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https://github.com/Atmosphere-NX/Atmosphere.git
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fusee: work around some dual-init SDMMC issues
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parent
ef9adabb40
commit
eaf8e559d6
3 changed files with 44 additions and 16 deletions
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@ -15,6 +15,13 @@
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static bool g_ahb_redirect_enabled = false;
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static bool g_ahb_redirect_enabled = false;
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// Only use voltage switching in stage2 and later.
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#ifdef FUSEE_STAGE1_SRC
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#define MMC_VOLTAGE_SWITCHING_ALLOWED false
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#else
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#define MMC_VOLTAGE_SWITCHING_ALLOWED true
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#endif
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/* Global sd struct. */
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/* Global sd struct. */
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static struct mmc g_sd_mmc = {0};
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static struct mmc g_sd_mmc = {0};
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static bool g_sd_initialized = false;
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static bool g_sd_initialized = false;
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@ -26,7 +33,7 @@ int initialize_sd_mmc(void) {
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}
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}
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if (!g_sd_initialized) {
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if (!g_sd_initialized) {
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int rc = sdmmc_init(&g_sd_mmc, SWITCH_MICROSD);
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int rc = sdmmc_init(&g_sd_mmc, SWITCH_MICROSD, MMC_VOLTAGE_SWITCHING_ALLOWED);
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if (rc == 0) {
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if (rc == 0) {
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g_sd_initialized = true;
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g_sd_initialized = true;
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return 0;
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return 0;
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@ -140,7 +140,7 @@ enum sdmmc_clock_dividers {
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MMC_CLOCK_DIVIDER_SDR12 = 31, // 16.5, from the TRM table
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MMC_CLOCK_DIVIDER_SDR12 = 31, // 16.5, from the TRM table
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MMC_CLOCK_DIVIDER_SDR25 = 15, // 8.5, from the table
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MMC_CLOCK_DIVIDER_SDR25 = 15, // 8.5, from the table
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MMC_CLOCK_DIVIDER_SDR50 = 7, // 4.5, from the table
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MMC_CLOCK_DIVIDER_SDR50 = 7, // 4.5, from the table
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MMC_CLOCK_DIVIDER_SDR104 = 2, // 2, from the datasheet
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MMC_CLOCK_DIVIDER_SDR104 = 4, // 2, from the datasheet
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/* Clock dividers: MMC */
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/* Clock dividers: MMC */
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MMC_CLOCK_DIVIDER_HS26 = 30, // 16, from the TRM table
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MMC_CLOCK_DIVIDER_HS26 = 30, // 16, from the TRM table
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@ -568,11 +568,11 @@ struct PACKED sdmmc_function_status {
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/* support for various speed modes */
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/* support for various speed modes */
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uint16_t group1_support_reserved1 : 8;
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uint16_t group1_support_reserved1 : 8;
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uint16_t ddr50_support : 1;
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uint16_t sdr104_support : 1;
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uint16_t sdr50_support : 1;
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uint16_t sdr25_support : 1;
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uint16_t sdr12_support : 1;
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uint16_t sdr12_support : 1;
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uint16_t sdr25_support : 1;
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uint16_t sdr50_support : 1;
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uint16_t sdr104_support : 1;
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uint16_t ddr50_support : 1;
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uint16_t group1_support_reserved2 : 3;
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uint16_t group1_support_reserved2 : 3;
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@ -631,10 +631,14 @@ static const uint16_t sdmmc_bounce_dma_boundary = MMC_DMA_BOUNDARY_8K;
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* Sets the current SDMMC debugging loglevel.
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* Sets the current SDMMC debugging loglevel.
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*
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*
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* @param loglevel Current log level. A higher value prints more logs.
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* @param loglevel Current log level. A higher value prints more logs.
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* @return The loglevel prior to when this was applied, for easy restoration.
