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https://github.com/Atmosphere-NX/Atmosphere
synced 2024-12-22 12:21:18 +00:00
fusee: add special log level for sd card debug
This commit is contained in:
parent
96f3c0c387
commit
f7898f3519
2 changed files with 22 additions and 21 deletions
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@ -28,6 +28,7 @@ typedef enum {
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SCREEN_LOG_LEVEL_MANDATORY = 3, /* No log prefix. */
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SCREEN_LOG_LEVEL_MANDATORY = 3, /* No log prefix. */
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SCREEN_LOG_LEVEL_INFO = 4,
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SCREEN_LOG_LEVEL_INFO = 4,
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SCREEN_LOG_LEVEL_DEBUG = 5,
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SCREEN_LOG_LEVEL_DEBUG = 5,
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SCREEN_LOG_LEVEL_SD_DEBUG = 6,
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SCREEN_LOG_LEVEL_NO_PREFIX = 0x100 /* OR this to your LOG_LEVEL to prevent prefix creation. */
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SCREEN_LOG_LEVEL_NO_PREFIX = 0x100 /* OR this to your LOG_LEVEL to prevent prefix creation. */
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} ScreenLogLevel;
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} ScreenLogLevel;
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@ -86,7 +86,7 @@ void sdmmc_info(sdmmc_t *sdmmc, char *fmt, ...) {
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void sdmmc_debug(sdmmc_t *sdmmc, char *fmt, ...) {
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void sdmmc_debug(sdmmc_t *sdmmc, char *fmt, ...) {
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va_list list;
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va_list list;
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va_start(list, fmt);
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va_start(list, fmt);
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sdmmc_print(sdmmc, SCREEN_LOG_LEVEL_DEBUG, fmt, list);
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sdmmc_print(sdmmc, SCREEN_LOG_LEVEL_SD_DEBUG, fmt, list);
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va_end(list);
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va_end(list);
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}
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}
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@ -430,14 +430,14 @@ static int sdmmc_clk_adjust_source(SdmmcControllerNum controller, uint32_t clk_s
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if (was_sdmmc_clk_enb) {
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if (was_sdmmc_clk_enb) {
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sdmmc_clk_clear_enb(controller);
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sdmmc_clk_clear_enb(controller);
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}
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}
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out_val = sdmmc_clk_set_source(controller, clk_source_val);
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out_val = sdmmc_clk_set_source(controller, clk_source_val);
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/* Clock was already enabled. Enable it back. */
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/* Clock was already enabled. Enable it back. */
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if (was_sdmmc_clk_enb) {
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if (was_sdmmc_clk_enb) {
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sdmmc_clk_set_enb(controller);
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sdmmc_clk_set_enb(controller);
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}
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}
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/* Dummy read for value refreshing. */
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/* Dummy read for value refreshing. */
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is_sdmmc_clk_rst(controller);
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is_sdmmc_clk_rst(controller);
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}
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}
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@ -479,7 +479,7 @@ static void sdmmc_clk_start(SdmmcControllerNum controller, uint32_t clk_source_v
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if (is_sdmmc_clk_enb(controller)) {
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if (is_sdmmc_clk_enb(controller)) {
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sdmmc_clk_clear_enb(controller);
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sdmmc_clk_clear_enb(controller);
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}
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}
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/* Put the device clock in reset. */
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/* Put the device clock in reset. */
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sdmmc_clk_set_rst(controller);
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sdmmc_clk_set_rst(controller);
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@ -517,7 +517,7 @@ static void sdmmc_clk_stop(SdmmcControllerNum controller) {
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/* Configure clock trimming. */
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/* Configure clock trimming. */
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static void sdmmc_vendor_clock_cntrl_config(sdmmc_t *sdmmc) {
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static void sdmmc_vendor_clock_cntrl_config(sdmmc_t *sdmmc) {
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bool is_mariko = is_soc_mariko();
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bool is_mariko = is_soc_mariko();
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/* Clear the I/O conditioning constants. */
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/* Clear the I/O conditioning constants. */
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sdmmc->regs->vendor_clock_cntrl &= ~(SDMMC_CLOCK_TRIM_MASK | SDMMC_CLOCK_TAP_MASK);
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sdmmc->regs->vendor_clock_cntrl &= ~(SDMMC_CLOCK_TRIM_MASK | SDMMC_CLOCK_TAP_MASK);
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@ -547,7 +547,7 @@ static void sdmmc_vendor_clock_cntrl_config(sdmmc_t *sdmmc) {
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/* Configure automatic calibration. */
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/* Configure automatic calibration. */
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static int sdmmc_autocal_config(sdmmc_t *sdmmc, SdmmcBusVoltage voltage) {
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static int sdmmc_autocal_config(sdmmc_t *sdmmc, SdmmcBusVoltage voltage) {
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bool is_mariko = is_soc_mariko();
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bool is_mariko = is_soc_mariko();
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switch (sdmmc->controller) {
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switch (sdmmc->controller) {
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case SDMMC_1:
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case SDMMC_1:
