394 lines
14 KiB
Diff
394 lines
14 KiB
Diff
From 317ee995e9d530587bfb14439b3b1ee38d1afe77 Mon Sep 17 00:00:00 2001
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From: supperthomas <78900636@qq.com>
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Date: Fri, 6 May 2022 23:06:28 +0800
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Subject: [PATCH] add the config of RTTHREAD
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add the init link file
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---
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Kconfig | 4 +
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.../esp_system/ld/esp32c3/sections.ld.in | 26 +++
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components/freertos/port/port_common.c | 5 +
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components/freertos/port/port_systick.c | 3 +
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components/riscv/vectors.S | 220 ++++++++++++++++--
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5 files changed, 239 insertions(+), 19 deletions(-)
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diff --git a/Kconfig b/Kconfig
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index 928d274106..d368adaa37 100644
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--- a/Kconfig
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+++ b/Kconfig
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@@ -61,6 +61,10 @@ mainmenu "Espressif IoT Development Framework Configuration"
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bool
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default "y" if IDF_TARGET="linux"
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+ config IDF_RTOS_RTTHREAD
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+ bool "RT-THREAD SELECT"
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+ default "n"
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+
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config IDF_FIRMWARE_CHIP_ID
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hex
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default 0x0000 if IDF_TARGET_ESP32
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diff --git a/components/esp_system/ld/esp32c3/sections.ld.in b/components/esp_system/ld/esp32c3/sections.ld.in
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index 0ebeda06c1..8215237fff 100644
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--- a/components/esp_system/ld/esp32c3/sections.ld.in
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+++ b/components/esp_system/ld/esp32c3/sections.ld.in
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@@ -183,6 +183,32 @@ SECTIONS
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_noinit_end = ABSOLUTE(.);
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} > dram0_0_seg
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+ .stack_dummy (COPY):
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+ {
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+ . = ALIGN(8);
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+ __STACKSIZE__ = 40960;
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+ __stack_start__ = .;
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+ *(.stack*)
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+ . += __STACKSIZE__;
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+ __stack_cpu0 = .;
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+ __stack_end__ = .;
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+ } > dram0_0_seg
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+
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+ .stack_dummy (COPY):
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+ {
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+ . = ALIGN(8);
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+ __HEAPSIZE__ = 40960;
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+ __heap_start__ = .;
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+ . += __STACKSIZE__;
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+ __heap_end__ = .;
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+ /* section information for initial. */
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+ . = ALIGN(4);
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+ __rt_init_start = .;
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+ KEEP(*(SORT(.rti_fn*)))
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+ __rt_init_end = .;
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+
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+ . = ALIGN(4);
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+ } > dram0_0_seg
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/* Shared RAM */
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.dram0.bss (NOLOAD) :
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{
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diff --git a/components/freertos/port/port_common.c b/components/freertos/port/port_common.c
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index ffca3d5429..9d8159f588 100644
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--- a/components/freertos/port/port_common.c
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+++ b/components/freertos/port/port_common.c
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@@ -74,11 +74,16 @@ void esp_startup_start_app_common(void)
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esp_gdbstub_init();
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#endif // CONFIG_ESP_SYSTEM_GDBSTUB_RUNTIME
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+#ifdef CONFIG_IDF_RTOS_RTTHREAD
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+ app_main();
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+#else
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portBASE_TYPE res = xTaskCreatePinnedToCore(&main_task, "main",
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ESP_TASK_MAIN_STACK, NULL,
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ESP_TASK_MAIN_PRIO, NULL, ESP_TASK_MAIN_CORE);
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assert(res == pdTRUE);
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(void)res;
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+#endif
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+
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}
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static void main_task(void* args)
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diff --git a/components/freertos/port/port_systick.c b/components/freertos/port/port_systick.c
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index 0c14a155a1..0fa203574b 100644
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--- a/components/freertos/port/port_systick.c
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+++ b/components/freertos/port/port_systick.c
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@@ -116,6 +116,8 @@ void vPortSetupTimer(void)
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*/
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IRAM_ATTR void SysTickIsrHandler(void *arg)
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{
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+#ifdef CONFIG_IDF_RTOS_RTTHREAD
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+#else
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uint32_t cpuid = xPortGetCoreID();
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systimer_hal_context_t *systimer_hal = (systimer_hal_context_t *)arg;
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#ifdef CONFIG_PM_TRACE
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@@ -144,6 +146,7 @@ IRAM_ATTR void SysTickIsrHandler(void *arg)
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#ifdef CONFIG_PM_TRACE
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ESP_PM_TRACE_EXIT(TICK, cpuid);
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#endif
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+#endif
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}
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#endif // CONFIG_FREERTOS_SYSTICK_USES_CCOUNT
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diff --git a/components/riscv/vectors.S b/components/riscv/vectors.S
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index 1006d5bea5..963494fcb3 100644
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--- a/components/riscv/vectors.S
