forked from Imagelibrary/rtems
2010-06-21 Arnout Vandecappelle <arnout@mind.be>
PR 1569/misc * libchip/i2c/spi-sd-card.c: Added CRC checks.
This commit is contained in:
@@ -1,3 +1,8 @@
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2010-06-21 Arnout Vandecappelle <arnout@mind.be>
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PR 1569/misc
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* libchip/i2c/spi-sd-card.c: Added CRC checks.
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2010-06-15 Joel Sherrill <joel.sherrill@oarcorp.com>
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2010-06-15 Joel Sherrill <joel.sherrill@oarcorp.com>
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PR 1561/cpukit
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PR 1561/cpukit
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@@ -308,6 +308,45 @@ static inline uint32_t sd_card_max_access_time( const uint8_t *csd, uint32_t tra
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/** @} */
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/** @} */
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/**
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* @name CRC functions
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*
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* Based on http://en.wikipedia.org/wiki/Computation_of_CRC
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*
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* @{
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*/
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uint8_t sd_card_compute_crc7 (uint8_t *data, size_t len)
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{
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uint8_t e, f, crc;
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size_t i;
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crc = 0;
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for (i = 0; i < len; i++) {
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e = crc ^ data[i];
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f = e ^ (e >> 4) ^ (e >> 7);
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crc = (f << 1) ^ (f << 4);
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}
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return crc >> 1;
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}
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uint16_t sd_card_compute_crc16 (uint8_t *data, size_t len)
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{
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uint8_t s, t;
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uint16_t crc;
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size_t i;
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crc = 0;
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for (i = 0; i < len; i++) {
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s = data[i] ^ (crc >> 8);
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t = s ^ (s >> 4);
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crc = (crc << 8) ^ t ^ (t << 5) ^ (t << 12);
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}
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return crc;
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}
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/** @} */
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/**
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/**
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* @name Communication Functions
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* @name Communication Functions
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* @{
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* @{
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@@ -354,6 +393,7 @@ static int sd_card_send_command( sd_card_driver_entry *e, uint32_t command, uint
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.byte_cnt = SD_CARD_COMMAND_SIZE
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.byte_cnt = SD_CARD_COMMAND_SIZE
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};
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};
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int r = 0;
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int r = 0;
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uint8_t crc7;
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SD_CARD_INVALIDATE_RESPONSE_INDEX( e);
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SD_CARD_INVALIDATE_RESPONSE_INDEX( e);
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@@ -364,6 +404,8 @@ static int sd_card_send_command( sd_card_driver_entry *e, uint32_t command, uint
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/* Write command and read response */
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/* Write command and read response */
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SD_CARD_COMMAND_SET_COMMAND( e->command, command);
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SD_CARD_COMMAND_SET_COMMAND( e->command, command);
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SD_CARD_COMMAND_SET_ARGUMENT( e->command, argument);
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SD_CARD_COMMAND_SET_ARGUMENT( e->command, argument);
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crc7 = sd_card_compute_crc7( e->command + 1, 5);
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SD_CARD_COMMAND_SET_CRC7( e->command, crc7);
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rv = rtems_libi2c_ioctl( e->bus, RTEMS_LIBI2C_IOCTL_READ_WRITE, &rw);
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rv = rtems_libi2c_ioctl( e->bus, RTEMS_LIBI2C_IOCTL_READ_WRITE, &rw);
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RTEMS_CHECK_RV( rv, "Write command and read response");
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RTEMS_CHECK_RV( rv, "Write command and read response");
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@@ -404,6 +446,7 @@ sd_card_send_command_error:
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static int sd_card_send_register_command( sd_card_driver_entry *e, uint32_t command, uint32_t argument, uint32_t *reg)
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static int sd_card_send_register_command( sd_card_driver_entry *e, uint32_t command, uint32_t argument, uint32_t *reg)
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{
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{
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int rv = 0;
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int rv = 0;
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uint8_t crc7;
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rv = sd_card_send_command( e, command, argument);
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rv = sd_card_send_command( e, command, argument);
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RTEMS_CHECK_RV( rv, "Send command");
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RTEMS_CHECK_RV( rv, "Send command");
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@@ -417,6 +460,12 @@ static int sd_card_send_register_command( sd_card_driver_entry *e, uint32_t comm
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return -RTEMS_IO_ERROR;
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return -RTEMS_IO_ERROR;
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}
