HardFault_Handler

This commit is contained in:
2026-07-16 01:02:09 +08:00
parent d57a09872d
commit abe5b0c5b9
3 changed files with 122 additions and 0 deletions
+99
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@@ -145,3 +145,102 @@ void SVC_Handler_C(os_uintptr_t* svc_args){
} }
} }
/* ------------------------------------------------------------------------------------------------------------------ */
/* */
// https://interrupt.memfault.com/blog/cortex-m-hardfault-debug
// Logic for dealing with the exception. Typically:
// - log the fault which occurred for postmortem analysis
// - If the fault is recoverable,
// - clear errors and return back to Thread Mode
// - else
// - reboot system
#define AUTO_REBOOT_ENABLE /* 允许自动重启 */
#define OUTPUT_FAULT_TO_CONSOLE_ENABLE /* 在调试终端输出运行时信息 */
#define RECOVER_FROM_FAULT_ENABLE /* 尝试从错误中继续运行 */
#if defined(RECOVER_FROM_FAULT_ENABLE)
static void recover_from_task_fault(void){
while(1){
os_task_yield();
}
}
#endif
typedef OS_PACKED_STRUCT(ContextStateFrame) {
uint32_t r0;
uint32_t r1;
uint32_t r2;
uint32_t r3;
uint32_t r12;
uint32_t lr;
uint32_t return_address;
uint32_t xpsr;
} ContextStateFrame_t;
void HardFault_Handler_C(ContextStateFrame_t* frame, uint32_t lr_value){
uint32_t bus_fault_address = SCB->BFAR;
uint32_t mem_manage_fault_address = SCB->MMFAR;
uint32_t cfsr = SCB->CFSR;
#if defined(AUTO_REBOOT_ENABLE)
const uint32_t usage_fault_mask = 0xffff0000;
const bool non_usage_fault_occurred =
(cfsr & ~usage_fault_mask) != 0;
// the bottom 8 bits of the xpsr hold the exception number of the
// executing exception or 0 if the processor is in Thread mode
const bool faulted_from_exception = ((frame->xpsr & 0xFF) != 0);
if (faulted_from_exception || non_usage_fault_occurred) {
// For any fault within an ISR or non-usage faults
// let's reboot the system
volatile uint32_t *aircr = (volatile uint32_t *)0xE000ED0C;
*aircr = (0x05FA << 16) | 0x1 << 2;
while (1) { } // should be unreachable
}
#endif
#if defined(OUTPUT_FAULT_TO_CONSOLE_ENABLE)
printf("[HardFault]\n");
printf("- Stack frame:\n");
printf(" R0 = %08"OS_PRIx"\n", frame->r0);
printf(" R1 = %08"OS_PRIx"\n", frame->r1);
printf(" R2 = %08"OS_PRIx"\n", frame->r2);
printf(" R3 = %08"OS_PRIx"\n", frame->r3);
printf(" R12 = %08"OS_PRIx"\n", frame->r12);
printf(" LR = %08"OS_PRIx"\n", frame->lr);
printf(" PC = %08"OS_PRIx"\n", frame->return_address);
printf(" PSR = %08"OS_PRIx"\n", frame->xpsr);
printf("- FSR/FAR:\n");
printf(" CFSR = %08"OS_PRIx"\n", cfsr);
printf(" HFSR = %08"OS_PRIx"\n", SCB->HFSR);
printf(" DFSR = %08"OS_PRIx"\n", SCB->DFSR);
printf(" AFSR = %08"OS_PRIx"\n", SCB->AFSR);
if(cfsr & 0x0080){
printf(" MMFAR = %08"OS_PRIx"\n", mem_manage_fault_address);
}
if(cfsr & 0x8000){
printf(" BFAR = %08"OS_PRIx"\n", bus_fault_address);
}
printf("- Misc:\n");
printf(" LR/EXC_RETURN = %08"OS_PRIx"\n", lr_value);
#endif
#if defined(RECOVER_FROM_FAULT_ENABLE)
// Clear any logged faults from the CFSR
SCB->CFSR |= SCB->CFSR;
// the instruction we will return to when we exit from the exception
frame->return_address = (uint32_t)recover_from_task_fault;
// the function we are returning to should never branch
// so set lr to a pattern that would fault if it did
frame->lr = 0xdeadbeef;
// reset the psr state and only leave the
// "thumb instruction interworking" bit set
frame->xpsr = (1 << 24);
#else
while(1);
#endif
}
+10
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@@ -67,5 +67,15 @@ __PendSV_SwitchTo
ENDP ENDP
HardFault_Handler PROC
EXPORT HardFault_Handler
tst lr, #4 // EXC_RETURN (LR) 2
ite eq
mrseq r0, msp // 2 0 MSP
mrsne r0, psp // 2 1 PSP
mov r1, lr
b HardFault_Handler_C // C r0
ENDP
END END
+13
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@@ -76,5 +76,18 @@ cpu_clz:
CLZ R0, R0 CLZ R0, R0
BX LR BX LR
.section .text.HardFault_Handler,"ax",%progbits
.global HardFault_Handler
.thumb_func
HardFault_Handler:
tst lr, #4
ite eq
mrseq r0, msp
mrsne r0, psp
mov r1, lr
b HardFault_Handler_C
.align 4 .align 4
.end .end