mirror of
https://github.com/Polprzewodnikowy/SummerCart64.git
synced 2025-01-13 21:19:09 +01:00
507 lines
15 KiB
C
507 lines
15 KiB
C
#include "io.h"
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#include "sc64.h"
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typedef struct {
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io32_t SR_CMD;
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io32_t DATA[2];
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io32_t IDENTIFIER;
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io32_t KEY;
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} sc64_regs_t;
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#define SC64_REGS_BASE (0x1FFF0000UL)
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#define SC64_REGS ((sc64_regs_t *) SC64_REGS_BASE)
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#define SC64_SR_IRQ_PENDING (1 << 29)
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#define SC64_SR_CMD_ERROR (1 << 30)
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#define SC64_SR_CPU_BUSY (1 << 31)
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#define SC64_V2_IDENTIFIER (0x53437632)
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#define SC64_KEY_RESET (0x00000000UL)
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#define SC64_KEY_UNLOCK_1 (0x5F554E4CUL)
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#define SC64_KEY_UNLOCK_2 (0x4F434B5FUL)
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#define SC64_KEY_LOCK (0xFFFFFFFFUL)
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typedef enum {
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CMD_ID_IDENTIFIER_GET = 'v',
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CMD_ID_VERSION_GET = 'V',
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CMD_ID_CONFIG_GET = 'c',
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CMD_ID_CONFIG_SET = 'C',
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CMD_ID_SETTING_GET = 'a',
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CMD_ID_SETTING_SET = 'A',
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CMD_ID_TIME_GET = 't',
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CMD_ID_TIME_SET = 'T',
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CMD_ID_USB_READ = 'm',
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CMD_ID_USB_WRITE = 'M',
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CMD_ID_USB_READ_STATUS = 'u',
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CMD_ID_USB_WRITE_STATUS = 'U',
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CMD_ID_SD_CARD_OP = 'i',
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CMD_ID_SD_SECTOR_SET = 'I',
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CMD_ID_SD_READ = 's',
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CMD_ID_SD_WRITE = 'S',
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CMD_ID_DISK_MAPPING_SET = 'D',
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CMD_ID_WRITEBACK_PENDING = 'w',
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CMD_ID_WRITEBACK_SD_INFO = 'W',
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CMD_ID_FLASH_PROGRAM = 'K',
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CMD_ID_FLASH_WAIT_BUSY = 'p',
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CMD_ID_FLASH_ERASE_BLOCK = 'P',
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CMD_ID_DIAGNOSTIC_GET = '%',
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} sc64_cmd_id_t;
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typedef enum {
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SD_CARD_OP_DEINIT = 0,
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SD_CARD_OP_INIT = 1,
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SD_CARD_OP_GET_STATUS = 2,
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SD_CARD_OP_GET_INFO = 3,
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SD_CARD_OP_BYTE_SWAP_ON = 4,
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SD_CARD_OP_BYTE_SWAP_OFF = 5,
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} sd_card_op_t;
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typedef struct {
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sc64_cmd_id_t id;
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uint32_t arg[2];
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uint32_t rsp[2];
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} sc64_cmd_t;
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static sc64_error_t sc64_execute_cmd (sc64_cmd_t *cmd) {
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pi_io_write(&SC64_REGS->DATA[0], cmd->arg[0]);
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pi_io_write(&SC64_REGS->DATA[1], cmd->arg[1]);
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pi_io_write(&SC64_REGS->SR_CMD, (cmd->id & 0xFF));
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uint32_t sr;
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do {
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sr = pi_io_read(&SC64_REGS->SR_CMD);
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} while (sr & SC64_SR_CPU_BUSY);
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if (sr & SC64_SR_CMD_ERROR) {
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return (sc64_error_t) (pi_io_read(&SC64_REGS->DATA[0]));
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}
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cmd->rsp[0] = pi_io_read(&SC64_REGS->DATA[0]);
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cmd->rsp[1] = pi_io_read(&SC64_REGS->DATA[1]);
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return SC64_OK;
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}
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const char *sc64_error_description (sc64_error_t error) {
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sc64_error_type_t type = (sc64_error_type_t) ((error >> 24) & 0xFF);
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error &= 0xFFFFFF;
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if (type == ERROR_TYPE_CFG) {
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switch ((sc64_cfg_error_t) (error)) {
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case SC64_OK: return "No error";
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case CFG_ERROR_UNKNOWN_COMMAND: return "Unknown command";
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case CFG_ERROR_INVALID_ARGUMENT: return "Invalid argument";
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case CFG_ERROR_INVALID_ADDRESS: return "Invalid address";
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case CFG_ERROR_INVALID_ID: return "Invalid ID";
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default: return "Unknown error (CFG)";
