -+{ -+ struct glamo_spigpio *sg = to_sg(dev); -+ if (sg->info->pin_miso) -+ return glamo_gpio_getpin(sg->glamo, sg->info->pin_miso) ? 1 : 0; -+ else -+ return 0; -+} -+ -+#define spidelay(x) ndelay(x) -+ -+#define EXPAND_BITBANG_TXRX -+#include <linux/spi/spi_bitbang.h> -+ -+static u32 glamo_spigpio_txrx_mode0(struct spi_device *spi, -+ unsigned nsecs, u32 word, u8 bits) -+{ -+ return bitbang_txrx_be_cpha0(spi, nsecs, 0, word, bits); -+} -+ -+static u32 glamo_spigpio_txrx_mode1(struct spi_device *spi, -+ unsigned nsecs, u32 word, u8 bits) -+{ -+ return bitbang_txrx_be_cpha1(spi, nsecs, 0, word, bits); -+} -+ -+static u32 glamo_spigpio_txrx_mode2(struct spi_device *spi, -+ unsigned nsecs, u32 word, u8 bits) -+{ -+ return bitbang_txrx_be_cpha0(spi, nsecs, 1, word, bits); -+} -+ -+static u32 glamo_spigpio_txrx_mode3(struct spi_device *spi, -+ unsigned nsecs, u32 word, u8 bits) -+{ -+ return bitbang_txrx_be_cpha1(spi, nsecs, 1, word, bits); -+} -+ -+ -+#if 0 -+static int glamo_spigpio_setupxfer(struct spi_device *spi, -+ struct spi_transfer *t) -+{ -+ struct glamo_spi *gs = to_sg(spi); -+ unsigned int bpw; -+ -+ bpw = t ? t->bits_per_word : spi->bits_per_word; -+ -+ if (bpw != 9 && bpw != 8) { -+ dev_err(&spi->dev, "invalid bits-per-word (%d)\n", bpw); -+ return -EINVAL; -+ } -+ -+ return 0; -+} -+#endif -+ -+static void glamo_spigpio_chipsel(struct spi_device *spi, int value) -+{ -+ struct glamo_spigpio *gs = to_sg(spi); -+#if 0 -+ dev_dbg(&spi->dev, "chipsel %d: spi=%p, gs=%p, info=%p, handle=%p\n", -+ value, spi, gs, gs->info, gs->info->glamo); -+#endif -+ glamo_gpio_setpin(gs->glamo, gs->info->pin_cs, value ? 0 : 1); -+} -+ -+ -+static int glamo_spigpio_probe(struct platform_device *pdev) -+{ -+ struct spi_master *master; -+ struct glamo_spigpio *sp; -+ int ret; -+ int i; -+ -+ master = spi_alloc_master(&pdev->dev, sizeof(struct glamo_spigpio)); -+ if (master == NULL) { -+ dev_err(&pdev->dev, "failed to allocate spi master\n"); -+ ret = -ENOMEM; -+ goto err; -+ } -+ -+ sp = spi_master_get_devdata(master); -+ platform_set_drvdata(pdev, sp); -+ sp->info = pdev->dev.platform_data; -+ if (!sp->info) { -+ dev_err(&pdev->dev, "can't operate without platform data\n"); -+ ret = -EIO; -+ goto err_no_pdev; -+ } -+ -+ master->num_chipselect = 1; -+ master->bus_num = 2; /* FIXME: use dynamic number */ -+ -+ sp->master = spi_master_get(master); -+ sp->glamo = sp->info->glamo; -+ -+ sp->bitbang.master = sp->master; -+ sp->bitbang.chipselect = glamo_spigpio_chipsel; -+ sp->bitbang.txrx_word[SPI_MODE_0] = glamo_spigpio_txrx_mode0; -+ sp->bitbang.txrx_word[SPI_MODE_1] = glamo_spigpio_txrx_mode1; -+ sp->bitbang.txrx_word[SPI_MODE_2] = glamo_spigpio_txrx_mode2; -+ sp->bitbang.txrx_word[SPI_MODE_3] = glamo_spigpio_txrx_mode3; -+ -+ /* set state of spi pins */ -+ glamo_gpio_setpin(sp->glamo, sp->info->pin_clk, 0); -+ glamo_gpio_setpin(sp->glamo, sp->info->pin_mosi, 0); -+ glamo_gpio_setpin(sp->glamo, sp->info->pin_cs, 1); -+ -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_clk); -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_mosi); -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_cs); -+ if (sp->info->pin_miso) -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_miso); -+ -+ /* bring the LCM panel out of reset if it isn't already */ -+ -+ glamo_gpio_setpin(sp->glamo, GLAMO_GPIO4, 1); -+ glamo_gpio_cfgpin(sp->glamo, GLAMO_GPIO4_OUTPUT); -+ msleep(90); -+ -+#if 0 -+ sp->dev = &pdev->dev; -+ -+ sp->bitbang.setup_transfer = glamo_spi_setupxfer; -+ sp->bitbang.txrx_bufs = glamo_spi_txrx; -+ sp->bitbang.master->setup = glamo_spi_setup; -+#endif -+ -+ ret = spi_bitbang_start(&sp->bitbang); -+ if (ret) -+ goto err_no_bitbang; -+ -+ /* register the chips to go with the board */ -+ -+ for (i = 0; i < sp->info->board_size; i++) { -+ dev_info(&pdev->dev, "registering %p: %s\n", -+ &sp->info->board_info[i], -+ sp->info->board_info[i].modalias); -+ -+ sp->info->board_info[i].controller_data = sp; -+ spi_new_device(master, sp->info->board_info + i); -+ } -+ -+ return 0; -+ -+err_no_bitbang: -+ platform_set_drvdata(pdev, NULL); -+err_no_pdev: -+ spi_master_put(sp->bitbang.master); -+err: -+ return ret; -+ -+} -+ -+static int glamo_spigpio_remove(struct platform_device *pdev) -+{ -+ struct glamo_spigpio *sp = platform_get_drvdata(pdev); -+ -+ spi_bitbang_stop(&sp->bitbang); -+ spi_master_put(sp->bitbang.master); -+ -+ return 0; -+} -+ -+/*#define glamo_spigpio_suspend NULL -+#define glamo_spigpio_resume NULL -+*/ -+ -+ -+#ifdef CONFIG_PM -+static int glamo_spigpio_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ return 0; -+} -+ -+static int glamo_spigpio_resume(struct platform_device *pdev) -+{ -+ struct glamo_spigpio *sp = platform_get_drvdata(pdev); -+ -+ if (!sp) -+ return 0; -+ -+ /* set state of spi pins */ -+ glamo_gpio_setpin(sp->glamo, sp->info->pin_clk, 0); -+ glamo_gpio_setpin(sp->glamo, sp->info->pin_mosi, 0); -+ glamo_gpio_setpin(sp->glamo, sp->info->pin_cs, 1); -+ -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_clk); -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_mosi); -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_cs); -+ if (sp->info->pin_miso) -+ glamo_gpio_cfgpin(sp->glamo, sp->info->pin_miso); -+ -+ return 0; -+} -+#endif -+ -+static struct platform_driver glamo_spi_drv = { -+ .probe = glamo_spigpio_probe, -+ .remove = glamo_spigpio_remove, -+#ifdef CONFIG_PM -+ .suspend_late = glamo_spigpio_suspend, -+ .resume_early = glamo_spigpio_resume, -+#endif -+ .driver = { -+ .name = "glamo-spi-gpio", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+static int __init glamo_spi_init(void) -+{ -+ return platform_driver_register(&glamo_spi_drv); -+} -+ -+static void __exit glamo_spi_exit(void) -+{ -+ platform_driver_unregister(&glamo_spi_drv); -+} -+ -+module_init(glamo_spi_init); -+module_exit(glamo_spi_exit); -+ -+MODULE_DESCRIPTION("Smedia Glamo 336x/337x LCM serial command SPI Driver"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>") -+MODULE_LICENSE("GPL"); ---- /dev/null -+++ b/drivers/mfd/glamo/Kconfig -@@ -0,0 +1,44 @@ -+config MFD_GLAMO -+ bool "Smedia Glamo 336x/337x support" -+ help -+ This enables the core driver for the Smedia Glamo 336x/337x -+ multi-function device. It includes irq_chip demultiplex as -+ well as clock / power management and GPIO support. -+ -+config MFD_GLAMO_FB -+ tristate "Smedia Glamo 336x/337x framebuffer support" -+ depends on FB && MFD_GLAMO -+ help -+ Frame buffer driver for the LCD controller in the Smedia Glamo -+ 336x/337x. -+ -+ This driver is also available as a module ( = code which can be -+ inserted and removed from the running kernel whenever you want). The -+ module will be called glamofb. If you want to compile it as a module, -+ say M here and read <file:Documentation/modules.txt>. -+ -+ If unsure, say N. -+ -+config MFD_GLAMO_SPI_GPIO -+ tristate "Glamo GPIO SPI bitbang support" -+ depends on MFD_GLAMO -+ help -+ Enable a bitbanging SPI adapter driver for the Smedia Glamo. -+ -+config MFD_GLAMO_SPI_FB -+ tristate "Glamo LCM control channel SPI support" -+ depends on MFD_GLAMO_FB -+ help -+ Enable a bitbanging SPI adapter driver for the Smedia Glamo LCM -+ control channel. This SPI interface is frequently used to -+ interconnect the LCM control interface. -+ -+config MFD_GLAMO_MCI -+ tristate "Glamo S3C SD/MMC Card Interface support" -+ depends on MFD_GLAMO && MMC -+ help -+ This selects a driver for the MCI interface found in -+ the S-Media GLAMO chip, as used in Openmoko -+ neo1973 GTA-02. -+ -+ If unsure, say N. -\ No newline at end of file ---- /dev/null -+++ b/drivers/mfd/glamo/Makefile -@@ -0,0 +1,12 @@ -+# -+# Makefile for the Smedia Glamo framebuffer driver -+# -+ -+obj-$(CONFIG_MFD_GLAMO) += glamo-core.o glamo-gpio.o -+obj-$(CONFIG_MFD_GLAMO_SPI) += glamo-spi.o -+obj-$(CONFIG_MFD_GLAMO_SPI_GPIO) += glamo-spi-gpio.o -+ -+obj-$(CONFIG_MFD_GLAMO_FB) += glamo-fb.o -+obj-$(CONFIG_MFD_GLAMO_SPI_FB) += glamo-lcm-spi.o -+obj-$(CONFIG_MFD_GLAMO_MCI) += glamo-mci.o -+ ---- a/drivers/mfd/Kconfig -+++ b/drivers/mfd/Kconfig -@@ -153,6 +153,55 @@ config MFD_WM8350_I2C - I2C as the control interface. Additional options must be - selected to enable support for the functionality of the chip. - -+config MFD_PCF50633 -+ tristate "Support for NXP PCF50633" -+ depends on I2C -+ help -+ Say yes here if you have NXP PCF50633 chip on your board. -+ This core driver provides register access and IRQ handling -+ facilities, and registers devices for the various functions -+ so that function-specific drivers can bind to them. -+ -+ -+config PCF50633_ADC -+ tristate "Support for NXP PCF50633 ADC" -+ depends on MFD_PCF50633 -+ help -+ Say yes here if you want to include support for ADC in the -+ NXP PCF50633 chip. -+ -+config PCF50633_GPIO -+ tristate "Support for NXP PCF50633 GPIO" -+ depends on MFD_PCF50633 -+ help -+ Say yes here if you want to include support GPIO for pins on -+ the PCF50633 chip. -+ -+config MFD_PCF50606 -+ tristate "Support for NXP PCF50606" -+ depends on I2C -+ help -+ Say yes here if you have NXP PCF50606 chip on your board. -+ This core driver provides register access and IRQ handling -+ facilities, and registers devices for the various functions -+ so that function-specific drivers can bind to them. -+ -+config PCF50606_ADC -+ tristate "Support for NXP PCF50606 ADC" -+ depends on MFD_PCF50606 -+ help -+ Say yes here if you want to include support for ADC in the -+ NXP PCF50606 chip. -+ -+config PCF50606_GPO -+ tristate "Support for NXP PCF50606 GPO" -+ depends on MFD_PCF50606 -+ help -+ Say yes here if you want to include support GPO for pins on -+ the PCF50606 chip. -+ -+source "drivers/mfd/glamo/Kconfig" -+ - endmenu - - menu "Multimedia Capabilities Port drivers" ---- a/drivers/mfd/Makefile -+++ b/drivers/mfd/Makefile -@@ -4,6 +4,7 @@ - - obj-$(CONFIG_MFD_SM501) += sm501.o - obj-$(CONFIG_MFD_ASIC3) += asic3.o -+obj-$(CONFIG_MFD_GLAMO) += glamo/ - - obj-$(CONFIG_HTC_EGPIO) += htc-egpio.o - obj-$(CONFIG_HTC_PASIC3) += htc-pasic3.o -@@ -31,4 +32,13 @@ obj-$(CONFIG_MCP_UCB1200) += ucb1x00-ass - endif - obj-$(CONFIG_UCB1400_CORE) += ucb1400_core.o - --obj-$(CONFIG_PMIC_DA903X) += da903x.o -\ No newline at end of file -+obj-$(CONFIG_PMIC_DA903X) += da903x.o -+ -+obj-$(CONFIG_MFD_PCF50633) += pcf50633-core.o -+obj-$(CONFIG_PCF50633_ADC) += pcf50633-adc.o -+obj-$(CONFIG_PCF50633_GPIO) += pcf50633-gpio.o -+ -+obj-$(CONFIG_MFD_PCF50606) += pcf50606-core.o -+obj-$(CONFIG_PCF50606_ADC) += pcf50606-adc.o -+obj-$(CONFIG_PCF50606_GPO) += pcf50606-gpo.o -+ ---- /dev/null -+++ b/drivers/mfd/pcf50606-adc.c -@@ -0,0 +1,239 @@ -+/* Philips PCF50606 ADC Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50606 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/mfd/pcf50606/core.h> -+#include <linux/mfd/pcf50606/adc.h> -+ -+struct pcf50606_adc_request { -+ int mux; -+ int avg; -+ int result; -+ void (*callback)(struct pcf50606 *, void *, int); -+ void *callback_param; -+ -+ /* Used in case of sync requests */ -+ struct completion completion; -+ -+}; -+ -+static void adc_read_setup(struct pcf50606 *pcf, -+ int channel, int avg) -+{ -+ channel &= PCF50606_ADCC2_ADCMUX_MASK; -+ -+ /* start ADC conversion of selected channel */ -+ pcf50606_reg_write(pcf, PCF50606_REG_ADCC2, channel | -+ PCF50606_ADCC2_ADCSTART | PCF50606_ADCC2_RES_10BIT); -+ -+} -+ -+static void trigger_next_adc_job_if_any(struct pcf50606 *pcf) -+{ -+ int head, tail; -+ -+ mutex_lock(&pcf->adc.queue_mutex); -+ -+ head = pcf->adc.queue_head; -+ tail = pcf->adc.queue_tail; -+ -+ if (!pcf->adc.queue[head]) -+ goto out; -+ -+ adc_read_setup(pcf, pcf->adc.queue[head]->mux, -+ pcf->adc.queue[head]->avg); -+out: -+ mutex_unlock(&pcf->adc.queue_mutex); -+} -+ -+static int -+adc_enqueue_request(struct pcf50606 *pcf, struct pcf50606_adc_request *req) -+{ -+ int head, tail; -+ -+ mutex_lock(&pcf->adc.queue_mutex); -+ head = pcf->adc.queue_head; -+ tail = pcf->adc.queue_tail; -+ -+ if (pcf->adc.queue[tail]) { -+ mutex_unlock(&pcf->adc.queue_mutex); -+ return -EBUSY; -+ } -+ -+ pcf->adc.queue[tail] = req; -+ -+ pcf->adc.queue_tail = -+ (tail + 1) & (PCF50606_MAX_ADC_FIFO_DEPTH - 1); -+ -+ mutex_unlock(&pcf->adc.queue_mutex); -+ -+ trigger_next_adc_job_if_any(pcf); -+ -+ return 0; -+} -+ -+static void -+pcf50606_adc_sync_read_callback(struct pcf50606 *pcf, void *param, int result) -+{ -+ struct pcf50606_adc_request *req; -+ -+ /*We know here that the passed param is an adc_request object */ -+ req = (struct pcf50606_adc_request *)param; -+ -+ req->result = result; -+ complete(&req->completion); -+} -+ -+int pcf50606_adc_sync_read(struct pcf50606 *pcf, int mux, int avg) -+{ -+ -+ struct pcf50606_adc_request *req; -+ int result; -+ -+ /* req is freed when the result is ready, in pcf50606_work*/ -+ req = kzalloc(sizeof(*req), GFP_KERNEL); -+ if (!req) -+ return -ENOMEM; -+ -+ req->mux = mux; -+ req->avg = avg; -+ req->callback = pcf50606_adc_sync_read_callback; -+ req->callback_param = req; -+ init_completion(&req->completion); -+ -+ adc_enqueue_request(pcf, req); -+ -+ wait_for_completion(&req->completion); -+ result = req->result; -+ -+ return result; -+} -+EXPORT_SYMBOL_GPL(pcf50606_adc_sync_read); -+ -+int pcf50606_adc_async_read(struct pcf50606 *pcf, int mux, int avg, -+ void (*callback)(struct pcf50606 *, void *, int), -+ void *callback_param) -+{ -+ struct pcf50606_adc_request *req; -+ -+ /* req is freed when the result is ready, in pcf50606_work*/ -+ req = kmalloc(sizeof(*req), GFP_KERNEL); -+ if (!req) -+ return -ENOMEM; -+ -+ req->mux = mux; -+ req->avg = avg; -+ req->callback = callback; -+ req->callback_param = callback_param; -+ -+ adc_enqueue_request(pcf, req); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50606_adc_async_read); -+ -+static int adc_result(struct pcf50606 *pcf) -+{ -+ u16 ret = (pcf50606_reg_read(pcf, PCF50606_REG_ADCS1) << 2) | -+ (pcf50606_reg_read(pcf, PCF50606_REG_ADCS2) & 0x03); -+ -+ dev_info(pcf->dev, "adc result = %d\n", ret); -+ -+ return ret; -+} -+ -+static void pcf50606_adc_irq(struct pcf50606 *pcf, int irq, void *unused) -+{ -+ struct pcf50606_adc_request *req; -+ int head; -+ -+ mutex_lock(&pcf->adc.queue_mutex); -+ head = pcf->adc.queue_head; -+ -+ req = pcf->adc.queue[head]; -+ if (!req) { -+ dev_err(pcf->dev, "ADC queue empty\n"); -+ mutex_unlock(&pcf->adc.queue_mutex); -+ return; -+ } -+ pcf->adc.queue[head] = NULL; -+ pcf->adc.queue_head = (head + 1) & -+ (PCF50606_MAX_ADC_FIFO_DEPTH - 1); -+ -+ mutex_unlock(&pcf->adc.queue_mutex); -+ req->callback(pcf, req->callback_param, adc_result(pcf)); -+ -+ kfree(req); -+ -+ trigger_next_adc_job_if_any(pcf); -+} -+ -+int __init pcf50606_adc_probe(struct platform_device *pdev) -+{ -+ struct pcf50606 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ /* Set up IRQ handlers */ -+ pcf->irq_handler[PCF50606_IRQ_ADCRDY].handler = pcf50606_adc_irq; -+ -+ mutex_init(&pcf->adc.queue_mutex); -+ return 0; -+} -+ -+static int __devexit pcf50606_adc_remove(struct platform_device *pdev) -+{ -+ struct pcf50606 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ pcf->irq_handler[PCF50606_IRQ_ADCRDY].handler = NULL; -+ -+ return 0; -+} -+ -+struct platform_driver pcf50606_adc_driver = { -+ .driver = { -+ .name = "pcf50606-adc", -+ }, -+ .probe = pcf50606_adc_probe, -+ .remove = __devexit_p(pcf50606_adc_remove), -+}; -+ -+static int __init pcf50606_adc_init(void) -+{ -+ return platform_driver_register(&pcf50606_adc_driver); -+} -+module_init(pcf50606_adc_init); -+ -+static void __exit pcf50606_adc_exit(void) -+{ -+ platform_driver_unregister(&pcf50606_adc_driver); -+} -+module_exit(pcf50606_adc_exit); -+ -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_DESCRIPTION("PCF50606 adc driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:pcf50606-adc"); -+ ---- /dev/null -+++ b/drivers/mfd/pcf50606-core.c -@@ -0,0 +1,580 @@ -+/* Philips PCF50606 Power Management Unit (PMU) driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * Matt Hsu <matt@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+#include <linux/i2c.h> -+#include <linux/irq.h> -+#include <linux/device.h> -+#include <linux/module.h> -+#include <linux/reboot.h> -+#include <linux/interrupt.h> -+#include <linux/workqueue.h> -+#include <linux/platform_device.h> -+ -+#include <linux/mfd/pcf50606/core.h> -+ -+/* Read a block of upto 32 regs */ -+int pcf50606_read_block(struct pcf50606 *pcf , u8 reg, -+ int nr_regs, u8 *data) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_read_i2c_block_data(pcf->i2c_client, reg, -+ nr_regs, data); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50606_read_block); -+ -+/* Write a block of upto 32 regs */ -+int pcf50606_write_block(struct pcf50606 *pcf , u8 reg, -+ int nr_regs, u8 *data) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_write_i2c_block_data(pcf->i2c_client, reg, -+ nr_regs, data); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50606_write_block); -+ -+u8 pcf50606_reg_read(struct pcf50606 *pcf, u8 reg) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50606_reg_read); -+ -+int pcf50606_reg_write(struct pcf50606 *pcf, u8 reg, u8 val) -+{ -+ int ret; -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, val); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50606_reg_write); -+ -+int pcf50606_reg_set_bit_mask(struct pcf50606 *pcf, u8 reg, u8 mask, u8 val) -+{ -+ int ret; -+ u8 tmp; -+ -+ val &= mask; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50606_reg_set_bit_mask); -+ -+int pcf50606_reg_clear_bits(struct pcf50606 *pcf, u8 reg, u8 val) -+{ -+ int ret; -+ u8 tmp; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp &= ~val; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50606_reg_clear_bits); -+ -+static ssize_t show_resume_reason(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ struct pcf50606 *pcf = dev_get_drvdata(dev); -+ int n; -+ -+ n = sprintf(buf, "%02x%02x%02x%02x%02x\n", -+ pcf->resume_reason[0], -+ pcf->resume_reason[1], -+ pcf->resume_reason[2], -+ pcf->resume_reason[3], -+ pcf->resume_reason[4]); -+ -+ return n; -+} -+static DEVICE_ATTR(resume_reason, 0400, show_resume_reason, NULL); -+ -+static struct attribute *pcf_sysfs_entries[] = { -+ &dev_attr_resume_reason.attr, -+ NULL, -+}; -+ -+static struct attribute_group pcf_attr_group = { -+ .name = NULL, /* put in device directory */ -+ .attrs = pcf_sysfs_entries, -+}; -+ -+ -+static int pcf50606_irq_mask_set(struct pcf50606 *pcf, int irq, int mask) -+{ -+ u8 reg, bits, tmp; -+ int ret = 0, idx; -+ -+ idx = irq / 8; -+ reg = PCF50606_REG_INT1M + idx; -+ bits = 1 << (irq % 8); -+ -+ mutex_lock(&pcf->lock); -+ -+ if (mask) { -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp |= bits; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ pcf->mask_regs[idx] &= ~bits; -+ pcf->mask_regs[idx] |= bits; -+ } else { -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp &= ~bits; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ pcf->mask_regs[idx] &= ~bits; -+ } -+ -+ mutex_unlock(&pcf->lock); -+ -+ return 0; -+} -+ -+int pcf50606_irq_mask(struct pcf50606 *pcf, int irq) -+{ -+ dev_info(pcf->dev, "Masking IRQ %d\n", irq); -+ -+ return pcf50606_irq_mask_set(pcf, irq, 1); -+} -+EXPORT_SYMBOL_GPL(pcf50606_irq_mask); -+ -+int pcf50606_irq_unmask(struct pcf50606 *pcf, int irq) -+{ -+ dev_info(pcf->dev, "Unmasking IRQ %d\n", irq); -+ -+ return pcf50606_irq_mask_set(pcf, irq, 0); -+} -+EXPORT_SYMBOL_GPL(pcf50606_irq_unmask); -+ -+int pcf50606_irq_mask_get(struct pcf50606 *pcf, int irq) -+{ -+ u8 reg, bits; -+ -+ reg = (irq / 8); -+ bits = (1 << (irq % 8)); -+ -+ return pcf->mask_regs[reg] & bits; -+} -+EXPORT_SYMBOL_GPL(pcf50606_irq_mask_get); -+ -+static void pcf50606_irq_call_handler(struct pcf50606 *pcf, -+ int irq) -+{ -+ if (pcf->irq_handler[irq].handler) -+ pcf->irq_handler[irq].handler(pcf, irq, -+ pcf->irq_handler[irq].data); -+} -+ -+#define PCF50606_ONKEY1S_TIMEOUT 8 -+ -+static void pcf50606_irq_worker(struct work_struct *work) -+{ -+ struct pcf50606 *pcf; -+ int ret, i, j; -+ u8 pcf_int[3], chgstat; -+ -+ pcf = container_of(work, struct pcf50606, irq_work); -+ -+ /* Read the 3 INT regs in one transaction */ -+ ret = pcf50606_read_block(pcf, PCF50606_REG_INT1, -+ sizeof(pcf_int), pcf_int); -+ if (ret != sizeof(pcf_int)) { -+ dev_info(pcf->dev, "Error reading INT registers\n"); -+ -+ /* We don't have an option but to retry. Because if -+ * we don't, there won't be another interrupt edge. -+ */ -+ goto reschedule; -+ } -+ -+ /* We immediately read the usb and adapter status. We thus make sure -+ * only of CHGINS/CHGRM handlers are called */ -+ if (pcf_int[1] & (PCF50606_INT2_CHGINS | PCF50606_INT2_CHGRM)) { -+ chgstat = pcf50606_reg_read(pcf, PCF50606_REG_MBCS1); -+ if (chgstat & (0x1 << 4)) -+ pcf_int[1] &= ~(1 << PCF50606_INT2_CHGRM); -+ else -+ pcf_int[1] &= ~(1 << PCF50606_INT2_CHGINS); -+ } -+ -+ dev_info(pcf->dev, "INT1=0x%02x INT2=0x%02x INT3=0x%02x", -+ pcf_int[0], pcf_int[1], pcf_int[2]); -+ -+ /* Some revisions of the chip don't have a 8s standby mode on -+ * ONKEY1S press. We try to manually do it in such cases. */ -+ -+ if (pcf_int[0] & PCF50606_INT1_SECOND && pcf->onkey1s_held) { -+ dev_info(pcf->dev, "ONKEY1S held for %d secs\n", -+ pcf->onkey1s_held); -+ if (pcf->onkey1s_held++ == PCF50606_ONKEY1S_TIMEOUT) -+ if (pcf->pdata->force_shutdown) -+ pcf->pdata->force_shutdown(pcf); -+ } -+ -+ if (pcf_int[0] & PCF50606_INT1_ONKEY1S) { -+ dev_info(pcf->dev, "ONKEY1S held\n"); -+ pcf->onkey1s_held = 1 ; -+ -+ /* Unmask IRQ_SECOND */ -+ pcf50606_reg_clear_bits(pcf, PCF50606_REG_INT1M, -+ PCF50606_INT1_SECOND); -+ -+ /* Unmask IRQ_ONKEYF */ -+ pcf50606_reg_clear_bits(pcf, PCF50606_REG_INT1M, -+ PCF50606_INT1_ONKEYF); -+ } -+ -+ if ((pcf_int[0] & PCF50606_INT1_ONKEYR) && pcf->onkey1s_held) { -+ pcf->onkey1s_held = 0; -+ -+ /* Mask SECOND and ONKEYF interrupts */ -+ if (pcf->mask_regs[0] & PCF50606_INT1_SECOND) -+ pcf50606_reg_set_bit_mask(pcf, -+ PCF50606_REG_INT1M, -+ PCF50606_INT1_SECOND, -+ PCF50606_INT1_SECOND); -+ -+ if (pcf->mask_regs[0] & PCF50606_INT1_ONKEYF) -+ pcf50606_reg_set_bit_mask(pcf, -+ PCF50606_REG_INT1M, -+ PCF50606_INT1_ONKEYF, -+ PCF50606_INT1_ONKEYF); -+ } -+ -+ /* Have we just resumed ? */ -+ if (pcf->is_suspended) { -+ -+ pcf->is_suspended = 0; -+ -+ /* Set the resume reason filtering out non resumers */ -+ for (i = 0; i < ARRAY_SIZE(pcf_int); i++) -+ pcf->resume_reason[i] = pcf_int[i] & -+ pcf->pdata->resumers[i]; -+ -+ /* Make sure we don't pass on any input events to -+ * userspace now */ -+ pcf_int[0] &= ~(PCF50606_INT1_SECOND | PCF50606_INT1_ALARM); -+ } -+ -+ /* Unset masked interrupts */ -+ for (i = 0; i < ARRAY_SIZE(pcf_int); i++) -+ pcf_int[i] &= ~pcf->mask_regs[i]; -+ -+ for (i = 0; i < ARRAY_SIZE(pcf_int); i++) -+ for (j = 0; j < 8 ; j++) -+ if (pcf_int[i] & (1 << j)) -+ pcf50606_irq_call_handler(pcf, (i * 8) + j); -+ -+ put_device(pcf->dev); -+ -+ return; -+reschedule: -+ schedule_work(&pcf->irq_work); -+ -+ /* Don't put_device here. Will be used when we are rescheduled */ -+ -+ return; -+} -+ -+static irqreturn_t pcf50606_irq(int irq, void *data) -+{ -+ struct pcf50606 *pcf = data; -+ -+ get_device(pcf->dev); -+ schedule_work(&pcf->irq_work); -+ -+ return IRQ_HANDLED; -+} -+ -+static void -+pcf50606_client_dev_register(struct pcf50606 *pcf, const char *name, -+ struct platform_device **pdev) -+{ -+ int ret; -+ -+ *pdev = platform_device_alloc(name, -1); -+ -+ if (!pdev) { -+ dev_err(pcf->dev, "Falied to allocate %s\n", name); -+ return; -+ } -+ -+ (*pdev)->dev.parent = pcf->dev; -+ platform_set_drvdata(*pdev, pcf); -+ -+ ret = platform_device_add(*pdev); -+ if (ret != 0) { -+ dev_err(pcf->dev, "Failed to register %s: %d\n", name, ret); -+ platform_device_put(*pdev); -+ *pdev = NULL; -+ } -+} -+ -+#ifdef CONFIG_PM -+static int pcf50606_suspend(struct device *dev, pm_message_t state) -+{ -+ struct pcf50606 *pcf; -+ int ret, i; -+ u8 res[3]; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ /* Make sure our interrupt handlers are not called -+ * henceforth */ -+ disable_irq(pcf->irq); -+ -+ /* Make sure that an IRQ worker has quit */ -+ cancel_work_sync(&pcf->irq_work); -+ -+ /* Save the masks */ -+ ret = pcf50606_read_block(pcf, PCF50606_REG_INT1M, -+ ARRAY_SIZE(pcf->suspend_irq_masks), -+ pcf->suspend_irq_masks); -+ if (ret < 0) -+ dev_err(pcf->dev, "error saving irq masks\n"); -+ -+ /* Set interrupt masks. So that only those sources we want to wake -+ * us up can -+ */ -+ for (i = 0; i < ARRAY_SIZE(res); i++) -+ res[i] = ~pcf->pdata->resumers[i]; -+ -+ pcf50606_write_block(pcf, PCF50606_REG_INT1M, -+ ARRAY_SIZE(res), &res[0]); -+ -+ pcf->is_suspended = 1; -+ -+ return 0; -+} -+ -+static int pcf50606_resume(struct device *dev) -+{ -+ struct pcf50606 *pcf; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ /* Write the saved mask registers */ -+ pcf50606_write_block(pcf, PCF50606_REG_INT1M, -+ ARRAY_SIZE(pcf->suspend_irq_masks), -+ pcf->suspend_irq_masks); -+ -+ /* Clear any pending interrupts and set resume reason if any */ -+ pcf50606_irq_worker(&pcf->irq_work); -+ -+ enable_irq(pcf->irq); -+ -+ return 0; -+} -+#else -+#define pcf50606_suspend NULL -+#define pcf50606_resume NULL -+#endif -+ -+static int pcf50606_probe(struct i2c_client *client, -+ const struct i2c_device_id *ids) -+{ -+ struct pcf50606 *pcf; -+ struct pcf50606_platform_data *pdata; -+ int i, ret = 0; -+ int version, variant; -+ u8 mbcs1; -+ -+ pdata = client->dev.platform_data; -+ -+ pcf = kzalloc(sizeof(*pcf), GFP_KERNEL); -+ if (!pcf) -+ return -ENOMEM; -+ -+ pcf->pdata = pdata; -+ pdata->pcf = pcf; -+ -+ mutex_init(&pcf->lock); -+ -+ i2c_set_clientdata(client, pcf); -+ pcf->dev = &client->dev; -+ pcf->i2c_client = client; -+ -+ INIT_WORK(&pcf->irq_work, pcf50606_irq_worker); -+ -+ version = pcf50606_reg_read(pcf, 0); -+ if (version < 0) { -+ dev_err(pcf->dev, "Unable to probe pcf50606\n"); -+ kfree(pcf); -+ return -ENODEV; -+ } -+ -+ variant = pcf50606_reg_read(pcf, 1); -+ if (version < 0) { -+ dev_err(pcf->dev, "Unable to probe pcf50606\n"); -+ kfree(pcf); -+ return -ENODEV; -+ } -+ -+ dev_info(pcf->dev, "Probed device version %d variant %d\n", -+ version, variant); -+ -+ /* Enable all inteerupts except RTC SECOND */ -+ pcf->mask_regs[0] = 0x80; -+ pcf50606_reg_write(pcf, PCF50606_REG_INT1M, 0x80); -+ -+ pcf50606_reg_write(pcf, PCF50606_REG_INT2M, 0x00); -+ pcf50606_reg_write(pcf, PCF50606_REG_INT3M, 0x00); -+ -+ pcf50606_client_dev_register(pcf, "pcf50606-input", -+ &pcf->input.pdev); -+ pcf50606_client_dev_register(pcf, "pcf50606-rtc", -+ &pcf->rtc.pdev); -+ pcf50606_client_dev_register(pcf, "pcf50606-mbc", -+ &pcf->mbc.pdev); -+ pcf50606_client_dev_register(pcf, "pcf50606-adc", -+ &pcf->adc.pdev); -+ pcf50606_client_dev_register(pcf, "pcf50606-wdt", -+ &pcf->wdt.pdev); -+ for (i = 0; i < PCF50606_NUM_REGULATORS; i++) { -+ struct platform_device *pdev; -+ -+ pdev = platform_device_alloc("pcf50606-regltr", i); -+ if (!pdev) { -+ dev_err(pcf->dev, "Cannot create regulator\n"); -+ continue; -+ } -+ -+ pdev->dev.parent = pcf->dev; -+ pdev->dev.platform_data = &pdata->reg_init_data[i]; -+ pdev->dev.driver_data = pcf; -+ pcf->pmic.pdev[i] = pdev; -+ -+ platform_device_add(pdev); -+ } -+ -+ pcf->irq = client->irq; -+ -+ if (client->irq) { -+ ret = request_irq(client->irq, pcf50606_irq, -+ IRQF_TRIGGER_FALLING, "pcf50606", pcf); -+ -+ if (ret) { -+ dev_err(pcf->dev, "Failed to request IRQ %d\n", ret); -+ goto err; -+ } -+ } else { -+ dev_err(pcf->dev, "No IRQ configured\n"); -+ goto err; -+ } -+ -+ if (enable_irq_wake(client->irq) < 0) -+ dev_err(pcf->dev, "IRQ %u cannot be enabled as wake-up source" -+ "in this hardware revision", client->irq); -+ -+ /* Cold Intialization */ -+ mbcs1 = pcf50606_reg_read(pcf, PCF50606_REG_MBCS1); -+ -+ if (mbcs1 & (0x01 << 4)) /* Charger present ? */ -+ pcf50606_irq_call_handler(pcf, PCF50606_IRQ_CHGINS); -+ -+ ret = sysfs_create_group(&client->dev.kobj, &pcf_attr_group); -+ if (ret) -+ dev_err(pcf->dev, "error creating sysfs entries\n"); -+ -+ if (pdata->probe_done) -+ pdata->probe_done(pcf); -+ -+ return 0; -+ -+err: -+ kfree(pcf); -+ return ret; -+} -+ -+static int pcf50606_remove(struct i2c_client *client) -+{ -+ struct pcf50606 *pcf = i2c_get_clientdata(client); -+ -+ free_irq(pcf->irq, pcf); -+ kfree(pcf); -+ -+ return 0; -+} -+ -+static struct i2c_device_id pcf50606_id_table[] = { -+ {"pcf50606", 0x73}, -+}; -+ -+static struct i2c_driver pcf50606_driver = { -+ .driver = { -+ .name = "pcf50606", -+ .suspend = pcf50606_suspend, -+ .resume = pcf50606_resume, -+ }, -+ .id_table = pcf50606_id_table, -+ .probe = pcf50606_probe, -+ .remove = pcf50606_remove, -+}; -+ -+static int __init pcf50606_init(void) -+{ -+ return i2c_add_driver(&pcf50606_driver); -+} -+ -+static void pcf50606_exit(void) -+{ -+ i2c_del_driver(&pcf50606_driver); -+} -+ -+MODULE_DESCRIPTION("I2C chip driver for NXP PCF50606 PMU"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(pcf50606_init); -+module_exit(pcf50606_exit); ---- /dev/null -+++ b/drivers/mfd/pcf50606-gpo.c -@@ -0,0 +1,128 @@ -+/* Philips PCF50606 GPO Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50606 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/mfd/pcf50606/core.h> -+#include <linux/mfd/pcf50606/gpo.h> -+#include <linux/mfd/pcf50606/pmic.h> -+ -+void pcf50606_gpo_set_active(struct pcf50606 *pcf, int gpo, int val) -+{ -+ u8 reg, value, mask; -+ -+ reg = gpo; -+ value = val; -+ mask = 0x07; -+ -+ if (gpo == PCF50606_GPO2) { -+ value = val << 4; -+ mask = 0x07 << 4; -+ } -+ pcf50606_reg_set_bit_mask(pcf, reg, mask, value); -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo_set_active); -+ -+int pcf50606_gpo_get_active(struct pcf50606 *pcf, int gpo) -+{ -+ u8 reg, value, shift = 0; -+ -+ reg = gpo; -+ if (gpo == PCF50606_GPO2) -+ shift = 4; -+ -+ value = pcf50606_reg_read(pcf, reg); -+ -+ return (value >> shift) & 0x07; -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo_get_active); -+ -+void pcf50606_gpo_set_standby(struct pcf50606 *pcf, int gpo, int val) -+{ -+ u8 reg; -+ -+ if (gpo == PCF50606_GPO1 || gpo == PCF50606_GPO2) { -+ dev_err(pcf->dev, "Can't set standby settings for GPO[12]n"); -+ return; -+ } -+ -+ reg = gpo; -+ -+ pcf50606_reg_set_bit_mask(pcf, gpo, 0x07 << 3, val); -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo_set_standby); -+ -+int pcf50606_gpo_get_standby(struct pcf50606 *pcf, int gpo) -+{ -+ u8 reg, value; -+ -+ if (gpo == PCF50606_GPO1 || gpo == PCF50606_GPO2) { -+ dev_err(pcf->dev, "Can't get standby settings for GPO[12]n"); -+ return -EINVAL; -+ } -+ -+ reg = gpo; -+ value = pcf50606_reg_read(pcf, reg); -+ -+ return (value >> 3) & 0x07; -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo_get_standby); -+ -+void pcf50606_gpo_invert_set(struct pcf50606 *pcf, int gpo, int invert) -+{ -+ u8 reg, value, mask; -+ -+ reg = gpo; -+ value = !!invert << 6; -+ mask = 0x01 << 6; -+ -+ if (gpo == PCF50606_GPO1) { -+ mask = 0x01 << 4; -+ value = !!invert << 4; -+ } -+ else if (gpo == PCF50606_GPO2) { -+ mask = 0x01 << 7; -+ value = !!invert << 7; -+ } -+ -+ pcf50606_reg_set_bit_mask(pcf, reg, mask, value); -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo_invert_set); -+ -+int pcf50606_gpo_invert_get(struct pcf50606 *pcf, int gpo) -+{ -+ u8 reg, value, shift; -+ -+ reg = gpo; -+ shift = 6; -+ -+ if (gpo == PCF50606_GPO1) -+ shift = 4; -+ else if (gpo == PCF50606_GPO2) -+ shift = 7; -+ -+ value = pcf50606_reg_read(pcf, reg); -+ -+ return (value >> shift) & 0x01; -+} -+EXPORT_SYMBOL_GPL(pcf50606_gpo_invert_get); ---- /dev/null -+++ b/drivers/mfd/pcf50633-adc.c -@@ -0,0 +1,252 @@ -+/* Philips PCF50633 ADC Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50633 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+/* -+ * NOTE: This driver does not yet support subtractive ADC mode, which means -+ * you can do only one measurement per read request. -+ */ -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/adc.h> -+ -+struct pcf50633_adc_request { -+ int mux; -+ int avg; -+ int result; -+ void (*callback)(struct pcf50633 *, void *, int); -+ void *callback_param; -+ -+ /* Used in case of sync requests */ -+ struct completion completion; -+ -+}; -+ -+static void adc_read_setup(struct pcf50633 *pcf, -+ int channel, int avg) -+{ -+ channel &= PCF50633_ADCC1_ADCMUX_MASK; -+ -+ /* kill ratiometric, but enable ACCSW biasing */ -+ pcf50633_reg_write(pcf, PCF50633_REG_ADCC2, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_ADCC3, 0x01); -+ -+ /* start ADC conversion on selected channel */ -+ pcf50633_reg_write(pcf, PCF50633_REG_ADCC1, channel | avg | -+ PCF50633_ADCC1_ADCSTART | PCF50633_ADCC1_RES_10BIT); -+ -+} -+ -+static void trigger_next_adc_job_if_any(struct pcf50633 *pcf) -+{ -+ int head, tail; -+ -+ mutex_lock(&pcf->adc.queue_mutex); -+ -+ head = pcf->adc.queue_head; -+ tail = pcf->adc.queue_tail; -+ -+ if (!pcf->adc.queue[head]) -+ goto out; -+ -+ adc_read_setup(pcf, pcf->adc.queue[head]->mux, -+ pcf->adc.queue[head]->avg); -+out: -+ mutex_unlock(&pcf->adc.queue_mutex); -+} -+ -+static int -+adc_enqueue_request(struct pcf50633 *pcf, struct pcf50633_adc_request *req) -+{ -+ int head, tail; -+ -+ mutex_lock(&pcf->adc.queue_mutex); -+ head = pcf->adc.queue_head; -+ tail = pcf->adc.queue_tail; -+ -+ if (pcf->adc.queue[tail]) { -+ mutex_unlock(&pcf->adc.queue_mutex); -+ return -EBUSY; -+ } -+ -+ pcf->adc.queue[tail] = req; -+ -+ pcf->adc.queue_tail = -+ (tail + 1) & (PCF50633_MAX_ADC_FIFO_DEPTH - 1); -+ -+ mutex_unlock(&pcf->adc.queue_mutex); -+ -+ trigger_next_adc_job_if_any(pcf); -+ -+ return 0; -+} -+ -+static void -+pcf50633_adc_sync_read_callback(struct pcf50633 *pcf, void *param, int result) -+{ -+ struct pcf50633_adc_request *req; -+ -+ /*We know here that the passed param is an adc_request object */ -+ req = (struct pcf50633_adc_request *)param; -+ -+ req->result = result; -+ complete(&req->completion); -+} -+ -+int pcf50633_adc_sync_read(struct pcf50633 *pcf, int mux, int avg) -+{ -+ -+ struct pcf50633_adc_request *req; -+ int result; -+ -+ /* req is freed when the result is ready, in interrupt handler */ -+ req = kzalloc(sizeof(*req), GFP_KERNEL); -+ if (!req) -+ return -ENOMEM; -+ -+ req->mux = mux; -+ req->avg = avg; -+ req->callback = pcf50633_adc_sync_read_callback; -+ req->callback_param = req; -+ init_completion(&req->completion); -+ -+ adc_enqueue_request(pcf, req); -+ -+ wait_for_completion(&req->completion); -+ result = req->result; -+ -+ return result; -+} -+EXPORT_SYMBOL_GPL(pcf50633_adc_sync_read); -+ -+int pcf50633_adc_async_read(struct pcf50633 *pcf, int mux, int avg, -+ void (*callback)(struct pcf50633 *, void *, int), -+ void *callback_param) -+{ -+ struct pcf50633_adc_request *req; -+ -+ /* req is freed when the result is ready, in interrupt handler */ -+ req = kmalloc(sizeof(*req), GFP_KERNEL); -+ if (!req) -+ return -ENOMEM; -+ -+ req->mux = mux; -+ req->avg = avg; -+ req->callback = callback; -+ req->callback_param = callback_param; -+ -+ adc_enqueue_request(pcf, req); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(pcf50633_adc_async_read); -+ -+static int adc_result(struct pcf50633 *pcf) -+{ -+ u8 adcs1, adcs3; -+ u16 result; -+ -+ adcs1 = pcf50633_reg_read(pcf, PCF50633_REG_ADCS1); -+ adcs3 = pcf50633_reg_read(pcf, PCF50633_REG_ADCS3); -+ result = (adcs1 << 2) | (adcs3 & PCF50633_ADCS3_ADCDAT1L_MASK); -+ -+ dev_info(pcf->dev, "adc result = %d\n", result); -+ -+ return result; -+} -+ -+static void pcf50633_adc_irq(struct pcf50633 *pcf, int irq, void *unused) -+{ -+ struct pcf50633_adc_request *req; -+ int head; -+ -+ mutex_lock(&pcf->adc.queue_mutex); -+ head = pcf->adc.queue_head; -+ -+ req = pcf->adc.queue[head]; -+ if (!req) { -+ dev_err(pcf->dev, "ADC queue empty\n"); -+ mutex_unlock(&pcf->adc.queue_mutex); -+ return; -+ } -+ pcf->adc.queue[head] = NULL; -+ pcf->adc.queue_head = (head + 1) & -+ (PCF50633_MAX_ADC_FIFO_DEPTH - 1); -+ -+ mutex_unlock(&pcf->adc.queue_mutex); -+ req->callback(pcf, req->callback_param, adc_result(pcf)); -+ -+ kfree(req); -+ -+ trigger_next_adc_job_if_any(pcf); -+} -+ -+int __init pcf50633_adc_probe(struct platform_device *pdev) -+{ -+ struct pcf50633 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ /* Set up IRQ handlers */ -+ pcf->irq_handler[PCF50633_IRQ_ADCRDY].handler = pcf50633_adc_irq; -+ -+ mutex_init(&pcf->adc.queue_mutex); -+ return 0; -+} -+ -+static int __devexit pcf50633_adc_remove(struct platform_device *pdev) -+{ -+ struct pcf50633 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ pcf->irq_handler[PCF50633_IRQ_ADCRDY].handler = NULL; -+ -+ return 0; -+} -+ -+struct platform_driver pcf50633_adc_driver = { -+ .driver = { -+ .name = "pcf50633-adc", -+ }, -+ .probe = pcf50633_adc_probe, -+ .remove = __devexit_p(pcf50633_adc_remove), -+}; -+ -+static int __init pcf50633_adc_init(void) -+{ -+ return platform_driver_register(&pcf50633_adc_driver); -+} -+module_init(pcf50633_adc_init); -+ -+static void __exit pcf50633_adc_exit(void) -+{ -+ platform_driver_unregister(&pcf50633_adc_driver); -+} -+module_exit(pcf50633_adc_exit); -+ -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_DESCRIPTION("PCF50633 adc driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:pcf50633-adc"); -+ ---- /dev/null -+++ b/drivers/mfd/pcf50633-core.c -@@ -0,0 +1,627 @@ -+/* Philips PCF50633 Power Management Unit (PMU) driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+#include <linux/i2c.h> -+#include <linux/irq.h> -+#include <linux/device.h> -+#include <linux/module.h> -+#include <linux/reboot.h> -+#include <linux/interrupt.h> -+#include <linux/workqueue.h> -+#include <linux/platform_device.h> -+ -+#include <linux/mfd/pcf50633/core.h> -+ -+/* Read a block of upto 32 regs */ -+int pcf50633_read_block(struct pcf50633 *pcf , u8 reg, -+ int nr_regs, u8 *data) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_read_i2c_block_data(pcf->i2c_client, reg, -+ nr_regs, data); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50633_read_block); -+ -+/* Write a block of upto 32 regs */ -+int pcf50633_write_block(struct pcf50633 *pcf , u8 reg, -+ int nr_regs, u8 *data) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_write_i2c_block_data(pcf->i2c_client, reg, -+ nr_regs, data); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50633_write_block); -+ -+u8 pcf50633_reg_read(struct pcf50633 *pcf, u8 reg) -+{ -+ int ret; -+ -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50633_reg_read); -+ -+int pcf50633_reg_write(struct pcf50633 *pcf, u8 reg, u8 val) -+{ -+ int ret; -+ mutex_lock(&pcf->lock); -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, val); -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50633_reg_write); -+ -+int pcf50633_reg_set_bit_mask(struct pcf50633 *pcf, u8 reg, u8 mask, u8 val) -+{ -+ int ret; -+ u8 tmp; -+ -+ val &= mask; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp &= ~mask; -+ tmp |= val; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50633_reg_set_bit_mask); -+ -+int pcf50633_reg_clear_bits(struct pcf50633 *pcf, u8 reg, u8 val) -+{ -+ int ret; -+ u8 tmp; -+ -+ mutex_lock(&pcf->lock); -+ -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp &= ~val; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ mutex_unlock(&pcf->lock); -+ -+ return ret; -+} -+EXPORT_SYMBOL_GPL(pcf50633_reg_clear_bits); -+ -+/* sysfs attributes */ -+static ssize_t show_dump_regs(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct pcf50633 *pcf = dev_get_drvdata(dev); -+ u8 dump[16]; -+ int n, n1, idx = 0; -+ char *buf1 = buf; -+ static u8 address_no_read[] = { /* must be ascending */ -+ PCF50633_REG_INT1, -+ PCF50633_REG_INT2, -+ PCF50633_REG_INT3, -+ PCF50633_REG_INT4, -+ PCF50633_REG_INT5, -+ 0 /* terminator */ -+ }; -+ -+ for (n = 0; n < 256; n += sizeof(dump)) { -+ for (n1 = 0; n1 < sizeof(dump); n1++) -+ if (n == address_no_read[idx]) { -+ idx++; -+ dump[n1] = 0x00; -+ } else -+ dump[n1] = pcf50633_reg_read(pcf, n + n1); -+ -+ hex_dump_to_buffer(dump, sizeof(dump), 16, 1, buf1, 128, 0); -+ buf1 += strlen(buf1); -+ *buf1++ = '\n'; -+ *buf1 = '\0'; -+ } -+ -+ return buf1 - buf; -+} -+static DEVICE_ATTR(dump_regs, 0400, show_dump_regs, NULL); -+ -+static ssize_t show_resume_reason(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ struct pcf50633 *pcf = dev_get_drvdata(dev); -+ int n; -+ -+ n = sprintf(buf, "%02x%02x%02x%02x%02x\n", -+ pcf->resume_reason[0], -+ pcf->resume_reason[1], -+ pcf->resume_reason[2], -+ pcf->resume_reason[3], -+ pcf->resume_reason[4]); -+ -+ return n; -+} -+static DEVICE_ATTR(resume_reason, 0400, show_resume_reason, NULL); -+ -+static struct attribute *pcf_sysfs_entries[] = { -+ &dev_attr_dump_regs.attr, -+ &dev_attr_resume_reason.attr, -+ NULL, -+}; -+ -+static struct attribute_group pcf_attr_group = { -+ .name = NULL, /* put in device directory */ -+ .attrs = pcf_sysfs_entries, -+}; -+ -+ -+static int pcf50633_irq_mask_set(struct pcf50633 *pcf, int irq, int mask) -+{ -+ u8 reg, bits, tmp; -+ int ret = 0, idx; -+ -+ idx = irq / 8; -+ reg = PCF50633_REG_INT1M + idx; -+ bits = 1 << (irq % 8); -+ -+ mutex_lock(&pcf->lock); -+ -+ if (mask) { -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp |= bits; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ pcf->mask_regs[idx] &= ~bits; -+ pcf->mask_regs[idx] |= bits; -+ } else { -+ tmp = i2c_smbus_read_byte_data(pcf->i2c_client, reg); -+ tmp &= ~bits; -+ ret = i2c_smbus_write_byte_data(pcf->i2c_client, reg, tmp); -+ -+ pcf->mask_regs[idx] &= ~bits; -+ } -+ -+ mutex_unlock(&pcf->lock); -+ -+ return 0; -+} -+ -+int pcf50633_irq_mask(struct pcf50633 *pcf, int irq) -+{ -+ dev_info(pcf->dev, "Masking IRQ %d\n", irq); -+ -+ return pcf50633_irq_mask_set(pcf, irq, 1); -+} -+EXPORT_SYMBOL_GPL(pcf50633_irq_mask); -+ -+int pcf50633_irq_unmask(struct pcf50633 *pcf, int irq) -+{ -+ dev_info(pcf->dev, "Unmasking IRQ %d\n", irq); -+ -+ return pcf50633_irq_mask_set(pcf, irq, 0); -+} -+EXPORT_SYMBOL_GPL(pcf50633_irq_unmask); -+ -+int pcf50633_irq_mask_get(struct pcf50633 *pcf, int irq) -+{ -+ u8 reg, bits; -+ -+ reg = (irq / 8); -+ bits = (1 << (irq % 8)); -+ -+ return pcf->mask_regs[reg] & bits; -+} -+EXPORT_SYMBOL_GPL(pcf50633_irq_mask_get); -+ -+static void pcf50633_irq_call_handler(struct pcf50633 *pcf, -+ int irq) -+{ -+ if (pcf->irq_handler[irq].handler) { -+ pcf->irq_handler[irq].handler(pcf, irq, -+ pcf->irq_handler[irq].data); -+ } -+} -+ -+#define PCF50633_ONKEY1S_TIMEOUT 8 -+ -+static void pcf50633_irq_worker(struct work_struct *work) -+{ -+ struct pcf50633 *pcf; -+ int ret, i, j; -+ u8 pcf_int[5], chgstat; -+ -+ pcf = container_of(work, struct pcf50633, irq_work); -+ -+ /* Read the 5 INT regs in one transaction */ -+ ret = pcf50633_read_block(pcf, PCF50633_REG_INT1, -+ sizeof(pcf_int), pcf_int); -+ if (ret != sizeof(pcf_int)) { -+ dev_info(pcf->dev, "Error reading INT registers\n"); -+ -+ /* We don't have an option but to retry. Because if -+ * we don't, there won't be another interrupt edge. -+ */ -+ goto reschedule; -+ } -+ -+ pcf50633_reg_write(pcf, PCF50633_REG_OOCSHDWN, 0x04 ); /* defeat 8s death from lowsys on A5 */ -+ -+ /* We immediately read the usb and adapter status. We thus make sure -+ * only of USBINS/USBREM and ADAPINS/ADPREM IRQ handlers are called */ -+ if (pcf_int[0] & (PCF50633_INT1_USBINS | PCF50633_INT1_USBREM)) { -+ chgstat = pcf50633_reg_read(pcf, PCF50633_REG_MBCS2); -+ if (chgstat & (0x3 << 4)) -+ pcf_int[0] &= ~(1 << PCF50633_INT1_USBREM); -+ else -+ pcf_int[0] &= ~(1 << PCF50633_INT1_USBINS); -+ } -+ -+ if (pcf_int[0] & (PCF50633_INT1_ADPINS | PCF50633_INT1_ADPREM)) { -+ chgstat = pcf50633_reg_read(pcf, PCF50633_REG_MBCS2); -+ if (chgstat & (0x3 << 4)) -+ pcf_int[0] &= ~(1 << PCF50633_INT1_ADPREM); -+ else -+ pcf_int[0] &= ~(1 << PCF50633_INT1_ADPINS); -+ } -+ -+ dev_info(pcf->dev, "INT1=0x%02x INT2=0x%02x INT3=0x%02x " -+ "INT4=0x%02x INT5=0x%02x\n", pcf_int[0], -+ pcf_int[1], pcf_int[2], pcf_int[3], pcf_int[4]); -+ -+ /* Some revisions of the chip don't have a 8s standby mode on -+ * ONKEY1S press. We try to manually do it in such cases. */ -+ -+ if ((pcf_int[0] & PCF50633_INT1_SECOND) && pcf->onkey1s_held) { -+ dev_info(pcf->dev, "ONKEY1S held for %d secs\n", -+ pcf->onkey1s_held); -+ if (pcf->onkey1s_held++ == PCF50633_ONKEY1S_TIMEOUT) -+ if (pcf->pdata->force_shutdown) -+ pcf->pdata->force_shutdown(pcf); -+ } -+ -+ if (pcf_int[2] & PCF50633_INT3_ONKEY1S) { -+ dev_info(pcf->dev, "ONKEY1S held\n"); -+ pcf->onkey1s_held = 1 ; -+ -+ /* Unmask IRQ_SECOND */ -+ pcf50633_reg_clear_bits(pcf, PCF50633_REG_INT1M, -+ PCF50633_INT1_SECOND); -+ -+ /* Unmask IRQ_ONKEYR */ -+ pcf50633_reg_clear_bits(pcf, PCF50633_REG_INT2M, -+ PCF50633_INT2_ONKEYR); -+ } -+ -+ if ((pcf_int[1] & PCF50633_INT2_ONKEYR) && pcf->onkey1s_held) { -+ pcf->onkey1s_held = 0; -+ -+ /* Mask SECOND and ONKEYR interrupts */ -+ if (pcf->mask_regs[0] & PCF50633_INT1_SECOND) -+ pcf50633_reg_set_bit_mask(pcf, -+ PCF50633_REG_INT1M, -+ PCF50633_INT1_SECOND, -+ PCF50633_INT1_SECOND); -+ -+ if (pcf->mask_regs[1] & PCF50633_INT2_ONKEYR) -+ pcf50633_reg_set_bit_mask(pcf, -+ PCF50633_REG_INT2M, -+ PCF50633_INT2_ONKEYR, -+ PCF50633_INT2_ONKEYR); -+ } -+ -+ /* Have we just resumed ? */ -+ if (pcf->is_suspended) { -+ -+ pcf->is_suspended = 0; -+ -+ /* Set the resume reason filtering out non resumers */ -+ for (i = 0; i < ARRAY_SIZE(pcf_int); i++) -+ pcf->resume_reason[i] = pcf_int[i] & -+ pcf->pdata->resumers[i]; -+ -+ /* Make sure we don't pass on any ONKEY events to -+ * userspace now */ -+ pcf_int[1] &= ~ (PCF50633_INT2_ONKEYR | PCF50633_INT2_ONKEYF); -+ } -+ -+ /* Unset masked interrupts */ -+ for (i = 0; i < ARRAY_SIZE(pcf_int); i++) { -+ pcf_int[i] &= ~pcf->mask_regs[i]; -+ for (j = 0; j < 8 ; j++) -+ if (pcf_int[i] & (1 << j)) -+ pcf50633_irq_call_handler(pcf, (i * 8) + j); -+ } -+ -+ put_device(pcf->dev); -+ -+ enable_irq(pcf->irq); -+ -+ return; -+reschedule: -+ schedule_work(&pcf->irq_work); -+ -+ /* Don't put_device here. Will be used when we are rescheduled */ -+ -+ return; -+} -+ -+static irqreturn_t pcf50633_irq(int irq, void *data) -+{ -+ struct pcf50633 *pcf = data; -+ -+ get_device(pcf->dev); -+ -+ disable_irq(pcf->irq); -+ -+ schedule_work(&pcf->irq_work); -+ -+ return IRQ_HANDLED; -+} -+ -+static void -+pcf50633_client_dev_register(struct pcf50633 *pcf, const char *name, -+ struct platform_device **pdev) -+{ -+ int ret; -+ -+ *pdev = platform_device_alloc(name, -1); -+ -+ if (!pdev) { -+ dev_err(pcf->dev, "Falied to allocate %s\n", name); -+ return; -+ } -+ -+ (*pdev)->dev.parent = pcf->dev; -+ platform_set_drvdata(*pdev, pcf); -+ -+ ret = platform_device_add(*pdev); -+ if (ret != 0) { -+ dev_err(pcf->dev, "Failed to register %s: %d\n", name, ret); -+ platform_device_put(*pdev); -+ *pdev = NULL; -+ } -+} -+ -+#ifdef CONFIG_PM -+static int pcf50633_suspend(struct device *dev, pm_message_t state) -+{ -+ struct pcf50633 *pcf; -+ int ret, i; -+ u8 res[5]; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ /* Make sure our interrupt handlers are not called -+ * henceforth */ -+ disable_irq(pcf->irq); -+ -+ /* Make sure that an IRQ worker has quit */ -+ cancel_work_sync(&pcf->irq_work); -+ -+ /* Save the masks */ -+ ret = pcf50633_read_block(pcf, PCF50633_REG_INT1M, -+ ARRAY_SIZE(pcf->suspend_irq_masks), -+ pcf->suspend_irq_masks); -+ if (ret < 0) -+ dev_err(pcf->dev, "error saving irq masks\n"); -+ -+ /* Set interrupt masks. So that only those sources we want to wake -+ * us up can -+ */ -+ for (i = 0; i < ARRAY_SIZE(res); i++) -+ res[i] = ~pcf->pdata->resumers[i]; -+ -+ pcf50633_write_block(pcf, PCF50633_REG_INT1M, ARRAY_SIZE(res), &res[0]); -+ -+ pcf->is_suspended = 1; -+ -+ return 0; -+} -+ -+static int pcf50633_resume(struct device *dev) -+{ -+ struct pcf50633 *pcf; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ /* Write the saved mask registers */ -+ pcf50633_write_block(pcf, PCF50633_REG_INT1M, -+ ARRAY_SIZE(pcf->suspend_irq_masks), -+ pcf->suspend_irq_masks); -+ -+ get_device(pcf->dev); -+ -+ /* -+ * Clear any pending interrupts and set resume reason if any. -+ * This will leave with enable_irq() -+ */ -+ pcf50633_irq_worker(&pcf->irq_work); -+ -+ return 0; -+} -+#else -+#define pcf50633_suspend NULL -+#define pcf50633_resume NULL -+#endif -+ -+static int pcf50633_probe(struct i2c_client *client, -+ const struct i2c_device_id *ids) -+{ -+ struct pcf50633 *pcf; -+ struct pcf50633_platform_data *pdata; -+ int i, ret = 0; -+ int version; -+ int variant; -+ -+ pdata = client->dev.platform_data; -+ -+ pcf = kzalloc(sizeof(*pcf), GFP_KERNEL); -+ if (!pcf) -+ return -ENOMEM; -+ -+ pcf->pdata = pdata; -+ pdata->pcf = pcf; -+ -+ mutex_init(&pcf->lock); -+ -+ i2c_set_clientdata(client, pcf); -+ pcf->dev = &client->dev; -+ pcf->i2c_client = client; -+ -+ INIT_WORK(&pcf->irq_work, pcf50633_irq_worker); -+ -+ version = pcf50633_reg_read(pcf, 0); -+ if (version < 0) { -+ dev_err(pcf->dev, "Unable to probe pcf50633\n"); -+ kfree(pcf); -+ return -ENODEV; -+ } -+ -+ variant = pcf50633_reg_read(pcf, 1); -+ if (variant < 0) { -+ dev_err(pcf->dev, "Unable to probe pcf50633\n"); -+ kfree(pcf); -+ return -ENODEV; -+ } -+ -+ dev_info(pcf->dev, "Probed device version %d variant %d\n", -+ version, variant); -+ -+ /* Enable all inteerupts except RTC SECOND */ -+ pcf->mask_regs[0] = 0x80; -+ pcf50633_reg_write(pcf, PCF50633_REG_INT1M, 0x80); -+ -+ pcf50633_reg_write(pcf, PCF50633_REG_INT2M, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_INT3M, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_INT4M, 0x00); -+ pcf50633_reg_write(pcf, PCF50633_REG_INT5M, 0x00); -+ -+ pcf50633_client_dev_register(pcf, "pcf50633-input", -+ &pcf->input.pdev); -+ pcf50633_client_dev_register(pcf, "pcf50633-rtc", -+ &pcf->rtc.pdev); -+ pcf50633_client_dev_register(pcf, "pcf50633-mbc", -+ &pcf->mbc.pdev); -+ pcf50633_client_dev_register(pcf, "pcf50633-adc", -+ &pcf->adc.pdev); -+ for (i = 0; i < PCF50633_NUM_REGULATORS; i++) { -+ struct platform_device *pdev; -+ -+ pdev = platform_device_alloc("pcf50633-regltr", i); -+ if (!pdev) { -+ dev_err(pcf->dev, "Cannot create regulator\n"); -+ continue; -+ } -+ -+ pdev->dev.parent = pcf->dev; -+ pdev->dev.platform_data = &pdata->reg_init_data[i]; -+ pdev->dev.driver_data = pcf; -+ pcf->pmic.pdev[i] = pdev; -+ -+ platform_device_add(pdev); -+ } -+ -+ pcf->irq = client->irq; -+ -+ if (client->irq) { -+ ret = request_irq(client->irq, pcf50633_irq, -+ IRQF_TRIGGER_LOW, "pcf50633", pcf); -+ -+ if (ret) { -+ dev_err(pcf->dev, "Failed to request IRQ %d\n", ret); -+ goto err; -+ } -+ } else { -+ dev_err(pcf->dev, "No IRQ configured\n"); -+ goto err; -+ } -+ -+ if (enable_irq_wake(client->irq) < 0) -+ dev_err(pcf->dev, "IRQ %u cannot be enabled as wake-up " -+ "source in this hardware revision\n", client->irq); -+ -+ ret = sysfs_create_group(&client->dev.kobj, &pcf_attr_group); -+ if (ret) -+ dev_err(pcf->dev, "error creating sysfs entries\n"); -+ -+ if (pdata->probe_done) -+ pdata->probe_done(pcf); -+ -+ return 0; -+ -+err: -+ kfree(pcf); -+ return ret; -+} -+ -+static int pcf50633_remove(struct i2c_client *client) -+{ -+ struct pcf50633 *pcf = i2c_get_clientdata(client); -+ -+ free_irq(pcf->irq, pcf); -+ kfree(pcf); -+ -+ return 0; -+} -+ -+static struct i2c_device_id pcf50633_id_table[] = { -+ {"pcf50633", 0x73}, -+}; -+ -+static struct i2c_driver pcf50633_driver = { -+ .driver = { -+ .name = "pcf50633", -+ .suspend = pcf50633_suspend, -+ .resume = pcf50633_resume, -+ }, -+ .id_table = pcf50633_id_table, -+ .probe = pcf50633_probe, -+ .remove = pcf50633_remove, -+}; -+ -+static int __init pcf50633_init(void) -+{ -+ return i2c_add_driver(&pcf50633_driver); -+} -+ -+static void pcf50633_exit(void) -+{ -+ i2c_del_driver(&pcf50633_driver); -+} -+ -+MODULE_DESCRIPTION("I2C chip driver for NXP PCF50633 PMU"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(pcf50633_init); -+module_exit(pcf50633_exit); ---- /dev/null -+++ b/drivers/mfd/pcf50633-gpio.c -@@ -0,0 +1,100 @@ -+/* Philips PCF50633 GPIO Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50633 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/gpio.h> -+#include <linux/mfd/pcf50633/pmic.h> -+ -+void pcf50633_gpio_set(struct pcf50633 *pcf, int gpio, int val) -+{ -+ u8 reg; -+ -+ reg = gpio - PCF50633_GPIO1 + PCF50633_REG_GPIO1CFG; -+ -+ pcf50633_reg_set_bit_mask(pcf, reg, 0x07, val); -+} -+EXPORT_SYMBOL_GPL(pcf50633_gpio_set); -+ -+int pcf50633_gpio_get(struct pcf50633 *pcf, int gpio) -+{ -+ u8 reg, val; -+ -+ reg = gpio - PCF50633_GPIO1 + PCF50633_REG_GPIO1CFG; -+ val = pcf50633_reg_read(pcf, reg) & 0x07; -+ -+ return val; -+} -+EXPORT_SYMBOL_GPL(pcf50633_gpio_get); -+ -+void pcf50633_gpio_invert_set(struct pcf50633 *pcf, int gpio, int invert) -+{ -+ u8 val, reg; -+ -+ reg = gpio - PCF50633_GPIO1 + PCF50633_REG_GPIO1CFG; -+ val = !!invert << 3; -+ -+ pcf50633_reg_set_bit_mask(pcf, reg, 1 << 3, val); -+} -+EXPORT_SYMBOL_GPL(pcf50633_gpio_invert_set); -+ -+int pcf50633_gpio_invert_get(struct pcf50633 *pcf, int gpio) -+{ -+ u8 reg, val; -+ -+ reg = gpio - PCF50633_GPIO1 + PCF50633_REG_GPIO1CFG; -+ val = pcf50633_reg_read(pcf, reg); -+ -+ return val & (1 << 3); -+} -+EXPORT_SYMBOL_GPL(pcf50633_gpio_invert_get); -+ -+static const u8 pcf50633_regulator_registers[PCF50633_NUM_REGULATORS] = { -+ [PCF50633_REGULATOR_AUTO] = PCF50633_REG_AUTOOUT, -+ [PCF50633_REGULATOR_DOWN1] = PCF50633_REG_DOWN1OUT, -+ [PCF50633_REGULATOR_DOWN2] = PCF50633_REG_DOWN2OUT, -+ [PCF50633_REGULATOR_MEMLDO] = PCF50633_REG_MEMLDOOUT, -+ [PCF50633_REGULATOR_LDO1] = PCF50633_REG_LDO1OUT, -+ [PCF50633_REGULATOR_LDO2] = PCF50633_REG_LDO2OUT, -+ [PCF50633_REGULATOR_LDO3] = PCF50633_REG_LDO3OUT, -+ [PCF50633_REGULATOR_LDO4] = PCF50633_REG_LDO4OUT, -+ [PCF50633_REGULATOR_LDO5] = PCF50633_REG_LDO5OUT, -+ [PCF50633_REGULATOR_LDO6] = PCF50633_REG_LDO6OUT, -+ [PCF50633_REGULATOR_HCLDO] = PCF50633_REG_HCLDOOUT, -+}; -+ -+void pcf50633_gpio_power_supply_set(struct pcf50633 *pcf, -+ int gpio, int regulator, int on) -+{ -+ u8 reg, val, mask; -+ -+ /* the *ENA register is always one after the *OUT register */ -+ reg = pcf50633_regulator_registers[regulator] + 1; -+ -+ val = (!!on << (gpio - PCF50633_GPIO1)); -+ mask = (1 << (gpio - PCF50633_GPIO1)); -+ -+ pcf50633_reg_set_bit_mask(pcf, reg, mask, val); -+} -+EXPORT_SYMBOL_GPL(pcf50633_gpio_power_supply_set); ---- /dev/null -+++ b/drivers/mfd/pcf50633-i2c.c -@@ -0,0 +1,3 @@ -+ -+}; -+ ---- a/drivers/misc/Kconfig -+++ b/drivers/misc/Kconfig -@@ -401,6 +401,11 @@ config THINKPAD_ACPI_HOTKEY_POLL - If you are not sure, say Y here. The driver enables polling only if - it is strictly necessary to do so. - -+config LOW_MEMORY_KILLER -+ tristate "Low Memory Killer" -+ ---help--- -+ Register processes to be killed when memory is low. -+ - config ATMEL_SSC - tristate "Device driver for Atmel SSC peripheral" - depends on AVR32 || ARCH_AT91 -@@ -500,4 +505,9 @@ config SGI_GRU_DEBUG - - source "drivers/misc/c2port/Kconfig" - -+config MACH_NEO1973 -+ bool -+ help -+ Common machine code for Openmoko GTAxx hardware -+ - endif # MISC_DEVICES ---- /dev/null -+++ b/drivers/misc/lowmemorykiller.c -@@ -0,0 +1,119 @@ -+/* drivers/misc/lowmemorykiller.c -+ * -+ * Copyright (C) 2007-2008 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/mm.h> -+#include <linux/oom.h> -+#include <linux/sched.h> -+ -+static int lowmem_shrink(int nr_to_scan, gfp_t gfp_mask); -+ -+static struct shrinker lowmem_shrinker = { -+ .shrink = lowmem_shrink, -+ .seeks = DEFAULT_SEEKS * 16 -+}; -+static uint32_t lowmem_debug_level = 2; -+static int lowmem_adj[6] = { -+ 0, -+ 1, -+ 6, -+ 12, -+}; -+static int lowmem_adj_size = 4; -+static size_t lowmem_minfree[6] = { -+ 3*512, // 6MB -+ 2*1024, // 8MB -+ 4*1024, // 16MB -+ 16*1024, // 64MB -+}; -+static int lowmem_minfree_size = 4; -+ -+#define lowmem_print(level, x...) do { if(lowmem_debug_level >= (level)) printk(x); } while(0) -+ -+module_param_named(cost, lowmem_shrinker.seeks, int, S_IRUGO | S_IWUSR); -+module_param_array_named(adj, lowmem_adj, int, &lowmem_adj_size, S_IRUGO | S_IWUSR); -+module_param_array_named(minfree, lowmem_minfree, uint, &lowmem_minfree_size, S_IRUGO | S_IWUSR); -+module_param_named(debug_level, lowmem_debug_level, uint, S_IRUGO | S_IWUSR); -+ -+static int lowmem_shrink(int nr_to_scan, gfp_t gfp_mask) -+{ -+ struct task_struct *p; -+ struct task_struct *selected = NULL; -+ int rem = 0; -+ int tasksize; -+ int i; -+ int min_adj = OOM_ADJUST_MAX + 1; -+ int selected_tasksize = 0; -+ int array_size = ARRAY_SIZE(lowmem_adj); -+ int other_free = global_page_state(NR_FREE_PAGES) + global_page_state(NR_FILE_PAGES); -+ if(lowmem_adj_size < array_size) -+ array_size = lowmem_adj_size; -+ if(lowmem_minfree_size < array_size) -+ array_size = lowmem_minfree_size; -+ for(i = 0; i < array_size; i++) { -+ if(other_free < lowmem_minfree[i]) { -+ min_adj = lowmem_adj[i]; -+ break; -+ } -+ } -+ if(nr_to_scan > 0) -+ lowmem_print(3, "lowmem_shrink %d, %x, ofree %d, ma %d\n", nr_to_scan, gfp_mask, other_free, min_adj); -+ read_lock(&tasklist_lock); -+ for_each_process(p) { -+ if(p->oomkilladj >= 0 && p->mm) { -+ tasksize = get_mm_rss(p->mm); -+ if(nr_to_scan > 0 && tasksize > 0 && p->oomkilladj >= min_adj) { -+ if(selected == NULL || -+ p->oomkilladj > selected->oomkilladj || -+ (p->oomkilladj == selected->oomkilladj && -+ tasksize > selected_tasksize)) { -+ selected = p; -+ selected_tasksize = tasksize; -+ lowmem_print(2, "select %d (%s), adj %d, size %d, to kill\n", -+ p->pid, p->comm, p->oomkilladj, tasksize); -+ } -+ } -+ rem += tasksize; -+ } -+ } -+ if(selected != NULL) { -+ lowmem_print(1, "send sigkill to %d (%s), adj %d, size %d\n", -+ selected->pid, selected->comm, -+ selected->oomkilladj, selected_tasksize); -+ force_sig(SIGKILL, selected); -+ rem -= selected_tasksize; -+ } -+ lowmem_print(4, "lowmem_shrink %d, %x, return %d\n", nr_to_scan, gfp_mask, rem); -+ read_unlock(&tasklist_lock); -+ return rem; -+} -+ -+static int __init lowmem_init(void) -+{ -+ register_shrinker(&lowmem_shrinker); -+ return 0; -+} -+ -+static void __exit lowmem_exit(void) -+{ -+ unregister_shrinker(&lowmem_shrinker); -+} -+ -+module_init(lowmem_init); -+module_exit(lowmem_exit); -+ -+MODULE_LICENSE("GPL"); -+ ---- a/drivers/misc/Makefile -+++ b/drivers/misc/Makefile -@@ -33,3 +33,8 @@ obj-$(CONFIG_SGI_XP) += sgi-xp/ - obj-$(CONFIG_SGI_GRU) += sgi-gru/ - obj-$(CONFIG_HP_ILO) += hpilo.o - obj-$(CONFIG_C2PORT) += c2port/ -+obj-$(CONFIG_MACH_SMDK6410) += smdk6410-sleeptest.o -+obj-$(CONFIG_LOW_MEMORY_KILLER) += lowmemorykiller.o -+obj-$(CONFIG_MACH_NEO1973) += neo1973_version.o \ -+ neo1973_pm_host.o \ -+ neo1973_pm_resume_reason.o ---- /dev/null -+++ b/drivers/misc/neo1973_pm_charging_led.c -@@ -0,0 +1,106 @@ -+/* -+ * Charging LED sysfs for the FIC Neo1973 GSM Phone -+ * (currently only implemented in GTA02 but ready for GTA01 implementation) -+ * -+ * (C) 2008 by Openmoko Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License charging_led 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+ -+#include <asm/hardware.h> -+#include <asm/mach-types.h> -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+#include <asm/arch/gta02.h> -+ -+static enum neo1973_charging_led_modes charging_mode; -+ -+static char *charging_led_mode_names[] = { -+ "Disabled", -+ "Aux LED", -+ "Power LED" -+}; -+ -+static ssize_t charging_led_read(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ return sprintf(buf, "0x%03X\n", gta02_get_pcb_revision()); -+} -+ -+static ssize_t charging_led_read(struct device *dev, -+ struct device_attribute *attr, char *buf) -+{ -+ return sprintf(buf, "0x%03X\n", gta02_get_pcb_revision()); -+} -+ -+ -+static DEVICE_ATTR(pcb, 0644, charging_led_read, charging_led_write); -+ -+static struct attribute *neo1973_charging_led_sysfs_entries[] = { -+ &dev_attr_pcb.attr, -+ NULL -+}; -+ -+static struct attribute_group neo1973_charging_led_attr_group = { -+ .name = NULL, -+ .attrs = neo1973_charging_led_sysfs_entries, -+}; -+ -+static int __init neo1973_charging_led_probe(struct platform_device *pdev) -+{ -+ dev_info(&pdev->dev, "starting\n"); -+ -+ switch (machine_arch_type) { -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ case MACH_TYPE_NEO1973_GTA01: -+ return -EINVAL; -+#endif /* CONFIG_MACH_NEO1973_GTA01 */ -+ default: -+ break; -+ } -+ -+ return sysfs_create_group(&pdev->dev.kobj, -+ &neo1973_charging_led_attr_group); -+} -+ -+static int neo1973_charging_led_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, &neo1973_charging_led_attr_group); -+ return 0; -+} -+ -+static struct platform_driver neo1973_charging_led_driver = { -+ .probe = neo1973_charging_led_probe, -+ .remove = neo1973_charging_led_remove, -+ .driver = { -+ .name = "neo1973-charging-led", -+ }, -+}; -+ -+static int __devinit neo1973_charging_led_init(void) -+{ -+ return platform_driver_register(&neo1973_charging_led_driver); -+} -+ -+static void neo1973_charging_led_exit(void) -+{ -+ platform_driver_unregister(&neo1973_charging_led_driver); -+} -+ -+module_init(neo1973_charging_led_init); -+module_exit(neo1973_charging_led_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("Neo1973 PCB charging_led"); -+#endif ---- /dev/null -+++ b/drivers/misc/neo1973_pm_host.c -@@ -0,0 +1,109 @@ -+/* -+ * Bluetooth PM code for the FIC Neo1973 GSM Phone -+ * -+ * (C) 2007 by Openmoko Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+ -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+#include <mach/gta02.h> -+#include <linux/mfd/pcf50633/gpio.h> -+ -+static ssize_t pm_host_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ return sprintf(buf, "%d\n", -+ pcf50633_gpio_get(gta02_pcf_pdata.pcf, PCF50633_GPO) -+ == PCF50633_GPOCFG_GPOSEL_1); -+} -+ -+static ssize_t pm_host_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ unsigned long on = simple_strtoul(buf, NULL, 10); -+ u8 val; -+ -+ if (on) -+ val = PCF50633_GPOCFG_GPOSEL_1; -+ else -+ val = PCF50633_GPOCFG_GPOSEL_0; -+ -+ -+ pcf50633_gpio_set(gta02_pcf_pdata.pcf, PCF50633_GPO, val); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(hostmode, 0644, pm_host_read, pm_host_write); -+ -+static struct attribute *neo1973_pm_host_sysfs_entries[] = { -+ &dev_attr_hostmode.attr, -+ NULL -+}; -+ -+static struct attribute_group neo1973_pm_host_attr_group = { -+ .name = NULL, -+ .attrs = neo1973_pm_host_sysfs_entries, -+}; -+ -+static int __init neo1973_pm_host_probe(struct platform_device *pdev) -+{ -+ dev_info(&pdev->dev, "starting\n"); -+ -+ switch (machine_arch_type) { -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ case MACH_TYPE_NEO1973_GTA01: -+ return -EINVAL; -+#endif /* CONFIG_MACH_NEO1973_GTA01 */ -+ default: -+ break; -+ } -+ -+ return sysfs_create_group(&pdev->dev.kobj, &neo1973_pm_host_attr_group); -+} -+ -+static int neo1973_pm_host_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, &neo1973_pm_host_attr_group); -+ return 0; -+} -+ -+static struct platform_driver neo1973_pm_host_driver = { -+ .probe = neo1973_pm_host_probe, -+ .remove = neo1973_pm_host_remove, -+ .driver = { -+ .name = "neo1973-pm-host", -+ }, -+}; -+ -+static int __devinit neo1973_pm_host_init(void) -+{ -+ return platform_driver_register(&neo1973_pm_host_driver); -+} -+ -+static void neo1973_pm_host_exit(void) -+{ -+ platform_driver_unregister(&neo1973_pm_host_driver); -+} -+ -+module_init(neo1973_pm_host_init); -+module_exit(neo1973_pm_host_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("Neo1973 USB Host Power Management"); -+#endif ---- /dev/null -+++ b/drivers/misc/neo1973_pm_resume_reason.c -@@ -0,0 +1,147 @@ -+/* -+ * Resume reason sysfs for the FIC Neo1973 GSM Phone -+ * -+ * (C) 2008 by Openmoko Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License resume_reason 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+#include <linux/io.h> -+ -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+#include <mach/gta02.h> -+#include <linux/mfd/pcf50633/core.h> -+#endif -+ -+static unsigned int *gstatus4_mapped; -+static char *resume_reasons[][17] = { { /* GTA01 */ -+ "EINT00_NULL", -+ "EINT01_GSM", -+ "EINT02_NULL", -+ "EINT03_NULL", -+ "EINT04_JACK", -+ "EINT05_SDCARD", -+ "EINT06_AUXKEY", -+ "EINT07_HOLDKEY", -+ "EINT08_NULL", -+ "EINT09_NULL", -+ "EINT10_NULL", -+ "EINT11_NULL", -+ "EINT12_NULL", -+ "EINT13_NULL", -+ "EINT14_NULL", -+ "EINT15_NULL", -+ NULL -+}, { /* GTA02 */ -+ "EINT00_ACCEL1", -+ "EINT01_GSM", -+ "EINT02_BLUETOOTH", -+ "EINT03_DEBUGBRD", -+ "EINT04_JACK", -+ "EINT05_WLAN", -+ "EINT06_AUXKEY", -+ "EINT07_HOLDKEY", -+ "EINT08_ACCEL2", -+ "EINT09_PMU", -+ "EINT10_NULL", -+ "EINT11_NULL", -+ "EINT12_GLAMO", -+ "EINT13_NULL", -+ "EINT14_NULL", -+ "EINT15_NULL", -+ NULL -+} }; -+ -+static ssize_t resume_reason_read(struct device *dev, -+ struct device_attribute *attr, -+ char *buf) -+{ -+ int bit = 0; -+ char *end = buf; -+ int gta = !!machine_is_neo1973_gta02(); -+ -+ for (bit = 0; resume_reasons[gta][bit]; bit++) { -+ if ((*gstatus4_mapped) & (1 << bit)) -+ end += sprintf(end, "* %s\n", resume_reasons[gta][bit]); -+ else -+ end += sprintf(end, " %s\n", resume_reasons[gta][bit]); -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+ if ((gta) && (bit == 9)); /* PMU */ -+// end += pcf50633_report_resumers(gta02_pcf_pdata.pcf, end); -+#endif -+ } -+ -+ return end - buf; -+} -+ -+ -+static DEVICE_ATTR(resume_reason, 0644, resume_reason_read, NULL); -+ -+static struct attribute *neo1973_resume_reason_sysfs_entries[] = { -+ &dev_attr_resume_reason.attr, -+ NULL -+}; -+ -+static struct attribute_group neo1973_resume_reason_attr_group = { -+ .name = NULL, -+ .attrs = neo1973_resume_reason_sysfs_entries, -+}; -+ -+static int __init neo1973_resume_reason_probe(struct platform_device *pdev) -+{ -+ dev_info(&pdev->dev, "starting\n"); -+ -+ gstatus4_mapped = ioremap(0x560000BC /* GSTATUS4 */, 0x4); -+ if (!gstatus4_mapped) { -+ dev_err(&pdev->dev, "failed to ioremap() memory region\n"); -+ return -EINVAL; -+ } -+ -+ return sysfs_create_group(&pdev->dev.kobj, -+ &neo1973_resume_reason_attr_group); -+} -+ -+static int neo1973_resume_reason_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, &neo1973_resume_reason_attr_group); -+ iounmap(gstatus4_mapped); -+ return 0; -+} -+ -+static struct platform_driver neo1973_resume_reason_driver = { -+ .probe = neo1973_resume_reason_probe, -+ .remove = neo1973_resume_reason_remove, -+ .driver = { -+ .name = "neo1973-resume", -+ }, -+}; -+ -+static int __devinit neo1973_resume_reason_init(void) -+{ -+ return platform_driver_register(&neo1973_resume_reason_driver); -+} -+ -+static void neo1973_resume_reason_exit(void) -+{ -+ platform_driver_unregister(&neo1973_resume_reason_driver); -+} -+ -+module_init(neo1973_resume_reason_init); -+module_exit(neo1973_resume_reason_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("Neo1973 resume_reason"); ---- /dev/null -+++ b/drivers/misc/neo1973_pm_usbhost.c -@@ -0,0 +1,132 @@ -+/* -+ * Bluetooth PM code for the FIC Neo1973 GSM Phone -+ * -+ * (C) 2007 by OpenMoko Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+ -+#include <asm/hardware.h> -+#include <asm/mach-types.h> -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+#include <asm/arch/gta02.h> -+#include <linux/pcf50633.h> -+#endif -+ -+static ssize_t pm_usbhost_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ return sprintf(buf, "%d\n", -+ pcf50633_gpio_get(pcf50633_global, PCF50633_GPO)); -+} -+ -+static ssize_t pm_usbhost_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ unsigned long on = simple_strtoul(buf, NULL, 10); -+ -+ pcf50633_gpio_set(pcf50633_global, PCF50633_GPO, on); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(hostmode, 0644, pm_usbhost_read, pm_usbhost_write); -+ -+#ifdef CONFIG_PM -+static int neo1973_usbhost_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ dev_dbg(&pdev->dev, "suspending\n"); -+ /* FIXME: The PMU should save the PMU status, and the GPIO code should -+ * preserve the GPIO level, so there shouldn't be anything left to do -+ * for us, should there? */ -+ -+ return 0; -+} -+ -+static int neo1973_usbhost_resume(struct platform_device *pdev) -+{ -+ dev_dbg(&pdev->dev, "resuming\n"); -+ -+ return 0; -+} -+#else -+#define neo1973_usbhost_suspend NULL -+#define neo1973_usbhost_resume NULL -+#endif -+ -+static struct attribute *neo1973_usbhost_sysfs_entries[] = { -+ &dev_attr_hostmode.attr, -+ NULL -+}; -+ -+static struct attribute_group neo1973_usbhost_attr_group = { -+ .name = NULL, -+ .attrs = neo1973_usbhost_sysfs_entries, -+}; -+ -+static int __init neo1973_usbhost_probe(struct platform_device *pdev) -+{ -+ dev_info(&pdev->dev, "starting\n"); -+ -+ switch (machine_arch_type) { -+ -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ case MACH_TYPE_NEO1973_GTA01: -+ return -EINVAL; -+#endif /* CONFIG_MACH_NEO1973_GTA01 */ -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+ case MACH_TYPE_NEO1973_GTA02: -+/* race */ -+/* pcf50633_gpio_set(pcf50633_global, PCF50633_GPO, 0); */ -+ break; -+#endif /* CONFIG_MACH_NEO1973_GTA02 */ -+ } -+ -+ return sysfs_create_group(&pdev->dev.kobj, &neo1973_usbhost_attr_group); -+} -+ -+static int neo1973_usbhost_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, &neo1973_usbhost_attr_group); -+ -+ return 0; -+} -+ -+static struct platform_driver neo1973_usbhost_driver = { -+ .probe = neo1973_usbhost_probe, -+ .remove = neo1973_usbhost_remove, -+ .suspend = neo1973_usbhost_suspend, -+ .resume = neo1973_usbhost_resume, -+ .driver = { -+ .name = "neo1973-pm-host", -+ }, -+}; -+ -+static int __devinit neo1973_usbhost_init(void) -+{ -+ return platform_driver_register(&neo1973_usbhost_driver); -+} -+ -+static void neo1973_usbhost_exit(void) -+{ -+ platform_driver_unregister(&neo1973_usbhost_driver); -+} -+ -+module_init(neo1973_usbhost_init); -+module_exit(neo1973_usbhost_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("Neo1973 USB Host Power Management"); ---- /dev/null -+++ b/drivers/misc/neo1973_version.c -@@ -0,0 +1,90 @@ -+/* -+ * PCB version sysfs for the FIC Neo1973 GSM Phone -+ * -+ * (C) 2007 by Openmoko Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/platform_device.h> -+ -+#include <mach/hardware.h> -+#include <asm/mach-types.h> -+ -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+#include <mach/gta02.h> -+ -+static ssize_t version_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ return sprintf(buf, "0x%03X\n", gta02_get_pcb_revision()); -+} -+ -+ -+static DEVICE_ATTR(pcb, 0644, version_read, NULL); -+ -+static struct attribute *neo1973_version_sysfs_entries[] = { -+ &dev_attr_pcb.attr, -+ NULL -+}; -+ -+static struct attribute_group neo1973_version_attr_group = { -+ .name = NULL, -+ .attrs = neo1973_version_sysfs_entries, -+}; -+ -+static int __init neo1973_version_probe(struct platform_device *pdev) -+{ -+ dev_info(&pdev->dev, "starting\n"); -+ -+ switch (machine_arch_type) { -+#ifdef CONFIG_MACH_NEO1973_GTA01 -+ case MACH_TYPE_NEO1973_GTA01: -+ return -EINVAL; -+#endif /* CONFIG_MACH_NEO1973_GTA01 */ -+ default: -+ break; -+ } -+ -+ return sysfs_create_group(&pdev->dev.kobj, &neo1973_version_attr_group); -+} -+ -+static int neo1973_version_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, &neo1973_version_attr_group); -+ return 0; -+} -+ -+static struct platform_driver neo1973_version_driver = { -+ .probe = neo1973_version_probe, -+ .remove = neo1973_version_remove, -+ .driver = { -+ .name = "neo1973-version", -+ }, -+}; -+ -+static int __devinit neo1973_version_init(void) -+{ -+ return platform_driver_register(&neo1973_version_driver); -+} -+ -+static void neo1973_version_exit(void) -+{ -+ platform_driver_unregister(&neo1973_version_driver); -+} -+ -+module_init(neo1973_version_init); -+module_exit(neo1973_version_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("Neo1973 PCB version"); -+#endif ---- /dev/null -+++ b/drivers/misc/smdk6410-sleeptest.c -@@ -0,0 +1,65 @@ -+/* linux/drivers/misc/smdk6410-sleeptest.c -+ * -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/init.h> -+#include <linux/kernel.h> -+#include <linux/module.h> -+#include <linux/init.h> -+#include <linux/gpio.h> -+#include <linux/err.h> -+#include <linux/interrupt.h> -+ -+#include <plat/gpio-cfg.h> -+ -+static irqreturn_t sleep_action(int irq, void *pw) -+{ -+ printk(KERN_INFO "%s: irq %d\n", __func__, irq); -+ return IRQ_HANDLED; -+} -+ -+static void sleep_setup(unsigned int irq, unsigned int gpio) -+{ -+ int ret; -+ -+ WARN_ON(s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2)) < 0); -+ WARN_ON(s3c_gpio_setpull(gpio, S3C_GPIO_PULL_UP) < 0); -+ -+ ret = request_irq(irq, sleep_action, IRQF_TRIGGER_FALLING, -+ "sleep", NULL); -+ if (ret < 0) -+ printk(KERN_ERR "%s: request_irq() failed\n", __func__); -+ -+ ret = set_irq_wake(irq, 1); -+ if (ret < 0) -+ printk(KERN_ERR "%s: set_irq_wake() failed\n", __func__); -+} -+ -+static void sleep_led(unsigned int gpio) -+{ -+ gpio_request(gpio, "sleep led"); -+ gpio_direction_output(gpio, 0); -+} -+ -+static __init int smdk6410_sleeptest_init(void) -+{ -+ sleep_setup(IRQ_EINT(10), S3C64XX_GPN(10)); -+ sleep_led(S3C64XX_GPN(15)); -+ sleep_led(S3C64XX_GPN(14)); -+ sleep_led(S3C64XX_GPN(13)); -+ sleep_led(S3C64XX_GPN(12)); -+ -+ return 0; -+} -+ -+module_init(smdk6410_sleeptest_init); -+ -+MODULE_AUTHOR("Ben Dooks <ben@simtec.co.uk>"); -+MODULE_LICENSE("GPL"); ---- a/drivers/mmc/core/core.c -+++ b/drivers/mmc/core/core.c -@@ -57,10 +57,11 @@ static int mmc_schedule_delayed_work(str - /* - * Internal function. Flush all scheduled work from the MMC work queue. - */ --static void mmc_flush_scheduled_work(void) -+void mmc_flush_scheduled_work(void) - { - flush_workqueue(workqueue); - } -+EXPORT_SYMBOL_GPL(mmc_flush_scheduled_work); - - /** - * mmc_request_done - finish processing an MMC request -@@ -495,7 +496,13 @@ void mmc_set_timing(struct mmc_host *hos - */ - static void mmc_power_up(struct mmc_host *host) - { -- int bit = fls(host->ocr_avail) - 1; -+ int bit; -+ -+ /* If ocr is set, we use it */ -+ if (host->ocr) -+ bit = ffs(host->ocr) - 1; -+ else -+ bit = fls(host->ocr_avail) - 1; - - host->ios.vdd = bit; - if (mmc_host_is_spi(host)) { ---- a/drivers/mmc/host/Kconfig -+++ b/drivers/mmc/host/Kconfig -@@ -48,6 +48,18 @@ config MMC_SDHCI_PCI - - If unsure, say N. - -+config MMC_SDHCI_S3C -+ tristate "SDHCI support on Samsung S3C SoC" -+ depends on MMC_SDHCI && (PLAT_S3C24XX || PLAT_S3C64XX) -+ help -+ This selects the Secure Digital Host Controller Interface (SDHCI) -+ often referrered to as the HSMMC block in some of the Samsung S3C -+ range of SoC. -+ -+ If you have a controller with this interface, say Y or M here. -+ -+ If unsure, say N. -+ - config MMC_RICOH_MMC - tristate "Ricoh MMC Controller Disabler (EXPERIMENTAL)" - depends on MMC_SDHCI_PCI ---- a/drivers/mmc/host/Makefile -+++ b/drivers/mmc/host/Makefile -@@ -11,6 +11,7 @@ obj-$(CONFIG_MMC_PXA) += pxamci.o - obj-$(CONFIG_MMC_IMX) += imxmmc.o - obj-$(CONFIG_MMC_SDHCI) += sdhci.o - obj-$(CONFIG_MMC_SDHCI_PCI) += sdhci-pci.o -+obj-$(CONFIG_MMC_SDHCI_S3C) += sdhci-s3c.o - obj-$(CONFIG_MMC_RICOH_MMC) += ricoh_mmc.o - obj-$(CONFIG_MMC_WBSD) += wbsd.o - obj-$(CONFIG_MMC_AU1X) += au1xmmc.o ---- a/drivers/mmc/host/s3cmci.c -+++ b/drivers/mmc/host/s3cmci.c -@@ -2,6 +2,7 @@ - * linux/drivers/mmc/s3cmci.h - Samsung S3C MCI driver - * - * Copyright (C) 2004-2006 maintech GmbH, Thomas Kleffel <tk@maintech.de> -+ * Copyright (C) 2007 Harald Welte <laforge@gnumonks.org> - * - * Current driver maintained by Ben Dooks and Simtec Electronics - * Copyright (C) 2008 Simtec Electronics <ben-linux@fluff.org> -@@ -25,7 +26,15 @@ - #include <mach/regs-sdi.h> - #include <mach/regs-gpio.h> - --#include <asm/plat-s3c24xx/mci.h> -+#include <plat/mci.h> -+ -+#include <asm/dma.h> -+#include <asm/dma-mapping.h> -+ -+#include <asm/io.h> -+#include <mach/regs-gpio.h> -+#include <mach/mci.h> -+#include <mach/dma.h> - - #include "s3cmci.h" - -@@ -47,6 +56,9 @@ static const int dbgmap_err = dbg_fail - static const int dbgmap_info = dbg_info | dbg_conf; - static const int dbgmap_debug = dbg_err | dbg_debug; - -+static int f_max = -1; /* override maximum frequency limit */ -+static int persist; /* keep interface alive across suspend/resume */ -+ - #define dbg(host, channels, args...) \ - do { \ - if (dbgmap_err & channels) \ -@@ -280,8 +292,11 @@ static void do_pio_read(struct s3cmci_ho - * an even multiple of 4. */ - if (fifo >= host->pio_bytes) - fifo = host->pio_bytes; -- else -+ else { - fifo -= fifo & 3; -+ if (!fifo) -+ break; -+ } - - host->pio_bytes -= fifo; - host->pio_count += fifo; -@@ -353,8 +368,11 @@ static void do_pio_write(struct s3cmci_h - * words, so round down to an even multiple of 4. */ - if (fifo >= host->pio_bytes) - fifo = host->pio_bytes; -- else -+ else { - fifo -= fifo & 3; -+ if (!fifo) -+ break; -+ } - - host->pio_bytes -= fifo; - host->pio_count += fifo; -@@ -373,7 +391,6 @@ static void pio_tasklet(unsigned long da - { - struct s3cmci_host *host = (struct s3cmci_host *) data; - -- - disable_irq(host->irq); - - if (host->pio_active == XFER_WRITE) -@@ -614,7 +631,6 @@ irq_out: - - spin_unlock_irqrestore(&host->complete_lock, iflags); - return IRQ_HANDLED; -- - } - - /* -@@ -1026,6 +1042,7 @@ static void s3cmci_send_request(struct m - dbg(host, dbg_err, "data prepare error %d\n", res); - cmd->error = res; - cmd->data->error = res; -+ cmd->data->error = -EIO; - - mmc_request_done(mmc, mrq); - return; -@@ -1263,10 +1280,8 @@ static int __devinit s3cmci_probe(struct - host->is2440 = is2440; - - host->pdata = pdev->dev.platform_data; -- if (!host->pdata) { -- pdev->dev.platform_data = &s3cmci_def_pdata; -+ if (!host->pdata) - host->pdata = &s3cmci_def_pdata; -- } - - spin_lock_init(&host->complete_lock); - tasklet_init(&host->pio_tasklet, pio_tasklet, (unsigned long) host); -@@ -1379,6 +1394,18 @@ static int __devinit s3cmci_probe(struct - mmc->f_min = host->clk_rate / (host->clk_div * 256); - mmc->f_max = host->clk_rate / host->clk_div; - -+ if (f_max >= 0) { -+ unsigned f = f_max; -+ -+ if (f < mmc->f_min) -+ f = mmc->f_min; -+ if (mmc->f_max > f) { -+ dev_info(&pdev->dev, "f_max lowered from %u to %u Hz\n", -+ mmc->f_max, f); -+ mmc->f_max = f; -+ } -+ } -+ - if (host->pdata->ocr_avail) - mmc->ocr_avail = host->pdata->ocr_avail; - -@@ -1491,18 +1518,60 @@ static int __devinit s3cmci_2440_probe(s - - #ifdef CONFIG_PM - -+static int save_regs(struct mmc_host *mmc) -+{ -+ struct s3cmci_host *host = mmc_priv(mmc); -+ unsigned long flags; -+ unsigned from; -+ u32 *to = host->saved; -+ -+ mmc_flush_scheduled_work(); -+ -+ local_irq_save(flags); -+ for (from = S3C2410_SDICON; from != S3C2410_SDIIMSK+4; from += 4) -+ if (from != host->sdidata) -+ *to++ = readl(host->base + from); -+ BUG_ON(to-host->saved != ARRAY_SIZE(host->saved)); -+ local_irq_restore(flags); -+ -+ return 0; -+} -+ -+static int restore_regs(struct mmc_host *mmc) -+{ -+ struct s3cmci_host *host = mmc_priv(mmc); -+ unsigned long flags; -+ unsigned to; -+ u32 *from = host->saved; -+ -+ /* -+ * Before we begin with the necromancy, make sure we don't -+ * inadvertently start something we'll regret microseconds later. -+ */ -+ from[S3C2410_SDICMDCON - S3C2410_SDICON] = 0; -+ -+ local_irq_save(flags); -+ for (to = S3C2410_SDICON; to != S3C2410_SDIIMSK+4; to += 4) -+ if (to != host->sdidata) -+ writel(*from++, host->base + to); -+ BUG_ON(from-host->saved != ARRAY_SIZE(host->saved)); -+ local_irq_restore(flags); -+ -+ return 0; -+} -+ - static int s3cmci_suspend(struct platform_device *dev, pm_message_t state) - { - struct mmc_host *mmc = platform_get_drvdata(dev); - -- return mmc_suspend_host(mmc, state); -+ return persist ? save_regs(mmc) : mmc_suspend_host(mmc, state); - } - - static int s3cmci_resume(struct platform_device *dev) - { - struct mmc_host *mmc = platform_get_drvdata(dev); - -- return mmc_resume_host(mmc); -+ return persist ? restore_regs(mmc) : mmc_resume_host(mmc); - } - - #else /* CONFIG_PM */ -@@ -1560,9 +1629,13 @@ static void __exit s3cmci_exit(void) - module_init(s3cmci_init); - module_exit(s3cmci_exit); - -+module_param(f_max, int, 0644); -+module_param(persist, int, 0644); -+ - MODULE_DESCRIPTION("Samsung S3C MMC/SD Card Interface driver"); - MODULE_LICENSE("GPL v2"); - MODULE_AUTHOR("Thomas Kleffel <tk@maintech.de>, Ben Dooks <ben-linux@fluff.org>"); - MODULE_ALIAS("platform:s3c2410-sdi"); - MODULE_ALIAS("platform:s3c2412-sdi"); - MODULE_ALIAS("platform:s3c2440-sdi"); -+ ---- a/drivers/mmc/host/s3cmci.h -+++ b/drivers/mmc/host/s3cmci.h -@@ -8,6 +8,9 @@ - * published by the Free Software Foundation. - */ - -+ -+#include <mach/regs-sdi.h> -+ - /* FIXME: DMA Resource management ?! */ - #define S3CMCI_DMA 0 - -@@ -68,6 +71,13 @@ struct s3cmci_host { - unsigned int ccnt, dcnt; - struct tasklet_struct pio_tasklet; - -+ /* -+ * Here's where we save the registers during suspend. Note that we skip -+ * SDIDATA, which is at different positions on 2410 and 2440, so -+ * there's no "+1" in the array size. -+ */ -+ u32 saved[(S3C2410_SDIIMSK-S3C2410_SDICON)/4]; -+ - #ifdef CONFIG_CPU_FREQ - struct notifier_block freq_transition; - #endif ---- a/drivers/mmc/host/sdhci.c -+++ b/drivers/mmc/host/sdhci.c -@@ -73,6 +73,11 @@ static void sdhci_dumpregs(struct sdhci_ - readl(host->ioaddr + SDHCI_CAPABILITIES), - readl(host->ioaddr + SDHCI_MAX_CURRENT)); - -+ if (host->flags & SDHCI_USE_ADMA) -+ printk(KERN_DEBUG DRIVER_NAME ": ADMA Err: 0x%08x | ADMA Ptr: 0x%08x\n", -+ readl(host->ioaddr + SDHCI_ADMA_ERROR), -+ readl(host->ioaddr + SDHCI_ADMA_ADDRESS)); -+ - printk(KERN_DEBUG DRIVER_NAME ": ===========================================\n"); - } - -@@ -731,6 +736,23 @@ static void sdhci_set_transfer_mode(stru - writew(mode, host->ioaddr + SDHCI_TRANSFER_MODE); - } - -+static void shdci_check_dma_overrun(struct sdhci_host *host, struct mmc_data *data) -+{ -+ u32 dma_pos = readl(host->ioaddr + SDHCI_DMA_ADDRESS); -+ u32 dma_start = sg_dma_address(data->sg); -+ u32 dma_end = dma_start + data->sg->length; -+ -+ /* Test whether we ended up moving more data than -+ * was originally requested. */ -+ -+ if (dma_pos <= dma_end) -+ return; -+ -+ printk(KERN_ERR "%s: dma overrun, dma %08x, req %08x..%08x\n", -+ mmc_hostname(host->mmc), dma_pos, -+ dma_start, dma_end); -+} -+ - static void sdhci_finish_data(struct sdhci_host *host) - { - struct mmc_data *data; -@@ -744,6 +766,8 @@ static void sdhci_finish_data(struct sdh - if (host->flags & SDHCI_USE_ADMA) - sdhci_adma_table_post(host, data); - else { -+ shdci_check_dma_overrun(host, data); -+ - dma_unmap_sg(mmc_dev(host->mmc), data->sg, - data->sg_len, (data->flags & MMC_DATA_READ) ? - DMA_FROM_DEVICE : DMA_TO_DEVICE); -@@ -883,13 +907,18 @@ static void sdhci_finish_command(struct - - static void sdhci_set_clock(struct sdhci_host *host, unsigned int clock) - { -+ if (clock == host->clock) -+ return; -+ -+ host->ops->change_clock(host, clock); -+} -+ -+void sdhci_change_clock(struct sdhci_host *host, unsigned int clock) -+{ - int div; - u16 clk; - unsigned long timeout; - -- if (clock == host->clock) -- return; -- - writew(0, host->ioaddr + SDHCI_CLOCK_CONTROL); - - if (clock == 0) -@@ -926,6 +955,8 @@ out: - host->clock = clock; - } - -+EXPORT_SYMBOL_GPL(sdhci_set_clock); -+ - static void sdhci_set_power(struct sdhci_host *host, unsigned short power) - { - u8 pwr; -@@ -999,12 +1030,13 @@ static void sdhci_request(struct mmc_hos - #endif - - host->mrq = mrq; -- -+/* - if (!(readl(host->ioaddr + SDHCI_PRESENT_STATE) & SDHCI_CARD_PRESENT) - || (host->flags & SDHCI_DEVICE_DEAD)) { - host->mrq->cmd->error = -ENOMEDIUM; - tasklet_schedule(&host->finish_tasklet); - } else -+*/ - sdhci_send_command(host, mrq->cmd); - - mmiowb(); -@@ -1033,6 +1065,9 @@ static void sdhci_set_ios(struct mmc_hos - sdhci_init(host); - } - -+ if (host->ops->set_ios) -+ host->ops->set_ios(host, ios); -+ - sdhci_set_clock(host, ios->clock); - - if (ios->power_mode == MMC_POWER_OFF) -@@ -1136,7 +1171,7 @@ static void sdhci_tasklet_card(unsigned - host = (struct sdhci_host*)param; - - spin_lock_irqsave(&host->lock, flags); -- -+/* - if (!(readl(host->ioaddr + SDHCI_PRESENT_STATE) & SDHCI_CARD_PRESENT)) { - if (host->mrq) { - printk(KERN_ERR "%s: Card removed during transfer!\n", -@@ -1151,7 +1186,7 @@ static void sdhci_tasklet_card(unsigned - tasklet_schedule(&host->finish_tasklet); - } - } -- -+*/ - spin_unlock_irqrestore(&host->lock, flags); - - mmc_detect_change(host->mmc, msecs_to_jiffies(200)); -@@ -1607,17 +1642,23 @@ int sdhci_add_host(struct sdhci_host *ho - mmc_dev(host->mmc)->dma_mask = &host->dma_mask; - } - -- host->max_clk = -- (caps & SDHCI_CLOCK_BASE_MASK) >> SDHCI_CLOCK_BASE_SHIFT; -+ if (host->ops->get_max_clock) -+ host->max_clk = host->ops->get_max_clock(host); -+ else { -+ host->max_clk = (caps & SDHCI_CLOCK_BASE_MASK) >> SDHCI_CLOCK_BASE_SHIFT; -+ host->max_clk *= 1000000; -+ } - if (host->max_clk == 0) { - printk(KERN_ERR "%s: Hardware doesn't specify base clock " - "frequency.\n", mmc_hostname(mmc)); - return -ENODEV; - } -- host->max_clk *= 1000000; - -- host->timeout_clk = -- (caps & SDHCI_TIMEOUT_CLK_MASK) >> SDHCI_TIMEOUT_CLK_SHIFT; -+ if (host->ops->get_timeout_clock) -+ host->timeout_clk = host->ops->get_timeout_clock(host); -+ else -+ host->timeout_clk = -+ (caps & SDHCI_TIMEOUT_CLK_MASK) >> SDHCI_TIMEOUT_CLK_SHIFT; - if (host->timeout_clk == 0) { - printk(KERN_ERR "%s: Hardware doesn't specify timeout clock " - "frequency.\n", mmc_hostname(mmc)); ---- a/drivers/mmc/host/sdhci.h -+++ b/drivers/mmc/host/sdhci.h -@@ -57,6 +57,7 @@ - #define SDHCI_DATA_AVAILABLE 0x00000800 - #define SDHCI_CARD_PRESENT 0x00010000 - #define SDHCI_WRITE_PROTECT 0x00080000 -+#define SDHCI_DATA_BIT(x) (1 << ((x) + 20)) - - #define SDHCI_HOST_CONTROL 0x28 - #define SDHCI_CTRL_LED 0x01 -@@ -270,6 +271,14 @@ struct sdhci_host { - - struct sdhci_ops { - int (*enable_dma)(struct sdhci_host *host); -+ unsigned int (*get_max_clock)(struct sdhci_host *host); -+ unsigned int (*get_timeout_clock)(struct sdhci_host *host); -+ -+ void (*change_clock)(struct sdhci_host *host, -+ unsigned int clock); -+ -+ void (*set_ios)(struct sdhci_host *host, -+ struct mmc_ios *ios); - }; - - -@@ -277,6 +286,8 @@ extern struct sdhci_host *sdhci_alloc_ho - size_t priv_size); - extern void sdhci_free_host(struct sdhci_host *host); - -+extern void sdhci_change_clock(struct sdhci_host *host, unsigned int clock); -+ - static inline void *sdhci_priv(struct sdhci_host *host) - { - return (void *)host->private; ---- a/drivers/mmc/host/sdhci-pci.c -+++ b/drivers/mmc/host/sdhci-pci.c -@@ -392,6 +392,7 @@ static int sdhci_pci_enable_dma(struct s - - static struct sdhci_ops sdhci_pci_ops = { - .enable_dma = sdhci_pci_enable_dma, -+ .change_clock = sdhci_change_clock, - }; - - /*****************************************************************************\ ---- /dev/null -+++ b/drivers/mmc/host/sdhci-s3c.c -@@ -0,0 +1,419 @@ -+/* linux/drivers/mmc/host/sdhci-s3c.c -+ * -+ * Copyright 2008 Openmoko Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * SDHCI (HSMMC) support for Samsung SoC -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ */ -+ -+#include <linux/delay.h> -+#include <linux/dma-mapping.h> -+#include <linux/platform_device.h> -+#include <linux/clk.h> -+#include <linux/io.h> -+ -+#include <linux/mmc/host.h> -+ -+#include <plat/regs-sdhci.h> -+#include <plat/sdhci.h> -+ -+#include "sdhci.h" -+ -+#define MAX_BUS_CLK (4) -+ -+struct sdhci_s3c { -+ struct sdhci_host *host; -+ struct platform_device *pdev; -+ struct resource *ioarea; -+ struct s3c_sdhci_platdata *pdata; -+ unsigned int cur_clk; -+ -+ struct clk *clk_io; /* clock for io bus */ -+ struct clk *clk_bus[MAX_BUS_CLK]; -+}; -+ -+static inline struct sdhci_s3c *to_s3c(struct sdhci_host *host) -+{ -+ return sdhci_priv(host); -+} -+ -+static u32 get_curclk(u32 ctrl2) -+{ -+ ctrl2 &= S3C_SDHCI_CTRL2_SELBASECLK_MASK; -+ ctrl2 >>= S3C_SDHCI_CTRL2_SELBASECLK_SHIFT; -+ -+ return ctrl2; -+} -+ -+static void sdhci_s3c_check_sclk(struct sdhci_host *host) -+{ -+ struct sdhci_s3c *ourhost = to_s3c(host); -+ u32 tmp = readl(host->ioaddr + S3C_SDHCI_CONTROL2); -+ -+ if (get_curclk(tmp) != ourhost->cur_clk) { -+ dev_dbg(&ourhost->pdev->dev, "restored ctrl2 clock setting\n"); -+ -+ tmp &= ~S3C_SDHCI_CTRL2_SELBASECLK_MASK; -+ tmp |= ourhost->cur_clk << S3C_SDHCI_CTRL2_SELBASECLK_SHIFT; -+ writel(tmp, host->ioaddr + 0x80); -+ } -+} -+ -+static unsigned int sdhci_s3c_get_max_clk(struct sdhci_host *host) -+{ -+ struct sdhci_s3c *ourhost = to_s3c(host); -+ struct clk *busclk; -+ unsigned int rate, max; -+ int clk; -+ -+ /* note, a reset will reset the clock source */ -+ -+ sdhci_s3c_check_sclk(host); -+ -+ for (max = 0, clk = 0; clk < MAX_BUS_CLK; clk++) { -+ busclk = ourhost->clk_bus[clk]; -+ if (!busclk) -+ continue; -+ -+ rate = clk_get_rate(busclk); -+ if (rate > max) -+ max = rate; -+ } -+ -+ return max; -+} -+ -+static unsigned int sdhci_s3c_get_timeout_clk(struct sdhci_host *host) -+{ -+ return sdhci_s3c_get_max_clk(host) / 1000000; -+} -+ -+static void sdhci_s3c_set_ios(struct sdhci_host *host, -+ struct mmc_ios *ios) -+{ -+ struct sdhci_s3c *ourhost = to_s3c(host); -+ struct s3c_sdhci_platdata *pdata = ourhost->pdata; -+ int width; -+ -+ sdhci_s3c_check_sclk(host); -+ -+ if (ios->power_mode != MMC_POWER_OFF) { -+ switch (ios->bus_width) { -+ case MMC_BUS_WIDTH_4: -+ width = 4; -+ break; -+ case MMC_BUS_WIDTH_1: -+ width = 1; -+ break; -+ default: -+ BUG(); -+ } -+ -+ if (pdata->cfg_gpio) -+ pdata->cfg_gpio(ourhost->pdev, width); -+ } -+ -+ if (pdata->cfg_card) -+ pdata->cfg_card(ourhost->pdev, host->ioaddr, -+ ios, host->mmc->card); -+} -+ -+static unsigned int sdhci_s3c_consider_clock(struct sdhci_s3c *ourhost, -+ unsigned int src, -+ unsigned int wanted) -+{ -+ unsigned long rate; -+ struct clk *clksrc = ourhost->clk_bus[src]; -+ int div; -+ -+ if (!clksrc) -+ return UINT_MAX; -+ -+ rate = clk_get_rate(clksrc); -+ -+ for (div = 1; div < 256; div *= 2) { -+ if ((rate / div) <= wanted) -+ break; -+ } -+ -+ dev_dbg(&ourhost->pdev->dev, "clk %d: rate %ld, want %d, got %ld\n", -+ src, rate, wanted, rate / div); -+ -+ return (wanted - (rate / div)); -+} -+ -+static void sdhci_s3c_change_clock(struct sdhci_host *host, unsigned int clock) -+{ -+ struct sdhci_s3c *ourhost = to_s3c(host); -+ unsigned int best = UINT_MAX; -+ unsigned int delta; -+ int best_src = 0; -+ int src; -+ u32 ctrl; -+ -+ for (src = 0; src < MAX_BUS_CLK; src++) { -+ delta = sdhci_s3c_consider_clock(ourhost, src, clock); -+ if (delta < best) { -+ best = delta; -+ best_src = src; -+ } -+ } -+ -+ dev_dbg(&ourhost->pdev->dev, -+ "selected source %d, clock %d, delta %d\n", -+ best_src, clock, best); -+ -+ /* turn clock off to card before changing clock source */ -+ writew(0, host->ioaddr + SDHCI_CLOCK_CONTROL); -+ -+ /* select the new clock source */ -+ -+ if (ourhost->cur_clk != best_src) { -+ struct clk *clk = ourhost->clk_bus[best_src]; -+ -+ ourhost->cur_clk = best_src; -+ host->max_clk = clk_get_rate(clk); -+ host->timeout_clk = host->max_clk / 1000000; -+ -+ ctrl = readl(host->ioaddr + S3C_SDHCI_CONTROL2); -+ ctrl &= ~S3C_SDHCI_CTRL2_SELBASECLK_MASK; -+ ctrl |= best_src << S3C_SDHCI_CTRL2_SELBASECLK_SHIFT; -+ writel(ctrl, host->ioaddr + S3C_SDHCI_CONTROL2); -+ } -+ -+ sdhci_change_clock(host, clock); -+} -+ -+static struct sdhci_ops sdhci_s3c_ops = { -+ .get_max_clock = sdhci_s3c_get_max_clk, -+ .get_timeout_clock = sdhci_s3c_get_timeout_clk, -+ .change_clock = sdhci_s3c_change_clock, -+ .set_ios = sdhci_s3c_set_ios, -+}; -+ -+/* -+ * call this when you need sd stack to recognize insertion or removal of card -+ * that can't be told by SDHCI regs -+ */ -+ -+void sdhci_s3c_force_presence_change(struct platform_device *pdev) -+{ -+ struct s3c_sdhci_platdata *pdata = pdev->dev.platform_data; -+ -+ dev_info(&pdev->dev, "sdhci_s3c_force_presence_change called\n"); -+ mmc_detect_change(pdata->sdhci_host->mmc, msecs_to_jiffies(200)); -+} -+EXPORT_SYMBOL_GPL(sdhci_s3c_force_presence_change); -+ -+ -+static int __devinit sdhci_s3c_probe(struct platform_device *pdev) -+{ -+ struct s3c_sdhci_platdata *pdata = pdev->dev.platform_data; -+ struct device *dev = &pdev->dev; -+ struct sdhci_host *host; -+ struct sdhci_s3c *sc; -+ struct resource *res; -+ int ret, irq, ptr, clks; -+ -+ if (!pdata) { -+ dev_err(dev, "no device data specified\n"); -+ return -ENOENT; -+ } -+ -+ irq = platform_get_irq(pdev, 0); -+ if (irq < 0) { -+ dev_err(dev, "no irq specified\n"); -+ return irq; -+ } -+ -+ res = platform_get_resource(pdev, IORESOURCE_MEM, 0); -+ if (!res) { -+ dev_err(dev, "no memory specified\n"); -+ return -ENOENT; -+ } -+ -+ host = sdhci_alloc_host(dev, sizeof(struct sdhci_s3c)); -+ if (IS_ERR(host)) { -+ dev_err(dev, "sdhci_alloc_host() failed\n"); -+ return PTR_ERR(host); -+ } -+ -+ pdata->sdhci_host = host; -+ -+ sc = sdhci_priv(host); -+ -+ sc->host = host; -+ sc->pdev = pdev; -+ sc->pdata = pdata; -+ -+ platform_set_drvdata(pdev, host); -+ -+ sc->clk_io = clk_get(dev, "hsmmc"); -+ if (IS_ERR(sc->clk_io)) { -+ dev_err(dev, "failed to get io clock\n"); -+ ret = PTR_ERR(sc->clk_io); -+ goto err_io_clk; -+ } -+ -+ /* enable the local io clock and keep it running for the moment. */ -+ clk_enable(sc->clk_io); -+ -+ for (clks = 0, ptr = 0; ptr < MAX_BUS_CLK; ptr++) { -+ struct clk *clk; -+ char *name = pdata->clocks[ptr]; -+ -+ if (name == NULL) -+ continue; -+ -+ clk = clk_get(dev, name); -+ if (IS_ERR(clk)) { -+ dev_err(dev, "failed to get clock %s\n", name); -+ continue; -+ } -+ -+ clks++; -+ sc->clk_bus[ptr] = clk; -+ clk_enable(clk); -+ -+ dev_info(dev, "clock source %d: %s (%ld Hz)\n", -+ ptr, name, clk_get_rate(clk)); -+ } -+ -+ if (clks == 0) { -+ dev_err(dev, "failed to find any bus clocks\n"); -+ ret = -ENOENT; -+ goto err_no_busclks; -+ } -+ -+ sc->ioarea = request_mem_region(res->start, resource_size(res), -+ mmc_hostname(host->mmc)); -+ if (!sc->ioarea) { -+ dev_err(dev, "failed to reserve register area\n"); -+ ret = -ENXIO; -+ goto err_req_regs; -+ } -+ -+ host->ioaddr = ioremap_nocache(res->start, resource_size(res)); -+ if (!host->ioaddr) { -+ dev_err(dev, "failed to map registers\n"); -+ ret = -ENXIO; -+ goto err_req_regs; -+ } -+ -+ /* Ensure we have minimal gpio selected CMD/CLK/Detect */ -+ if (pdata->cfg_gpio) -+ pdata->cfg_gpio(pdev, 0); -+ -+ sdhci_s3c_check_sclk(host); -+ -+ host->hw_name = "samsung-hsmmc"; -+ host->ops = &sdhci_s3c_ops; -+ host->quirks = 0; -+ host->irq = irq; -+ -+ /* Setup quirks for the controller */ -+ -+ /* Currently with ADMA enabled we are getting some length -+ * interrupts that are not being dealt with, do disable -+ * ADMA until this is sorted out. */ -+ host->quirks |= SDHCI_QUIRK_BROKEN_ADMA; -+ host->quirks |= SDHCI_QUIRK_32BIT_ADMA_SIZE; -+ -+ /* It seems we do not get an DATA transfer complete on non-busy -+ * transfers, not sure if this is a problem with this specific -+ * SDHCI block, or a missing configuration that needs to be set. */ -+ host->quirks |= SDHCI_QUIRK_NO_BUSY_IRQ; -+ -+ host->quirks |= (SDHCI_QUIRK_32BIT_DMA_ADDR | -+ SDHCI_QUIRK_32BIT_DMA_SIZE); -+ -+ ret = sdhci_add_host(host); -+ if (ret) { -+ dev_err(dev, "sdhci_add_host() failed\n"); -+ goto err_add_host; -+ } -+ -+ return 0; -+ -+ err_add_host: -+ release_resource(sc->ioarea); -+ kfree(sc->ioarea); -+ -+ err_req_regs: -+ for (ptr = 0; ptr < MAX_BUS_CLK; ptr++) { -+ clk_disable(sc->clk_bus[ptr]); -+ clk_put(sc->clk_bus[ptr]); -+ } -+ -+ err_no_busclks: -+ clk_disable(sc->clk_io); -+ clk_put(sc->clk_io); -+ -+ err_io_clk: -+ sdhci_free_host(host); -+ -+ return ret; -+} -+ -+static int __devexit sdhci_s3c_remove(struct platform_device *pdev) -+{ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+ -+static int sdhci_s3c_suspend(struct platform_device *dev, pm_message_t pm) -+{ -+ struct sdhci_host *host = platform_get_drvdata(dev); -+ -+ sdhci_suspend_host(host, pm); -+ return 0; -+} -+ -+static int sdhci_s3c_resume(struct platform_device *dev) -+{ -+ struct sdhci_host *host = platform_get_drvdata(dev); -+ -+ sdhci_resume_host(host); -+ return 0; -+} -+ -+#else -+#define sdhci_s3c_suspend NULL -+#define sdhci_s3c_resume NULL -+#endif -+ -+static struct platform_driver sdhci_s3c_driver = { -+ .probe = sdhci_s3c_probe, -+ .remove = __devexit_p(sdhci_s3c_remove), -+ .suspend = sdhci_s3c_suspend, -+ .resume = sdhci_s3c_resume, -+ .driver = { -+ .owner = THIS_MODULE, -+ .name = "s3c-sdhci", -+ }, -+}; -+ -+static int __init sdhci_s3c_init(void) -+{ -+ return platform_driver_register(&sdhci_s3c_driver); -+} -+ -+static void __exit sdhci_s3c_exit(void) -+{ -+ platform_driver_unregister(&sdhci_s3c_driver); -+} -+ -+module_init(sdhci_s3c_init); -+module_exit(sdhci_s3c_exit); -+ -+MODULE_DESCRIPTION("Samsung SDHCI (HSMMC) glue"); -+MODULE_AUTHOR("Ben Dooks, <ben@simtec.co.uk>"); -+MODULE_LICENSE("GPL v2"); -+MODULE_ALIAS("platform:s3c-sdhci"); ---- a/drivers/mtd/nand/s3c2410.c -+++ b/drivers/mtd/nand/s3c2410.c -@@ -45,8 +45,8 @@ - - #include <asm/io.h> - --#include <asm/plat-s3c/regs-nand.h> --#include <asm/plat-s3c/nand.h> -+#include <plat/regs-nand.h> -+#include <plat/nand.h> - - #ifdef CONFIG_MTD_NAND_S3C2410_HWECC - static int hardware_ecc = 1; -@@ -231,8 +231,6 @@ static int s3c2410_nand_setrate(struct s - BUG(); - } - -- dev_dbg(info->device, "NF_CONF is 0x%lx\n", cfg); -- - local_irq_save(flags); - - cfg = readl(info->regs + S3C2410_NFCONF); -@@ -240,6 +238,8 @@ static int s3c2410_nand_setrate(struct s - cfg |= set; - writel(cfg, info->regs + S3C2410_NFCONF); - -+ dev_dbg(info->device, "NF_CONF is 0x%lx\n", cfg); -+ - local_irq_restore(flags); - - return 0; -@@ -438,7 +438,7 @@ static int s3c2410_nand_correct_data(str - if ((diff0 & ~(1<<fls(diff0))) == 0) - return 1; - -- return -1; -+ return -EBADMSG; - } - - /* ECC functions -@@ -530,7 +530,12 @@ static void s3c2410_nand_read_buf(struct - static void s3c2440_nand_read_buf(struct mtd_info *mtd, u_char *buf, int len) - { - struct s3c2410_nand_info *info = s3c2410_nand_mtd_toinfo(mtd); -+ u8 *ptr = buf + (len & ~3); -+ int i; -+ - readsl(info->regs + S3C2440_NFDATA, buf, len / 4); -+ for (i = 0; i != (len & 3); i++) -+ ptr[i] = readb(info->regs + S3C2440_NFDATA); - } - - static void s3c2410_nand_write_buf(struct mtd_info *mtd, const u_char *buf, int len) -@@ -645,17 +650,31 @@ static int s3c2410_nand_remove(struct pl - } - - #ifdef CONFIG_MTD_PARTITIONS -+const char *part_probes[] = { "cmdlinepart", NULL }; - static int s3c2410_nand_add_partition(struct s3c2410_nand_info *info, - struct s3c2410_nand_mtd *mtd, - struct s3c2410_nand_set *set) - { -+ struct mtd_partition *part_info; -+ int nr_part = 0; -+ - if (set == NULL) - return add_mtd_device(&mtd->mtd); - -- if (set->nr_partitions > 0 && set->partitions != NULL) { -- return add_mtd_partitions(&mtd->mtd, set->partitions, set->nr_partitions); -+ if (set->nr_partitions == 0) { -+ mtd->mtd.name = set->name; -+ nr_part = parse_mtd_partitions(&mtd->mtd, part_probes, -+ &part_info, 0); -+ } else { -+ if (set->nr_partitions > 0 && set->partitions != NULL) { -+ nr_part = set->nr_partitions; -+ part_info = set->partitions; -+ } - } - -+ if (nr_part > 0 && part_info) -+ return add_mtd_partitions(&mtd->mtd, part_info, nr_part); -+ - return add_mtd_device(&mtd->mtd); - } - #else -@@ -684,9 +703,13 @@ static void s3c2410_nand_init_chip(struc - chip->select_chip = s3c2410_nand_select_chip; - chip->chip_delay = 50; - chip->priv = nmtd; -- chip->options = 0; - chip->controller = &info->controller; - -+ if (set->flags & S3C2410_NAND_BBT) -+ chip->options = NAND_USE_FLASH_BBT; -+ else -+ chip->options = 0; -+ - switch (info->cpu_type) { - case TYPE_S3C2410: - chip->IO_ADDR_W = regs + S3C2410_NFDATA; -@@ -726,7 +749,7 @@ static void s3c2410_nand_init_chip(struc - nmtd->mtd.owner = THIS_MODULE; - nmtd->set = set; - -- if (hardware_ecc) { -+ if (!info->platform->software_ecc && hardware_ecc) { - chip->ecc.calculate = s3c2410_nand_calculate_ecc; - chip->ecc.correct = s3c2410_nand_correct_data; - chip->ecc.mode = NAND_ECC_HW; ---- a/drivers/net/wireless/libertas/if_sdio.c -+++ b/drivers/net/wireless/libertas/if_sdio.c -@@ -48,6 +48,7 @@ module_param_named(fw_name, lbs_fw_name, - - static const struct sdio_device_id if_sdio_ids[] = { - { SDIO_DEVICE(SDIO_VENDOR_ID_MARVELL, SDIO_DEVICE_ID_MARVELL_LIBERTAS) }, -+ { SDIO_DEVICE(SDIO_VENDOR_ID_MARVELL, SDIO_DEVICE_ID_MARVELL_88W8688) }, - { /* end: all zeroes */ }, - }; - -@@ -72,7 +73,12 @@ static struct if_sdio_model if_sdio_mode - .helper = "sd8686_helper.bin", - .firmware = "sd8686.bin", - }, --}; -+ { -+ /* 8688 */ -+ .model = 0x10, -+ .helper = "sd8688_helper.bin", -+ .firmware = "sd8688.bin", -+ },}; - - struct if_sdio_packet { - struct if_sdio_packet *next; ---- a/drivers/pnp/Kconfig -+++ b/drivers/pnp/Kconfig -@@ -5,7 +5,7 @@ - menuconfig PNP - bool "Plug and Play support" - depends on HAS_IOMEM -- depends on ISA || ACPI -+ depends on ISA || ACPI || SDIO - ---help--- - Plug and Play (PnP) is a standard for peripherals which allows those - peripherals to be configured by software, e.g. assign IRQ's or other ---- a/drivers/pnp/resource.c -+++ b/drivers/pnp/resource.c -@@ -436,6 +436,7 @@ int pnp_check_dma(struct pnp_dev *dev, s - } - } - -+#if 0 - /* check if the resource is already in use, skip if the - * device is active because it itself may be in use */ - if (!dev->active) { -@@ -443,6 +444,7 @@ int pnp_check_dma(struct pnp_dev *dev, s - return 0; - free_dma(*dma); - } -+#endif - - /* check for conflicts with other pnp devices */ - pnp_for_each_dev(tdev) { ---- /dev/null -+++ b/drivers/power/bq27000_battery.c -@@ -0,0 +1,463 @@ -+/* -+ * Driver for batteries with bq27000 chips inside via HDQ -+ * -+ * Copyright 2008 Openmoko, Inc -+ * Andy Green <andy@openmoko.com> -+ * -+ * based on ds2760 driver, original copyright notice for that ---> -+ * -+ * Copyright © 2007 Anton Vorontsov -+ * 2004-2007 Matt Reimer -+ * 2004 Szabolcs Gyurko -+ * -+ * Use consistent with the GNU GPL is permitted, -+ * provided that this copyright notice is -+ * preserved in its entirety in all copies and derived works. -+ * -+ * Author: Anton Vorontsov <cbou@mail.ru> -+ * February 2007 -+ * -+ * Matt Reimer <mreimer@vpop.net> -+ * April 2004, 2005, 2007 -+ * -+ * Szabolcs Gyurko <szabolcs.gyurko@tlt.hu> -+ * September 2004 -+ */ -+ -+#include <linux/module.h> -+#include <linux/param.h> -+#include <linux/jiffies.h> -+#include <linux/delay.h> -+#include <linux/pm.h> -+#include <linux/workqueue.h> -+#include <linux/platform_device.h> -+#include <linux/power_supply.h> -+#include <linux/bq27000_battery.h> -+ -+enum bq27000_regs { -+ /* RAM regs */ -+ /* read-write after this */ -+ BQ27000_CTRL = 0, /* Device Control Register */ -+ BQ27000_MODE, /* Device Mode Register */ -+ BQ27000_AR_L, /* At-Rate H L */ -+ BQ27000_AR_H, -+ /* read-only after this */ -+ BQ27000_ARTTE_L, /* At-Rate Time To Empty H L */ -+ BQ27000_ARTTE_H, -+ BQ27000_TEMP_L, /* Reported Temperature H L */ -+ BQ27000_TEMP_H, -+ BQ27000_VOLT_L, /* Reported Voltage H L */ -+ BQ27000_VOLT_H, -+ BQ27000_FLAGS, /* Status Flags */ -+ BQ27000_RSOC, /* Relative State of Charge */ -+ BQ27000_NAC_L, /* Nominal Available Capacity H L */ -+ BQ27000_NAC_H, -+ BQ27000_CACD_L, /* Discharge Compensated H L */ -+ BQ27000_CACD_H, -+ BQ27000_CACT_L, /* Temperature Compensated H L */ -+ BQ27000_CACT_H, -+ BQ27000_LMD_L, /* Last measured discharge H L */ -+ BQ27000_LMD_H, -+ BQ27000_AI_L, /* Average Current H L */ -+ BQ27000_AI_H, -+ BQ27000_TTE_L, /* Time to Empty H L */ -+ BQ27000_TTE_H, -+ BQ27000_TTF_L, /* Time to Full H L */ -+ BQ27000_TTF_H, -+ BQ27000_SI_L, /* Standby Current H L */ -+ BQ27000_SI_H, -+ BQ27000_STTE_L, /* Standby Time To Empty H L */ -+ BQ27000_STTE_H, -+ BQ27000_MLI_L, /* Max Load Current H L */ -+ BQ27000_MLI_H, -+ BQ27000_MLTTE_L, /* Max Load Time To Empty H L */ -+ BQ27000_MLTTE_H, -+ BQ27000_SAE_L, /* Available Energy H L */ -+ BQ27000_SAE_H, -+ BQ27000_AP_L, /* Available Power H L */ -+ BQ27000_AP_H, -+ BQ27000_TTECP_L, /* Time to Empty at Constant Power H L */ -+ BQ27000_TTECP_H, -+ BQ27000_CYCL_L, /* Cycle count since learning cycle H L */ -+ BQ27000_CYCL_H, -+ BQ27000_CYCT_L, /* Cycle Count Total H L */ -+ BQ27000_CYCT_H, -+ BQ27000_CSOC, /* Compensated State Of Charge */ -+ /* EEPROM regs */ -+ /* read-write after this */ -+ BQ27000_EE_EE_EN = 0x6e, /* EEPROM Program Enable */ -+ BQ27000_EE_ILMD = 0x76, /* Initial Last Measured Discharge High Byte */ -+ BQ27000_EE_SEDVF, /* Scaled EDVF Threshold */ -+ BQ27000_EE_SEDV1, /* Scaled EDV1 Threshold */ -+ BQ27000_EE_ISLC, /* Initial Standby Load Current */ -+ BQ27000_EE_DMFSD, /* Digital Magnitude Filter and Self Discharge */ -+ BQ27000_EE_TAPER, /* Aging Estimate Enable, Charge Termination Taper */ -+ BQ27000_EE_PKCFG, /* Pack Configuration Values */ -+ BQ27000_EE_IMLC, /* Initial Max Load Current or ID #3 */ -+ BQ27000_EE_DCOMP, /* Discharge rate compensation constants or ID #2 */ -+ BQ27000_EE_TCOMP, /* Temperature Compensation constants or ID #1 */ -+}; -+ -+enum bq27000_status_flags { -+ BQ27000_STATUS_CHGS = 0x80, /* 1 = being charged */ -+ BQ27000_STATUS_NOACT = 0x40, /* 1 = no activity */ -+ BQ27000_STATUS_IMIN = 0x20, /* 1 = Lion taper current mode */ -+ BQ27000_STATUS_CI = 0x10, /* 1 = capacity likely innacurate */ -+ BQ27000_STATUS_CALIP = 0x08, /* 1 = calibration in progress */ -+ BQ27000_STATUS_VDQ = 0x04, /* 1 = capacity should be accurate */ -+ BQ27000_STATUS_EDV1 = 0x02, /* 1 = end of discharge.. <6% left */ -+ BQ27000_STATUS_EDVF = 0x01, /* 1 = no, it's really empty now */ -+}; -+ -+#define NANOVOLTS_UNIT 3750 -+ -+struct bq27000_bat_regs { -+ int ai; -+ int flags; -+ int lmd; -+ int rsoc; -+ int temp; -+ int tte; -+ int ttf; -+ int volt; -+}; -+ -+struct bq27000_device_info { -+ struct device *dev; -+ struct power_supply bat; -+ struct delayed_work work; -+ struct bq27000_platform_data *pdata; -+ -+ struct bq27000_bat_regs regs; -+}; -+ -+static unsigned int cache_time = 10000; -+module_param(cache_time, uint, 0644); -+MODULE_PARM_DESC(cache_time, "cache time in milliseconds"); -+ -+/* -+ * reading 16 bit values over HDQ has a special hazard where the -+ * hdq device firmware can update the 16-bit register during the time we -+ * read the two halves. TI document SLUS556D recommends the algorithm here -+ * to avoid trouble -+ */ -+ -+static int hdq_read16(struct bq27000_device_info *di, int address) -+{ -+ int acc; -+ int high; -+ int retries = 3; -+ -+ while (retries--) { -+ -+ high = (di->pdata->hdq_read)(address + 1); /* high part */ -+ -+ if (high < 0) -+ return high; -+ acc = (di->pdata->hdq_read)(address); -+ if (acc < 0) -+ return acc; -+ -+ /* confirm high didn't change between reading it and low */ -+ if (high == (di->pdata->hdq_read)(address + 1)) -+ return (high << 8) | acc; -+ } -+ -+ return -ETIME; -+} -+ -+static void bq27000_battery_external_power_changed(struct power_supply *psy) -+{ -+ struct bq27000_device_info *di = container_of(psy, struct bq27000_device_info, bat); -+ -+ power_supply_changed(&di->bat); -+ dev_dbg(di->dev, "%s\n", __FUNCTION__); -+} -+ -+static int bq27000_battery_get_property(struct power_supply *psy, -+ enum power_supply_property psp, -+ union power_supply_propval *val) -+{ -+ int n; -+ struct bq27000_device_info *di = container_of(psy, struct bq27000_device_info, bat); -+ -+ switch (psp) { -+ case POWER_SUPPLY_PROP_STATUS: -+ val->intval = POWER_SUPPLY_STATUS_UNKNOWN; -+ -+ if (!di->pdata->get_charger_online_status) -+ goto use_bat; -+ if ((di->pdata->get_charger_online_status)()) { -+ /* -+ * charger is definitively present -+ * we report our state in terms of what it says it -+ * is doing -+ */ -+ if (!di->pdata->get_charger_active_status) -+ goto use_bat; -+ -+ if ((di->pdata->get_charger_active_status)()) { -+ val->intval = POWER_SUPPLY_STATUS_CHARGING; -+ break; -+ } -+ val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING; -+ break; -+ } -+ -+ /* -+ * platform provided definite indication of charger presence, -+ * and it is telling us it isn't there... but we are on so we -+ * must be running from battery ---> -+ */ -+ -+ val->intval = POWER_SUPPLY_STATUS_DISCHARGING; -+ break; -+ -+use_bat: -+ /* -+ * either the charger is not connected, or the -+ * platform doesn't give info about charger, use battery state -+ * but... battery state can be out of date by 4 seconds or -+ * so... use the platform callbacks if possible. -+ */ -+ -+ /* no real activity on the battery */ -+ if (di->regs.ai < 2) { -+ if (!di->regs.ttf) -+ val->intval = POWER_SUPPLY_STATUS_FULL; -+ else -+ val->intval = POWER_SUPPLY_STATUS_NOT_CHARGING; -+ break; -+ } -+ /* power is actually going in or out... */ -+ if (di->regs.flags < 0) -+ return di->regs.flags; -+ if (di->regs.flags & BQ27000_STATUS_CHGS) -+ val->intval = POWER_SUPPLY_STATUS_CHARGING; -+ else -+ val->intval = POWER_SUPPLY_STATUS_DISCHARGING; -+ break; -+ case POWER_SUPPLY_PROP_HEALTH: -+ val->intval = POWER_SUPPLY_HEALTH_UNKNOWN; -+ /* Do we have accurate readings... */ -+ if (di->regs.flags < 0) -+ return di->regs.flags; -+ if (di->regs.flags & BQ27000_STATUS_VDQ) -+ val->intval = POWER_SUPPLY_HEALTH_GOOD; -+ break; -+ case POWER_SUPPLY_PROP_VOLTAGE_NOW: -+ if (di->regs.volt < 0) -+ return di->regs.volt; -+ /* mV -> uV */ -+ val->intval = di->regs.volt * 1000; -+ break; -+ case POWER_SUPPLY_PROP_CURRENT_NOW: -+ if (di->regs.flags < 0) -+ return di->regs.flags; -+ if (di->regs.flags & BQ27000_STATUS_CHGS) -+ n = -NANOVOLTS_UNIT; -+ else -+ n = NANOVOLTS_UNIT; -+ if (di->regs.ai < 0) -+ return di->regs.ai; -+ val->intval = (di->regs.ai * n) / di->pdata->rsense_mohms; -+ break; -+ case POWER_SUPPLY_PROP_CHARGE_FULL: -+ if (di->regs.lmd < 0) -+ return di->regs.lmd; -+ val->intval = (di->regs.lmd * 3570) / di->pdata->rsense_mohms; -+ break; -+ case POWER_SUPPLY_PROP_TEMP: -+ if (di->regs.temp < 0) -+ return di->regs.temp; -+ /* K (in 0.25K units) is 273.15 up from C (in 0.1C)*/ -+ /* 10926 = 27315 * 4 / 10 */ -+ val->intval = (((long)di->regs.temp * 10l) - 10926) / 4; -+ break; -+ case POWER_SUPPLY_PROP_TECHNOLOGY: -+ val->intval = POWER_SUPPLY_TECHNOLOGY_LION; -+ break; -+ case POWER_SUPPLY_PROP_CAPACITY: -+ val->intval = di->regs.rsoc; -+ if (val->intval < 0) -+ return val->intval; -+ break; -+ case POWER_SUPPLY_PROP_PRESENT: -+ val->intval = !