imx233/fuze+: add SD detection support
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@30196 a1c6a512-1295-4272-9138-f99709370657
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85c32dbd12
commit
82f70b8efd
6 changed files with 164 additions and 27 deletions
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@ -40,8 +40,8 @@
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#include "usb.h"
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void main(void) NORETURN_ATTR;
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void main(void)
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void main(uint32_t arg) NORETURN_ATTR;
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void main(uint32_t arg)
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{
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unsigned char* loadbuffer;
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int buffer_size;
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@ -62,6 +62,8 @@ void main(void)
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button_init_device();
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//button_debug_screen();
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printf("arg=%c%c%c%c", arg >> 24,
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(arg >> 16) & 0xff, (arg >> 8) & 0xff, (arg & 0xff));
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ret = storage_init();
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if(ret < 0)
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@ -84,6 +86,9 @@ void main(void)
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error(EDISK, ret, true);
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}
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if(button_read_device() & BUTTON_VOL_UP)
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printf("Booting from SD card required.");
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printf("Loading firmware");
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loadbuffer = (unsigned char*)DRAM_ORIG; /* DRAM */
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@ -118,13 +118,9 @@
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#define HAVE_FLASH_STORAGE
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/* define this if the flash memory uses the SecureDigital Memory Card protocol */
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#ifdef BOOTLOADER
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# define CONFIG_STORAGE STORAGE_MMC
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#else
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# define CONFIG_STORAGE (STORAGE_SD | STORAGE_MMC)
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# define NUM_DRIVES 2
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# define HAVE_HOTSWAP
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#endif
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#define CONFIG_STORAGE (STORAGE_SD | STORAGE_MMC)
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#define NUM_DRIVES 2
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#define HAVE_HOTSWAP
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/* todo */
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#define BATTERY_CAPACITY_DEFAULT 550 /* default battery capacity */
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@ -25,7 +25,6 @@
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#include "storage.h"
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#include "ssp-imx233.h"
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#include "pinctrl-imx233.h"
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#include "button-target.h"
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/**
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* This code assumes a single eMMC internal flash
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@ -216,3 +215,9 @@ int mmc_write_sectors(IF_MD2(int drive,) unsigned long start, int count, const v
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(void) buf;
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return -1;
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}
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bool mmc_present(IF_MD(int drive))
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{
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IF_MD((void) drive);
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return true;
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}
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@ -22,9 +22,54 @@
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#include "system.h"
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#include "sd.h"
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#include "sdmmc.h"
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#include "ssp-imx233.h"
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#include "pinctrl-imx233.h"
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#include "button-target.h"
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/**
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* This code assumes a single SD card slot
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*/
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#ifdef SANSA_FUZEPLUS
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#define SD_SSP 1
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#else
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#error You need to configure the ssp to use
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#endif
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static tCardInfo card_info;
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static struct mutex sd_mutex;
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static void sd_detect_callback(int ssp)
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{
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(void)ssp;
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/* This is called only if the state was stable for 300ms - check state
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* and post appropriate event. */
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if(imx233_ssp_sdmmc_detect(SD_SSP))
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queue_broadcast(SYS_HOTSWAP_INSERTED, 0);
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else
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queue_broadcast(SYS_HOTSWAP_EXTRACTED, 0);
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printf("sd_detect_callback(%d)", imx233_ssp_sdmmc_detect(SD_SSP));
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imx233_ssp_sdmmc_setup_detect(SD_SSP, true, sd_detect_callback);
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}
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int sd_init(void)
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{
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mutex_init(&sd_mutex);
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imx233_ssp_start(SD_SSP);
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imx233_ssp_softreset(SD_SSP);
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imx233_ssp_set_mode(SD_SSP, HW_SSP_CTRL1__SSP_MODE__SD_MMC);
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#ifdef SANSA_FUZEPLUS