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}
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}
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if (type == ERROR_TYPE_SD_CARD) {
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switch ((sc64_sd_error_t) (error)) {
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case SD_OK: return "No error (SD)";
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case SD_ERROR_NO_CARD_IN_SLOT: return "No SD card in the slot";
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case SD_ERROR_NOT_INITIALIZED: return "SD card is not initialized";
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case SD_ERROR_INVALID_ARGUMENT: return "Invalid argument (SD)";
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case SD_ERROR_INVALID_ADDRESS: return "Invalid address (SD)";
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case SD_ERROR_INVALID_OPERATION: return "Invalid operation (SD)";
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case SD_ERROR_CMD2_IO: return "CMD2 I/O";
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case SD_ERROR_CMD3_IO: return "CMD3 I/O";
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case SD_ERROR_CMD6_CHECK_IO: return "CMD6 I/O (check)";
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case SD_ERROR_CMD6_CHECK_CRC: return "CMD6 CRC (check)";
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case SD_ERROR_CMD6_CHECK_TIMEOUT: return "CMD6 timeout (check)";
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case SD_ERROR_CMD6_CHECK_RESPONSE: return "CMD6 invalid response (check)";
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case SD_ERROR_CMD6_SWITCH_IO: return "CMD6 I/O (switch)";
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case SD_ERROR_CMD6_SWITCH_CRC: return "CMD6 CRC (switch)";
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case SD_ERROR_CMD6_SWITCH_TIMEOUT: return "CMD6 timeout (switch)";
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case SD_ERROR_CMD6_SWITCH_RESPONSE: return "CMD6 invalid response (switch)";
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case SD_ERROR_CMD7_IO: return "CMD7 I/O";
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case SD_ERROR_CMD8_IO: return "CMD8 I/O";
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case SD_ERROR_CMD9_IO: return "CMD9 I/O";
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case SD_ERROR_CMD10_IO: return "CMD10 I/O";
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case SD_ERROR_CMD18_IO: return "CMD18 I/O";
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case SD_ERROR_CMD18_CRC: return "CMD18 CRC";
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case SD_ERROR_CMD18_TIMEOUT: return "CMD18 timeout";
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case SD_ERROR_CMD25_IO: return "CMD25 I/O";
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case SD_ERROR_CMD25_CRC: return "CMD25 CRC";
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case SD_ERROR_CMD25_TIMEOUT: return "CMD25 timeout";
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case SD_ERROR_ACMD6_IO: return "ACMD6 I/O";
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case SD_ERROR_ACMD41_IO: return "ACMD41 I/O";
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case SD_ERROR_ACMD41_OCR: return "ACMD41 OCR";
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case SD_ERROR_ACMD41_TIMEOUT: return "ACMD41 timeout";
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default: return "Unknown error (SD)";
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}
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}
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return "Unknown error (type)";
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}
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void sc64_unlock (void) {
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pi_io_write(&SC64_REGS->KEY, SC64_KEY_RESET);
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pi_io_write(&SC64_REGS->KEY, SC64_KEY_UNLOCK_1);
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pi_io_write(&SC64_REGS->KEY, SC64_KEY_UNLOCK_2);
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}
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void sc64_lock (void) {
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pi_io_write(&SC64_REGS->KEY, SC64_KEY_RESET);
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pi_io_write(&SC64_REGS->KEY, SC64_KEY_LOCK);
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}
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bool sc64_check_presence (void) {
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bool detected = (pi_io_read(&SC64_REGS->IDENTIFIER) == SC64_V2_IDENTIFIER);
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if (detected) {
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while (pi_io_read(&SC64_REGS->SR_CMD) & SC64_SR_CPU_BUSY);
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}
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return detected;
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}
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bool sc64_irq_pending (void) {
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return (pi_io_read(&SC64_REGS->SR_CMD) & SC64_SR_IRQ_PENDING);
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}
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void sc64_irq_clear (void) {
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pi_io_write(&SC64_REGS->IDENTIFIER, 0);
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}
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sc64_error_t sc64_get_identifier (uint32_t *identifier) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_IDENTIFIER_GET
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*identifier = cmd.rsp[0];
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return error;
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}
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sc64_error_t sc64_get_version (uint16_t *major, uint16_t *minor, uint32_t *revision) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_VERSION_GET
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*major = ((cmd.rsp[0] >> 16) & 0xFFFF);
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*minor = (cmd.rsp[0] & 0xFFFF);
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*revision = cmd.rsp[1];
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return error;
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}
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sc64_error_t sc64_get_config (sc64_cfg_id_t id, uint32_t *value) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_CONFIG_GET,