(di->regs.rsoc < 0); -+ break; -+ case POWER_SUPPLY_PROP_TIME_TO_EMPTY_NOW: -+ if (di->regs.tte < 0) -+ return di->regs.tte; -+ val->intval = 60 * di->regs.tte; -+ break; -+ case POWER_SUPPLY_PROP_TIME_TO_FULL_NOW: -+ if (di->regs.ttf < 0) -+ return di->regs.ttf; -+ val->intval = 60 * di->regs.ttf; -+ break; -+ case POWER_SUPPLY_PROP_ONLINE: -+ if (di->pdata->get_charger_online_status) -+ val->intval = (di->pdata->get_charger_online_status)(); -+ else -+ return -EINVAL; -+ break; -+ default: -+ return -EINVAL; -+ } -+ -+ return 0; -+} -+ -+static void bq27000_battery_work(struct work_struct *work) -+{ -+ struct bq27000_device_info *di = -+ container_of(work, struct bq27000_device_info, work.work); -+ -+ if ((di->pdata->hdq_initialized)()) { -+ struct bq27000_bat_regs regs; -+ -+ regs.ai = hdq_read16(di, BQ27000_AI_L); -+ regs.flags = (di->pdata->hdq_read)(BQ27000_FLAGS); -+ regs.lmd = hdq_read16(di, BQ27000_LMD_L); -+ regs.rsoc = (di->pdata->hdq_read)(BQ27000_RSOC); -+ regs.temp = hdq_read16(di, BQ27000_TEMP_L); -+ regs.tte = hdq_read16(di, BQ27000_TTE_L); -+ regs.ttf = hdq_read16(di, BQ27000_TTF_L); -+ regs.volt = hdq_read16(di, BQ27000_VOLT_L); -+ -+ if (memcmp (®s, &di->regs, sizeof(regs)) != 0) { -+ di->regs = regs; -+ power_supply_changed(&di->bat); -+ } -+ } -+ -+ if (!schedule_delayed_work(&di->work, cache_time)) -+ dev_err(di->dev, "battery service reschedule failed\n"); -+} -+ -+static enum power_supply_property bq27000_battery_props[] = { -+ POWER_SUPPLY_PROP_STATUS, -+ POWER_SUPPLY_PROP_HEALTH, -+ POWER_SUPPLY_PROP_VOLTAGE_NOW, -+ POWER_SUPPLY_PROP_CURRENT_NOW, -+ POWER_SUPPLY_PROP_CHARGE_FULL, -+ POWER_SUPPLY_PROP_TEMP, -+ POWER_SUPPLY_PROP_TECHNOLOGY, -+ POWER_SUPPLY_PROP_PRESENT, -+ POWER_SUPPLY_PROP_TIME_TO_EMPTY_NOW, -+ POWER_SUPPLY_PROP_TIME_TO_FULL_NOW, -+ POWER_SUPPLY_PROP_CAPACITY, -+ POWER_SUPPLY_PROP_ONLINE -+}; -+ -+static int bq27000_battery_probe(struct platform_device *pdev) -+{ -+ int retval = 0; -+ struct bq27000_device_info *di; -+ struct bq27000_platform_data *pdata; -+ -+ dev_info(&pdev->dev, "BQ27000 Battery Driver (C) 2008 Openmoko, Inc\n"); -+ -+ di = kzalloc(sizeof(*di), GFP_KERNEL); -+ if (!di) { -+ retval = -ENOMEM; -+ goto di_alloc_failed; -+ } -+ -+ platform_set_drvdata(pdev, di); -+ -+ pdata = pdev->dev.platform_data; -+ di->dev = &pdev->dev; -+ /* di->w1_dev = pdev->dev.parent; */ -+ di->bat.name = pdata->name; -+ di->bat.type = POWER_SUPPLY_TYPE_BATTERY; -+ di->bat.properties = bq27000_battery_props; -+ di->bat.num_properties = ARRAY_SIZE(bq27000_battery_props); -+ di->bat.get_property = bq27000_battery_get_property; -+ di->bat.external_power_changed = -+ bq27000_battery_external_power_changed; -+ di->bat.use_for_apm = 1; -+ di->pdata = pdata; -+ -+ retval = power_supply_register(&pdev->dev, &di->bat); -+ if (retval) { -+ dev_err(di->dev, "failed to register battery\n"); -+ goto batt_failed; -+ } -+ -+ INIT_DELAYED_WORK(&di->work, bq27000_battery_work); -+ -+ if (!schedule_delayed_work(&di->work, 0)) -+ dev_err(di->dev, "failed to schedule bq27000_battery_work\n"); -+ -+ return 0; -+ -+batt_failed: -+ kfree(di); -+di_alloc_failed: -+ return retval; -+} -+ -+static int bq27000_battery_remove(struct platform_device *pdev) -+{ -+ struct bq27000_device_info *di = platform_get_drvdata(pdev); -+ -+ cancel_delayed_work(&di->work); -+ -+ power_supply_unregister(&di->bat); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+ -+static int bq27000_battery_suspend(struct platform_device *pdev, -+ pm_message_t state) -+{ -+ struct bq27000_device_info *di = platform_get_drvdata(pdev); -+ -+ cancel_delayed_work(&di->work); -+ return 0; -+} -+ -+static int bq27000_battery_resume(struct platform_device *pdev) -+{ -+ struct bq27000_device_info *di = platform_get_drvdata(pdev); -+ -+ schedule_delayed_work(&di->work, 0); -+ return 0; -+} -+ -+#else -+ -+#define bq27000_battery_suspend NULL -+#define bq27000_battery_resume NULL -+ -+#endif /* CONFIG_PM */ -+ -+static struct platform_driver bq27000_battery_driver = { -+ .driver = { -+ .name = "bq27000-battery", -+ }, -+ .probe = bq27000_battery_probe, -+ .remove = bq27000_battery_remove, -+ .suspend = bq27000_battery_suspend, -+ .resume = bq27000_battery_resume, -+}; -+ -+static int __init bq27000_battery_init(void) -+{ -+ return platform_driver_register(&bq27000_battery_driver); -+} -+ -+static void __exit bq27000_battery_exit(void) -+{ -+ platform_driver_unregister(&bq27000_battery_driver); -+} -+ -+module_init(bq27000_battery_init); -+module_exit(bq27000_battery_exit); -+ -+MODULE_LICENSE("GPL"); -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("bq27000 battery driver"); ---- /dev/null -+++ b/drivers/power/gta02_hdq.c -@@ -0,0 +1,292 @@ -+/* -+ * HDQ driver for the FIC Neo1973 GTA02 GSM phone -+ * -+ * (C) 2006-2007 by Openmoko, Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+ * -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/delay.h> -+#include <linux/platform_device.h> -+#include <mach/hardware.h> -+#include <linux/gta02_hdq.h> -+#include <asm/mach-types.h> -+#include <mach/gta02.h> -+#include <mach/fiq_ipc_gta02.h> -+ -+ -+ -+#define HDQ_READ 0 -+#define HDQ_WRITE 0x80 -+ -+static int fiq_busy(void) -+{ -+ int request = (volatile u8)fiq_ipc.hdq_request_ctr; -+ int transact = (volatile u8)fiq_ipc.hdq_transaction_ctr; -+ -+ return (request != transact); -+} -+ -+int gta02hdq_initialized(void) -+{ -+ return fiq_ipc.hdq_probed; -+} -+EXPORT_SYMBOL_GPL(gta02hdq_initialized); -+ -+int gta02hdq_read(int address) -+{ -+ int count_sleeps = 5; -+ int ret = -ETIME; -+ -+ if (!fiq_ipc.hdq_probed) -+ return -EINVAL; -+ -+ mutex_lock(&fiq_ipc.hdq_lock); -+ -+ fiq_ipc.hdq_error = 0; -+ fiq_ipc.hdq_ads = address | HDQ_READ; -+ fiq_ipc.hdq_request_ctr++; -+ fiq_kick(); -+ /* -+ * FIQ takes care of it while we block our calling process -+ * But we're not spinning -- other processes run normally while -+ * we wait for the result -+ */ -+ while (count_sleeps--) { -+ msleep(10); /* valid transaction always completes in < 10ms */ -+ -+ if (fiq_busy()) -+ continue; -+ -+ if (fiq_ipc.hdq_error) -+ goto done; /* didn't see a response in good time */ -+ -+ ret = fiq_ipc.hdq_rx_data; -+ goto done; -+ } -+ -+done: -+ mutex_unlock(&fiq_ipc.hdq_lock); -+ return ret; -+} -+EXPORT_SYMBOL_GPL(gta02hdq_read); -+ -+int gta02hdq_write(int address, u8 data) -+{ -+ int count_sleeps = 5; -+ int ret = -ETIME; -+ -+ if (!fiq_ipc.hdq_probed) -+ return -EINVAL; -+ -+ mutex_lock(&fiq_ipc.hdq_lock); -+ -+ fiq_ipc.hdq_error = 0; -+ fiq_ipc.hdq_ads = address | HDQ_WRITE; -+ fiq_ipc.hdq_tx_data = data; -+ fiq_ipc.hdq_request_ctr++; -+ fiq_kick(); -+ /* -+ * FIQ takes care of it while we block our calling process -+ * But we're not spinning -- other processes run normally while -+ * we wait for the result -+ */ -+ while (count_sleeps--) { -+ msleep(10); /* valid transaction always completes in < 10ms */ -+ -+ if (fiq_busy()) -+ continue; /* something bad with FIQ */ -+ -+ if (fiq_ipc.hdq_error) -+ goto done; /* didn't see a response in good time */ -+ -+ ret = 0; -+ goto done; -+ } -+ -+done: -+ mutex_unlock(&fiq_ipc.hdq_lock); -+ return ret; -+} -+EXPORT_SYMBOL_GPL(gta02hdq_write); -+ -+/* sysfs */ -+ -+static ssize_t hdq_sysfs_dump(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ int n; -+ int v; -+ u8 u8a[128]; /* whole address space for HDQ */ -+ char *end = buf; -+ -+ if (!fiq_ipc.hdq_probed) -+ return -EINVAL; -+ -+ /* the dump does not take care about 16 bit regs, because at this -+ * bus level we don't know about the chip details -+ */ -+ for (n = 0; n < sizeof(u8a); n++) { -+ v = gta02hdq_read(n); -+ if (v < 0) -+ goto bail; -+ u8a[n] = v; -+ } -+ -+ for (n = 0; n < sizeof(u8a); n += 16) { -+ hex_dump_to_buffer(u8a + n, sizeof(u8a), 16, 1, end, 4096, 0); -+ end += strlen(end); -+ *end++ = '\n'; -+ *end = '\0'; -+ } -+ return (end - buf); -+ -+bail: -+ return sprintf(buf, "ERROR %d\n", v); -+} -+ -+/* you write by <address> <data>, eg, "34 128" */ -+ -+#define atoi(str) simple_strtoul(((str != NULL) ? str : ""), NULL, 0) -+ -+static ssize_t hdq_sysfs_write(struct device *dev, -+ struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ const char *end = buf + count; -+ int address = atoi(buf); -+ -+ if (!fiq_ipc.hdq_probed) -+ return -EINVAL; -+ -+ while ((buf != end) && (*buf != ' ')) -+ buf++; -+ if (buf >= end) -+ return 0; -+ while ((buf < end) && (*buf == ' ')) -+ buf++; -+ if (buf >= end) -+ return 0; -+ -+ gta02hdq_write(address, atoi(buf)); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(dump, 0400, hdq_sysfs_dump, NULL); -+static DEVICE_ATTR(write, 0600, NULL, hdq_sysfs_write); -+ -+static struct attribute *gta02hdq_sysfs_entries[] = { -+ &dev_attr_dump.attr, -+ &dev_attr_write.attr, -+ NULL -+}; -+ -+static struct attribute_group gta02hdq_attr_group = { -+ .name = "hdq", -+ .attrs = gta02hdq_sysfs_entries, -+}; -+ -+ -+#ifdef CONFIG_PM -+static int gta02hdq_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ /* after 18s of this, the battery monitor will also go to sleep */ -+ s3c2410_gpio_setpin(fiq_ipc.hdq_gpio_pin, 0); -+ s3c2410_gpio_cfgpin(fiq_ipc.hdq_gpio_pin, S3C2410_GPIO_OUTPUT); -+ return 0; -+} -+ -+static int gta02hdq_resume(struct platform_device *pdev) -+{ -+ s3c2410_gpio_setpin(fiq_ipc.hdq_gpio_pin, 1); -+ s3c2410_gpio_cfgpin(fiq_ipc.hdq_gpio_pin, S3C2410_GPIO_OUTPUT); -+ return 0; -+} -+#endif -+ -+static int __init gta02hdq_probe(struct platform_device *pdev) -+{ -+ struct resource *r = platform_get_resource(pdev, 0, 0); -+ int ret; -+ struct gta02_hdq_platform_data *pdata = pdev->dev.platform_data; -+ -+ if (!machine_is_neo1973_gta02()) -+ return -EIO; -+ -+ if (!r) -+ return -EINVAL; -+ -+ if (!fiq_ready) { -+ printk(KERN_ERR "hdq probe fails on fiq not ready\n"); -+ return -EINVAL; -+ } -+ -+ platform_set_drvdata(pdev, NULL); -+ -+ mutex_init(&fiq_ipc.hdq_lock); -+ -+ /* set our HDQ comms pin from the platform data */ -+ fiq_ipc.hdq_gpio_pin = r->start; -+ -+ s3c2410_gpio_setpin(fiq_ipc.hdq_gpio_pin, 1); -+ s3c2410_gpio_cfgpin(fiq_ipc.hdq_gpio_pin, S3C2410_GPIO_OUTPUT); -+ -+ ret = sysfs_create_group(&pdev->dev.kobj, >a02hdq_attr_group); -+ if (ret) -+ return ret; -+ -+ fiq_ipc.hdq_probed = 1; /* we are ready to do stuff now */ -+ -+ /* -+ * if wanted, users can defer registration of devices -+ * that depend on HDQ until after we register, and can use our -+ * device as parent so suspend-resume ordering is correct -+ */ -+ if (pdata->attach_child_devices) -+ (pdata->attach_child_devices)(&pdev->dev); -+ -+ return 0; -+} -+ -+static int gta02hdq_remove(struct platform_device *pdev) -+{ -+ sysfs_remove_group(&pdev->dev.kobj, >a02hdq_attr_group); -+ return 0; -+} -+ -+static struct platform_driver gta02hdq_driver = { -+ .probe = gta02hdq_probe, -+ .remove = gta02hdq_remove, -+#ifdef CONFIG_PM -+ .suspend = gta02hdq_suspend, -+ .resume = gta02hdq_resume, -+#endif -+ .driver = { -+ .name = "gta02-hdq", -+ }, -+}; -+ -+static int __init gta02hdq_init(void) -+{ -+ return platform_driver_register(>a02hdq_driver); -+} -+ -+static void __exit gta02hdq_exit(void) -+{ -+ platform_driver_unregister(>a02hdq_driver); -+} -+ -+module_init(gta02hdq_init); -+module_exit(gta02hdq_exit); -+ -+MODULE_AUTHOR("Andy Green <andy@openmoko.com>"); -+MODULE_DESCRIPTION("GTA02 HDQ driver"); -+MODULE_LICENSE("GPL"); ---- a/drivers/power/Kconfig -+++ b/drivers/power/Kconfig -@@ -68,4 +68,24 @@ config BATTERY_BQ27x00 - help - Say Y here to enable support for batteries with BQ27200(I2C) chip. - -+config BATTERY_BQ27000_HDQ -+ tristate "BQ27000 HDQ battery monitor driver" -+ help -+ Say Y to enable support for the battery on the Neo Freerunner -+ -+config GTA02_HDQ -+ tristate "Neo Freerunner HDQ" -+ depends on MACH_NEO1973_GTA02 && FIQ && S3C2440_C_FIQ -+ help -+ Say Y to enable support for communicating with an HDQ battery -+ on the Neo Freerunner. You probably want to select -+ at least BATTERY_BQ27000_HDQ as well -+ -+config CHARGER_PCF50633 -+ tristate "Support for NXP PCF50633 MBC" -+ depends on MFD_PCF50633 -+ help -+ Say Y to include support for NXP PCF50633 Main Battery Charger. -+ - endif # POWER_SUPPLY -+ ---- a/drivers/power/Makefile -+++ b/drivers/power/Makefile -@@ -23,3 +23,9 @@ obj-$(CONFIG_BATTERY_OLPC) += olpc_batte - obj-$(CONFIG_BATTERY_TOSA) += tosa_battery.o - obj-$(CONFIG_BATTERY_WM97XX) += wm97xx_battery.o - obj-$(CONFIG_BATTERY_BQ27x00) += bq27x00_battery.o -+obj-$(CONFIG_BATTERY_PALMTX) += palmtx_battery.o -+obj-$(CONFIG_BATTERY_BQ27000_HDQ) += bq27000_battery.o -+ -+obj-$(CONFIG_GTA02_HDQ) += gta02_hdq.o -+ -+obj-$(CONFIG_CHARGER_PCF50633) += pcf50633-charger.o ---- /dev/null -+++ b/drivers/power/pcf50633-charger.c -@@ -0,0 +1,415 @@ -+/* Philips PCF50633 Main Battery Charger Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50633 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/mbc.h> -+ -+void pcf50633_mbc_usb_curlim_set(struct pcf50633 *pcf, int ma) -+{ -+ int ret; -+ u8 bits; -+ int charging_start = 1; -+ u8 mbcs2, chgmod; -+ -+ if (ma >= 1000) -+ bits = PCF50633_MBCC7_USB_1000mA; -+ else if (ma >= 500) -+ bits = PCF50633_MBCC7_USB_500mA; -+ else if (ma >= 100) -+ bits = PCF50633_MBCC7_USB_100mA; -+ else { -+ bits = PCF50633_MBCC7_USB_SUSPEND; -+ charging_start = 0; -+ } -+ -+ ret = pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC7, -+ PCF50633_MBCC7_USB_MASK, bits); -+ if (ret) -+ dev_err(pcf->dev, "error setting usb curlim to %d mA\n", ma); -+ else -+ dev_info(pcf->dev, "usb curlim to %d mA\n", ma); -+ -+ mbcs2 = pcf50633_reg_read(pcf, PCF50633_REG_MBCS2); -+ chgmod = (mbcs2 & PCF50633_MBCS2_MBC_MASK); -+ -+ /* If chgmod == BATFULL, setting chgena has no effect. -+ * We need to set resume instead. -+ */ -+ if (chgmod != PCF50633_MBCS2_MBC_BAT_FULL) -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, -+ PCF50633_MBCC1_CHGENA, PCF50633_MBCC1_CHGENA); -+ else -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, -+ PCF50633_MBCC1_RESUME, PCF50633_MBCC1_RESUME); -+ -+ pcf->mbc.usb_active = charging_start; -+ power_supply_changed(&pcf->mbc.usb); -+} -+EXPORT_SYMBOL_GPL(pcf50633_mbc_usb_curlim_set); -+ -+static const char *chgmode_names[] = { -+ [PCF50633_MBCS2_MBC_PLAY] = "play-only", -+ [PCF50633_MBCS2_MBC_USB_PRE] = "pre", -+ [PCF50633_MBCS2_MBC_ADP_PRE] = "pre", -+ [PCF50633_MBCS2_MBC_USB_PRE_WAIT] = "pre-wait", -+ [PCF50633_MBCS2_MBC_ADP_PRE_WAIT] = "pre-wait", -+ [PCF50633_MBCS2_MBC_USB_FAST] = "fast", -+ [PCF50633_MBCS2_MBC_ADP_FAST] = "fast", -+ [PCF50633_MBCS2_MBC_USB_FAST_WAIT] = "fast-wait", -+ [PCF50633_MBCS2_MBC_ADP_FAST_WAIT] = "fast-wait", -+ [PCF50633_MBCS2_MBC_BAT_FULL] = "bat-full", -+}; -+ -+static ssize_t show_chgmode(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct pcf50633 *pcf = dev_get_drvdata(dev); -+ -+ u8 mbcs2 = pcf50633_reg_read(pcf, PCF50633_REG_MBCS2); -+ u8 chgmod = (mbcs2 & PCF50633_MBCS2_MBC_MASK); -+ -+ return sprintf(buf, "%s %d\n", chgmode_names[chgmod], chgmod); -+} -+static DEVICE_ATTR(chgmode, S_IRUGO | S_IWUSR, show_chgmode, NULL); -+ -+static ssize_t show_usblim(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct pcf50633 *pcf = dev_get_drvdata(dev); -+ u8 usblim = pcf50633_reg_read(pcf, PCF50633_REG_MBCC7) & -+ PCF50633_MBCC7_USB_MASK; -+ unsigned int ma; -+ -+ if (usblim == PCF50633_MBCC7_USB_1000mA) -+ ma = 1000; -+ else if (usblim == PCF50633_MBCC7_USB_500mA) -+ ma = 500; -+ else if (usblim == PCF50633_MBCC7_USB_100mA) -+ ma = 100; -+ else -+ ma = 0; -+ -+ return sprintf(buf, "%u\n", ma); -+} -+static DEVICE_ATTR(usb_curlim, S_IRUGO | S_IWUSR, show_usblim, NULL); -+ -+static ssize_t force_usb_limit_dangerous(struct device *dev, -+ struct device_attribute *attr, const char *buf, size_t count) -+{ -+ struct pcf50633 *pcf = dev_get_drvdata(dev); -+ unsigned long ma; -+ -+ strict_strtoul(buf, 10, &ma); -+ -+ pcf50633_mbc_usb_curlim_set(pcf, ma); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(force_usb_limit_dangerous, 0600, -+ NULL, force_usb_limit_dangerous); -+ -+static struct attribute *mbc_sysfs_entries[] = { -+ &dev_attr_chgmode.attr, -+ &dev_attr_usb_curlim.attr, -+ &dev_attr_force_usb_limit_dangerous.attr, -+ NULL, -+}; -+ -+static struct attribute_group mbc_attr_group = { -+ .name = NULL, /* put in device directory */ -+ .attrs = mbc_sysfs_entries, -+}; -+ -+/* MBC state machine switches into charging mode when the battery voltage -+ * falls below 96% of a battery float voltage. But the voltage drop in Li-ion -+ * batteries is marginal(1~2 %) till about 80% of its capacity - which means, -+ * after a BATFULL, charging won't be restarted until 80%. -+ * -+ * This work_struct function restarts charging every -+ * CHARGING_RESTART_TIMEOUT seconds and makes sure we don't discharge too much -+ */ -+ -+#define CHARGING_RESTART_TIMEOUT (900 * HZ) /* 15 minutes */ -+ -+static void pcf50633_mbc_charging_restart(struct work_struct *work) -+{ -+ struct pcf50633_mbc *mbc; -+ struct pcf50633 *pcf; -+ u8 mbcs2, chgmod; -+ -+ mbc = container_of(work, struct pcf50633_mbc, -+ charging_restart_work.work); -+ pcf = container_of(mbc, struct pcf50633, mbc); -+ -+ mbcs2 = pcf50633_reg_read(pcf, PCF50633_REG_MBCS2); -+ chgmod = (mbcs2 & PCF50633_MBCS2_MBC_MASK); -+ -+ if (chgmod != PCF50633_MBCS2_MBC_BAT_FULL) -+ return; -+ -+ /* Restart charging */ -+ pcf50633_reg_set_bit_mask(pcf, PCF50633_REG_MBCC1, PCF50633_MBCC1_RESUME, -+ PCF50633_MBCC1_RESUME); -+ mbc->usb_active = 1; -+ power_supply_changed(&mbc->usb); -+ -+ dev_info(pcf->dev, "Charging restarted..\n"); -+} -+ -+static void pcf50633_mbc_irq_handler(struct pcf50633 *pcf, int irq, void *data) -+{ -+ struct pcf50633_mbc *mbc; -+ -+ mbc = &pcf->mbc; -+ -+ /* USB */ -+ if (irq == PCF50633_IRQ_USBINS) -+ mbc->usb_online = 1; -+ else if (irq == PCF50633_IRQ_USBREM) { -+ mbc->usb_online = 0; -+ mbc->usb_active = 0; -+ pcf50633_mbc_usb_curlim_set(pcf, 0); -+ cancel_delayed_work_sync(&mbc->charging_restart_work); -+ } -+ -+ /* Adapter */ -+ if (irq == PCF50633_IRQ_ADPINS) { -+ pcf->mbc.adapter_online = 1; -+ pcf->mbc.adapter_active = 1; -+ } else if (irq == PCF50633_IRQ_ADPREM) { -+ mbc->adapter_online = 0; -+ mbc->adapter_active = 0; -+ } -+ -+ if (irq == PCF50633_IRQ_BATFULL) { -+ mbc->usb_active = 0; -+ mbc->adapter_active = 0; -+ schedule_delayed_work(&mbc->charging_restart_work, -+ CHARGING_RESTART_TIMEOUT); -+ } else if (irq == PCF50633_IRQ_USBLIMON) -+ mbc->usb_active = 0; -+ else if (irq == PCF50633_IRQ_USBLIMOFF) -+ mbc->usb_active = 1; -+ -+ power_supply_changed(&mbc->ac); -+ power_supply_changed(&mbc->usb); -+ power_supply_changed(&mbc->adapter); -+ -+ if (pcf->pdata->mbc_event_callback) -+ pcf->pdata->mbc_event_callback(pcf, irq); -+} -+ -+static int adapter_get_property(struct power_supply *psy, -+ enum power_supply_property psp, -+ union power_supply_propval *val) -+{ -+ int ret = 0; -+ struct pcf50633_mbc *mbc = container_of(psy, struct pcf50633_mbc, usb); -+ -+ switch (psp) { -+ case POWER_SUPPLY_PROP_ONLINE: -+ val->intval = mbc->adapter_online; -+ break; -+ default: -+ ret = -EINVAL; -+ break; -+ } -+ return ret; -+} -+ -+static int usb_get_property(struct power_supply *psy, -+ enum power_supply_property psp, -+ union power_supply_propval *val) -+{ -+ int ret = 0; -+ struct pcf50633_mbc *mbc = container_of(psy, struct pcf50633_mbc, usb); -+ struct pcf50633 *pcf = container_of(mbc, struct pcf50633, mbc); -+ -+ u8 usblim = pcf50633_reg_read(pcf, PCF50633_REG_MBCC7) & -+ PCF50633_MBCC7_USB_MASK; -+ -+ switch (psp) { -+ case POWER_SUPPLY_PROP_ONLINE: -+ val->intval = mbc->usb_online && (usblim == PCF50633_MBCC7_USB_500mA); -+ break; -+ default: -+ ret = -EINVAL; -+ break; -+ } -+ return ret; -+} -+ -+static int ac_get_property(struct power_supply *psy, -+ enum power_supply_property psp, -+ union power_supply_propval *val) -+{ -+ int ret = 0; -+ struct pcf50633_mbc *mbc = container_of(psy, struct pcf50633_mbc, ac); -+ struct pcf50633 *pcf = container_of(mbc, struct pcf50633, mbc); -+ -+ u8 usblim = pcf50633_reg_read(pcf, PCF50633_REG_MBCC7) & -+ PCF50633_MBCC7_USB_MASK; -+ -+ switch (psp) { -+ case POWER_SUPPLY_PROP_ONLINE: -+ val->intval = mbc->usb_online && (usblim == PCF50633_MBCC7_USB_1000mA); -+ break; -+ default: -+ ret = -EINVAL; -+ break; -+ } -+ return ret; -+} -+ -+static enum power_supply_property power_props[] = { -+ POWER_SUPPLY_PROP_ONLINE, -+}; -+ -+int __init pcf50633_mbc_probe(struct platform_device *pdev) -+{ -+ struct pcf50633 *pcf; -+ struct pcf50633_mbc *mbc; -+ int ret; -+ u8 mbcs1; -+ -+ pcf = platform_get_drvdata(pdev); -+ mbc = &pcf->mbc; -+ -+ /* Set up IRQ handlers */ -+ pcf->irq_handler[PCF50633_IRQ_ADPINS].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_ADPREM].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_USBINS].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_USBREM].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_BATFULL].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_CHGHALT].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_THLIMON].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_THLIMOFF].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_USBLIMON].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_USBLIMOFF].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_LOWSYS].handler = -+ pcf50633_mbc_irq_handler; -+ pcf->irq_handler[PCF50633_IRQ_LOWBAT].handler = -+ pcf50633_mbc_irq_handler; -+ -+ /* Create power supplies */ -+ -+ mbc->adapter.name = "adapter"; -+ mbc->adapter.type = POWER_SUPPLY_TYPE_MAINS; -+ mbc->adapter.properties = power_props; -+ mbc->adapter.num_properties = ARRAY_SIZE(power_props); -+ mbc->adapter.get_property = &adapter_get_property; -+ mbc->adapter.supplied_to = pcf->pdata->batteries; -+ mbc->adapter.num_supplicants = pcf->pdata->num_batteries; -+ -+ mbc->usb.name = "usb"; -+ mbc->usb.type = POWER_SUPPLY_TYPE_USB; -+ mbc->usb.properties = power_props; -+ mbc->usb.num_properties = ARRAY_SIZE(power_props); -+ mbc->usb.get_property = usb_get_property; -+ mbc->usb.supplied_to = pcf->pdata->batteries; -+ mbc->usb.num_supplicants = pcf->pdata->num_batteries; -+ -+ mbc->ac.name = "ac"; -+ mbc->ac.type = POWER_SUPPLY_TYPE_MAINS; -+ mbc->ac.properties = power_props; -+ mbc->ac.num_properties = ARRAY_SIZE(power_props); -+ mbc->ac.get_property = ac_get_property; -+ mbc->ac.supplied_to = pcf->pdata->batteries; -+ mbc->ac.num_supplicants = pcf->pdata->num_batteries; -+ -+ INIT_DELAYED_WORK(&mbc->charging_restart_work, -+ pcf50633_mbc_charging_restart); -+ -+ ret = power_supply_register(&pdev->dev, &mbc->adapter); -+ if (ret) -+ dev_err(pcf->dev, "failed to register adapter\n"); -+ -+ ret = power_supply_register(&pdev->dev, &mbc->usb); -+ if (ret) -+ dev_err(pcf->dev, "failed to register usb\n"); -+ -+ ret = power_supply_register(&pdev->dev, &mbc->ac); -+ if (ret) -+ dev_err(pcf->dev, "failed to register ac\n"); -+ -+ mbcs1 = pcf50633_reg_read(pcf, PCF50633_REG_MBCS1); -+ if (mbcs1 & 0x01) -+ pcf50633_mbc_irq_handler(pcf, PCF50633_IRQ_USBINS, NULL); -+ if (mbcs1 & 0x04) -+ pcf50633_mbc_irq_handler(pcf, PCF50633_IRQ_ADPINS, NULL); -+ -+ /* Disable automatic charging restart. Manually setting RESUME -+ * won't have effect otherwise -+ */ -+ pcf50633_reg_clear_bits(pcf, PCF50633_REG_MBCC1, -+ PCF50633_MBCC1_AUTORES); -+ -+ return sysfs_create_group(&pdev->dev.kobj, &mbc_attr_group); -+} -+ -+static int __devexit pcf50633_mbc_remove(struct platform_device *pdev) -+{ -+ struct pcf50633 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ return 0; -+} -+ -+struct platform_driver pcf50633_mbc_driver = { -+ .driver = { -+ .name = "pcf50633-mbc", -+ }, -+ .probe = pcf50633_mbc_probe, -+ .remove = __devexit_p(pcf50633_mbc_remove), -+}; -+ -+static int __init pcf50633_mbc_init(void) -+{ -+ return platform_driver_register(&pcf50633_mbc_driver); -+} -+module_init(pcf50633_mbc_init); -+ -+static void __exit pcf50633_mbc_exit(void) -+{ -+ platform_driver_unregister(&pcf50633_mbc_driver); -+} -+module_exit(pcf50633_mbc_exit); -+ -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_DESCRIPTION("PCF50633 mbc driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:pcf50633-mbc"); ---- a/drivers/regulator/core.c -+++ b/drivers/regulator/core.c -@@ -1113,6 +1113,7 @@ int regulator_disable(struct regulator * - if (!regulator->enabled) { - printk(KERN_ERR "%s: not in use by this consumer\n", - __func__); -+ WARN_ON(1); - return 0; - } - ---- a/drivers/regulator/Kconfig -+++ b/drivers/regulator/Kconfig -@@ -73,4 +73,10 @@ config REGULATOR_DA903X - Say y here to support the BUCKs and LDOs regulators found on - Dialog Semiconductor DA9030/DA9034 PMIC. - -+config REGULATOR_PCF50633 -+ bool "PCF50633 regulator driver" -+ depends on MFD_PCF50633 -+ help -+ Say Y here to support the voltage regulators and convertors -+ on PCF50633 - endif ---- a/drivers/regulator/Makefile -+++ b/drivers/regulator/Makefile -@@ -11,5 +11,6 @@ obj-$(CONFIG_REGULATOR_BQ24022) += bq240 - obj-$(CONFIG_REGULATOR_WM8350) += wm8350-regulator.o - obj-$(CONFIG_REGULATOR_WM8400) += wm8400-regulator.o - obj-$(CONFIG_REGULATOR_DA903X) += da903x.o -+obj-$(CONFIG_REGULATOR_PCF50633) += pcf50633-regulator.o - - ccflags-$(CONFIG_REGULATOR_DEBUG) += -DDEBUG ---- /dev/null -+++ b/drivers/regulator/pcf50633-regulator.c -@@ -0,0 +1,330 @@ -+/* Philips PCF50633 PMIC Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50633 driver mainly by -+ * Harald Welte and Andy Green -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/regulator/driver.h> -+#include <linux/platform_device.h> -+#include <linux/err.h> -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/pmic.h> -+ -+#define PCF50633_REGULATOR(_name, _id) \ -+ { \ -+ .name = _name, \ -+ .id = _id, \ -+ .ops = &pcf50633_regulator_ops, \ -+ .type = REGULATOR_VOLTAGE, \ -+ .owner = THIS_MODULE, \ -+ } -+static const u8 pcf50633_regulator_registers[PCF50633_NUM_REGULATORS] = { -+ [PCF50633_REGULATOR_AUTO] = PCF50633_REG_AUTOOUT, -+ [PCF50633_REGULATOR_DOWN1] = PCF50633_REG_DOWN1OUT, -+ [PCF50633_REGULATOR_DOWN2] = PCF50633_REG_DOWN2OUT, -+ [PCF50633_REGULATOR_MEMLDO] = PCF50633_REG_MEMLDOOUT, -+ [PCF50633_REGULATOR_LDO1] = PCF50633_REG_LDO1OUT, -+ [PCF50633_REGULATOR_LDO2] = PCF50633_REG_LDO2OUT, -+ [PCF50633_REGULATOR_LDO3] = PCF50633_REG_LDO3OUT, -+ [PCF50633_REGULATOR_LDO4] = PCF50633_REG_LDO4OUT, -+ [PCF50633_REGULATOR_LDO5] = PCF50633_REG_LDO5OUT, -+ [PCF50633_REGULATOR_LDO6] = PCF50633_REG_LDO6OUT, -+ [PCF50633_REGULATOR_HCLDO] = PCF50633_REG_HCLDOOUT, -+}; -+ -+/* Bits from voltage value */ -+static u_int8_t auto_voltage_bits(unsigned int millivolts) -+{ -+ if (millivolts < 1800) -+ return 0; -+ if (millivolts > 3800) -+ return 0xff; -+ -+ millivolts -= 625; -+ return millivolts/25; -+} -+ -+static u_int8_t down_voltage_bits(unsigned int millivolts) -+{ -+ if (millivolts < 625) -+ return 0; -+ else if (millivolts > 3000) -+ return 0xff; -+ -+ millivolts -= 625; -+ return millivolts/25; -+} -+ -+static u_int8_t ldo_voltage_bits(unsigned int millivolts) -+{ -+ if (millivolts < 900) -+ return 0; -+ else if (millivolts > 3600) -+ return 0x1f; -+ -+ millivolts -= 900; -+ return millivolts/100; -+} -+ -+/* Obtain voltage value from bits */ -+ -+static unsigned int auto_voltage_value(uint8_t bits) -+{ -+ if (bits < 0x2f) -+ return 0; -+ return 625 + (bits * 25); -+} -+ -+ -+static unsigned int down_voltage_value(uint8_t bits) -+{ -+ return 625 + (bits*25); -+} -+ -+ -+static unsigned int ldo_voltage_value(uint8_t bits) -+{ -+ bits &= 0x1f; -+ return 900 + (bits * 100); -+} -+ -+static int pcf50633_regulator_set_voltage(struct regulator_dev *rdev, -+ int min_uV, int max_uV) -+{ -+ uint8_t volt_bits; -+ uint8_t regnr; -+ int regulator_id; -+ int millivolts; -+ struct pcf50633 *pcf = rdev_get_drvdata(rdev);; -+ -+ regulator_id = rdev_get_id(rdev); -+ -+ if (regulator_id >= PCF50633_NUM_REGULATORS) -+ return -EINVAL; -+ -+ millivolts = min_uV / 1000; -+ -+ regnr = pcf50633_regulator_registers[regulator_id]; -+ -+ switch (regulator_id) { -+ case PCF50633_REGULATOR_AUTO: -+ volt_bits = auto_voltage_bits(millivolts); -+ break; -+ case PCF50633_REGULATOR_DOWN1: -+ volt_bits = down_voltage_bits(millivolts); -+ break; -+ case PCF50633_REGULATOR_DOWN2: -+ volt_bits = down_voltage_bits(millivolts); -+ break; -+ case PCF50633_REGULATOR_LDO1: -+ case PCF50633_REGULATOR_LDO2: -+ case PCF50633_REGULATOR_LDO3: -+ case PCF50633_REGULATOR_LDO4: -+ case PCF50633_REGULATOR_LDO5: -+ case PCF50633_REGULATOR_LDO6: -+ case PCF50633_REGULATOR_HCLDO: -+ volt_bits = ldo_voltage_bits(millivolts); -+ break; -+ default: -+ return -EINVAL; -+ } -+ -+ return pcf50633_reg_write(pcf, regnr, volt_bits); -+} -+ -+static int pcf50633_regulator_get_voltage(struct regulator_dev *rdev) -+{ -+ uint8_t volt_bits; -+ uint8_t regnr; -+ unsigned int rc = 0; -+ int regulator_id = rdev_get_id(rdev); -+ struct pcf50633 *pcf = rdev_get_drvdata(rdev); -+ -+ if (regulator_id >= PCF50633_NUM_REGULATORS) -+ return -EINVAL; -+ -+ regnr = pcf50633_regulator_registers[regulator_id]; -+ volt_bits = pcf50633_reg_read(pcf, regnr); -+ -+ switch (regulator_id) { -+ case PCF50633_REGULATOR_AUTO: -+ rc = auto_voltage_value(volt_bits); -+ break; -+ case PCF50633_REGULATOR_DOWN1: -+ rc = down_voltage_value(volt_bits); -+ break; -+ case PCF50633_REGULATOR_DOWN2: -+ rc = down_voltage_value(volt_bits); -+ break; -+ case PCF50633_REGULATOR_LDO1: -+ case PCF50633_REGULATOR_LDO2: -+ case PCF50633_REGULATOR_LDO3: -+ case PCF50633_REGULATOR_LDO4: -+ case PCF50633_REGULATOR_LDO5: -+ case PCF50633_REGULATOR_LDO6: -+ case PCF50633_REGULATOR_HCLDO: -+ rc = ldo_voltage_value(volt_bits); -+ break; -+ default: -+ return -EINVAL; -+ } -+ -+ return rc * 1000; -+} -+ -+static int pcf50633_regulator_enable(struct regulator_dev *rdev) -+{ -+ uint8_t regnr; -+ int regulator_id = rdev_get_id(rdev); -+ struct pcf50633 *pcf = rdev_get_drvdata(rdev); -+ -+ if (regulator_id >= PCF50633_NUM_REGULATORS) -+ return -EINVAL; -+ -+ /* the *ENA register is always one after the *OUT register */ -+ regnr = pcf50633_regulator_registers[regulator_id] + 1; -+ -+ pcf50633_reg_set_bit_mask(pcf, regnr, PCF50633_REGULATOR_ON, -+ PCF50633_REGULATOR_ON); -+ -+ return 0; -+} -+ -+static int pcf50633_regulator_disable(struct regulator_dev *rdev) -+{ -+ uint8_t regnr; -+ int regulator_id = rdev_get_id(rdev); -+ struct pcf50633 *pcf = rdev_get_drvdata(rdev); -+ -+ if (regulator_id >= PCF50633_NUM_REGULATORS) -+ return -EINVAL; -+ -+ /* the *ENA register is always one after the *OUT register */ -+ regnr = pcf50633_regulator_registers[regulator_id] + 1; -+ -+ pcf50633_reg_set_bit_mask(pcf, regnr, PCF50633_REGULATOR_ON, 0); -+ -+ return 0; -+} -+ -+static int pcf50633_regulator_is_enabled(struct regulator_dev *rdev) -+{ -+ uint8_t val, regnr; -+ int regulator_id = rdev_get_id(rdev); -+ struct pcf50633 *pcf = rdev_get_drvdata(rdev); -+ -+ if (regulator_id >= PCF50633_NUM_REGULATORS) -+ return -EINVAL; -+ -+ /* the *ENA register is always one after the *OUT register */ -+ regnr = pcf50633_regulator_registers[regulator_id] + 1; -+ val = pcf50633_reg_read(pcf, regnr) & PCF50633_REGULATOR_ON; -+ -+ return val; -+} -+ -+struct regulator_ops pcf50633_regulator_ops = { -+ .set_voltage = pcf50633_regulator_set_voltage, -+ .get_voltage = pcf50633_regulator_get_voltage, -+ .enable = pcf50633_regulator_enable, -+ .disable = pcf50633_regulator_disable, -+ .is_enabled = pcf50633_regulator_is_enabled, -+ .set_suspend_enable = pcf50633_regulator_enable, -+ .set_suspend_disable = pcf50633_regulator_disable, -+}; -+ -+static struct regulator_desc regulators[] = { -+ [PCF50633_REGULATOR_AUTO] = -+ PCF50633_REGULATOR("auto", PCF50633_REGULATOR_AUTO), -+ [PCF50633_REGULATOR_DOWN1] = -+ PCF50633_REGULATOR("down1", PCF50633_REGULATOR_DOWN1), -+ [PCF50633_REGULATOR_DOWN2] = -+ PCF50633_REGULATOR("down2", PCF50633_REGULATOR_DOWN2), -+ [PCF50633_REGULATOR_LDO1] = -+ PCF50633_REGULATOR("ldo1", PCF50633_REGULATOR_LDO1), -+ [PCF50633_REGULATOR_LDO2] = -+ PCF50633_REGULATOR("ldo2", PCF50633_REGULATOR_LDO2), -+ [PCF50633_REGULATOR_LDO3] = -+ PCF50633_REGULATOR("ldo3", PCF50633_REGULATOR_LDO3), -+ [PCF50633_REGULATOR_LDO4] = -+ PCF50633_REGULATOR("ldo4", PCF50633_REGULATOR_LDO4), -+ [PCF50633_REGULATOR_LDO5] = -+ PCF50633_REGULATOR("ldo5", PCF50633_REGULATOR_LDO5), -+ [PCF50633_REGULATOR_LDO6] = -+ PCF50633_REGULATOR("ldo6", PCF50633_REGULATOR_LDO6), -+ [PCF50633_REGULATOR_HCLDO] = -+ PCF50633_REGULATOR("hcldo", PCF50633_REGULATOR_HCLDO), -+ [PCF50633_REGULATOR_MEMLDO] = -+ PCF50633_REGULATOR("memldo", PCF50633_REGULATOR_MEMLDO), -+}; -+ -+int __init pcf50633_regulator_probe(struct platform_device *pdev) -+{ -+ struct regulator_dev *rdev; -+ struct pcf50633 *pcf; -+ -+ pcf = pdev->dev.driver_data; -+ -+ rdev = regulator_register(®ulators[pdev->id], &pdev->dev, pcf); -+ if (IS_ERR(rdev)) -+ return PTR_ERR(rdev); -+ -+ if (pcf->pdata->regulator_registered) -+ pcf->pdata->regulator_registered(pcf, pdev->id); -+ -+ return 0; -+} -+ -+static int __devexit pcf50633_regulator_remove(struct platform_device *pdev) -+{ -+ struct regulator_dev *rdev = platform_get_drvdata(pdev); -+ -+ regulator_unregister(rdev); -+ -+ return 0; -+} -+ -+struct platform_driver pcf50633_regulator_driver = { -+ .driver = { -+ .name = "pcf50633-regltr", -+ }, -+ .probe = pcf50633_regulator_probe, -+ .remove = __devexit_p(pcf50633_regulator_remove), -+}; -+ -+static int __init pcf50633_regulator_init(void) -+{ -+ return platform_driver_register(&pcf50633_regulator_driver); -+} -+module_init(pcf50633_regulator_init); -+ -+static void __exit pcf50633_regulator_exit(void) -+{ -+ platform_driver_unregister(&pcf50633_regulator_driver); -+} -+module_exit(pcf50633_regulator_exit); -+ -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_DESCRIPTION("PCF50633 regulator driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:pcf50633-regulator"); ---- a/drivers/rtc/Kconfig -+++ b/drivers/rtc/Kconfig -@@ -219,6 +219,18 @@ config RTC_DRV_PCF8583 - This driver can also be built as a module. If so, the module - will be called rtc-pcf8583. - -+config RTC_DRV_PCF50633 -+ tristate "Philips PCF50633" -+ help -+ If you say yes here you get support for the Philips PCF50633 -+ PMU's RTC. -+ -+config RTC_DRV_PCF50606 -+ tristate "Philips PCF50606" -+ help -+ If you say yes here you get support for the Philips PCF50606 -+ PMU's RTC. -+ - config RTC_DRV_M41T80 - tristate "ST M41T65/M41T80/81/82/83/84/85/87" - help ---- a/drivers/rtc/Makefile -+++ b/drivers/rtc/Makefile -@@ -50,6 +50,8 @@ obj-$(CONFIG_RTC_DRV_MAX6902) += rtc-max - obj-$(CONFIG_RTC_DRV_OMAP) += rtc-omap.o - obj-$(CONFIG_RTC_DRV_PCF8563) += rtc-pcf8563.o - obj-$(CONFIG_RTC_DRV_PCF8583) += rtc-pcf8583.o -+obj-$(CONFIG_RTC_DRV_PCF50633) += rtc-pcf50633.o -+obj-$(CONFIG_RTC_DRV_PCF50606) += rtc-pcf50606.o - obj-$(CONFIG_RTC_DRV_PL030) += rtc-pl030.o - obj-$(CONFIG_RTC_DRV_PL031) += rtc-pl031.o - obj-$(CONFIG_RTC_DRV_PARISC) += rtc-parisc.o ---- /dev/null -+++ b/drivers/rtc/rtc-pcf50606.c -@@ -0,0 +1,300 @@ -+/* Philips PCF50606 RTC Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50606 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 060, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/rtc.h> -+#include <linux/platform_device.h> -+#include <linux/bcd.h> -+ -+#include <linux/mfd/pcf50606/core.h> -+#include <linux/mfd/pcf50606/rtc.h> -+ -+enum pcf50606_time_indexes { -+ PCF50606_TI_SEC = 0, -+ PCF50606_TI_MIN, -+ PCF50606_TI_HOUR, -+ PCF50606_TI_WKDAY, -+ PCF50606_TI_DAY, -+ PCF50606_TI_MONTH, -+ PCF50606_TI_YEAR, -+ PCF50606_TI_EXTENT /* always last */ -+}; -+ -+ -+struct pcf50606_time { -+ u_int8_t time[PCF50606_TI_EXTENT]; -+}; -+ -+static void pcf2rtc_time(struct rtc_time *rtc, struct pcf50606_time *pcf) -+{ -+ rtc->tm_sec = bcd2bin(pcf->time[PCF50606_TI_SEC]); -+ rtc->tm_min = bcd2bin(pcf->time[PCF50606_TI_MIN]); -+ rtc->tm_hour = bcd2bin(pcf->time[PCF50606_TI_HOUR]); -+ rtc->tm_wday = bcd2bin(pcf->time[PCF50606_TI_WKDAY]); -+ rtc->tm_mday = bcd2bin(pcf->time[PCF50606_TI_DAY]); -+ rtc->tm_mon = bcd2bin(pcf->time[PCF50606_TI_MONTH]); -+ rtc->tm_year = bcd2bin(pcf->time[PCF50606_TI_YEAR]) + 100; -+} -+ -+static void rtc2pcf_time(struct pcf50606_time *pcf, struct rtc_time *rtc) -+{ -+ pcf->time[PCF50606_TI_SEC] = bin2bcd(rtc->tm_sec); -+ pcf->time[PCF50606_TI_MIN] = bin2bcd(rtc->tm_min); -+ pcf->time[PCF50606_TI_HOUR] = bin2bcd(rtc->tm_hour); -+ pcf->time[PCF50606_TI_WKDAY] = bin2bcd(rtc->tm_wday); -+ pcf->time[PCF50606_TI_DAY] = bin2bcd(rtc->tm_mday); -+ pcf->time[PCF50606_TI_MONTH] = bin2bcd(rtc->tm_mon); -+ pcf->time[PCF50606_TI_YEAR] = bin2bcd(rtc->tm_year - 100); -+} -+ -+static int pcf50606_rtc_ioctl(struct device *dev, unsigned int cmd, -+ unsigned long arg) -+{ -+ struct pcf50606 *pcf; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ switch (cmd) { -+ case RTC_AIE_OFF: -+ /* disable the alarm interrupt */ -+ pcf->rtc.alarm_enabled = 0; -+ pcf50606_irq_mask(pcf, PCF50606_IRQ_ALARM); -+ return 0; -+ case RTC_AIE_ON: -+ /* enable the alarm interrupt */ -+ pcf->rtc.alarm_enabled = 1; -+ pcf50606_irq_unmask(pcf, PCF50606_IRQ_ALARM); -+ return 0; -+ case RTC_PIE_OFF: -+ /* disable periodic interrupt (hz tick) */ -+ pcf->rtc.second_enabled = 0; -+ pcf50606_irq_mask(pcf, PCF50606_IRQ_SECOND); -+ return 0; -+ case RTC_PIE_ON: -+ /* ensable periodic interrupt (hz tick) */ -+ pcf->rtc.second_enabled = 1; -+ pcf50606_irq_unmask(pcf, PCF50606_IRQ_SECOND); -+ return 0; -+ } -+ return -ENOIOCTLCMD; -+} -+ -+static int pcf50606_rtc_read_time(struct device *dev, struct rtc_time *tm) -+{ -+ struct pcf50606 *pcf; -+ struct pcf50606_time pcf_tm; -+ int ret; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ ret = pcf50606_read_block(pcf, PCF50606_REG_RTCSC, -+ PCF50606_TI_EXTENT, -+ &pcf_tm.time[0]); -+ if (ret != PCF50606_TI_EXTENT) -+ dev_err(dev, "Failed to read time\n"); -+ -+ dev_dbg(dev, "PCF_TIME: %02x.%02x.%02x %02x:%02x:%02x\n", -+ pcf_tm.time[PCF50606_TI_DAY], -+ pcf_tm.time[PCF50606_TI_MONTH], -+ pcf_tm.time[PCF50606_TI_YEAR], -+ pcf_tm.time[PCF50606_TI_HOUR], -+ pcf_tm.time[PCF50606_TI_MIN], -+ pcf_tm.time[PCF50606_TI_SEC]); -+ -+ pcf2rtc_time(tm, &pcf_tm); -+ -+ dev_dbg(dev, "RTC_TIME: %u.%u.%u %u:%u:%u\n", -+ tm->tm_mday, tm->tm_mon, tm->tm_year, -+ tm->tm_hour, tm->tm_min, tm->tm_sec); -+ -+ return 0; -+} -+ -+static int pcf50606_rtc_set_time(struct device *dev, struct rtc_time *tm) -+{ -+ struct pcf50606 *pcf; -+ struct pcf50606_time pcf_tm; -+ int ret; -+ int second_masked, alarm_masked; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ dev_dbg(dev, "RTC_TIME: %u.%u.%u %u:%u:%u\n", -+ tm->tm_mday, tm->tm_mon, tm->tm_year, -+ tm->tm_hour, tm->tm_min, tm->tm_sec); -+ rtc2pcf_time(&pcf_tm, tm); -+ dev_dbg(dev, "PCF_TIME: %02x.%02x.%02x %02x:%02x:%02x\n", -+ pcf_tm.time[PCF50606_TI_DAY], -+ pcf_tm.time[PCF50606_TI_MONTH], -+ pcf_tm.time[PCF50606_TI_YEAR], -+ pcf_tm.time[PCF50606_TI_HOUR], -+ pcf_tm.time[PCF50606_TI_MIN], -+ pcf_tm.time[PCF50606_TI_SEC]); -+ -+ -+ second_masked = pcf50606_irq_mask_get(pcf, PCF50606_IRQ_SECOND); -+ alarm_masked = pcf50606_irq_mask_get(pcf, PCF50606_IRQ_ALARM); -+ -+ if (!second_masked) -+ pcf50606_irq_mask(pcf, PCF50606_IRQ_SECOND); -+ if (!alarm_masked) -+ pcf50606_irq_mask(pcf, PCF50606_IRQ_ALARM); -+ -+ ret = pcf50606_write_block(pcf, PCF50606_REG_RTCSC, -+ PCF50606_TI_EXTENT, -+ &pcf_tm.time[0]); -+ if (ret) -+ dev_err(dev, "Failed to set time %d\n", ret); -+ -+ if (!second_masked) -+ pcf50606_irq_unmask(pcf, PCF50606_IRQ_SECOND); -+ if (!alarm_masked) -+ pcf50606_irq_unmask(pcf, PCF50606_IRQ_ALARM); -+ -+ -+ return 0; -+} -+ -+static int pcf50606_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alrm) -+{ -+ struct pcf50606 *pcf; -+ struct pcf50606_time pcf_tm; -+ int ret; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ alrm->enabled = pcf->rtc.alarm_enabled; -+ -+ ret = pcf50606_read_block(pcf, PCF50606_REG_RTCSCA, -+ PCF50606_TI_EXTENT, &pcf_tm.time[0]); -+ -+ if (ret != PCF50606_TI_EXTENT) -+ dev_err(dev, "Failed to read Alarm time :-(\n"); -+ -+ pcf2rtc_time(&alrm->time, &pcf_tm); -+ -+ return 0; -+} -+ -+static int pcf50606_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alrm) -+{ -+ struct pcf50606 *pcf; -+ struct pcf50606_time pcf_tm; -+ int ret, alarm_masked; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ rtc2pcf_time(&pcf_tm, &alrm->time); -+ -+ /* do like mktime does and ignore tm_wday */ -+ pcf_tm.time[PCF50606_TI_WKDAY] = 7; -+ -+ alarm_masked = pcf50606_irq_mask_get(pcf, PCF50606_IRQ_ALARM); -+ -+ /* disable alarm interrupt */ -+ if (!alarm_masked) -+ pcf50606_irq_mask(pcf, PCF50606_IRQ_ALARM); -+ -+ ret = pcf50606_write_block(pcf, PCF50606_REG_RTCSCA, -+ PCF50606_TI_EXTENT, &pcf_tm.time[0]); -+ if (ret) -+ dev_err(dev, "Failed to write alarm time %d\n", ret); -+ -+ if (!alarm_masked) -+ pcf50606_irq_unmask(pcf, PCF50606_IRQ_ALARM); -+ -+ return 0; -+} -+static struct rtc_class_ops pcf50606_rtc_ops = { -+ .ioctl = pcf50606_rtc_ioctl, -+ .read_time = pcf50606_rtc_read_time, -+ .set_time = pcf50606_rtc_set_time, -+ .read_alarm = pcf50606_rtc_read_alarm, -+ .set_alarm = pcf50606_rtc_set_alarm, -+}; -+ -+static void pcf50606_rtc_irq(struct pcf50606 *pcf, int irq, void *unused) -+{ -+ switch (irq) { -+ case PCF50606_IRQ_ALARM: -+ rtc_update_irq(pcf->rtc.rtc_dev, 1, RTC_AF | RTC_IRQF); -+ break; -+ case PCF50606_IRQ_SECOND: -+ rtc_update_irq(pcf->rtc.rtc_dev, 1, RTC_PF | RTC_IRQF); -+ break; -+ } -+} -+ -+static int pcf50606_rtc_probe(struct platform_device *pdev) -+{ -+ struct rtc_device *rtc; -+ struct pcf50606 *pcf; -+ -+ rtc = rtc_device_register("pcf50606", &pdev->dev, -+ &pcf50606_rtc_ops, THIS_MODULE); -+ if (IS_ERR(rtc)) -+ return -ENODEV; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ /* Set up IRQ handlers */ -+ pcf->irq_handler[PCF50606_IRQ_ALARM].handler = pcf50606_rtc_irq; -+ pcf->irq_handler[PCF50606_IRQ_SECOND].handler = pcf50606_rtc_irq; -+ -+ pcf->rtc.rtc_dev = rtc; -+ -+ return 0; -+} -+ -+static int pcf50606_rtc_remove(struct platform_device *pdev) -+{ -+ return 0; -+} -+ -+ -+static struct platform_driver pcf50606_rtc_driver = { -+ .driver = { -+ .name = "pcf50606-rtc", -+ }, -+ .probe = pcf50606_rtc_probe, -+ .remove = __devexit_p(pcf50606_rtc_remove), -+}; -+ -+static int __init pcf50606_rtc_init(void) -+{ -+ return platform_driver_register(&pcf50606_rtc_driver); -+} -+module_init(pcf50606_rtc_init); -+ -+static void __exit pcf50606_rtc_exit(void) -+{ -+ platform_driver_unregister(&pcf50606_rtc_driver); -+} -+module_exit(pcf50606_rtc_exit); -+ -+ -+MODULE_DESCRIPTION("RTC driver for NXP PCF50606 power management unit"); -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ ---- /dev/null -+++ b/drivers/rtc/rtc-pcf50633.c -@@ -0,0 +1,300 @@ -+/* Philips PCF50633 RTC Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50633 driver mainly by -+ * Harald Welte, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/rtc.h> -+#include <linux/platform_device.h> -+#include <linux/bcd.h> -+ -+#include <linux/mfd/pcf50633/core.h> -+#include <linux/mfd/pcf50633/rtc.h> -+ -+enum pcf50633_time_indexes { -+ PCF50633_TI_SEC = 0, -+ PCF50633_TI_MIN, -+ PCF50633_TI_HOUR, -+ PCF50633_TI_WKDAY, -+ PCF50633_TI_DAY, -+ PCF50633_TI_MONTH, -+ PCF50633_TI_YEAR, -+ PCF50633_TI_EXTENT /* always last */ -+}; -+ -+ -+struct pcf50633_time { -+ u_int8_t time[PCF50633_TI_EXTENT]; -+}; -+ -+static void pcf2rtc_time(struct rtc_time *rtc, struct pcf50633_time *pcf) -+{ -+ rtc->tm_sec = bcd2bin(pcf->time[PCF50633_TI_SEC]); -+ rtc->tm_min = bcd2bin(pcf->time[PCF50633_TI_MIN]); -+ rtc->tm_hour = bcd2bin(pcf->time[PCF50633_TI_HOUR]); -+ rtc->tm_wday = bcd2bin(pcf->time[PCF50633_TI_WKDAY]); -+ rtc->tm_mday = bcd2bin(pcf->time[PCF50633_TI_DAY]); -+ rtc->tm_mon = bcd2bin(pcf->time[PCF50633_TI_MONTH]); -+ rtc->tm_year = bcd2bin(pcf->time[PCF50633_TI_YEAR]) + 100; -+} -+ -+static void rtc2pcf_time(struct pcf50633_time *pcf, struct rtc_time *rtc) -+{ -+ pcf->time[PCF50633_TI_SEC] = bin2bcd(rtc->tm_sec); -+ pcf->time[PCF50633_TI_MIN] = bin2bcd(rtc->tm_min); -+ pcf->time[PCF50633_TI_HOUR] = bin2bcd(rtc->tm_hour); -+ pcf->time[PCF50633_TI_WKDAY] = bin2bcd(rtc->tm_wday); -+ pcf->time[PCF50633_TI_DAY] = bin2bcd(rtc->tm_mday); -+ pcf->time[PCF50633_TI_MONTH] = bin2bcd(rtc->tm_mon); -+ pcf->time[PCF50633_TI_YEAR] = bin2bcd(rtc->tm_year - 100); -+} -+ -+static int pcf50633_rtc_ioctl(struct device *dev, unsigned int cmd, -+ unsigned long arg) -+{ -+ struct pcf50633 *pcf; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ switch (cmd) { -+ case RTC_AIE_OFF: -+ /* disable the alarm interrupt */ -+ pcf->rtc.alarm_enabled = 0; -+ pcf50633_irq_mask(pcf, PCF50633_IRQ_ALARM); -+ return 0; -+ case RTC_AIE_ON: -+ /* enable the alarm interrupt */ -+ pcf->rtc.alarm_enabled = 1; -+ pcf50633_irq_unmask(pcf, PCF50633_IRQ_ALARM); -+ return 0; -+ case RTC_PIE_OFF: -+ /* disable periodic interrupt (hz tick) */ -+ pcf->rtc.second_enabled = 0; -+ pcf50633_irq_mask(pcf, PCF50633_IRQ_SECOND); -+ return 0; -+ case RTC_PIE_ON: -+ /* ensable periodic interrupt (hz tick) */ -+ pcf->rtc.second_enabled = 1; -+ pcf50633_irq_unmask(pcf, PCF50633_IRQ_SECOND); -+ return 0; -+ } -+ return -ENOIOCTLCMD; -+} -+ -+static int pcf50633_rtc_read_time(struct device *dev, struct rtc_time *tm) -+{ -+ struct pcf50633 *pcf; -+ struct pcf50633_time pcf_tm; -+ int ret; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ ret = pcf50633_read_block(pcf, PCF50633_REG_RTCSC, -+ PCF50633_TI_EXTENT, -+ &pcf_tm.time[0]); -+ if (ret != PCF50633_TI_EXTENT) -+ dev_err(dev, "Failed to read time\n"); -+ -+ dev_dbg(dev, "PCF_TIME: %02x.%02x.%02x %02x:%02x:%02x\n", -+ pcf_tm.time[PCF50633_TI_DAY], -+ pcf_tm.time[PCF50633_TI_MONTH], -+ pcf_tm.time[PCF50633_TI_YEAR], -+ pcf_tm.time[PCF50633_TI_HOUR], -+ pcf_tm.time[PCF50633_TI_MIN], -+ pcf_tm.time[PCF50633_TI_SEC]); -+ -+ pcf2rtc_time(tm, &pcf_tm); -+ -+ dev_dbg(dev, "RTC_TIME: %u.%u.%u %u:%u:%u\n", -+ tm->tm_mday, tm->tm_mon, tm->tm_year, -+ tm->tm_hour, tm->tm_min, tm->tm_sec); -+ -+ return 0; -+} -+ -+static int pcf50633_rtc_set_time(struct device *dev, struct rtc_time *tm) -+{ -+ struct pcf50633 *pcf; -+ struct pcf50633_time pcf_tm; -+ int ret; -+ int second_masked, alarm_masked; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ dev_dbg(dev, "RTC_TIME: %u.%u.%u %u:%u:%u\n", -+ tm->tm_mday, tm->tm_mon, tm->tm_year, -+ tm->tm_hour, tm->tm_min, tm->tm_sec); -+ rtc2pcf_time(&pcf_tm, tm); -+ dev_dbg(dev, "PCF_TIME: %02x.%02x.%02x %02x:%02x:%02x\n", -+ pcf_tm.time[PCF50633_TI_DAY], -+ pcf_tm.time[PCF50633_TI_MONTH], -+ pcf_tm.time[PCF50633_TI_YEAR], -+ pcf_tm.time[PCF50633_TI_HOUR], -+ pcf_tm.time[PCF50633_TI_MIN], -+ pcf_tm.time[PCF50633_TI_SEC]); -+ -+ -+ second_masked = pcf50633_irq_mask_get(pcf, PCF50633_IRQ_SECOND); -+ alarm_masked = pcf50633_irq_mask_get(pcf, PCF50633_IRQ_ALARM); -+ -+ if (!second_masked) -+ pcf50633_irq_mask(pcf, PCF50633_IRQ_SECOND); -+ if (!alarm_masked) -+ pcf50633_irq_mask(pcf, PCF50633_IRQ_ALARM); -+ -+ ret = pcf50633_write_block(pcf, PCF50633_REG_RTCSC, -+ PCF50633_TI_EXTENT, -+ &pcf_tm.time[0]); -+ if (ret) -+ dev_err(dev, "Failed to set time %d\n", ret); -+ -+ if (!second_masked) -+ pcf50633_irq_unmask(pcf, PCF50633_IRQ_SECOND); -+ if (!alarm_masked) -+ pcf50633_irq_unmask(pcf, PCF50633_IRQ_ALARM); -+ -+ -+ return 0; -+} -+ -+static int pcf50633_rtc_read_alarm(struct device *dev, struct rtc_wkalrm *alrm) -+{ -+ struct pcf50633 *pcf; -+ struct pcf50633_time pcf_tm; -+ int ret; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ alrm->enabled = pcf->rtc.alarm_enabled; -+ -+ ret = pcf50633_read_block(pcf, PCF50633_REG_RTCSCA, -+ PCF50633_TI_EXTENT, &pcf_tm.time[0]); -+ -+ if (ret != PCF50633_TI_EXTENT) -+ dev_err(dev, "Failed to read Alarm time :-(\n"); -+ -+ pcf2rtc_time(&alrm->time, &pcf_tm); -+ -+ return 0; -+} -+ -+static int pcf50633_rtc_set_alarm(struct device *dev, struct rtc_wkalrm *alrm) -+{ -+ struct pcf50633 *pcf; -+ struct pcf50633_time pcf_tm; -+ int ret, alarm_masked; -+ -+ pcf = dev_get_drvdata(dev); -+ -+ rtc2pcf_time(&pcf_tm, &alrm->time); -+ -+ /* do like mktime does and ignore tm_wday */ -+ pcf_tm.time[PCF50633_TI_WKDAY] = 7; -+ -+ alarm_masked = pcf50633_irq_mask_get(pcf, PCF50633_IRQ_ALARM); -+ -+ /* disable alarm interrupt */ -+ if (!alarm_masked) -+ pcf50633_irq_mask(pcf, PCF50633_IRQ_ALARM); -+ -+ ret = pcf50633_write_block(pcf, PCF50633_REG_RTCSCA, -+ PCF50633_TI_EXTENT, &pcf_tm.time[0]); -+ if (ret) -+ dev_err(dev, "Failed to write alarm time %d\n", ret); -+ -+ if (!alarm_masked) -+ pcf50633_irq_unmask(pcf, PCF50633_IRQ_ALARM); -+ -+ return 0; -+} -+static struct rtc_class_ops pcf50633_rtc_ops = { -+ .ioctl = pcf50633_rtc_ioctl, -+ .read_time = pcf50633_rtc_read_time, -+ .set_time = pcf50633_rtc_set_time, -+ .read_alarm = pcf50633_rtc_read_alarm, -+ .set_alarm = pcf50633_rtc_set_alarm, -+}; -+ -+static void pcf50633_rtc_irq(struct pcf50633 *pcf, int irq, void *unused) -+{ -+ switch (irq) { -+ case PCF50633_IRQ_ALARM: -+ rtc_update_irq(pcf->rtc.rtc_dev, 1, RTC_AF | RTC_IRQF); -+ break; -+ case PCF50633_IRQ_SECOND: -+ rtc_update_irq(pcf->rtc.rtc_dev, 1, RTC_PF | RTC_IRQF); -+ break; -+ } -+} -+ -+static int pcf50633_rtc_probe(struct platform_device *pdev) -+{ -+ struct rtc_device *rtc; -+ struct pcf50633 *pcf; -+ -+ rtc = rtc_device_register("pcf50633", &pdev->dev, -+ &pcf50633_rtc_ops, THIS_MODULE); -+ if (IS_ERR(rtc)) -+ return -ENODEV; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ /* Set up IRQ handlers */ -+ pcf->irq_handler[PCF50633_IRQ_ALARM].handler = pcf50633_rtc_irq; -+ pcf->irq_handler[PCF50633_IRQ_SECOND].handler = pcf50633_rtc_irq; -+ -+ pcf->rtc.rtc_dev = rtc; -+ -+ return 0; -+} -+ -+static int pcf50633_rtc_remove(struct platform_device *pdev) -+{ -+ return 0; -+} -+ -+ -+static struct platform_driver pcf50633_rtc_driver = { -+ .driver = { -+ .name = "pcf50633-rtc", -+ }, -+ .probe = pcf50633_rtc_probe, -+ .remove = __devexit_p(pcf50633_rtc_remove), -+}; -+ -+static int __init pcf50633_rtc_init(void) -+{ -+ return platform_driver_register(&pcf50633_rtc_driver); -+} -+module_init(pcf50633_rtc_init); -+ -+static void __exit pcf50633_rtc_exit(void) -+{ -+ platform_driver_unregister(&pcf50633_rtc_driver); -+} -+module_exit(pcf50633_rtc_exit); -+ -+ -+MODULE_DESCRIPTION("RTC driver for NXP PCF50633 power management unit"); -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ ---- a/drivers/rtc/rtc-s3c.c -+++ b/drivers/rtc/rtc-s3c.c -@@ -26,7 +26,7 @@ - #include <asm/uaccess.h> - #include <asm/io.h> - #include <asm/irq.h> --#include <asm/plat-s3c/regs-rtc.h> -+#include <plat/regs-rtc.h> - - /* I have yet to find an S3C implementation with more than one - * of these rtc blocks in */ ---- a/drivers/serial/Kconfig -+++ b/drivers/serial/Kconfig -@@ -447,7 +447,7 @@ config SERIAL_CLPS711X_CONSOLE - - config SERIAL_SAMSUNG - tristate "Samsung SoC serial support" -- depends on ARM && PLAT_S3C24XX -+ depends on ARM && PLAT_S3C - select SERIAL_CORE - help - Support for the on-chip UARTs on the Samsung S3C24XX series CPUs, -@@ -455,6 +455,16 @@ config SERIAL_SAMSUNG - provide all of these ports, depending on how the serial port - pins are configured. - -+config SERIAL_SAMSUNG_UARTS -+ int -+ depends on SERIAL_SAMSUNG -+ default 2 if ARCH_S3C2400 -+ default 4 if ARCH_S3C64XX || CPU_S3C2443 -+ default 3 -+ help -+ Select the number of available UART ports for the Samsung S3C -+ serial driver -+ - config SERIAL_SAMSUNG_DEBUG - bool "Samsung SoC serial debug" - depends on SERIAL_SAMSUNG && DEBUG_LL -@@ -508,7 +518,20 @@ config SERIAL_S3C2440 - help - Serial port support for the Samsung S3C2440 and S3C2442 SoC - -- -+config SERIAL_S3C24A0 -+ tristate "Samsung S3C24A0 Serial port support" -+ depends on SERIAL_SAMSUNG && CPU_S3C24A0 -+ default y if CPU_S3C24A0 -+ help -+ Serial port support for the Samsung S3C24A0 SoC -+ -+config SERIAL_S3C6400 -+ tristate "Samsung S3C6400/S3C6410 Serial port support" -+ depends on SERIAL_SAMSUNG && (CPU_S3C600 || CPU_S3C6410) -+ default y -+ help -+ Serial port support for the Samsung S3C6400 and S3C6410 -+ SoCs - - config SERIAL_DZ - bool "DECstation DZ serial driver" ---- a/drivers/serial/Makefile -+++ b/drivers/serial/Makefile -@@ -41,6 +41,8 @@ obj-$(CONFIG_SERIAL_S3C2400) += s3c2400. - obj-$(CONFIG_SERIAL_S3C2410) += s3c2410.o - obj-$(CONFIG_SERIAL_S3C2412) += s3c2412.o - obj-$(CONFIG_SERIAL_S3C2440) += s3c2440.o -+obj-$(CONFIG_SERIAL_S3C24A0) += s3c24a0.o -+obj-$(CONFIG_SERIAL_S3C6400) += s3c6400.o - obj-$(CONFIG_SERIAL_IP22_ZILOG) += ip22zilog.o - obj-$(CONFIG_SERIAL_MUX) += mux.o - obj-$(CONFIG_SERIAL_68328) += 68328serial.o ---- a/drivers/serial/s3c2410.c -+++ b/drivers/serial/s3c2410.c -@@ -19,6 +19,7 @@ - #include <linux/serial.h> - - #include <asm/irq.h> -+ - #include <mach/hardware.h> - - #include <plat/regs-serial.h> ---- /dev/null -+++ b/drivers/serial/s3c24a0.c -@@ -0,0 +1,118 @@ -+/* linux/drivers/serial/s3c24a0.c -+ * -+ * Driver for Samsung S3C24A0 SoC onboard UARTs. -+ * -+ * Based on drivers/serial/s3c2410.c -+ * -+ * Author: Sandeep Patil <sandeep.patil@azingo.com> -+ * -+ * Ben Dooks, Copyright (c) 2003-2005,2008 Simtec Electronics -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/module.h> -+#include <linux/ioport.h> -+#include <linux/platform_device.h> -+#include <linux/init.h> -+#include <linux/serial_core.h> -+#include <linux/serial.h> -+#include <linux/io.h> -+#include <linux/irq.h> -+ -+#include <mach/hardware.h> -+ -+#include <plat/regs-serial.h> -+#include <mach/regs-gpio.h> -+ -+#include "samsung.h" -+ -+static int s3c24a0_serial_setsource(struct uart_port *port, -+ struct s3c24xx_uart_clksrc *clk) -+{ -+ unsigned long ucon = rd_regl(port, S3C2410_UCON); -+ -+ if (strcmp(clk->name, "uclk") == 0) -+ ucon |= S3C2410_UCON_UCLK; -+ else -+ ucon &= ~S3C2410_UCON_UCLK; -+ -+ wr_regl(port, S3C2410_UCON, ucon); -+ return 0; -+} -+ -+static int s3c24a0_serial_getsource(struct uart_port *port, -+ struct s3c24xx_uart_clksrc *clk) -+{ -+ unsigned long ucon = rd_regl(port, S3C2410_UCON); -+ -+ clk->divisor = 1; -+ clk->name = (ucon & S3C2410_UCON_UCLK) ? "uclk" : "pclk"; -+ -+ return 0; -+} -+ -+static int s3c24a0_serial_resetport(struct uart_port *port, -+ struct s3c2410_uartcfg *cfg) -+{ -+ dbg("s3c24a0_serial_resetport: port=%p (%08lx), cfg=%p\n", -+ port, port->mapbase, cfg); -+ -+ wr_regl(port, S3C2410_UCON, cfg->ucon); -+ wr_regl(port, S3C2410_ULCON, cfg->ulcon); -+ -+ /* reset both fifos */ -+ -+ wr_regl(port, S3C2410_UFCON, cfg->ufcon | S3C2410_UFCON_RESETBOTH); -+ wr_regl(port, S3C2410_UFCON, cfg->ufcon); -+ -+ return 0; -+} -+ -+static struct s3c24xx_uart_info s3c24a0_uart_inf = { -+ .name = "Samsung S3C24A0 UART", -+ .type = PORT_S3C2410, -+ .fifosize = 16, -+ .rx_fifomask = S3C24A0_UFSTAT_RXMASK, -+ .rx_fifoshift = S3C24A0_UFSTAT_RXSHIFT, -+ .rx_fifofull = S3C24A0_UFSTAT_RXFULL, -+ .tx_fifofull = S3C24A0_UFSTAT_TXFULL, -+ .tx_fifomask = S3C24A0_UFSTAT_TXMASK, -+ .tx_fifoshift = S3C24A0_UFSTAT_TXSHIFT, -+ .get_clksrc = s3c24a0_serial_getsource, -+ .set_clksrc = s3c24a0_serial_setsource, -+ .reset_port = s3c24a0_serial_resetport, -+}; -+ -+static int s3c24a0_serial_probe(struct platform_device *dev) -+{ -+ return s3c24xx_serial_probe(dev, &s3c24a0_uart_inf); -+} -+ -+static struct platform_driver s3c24a0_serial_drv = { -+ .probe = s3c24a0_serial_probe, -+ .remove = s3c24xx_serial_remove, -+ .driver = { -+ .name = "s3c24a0-uart", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+s3c24xx_console_init(&s3c24a0_serial_drv, &s3c24a0_uart_inf); -+ -+static int __init s3c24a0_serial_init(void) -+{ -+ return s3c24xx_serial_init(&s3c24a0_serial_drv, &s3c24a0_uart_inf); -+} -+ -+static void __exit s3c24a0_serial_exit(void) -+{ -+ platform_driver_unregister(&s3c24a0_serial_drv); -+} -+ -+module_init(s3c24a0_serial_init); -+module_exit(s3c24a0_serial_exit); -+ ---- /dev/null -+++ b/drivers/serial/s3c6400.c -@@ -0,0 +1,152 @@ -+/* linux/drivers/serial/s3c6400.c -+ * -+ * Driver for Samsung S3C6400 and S3C6410 SoC onboard UARTs. -+ * -+ * Copyright 2008 Openmoko, Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/module.h> -+#include <linux/ioport.h> -+#include <linux/io.h> -+#include <linux/platform_device.h> -+#include <linux/init.h> -+#include <linux/serial_core.h> -+#include <linux/serial.h> -+ -+#include <asm/irq.h> -+#include <mach/hardware.h> -+ -+#include <plat/regs-serial.h> -+ -+#include "samsung.h" -+ -+static int s3c6400_serial_setsource(struct uart_port *port, -+ struct s3c24xx_uart_clksrc *clk) -+{ -+ unsigned long ucon = rd_regl(port, S3C2410_UCON); -+ -+ if (strcmp(clk->name, "uclk0") == 0) { -+ ucon &= ~S3C6400_UCON_CLKMASK; -+ ucon |= S3C6400_UCON_UCLK0; -+ } else if (strcmp(clk->name, "uclk1") == 0) -+ ucon |= S3C6400_UCON_UCLK1; -+ else if (strcmp(clk->name, "pclk") == 0) { -+ /* See notes about transitioning from UCLK to PCLK */ -+ ucon &= ~S3C6400_UCON_UCLK0; -+ } else { -+ printk(KERN_ERR "unknown clock source %s\n", clk->name); -+ return -EINVAL; -+ } -+ -+ wr_regl(port, S3C2410_UCON, ucon); -+ return 0; -+} -+ -+ -+static int s3c6400_serial_getsource(struct uart_port *port, -+ struct s3c24xx_uart_clksrc *clk) -+{ -+ u32 ucon = rd_regl(port, S3C2410_UCON); -+ -+ clk->divisor = 1; -+ -+ switch (ucon & S3C6400_UCON_CLKMASK) { -+ case S3C6400_UCON_UCLK0: -+ clk->name = "uclk0"; -+ break; -+ -+ case S3C6400_UCON_UCLK1: -+ clk->name = "uclk1"; -+ break; -+ -+ case S3C6400_UCON_PCLK: -+ case S3C6400_UCON_PCLK2: -+ clk->name = "pclk"; -+ break; -+ } -+ -+ return 0; -+} -+ -+static int s3c6400_serial_resetport(struct uart_port *port, -+ struct s3c2410_uartcfg *cfg) -+{ -+ unsigned long ucon = rd_regl(port, S3C2410_UCON); -+ -+ dbg("s3c6400_serial_resetport: port=%p (%08lx), cfg=%p\n", -+ port, port->mapbase, cfg); -+ -+ /* ensure we don't change the clock settings... */ -+ -+ ucon &= S3C6400_UCON_CLKMASK; -+ -+ wr_regl(port, S3C2410_UCON, ucon | cfg->ucon); -+ wr_regl(port, S3C2410_ULCON, cfg->ulcon); -+ -+ /* reset both fifos */ -+ -+ wr_regl(port, S3C2410_UFCON, cfg->ufcon | S3C2410_UFCON_RESETBOTH); -+ wr_regl(port, S3C2410_UFCON, cfg->ufcon); -+ -+ return 0; -+} -+ -+static struct s3c24xx_uart_info s3c6400_uart_inf = { -+ .name = "Samsung S3C6400 UART", -+ .type = PORT_S3C6400, -+ .fifosize = 64, -+ .has_divslot = 1, -+ .rx_fifomask = S3C2440_UFSTAT_RXMASK, -+ .rx_fifoshift = S3C2440_UFSTAT_RXSHIFT, -+ .rx_fifofull = S3C2440_UFSTAT_RXFULL, -+ .tx_fifofull = S3C2440_UFSTAT_TXFULL, -+ .tx_fifomask = S3C2440_UFSTAT_TXMASK, -+ .tx_fifoshift = S3C2440_UFSTAT_TXSHIFT, -+ .get_clksrc = s3c6400_serial_getsource, -+ .set_clksrc = s3c6400_serial_setsource, -+ .reset_port = s3c6400_serial_resetport, -+}; -+ -+/* device management */ -+ -+static int s3c6400_serial_probe(struct platform_device *dev) -+{ -+ dbg("s3c6400_serial_probe: dev=%p\n", dev); -+ return s3c24xx_serial_probe(dev, &s3c6400_uart_inf); -+} -+ -+static struct platform_driver s3c6400_serial_drv = { -+ .probe = s3c6400_serial_probe, -+ .remove = s3c24xx_serial_remove, -+ .driver = { -+ .name = "s3c6400-uart", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+s3c24xx_console_init(&s3c6400_serial_drv, &s3c6400_uart_inf); -+ -+static int __init s3c6400_serial_init(void) -+{ -+ return s3c24xx_serial_init(&s3c6400_serial_drv, &s3c6400_uart_inf); -+} -+ -+static void __exit s3c6400_serial_exit(void) -+{ -+ platform_driver_unregister(&s3c6400_serial_drv); -+} -+ -+module_init(s3c6400_serial_init); -+module_exit(s3c6400_serial_exit); -+ -+MODULE_DESCRIPTION("Samsung S3C6400,S3C6410 SoC Serial port driver"); -+MODULE_AUTHOR("Ben Dooks <ben@simtec.co.uk>"); -+MODULE_LICENSE("GPL