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*/
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*/
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void sdmmc_set_loglevel(int loglevel)
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int sdmmc_set_loglevel(int loglevel)
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{
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{
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int original_loglevel = sdmmc_loglevel;
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sdmmc_loglevel = loglevel;
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sdmmc_loglevel = loglevel;
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return original_loglevel;
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}
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}
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@ -887,9 +891,9 @@ static int sdmmc1_enable_supplies(struct mmc *mmc)
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pinmux->dmic3_clk = PINMUX_SELECT_FUNCTION0;
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pinmux->dmic3_clk = PINMUX_SELECT_FUNCTION0;
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gpio_configure_mode(GPIO_MICROSD_SUPPLY_ENABLE, GPIO_MODE_GPIO);
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gpio_configure_mode(GPIO_MICROSD_SUPPLY_ENABLE, GPIO_MODE_GPIO);
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gpio_configure_direction(GPIO_MICROSD_SUPPLY_ENABLE, GPIO_DIRECTION_OUTPUT);
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gpio_configure_direction(GPIO_MICROSD_SUPPLY_ENABLE, GPIO_DIRECTION_OUTPUT);
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// Bring up the SD card fixed regulator.
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gpio_write(GPIO_MICROSD_SUPPLY_ENABLE, GPIO_LEVEL_HIGH);
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gpio_write(GPIO_MICROSD_SUPPLY_ENABLE, GPIO_LEVEL_HIGH);
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return 0;
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return 0;
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}
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}
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@ -1415,6 +1419,7 @@ static int sdmmc_apply_clock_speed(struct mmc *mmc, enum sdmmc_bus_speed speed,
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mmc_print(mmc, "TODO: double the data rate here!");
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mmc_print(mmc, "TODO: double the data rate here!");
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}
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}
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// Re-enable the clock, if necessary.
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// Re-enable the clock, if necessary.
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if (enable_after) {
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if (enable_after) {
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sdmmc_clock_enable(mmc, true);
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sdmmc_clock_enable(mmc, true);
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@ -2902,13 +2907,17 @@ static int sdmmc_mmc_wait_for_card_readiness(struct mmc *mmc)
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int rc;
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int rc;
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uint32_t response[4];
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uint32_t response[4];
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while (true) {
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while (true) {
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uint32_t response_masked;
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uint32_t response_masked;
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// Ask the SD card to identify its state. It will respond with readiness and a capacity magic.
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// Ask the SD card to identify its state. It will respond with readiness and a capacity magic.
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int original_loglevel = sdmmc_set_loglevel(0);
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rc = sdmmc_send_command(mmc, CMD_SEND_OPERATING_CONDITIONS, MMC_RESPONSE_LEN48,
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rc = sdmmc_send_command(mmc, CMD_SEND_OPERATING_CONDITIONS, MMC_RESPONSE_LEN48,
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MMC_CHECKS_NONE, 0x40000080, response, 0, false, false, NULL);
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MMC_CHECKS_NONE, 0x40000080, response, 0, false, false, NULL);
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sdmmc_set_loglevel(original_loglevel);
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if (rc) {
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if (rc) {
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mmc_print(mmc, "ERROR: could not read the card's operating conditions!");
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mmc_print(mmc, "ERROR: could not read the card's operating conditions!");
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return rc;
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return rc;
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@ -2953,8 +2962,10 @@ static int sdmmc_sd_wait_for_card_readiness(struct mmc *mmc, uint32_t *response)
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while (true) {
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while (true) {
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// Ask the SD card to identify its state.
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// Ask the SD card to identify its state.
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int original_loglevel = sdmmc_set_loglevel(0);
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rc = sdmmc_send_simple_app_command(mmc, CMD_APP_SEND_OP_COND,
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rc = sdmmc_send_simple_app_command(mmc, CMD_APP_SEND_OP_COND,
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MMC_RESPONSE_LEN48, MMC_CHECKS_NONE, argument, response);
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MMC_RESPONSE_LEN48, MMC_CHECKS_NONE, argument, response);
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sdmmc_set_loglevel(original_loglevel);
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if (rc) {
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if (rc) {
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mmc_print(mmc, "ERROR: could not read the card's operating conditions!");
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mmc_print(mmc, "ERROR: could not read the card's operating conditions!");
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return rc;
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return rc;
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@ -3071,7 +3082,7 @@ static int sdmmc_sd_card_init(struct mmc *mmc)
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mmc->uses_block_addressing = !!(ocr & MMC_SD_OPERATING_COND_HIGH_CAPACITY);
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mmc->uses_block_addressing = !!(ocr & MMC_SD_OPERATING_COND_HIGH_CAPACITY);
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// If the card supports using 1V8, drop down using lower voltages.