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}
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crc7 = sd_card_compute_crc7( e->response + e->response_index, 5);
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if (crc7 != SD_CARD_COMMAND_GET_CRC7( e->response + e->response_index)) {
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RTEMS_SYSLOG_ERROR( "CRC check failed on register command\n");
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return -RTEMS_IO_ERROR;
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}
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*reg = sd_card_get_uint32( e->response + e->response_index + 1);
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*reg = sd_card_get_uint32( e->response + e->response_index + 1);
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return 0;
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return 0;
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@@ -471,6 +520,9 @@ static int sd_card_read( sd_card_driver_entry *e, uint8_t start_token, uint8_t *
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/* Data input index */
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/* Data input index */
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int i = 0;
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int i = 0;
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/* CRC check of data */
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uint16_t crc16;
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SD_CARD_INVALIDATE_RESPONSE_INDEX( e);
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SD_CARD_INVALIDATE_RESPONSE_INDEX( e);
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while (true) {
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while (true) {
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@@ -527,13 +579,21 @@ sd_card_read_start:
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rv = sd_card_query( e, e->response, 3);
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rv = sd_card_query( e, e->response, 3);
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RTEMS_CHECK_RV( rv, "Read CRC 16");
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RTEMS_CHECK_RV( rv, "Read CRC 16");
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crc16 = sd_card_compute_crc16 (in, n);
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if ((e->response[0] != ((crc16 >> 8) & 0xff)) ||
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(e->response[1] != (crc16 & 0xff))) {
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RTEMS_SYSLOG_ERROR( "CRC check failed on read\n");
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return -RTEMS_IO_ERROR;
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}
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return i;
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return i;
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}
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}
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static int sd_card_write( sd_card_driver_entry *e, uint8_t start_token, uint8_t *out, int n)
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static int sd_card_write( sd_card_driver_entry *e, uint8_t start_token, uint8_t *out, int n)
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{
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{
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int rv = 0;
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int rv = 0;
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uint8_t crc16 [2] = { 0, 0 };
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uint8_t crc16_bytes [2] = { 0, 0 };
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uint16_t crc16;
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/* Data output index */
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/* Data output index */
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int o = 0;
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int o = 0;
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@@ -551,7 +611,10 @@ static int sd_card_write( sd_card_driver_entry *e, uint8_t start_token, uint8_t
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RTEMS_CHECK_RV( o, "Write data");
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RTEMS_CHECK_RV( o, "Write data");
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/* Write CRC 16 */
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/* Write CRC 16 */
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rv = rtems_libi2c_write_bytes( e->bus, crc16, 2);
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crc16 = sd_card_compute_crc16(out, n);
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crc16_bytes[0] = (crc16>>8) & 0xff;
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crc16_bytes[1] = (crc16) & 0xff;
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rv = rtems_libi2c_write_bytes( e->bus, crc16_bytes, 2);
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RTEMS_CHECK_RV( rv, "Write CRC 16");
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RTEMS_CHECK_RV( rv, "Write CRC 16");
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/* Read data response */
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/* Read data response */
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@@ -605,6 +668,7 @@ static rtems_status_code sd_card_init( sd_card_driver_entry *e)
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uint32_t write_block_size = 0;
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uint32_t write_block_size = 0;
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uint8_t csd_structure = 0;
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uint8_t csd_structure = 0;
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uint64_t capacity = 0;
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uint64_t capacity = 0;
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uint8_t crc7;
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/* Assume first that we have a SD card and not a MMC card */
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/* Assume first that we have a SD card and not a MMC card */
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bool assume_sd = true;
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bool assume_sd = true;
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@@ -671,12 +735,8 @@ static rtems_status_code sd_card_init( sd_card_driver_entry *e)
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* getting the High Capacity Support flag HCS and checks that the
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* getting the High Capacity Support flag HCS and checks that the
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* voltage is right. Some MMCs accept this command but will still fail
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* voltage is right. Some MMCs accept this command but will still fail
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* on ACMD41. SD 1.x cards will fails this command and do not support
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* on ACMD41. SD 1.x cards will fails this command and do not support
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* HCS (> 2G capacity). SD spec requires the correct CRC7 be sent even
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* HCS (> 2G capacity).