v2"); -+MODULE_ALIAS("platform:s3c6400-uart"); ---- a/drivers/serial/samsung.c -+++ b/drivers/serial/samsung.c -@@ -42,13 +42,18 @@ - #include <linux/serial.h> - #include <linux/delay.h> - #include <linux/clk.h> -+#include <linux/cpufreq.h> - - #include <asm/irq.h> - - #include <mach/hardware.h> -+#include <mach/map.h> - - #include <plat/regs-serial.h> -+#if defined(CONFIG_MACH_NEO1973) && !defined(CONFIG_CPU_S3C6410) - #include <mach/regs-gpio.h> -+#include <mach/regs-clock.h> -+#endif - - #include "samsung.h" - -@@ -58,19 +63,6 @@ - #define S3C24XX_SERIAL_MAJOR 204 - #define S3C24XX_SERIAL_MINOR 64 - --/* we can support 3 uarts, but not always use them */ -- --#ifdef CONFIG_CPU_S3C2400 --#define NR_PORTS (2) --#else --#define NR_PORTS (3) --#endif -- --/* port irq numbers */ -- --#define TX_IRQ(port) ((port)->irq + 1) --#define RX_IRQ(port) ((port)->irq) -- - /* macros to change one thing to another */ - - #define tx_enabled(port) ((port)->unused[0]) -@@ -136,8 +128,10 @@ static void s3c24xx_serial_rx_disable(st - - static void s3c24xx_serial_stop_tx(struct uart_port *port) - { -+ struct s3c24xx_uart_port *ourport = to_ourport(port); -+ - if (tx_enabled(port)) { -- disable_irq(TX_IRQ(port)); -+ disable_irq(ourport->tx_irq); - tx_enabled(port) = 0; - if (port->flags & UPF_CONS_FLOW) - s3c24xx_serial_rx_enable(port); -@@ -146,11 +140,13 @@ static void s3c24xx_serial_stop_tx(struc - - static void s3c24xx_serial_start_tx(struct uart_port *port) - { -+ struct s3c24xx_uart_port *ourport = to_ourport(port); -+ - if (!tx_enabled(port)) { - if (port->flags & UPF_CONS_FLOW) - s3c24xx_serial_rx_disable(port); - -- enable_irq(TX_IRQ(port)); -+ enable_irq(ourport->tx_irq); - tx_enabled(port) = 1; - } - } -@@ -158,9 +154,11 @@ static void s3c24xx_serial_start_tx(stru - - static void s3c24xx_serial_stop_rx(struct uart_port *port) - { -+ struct s3c24xx_uart_port *ourport = to_ourport(port); -+ - if (rx_enabled(port)) { - dbg("s3c24xx_serial_stop_rx: port=%p\n", port); -- disable_irq(RX_IRQ(port)); -+ disable_irq(ourport->rx_irq); - rx_enabled(port) = 0; - } - } -@@ -241,7 +239,7 @@ s3c24xx_serial_rx_chars(int irq, void *d - port->icount.rx++; - - if (unlikely(uerstat & S3C2410_UERSTAT_ANY)) { -- dbg("rxerr: port ch=0x%02x, rxs=0x%08x\n", -+ printk(KERN_DEBUG "rxerr: port ch=0x%02x, rxs=0x%08x\n", - ch, uerstat); - - /* check for break */ -@@ -384,13 +382,13 @@ static void s3c24xx_serial_shutdown(stru - struct s3c24xx_uart_port *ourport = to_ourport(port); - - if (ourport->tx_claimed) { -- free_irq(TX_IRQ(port), ourport); -+ free_irq(ourport->tx_irq, ourport); - tx_enabled(port) = 0; - ourport->tx_claimed = 0; - } - - if (ourport->rx_claimed) { -- free_irq(RX_IRQ(port), ourport); -+ free_irq(ourport->rx_irq, ourport); - ourport->rx_claimed = 0; - rx_enabled(port) = 0; - } -@@ -407,12 +405,11 @@ static int s3c24xx_serial_startup(struct - - rx_enabled(port) = 1; - -- ret = request_irq(RX_IRQ(port), -- s3c24xx_serial_rx_chars, 0, -+ ret = request_irq(ourport->rx_irq, s3c24xx_serial_rx_chars, 0, - s3c24xx_serial_portname(port), ourport); - - if (ret != 0) { -- printk(KERN_ERR "cannot get irq %d\n", RX_IRQ(port)); -+ printk(KERN_ERR "cannot get irq %d\n", ourport->rx_irq); - return ret; - } - -@@ -422,12 +419,11 @@ static int s3c24xx_serial_startup(struct - - tx_enabled(port) = 1; - -- ret = request_irq(TX_IRQ(port), -- s3c24xx_serial_tx_chars, 0, -+ ret = request_irq(ourport->tx_irq, s3c24xx_serial_tx_chars, 0, - s3c24xx_serial_portname(port), ourport); - - if (ret) { -- printk(KERN_ERR "cannot get irq %d\n", TX_IRQ(port)); -+ printk(KERN_ERR "cannot get irq %d\n", ourport->tx_irq); - goto err; - } - -@@ -452,6 +448,8 @@ static void s3c24xx_serial_pm(struct uar - { - struct s3c24xx_uart_port *ourport = to_ourport(port); - -+ ourport->pm_level = level; -+ - switch (level) { - case 3: - if (!IS_ERR(ourport->baudclk) && ourport->baudclk != NULL) -@@ -514,6 +512,7 @@ s3c24xx_serial_setsource(struct uart_por - struct baud_calc { - struct s3c24xx_uart_clksrc *clksrc; - unsigned int calc; -+ unsigned int divslot; - unsigned int quot; - struct clk *src; - }; -@@ -523,6 +522,7 @@ static int s3c24xx_serial_calcbaud(struc - struct s3c24xx_uart_clksrc *clksrc, - unsigned int baud) - { -+ struct s3c24xx_uart_port *ourport = to_ourport(port); - unsigned long rate; - - calc->src = clk_get(port->dev, clksrc->name); -@@ -533,8 +533,24 @@ static int s3c24xx_serial_calcbaud(struc - rate /= clksrc->divisor; - - calc->clksrc = clksrc; -- calc->quot = (rate + (8 * baud)) / (16 * baud); -- calc->calc = (rate / (calc->quot * 16)); -+ -+ if (ourport->info->has_divslot) { -+ unsigned long div = rate / baud; -+ -+ /* The UDIVSLOT register on the newer UARTs allows us to -+ * get a divisor adjustment of 1/16th on the baud clock. -+ * -+ * We don't keep the UDIVSLOT value (the 16ths we calculated -+ * by not multiplying the baud by 16) as it is easy enough -+ * to recalculate. -+ */ -+ -+ calc->quot = div / 16; -+ calc->calc = rate / div; -+ } else { -+ calc->quot = (rate + (8 * baud)) / (16 * baud); -+ calc->calc = (rate / (calc->quot * 16)); -+ } - - calc->quot--; - return 1; -@@ -617,6 +633,30 @@ static unsigned int s3c24xx_serial_getcl - return best->quot; - } - -+/* udivslot_table[] -+ * -+ * This table takes the fractional value of the baud divisor and gives -+ * the recommended setting for the UDIVSLOT register. -+ */ -+static u16 udivslot_table[16] = { -+ [0] = 0x0000, -+ [1] = 0x0080, -+ [2] = 0x0808, -+ [3] = 0x0888, -+ [4] = 0x2222, -+ [5] = 0x4924, -+ [6] = 0x4A52, -+ [7] = 0x54AA, -+ [8] = 0x5555, -+ [9] = 0xD555, -+ [10] = 0xD5D5, -+ [11] = 0xDDD5, -+ [12] = 0xDDDD, -+ [13] = 0xDFDD, -+ [14] = 0xDFDF, -+ [15] = 0xFFDF, -+}; -+ - static void s3c24xx_serial_set_termios(struct uart_port *port, - struct ktermios *termios, - struct ktermios *old) -@@ -629,6 +669,7 @@ static void s3c24xx_serial_set_termios(s - unsigned int baud, quot; - unsigned int ulcon; - unsigned int umcon; -+ unsigned int udivslot = 0; - - /* - * We don't support modem control lines. -@@ -650,6 +691,7 @@ static void s3c24xx_serial_set_termios(s - /* check to see if we need to change clock source */ - - if (ourport->clksrc != clksrc || ourport->baudclk != clk) { -+ dbg("selecting clock %p\n", clk); - s3c24xx_serial_setsource(port, clksrc); - - if (ourport->baudclk != NULL && !IS_ERR(ourport->baudclk)) { -@@ -661,6 +703,14 @@ static void s3c24xx_serial_set_termios(s - - ourport->clksrc = clksrc; - ourport->baudclk = clk; -+ ourport->baudclk_rate = clk ? clk_get_rate(clk) : 0; -+ } -+ -+ if (ourport->info->has_divslot) { -+ unsigned int div = ourport->baudclk_rate / baud; -+ -+ udivslot = udivslot_table[div & 15]; -+ dbg("udivslot = %04x (div %d)\n", udivslot, div & 15); - } - - switch (termios->c_cflag & CSIZE) { -@@ -702,12 +752,16 @@ static void s3c24xx_serial_set_termios(s - - spin_lock_irqsave(&port->lock, flags); - -- dbg("setting ulcon to %08x, brddiv to %d\n", ulcon, quot); -+ dbg("setting ulcon to %08x, brddiv to %d, udivslot %08x\n", -+ ulcon, quot, udivslot); - - wr_regl(port, S3C2410_ULCON, ulcon); - wr_regl(port, S3C2410_UBRDIV, quot); - wr_regl(port, S3C2410_UMCON, umcon); - -+ if (ourport->info->has_divslot) -+ wr_regl(port, S3C2443_DIVSLOT, udivslot); -+ - dbg("uart: ulcon = 0x%08x, ucon = 0x%08x, ufcon = 0x%08x\n", - rd_regl(port, S3C2410_ULCON), - rd_regl(port, S3C2410_UCON), -@@ -752,6 +806,8 @@ static const char *s3c24xx_serial_type(s - return "S3C2440"; - case PORT_S3C2412: - return "S3C2412"; -+ case PORT_S3C6400: -+ return "S3C6400/10"; - default: - return NULL; - } -@@ -827,14 +883,14 @@ static struct uart_ops s3c24xx_serial_op - static struct uart_driver s3c24xx_uart_drv = { - .owner = THIS_MODULE, - .dev_name = "s3c2410_serial", -- .nr = 3, -+ .nr = CONFIG_SERIAL_SAMSUNG_UARTS, - .cons = S3C24XX_SERIAL_CONSOLE, - .driver_name = S3C24XX_SERIAL_NAME, - .major = S3C24XX_SERIAL_MAJOR, - .minor = S3C24XX_SERIAL_MINOR, - }; - --static struct s3c24xx_uart_port s3c24xx_serial_ports[NR_PORTS] = { -+static struct s3c24xx_uart_port s3c24xx_serial_ports[CONFIG_SERIAL_SAMSUNG_UARTS] = { - [0] = { - .port = { - .lock = __SPIN_LOCK_UNLOCKED(s3c24xx_serial_ports[0].port.lock), -@@ -859,7 +915,7 @@ static struct s3c24xx_uart_port s3c24xx_ - .line = 1, - } - }, --#if NR_PORTS > 2 -+#if CONFIG_SERIAL_SAMSUNG_UARTS > 2 - - [2] = { - .port = { -@@ -872,10 +928,88 @@ static struct s3c24xx_uart_port s3c24xx_ - .flags = UPF_BOOT_AUTOCONF, - .line = 2, - } -+ }, -+#endif -+#if CONFIG_SERIAL_SAMSUNG_UARTS > 3 -+ [3] = { -+ .port = { -+ .lock = __SPIN_LOCK_UNLOCKED(s3c24xx_serial_ports[3].port.lock), -+ .iotype = UPIO_MEM, -+ .irq = IRQ_S3CUART_RX3, -+ .uartclk = 0, -+ .fifosize = 16, -+ .ops = &s3c24xx_serial_ops, -+ .flags = UPF_BOOT_AUTOCONF, -+ .line = 3, -+ } - } - #endif - }; - -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+static void s3c24xx_serial_force_debug_port_up(void) -+{ -+ struct s3c24xx_uart_port *ourport = &s3c24xx_serial_ports[ -+ CONFIG_DEBUG_S3C_UART]; -+ struct s3c24xx_uart_clksrc *clksrc = NULL; -+ struct clk *clk = NULL; -+ unsigned long tmp; -+ -+ s3c24xx_serial_getclk(&ourport->port, &clksrc, &clk, 115200); -+ -+ tmp = __raw_readl(S3C2410_CLKCON); -+ -+ /* re-start uart clocks */ -+ tmp |= S3C2410_CLKCON_UART0; -+ tmp |= S3C2410_CLKCON_UART1; -+ tmp |= S3C2410_CLKCON_UART2; -+ -+ __raw_writel(tmp, S3C2410_CLKCON); -+ udelay(10); -+ -+ s3c24xx_serial_setsource(&ourport->port, clksrc); -+ -+ if (ourport->baudclk != NULL && !IS_ERR(ourport->baudclk)) { -+ clk_disable(ourport->baudclk); -+ ourport->baudclk = NULL; -+ } -+ -+ clk_enable(clk); -+ -+ ourport->clksrc = clksrc; -+ ourport->baudclk = clk; -+} -+ -+static void s3c2410_printascii(const char *sz) -+{ -+ struct s3c24xx_uart_port *ourport = &s3c24xx_serial_ports[ -+ CONFIG_DEBUG_S3C_UART]; -+ struct uart_port *port = &ourport->port; -+ -+ /* 8 N 1 */ -+ wr_regl(port, S3C2410_ULCON, (rd_regl(port, S3C2410_ULCON)) | 3); -+ /* polling mode */ -+ wr_regl(port, S3C2410_UCON, (rd_regl(port, S3C2410_UCON) & ~0xc0f) | 5); -+ /* disable FIFO */ -+ wr_regl(port, S3C2410_UFCON, (rd_regl(port, S3C2410_UFCON) & ~0x01)); -+ /* fix baud rate */ -+ wr_regl(port, S3C2410_UBRDIV, 26); -+ -+ while (*sz) { -+ int timeout = 10000000; -+ -+ /* spin on it being busy */ -+ while ((!(rd_regl(port, S3C2410_UTRSTAT) & 2)) && timeout--) -+ ; -+ -+ /* transmit register */ -+ wr_regl(port, S3C2410_UTXH, *sz); -+ -+ sz++; -+ } -+} -+#endif -+ - /* s3c24xx_serial_resetport - * - * wrapper to call the specific reset for this port (reset the fifos -@@ -890,6 +1024,93 @@ static inline int s3c24xx_serial_resetpo - return (info->reset_port)(port, cfg); - } - -+ -+#ifdef CONFIG_CPU_FREQ -+ -+static int s3c24xx_serial_cpufreq_transition(struct notifier_block *nb, -+ unsigned long val, void *data) -+{ -+ struct s3c24xx_uart_port *port; -+ struct uart_port *uport; -+ -+ port = container_of(nb, struct s3c24xx_uart_port, freq_transition); -+ uport = &port->port; -+ -+ /* check to see if port is enabled */ -+ -+ if (port->pm_level != 0) -+ return 0; -+ -+ /* try and work out if the baudrate is changing, we can detect -+ * a change in rate, but we do not have support for detecting -+ * a disturbance in the clock-rate over the change. -+ */ -+ -+ if (IS_ERR(port->clk)) -+ goto exit; -+ -+ if (port->baudclk_rate == clk_get_rate(port->clk)) -+ goto exit; -+ -+ if (val == CPUFREQ_PRECHANGE) { -+ /* we should really shut the port down whilst the -+ * frequency change is in progress. */ -+ -+ } else if (val == CPUFREQ_POSTCHANGE) { -+ struct ktermios *termios; -+ struct tty_struct *tty; -+ -+ if (uport->info == NULL) { -+ printk(KERN_WARNING "%s: info NULL\n", __func__); -+ goto exit; -+ } -+ -+ tty = uport->info->port.tty; -+ -+ if (tty == NULL) { -+ printk(KERN_WARNING "%s: tty is NULL\n", __func__); -+ goto exit; -+ } -+ -+ termios = tty->termios; -+ -+ if (termios == NULL) { -+ printk(KERN_WARNING "%s: no termios?\n", __func__); -+ goto exit; -+ } -+ -+ s3c24xx_serial_set_termios(uport, termios, NULL); -+ } -+ -+ exit: -+ return 0; -+} -+ -+static inline int s3c24xx_serial_cpufreq_register(struct s3c24xx_uart_port *port) -+{ -+ port->freq_transition.notifier_call = s3c24xx_serial_cpufreq_transition; -+ -+ return cpufreq_register_notifier(&port->freq_transition, -+ CPUFREQ_TRANSITION_NOTIFIER); -+} -+ -+static inline void s3c24xx_serial_cpufreq_deregister(struct s3c24xx_uart_port *port) -+{ -+ cpufreq_unregister_notifier(&port->freq_transition, -+ CPUFREQ_TRANSITION_NOTIFIER); -+} -+ -+#else -+static inline int s3c24xx_serial_cpufreq_register(struct s3c24xx_uart_port *port) -+{ -+ return 0; -+} -+ -+static inline void s3c24xx_serial_cpufreq_deregister(struct s3c24xx_uart_port *port) -+{ -+} -+#endif -+ - /* s3c24xx_serial_init_port - * - * initialise a single serial port from the platform device given -@@ -914,8 +1135,11 @@ static int s3c24xx_serial_init_port(stru - if (port->mapbase != 0) - return 0; - -- if (cfg->hwport > 3) -- return -EINVAL; -+ if (cfg->hwport > CONFIG_SERIAL_SAMSUNG_UARTS) { -+ printk(KERN_ERR "%s: port %d bigger than %d\n", __func__, -+ cfg->hwport, CONFIG_SERIAL_SAMSUNG_UARTS); -+ return -ERANGE; -+ } - - /* setup info for port */ - port->dev = &platdev->dev; -@@ -943,18 +1167,26 @@ static int s3c24xx_serial_init_port(stru - - dbg("resource %p (%lx..%lx)\n", res, res->start, res->end); - -- port->mapbase = res->start; -- port->membase = S3C24XX_VA_UART + (res->start - S3C24XX_PA_UART); -+ port->mapbase = res->start; -+ port->membase = S3C_VA_UART + res->start - (S3C_PA_UART & 0xfff00000); - ret = platform_get_irq(platdev, 0); - if (ret < 0) - port->irq = 0; -- else -+ else { - port->irq = ret; -+ ourport->rx_irq = ret; -+ ourport->tx_irq = ret + 1; -+ } -+ -+ ret = platform_get_irq(platdev, 1); -+ if (ret > 0) -+ ourport->tx_irq = ret; - - ourport->clk = clk_get(&platdev->dev, "uart"); - -- dbg("port: map=%08x, mem=%08x, irq=%d, clock=%ld\n", -- port->mapbase, port->membase, port->irq, port->uartclk); -+ dbg("port: map=%08x, mem=%08x, irq=%d (%d,%d), clock=%ld\n", -+ port->mapbase, port->membase, port->irq, -+ ourport->rx_irq, ourport->tx_irq, port->uartclk); - - /* reset the fifos (and setup the uart) */ - s3c24xx_serial_resetport(port, cfg); -@@ -987,6 +1219,7 @@ int s3c24xx_serial_probe(struct platform - - ourport = &s3c24xx_serial_ports[probe_index]; - probe_index++; -+ init_resume_dependency_list(&ourport->resume_dependency); - - dbg("%s: initialising port %p...\n", __func__, ourport); - -@@ -1002,6 +1235,10 @@ int s3c24xx_serial_probe(struct platform - if (ret < 0) - printk(KERN_ERR "%s: failed to add clksrc attr.\n", __func__); - -+ ret = s3c24xx_serial_cpufreq_register(ourport); -+ if (ret < 0) -+ dev_err(&dev->dev, "failed to add cpufreq notifier\n"); -+ - return 0; - - probe_err: -@@ -1015,6 +1252,7 @@ int s3c24xx_serial_remove(struct platfor - struct uart_port *port = s3c24xx_dev_to_port(&dev->dev); - - if (port) { -+ s3c24xx_serial_cpufreq_deregister(to_ourport(port)); - device_remove_file(&dev->dev, &dev_attr_clock_source); - uart_remove_one_port(&s3c24xx_uart_drv, port); - } -@@ -1038,6 +1276,16 @@ static int s3c24xx_serial_suspend(struct - return 0; - } - -+void s3c24xx_serial_register_resume_dependency(struct resume_dependency * -+ resume_dependency, int uart_index) -+{ -+ struct s3c24xx_uart_port *ourport = &s3c24xx_serial_ports[uart_index]; -+ -+ register_resume_dependency(&ourport->resume_dependency, -+ resume_dependency); -+} -+EXPORT_SYMBOL(s3c24xx_serial_register_resume_dependency); -+ - static int s3c24xx_serial_resume(struct platform_device *dev) - { - struct uart_port *port = s3c24xx_dev_to_port(&dev->dev); -@@ -1049,6 +1297,9 @@ static int s3c24xx_serial_resume(struct - clk_disable(ourport->clk); - - uart_resume_port(&s3c24xx_uart_drv, port); -+ -+ callback_all_resume_dependencies(&ourport->resume_dependency); -+ - } - - return 0; -@@ -1059,6 +1310,12 @@ int s3c24xx_serial_init(struct platform_ - struct s3c24xx_uart_info *info) - { - dbg("s3c24xx_serial_init(%p,%p)\n", drv, info); -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+ /* set up the emergency debug UART functions */ -+ -+ printk_emergency_debug_spew_init = s3c24xx_serial_force_debug_port_up; -+ printk_emergency_debug_spew_send_string = s3c2410_printascii; -+#endif - - #ifdef CONFIG_PM - drv->suspend = s3c24xx_serial_suspend; -@@ -1098,6 +1355,13 @@ module_exit(s3c24xx_serial_modexit); - #ifdef CONFIG_SERIAL_SAMSUNG_CONSOLE - - static struct uart_port *cons_uart; -+static int cons_silenced; -+ -+void s3c24xx_serial_console_set_silence(int silenced) -+{ -+ cons_silenced = silenced; -+} -+EXPORT_SYMBOL(s3c24xx_serial_console_set_silence); - - static int - s3c24xx_serial_console_txrdy(struct uart_port *port, unsigned int ufcon) -@@ -1122,9 +1386,21 @@ static void - s3c24xx_serial_console_putchar(struct uart_port *port, int ch) - { - unsigned int ufcon = rd_regl(cons_uart, S3C2410_UFCON); -+ unsigned int umcon = rd_regl(cons_uart, S3C2410_UMCON); -+ -+ if (cons_silenced) -+ return; -+ -+ /* If auto HW flow control enabled, temporarily turn it off */ -+ if (umcon & S3C2410_UMCOM_AFC) -+ wr_regl(port, S3C2410_UMCON, (umcon & !S3C2410_UMCOM_AFC)); -+ - while (!s3c24xx_serial_console_txrdy(port, ufcon)) - barrier(); - wr_regb(cons_uart, S3C2410_UTXH, ch); -+ -+ if (umcon & S3C2410_UMCOM_AFC) -+ wr_regl(port, S3C2410_UMCON, umcon); - } - - static void -@@ -1219,7 +1495,7 @@ static int s3c24xx_serial_init_ports(str - - platdev_ptr = s3c24xx_uart_devs; - -- for (i = 0; i < NR_PORTS; i++, ptr++, platdev_ptr++) { -+ for (i = 0; i < CONFIG_SERIAL_SAMSUNG_UARTS; i++, ptr++, platdev_ptr++) { - s3c24xx_serial_init_port(ptr, info, *platdev_ptr); - } - -@@ -1240,7 +1516,7 @@ s3c24xx_serial_console_setup(struct cons - - /* is this a valid port */ - -- if (co->index == -1 || co->index >= NR_PORTS) -+ if (co->index == -1 || co->index >= CONFIG_SERIAL_SAMSUNG_UARTS) - co->index = 0; - - port = &s3c24xx_serial_ports[co->index].port; ---- a/drivers/serial/samsung.h -+++ b/drivers/serial/samsung.h -@@ -10,6 +10,8 @@ - * published by the Free Software Foundation. - */ - -+#include <linux/resume-dependency.h> -+ - struct s3c24xx_uart_info { - char *name; - unsigned int type; -@@ -21,6 +23,10 @@ struct s3c24xx_uart_info { - unsigned long tx_fifoshift; - unsigned long tx_fifofull; - -+ /* uart port features */ -+ -+ unsigned int has_divslot:1; -+ - /* clock source control */ - - int (*get_clksrc)(struct uart_port *, struct s3c24xx_uart_clksrc *clk); -@@ -33,12 +39,23 @@ struct s3c24xx_uart_info { - struct s3c24xx_uart_port { - unsigned char rx_claimed; - unsigned char tx_claimed; -+ unsigned int pm_level; -+ unsigned long baudclk_rate; -+ -+ unsigned int rx_irq; -+ unsigned int tx_irq; - - struct s3c24xx_uart_info *info; - struct s3c24xx_uart_clksrc *clksrc; - struct clk *clk; - struct clk *baudclk; - struct uart_port port; -+ -+#ifdef CONFIG_CPU_FREQ -+ struct notifier_block freq_transition; -+#endif -+ -+ struct resume_dependency resume_dependency; - }; - - /* conversion functions */ ---- a/drivers/spi/spi_s3c24xx.c -+++ b/drivers/spi/spi_s3c24xx.c -@@ -28,7 +28,7 @@ - #include <mach/hardware.h> - - #include <mach/regs-gpio.h> --#include <asm/plat-s3c24xx/regs-spi.h> -+#include <plat/regs-spi.h> - #include <mach/spi.h> - - struct s3c24xx_spi { ---- a/drivers/spi/spi_s3c24xx_gpio.c -+++ b/drivers/spi/spi_s3c24xx_gpio.c -@@ -91,7 +91,7 @@ static void s3c2410_spigpio_chipselect(s - struct s3c2410_spigpio *sg = spidev_to_sg(dev); - - if (sg->info && sg->info->chip_select) -- (sg->info->chip_select)(sg->info, value); -+ (sg->info->chip_select)(sg->info, dev->chip_select, value); - } - - static int s3c2410_spigpio_probe(struct platform_device *dev) -@@ -100,6 +100,7 @@ static int s3c2410_spigpio_probe(struct - struct spi_master *master; - struct s3c2410_spigpio *sp; - int ret; -+ int i; - - master = spi_alloc_master(&dev->dev, sizeof(struct s3c2410_spigpio)); - if (master == NULL) { -@@ -112,9 +113,11 @@ static int s3c2410_spigpio_probe(struct - - platform_set_drvdata(dev, sp); - -- /* copy in the plkatform data */ -+ /* copy in the platform data */ - info = sp->info = dev->dev.platform_data; - -+ master->num_chipselect = info->num_chipselect; -+ - /* setup spi bitbang adaptor */ - sp->bitbang.master = spi_master_get(master); - sp->bitbang.master->bus_num = info->bus_num; -@@ -143,6 +146,22 @@ static int s3c2410_spigpio_probe(struct - if (ret) - goto err_no_bitbang; - -+ /* register the chips to go with the board */ -+ -+ for (i = 0; i < sp->info->board_size; i++) { -+ struct spi_device *spidev; -+ -+ dev_info(&dev->dev, "registering %p: %s\n", -+ &sp->info->board_info[i], -+ sp->info->board_info[i].modalias); -+ -+ sp->info->board_info[i].controller_data = sp; -+ spidev = spi_new_device(master, sp->info->board_info + i); -+ if (spidev) -+ spidev->max_speed_hz = -+ sp->info->board_info[i].max_speed_hz; -+ } -+ - return 0; - - err_no_bitbang: ---- a/drivers/usb/gadget/composite.c -+++ b/drivers/usb/gadget/composite.c -@@ -1045,7 +1045,11 @@ composite_resume(struct usb_gadget *gadg - /*-------------------------------------------------------------------------*/ - - static struct usb_gadget_driver composite_driver = { -+#ifdef CONFIG_USB_GADGET_DUALSPEED - .speed = USB_SPEED_HIGH, -+#else -+ .speed = USB_SPEED_FULL, -+#endif - - .bind = composite_bind, - .unbind = __exit_p(composite_unbind), ---- a/drivers/usb/gadget/ether.c -+++ b/drivers/usb/gadget/ether.c -@@ -122,11 +122,16 @@ static inline bool has_rndis(void) - * Instead: allocate your own, using normal USB-IF procedures. - */ - -+#if 0 - /* Thanks to NetChip Technologies for donating this product ID. - * It's for devices with only CDC Ethernet configurations. - */ - #define CDC_VENDOR_NUM 0x0525 /* NetChip */ - #define CDC_PRODUCT_NUM 0xa4a1 /* Linux-USB Ethernet Gadget */ -+#else -+#define CDC_VENDOR_NUM 0x1457 /* First International Computer */ -+#define CDC_PRODUCT_NUM 0x5117 /* Linux-USB Ethernet Gadget */ -+#endif - - /* For hardware that can't talk CDC, we use the same vendor ID that - * ARM Linux has used for ethernet-over-usb, both with sa1100 and -@@ -147,8 +152,8 @@ static inline bool has_rndis(void) - * used with CDC Ethernet, Linux 2.4 hosts will need updates to choose - * the non-RNDIS configuration. - */ --#define RNDIS_VENDOR_NUM 0x0525 /* NetChip */ --#define RNDIS_PRODUCT_NUM 0xa4a2 /* Ethernet/RNDIS Gadget */ -+#define RNDIS_VENDOR_NUM 0x1457 /* NetChip */ -+#define RNDIS_PRODUCT_NUM 0x5122 /* Ethernet/RNDIS Gadget */ - - /*-------------------------------------------------------------------------*/ - ---- a/drivers/usb/gadget/s3c2410_udc.c -+++ b/drivers/usb/gadget/s3c2410_udc.c -@@ -53,8 +53,8 @@ - #include <mach/hardware.h> - #include <mach/regs-gpio.h> - --#include <asm/plat-s3c24xx/regs-udc.h> --#include <asm/plat-s3c24xx/udc.h> -+#include <plat/regs-udc.h> -+#include <plat/udc.h> - - - #include "s3c2410_udc.h" -@@ -134,6 +134,8 @@ static int dprintk(int level, const char - return 0; - } - #endif -+ -+#ifdef CONFIG_USB_GADGET_DEBUG_FS - static int s3c2410_udc_debugfs_seq_show(struct seq_file *m, void *p) - { - u32 addr_reg,pwr_reg,ep_int_reg,usb_int_reg; -@@ -197,6 +199,7 @@ static const struct file_operations s3c2 - .release = single_release, - .owner = THIS_MODULE, - }; -+#endif - - /* io macros */ - -@@ -843,6 +846,7 @@ static void s3c2410_udc_handle_ep(struct - u32 ep_csr1; - u32 idx; - -+handle_ep_again: - if (likely (!list_empty(&ep->queue))) - req = list_entry(ep->queue.next, - struct s3c2410_request, queue); -@@ -882,6 +886,8 @@ static void s3c2410_udc_handle_ep(struct - - if ((ep_csr1 & S3C2410_UDC_OCSR1_PKTRDY) && req) { - s3c2410_udc_read_fifo(ep,req); -+ if (s3c2410_udc_fifo_count_out()) -+ goto handle_ep_again; - } - } - } -@@ -1890,6 +1896,7 @@ static int s3c2410_udc_probe(struct plat - udc->vbus = 1; - } - -+#ifdef CONFIG_USB_GADGET_DEBUG_FS - if (s3c2410_udc_debugfs_root) { - udc->regs_info = debugfs_create_file("registers", S_IRUGO, - s3c2410_udc_debugfs_root, -@@ -1897,6 +1904,7 @@ static int s3c2410_udc_probe(struct plat - if (!udc->regs_info) - dev_warn(dev, "debugfs file creation failed\n"); - } -+#endif - - dev_dbg(dev, "probe ok\n"); - -@@ -2003,12 +2011,14 @@ static int __init udc_init(void) - - dprintk(DEBUG_NORMAL, "%s: version %s\n", gadget_name, DRIVER_VERSION); - -+#ifdef CONFIG_USB_GADGET_DEBUG_FS - s3c2410_udc_debugfs_root = debugfs_create_dir(gadget_name, NULL); - if (IS_ERR(s3c2410_udc_debugfs_root)) { - printk(KERN_ERR "%s: debugfs dir creation failed %ld\n", - gadget_name, PTR_ERR(s3c2410_udc_debugfs_root)); - s3c2410_udc_debugfs_root = NULL; - } -+#endif - - retval = platform_driver_register(&udc_driver_2410); - if (retval) ---- a/drivers/usb/host/ohci-s3c2410.c -+++ b/drivers/usb/host/ohci-s3c2410.c -@@ -24,6 +24,7 @@ - - #include <mach/hardware.h> - #include <mach/usb-control.h> -+#include <mach/regs-gpio.h> - - #define valid_port(idx) ((idx) == 1 || (idx) == 2) - -@@ -308,6 +309,42 @@ static void s3c2410_hcd_oc(struct s3c241 - local_irq_restore(flags); - } - -+/* switching of USB pads */ -+static ssize_t show_usb_mode(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ if (__raw_readl(S3C24XX_MISCCR) & S3C2410_MISCCR_USBHOST) -+ return sprintf(buf, "host\n"); -+ -+ return sprintf(buf, "device\n"); -+} -+ -+static ssize_t set_usb_mode(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ if (!strncmp(buf, "host", 4)) { -+ printk("s3c2410: changing usb to host\n"); -+ s3c2410_modify_misccr(S3C2410_MISCCR_USBHOST, -+ S3C2410_MISCCR_USBHOST); -+ /* FIXME: -+ * - call machine-specific disable-pullup function i -+ * - enable +Vbus (if hardware supports it) -+ */ -+ s3c2410_gpio_setpin(S3C2410_GPB9, 0); -+ } else if (!strncmp(buf, "device", 6)) { -+ printk("s3c2410: changing usb to device\n"); -+ s3c2410_modify_misccr(S3C2410_MISCCR_USBHOST, 0); -+ s3c2410_gpio_setpin(S3C2410_GPB9, 1); -+ } else { -+ printk("s3c2410: unknown mode\n"); -+ return -EINVAL; -+ } -+ -+ return count; -+} -+ -+static DEVICE_ATTR(usb_mode, S_IRUGO | S_IWUSR, show_usb_mode, set_usb_mode); -+ - /* may be called without controller electrically present */ - /* may be called with controller, bus, and devices active */ - -@@ -325,6 +362,7 @@ static void s3c2410_hcd_oc(struct s3c241 - static void - usb_hcd_s3c2410_remove (struct usb_hcd *hcd, struct platform_device *dev) - { -+ device_remove_file(&dev->dev, &dev_attr_usb_mode); - usb_remove_hcd(hcd); - s3c2410_stop_hc(dev); - iounmap(hcd->regs); -@@ -392,8 +430,15 @@ static int usb_hcd_s3c2410_probe (const - if (retval != 0) - goto err_ioremap; - -+ retval = device_create_file(&dev->dev, &dev_attr_usb_mode); -+ if (retval != 0) -+ goto err_hcd; -+ - return 0; - -+ err_hcd: -+ usb_remove_hcd(hcd); -+ - err_ioremap: - s3c2410_stop_hc(dev); - iounmap(hcd->regs); ---- /dev/null -+++ b/drivers/video/backlight/gta01_bl.c -@@ -0,0 +1,269 @@ -+/* -+ * Backlight Driver for FIC GTA01 (Neo1973) GSM Phone -+ * -+ * Copyright (C) 2006-2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * based on corgi_cl.c, Copyright (c) 2004-2006 Richard Purdie -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation, version 2. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ * Javi Roman <javiroman@kernel-labs.org>: -+ * implement PWM, instead of simple on/off switching -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/kernel.h> -+#include <linux/init.h> -+#include <linux/platform_device.h> -+#include <linux/mutex.h> -+#include <linux/fb.h> -+#include <linux/backlight.h> -+#include <linux/clk.h> -+ -+#include <mach/hardware.h> -+#include <mach/gta01.h> -+#include <mach/pwm.h> -+ -+#include <plat/regs-timer.h> -+#include <asm/plat-s3c24xx/neo1973.h> -+ -+static struct backlight_properties gta01bl_prop; -+static struct backlight_device *gta01_backlight_device; -+static struct gta01bl_machinfo *bl_machinfo; -+ -+static unsigned long gta01bl_flags; -+ -+struct gta01bl_data { -+ int intensity; -+ struct mutex mutex; -+ struct clk *clk; -+ struct s3c2410_pwm pwm; -+}; -+ -+static struct gta01bl_data gta01bl; -+ -+static int gta01bl_defer_resume_backlight; -+ -+#define GTA01BL_SUSPENDED 0x01 -+#define GTA01BL_BATTLOW 0x02 -+ -+/* On the GTA01 / Neo1973, we use a 50 or 66MHz PCLK, which gives -+ * us a 6.25..8.25MHz DIV8 clock, which is further divided by a -+ * prescaler of 4, resulting in a 1.56..2.06MHz tick. This results in a -+ * minimum frequency of 24..31Hz. At 400Hz, we need to set the count -+ * to something like 3906..5156, providing us a way sufficient resolution -+ * for display brightness adjustment. */ -+#define GTA01BL_COUNTER 5156 -+ -+static int gta01bl_send_intensity(struct backlight_device *bd) -+{ -+ int intensity = bd->props.brightness; -+ -+ if (bd->props.power != FB_BLANK_UNBLANK) -+ intensity = 0; -+ if (bd->props.fb_blank != FB_BLANK_UNBLANK) -+ intensity = 0; -+ if (gta01bl_flags & GTA01BL_SUSPENDED) -+ intensity = 0; -+ if (gta01bl_flags & GTA01BL_BATTLOW) -+ intensity &= bl_machinfo->limit_mask; -+ -+ mutex_lock(>a01bl.mutex); -+#ifdef GTA01_BACKLIGHT_ONOFF_ONLY -+ if (intensity) -+ neo1973_gpb_setpin(GTA01_GPIO_BACKLIGHT, 1); -+ else -+ neo1973_gpb_setpin(GTA01_GPIO_BACKLIGHT, 0); -+#else -+ if (intensity == bd->props.max_brightness) { -+ neo1973_gpb_setpin(GTA01_GPIO_BACKLIGHT, 1); -+ s3c2410_gpio_cfgpin(GTA01_GPIO_BACKLIGHT, S3C2410_GPIO_OUTPUT); -+ } else { -+ s3c2410_pwm_duty_cycle(intensity & 0xffff, >a01bl.pwm); -+ s3c2410_gpio_cfgpin(GTA01_GPIO_BACKLIGHT, S3C2410_GPB0_TOUT0); -+ } -+#endif -+ mutex_unlock(>a01bl.mutex); -+ -+ gta01bl.intensity = intensity; -+ return 0; -+} -+ -+static int gta01bl_init_hw(void) -+{ -+ int rc; -+ -+ rc = s3c2410_pwm_init(>a01bl.pwm); -+ if (rc) -+ return rc; -+ -+ gta01bl.pwm.timerid = PWM0; -+ gta01bl.pwm.prescaler = (4 - 1); -+ gta01bl.pwm.divider = S3C2410_TCFG1_MUX0_DIV8; -+ gta01bl.pwm.counter = GTA01BL_COUNTER; -+ gta01bl.pwm.comparer = gta01bl.pwm.counter; -+ -+ rc = s3c2410_pwm_enable(>a01bl.pwm); -+ if (rc) -+ return rc; -+ -+ s3c2410_pwm_start(>a01bl.pwm); -+ -+ gta01bl_prop.max_brightness = gta01bl.pwm.counter; -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+static int gta01bl_suspend(struct platform_device *dev, pm_message_t state) -+{ -+ gta01bl_flags |= GTA01BL_SUSPENDED; -+ gta01bl_send_intensity(gta01_backlight_device); -+ neo1973_gpb_setpin(GTA01_GPIO_BACKLIGHT, 0); -+ s3c2410_gpio_cfgpin(GTA01_GPIO_BACKLIGHT, S3C2410_GPIO_OUTPUT); -+ return 0; -+} -+ -+void gta01bl_deferred_resume(void) -+{ -+ mutex_lock(>a01bl.mutex); -+ gta01bl_init_hw(); -+ mutex_unlock(>a01bl.mutex); -+ -+ gta01bl_flags &= ~GTA01BL_SUSPENDED; -+ gta01bl_send_intensity(gta01_backlight_device); -+} -+EXPORT_SYMBOL_GPL(gta01bl_deferred_resume); -+ -+static int gta01bl_resume(struct platform_device *dev) -+{ -+ if (!gta01bl_defer_resume_backlight) -+ gta01bl_deferred_resume(); -+ return 0; -+} -+#else -+#define gta01bl_suspend NULL -+#define gta01bl_resume NULL -+#endif -+ -+static int gta01bl_get_intensity(struct backlight_device *bd) -+{ -+ return gta01bl.intensity; -+} -+ -+static int gta01bl_set_intensity(struct backlight_device *bd) -+{ -+ gta01bl_send_intensity(gta01_backlight_device); -+ return 0; -+} -+ -+/* -+ * Called when the battery is low to limit the backlight intensity. -+ * If limit==0 clear any limit, otherwise limit the intensity -+ */ -+void gta01bl_limit_intensity(int limit) -+{ -+ if (limit) -+ gta01bl_flags |= GTA01BL_BATTLOW; -+ else -+ gta01bl_flags &= ~GTA01BL_BATTLOW; -+ gta01bl_send_intensity(gta01_backlight_device); -+} -+EXPORT_SYMBOL_GPL(gta01bl_limit_intensity); -+ -+ -+static struct backlight_ops gta01bl_ops = { -+ .get_brightness = gta01bl_get_intensity, -+ .update_status = gta01bl_set_intensity, -+}; -+ -+static int __init gta01bl_probe(struct platform_device *pdev) -+{ -+ struct gta01bl_machinfo *machinfo = pdev->dev.platform_data; -+ int rc; -+ -+#ifdef GTA01_BACKLIGHT_ONOFF_ONLY -+ s3c2410_gpio_cfgpin(GTA01_GPIO_BACKLIGHT, S3C2410_GPIO_OUTPUT); -+ gta01bl_prop.max_brightness = 1; -+#else -+ rc = gta01bl_init_hw(); -+ if (rc < 0) -+ return rc; -+#endif -+ mutex_init(>a01bl.mutex); -+ -+ if (!machinfo->limit_mask) -+ machinfo->limit_mask = -1; -+ -+ gta01bl_defer_resume_backlight = machinfo->defer_resume_backlight; -+ -+ gta01_backlight_device = backlight_device_register("gta01-bl", -+ &pdev->dev, NULL, -+ >a01bl_ops); -+ if (IS_ERR(gta01_backlight_device)) -+ return PTR_ERR(gta01_backlight_device); -+ -+ gta01bl_prop.power = FB_BLANK_UNBLANK; -+ gta01bl_prop.brightness = gta01bl_prop.max_brightness; -+ memcpy(>a01_backlight_device->props, -+ >a01bl_prop, sizeof(gta01bl_prop)); -+ gta01bl_send_intensity(gta01_backlight_device); -+ -+ return 0; -+} -+ -+static int gta01bl_remove(struct platform_device *dev) -+{ -+#ifndef GTA01_BACKLIGHT_ONOFF_ONLY -+ s3c2410_pwm_disable(>a01bl.pwm); -+#endif -+ backlight_device_unregister(gta01_backlight_device); -+ mutex_destroy(>a01bl.mutex); -+ -+ s3c2410_gpio_cfgpin(GTA01_GPIO_BACKLIGHT, S3C2410_GPIO_OUTPUT); -+ neo1973_gpb_setpin(GTA01_GPIO_BACKLIGHT, 1); -+ -+ return 0; -+} -+ -+static struct platform_driver gta01bl_driver = { -+ .probe = gta01bl_probe, -+ .remove = gta01bl_remove, -+ .suspend = gta01bl_suspend, -+ .resume = gta01bl_resume, -+ .driver = { -+ .name = "gta01-bl", -+ }, -+}; -+ -+static int __init gta01bl_init(void) -+{ -+ return platform_driver_register(>a01bl_driver); -+} -+ -+static void __exit gta01bl_exit(void) -+{ -+ platform_driver_unregister(>a01bl_driver); -+} -+ -+module_init(gta01bl_init); -+module_exit(gta01bl_exit); -+ -+MODULE_DESCRIPTION("FIC GTA01 (Neo1973) Backlight Driver"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_LICENSE("GPL"); ---- a/drivers/video/backlight/Kconfig -+++ b/drivers/video/backlight/Kconfig -@@ -152,6 +152,13 @@ config BACKLIGHT_OMAP1 - the PWL module of OMAP1 processors. Say Y if your board - uses this hardware. - -+config BACKLIGHT_GTA01 -+ tristate "FIC Neo1973 GTA01 Backlight Driver" -+ depends on BACKLIGHT_CLASS_DEVICE && MACH_NEO1973_GTA01 -+ default y -+ help -+ If you have a FIC Neo1973 GTA01, say y to enable the backlight driver. -+ - config BACKLIGHT_HP680 - tristate "HP Jornada 680 Backlight Driver" - depends on BACKLIGHT_CLASS_DEVICE && SH_HP6XX ---- a/drivers/video/backlight/Makefile -+++ b/drivers/video/backlight/Makefile -@@ -12,6 +12,7 @@ obj-$(CONFIG_LCD_TOSA) += tosa_lcd.o - obj-$(CONFIG_BACKLIGHT_CLASS_DEVICE) += backlight.o - obj-$(CONFIG_BACKLIGHT_ATMEL_PWM) += atmel-pwm-bl.o - obj-$(CONFIG_BACKLIGHT_CORGI) += corgi_bl.o -+obj-$(CONFIG_BACKLIGHT_GTA01) += gta01_bl.o - obj-$(CONFIG_BACKLIGHT_HP680) += hp680_bl.o - obj-$(CONFIG_BACKLIGHT_LOCOMO) += locomolcd.o - obj-$(CONFIG_BACKLIGHT_OMAP1) += omap1_bl.o ---- a/drivers/video/console/fbcon.c -+++ b/drivers/video/console/fbcon.c -@@ -401,6 +401,9 @@ static void fb_flashcursor(struct work_s - int c; - int mode; - -+ if (info->state != FBINFO_STATE_RUNNING) -+ return; -+ - acquire_console_sem(); - if (ops && ops->currcon != -1) - vc = vc_cons[ops->currcon].d; -@@ -3225,13 +3228,17 @@ static void fbcon_get_requirement(struct - static int fbcon_event_notify(struct notifier_block *self, - unsigned long action, void *data) - { -- struct fb_event *event = data; -- struct fb_info *info = event->info; -+ struct fb_event *event; -+ struct fb_info *info; - struct fb_videomode *mode; - struct fb_con2fbmap *con2fb; - struct fb_blit_caps *caps; - int ret = 0; - -+ printk(KERN_INFO "fbcon_event_notify action=%ld, data=%p\n", action, data); -+ -+ event = data; -+ info = event->info; - /* - * ignore all events except driver registration and deregistration - * if fbcon is not active ---- /dev/null -+++ b/drivers/video/display/jbt6k74.c -@@ -0,0 +1,809 @@ -+/* Linux kernel driver for the tpo JBT6K74-AS LCM ASIC -+ * -+ * Copyright (C) 2006-2007 by Openmoko, Inc. -+ * Author: Harald Welte <laforge@openmoko.org>, -+ * Stefan Schmidt <stefan@openmoko.org> -+ * Copyright (C) 2008 by Harald Welte <laforge@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+ -+#include <linux/kernel.h> -+#include <linux/types.h> -+#include <linux/module.h> -+#include <linux/device.h> -+#include <linux/platform_device.h> -+#include <linux/delay.h> -+#include <linux/jbt6k74.h> -+#include <linux/fb.h> -+ -+enum jbt_register { -+ JBT_REG_SLEEP_IN = 0x10, -+ JBT_REG_SLEEP_OUT = 0x11, -+ -+ JBT_REG_DISPLAY_OFF = 0x28, -+ JBT_REG_DISPLAY_ON = 0x29, -+ -+ JBT_REG_RGB_FORMAT = 0x3a, -+ JBT_REG_QUAD_RATE = 0x3b, -+ -+ JBT_REG_POWER_ON_OFF = 0xb0, -+ JBT_REG_BOOSTER_OP = 0xb1, -+ JBT_REG_BOOSTER_MODE = 0xb2, -+ JBT_REG_BOOSTER_FREQ = 0xb3, -+ JBT_REG_OPAMP_SYSCLK = 0xb4, -+ JBT_REG_VSC_VOLTAGE = 0xb5, -+ JBT_REG_VCOM_VOLTAGE = 0xb6, -+ JBT_REG_EXT_DISPL = 0xb7, -+ JBT_REG_OUTPUT_CONTROL = 0xb8, -+ JBT_REG_DCCLK_DCEV = 0xb9, -+ JBT_REG_DISPLAY_MODE1 = 0xba, -+ JBT_REG_DISPLAY_MODE2 = 0xbb, -+ JBT_REG_DISPLAY_MODE = 0xbc, -+ JBT_REG_ASW_SLEW = 0xbd, -+ JBT_REG_DUMMY_DISPLAY = 0xbe, -+ JBT_REG_DRIVE_SYSTEM = 0xbf, -+ -+ JBT_REG_SLEEP_OUT_FR_A = 0xc0, -+ JBT_REG_SLEEP_OUT_FR_B = 0xc1, -+ JBT_REG_SLEEP_OUT_FR_C = 0xc2, -+ JBT_REG_SLEEP_IN_LCCNT_D = 0xc3, -+ JBT_REG_SLEEP_IN_LCCNT_E = 0xc4, -+ JBT_REG_SLEEP_IN_LCCNT_F = 0xc5, -+ JBT_REG_SLEEP_IN_LCCNT_G = 0xc6, -+ -+ JBT_REG_GAMMA1_FINE_1 = 0xc7, -+ JBT_REG_GAMMA1_FINE_2 = 0xc8, -+ JBT_REG_GAMMA1_INCLINATION = 0xc9, -+ JBT_REG_GAMMA1_BLUE_OFFSET = 0xca, -+ -+ /* VGA */ -+ JBT_REG_BLANK_CONTROL = 0xcf, -+ JBT_REG_BLANK_TH_TV = 0xd0, -+ JBT_REG_CKV_ON_OFF = 0xd1, -+ JBT_REG_CKV_1_2 = 0xd2, -+ JBT_REG_OEV_TIMING = 0xd3, -+ JBT_REG_ASW_TIMING_1 = 0xd4, -+ JBT_REG_ASW_TIMING_2 = 0xd5, -+ -+ /* QVGA */ -+ JBT_REG_BLANK_CONTROL_QVGA = 0xd6, -+ JBT_REG_BLANK_TH_TV_QVGA = 0xd7, -+ JBT_REG_CKV_ON_OFF_QVGA = 0xd8, -+ JBT_REG_CKV_1_2_QVGA = 0xd9, -+ JBT_REG_OEV_TIMING_QVGA = 0xde, -+ JBT_REG_ASW_TIMING_1_QVGA = 0xdf, -+ JBT_REG_ASW_TIMING_2_QVGA = 0xe0, -+ -+ -+ JBT_REG_HCLOCK_VGA = 0xec, -+ JBT_REG_HCLOCK_QVGA = 0xed, -+ -+}; -+ -+enum jbt_state { -+ JBT_STATE_DEEP_STANDBY, -+ JBT_STATE_SLEEP, -+ JBT_STATE_NORMAL, -+ JBT_STATE_QVGA_NORMAL, -+}; -+ -+static const char *jbt_state_names[] = { -+ [JBT_STATE_DEEP_STANDBY] = "deep-standby", -+ [JBT_STATE_SLEEP] = "sleep", -+ [JBT_STATE_NORMAL] = "normal", -+ [JBT_STATE_QVGA_NORMAL] = "qvga-normal", -+}; -+ -+struct jbt_info { -+ enum jbt_state state, last_state; -+ struct spi_device *spi_dev; -+ struct mutex lock; /* protects tx_buf and reg_cache */ -+ struct notifier_block fb_notif; -+ u16 tx_buf[8]; -+ u16 reg_cache[0xEE]; -+ int have_resumed; -+}; -+ -+#define JBT_COMMAND 0x000 -+#define JBT_DATA 0x100 -+ -+ -+static int jbt_reg_write_nodata(struct jbt_info *jbt, u8 reg) -+{ -+ int rc; -+ -+ mutex_lock(&jbt->lock); -+ -+ jbt->tx_buf[0] = JBT_COMMAND | reg; -+ rc = spi_write(jbt->spi_dev, (u8 *)jbt->tx_buf, -+ 1*sizeof(u16)); -+ if (rc == 0) -+ jbt->reg_cache[reg] = 0; -+ else -+ printk(KERN_ERR"jbt_reg_write_nodata spi_write ret %d\n", -+ rc); -+ -+ mutex_unlock(&jbt->lock); -+ -+ return rc; -+} -+ -+ -+static int jbt_reg_write(struct jbt_info *jbt, u8 reg, u8 data) -+{ -+ int rc; -+ -+ mutex_lock(&jbt->lock); -+ -+ jbt->tx_buf[0] = JBT_COMMAND | reg; -+ jbt->tx_buf[1] = JBT_DATA | data; -+ rc = spi_write(jbt->spi_dev, (u8 *)jbt->tx_buf, -+ 2*sizeof(u16)); -+ if (rc == 0) -+ jbt->reg_cache[reg] = data; -+ else -+ printk(KERN_ERR"jbt_reg_write spi_write ret %d\n", rc); -+ -+ mutex_unlock(&jbt->lock); -+ -+ return rc; -+} -+ -+static int jbt_reg_write16(struct jbt_info *jbt, u8 reg, u16 data) -+{ -+ int rc; -+ -+ mutex_lock(&jbt->lock); -+ -+ jbt->tx_buf[0] = JBT_COMMAND | reg; -+ jbt->tx_buf[1] = JBT_DATA | (data >> 8); -+ jbt->tx_buf[2] = JBT_DATA | (data & 0xff); -+ -+ rc = spi_write(jbt->spi_dev, (u8 *)jbt->tx_buf, -+ 3*sizeof(u16)); -+ if (rc == 0) -+ jbt->reg_cache[reg] = data; -+ else -+ printk(KERN_ERR"jbt_reg_write16 spi_write ret %d\n", rc); -+ -+ mutex_unlock(&jbt->lock); -+ -+ return rc; -+} -+ -+static int jbt_init_regs(struct jbt_info *jbt, int qvga) -+{ -+ int rc; -+ -+ dev_dbg(&jbt->spi_dev->dev, "entering %cVGA mode\n", qvga ? 'Q' : ' '); -+ -+ rc = jbt_reg_write(jbt, JBT_REG_DISPLAY_MODE1, 0x01); -+ rc |= jbt_reg_write(jbt, JBT_REG_DISPLAY_MODE2, 0x00); -+ rc |= jbt_reg_write(jbt, JBT_REG_RGB_FORMAT, 0x60); -+ rc |= jbt_reg_write(jbt, JBT_REG_DRIVE_SYSTEM, 0x10); -+ rc |= jbt_reg_write(jbt, JBT_REG_BOOSTER_OP, 0x56); -+ rc |= jbt_reg_write(jbt, JBT_REG_BOOSTER_MODE, 0x33); -+ rc |= jbt_reg_write(jbt, JBT_REG_BOOSTER_FREQ, 0x11); -+ rc |= jbt_reg_write(jbt, JBT_REG_OPAMP_SYSCLK, 0x02); -+ rc |= jbt_reg_write(jbt, JBT_REG_VSC_VOLTAGE, 0x2b); -+ rc |= jbt_reg_write(jbt, JBT_REG_VCOM_VOLTAGE, 0x40); -+ rc |= jbt_reg_write(jbt, JBT_REG_EXT_DISPL, 0x03); -+ rc |= jbt_reg_write(jbt, JBT_REG_DCCLK_DCEV, 0x04); -+ /* -+ * default of 0x02 in JBT_REG_ASW_SLEW responsible for 72Hz requirement -+ * to avoid red / blue flicker -+ */ -+ rc |= jbt_reg_write(jbt, JBT_REG_ASW_SLEW, 0x04); -+ rc |= jbt_reg_write(jbt, JBT_REG_DUMMY_DISPLAY, 0x00); -+ -+ rc |= jbt_reg_write(jbt, JBT_REG_SLEEP_OUT_FR_A, 0x11); -+ rc |= jbt_reg_write(jbt, JBT_REG_SLEEP_OUT_FR_B, 0x11); -+ rc |= jbt_reg_write(jbt, JBT_REG_SLEEP_OUT_FR_C, 0x11); -+ rc |= jbt_reg_write16(jbt, JBT_REG_SLEEP_IN_LCCNT_D, 0x2040); -+ rc |= jbt_reg_write16(jbt, JBT_REG_SLEEP_IN_LCCNT_E, 0x60c0); -+ rc |= jbt_reg_write16(jbt, JBT_REG_SLEEP_IN_LCCNT_F, 0x1020); -+ rc |= jbt_reg_write16(jbt, JBT_REG_SLEEP_IN_LCCNT_G, 0x60c0); -+ -+ rc |= jbt_reg_write16(jbt, JBT_REG_GAMMA1_FINE_1, 0x5533); -+ rc |= jbt_reg_write(jbt, JBT_REG_GAMMA1_FINE_2, 0x00); -+ rc |= jbt_reg_write(jbt, JBT_REG_GAMMA1_INCLINATION, 0x00); -+ rc |= jbt_reg_write(jbt, JBT_REG_GAMMA1_BLUE_OFFSET, 0x00); -+ -+ if (!qvga) { -+ rc |= jbt_reg_write16(jbt, JBT_REG_HCLOCK_VGA, 0x1f0); -+ rc |= jbt_reg_write(jbt, JBT_REG_BLANK_CONTROL, 0x02); -+ rc |= jbt_reg_write16(jbt, JBT_REG_BLANK_TH_TV, 0x0804); -+ -+ rc |= jbt_reg_write(jbt, JBT_REG_CKV_ON_OFF, 0x01); -+ rc |= jbt_reg_write16(jbt, JBT_REG_CKV_1_2, 0x0000); -+ -+ rc |= jbt_reg_write16(jbt, JBT_REG_OEV_TIMING, 0x0d0e); -+ rc |= jbt_reg_write16(jbt, JBT_REG_ASW_TIMING_1, 0x11a4); -+ rc |= jbt_reg_write(jbt, JBT_REG_ASW_TIMING_2, 0x0e); -+ } else { -+ rc |= jbt_reg_write16(jbt, JBT_REG_HCLOCK_QVGA, 0x00ff); -+ rc |= jbt_reg_write(jbt, JBT_REG_BLANK_CONTROL_QVGA, 0x02); -+ rc |= jbt_reg_write16(jbt, JBT_REG_BLANK_TH_TV_QVGA, 0x0804); -+ -+ rc |= jbt_reg_write(jbt, JBT_REG_CKV_ON_OFF_QVGA, 0x01); -+ rc |= jbt_reg_write16(jbt, JBT_REG_CKV_1_2_QVGA, 0x0008); -+ -+ rc |= jbt_reg_write16(jbt, JBT_REG_OEV_TIMING_QVGA, 0x050a); -+ rc |= jbt_reg_write16(jbt, JBT_REG_ASW_TIMING_1_QVGA, 0x0a19); -+ rc |= jbt_reg_write(jbt, JBT_REG_ASW_TIMING_2_QVGA, 0x0a); -+ } -+ -+ return rc ? -EIO : 0; -+} -+ -+static int standby_to_sleep(struct jbt_info *jbt) -+{ -+ int rc; -+ -+ /* three times command zero */ -+ rc = jbt_reg_write_nodata(jbt, 0x00); -+ mdelay(1); -+ rc |= jbt_reg_write_nodata(jbt, 0x00); -+ mdelay(1); -+ rc |= jbt_reg_write_nodata(jbt, 0x00); -+ mdelay(1); -+ -+ /* deep standby out */ -+ rc |= jbt_reg_write(jbt, JBT_REG_POWER_ON_OFF, 0x17); -+ -+ return rc ? -EIO : 0; -+} -+ -+static int sleep_to_normal(struct jbt_info *jbt) -+{ -+ int rc; -+ -+ /* RGB I/F on, RAM wirte off, QVGA through, SIGCON enable */ -+ rc = jbt_reg_write(jbt, JBT_REG_DISPLAY_MODE, 0x80); -+ -+ /* Quad mode off */ -+ rc |= jbt_reg_write(jbt, JBT_REG_QUAD_RATE, 0x00); -+ -+ /* AVDD on, XVDD on */ -+ rc |= jbt_reg_write(jbt, JBT_REG_POWER_ON_OFF, 0x16); -+ -+ /* Output control */ -+ rc |= jbt_reg_write16(jbt, JBT_REG_OUTPUT_CONTROL, 0xfff9); -+ -+ /* Sleep mode off */ -+ rc |= jbt_reg_write_nodata(jbt, JBT_REG_SLEEP_OUT); -+ -+ /* initialize register set */ -+ rc |= jbt_init_regs(jbt, 0); -+ -+ /* Turn on display */ -+ rc |= jbt_reg_write_nodata(jbt, JBT_REG_DISPLAY_ON); -+ -+ return rc ? -EIO : 0; -+} -+ -+static int sleep_to_qvga_normal(struct jbt_info *jbt) -+{ -+ int rc; -+ -+ /* RGB I/F on, RAM wirte off, QVGA through, SIGCON enable */ -+ rc = jbt_reg_write(jbt, JBT_REG_DISPLAY_MODE, 0x81); -+ -+ /* Quad mode on */ -+ rc |= jbt_reg_write(jbt, JBT_REG_QUAD_RATE, 0x22); -+ -+ /* AVDD on, XVDD on */ -+ rc |= jbt_reg_write(jbt, JBT_REG_POWER_ON_OFF, 0x16); -+ -+ /* Output control */ -+ rc |= jbt_reg_write16(jbt, JBT_REG_OUTPUT_CONTROL, 0xfff9); -+ -+ /* Sleep mode off */ -+ rc |= jbt_reg_write_nodata(jbt, JBT_REG_SLEEP_OUT); -+ -+ /* initialize register set for qvga*/ -+ rc |= jbt_init_regs(jbt, 1); -+ -+ /* Turn on display */ -+ rc |= jbt_reg_write_nodata(jbt, JBT_REG_DISPLAY_ON); -+ -+ return rc ? -EIO : 0; -+} -+ -+static int normal_to_sleep(struct jbt_info *jbt) -+{ -+ int rc; -+ -+ rc = jbt_reg_write_nodata(jbt, JBT_REG_DISPLAY_OFF); -+ rc |= jbt_reg_write16(jbt, JBT_REG_OUTPUT_CONTROL, 0x8002); -+ rc |= jbt_reg_write_nodata(jbt, JBT_REG_SLEEP_IN); -+ -+ return rc ? -EIO : 0; -+} -+ -+static int sleep_to_standby(struct jbt_info *jbt) -+{ -+ return jbt_reg_write(jbt, JBT_REG_POWER_ON_OFF, 0x00); -+} -+ -+/* frontend function */ -+int jbt6k74_enter_state(struct jbt_info *jbt, enum jbt_state new_state) -+{ -+ int rc = -EINVAL; -+ -+ dev_dbg(&jbt->spi_dev->dev, "entering (old_state=%u, " -+ "new_state=%u)\n", jbt->state, new_state); -+ -+ switch (jbt->state) { -+ case JBT_STATE_DEEP_STANDBY: -+ switch (new_state) { -+ case JBT_STATE_DEEP_STANDBY: -+ rc = 0; -+ break; -+ case JBT_STATE_SLEEP: -+ rc = standby_to_sleep(jbt); -+ break; -+ case JBT_STATE_NORMAL: -+ /* first transition into sleep */ -+ rc = standby_to_sleep(jbt); -+ /* then transition into normal */ -+ rc |= sleep_to_normal(jbt); -+ break; -+ case JBT_STATE_QVGA_NORMAL: -+ /* first transition into sleep */ -+ rc = standby_to_sleep(jbt); -+ /* then transition into normal */ -+ rc |= sleep_to_qvga_normal(jbt); -+ break; -+ } -+ break; -+ case JBT_STATE_SLEEP: -+ switch (new_state) { -+ case JBT_STATE_SLEEP: -+ rc = 0; -+ break; -+ case JBT_STATE_DEEP_STANDBY: -+ rc = sleep_to_standby(jbt); -+ break; -+ case JBT_STATE_NORMAL: -+ rc = sleep_to_normal(jbt); -+ break; -+ case JBT_STATE_QVGA_NORMAL: -+ rc = sleep_to_qvga_normal(jbt); -+ break; -+ } -+ break; -+ case JBT_STATE_NORMAL: -+ switch (new_state) { -+ case JBT_STATE_NORMAL: -+ rc = 0; -+ break; -+ case JBT_STATE_DEEP_STANDBY: -+ /* first transition into sleep */ -+ rc = normal_to_sleep(jbt); -+ /* then transition into deep standby */ -+ rc |= sleep_to_standby(jbt); -+ break; -+ case JBT_STATE_SLEEP: -+ rc = normal_to_sleep(jbt); -+ break; -+ case JBT_STATE_QVGA_NORMAL: -+ /* first transition into sleep */ -+ rc = normal_to_sleep(jbt); -+ /* second transition into deep standby */ -+ rc |= sleep_to_standby(jbt); -+ /* third transition into sleep */ -+ rc |= standby_to_sleep(jbt); -+ /* fourth transition into normal */ -+ rc |= sleep_to_qvga_normal(jbt); -+ break; -+ } -+ break; -+ case JBT_STATE_QVGA_NORMAL: -+ switch (new_state) { -+ case JBT_STATE_QVGA_NORMAL: -+ rc = 0; -+ break; -+ case JBT_STATE_DEEP_STANDBY: -+ /* first transition into sleep */ -+ rc = normal_to_sleep(jbt); -+ /* then transition into deep standby */ -+ rc |= sleep_to_standby(jbt); -+ break; -+ case JBT_STATE_SLEEP: -+ rc = normal_to_sleep(jbt); -+ break; -+ case JBT_STATE_NORMAL: -+ /* first transition into sleep */ -+ rc = normal_to_sleep(jbt); -+ /* second transition into deep standby */ -+ rc |= sleep_to_standby(jbt); -+ /* third transition into sleep */ -+ rc |= standby_to_sleep(jbt); -+ /* fourth transition into normal */ -+ rc |= sleep_to_normal(jbt); -+ break; -+ } -+ break; -+ } -+ -+ if (rc == 0) -+ jbt->state = new_state; -+ -+ return rc; -+} -+EXPORT_SYMBOL_GPL(jbt6k74_enter_state); -+ -+static ssize_t state_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(dev); -+ -+ if (jbt->state >= ARRAY_SIZE(jbt_state_names)) -+ return -EIO; -+ -+ return sprintf(buf, "%s\n", jbt_state_names[jbt->state]); -+} -+ -+static ssize_t state_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(dev); -+ int i, rc; -+ -+ for (i = 0; i < ARRAY_SIZE(jbt_state_names); i++) { -+ if (!strncmp(buf, jbt_state_names[i], -+ strlen(jbt_state_names[i]))) { -+ rc = jbt6k74_enter_state(jbt, i); -+ if (rc) -+ return rc; -+ return count; -+ } -+ } -+ -+ return -EINVAL; -+} -+ -+static DEVICE_ATTR(state, 0644, state_read, state_write); -+ -+static int reg_by_string(const char *name) -+{ -+ if (!strcmp(name, "gamma_fine1")) -+ return JBT_REG_GAMMA1_FINE_1; -+ else if (!strcmp(name, "gamma_fine2")) -+ return JBT_REG_GAMMA1_FINE_2; -+ else if (!strcmp(name, "gamma_inclination")) -+ return JBT_REG_GAMMA1_INCLINATION; -+ else -+ return JBT_REG_GAMMA1_BLUE_OFFSET; -+} -+ -+static ssize_t gamma_read(struct device *dev, struct device_attribute *attr, -+ char *buf) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(dev); -+ int reg = reg_by_string(attr->attr.name); -+ u16 val; -+ -+ mutex_lock(&jbt->lock); -+ val = jbt->reg_cache[reg]; -+ mutex_unlock(&jbt->lock); -+ -+ return sprintf(buf, "0x%04x\n", val); -+} -+ -+static ssize_t gamma_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(dev); -+ int reg = reg_by_string(attr->attr.name); -+ unsigned long val = simple_strtoul(buf, NULL, 10); -+ -+ dev_info(dev, "**** jbt6k74 writing gama %lu\n", val & 0xff); -+ -+ jbt_reg_write(jbt, reg, val & 0xff); -+ -+ return count; -+} -+ -+static ssize_t reset_write(struct device *dev, struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(dev); -+ struct jbt6k74_platform_data *jbt6k74_pdata = jbt->spi_dev->dev.platform_data; -+ int rc; -+ -+ dev_info(dev, "**** jbt6k74 reset\n"); -+ -+ /* hard reset the jbt6k74 */ -+ -+ (jbt6k74_pdata->reset)(0, 0); -+ mdelay(1); -+ (jbt6k74_pdata->reset)(0, 1); -+ mdelay(120); -+ -+ rc = jbt_reg_write_nodata(jbt, 0x01); -+ if (rc < 0) -+ dev_err(dev, "cannot soft reset\n"); -+ -+ mdelay(120); -+ -+ jbt->state = JBT_STATE_DEEP_STANDBY; -+ -+ switch (jbt->last_state) { -+ case JBT_STATE_QVGA_NORMAL: -+ jbt6k74_enter_state(jbt, JBT_STATE_QVGA_NORMAL); -+ break; -+ default: -+ jbt6k74_enter_state(jbt, JBT_STATE_NORMAL); -+ break; -+ } -+ -+ return count; -+} -+ -+static DEVICE_ATTR(gamma_fine1, 0644, gamma_read, gamma_write); -+static DEVICE_ATTR(gamma_fine2, 0644, gamma_read, gamma_write); -+static DEVICE_ATTR(gamma_inclination, 0644, gamma_read, gamma_write); -+static DEVICE_ATTR(gamma_blue_offset, 0644, gamma_read, gamma_write); -+static DEVICE_ATTR(reset, 0600, NULL, reset_write); -+ -+static struct attribute *jbt_sysfs_entries[] = { -+ &dev_attr_state.attr, -+ &dev_attr_gamma_fine1.attr, -+ &dev_attr_gamma_fine2.attr, -+ &dev_attr_gamma_inclination.attr, -+ &dev_attr_gamma_blue_offset.attr, -+ &dev_attr_reset.attr, -+ NULL, -+}; -+ -+static struct attribute_group jbt_attr_group = { -+ .name = NULL, -+ .attrs = jbt_sysfs_entries, -+}; -+ -+static int fb_notifier_callback(struct notifier_block *self, -+ unsigned long event, void *data) -+{ -+ struct jbt_info *jbt; -+ struct fb_event *evdata = data; -+ int fb_blank; -+ -+ if (event != FB_EVENT_BLANK && event != FB_EVENT_CONBLANK) -+ return 0; -+ -+ fb_blank = *(int *)evdata->data; -+ jbt = container_of(self, struct jbt_info, fb_notif); -+ -+ switch (fb_blank) { -+ case FB_BLANK_UNBLANK: -+ dev_info(&jbt->spi_dev->dev, "**** jbt6k74 unblank\n"); -+ jbt6k74_enter_state(jbt, JBT_STATE_NORMAL); -+ break; -+ case FB_BLANK_NORMAL: -+ dev_info(&jbt->spi_dev->dev, "**** jbt6k74 normal\n"); -+ break; -+ case FB_BLANK_VSYNC_SUSPEND: -+ dev_info(&jbt->spi_dev->dev, "**** jbt6k74 vsync suspend\n"); -+ break; -+ case FB_BLANK_HSYNC_SUSPEND: -+ dev_info(&jbt->spi_dev->dev, "**** jbt6k74 hsync suspend\n"); -+ /* FIXME: we disable SLEEP since it would result in -+ * a visible artefact (white screen) before the backlight -+ * is dimmed to a dark enough level */ -+ /* jbt6k74_enter_state(jbt, JBT_STATE_SLEEP); */ -+ break; -+ case FB_BLANK_POWERDOWN: -+ dev_info(&jbt->spi_dev->dev, "**** jbt6k74 powerdown\n"); -+ /* FIXME: deep standby causes WSOD on certain devices. We use -+ * sleep as workaround */ -+ jbt6k74_enter_state(jbt, JBT_STATE_SLEEP); -+ break; -+ } -+ -+ return 0; -+} -+ -+/* linux device model infrastructure */ -+ -+static int __devinit jbt_probe(struct spi_device *spi) -+{ -+ int rc; -+ struct jbt_info *jbt; -+ struct jbt6k74_platform_data *jbt6k74_pdata = spi->dev.platform_data; -+ -+ /* the controller doesn't have a MISO pin; we can't do detection */ -+ -+ spi->mode = SPI_CPOL | SPI_CPHA; -+ spi->bits_per_word = 9; -+ -+ rc = spi_setup(spi); -+ if (rc < 0) { -+ dev_err(&spi->dev, -+ "error during spi_setup of jbt6k74 driver\n"); -+ return rc; -+ } -+ -+ jbt = kzalloc(sizeof(*jbt), GFP_KERNEL); -+ if (!jbt) -+ return -ENOMEM; -+ -+ jbt->spi_dev = spi; -+ jbt->state = JBT_STATE_DEEP_STANDBY; -+ mutex_init(&jbt->lock); -+ -+ dev_set_drvdata(&spi->dev, jbt); -+ -+ /* hard reset the jbt6k74 */ -+ -+ (jbt6k74_pdata->reset)(0, 0); -+ mdelay(1); -+ (jbt6k74_pdata->reset)(0, 1); -+ mdelay(120); -+ -+ rc = jbt_reg_write_nodata(jbt, 0x01); -+ if (rc < 0) -+ dev_err(&spi->dev, "cannot soft reset\n"); -+ -+ mdelay(120); -+ -+ -+ rc = jbt6k74_enter_state(jbt, JBT_STATE_NORMAL); -+ if (rc < 0) { -+ dev_err(&spi->dev, "cannot enter NORMAL state\n"); -+ goto err_free_drvdata; -+ } -+ -+ rc = sysfs_create_group(&spi->dev.kobj, &jbt_attr_group); -+ if (rc < 0) { -+ dev_err(&spi->dev, "cannot create sysfs group\n"); -+ goto err_standby; -+ } -+ -+ jbt->fb_notif.notifier_call = fb_notifier_callback; -+ rc = fb_register_client(&jbt->fb_notif); -+ if (rc < 0) { -+ dev_err(&spi->dev, "cannot register notifier\n"); -+ goto err_sysfs; -+ } -+ -+ if (jbt6k74_pdata->probe_completed) -+ jbt6k74_pdata->probe_completed(&spi->dev); -+ -+ return 0; -+ -+err_sysfs: -+ sysfs_remove_group(&spi->dev.kobj, &jbt_attr_group); -+err_standby: -+ jbt6k74_enter_state(jbt, JBT_STATE_DEEP_STANDBY); -+err_free_drvdata: -+ dev_set_drvdata(&spi->dev, NULL); -+ kfree(jbt); -+ -+ return rc; -+} -+ -+static int __devexit jbt_remove(struct spi_device *spi) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(&spi->dev); -+ -+ /* We don't want to switch off the display in case the user -+ * accidentially onloads the module (whose use count normally is 0) */ -+ -+ fb_unregister_client(&jbt->fb_notif); -+ sysfs_remove_group(&spi->dev.kobj, &jbt_attr_group); -+ dev_set_drvdata(&spi->dev, NULL); -+ kfree(jbt); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+static int jbt_suspend(struct spi_device *spi, pm_message_t state) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(&spi->dev); -+ -+ /* Save mode for resume */ -+ jbt->last_state = jbt->state; -+ /* FIXME: deep standby causes WSOD on certain devices. We use -+ * sleep as workaround */ -+ jbt6k74_enter_state(jbt, JBT_STATE_SLEEP); -+ -+ jbt->have_resumed = 0; -+ -+ dev_info(&spi->dev, "**** jbt6k74 suspend end\n"); -+ -+ return 0; -+} -+ -+int jbt6k74_resume(struct spi_device *spi) -+{ -+ struct jbt_info *jbt = dev_get_drvdata(&spi->dev); -+ struct jbt6k74_platform_data *jbt6k74_pdata = spi->dev.platform_data; -+ int rc; -+ -+ dev_info(&spi->dev, "**** jbt6k74 resume start\n"); -+ -+ /* hard reset the jbt6k74 */ -+ -+ (jbt6k74_pdata->reset)(0, 0); -+ mdelay(1); -+ (jbt6k74_pdata->reset)(0, 1); -+ mdelay(120); -+ -+ rc = jbt_reg_write_nodata(jbt, 0x01); -+ if (rc < 0) -+ dev_err(&spi->dev, "cannot soft reset\n"); -+ -+ mdelay(120); -+ -+ jbt->state = JBT_STATE_DEEP_STANDBY; -+ -+ switch (jbt->last_state) { -+ case JBT_STATE_QVGA_NORMAL: -+ jbt6k74_enter_state(jbt, JBT_STATE_QVGA_NORMAL); -+ break; -+ default: -+ jbt6k74_enter_state(jbt, JBT_STATE_NORMAL); -+ break; -+ } -+ -+ if (jbt6k74_pdata->resuming) -+ (jbt6k74_pdata->resuming)(0); -+ -+ dev_info(&spi->dev, "**** jbt6k74 resume end\n"); -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(jbt6k74_resume); -+ -+#else -+#define jbt_suspend NULL -+#define jbt_resume NULL -+#endif -+ -+static struct spi_driver jbt6k74_driver = { -+ .driver = { -+ .name = "jbt6k74", -+ .owner = THIS_MODULE, -+ }, -+ -+ .probe = jbt_probe, -+ .remove = __devexit_p(jbt_remove), -+ .suspend = jbt_suspend, -+ .resume = jbt6k74_resume, -+}; -+ -+static int __init jbt_init(void) -+{ -+ return spi_register_driver(&jbt6k74_driver); -+} -+ -+static void __exit jbt_exit(void) -+{ -+ spi_unregister_driver(&jbt6k74_driver); -+} -+ -+MODULE_DESCRIPTION("SPI driver for tpo JBT6K74-AS LCM control interface"); -+MODULE_AUTHOR("Harald Welte <laforge@openmoko.org>"); -+MODULE_LICENSE("GPL"); -+ -+module_init(jbt_init); -+module_exit(jbt_exit); ---- a/drivers/video/display/Kconfig -+++ b/drivers/video/display/Kconfig -@@ -21,4 +21,15 @@ config DISPLAY_SUPPORT - comment "Display hardware drivers" - depends on