* FuriHal: enable HSI in stop mode only if we use STOP0, proper SMPS selected clock assert * Furi: fix double crash caused by bkpt use outside of debug session * Libs: update ERC and MGG contrast * Fix various crashes with LIB_DEBUG=1 * BadUsb: size_t where it should be and proper printf types * Various fixes and make PVS happy * FuriHal: proper CCID status and make PVS happy * boot: update mode: graceful handling of corrupted stage file --------- Co-authored-by: hedger <hedger@nanode.su>
		
			
				
	
	
		
			205 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			205 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#include "check.h"
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#include "common_defines.h"
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#include <stm32wbxx.h>
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#include <furi_hal_console.h>
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#include <furi_hal_power.h>
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#include <furi_hal_rtc.h>
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#include <furi_hal_debug.h>
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#include <furi_hal_bt.h>
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#include <stdio.h>
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#include <FreeRTOS.h>
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#include <task.h>
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#include <stdio.h>
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#include <stdlib.h>
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PLACE_IN_SECTION("MB_MEM2") const char* __furi_check_message = NULL;
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PLACE_IN_SECTION("MB_MEM2") uint32_t __furi_check_registers[13] = {0};
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/** Load r12 value to __furi_check_message and store registers to __furi_check_registers */
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#define GET_MESSAGE_AND_STORE_REGISTERS()               \
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    asm volatile("ldr r11, =__furi_check_message    \n" \
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                 "str r12, [r11]                    \n" \
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                 "ldr r12, =__furi_check_registers  \n" \
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                 "stm r12, {r0-r11}                 \n" \
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                 "str lr, [r12, #48]                \n" \
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                 :                                      \
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                 :                                      \
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                 : "memory");
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/** Restore registers and halt MCU
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 * 
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 * - Always use it with GET_MESSAGE_AND_STORE_REGISTERS
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 * - If debugger is(was) connected this routine will raise bkpt
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 * - If debugger is not connected then endless loop
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 * 
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 */
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#define RESTORE_REGISTERS_AND_HALT_MCU(debug)           \
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    register bool r0 asm("r0") = debug;                 \
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    asm volatile("cbnz  r0, with_debugger%=         \n" \
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                 "ldr   r12, =__furi_check_registers\n" \
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                 "ldm   r12, {r0-r11}               \n" \
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                 "loop%=:                           \n" \
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                 "wfi                               \n" \
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                 "b     loop%=                      \n" \
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                 "with_debugger%=:                  \n" \
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                 "ldr   r12, =__furi_check_registers\n" \
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                 "ldm   r12, {r0-r11}               \n" \
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                 "debug_loop%=:                     \n" \
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                 "bkpt  0x00                        \n" \
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                 "wfi                               \n" \
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                 "b     debug_loop%=                \n" \
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                 :                                      \
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                 : "r"(r0)                              \
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                 : "memory");
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extern size_t xPortGetTotalHeapSize(void);
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extern size_t xPortGetFreeHeapSize(void);
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extern size_t xPortGetMinimumEverFreeHeapSize(void);
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static void __furi_put_uint32_as_text(uint32_t data) {
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    char tmp_str[] = "-2147483648";
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    itoa(data, tmp_str, 10);
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    furi_hal_console_puts(tmp_str);
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}
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static void __furi_put_uint32_as_hex(uint32_t data) {
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    char tmp_str[] = "0xFFFFFFFF";
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    itoa(data, tmp_str, 16);
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    furi_hal_console_puts(tmp_str);
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}
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static void __furi_print_register_info() {
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    // Print registers
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    for(uint8_t i = 0; i < 12; i++) {
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        furi_hal_console_puts("\r\n\tr");
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        __furi_put_uint32_as_text(i);
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        furi_hal_console_puts(" : ");
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        __furi_put_uint32_as_hex(__furi_check_registers[i]);
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    }
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    furi_hal_console_puts("\r\n\tlr : ");
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    __furi_put_uint32_as_hex(__furi_check_registers[12]);
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}
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static void __furi_print_stack_info() {
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    furi_hal_console_puts("\r\n\tstack watermark: ");
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    __furi_put_uint32_as_text(uxTaskGetStackHighWaterMark(NULL) * 4);
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}
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static void __furi_print_bt_stack_info() {
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    const FuriHalBtHardfaultInfo* fault_info = furi_hal_bt_get_hardfault_info();
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    if(fault_info == NULL) {
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        furi_hal_console_puts("\r\n\tcore2: not faulted");
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    } else {
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        furi_hal_console_puts("\r\n\tcore2: hardfaulted.\r\n\tPC: ");
