cmd_buf[i] = 0;
if (cfi_info->endianness == TARGET_LITTLE_ENDIAN) {
- for (int i = bank->bus_width; i > 0; i--)
+ for (unsigned int i = bank->bus_width; i > 0; i--)
*cmd_buf++ = (i & (bank->chip_width - 1)) ? 0x0 : cmd;
} else {
- for (int i = 1; i <= bank->bus_width; i++)
+ for (unsigned int i = 1; i <= bank->bus_width; i++)
*cmd_buf++ = (i & (bank->chip_width - 1)) ? 0x0 : cmd;
}
}
return retval;
if (cfi_info->endianness == TARGET_LITTLE_ENDIAN) {
- for (int i = 0; i < bank->bus_width / bank->chip_width; i++)
+ for (unsigned int i = 0; i < bank->bus_width / bank->chip_width; i++)
data[0] |= data[i];
*val = data[0];
} else {
uint8_t value = 0;
- for (int i = 0; i < bank->bus_width / bank->chip_width; i++)
+ for (unsigned int i = 0; i < bank->bus_width / bank->chip_width; i++)
value |= data[bank->bus_width - 1 - i];
*val = value;
return cfi_flash_bank_cmd(bank, CMD_ARGC, CMD_ARGV);
}
-static int cfi_intel_erase(struct flash_bank *bank, int first, int last)
+static int cfi_intel_erase(struct flash_bank *bank, unsigned int first,
+ unsigned int last)
{
int retval;
struct cfi_flash_bank *cfi_info = bank->driver_priv;
cfi_intel_clear_status_register(bank);
- for (int i = first; i <= last; i++) {
+ for (unsigned int i = first; i <= last; i++) {
retval = cfi_send_command(bank, 0x20, cfi_flash_address(bank, i, 0x0));
if (retval != ERROR_OK)
return retval;
if (retval != ERROR_OK)
return retval;
- LOG_ERROR("couldn't erase block %i of flash bank at base "
+ LOG_ERROR("couldn't erase block %u of flash bank at base "
TARGET_ADDR_FMT, i, bank->base);
return ERROR_FLASH_OPERATION_FAILED;
}
return ERROR_OK;
}
-static int cfi_spansion_erase(struct flash_bank *bank, int first, int last)
+static int cfi_spansion_erase(struct flash_bank *bank, unsigned int first,
+ unsigned int last)
{
int retval;
struct cfi_flash_bank *cfi_info = bank->driver_priv;
struct cfi_spansion_pri_ext *pri_ext = cfi_info->pri_ext;
- for (int i = first; i <= last; i++) {
+ for (unsigned int i = first; i <= last; i++) {
retval = cfi_spansion_unlock_seq(bank);
if (retval != ERROR_OK)
return retval;
return cfi_send_command(bank, 0xf0, cfi_flash_address(bank, 0, 0x0));
}
-int cfi_erase(struct flash_bank *bank, int first, int last)
+int cfi_erase(struct flash_bank *bank, unsigned int first,
+ unsigned int last)
{
struct cfi_flash_bank *cfi_info = bank->driver_priv;
return ERROR_TARGET_NOT_HALTED;
}
- if ((first < 0) || (last < first) || (last >= bank->num_sectors))
+ if ((last < first) || (last >= bank->num_sectors))
return ERROR_FLASH_SECTOR_INVALID;
if (cfi_info->qry[0] != 'Q')
return ERROR_OK;
}
-static int cfi_intel_protect(struct flash_bank *bank, int set, int first, int last)
+static int cfi_intel_protect(struct flash_bank *bank, int set,
+ unsigned int first, unsigned int last)
{
int retval;
struct cfi_flash_bank *cfi_info = bank->driver_priv;
cfi_intel_clear_status_register(bank);
- for (int i = first; i <= last; i++) {
+ for (unsigned int i = first; i <= last; i++) {
retval = cfi_send_command(bank, 0x60, cfi_flash_address(bank, i, 0x0));
if (retval != ERROR_OK)
return retval;
* 3. re-protect what should be protected.
