| /Zephyr-latest/arch/arm/core/ |
| D | fatal.c | 24 esf->basic.a1, esf->basic.a2, esf->basic.a3); in esf_dump() 26 esf->basic.a4, esf->basic.ip, esf->basic.lr); in esf_dump() 27 LOG_ERR(" xpsr: 0x%08x", esf->basic.xpsr); in esf_dump() 65 esf->basic.pc); in esf_dump() 112 unsigned int reason = esf->basic.r0; in z_do_kernel_oops() 124 if (!((esf->basic.r0 == K_ERR_KERNEL_OOPS) || in z_do_kernel_oops() 125 (esf->basic.r0 == K_ERR_STACK_CHK_FAIL))) { in z_do_kernel_oops() 165 oops_esf.basic.pc = ssf_contents[3]; in arch_syscall_oops()
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| D | gdbstub.c | 52 ctx.registers[R0] = esf->basic.r0; in z_gdb_entry() 53 ctx.registers[R1] = esf->basic.r1; in z_gdb_entry() 54 ctx.registers[R2] = esf->basic.r2; in z_gdb_entry() 55 ctx.registers[R3] = esf->basic.r3; in z_gdb_entry() 67 ctx.registers[R12] = esf->basic.r12; in z_gdb_entry() 68 ctx.registers[LR] = esf->basic.lr; in z_gdb_entry() 69 ctx.registers[PC] = esf->basic.pc; in z_gdb_entry() 70 ctx.registers[SPSR] = esf->basic.xpsr; in z_gdb_entry() 80 esf->basic.r0 = ctx.registers[R0]; in z_gdb_entry() 81 esf->basic.r1 = ctx.registers[R1]; in z_gdb_entry() [all …]
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| /Zephyr-latest/arch/arm/core/cortex_m/ |
| D | coredump.c | 66 arch_blk.r.r0 = esf->basic.r0; in arch_coredump_info_dump() 67 arch_blk.r.r1 = esf->basic.r1; in arch_coredump_info_dump() 68 arch_blk.r.r2 = esf->basic.r2; in arch_coredump_info_dump() 69 arch_blk.r.r3 = esf->basic.r3; in arch_coredump_info_dump() 70 arch_blk.r.r12 = esf->basic.ip; in arch_coredump_info_dump() 71 arch_blk.r.lr = esf->basic.lr; in arch_coredump_info_dump() 72 arch_blk.r.pc = esf->basic.pc; in arch_coredump_info_dump() 73 arch_blk.r.xpsr = esf->basic.xpsr; in arch_coredump_info_dump()
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| D | fault.c | 151 if (esf->basic.pc >= start && esf->basic.pc < end) { in memory_fault_recoverable() 152 esf->basic.pc = (uint32_t)(exceptions[i].fixup); in memory_fault_recoverable() 628 uint16_t *ret_addr = (uint16_t *)esf->basic.pc; in z_arm_is_synchronous_svc() 717 if (z_arm_is_pc_valid((uintptr_t)esf->basic.pc) && z_arm_is_synchronous_svc(esf)) { in hard_fault() 718 PR_EXC("ARCH_EXCEPT with reason %x\n", esf->basic.r0); in hard_fault() 719 reason = esf->basic.r0; in hard_fault() 733 PR_EXC("ARCH_EXCEPT with reason %x\n", esf->basic.r0); in hard_fault() 734 reason = esf->basic.r0; in hard_fault() 855 sec_ret_addr = secure_esf->basic.pc; 1069 if ((esf_copy.basic.xpsr & IPSR_ISR_Msk) == 0) { [all …]
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| /Zephyr-latest/samples/basic/ |
| D | basic.rst | 1 .. zephyr:code-sample-category:: basic 5 These samples demonstrate basic functionality of the Zephyr kernel.