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case SDMMC_3:
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case SDMMC_3:
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@ -776,7 +776,7 @@ void sdmmc_select_voltage(sdmmc_t *sdmmc, SdmmcBusVoltage voltage) {
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static void sdmmc_tap_config(sdmmc_t *sdmmc, SdmmcBusSpeed bus_speed) {
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static void sdmmc_tap_config(sdmmc_t *sdmmc, SdmmcBusSpeed bus_speed) {
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bool is_mariko = is_soc_mariko();
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bool is_mariko = is_soc_mariko();
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if (bus_speed == SDMMC_SPEED_MMC_HS400) {
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if (bus_speed == SDMMC_SPEED_MMC_HS400) {
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/* Clear and set DQS_TRIM_VAL (used in HS400) */
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/* Clear and set DQS_TRIM_VAL (used in HS400) */
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sdmmc->regs->vendor_cap_overrides &= ~(0x3F00);
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sdmmc->regs->vendor_cap_overrides &= ~(0x3F00);
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@ -865,7 +865,7 @@ static int sdmmc_dllcal_run(sdmmc_t *sdmmc) {
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if (shutdown_sd_clock) {
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if (shutdown_sd_clock) {
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sdmmc_disable_sd_clock(sdmmc);
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sdmmc_disable_sd_clock(sdmmc);
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}
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}
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return 1;
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return 1;
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}
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}
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@ -950,7 +950,7 @@ int sdmmc_select_speed(sdmmc_t *sdmmc, SdmmcBusSpeed bus_speed) {
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if (div_val_lo > 0xFF) {
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if (div_val_lo > 0xFF) {
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div_val_hi = (div_val_lo >> 8);
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div_val_hi = (div_val_lo >> 8);
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}
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}
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/* Set the clock control divider values. */
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/* Set the clock control divider values. */
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sdmmc->regs->clock_control &= ~((SDHCI_DIV_HI_MASK | SDHCI_DIV_MASK) << 6);
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sdmmc->regs->clock_control &= ~((SDHCI_DIV_HI_MASK | SDHCI_DIV_MASK) << 6);
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sdmmc->regs->clock_control |= ((div_val_hi << SDHCI_DIVIDER_HI_SHIFT) | (div_val_lo << SDHCI_DIVIDER_SHIFT));
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sdmmc->regs->clock_control |= ((div_val_hi << SDHCI_DIVIDER_HI_SHIFT) | (div_val_lo << SDHCI_DIVIDER_SHIFT));
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@ -959,7 +959,7 @@ int sdmmc_select_speed(sdmmc_t *sdmmc, SdmmcBusSpeed bus_speed) {
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if (restart_sd_clock) {
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if (restart_sd_clock) {
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sdmmc_enable_sd_clock(sdmmc);
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sdmmc_enable_sd_clock(sdmmc);
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}
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}
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/* Run DLLCAL for HS400 only */
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/* Run DLLCAL for HS400 only */
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if (bus_speed == SDMMC_SPEED_MMC_HS400) {
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if (bus_speed == SDMMC_SPEED_MMC_HS400) {
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return sdmmc_dllcal_run(sdmmc);
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return sdmmc_dllcal_run(sdmmc);
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@ -1120,7 +1120,7 @@ static int sdmmc_init_controller(sdmmc_t *sdmmc, SdmmcControllerNum controller)
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int sdmmc_init(sdmmc_t *sdmmc, SdmmcControllerNum controller, SdmmcBusVoltage bus_voltage, SdmmcBusWidth bus_width, SdmmcBusSpeed bus_speed) {
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int sdmmc_init(sdmmc_t *sdmmc, SdmmcControllerNum controller, SdmmcBusVoltage bus_voltage, SdmmcBusWidth bus_width, SdmmcBusSpeed bus_speed) {
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bool is_mariko = is_soc_mariko();
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bool is_mariko = is_soc_mariko();
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/* Initialize our controller structure. */
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/* Initialize our controller structure. */
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if (!sdmmc_init_controller(sdmmc, controller)) {
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if (!sdmmc_init_controller(sdmmc, controller)) {
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sdmmc_error(sdmmc, "Failed to initialize SDMMC%d", controller + 1);
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sdmmc_error(sdmmc, "Failed to initialize SDMMC%d", controller + 1);
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@ -1180,7 +1180,7 @@ int sdmmc_init(sdmmc_t *sdmmc, SdmmcControllerNum controller, SdmmcBusVoltage bu
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} else {
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} else {
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sdmmc->regs->sdmemcomppadctrl |= 0x07;
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sdmmc->regs->sdmemcomppadctrl |= 0x07;
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}
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}
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/* Configure autocal offsets. */
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/* Configure autocal offsets. */
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if (!sdmmc_autocal_config(sdmmc, bus_voltage)) {
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if (!sdmmc_autocal_config(sdmmc, bus_voltage)) {
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sdmmc_error(sdmmc, "Failed to configure automatic calibration!");
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sdmmc_error(sdmmc, "Failed to configure automatic calibration!");
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@ -1358,7 +1358,7 @@ static int sdmmc_intr_check(sdmmc_t *sdmmc, uint16_t *status_out, uint16_t statu
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if (status_out) {
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if (status_out) {
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*status_out = (int_status & 0xFFFF);
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*status_out = (int_status & 0xFFFF);
