return ERROR_OK;
}
+static int cortex_m_enable_fpb(struct target *target)
+{
+ int retval = target_write_u32(target, FP_CTRL, 3);
+ if (retval != ERROR_OK)
+ return retval;
+
+ /* check the fpb is actually enabled */
+ uint32_t fpctrl;
+ retval = target_read_u32(target, FP_CTRL, &fpctrl);
+ if (retval != ERROR_OK)
+ return retval;
+
+ if (fpctrl & 1)
+ return ERROR_OK;
+
+ return ERROR_FAIL;
+}
+
static int cortex_m_endreset_event(struct target *target)
{
int i;
*/
/* Enable FPB */
- retval = target_write_u32(target, FP_CTRL, 3);
- if (retval != ERROR_OK)
+ retval = cortex_m_enable_fpb(target);
+ if (retval != ERROR_OK) {
+ LOG_ERROR("Failed to enable the FPB");
return retval;
+ }
cortex_m->fpb_enabled = 1;
comparator_list[fp_num].fpcr_value);
if (!cortex_m->fpb_enabled) {
LOG_DEBUG("FPB wasn't enabled, do it now");
- target_write_u32(target, FP_CTRL, 3);
+ retval = cortex_m_enable_fpb(target);
+ if (retval != ERROR_OK) {
+ LOG_ERROR("Failed to enable the FPB");
+ return retval;
+ }
+
+ cortex_m->fpb_enabled = 1;
}
} else if (breakpoint->type == BKPT_SOFT) {
uint8_t code[4];