STR9: flash loader cleanup
- make algorithm array static const. - increase algorithm buffer size to 32k. Signed-off-by: Spencer Oliver <ntfreak@users.sourceforge.net>
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@ -340,14 +340,14 @@ static int str9x_write_block(struct flash_bank *bank,
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{
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struct str9x_flash_bank *str9x_info = bank->driver_priv;
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struct target *target = bank->target;
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uint32_t buffer_size = 8192;
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uint32_t buffer_size = 32768;
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struct working_area *source;
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uint32_t address = bank->base + offset;
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struct reg_param reg_params[4];
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struct arm_algorithm armv4_5_info;
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int retval = ERROR_OK;
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uint32_t str9x_flash_write_code[] = {
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static const uint32_t str9x_flash_write_code[] = {
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/* write: */
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0xe3c14003, /* bic r4, r1, #3 */
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0xe3a03040, /* mov r3, #0x40 */
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@ -373,13 +373,16 @@ static int str9x_write_block(struct flash_bank *bank,
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};
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/* flash write code */
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if (target_alloc_working_area(target, 4 * 19, &str9x_info->write_algorithm) != ERROR_OK)
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if (target_alloc_working_area(target, sizeof(str9x_flash_write_code),
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&str9x_info->write_algorithm) != ERROR_OK)
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{
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LOG_WARNING("no working area available, can't do block memory writes");
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return ERROR_TARGET_RESOURCE_NOT_AVAILABLE;
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};
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target_write_buffer(target, str9x_info->write_algorithm->address, 19 * 4, (uint8_t*)str9x_flash_write_code);
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target_write_buffer(target, str9x_info->write_algorithm->address,
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sizeof(str9x_flash_write_code),
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(uint8_t*)str9x_flash_write_code);
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/* memory buffer */
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while (target_alloc_working_area(target, buffer_size, &source) != ERROR_OK)
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@ -387,7 +390,8 @@ static int str9x_write_block(struct flash_bank *bank,
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buffer_size /= 2;
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if (buffer_size <= 256)
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{
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/* if we already allocated the writing code, but failed to get a buffer, free the algorithm */
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/* if we already allocated the writing code, but failed to get a
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* buffer, free the algorithm */
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if (str9x_info->write_algorithm)
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target_free_working_area(target, str9x_info->write_algorithm);
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@ -415,7 +419,10 @@ static int str9x_write_block(struct flash_bank *bank,
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buf_set_u32(reg_params[1].value, 0, 32, address);
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buf_set_u32(reg_params[2].value, 0, 32, thisrun_count);
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if ((retval = target_run_algorithm(target, 0, NULL, 4, reg_params, str9x_info->write_algorithm->address, str9x_info->write_algorithm->address + (18 * 4), 10000, &armv4_5_info)) != ERROR_OK)
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if ((retval = target_run_algorithm(target, 0, NULL, 4, reg_params,
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str9x_info->write_algorithm->address,
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str9x_info->write_algorithm->address + (sizeof(str9x_flash_write_code) - 4),
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10000, &armv4_5_info)) != ERROR_OK)
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{
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LOG_ERROR("error executing str9x flash write algorithm");
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retval = ERROR_FLASH_OPERATION_FAILED;
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@ -676,6 +683,7 @@ static const struct command_registration str9x_config_command_handlers[] = {
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},
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COMMAND_REGISTRATION_DONE
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};
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static const struct command_registration str9x_command_handlers[] = {
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{
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.name = "str9x",
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@ -551,7 +551,8 @@ static int str9xpec_set_address(struct flash_bank *bank, uint8_t sector)
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return ERROR_OK;
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}
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static int str9xpec_write(struct flash_bank *bank, uint8_t *buffer, uint32_t offset, uint32_t count)
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static int str9xpec_write(struct flash_bank *bank, uint8_t *buffer,
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uint32_t offset, uint32_t count)
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{
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struct str9xpec_flash_controller *str9xpec_info = bank->driver_priv;
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uint32_t dwords_remaining = (count / 8);
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@ -619,7 +620,8 @@ static int str9xpec_write(struct flash_bank *bank, uint8_t *buffer, uint32_t off
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{
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str9xpec_set_address(bank, str9xpec_info->sector_bits[i]);
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dwords_remaining = dwords_remaining < (bank->sectors[i].size/8) ? dwords_remaining : (bank->sectors[i].size/8);
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dwords_remaining = dwords_remaining < (bank->sectors[i].size/8)
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? dwords_remaining : (bank->sectors[i].size/8);
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while (dwords_remaining > 0)
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{
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@ -1226,6 +1228,7 @@ static const struct command_registration str9xpec_config_command_handlers[] = {
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},
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COMMAND_REGISTRATION_DONE
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};
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static const struct command_registration str9xpec_command_handlers[] = {
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{
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.name = "str9xpec",
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