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}
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}
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if (int_status & TEGRA_MMC_NORINTSTS_ERR_INTERRUPT) {
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if (int_status & TEGRA_MMC_NORINTSTS_ERR_INTERRUPT) {
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/* Acknowledge error by refreshing status. */
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/* Acknowledge error by refreshing status. */
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sdmmc->regs->int_status = int_status;
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sdmmc->regs->int_status = int_status;
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@ -1421,12 +1421,12 @@ static int sdmmc_dma_init(sdmmc_t *sdmmc, sdmmc_request_t *req) {
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if (req->is_multi_block) {
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if (req->is_multi_block) {
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transfer_mode |= (TEGRA_MMC_TRNMOD_MULTI_BLOCK_SELECT | TEGRA_MMC_TRNMOD_BLOCK_COUNT_ENABLE);
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transfer_mode |= (TEGRA_MMC_TRNMOD_MULTI_BLOCK_SELECT | TEGRA_MMC_TRNMOD_BLOCK_COUNT_ENABLE);
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}
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}
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/* Select read mode. */
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/* Select read mode. */
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if (req->is_read) {
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if (req->is_read) {
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transfer_mode |= TEGRA_MMC_TRNMOD_DATA_XFER_DIR_SEL_READ;
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transfer_mode |= TEGRA_MMC_TRNMOD_DATA_XFER_DIR_SEL_READ;
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}
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}
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/* Select AUTO_CMD12. */
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/* Select AUTO_CMD12. */
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if (req->is_auto_cmd12) {
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if (req->is_auto_cmd12) {
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transfer_mode &= ~(TEGRA_MMC_TRNMOD_AUTO_CMD12 & TEGRA_MMC_TRNMOD_AUTO_CMD23);
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transfer_mode &= ~(TEGRA_MMC_TRNMOD_AUTO_CMD12 & TEGRA_MMC_TRNMOD_AUTO_CMD23);
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@ -1505,22 +1505,22 @@ static void sdmmc_set_cmd_flags(sdmmc_t *sdmmc, sdmmc_command_t *cmd, bool is_dm
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} else {
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} else {
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cmd_reg_flags = TEGRA_MMC_CMDREG_RESP_TYPE_SELECT_LENGTH_48;
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cmd_reg_flags = TEGRA_MMC_CMDREG_RESP_TYPE_SELECT_LENGTH_48;
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}
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}
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/* Select CRC flag based on response type. */
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/* Select CRC flag based on response type. */
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if (cmd->flags & SDMMC_RSP_CRC) {
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if (cmd->flags & SDMMC_RSP_CRC) {
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cmd_reg_flags |= TEGRA_MMC_TRNMOD_CMD_CRC_CHECK;
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cmd_reg_flags |= TEGRA_MMC_TRNMOD_CMD_CRC_CHECK;
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}
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}
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/* Select opcode flag based on response type. */
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/* Select opcode flag based on response type. */
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if (cmd->flags & SDMMC_RSP_OPCODE) {
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if (cmd->flags & SDMMC_RSP_OPCODE) {
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cmd_reg_flags |= TEGRA_MMC_TRNMOD_CMD_INDEX_CHECK;
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cmd_reg_flags |= TEGRA_MMC_TRNMOD_CMD_INDEX_CHECK;
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}
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}
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/* Select data present flag. */
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/* Select data present flag. */
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if (is_dma) {
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if (is_dma) {
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cmd_reg_flags |= TEGRA_MMC_TRNMOD_DATA_PRESENT_SELECT_DATA_TRANSFER;
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cmd_reg_flags |= TEGRA_MMC_TRNMOD_DATA_PRESENT_SELECT_DATA_TRANSFER;
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}
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}
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/* Set the CMD's argument, opcode and flags. */
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/* Set the CMD's argument, opcode and flags. */
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sdmmc->regs->argument = cmd->arg;
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sdmmc->regs->argument = cmd->arg;
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sdmmc->regs->command = ((cmd->opcode << 8) | cmd_reg_flags);
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sdmmc->regs->command = ((cmd->opcode << 8) | cmd_reg_flags);
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@ -1724,7 +1724,7 @@ int sdmmc_send_cmd(sdmmc_t *sdmmc, sdmmc_command_t *cmd, sdmmc_request_t *req, u
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if (shutdown_sd_clock) {
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if (shutdown_sd_clock) {
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sdmmc_disable_sd_clock(sdmmc);
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sdmmc_disable_sd_clock(sdmmc);
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}
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}
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return cmd_result;
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return cmd_result;
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}
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}
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@ -1994,6 +1994,6 @@ int sdmmc_abort(sdmmc_t *sdmmc, uint32_t opcode) {
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if (shutdown_sd_clock) {
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if (shutdown_sd_clock) {
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sdmmc_disable_sd_clock(sdmmc);
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sdmmc_disable_sd_clock(sdmmc);
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}
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}
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return result;
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return result;
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}
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}
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