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        __furi_put_uint32_as_hex(fault_info->source_pc);
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        furi_hal_console_puts("\r\n\tLR: ");
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        __furi_put_uint32_as_hex(fault_info->source_lr);
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        furi_hal_console_puts("\r\n\tSP: ");
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        __furi_put_uint32_as_hex(fault_info->source_sp);
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    }
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}
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static void __furi_print_heap_info() {
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    furi_hal_console_puts("\r\n\t     heap total: ");
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    __furi_put_uint32_as_text(xPortGetTotalHeapSize());
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    furi_hal_console_puts("\r\n\t      heap free: ");
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    __furi_put_uint32_as_text(xPortGetFreeHeapSize());
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    furi_hal_console_puts("\r\n\t heap watermark: ");
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    __furi_put_uint32_as_text(xPortGetMinimumEverFreeHeapSize());
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}
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static void __furi_print_name(bool isr) {
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    if(isr) {
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        furi_hal_console_puts("[ISR ");
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        __furi_put_uint32_as_text(__get_IPSR());
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        furi_hal_console_puts("] ");
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    } else {
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        const char* name = pcTaskGetName(NULL);
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        if(name == NULL) {
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            furi_hal_console_puts("[main] ");
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        } else {
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            furi_hal_console_puts("[");
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            furi_hal_console_puts(name);
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            furi_hal_console_puts("] ");
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        }
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    }
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}
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FURI_NORETURN void __furi_crash() {
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    __disable_irq();
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    GET_MESSAGE_AND_STORE_REGISTERS();
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    bool isr = FURI_IS_IRQ_MODE();
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    if(__furi_check_message == NULL) {
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        __furi_check_message = "Fatal Error";
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    } else if(__furi_check_message == (void*)__FURI_ASSERT_MESSAGE_FLAG) {
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        __furi_check_message = "furi_assert failed";
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    } else if(__furi_check_message == (void*)__FURI_CHECK_MESSAGE_FLAG) {
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        __furi_check_message = "furi_check failed";
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    }
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    furi_hal_console_puts("\r\n\033[0;31m[CRASH]");
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    __furi_print_name(isr);
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    furi_hal_console_puts(__furi_check_message);
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    __furi_print_register_info();
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    if(!isr) {
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        __furi_print_stack_info();
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    }
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    __furi_print_heap_info();
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    __furi_print_bt_stack_info();
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    // Check if debug enabled by DAP
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    // https://developer.arm.com/documentation/ddi0403/d/Debug-Architecture/ARMv7-M-Debug/Debug-register-support-in-the-SCS/Debug-Halting-Control-and-Status-Register--DHCSR?lang=en
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    bool debug = CoreDebug->DHCSR & CoreDebug_DHCSR_C_DEBUGEN_Msk;
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#ifdef FURI_NDEBUG
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    if(debug) {
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#endif
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        furi_hal_console_puts("\r\nSystem halted. Connect debugger for more info\r\n");
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        furi_hal_console_puts("\033[0m\r\n");
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        furi_hal_debug_enable();
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        RESTORE_REGISTERS_AND_HALT_MCU(debug);
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#ifdef FURI_NDEBUG
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    } else {
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        uint32_t ptr = (uint32_t)__furi_check_message;
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        if(ptr < FLASH_BASE || ptr > (FLASH_BASE + FLASH_SIZE)) {
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            ptr = (uint32_t) "Check serial logs";
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        }
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        furi_hal_rtc_set_fault_data(ptr);
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        furi_hal_console_puts("\r\nRebooting system.\r\n");
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        furi_hal_console_puts("\033[0m\r\n");
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        furi_hal_power_reset();
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    }
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#endif
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    __builtin_unreachable();
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}
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FURI_NORETURN void __furi_halt() {
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    __disable_irq();
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    GET_MESSAGE_AND_STORE_REGISTERS();
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    bool isr = FURI_IS_IRQ_MODE();
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    if(__furi_check_message == NULL) {
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        __furi_check_message = "System halt requested.";
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    }
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    furi_hal_console_puts("\r\n\033[0;31m[HALT]");
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    __furi_print_name(isr);
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    furi_hal_console_puts(__furi_check_message);
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    furi_hal_console_puts("\r\nSystem halted. Bye-bye!\r\n");
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    furi_hal_console_puts("\033[0m\r\n");
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    // Check if debug enabled by DAP
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    // https://developer.arm.com/documentation/ddi0403/d/Debug-Architecture/ARMv7-M-Debug/Debug-register-support-in-the-SCS/Debug-Halting-Control-and-Status-Register--DHCSR?lang=en
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    bool debug = CoreDebug->DHCSR & CoreDebug_DHCSR_C_DEBUGEN_Msk;
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    RESTORE_REGISTERS_AND_HALT_MCU(debug);
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    __builtin_unreachable();
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}
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