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imx233_ssp_setup_ssp1_sd_mmc_pins(true, 4, PINCTRL_DRIVE_8mA, false);
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#endif
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imx233_ssp_sdmmc_setup_detect(SD_SSP, true, sd_detect_callback);
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/* SSPCLK @ 96MHz
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* gives bitrate of 96000 / 240 / 1 = 400kHz */
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imx233_ssp_set_timings(SD_SSP, 240, 0, 0xffff);
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imx233_ssp_set_bus_width(SD_SSP, 1);
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imx233_ssp_set_block_size(SD_SSP, 9);
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return 0;
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}
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@ -57,6 +102,12 @@ tCardInfo *card_get_info_target(int card_no)
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int sd_num_drives(int first_drive)
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{
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(void) first_drive;
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return 0;
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return 1;
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}
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bool sd_present(IF_MD(int drive))
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{
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IF_MD((void) drive);
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return imx233_ssp_sdmmc_detect(SD_SSP);
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}
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@ -44,6 +44,7 @@ static struct semaphore ssp_sema[2];
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static struct ssp_dma_command_t ssp_dma_cmd[2];
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static uint32_t ssp_bus_width[2];
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static unsigned ssp_log_block_size[2];
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static ssp_detect_cb_t ssp_detect_cb[2];
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void INT_SSP(int ssp)
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{
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@ -146,22 +147,7 @@ static void setup_ssp_sd_pins(int ssp)
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if(ssp == 1)
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{
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/* SSP_SCK: drive 8mA */
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imx233_set_pin_drive_strength(2, 6, PINCTRL_DRIVE_8mA);
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/* SSP_{SCK,DATA{3,2,1,0},DETECT,CMD} */
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imx233_set_pin_function(2, 6, PINCTRL_FUNCTION_MAIN);
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imx233_set_pin_function(2, 5, PINCTRL_FUNCTION_MAIN);
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imx233_set_pin_function(2, 4, PINCTRL_FUNCTION_MAIN);
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imx233_set_pin_function(2, 3, PINCTRL_FUNCTION_MAIN);
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imx233_set_pin_function(2, 2, PINCTRL_FUNCTION_MAIN);
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imx233_set_pin_function(2, 1, PINCTRL_FUNCTION_MAIN);
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imx233_set_pin_function(2, 0, PINCTRL_FUNCTION_MAIN);
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/* SSP_CMD: pullup */
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imx233_enable_pin_pullup(2, 0, true);
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imx233_enable_pin_pullup(2, 2, true);
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imx233_enable_pin_pullup(2, 3, true);
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imx233_enable_pin_pullup(2, 4, true);
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imx233_enable_pin_pullup(2, 5, true);
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}
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else
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{
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@ -170,6 +156,41 @@ static void setup_ssp_sd_pins(int ssp)
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}
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#endif
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void imx233_ssp_setup_ssp1_sd_mmc_pins(bool enable_pullups, unsigned bus_width,
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unsigned drive_strength, bool use_alt)
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{
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/* SSP_{CMD,SCK} */
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imx233_set_pin_drive_strength(2, 0, drive_strength);
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imx233_set_pin_drive_strength(2, 6, drive_strength);
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imx233_set_pin_function(2, 0, PINCTRL_FUNCTION_MAIN);
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imx233_set_pin_function(2, 6, PINCTRL_FUNCTION_MAIN);
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imx233_enable_pin_pullup(2, 0, enable_pullups);
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/* SSP_DATA{0-3} */
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for(unsigned i = 0; i < MIN(bus_width, 4); i++)
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{
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imx233_set_pin_drive_strength(2, 2 + i, drive_strength);
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imx233_set_pin_function(2, 2 + i, PINCTRL_FUNCTION_MAIN);
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imx233_enable_pin_pullup(2, 2 + i, enable_pullups);
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}
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/* SSP_DATA{4-7} */
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for(unsigned i = 4; i < bus_width; i++)
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{
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if(use_alt)
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{
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imx233_set_pin_drive_strength(0, 22 + i, drive_strength);
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imx233_set_pin_function(0, 22 + i, PINCTRL_FUNCTION_ALT2);
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imx233_enable_pin_pullup(0, 22 + i, enable_pullups);
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}
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else
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{
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imx233_set_pin_drive_strength(0, 4 + i, drive_strength);
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imx233_set_pin_function(0, 4 + i, PINCTRL_FUNCTION_ALT2);
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imx233_enable_pin_pullup(0, 4 + i, enable_pullups);
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}
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}
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}
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void imx233_ssp_setup_ssp2_sd_mmc_pins(bool enable_pullups, unsigned bus_width,
