flash/nor/tcl: add read_bank and verify_bank
The only read access to flash chips so is through the target's memory. Flashes like jtagspi do not expose a memory mapped interface to the flash. These commands use the flash_driver_read() driver API directly. Change-Id: I40b910de650114a3f676507f9f059a234377d862 Signed-off-by: Robert Jordens <jordens@gmail.com> Reviewed-on: http://openocd.zylin.com/2842 Tested-by: jenkins Reviewed-by: Spencer Oliver <spen@spen-soft.co.uk>__archive__
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@ -4644,6 +4644,18 @@ starting at @var{offset} bytes from the beginning of the bank.
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The @var{num} parameter is a value shown by @command{flash banks}.
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@end deffn
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@deffn Command {flash read_bank} num filename offset length
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Read @var{length} bytes from the flash bank @var{num} starting at @var{offset}
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and write the contents to the binary @file{filename}.
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The @var{num} parameter is a value shown by @command{flash banks}.
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@end deffn
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@deffn Command {flash verify_bank} num filename offset
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Compare the contents of the binary file @var{filename} with the contents of the
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flash @var{num} starting at @var{offset}. Fails if the contents do not match.
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The @var{num} parameter is a value shown by @command{flash banks}.
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@end deffn
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@deffn Command {flash write_image} [erase] [unlock] filename [offset] [type]
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Write the image @file{filename} to the current target's flash bank(s).
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Only loadable sections from the image are written.
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@ -610,6 +610,165 @@ COMMAND_HANDLER(handle_flash_write_bank_command)
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return retval;
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}
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COMMAND_HANDLER(handle_flash_read_bank_command)
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{
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uint32_t offset;
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uint8_t *buffer;
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struct fileio fileio;
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uint32_t length;
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size_t written;
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if (CMD_ARGC != 4)
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return ERROR_COMMAND_SYNTAX_ERROR;
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struct duration bench;
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duration_start(&bench);
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struct flash_bank *p;
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int retval = CALL_COMMAND_HANDLER(flash_command_get_bank, 0, &p);
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if (ERROR_OK != retval)
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return retval;
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COMMAND_PARSE_NUMBER(u32, CMD_ARGV[2], offset);
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COMMAND_PARSE_NUMBER(u32, CMD_ARGV[3], length);
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buffer = malloc(length);
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if (buffer == NULL) {
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LOG_ERROR("Out of memory");
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return ERROR_FAIL;
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}
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retval = flash_driver_read(p, buffer, offset, length);
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if (retval != ERROR_OK) {
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LOG_ERROR("Read error");
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free(buffer);
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return retval;
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}
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retval = fileio_open(&fileio, CMD_ARGV[1], FILEIO_WRITE, FILEIO_BINARY);
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if (retval != ERROR_OK) {
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LOG_ERROR("Could not open file");
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free(buffer);
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return retval;
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}
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retval = fileio_write(&fileio, length, buffer, &written);
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fileio_close(&fileio);
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free(buffer);
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if (retval != ERROR_OK) {
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LOG_ERROR("Could not write file");
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return ERROR_FAIL;
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}
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if (duration_measure(&bench) == ERROR_OK)
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command_print(CMD_CTX, "wrote %ld bytes to file %s from flash bank %u"
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" at offset 0x%8.8" PRIx32 " in %fs (%0.3f KiB/s)",
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(long)written, CMD_ARGV[1], p->bank_number, offset,
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duration_elapsed(&bench), duration_kbps(&bench, written));
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return retval;
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}
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COMMAND_HANDLER(handle_flash_verify_bank_command)
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{
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uint32_t offset;
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uint8_t *buffer_file, *buffer_flash;
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struct fileio fileio;
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size_t read_cnt;
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int filesize;
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int differ;
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if (CMD_ARGC != 3)
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return ERROR_COMMAND_SYNTAX_ERROR;
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struct duration bench;
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duration_start(&bench);
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struct flash_bank *p;
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int retval = CALL_COMMAND_HANDLER(flash_command_get_bank, 0, &p);
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if (ERROR_OK != retval)
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return retval;
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COMMAND_PARSE_NUMBER(u32, CMD_ARGV[2], offset);
