uint32_t value;
int retval = ERROR_OK;
+ if (lpcspifi_info->dev->chip_erase_cmd == 0x00)
+ return ERROR_FLASH_OPER_UNSUPPORTED;
+
retval = lpcspifi_set_sw_mode(bank);
if (retval == ERROR_OK)
LOG_WARNING("Bulk flash erase failed. Falling back to sector-by-sector erase.");
}
+ if (lpcspifi_info->dev->erase_cmd == 0x00)
+ return ERROR_FLASH_OPER_UNSUPPORTED;
+
retval = lpcspifi_set_hw_mode(bank);
if (retval != ERROR_OK)
return retval;
}
}
- page_size = lpcspifi_info->dev->pagesize;
+ /* if no valid page_size, use reasonable default */
+ page_size = lpcspifi_info->dev->pagesize ?
+ lpcspifi_info->dev->pagesize : SPIFLASH_DEF_PAGESIZE;
retval = lpcspifi_set_hw_mode(bank);
if (retval != ERROR_OK)
struct flash_sector *sectors;
uint32_t id = 0; /* silence uninitialized warning */
int retval;
+ uint32_t sectorsize;
/* If we've already probed, we should be fine to skip this time. */
if (lpcspifi_info->probed)
/* Set correct size value */
bank->size = lpcspifi_info->dev->size_in_bytes;
+ if (bank->size <= (1UL << 16))
+ LOG_WARNING("device needs 2-byte addresses - not implemented");
+ if (bank->size > (1UL << 24))
+ LOG_WARNING("device needs paging or 4-byte addresses - not implemented");
+
+ /* if no sectors, treat whole bank as single sector */
+ sectorsize = lpcspifi_info->dev->sectorsize ?
+ lpcspifi_info->dev->sectorsize : lpcspifi_info->dev->size_in_bytes;
/* create and fill sectors array */
- bank->num_sectors =
- lpcspifi_info->dev->size_in_bytes / lpcspifi_info->dev->sectorsize;
+ bank->num_sectors = lpcspifi_info->dev->size_in_bytes / sectorsize;
sectors = malloc(sizeof(struct flash_sector) * bank->num_sectors);
if (sectors == NULL) {
LOG_ERROR("not enough memory");
}
for (int sector = 0; sector < bank->num_sectors; sector++) {
- sectors[sector].offset = sector * lpcspifi_info->dev->sectorsize;
- sectors[sector].size = lpcspifi_info->dev->sectorsize;
+ sectors[sector].offset = sector * sectorsize;
+ sectors[sector].size = sectorsize;
sectors[sector].is_erased = -1;
sectors[sector].is_protected = 0;
}