return retval;
}
-static int stm32x_probe(struct flash_bank *bank)
+static int stm32x_get_flash_size(struct flash_bank *bank, uint16_t *flash_size_in_kb)
{
struct target *target = bank->target;
+ uint32_t cpuid, flash_size_reg;
+
+ int retval = target_read_u32(target, 0xE000ED00, &cpuid);
+ if (retval != ERROR_OK)
+ return retval;
+
+ if (((cpuid >> 4) & 0xFFF) == 0xC20) {
+ /* 0xC20 is M0 devices */
+ flash_size_reg = 0x1FFFF7CC;
+ } else if (((cpuid >> 4) & 0xFFF) == 0xC23) {
+ /* 0xC23 is M3 devices */
+ flash_size_reg = 0x1FFFF7E0;
+ } else {
+ LOG_ERROR("Cannot identify target as a stm32x");
+ return ERROR_FAIL;
+ }
+
+ retval = target_read_u16(target, flash_size_reg, flash_size_in_kb);
+ if (retval != ERROR_OK)
+ return retval;
+
+ return retval;
+}
+
+static int stm32x_probe(struct flash_bank *bank)
+{
struct stm32x_flash_bank *stm32x_info = bank->driver_priv;
int i;
uint16_t flash_size_in_kb;
int page_size;
uint32_t base_address = 0x08000000;
-
stm32x_info->probed = 0;
stm32x_info->register_base = FLASH_REG_BASE_B0;
LOG_INFO("device id = 0x%08" PRIx32 "", device_id);
/* get flash size from target. */
- retval = target_read_u16(target, 0x1FFFF7E0, &flash_size_in_kb);
+ retval = stm32x_get_flash_size(bank, &flash_size_in_kb);
if (retval != ERROR_OK) {
LOG_WARNING("failed reading flash size, default to max target family");
/* failed reading flash size, default to max target family */