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retval = fileio_open(&fileio, CMD_ARGV[1], FILEIO_READ, FILEIO_BINARY);
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if (retval != ERROR_OK) {
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LOG_ERROR("Could not open file");
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return retval;
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}
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retval = fileio_size(&fileio, &filesize);
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if (retval != ERROR_OK) {
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fileio_close(&fileio);
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return retval;
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}
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buffer_file = malloc(filesize);
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if (buffer_file == NULL) {
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LOG_ERROR("Out of memory");
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fileio_close(&fileio);
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return ERROR_FAIL;
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}
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retval = fileio_read(&fileio, filesize, buffer_file, &read_cnt);
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fileio_close(&fileio);
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if (retval != ERROR_OK) {
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LOG_ERROR("File read failure");
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free(buffer_file);
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return retval;
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}
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if (read_cnt != (size_t) filesize) {
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LOG_ERROR("Short read");
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free(buffer_file);
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return ERROR_FAIL;
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}
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buffer_flash = malloc(filesize);
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if (buffer_flash == NULL) {
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LOG_ERROR("Out of memory");
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free(buffer_file);
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return ERROR_FAIL;
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}
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retval = flash_driver_read(p, buffer_flash, offset, read_cnt);
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if (retval != ERROR_OK) {
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LOG_ERROR("Flash read error");
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free(buffer_flash);
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free(buffer_file);
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return retval;
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}
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if (duration_measure(&bench) == ERROR_OK)
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command_print(CMD_CTX, "read %ld bytes from file %s and flash bank %u"
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" at offset 0x%8.8" PRIx32 " in %fs (%0.3f KiB/s)",
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(long)read_cnt, CMD_ARGV[1], p->bank_number, offset,
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duration_elapsed(&bench), duration_kbps(&bench, read_cnt));
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differ = memcmp(buffer_file, buffer_flash, read_cnt);
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command_print(CMD_CTX, "contents %s", differ ? "differ" : "match");
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if (differ) {
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uint32_t t;
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int diffs = 0;
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for (t = 0; t < read_cnt; t++) {
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if (buffer_flash[t] == buffer_file[t])
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continue;
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command_print(CMD_CTX, "diff %d address 0x%08x. Was 0x%02x instead of 0x%02x",
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diffs, t + offset, buffer_flash[t], buffer_file[t]);
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if (diffs++ >= 127) {
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command_print(CMD_CTX, "More than 128 errors, the rest are not printed.");
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break;
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}
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keep_alive();
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}
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}
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free(buffer_flash);
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free(buffer_file);
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return differ ? ERROR_FAIL : ERROR_OK;
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}
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void flash_set_dirty(void)
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{
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struct flash_bank *c;
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@ -726,6 +885,24 @@ static const struct command_registration flash_exec_command_handlers[] = {
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"and/or erase the region to be used. Allow optional "
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"offset from beginning of bank (defaults to zero)",
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},
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{
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.name = "read_bank",
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.handler = handle_flash_read_bank_command,
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.mode = COMMAND_EXEC,
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.usage = "bank_id filename offset length",
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.help = "Read binary data from flash bank to file, "
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"starting at specified byte offset from the "
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"beginning of the bank.",
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},
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{
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.name = "verify_bank",
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.handler = handle_flash_verify_bank_command,
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.mode = COMMAND_EXEC,
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.usage = "bank_id filename offset",
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.help = "Read binary data from flash bank and file, "
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"starting at specified byte offset from the "
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"beginning of the bank. Compare the contents.",
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},
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{
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.name = "protect",
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.handler = handle_flash_protect_command,
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