DISPLAY_SUPPORT - -+config DISPLAY_JBT6K74 -+ tristate "TPO JBT6K74-AS TFT display ASIC control interface" -+ depends on SPI_MASTER && SYSFS -+ help -+ SPI driver for the control interface of TFT panels containing -+ the TPO JBT6K74-AS controller ASIC, such as the TPO TD028TTEC1 -+ TFT diplay module used in the FIC/Openmoko Neo1973 GSM phones. -+ -+ The control interface is required for display operation, as it -+ controls power management, display timing and gamma calibration. -+ - endmenu ---- a/drivers/video/display/Makefile -+++ b/drivers/video/display/Makefile -@@ -3,4 +3,5 @@ - display-objs := display-sysfs.o - - obj-$(CONFIG_DISPLAY_SUPPORT) += display.o -+obj-$(CONFIG_DISPLAY_JBT6K74) += jbt6k74.o - ---- a/drivers/video/Kconfig -+++ b/drivers/video/Kconfig -@@ -1918,6 +1918,30 @@ config FB_TMIO_ACCELL - depends on FB_TMIO - default y - -+config FB_S3C -+ tristate "Samsung S3C framebuffer support" -+ depends on FB && ARCH_S3C64XX -+ select FB_CFB_FILLRECT -+ select FB_CFB_COPYAREA -+ select FB_CFB_IMAGEBLIT -+ ---help--- -+ Frame buffer driver for the built-in FB controller in the Samsung -+ SoC line from the S3C2443 onwards, including the S3C2416, S3C2450, -+ and the S3C64XX series such as the S3C6400 and S3C6410. -+ -+ These chips all have the same basic framebuffer design with the -+ actual capabilities depending on the chip. For instance the S3C6400 -+ and S3C6410 support 4 hardware windows whereas the S3C24XX series -+ currently only have two. -+ -+ Currently the support is only for the S3C6400 and S3C6410 SoCs. -+ -+config FB_S3C_DEBUG_REGWRITE -+ bool "Debug register writes" -+ depends on FB_S3C -+ ---help--- -+ Show all register writes via printk(KERN_DEBUG) -+ - config FB_S3C2410 - tristate "S3C2410 LCD framebuffer support" - depends on FB && ARCH_S3C2410 ---- a/drivers/video/logo/Kconfig -+++ b/drivers/video/logo/Kconfig -@@ -77,6 +77,11 @@ config LOGO_SUPERH_CLUT224 - depends on SUPERH - default y - -+config LOGO_OPENMOKO_CLUT224 -+ bool "224-color Openmoko Linux logo" -+ depends on MACH_NEO1973_GTA01 || MACH_NEO1973_GTA02 -+ default y -+ - config LOGO_M32R_CLUT224 - bool "224-color M32R Linux logo" - depends on M32R ---- a/drivers/video/logo/logo.c -+++ b/drivers/video/logo/logo.c -@@ -35,6 +35,7 @@ extern const struct linux_logo logo_supe - extern const struct linux_logo logo_superh_vga16; - extern const struct linux_logo logo_superh_clut224; - extern const struct linux_logo logo_m32r_clut224; -+extern const struct linux_logo logo_openmoko_clut224; - - static int nologo; - module_param(nologo, bool, 0); -@@ -115,6 +116,10 @@ const struct linux_logo * __init_refok f - /* M32R Linux logo */ - logo = &logo_m32r_clut224; - #endif -+#ifdef CONFIG_LOGO_OPENMOKO_CLUT224 -+ /* Openmoko Linux logo */ -+ logo = &logo_openmoko_clut224; -+#endif - } - return logo; - } ---- /dev/null -+++ b/drivers/video/logo/logo_openmoko_clut224.ppm -@@ -0,0 +1,40003 @@ -+P3 -+480 500 -+255 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 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0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 -+0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 ---- a/drivers/video/logo/Makefile -+++ b/drivers/video/logo/Makefile -@@ -15,6 +15,7 @@ obj-$(CONFIG_LOGO_SUPERH_MONO) += logo_ - obj-$(CONFIG_LOGO_SUPERH_VGA16) += logo_superh_vga16.o - obj-$(CONFIG_LOGO_SUPERH_CLUT224) += logo_superh_clut224.o - obj-$(CONFIG_LOGO_M32R_CLUT224) += logo_m32r_clut224.o -+obj-$(CONFIG_LOGO_OPENMOKO_CLUT224) += logo_openmoko_clut224.o - - obj-$(CONFIG_SPU_BASE) += logo_spe_clut224.o - ---- a/drivers/video/Makefile -+++ b/drivers/video/Makefile -@@ -109,6 +109,7 @@ obj-$(CONFIG_FB_METRONOME) += met - obj-$(CONFIG_FB_S1D13XXX) += s1d13xxxfb.o - obj-$(CONFIG_FB_SH7760) += sh7760fb.o - obj-$(CONFIG_FB_IMX) += imxfb.o -+obj-$(CONFIG_FB_S3C) += s3c-fb.o - obj-$(CONFIG_FB_S3C2410) += s3c2410fb.o - obj-$(CONFIG_FB_FSL_DIU) += fsl-diu-fb.o - obj-$(CONFIG_FB_COBALT) += cobalt_lcdfb.o ---- a/drivers/video/s3c2410fb.c -+++ b/drivers/video/s3c2410fb.c -@@ -1017,6 +1017,8 @@ static int s3c2410fb_resume(struct platf - - s3c2410fb_init_registers(fbinfo); - -+ s3c2410fb_set_par(fbinfo); -+ - return 0; - } - ---- /dev/null -+++ b/drivers/video/s3c-fb.c -@@ -0,0 +1,1036 @@ -+/* linux/drivers/video/s3c-fb.c -+ * -+ * Copyright 2008 Openmoko Inc. -+ * Copyright 2008 Simtec Electronics -+ * Ben Dooks <ben@simtec.co.uk> -+ * http://armlinux.simtec.co.uk/ -+ * -+ * Samsung SoC Framebuffer driver -+ * -+ * This program is free software; you can redistribute it and/or modify -+ * it under the terms of the GNU General Public License version 2 as -+ * published by the Free Software Foundation. -+*/ -+ -+#include <linux/kernel.h> -+#include <linux/module.h> -+#include <linux/platform_device.h> -+#include <linux/dma-mapping.h> -+#include <linux/init.h> -+#include <linux/gfp.h> -+#include <linux/clk.h> -+#include <linux/fb.h> -+#include <linux/io.h> -+ -+#include <mach/map.h> -+#include <mach/regs-fb.h> -+#include <plat/fb.h> -+ -+/* This driver will export a number of framebuffer interfaces depending -+ * on the configuration passed in via the platform data. Each fb instance -+ * maps to a hardware window. Currently there is no support for runtime -+ * setting of the alpha-blending functions that each window has, so only -+ * window 0 is actually useful. -+ * -+ * Window 0 is treated specially, it is used for the basis of the LCD -+ * output timings and as the control for the output power-down state. -+*/ -+ -+/* note, some of the functions that get called are derived from including -+ * <mach/regs-fb.h> as they are specific to the architecture that the code -+ * is being built for. -+*/ -+ -+#ifdef CONFIG_FB_S3C_DEBUG_REGWRITE -+#undef writel -+#define writel(v, r) do { \ -+ printk(KERN_DEBUG "%s: %08x => %p\n", __func__, (unsigned int)v, r); \ -+ __raw_writel(v, r); } while(0) -+#endif /* FB_S3C_DEBUG_REGWRITE */ -+ -+struct s3c_fb; -+ -+/** -+ * struct s3c_fb_win - per window private data for each framebuffer. -+ * @windata: The platform data supplied for the window configuration. -+ * @parent: The hardware that this window is part of. -+ * @fbinfo: Pointer pack to the framebuffer info for this window. -+ * @palette_buffer: Buffer/cache to hold palette entries. -+ * @pseudo_palette: For use in TRUECOLOUR modes for entries 0..15/ -+ * @index: The window number of this window. -+ * @palette: The bitfields for changing r/g/b into a hardware palette entry. -+ */ -+struct s3c_fb_win { -+ struct s3c_fb_pd_win *windata; -+ struct s3c_fb *parent; -+ struct fb_info *fbinfo; -+ struct s3c_fb_palette palette; -+ -+ u32 *palette_buffer; -+ u32 pseudo_palette[16]; -+ unsigned int index; -+}; -+ -+/** -+ * struct s3c_fb - overall hardware state of the hardware -+ * @dev: The device that we bound to, for printing, etc. -+ * @regs_res: The resource we claimed for the IO registers. -+ * @bus_clk: The clk (hclk) feeding our interface and possibly pixclk. -+ * @regs: The mapped hardware registers. -+ * @enabled: A bitmask of enabled hardware windows. -+ * @pdata: The platform configuration data passed with the device. -+ * @windows: The hardware windows that have been claimed. -+ */ -+struct s3c_fb { -+ struct device *dev; -+ struct resource *regs_res; -+ struct clk *bus_clk; -+ void __iomem *regs; -+ -+ unsigned char enabled; -+ -+ struct s3c_fb_platdata *pdata; -+ struct s3c_fb_win *windows[S3C_FB_MAX_WIN]; -+}; -+ -+/** -+ * s3c_fb_win_has_palette() - determine if a mode has a palette -+ * @win: The window number being queried. -+ * @bpp: The number of bits per pixel to test. -+ * -+ * Work out if the given window supports palletised data at the specified bpp. -+ */ -+static int s3c_fb_win_has_palette(unsigned int win, unsigned int bpp) -+{ -+ return s3c_fb_win_pal_size(win) <= (1 << bpp); -+} -+ -+/** -+ * s3c_fb_check_var() - framebuffer layer request to verify a given mode. -+ * @var: The screen information to verify. -+ * @info: The framebuffer device. -+ * -+ * Framebuffer layer call to verify the given information and allow us to -+ * update various information depending on the hardware capabilities. -+ */ -+static int s3c_fb_check_var(struct fb_var_screeninfo *var, -+ struct fb_info *info) -+{ -+ struct s3c_fb_win *win = info->par; -+ struct s3c_fb_pd_win *windata = win->windata; -+ struct s3c_fb *sfb = win->parent; -+ -+ dev_dbg(sfb->dev, "checking parameters\n"); -+ -+ var->xres_virtual = max((unsigned int)windata->virtual_x, var->xres); -+ var->yres_virtual = max((unsigned int)windata->virtual_y, var->yres); -+ -+ if (!s3c_fb_validate_win_bpp(win->index, var->bits_per_pixel)) { -+ dev_dbg(sfb->dev, "win %d: unsupported bpp %d\n", -+ win->index, var->bits_per_pixel); -+ return -EINVAL; -+ } -+ -+ /* always ensure these are zero, for drop through cases below */ -+ var->transp.offset = 0; -+ var->transp.length = 0; -+ -+ switch (var->bits_per_pixel) { -+ case 1: -+ case 2: -+ case 4: -+ case 8: -+ if (!s3c_fb_win_has_palette(win->index, var->bits_per_pixel)) { -+ /* non palletised, A:1,R:2,G:3,B:2 mode */ -+ var->red.offset = 4; -+ var->green.offset = 2; -+ var->blue.offset = 0; -+ var->red.length = 5; -+ var->green.length = 3; -+ var->blue.length = 2; -+ var->transp.offset = 7; -+ var->transp.length = 1; -+ } else { -+ var->red.offset = 0; -+ var->red.length = var->bits_per_pixel; -+ var->green = var->red; -+ var->blue = var->red; -+ } -+ break; -+ -+ case 19: -+ /* 666 with one bit alpha/transparency */ -+ var->transp.offset = 18; -+ var->transp.length = 1; -+ case 18: -+ var->bits_per_pixel = 32; -+ -+ /* 666 format */ -+ var->red.offset = 12; -+ var->green.offset = 6; -+ var->blue.offset = 0; -+ var->red.length = 6; -+ var->green.length = 6; -+ var->blue.length = 6; -+ break; -+ -+ case 16: -+ /* 16 bpp, 565 format */ -+ var->red.offset = 11; -+ var->green.offset = 5; -+ var->blue.offset = 0; -+ var->red.length = 5; -+ var->green.length = 6; -+ var->blue.length = 5; -+ break; -+ -+ case 28: -+ case 25: -+ var->transp.length = var->bits_per_pixel - 24; -+ var->transp.offset = 24; -+ /* drop through */ -+ case 24: -+ /* our 24bpp is unpacked, so 32bpp */ -+ var->bits_per_pixel = 32; -+ case 32: -+ var->red.offset = 16; -+ var->red.length = 8; -+ var->green.offset = 8; -+ var->green.length = 8; -+ var->blue.offset = 0; -+ var->blue.length = 8; -+ break; -+ -+ default: -+ dev_err(sfb->dev, "invalid bpp\n"); -+ } -+ -+ dev_dbg(sfb->dev, "%s: verified parameters\n", __func__); -+ return 0; -+} -+ -+/** -+ * s3c_fb_calc_pixclk() - calculate the divider to create the pixel clock. -+ * @sfb: The hardware state. -+ * @pixclock: The pixel clock wanted, in picoseconds. -+ * -+ * Given the specified pixel clock, work out the necessary divider to get -+ * close to the output frequency. -+ */ -+static int s3c_fb_calc_pixclk(struct s3c_fb *sfb, unsigned int pixclk) -+{ -+ unsigned long clk = clk_get_rate(sfb->bus_clk); -+ unsigned long long tmp; -+ unsigned int result; -+ -+ tmp = (unsigned long long)clk; -+ tmp *= pixclk; -+ -+ do_div(tmp, 1000000000UL); -+ result = (unsigned int)tmp / 1000; -+ -+ dev_dbg(sfb->dev, "pixclk=%u, clk=%lu, div=%d (%lu)\n", -+ pixclk, clk, result, clk / result); -+ -+ return result; -+} -+ -+/** -+ * s3c_fb_align_word() - align pixel count to word boundary -+ * @bpp: The number of bits per pixel -+ * @pix: The value to be aligned. -+ * -+ * Align the given pixel count so that it will start on an 32bit word -+ * boundary. -+ */ -+static int s3c_fb_align_word(unsigned int bpp, unsigned int pix) -+{ -+ int pix_per_word; -+ -+ if (bpp > 16) -+ return pix; -+ -+ pix_per_word = (8 * 32) / bpp; -+ return ALIGN(pix, pix_per_word); -+} -+ -+/** -+ * s3c_fb_set_par() - framebuffer request to set new framebuffer state. -+ * @info: The framebuffer to change. -+ * -+ * Framebuffer layer request to set a new mode for the specified framebuffer -+ */ -+static int s3c_fb_set_par(struct fb_info *info) -+{ -+ struct fb_var_screeninfo *var = &info->var; -+ struct s3c_fb_win *win = info->par; -+ struct s3c_fb *sfb = win->parent; -+ void __iomem *regs = sfb->regs; -+ int win_no = win->index; -+ u32 data; -+ u32 pagewidth; -+ int clkdiv; -+ -+ dev_dbg(sfb->dev, "setting framebuffer parameters\n"); -+ -+ switch (var->bits_per_pixel) { -+ case 32: -+ case 24: -+ case 16: -+ case 12: -+ info->fix.visual = FB_VISUAL_TRUECOLOR; -+ break; -+ case 8: -+ if (s3c_fb_win_has_palette(win_no, 8)) -+ info->fix.visual = FB_VISUAL_PSEUDOCOLOR; -+ else -+ info->fix.visual = FB_VISUAL_TRUECOLOR; -+ break; -+ case 1: -+ info->fix.visual = FB_VISUAL_MONO01; -+ break; -+ default: -+ info->fix.visual = FB_VISUAL_PSEUDOCOLOR; -+ break; -+ } -+ -+ info->fix.line_length = (var->xres_virtual * var->bits_per_pixel) / 8; -+ -+ /* disable the window whilst we update it */ -+ writel(0, regs + WINCON(win_no)); -+ -+ /* use window 0 as the basis for the lcd output timings */ -+ -+ if (win_no == 0) { -+ clkdiv = s3c_fb_calc_pixclk(sfb, var->pixclock); -+ -+ data = sfb->pdata->vidcon0; -+ data &= ~(VIDCON0_CLKVAL_F_MASK | VIDCON0_CLKDIR); -+ -+ if (clkdiv > 1) -+ data |= VIDCON0_CLKVAL_F(clkdiv-1) | VIDCON0_CLKDIR; -+ else -+ data &= ~VIDCON0_CLKDIR; /* 1:1 clock */ -+ -+ /* write the timing data to the panel */ -+ -+ data |= VIDCON0_ENVID | VIDCON0_ENVID_F; -+ writel(data, regs + VIDCON0); -+ -+ data = VIDTCON0_VBPD(var->upper_margin - 1) | -+ VIDTCON0_VFPD(var->lower_margin - 1) | -+ VIDTCON0_VSPW(var->vsync_len - 1); -+ -+ writel(data, regs + VIDTCON0); -+ -+ data = VIDTCON1_HBPD(var->left_margin - 1) | -+ VIDTCON1_HFPD(var->right_margin - 1) | -+ VIDTCON1_HSPW(var->hsync_len - 1); -+ -+ writel(data, regs + VIDTCON1); -+ -+ data = VIDTCON2_LINEVAL(var->yres - 1) | -+ VIDTCON2_HOZVAL(var->xres - 1); -+ writel(data, regs + VIDTCON2); -+ } -+ -+ /* write the buffer address */ -+ -+ writel(info->fix.smem_start, regs + VIDW_BUF_START(win_no)); -+ -+ data = info->fix.smem_start + info->fix.line_length * var->yres; -+ writel(data, regs + VIDW_BUF_END(win_no)); -+ -+ pagewidth = (var->xres * var->bits_per_pixel) >> 3; -+ data = VIDW_BUF_SIZE_OFFSET(info->fix.line_length - pagewidth) | -+ VIDW_BUF_SIZE_PAGEWIDTH(pagewidth); -+ writel(data, regs + VIDW_BUF_SIZE(win_no)); -+ -+ /* write 'OSD' registers to control position of framebuffer */ -+ -+ data = VIDOSDxA_TOPLEFT_X(0) | VIDOSDxA_TOPLEFT_Y(0); -+ writel(data, regs + VIDOSD_A(win_no)); -+ -+ data = VIDOSDxB_BOTRIGHT_X(s3c_fb_align_word(var->bits_per_pixel, -+ var->xres - 1)) | -+ VIDOSDxB_BOTRIGHT_Y(var->yres - 1); -+ -+ writel(data, regs + VIDOSD_B(win_no)); -+ -+ data = var->xres * var->yres; -+ if (s3c_fb_has_osd_d(win_no)) { -+ writel(data, regs + VIDOSD_D(win_no)); -+ writel(0, regs + VIDOSD_C(win_no)); -+ } else -+ writel(data, regs + VIDOSD_C(win_no)); -+ -+ data = WINCONx_ENWIN; -+ -+ /* note, since we have to round up the bits-per-pixel, we end up -+ * relying on the bitfield information for r/g/b/a to work out -+ * exactly which mode of operation is intended. */ -+ -+ switch (var->bits_per_pixel) { -+ case 1: -+ data |= WINCON0_BPPMODE_1BPP; -+ data |= WINCONx_BITSWP; -+ data |= WINCONx_BURSTLEN_4WORD; -+ break; -+ case 2: -+ data |= WINCON0_BPPMODE_2BPP; -+ data |= WINCONx_BITSWP; -+ data |= WINCONx_BURSTLEN_8WORD; -+ break; -+ case 4: -+ data |= WINCON0_BPPMODE_4BPP; -+ data |= WINCONx_BITSWP; -+ data |= WINCONx_BURSTLEN_8WORD; -+ break; -+ case 8: -+ if (var->transp.length != 0) -+ data |= WINCON1_BPPMODE_8BPP_1232; -+ else -+ data |= WINCON0_BPPMODE_8BPP_PALETTE; -+ data |= WINCONx_BURSTLEN_8WORD; -+ data |= WINCONx_BYTSWP; -+ break; -+ case 16: -+ if (var->transp.length != 0) -+ data |= WINCON1_BPPMODE_16BPP_A1555; -+ else -+ data |= WINCON0_BPPMODE_16BPP_565; -+ data |= WINCONx_HAWSWP; -+ data |= WINCONx_BURSTLEN_16WORD; -+ break; -+ case 24: -+ case 32: -+ if (var->red.length == 6) { -+ if (var->transp.length != 0) -+ data |= WINCON1_BPPMODE_19BPP_A1666; -+ else -+ data |= WINCON1_BPPMODE_18BPP_666; -+ } else if (var->transp.length != 0) -+ data |= WINCON1_BPPMODE_25BPP_A1888; -+ else -+ data |= WINCON0_BPPMODE_24BPP_888; -+ -+ data |= WINCONx_BURSTLEN_16WORD; -+ break; -+ } -+ -+ writel(data, regs + WINCON(win_no)); -+ writel(0x0, regs + WINxMAP(win_no)); -+ -+ return 0; -+} -+ -+/** -+ * s3c_fb_update_palette() - set or schedule a palette update. -+ * @sfb: The hardware information. -+ * @win: The window being updated. -+ * @reg: The palette index being changed. -+ * @value: The computed palette value. -+ * -+ * Change the value of a palette register, either by directly writing to -+ * the palette (this requires the palette RAM to be disconnected from the -+ * hardware whilst this is in progress) or schedule the update for later. -+ * -+ * At the moment, since we have no VSYNC interrupt support, we simply set -+ * the palette entry directly. -+ */ -+static void s3c_fb_update_palette(struct s3c_fb *sfb, -+ struct s3c_fb_win *win, -+ unsigned int reg, -+ u32 value) -+{ -+ void __iomem *palreg; -+ u32 palcon; -+ -+ palreg = sfb->regs + s3c_fb_pal_reg(win->index, reg); -+ -+ dev_dbg(sfb->dev, "%s: win %d, reg %d (%p): %08x\n", -+ __func__, win->index, reg, palreg, value); -+ -+ win->palette_buffer[reg] = value; -+ -+ palcon = readl(sfb->regs + WPALCON); -+ writel(palcon | WPALCON_PAL_UPDATE, sfb->regs + WPALCON); -+ -+ if (s3c_fb_pal_is16(win->index)) -+ writew(value, palreg); -+ else -+ writel(value, palreg); -+ -+ writel(palcon, sfb->regs + WPALCON); -+} -+ -+static inline unsigned int chan_to_field(unsigned int chan, -+ struct fb_bitfield *bf) -+{ -+ chan &= 0xffff; -+ chan >>= 16 - bf->length; -+ return chan << bf->offset; -+} -+ -+/** -+ * s3c_fb_setcolreg() - framebuffer layer request to change palette. -+ * @regno: The palette index to change. -+ * @red: The red field for the palette data. -+ * @green: The green field for the palette data. -+ * @blue: The blue field for the palette data. -+ * @trans: The transparency (alpha) field for the palette data. -+ * @info: The framebuffer being changed. -+ */ -+static int s3c_fb_setcolreg(unsigned regno, -+ unsigned red, unsigned green, unsigned blue, -+ unsigned transp, struct fb_info *info) -+{ -+ struct s3c_fb_win *win = info->par; -+ struct s3c_fb *sfb = win->parent; -+ unsigned int val; -+ -+ dev_dbg(sfb->dev, "%s: win %d: %d => rgb=%d/%d/%d\n", -+ __func__, win->index, regno, red, green, blue); -+ -+ switch (info->fix.visual) { -+ case FB_VISUAL_TRUECOLOR: -+ /* true-colour, use pseudo-palette */ -+ -+ if (regno < 16) { -+ u32 *pal = info->pseudo_palette; -+ -+ val = chan_to_field(red, &info->var.red); -+ val |= chan_to_field(green, &info->var.green); -+ val |= chan_to_field(blue, &info->var.blue); -+ -+ pal[regno] = val; -+ } -+ break; -+ -+ case FB_VISUAL_PSEUDOCOLOR: -+ if (regno < s3c_fb_win_pal_size(win->index)) { -+ val = chan_to_field(red, &win->palette.r); -+ val |= chan_to_field(green, &win->palette.g); -+ val |= chan_to_field(blue, &win->palette.b); -+ -+ s3c_fb_update_palette(sfb, win, regno, val); -+ } -+ -+ break; -+ -+ default: -+ return 1; /* unknown type */ -+ } -+ -+ return 0; -+} -+ -+/** -+ * s3c_fb_enable() - Set the state of the main LCD output -+ * @sfb: The main framebuffer state. -+ * @enable: The state to set. -+ */ -+static void s3c_fb_enable(struct s3c_fb *sfb, int enable) -+{ -+ u32 vidcon0 = readl(sfb->regs + VIDCON0); -+ -+ if (enable) -+ vidcon0 |= VIDCON0_ENVID | VIDCON0_ENVID_F; -+ else { -+ /* see the note in the framebuffer datasheet about -+ * why you cannot take both of these bits down at the -+ * same time. */ -+ -+ if (!(vidcon0 & VIDCON0_ENVID)) -+ return; -+ -+ vidcon0 |= VIDCON0_ENVID; -+ vidcon0 &= ~VIDCON0_ENVID_F; -+ } -+ -+ writel(vidcon0, sfb->regs + VIDCON0); -+} -+ -+/** -+ * s3c_fb_blank() - blank or unblank the given window -+ * @blank_mode: The blank state from FB_BLANK_* -+ * @info: The framebuffer to blank. -+ * -+ * Framebuffer layer request to change the power state. -+ */ -+static int s3c_fb_blank(int blank_mode, struct fb_info *info) -+{ -+ struct s3c_fb_win *win = info->par; -+ struct s3c_fb *sfb = win->parent; -+ unsigned int index = win->index; -+ u32 wincon; -+ -+ dev_dbg(sfb->dev, "blank mode %d\n", blank_mode); -+ -+ wincon = readl(sfb->regs + WINCON(index)); -+ -+ switch (blank_mode) { -+ case FB_BLANK_POWERDOWN: -+ wincon &= ~WINCONx_ENWIN; -+ sfb->enabled &= ~(1 << index); -+ /* fall through to FB_BLANK_NORMAL */ -+ -+ case FB_BLANK_NORMAL: -+ /* disable the DMA and display 0x0 (black) */ -+ writel(WINxMAP_MAP | WINxMAP_MAP_COLOUR(0x0), -+ sfb->regs + WINxMAP(index)); -+ break; -+ -+ case FB_BLANK_UNBLANK: -+ writel(0x0, sfb->regs + WINxMAP(index)); -+ wincon |= WINCONx_ENWIN; -+ sfb->enabled |= (1 << index); -+ break; -+ -+ case FB_BLANK_VSYNC_SUSPEND: -+ case FB_BLANK_HSYNC_SUSPEND: -+ default: -+ return 1; -+ } -+ -+ writel(wincon, sfb->regs + WINCON(index)); -+ -+ /* Check the enabled state to see if we need to be running the -+ * main LCD interface, as if there are no active windows then -+ * it is highly likely that we also do not need to output -+ * anything. -+ */ -+ -+ /* We could do something like the following code, but the current -+ * system of using framebuffer events means that we cannot make -+ * the distinction between just window 0 being inactive and all -+ * the windows being down. -+ * -+ * s3c_fb_enable(sfb, sfb->enabled ? 1 : 0); -+ */ -+ -+ /* we're stuck with this until we can do something about overriding -+ * the power control using the blanking event for a single fb. -+ */ -+ if (index == 0) -+ s3c_fb_enable(sfb, blank_mode != FB_BLANK_POWERDOWN ? 1 : 0); -+ -+ return 0; -+} -+ -+static struct fb_ops s3c_fb_ops = { -+ .owner = THIS_MODULE, -+ .fb_check_var = s3c_fb_check_var, -+ .fb_set_par = s3c_fb_set_par, -+ .fb_blank = s3c_fb_blank, -+ .fb_setcolreg = s3c_fb_setcolreg, -+ .fb_fillrect = cfb_fillrect, -+ .fb_copyarea = cfb_copyarea, -+ .fb_imageblit = cfb_imageblit, -+}; -+ -+/** -+ * s3c_fb_alloc_memory() - allocate display memory for framebuffer window -+ * @sfb: The base resources for the hardware. -+ * @win: The window to initialise memory for. -+ * -+ * Allocate memory for the given framebuffer. -+ */ -+static int __devinit s3c_fb_alloc_memory(struct s3c_fb *sfb, -+ struct s3c_fb_win *win) -+{ -+ struct s3c_fb_pd_win *windata = win->windata; -+ unsigned int real_size, virt_size, size; -+ struct fb_info *fbi = win->fbinfo; -+ dma_addr_t map_dma; -+ -+ dev_dbg(sfb->dev, "allocating memory for display\n"); -+ -+ real_size = windata->win_mode.xres * windata->win_mode.yres; -+ virt_size = windata->virtual_x * windata->virtual_y; -+ -+ dev_dbg(sfb->dev, "real_size=%u (%u.%u), virt_size=%u (%u.%u)\n", -+ real_size, windata->win_mode.xres, windata->win_mode.yres, -+ virt_size, windata->virtual_x, windata->virtual_y); -+ -+ size = (real_size > virt_size) ? real_size : virt_size; -+ size *= (windata->max_bpp > 16) ? 32 : windata->max_bpp; -+ size /= 8; -+ -+ fbi->fix.smem_len = size; -+ size = PAGE_ALIGN(size); -+ -+ dev_dbg(sfb->dev, "want %u bytes for window\n", size); -+ -+ fbi->screen_base = dma_alloc_writecombine(sfb->dev, size, -+ &map_dma, GFP_KERNEL); -+ if (!fbi->screen_base) -+ return -ENOMEM; -+ -+ dev_dbg(sfb->dev, "mapped %x to %p\n", -+ (unsigned int)map_dma, fbi->screen_base); -+ -+ memset(fbi->screen_base, 0x0, size); -+ fbi->fix.smem_start = map_dma; -+ -+ return 0; -+} -+ -+/** -+ * s3c_fb_free_memory() - free the display memory for the given window -+ * @sfb: The base resources for the hardware. -+ * @win: The window to free the display memory for. -+ * -+ * Free the display memory allocated by s3c_fb_alloc_memory(). -+ */ -+static void s3c_fb_free_memory(struct s3c_fb *sfb, struct s3c_fb_win *win) -+{ -+ struct fb_info *fbi = win->fbinfo; -+ -+ dma_free_writecombine(sfb->dev, PAGE_ALIGN(fbi->fix.smem_len), -+ fbi->screen_base, fbi->fix.smem_start); -+} -+ -+/** -+ * s3c_fb_release_win() - release resources for a framebuffer window. -+ * @win: The window to cleanup the resources for. -+ * -+ * Release the resources that where claimed for the hardware window, -+ * such as the framebuffer instance and any memory claimed for it. -+ */ -+static void s3c_fb_release_win(struct s3c_fb *sfb, struct s3c_fb_win *win) -+{ -+ fb_dealloc_cmap(&win->fbinfo->cmap); -+ unregister_framebuffer(win->fbinfo); -+ s3c_fb_free_memory(sfb, win); -+} -+ -+/** -+ * s3c_fb_probe_win() - register an hardware window -+ * @sfb: The base resources for the hardware -+ * @res: Pointer to where to place the resultant window. -+ * -+ * Allocate and do the basic initialisation for one of the hardware's graphics -+ * windows. -+ */ -+static int __devinit s3c_fb_probe_win(struct s3c_fb *sfb, unsigned int win_no, -+ struct s3c_fb_win **res) -+{ -+ struct fb_var_screeninfo *var; -+ struct fb_videomode *initmode; -+ struct s3c_fb_pd_win *windata; -+ struct s3c_fb_win *win; -+ struct fb_info *fbinfo; -+ int palette_size; -+ int ret; -+ -+ dev_dbg(sfb->dev, "probing window %d\n", win_no); -+ -+ palette_size = s3c_fb_win_pal_size(win_no); -+ -+ fbinfo = framebuffer_alloc(sizeof(struct s3c_fb_win) + -+ palette_size * sizeof(u32), sfb->dev); -+ if (!fbinfo) { -+ dev_err(sfb->dev, "failed to allocate framebuffer\n"); -+ return -ENOENT; -+ } -+ -+ windata = sfb->pdata->win[win_no]; -+ initmode = &windata->win_mode; -+ -+ WARN_ON(windata->max_bpp == 0); -+ WARN_ON(windata->win_mode.xres == 0); -+ WARN_ON(windata->win_mode.yres == 0); -+ -+ win = fbinfo->par; -+ var = &fbinfo->var; -+ win->fbinfo = fbinfo; -+ win->parent = sfb; -+ win->windata = windata; -+ win->index = win_no; -+ win->palette_buffer = (u32 *)(win + 1); -+ -+ ret = s3c_fb_alloc_memory(sfb, win); -+ if (ret) { -+ dev_err(sfb->dev, "failed to allocate display memory\n"); -+ goto err_framebuffer; -+ } -+ -+ /* setup the r/b/g positions for the window's palette */ -+ s3c_fb_init_palette(win_no, &win->palette); -+ -+ /* setup the initial video mode from the window */ -+ fb_videomode_to_var(&fbinfo->var, initmode); -+ -+ fbinfo->fix.type = FB_TYPE_PACKED_PIXELS; -+ fbinfo->fix.accel = FB_ACCEL_NONE; -+ fbinfo->var.activate = FB_ACTIVATE_NOW; -+ fbinfo->var.vmode = FB_VMODE_NONINTERLACED; -+ fbinfo->var.bits_per_pixel = windata->default_bpp; -+ fbinfo->fbops = &s3c_fb_ops; -+ fbinfo->flags = FBINFO_FLAG_DEFAULT; -+ fbinfo->pseudo_palette = &win->pseudo_palette; -+ -+ /* prepare to actually start the framebuffer */ -+ -+ ret = s3c_fb_check_var(&fbinfo->var, fbinfo); -+ if (ret < 0) { -+ dev_err(sfb->dev, "check_var failed on initial video params\n"); -+ goto err_alloc_mem; -+ } -+ -+ /* create initial colour map */ -+ -+ ret = fb_alloc_cmap(&fbinfo->cmap, s3c_fb_win_pal_size(win_no), 1); -+ if (ret == 0) -+ fb_set_cmap(&fbinfo->cmap, fbinfo); -+ else -+ dev_err(sfb->dev, "failed to allocate fb cmap\n"); -+ -+ s3c_fb_set_par(fbinfo); -+ -+ dev_dbg(sfb->dev, "about to register framebuffer\n"); -+ -+ /* run the check_var and set_par on our configuration. */ -+ -+ ret = register_framebuffer(fbinfo); -+ if (ret < 0) { -+ dev_err(sfb->dev, "failed to register framebuffer\n"); -+ goto err_alloc_mem; -+ } -+ -+ *res = win; -+ dev_info(sfb->dev, "window %d: fb %s\n", win_no, fbinfo->fix.id); -+ -+ return 0; -+ -+err_alloc_mem: -+ s3c_fb_free_memory(sfb, win); -+ -+err_framebuffer: -+ unregister_framebuffer(fbinfo); -+ return ret; -+} -+ -+/** -+ * s3c_fb_clear_win() - clear hardware window registers. -+ * @sfb: The base resources for the hardware. -+ * @win: The window to process. -+ * -+ * Reset the specific window registers to a known state. -+ */ -+static void s3c_fb_clear_win(struct s3c_fb *sfb, int win) -+{ -+ void __iomem *regs = sfb->regs; -+ -+ writel(0, regs + WINCON(win)); -+ writel(0xffffff, regs + WxKEYCONy(win, 0)); -+ writel(0xffffff, regs + WxKEYCONy(win, 1)); -+ -+ writel(0, regs + VIDOSD_A(win)); -+ writel(0, regs + VIDOSD_B(win)); -+ writel(0, regs + VIDOSD_C(win)); -+} -+ -+static int __devinit s3c_fb_probe(struct platform_device *pdev) -+{ -+ struct device *dev = &pdev->dev; -+ struct s3c_fb_platdata *pd; -+ struct s3c_fb *sfb; -+ struct resource *res; -+ int win; -+ int ret = 0; -+ -+ pd = pdev->dev.platform_data; -+ if (!pd) { -+ dev_err(dev, "no platform data specified\n"); -+ return -EINVAL; -+ } -+ -+ sfb = kzalloc(sizeof(struct s3c_fb), GFP_KERNEL); -+ if (!sfb) { -+ dev_err(dev, "no memory for framebuffers\n"); -+ return -ENOMEM; -+ } -+ -+ sfb->dev = dev; -+ sfb->pdata = pd; -+ -+ sfb->bus_clk = clk_get(dev, "lcd"); -+ if (IS_ERR(sfb->bus_clk)) { -+ dev_err(dev, "failed to get bus clock\n"); -+ goto err_sfb; -+ } -+ -+ clk_enable(sfb->bus_clk); -+ -+ res = platform_get_resource(pdev, IORESOURCE_MEM, 0); -+ if (!res) { -+ dev_err(dev, "failed to find registers\n"); -+ ret = -ENOENT; -+ goto err_clk; -+ } -+ -+ sfb->regs_res = request_mem_region(res->start, resource_size(res), -+ dev_name(dev)); -+ if (!sfb->regs_res) { -+ dev_err(dev, "failed to claim register region\n"); -+ ret = -ENOENT; -+ goto err_clk; -+ } -+ -+ sfb->regs = ioremap(res->start, resource_size(res)); -+ if (!sfb->regs) { -+ dev_err(dev, "failed to map registers\n"); -+ ret = -ENXIO; -+ goto err_req_region; -+ } -+ -+ dev_dbg(dev, "got resources (regs %p), probing windows\n", sfb->regs); -+ -+ /* setup gpio and output polarity controls */ -+ -+ pd->setup_gpio(); -+ -+ writel(pd->vidcon1, sfb->regs + VIDCON1); -+ -+ /* zero all windows before we do anything */ -+ -+ for (win = 0; win < S3C_FB_MAX_WIN; win++) -+ s3c_fb_clear_win(sfb, win); -+ -+ /* we have the register setup, start allocating framebuffers */ -+ -+ for (win = 0; win < S3C_FB_MAX_WIN; win++) { -+ if (!pd->win[win]) -+ continue; -+ -+ ret = s3c_fb_probe_win(sfb, win, &sfb->windows[win]); -+ if (ret < 0) { -+ dev_err(dev, "failed to create window %d\n", win); -+ for (; win >= 0; win--) -+ s3c_fb_release_win(sfb, sfb->windows[win]); -+ goto err_ioremap; -+ } -+ } -+ -+ platform_set_drvdata(pdev, sfb); -+ -+ return 0; -+ -+err_ioremap: -+ iounmap(sfb->regs); -+ -+err_req_region: -+ release_resource(sfb->regs_res); -+ kfree(sfb->regs_res); -+ -+err_clk: -+ clk_disable(sfb->bus_clk); -+ clk_put(sfb->bus_clk); -+ -+err_sfb: -+ kfree(sfb); -+ return ret; -+} -+ -+/** -+ * s3c_fb_remove() - Cleanup on module finalisation -+ * @pdev: The platform device we are bound to. -+ * -+ * Shutdown and then release all the resources that the driver allocated -+ * on initialisation. -+ */ -+static int __devexit s3c_fb_remove(struct platform_device *pdev) -+{ -+ struct s3c_fb *sfb = platform_get_drvdata(pdev); -+ int win; -+ -+ for (win = 0; win <= S3C_FB_MAX_WIN; win++) -+ s3c_fb_release_win(sfb, sfb->windows[win]); -+ -+ iounmap(sfb->regs); -+ -+ clk_disable(sfb->bus_clk); -+ clk_put(sfb->bus_clk); -+ -+ release_resource(sfb->regs_res); -+ kfree(sfb->regs_res); -+ -+ kfree(sfb); -+ -+ return 0; -+} -+ -+#ifdef CONFIG_PM -+static int s3c_fb_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ struct s3c_fb *sfb = platform_get_drvdata(pdev); -+ struct s3c_fb_win *win; -+ int win_no; -+ -+ for (win_no = S3C_FB_MAX_WIN; win_no >= 0; win_no--) { -+ win = sfb->windows[win_no]; -+ if (!win) -+ continue; -+ -+ /* use the blank function to push into power-down */ -+ s3c_fb_blank(FB_BLANK_POWERDOWN, win->fbinfo); -+ } -+ -+ clk_disable(sfb->bus_clk); -+ return 0; -+} -+ -+static int s3c_fb_resume(struct platform_device *pdev) -+{ -+ struct s3c_fb *sfb = platform_get_drvdata(pdev); -+ struct s3c_fb_win *win; -+ int win_no; -+ -+ clk_enable(sfb->bus_clk); -+ -+ for (win_no = 0; win_no < S3C_FB_MAX_WIN; win_no++) { -+ win = sfb->windows[win_no]; -+ if (!win) -+ continue; -+ -+ dev_dbg(&pdev->dev, "resuming window %d\n", win_no); -+ s3c_fb_set_par(win->fbinfo); -+ } -+ -+ return 0; -+} -+#else -+#define s3c_fb_suspend NULL -+#define s3c_fb_resume NULL -+#endif -+ -+static struct platform_driver s3c_fb_driver = { -+ .probe = s3c_fb_probe, -+ .remove = s3c_fb_remove, -+ .suspend = s3c_fb_suspend, -+ .resume = s3c_fb_resume, -+ .driver = { -+ .name = "s3c-fb", -+ .owner = THIS_MODULE, -+ }, -+}; -+ -+static int __init s3c_fb_init(void) -+{ -+ return platform_driver_register(&s3c_fb_driver); -+} -+ -+static void __exit s3c_fb_cleanup(void) -+{ -+ platform_driver_unregister(&s3c_fb_driver); -+} -+ -+module_init(s3c_fb_init); -+module_exit(s3c_fb_cleanup); -+ -+MODULE_AUTHOR("Ben Dooks <ben@simtec.co.uk>"); -+MODULE_DESCRIPTION("Samsung S3C SoC Framebuffer driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:s3c-fb"); ---- a/drivers/watchdog/Kconfig -+++ b/drivers/watchdog/Kconfig -@@ -233,6 +233,12 @@ config ORION5X_WATCHDOG - To compile this driver as a module, choose M here: the - module will be called orion5x_wdt. - -+config PCF50606_WATCHDOG -+ tristate "NXP PCF50606 Watchdog" -+ depends on MFD_PCF50606 -+ help -+ Say Y here to include support for NXP PCF50606 watchdog timer. -+ - # ARM26 Architecture - - # AVR32 Architecture -@@ -784,7 +790,7 @@ config WATCHDOG_RTAS - tristate "RTAS watchdog" - depends on PPC_RTAS - help -- This driver adds watchdog support for the RTAS watchdog. -+ his driver adds watchdog support for the RTAS watchdog. - - To compile this driver as a module, choose M here. The module - will be called wdrtas. ---- a/drivers/watchdog/Makefile -+++ b/drivers/watchdog/Makefile -@@ -41,6 +41,7 @@ obj-$(CONFIG_PNX4008_WATCHDOG) += pnx400 - obj-$(CONFIG_IOP_WATCHDOG) += iop_wdt.o - obj-$(CONFIG_DAVINCI_WATCHDOG) += davinci_wdt.o - obj-$(CONFIG_ORION5X_WATCHDOG) += orion5x_wdt.o -+obj-$(CONFIG_PCF50606_WATCHDOG) += pcf50606_wdt.o - - # ARM26 Architecture - ---- /dev/null -+++ b/drivers/watchdog/pcf50606_wdt.c -@@ -0,0 +1,213 @@ -+/* Philips PCF50606 Watchdog Timer Driver -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * Author: Balaji Rao <balajirrao@openmoko.org> -+ * All rights reserved. -+ * -+ * Broken down from monstrous PCF50606 driver mainly by -+ * Harald Welte, Matt Hsu, Andy Green and Werner Almesberger -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ */ -+ -+#include <linux/miscdevice.h> -+#include <linux/watchdog.h> -+ -+#include <linux/mfd/pcf50606/core.h> -+#include <linux/mfd/pcf50606/wdt.h> -+ -+static struct pcf50606 *pcf; -+static unsigned long wdt_status; -+#define WDT_IN_USE 0 -+#define WDT_OK_TO_CLOSE 1 -+#define WDT_REGION_INITED 2 -+#define WDT_DEVICE_INITED 3 -+ -+static int allow_close; -+#define CLOSE_STATE_NOT 0x0000 -+#define CLOSE_STATE_ALLOW 0x2342 -+ -+static void pcf50606_wdt_start(void) -+{ -+ pcf50606_reg_set_bit_mask(pcf, PCF50606_REG_OOCC1, PCF50606_OOCC1_WDTRST, -+ PCF50606_OOCC1_WDTRST); -+} -+ -+static void pcf50606_wdt_stop(void) -+{ -+ pcf50606_reg_clear_bits(pcf, PCF50606_REG_OOCS, PCF50606_OOCS_WDTEXP); -+} -+ -+static void pcf50606_wdt_keepalive(void) -+{ -+ pcf50606_wdt_start(); -+} -+ -+static int pcf50606_wdt_open(struct inode *inode, struct file *file) -+{ -+ if (test_and_set_bit(WDT_IN_USE, &wdt_status)) -+ return -EBUSY; -+ -+ pcf50606_wdt_start(); -+ -+ return nonseekable_open(inode, file); -+} -+ -+static int pcf50606_wdt_release(struct inode *inode, struct file *file) -+{ -+ if (allow_close == CLOSE_STATE_ALLOW) -+ pcf50606_wdt_stop(); -+ else { -+ printk(KERN_CRIT "Unexpected close, not stopping watchdog!\n"); -+ pcf50606_wdt_keepalive(); -+ } -+ -+ allow_close = CLOSE_STATE_NOT; -+ clear_bit(WDT_IN_USE, &wdt_status); -+ -+ return 0; -+} -+ -+static ssize_t pcf50606_wdt_write(struct file *file, const char __user *data, -+ size_t len, loff_t *ppos) -+{ -+ if (len) { -+ size_t i; -+ -+ for (i = 0; i != len; i++) { -+ char c; -+ if (get_user(c, data + i)) -+ return -EFAULT; -+ if (c == 'V') -+ allow_close = CLOSE_STATE_ALLOW; -+ } -+ pcf50606_wdt_keepalive(); -+ } -+ -+ return len; -+} -+ -+static struct watchdog_info pcf50606_wdt_ident = { -+ .options = WDIOF_MAGICCLOSE, -+ .firmware_version = 0, -+ .identity = "PCF50606 Watchdog", -+}; -+ -+static int pcf50606_wdt_ioctl(struct inode *inode, struct file *file, -+ unsigned int cmd, unsigned long arg) -+{ -+ void __user *argp = (void __user *)arg; -+ int __user *p = argp; -+ -+ switch (cmd) { -+ case WDIOC_GETSUPPORT: -+ return copy_to_user(argp, &pcf50606_wdt_ident, -+ sizeof(pcf50606_wdt_ident)) ? -EFAULT : 0; -+ break; -+ case WDIOC_GETSTATUS: -+ case WDIOC_GETBOOTSTATUS: -+ return put_user(0, p); -+ case WDIOC_KEEPALIVE: -+ pcf50606_wdt_keepalive(); -+ return 0; -+ case WDIOC_GETTIMEOUT: -+ return put_user(8, p); -+ default: -+ return -ENOIOCTLCMD; -+ } -+} -+ -+static struct file_operations pcf50606_wdt_fops = { -+ .owner = THIS_MODULE, -+ .llseek = no_llseek, -+ .write = &pcf50606_wdt_write, -+ .ioctl = &pcf50606_wdt_ioctl, -+ .open = &pcf50606_wdt_open, -+ .release = &pcf50606_wdt_release, -+}; -+ -+static struct miscdevice pcf50606_wdt_miscdev = { -+ .minor = WATCHDOG_MINOR, -+ .name = "watchdog", -+ .fops = &pcf50606_wdt_fops, -+}; -+ -+static void pcf50606_wdt_irq(struct pcf50606 *pcf, int irq, void *unused) -+{ -+ pcf50606_reg_set_bit_mask(pcf, PCF50606_REG_OOCC1, -+ PCF50606_OOCC1_WDTRST, -+ PCF50606_OOCC1_WDTRST); -+} -+ -+int __init pcf50606_wdt_probe(struct platform_device *pdev) -+{ -+ struct pcf50606 *pcf; -+ int err; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ err = misc_register(&pcf50606_wdt_miscdev); -+ if (err) { -+ dev_err(&pdev->dev, "cannot register miscdev on " -+ "minor=%d (%d)\n", WATCHDOG_MINOR, err); -+ return err; -+ } -+ set_bit(WDT_DEVICE_INITED, &wdt_status); -+ -+ /* Set up IRQ handlers */ -+ pcf->irq_handler[PCF50606_IRQ_CHGWD10S].handler = pcf50606_wdt_irq; -+ -+ return 0; -+} -+ -+static int __devexit pcf50606_wdt_remove(struct platform_device *pdev) -+{ -+ struct pcf50606 *pcf; -+ -+ pcf = platform_get_drvdata(pdev); -+ -+ misc_deregister(&pcf50606_wdt_miscdev); -+ -+ pcf->irq_handler[PCF50606_IRQ_CHGWD10S].handler = NULL; -+ -+ return 0; -+} -+ -+struct platform_driver pcf50606_wdt_driver = { -+ .driver = { -+ .name = "pcf50606-wdt", -+ }, -+ .probe = pcf50606_wdt_probe, -+ .remove = __devexit_p(pcf50606_wdt_remove), -+}; -+ -+static int __init pcf50606_wdt_init(void) -+{ -+ return platform_driver_register(&pcf50606_wdt_driver); -+} -+module_init(pcf50606_wdt_init); -+ -+static void __exit pcf50606_wdt_exit(void) -+{ -+ platform_driver_unregister(&pcf50606_wdt_driver); -+} -+module_exit(pcf50606_wdt_exit); -+ -+MODULE_AUTHOR("Balaji Rao <balajirrao@openmoko.org>"); -+MODULE_DESCRIPTION("PCF50606 wdt driver"); -+MODULE_LICENSE("GPL"); -+MODULE_ALIAS("platform:pcf50606-wdt"); -+ ---- a/drivers/watchdog/s3c2410_wdt.c -+++ b/drivers/watchdog/s3c2410_wdt.c -@@ -42,7 +42,7 @@ - #undef S3C_VA_WATCHDOG - #define S3C_VA_WATCHDOG (0) - --#include <asm/plat-s3c/regs-watchdog.h> -+#include <plat/regs-watchdog.h> - - #define PFX "s3c2410-wdt: " - ---- a/fs/jffs2/background.c -+++ b/fs/jffs2/background.c -@@ -95,13 +95,17 @@ static int jffs2_garbage_collect_thread( - spin_unlock(&c->erase_completion_lock); - - -- /* This thread is purely an optimisation. But if it runs when -- other things could be running, it actually makes things a -- lot worse. Use yield() and put it at the back of the runqueue -- every time. Especially during boot, pulling an inode in -- with read_inode() is much preferable to having the GC thread -- get there first. */ -- yield(); -+ /* Problem - immediately after bootup, the GCD spends a lot -+ * of time in places like jffs2_kill_fragtree(); so much so -+ * that userspace processes (like gdm and X) are starved -+ * despite plenty of cond_resched()s and renicing. Yield() -+ * doesn't help, either (presumably because userspace and GCD -+ * are generally competing for a higher latency resource - -+ * disk). -+ * This forces the GCD to slow the hell down. Pulling an -+ * inode in with read_inode() is much preferable to having -+ * the GC thread get there first. */ -+ schedule_timeout_interruptible(msecs_to_jiffies(50)); - - /* Put_super will send a SIGKILL and then wait on the sem. - */ ---- a/include/asm-arm/plat-s3c/iic.h -+++ /dev/null -@@ -1,33 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/iic.h -- * -- * Copyright (c) 2004 Simtec Electronics -- * Ben Dooks <ben@simtec.co.uk> -- * -- * S3C2410 - I2C Controller platfrom_device info -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ -- --#ifndef __ASM_ARCH_IIC_H --#define __ASM_ARCH_IIC_H __FILE__ -- --#define S3C_IICFLG_FILTER (1<<0) /* enable s3c2440 filter */ -- --/* Notes: -- * 1) All frequencies are expressed in Hz -- * 2) A value of zero is `do not care` --*/ -- --struct s3c2410_platform_i2c { -- int bus_num; /* bus number to use */ -- unsigned int flags; -- unsigned int slave_addr; /* slave address for controller */ -- unsigned long bus_freq; /* standard bus frequency */ -- unsigned long max_freq; /* max frequency for the bus */ -- unsigned long min_freq; /* min frequency for the bus */ -- unsigned int sda_delay; /* pclks (s3c2440 only) */ --}; -- --#endif /* __ASM_ARCH_IIC_H */ ---- a/include/asm-arm/plat-s3c/nand.h -+++ /dev/null -@@ -1,50 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/nand.h -- * -- * Copyright (c) 2004 Simtec Electronics -- * Ben Dooks <ben@simtec.co.uk> -- * -- * S3C2410 - NAND device controller platfrom_device info -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. --*/ -- --/* struct s3c2410_nand_set -- * -- * define an set of one or more nand chips registered with an unique mtd -- * -- * nr_chips = number of chips in this set -- * nr_partitions = number of partitions pointed to be partitoons (or zero) -- * name = name of set (optional) -- * nr_map = map for low-layer logical to physical chip numbers (option) -- * partitions = mtd partition list --*/ -- --struct s3c2410_nand_set { -- unsigned int disable_ecc : 1; -- -- int nr_chips; -- int nr_partitions; -- char *name; -- int *nr_map; -- struct mtd_partition *partitions; -- struct nand_ecclayout *ecc_layout; --}; -- --struct s3c2410_platform_nand { -- /* timing information for controller, all times in nanoseconds */ -- -- int tacls; /* time for active CLE/ALE to nWE/nOE */ -- int twrph0; /* active time for nWE/nOE */ -- int twrph1; /* time for release CLE/ALE from nWE/nOE inactive */ -- -- unsigned int ignore_unset_ecc : 1; -- -- int nr_sets; -- struct s3c2410_nand_set *sets; -- -- void (*select_chip)(struct s3c2410_nand_set *, -- int chip); --}; -- ---- a/include/asm-arm/plat-s3c/regs-ac97.h -+++ /dev/null -@@ -1,67 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/regs-ac97.h -- * -- * Copyright (c) 2006 Simtec Electronics <linux@simtec.co.uk> -- * http://www.simtec.co.uk/products/SWLINUX/ -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * S3C2440 AC97 Controller --*/ -- --#ifndef __ASM_ARCH_REGS_AC97_H --#define __ASM_ARCH_REGS_AC97_H __FILE__ -- --#define S3C_AC97_GLBCTRL (0x00) -- --#define S3C_AC97_GLBCTRL_CODECREADYIE (1<<22) --#define S3C_AC97_GLBCTRL_PCMOUTURIE (1<<21) --#define S3C_AC97_GLBCTRL_PCMINORIE (1<<20) --#define S3C_AC97_GLBCTRL_MICINORIE (1<<19) --#define S3C_AC97_GLBCTRL_PCMOUTTIE (1<<18) --#define S3C_AC97_GLBCTRL_PCMINTIE (1<<17) --#define S3C_AC97_GLBCTRL_MICINTIE (1<<16) --#define S3C_AC97_GLBCTRL_PCMOUTTM_OFF (0<<12) --#define S3C_AC97_GLBCTRL_PCMOUTTM_PIO (1<<12) --#define S3C_AC97_GLBCTRL_PCMOUTTM_DMA (2<<12) --#define S3C_AC97_GLBCTRL_PCMOUTTM_MASK (3<<12) --#define S3C_AC97_GLBCTRL_PCMINTM_OFF (0<<10) --#define S3C_AC97_GLBCTRL_PCMINTM_PIO (1<<10) --#define S3C_AC97_GLBCTRL_PCMINTM_DMA (2<<10) --#define S3C_AC97_GLBCTRL_PCMINTM_MASK (3<<10) --#define S3C_AC97_GLBCTRL_MICINTM_OFF (0<<8) --#define S3C_AC97_GLBCTRL_MICINTM_PIO (1<<8) --#define S3C_AC97_GLBCTRL_MICINTM_DMA (2<<8) --#define S3C_AC97_GLBCTRL_MICINTM_MASK (3<<8) --#define S3C_AC97_GLBCTRL_TRANSFERDATAENABLE (1<<3) --#define S3C_AC97_GLBCTRL_ACLINKON (1<<2) --#define S3C_AC97_GLBCTRL_WARMRESET (1<<1) --#define S3C_AC97_GLBCTRL_COLDRESET (1<<0) -- --#define S3C_AC97_GLBSTAT (0x04) -- --#define S3C_AC97_GLBSTAT_CODECREADY (1<<22) --#define S3C_AC97_GLBSTAT_PCMOUTUR (1<<21) --#define S3C_AC97_GLBSTAT_PCMINORI (1<<20) --#define S3C_AC97_GLBSTAT_MICINORI (1<<19) --#define S3C_AC97_GLBSTAT_PCMOUTTI (1<<18) --#define S3C_AC97_GLBSTAT_PCMINTI (1<<17) --#define S3C_AC97_GLBSTAT_MICINTI (1<<16) --#define S3C_AC97_GLBSTAT_MAINSTATE_IDLE (0<<0) --#define S3C_AC97_GLBSTAT_MAINSTATE_INIT (1<<0) --#define S3C_AC97_GLBSTAT_MAINSTATE_READY (2<<0) --#define S3C_AC97_GLBSTAT_MAINSTATE_ACTIVE (3<<0) --#define S3C_AC97_GLBSTAT_MAINSTATE_LP (4<<0) --#define S3C_AC97_GLBSTAT_MAINSTATE_WARM (5<<0) -- --#define S3C_AC97_CODEC_CMD (0x08) -- --#define S3C_AC97_CODEC_CMD_READ (1<<23) -- --#define S3C_AC97_STAT (0x0c) --#define S3C_AC97_PCM_ADDR (0x10) --#define S3C_AC97_PCM_DATA (0x18) --#define S3C_AC97_MIC_DATA (0x1C) -- --#endif /* __ASM_ARCH_REGS_AC97_H */ ---- a/include/asm-arm/plat-s3c/regs-iic.h -+++ /dev/null -@@ -1,56 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/regs-iic.h -- * -- * Copyright (c) 2004 Simtec Electronics <linux@simtec.co.uk> -- * http://www.simtec.co.uk/products/SWLINUX/ -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * S3C2410 I2C Controller --*/ -- --#ifndef __ASM_ARCH_REGS_IIC_H --#define __ASM_ARCH_REGS_IIC_H __FILE__ -- --/* see s3c2410x user guide, v1.1, section 9 (p447) for more info */ -- --#define S3C2410_IICREG(x) (x) -- --#define S3C2410_IICCON S3C2410_IICREG(0x00) --#define S3C2410_IICSTAT S3C2410_IICREG(0x04) --#define S3C2410_IICADD S3C2410_IICREG(0x08) --#define S3C2410_IICDS S3C2410_IICREG(0x0C) --#define S3C2440_IICLC S3C2410_IICREG(0x10) -- --#define S3C2410_IICCON_ACKEN (1<<7) --#define S3C2410_IICCON_TXDIV_16 (0<<6) --#define S3C2410_IICCON_TXDIV_512 (1<<6) --#define S3C2410_IICCON_IRQEN (1<<5) --#define S3C2410_IICCON_IRQPEND (1<<4) --#define S3C2410_IICCON_SCALE(x) ((x)&15) --#define S3C2410_IICCON_SCALEMASK (0xf) -- --#define S3C2410_IICSTAT_MASTER_RX (2<<6) --#define S3C2410_IICSTAT_MASTER_TX (3<<6) --#define S3C2410_IICSTAT_SLAVE_RX (0<<6) --#define S3C2410_IICSTAT_SLAVE_TX (1<<6) --#define S3C2410_IICSTAT_MODEMASK (3<<6) -- --#define S3C2410_IICSTAT_START (1<<5) --#define S3C2410_IICSTAT_BUSBUSY (1<<5) --#define S3C2410_IICSTAT_TXRXEN (1<<4) --#define S3C2410_IICSTAT_ARBITR (1<<3) --#define S3C2410_IICSTAT_ASSLAVE (1<<2) --#define S3C2410_IICSTAT_ADDR0 (1<<1) --#define S3C2410_IICSTAT_LASTBIT (1<<0) -- --#define S3C2410_IICLC_SDA_DELAY0 (0 << 0) --#define S3C2410_IICLC_SDA_DELAY5 (1 << 0) --#define S3C2410_IICLC_SDA_DELAY10 (2 << 0) --#define S3C2410_IICLC_SDA_DELAY15 (3 << 0) --#define S3C2410_IICLC_SDA_DELAY_MASK (3 << 0) -- --#define S3C2410_IICLC_FILTER_ON (1<<2) -- --#endif /* __ASM_ARCH_REGS_IIC_H */ ---- a/include/asm-arm/plat-s3c/regs-nand.h -+++ /dev/null -@@ -1,123 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/regs-nand.h -- * -- * Copyright (c) 2004,2005 Simtec Electronics <linux@simtec.co.uk> -- * http://www.simtec.co.uk/products/SWLINUX/ -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * S3C2410 NAND register definitions --*/ -- --#ifndef __ASM_ARM_REGS_NAND --#define __ASM_ARM_REGS_NAND -- -- --#define S3C2410_NFREG(x) (x) -- --#define S3C2410_NFCONF S3C2410_NFREG(0x00) --#define S3C2410_NFCMD S3C2410_NFREG(0x04) --#define S3C2410_NFADDR S3C2410_NFREG(0x08) --#define S3C2410_NFDATA S3C2410_NFREG(0x0C) --#define S3C2410_NFSTAT S3C2410_NFREG(0x10) --#define S3C2410_NFECC S3C2410_NFREG(0x14) -- --#define S3C2440_NFCONT S3C2410_NFREG(0x04) --#define S3C2440_NFCMD S3C2410_NFREG(0x08) --#define S3C2440_NFADDR S3C2410_NFREG(0x0C) --#define S3C2440_NFDATA S3C2410_NFREG(0x10) --#define S3C2440_NFECCD0 S3C2410_NFREG(0x14) --#define S3C2440_NFECCD1 S3C2410_NFREG(0x18) --#define S3C2440_NFECCD S3C2410_NFREG(0x1C) --#define S3C2440_NFSTAT S3C2410_NFREG(0x20) --#define S3C2440_NFESTAT0 S3C2410_NFREG(0x24) --#define S3C2440_NFESTAT1 S3C2410_NFREG(0x28) --#define S3C2440_NFMECC0 S3C2410_NFREG(0x2C) --#define S3C2440_NFMECC1 S3C2410_NFREG(0x30) --#define S3C2440_NFSECC S3C2410_NFREG(0x34) --#define S3C2440_NFSBLK S3C2410_NFREG(0x38) --#define S3C2440_NFEBLK S3C2410_NFREG(0x3C) -- --#define S3C2412_NFSBLK S3C2410_NFREG(0x20) --#define S3C2412_NFEBLK S3C2410_NFREG(0x24) --#define S3C2412_NFSTAT S3C2410_NFREG(0x28) --#define S3C2412_NFMECC_ERR0 S3C2410_NFREG(0x2C) --#define S3C2412_NFMECC_ERR1 S3C2410_NFREG(0x30) --#define S3C2412_NFMECC0 S3C2410_NFREG(0x34) --#define S3C2412_NFMECC1 S3C2410_NFREG(0x38) --#define S3C2412_NFSECC S3C2410_NFREG(0x3C) -- --#define S3C2410_NFCONF_EN (1<<15) --#define S3C2410_NFCONF_512BYTE (1<<14) --#define S3C2410_NFCONF_4STEP (1<<13) --#define S3C2410_NFCONF_INITECC (1<<12) --#define S3C2410_NFCONF_nFCE (1<<11) --#define S3C2410_NFCONF_TACLS(x) ((x)<<8) --#define S3C2410_NFCONF_TWRPH0(x) ((x)<<4) --#define S3C2410_NFCONF_TWRPH1(x) ((x)<<0) -- --#define S3C2410_NFSTAT_BUSY (1<<0) -- --#define S3C2440_NFCONF_BUSWIDTH_8 (0<<0) --#define S3C2440_NFCONF_BUSWIDTH_16 (1<<0) --#define S3C2440_NFCONF_ADVFLASH (1<<3) --#define S3C2440_NFCONF_TACLS(x) ((x)<<12) --#define S3C2440_NFCONF_TWRPH0(x) ((x)<<8) --#define S3C2440_NFCONF_TWRPH1(x) ((x)<<4) -- --#define S3C2440_NFCONT_LOCKTIGHT (1<<13) --#define S3C2440_NFCONT_SOFTLOCK (1<<12) --#define S3C2440_NFCONT_ILLEGALACC_EN (1<<10) --#define S3C2440_NFCONT_RNBINT_EN (1<<9) --#define S3C2440_NFCONT_RN_FALLING (1<<8) --#define S3C2440_NFCONT_SPARE_ECCLOCK (1<<6) --#define S3C2440_NFCONT_MAIN_ECCLOCK (1<<5) --#define S3C2440_NFCONT_INITECC (1<<4) --#define S3C2440_NFCONT_nFCE (1<<1) --#define S3C2440_NFCONT_ENABLE (1<<0) -- --#define S3C2440_NFSTAT_READY (1<<0) --#define S3C2440_NFSTAT_nCE (1<<1) --#define S3C2440_NFSTAT_RnB_CHANGE (1<<2) --#define S3C2440_NFSTAT_ILLEGAL_ACCESS (1<<3) -- --#define S3C2412_NFCONF_NANDBOOT (1<<31) --#define S3C2412_NFCONF_ECCCLKCON (1<<30) --#define S3C2412_NFCONF_ECC_MLC (1<<24) --#define S3C2412_NFCONF_TACLS_MASK (7<<12) /* 1 extra bit of Tacls */ -- --#define S3C2412_NFCONT_ECC4_DIRWR (1<<18) --#define S3C2412_NFCONT_LOCKTIGHT (1<<17) --#define S3C2412_NFCONT_SOFTLOCK (1<<16) --#define S3C2412_NFCONT_ECC4_ENCINT (1<<13) --#define S3C2412_NFCONT_ECC4_DECINT (1<<12) --#define S3C2412_NFCONT_MAIN_ECC_LOCK (1<<7) --#define S3C2412_NFCONT_INIT_MAIN_ECC (1<<5) --#define S3C2412_NFCONT_nFCE1 (1<<2) --#define S3C2412_NFCONT_nFCE0 (1<<1) -- --#define S3C2412_NFSTAT_ECC_ENCDONE (1<<7) --#define S3C2412_NFSTAT_ECC_DECDONE (1<<6) --#define S3C2412_NFSTAT_ILLEGAL_ACCESS (1<<5) --#define S3C2412_NFSTAT_RnB_CHANGE (1<<4) --#define S3C2412_NFSTAT_nFCE1 (1<<3) --#define S3C2412_NFSTAT_nFCE0 (1<<2) --#define S3C2412_NFSTAT_Res1 (1<<1) --#define S3C2412_NFSTAT_READY (1<<0) -- --#define S3C2412_NFECCERR_SERRDATA(x) (((x) >> 21) & 0xf) --#define S3C2412_NFECCERR_SERRBIT(x) (((x) >> 18) & 0x7) --#define S3C2412_NFECCERR_MERRDATA(x) (((x) >> 7) & 0x3ff) --#define S3C2412_NFECCERR_MERRBIT(x) (((x) >> 4) & 0x7) --#define S3C2412_NFECCERR_SPARE_ERR(x) (((x) >> 2) & 0x3) --#define S3C2412_NFECCERR_MAIN_ERR(x) (((x) >> 2) & 0x3) --#define S3C2412_NFECCERR_NONE (0) --#define S3C2412_NFECCERR_1BIT (1) --#define S3C2412_NFECCERR_MULTIBIT (2) --#define S3C2412_NFECCERR_ECCAREA (3) -- -- -- --#endif /* __ASM_ARM_REGS_NAND */ -- ---- a/include/asm-arm/plat-s3c/regs-rtc.h -+++ /dev/null -@@ -1,61 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/regs-rtc.h -- * -- * Copyright (c) 2003 Simtec Electronics <linux@simtec.co.uk> -- * http://www.simtec.co.uk/products/SWLINUX/ -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * S3C2410 Internal RTC register definition --*/ -- --#ifndef __ASM_ARCH_REGS_RTC_H --#define __ASM_ARCH_REGS_RTC_H __FILE__ -- --#define S3C2410_RTCREG(x) (x) -- --#define S3C2410_RTCCON S3C2410_RTCREG(0x40) --#define S3C2410_RTCCON_RTCEN (1<<0) --#define S3C2410_RTCCON_CLKSEL (1<<1) --#define S3C2410_RTCCON_CNTSEL (1<<2) --#define S3C2410_RTCCON_CLKRST (1<<3) -- --#define S3C2410_TICNT S3C2410_RTCREG(0x44) --#define S3C2410_TICNT_ENABLE (1<<7) -- --#define S3C2410_RTCALM S3C2410_RTCREG(0x50) --#define S3C2410_RTCALM_ALMEN (1<<6) --#define S3C2410_RTCALM_YEAREN (1<<5) --#define S3C2410_RTCALM_MONEN (1<<4) --#define S3C2410_RTCALM_DAYEN (1<<3) --#define S3C2410_RTCALM_HOUREN (1<<2) --#define S3C2410_RTCALM_MINEN (1<<1) --#define S3C2410_RTCALM_SECEN (1<<0) -- --#define S3C2410_RTCALM_ALL \ -- S3C2410_RTCALM_ALMEN | S3C2410_RTCALM_YEAREN | S3C2410_RTCALM_MONEN |\ -- S3C2410_RTCALM_DAYEN | S3C2410_RTCALM_HOUREN | S3C2410_RTCALM_MINEN |\ -- S3C2410_RTCALM_SECEN -- -- --#define S3C2410_ALMSEC S3C2410_RTCREG(0x54) --#define S3C2410_ALMMIN S3C2410_RTCREG(0x58) --#define S3C2410_ALMHOUR S3C2410_RTCREG(0x5c) -- --#define S3C2410_ALMDATE S3C2410_RTCREG(0x60) --#define S3C2410_ALMMON S3C2410_RTCREG(0x64) --#define S3C2410_ALMYEAR S3C2410_RTCREG(0x68) -- --#define S3C2410_RTCRST S3C2410_RTCREG(0x6c) -- --#define S3C2410_RTCSEC S3C2410_RTCREG(0x70) --#define S3C2410_RTCMIN S3C2410_RTCREG(0x74) --#define S3C2410_RTCHOUR S3C2410_RTCREG(0x78) --#define S3C2410_RTCDATE S3C2410_RTCREG(0x7c) --#define S3C2410_RTCDAY S3C2410_RTCREG(0x80) --#define S3C2410_RTCMON S3C2410_RTCREG(0x84) --#define S3C2410_RTCYEAR S3C2410_RTCREG(0x88) -- -- --#endif /* __ASM_ARCH_REGS_RTC_H */ ---- a/include/asm-arm/plat-s3c/regs-watchdog.h -+++ /dev/null -@@ -1,41 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/regs-watchdog.h -- * -- * Copyright (c) 2003 Simtec Electronics <linux@simtec.co.uk> -- * http://www.simtec.co.uk/products/SWLINUX/ -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * S3C2410 Watchdog timer control --*/ -- -- --#ifndef __ASM_ARCH_REGS_WATCHDOG_H --#define __ASM_ARCH_REGS_WATCHDOG_H -- --#define S3C_WDOGREG(x) ((x) + S3C_VA_WATCHDOG) -- --#define S3C2410_WTCON S3C_WDOGREG(0x00) --#define S3C2410_WTDAT S3C_WDOGREG(0x04) --#define S3C2410_WTCNT S3C_WDOGREG(0x08) -- --/* the watchdog can either generate a reset pulse, or an -- * interrupt. -- */ -- --#define S3C2410_WTCON_RSTEN (0x01) --#define S3C2410_WTCON_INTEN (1<<2) --#define S3C2410_WTCON_ENABLE (1<<5) -- --#define S3C2410_WTCON_DIV16 (0<<3) --#define S3C2410_WTCON_DIV32 (1<<3) --#define S3C2410_WTCON_DIV64 (2<<3) --#define S3C2410_WTCON_DIV128 (3<<3) -- --#define S3C2410_WTCON_PRESCALE(x) ((x) << 8) --#define S3C2410_WTCON_PRESCALE_MASK (0xff00) -- --#endif /* __ASM_ARCH_REGS_WATCHDOG_H */ -- -- ---- a/include/asm-arm/plat-s3c24xx/mci.h -+++ /dev/null -@@ -1,15 +0,0 @@ --#ifndef _ARCH_MCI_H --#define _ARCH_MCI_H -- --struct s3c24xx_mci_pdata { -- unsigned int wprotect_invert : 1; -- unsigned int detect_invert : 1; /* set => detect active high. */ -- -- unsigned int gpio_detect; -- unsigned int gpio_wprotect; -- unsigned long ocr_avail; -- void (*set_power)(unsigned char power_mode, -- unsigned short vdd); --}; -- --#endif /* _ARCH_NCI_H */ ---- /dev/null -+++ b/include/asm-arm/plat-s3c24xx/neo1973.h -@@ -0,0 +1,33 @@ -+/* -+ * include/asm-arm/plat-s3c24xx/neo1973.h -+ * -+ * Common utility code for GTA01 and GTA02 -+ * -+ * Copyright (C) 2008 by Openmoko, Inc. -+ * Author: Holger Hans Peter Freyther <freyther@openmoko.org> -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; either version 2 of -+ * the License, or (at your option) any later version. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+ -+#ifndef NEO1973_H -+#define NEO1973_H -+ -+void neo1973_gpb_add_shadow_gpio(unsigned int gpio); -+void neo1973_gpb_setpin(unsigned int pin, unsigned to); -+ -+#endif ---- a/include/asm-arm/plat-s3c24xx/regs-spi.h -+++ /dev/null -@@ -1,82 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/regs-spi.h -- * -- * Copyright (c) 2004 Fetron GmbH -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * S3C2410 SPI register definition --*/ -- --#ifndef __ASM_ARCH_REGS_SPI_H --#define __ASM_ARCH_REGS_SPI_H -- --#define S3C2410_SPI1 (0x20) --#define S3C2412_SPI1 (0x100) -- --#define S3C2410_SPCON (0x00) -- --#define S3C2412_SPCON_RXFIFO_RB2 (0<<14) --#define S3C2412_SPCON_RXFIFO_RB4 (1<<14) --#define S3C2412_SPCON_RXFIFO_RB12 (2<<14) --#define S3C2412_SPCON_RXFIFO_RB14 (3<<14) --#define S3C2412_SPCON_TXFIFO_RB2 (0<<12) --#define S3C2412_SPCON_TXFIFO_RB4 (1<<12) --#define S3C2412_SPCON_TXFIFO_RB12 (2<<12) --#define S3C2412_SPCON_TXFIFO_RB14 (3<<12) --#define S3C2412_SPCON_RXFIFO_RESET (1<<11) /* RxFIFO reset */ --#define S3C2412_SPCON_TXFIFO_RESET (1<<10) /* TxFIFO reset */ --#define S3C2412_SPCON_RXFIFO_EN (1<<9) /* RxFIFO Enable */ --#define S3C2412_SPCON_TXFIFO_EN (1<<8) /* TxFIFO Enable */ -- --#define S3C2412_SPCON_DIRC_RX (1<<7) -- --#define S3C2410_SPCON_SMOD_DMA (2<<5) /* DMA mode */ --#define S3C2410_SPCON_SMOD_INT (1<<5) /* interrupt mode */ --#define S3C2410_SPCON_SMOD_POLL (0<<5) /* polling mode */ --#define S3C2410_SPCON_ENSCK (1<<4) /* Enable SCK */ --#define S3C2410_SPCON_MSTR (1<<3) /* Master/Slave select -- 0: slave, 1: master */ --#define S3C2410_SPCON_CPOL_HIGH (1<<2) /* Clock polarity select */ --#define S3C2410_SPCON_CPOL_LOW (0<<2) /* Clock polarity select */ -- --#define S3C2410_SPCON_CPHA_FMTB (1<<1) /* Clock Phase Select */ --#define S3C2410_SPCON_CPHA_FMTA (0<<1) /* Clock Phase Select */ -- --#define S3C2410_SPCON_TAGD (1<<0) /* Tx auto garbage data mode */ -- -- --#define S3C2410_SPSTA (0x04) -- --#define S3C2412_SPSTA_RXFIFO_AE (1<<11) --#define S3C2412_SPSTA_TXFIFO_AE (1<<10) --#define S3C2412_SPSTA_RXFIFO_ERROR (1<<9) --#define S3C2412_SPSTA_TXFIFO_ERROR (1<<8) --#define S3C2412_SPSTA_RXFIFO_FIFO (1<<7) --#define S3C2412_SPSTA_RXFIFO_EMPTY (1<<6) --#define S3C2412_SPSTA_TXFIFO_NFULL (1<<5) --#define S3C2412_SPSTA_TXFIFO_EMPTY (1<<4) -- --#define S3C2410_SPSTA_DCOL (1<<2) /* Data Collision Error */ --#define S3C2410_SPSTA_MULD (1<<1) /* Multi Master Error */ --#define S3C2410_SPSTA_READY (1<<0) /* Data Tx/Rx ready */ --#define S3C2412_SPSTA_READY_ORG (1<<3) -- --#define S3C2410_SPPIN (0x08) -- --#define S3C2410_SPPIN_ENMUL (1<<2) /* Multi Master Error detect */ --#define S3C2410_SPPIN_RESERVED (1<<1) --#define S3C2400_SPPIN_nCS (1<<1) /* SPI Card Select */ --#define S3C2410_SPPIN_KEEP (1<<0) /* Master Out keep */ -- --#define S3C2410_SPPRE (0x0C) --#define S3C2410_SPTDAT (0x10) --#define S3C2410_SPRDAT (0x14) -- --#define S3C2412_TXFIFO (0x18) --#define S3C2412_RXFIFO (0x18) --#define S3C2412_SPFIC (0x24) -- -- --#endif /* __ASM_ARCH_REGS_SPI_H */ ---- a/include/asm-arm/plat-s3c24xx/regs-udc.h -+++ /dev/null -@@ -1,153 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/regs-udc.h -- * -- * Copyright (C) 2004 Herbert Poetzl <herbert@13thfloor.at> -- * -- * This include file is free software; you can redistribute it and/or -- * modify it under the terms of the GNU General Public License as -- * published by the Free Software Foundation; either version 2 of -- * the License, or (at your option) any later version. --*/ -- --#ifndef __ASM_ARCH_REGS_UDC_H --#define __ASM_ARCH_REGS_UDC_H -- --#define S3C2410_USBDREG(x) (x) -- --#define S3C2410_UDC_FUNC_ADDR_REG S3C2410_USBDREG(0x0140) --#define S3C2410_UDC_PWR_REG S3C2410_USBDREG(0x0144) --#define S3C2410_UDC_EP_INT_REG S3C2410_USBDREG(0x0148) -- --#define S3C2410_UDC_USB_INT_REG S3C2410_USBDREG(0x0158) --#define S3C2410_UDC_EP_INT_EN_REG S3C2410_USBDREG(0x015c) -- --#define S3C2410_UDC_USB_INT_EN_REG S3C2410_USBDREG(0x016c) -- --#define S3C2410_UDC_FRAME_NUM1_REG S3C2410_USBDREG(0x0170) --#define S3C2410_UDC_FRAME_NUM2_REG S3C2410_USBDREG(0x0174) -- --#define S3C2410_UDC_EP0_FIFO_REG S3C2410_USBDREG(0x01c0) --#define S3C2410_UDC_EP1_FIFO_REG S3C2410_USBDREG(0x01c4) --#define S3C2410_UDC_EP2_FIFO_REG S3C2410_USBDREG(0x01c8) --#define S3C2410_UDC_EP3_FIFO_REG S3C2410_USBDREG(0x01cc) --#define S3C2410_UDC_EP4_FIFO_REG S3C2410_USBDREG(0x01d0) -- --#define S3C2410_UDC_EP1_DMA_CON S3C2410_USBDREG(0x0200) --#define S3C2410_UDC_EP1_DMA_UNIT S3C2410_USBDREG(0x0204) --#define S3C2410_UDC_EP1_DMA_FIFO S3C2410_USBDREG(0x0208) --#define S3C2410_UDC_EP1_DMA_TTC_L S3C2410_USBDREG(0x020c) --#define S3C2410_UDC_EP1_DMA_TTC_M S3C2410_USBDREG(0x0210) --#define S3C2410_UDC_EP1_DMA_TTC_H S3C2410_USBDREG(0x0214) -- --#define S3C2410_UDC_EP2_DMA_CON S3C2410_USBDREG(0x0218) --#define S3C2410_UDC_EP2_DMA_UNIT S3C2410_USBDREG(0x021c) --#define S3C2410_UDC_EP2_DMA_FIFO S3C2410_USBDREG(0x0220) --#define S3C2410_UDC_EP2_DMA_TTC_L S3C2410_USBDREG(0x0224) --#define S3C2410_UDC_EP2_DMA_TTC_M S3C2410_USBDREG(0x0228) --#define S3C2410_UDC_EP2_DMA_TTC_H S3C2410_USBDREG(0x022c) -- --#define S3C2410_UDC_EP3_DMA_CON S3C2410_USBDREG(0x0240) --#define S3C2410_UDC_EP3_DMA_UNIT S3C2410_USBDREG(0x0244) --#define S3C2410_UDC_EP3_DMA_FIFO S3C2410_USBDREG(0x0248) --#define S3C2410_UDC_EP3_DMA_TTC_L S3C2410_USBDREG(0x024c) --#define S3C2410_UDC_EP3_DMA_TTC_M S3C2410_USBDREG(0x0250) --#define S3C2410_UDC_EP3_DMA_TTC_H S3C2410_USBDREG(0x0254) -- --#define S3C2410_UDC_EP4_DMA_CON S3C2410_USBDREG(0x0258) --#define S3C2410_UDC_EP4_DMA_UNIT S3C2410_USBDREG(0x025c) --#define S3C2410_UDC_EP4_DMA_FIFO S3C2410_USBDREG(0x0260) --#define S3C2410_UDC_EP4_DMA_TTC_L S3C2410_USBDREG(0x0264) --#define S3C2410_UDC_EP4_DMA_TTC_M S3C2410_USBDREG(0x0268) --#define S3C2410_UDC_EP4_DMA_TTC_H S3C2410_USBDREG(0x026c) -- --#define S3C2410_UDC_INDEX_REG S3C2410_USBDREG(0x0178) -- --/* indexed registers */ -- --#define S3C2410_UDC_MAXP_REG S3C2410_USBDREG(0x0180) -- --#define S3C2410_UDC_EP0_CSR_REG S3C2410_USBDREG(0x0184) -- --#define S3C2410_UDC_IN_CSR1_REG S3C2410_USBDREG(0x0184) --#define S3C2410_UDC_IN_CSR2_REG S3C2410_USBDREG(0x0188) -- --#define S3C2410_UDC_OUT_CSR1_REG S3C2410_USBDREG(0x0190) --#define S3C2410_UDC_OUT_CSR2_REG S3C2410_USBDREG(0x0194) --#define S3C2410_UDC_OUT_FIFO_CNT1_REG S3C2410_USBDREG(0x0198) --#define S3C2410_UDC_OUT_FIFO_CNT2_REG S3C2410_USBDREG(0x019c) -- --#define S3C2410_UDC_FUNCADDR_UPDATE (1<<7) -- --#define S3C2410_UDC_PWR_ISOUP (1<<7) // R/W --#define S3C2410_UDC_PWR_RESET (1<<3) // R --#define S3C2410_UDC_PWR_RESUME (1<<2) // R/W --#define S3C2410_UDC_PWR_SUSPEND (1<<1) // R --#define S3C2410_UDC_PWR_ENSUSPEND (1<<0) // R/W -- --#define S3C2410_UDC_PWR_DEFAULT 0x00 -- --#define S3C2410_UDC_INT_EP4 (1<<4) // R/W (clear only) --#define S3C2410_UDC_INT_EP3 (1<<3) // R/W (clear only) --#define S3C2410_UDC_INT_EP2 (1<<2) // R/W (clear only) --#define S3C2410_UDC_INT_EP1 (1<<1) // R/W (clear only) --#define S3C2410_UDC_INT_EP0 (1<<0) // R/W (clear only) -- --#define S3C2410_UDC_USBINT_RESET (1<<2) // R/W (clear only) --#define S3C2410_UDC_USBINT_RESUME (1<<1) // R/W (clear only) --#define S3C2410_UDC_USBINT_SUSPEND (1<<0) // R/W (clear only) -- --#define S3C2410_UDC_INTE_EP4 (1<<4) // R/W --#define S3C2410_UDC_INTE_EP3 (1<<3) // R/W --#define S3C2410_UDC_INTE_EP2 (1<<2) // R/W --#define S3C2410_UDC_INTE_EP1 (1<<1) // R/W --#define S3C2410_UDC_INTE_EP0 (1<<0) // R/W -- --#define S3C2410_UDC_USBINTE_RESET (1<<2) // R/W --#define S3C2410_UDC_USBINTE_SUSPEND (1<<0) // R/W -- -- --#define S3C2410_UDC_INDEX_EP0 (0x00) --#define S3C2410_UDC_INDEX_EP1 (0x01) // ?? --#define S3C2410_UDC_INDEX_EP2 (0x02) // ?? --#define S3C2410_UDC_INDEX_EP3 (0x03) // ?? --#define S3C2410_UDC_INDEX_EP4 (0x04) // ?? -- --#define S3C2410_UDC_ICSR1_CLRDT (1<<6) // R/W --#define S3C2410_UDC_ICSR1_SENTSTL (1<<5) // R/W (clear only) --#define S3C2410_UDC_ICSR1_SENDSTL (1<<4) // R/W --#define S3C2410_UDC_ICSR1_FFLUSH (1<<3) // W (set only) --#define S3C2410_UDC_ICSR1_UNDRUN (1<<2) // R/W (clear only) --#define S3C2410_UDC_ICSR1_PKTRDY (1<<0) // R/W (set only) -- --#define S3C2410_UDC_ICSR2_AUTOSET (1<<7) // R/W --#define S3C2410_UDC_ICSR2_ISO (1<<6) // R/W --#define S3C2410_UDC_ICSR2_MODEIN (1<<5) // R/W --#define S3C2410_UDC_ICSR2_DMAIEN (1<<4) // R/W -- --#define S3C2410_UDC_OCSR1_CLRDT (1<<7) // R/W --#define S3C2410_UDC_OCSR1_SENTSTL (1<<6) // R/W (clear only) --#define S3C2410_UDC_OCSR1_SENDSTL (1<<5) // R/W --#define S3C2410_UDC_OCSR1_FFLUSH (1<<4) // R/W --#define S3C2410_UDC_OCSR1_DERROR (1<<3) // R --#define S3C2410_UDC_OCSR1_OVRRUN (1<<2) // R/W (clear only) --#define S3C2410_UDC_OCSR1_PKTRDY (1<<0) // R/W (clear only) -- --#define S3C2410_UDC_OCSR2_AUTOCLR (1<<7) // R/W --#define S3C2410_UDC_OCSR2_ISO (1<<6) // R/W --#define S3C2410_UDC_OCSR2_DMAIEN (1<<5) // R/W -- --#define S3C2410_UDC_EP0_CSR_OPKRDY (1<<0) --#define S3C2410_UDC_EP0_CSR_IPKRDY (1<<1) --#define S3C2410_UDC_EP0_CSR_SENTSTL (1<<2) --#define S3C2410_UDC_EP0_CSR_DE (1<<3) --#define S3C2410_UDC_EP0_CSR_SE (1<<4) --#define S3C2410_UDC_EP0_CSR_SENDSTL (1<<5) --#define S3C2410_UDC_EP0_CSR_SOPKTRDY (1<<6) --#define S3C2410_UDC_EP0_CSR_SSE (1<<7) -- --#define S3C2410_UDC_MAXP_8 (1<<0) --#define S3C2410_UDC_MAXP_16 (1<<1) --#define S3C2410_UDC_MAXP_32 (1<<2) --#define S3C2410_UDC_MAXP_64 (1<<3) -- -- --#endif ---- a/include/asm-arm/plat-s3c24xx/udc.h -+++ /dev/null -@@ -1,36 +0,0 @@ --/* arch/arm/mach-s3c2410/include/mach/udc.h -- * -- * Copyright (c) 2005 Arnaud Patard <arnaud.patard@rtp-net.org> -- * -- * -- * This program is free software; you can redistribute it and/or modify -- * it under the terms of the GNU General Public License version 2 as -- * published by the Free Software Foundation. -- * -- * -- * Changelog: -- * 14-Mar-2005 RTP Created file -- * 02-Aug-2005 RTP File rename -- * 07-Sep-2005 BJD Minor cleanups, changed cmd to enum -- * 18-Jan-2007 HMW Add per-platform vbus_draw function --*/ -- --#ifndef __ASM_ARM_ARCH_UDC_H --#define __ASM_ARM_ARCH_UDC_H -- --enum s3c2410_udc_cmd_e { -- S3C2410_UDC_P_ENABLE = 1, /* Pull-up enable */ -- S3C2410_UDC_P_DISABLE = 2, /* Pull-up disable */ -- S3C2410_UDC_P_RESET = 3, /* UDC reset, in case of */ --}; -- --struct s3c2410_udc_mach_info { -- void (*udc_command)(enum s3c2410_udc_cmd_e); -- void (*vbus_draw)(unsigned int ma); -- unsigned int vbus_pin; -- unsigned char vbus_pin_inverted; --}; -- --extern void __init s3c24xx_udc_set_platdata(struct s3c2410_udc_mach_info *); -- --#endif /* __ASM_ARM_ARCH_UDC_H */ ---- /dev/null -+++ b/include/linux/android_aid.h -@@ -0,0 +1,25 @@ -+/* include/linux/android_aid.h -+ * -+ * Copyright (C) 2008 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#ifndef _LINUX_ANDROID_AID_H -+#define _LINUX_ANDROID_AID_H -+ -+/* AIDs that the kernel treats differently */ -+#define AID_NET_BT_ADMIN 3001 -+#define AID_NET_BT 3002 -+#define AID_INET 3003 -+#define AID_NET_RAW 3004 -+ -+#endif ---- /dev/null -+++ b/include/linux/android_alarm.h -@@ -0,0 +1,59 @@ -+/* include/linux/android_alarm.h -+ * -+ * Copyright (C) 2006-2007 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#ifndef _LINUX_ANDROID_ALARM_H -+#define _LINUX_ANDROID_ALARM_H -+ -+#include <asm/ioctl.h> -+#include <linux/time.h> -+ -+typedef enum { -+ /* return code bit numbers or set alarm arg */ -+ ANDROID_ALARM_RTC_WAKEUP, -+ ANDROID_ALARM_RTC, -+ ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP, -+ ANDROID_ALARM_ELAPSED_REALTIME, -+ ANDROID_ALARM_SYSTEMTIME, -+ -+ ANDROID_ALARM_TYPE_COUNT, -+ -+ /* return code bit numbers */ -+ /* ANDROID_ALARM_TIME_CHANGE = 16 */ -+} android_alarm_type_t; -+ -+typedef enum { -+ ANDROID_ALARM_RTC_WAKEUP_MASK = 1U << ANDROID_ALARM_RTC_WAKEUP, -+ ANDROID_ALARM_RTC_MASK = 1U << ANDROID_ALARM_RTC, -+ ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP_MASK = 1U << ANDROID_ALARM_ELAPSED_REALTIME_WAKEUP, -+ ANDROID_ALARM_ELAPSED_REALTIME_MASK = 1U << ANDROID_ALARM_ELAPSED_REALTIME, -+ ANDROID_ALARM_SYSTEMTIME_MASK = 1U << ANDROID_ALARM_SYSTEMTIME, -+ ANDROID_ALARM_TIME_CHANGE_MASK = 1U << 16 -+} android_alarm_return_flags_t; -+ -+/* Disable alarm */ -+#define ANDROID_ALARM_CLEAR(type) _IO('a', 0 | ((type) << 4)) -+ -+/* Ack last alarm and wait for next */ -+#define ANDROID_ALARM_WAIT _IO('a', 1) -+ -+/* Set alarm */ -+#define ANDROID_ALARM_SET(type) _IOW('a', 2 | ((type) << 4), struct timespec) -+#define ANDROID_ALARM_SET_AND_WAIT(type) _IOW('a', 3 | ((type) << 4), struct timespec) -+#define ANDROID_ALARM_GET_TIME(type) _IOW('a', 4 | ((type) << 4), struct timespec) -+#define ANDROID_ALARM_SET_RTC _IOW('a', 5, struct timespec) -+#define ANDROID_ALARM_BASE_CMD(cmd) (cmd & ~(_IOC(0, 0, 0xf0, 0))) -+#define ANDROID_ALARM_IOCTL_TO_TYPE(cmd) (_IOC_NR(cmd) >> 4) -+ -+#endif ---- /dev/null -+++ b/include/linux/android_power.h -@@ -0,0 +1,98 @@ -+/* include/linux/android_power.h -+ * -+ * Copyright (C) 2007-2008 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#ifndef _LINUX_ANDROID_POWER_H -+#define _LINUX_ANDROID_POWER_H -+ -+#include <linux/list.h> -+#include <linux/ktime.h> -+ -+typedef struct -+{ -+ struct list_head link; -+ int flags; -+ const char *name; -+ int expires; -+#ifdef CONFIG_ANDROID_POWER_STAT -+ struct { -+ int count; -+ int expire_count; -+ ktime_t total_time; -+ ktime_t max_time; -+ ktime_t last_time; -+ } stat; -+#endif -+} android_suspend_lock_t; -+ -+#if 0 /* none of these flags are implemented */ -+#define ANDROID_SUSPEND_LOCK_FLAG_COUNTED (1U << 0) -+#define ANDROID_SUSPEND_LOCK_FLAG_USER_READABLE (1U << 1) -+#define ANDROID_SUSPEND_LOCK_FLAG_USER_SET (1U << 2) -+#define ANDROID_SUSPEND_LOCK_FLAG_USER_CLEAR (1U << 3) -+#define ANDROID_SUSPEND_LOCK_FLAG_USER_INC (1U << 4) -+#define ANDROID_SUSPEND_LOCK_FLAG_USER_DEC (1U << 5) -+#define ANDROID_SUSPEND_LOCK_FLAG_USER_VISIBLE_MASK (0x1fU << 1) -+#endif -+#define ANDROID_SUSPEND_LOCK_AUTO_EXPIRE (1U << 6) -+#define ANDROID_SUSPEND_LOCK_ACTIVE (1U << 7) -+ -+enum { -+ ANDROID_STOPPED_DRAWING, -+ ANDROID_REQUEST_STOP_DRAWING, -+ ANDROID_DRAWING_OK, -+}; -+ -+enum { -+ ANDROID_EARLY_SUSPEND_LEVEL_BLANK_SCREEN = 50, -+ ANDROID_EARLY_SUSPEND_LEVEL_CONSOLE_SWITCH = 100, -+ ANDROID_EARLY_SUSPEND_LEVEL_DISABLE_FB = 150, -+}; -+typedef struct android_early_suspend android_early_suspend_t; -+struct android_early_suspend -+{ -+ struct list_head link; -+ int level; -+ void (*suspend)(android_early_suspend_t *h); -+ void (*resume)(android_early_suspend_t *h); -+}; -+ -+typedef enum { -+ ANDROID_CHARGING_STATE_UNKNOWN, -+ ANDROID_CHARGING_STATE_DISCHARGE, -+ ANDROID_CHARGING_STATE_MAINTAIN, /* or trickle */ -+ ANDROID_CHARGING_STATE_SLOW, -+ ANDROID_CHARGING_STATE_NORMAL, -+ ANDROID_CHARGING_STATE_FAST, -+ ANDROID_CHARGING_STATE_OVERHEAT -+} android_charging_state_t; -+ -+/* android_suspend_lock_t *android_allocate_suspend_lock(const char *debug_name); */ -+/* void android_free_suspend_lock(android_suspend_lock_t *lock); */ -+int android_init_suspend_lock(android_suspend_lock_t *lock); -+void android_uninit_suspend_lock(android_suspend_lock_t *lock); -+void android_lock_idle(android_suspend_lock_t *lock); -+void android_lock_idle_auto_expire(android_suspend_lock_t *lock, int timeout); -+void android_lock_suspend(android_suspend_lock_t *lock); -+void android_lock_suspend_auto_expire(android_suspend_lock_t *lock, int timeout); -+void android_unlock_suspend(android_suspend_lock_t *lock); -+ -+int android_power_is_driver_suspended(void); -+int android_power_is_low_power_idle_ok(void); -+ -+void android_register_early_suspend(android_early_suspend_t *handler); -+void android_unregister_early_suspend(android_early_suspend_t *handler); -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/android_timed_gpio.h -@@ -0,0 +1,31 @@ -+/* include/linux/android_timed_gpio.h -+ * -+ * Copyright (C) 2008 Google, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+*/ -+ -+#ifndef _LINUX_ANDROID_TIMED_GPIO_H -+#define _LINUX_ANDROID_TIMED_GPIO_H -+ -+struct timed_gpio { -+ const char *name; -+ unsigned gpio; -+ int max_timeout; -+ u8 active_low; -+}; -+ -+struct timed_gpio_platform_data { -+ int num_gpios; -+ struct timed_gpio *gpios; -+}; -+ -+#endif ---- /dev/null -+++ b/include/linux/ashmem.h -@@ -0,0 +1,48 @@ -+/* -+ * include/linux/ashmem.h -+ * -+ * Copyright 2008 Google Inc. -+ * Author: Robert Love -+ * -+ * This file is dual licensed. It may be redistributed and/or modified -+ * under the terms of the Apache 2.0 License OR version 2 of the GNU -+ * General Public License. -+ */ -+ -+#ifndef _LINUX_ASHMEM_H -+#define _LINUX_ASHMEM_H -+ -+#include <linux/limits.h> -+#include <linux/ioctl.h> -+ -+#define ASHMEM_NAME_LEN 256 -+ -+#define ASHMEM_NAME_DEF "dev/ashmem" -+ -+/* Return values from ASHMEM_PIN: Was the mapping purged while unpinned? */ -+#define ASHMEM_NOT_PURGED 0 -+#define ASHMEM_WAS_PURGED 1 -+ -+/* Return values from ASHMEM_GET_PIN_STATUS: Is the mapping pinned? */ -+#define ASHMEM_IS_UNPINNED 0 -+#define ASHMEM_IS_PINNED 1 -+ -+struct ashmem_pin { -+ __u32 offset; /* offset into region, in bytes, page-aligned */ -+ __u32 len; /* length forward from offset, in bytes, page-aligned */ -+}; -+ -+#define __ASHMEMIOC 0x77 -+ -+#define ASHMEM_SET_NAME _IOW(__ASHMEMIOC, 1, char[ASHMEM_NAME_LEN]) -+#define ASHMEM_GET_NAME _IOR(__ASHMEMIOC, 2, char[ASHMEM_NAME_LEN]) -+#define ASHMEM_SET_SIZE _IOW(__ASHMEMIOC, 3, size_t) -+#define ASHMEM_GET_SIZE _IO(__ASHMEMIOC, 4) -+#define ASHMEM_SET_PROT_MASK _IOW(__ASHMEMIOC, 5, unsigned long) -+#define ASHMEM_GET_PROT_MASK _IO(__ASHMEMIOC, 6) -+#define ASHMEM_PIN _IOW(__ASHMEMIOC, 7, struct ashmem_pin) -+#define ASHMEM_UNPIN _IOW(__ASHMEMIOC, 8, struct ashmem_pin) -+#define ASHMEM_GET_PIN_STATUS _IO(__ASHMEMIOC, 9) -+#define ASHMEM_PURGE_ALL_CACHES _IO(__ASHMEMIOC, 10) -+ -+#endif /* _LINUX_ASHMEM_H */ ---- /dev/null -+++ b/include/linux/binder.h -@@ -0,0 +1,330 @@ -+/* -+ * Copyright (C) 2008 Google, Inc. -+ * -+ * Based on, but no longer compatible with, the original -+ * OpenBinder.org binder driver interface, which is: -+ * -+ * Copyright (c) 2005 Palmsource, Inc. -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#ifndef _LINUX_BINDER_H -+#define _LINUX_BINDER_H -+ -+#include <linux/ioctl.h> -+ -+#define B_PACK_CHARS(c1, c2, c3, c4) \ -+ ((((c1)<<24)) | (((c2)<<16)) | (((c3)<<8)) | (c4)) -+#define B_TYPE_LARGE 0x85 -+ -+enum { -+ BINDER_TYPE_BINDER = B_PACK_CHARS('s', 'b', '*', B_TYPE_LARGE), -+ BINDER_TYPE_WEAK_BINDER = B_PACK_CHARS('w', 'b', '*', B_TYPE_LARGE), -+ BINDER_TYPE_HANDLE = B_PACK_CHARS('s', 'h', '*', B_TYPE_LARGE), -+ BINDER_TYPE_WEAK_HANDLE = B_PACK_CHARS('w', 'h', '*', B_TYPE_LARGE), -+ BINDER_TYPE_FD = B_PACK_CHARS('f', 'd', '*', B_TYPE_LARGE), -+}; -+ -+enum { -+ FLAT_BINDER_FLAG_PRIORITY_MASK = 0xff, -+ FLAT_BINDER_FLAG_ACCEPTS_FDS = 0x100, -+}; -+ -+/* -+ * This is the flattened representation of a Binder object for transfer -+ * between processes. The 'offsets' supplied as part of a binder transaction -+ * contains offsets into the data where these structures occur. The Binder -+ * driver takes care of re-writing the structure type and data as it moves -+ * between processes. -+ */ -+struct flat_binder_object { -+ /* 8 bytes for large_flat_header. */ -+ unsigned long type; -+ unsigned long flags; -+ -+ /* 8 bytes of data. */ -+ union { -+ void *binder; /* local object */ -+ signed long handle; /* remote object */ -+ }; -+ -+ /* extra data associated with local object */ -+ void *cookie; -+}; -+ -+/* -+ * On 64-bit platforms where user code may run in 32-bits the driver must -+ * translate the buffer (and local binder) addresses apropriately. -+ */ -+ -+struct binder_write_read { -+ signed long write_size; /* bytes to write */ -+ signed long write_consumed; /* bytes consumed by driver */ -+ unsigned long write_buffer; -+ signed long read_size; /* bytes to read */ -+ signed long read_consumed; /* bytes consumed by driver */ -+ unsigned long read_buffer; -+}; -+ -+/* Use with BINDER_VERSION, driver fills in fields. */ -+struct binder_version { -+ /* driver protocol version -- increment with incompatible change */ -+ signed long protocol_version; -+}; -+ -+/* This is the current protocol version. */ -+#define BINDER_CURRENT_PROTOCOL_VERSION 7 -+ -+#define BINDER_WRITE_READ _IOWR('b', 1, struct binder_write_read) -+#define BINDER_SET_IDLE_TIMEOUT _IOW('b', 3, int64_t) -+#define BINDER_SET_MAX_THREADS _IOW('b', 5, size_t) -+#define BINDER_SET_IDLE_PRIORITY _IOW('b', 6, int) -+#define BINDER_SET_CONTEXT_MGR _IOW('b', 7, int) -+#define BINDER_THREAD_EXIT _IOW('b', 8, int) -+#define BINDER_VERSION _IOWR('b', 9, struct binder_version) -+ -+/* -+ * NOTE: Two special error codes you should check for when calling -+ * in to the driver are: -+ * -+ * EINTR -- The operation has been interupted. This should be -+ * handled by retrying the ioctl() until a different error code -+ * is returned. -+ * -+ * ECONNREFUSED -- The driver is no longer accepting operations -+ * from your process. That is, the process is being destroyed. -+ * You should handle this by exiting from your process. Note -+ * that once this error code is returned, all further calls to -+ * the driver from any thread will return this same code. -+ */ -+ -+enum transaction_flags { -+ TF_ONE_WAY = 0x01, /* this is a one-way call: async, no return */ -+ TF_ROOT_OBJECT = 0x04, /* contents are the component's root object */ -+ TF_STATUS_CODE = 0x08, /* contents are a 32-bit status code */ -+ TF_ACCEPT_FDS = 0x10, /* allow replies with file descriptors */ -+}; -+ -+struct binder_transaction_data { -+ /* The first two are only used for bcTRANSACTION and brTRANSACTION, -+ * identifying the target and contents of the transaction. -+ */ -+ union { -+ size_t handle; /* target descriptor of command transaction */ -+ void *ptr; /* target descriptor of return transaction */ -+ } target; -+ void *cookie; /* target object cookie */ -+ unsigned int code; /* transaction command */ -+ -+ /* General information about the transaction. */ -+ unsigned int flags; -+ pid_t sender_pid; -+ uid_t sender_euid; -+ size_t data_size; /* number of bytes of data */ -+ size_t offsets_size; /* number of bytes of offsets */ -+ -+ /* If this transaction is inline, the data immediately -+ * follows here; otherwise, it ends with a pointer to -+ * the data buffer. -+ */ -+ union { -+ struct { -+ /* transaction data */ -+ const void *buffer; -+ /* offsets from buffer to flat_binder_object structs */ -+ const void *offsets; -+ } ptr; -+ uint8_t buf[8]; -+ } data; -+}; -+ -+struct binder_ptr_cookie { -+ void *ptr; -+ void *cookie; -+}; -+ -+struct binder_pri_desc { -+ int priority; -+ int desc; -+}; -+ -+struct binder_pri_ptr_cookie { -+ int priority; -+ void *ptr; -+ void *cookie; -+}; -+ -+enum BinderDriverReturnProtocol { -+ BR_ERROR = _IOR('r', 0, int), -+ /* -+ * int: error code -+ */ -+ -+ BR_OK = _IO('r', 1), -+ /* No parameters! */ -+ -+ BR_TRANSACTION = _IOR('r', 2, struct binder_transaction_data), -+ BR_REPLY = _IOR('r', 3, struct binder_transaction_data), -+ /* -+ * binder_transaction_data: the received command. -+ */ -+ -+ BR_ACQUIRE_RESULT = _IOR('r', 4, int), -+ /* -+ * not currently supported -+ * int: 0 if the last bcATTEMPT_ACQUIRE was not successful. -+ * Else the remote object has acquired a primary reference. -+ */ -+ -+ BR_DEAD_REPLY = _IO('r', 5), -+ /* -+ * The target of the last transaction (either a bcTRANSACTION or -+ * a bcATTEMPT_ACQUIRE) is no longer with us. No parameters. -+ */ -+ -+ BR_TRANSACTION_COMPLETE = _IO('r', 6), -+ /* -+ * No parameters... always refers to the last transaction requested -+ * (including replies). Note that this will be sent even for -+ * asynchronous transactions. -+ */ -+ -+ BR_INCREFS = _IOR('r', 7, struct binder_ptr_cookie), -+ BR_ACQUIRE = _IOR('r', 8, struct binder_ptr_cookie), -+ BR_RELEASE = _IOR('r', 9, struct binder_ptr_cookie), -+ BR_DECREFS = _IOR('r', 10, struct binder_ptr_cookie), -+ /* -+ * void *: ptr to binder -+ * void *: cookie for binder -+ */ -+ -+ BR_ATTEMPT_ACQUIRE = _IOR('r', 11, struct binder_pri_ptr_cookie), -+ /* -+ * not currently supported -+ * int: priority -+ * void *: ptr to binder -+ * void *: cookie for binder -+ */ -+ -+ BR_NOOP = _IO('r', 12), -+ /* -+ * No parameters. Do nothing and examine the next command. It exists -+ * primarily so that we can replace it with a BR_SPAWN_LOOPER command. -+ */ -+ -+ BR_SPAWN_LOOPER = _IO('r', 13), -+ /* -+ * No parameters. The driver has determined that a process has no -+ * threads waiting to service incomming transactions. When a process -+ * receives this command, it must spawn a new service thread and -+ * register it via bcENTER_LOOPER. -+ */ -+ -+ BR_FINISHED = _IO('r', 14), -+ /* -+ * not currently supported -+ * stop threadpool thread -+ */ -+ -+ BR_DEAD_BINDER = _IOR('r', 15, void *), -+ /* -+ * void *: cookie -+ */ -+ BR_CLEAR_DEATH_NOTIFICATION_DONE = _IOR('r', 16, void *), -+ /* -+ * void *: cookie -+ */ -+ -+ BR_FAILED_REPLY = _IO('r', 17), -+ /* -+ * The the last transaction (either a bcTRANSACTION or -+ * a bcATTEMPT_ACQUIRE) failed (e.g. out of memory). No parameters. -+ */ -+}; -+ -+enum BinderDriverCommandProtocol { -+ BC_TRANSACTION = _IOW('c', 0, struct binder_transaction_data), -+ BC_REPLY = _IOW('c', 1, struct binder_transaction_data), -+ /* -+ * binder_transaction_data: the sent command. -+ */ -+ -+ BC_ACQUIRE_RESULT = _IOW('c', 2, int), -+ /* -+ * not currently supported -+ * int: 0 if the last BR_ATTEMPT_ACQUIRE was not successful. -+ * Else you have acquired a primary reference on the object. -+ */ -+ -+ BC_FREE_BUFFER = _IOW('c', 3, int), -+ /* -+ * void *: ptr to transaction data received on a read -+ */ -+ -+ BC_INCREFS = _IOW('c', 4, int), -+ BC_ACQUIRE = _IOW('c', 5, int), -+ BC_RELEASE = _IOW('c', 6, int), -+ BC_DECREFS = _IOW('c', 7, int), -+ /* -+ * int: descriptor -+ */ -+ -+ BC_INCREFS_DONE = _IOW('c', 8, struct binder_ptr_cookie), -+ BC_ACQUIRE_DONE = _IOW('c', 9, struct binder_ptr_cookie), -+ /* -+ * void *: ptr to binder -+ * void *: cookie for binder -+ */ -+ -+ BC_ATTEMPT_ACQUIRE = _IOW('c', 10, struct binder_pri_desc), -+ /* -+ * not currently supported -+ * int: priority -+ * int: descriptor -+ */ -+ -+ BC_REGISTER_LOOPER = _IO('c', 11), -+ /* -+ * No parameters. -+ * Register a spawned looper thread with the device. -+ */ -+ -+ BC_ENTER_LOOPER = _IO('c', 12), -+ BC_EXIT_LOOPER = _IO('c', 13), -+ /* -+ * No parameters. -+ * These two commands are sent as an application-level thread -+ * enters and exits the binder loop, respectively. They are -+ * used so the binder can have an accurate count of the number -+ * of looping threads it has available. -+ */ -+ -+ BC_REQUEST_DEATH_NOTIFICATION = _IOW('c', 14, struct binder_ptr_cookie), -+ /* -+ * void *: ptr to binder -+ * void *: cookie -+ */ -+ -+ BC_CLEAR_DEATH_NOTIFICATION = _IOW('c', 15, struct binder_ptr_cookie), -+ /* -+ * void *: ptr to binder -+ * void *: cookie -+ */ -+ -+ BC_DEAD_BINDER_DONE = _IOW('c', 16, void *), -+ /* -+ * void *: cookie -+ */ -+}; -+ -+#endif /* _LINUX_BINDER_H */ -+ ---- /dev/null -+++ b/include/linux/bq27000_battery.h -@@ -0,0 +1,14 @@ -+#ifndef __BQ27000_BATTERY_H__ -+#define __BQ27000_BATTERY_H__ -+ -+struct bq27000_platform_data { -+ const char *name; -+ int rsense_mohms; -+ int (*hdq_read)(int); -+ int (*hdq_write)(int, u8); -+ int (*hdq_initialized)(void); -+ int (*get_charger_online_status)(void); -+ int (*get_charger_active_status)(void); -+}; -+ -+#endif ---- a/include/linux/device.h -+++ b/include/linux/device.h -@@ -48,6 +48,11 @@ extern int __must_check bus_create_file( - struct bus_attribute *); - extern void bus_remove_file(struct bus_type *, struct bus_attribute *); - -+extern int __must_check bus_create_device_link(struct bus_type *bus, -+ struct kobject *target, -+ const char *name); -+extern void bus_remove_device_link(struct bus_type *bus, const char *name); -+ - struct bus_type { - const char *name; - struct bus_attribute *bus_attrs; ---- a/include/linux/fb.h -+++ b/include/linux/fb.h -@@ -123,6 +123,7 @@ struct dentry; - #define FB_ACCEL_TRIDENT_3DIMAGE 51 /* Trident 3DImage */ - #define FB_ACCEL_TRIDENT_BLADE3D 52 /* Trident Blade3D */ - #define FB_ACCEL_TRIDENT_BLADEXP 53 /* Trident BladeXP */ -+#define FB_ACCEL_GLAMO 50 /* SMedia Glamo */ - #define FB_ACCEL_NEOMAGIC_NM2070 90 /* NeoMagic NM2070 */ - #define FB_ACCEL_NEOMAGIC_NM2090 91 /* NeoMagic NM2090 */ - #define FB_ACCEL_NEOMAGIC_NM2093 92 /* NeoMagic NM2093 */ ---- /dev/null -+++ b/include/linux/glamofb.h -@@ -0,0 +1,45 @@ -+#ifndef _LINUX_GLAMOFB_H -+#define _LINUX_GLAMOFB_H -+ -+#include <linux/spi/glamo.h> -+ -+struct glamofb_val { -+ unsigned int defval; -+ unsigned int min; -+ unsigned int max; -+}; -+ -+struct glamo_core; -+ -+struct glamofb_platform_data { -+ int width, height; -+ int pixclock; -+ int left_margin, right_margin; -+ int upper_margin, lower_margin; -+ int hsync_len, vsync_len; -+ int fb_mem_size; -+ -+ struct glamofb_val xres; -+ struct glamofb_val yres; -+ struct glamofb_val bpp; -+ -+ struct glamo_spi_info *spi_info; -+ struct glamo_spigpio_info *spigpio_info; -+ struct glamo_core *glamo; -+ -+ struct platform_device *mmc_dev; -+ -+ /* glamo mmc platform specific info */ -+ int (*glamo_can_set_mci_power)(void); -+ -+ /* glamo-mci asking if it should use the slow clock to card */ -+ int (*glamo_mci_use_slow)(void); -+ int (*glamo_irq_is_wired)(void); -+ void (*glamo_external_reset)(int); -+}; -+ -+int glamofb_cmd_mode(struct glamofb_handle *gfb, int on); -+int glamofb_cmd_write(struct glamofb_handle *gfb, u_int16_t val); -+void glamo_lcm_reset(int level); -+ -+#endif ---- /dev/null -+++ b/include/linux/glamo-gpio.h -@@ -0,0 +1,99 @@ -+#ifndef __GLAMO_GPIO_H -+#define __GLAMO_GPIO_H -+ -+struct glamo_core; -+ -+#define GLAMO_GPIO_BANKA 0x0000 -+#define GLAMO_GPIO_BANKB 0x1000 -+#define GLAMO_GPIO_BANKC 0x2000 -+#define GLAMO_GPIO_BANKD 0x3000 -+ -+#define GLAMO_GPIONO(bank, pin) ((bank & 0xf000) | ((pin & 0xf) << 8)) -+ -+#define GLAMO_GPIO_F_IN 0x0010 -+#define GLAMO_GPIO_F_OUT 0x0020 -+#define GLAMO_GPIO_F_FUNC 0x0030 -+ -+#define GLAMO_GPIO0 GLAMO_GPIONO(GLAMO_GPIO_BANKA, 0) -+#define GLAMO_GPIO0_INPUT (GLAMO_GPIO0 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO0_OUTPUT (GLAMO_GPIO0 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO0_HA20 (GLAMO_GPIO0 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO1 GLAMO_GPIONO(GLAMO_GPIO_BANKA, 1) -+#define GLAMO_GPIO1_INPUT (GLAMO_GPIO1 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO1_OUTPUT (GLAMO_GPIO1 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO1_HA21 (GLAMO_GPIO1 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO2 GLAMO_GPIONO(GLAMO_GPIO_BANKA, 2) -+#define GLAMO_GPIO2_INPUT (GLAMO_GPIO2 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO2_OUTPUT (GLAMO_GPIO2 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO2_HA22 (GLAMO_GPIO2 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO3 GLAMO_GPIONO(GLAMO_GPIO_BANKA, 3) -+#define GLAMO_GPIO3_INPUT (GLAMO_GPIO3 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO3_OUTPUT (GLAMO_GPIO3 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO3_HA23 (GLAMO_GPIO3 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO4 GLAMO_GPIONO(GLAMO_GPIO_BANKB, 0) -+#define GLAMO_GPIO4_INPUT (GLAMO_GPIO4 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO4_OUTPUT (GLAMO_GPIO4 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO4_nLCS0 (GLAMO_GPIO4 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO5 GLAMO_GPIONO(GLAMO_GPIO_BANKB, 1) -+#define GLAMO_GPIO5_INPUT (GLAMO_GPIO5 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO5_OUTPUT (GLAMO_GPIO5 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO5_nLCS1 (GLAMO_GPIO5 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO6 GLAMO_GPIONO(GLAMO_GPIO_BANKB, 2) -+#define GLAMO_GPIO6_INPUT (GLAMO_GPIO6 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO6_OUTPUT (GLAMO_GPIO6 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO6_LDCLK (GLAMO_GPIO6 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO7 GLAMO_GPIONO(GLAMO_GPIO_BANKB, 3) -+#define GLAMO_GPIO7_INPUT (GLAMO_GPIO7 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO7_OUTPUT (GLAMO_GPIO7 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO7_nLDE (GLAMO_GPIO7 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO8 GLAMO_GPIONO(GLAMO_GPIO_BANKC, 0) -+#define GLAMO_GPIO8_INPUT (GLAMO_GPIO8 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO8_OUTPUT (GLAMO_GPIO8 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO8_LD16 (GLAMO_GPIO8 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO9 GLAMO_GPIONO(GLAMO_GPIO_BANKC, 1) -+#define GLAMO_GPIO9_INPUT (GLAMO_GPIO9 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO9_OUTPUT (GLAMO_GPIO9 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO9_LD17 (GLAMO_GPIO9 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO10 GLAMO_GPIONO(GLAMO_GPIO_BANKC, 2) -+#define GLAMO_GPIO10_INPUT (GLAMO_GPIO10 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO10_OUTPUT (GLAMO_GPIO10 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO10_LSCK (GLAMO_GPIO10 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO11 GLAMO_GPIONO(GLAMO_GPIO_BANKC, 3) -+#define GLAMO_GPIO11_INPUT (GLAMO_GPIO11 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO11_OUTPUT (GLAMO_GPIO11 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO11_LSDA (GLAMO_GPIO11 | GLAMO_GPIO_F_FUNC) -+ -+#define GLAMO_GPIO12 GLAMO_GPIONO(GLAMO_GPIO_BANKD, 0) -+#define GLAMO_GPIO12_INPUT (GLAMO_GPIO12 | GLAMO_GPIO_F_IN) -+#define GLAMO_GPIO12_OUTPUT (GLAMO_GPIO12 | GLAMO_GPIO_F_OUT) -+#define GLAMO_GPIO12_LSA0 (GLAMO_GPIO12 | GLAMO_GPIO_F_FUNC) -+ -+ -+#define REG_OF_GPIO(gpio) (((gpio & 0xf000) >> 12)*2 \ -+ + GLAMO_REG_GPIO_GEN1) -+#define NUM_OF_GPIO(gpio) ((gpio & 0x0f00) >> 8) -+#define GPIO_OUT_BIT(gpio) (1 << (NUM_OF_GPIO(gpio) + 0)) -+#define OUTPUT_BIT(gpio) (1 << (NUM_OF_GPIO(gpio) + 4)) -+#define INPUT_BIT(gpio) (1 << (NUM_OF_GPIO(gpio) + 8)) -+#define FUNC_BIT(gpio) (1 << (NUM_OF_GPIO(gpio) + 12)) -+ -+void glamo_gpio_setpin(struct glamo_core *glamo, unsigned int pin, -+ unsigned int value); -+ -+int glamo_gpio_getpin(struct glamo_core *glamo, unsigned int pin); -+ -+void glamo_gpio_cfgpin(struct glamo_core *glamo, unsigned int pinfunc); -+ -+ -+#endif /* _GLAMO_GPIO */ ---- /dev/null -+++ b/include/linux/gta02_hdq.h -@@ -0,0 +1,18 @@ -+#ifndef __GTA02HDQ_H__ -+#define __GTA02HDQ_H__ -+ -+/* platform data */ -+ -+struct gta02_hdq_platform_data { -+ /* -+ * give an opportunity to use us as parent for -+ * devices that depend on us -+ */ -+ void (*attach_child_devices)(struct device *parent_device); -+}; -+ -+int gta02hdq_read(int address); -+int gta02hdq_write(int address, u8 data); -+int gta02hdq_initialized(void); -+ -+#endif ---- a/include/linux/i2c-id.h -+++ b/include/linux/i2c-id.h -@@ -83,6 +83,9 @@ - #define I2C_DRIVERID_CS5345 96 /* cs5345 audio processor */ - - #define I2C_DRIVERID_OV7670 1048 /* Omnivision 7670 camera */ -+#define I2C_DRIVERID_PCF50606 1049 -+#define I2C_DRIVERID_PCF50633 1051 -+#define I2C_DRIVERID_PCA9632 1052 - - /* - * ---- Adapter types ---------------------------------------------------- ---- /dev/null -+++ b/include/linux/jbt6k74.h -@@ -0,0 +1,14 @@ -+#ifndef __JBT6K74_H__ -+#define __JBT6K74_H__ -+ -+#include <linux/spi/spi.h> -+#include <linux/device.h> -+ -+ -+struct jbt6k74_platform_data { -+ void (*reset)(int devindex, int level); -+ void (*resuming)(int devindex); /* called when LCM is resumed */ -+ void (*probe_completed)(struct device *dev); -+}; -+ -+#endif ---- a/include/linux/kernel.h -+++ b/include/linux/kernel.h -@@ -225,6 +225,8 @@ extern struct ratelimit_state printk_rat - extern int printk_ratelimit(void); - extern bool printk_timed_ratelimit(unsigned long *caller_jiffies, - unsigned int interval_msec); -+extern void (*printk_emergency_debug_spew_init)(void); -+extern void (*printk_emergency_debug_spew_send_string)(const char *); - #else - static inline int vprintk(const char *s, va_list args) - __attribute__ ((format (printf, 1, 0))); ---- a/include/linux/kexec.h -+++ b/include/linux/kexec.h -@@ -1,7 +1,6 @@ - #ifndef LINUX_KEXEC_H - #define LINUX_KEXEC_H - --#ifdef CONFIG_KEXEC - #include <linux/types.h> - #include <linux/list.h> - #include <linux/linkage.h> -@@ -11,6 +10,8 @@ - #include <linux/elf.h> - #include <asm/kexec.h> - -+#ifdef CONFIG_KEXEC -+ - /* Verify architecture specific macros are defined */ - - #ifndef KEXEC_SOURCE_MEMORY_LIMIT ---- /dev/null -+++ b/include/linux/lis302dl.h -@@ -0,0 +1,154 @@ -+#ifndef _LINUX_LIS302DL_H -+#define _LINUX_LIS302DL_H -+ -+#include <linux/types.h> -+#include <linux/spi/spi.h> -+#include <linux/input.h> -+ -+ -+struct lis302dl_info; -+ -+struct lis302dl_platform_data { -+ char *name; -+ unsigned long pin_chip_select; -+ unsigned long pin_clk; -+ unsigned long pin_mosi; -+ unsigned long pin_miso; -+ int open_drain; -+ int interrupt; -+ void (*lis302dl_bitbang)(struct lis302dl_info *lis, u8 *tx, -+ int tx_bytes, u8 *rx, int rx_bytes); -+ void (*lis302dl_suspend_io)(struct lis302dl_info *, int resuming); -+ int (*lis302dl_bitbang_reg_read)(struct lis302dl_info *, u8 reg); -+ void (*lis302dl_bitbang_reg_write)(struct lis302dl_info *, u8 reg, -+ u8 val); -+}; -+ -+struct lis302dl_info { -+ struct lis302dl_platform_data *pdata; -+ struct device *dev; -+ struct input_dev *input_dev; -+ unsigned int flags; -+ unsigned int threshold; -+ unsigned int duration; -+ struct { -+ unsigned int threshold; /* mg */ -+ unsigned int duration; /* ms */ -+ } wakeup; -+ u_int8_t regs[0x40]; -+}; -+ -+enum lis302dl_reg { -+ LIS302DL_REG_WHO_AM_I = 0x0f, -+ LIS302DL_REG_CTRL1 = 0x20, -+ LIS302DL_REG_CTRL2 = 0x21, -+ LIS302DL_REG_CTRL3 = 0x22, -+ LIS302DL_REG_HP_FILTER_RESET = 0x23, -+ LIS302DL_REG_STATUS = 0x27, -+ LIS302DL_REG_OUT_X = 0x29, -+ LIS302DL_REG_OUT_Y = 0x2b, -+ LIS302DL_REG_OUT_Z = 0x2d, -+ LIS302DL_REG_FF_WU_CFG_1 = 0x30, -+ LIS302DL_REG_FF_WU_SRC_1 = 0x31, -+ LIS302DL_REG_FF_WU_THS_1 = 0x32, -+ LIS302DL_REG_FF_WU_DURATION_1 = 0x33, -+ LIS302DL_REG_FF_WU_CFG_2 = 0x34, -+ LIS302DL_REG_FF_WU_SRC_2 = 0x35, -+ LIS302DL_REG_FF_WU_THS_2 = 0x36, -+ LIS302DL_REG_FF_WU_DURATION_2 = 0x37, -+ LIS302DL_REG_CLICK_CFG = 0x38, -+ LIS302DL_REG_CLICK_SRC = 0x39, -+ LIS302DL_REG_CLICK_THSY_X = 0x3b, -+ LIS302DL_REG_CLICK_THSZ = 0x3c, -+ LIS302DL_REG_CLICK_TIME_LIMIT = 0x3d, -+ LIS302DL_REG_CLICK_LATENCY = 0x3e, -+ LIS302DL_REG_CLICK_WINDOW = 0x3f, -+}; -+ -+enum lis302dl_reg_ctrl1 { -+ LIS302DL_CTRL1_Xen = 0x01, -+ LIS302DL_CTRL1_Yen = 0x02, -+ LIS302DL_CTRL1_Zen = 0x04, -+ LIS302DL_CTRL1_STM = 0x08, -+ LIS302DL_CTRL1_STP = 0x10, -+ LIS302DL_CTRL1_FS = 0x20, -+ LIS302DL_CTRL1_PD = 0x40, -+ LIS302DL_CTRL1_DR = 0x80, -+}; -+ -+enum lis302dl_reg_ctrl2 { -+ LIS302DL_CTRL2_HPC1 = 0x01, -+ LIS302DL_CTRL2_HPC2 = 0x02, -+ LIS302DL_CTRL2_HPFF1 = 0x04, -+ LIS302DL_CTRL2_HPFF2 = 0x08, -+ LIS302DL_CTRL2_FDS = 0x10, -+ LIS302DL_CTRL2_BOOT = 0x40, -+ LIS302DL_CTRL2_SIM = 0x80, -+}; -+enum lis302dl_reg_ctrl3 { -+ LIS302DL_CTRL3_PP_OD = 0x40, -+ LIS302DL_CTRL3_IHL = 0x80, -+}; -+ -+enum lis302dl_reg_status { -+ LIS302DL_STATUS_XDA = 0x01, -+ LIS302DL_STATUS_YDA = 0x02, -+ LIS302DL_STATUS_ZDA = 0x04, -+ LIS302DL_STATUS_XYZDA = 0x08, -+ LIS302DL_STATUS_XOR = 0x10, -+ LIS302DL_STATUS_YOR = 0x20, -+ LIS302DL_STATUS_ZOR = 0x40, -+ LIS302DL_STATUS_XYZOR = 0x80, -+}; -+ -+/* Wakeup/freefall interrupt defs */ -+enum lis302dl_reg_ffwucfg { -+ LIS302DL_FFWUCFG_XLIE = 0x01, -+ LIS302DL_FFWUCFG_XHIE = 0x02, -+ LIS302DL_FFWUCFG_YLIE = 0x04, -+ LIS302DL_FFWUCFG_YHIE = 0x08, -+ LIS302DL_FFWUCFG_ZLIE = 0x10, -+ LIS302DL_FFWUCFG_ZHIE = 0x20, -+ LIS302DL_FFWUCFG_LIR = 0x40, -+ LIS302DL_FFWUCFG_AOI = 0x80, -+}; -+ -+enum lis302dl_reg_ffwuths { -+ LIS302DL_FFWUTHS_DCRM = 0x80, -+}; -+ -+enum lis302dl_reg_ffwusrc { -+ LIS302DL_FFWUSRC_XL = 0x01, -+ LIS302DL_FFWUSRC_XH = 0x02, -+ LIS302DL_FFWUSRC_YL = 0x04, -+ LIS302DL_FFWUSRC_YH = 0x08, -+ LIS302DL_FFWUSRC_ZL = 0x10, -+ LIS302DL_FFWUSRC_ZH = 0x20, -+ LIS302DL_FFWUSRC_IA = 0x40, -+}; -+ -+enum lis302dl_reg_cloik_src { -+ LIS302DL_CLICKSRC_SINGLE_X = 0x01, -+ LIS302DL_CLICKSRC_DOUBLE_X = 0x02, -+ LIS302DL_CLICKSRC_SINGLE_Y = 0x04, -+ LIS302DL_CLICKSRC_DOUBLE_Y = 0x08, -+ LIS302DL_CLICKSRC_SINGLE_Z = 0x10, -+ LIS302DL_CLICKSRC_DOUBLE_Z = 0x20, -+ LIS302DL_CLICKSRC_IA = 0x40, -+}; -+ -+#define LIS302DL_WHO_AM_I_MAGIC 0x3b -+ -+#define LIS302DL_F_WUP_FF_1 0x0001 /* wake up from free fall */ -+#define LIS302DL_F_WUP_FF_2 0x0002 -+#define LIS302DL_F_WUP_FF 0x0003 -+#define LIS302DL_F_WUP_CLICK 0x0004 -+#define LIS302DL_F_POWER 0x0010 -+#define LIS302DL_F_FS 0x0020 /* ADC full scale */ -+#define LIS302DL_F_INPUT_OPEN 0x0040 /* Set if input device is opened */ -+#define LIS302DL_F_IRQ_WAKE 0x0080 /* IRQ is setup in wake mode */ -+#define LIS302DL_F_DR 0x0100 /* Data rate, 400Hz/100Hz */ -+ -+ -+#endif /* _LINUX_LIS302DL_H */ -+ ---- /dev/null -+++ b/include/linux/logger.h -@@ -0,0 +1,48 @@ -+/* include/linux/logger.h -+ * -+ * Copyright (C) 2007-2008 Google, Inc. -+ * Author: Robert Love <rlove@android.com> -+ * -+ * This software is licensed under the terms of the GNU General Public -+ * License version 2, as published by the Free Software Foundation, and -+ * may be copied, distributed, and modified under those terms. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ */ -+ -+#ifndef _LINUX_LOGGER_H -+#define _LINUX_LOGGER_H -+ -+#include <linux/types.h> -+#include <linux/ioctl.h> -+ -+struct logger_entry { -+ __u16 len; /* length of the payload */ -+ __u16 __pad; /* no matter what, we get 2 bytes of padding */ -+ __s32 pid; /* generating process's pid */ -+ __s32 tid; /* generating process's tid */ -+ __s32 sec; /* seconds since Epoch */ -+ __s32 nsec; /* nanoseconds */ -+ char msg[0]; /* the entry's payload */ -+}; -+ -+#define LOGGER_LOG_RADIO "log_radio" /* radio-related messages */ -+#define LOGGER_LOG_EVENTS "log_events" /* system/hardware events */ -+#define LOGGER_LOG_MAIN "log_main" /* everything else */ -+ -+#define LOGGER_ENTRY_MAX_LEN (4*1024) -+#define LOGGER_ENTRY_MAX_PAYLOAD \ -+ (LOGGER_ENTRY_MAX_LEN - sizeof(struct logger_entry)) -+ -+#define __LOGGERIO 0xAE -+ -+#define LOGGER_GET_LOG_BUF_SIZE _IO(__LOGGERIO, 1) /* size of log */ -+#define LOGGER_GET_LOG_LEN _IO(__LOGGERIO, 2) /* used log len */ -+#define LOGGER_GET_NEXT_ENTRY_LEN _IO(__LOGGERIO, 3) /* next entry len */ -+#define LOGGER_FLUSH_LOG _IO(__LOGGERIO, 4) /* flush log */ -+ -+#endif /* _LINUX_LOGGER_H */ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/adc.h -@@ -0,0 +1,87 @@ -+/* -+ * adc.h -- Driver for NXP PCF50606 ADC -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_ADC_H -+#define __LINUX_MFD_PCF50606_ADC_H -+ -+#include <linux/platform_device.h> -+ -+/* ADC Registers */ -+#define PCF50606_REG_ADCC1 0x2e -+#define PCF50606_REG_ADCC2 0x2f -+#define PCF50606_REG_ADCS1 0x30 -+#define PCF50606_REG_ADCS2 0x31 -+#define PCF50606_REG_ADCS3 0x32 -+ -+#define PCF50606_ADCC1_TSCMODACT 0x01 -+#define PCF50606_ADCC1_TSCMODSTB 0x02 -+#define PCF50606_ADCC1_TRATSET 0x04 -+#define PCF50606_ADCC1_NTCSWAPE 0x08 -+#define PCF50606_ADCC1_NTCSWAOFF 0x10 -+#define PCF50606_ADCC1_EXTSYNCBREAK 0x20 -+ /* reserved */ -+#define PCF50606_ADCC1_TSCINT 0x80 -+ -+#define PCF50606_ADCC2_ADCSTART 0x01 -+ /* see enum pcf50606_adcc2_adcmux */ -+#define PCF50606_ADCC2_SYNC_NONE 0x00 -+#define PCF50606_ADCC2_SYNC_TXON 0x20 -+#define PCF50606_ADCC2_SYNC_PWREN1 0x40 -+#define PCF50606_ADCC2_SYNC_PWREN2 0x60 -+#define PCF50606_ADCC2_RES_10BIT 0x00 -+#define PCF50606_ADCC2_RES_8BIT 0x80 -+ -+#define PCF50606_ADCC2_ADCMUX_MASK (0xf << 1) -+ -+#define ADCMUX_SHIFT 1 -+#define PCF50606_ADCMUX_BATVOLT_RES (0x0 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_BATVOLT_SUBTR (0x1 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_ADCIN1_RES (0x2 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_ADCIN1_SUBTR (0x3 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_BATTEMP (0x4 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_ADCIN2 (0x5 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_ADCIN3 (0x6 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_ADCIN3_RATIO (0x7 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_XPOS (0x8 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_YPOS (0x9 << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_P1 (0xa << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_P2 (0xb << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_BATVOLT_ADCIN1 (0xc << ADCMUX_SHIFT) -+#define PCF50606_ADCMUX_XY_SEQUENCE (0xe << ADCMUX_SHIFT) -+#define PCF50606_P1_P2_RESISTANCE (0xf << ADCMUX_SHIFT) -+ -+#define PCF50606_ADCS2_ADCRDY 0x80 -+ -+struct pcf50606; -+ -+#define PCF50606_MAX_ADC_FIFO_DEPTH 8 -+ -+struct pcf50606_adc_request; -+ -+struct pcf50606_adc { -+ struct platform_device *pdev; -+ -+ /* Private stuff */ -+ struct pcf50606_adc_request *queue[PCF50606_MAX_ADC_FIFO_DEPTH]; -+ int queue_head; -+ int queue_tail; -+ struct mutex queue_mutex; -+}; -+ -+extern int -+pcf50606_adc_async_read(struct pcf50606 *pcf, int mux, int avg, -+ void (*callback)(struct pcf50606 *, void *, int), -+ void *callback_param); -+extern int -+pcf50606_adc_sync_read(struct pcf50606 *pcf, int mux, int avg); -+ -+#endif /* __LINUX_PCF50606_ADC_H */ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/core.h -@@ -0,0 +1,163 @@ -+/* -+ * core.h -- Core driver for NXP PCF50606 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_CORE_H -+#define __LINUX_MFD_PCF50606_CORE_H -+ -+#include <linux/i2c.h> -+#include <linux/workqueue.h> -+#include <linux/regulator/driver.h> -+#include <linux/regulator/machine.h> -+#include <linux/power_supply.h> -+ -+#include <linux/mfd/pcf50606/pmic.h> -+#include <linux/mfd/pcf50606/input.h> -+#include <linux/mfd/pcf50606/mbc.h> -+#include <linux/mfd/pcf50606/rtc.h> -+#include <linux/mfd/pcf50606/adc.h> -+#include <linux/mfd/pcf50606/wdt.h> -+ -+struct pcf50606; -+ -+struct pcf50606_platform_data { -+ struct regulator_init_data reg_init_data[PCF50606_NUM_REGULATORS]; -+ -+ char **batteries; -+ int num_batteries; -+ -+ /* Callbacks */ -+ void (*probe_done)(struct pcf50606 *); -+ void (*mbc_event_callback)(struct pcf50606 *, int); -+ void (*regulator_registered)(struct pcf50606 *, int); -+ void (*force_shutdown)(struct pcf50606 *); -+ -+ u8 resumers[3]; -+ -+ /* Runtime data - filled by driver afer probe */ -+ struct pcf50606 *pcf; -+}; -+ -+struct pcf50606_irq { -+ void (*handler)(struct pcf50606 *, int, void *); -+ void *data; -+}; -+ -+int pcf50606_irq_mask(struct pcf50606 *pcf, int irq); -+int pcf50606_irq_unmask(struct pcf50606 *pcf, int irq); -+int pcf50606_irq_mask_get(struct pcf50606 *pcf, int irq); -+ -+int pcf50606_read_block(struct pcf50606 *, u8 reg, -+ int nr_regs, u8 *data); -+int pcf50606_write_block(struct pcf50606 *pcf, u8 reg, -+ int nr_regs, u8 *data); -+u8 pcf50606_reg_read(struct pcf50606 *, u8 reg); -+int pcf50606_reg_write(struct pcf50606 *pcf, u8 reg, u8 val); -+ -+int pcf50606_reg_set_bit_mask(struct pcf50606 *pcf, u8 reg, u8 mask, u8 val); -+int pcf50606_reg_clear_bits(struct pcf50606 *pcf, u8 reg, u8 bits); -+ -+/* Interrupt registers */ -+ -+#define PCF50606_REG_INT1 0x02 -+#define PCF50606_REG_INT2 0x03 -+#define PCF50606_REG_INT3 0x04 -+ -+#define PCF50606_REG_INT1M 0x05 -+#define PCF50606_REG_INT2M 0x06 -+#define PCF50606_REG_INT3M 0x07 -+ -+enum { -+ /* Chip IRQs */ -+ PCF50606_IRQ_ONKEYR, -+ PCF50606_IRQ_ONKEYF, -+ PCF50606_IRQ_ONKEY1S, -+ PCF50606_IRQ_EXTONR, -+ PCF50606_IRQ_EXTONF, -+ PCF50606_IRQ_SECOND, -+ PCF50606_IRQ_ALARM, -+ PCF50606_IRQ_CHGINS, -+ PCF50606_IRQ_CHGRM, -+ PCF50606_IRQ_CHGFOK, -+ PCF50606_IRQ_CHGERR, -+ PCF50606_IRQ_CHGFRDY, -+ PCF50606_IRQ_CHGPROT, -+ PCF50606_IRQ_CHGWD10S, -+ PCF50606_IRQ_CHGWDEXP, -+ PCF50606_IRQ_ADCRDY, -+ PCF50606_IRQ_ACDINS, -+ PCF50606_IRQ_ACDREM, -+ PCF50606_IRQ_TSCPRES, -+ PCF50606_IRQ_LOWBAT, -+ PCF50606_IRQ_HIGHTMP, -+ -+ /* Always last */ -+ PCF50606_NUM_IRQ, -+}; -+ -+struct pcf50606 { -+ struct device *dev; -+ struct i2c_client *i2c_client; -+ -+ struct pcf50606_platform_data *pdata; -+ int irq; -+ struct pcf50606_irq irq_handler[PCF50606_NUM_IRQ]; -+ struct work_struct irq_work; -+ struct mutex lock; -+ -+ u8 mask_regs[3]; -+ -+ u8 suspend_irq_masks[3]; -+ u8 resume_reason[3]; -+ int is_suspended; -+ -+ int onkey1s_held; -+ -+ struct pcf50606_pmic pmic; -+ struct pcf50606_input input; -+ struct pcf50606_mbc mbc; -+ struct pcf50606_rtc rtc; -+ struct pcf50606_adc adc; -+ struct pcf50606_wdt wdt; -+}; -+ -+enum pcf50606_reg_int1 { -+ PCF50606_INT1_ONKEYR = 0x01, /* ONKEY rising edge */ -+ PCF50606_INT1_ONKEYF = 0x02, /* ONKEY falling edge */ -+ PCF50606_INT1_ONKEY1S = 0x04, /* OMKEY at least 1sec low */ -+ PCF50606_INT1_EXTONR = 0x08, /* EXTON rising edge */ -+ PCF50606_INT1_EXTONF = 0x10, /* EXTON falling edge */ -+ PCF50606_INT1_SECOND = 0x40, /* RTC periodic second interrupt */ -+ PCF50606_INT1_ALARM = 0x80, /* RTC alarm time is reached */ -+}; -+ -+enum pcf50606_reg_int2 { -+ PCF50606_INT2_CHGINS = 0x01, /* Charger inserted */ -+ PCF50606_INT2_CHGRM = 0x02, /* Charger removed */ -+ PCF50606_INT2_CHGFOK = 0x04, /* Fast charging OK */ -+ PCF50606_INT2_CHGERR = 0x08, /* Error in charging mode */ -+ PCF50606_INT2_CHGFRDY = 0x10, /* Fast charge completed */ -+ PCF50606_INT2_CHGPROT = 0x20, /* Charging protection interrupt */ -+ PCF50606_INT2_CHGWD10S = 0x40, /* Charger watchdig expires in 10s */ -+ PCF50606_INT2_CHGWDEXP = 0x80, /* Charger watchdog expires */ -+}; -+ -+enum pcf50606_reg_int3 { -+ PCF50606_INT3_ADCRDY = 0x01, /* ADC conversion finished */ -+ PCF50606_INT3_ACDINS = 0x02, /* Accessory inserted */ -+ PCF50606_INT3_ACDREM = 0x04, /* Accessory removed */ -+ PCF50606_INT3_TSCPRES = 0x08, /* Touch screen pressed */ -+ PCF50606_INT3_LOWBAT = 0x40, /* Low battery voltage */ -+ PCF50606_INT3_HIGHTMP = 0x80, /* High temperature */ -+}; -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/gpo.h -@@ -0,0 +1,43 @@ -+/* -+ * gpo.h -- GPO driver for NXP PCF50606 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_GPO_H -+#define __LINUX_MFD_PCF50606_GPO_H -+ -+#define PCF50606_REG_GPOC1 0x38 -+#define PCF50606_REG_GPOC2 0x39 -+#define PCF50606_REG_GPOC3 0x3a -+#define PCF50606_REG_GPOC4 0x3b -+#define PCF50606_REG_GPOC5 0x3c -+ -+#define PCF50606_GPO1 PCF50606_REG_GPOC1 -+#define PCF50606_GPO2 PCF50606_REG_GPOC1 -+#define PCF50606_GPOOD1 PCF50606_REG_GPOC2 -+#define PCF50606_GPOOD2 PCF50606_REG_GPOC3 -+#define PCF50606_GPOOD3 PCF50606_REG_GPOC4 -+#define PCF50606_GPOOD4 PCF50606_REG_GPOC5 -+ -+#define PCF50606_GPOCFG_GPOSEL_MASK 0x07 -+ -+struct pcf50606; -+ -+void pcf50606_gpo_set_active(struct pcf50606 *pcf, int gpo, int value); -+int pcf50606_gpo_get_active(struct pcf50606 *pcf, int gpo); -+void pcf50606_gpo_set_standby(struct pcf50606 *pcf, int gpo, int value); -+int pcf50606_gpo_get_standby(struct pcf50606 *pcf, int gpo); -+ -+void pcf50606_gpo_invert_set(struct pcf50606 *, int gpo, int invert); -+int pcf50606_gpo_invert_get(struct pcf50606 *pcf, int gpo); -+ -+#endif /* __LINUX_MFD_PCF50606_GPIO_H */ -+ -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/input.h -@@ -0,0 +1,37 @@ -+/* -+ * input.h -- Input driver for NXP PCF50606 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_INPUT_H -+#define __LINUX_MFD_PCF50606_INPUT_H -+ -+#include <linux/platform_device.h> -+#include <linux/input.h> -+ -+#define PFC50606_OOCS_ONKEY 0x01 -+#define PCF50606_OOCS_EXTON 0x02 -+ -+#define PCF50606_OOCC2_ONKEYDB_NONE 0x00 -+#define PCF50606_OOCC2_ONKEYDB_14ms 0x01 -+#define PCF50606_OOCC2_ONKEYDB_62ms 0x02 -+#define PCF50606_OOCC2_ONKEYDB_500ms 0x03 -+#define PCF50606_OOCC2_EXTONDB_NONE 0x00 -+#define PCF50606_OOCC2_EXTONDB_14ms 0x04 -+#define PCF50606_OOCC2_EXTONDB_62ms 0x08 -+#define PCF50606_OOCC2_EXTONDB_500ms 0x0c -+ -+struct pcf50606_input { -+ struct input_dev *input_dev; -+ struct platform_device *pdev; -+}; -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/led.h -@@ -0,0 +1,22 @@ -+/* -+ * led.h -- LED driver for NXP PCF50606 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_LED_H -+#define __LINUX_MFD_PCF50606_LED_H -+ -+#define PCF50606_REG_LEDC1 0x36 -+#define PCF50606_REG_LEDC2 0x37 -+ -+#include <linux/platform_device.h> -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/mbc.h -@@ -0,0 +1,53 @@ -+/* -+ * mbc.h -- Driver for NXP PCF50606 Main Battery Charger -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_MBC_H -+#define __LINUX_MFD_PCF50606_MBC_H -+ -+#include <linux/platform_device.h> -+ -+#define PCF50606_REG_MBCC1 0x29 -+#define PCF50606_REG_MBCC2 0x2a -+#define PCF50606_REG_MBCC3 0x2b -+#define PCF50606_REG_MBCS1 0x2c -+ -+enum pcf50606_reg_mbcc1 { -+ PCF50606_MBCC1_CHGAPE = 0x01, -+ PCF50606_MBCC1_AUTOFST = 0x02, -+#define PCF50606_MBCC1_CHGMOD_MASK 0x1c -+#define PCF50606_MBCC1_CHGMOD_SHIFT 2 -+ PCF50606_MBCC1_CHGMOD_QUAL = 0x00, -+ PCF50606_MBCC1_CHGMOD_PRE = 0x04, -+ PCF50606_MBCC1_CHGMOD_TRICKLE = 0x08, -+ PCF50606_MBCC1_CHGMOD_FAST_CCCV = 0x0c, -+ PCF50606_MBCC1_CHGMOD_FAST_NOCC = 0x10, -+ PCF50606_MBCC1_CHGMOD_FAST_NOCV = 0x14, -+ PCF50606_MBCC1_CHGMOD_FAST_SW = 0x18, -+ PCF50606_MBCC1_CHGMOD_IDLE = 0x1c, -+ PCF50606_MBCC1_DETMOD_LOWCHG = 0x20, -+ PCF50606_MBCC1_DETMOD_WDRST = 0x40, -+}; -+ -+struct pcf50606; -+ -+void pcf50606_mbc_usb_curlim_set(struct pcf50606 *pcf, int ma); -+ -+struct pcf50606_mbc { -+ int charger_online; -+ int charger_active; -+ -+ struct power_supply charger; -+ -+ struct platform_device *pdev; -+}; -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/pmic.h -@@ -0,0 +1,82 @@ -+#ifndef __LINUX_MFD_PCF50606_PMIC_H -+#define __LINUX_MFD_PCF50606_PMIC_H -+ -+#include <linux/platform_device.h> -+ -+#define PCF50606_REG_DCDC1 0x1b -+#define PCF50606_REG_DCDC2 0x1c -+#define PCF50606_REG_DCDC3 0x1d -+#define PCF50606_REG_DCDC4 0x1e -+#define PCF50606_REG_DCDEC1 0x1f -+#define PCF50606_REG_DCDEC2 0x20 -+#define PCF50606_REG_DCUDC1 0x21 -+#define PCF50606_REG_DCUDC2 0x22 -+#define PCF50606_REG_IOREGC 0x23 -+#define PCF50606_REG_D1REGC1 0x24 -+#define PCF50606_REG_D2REGC1 0x25 -+#define PCF50606_REG_D3REGC1 0x26 -+#define PCF50606_REG_LPREGC1 0x27 -+#define PCF50606_REG_LPREGC2 0x28 -+ -+/* used by PSSC, PWROKM, PWROKS, */ -+enum pcf50606_regu { -+ PCF50606_REGU_DCD = 0x01, /* DCD in phase 2 */ -+ PCF50606_REGU_DCDE = 0x02, /* DCDE in phase 2 */ -+ PCF50606_REGU_DCUD = 0x04, /* DCDU in phase 2 */ -+ PCF50606_REGU_IO = 0x08, /* IO in phase 2 */ -+ PCF50606_REGU_D1 = 0x10, /* D1 in phase 2 */ -+ PCF50606_REGU_D2 = 0x20, /* D2 in phase 2 */ -+ PCF50606_REGU_D3 = 0x40, /* D3 in phase 2 */ -+ PCF50606_REGU_LP = 0x80, /* LP in phase 2 */ -+}; -+ -+enum pcf50606_reg_dcdc4 { -+ PCF50606_DCDC4_MODE_AUTO = 0x00, -+ PCF50606_DCDC4_MODE_PWM = 0x01, -+ PCF50606_DCDC4_MODE_PCF = 0x02, -+ PCF50606_DCDC4_OFF_FLOAT = 0x00, -+ PCF50606_DCDC4_OFF_BYPASS = 0x04, -+ PCF50606_DCDC4_OFF_PULLDOWN = 0x08, -+ PCF50606_DCDC4_CURLIM_500mA = 0x00, -+ PCF50606_DCDC4_CURLIM_750mA = 0x10, -+ PCF50606_DCDC4_CURLIM_1000mA = 0x20, -+ PCF50606_DCDC4_CURLIM_1250mA = 0x30, -+ PCF50606_DCDC4_TOGGLE = 0x40, -+ PCF50606_DCDC4_REGSEL_DCDC2 = 0x80, -+}; -+ -+enum pcf50606_reg_dcdec2 { -+ PCF50606_DCDEC2_MODE_AUTO = 0x00, -+ PCF50606_DCDEC2_MODE_PWM = 0x01, -+ PCF50606_DCDEC2_MODE_PCF = 0x02, -+ PCF50606_DCDEC2_OFF_FLOAT = 0x00, -+ PCF50606_DCDEC2_OFF_BYPASS = 0x04, -+}; -+ -+enum pcf50606_reg_dcudc2 { -+ PCF50606_DCUDC2_MODE_AUTO = 0x00, -+ PCF50606_DCUDC2_MODE_PWM = 0x01, -+ PCF50606_DCUDC2_MODE_PCF = 0x02, -+ PCF50606_DCUDC2_OFF_FLOAT = 0x00, -+ PCF50606_DCUDC2_OFF_BYPASS = 0x04, -+}; -+ -+enum pcf50606_regulator_id { -+ PCF50606_REGULATOR_DCD, -+ PCF50606_REGULATOR_DCDE, -+ PCF50606_REGULATOR_DCUD, -+ PCF50606_REGULATOR_D1REG, -+ PCF50606_REGULATOR_D2REG, -+ PCF50606_REGULATOR_D3REG, -+ PCF50606_REGULATOR_LPREG, -+ PCF50606_REGULATOR_IOREG, -+ -+ /* Always last */ -+ PCF50606_NUM_REGULATORS -+}; -+ -+struct pcf50606_pmic { -+ struct platform_device *pdev[PCF50606_NUM_REGULATORS]; -+}; -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/rtc.h -@@ -0,0 +1,43 @@ -+/* -+ * rtc.h -- RTC driver for NXP PCF50606 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_RTC_H -+#define __LINUX_MFD_PCF50606_RTC_H -+ -+#include <linux/rtc.h> -+#include <linux/platform_device.h> -+ -+#define PCF50606_REG_RTCSC 0x0a /* Second */ -+#define PCF50606_REG_RTCMN 0x0b /* Minute */ -+#define PCF50606_REG_RTCHR 0x0c /* Hour */ -+#define PCF50606_REG_RTCWD 0x0d /* Weekday */ -+#define PCF50606_REG_RTCDT 0x0e /* Day */ -+#define PCF50606_REG_RTCMT 0x0f /* Month */ -+#define PCF50606_REG_RTCYR 0x10 /* Year */ -+#define PCF50606_REG_RTCSCA 0x11 /* Alarm Second */ -+#define PCF50606_REG_RTCMNA 0x12 /* Alarm Minute */ -+#define PCF50606_REG_RTCHRA 0x13 /* Alarm Hour */ -+#define PCF50606_REG_RTCWDA 0x14 /* Alarm Weekday */ -+#define PCF50606_REG_RTCDTA 0x15 /* Alarm Day */ -+#define PCF50606_REG_RTCMTA 0x16 /* Alarm Month */ -+#define PCF50606_REG_RTCYRA 0x17 /* Alarm Year */ -+ -+struct pcf50606_rtc { -+ int alarm_enabled; -+ int second_enabled; -+ -+ struct rtc_device *rtc_dev; -+ struct platform_device *pdev; -+}; -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50606/wdt.h -@@ -0,0 +1,32 @@ -+/* -+ * wdt.h -- WDT driver for NXP PCF50606 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50606_WDT_H -+#define __LINUX_MFD_PCF50606_WDT_H -+ -+#define PCF50606_REG_OOCC1 0x08 -+#define PCF50606_REG_OOCS 0x01 -+ -+#define PCF50606_OOCS_WDTEXP 0x80 -+#define PCF50606_OOCC1_WDTRST 0x08 -+ -+#define CLOSE_STATE_NOT 0x0000 -+#define CLOSE_STATE_ALLOW 0x2342 -+ -+struct pcf50606; -+ -+struct pcf50606_wdt { -+ struct platform_device *pdev; -+}; -+#endif /* __LINUX_MFD_PCF50606_WDT_H */ -+ -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/adc.h -@@ -0,0 +1,88 @@ -+/* -+ * adc.h -- Driver for NXP PCF50633 ADC -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50633_ADC_H -+#define __LINUX_MFD_PCF50633_ADC_H -+ -+#include <linux/platform_device.h> -+ -+/* ADC Registers */ -+#define