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// If the card supports using 1V8, drop down using lower voltages.
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if (ocr & MMC_SD_OPERATING_COND_ACCEPTS_1V8) {
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if (mmc->allow_voltage_switching && ocr & MMC_SD_OPERATING_COND_ACCEPTS_1V8) {
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if (mmc->operating_voltage != MMC_VOLTAGE_1V8) {
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if (mmc->operating_voltage != MMC_VOLTAGE_1V8) {
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rc = mmc->switch_to_low_voltage(mmc);
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rc = mmc->switch_to_low_voltage(mmc);
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if (rc)
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if (rc)
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@ -3369,14 +3380,18 @@ static int sdmmc_initialize_defaults(struct mmc *mmc)
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* @param mmc The SDMMC structure to be initiailized with the device state.
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* @param mmc The SDMMC structure to be initiailized with the device state.
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* @param controler The controller description to be used; usually SWITCH_EMMC
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* @param controler The controller description to be used; usually SWITCH_EMMC
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* or SWITCH_MICROSD.
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* or SWITCH_MICROSD.
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* @param allow_voltage_switching True if we should allow voltage switching,
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* which may not make sense if we're about to chainload to another component,
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* a la fusee stage1.
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*/
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*/
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int sdmmc_init(struct mmc *mmc, enum sdmmc_controller controller)
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int sdmmc_init(struct mmc *mmc, enum sdmmc_controller controller, bool allow_voltage_switching)
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{
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{
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int rc;
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int rc;
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// Get a reference to the registers for the relevant SDMMC controller.
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// Get a reference to the registers for the relevant SDMMC controller.
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mmc->controller = controller;
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mmc->controller = controller;
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mmc->regs = sdmmc_get_regs(controller);
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mmc->regs = sdmmc_get_regs(controller);
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mmc->allow_voltage_switching = false;
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// Set the defaults for the card, including the default function pointers
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// Set the defaults for the card, including the default function pointers
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// for the assumed card type, and the per-controller options.
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// for the assumed card type, and the per-controller options.
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@ -150,6 +150,7 @@ struct mmc {
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/* Controller properties */
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/* Controller properties */
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const char *name;
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const char *name;
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bool use_dma;
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bool use_dma;
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bool allow_voltage_switching;
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unsigned int timeout;
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unsigned int timeout;
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enum tegra_named_gpio card_detect_gpio;
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enum tegra_named_gpio card_detect_gpio;
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enum sdmmc_write_permission write_enable;
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enum sdmmc_write_permission write_enable;
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@ -221,17 +222,22 @@ enum sdmmc_partition {
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* Sets the current SDMMC debugging loglevel.
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* Sets the current SDMMC debugging loglevel.
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*
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*
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* @param loglevel Current log level. A higher value prints more logs.
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* @param loglevel Current log level. A higher value prints more logs.
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* @return The loglevel prior to when this was applied, for easy restoration.
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*/
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*/
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void sdmmc_set_loglevel(int loglevel);
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int sdmmc_set_loglevel(int loglevel);
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/**
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/**
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* Initiailzes an SDMMC controller for use with an eMMC or SD card device.
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* Set up a new SDMMC driver.
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*
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*
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* @param mmc An (uninitialized) structure for the MMC device.
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* @param mmc The SDMMC structure to be initiailized with the device state.
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* @param controller The controller number to be initialized. Either SWITCH_MICROSD or SWITCH_EMMC.
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* @param controler The controller description to be used; usually SWITCH_EMMC
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* or SWITCH_MICROSD.
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* @param allow_voltage_switching True if we should allow voltage switching,
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* which may not make sense if we're about to chainload to another component,
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* a la fusee stage1.
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*/
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*/
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int sdmmc_init(struct mmc *mmc, enum sdmmc_controller controller);
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int sdmmc_init(struct mmc *mmc, enum sdmmc_controller controller, bool allow_voltage_switching);
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/**
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/**
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