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* when in SPI mode. So this will just change the default CRC7 and
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* keep it there for all subsequent commands (which just require a do
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* not care CRC byte).
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*/
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*/
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SD_CARD_COMMAND_SET_CRC7( e->command, 0x43U);
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rv = sd_card_send_register_command( e, SD_CARD_CMD_SEND_IF_COND, if_cond_reg, &if_cond_reg);
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rv = sd_card_send_register_command( e, SD_CARD_CMD_SEND_IF_COND, if_cond_reg, &if_cond_reg);
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/*
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/*
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@@ -840,6 +900,9 @@ static rtems_status_code sd_card_init( sd_card_driver_entry *e)
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RTEMS_SYSLOG( "Product serial number : %" PRIu32 "\n", SD_CARD_CID_GET_PSN( block));
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RTEMS_SYSLOG( "Product serial number : %" PRIu32 "\n", SD_CARD_CID_GET_PSN( block));
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RTEMS_SYSLOG( "Manufacturing date : %" PRIu8 "\n", SD_CARD_CID_GET_MDT( block));
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RTEMS_SYSLOG( "Manufacturing date : %" PRIu8 "\n", SD_CARD_CID_GET_MDT( block));
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RTEMS_SYSLOG( "7-bit CRC checksum : %" PRIu8 "\n", SD_CARD_CID_GET_CRC7( block));
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RTEMS_SYSLOG( "7-bit CRC checksum : %" PRIu8 "\n", SD_CARD_CID_GET_CRC7( block));
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crc7 = sd_card_compute_crc7( block, 15);
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if (crc7 != SD_CARD_CID_GET_CRC7( block))
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RTEMS_SYSLOG( " Failed! (computed %02" PRIx8 ")\n", crc7);
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}
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}
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/* Card Specific Data */
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/* Card Specific Data */
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@@ -850,6 +913,13 @@ static rtems_status_code sd_card_init( sd_card_driver_entry *e)
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rv = sd_card_read( e, SD_CARD_START_BLOCK_SINGLE_BLOCK_READ, block, SD_CARD_CSD_SIZE);
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rv = sd_card_read( e, SD_CARD_START_BLOCK_SINGLE_BLOCK_READ, block, SD_CARD_CSD_SIZE);
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RTEMS_CLEANUP_RV_SC( rv, sc, sd_card_driver_init_cleanup, "Read: SD_CARD_CMD_SEND_CSD");
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RTEMS_CLEANUP_RV_SC( rv, sc, sd_card_driver_init_cleanup, "Read: SD_CARD_CMD_SEND_CSD");
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crc7 = sd_card_compute_crc7( block, 15);
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if (crc7 != SD_CARD_CID_GET_CRC7( block)) {
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RTEMS_SYSLOG( "SD_CARD_CMD_SEND_CSD CRC failed\n");
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sc = RTEMS_IO_ERROR;
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goto sd_card_driver_init_cleanup;
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}
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/* CSD Structure */
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/* CSD Structure */
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csd_structure = SD_CARD_CSD_GET_CSD_STRUCTURE( block);
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csd_structure = SD_CARD_CSD_GET_CSD_STRUCTURE( block);
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