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| /Zephyr-latest/tests/arch/arm/arm_interrupt/src/ |
| D | arm_interrupt.c | 31 (pEsf->basic.r0 == 0) && (pEsf->basic.r1 == 1) && (pEsf->basic.r2 == 2) && in check_esf_matches_expectations() 32 (pEsf->basic.r3 == 3) && (pEsf->basic.lr == 15) && in check_esf_matches_expectations() 33 (*(uint16_t *)pEsf->basic.pc == expected_fault_instruction); in check_esf_matches_expectations() 67 if (memcmp((void *)callee_regs->psp, pEsf, offsetof(struct arch_esf, basic.xpsr)) != 0) { in check_esf_matches_expectations()
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| /Zephyr-latest/samples/basic/minimal/ |
| D | README.rst | 32 :zephyr-app: samples/basic/minimal 45 :zephyr-app: samples/basic/minimal 58 :zephyr-app: samples/basic/minimal 71 :zephyr-app: samples/basic/minimal 84 :zephyr-app: samples/basic/minimal
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| /Zephyr-latest/arch/arm/include/cortex_m/ |
| D | exception.h | 120 return (esf->basic.xpsr & IPSR_ISR_Msk) ? (true) : (false); in arch_is_in_nested_exception() 241 z_arm_coredump_fault_sp += sizeof(esf->basic); in z_arm_set_fault_sp() 254 if ((esf->basic.xpsr & SCB_CCR_STKALIGN_Msk) == SCB_CCR_STKALIGN_Msk) { in z_arm_set_fault_sp()
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| /Zephyr-latest/boards/adafruit/feather_nrf52840/doc/ |
| D | index.rst | 113 :zephyr-app: samples/basic/blinky 121 :zephyr-app: samples/basic/blinky 129 :zephyr-app: samples/basic/blinky 137 :zephyr-app: samples/basic/blinky 156 :zephyr-app: samples/basic/blinky 164 :zephyr-app: samples/basic/blinky 173 :zephyr-app: samples/basic/blinky 181 :zephyr-app: samples/basic/blinky
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| /Zephyr-latest/samples/bluetooth/central/ |
| D | README.rst | 5 Implement basic Bluetooth LE Central role functionality (scanning and connecting). 10 Application demonstrating very basic Bluetooth LE Central role functionality by scanning
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| /Zephyr-latest/samples/boards/st/power_mgmt/stop3/ |
| D | README.rst | 9 This sample is a minimum application to demonstrate basic power management 10 behavior in a basic blinking LED set up and STM32U5 STOP3 low power mode.
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| /Zephyr-latest/tests/drivers/gpio/gpio_basic_api/boards/ |
| D | imx93_evk_mimx9352_a55.overlay | 9 compatible = "test-gpio-basic-api";
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| D | stm32f3_disco.overlay | 9 compatible = "test-gpio-basic-api";
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| D | intel_rpl_p_crb.overlay | 8 compatible = "test-gpio-basic-api";
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| D | intel_rpl_s_crb.overlay | 8 compatible = "test-gpio-basic-api";
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| D | max32655evkit_max32655_m4.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32655fthr_max32655_m4.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32662evkit.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32666evkit_max32666_cpu0.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32666fthr_max32666_cpu0.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32670evkit.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32672evkit.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32672fthr.overlay | 9 compatible = "test-gpio-basic-api";
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| D | max32675evkit.overlay | 9 compatible = "test-gpio-basic-api";
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| /Zephyr-latest/tests/net/lib/lwm2m/interop/ |
| D | README.md | 144 |LightweightM2M-1.1-int-201 - Querying basic information in Plain Text |:white_check_mark:| | 145 |LightweightM2M-1.1-int-203 - Querying basic information in TLV format |:white_check_mark:| | 146 |LightweightM2M-1.1-int-204 - Querying basic information in JSON format |:white_check_mark:| | 147 |LightweightM2M-1.1-int-205 - Setting basic information in Plain Text |:white_check_mark:| | 148 |LightweightM2M-1.1-int-211 - Querying basic information in CBOR format |:white_check_mark:| | 149 |LightweightM2M-1.1-int-212 - Setting basic information in CBOR format |:white_check_mark:| | 150 |LightweightM2M-1.1-int-215 - Setting basic information in TLV format |:white_check_mark:| | 151 |LightweightM2M-1.1-int-220 - Setting basic information in JSON format |:white_check_mark:| | 167 |LightweightM2M-1.1-int-231 - Querying basic information in SenML JSON format|:white_check_mark:| | 168 |LightweightM2M-1.1-int-232 - Querying basic information in SenML CBOR format|:white_check_mark:| | [all …]
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