*
*/
- for (int i = 0; i < bank->num_sectors; i++) {
+ for (unsigned int i = 0; i < bank->num_sectors; i++) {
if (bank->sectors[i].is_protected == 1) {
cfi_intel_clear_status_register(bank);
return cfi_send_command(bank, 0xff, cfi_flash_address(bank, 0, 0x0));
}
-int cfi_protect(struct flash_bank *bank, int set, int first, int last)
+int cfi_protect(struct flash_bank *bank, int set, unsigned int first,
+ unsigned int last)
{
struct cfi_flash_bank *cfi_info = bank->driver_priv;
case 4:
return target_buffer_get_u32(target, buf);
default:
- LOG_ERROR("Unsupported bank buswidth %d, can't do block memory writes",
+ LOG_ERROR("Unsupported bank buswidth %u, can't do block memory writes",
bank->bus_width);
return 0;
}
target_code_size = sizeof(word_32_code);
break;
default:
- LOG_ERROR("Unsupported bank buswidth %d, can't do block memory writes",
+ LOG_ERROR("Unsupported bank buswidth %u, can't do block memory writes",
bank->bus_width);
return ERROR_TARGET_RESOURCE_NOT_AVAILABLE;
}
}
break;
default:
- LOG_ERROR("Unsupported bank buswidth %d, can't do block memory writes",
+ LOG_ERROR("Unsupported bank buswidth %u, can't do block memory writes",
bank->bus_width);
return ERROR_TARGET_RESOURCE_NOT_AVAILABLE;
}
target_code_size = sizeof(armv4_5_word_32_code);
break;
default:
- LOG_ERROR("Unsupported bank buswidth %d, can't do block memory writes",
+ LOG_ERROR("Unsupported bank buswidth %u, can't do block memory writes",
bank->bus_width);
return ERROR_TARGET_RESOURCE_NOT_AVAILABLE;
}
return retval;
/* take only bytes we need */
- for (int i = align; (i < bank->bus_width) && (count > 0); i++, count--)
+ for (unsigned int i = align; (i < bank->bus_width) && (count > 0); i++, count--)
*buffer++ = current_word[i];
read_p += bank->bus_width;
return retval;
/* take only bytes we need */
- for (int i = 0; (i < bank->bus_width) && (count > 0); i++, count--)
+ for (unsigned int i = 0; (i < bank->bus_width) && (count > 0); i++, count--)
*buffer++ = current_word[i];
}
return retval;
/* replace only bytes that must be written */
- for (int i = align;
- (i < bank->bus_width) && (count > 0);
- i++, count--)
+ for (unsigned int i = align; (i < bank->bus_width) && (count > 0); i++, count--)
if (cfi_info->data_swap)
/* data bytes are swapped (reverse endianness) */
current_word[bank->bus_width - i] = *buffer++;
}
/* try the slow way? */
if (fallback) {
- for (int i = 0; i < bank->bus_width; i++)
+ for (unsigned int i = 0; i < bank->bus_width; i++)
current_word[i] = *buffer++;
retval = cfi_write_word(bank, current_word, write_p);
return retval;
/* replace only bytes that must be written */
- for (int i = 0; (i < bank->bus_width) && (count > 0); i++, count--)
+ for (unsigned int i = 0; (i < bank->bus_width) && (count > 0); i++, count--)
if (cfi_info->data_swap)
/* data bytes are swapped (reverse endianness) */
current_word[bank->bus_width - i] = *buffer++;
{
struct cfi_flash_bank *cfi_info = bank->driver_priv;
struct target *target = bank->target;
- int num_sectors = 0;
+ unsigned int num_sectors = 0;
int sector = 0;
uint32_t unlock1 = 0x555;
uint32_t unlock2 = 0x2aa;
cfi_info->device_id = target_buffer_get_u32(target, value_buf1);
break;
default:
- LOG_ERROR("Unsupported bank chipwidth %d, can't probe memory",
+ LOG_ERROR("Unsupported bank chipwidth %u, can't probe memory",
bank->chip_width);
return ERROR_FLASH_OPERATION_FAILED;
}
if (retval != ERROR_OK)
return retval;
- for (int i = 0; i < bank->num_sectors; i++) {
+ for (unsigned int i = 0; i < bank->num_sectors; i++) {
uint8_t block_status;
retval = cfi_get_u8(bank, i, 0x2, &block_status);
if (retval != ERROR_OK)
if (retval != ERROR_OK)
return retval;
- for (int i = 0; i < bank->num_sectors; i++) {
+ for (unsigned int i = 0; i < bank->num_sectors; i++) {
uint8_t block_status;
retval = cfi_get_u8(bank, i, 0x2, &block_status);
if (retval != ERROR_OK)