PCF50633_REG_ADCC3 0x52 -+#define PCF50633_REG_ADCC2 0x53 -+#define PCF50633_REG_ADCC1 0x54 -+#define PCF50633_REG_ADCS1 0x55 -+#define PCF50633_REG_ADCS2 0x56 -+#define PCF50633_REG_ADCS3 0x57 -+ -+#define PCF50633_ADCC1_ADCSTART 0x01 -+#define PCF50633_ADCC1_RES_10BIT 0x02 -+#define PCF50633_ADCC1_AVERAGE_NO 0x00 -+#define PCF50633_ADCC1_AVERAGE_4 0x04 -+#define PCF50633_ADCC1_AVERAGE_8 0x08 -+#define PCF50633_ADCC1_AVERAGE_16 0x0c -+#define PCF50633_ADCC1_MUX_BATSNS_RES 0x00 -+#define PCF50633_ADCC1_MUX_BATSNS_SUBTR 0x10 -+#define PCF50633_ADCC1_MUX_ADCIN2_RES 0x20 -+#define PCF50633_ADCC1_MUX_ADCIN2_SUBTR 0x30 -+#define PCF50633_ADCC1_MUX_BATTEMP 0x60 -+#define PCF50633_ADCC1_MUX_ADCIN1 0x70 -+#define PCF50633_ADCC1_AVERAGE_MASK 0x0c -+#define PCF50633_ADCC1_ADCMUX_MASK 0xf0 -+ -+#define PCF50633_ADCC2_RATIO_NONE 0x00 -+#define PCF50633_ADCC2_RATIO_BATTEMP 0x01 -+#define PCF50633_ADCC2_RATIO_ADCIN1 0x02 -+#define PCF50633_ADCC2_RATIO_BOTH 0x03 -+#define PCF50633_ADCC2_RATIOSETTL_100US 0x04 -+ -+#define PCF50633_ADCC3_ACCSW_EN 0x01 -+#define PCF50633_ADCC3_NTCSW_EN 0x04 -+#define PCF50633_ADCC3_RES_DIV_TWO 0x10 -+#define PCF50633_ADCC3_RES_DIV_THREE 0x00 -+ -+#define PCF50633_ADCS3_REF_NTCSW 0x00 -+#define PCF50633_ADCS3_REF_ACCSW 0x10 -+#define PCF50633_ADCS3_REF_2V0 0x20 -+#define PCF50633_ADCS3_REF_VISA 0x30 -+#define PCF50633_ADCS3_REF_2V0_2 0x70 -+#define PCF50633_ADCS3_ADCRDY 0x80 -+ -+#define PCF50633_ADCS3_ADCDAT1L_MASK 0x03 -+#define PCF50633_ADCS3_ADCDAT2L_MASK 0x0c -+#define PCF50633_ADCS3_ADCDAT2L_SHIFT 2 -+#define PCF50633_ASCS3_REF_MASK 0x70 -+ -+ -+struct pcf50633; -+ -+#define PCF50633_MAX_ADC_FIFO_DEPTH 8 -+ -+struct pcf50633_adc_request; -+ -+struct pcf50633_adc { -+ struct platform_device *pdev; -+ -+ /* Private stuff */ -+ struct pcf50633_adc_request *queue[PCF50633_MAX_ADC_FIFO_DEPTH]; -+ int queue_head; -+ int queue_tail; -+ struct mutex queue_mutex; -+}; -+ -+extern int -+pcf50633_adc_async_read(struct pcf50633 *pcf, int mux, int avg, -+ void (*callback)(struct pcf50633 *, void *, int), -+ void *callback_param); -+extern int -+pcf50633_adc_sync_read(struct pcf50633 *pcf, int mux, int avg); -+ -+#endif /* __LINUX_PCF50633_ADC_H */ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/core.h -@@ -0,0 +1,212 @@ -+/* -+ * core.h -- Core driver for NXP PCF50633 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50633_CORE_H -+#define __LINUX_MFD_PCF50633_CORE_H -+ -+#include <linux/i2c.h> -+#include <linux/workqueue.h> -+#include <linux/regulator/driver.h> -+#include <linux/regulator/machine.h> -+#include <linux/power_supply.h> -+ -+#include <linux/mfd/pcf50633/pmic.h> -+#include <linux/mfd/pcf50633/input.h> -+#include <linux/mfd/pcf50633/mbc.h> -+#include <linux/mfd/pcf50633/rtc.h> -+#include <linux/mfd/pcf50633/adc.h> -+#include <linux/mfd/pcf50633/gpio.h> -+ -+struct pcf50633; -+ -+struct pcf50633_platform_data { -+ struct regulator_init_data reg_init_data[PCF50633_NUM_REGULATORS]; -+ -+ char **batteries; -+ int num_batteries; -+ -+ /* Callbacks */ -+ void (*probe_done)(struct pcf50633 *); -+ void (*mbc_event_callback)(struct pcf50633 *, int); -+ void (*regulator_registered)(struct pcf50633 *, int); -+ void (*force_shutdown)(struct pcf50633 *); -+ -+ u8 resumers[5]; -+ -+ /* Runtime data - filled by driver afer probe */ -+ struct pcf50633 *pcf; -+}; -+ -+struct pcf50633_irq { -+ void (*handler)(struct pcf50633 *, int, void *); -+ void *data; -+}; -+ -+int pcf50633_irq_mask(struct pcf50633 *pcf, int irq); -+int pcf50633_irq_unmask(struct pcf50633 *pcf, int irq); -+int pcf50633_irq_mask_get(struct pcf50633 *pcf, int irq); -+ -+int pcf50633_read_block(struct pcf50633 *, u8 reg, -+ int nr_regs, u8 *data); -+int pcf50633_write_block(struct pcf50633 *pcf, u8 reg, -+ int nr_regs, u8 *data); -+u8 pcf50633_reg_read(struct pcf50633 *, u8 reg); -+int pcf50633_reg_write(struct pcf50633 *pcf, u8 reg, u8 val); -+ -+int pcf50633_reg_set_bit_mask(struct pcf50633 *pcf, u8 reg, u8 mask, u8 val); -+int pcf50633_reg_clear_bits(struct pcf50633 *pcf, u8 reg, u8 bits); -+ -+/* Interrupt registers */ -+ -+#define PCF50633_REG_INT1 0x02 -+#define PCF50633_REG_INT2 0x03 -+#define PCF50633_REG_INT3 0x04 -+#define PCF50633_REG_INT4 0x05 -+#define PCF50633_REG_INT5 0x06 -+ -+#define PCF50633_REG_INT1M 0x07 -+#define PCF50633_REG_INT2M 0x08 -+#define PCF50633_REG_INT3M 0x09 -+#define PCF50633_REG_INT4M 0x0a -+#define PCF50633_REG_INT5M 0x0b -+ -+enum { -+ /* Chip IRQs */ -+ PCF50633_IRQ_ADPINS = 0, -+ PCF50633_IRQ_ADPREM, -+ PCF50633_IRQ_USBINS, -+ PCF50633_IRQ_USBREM, -+ PCF50633_IRQ_RESERVED1, -+ PCF50633_IRQ_RESERVED2, -+ PCF50633_IRQ_ALARM, -+ PCF50633_IRQ_SECOND, -+ PCF50633_IRQ_ONKEYR, -+ PCF50633_IRQ_ONKEYF, -+ PCF50633_IRQ_EXTON1R, -+ PCF50633_IRQ_EXTON1F, -+ PCF50633_IRQ_EXTON2R, -+ PCF50633_IRQ_EXTON2F, -+ PCF50633_IRQ_EXTON3R, -+ PCF50633_IRQ_EXTON3F, -+ PCF50633_IRQ_BATFULL, -+ PCF50633_IRQ_CHGHALT, -+ PCF50633_IRQ_THLIMON, -+ PCF50633_IRQ_THLIMOFF, -+ PCF50633_IRQ_USBLIMON, -+ PCF50633_IRQ_USBLIMOFF, -+ PCF50633_IRQ_ADCRDY, -+ PCF50633_IRQ_ONKEY1S, -+ PCF50633_IRQ_LOWSYS, -+ PCF50633_IRQ_LOWBAT, -+ PCF50633_IRQ_HIGHTMP, -+ PCF50633_IRQ_AUTOPWRFAIL, -+ PCF50633_IRQ_DWN1PWRFAIL, -+ PCF50633_IRQ_DWN2PWRFAIL, -+ PCF50633_IRQ_LEDPWRFAIL, -+ PCF50633_IRQ_LEDOVP, -+ PCF50633_IRQ_LDO1PWRFAIL, -+ PCF50633_IRQ_LDO2PWRFAIL, -+ PCF50633_IRQ_LDO3PWRFAIL, -+ PCF50633_IRQ_LDO4PWRFAIL, -+ PCF50633_IRQ_LDO5PWRFAIL, -+ PCF50633_IRQ_LDO6PWRFAIL, -+ PCF50633_IRQ_HCLDOPWRFAIL, -+ PCF50633_IRQ_HCLDOOVL, -+ -+ /* Always last */ -+ PCF50633_NUM_IRQ, -+}; -+ -+struct pcf50633 { -+ struct device *dev; -+ struct i2c_client *i2c_client; -+ -+ struct pcf50633_platform_data *pdata; -+ int irq; -+ struct pcf50633_irq irq_handler[PCF50633_NUM_IRQ]; -+ struct work_struct irq_work; -+ struct mutex lock; -+ -+ u8 mask_regs[5]; -+ -+ u8 suspend_irq_masks[5]; -+ u8 resume_reason[5]; -+ int is_suspended; -+ -+ int onkey1s_held; -+ -+ struct pcf50633_pmic pmic; -+ struct pcf50633_input input; -+ struct pcf50633_mbc mbc; -+ struct pcf50633_rtc rtc; -+ struct pcf50633_adc adc; -+}; -+ -+enum pcf50633_reg_int1 { -+ PCF50633_INT1_ADPINS = 0x01, /* Adapter inserted */ -+ PCF50633_INT1_ADPREM = 0x02, /* Adapter removed */ -+ PCF50633_INT1_USBINS = 0x04, /* USB inserted */ -+ PCF50633_INT1_USBREM = 0x08, /* USB removed */ -+ /* reserved */ -+ PCF50633_INT1_ALARM = 0x40, /* RTC alarm time is reached */ -+ PCF50633_INT1_SECOND = 0x80, /* RTC periodic second interrupt */ -+}; -+ -+enum pcf50633_reg_int2 { -+ PCF50633_INT2_ONKEYR = 0x01, /* ONKEY rising edge */ -+ PCF50633_INT2_ONKEYF = 0x02, /* ONKEY falling edge */ -+ PCF50633_INT2_EXTON1R = 0x04, /* EXTON1 rising edge */ -+ PCF50633_INT2_EXTON1F = 0x08, /* EXTON1 falling edge */ -+ PCF50633_INT2_EXTON2R = 0x10, /* EXTON2 rising edge */ -+ PCF50633_INT2_EXTON2F = 0x20, /* EXTON2 falling edge */ -+ PCF50633_INT2_EXTON3R = 0x40, /* EXTON3 rising edge */ -+ PCF50633_INT2_EXTON3F = 0x80, /* EXTON3 falling edge */ -+}; -+ -+enum pcf50633_reg_int3 { -+ PCF50633_INT3_BATFULL = 0x01, /* Battery full */ -+ PCF50633_INT3_CHGHALT = 0x02, /* Charger halt */ -+ PCF50633_INT3_THLIMON = 0x04, -+ PCF50633_INT3_THLIMOFF = 0x08, -+ PCF50633_INT3_USBLIMON = 0x10, -+ PCF50633_INT3_USBLIMOFF = 0x20, -+ PCF50633_INT3_ADCRDY = 0x40, /* ADC result ready */ -+ PCF50633_INT3_ONKEY1S = 0x80, /* ONKEY pressed 1 second */ -+}; -+ -+enum pcf50633_reg_int4 { -+ PCF50633_INT4_LOWSYS = 0x01, -+ PCF50633_INT4_LOWBAT = 0x02, -+ PCF50633_INT4_HIGHTMP = 0x04, -+ PCF50633_INT4_AUTOPWRFAIL = 0x08, -+ PCF50633_INT4_DWN1PWRFAIL = 0x10, -+ PCF50633_INT4_DWN2PWRFAIL = 0x20, -+ PCF50633_INT4_LEDPWRFAIL = 0x40, -+ PCF50633_INT4_LEDOVP = 0x80, -+}; -+ -+enum pcf50633_reg_int5 { -+ PCF50633_INT5_LDO1PWRFAIL = 0x01, -+ PCF50633_INT5_LDO2PWRFAIL = 0x02, -+ PCF50633_INT5_LDO3PWRFAIL = 0x04, -+ PCF50633_INT5_LDO4PWRFAIL = 0x08, -+ PCF50633_INT5_LDO5PWRFAIL = 0x10, -+ PCF50633_INT5_LDO6PWRFAIL = 0x20, -+ PCF50633_INT5_HCLDOPWRFAIL = 0x40, -+ PCF50633_INT5_HCLDOOVL = 0x80, -+}; -+ -+/* misc. registers */ -+#define PCF50633_REG_OOCSHDWN 0x0c -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/gpio.h -@@ -0,0 +1,51 @@ -+/* -+ * gpio.h -- GPIO driver for NXP PCF50633 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50633_GPIO_H -+#define __LINUX_MFD_PCF50633_GPIO_H -+ -+#define PCF50633_GPIO1 1 -+#define PCF50633_GPIO2 2 -+#define PCF50633_GPIO3 3 -+#define PCF50633_GPO 4 -+ -+#define PCF50633_REG_GPIO1CFG 0x14 -+#define PCF50633_REG_GPIO2CFG 0x15 -+#define PCF50633_REG_GPIO3CFG 0x16 -+#define PCF50633_REG_GPOCFG 0x17 -+ -+enum pcf50633_reg_gpocfg { -+ PCF50633_GPOCFG_GPOSEL_0 = 0x00, -+ PCF50633_GPOCFG_GPOSEL_LED_NFET = 0x01, -+ PCF50633_GPOCFG_GPOSEL_SYSxOK = 0x02, -+ PCF50633_GPOCFG_GPOSEL_CLK32K = 0x03, -+ PCF50633_GPOCFG_GPOSEL_ADAPUSB = 0x04, -+ PCF50633_GPOCFG_GPOSEL_USBxOK = 0x05, -+ PCF50633_GPOCFG_GPOSEL_ACTPH4 = 0x06, -+ PCF50633_GPOCFG_GPOSEL_1 = 0x07, -+ PCF50633_GPOCFG_GPOSEL_INVERSE = 0x08, -+}; -+#define PCF50633_GPOCFG_GPOSEL_MASK 0x07 -+ -+struct pcf50633; -+ -+void pcf50633_gpio_set(struct pcf50633 *pcf, int gpio, int on); -+int pcf50633_gpio_get(struct pcf50633 *pcf, int gpio); -+ -+void pcf50633_gpio_invert_set(struct pcf50633 *, int gpio, int invert); -+int pcf50633_gpio_invert_get(struct pcf50633 *pcf, int gpio); -+ -+void pcf50633_gpio_power_supply_set(struct pcf50633 *, -+ int gpio, int regulator, int on); -+#endif /* __LINUX_MFD_PCF50633_GPIO_H */ -+ -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/input.h -@@ -0,0 +1,29 @@ -+/* -+ * input.h -- Input driver for NXP PCF50633 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50633_INPUT_H -+#define __LINUX_MFD_PCF50633_INPUT_H -+ -+#include <linux/platform_device.h> -+#include <linux/input.h> -+ -+#define PCF50633_OOCSTAT_ONKEY 0x01 -+#define PCF50633_REG_OOCSTAT 0x12 -+#define PCF50633_REG_OOCMODE 0x10 -+ -+struct pcf50633_input { -+ struct input_dev *input_dev; -+ struct platform_device *pdev; -+}; -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/led.h -@@ -0,0 +1,24 @@ -+/* -+ * led.h -- LED driver for NXP PCF50633 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50633_LED_H -+#define __LINUX_MFD_PCF50633_LED_H -+ -+#include <linux/platform_device.h> -+ -+#define PCF50633_REG_LEDOUT 0x28 -+#define PCF50633_REG_LEDENA 0x29 -+#define PCF50633_REG_LEDCTL 0x2a -+#define PCF50633_REG_LEDDIM 0x2b -+ -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/mbc.h -@@ -0,0 +1,140 @@ -+/* -+ * mbc.h -- Driver for NXP PCF50633 Main Battery Charger -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50633_MBC_H -+#define __LINUX_MFD_PCF50633_MBC_H -+ -+#include <linux/platform_device.h> -+ -+#define PCF50633_REG_MBCC1 0x43 -+#define PCF50633_REG_MBCC2 0x44 -+#define PCF50633_REG_MBCC3 0x45 -+#define PCF50633_REG_MBCC4 0x46 -+#define PCF50633_REG_MBCC5 0x47 -+#define PCF50633_REG_MBCC6 0x48 -+#define PCF50633_REG_MBCC7 0x49 -+#define PCF50633_REG_MBCC8 0x4a -+#define PCF50633_REG_MBCS1 0x4b -+#define PCF50633_REG_MBCS2 0x4c -+#define PCF50633_REG_MBCS3 0x4d -+ -+enum pcf50633_reg_mbcc1 { -+ PCF50633_MBCC1_CHGENA = 0x01, /* Charger enable */ -+ PCF50633_MBCC1_AUTOSTOP = 0x02, -+ PCF50633_MBCC1_AUTORES = 0x04, /* automatic resume */ -+ PCF50633_MBCC1_RESUME = 0x08, /* explicit resume cmd */ -+ PCF50633_MBCC1_RESTART = 0x10, /* restart charging */ -+ PCF50633_MBCC1_PREWDTIME_60M = 0x20, /* max. precharging time */ -+ PCF50633_MBCC1_WDTIME_1H = 0x00, -+ PCF50633_MBCC1_WDTIME_2H = 0x40, -+ PCF50633_MBCC1_WDTIME_4H = 0x80, -+ PCF50633_MBCC1_WDTIME_6H = 0xc0, -+}; -+#define PCF50633_MBCC1_WDTIME_MASK 0xc0 -+ -+enum pcf50633_reg_mbcc2 { -+ PCF50633_MBCC2_VBATCOND_2V7 = 0x00, -+ PCF50633_MBCC2_VBATCOND_2V85 = 0x01, -+ PCF50633_MBCC2_VBATCOND_3V0 = 0x02, -+ PCF50633_MBCC2_VBATCOND_3V15 = 0x03, -+ PCF50633_MBCC2_VMAX_4V = 0x00, -+ PCF50633_MBCC2_VMAX_4V20 = 0x28, -+ PCF50633_MBCC2_VRESDEBTIME_64S = 0x80, /* debounce time (32/64sec) */ -+}; -+ -+enum pcf50633_reg_mbcc7 { -+ PCF50633_MBCC7_USB_100mA = 0x00, -+ PCF50633_MBCC7_USB_500mA = 0x01, -+ PCF50633_MBCC7_USB_1000mA = 0x02, -+ PCF50633_MBCC7_USB_SUSPEND = 0x03, -+ PCF50633_MBCC7_BATTEMP_EN = 0x04, -+ PCF50633_MBCC7_BATSYSIMAX_1A6 = 0x00, -+ PCF50633_MBCC7_BATSYSIMAX_1A8 = 0x40, -+ PCF50633_MBCC7_BATSYSIMAX_2A0 = 0x80, -+ PCF50633_MBCC7_BATSYSIMAX_2A2 = 0xc0, -+}; -+#define PCF50633_MBCC7_USB_MASK 0x03 -+ -+enum pcf50633_reg_mbcc8 { -+ PCF50633_MBCC8_USBENASUS = 0x10, -+}; -+ -+enum pcf50633_reg_mbcs1 { -+ PCF50633_MBCS1_USBPRES = 0x01, -+ PCF50633_MBCS1_USBOK = 0x02, -+ PCF50633_MBCS1_ADAPTPRES = 0x04, -+ PCF50633_MBCS1_ADAPTOK = 0x08, -+ PCF50633_MBCS1_TBAT_OK = 0x00, -+ PCF50633_MBCS1_TBAT_ABOVE = 0x10, -+ PCF50633_MBCS1_TBAT_BELOW = 0x20, -+ PCF50633_MBCS1_TBAT_UNDEF = 0x30, -+ PCF50633_MBCS1_PREWDTEXP = 0x40, -+ PCF50633_MBCS1_WDTEXP = 0x80, -+}; -+ -+enum pcf50633_reg_mbcs2_mbcmod { -+ PCF50633_MBCS2_MBC_PLAY = 0x00, -+ PCF50633_MBCS2_MBC_USB_PRE = 0x01, -+ PCF50633_MBCS2_MBC_USB_PRE_WAIT = 0x02, -+ PCF50633_MBCS2_MBC_USB_FAST = 0x03, -+ PCF50633_MBCS2_MBC_USB_FAST_WAIT = 0x04, -+ PCF50633_MBCS2_MBC_USB_SUSPEND = 0x05, -+ PCF50633_MBCS2_MBC_ADP_PRE = 0x06, -+ PCF50633_MBCS2_MBC_ADP_PRE_WAIT = 0x07, -+ PCF50633_MBCS2_MBC_ADP_FAST = 0x08, -+ PCF50633_MBCS2_MBC_ADP_FAST_WAIT = 0x09, -+ PCF50633_MBCS2_MBC_BAT_FULL = 0x0a, -+ PCF50633_MBCS2_MBC_HALT = 0x0b, -+}; -+#define PCF50633_MBCS2_MBC_MASK 0x0f -+enum pcf50633_reg_mbcs2_chgstat { -+ PCF50633_MBCS2_CHGS_NONE = 0x00, -+ PCF50633_MBCS2_CHGS_ADAPTER = 0x10, -+ PCF50633_MBCS2_CHGS_USB = 0x20, -+ PCF50633_MBCS2_CHGS_BOTH = 0x30, -+}; -+#define PCF50633_MBCS2_RESSTAT_AUTO 0x40 -+ -+enum pcf50633_reg_mbcs3 { -+ PCF50633_MBCS3_USBLIM_PLAY = 0x01, -+ PCF50633_MBCS3_USBLIM_CGH = 0x02, -+ PCF50633_MBCS3_TLIM_PLAY = 0x04, -+ PCF50633_MBCS3_TLIM_CHG = 0x08, -+ PCF50633_MBCS3_ILIM = 0x10, /* 1: Ibat > Icutoff */ -+ PCF50633_MBCS3_VLIM = 0x20, /* 1: Vbat == Vmax */ -+ PCF50633_MBCS3_VBATSTAT = 0x40, /* 1: Vbat > Vbatcond */ -+ PCF50633_MBCS3_VRES = 0x80, /* 1: Vbat > Vth(RES) */ -+}; -+ -+#define PCF50633_MBCC2_VBATCOND_MASK 0x03 -+#define PCF50633_MBCC2_VMAX_MASK 0x3c -+ -+struct pcf50633; -+ -+void pcf50633_mbc_usb_curlim_set(struct pcf50633 *pcf, int ma); -+ -+struct pcf50633_mbc { -+ int adapter_active; -+ int adapter_online; -+ int usb_active; -+ int usb_online; -+ -+ struct power_supply ac; -+ struct power_supply usb; -+ struct power_supply adapter; -+ -+ struct delayed_work charging_restart_work; -+ -+ struct platform_device *pdev; -+}; -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/pmic.h -@@ -0,0 +1,73 @@ -+#ifndef __LINUX_MFD_PCF50633_PMIC_H -+#define __LINUX_MFD_PCF50633_PMIC_H -+ -+#include <linux/platform_device.h> -+ -+#define PCF50633_REG_AUTOOUT 0x1a -+#define PCF50633_REG_AUTOENA 0x1b -+#define PCF50633_REG_AUTOCTL 0x1c -+#define PCF50633_REG_AUTOMXC 0x1d -+#define PCF50633_REG_DOWN1OUT 0x1e -+#define PCF50633_REG_DOWN1ENA 0x1f -+#define PCF50633_REG_DOWN1CTL 0x20 -+#define PCF50633_REG_DOWN1MXC 0x21 -+#define PCF50633_REG_DOWN2OUT 0x22 -+#define PCF50633_REG_DOWN2ENA 0x23 -+#define PCF50633_REG_DOWN2CTL 0x24 -+#define PCF50633_REG_DOWN2MXC 0x25 -+#define PCF50633_REG_MEMLDOOUT 0x26 -+#define PCF50633_REG_MEMLDOENA 0x27 -+#define PCF50633_REG_LDO1OUT 0x2d -+#define PCF50633_REG_LDO1ENA 0x2e -+#define PCF50633_REG_LDO2OUT 0x2f -+#define PCF50633_REG_LDO2ENA 0x30 -+#define PCF50633_REG_LDO3OUT 0x31 -+#define PCF50633_REG_LDO3ENA 0x32 -+#define PCF50633_REG_LDO4OUT 0x33 -+#define PCF50633_REG_LDO4ENA 0x34 -+#define PCF50633_REG_LDO5OUT 0x35 -+#define PCF50633_REG_LDO5ENA 0x36 -+#define PCF50633_REG_LDO6OUT 0x37 -+#define PCF50633_REG_LDO6ENA 0x38 -+#define PCF50633_REG_HCLDOOUT 0x39 -+#define PCF50633_REG_HCLDOENA 0x3a -+#define PCF50633_REG_HCLDOOVL 0x40 -+ -+enum pcf50633_regulator_enable { -+ PCF50633_REGULATOR_ON = 0x01, -+ PCF50633_REGULATOR_ON_GPIO1 = 0x02, -+ PCF50633_REGULATOR_ON_GPIO2 = 0x04, -+ PCF50633_REGULATOR_ON_GPIO3 = 0x08, -+}; -+#define PCF50633_REGULATOR_ON_MASK 0x0f -+ -+enum pcf50633_regulator_phase { -+ PCF50633_REGULATOR_ACTPH1 = 0x00, -+ PCF50633_REGULATOR_ACTPH2 = 0x10, -+ PCF50633_REGULATOR_ACTPH3 = 0x20, -+ PCF50633_REGULATOR_ACTPH4 = 0x30, -+}; -+#define PCF50633_REGULATOR_ACTPH_MASK 0x30 -+ -+ -+enum pcf50633_regulator_id { -+ PCF50633_REGULATOR_AUTO, -+ PCF50633_REGULATOR_DOWN1, -+ PCF50633_REGULATOR_DOWN2, -+ PCF50633_REGULATOR_LDO1, -+ PCF50633_REGULATOR_LDO2, -+ PCF50633_REGULATOR_LDO3, -+ PCF50633_REGULATOR_LDO4, -+ PCF50633_REGULATOR_LDO5, -+ PCF50633_REGULATOR_LDO6, -+ PCF50633_REGULATOR_HCLDO, -+ PCF50633_REGULATOR_MEMLDO, -+ -+ PCF50633_NUM_REGULATORS -+}; -+ -+struct pcf50633_pmic { -+ struct platform_device *pdev[PCF50633_NUM_REGULATORS]; -+}; -+#endif -+ ---- /dev/null -+++ b/include/linux/mfd/pcf50633/rtc.h -@@ -0,0 +1,43 @@ -+/* -+ * rtc.h -- RTC driver for NXP PCF50633 -+ * -+ * (C) 2006-2008 by Openmoko, Inc. -+ * All rights reserved. -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ */ -+ -+#ifndef __LINUX_MFD_PCF50633_RTC_H -+#define __LINUX_MFD_PCF50633_RTC_H -+ -+#include <linux/rtc.h> -+#include <linux/platform_device.h> -+ -+#define PCF50633_REG_RTCSC 0x59 /* Second */ -+#define PCF50633_REG_RTCMN 0x5a /* Minute */ -+#define PCF50633_REG_RTCHR 0x5b /* Hour */ -+#define PCF50633_REG_RTCWD 0x5c /* Weekday */ -+#define PCF50633_REG_RTCDT 0x5d /* Day */ -+#define PCF50633_REG_RTCMT 0x5e /* Month */ -+#define PCF50633_REG_RTCYR 0x5f /* Year */ -+#define PCF50633_REG_RTCSCA 0x60 /* Alarm Second */ -+#define PCF50633_REG_RTCMNA 0x61 /* Alarm Minute */ -+#define PCF50633_REG_RTCHRA 0x62 /* Alarm Hour */ -+#define PCF50633_REG_RTCWDA 0x63 /* Alarm Weekday */ -+#define PCF50633_REG_RTCDTA 0x64 /* Alarm Day */ -+#define PCF50633_REG_RTCMTA 0x65 /* Alarm Month */ -+#define PCF50633_REG_RTCYRA 0x66 /* Alarm Year */ -+ -+struct pcf50633_rtc { -+ int alarm_enabled; -+ int second_enabled; -+ -+ struct rtc_device *rtc_dev; -+ struct platform_device *pdev; -+}; -+ -+#endif -+ ---- a/include/linux/mmc/core.h -+++ b/include/linux/mmc/core.h -@@ -129,6 +129,8 @@ struct mmc_request { - struct mmc_host; - struct mmc_card; - -+extern void mmc_flush_scheduled_work(void); -+ - extern void mmc_wait_for_req(struct mmc_host *, struct mmc_request *); - extern int mmc_wait_for_cmd(struct mmc_host *, struct mmc_command *, int); - extern int mmc_wait_for_app_cmd(struct mmc_host *, struct mmc_card *, ---- a/include/linux/mmc/sdio_ids.h -+++ b/include/linux/mmc/sdio_ids.h -@@ -25,5 +25,8 @@ - - #define SDIO_VENDOR_ID_MARVELL 0x02df - #define SDIO_DEVICE_ID_MARVELL_LIBERTAS 0x9103 -+#define SDIO_DEVICE_ID_MARVELL_88W8688 0x9104 -+#define SDIO_VENDOR_ID_ATHEROS 0x0271 -+#define SDIO_DEVICE_ID_ATHEROS_AR6000 0x0100 - - #endif ---- a/include/linux/mm.h -+++ b/include/linux/mm.h -@@ -713,7 +713,7 @@ static inline int shmem_lock(struct file - } - #endif - struct file *shmem_file_setup(char *name, loff_t size, unsigned long flags); -- -+void shmem_set_file(struct vm_area_struct *, struct file *); - int shmem_zero_setup(struct vm_area_struct *); - - #ifndef CONFIG_MMU ---- /dev/null -+++ b/include/linux/pcf50606.h -@@ -0,0 +1,91 @@ -+#ifndef _LINUX_PCF50606_H -+#define _LINUX_PCF50606_H -+ -+#include <linux/pcf506xx.h> -+ -+ -+/* public in-kernel pcf50606 api */ -+enum pcf50606_regulator_id { -+ PCF50606_REGULATOR_DCD, -+ PCF50606_REGULATOR_DCDE, -+ PCF50606_REGULATOR_DCUD, -+ PCF50606_REGULATOR_D1REG, -+ PCF50606_REGULATOR_D2REG, -+ PCF50606_REGULATOR_D3REG, -+ PCF50606_REGULATOR_LPREG, -+ PCF50606_REGULATOR_IOREG, -+ __NUM_PCF50606_REGULATORS -+}; -+ -+struct pcf50606_data; -+ -+/* This is an ugly construct on how to access the (currently single/global) -+ * pcf50606 handle from other code in the kernel. I didn't really come up with -+ * a more decent method of dynamically resolving this */ -+extern struct pcf50606_data *pcf50606_global; -+ -+extern void -+pcf50606_go_standby(void); -+ -+extern void -+pcf50606_gpo0_set(struct pcf50606_data *pcf, int on); -+ -+extern int -+pcf50606_gpo0_get(struct pcf50606_data *pcf); -+ -+extern int -+pcf50606_voltage_set(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg, -+ unsigned int millivolts); -+extern unsigned int -+pcf50606_voltage_get(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg); -+extern int -+pcf50606_onoff_get(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg); -+ -+extern int -+pcf50606_onoff_set(struct pcf50606_data *pcf, -+ enum pcf50606_regulator_id reg, int on); -+ -+extern void -+pcf50606_charge_fast(struct pcf50606_data *pcf, int on); -+ -+ -+#define PCF50606_FEAT_EXTON 0x00000001 /* not yet supported */ -+#define PCF50606_FEAT_MBC 0x00000002 -+#define PCF50606_FEAT_BBC 0x00000004 /* not yet supported */ -+#define PCF50606_FEAT_TSC 0x00000008 /* not yet supported */ -+#define PCF50606_FEAT_WDT 0x00000010 -+#define PCF50606_FEAT_ACD 0x00000020 -+#define PCF50606_FEAT_RTC 0x00000040 -+#define PCF50606_FEAT_PWM 0x00000080 -+#define PCF50606_FEAT_CHGCUR 0x00000100 -+#define PCF50606_FEAT_BATVOLT 0x00000200 -+#define PCF50606_FEAT_BATTEMP 0x00000400 -+#define PCF50606_FEAT_PWM_BL 0x00000800 -+ -+struct pcf50606_platform_data { -+ /* general */ -+ unsigned int used_features; -+ unsigned int onkey_seconds_required; -+ -+ /* voltage regulator related */ -+ struct pmu_voltage_rail rails[__NUM_PCF50606_REGULATORS]; -+ unsigned int used_regulators; -+ -+ /* charger related */ -+ unsigned int r_fix_batt; -+ unsigned int r_fix_batt_par; -+ unsigned int r_sense_milli; -+ -+ /* backlight related */ -+ unsigned int init_brightness; -+ -+ struct { -+ u_int8_t mbcc3; /* charger voltage / current */ -+ } charger; -+ pmu_cb cb; -+}; -+ -+#endif ---- /dev/null -+++ b/include/linux/pcf50633.h -@@ -0,0 +1,618 @@ -+#ifndef _LINUX_PCF50633_H -+#define _LINUX_PCF50633_H -+ -+#include <linux/pcf506xx.h> -+#include <linux/regulator/machine.h> -+ -+#define PCF50633_FIDX_CHG_ENABLED 0 /* Charger enabled */ -+#define PCF50633_FIDX_CHG_PRESENT 1 /* Charger present */ -+#define PCF50633_FIDX_CHG_ERR 3 /* Charger Error */ -+#define PCF50633_FIDX_CHG_PROT 4 /* Charger Protection */ -+#define PCF50633_FIDX_CHG_READY 5 /* Charging completed */ -+#define PCF50633_FIDX_PWR_PRESSED 8 -+#define PCF50633_FIDX_RTC_SECOND 9 -+#define PCF50633_FIDX_USB_PRESENT 10 -+ -+#define PCF50633_F_CHG_ENABLED (1 << PCF50633_FIDX_CHG_ENABLED) -+#define PCF50633_F_CHG_PRESENT (1 << PCF50633_FIDX_CHG_PRESENT) -+#define PCF50633_F_CHG_ERR (1 << PCF50633_FIDX_CHG_ERR) -+#define PCF50633_F_CHG_PROT (1 << PCF50633_FIDX_CHG_PROT) -+#define PCF50633_F_CHG_READY (1 << PCF50633_FIDX_CHG_READY) -+ -+#define PCF50633_F_CHG_MASK 0x000000fc -+ -+#define PCF50633_F_PWR_PRESSED (1 << PCF50633_FIDX_PWR_PRESSED) -+ -+#define PCF50633_F_RTC_SECOND (1 << PCF50633_FIDX_RTC_SECOND) -+#define PCF50633_F_USB_PRESENT (1 << PCF50633_FIDX_USB_PRESENT) -+ -+/* public in-kernel pcf50633 api */ -+enum pcf50633_regulator_id { -+ PCF50633_REGULATOR_AUTO, -+ PCF50633_REGULATOR_DOWN1, -+ PCF50633_REGULATOR_DOWN2, -+ PCF50633_REGULATOR_LDO1, -+ PCF50633_REGULATOR_LDO2, -+ PCF50633_REGULATOR_LDO3, -+ PCF50633_REGULATOR_LDO4, -+ PCF50633_REGULATOR_LDO5, -+ PCF50633_REGULATOR_LDO6, -+ PCF50633_REGULATOR_HCLDO, -+ PCF50633_REGULATOR_MEMLDO, -+ __NUM_PCF50633_REGULATORS -+}; -+ -+enum pcf50633_reg_int1 { -+ PCF50633_INT1_ADPINS = 0x01, /* Adapter inserted */ -+ PCF50633_INT1_ADPREM = 0x02, /* Adapter removed */ -+ PCF50633_INT1_USBINS = 0x04, /* USB inserted */ -+ PCF50633_INT1_USBREM = 0x08, /* USB removed */ -+ /* reserved */ -+ PCF50633_INT1_ALARM = 0x40, /* RTC alarm time is reached */ -+ PCF50633_INT1_SECOND = 0x80, /* RTC periodic second interrupt */ -+}; -+ -+enum pcf50633_reg_int2 { -+ PCF50633_INT2_ONKEYR = 0x01, /* ONKEY rising edge */ -+ PCF50633_INT2_ONKEYF = 0x02, /* ONKEY falling edge */ -+ PCF50633_INT2_EXTON1R = 0x04, /* EXTON1 rising edge */ -+ PCF50633_INT2_EXTON1F = 0x08, /* EXTON1 falling edge */ -+ PCF50633_INT2_EXTON2R = 0x10, /* EXTON2 rising edge */ -+ PCF50633_INT2_EXTON2F = 0x20, /* EXTON2 falling edge */ -+ PCF50633_INT2_EXTON3R = 0x40, /* EXTON3 rising edge */ -+ PCF50633_INT2_EXTON3F = 0x80, /* EXTON3 falling edge */ -+}; -+ -+enum pcf50633_reg_int3 { -+ PCF50633_INT3_BATFULL = 0x01, /* Battery full */ -+ PCF50633_INT3_CHGHALT = 0x02, /* Charger halt */ -+ PCF50633_INT3_THLIMON = 0x04, -+ PCF50633_INT3_THLIMOFF = 0x08, -+ PCF50633_INT3_USBLIMON = 0x10, -+ PCF50633_INT3_USBLIMOFF = 0x20, -+ PCF50633_INT3_ADCRDY = 0x40, /* ADC conversion finished */ -+ PCF50633_INT3_ONKEY1S = 0x80, /* ONKEY pressed 1 second */ -+}; -+ -+enum pcf50633_reg_int4 { -+ PCF50633_INT4_LOWSYS = 0x01, -+ PCF50633_INT4_LOWBAT = 0x02, -+ PCF50633_INT4_HIGHTMP = 0x04, -+ PCF50633_INT4_AUTOPWRFAIL = 0x08, -+ PCF50633_INT4_DWN1PWRFAIL = 0x10, -+ PCF50633_INT4_DWN2PWRFAIL = 0x20, -+ PCF50633_INT4_LEDPWRFAIL = 0x40, -+ PCF50633_INT4_LEDOVP = 0x80, -+}; -+ -+enum pcf50633_reg_int5 { -+ PCF50633_INT5_LDO1PWRFAIL = 0x01, -+ PCF50633_INT5_LDO2PWRFAIL = 0x02, -+ PCF50633_INT5_LDO3PWRFAIL = 0x04, -+ PCF50633_INT5_LDO4PWRFAIL = 0x08, -+ PCF50633_INT5_LDO5PWRFAIL = 0x10, -+ PCF50633_INT5_LDO6PWRFAIL = 0x20, -+ PCF50633_INT5_HCLDOPWRFAIL = 0x40, -+ PCF50633_INT5_HCLDOOVL = 0x80, -+}; -+ -+struct pcf50633_data; -+ -+extern void -+pcf50633_go_standby(struct pcf50633_data *pcf); -+ -+enum pcf50633_gpio { -+ PCF50633_GPIO1 = 1, -+ PCF50633_GPIO2 = 2, -+ PCF50633_GPIO3 = 3, -+ PCF50633_GPO = 4, -+}; -+ -+extern void -+pcf50633_gpio_set(struct pcf50633_data *pcf, enum pcf50633_gpio gpio, int on); -+ -+extern int -+pcf50633_gpio_get(struct pcf50633_data *pcf, enum pcf50633_gpio gpio); -+ -+extern int -+pcf50633_adc_async_read(struct pcf50633_data *pcf, int mux, int avg, -+ void (*callback)(struct pcf50633_data *, void *, int), -+ void *callback_param); -+ -+extern int -+pcf50633_adc_sync_read(struct pcf50633_data *pcf, int mux, int avg); -+ -+extern void -+pcf50633_backlight_resume(struct pcf50633_data *pcf); -+ -+extern u_int16_t -+pcf50633_battvolt(struct pcf50633_data *pcf); -+ -+extern int -+pcf50633_report_resumers(struct pcf50633_data *pcf, char *buf); -+ -+extern int -+pcf50633_notify_usb_current_limit_change(struct pcf50633_data *pcf, -+ unsigned int ma); -+extern int -+pcf50633_wait_for_ready(struct pcf50633_data *pcf, int timeout_ms, -+ char *name); -+ -+/* 0 = initialized and resumed and ready to roll, !=0 = either not -+ * initialized or not resumed yet -+ */ -+extern int -+pcf50633_ready(struct pcf50633_data *pcf); -+ -+#define PCF50633_FEAT_EXTON 0x00000001 /* not yet supported */ -+#define PCF50633_FEAT_MBC 0x00000002 -+#define PCF50633_FEAT_BBC 0x00000004 /* not yet supported */ -+#define PCF50633_FEAT_RTC 0x00000040 -+#define PCF50633_FEAT_CHGCUR 0x00000100 -+#define PCF50633_FEAT_BATVOLT 0x00000200 -+#define PCF50633_FEAT_BATTEMP 0x00000400 -+#define PCF50633_FEAT_PWM_BL 0x00000800 -+ -+enum charger_type { -+ CHARGER_TYPE_NONE = 0, -+ CHARGER_TYPE_HOSTUSB, -+ CHARGER_TYPE_1A -+}; -+ -+#define ADC_NOM_CHG_DETECT_1A 6 -+#define ADC_NOM_CHG_DETECT_NONE 43 -+ -+#define MAX_ADC_FIFO_DEPTH 8 -+ -+enum pcf50633_suspend_states { -+ PCF50633_SS_RUNNING, -+ PCF50633_SS_STARTING_SUSPEND, -+ PCF50633_SS_COMPLETED_SUSPEND, -+ PCF50633_SS_RESUMING_BUT_NOT_US_YET, -+ PCF50633_SS_STARTING_RESUME, -+ PCF50633_SS_COMPLETED_RESUME, -+}; -+ -+struct pcf50633_data; -+ -+struct pcf50633_platform_data { -+ /* general */ -+ unsigned int used_features; -+ unsigned int onkey_seconds_sig_init; -+ unsigned int onkey_seconds_shutdown; -+ -+ /* callback to attach platform children (to enforce suspend / resume -+ * ordering */ -+ void (*attach_child_devices)(struct device *parent_device); -+ -+ /* charger related */ -+ unsigned int r_fix_batt; -+ unsigned int r_fix_batt_par; -+ unsigned int r_sense_milli; -+ int flag_use_apm_emulation; -+ -+ unsigned char resumers[5]; -+ -+ struct { -+ u_int8_t mbcc3; /* charger voltage / current */ -+ } charger; -+ pmu_cb cb; -+ -+ struct regulator_init_data reg_init_data[__NUM_PCF50633_REGULATORS]; -+ -+ /* Called when a regulator has been registered */ -+ void (*regulator_registered)(struct pcf50633_data *pcf, int id); -+ -+ /* Runtime data */ -+ struct pcf50633_data *pcf; -+}; -+ -+enum pfc50633_regs { -+ PCF50633_REG_VERSION = 0x00, -+ PCF50633_REG_VARIANT = 0x01, -+ PCF50633_REG_INT1 = 0x02, /* Interrupt Status */ -+ PCF50633_REG_INT2 = 0x03, /* Interrupt Status */ -+ PCF50633_REG_INT3 = 0x04, /* Interrupt Status */ -+ PCF50633_REG_INT4 = 0x05, /* Interrupt Status */ -+ PCF50633_REG_INT5 = 0x06, /* Interrupt Status */ -+ PCF50633_REG_INT1M = 0x07, /* Interrupt Mask */ -+ PCF50633_REG_INT2M = 0x08, /* Interrupt Mask */ -+ PCF50633_REG_INT3M = 0x09, /* Interrupt Mask */ -+ PCF50633_REG_INT4M = 0x0a, /* Interrupt Mask */ -+ PCF50633_REG_INT5M = 0x0b, /* Interrupt Mask */ -+ PCF50633_REG_OOCSHDWN = 0x0c, -+ PCF50633_REG_OOCWAKE = 0x0d, -+ PCF50633_REG_OOCTIM1 = 0x0e, -+ PCF50633_REG_OOCTIM2 = 0x0f, -+ PCF50633_REG_OOCMODE = 0x10, -+ PCF50633_REG_OOCCTL = 0x11, -+ PCF50633_REG_OOCSTAT = 0x12, -+ PCF50633_REG_GPIOCTL = 0x13, -+ PCF50633_REG_GPIO1CFG = 0x14, -+ PCF50633_REG_GPIO2CFG = 0x15, -+ PCF50633_REG_GPIO3CFG = 0x16, -+ PCF50633_REG_GPOCFG = 0x17, -+ PCF50633_REG_BVMCTL = 0x18, -+ PCF50633_REG_SVMCTL = 0x19, -+ PCF50633_REG_AUTOOUT = 0x1a, -+ PCF50633_REG_AUTOENA = 0x1b, -+ PCF50633_REG_AUTOCTL = 0x1c, -+ PCF50633_REG_AUTOMXC = 0x1d, -+ PCF50633_REG_DOWN1OUT = 0x1e, -+ PCF50633_REG_DOWN1ENA = 0x1f, -+ PCF50633_REG_DOWN1CTL = 0x20, -+ PCF50633_REG_DOWN1MXC = 0x21, -+ PCF50633_REG_DOWN2OUT = 0x22, -+ PCF50633_REG_DOWN2ENA = 0x23, -+ PCF50633_REG_DOWN2CTL = 0x24, -+ PCF50633_REG_DOWN2MXC = 0x25, -+ PCF50633_REG_MEMLDOOUT = 0x26, -+ PCF50633_REG_MEMLDOENA = 0x27, -+ PCF50633_REG_LEDOUT = 0x28, -+ PCF50633_REG_LEDENA = 0x29, -+ PCF50633_REG_LEDCTL = 0x2a, -+ PCF50633_REG_LEDDIM = 0x2b, -+ /* reserved */ -+ PCF50633_REG_LDO1OUT = 0x2d, -+ PCF50633_REG_LDO1ENA = 0x2e, -+ PCF50633_REG_LDO2OUT = 0x2f, -+ PCF50633_REG_LDO2ENA = 0x30, -+ PCF50633_REG_LDO3OUT = 0x31, -+ PCF50633_REG_LDO3ENA = 0x32, -+ PCF50633_REG_LDO4OUT = 0x33, -+ PCF50633_REG_LDO4ENA = 0x34, -+ PCF50633_REG_LDO5OUT = 0x35, -+ PCF50633_REG_LDO5ENA = 0x36, -+ PCF50633_REG_LDO6OUT = 0x37, -+ PCF50633_REG_LDO6ENA = 0x38, -+ PCF50633_REG_HCLDOOUT = 0x39, -+ PCF50633_REG_HCLDOENA = 0x3a, -+ PCF50633_REG_STBYCTL1 = 0x3b, -+ PCF50633_REG_STBYCTL2 = 0x3c, -+ PCF50633_REG_DEBPF1 = 0x3d, -+ PCF50633_REG_DEBPF2 = 0x3e, -+ PCF50633_REG_DEBPF3 = 0x3f, -+ PCF50633_REG_HCLDOOVL = 0x40, -+ PCF50633_REG_DCDCSTAT = 0x41, -+ PCF50633_REG_LDOSTAT = 0x42, -+ PCF50633_REG_MBCC1 = 0x43, -+ PCF50633_REG_MBCC2 = 0x44, -+ PCF50633_REG_MBCC3 = 0x45, -+ PCF50633_REG_MBCC4 = 0x46, -+ PCF50633_REG_MBCC5 = 0x47, -+ PCF50633_REG_MBCC6 = 0x48, -+ PCF50633_REG_MBCC7 = 0x49, -+ PCF50633_REG_MBCC8 = 0x4a, -+ PCF50633_REG_MBCS1 = 0x4b, -+ PCF50633_REG_MBCS2 = 0x4c, -+ PCF50633_REG_MBCS3 = 0x4d, -+ PCF50633_REG_BBCCTL = 0x4e, -+ PCF50633_REG_ALMGAIN = 0x4f, -+ PCF50633_REG_ALMDATA = 0x50, -+ /* reserved */ -+ PCF50633_REG_ADCC3 = 0x52, -+ PCF50633_REG_ADCC2 = 0x53, -+ PCF50633_REG_ADCC1 = 0x54, -+ PCF50633_REG_ADCS1 = 0x55, -+ PCF50633_REG_ADCS2 = 0x56, -+ PCF50633_REG_ADCS3 = 0x57, -+ /* reserved */ -+ PCF50633_REG_RTCSC = 0x59, /* Second */ -+ PCF50633_REG_RTCMN = 0x5a, /* Minute */ -+ PCF50633_REG_RTCHR = 0x5b, /* Hour */ -+ PCF50633_REG_RTCWD = 0x5c, /* Weekday */ -+ PCF50633_REG_RTCDT = 0x5d, /* Day */ -+ PCF50633_REG_RTCMT = 0x5e, /* Month */ -+ PCF50633_REG_RTCYR = 0x5f, /* Year */ -+ PCF50633_REG_RTCSCA = 0x60, /* Alarm Second */ -+ PCF50633_REG_RTCMNA = 0x61, /* Alarm Minute */ -+ PCF50633_REG_RTCHRA = 0x62, /* Alarm Hour */ -+ PCF50633_REG_RTCWDA = 0x63, /* Alarm Weekday */ -+ PCF50633_REG_RTCDTA = 0x64, /* Alarm Day */ -+ PCF50633_REG_RTCMTA = 0x65, /* Alarm Month */ -+ PCF50633_REG_RTCYRA = 0x66, /* Alarm Year */ -+ -+ PCF50633_REG_MEMBYTE0 = 0x67, -+ PCF50633_REG_MEMBYTE1 = 0x68, -+ PCF50633_REG_MEMBYTE2 = 0x69, -+ PCF50633_REG_MEMBYTE3 = 0x6a, -+ PCF50633_REG_MEMBYTE4 = 0x6b, -+ PCF50633_REG_MEMBYTE5 = 0x6c, -+ PCF50633_REG_MEMBYTE6 = 0x6d, -+ PCF50633_REG_MEMBYTE7 = 0x6e, -+ /* reserved */ -+ PCF50633_REG_DCDCPFM = 0x84, -+ __NUM_PCF50633_REGS -+}; -+ -+ -+enum pcf50633_reg_oocshdwn { -+ PCF50633_OOCSHDWN_GOSTDBY = 0x01, -+ PCF50633_OOCSHDWN_TOTRST = 0x04, -+ PCF50633_OOCSHDWN_COLDBOOT = 0x08, -+}; -+ -+enum pcf50633_reg_oocwake { -+ PCF50633_OOCWAKE_ONKEY = 0x01, -+ PCF50633_OOCWAKE_EXTON1 = 0x02, -+ PCF50633_OOCWAKE_EXTON2 = 0x04, -+ PCF50633_OOCWAKE_EXTON3 = 0x08, -+ PCF50633_OOCWAKE_RTC = 0x10, -+ /* reserved */ -+ PCF50633_OOCWAKE_USB = 0x40, -+ PCF50633_OOCWAKE_ADP = 0x80, -+}; -+ -+enum pcf50633_reg_mbcc1 { -+ PCF50633_MBCC1_CHGENA = 0x01, /* Charger enable */ -+ PCF50633_MBCC1_AUTOSTOP = 0x02, -+ PCF50633_MBCC1_AUTORES = 0x04, /* automatic resume */ -+ PCF50633_MBCC1_RESUME = 0x08, /* explicit resume cmd */ -+ PCF50633_MBCC1_RESTART = 0x10, /* restart charging */ -+ PCF50633_MBCC1_PREWDTIME_60M = 0x20, /* max. precharging time */ -+ PCF50633_MBCC1_WDTIME_1H = 0x00, -+ PCF50633_MBCC1_WDTIME_2H = 0x40, -+ PCF50633_MBCC1_WDTIME_4H = 0x80, -+ PCF50633_MBCC1_WDTIME_6H = 0xc0, -+}; -+#define PCF50633_MBCC1_WDTIME_MASK 0xc0 -+ -+enum pcf50633_reg_mbcc2 { -+ PCF50633_MBCC2_VBATCOND_2V7 = 0x00, -+ PCF50633_MBCC2_VBATCOND_2V85 = 0x01, -+ PCF50633_MBCC2_VBATCOND_3V0 = 0x02, -+ PCF50633_MBCC2_VBATCOND_3V15 = 0x03, -+ PCF50633_MBCC2_VMAX_4V = 0x00, -+ PCF50633_MBCC2_VMAX_4V20 = 0x28, -+ PCF50633_MBCC2_VRESDEBTIME_64S = 0x80, /* debounce time (32/64sec) */ -+}; -+#define PCF50633_MBCC2_VBATCOND_MASK 0x03 -+#define PCF50633_MBCC2_VMAX_MASK 0x3c -+ -+enum pcf50633_reg_adcc1 { -+ PCF50633_ADCC1_ADCSTART = 0x01, -+ PCF50633_ADCC1_RES_10BIT = 0x02, -+ PCF50633_ADCC1_AVERAGE_NO = 0x00, -+ PCF50633_ADCC1_AVERAGE_4 = 0x04, -+ PCF50633_ADCC1_AVERAGE_8 = 0x08, -+ PCF50633_ADCC1_AVERAGE_16 = 0x0c, -+ -+ PCF50633_ADCC1_MUX_BATSNS_RES = 0x00, -+ PCF50633_ADCC1_MUX_BATSNS_SUBTR = 0x10, -+ PCF50633_ADCC1_MUX_ADCIN2_RES = 0x20, -+ PCF50633_ADCC1_MUX_ADCIN2_SUBTR = 0x30, -+ PCF50633_ADCC1_MUX_BATTEMP = 0x60, -+ PCF50633_ADCC1_MUX_ADCIN1 = 0x70, -+}; -+#define PCF50633_ADCC1_AVERAGE_MASK 0x0c -+#define PCF50633_ADCC1_ADCMUX_MASK 0xf0 -+ -+enum pcf50633_reg_adcc2 { -+ PCF50633_ADCC2_RATIO_NONE = 0x00, -+ PCF50633_ADCC2_RATIO_BATTEMP = 0x01, -+ PCF50633_ADCC2_RATIO_ADCIN1 = 0x02, -+ PCF50633_ADCC2_RATIO_BOTH = 0x03, -+ PCF50633_ADCC2_RATIOSETTL_100US = 0x04, -+}; -+#define PCF50633_ADCC2_RATIO_MASK 0x03 -+ -+enum pcf50633_reg_adcc3 { -+ PCF50633_ADCC3_ACCSW_EN = 0x01, -+ PCF50633_ADCC3_NTCSW_EN = 0x04, -+ PCF50633_ADCC3_RES_DIV_TWO = 0x10, -+ PCF50633_ADCC3_RES_DIV_THREE = 0x00, -+}; -+ -+enum pcf50633_reg_adcs3 { -+ PCF50633_ADCS3_REF_NTCSW = 0x00, -+ PCF50633_ADCS3_REF_ACCSW = 0x10, -+ PCF50633_ADCS3_REF_2V0 = 0x20, -+ PCF50633_ADCS3_REF_VISA = 0x30, -+ PCF50633_ADCS3_REF_2V0_2 = 0x70, -+ PCF50633_ADCS3_ADCRDY = 0x80, -+}; -+#define PCF50633_ADCS3_ADCDAT1L_MASK 0x03 -+#define PCF50633_ADCS3_ADCDAT2L_MASK 0x0c -+#define PCF50633_ADCS3_ADCDAT2L_SHIFT 2 -+#define PCF50633_ASCS3_REF_MASK 0x70 -+ -+enum pcf50633_regulator_enable { -+ PCF50633_REGULATOR_ON = 0x01, -+ PCF50633_REGULATOR_ON_GPIO1 = 0x02, -+ PCF50633_REGULATOR_ON_GPIO2 = 0x04, -+ PCF50633_REGULATOR_ON_GPIO3 = 0x08, -+}; -+#define PCF50633_REGULATOR_ON_MASK 0x0f -+ -+enum pcf50633_regulator_phase { -+ PCF50633_REGULATOR_ACTPH1 = 0x00, -+ PCF50633_REGULATOR_ACTPH2 = 0x10, -+ PCF50633_REGULATOR_ACTPH3 = 0x20, -+ PCF50633_REGULATOR_ACTPH4 = 0x30, -+}; -+#define PCF50633_REGULATOR_ACTPH_MASK 0x30 -+ -+enum pcf50633_reg_gpocfg { -+ PCF50633_GPOCFG_GPOSEL_0 = 0x00, -+ PCF50633_GPOCFG_GPOSEL_LED_NFET = 0x01, -+ PCF50633_GPOCFG_GPOSEL_SYSxOK = 0x02, -+ PCF50633_GPOCFG_GPOSEL_CLK32K = 0x03, -+ PCF50633_GPOCFG_GPOSEL_ADAPUSB = 0x04, -+ PCF50633_GPOCFG_GPOSEL_USBxOK = 0x05, -+ PCF50633_GPOCFG_GPOSEL_ACTPH4 = 0x06, -+ PCF50633_GPOCFG_GPOSEL_1 = 0x07, -+ PCF50633_GPOCFG_GPOSEL_INVERSE = 0x08, -+}; -+#define PCF50633_GPOCFG_GPOSEL_MASK 0x07 -+ -+#if 0 -+enum pcf50633_reg_mbcc1 { -+ PCF50633_MBCC1_CHGENA = 0x01, -+ PCF50633_MBCC1_AUTOSTOP = 0x02, -+ PCF50633_MBCC1_AUTORES = 0x04, -+ PCF50633_MBCC1_RESUME = 0x08, -+ PCF50633_MBCC1_RESTART = 0x10, -+ PCF50633_MBCC1_PREWDTIME_30MIN = 0x00, -+ PCF50633_MBCC1_PREWDTIME_60MIN = 0x20, -+ PCF50633_MBCC1_WDTIME_2HRS = 0x40, -+ PCF50633_MBCC1_WDTIME_4HRS = 0x80, -+ PCF50633_MBCC1_WDTIME_6HRS = 0xc0, -+}; -+ -+enum pcf50633_reg_mbcc2 { -+ PCF50633_MBCC2_VBATCOND_2V7 = 0x00, -+ PCF50633_MBCC2_VBATCOND_2V85 = 0x01, -+ PCF50633_MBCC2_VBATCOND_3V0 = 0x02, -+ PCF50633_MBCC2_VBATCOND_3V15 = 0x03, -+ PCF50633_MBCC2_VRESDEBTIME_64S = 0x80, -+}; -+#define PCF50633_MBCC2_VMAX_MASK 0x3c -+#endif -+ -+enum pcf50633_reg_mbcc7 { -+ PCF50633_MBCC7_USB_100mA = 0x00, -+ PCF50633_MBCC7_USB_500mA = 0x01, -+ PCF50633_MBCC7_USB_1000mA = 0x02, -+ PCF50633_MBCC7_USB_SUSPEND = 0x03, -+ PCF50633_MBCC7_BATTEMP_EN = 0x04, -+ PCF50633_MBCC7_BATSYSIMAX_1A6 = 0x00, -+ PCF50633_MBCC7_BATSYSIMAX_1A8 = 0x40, -+ PCF50633_MBCC7_BATSYSIMAX_2A0 = 0x80, -+ PCF50633_MBCC7_BATSYSIMAX_2A2 = 0xc0, -+}; -+#define PCF56033_MBCC7_USB_MASK 0x03 -+ -+enum pcf50633_reg_mbcc8 { -+ PCF50633_MBCC8_USBENASUS = 0x10, -+}; -+ -+enum pcf50633_reg_mbcs1 { -+ PCF50633_MBCS1_USBPRES = 0x01, -+ PCF50633_MBCS1_USBOK = 0x02, -+ PCF50633_MBCS1_ADAPTPRES = 0x04, -+ PCF50633_MBCS1_ADAPTOK = 0x08, -+ PCF50633_MBCS1_TBAT_OK = 0x00, -+ PCF50633_MBCS1_TBAT_ABOVE = 0x10, -+ PCF50633_MBCS1_TBAT_BELOW = 0x20, -+ PCF50633_MBCS1_TBAT_UNDEF = 0x30, -+ PCF50633_MBCS1_PREWDTEXP = 0x40, -+ PCF50633_MBCS1_WDTEXP = 0x80, -+}; -+ -+enum pcf50633_reg_mbcs2_mbcmod { -+ PCF50633_MBCS2_MBC_PLAY = 0x00, -+ PCF50633_MBCS2_MBC_USB_PRE = 0x01, -+ PCF50633_MBCS2_MBC_USB_PRE_WAIT = 0x02, -+ PCF50633_MBCS2_MBC_USB_FAST = 0x03, -+ PCF50633_MBCS2_MBC_USB_FAST_WAIT= 0x04, -+ PCF50633_MBCS2_MBC_USB_SUSPEND = 0x05, -+ PCF50633_MBCS2_MBC_ADP_PRE = 0x06, -+ PCF50633_MBCS2_MBC_ADP_PRE_WAIT = 0x07, -+ PCF50633_MBCS2_MBC_ADP_FAST = 0x08, -+ PCF50633_MBCS2_MBC_ADP_FAST_WAIT= 0x09, -+ PCF50633_MBCS2_MBC_BAT_FULL = 0x0a, -+ PCF50633_MBCS2_MBC_HALT = 0x0b, -+}; -+#define PCF50633_MBCS2_MBC_MASK 0x0f -+enum pcf50633_reg_mbcs2_chgstat { -+ PCF50633_MBCS2_CHGS_NONE = 0x00, -+ PCF50633_MBCS2_CHGS_ADAPTER = 0x10, -+ PCF50633_MBCS2_CHGS_USB = 0x20, -+ PCF50633_MBCS2_CHGS_BOTH = 0x30, -+}; -+#define PCF50633_MBCS2_RESSTAT_AUTO 0x40 -+ -+enum pcf50633_reg_mbcs3 { -+ PCF50633_MBCS3_USBLIM_PLAY = 0x01, -+ PCF50633_MBCS3_USBLIM_CGH = 0x02, -+ PCF50633_MBCS3_TLIM_PLAY = 0x04, -+ PCF50633_MBCS3_TLIM_CHG = 0x08, -+ PCF50633_MBCS3_ILIM = 0x10, /* 1: Ibat > Icutoff */ -+ PCF50633_MBCS3_VLIM = 0x20, /* 1: Vbat == Vmax */ -+ PCF50633_MBCS3_VBATSTAT = 0x40, /* 1: Vbat > Vbatcond */ -+ PCF50633_MBCS3_VRES = 0x80, /* 1: Vbat > Vth(RES) */ -+}; -+ -+struct adc_request { -+ int mux; -+ int avg; -+ int result; -+ void (*callback)(struct pcf50633_data *, void *, int); -+ void *callback_param; -+ -+ /* Used in case of sync requests */ -+ struct completion completion; -+}; -+ -+struct pcf50633_data { -+ struct i2c_client *client; -+ struct pcf50633_platform_data *pdata; -+ struct backlight_device *backlight; -+ struct mutex lock; -+ unsigned int flags; -+ unsigned int working; -+ struct mutex working_lock; -+ struct work_struct work; -+ struct rtc_device *rtc; -+ struct input_dev *input_dev; -+ int allow_close; -+ int onkey_seconds; -+ int irq; -+ enum pcf50633_suspend_states suspend_state; -+ int usb_removal_count; -+ u8 pcfirq_resume[5]; -+ int probe_completed; -+ int suppress_onkey_events; -+ -+ /* if he pulls battery while charging, we notice that and correctly -+ * report that the charger is idle. But there is no interrupt that -+ * fires if he puts a battery back in and charging resumes. So when -+ * the battery is pulled, we run this work function looking for -+ * either charger resumption or USB cable pull -+ */ -+ struct mutex working_lock_nobat; -+ struct work_struct work_nobat; -+ int working_nobat; -+ int usb_removal_count_nobat; -+ int jiffies_last_bat_ins; -+ -+ /* current limit notification handler stuff */ -+ struct mutex working_lock_usb_curlimit; -+ struct work_struct work_usb_curlimit; -+ int pending_curlimit; -+ int usb_removal_count_usb_curlimit; -+ -+ int last_curlim_set; -+ -+ int coldplug_done; /* cleared by probe, set by first work service */ -+ int flag_bat_voltage_read; /* ipc to /sys batt voltage read func */ -+ -+ /* we have a FIFO of ADC measurement requests that are used only by -+ * the workqueue service code after the ADC completion interrupt -+ */ -+ struct adc_request *adc_queue[MAX_ADC_FIFO_DEPTH]; /* amount of averaging */ -+ int adc_queue_head; /* head owned by foreground code */ -+ int adc_queue_tail; /* tail owned by service code */ -+ -+ struct platform_device *regulator_pdev[__NUM_PCF50633_REGULATORS]; -+}; -+ -+/* this is to be provided by the board implementation */ -+extern const u_int8_t pcf50633_initial_regs[__NUM_PCF50633_REGS]; -+ -+int pcf50633_read(struct pcf50633_data *pcf, u_int8_t reg, -+ int nr_regs, u_int8_t *data); -+ -+int pcf50633_write(struct pcf50633_data *pcf, u_int8_t reg, -+ int nr_regs, u_int8_t *data); -+ -+int pcf50633_reg_write(struct pcf50633_data *pcf, u_int8_t reg, u_int8_t val); -+ -+u_int8_t pcf50633_reg_read(struct pcf50633_data *pcf, u_int8_t reg); -+ -+int pcf50633_reg_set_bit_mask(struct pcf50633_data *pcf, u_int8_t reg, u_int8_t mask, u_int8_t val); -+int pcf50633_reg_clear_bits(struct pcf50633_data *pcf, u_int8_t reg, u_int8_t bits); -+ -+void pcf50633_charge_autofast(int on); -+#endif /* _PCF50633_H */ -+ ---- /dev/null -+++ b/include/linux/pcf506xx.h -@@ -0,0 +1,34 @@ -+#ifndef _LINUX_PCF506XX_H -+#define _LINUX_PCF506XX_H -+ -+ -+#define PMU_VRAIL_F_SUSPEND_ON 0x00000001 /* Remains on during suspend */ -+#define PMU_VRAIL_F_UNUSED 0x00000002 /* This rail is not used */ -+struct pmu_voltage_rail { -+ char *name; -+ unsigned int flags; -+ struct { -+ unsigned int init; -+ unsigned int max; -+ } voltage; -+}; -+ -+enum pmu_event { -+ PMU_EVT_NONE, -+ PMU_EVT_INSERT, -+ PMU_EVT_REMOVE, -+#ifdef CONFIG_SENSORS_PCF50633 -+ PMU_EVT_USB_INSERT, -+ PMU_EVT_USB_REMOVE, -+#endif -+ PMU_EVT_CHARGER_ACTIVE, -+ PMU_EVT_CHARGER_IDLE, -+ PMU_EVT_CHARGER_CHANGE, -+ __NUM_PMU_EVTS -+}; -+ -+typedef int (*pmu_cb)(struct device *dev, unsigned int feature, -+ enum pmu_event event); -+ -+ -+#endif /* !_LINUX_PCF506XX_H */ ---- /dev/null -+++ b/include/linux/regulator/pcf50633.h -@@ -0,0 +1,3 @@ -+#include <linux/pcf50633.h> -+ -+int pcf50633_regulator_init(struct pcf50633_data *, int); ---- /dev/null -+++ b/include/linux/resume-dependency.h -@@ -0,0 +1,114 @@ -+#ifndef __RESUME_DEPENDENCY_H__ -+#define __RESUME_DEPENDENCY_H__ -+ -+/* Resume dependency framework -+ * -+ * (C) 2008 Openmoko, Inc. -+ * Author: Andy Green <andy@openmoko.com> -+ * -+ * This program is free software; you can redistribute it and/or -+ * modify it under the terms of the GNU General Public License as -+ * published by the Free Software Foundation; version 2.1. -+ * -+ * This program is distributed in the hope that it will be useful, -+ * but WITHOUT ANY WARRANTY; without even the implied warranty of -+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+ * GNU General Public License for more details. -+ * -+ * You should have received a copy of the GNU General Public License -+ * along with this program; if not, write to the Free Software -+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, -+ * MA 02111-1307 USA -+ * -+ */ -+ -+#include <linux/list.h> -+ -+struct resume_dependency { -+ struct list_head list; -+ -+ void (*callback)(void *); /* called with context as arg */ -+ void * context; -+ int called_flag; /* set to 1 after called, use for multi dep */ -+}; -+ -+/* if you are a driver accept to have other drivers as dependencies, you need to -+ * instantiate a struct resume_dependency above, then initialize it by invoking -+ * init_resume_dependency_list() on it -+ */ -+ -+#define init_resume_dependency_list(_head) \ -+ printk(KERN_INFO "##### init_resume_dependency_list(head=%p)\n", (_head)); \ -+ INIT_LIST_HEAD(&(_head)->list); -+ -+ -+/* if your resume function depends on something else being resumed first, you -+ * can register the dependency by calling this in your suspend function with -+ * head being the list held by the thing you are dependent on, and dep being -+ * your struct resume_dependency -+ */ -+ -+#define register_resume_dependency(_head, _dep) { \ -+ struct list_head *_pos, *_q; \ -+ struct resume_dependency *_d; \ -+\ -+ printk(KERN_ERR "##### register_resume_dependency(head=%p, dep=%p)\n", (_head), (_dep)); \ -+ (_dep)->called_flag = 1; \ -+ list_for_each_safe(_pos, _q, &((_head)->list)) { \ -+ _d = list_entry(_pos, struct resume_dependency, list); \ -+ if (_d == (_dep)) { \ -+ list_del(_pos); \ -+ printk(KERN_ERR "##### duplicate dependency removed first\n"); \ -+ } \ -+ } \ -+ list_add(&(_dep)->list, &(_head)->list); \ -+} -+ -+/* In the resume function that things can be dependent on, at the end you -+ * invoke this macro. This calls back the dependent resumes now it is safe to -+ * use the resumed thing they were dependent on. -+ */ -+ -+#define callback_all_resume_dependencies(_head) { \ -+ struct list_head *_pos, *_q; \ -+ struct resume_dependency *_dep; \ -+\ -+ printk(KERN_ERR "##### callback_all_resume_dependencies(head=%p)\n", (_head)); \ -+ list_for_each_safe(_pos, _q, &((_head)->list)) { \ -+ _dep = list_entry(_pos, struct resume_dependency, list); \ -+ printk(KERN_ERR "##### callback list entry (head=%p, dep=%p)\n", (_head), (_dep)); \ -+ _dep->called_flag = 1; \ -+ printk(KERN_ERR "##### callback=%p(context=%p))\n", (_dep->callback),(_dep->context)); \ -+ (_dep->callback)(_dep->context); \ -+ list_del(_pos); \ -+ } \ -+} -+ -+/* When a dependency is added, it is not actually active; the dependent resume -+ * handler will function as normal. The dependency is activated by the suspend -+ * handler for the driver that will be doing the callbacks. This ensures that -+ * if the suspend is aborted for any reason (error, driver busy, etc), that all -+ * suspended drivers will resume, even if the driver upon which they are dependent -+ * did not suspend, and hence will not resume, and thus would be unable to perform -+ * the callbacks. -+ */ -+ -+#define activate_all_resume_dependencies(_head) { \ -+ struct list_head *_pos, *_q; \ -+ struct resume_dependency *_dep; \ -+\ -+ printk(KERN_ERR "##### activate_all_resume_dependencies(head=%p)\n", (_head)); \ -+ list_for_each_safe(_pos, _q, &((_head)->list)) { \ -+ _dep = list_entry(_pos, struct resume_dependency, list); \ -+ printk(KERN_ERR "##### activating callback list entry (head=%p, dep=%p)\n", (_head), (_dep)); \ -+ _dep->called_flag = 0; \ -+ } \ -+} -+ -+/* if your resume action is dependent on multiple drivers being resumed already, -+ * register the same callback with each driver you are dependent on, and check -+ * .called_flag for all of the struct resume_dependency. When they are all 1 -+ * you know it is the last callback and you can resume, otherwise just return -+ */ -+ -+#endif ---- /dev/null -+++ b/include/linux/rtc/pcf50633.h -@@ -0,0 +1,9 @@ -+enum pcf50633_rtc_event { -+ PCF50633_RTC_EVENT_ALARM, -+ PCF50633_RTC_EVENT_SECOND, -+}; -+ -+extern void pcf50633_rtc_handle_event(struct pcf50633_data *pcf, -+ enum pcf50633_rtc_event evt); -+ -+ ---- a/include/linux/serial_core.h -+++ b/include/linux/serial_core.h -@@ -158,6 +158,8 @@ - /* SH-SCI */ - #define PORT_SCIFA 83 - -+#define PORT_S3C6400 83 -+ - #ifdef __KERNEL__ - - #include <linux/compiler.h> ---- /dev/null -+++ b/include/linux/spi/glamo.h -@@ -0,0 +1,28 @@ -+#ifndef __GLAMO_SPI_H -+#define __GLAMO_SPI_H -+ -+#include <linux/glamo-gpio.h> -+ -+struct spi_board_info; -+struct glamofb_handle; -+struct glamo_core; -+ -+struct glamo_spi_info { -+ unsigned long board_size; -+ struct spi_board_info *board_info; -+ struct glamofb_handle *glamofb_handle; -+}; -+ -+struct glamo_spigpio_info { -+ unsigned int pin_clk; -+ unsigned int pin_mosi; -+ unsigned int pin_miso; -+ unsigned int pin_cs; -+ -+ unsigned int board_size; -+ struct spi_board_info *board_info; -+ struct glamo_core *glamo; -+}; -+ -+ -+#endif ---- a/include/linux/suspend.h -+++ b/include/linux/suspend.h -@@ -146,6 +146,12 @@ struct pbe { - struct pbe *next; - }; - -+/** -+ * global indication we are somewhere between start of suspend and end of -+ * resume, nonzero is true -+ */ -+extern int global_inside_suspend; -+ - /* mm/page_alloc.c */ - extern void mark_free_pages(struct zone *zone); - ---- /dev/null -+++ b/include/linux/ts_filter_group.h -@@ -0,0 +1,39 @@ -+#ifndef __TS_FILTER_GROUP_H__ -+#define __TS_FILTER_GROUP_H__ -+ -+#include <linux/ts_filter.h> -+ -+/* -+ * Touchscreen group filter. -+ * -+ * Copyright (C) 2008 by Openmoko, Inc. -+ * Author: Nelson Castillo <arhuaco@freaks-unidos.net> -+ * -+ */ -+ -+struct ts_filter_group_configuration { -+ int extent; -+ int close_enough; -+ int threshold; -+ int attempts; -+}; -+ -+struct ts_filter_group { -+ struct ts_filter tsf; -+ struct ts_filter_group_configuration *config; -+ -+ int N; /* How many samples we have */ -+ int *samples[MAX_TS_FILTER_COORDS]; /* the samples, our input */ -+ -+ int *group_size; /* used for temporal computations */ -+ int *sorted_samples; /* used for temporal computations */ -+ -+ int range_max[MAX_TS_FILTER_COORDS]; /* max computed ranges */ -+ int range_min[MAX_TS_FILTER_COORDS]; /* min computed ranges */ -+ -+ int tries_left; /* We finish if we don't get enough samples */ -+}; -+ -+extern struct ts_filter_api ts_filter_group_api; -+ -+#endif ---- /dev/null -+++ b/include/linux/ts_filter.h -@@ -0,0 +1,56 @@ -+#ifndef __TS_FILTER_H__ -+#define __TS_FILTER_H__ -+ -+/* -+ * touchscreen filter -+ * -+ * (c) 2008 Andy Green <andy@openmoko.com> -+ */ -+ -+#include <linux/platform_device.h> -+ -+#define MAX_TS_FILTER_CHAIN 4 /* max filters you can chain up */ -+#define MAX_TS_FILTER_COORDS 3 /* X, Y and Z (pressure) */ -+ -+struct ts_filter; -+ -+/* operations that a filter can perform -+ */ -+struct ts_filter_api { -+ struct ts_filter * (*create)(struct platform_device *pdev, void *config, -+ int count_coords); -+ void (*destroy)(struct platform_device *pdev, struct ts_filter *filter); -+ void (*clear)(struct ts_filter *filter); -+ int (*process)(struct ts_filter *filter, int *coords); -+ void (*scale)(struct ts_filter *filter, int *coords); -+}; -+ -+/* this is the common part of all filters, the result -+ * we use this type as an otherwise opaque handle on to -+ * the actual filter. Therefore you need one of these -+ * at the start of your actual filter struct -+ */ -+ -+struct ts_filter { -+ struct ts_filter *next; /* next in chain */ -+ struct ts_filter_api *api; /* operations to use for this object */ -+ int count_coords; -+ int coords[MAX_TS_FILTER_COORDS]; -+}; -+ -+/* -+ * helper to create a filter chain from array of API pointers and -+ * array of config ints... leaves pointers to created filters in list -+ * array and fills in ->next pointers to create the chain -+ */ -+ -+extern int ts_filter_create_chain(struct platform_device *pdev, -+ struct ts_filter_api **api, void **config, -+ struct ts_filter **list, int count_coords); -+ -+/* helper to destroy a whole chain from the list of filter pointers */ -+ -+extern void ts_filter_destroy_chain(struct platform_device *pdev, -+ struct ts_filter **list); -+ -+#endif ---- /dev/null -+++ b/include/linux/ts_filter_linear.h -@@ -0,0 +1,64 @@ -+#ifndef __TS_FILTER_LINEAR_H__ -+#define __TS_FILTER_LINEAR_H__ -+ -+#include <linux/ts_filter.h> -+#include <linux/kobject.h> -+ -+/* -+ * touchscreen linear filter. -+ * -+ * Copyright (C) 2008 by Openmoko, Inc. -+ * Author: Nelson Castillo <arhuaco@freaks-unidos.net> -+ * -+ */ -+ -+#define TS_FILTER_LINEAR_NCONSTANTS 7 -+ -+/* sysfs */ -+ -+struct ts_filter_linear; -+ -+struct const_obj { -+ struct ts_filter_linear *tsfl; -+ struct kobject kobj; -+}; -+ -+#define to_const_obj(x) container_of(x, struct const_obj, kobj) -+ -+struct const_attribute { -+ struct attribute attr; -+ ssize_t (*show)(struct const_obj *const, struct const_attribute *attr, -+ char *buf); -+ ssize_t (*store)(struct const_obj *const, struct const_attribute *attr, -+ const char *buf, size_t count); -+}; -+ -+#define to_const_attr(x) container_of(x, struct const_attribute, attr) -+ -+/* filter configuration */ -+ -+struct ts_filter_linear_configuration { -+ int constants[TS_FILTER_LINEAR_NCONSTANTS]; -+ int coord0; -+ int coord1; -+}; -+ -+/* the filter */ -+ -+struct ts_filter_linear { -+ struct ts_filter tsf; -+ struct ts_filter_linear_configuration *config; -+ -+ int constants[TS_FILTER_LINEAR_NCONSTANTS]; -+ -+ /* sysfs */ -+ struct const_obj c_obj; -+ struct kobj_type const_ktype; -+ struct const_attribute kattrs[TS_FILTER_LINEAR_NCONSTANTS]; -+ struct attribute *attrs[TS_FILTER_LINEAR_NCONSTANTS + 1]; -+ char attr_names[TS_FILTER_LINEAR_NCONSTANTS][2]; -+}; -+ -+extern struct ts_filter_api ts_filter_linear_api; -+ -+#endif ---- /dev/null -+++ b/include/linux/ts_filter_mean.h -@@ -0,0 +1,34 @@ -+#ifndef __TS_FILTER_MEAN_H__ -+#define __TS_FILTER_MEAN_H__ -+ -+#include <linux/ts_filter.h> -+ -+/* -+ * touchscreen filter -+ * -+ * mean -+ * -+ * (c) 2008 Andy Green <andy@openmoko.com> -+ */ -+ -+struct ts_filter_mean_configuration { -+ int bits_filter_length; -+ int averaging_threshold; -+ -+ int extent; -+}; -+ -+struct ts_filter_mean { -+ struct ts_filter tsf; -+ struct ts_filter_mean_configuration *config; -+ -+ int reported[MAX_TS_FILTER_COORDS]; -+ int lowpass[MAX_TS_FILTER_COORDS]; -+ int *fifo[MAX_TS_FILTER_COORDS]; -+ int fhead[MAX_TS_FILTER_COORDS]; -+ int ftail[MAX_TS_FILTER_COORDS]; -+}; -+ -+extern struct ts_filter_api ts_filter_mean_api; -+ -+#endif ---- /dev/null -+++ b/include/linux/ts_filter_median.h -@@ -0,0 +1,36 @@ -+#ifndef __TS_FILTER_MEDIAN_H__ -+#define __TS_FILTER_MEDIAN_H__ -+ -+#include <linux/ts_filter.h> -+ -+/* -+ * touchscreen filter -+ * -+ * median -+ * -+ * (c) 2008 Andy Green <andy@openmoko.com> -+ */ -+ -+struct ts_filter_median_configuration { -+ int extent; -+ int midpoint; -+ int decimation_threshold; -+ int decimation_above; -+ int decimation_below; -+}; -+ -+struct ts_filter_median { -+ struct ts_filter tsf; -+ struct ts_filter_median_configuration *config; -+ -+ int decimation_count; -+ int last_issued[MAX_TS_FILTER_COORDS]; -+ int valid; /* how many samples in the sort buffer are valid */ -+ int *sort[MAX_TS_FILTER_COORDS]; /* samples taken for median */ -+ int *fifo[MAX_TS_FILTER_COORDS]; /* samples taken for median */ -+ int pos; /* where we are in the fifo sample memory */ -+}; -+ -+extern struct ts_filter_api ts_filter_median_api; -+ -+#endif ---- a/include/linux/vt.h -+++ b/include/linux/vt.h -@@ -18,8 +18,19 @@ extern int unregister_vt_notifier(struct - * resizing). - */ - #define MIN_NR_CONSOLES 1 /* must be at least 1 */ -+#if (CONFIG_NR_TTY_DEVICES < 4) -+/* Lower Limit */ -+#define MAX_NR_CONSOLES 4 /* serial lines start at 64 */ -+#define MAX_NR_USER_CONSOLES 4 /* must be root to allocate above this */ -+#elif (CONFIG_NR_TTY_DEVICES > 63) -+/* Upper Limit */ - #define MAX_NR_CONSOLES 63 /* serial lines start at 64 */ - #define MAX_NR_USER_CONSOLES 63 /* must be root to allocate above this */ -+#else -+/* They chose a sensible number */ -+#define MAX_NR_CONSOLES CONFIG_NR_TTY_DEVICES -+#define MAX_NR_USER_CONSOLES CONFIG_NR_TTY_DEVICES -+#endif - /* Note: the ioctl VT_GETSTATE does not work for - consoles 16 and higher (since it returns a short) */ - ---- a/include/sound/soc-dapm.h -+++ b/include/sound/soc-dapm.h -@@ -244,6 +244,13 @@ int snd_soc_dapm_nc_pin(struct snd_soc_c - int snd_soc_dapm_get_pin_status(struct snd_soc_codec *codec, char *pin); - int snd_soc_dapm_sync(struct snd_soc_codec *codec); - -+/* dapm audio endpoint control */ -+int snd_soc_dapm_set_endpoint(struct snd_soc_codec *codec, -+ char *pin, int status); -+int snd_soc_dapm_get_endpoint(struct snd_soc_codec *codec, -+ char *pin); -+int snd_soc_dapm_sync_endpoints(struct snd_soc_codec *codec); -+ - /* dapm widget types */ - enum snd_soc_dapm_type { - snd_soc_dapm_input = 0, /* input pin */ ---- a/init/Kconfig -+++ b/init/Kconfig -@@ -720,6 +720,15 @@ config AIO - by some high performance threaded applications. Disabling - this option saves about 7k. - -+config ASHMEM -+ bool "Enable Android's Shared Memory Subsystem" -+ default n -+ depends on SHMEM || TINY_SHMEM -+ help -+ The ashmem subsystem is a new shared memory allocator, similar to -+ POSIX SHM but with different behavior and sporting a simpler -+ file-based API. -+ - config VM_EVENT_COUNTERS - default y - bool "Enable VM event counters for /proc/vmstat" if EMBEDDED ---- a/kernel/irq/chip.c -+++ b/kernel/irq/chip.c -@@ -380,6 +380,7 @@ handle_level_irq(unsigned int irq, struc - out_unlock: - spin_unlock(&desc->lock); - } -+EXPORT_SYMBOL(handle_level_irq); - - /** - * handle_fasteoi_irq - irq handler for transparent controllers -@@ -583,6 +584,7 @@ __set_irq_handler(unsigned int irq, irq_ - } - spin_unlock_irqrestore(&desc->lock, flags); - } -+EXPORT_SYMBOL(__set_irq_handler); - - void - set_irq_chip_and_handler(unsigned int irq, struct irq_chip *chip, ---- a/kernel/power/main.c -+++ b/kernel/power/main.c -@@ -132,6 +132,9 @@ static inline int suspend_test(int level - - #endif /* CONFIG_PM_SLEEP */ - -+int global_inside_suspend; -+EXPORT_SYMBOL(global_inside_suspend); -+ - #ifdef CONFIG_SUSPEND - - #ifdef CONFIG_PM_TEST_SUSPEND -@@ -322,6 +325,8 @@ int suspend_devices_and_enter(suspend_st - if (!suspend_ops) - return -ENOSYS; - -+ global_inside_suspend = 1; -+ - if (suspend_ops->begin) { - error = suspend_ops->begin(state); - if (error) -@@ -365,6 +370,8 @@ int suspend_devices_and_enter(suspend_st - Close: - if (suspend_ops->end) - suspend_ops->end(); -+ global_inside_suspend = 0; -+ - return error; - - Recover_platform: -@@ -427,6 +434,8 @@ static int enter_state(suspend_state_t s - return -EBUSY; - - printk(KERN_INFO "PM: Syncing filesystems ... "); -+ global_inside_suspend = 1; -+ - sys_sync(); - printk("done.