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.arg = { id }
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*value = cmd.rsp[1];
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return error;
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}
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sc64_error_t sc64_set_config (sc64_cfg_id_t id, uint32_t value) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_CONFIG_SET,
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.arg = { id, value }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_get_setting (sc64_setting_id_t id, uint32_t *value) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SETTING_GET,
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.arg = { id }
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*value = cmd.rsp[1];
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return error;
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}
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sc64_error_t sc64_set_setting (sc64_setting_id_t id, uint32_t value) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SETTING_SET,
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.arg = { id, value }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_get_boot_params (sc64_boot_params_t *params) {
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sc64_error_t error;
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uint32_t value;
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if ((error = sc64_get_config(CFG_ID_BOOT_MODE, &value)) != SC64_OK) {
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return error;
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}
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params->boot_mode = value;
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if (params->boot_mode != BOOT_MODE_MENU) {
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if ((error = sc64_get_config(CFG_ID_CIC_SEED, &value)) != SC64_OK) {
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return error;
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}
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params->cic_seed = value;
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if ((error = sc64_get_config(CFG_ID_TV_TYPE, &value)) != SC64_OK) {
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return error;
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}
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params->tv_type = value;
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} else {
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params->cic_seed = CIC_SEED_AUTO;
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params->tv_type = TV_TYPE_PASSTHROUGH;
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}
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return SC64_OK;
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}
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sc64_error_t sc64_get_time (sc64_rtc_time_t *t) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_TIME_GET
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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t->weekday = ((cmd.rsp[0] >> 24) & 0xFF);
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t->hour = ((cmd.rsp[0] >> 16) & 0xFF);
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t->minute = ((cmd.rsp[0] >> 8) & 0xFF);
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t->second = (cmd.rsp[0] & 0xFF);
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t->century = ((cmd.rsp[1] >> 24) & 0xFF);
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t->year = ((cmd.rsp[1] >> 16) & 0xFF);
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t->month = ((cmd.rsp[1] >> 8) & 0xFF);
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t->day = (cmd.rsp[1] & 0xFF);
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return error;
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}
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sc64_error_t sc64_set_time (sc64_rtc_time_t *t) {
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uint32_t time[2] = {(
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((t->weekday << 24) & 0xFF) |
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((t->hour << 16) & 0xFF) |
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((t->minute << 8) & 0xFF) |
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(t->second & 0xFF)
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), (
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((t->century << 24) & 0xFF) |
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((t->year << 16) & 0xFF) |
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((t->month << 8) & 0xFF) |
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(t->day & 0xFF)
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)};
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sc64_cmd_t cmd = {
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.id = CMD_ID_TIME_SET,
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.arg = { time[0], time[1] }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_usb_get_status (bool *reset_state, bool *cable_unplugged) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_USB_READ_STATUS,
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*reset_state = (bool) (cmd.rsp[0] & (1 << 30));
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*cable_unplugged = (bool) (cmd.rsp[0] & (1 << 29));
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return error;
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}
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sc64_error_t sc64_usb_read_info (uint8_t *type, uint32_t *length) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_USB_READ_STATUS,
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*type = (cmd.rsp[0] & 0xFF);
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*length = cmd.rsp[1];
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return error;
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}
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sc64_error_t sc64_usb_read_busy (bool *read_busy) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_USB_READ_STATUS,
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*read_busy = (bool) (cmd.rsp[0] & (1 << 31));
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return error;
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}
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sc64_error_t sc64_usb_write_busy (bool *write_busy) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_USB_WRITE_STATUS,
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*write_busy = (bool) (cmd.rsp[0] & (1 << 31));
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return error;