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unsigned drive_strength)
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{
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@ -301,3 +322,52 @@ void imx233_ssp_sd_mmc_power_up_sequence(int ssp)
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mdelay(1);
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__REG_CLR(HW_SSP_CMD0(ssp)) = HW_SSP_CMD0__CONT_CLKING_EN;
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}
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static int ssp_detect_oneshot_callback(int ssp)
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{
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printf("ssp_detect_oneshot_callback(%d)", ssp);
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if(ssp_detect_cb[ssp - 1])
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ssp_detect_cb[ssp - 1](ssp);
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return 0;
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}
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static int ssp1_detect_oneshot_callback(struct timeout *tmo)
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{
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(void) tmo;
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return ssp_detect_oneshot_callback(1);
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}
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static int ssp2_detect_oneshot_callback(struct timeout *tmo)
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{
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(void) tmo;
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return ssp_detect_oneshot_callback(2);
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}
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static void detect_irq(int bank, int pin)
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{
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static struct timeout ssp1_detect_oneshot;
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static struct timeout ssp2_detect_oneshot;
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if(bank == 2 && pin == 1)
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timeout_register(&ssp1_detect_oneshot, ssp1_detect_oneshot_callback, (3*HZ/10), 0);
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else if(bank == 0 && pin == 19)
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timeout_register(&ssp2_detect_oneshot, ssp2_detect_oneshot_callback, (3*HZ/10), 0);
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}
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void imx233_ssp_sdmmc_setup_detect(int ssp, bool enable, ssp_detect_cb_t fn)
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{
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int bank = ssp == 1 ? 2 : 0;
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int pin = ssp == 1 ? 1 : 19;
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ssp_detect_cb[ssp - 1] = fn;
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if(enable)
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{
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imx233_set_pin_function(bank, pin, PINCTRL_FUNCTION_GPIO);
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imx233_enable_gpio_output(bank, pin, false);
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}
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imx233_setup_pin_irq(bank, pin, enable, true, !imx233_ssp_sdmmc_detect(ssp), detect_irq);
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}
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bool imx233_ssp_sdmmc_detect(int ssp)
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{
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return !!(HW_SSP_STATUS(ssp) & HW_SSP_STATUS__CARD_DETECT);
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}
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@ -27,6 +27,7 @@
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#include "cpu.h"
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#include "system.h"
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#include "system-target.h"
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#include "pinctrl-imx233.h"
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/* ssp can value 1 or 2 */
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#define __SSP_SELECT(ssp, ssp1, ssp2) ((ssp) == 1 ? (ssp1) : (ssp2))
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#define HW_SSP_STATUS__RESP_TIMEOUT (1 << 14)
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#define HW_SSP_STATUS__RESP_ERR (1 << 15)
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#define HW_SSP_STATUS__RESP_CRC_ERR (1 << 16)
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#define HW_SSP_STATUS__CARD_DETECT (1 << 28)
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#define HW_SSP_STATUS__ALL_ERRORS 0x1f800
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#define HW_SSP_DEBUG(ssp) (*(volatile uint32_t *)(HW_SSP_BASE(ssp) + 0x100))
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@ -142,6 +144,8 @@ enum imx233_ssp_resp_t
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SSP_LONG_RESP
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};
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typedef void (*ssp_detect_cb_t)(int ssp);
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void imx233_ssp_init(void);
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void imx233_ssp_start(int ssp);
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void imx233_ssp_stop(int ssp);
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@ -156,8 +160,14 @@ void imx233_ssp_set_block_size(int ssp, unsigned log_block_size);
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enum imx233_ssp_error_t imx233_ssp_sd_mmc_transfer(int ssp, uint8_t cmd,
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uint32_t cmd_arg, enum imx233_ssp_resp_t resp, void *buffer, unsigned block_count,
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bool wait4irq, bool read, uint32_t *resp_ptr);
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void imx233_ssp_setup_ssp1_sd_mmc_pins(bool enable_pullups, unsigned bus_width,
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unsigned drive_strength, bool use_alt);
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void imx233_ssp_setup_ssp2_sd_mmc_pins(bool enable_pullups, unsigned bus_width,
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unsigned drive_strength);
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/* after callback is fired, imx233_ssp_sdmmc_setup_detect needs to be called
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* to enable detection again */
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void imx233_ssp_sdmmc_setup_detect(int ssp, bool enable, ssp_detect_cb_t fn);
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bool imx233_ssp_sdmmc_detect(int ssp);
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/* SD/MMC requires that the card be provided the clock during an init sequence of
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* at least 1msec (or 74 clocks). Does NOT touch the clock so it has to be correct. */
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void imx233_ssp_sd_mmc_power_up_sequence(int ssp);
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