\n"); - ---- a/kernel/printk.c -+++ b/kernel/printk.c -@@ -32,8 +32,11 @@ - #include <linux/security.h> - #include <linux/bootmem.h> - #include <linux/syscalls.h> -+#include <linux/jiffies.h> -+#include <linux/suspend.h> - - #include <asm/uaccess.h> -+#include <asm/plat-s3c24xx/neo1973.h> - - /* - * Architectures can override it: -@@ -67,6 +70,12 @@ int console_printk[4] = { - int oops_in_progress; - EXPORT_SYMBOL(oops_in_progress); - -+void (*printk_emergency_debug_spew_init)(void) = NULL; -+EXPORT_SYMBOL(printk_emergency_debug_spew_init); -+ -+void (*printk_emergency_debug_spew_send_string)(const char *) = NULL; -+EXPORT_SYMBOL(printk_emergency_debug_spew_send_string); -+ - /* - * console_sem protects the console_drivers list, and also - * provides serialisation for access to the entire console -@@ -667,8 +676,39 @@ asmlinkage int vprintk(const char *fmt, - /* Emit the output into the temporary buffer */ - printed_len += vscnprintf(printk_buf + printed_len, - sizeof(printk_buf) - printed_len, fmt, args); -- -- -+#ifdef CONFIG_MACH_NEO1973_GTA02 -+ /* if you're debugging resume, the normal methods can change resume -+ * ordering behaviours because their debugging output is synchronous -+ * (ie, CONFIG_DEBUG_LL). If your problem is an OOPS, this code -+ * will not affect the speed and duration and ordering of resume -+ * actions, but will give you a chance to read the full undumped -+ * syslog AND the OOPS data when it happens -+ * -+ * if you support it, your debug device init can override the exported -+ * emergency_debug_spew_init and emergency_debug_spew_send_string to -+ * usually force polling or bitbanging on your debug console device -+ */ -+ if (oops_in_progress && global_inside_suspend && -+ printk_emergency_debug_spew_init && -+ printk_emergency_debug_spew_send_string) { -+ unsigned long cur_index; -+ char ch[2]; -+ -+ if (global_inside_suspend == 1) { -+ (printk_emergency_debug_spew_init)(); -+ -+ ch[1] = '\0'; -+ cur_index = con_start; -+ while (cur_index != log_end) { -+ ch[0] = LOG_BUF(cur_index); -+ (printk_emergency_debug_spew_send_string)(ch); -+ cur_index++; -+ } -+ global_inside_suspend++; /* only once */ -+ } -+ (printk_emergency_debug_spew_send_string)(printk_buf); -+ } -+#endif - /* - * Copy the output into log_buf. If the caller didn't provide - * appropriate log level tags, we insert them here ---- a/kernel/timer.c -+++ b/kernel/timer.c -@@ -813,7 +813,11 @@ static int cascade(struct tvec_base *bas - * don't have to detach them individually. - */ - list_for_each_entry_safe(timer, tmp, &tv_list, entry) { -- BUG_ON(tbase_get_base(timer->base) != base); -+ if (tbase_get_base(timer->base) != base) { -+ printk(KERN_ERR "cascade: timer %p: tbase_get_base(timer->base) 0x%x " -+ "!= base 0x%x\n", timer, tbase_get_base(timer->base), base); -+ BUG_ON(1); -+ } - internal_add_timer(base, timer); - } - ---- a/MAINTAINERS -+++ b/MAINTAINERS -@@ -1705,6 +1705,20 @@ FILE LOCKING (flock() and fcntl()/lockf( - P: Matthew Wilcox - M: matthew@wil.cx - L: linux-fsdevel@vger.kernel.org -+ -+FIC/OPENMOKO NEO1973 GSM PHONE -+P: Harald Welte -+M: laforge@openmoko.org -+L: openmoko-kernel@lists.openmoko.org -+W: http://wiki.openmoko.org/wiki/Kernel -+W: http://wiki.openmoko.org/wiki/Neo1973 -+S: Maintained -+ -+FRAMEBUFFER LAYER -+P: Antonino Daplas -+M: adaplas@gmail.com -+L: linux-fbdev-devel@lists.sourceforge.net (moderated for non-subscribers) -+W: http://linux-fbdev.sourceforge.net/ - S: Maintained - - FILESYSTEMS (VFS and infrastructure) ---- /dev/null -+++ b/makerecovery -@@ -0,0 +1,17 @@ -+#!/bin/sh -+# -+# make 6MB recovery image from two moredrivers type kernels -+# placed at start and at +4MBytes -+ -+if [ -z "$1" ] ; then -+ echo "Usage: $0 uImage-moredrivers-..." -+ exit 1 -+fi -+cat $1 > recovery-$1 -+SIZE=`ls -l $1 | tr -s ' ' ' ' | cut -d' ' -f5` -+SPACE=$(( 4 * 1024 * 1024 - $SIZE )) -+dd if=/dev/zero of=_spacer bs=1 count=$SPACE -+cat _spacer >> recovery-$1 -+rm -f _spacer -+cat $1 >> recovery-$1 -+ ---- /dev/null -+++ b/mm/ashmem.c -@@ -0,0 +1,657 @@ -+/* drivers/android/ashmem.c -+** -+** Android / Anonymous Shared Memory Subsystem, ashmem -+** -+** Copyright (C) 2008 Google, Inc. -+** -+** Robert Love <rlove@google.com> -+** -+** This software is licensed under the terms of the GNU General Public -+** License version 2, as published by the Free Software Foundation, and -+** may be copied, distributed, and modified under those terms. -+** -+** This program is distributed in the hope that it will be useful, -+** but WITHOUT ANY WARRANTY; without even the implied warranty of -+** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the -+** GNU General Public License for more details. -+*/ -+ -+#include <linux/module.h> -+#include <linux/file.h> -+#include <linux/fs.h> -+#include <linux/miscdevice.h> -+#include <linux/security.h> -+#include <linux/mm.h> -+#include <linux/mman.h> -+#include <linux/uaccess.h> -+#include <linux/personality.h> -+#include <linux/bitops.h> -+#include <linux/mutex.h> -+#include <linux/shmem_fs.h> -+#include <linux/ashmem.h> -+ -+/* -+ * ashmem_area - android shared memory area -+ * Lifecycle: From our parent file's open() until its release() -+ * Locking: Protected by `ashmem_mutex' -+ * Big Note: Mappings do NOT pin this structure; it dies on close() -+ */ -+struct ashmem_area { -+ char name[ASHMEM_NAME_LEN]; /* optional name for /proc/pid/maps */ -+ struct list_head unpinned_list; /* list of all ashmem areas */ -+ struct file *file; /* the shmem-based backing file */ -+ size_t size; /* size of the mapping, in bytes */ -+ unsigned long prot_mask; /* allowed prot bits, as vm_flags */ -+}; -+ -+/* -+ * ashmem_range - represents an interval of unpinned (evictable) pages -+ * Lifecycle: From unpin to pin -+ * Locking: Protected by `ashmem_mutex' -+ */ -+struct ashmem_range { -+ struct list_head lru; /* entry in LRU list */ -+ struct list_head unpinned; /* entry in its area's unpinned list */ -+ struct ashmem_area *asma; /* associated area */ -+ size_t pgstart; /* starting page, inclusive */ -+ size_t pgend; /* ending page, inclusive */ -+ unsigned int purged; /* ASHMEM_NOT or ASHMEM_WAS_PURGED */ -+}; -+ -+/* LRU list of unpinned pages, protected by ashmem_mutex */ -+static LIST_HEAD(ashmem_lru_list); -+ -+/* Count of pages on our LRU list, protected by ashmem_mutex */ -+static unsigned long lru_count; -+ -+/* -+ * ashmem_mutex - protects the list of and each individual ashmem_area -+ * -+ * Lock Ordering: ashmex_mutex -> i_mutex -> i_alloc_sem -+ */ -+static DEFINE_MUTEX(ashmem_mutex); -+ -+static struct kmem_cache *ashmem_area_cachep __read_mostly; -+static struct kmem_cache *ashmem_range_cachep __read_mostly; -+ -+#define range_size(range) \ -+ ((range)->pgend - (range)->pgstart + 1) -+ -+#define range_on_lru(range) \ -+ ((range)->purged == ASHMEM_NOT_PURGED) -+ -+#define page_range_subsumes_range(range, start, end) \ -+ (((range)->pgstart >= (start)) && ((range)->pgend <= (end))) -+ -+#define page_range_subsumed_by_range(range, start, end) \ -+ (((range)->pgstart <= (start)) && ((range)->pgend >= (end))) -+ -+#define page_in_range(range, page) \ -+ (((range)->pgstart <= (page)) && ((range)->pgend >= (page))) -+ -+#define page_range_in_range(range, start, end) \ -+ (page_in_range(range, start) || page_in_range(range, end) || \ -+ page_range_subsumes_range(range, start, end)) -+ -+#define range_before_page(range, page) \ -+ ((range)->pgend < (page)) -+ -+#define PROT_MASK (PROT_EXEC | PROT_READ | PROT_WRITE) -+ -+static inline void lru_add(struct ashmem_range *range) -+{ -+ list_add_tail(&range->lru, &ashmem_lru_list); -+ lru_count += range_size(range); -+} -+ -+static inline void lru_del(struct ashmem_range *range) -+{ -+ list_del(&range->lru); -+ lru_count -= range_size(range); -+} -+ -+/* -+ * range_alloc - allocate and initialize a new ashmem_range structure -+ * -+ * 'asma' - associated ashmem_area -+ * 'prev_range' - the previous ashmem_range in the sorted asma->unpinned list -+ * 'purged' - initial purge value (ASMEM_NOT_PURGED or ASHMEM_WAS_PURGED) -+ * 'start' - starting page, inclusive -+ * 'end' - ending page, inclusive -+ * -+ * Caller must hold ashmem_mutex. -+ */ -+static int range_alloc(struct ashmem_area *asma, -+ struct ashmem_range *prev_range, unsigned int purged, -+ size_t start, size_t end) -+{ -+ struct ashmem_range *range; -+ -+ range = kmem_cache_zalloc(ashmem_range_cachep, GFP_KERNEL); -+ if (unlikely(!range)) -+ return -ENOMEM; -+ -+ range->asma = asma; -+ range->pgstart = start; -+ range->pgend = end; -+ range->purged = purged; -+ -+ list_add_tail(&range->unpinned, &prev_range->unpinned); -+ -+ if (range_on_lru(range)) -+ lru_add(range); -+ -+ return 0; -+} -+ -+static void range_del(struct ashmem_range *range) -+{ -+ list_del(&range->unpinned); -+ if (range_on_lru(range)) -+ lru_del(range); -+ kmem_cache_free(ashmem_range_cachep, range); -+} -+ -+/* -+ * range_shrink - shrinks a range -+ * -+ * Caller must hold ashmem_mutex. -+ */ -+static inline void range_shrink(struct ashmem_range *range, -+ size_t start, size_t end) -+{ -+ size_t pre = range_size(range); -+ -+ range->pgstart = start; -+ range->pgend = end; -+ -+ if (range_on_lru(range)) -+ lru_count -= pre - range_size(range); -+} -+ -+static int ashmem_open(struct inode *inode, struct file *file) -+{ -+ struct ashmem_area *asma; -+ int ret; -+ -+ ret = nonseekable_open(inode, file); -+ if (unlikely(ret)) -+ return ret; -+ -+ asma = kmem_cache_zalloc(ashmem_area_cachep, GFP_KERNEL); -+ if (unlikely(!asma)) -+ return -ENOMEM; -+ -+ INIT_LIST_HEAD(&asma->unpinned_list); -+ asma->prot_mask = PROT_MASK; -+ file->private_data = asma; -+ -+ return 0; -+} -+ -+static int ashmem_release(struct inode *ignored, struct file *file) -+{ -+ struct ashmem_area *asma = file->private_data; -+ struct ashmem_range *range, *next; -+ -+ mutex_lock(&ashmem_mutex); -+ list_for_each_entry_safe(range, next, &asma->unpinned_list, unpinned) -+ range_del(range); -+ mutex_unlock(&ashmem_mutex); -+ -+ if (asma->file) -+ fput(asma->file); -+ kmem_cache_free(ashmem_area_cachep, asma); -+ -+ return 0; -+} -+ -+static int ashmem_mmap(struct file *file, struct vm_area_struct *vma) -+{ -+ struct ashmem_area *asma = file->private_data; -+ int ret = 0; -+ -+ mutex_lock(&ashmem_mutex); -+ -+ /* user needs to SET_SIZE before mapping */ -+ if (unlikely(!asma->size)) { -+ ret = -EINVAL; -+ goto out; -+ } -+ -+ /* requested protection bits must match our allowed protection mask */ -+ if (unlikely((vma->vm_flags & ~asma->prot_mask) & PROT_MASK)) { -+ ret = -EPERM; -+ goto out; -+ } -+ -+ if (!asma->file) { -+ char *name = ASHMEM_NAME_DEF; -+ struct file *vmfile; -+ -+ if (asma->name[0] != '\0') -+ name = asma->name; -+ -+ /* ... and allocate the backing shmem file */ -+ vmfile = shmem_file_setup(name, asma->size, vma->vm_flags); -+ if (unlikely(IS_ERR(vmfile))) { -+ ret = PTR_ERR(vmfile); -+ goto out; -+ } -+ asma->file = vmfile; -+ } -+ get_file(asma->file); -+ -+ shmem_set_file(vma, asma->file); -+ vma->vm_flags |= VM_CAN_NONLINEAR; -+ -+out: -+ mutex_unlock(&ashmem_mutex); -+ return ret; -+} -+ -+/* -+ * ashmem_shrink - our cache shrinker, called from mm/vmscan.c :: shrink_slab -+ * -+ * 'nr_to_scan' is the number of objects (pages) to prune, or 0 to query how -+ * many objects (pages) we have in total. -+ * -+ * 'gfp_mask' is the mask of the allocation that got us into this mess. -+ * -+ * Return value is the number of objects (pages) remaining, or -1 if we cannot -+ * proceed without risk of deadlock (due to gfp_mask). -+ * -+ * We approximate LRU via least-recently-unpinned, jettisoning unpinned partial -+ * chunks of ashmem regions LRU-wise one-at-a-time until we hit 'nr_to_scan' -+ * pages freed. -+ */ -+static int ashmem_shrink(int nr_to_scan, gfp_t gfp_mask) -+{ -+ struct ashmem_range *range, *next; -+ -+ /* We might recurse into filesystem code, so bail out if necessary */ -+ if (nr_to_scan && !(gfp_mask & __GFP_FS)) -+ return -1; -+ if (!nr_to_scan) -+ return lru_count; -+ -+ mutex_lock(&ashmem_mutex); -+ list_for_each_entry_safe(range, next, &ashmem_lru_list, lru) { -+ struct inode *inode = range->asma->file->f_dentry->d_inode; -+ loff_t start = range->pgstart * PAGE_SIZE; -+ loff_t end = (range->pgend + 1) * PAGE_SIZE - 1; -+ -+ vmtruncate_range(inode, start, end); -+ range->purged = ASHMEM_WAS_PURGED; -+ lru_del(range); -+ -+ nr_to_scan -= range_size(range); -+ if (nr_to_scan <= 0) -+ break; -+ } -+ mutex_unlock(&ashmem_mutex); -+ -+ return lru_count; -+} -+ -+static struct shrinker ashmem_shrinker = { -+ .shrink = ashmem_shrink, -+ .seeks = DEFAULT_SEEKS * 4, -+}; -+ -+static int set_prot_mask(struct ashmem_area *asma, unsigned long prot) -+{ -+ int ret = 0; -+ -+ mutex_lock(&ashmem_mutex); -+ -+ /* the user can only remove, not add, protection bits */ -+ if (unlikely((asma->prot_mask & prot) != prot)) { -+ ret = -EINVAL; -+ goto out; -+ } -+ -+ /* does the application expect PROT_READ to imply PROT_EXEC? */ -+ if ((prot & PROT_READ) && (current->personality & READ_IMPLIES_EXEC)) -+ prot |= PROT_EXEC; -+ -+ asma->prot_mask = prot; -+ -+out: -+ mutex_unlock(&ashmem_mutex); -+ return ret; -+} -+ -+static int set_name(struct ashmem_area *asma, void __user *name) -+{ -+ int ret = 0; -+ -+ mutex_lock(&ashmem_mutex); -+ -+ /* cannot change an existing mapping's name */ -+ if (unlikely(asma->file)) { -+ ret = -EINVAL; -+ goto out; -+ } -+ -+ if (unlikely(copy_from_user(asma->name, name, ASHMEM_NAME_LEN))) -+ ret = -EFAULT; -+ asma->name[ASHMEM_NAME_LEN-1] = '\0'; -+ -+out: -+ mutex_unlock(&ashmem_mutex); -+ -+ return ret; -+} -+ -+static int get_name(struct ashmem_area *asma, void __user *name) -+{ -+ int ret = 0; -+ -+ mutex_lock(&ashmem_mutex); -+ if (asma->name[0] != '\0') { -+ size_t len; -+ -+ /* -+ * Copying only `len', instead of ASHMEM_NAME_LEN, bytes -+ * prevents us from revealing one user's stack to another. -+ */ -+ len = strlen(asma->name) + 1; -+ if (unlikely(copy_to_user(name, asma->name, len))) -+ ret = -EFAULT; -+ } else { -+ if (unlikely(copy_to_user(name, ASHMEM_NAME_DEF, -+ sizeof(ASHMEM_NAME_DEF)))) -+ ret = -EFAULT; -+ } -+ mutex_unlock(&ashmem_mutex); -+ -+ return ret; -+} -+ -+/* -+ * ashmem_pin - pin the given ashmem region, returning whether it was -+ * previously purged (ASHMEM_WAS_PURGED) or not (ASHMEM_NOT_PURGED). -+ * -+ * Caller must hold ashmem_mutex. -+ */ -+static int ashmem_pin(struct ashmem_area *asma, size_t pgstart, size_t pgend) -+{ -+ struct ashmem_range *range, *next; -+ int ret = ASHMEM_NOT_PURGED; -+ -+ list_for_each_entry_safe(range, next, &asma->unpinned_list, unpinned) { -+ /* moved past last applicable page; we can short circuit */ -+ if (range_before_page(range, pgstart)) -+ break; -+ -+ /* -+ * The user can ask us to pin pages that span multiple ranges, -+ * or to pin pages that aren't even unpinned, so this is messy. -+ * -+ * Four cases: -+ * 1. The requested range subsumes an existing range, so we -+ * just remove the entire matching range. -+ * 2. The requested range overlaps the start of an existing -+ * range, so we just update that range. -+ * 3. The requested range overlaps the end of an existing -+ * range, so we just update that range. -+ * 4. The requested range punches a hole in an existing range, -+ * so we have to update one side of the range and then -+ * create a new range for the other side. -+ */ -+ if (page_range_in_range(range, pgstart, pgend)) { -+ ret |= range->purged; -+ -+ /* Case #1: Easy. Just nuke the whole thing. */ -+ if (page_range_subsumes_range(range, pgstart, pgend)) { -+ range_del(range); -+ continue; -+ } -+ -+ /* Case #2: We overlap from the start, so adjust it */ -+ if (range->pgstart >= pgstart) { -+ range_shrink(range, pgend + 1, range->pgend); -+ continue; -+ } -+ -+ /* Case #3: We overlap from the rear, so adjust it */ -+ if (range->pgend <= pgend) { -+ range_shrink(range, range->pgstart, pgstart-1); -+ continue; -+ } -+ -+ /* -+ * Case #4: We eat a chunk out of the middle. A bit -+ * more complicated, we allocate a new range for the -+ * second half and adjust the first chunk's endpoint. -+ */ -+ range_alloc(asma, range, range->purged, -+ pgend + 1, range->pgend); -+ range_shrink(range, range->pgstart, pgstart - 1); -+ break; -+ } -+ } -+ -+ return ret; -+} -+ -+/* -+ * ashmem_unpin - unpin the given range of pages. Returns zero on success. -+ * -+ * Caller must hold ashmem_mutex. -+ */ -+static int ashmem_unpin(struct ashmem_area *asma, size_t pgstart, size_t pgend) -+{ -+ struct ashmem_range *range, *next; -+ unsigned int purged = ASHMEM_NOT_PURGED; -+ -+restart: -+ list_for_each_entry_safe(range, next, &asma->unpinned_list, unpinned) { -+ /* short circuit: this is our insertion point */ -+ if (range_before_page(range, pgstart)) -+ break; -+ -+ /* -+ * The user can ask us to unpin pages that are already entirely -+ * or partially pinned. We handle those two cases here. -+ */ -+ if (page_range_subsumed_by_range(range, pgstart, pgend)) -+ return 0; -+ if (page_range_in_range(range, pgstart, pgend)) { -+ pgstart = min_t(size_t, range->pgstart, pgstart), -+ pgend = max_t(size_t, range->pgend, pgend); -+ purged |= range->purged; -+ range_del(range); -+ goto restart; -+ } -+ } -+ -+ return range_alloc(asma, range, purged, pgstart, pgend); -+} -+ -+/* -+ * ashmem_get_pin_status - Returns ASHMEM_IS_UNPINNED if _any_ pages in the -+ * given interval are unpinned and ASHMEM_IS_PINNED otherwise. -+ * -+ * Caller must hold ashmem_mutex. -+ */ -+static int ashmem_get_pin_status(struct ashmem_area *asma, size_t pgstart, -+ size_t pgend) -+{ -+ struct ashmem_range *range; -+ int ret = ASHMEM_IS_PINNED; -+ -+ list_for_each_entry(range, &asma->unpinned_list, unpinned) { -+ if (range_before_page(range, pgstart)) -+ break; -+ if (page_range_in_range(range, pgstart, pgend)) { -+ ret = ASHMEM_IS_UNPINNED; -+ break; -+ } -+ } -+ -+ return ret; -+} -+ -+static int ashmem_pin_unpin(struct ashmem_area *asma, unsigned long cmd, -+ void __user *p) -+{ -+ struct ashmem_pin pin; -+ size_t pgstart, pgend; -+ int ret = -EINVAL; -+ -+ if (unlikely(!asma->file)) -+ return -EINVAL; -+ -+ if (unlikely(copy_from_user(&pin, p, sizeof(pin)))) -+ return -EFAULT; -+ -+ /* per custom, you can pass zero for len to mean "everything onward" */ -+ if (!pin.len) -+ pin.len = asma->size - pin.offset; -+ -+ if (unlikely((pin.offset | pin.len) & ~PAGE_MASK)) -+ return -EINVAL; -+ -+ if (unlikely(((__u32) -1) - pin.offset < pin.len)) -+ return -EINVAL; -+ -+ if (unlikely(asma->size < pin.offset + pin.len)) -+ return -EINVAL; -+ -+ pgstart = pin.offset / PAGE_SIZE; -+ pgend = pgstart + (pin.len / PAGE_SIZE) - 1; -+ -+ mutex_lock(&ashmem_mutex); -+ -+ switch (cmd) { -+ case ASHMEM_PIN: -+ ret = ashmem_pin(asma, pgstart, pgend); -+ break; -+ case ASHMEM_UNPIN: -+ ret = ashmem_unpin(asma, pgstart, pgend); -+ break; -+ case ASHMEM_GET_PIN_STATUS: -+ ret = ashmem_get_pin_status(asma, pgstart, pgend); -+ break; -+ } -+ -+ mutex_unlock(&ashmem_mutex); -+ -+ return ret; -+} -+ -+static long ashmem_ioctl(struct file *file, unsigned int cmd, unsigned long arg) -+{ -+ struct ashmem_area *asma = file->private_data; -+ long ret = -ENOTTY; -+ -+ switch (cmd) { -+ case ASHMEM_SET_NAME: -+ ret = set_name(asma, (void __user *) arg); -+ break; -+ case ASHMEM_GET_NAME: -+ ret = get_name(asma, (void __user *) arg); -+ break; -+ case ASHMEM_SET_SIZE: -+ ret = -EINVAL; -+ if (!asma->file && !(arg & ~PAGE_MASK)) { -+ ret = 0; -+ asma->size = (size_t) arg; -+ } -+ break; -+ case ASHMEM_GET_SIZE: -+ ret = asma->size; -+ break; -+ case ASHMEM_SET_PROT_MASK: -+ ret = set_prot_mask(asma, arg); -+ break; -+ case ASHMEM_GET_PROT_MASK: -+ ret = asma->prot_mask; -+ break; -+ case ASHMEM_PIN: -+ case ASHMEM_UNPIN: -+ case ASHMEM_GET_PIN_STATUS: -+ ret = ashmem_pin_unpin(asma, cmd, (void __user *) arg); -+ break; -+ case ASHMEM_PURGE_ALL_CACHES: -+ ret = -EPERM; -+ if (capable(CAP_SYS_ADMIN)) { -+ ret = ashmem_shrink(0, GFP_KERNEL); -+ ashmem_shrink(ret, GFP_KERNEL); -+ } -+ break; -+ } -+ -+ return ret; -+} -+ -+static struct file_operations ashmem_fops = { -+ .owner = THIS_MODULE, -+ .open = ashmem_open, -+ .release = ashmem_release, -+ .mmap = ashmem_mmap, -+ .unlocked_ioctl = ashmem_ioctl, -+ .compat_ioctl = ashmem_ioctl, -+}; -+ -+static struct miscdevice ashmem_misc = { -+ .minor = MISC_DYNAMIC_MINOR, -+ .name = "ashmem", -+ .fops = &ashmem_fops, -+}; -+ -+static int __init ashmem_init(void) -+{ -+ int ret; -+ -+ ashmem_area_cachep = kmem_cache_create("ashmem_area_cache", -+ sizeof(struct ashmem_area), -+ 0, 0, NULL); -+ if (unlikely(!ashmem_area_cachep)) { -+ printk(KERN_ERR "ashmem: failed to create slab cache\n"); -+ return -ENOMEM; -+ } -+ -+ ashmem_range_cachep = kmem_cache_create("ashmem_range_cache", -+ sizeof(struct ashmem_range), -+ 0, 0, NULL); -+ if (unlikely(!ashmem_range_cachep)) { -+ printk(KERN_ERR "ashmem: failed to create slab cache\n"); -+ return -ENOMEM; -+ } -+ -+ ret = misc_register(&ashmem_misc); -+ if (unlikely(ret)) { -+ printk(KERN_ERR "ashmem: failed to register misc device!\n"); -+ return ret; -+ } -+ -+ register_shrinker(&ashmem_shrinker); -+ -+ printk(KERN_INFO "ashmem: initialized\n"); -+ -+ return 0; -+} -+ -+static void __exit ashmem_exit(void) -+{ -+ int ret; -+ -+ unregister_shrinker(&ashmem_shrinker); -+ -+ ret = misc_deregister(&ashmem_misc); -+ if (unlikely(ret)) -+ printk(KERN_ERR "ashmem: failed to unregister misc device!\n"); -+ -+ kmem_cache_destroy(ashmem_range_cachep); -+ kmem_cache_destroy(ashmem_area_cachep); -+ -+ printk(KERN_INFO "ashmem: unloaded\n"); -+} -+ -+module_init(ashmem_init); -+module_exit(ashmem_exit); -+ -+MODULE_LICENSE("GPL"); ---- a/mm/Makefile -+++ b/mm/Makefile -@@ -22,6 +22,7 @@ obj-$(CONFIG_NUMA) += mempolicy.o - obj-$(CONFIG_SPARSEMEM) += sparse.o - obj-$(CONFIG_SPARSEMEM_VMEMMAP) += sparse-vmemmap.o - obj-$(CONFIG_SHMEM) += shmem.o -+obj-$(CONFIG_ASHMEM) += ashmem.o - obj-$(CONFIG_TMPFS_POSIX_ACL) += shmem_acl.o - obj-$(CONFIG_TINY_SHMEM) += tiny-shmem.o - obj-$(CONFIG_SLOB) += slob.o ---- a/mm/tiny-shmem.c -+++ b/mm/tiny-shmem.c -@@ -97,6 +97,22 @@ put_memory: - } - EXPORT_SYMBOL_GPL(shmem_file_setup); - -+void shmem_set_file(struct vm_area_struct *vma, struct file *file) -+{ -+ if (vma->vm_file) -+ fput(vma->vm_file); -+ vma->vm_file = file; -+ vma->vm_ops = &generic_file_vm_ops; -+} -+ -+void shmem_set_file(struct vm_area_struct *vma, struct file *file) -+{ -+ if (vma->vm_file) -+ fput(vma->vm_file); -+ vma->vm_file = file; -+ vma->vm_ops = &generic_file_vm_ops; -+} -+ - /** - * shmem_zero_setup - setup a shared anonymous mapping - * @vma: the vma to be mmapped is prepared by do_mmap_pgoff -@@ -110,10 +126,8 @@ int shmem_zero_setup(struct vm_area_stru - if (IS_ERR(file)) - return PTR_ERR(file); - -- if (vma->vm_file) -- fput(vma->vm_file); -- vma->vm_file = file; -- vma->vm_ops = &generic_file_vm_ops; -+ shmem_set_file(vma, file); -+ - return 0; - } - ---- /dev/null -+++ b/remote_install_sdcard -@@ -0,0 +1,18 @@ -+#!/bin/sh -+ -+# automatic kernel updater and reboot - Andy Green <andy@openmoko.com> -+ -+GTA_DEVICE_IP=192.168.0.202 -+ -+# you should set up key-based auth on dropbear if you want -+# to play this game. -+# -+# 1) mkdir /home/root/.ssh -+# 2) chown root:root / /home /home/root -+# 3) chmod 700 /home/root /home/root/.ssh -+# 4) copy your id_*.pub into /home/root/.ssh/authorized_keys -+# 5) chmod 600 /home/root/.ssh/* -+ -+scp uImage.bin root@$GTA_DEVICE_IP:/boot -+ssh root@$GTA_DEVICE_IP "mount /dev/mmcblk0p1 / -oremount,ro ; reboot -if &" -+ ---- a/scripts/mkuboot.sh -+++ b/scripts/mkuboot.sh -@@ -11,7 +11,7 @@ if [ -z "${MKIMAGE}" ]; then - if [ -z "${MKIMAGE}" ]; then - # Doesn't exist - echo '"mkimage" command not found - U-Boot images will not be built' >&2 -- exit 0; -+ exit 1; - fi - fi - ---- a/sound/soc/codecs/wm8753.c -+++ b/sound/soc/codecs/wm8753.c -@@ -1584,6 +1584,9 @@ static int wm8753_init(struct snd_soc_de - schedule_delayed_work(&codec->delayed_work, - msecs_to_jiffies(caps_charge)); - -+ /* Fix reg WM8753_ADCTL2 */ -+ wm8753_write(codec, WM8753_ADCTL2, 0x0000); -+ - /* set the update bits */ - reg = wm8753_read_reg_cache(codec, WM8753_LDAC); - wm8753_write(codec, WM8753_LDAC, reg | 0x0100); -@@ -1644,17 +1647,20 @@ static int wm8753_i2c_probe(struct i2c_c - struct snd_soc_codec *codec = socdev->codec; - int ret; - -+ /* codec->control_data must be set before call to wm8753_init */ - i2c_set_clientdata(i2c, codec); - codec->control_data = i2c; - - ret = wm8753_init(socdev); -- if (ret < 0) -+ if (ret < 0) { - pr_err("failed to initialise WM8753\n"); -+ codec->control_data = NULL; -+ } - - return ret; - } - --static int wm8753_i2c_remove(struct i2c_client *client) -+static int __devexit wm8753_i2c_remove(struct i2c_client *client) - { - struct snd_soc_codec *codec = i2c_get_clientdata(client); - kfree(codec->reg_cache); -@@ -1675,6 +1681,7 @@ static struct i2c_driver wm8753_i2c_driv - .probe = wm8753_i2c_probe, - .remove = wm8753_i2c_remove, - .id_table = wm8753_i2c_id, -+ .class = I2C_CLASS_SOUND - }; - - static int wm8753_add_i2c_device(struct platform_device *pdev, -@@ -1716,6 +1723,8 @@ err_driver: - i2c_del_driver(&wm8753_i2c_driver); - return -ENODEV; - } -+ -+ - #endif - - #if defined(CONFIG_SPI_MASTER) -@@ -1783,7 +1792,7 @@ static int wm8753_probe(struct platform_ - struct wm8753_priv *wm8753; - int ret = 0; - -- pr_info("WM8753 Audio Codec %s", WM8753_VERSION); -+ pr_info("WM8753 Audio Codec %s\n", WM8753_VERSION); - - setup = socdev->codec_data; - codec = kzalloc(sizeof(struct snd_soc_codec), GFP_KERNEL); -@@ -1820,6 +1829,7 @@ static int wm8753_probe(struct platform_ - #endif - - if (ret != 0) { -+ printk(KERN_ERR "can't add codec bus driver\n"); - kfree(codec->private_data); - kfree(codec); - } -@@ -1857,7 +1867,6 @@ static int wm8753_remove(struct platform - snd_soc_free_pcms(socdev); - snd_soc_dapm_free(socdev); - #if defined(CONFIG_I2C) || defined(CONFIG_I2C_MODULE) -- i2c_unregister_device(codec->control_data); - i2c_del_driver(&wm8753_i2c_driver); - #endif - #if defined(CONFIG_SPI_MASTER) ---- a/sound/soc/s3c24xx/Kconfig -+++ b/sound/soc/s3c24xx/Kconfig -@@ -26,6 +26,15 @@ config SND_S3C24XX_SOC_NEO1973_WM8753 - Say Y if you want to add support for SoC audio on smdk2440 - with the WM8753. - -+config SND_S3C24XX_SOC_NEO1973_GTA02_WM8753 -+ tristate "SoC I2S Audio support for NEO1973 GTA02 - WM8753" -+ depends on SND_S3C24XX_SOC && MACH_NEO1973_GTA02 -+ select SND_S3C24XX_SOC_I2S -+ select SND_SOC_WM8753 -+ help -+ Say Y if you want to add support for SoC audio on neo1973 gta02 -+ with the WM8753 codec -+ - config SND_S3C24XX_SOC_SMDK2443_WM9710 - tristate "SoC AC97 Audio support for SMDK2443 - WM9710" - depends on SND_S3C24XX_SOC && MACH_SMDK2443 ---- a/sound/soc/s3c24xx/Makefile -+++ b/sound/soc/s3c24xx/Makefile -@@ -13,7 +13,10 @@ obj-$(CONFIG_SND_S3C2412_SOC_I2S) += snd - snd-soc-neo1973-wm8753-objs := neo1973_wm8753.o - snd-soc-smdk2443-wm9710-objs := smdk2443_wm9710.o - snd-soc-ln2440sbc-alc650-objs := ln2440sbc_alc650.o -+snd-soc-neo1973-gta02-wm8753-objs := neo1973_gta02_wm8753.o - - obj-$(CONFIG_SND_S3C24XX_SOC_NEO1973_WM8753) += snd-soc-neo1973-wm8753.o - obj-$(CONFIG_SND_S3C24XX_SOC_SMDK2443_WM9710) += snd-soc-smdk2443-wm9710.o - obj-$(CONFIG_SND_S3C24XX_SOC_LN2440SBC_ALC650) += snd-soc-ln2440sbc-alc650.o -+obj-$(CONFIG_SND_S3C24XX_SOC_NEO1973_GTA02_WM8753) += snd-soc-neo1973-gta02-wm8753.o -+ ---- /dev/null -+++ b/sound/soc/s3c24xx/neo1973_gta02_wm8753.c -@@ -0,0 +1,673 @@ -+/* -+ * neo1973_gta02_wm8753.c -- SoC audio for Neo1973 -+ * -+ * Copyright 2007 Openmoko Inc -+ * Author: Graeme Gregory <graeme@openmoko.org> -+ * Copyright 2007 Wolfson Microelectronics PLC. -+ * Author: Graeme Gregory <linux@wolfsonmicro.com> -+ * -+ * This program is free software; you can redistribute it and/or modify it -+ * under the terms of the GNU General Public License as published by the -+ * Free Software Foundation; either version 2 of the License, or (at your -+ * option) any later version. -+ * -+ * Revision history -+ * 06th Nov 2007 Changed from GTA01 to GTA02 -+ * 20th Jan 2007 Initial version. -+ * 05th Feb 2007 Rename all to Neo1973 -+ * -+ */ -+ -+#include <linux/module.h> -+#include <linux/moduleparam.h> -+#include <linux/timer.h> -+#include <linux/interrupt.h> -+#include <linux/platform_device.h> -+#include <linux/i2c.h> -+#include <sound/core.h> -+#include <sound/pcm.h> -+#include <sound/soc.h> -+#include <sound/soc-dapm.h> -+ -+#include <asm/mach-types.h> -+#include <asm/hardware/scoop.h> -+#include <asm/plat-s3c24xx/regs-iis.h> -+#include <mach/regs-clock.h> -+#include <mach/regs-gpio.h> -+#include <mach/hardware.h> -+#include <mach/audio.h> -+#include <asm/io.h> -+#include <mach/spi-gpio.h> -+#include <mach/regs-gpioj.h> -+#include <mach/gta02.h> -+#include "../codecs/wm8753.h" -+#include "s3c24xx-pcm.h" -+#include "s3c24xx-i2s.h" -+ -+/* define the scenarios */ -+#define NEO_AUDIO_OFF 0 -+#define NEO_GSM_CALL_AUDIO_HANDSET 1 -+#define NEO_GSM_CALL_AUDIO_HEADSET 2 -+#define NEO_GSM_CALL_AUDIO_BLUETOOTH 3 -+#define NEO_STEREO_TO_SPEAKERS 4 -+#define NEO_STEREO_TO_HEADPHONES 5 -+#define NEO_CAPTURE_HANDSET 6 -+#define NEO_CAPTURE_HEADSET 7 -+#define NEO_CAPTURE_BLUETOOTH 8 -+#define NEO_STEREO_TO_HANDSET_SPK 9 -+ -+static struct snd_soc_machine neo1973_gta02; -+ -+static int neo1973_gta02_hifi_hw_params(struct snd_pcm_substream *substream, -+ struct snd_pcm_hw_params *params) -+{ -+ struct snd_soc_pcm_runtime *rtd = substream->private_data; -+ struct snd_soc_dai *codec_dai = rtd->dai->codec_dai; -+ struct snd_soc_dai *cpu_dai = rtd->dai->cpu_dai; -+ unsigned int pll_out = 0, bclk = 0; -+ int ret = 0; -+ unsigned long iis_clkrate; -+ -+ iis_clkrate = s3c24xx_i2s_get_clockrate(); -+ -+ switch (params_rate(params)) { -+ case 8000: -+ case 16000: -+ pll_out = 12288000; -+ break; -+ case 48000: -+ bclk = WM8753_BCLK_DIV_4; -+ pll_out = 12288000; -+ break; -+ case 96000: -+ bclk = WM8753_BCLK_DIV_2; -+ pll_out = 12288000; -+ break; -+ case 11025: -+ bclk = WM8753_BCLK_DIV_16; -+ pll_out = 11289600; -+ break; -+ case 22050: -+ bclk = WM8753_BCLK_DIV_8; -+ pll_out = 11289600; -+ break; -+ case 44100: -+ bclk = WM8753_BCLK_DIV_4; -+ pll_out = 11289600; -+ break; -+ case 88200: -+ bclk = WM8753_BCLK_DIV_2; -+ pll_out = 11289600; -+ break; -+ } -+ -+ /* set codec DAI configuration */ -+ ret = codec_dai->dai_ops.set_fmt(codec_dai, -+ SND_SOC_DAIFMT_I2S | SND_SOC_DAIFMT_NB_NF | -+ SND_SOC_DAIFMT_CBM_CFM); -+ if (ret < 0) -+ return ret; -+ -+ /* set cpu DAI configuration */ -+ ret = cpu_dai->dai_ops.set_fmt(cpu_dai, -+ SND_SOC_DAIFMT_I2S | SND_SOC_DAIFMT_NB_NF | -+ SND_SOC_DAIFMT_CBM_CFM); -+ if (ret < 0) -+ return ret; -+ -+ /* set the codec system clock for DAC and ADC */ -+ ret = codec_dai->dai_ops.set_sysclk(codec_dai, WM8753_MCLK, pll_out, -+ SND_SOC_CLOCK_IN); -+ if (ret < 0) -+ return ret; -+ -+ /* set MCLK division for sample rate */ -+ ret = cpu_dai->dai_ops.set_clkdiv(cpu_dai, S3C24XX_DIV_MCLK, -+ S3C2410_IISMOD_32FS ); -+ if (ret < 0) -+ return ret; -+ -+ /* set codec BCLK division for sample rate */ -+ ret = codec_dai->dai_ops.set_clkdiv(codec_dai, -+ WM8753_BCLKDIV, bclk); -+ if (ret < 0) -+ return ret; -+ -+ /* set prescaler division for sample rate */ -+ ret = cpu_dai->dai_ops.set_clkdiv(cpu_dai, S3C24XX_DIV_PRESCALER, -+ S3C24XX_PRESCALE(4,4)); -+ if (ret < 0) -+ return ret; -+ -+ /* codec PLL input is PCLK/4 */ -+ ret = codec_dai->dai_ops.set_pll(codec_dai, WM8753_PLL1, -+ iis_clkrate / 4, pll_out); -+ if (ret < 0) -+ return ret; -+ -+ return 0; -+} -+ -+static int neo1973_gta02_hifi_hw_free(struct snd_pcm_substream *substream) -+{ -+ struct snd_soc_pcm_runtime *rtd = substream->private_data; -+ struct snd_soc_dai *codec_dai = rtd->dai->codec_dai; -+ -+ /* disable the PLL */ -+ return codec_dai->dai_ops.set_pll(codec_dai, WM8753_PLL1, 0, 0); -+} -+ -+/* -+ * Neo1973 WM8753 HiFi DAI opserations. -+ */ -+static struct snd_soc_ops neo1973_gta02_hifi_ops = { -+ .hw_params = neo1973_gta02_hifi_hw_params, -+ .hw_free = neo1973_gta02_hifi_hw_free, -+}; -+ -+static int neo1973_gta02_voice_hw_params( -+ struct snd_pcm_substream *substream, -+ struct snd_pcm_hw_params *params) -+{ -+ struct snd_soc_pcm_runtime *rtd = substream->private_data; -+ struct snd_soc_dai *codec_dai = rtd->dai->codec_dai; -+ unsigned int pcmdiv = 0; -+ int ret = 0; -+ unsigned long iis_clkrate; -+ -+ iis_clkrate = s3c24xx_i2s_get_clockrate(); -+ -+ if (params_rate(params) != 8000) -+ return -EINVAL; -+ if (params_channels(params) != 1) -+ return -EINVAL; -+ -+ pcmdiv = WM8753_PCM_DIV_6; /* 2.048 MHz */ -+ -+ /* todo: gg check mode (DSP_B) against CSR datasheet */ -+ /* set codec DAI configuration */ -+ ret = codec_dai->dai_ops.set_fmt(codec_dai, SND_SOC_DAIFMT_DSP_B | -+ SND_SOC_DAIFMT_NB_NF | SND_SOC_DAIFMT_CBS_CFS); -+ if (ret < 0) -+ return ret; -+ -+ /* set the codec system clock for DAC and ADC */ -+ ret = codec_dai->dai_ops.set_sysclk(codec_dai, WM8753_PCMCLK, -+ 12288000, SND_SOC_CLOCK_IN); -+ if (ret < 0) -+ return ret; -+ -+ /* set codec PCM division for sample rate */ -+ ret = codec_dai->dai_ops.set_clkdiv(codec_dai, WM8753_PCMDIV, -+ pcmdiv); -+ if (ret < 0) -+ return ret; -+ -+ /* configue and enable PLL for 12.288MHz output */ -+ ret = codec_dai->dai_ops.set_pll(codec_dai, WM8753_PLL2, -+ iis_clkrate / 4, 12288000); -+ if (ret < 0) -+ return ret; -+ -+ return 0; -+} -+ -+static int neo1973_gta02_voice_hw_free(struct snd_pcm_substream *substream) -+{ -+ struct snd_soc_pcm_runtime *rtd = substream->private_data; -+ struct snd_soc_dai *codec_dai = rtd->dai->codec_dai; -+ -+ /* disable the PLL */ -+ return codec_dai->dai_ops.set_pll(codec_dai, WM8753_PLL2, 0, 0); -+} -+ -+static struct snd_soc_ops neo1973_gta02_voice_ops = { -+ .hw_params = neo1973_gta02_voice_hw_params, -+ .hw_free = neo1973_gta02_voice_hw_free, -+}; -+ -+#define LM4853_AMP 1 -+#define LM4853_SPK 2 -+ -+static u8 lm4853_state=0; -+ -+static int lm4853_set_state(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ int val = ucontrol->value.integer.value[0]; -+ -+ if(val) { -+ lm4853_state |= LM4853_AMP; -+ s3c2410_gpio_setpin(GTA02_GPIO_AMP_SHUT,0); -+ } else { -+ lm4853_state &= ~LM4853_AMP; -+ s3c2410_gpio_setpin(GTA02_GPIO_AMP_SHUT,1); -+ } -+ -+ return 0; -+} -+ -+static int lm4853_get_state(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ ucontrol->value.integer.value[0] = lm4853_state & LM4853_AMP; -+ -+ return 0; -+} -+ -+static int lm4853_set_spk(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ int val = ucontrol->value.integer.value[0]; -+ -+ if(val) { -+ lm4853_state |= LM4853_SPK; -+ s3c2410_gpio_setpin(GTA02_GPIO_HP_IN,0); -+ } else { -+ lm4853_state &= ~LM4853_SPK; -+ s3c2410_gpio_setpin(GTA02_GPIO_HP_IN,1); -+ } -+ -+ return 0; -+} -+ -+static int lm4853_get_spk(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ ucontrol->value.integer.value[0] = (lm4853_state & LM4853_SPK) >> 1; -+ -+ return 0; -+} -+ -+static int neo1973_gta02_set_stereo_out(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ int val = ucontrol->value.integer.value[0]; -+ -+ snd_soc_dapm_set_endpoint(codec, "Stereo Out", val); -+ -+ snd_soc_dapm_sync(codec); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_get_stereo_out(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ -+ ucontrol->value.integer.value[0] = -+ snd_soc_dapm_get_endpoint(codec, "Stereo Out"); -+ -+ return 0; -+} -+ -+ -+static int neo1973_gta02_set_gsm_out(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ int val = ucontrol->value.integer.value[0]; -+ -+ snd_soc_dapm_set_endpoint(codec, "GSM Line Out", val); -+ -+ snd_soc_dapm_sync(codec); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_get_gsm_out(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ -+ ucontrol->value.integer.value[0] = -+ snd_soc_dapm_get_endpoint(codec, "GSM Line Out"); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_set_gsm_in(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ int val = ucontrol->value.integer.value[0]; -+ -+ snd_soc_dapm_set_endpoint(codec, "GSM Line In", val); -+ -+ snd_soc_dapm_sync(codec); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_get_gsm_in(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ -+ ucontrol->value.integer.value[0] = -+ snd_soc_dapm_get_endpoint(codec, "GSM Line In"); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_set_headset_mic(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ int val = ucontrol->value.integer.value[0]; -+ -+ snd_soc_dapm_set_endpoint(codec, "Headset Mic", val); -+ -+ snd_soc_dapm_sync(codec); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_get_headset_mic(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ -+ ucontrol->value.integer.value[0] = -+ snd_soc_dapm_get_endpoint(codec, "Headset Mic"); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_set_handset_mic(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ int val = ucontrol->value.integer.value[0]; -+ -+ snd_soc_dapm_set_endpoint(codec, "Handset Mic", val); -+ -+ snd_soc_dapm_sync(codec); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_get_handset_mic(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ -+ ucontrol->value.integer.value[0] = -+ snd_soc_dapm_get_endpoint(codec, "Handset Mic"); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_set_handset_spk(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ int val = ucontrol->value.integer.value[0]; -+ -+ snd_soc_dapm_set_endpoint(codec, "Handset Spk", val); -+ -+ snd_soc_dapm_sync(codec); -+ -+ return 0; -+} -+ -+static int neo1973_gta02_get_handset_spk(struct snd_kcontrol *kcontrol, -+ struct snd_ctl_elem_value *ucontrol) -+{ -+ struct snd_soc_codec *codec = snd_kcontrol_chip(kcontrol); -+ -+ ucontrol->value.integer.value[0] = -+ snd_soc_dapm_get_endpoint(codec, "Handset Spk"); -+ -+ return 0; -+} -+ -+static const struct snd_soc_dapm_widget wm8753_dapm_widgets[] = { -+ SND_SOC_DAPM_LINE("Stereo Out", NULL), -+ SND_SOC_DAPM_LINE("GSM Line Out", NULL), -+ SND_SOC_DAPM_LINE("GSM Line In", NULL), -+ SND_SOC_DAPM_MIC("Headset Mic", NULL), -+ SND_SOC_DAPM_MIC("Handset Mic", NULL), -+ SND_SOC_DAPM_SPK("Handset Spk", NULL), -+}; -+ -+ -+/* example machine audio_mapnections */ -+static const char* audio_map[][3] = { -+ -+ /* Connections to the lm4853 amp */ -+ {"Stereo Out", NULL, "LOUT1"}, -+ {"Stereo Out", NULL, "ROUT1"}, -+ -+ /* Connections to the GSM Module */ -+ {"GSM Line Out", NULL, "MONO1"}, -+ {"GSM Line Out", NULL, "MONO2"}, -+ {"RXP", NULL, "GSM Line In"}, -+ {"RXN", NULL, "GSM Line In"}, -+ -+ /* Connections to Headset */ -+ {"MIC1", NULL, "Mic Bias"}, -+ {"Mic Bias", NULL, "Headset Mic"}, -+ -+ /* Call Mic */ -+ {"MIC2", NULL, "Mic Bias"}, -+ {"MIC2N", NULL, "Mic Bias"}, -+ {"Mic Bias", NULL, "Handset Mic"}, -+ -+ /* Call Speaker */ -+ {"Handset Spk", NULL, "LOUT2"}, -+ {"Handset Spk", NULL, "ROUT2"}, -+ -+ /* Connect the ALC pins */ -+ {"ACIN", NULL, "ACOP"}, -+ -+ {NULL, NULL, NULL}, -+}; -+ -+static const struct snd_kcontrol_new wm8753_neo1973_gta02_controls[] = { -+ SOC_SINGLE_EXT("DAPM Stereo Out Switch", 0, 0, 1, 0, -+ neo1973_gta02_get_stereo_out, -+ neo1973_gta02_set_stereo_out), -+ SOC_SINGLE_EXT("DAPM GSM Line Out Switch", 1, 0, 1, 0, -+ neo1973_gta02_get_gsm_out, -+ neo1973_gta02_set_gsm_out), -+ SOC_SINGLE_EXT("DAPM GSM Line In Switch", 2, 0, 1, 0, -+ neo1973_gta02_get_gsm_in, -+ neo1973_gta02_set_gsm_in), -+ SOC_SINGLE_EXT("DAPM Headset Mic Switch", 3, 0, 1, 0, -+ neo1973_gta02_get_headset_mic, -+ neo1973_gta02_set_headset_mic), -+ SOC_SINGLE_EXT("DAPM Handset Mic Switch", 4, 0, 1, 0, -+ neo1973_gta02_get_handset_mic, -+ neo1973_gta02_set_handset_mic), -+ SOC_SINGLE_EXT("DAPM Handset Spk Switch", 5, 0, 1, 0, -+ neo1973_gta02_get_handset_spk, -+ neo1973_gta02_set_handset_spk), -+ SOC_SINGLE_EXT("Amp State Switch", 6, 0, 1, 0, -+ lm4853_get_state, -+ lm4853_set_state), -+ SOC_SINGLE_EXT("Amp Spk Switch", 7, 0, 1, 0, -+ lm4853_get_spk, -+ lm4853_set_spk), -+}; -+ -+/* -+ * This is an example machine initialisation for a wm8753 connected to a -+ * neo1973 GTA02. -+ */ -+static int neo1973_gta02_wm8753_init(struct snd_soc_codec *codec) -+{ -+ int i, err; -+ -+ /* set up NC codec pins */ -+ snd_soc_dapm_set_endpoint(codec, "OUT3", 0); -+ snd_soc_dapm_set_endpoint(codec, "OUT4", 0); -+ snd_soc_dapm_set_endpoint(codec, "LINE1", 0); -+ snd_soc_dapm_set_endpoint(codec, "LINE2", 0); -+ -+ /* Add neo1973 gta02 specific widgets */ -+ for (i = 0; i < ARRAY_SIZE(wm8753_dapm_widgets); i++) -+ snd_soc_dapm_new_control(codec, &wm8753_dapm_widgets[i]); -+ -+ /* add neo1973 gta02 specific controls */ -+ for (i = 0; i < ARRAY_SIZE(wm8753_neo1973_gta02_controls); i++) { -+ err = snd_ctl_add(codec->card, -+ snd_soc_cnew(&wm8753_neo1973_gta02_controls[i], -+ codec, NULL)); -+ if (err < 0) -+ return err; -+ } -+ -+ /* set up neo1973 gta02 specific audio path audio_mapnects */ -+ for (i = 0; audio_map[i][0] != NULL; i++) { -+ snd_soc_dapm_connect_input(codec, audio_map[i][0], -+ audio_map[i][1], audio_map[i][2]); -+ } -+ -+ /* set endpoints to default off mode */ -+ snd_soc_dapm_set_endpoint(codec, "Stereo Out", 0); -+ snd_soc_dapm_set_endpoint(codec, "GSM Line Out",0); -+ snd_soc_dapm_set_endpoint(codec, "GSM Line In", 0); -+ snd_soc_dapm_set_endpoint(codec, "Headset Mic", 0); -+ snd_soc_dapm_set_endpoint(codec, "Handset Mic", 0); -+ snd_soc_dapm_set_endpoint(codec, "Handset Spk", 0); -+ -+ snd_soc_dapm_sync(codec); -+ -+ return 0; -+} -+ -+/* -+ * BT Codec DAI -+ */ -+static struct snd_soc_dai bt_dai = -+{ .name = "Bluetooth", -+ .id = 0, -+ .type = SND_SOC_DAI_PCM, -+ .playback = { -+ .channels_min = 1, -+ .channels_max = 1, -+ .rates = SNDRV_PCM_RATE_8000, -+ .formats = SNDRV_PCM_FMTBIT_S16_LE,}, -+ .capture = { -+ .channels_min = 1, -+ .channels_max = 1, -+ .rates = SNDRV_PCM_RATE_8000, -+ .formats = SNDRV_PCM_FMTBIT_S16_LE,}, -+}; -+ -+static struct snd_soc_dai_link neo1973_gta02_dai[] = { -+{ /* Hifi Playback - for similatious use with voice below */ -+ .name = "WM8753", -+ .stream_name = "WM8753 HiFi", -+ .cpu_dai = &s3c24xx_i2s_dai, -+ .codec_dai = &wm8753_dai[WM8753_DAI_HIFI], -+ .init = neo1973_gta02_wm8753_init, -+ .ops = &neo1973_gta02_hifi_ops, -+}, -+{ /* Voice via BT */ -+ .name = "Bluetooth", -+ .stream_name = "Voice", -+ .cpu_dai = &bt_dai, -+ .codec_dai = &wm8753_dai[WM8753_DAI_VOICE], -+ .ops = &neo1973_gta02_voice_ops, -+}, -+}; -+ -+#ifdef CONFIG_PM -+int neo1973_gta02_suspend(struct platform_device *pdev, pm_message_t state) -+{ -+ s3c2410_gpio_setpin(GTA02_GPIO_AMP_SHUT, 1); -+ -+ return 0; -+} -+ -+int neo1973_gta02_resume(struct platform_device *pdev) -+{ -+ if(lm4853_state & LM4853_AMP) -+ s3c2410_gpio_setpin(GTA02_GPIO_AMP_SHUT, 0); -+ -+ return 0; -+} -+#else -+#define neo1973_gta02_suspend NULL -+#define neo1973_gta02_resume NULL -+#endif -+ -+static struct snd_soc_machine neo1973_gta02 = { -+ .name = "neo1973-gta02", -+ .suspend_pre = neo1973_gta02_suspend, -+ .resume_post = neo1973_gta02_resume, -+ .dai_link = neo1973_gta02_dai, -+ .num_links = ARRAY_SIZE(neo1973_gta02_dai), -+}; -+ -+/* Audio private data */ -+static struct wm8753_setup_data soc_codec_data_wm8753_gta02 = { -+ .i2c_bus = 0, -+ .i2c_address = 0x1a, -+// .gpio_func[0] = AIC3X_GPIO1_FUNC_DISABLED, -+// .gpio_func[1] = AIC3X_GPIO2_FUNC_DIGITAL_MIC_INPUT, -+}; -+ -+static struct snd_soc_device neo1973_gta02_snd_devdata = { -+ .machine = &neo1973_gta02, -+ .platform = &s3c24xx_soc_platform, -+ .codec_dev = &soc_codec_dev_wm8753, -+ .codec_data = &soc_codec_data_wm8753_gta02, -+}; -+ -+ -+ -+static struct platform_device *neo1973_gta02_snd_device; -+ -+static int __init neo1973_gta02_init(void) -+{ -+ int ret; -+ -+ if (!machine_is_neo1973_gta02()) { -+ printk(KERN_INFO -+ "Only GTA02 hardware supported by ASoc driver\n"); -+ return -ENODEV; -+ } -+ -+ neo1973_gta02_snd_device = platform_device_alloc("soc-audio", -1); -+ if (!neo1973_gta02_snd_device) -+ return -ENOMEM; -+ -+ platform_set_drvdata(neo1973_gta02_snd_device, -+ &neo1973_gta02_snd_devdata); -+ neo1973_gta02_snd_devdata.dev = &neo1973_gta02_snd_device->dev; -+ ret = platform_device_add(neo1973_gta02_snd_device); -+ -+ if (ret) -+ platform_device_put(neo1973_gta02_snd_device); -+ -+ /* Initialise GPIOs used by amp */ -+ s3c2410_gpio_cfgpin(GTA02_GPIO_HP_IN, S3C2410_GPIO_OUTPUT); -+ s3c2410_gpio_cfgpin(GTA02_GPIO_AMP_SHUT, S3C2410_GPIO_OUTPUT); -+ -+ /* Amp off by default */ -+ s3c2410_gpio_setpin(GTA02_GPIO_AMP_SHUT, 1); -+ -+ /* Speaker off by default */ -+ s3c2410_gpio_setpin(GTA02_GPIO_HP_IN, 1); -+ -+ return ret; -+} -+ -+static void __exit neo1973_gta02_exit(void) -+{ -+ platform_device_unregister(neo1973_gta02_snd_device); -+} -+ -+module_init(neo1973_gta02_init); -+module_exit(neo1973_gta02_exit); -+ -+/* Module information */ -+MODULE_AUTHOR("Graeme Gregory, graeme@openmoko.org"); -+MODULE_DESCRIPTION("ALSA SoC WM8753 Neo1973 GTA02"); -+MODULE_LICENSE("GPL"); -+ ---- a/sound/soc/s3c24xx/neo1973_wm8753.c -+++ b/sound/soc/s3c24xx/neo1973_wm8753.c -@@ -32,7 +32,7 @@ - #include <mach/audio.h> - #include <linux/io.h> - #include <mach/spi-gpio.h> -- -+#include <asm/mach-types.h> - #include <asm/plat-s3c24xx/regs-iis.h> - - #include "../codecs/wm8753.h" -@@ -585,7 +585,7 @@ static struct snd_soc_machine neo1973 = - .num_links = ARRAY_SIZE(neo1973_dai), - }; - --static struct wm8753_setup_data neo1973_wm8753_setup = { -+static struct wm8753_setup_data soc_codec_data_wm8753_gta01 = { - .i2c_bus = 0, - .i2c_address = 0x1a, - }; -@@ -594,7 +594,7 @@ static struct snd_soc_device neo1973_snd - .machine = &neo1973, - .platform = &s3c24xx_soc_platform, - .codec_dev = &soc_codec_dev_wm8753, -- .codec_data = &neo1973_wm8753_setup, -+ .codec_data = &soc_codec_data_wm8753_gta01 - }; - - static int lm4857_i2c_probe(struct i2c_client *client, -@@ -676,7 +676,7 @@ static int __init neo1973_init(void) - { - int ret; - -- DBG("Entered %s\n", __func__); -+ printk(KERN_DEBUG "Entered %s\n", __func__); - - if (!machine_is_neo1973_gta01()) { - printk(KERN_INFO ---- a/sound/soc/s3c24xx/s3c2443-ac97.c -+++ b/sound/soc/s3c24xx/s3c2443-ac97.c -@@ -28,7 +28,7 @@ - #include <sound/soc.h> - - #include <mach/hardware.h> --#include <asm/plat-s3c/regs-ac97.h> -+#include <plat/regs-ac97.h> - #include <mach/regs-gpio.h> - #include <mach/regs-clock.h> - #include <mach/audio.h> ---- a/sound/soc/s3c24xx/s3c24xx-i2s.c -+++ b/sound/soc/s3c24xx/s3c24xx-i2s.c -@@ -175,7 +175,7 @@ static void s3c24xx_snd_rxctrl(int on) - static int s3c24xx_snd_lrsync(void) - { - u32 iiscon; -- int timeout = 50; /* 5ms */ -+ int timeout = 5; /* 500us, 125 should be enough at 8kHz */ - - DBG("Entered %s\n", __func__); - -@@ -282,11 +282,14 @@ static int s3c24xx_i2s_trigger(struct sn - case SNDRV_PCM_TRIGGER_START: - case SNDRV_PCM_TRIGGER_RESUME: - case SNDRV_PCM_TRIGGER_PAUSE_RELEASE: -- if (!s3c24xx_snd_is_clkmaster()) { -- ret = s3c24xx_snd_lrsync(); -- if (ret) -- goto exit_err; -- } -+ if (!s3c24xx_snd_is_clkmaster()) -+ /* we ignore the return code, if it sync'd then fine, -+ * if it didn't sync, which happens after resume the -+ * first time when there was a live stream at suspend, -+ * just let it timeout, the stream picks up OK after -+ * that and LRCK is evidently working again. -+ */ -+ s3c24xx_snd_lrsync(); - - if (substream->stream == SNDRV_PCM_STREAM_CAPTURE) - s3c24xx_snd_rxctrl(1); -@@ -306,7 +309,6 @@ static int s3c24xx_i2s_trigger(struct sn - break; - } - --exit_err: - return ret; - } - ---- a/sound/soc/s3c24xx/s3c24xx-pcm.c -+++ b/sound/soc/s3c24xx/s3c24xx-pcm.c -@@ -168,7 +168,7 @@ static int s3c24xx_pcm_hw_params(struct - prtd->params->client, NULL); - - if (ret < 0) { -- DBG(KERN_ERR "failed to get dma channel\n"); -+ DBG(KERN_ERR "failed to get dma channel: %d\n", ret); - return ret; - } - } ---- a/sound/soc/soc-core.c -+++ b/sound/soc/soc-core.c -@@ -1003,6 +1003,38 @@ static ssize_t codec_reg_show(struct dev - } - static DEVICE_ATTR(codec_reg, 0444, codec_reg_show, NULL); - -+ -+static ssize_t codec_reg_write(struct device *dev, -+ struct device_attribute *attr, -+ const char *buf, size_t count) -+{ -+ u32 address; -+ u32 data; -+ char * end; -+ size_t left = count; -+ struct snd_soc_device *devdata = dev_get_drvdata(dev); -+ struct snd_soc_codec *codec = devdata->codec; -+ -+ address = simple_strtoul(buf, &end, 16); -+ left -= (int)(end - buf); -+ while ((*end == ' ') && (left)) { -+ end++; -+ left--; -+ } -+ if (!left) -+ return count; -+ data = simple_strtoul(end, &end, 16); -+ -+ printk(KERN_INFO"user writes Codec reg 0x%02X with Data 0x%04X\n", -+ address, data); -+ -+ codec->write(codec, address, data); -+ -+ return count; -+} -+ -+static DEVICE_ATTR(codec_reg_write, 0644, NULL, codec_reg_write); -+ - /** - * snd_soc_new_ac97_codec - initailise AC97 device - * @codec: audio codec -@@ -1218,6 +1250,9 @@ int snd_soc_register_card(struct snd_soc - - mutex_unlock(&codec->mutex); - -+ err = device_create_file(socdev->dev, &dev_attr_codec_reg_write); -+ if (err < 0) -+ printk(KERN_WARNING "asoc: failed to add codec sysfs entries\n"); - out: - return ret; - } ---- a/sound/soc/soc-dapm.c -+++ b/sound/soc/soc-dapm.c -@@ -1525,6 +1525,56 @@ int snd_soc_dapm_get_pin_status(struct s - EXPORT_SYMBOL_GPL(snd_soc_dapm_get_pin_status); - - /** -+ * snd_soc_dapm_get_endpoint - get audio endpoint status -+ * @codec: audio codec -+ * @endpoint: audio signal endpoint (or start point) -+ * -+ * Get audio endpoint status - connected or disconnected. -+ * -+ * Returns status -+ */ -+int snd_soc_dapm_get_endpoint(struct snd_soc_codec *codec, -+ char *endpoint) -+{ -+ struct snd_soc_dapm_widget *w; -+ -+ list_for_each_entry(w, &codec->dapm_widgets, list) { -+ if (!strcmp(w->name, endpoint)) { -+ return w->connected; -+ } -+ } -+ -+ return 0; -+} -+EXPORT_SYMBOL_GPL(snd_soc_dapm_get_endpoint); -+ -+/** -+ * snd_soc_dapm_set_endpoint - set audio endpoint status -+ * @codec: audio codec -+ * @endpoint: audio signal endpoint (or start point) -+ * @status: point status -+ * -+ * Set audio endpoint status - connected or disconnected. -+ * -+ * Returns 0 for success else error. -+ */ -+int snd_soc_dapm_set_endpoint(struct snd_soc_codec *codec, -+ char *endpoint, int status) -+{ -+ struct snd_soc_dapm_widget *w; -+ -+ list_for_each_entry(w, &codec->dapm_widgets, list) { -+ if (!strcmp(w->name, endpoint)) { -+ w->connected = status; -+ return 0; -+ } -+ } -+ -+ return -ENODEV; -+} -+EXPORT_SYMBOL_GPL(snd_soc_dapm_set_endpoint); -+ -+/** - * snd_soc_dapm_free - free dapm resources - * @socdev: SoC device - * diff --git a/target/linux/s3c24xx/patches-2.6.28/004-rename-serialdevs.patch b/target/linux/s3c24xx/patches-2.6.28/004-rename-serialdevs.patch deleted file mode 100644 index 3e6fdbea92ff66aad2bc6595ad2aa58a5170e9d0..0000000000000000000000000000000000000000 --- a/target/linux/s3c24xx/patches-2.6.28/004-rename-serialdevs.patch +++ /dev/null @@ -1,11 +0,0 @@ ---- a/drivers/serial/samsung.c -+++ b/drivers/serial/samsung.c -@@ -882,7 +882,7 @@ static struct uart_ops s3c24xx_serial_op - - static struct uart_driver s3c24xx_uart_drv = { - .owner = THIS_MODULE, -- .dev_name = "s3c2410_serial", -+ .dev_name = "ttySAC", - .nr = CONFIG_SERIAL_SAMSUNG_UARTS, - .cons = S3C24XX_SERIAL_CONSOLE, - .driver_name = S3C24XX_SERIAL_NAME, diff --git a/target/linux/s3c24xx/patches-2.6.28/005-dont-suspend-regulator.patch b/target/linux/s3c24xx/patches-2.6.28/005-dont-suspend-regulator.patch deleted file mode 100644 index ac51ce3d6378faed0c6980dd90cf712a69a633b2..0000000000000000000000000000000000000000 --- a/target/linux/s3c24xx/patches-2.6.28/005-dont-suspend-regulator.patch +++ /dev/null @@ -1,61 +0,0 @@ -From: Balaji Rao <balajirrao@openmoko.org> -Date: Mon, 5 Jan 2009 10:33:28 +0000 (+0000) -Subject: pcf50633 remove suspend_enable/disable regulator functions -X-Git-Tag: fork-to-stable-2.6.29-rc2~142 -X-Git-Url: http://git.openmoko.org/?p=kernel.git;a=commitdiff_plain;h=276709515c384f4239c9479b56fcf008ae37eec8 - -pcf50633 remove suspend_enable/disable regulator functions - -Since we don't switch to PMU.standby, on suspend we should not -be defining these. - -Btw, this fixes the WSOD I observed on andy-tracking and also -gets rid of the regulator related backtrace seen upon resume. - -Signed-off-by: Balaji Rao <balajirrao@openmoko.org> ---- - ---- a/arch/arm/plat-s3c/pm.c -+++ b/arch/arm/plat-s3c/pm.c -@@ -18,7 +18,6 @@ - #include <linux/delay.h> - #include <linux/serial_core.h> - #include <linux/io.h> --#include <linux/regulator/machine.h> - - #include <asm/cacheflush.h> - #include <mach/hardware.h> -@@ -353,22 +352,11 @@ static void s3c_pm_finish(void) - s3c_pm_check_cleanup(); - } - --static int s3c_pm_begin(suspend_state_t state) --{ -- int ret = 0; -- --#ifdef CONFIG_REGULATOR -- ret = regulator_suspend_prepare(state); --#endif -- return ret; --} -- - static struct platform_suspend_ops s3c_pm_ops = { - .enter = s3c_pm_enter, - .prepare = s3c_pm_prepare, - .finish = s3c_pm_finish, - .valid = suspend_valid_only_mem, -- .begin = s3c_pm_begin, - }; - - /* s3c_pm_init ---- a/drivers/regulator/pcf50633-regulator.c -+++ b/drivers/regulator/pcf50633-regulator.c -@@ -249,8 +249,6 @@ struct regulator_ops pcf50633_regulator_ - .enable = pcf50633_regulator_enable, - .disable = pcf50633_regulator_disable, - .is_enabled = pcf50633_regulator_is_enabled, -- .set_suspend_enable = pcf50633_regulator_enable, -- .set_suspend_disable = pcf50633_regulator_disable, - }; - - static struct regulator_desc regulators[] = { diff --git a/target/linux/s3c24xx/patches-2.6.28/010-preserve-resolution.patch b/target/linux/s3c24xx/patches-2.6.28/010-preserve-resolution.patch deleted file mode 100644 index 01eddb7cfddf7bde66a1bfca3a95c1780c2d8c08..0000000000000000000000000000000000000000 --- a/target/linux/s3c24xx/patches-2.6.28/010-preserve-resolution.patch +++ /dev/null @@ -1,46 +0,0 @@ ---- a/drivers/video/display/jbt6k74.c -+++ b/drivers/video/display/jbt6k74.c -@@ -443,8 +443,17 @@ int jbt6k74_enter_state(struct jbt_info - break; - } - -- if (rc == 0) -+ if (rc == 0) { -+ switch (new_state) { -+ case JBT_STATE_NORMAL: -+ case JBT_STATE_QVGA_NORMAL: -+ jbt->last_state = new_state; -+ break; -+ default: -+ break; -+ } - jbt->state = new_state; -+ } - - return rc; - } -@@ -595,7 +604,14 @@ static int fb_notifier_callback(struct n - switch (fb_blank) { - case FB_BLANK_UNBLANK: - dev_info(&jbt->spi_dev->dev, "**** jbt6k74 unblank\n"); -- jbt6k74_enter_state(jbt, JBT_STATE_NORMAL); -+ switch (jbt->last_state) { -+ case JBT_STATE_QVGA_NORMAL: -+ jbt6k74_enter_state(jbt, JBT_STATE_QVGA_NORMAL); -+ break; -+ default: -+ jbt6k74_enter_state(jbt, JBT_STATE_NORMAL); -+ break; -+ } - break; - case FB_BLANK_NORMAL: - dev_info(&jbt->spi_dev->dev, "**** jbt6k74 normal\n"); -@@ -720,8 +736,6 @@ static int jbt_suspend(struct spi_device - { - struct jbt_info *jbt = dev_get_drvdata(&spi->dev); - -- /* Save mode for resume */ -- jbt->last_state = jbt->state; - /* FIXME: deep standby causes WSOD on certain devices. We use - * sleep as workaround */ - jbt6k74_enter_state(jbt, JBT_STATE_SLEEP);