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}
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sc64_error_t sc64_usb_read (void *address, uint32_t length) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_USB_READ,
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.arg = { (uint32_t) (address), length }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_usb_write (void *address, uint8_t type, uint32_t length) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_USB_WRITE,
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.arg = { (uint32_t) (address), ((type << 24) | (length & 0xFFFFFF)) }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_sd_card_init (void) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_CARD_OP,
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.arg = { (uint32_t) (NULL), SD_CARD_OP_INIT }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_sd_card_deinit (void) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_CARD_OP,
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.arg = { (uint32_t) (NULL), SD_CARD_OP_DEINIT }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_sd_card_get_status (sc64_sd_card_status_t *sd_card_status) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_CARD_OP,
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.arg = { (uint32_t) (NULL), SD_CARD_OP_GET_STATUS }
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*sd_card_status = (sc64_sd_card_status_t) (cmd.rsp[1]);
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return error;
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}
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sc64_error_t sc64_sd_card_get_info (void *address) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_CARD_OP,
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.arg = { (uint32_t) (address), SD_CARD_OP_GET_INFO }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_sd_set_byte_swap (bool enabled) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_CARD_OP,
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.arg = { (uint32_t) (NULL), enabled ? SD_CARD_OP_BYTE_SWAP_ON : SD_CARD_OP_BYTE_SWAP_OFF }
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};
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return sc64_execute_cmd(&cmd);
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}
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static sc64_error_t sc64_sd_sector_set (uint32_t sector) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_SECTOR_SET,
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.arg = { sector }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_sd_read_sectors (void *address, uint32_t sector, uint32_t count) {
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sc64_error_t error;
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if ((error = sc64_sd_sector_set(sector)) != SC64_OK) {
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return error;
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}
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_READ,
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.arg = { (uint32_t) (address), count }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_sd_write_sectors (void *address, uint32_t sector, uint32_t count) {
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sc64_error_t error;
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if ((error = sc64_sd_sector_set(sector)) != SC64_OK) {
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return error;
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}
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sc64_cmd_t cmd = {
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.id = CMD_ID_SD_WRITE,
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.arg = { (uint32_t) (address), count }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_set_disk_mapping (void *address, uint32_t length) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_DISK_MAPPING_SET,
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.arg = { (uint32_t) (address), length }
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};
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return sc64_execute_cmd(&cmd);
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}
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sc64_error_t sc64_writeback_pending (bool *pending) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_WRITEBACK_PENDING
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};
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sc64_error_t error = sc64_execute_cmd(&cmd);
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*pending = (cmd.rsp[0] != 0);
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return error;
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}
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sc64_error_t sc64_writeback_enable (void *address) {
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sc64_cmd_t cmd = {
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.id = CMD_ID_WRITEBACK_SD_INFO,
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.arg = { (uint32_t) (address) }
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};
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return sc64_execute_cmd(&cmd);
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|
}
|
|
|
|
sc64_error_t sc64_writeback_disable (void) {
|
|
sc64_error_t error;
|
|
uint32_t save_type;
|
|
if ((error = sc64_get_config(CFG_ID_SAVE_TYPE, &save_type)) != SC64_OK) {
|
|
return error;
|
|
}
|
|
return sc64_set_config(CFG_ID_SAVE_TYPE, save_type);
|
|
}
|
|
|
|
|
|
sc64_error_t sc64_flash_program (void *address, uint32_t length) {
|
|
sc64_cmd_t cmd = {
|
|
.id = CMD_ID_FLASH_PROGRAM,
|
|
.arg = { (uint32_t) (address), length }
|
|
};
|
|
return sc64_execute_cmd(&cmd);
|
|
}
|
|
|
|
sc64_error_t sc64_flash_wait_busy (void) {
|
|
sc64_cmd_t cmd = {
|
|
.id = CMD_ID_FLASH_WAIT_BUSY,
|
|
.arg = { true }
|
|
};
|
|
return sc64_execute_cmd(&cmd);
|
|
}
|
|
|
|
sc64_error_t sc64_flash_get_erase_block_size (size_t *erase_block_size) {
|
|
sc64_cmd_t cmd = {
|
|
.id = CMD_ID_FLASH_WAIT_BUSY,
|
|
.arg = { false }
|
|
};
|
|
sc64_error_t error = sc64_execute_cmd(&cmd);
|
|
*erase_block_size = (size_t) (cmd.rsp[0]);
|
|
return error;
|
|
}
|
|
|
|
sc64_error_t sc64_flash_erase_block (void *address) {
|
|
sc64_cmd_t cmd = {
|
|
.id = CMD_ID_FLASH_ERASE_BLOCK,
|
|
.arg = { (uint32_t) (address) }
|
|
};
|
|
return sc64_execute_cmd(&cmd);
|
|
}
|
|
|
|
|
|
sc64_error_t sc64_get_diagnostic (sc64_diagnostic_id_t id, uint32_t *value) {
|
|
sc64_cmd_t cmd = {
|
|
.id = CMD_ID_DIAGNOSTIC_GET,
|
|
.arg = { id }
|
|
};
|
|
sc64_error_t error = sc64_execute_cmd(&cmd);
|
|
*value = cmd.rsp[1];
|
|
return error;
|
|
}
|