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+++ b/components/riscv/vectors.S
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@@ -17,6 +17,9 @@
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#include "soc/soc_caps.h"
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#include "sdkconfig.h"
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+#define STORE sw
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+#define LOAD lw
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+#define REGBYTES 4
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.equ SAVE_REGS, 32
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.equ CONTEXT_SIZE, (SAVE_REGS * 4)
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@@ -218,25 +221,27 @@ _call_panic_handler:
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*/
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.global _interrupt_handler
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.type _interrupt_handler, @function
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+#ifndef CONFIG_IDF_RTOS_RTTHREAD
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+
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_interrupt_handler:
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/* entry */
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- save_regs
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- save_mepc
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+ save_regs /* 保存寄存器 */
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+ save_mepc /* 保存MEPC */
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/* Before doing anythig preserve the stack pointer */
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/* It will be saved in current TCB, if needed */
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- mv a0, sp
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+ mv a0, sp /* 保存SP a0 = sp */
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call rtos_int_enter
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/* Before dispatch c handler, restore interrupt to enable nested intr */
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- csrr s1, mcause
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- csrr s2, mstatus
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+ csrr s1, mcause /* 保存mcause s1 = mcause */
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+ csrr s2, mstatus /* 保存mstatus s2 = mstatus */
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- /* Save the interrupt threshold level */
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- la t0, INTERRUPT_CORE0_CPU_INT_THRESH_REG
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- lw s3, 0(t0)
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+ /* Save the interrupt threshold level 保存中断嵌套层数? */
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+ la t0, INTERRUPT_CORE0_CPU_INT_THRESH_REG /* 保存mstatus t0 = &INTERRUPT_CORE0_CPU_INT_THRESH_REG */
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+ lw s3, 0(t0) /* s3 = mstatus */
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- /* Increase interrupt threshold level */
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+ /* Increase interrupt threshold level 增加中断嵌套层数*/
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li t2, 0x7fffffff
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and t1, s1, t2 /* t1 = mcause & mask */
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slli t1, t1, 2 /* t1 = mcause * 4 */
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@@ -247,8 +252,8 @@ _interrupt_handler:
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sw t2, 0(t0) /* INTERRUPT_CORE0_CPU_INT_THRESH_REG = t2 */
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fence
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- li t0, 0x8
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- csrrs t0, mstatus, t0
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+ li t0, 0x8 /* t0 = 8 */
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+ csrrs t0, mstatus, t0 /*设置状态MIE寄存器,开总中断*/
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#ifdef CONFIG_PM_TRACE
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li a0, 0 /* = ESP_PM_TRACE_IDLE */
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@@ -269,34 +274,211 @@ _interrupt_handler:
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/* call the C dispatcher */
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mv a0, sp /* argument 1, stack pointer */
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mv a1, s1 /* argument 2, interrupt number (mcause) */
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- /* mask off the interrupt flag of mcause */
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+ /* mask off the interrupt flag of mcause 屏幕异常中断*/
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li t0, 0x7fffffff
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and a1, a1, t0
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jal _global_interrupt_handler
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- /* After dispatch c handler, disable interrupt to make freertos make context switch */
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+ /* After dispatch c handler, disable interrupt to make freertos make context switch
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+ 在调用c函数之后,disable 中断让freertos能够做内容切换
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+ */
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li t0, 0x8
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- csrrc t0, mstatus, t0
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+ csrrc t0, mstatus, t0 /*清状态MIE寄存器 关总中断*/
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- /* restore the interrupt threshold level */
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+
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+ /* restore the interrupt threshold level 中断嵌套 */
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la t0, INTERRUPT_CORE0_CPU_INT_THRESH_REG
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sw s3, 0(t0)
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fence
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/* Yield to the next task is needed: */
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- mv a0, sp
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+ mv a0, sp /* a0 = sp*/
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call rtos_int_exit
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/* The next (or current) stack pointer is returned in a0 */
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- mv sp, a0
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+ mv sp, a0 /* sp = a0*/
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/* restore the rest of the registers */
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- csrw mcause, s1
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- csrw mstatus, s2
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+ csrw mcause, s1 /* mcause = s1 */
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+ csrw mstatus, s2 /* mstatus = s2 */
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restore_mepc
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restore_regs
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/* exit, this will also re-enable the interrupts */
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mret
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.size _interrupt_handler, .-_interrupt_handler
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+#else
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+_interrupt_handler:
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+ /* 此时CPU的sp = from_thread->sp */
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+ /* 注意: 在这里,并没有将mepc的值赋值为from_thread栈中的epc,但后面会赋值 */
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+ addi sp, sp, -32 * REGBYTES /* sp = sp - 32 * 4 栈指针向下偏移32个寄存器长度,用来将CPU的寄存器保存到from_thread的栈中*/
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+ STORE x1, 1 * REGBYTES(sp) /* 将CPU的x1寄存器,即ra寄存器,保存到from_thread->栈中 */
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+
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+ li t0, 0x80 /* t0 = 0x80 */
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+ STORE t0, 2 * REGBYTES(sp) /* mstatus = t0, 即关闭全局中断 */
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+
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+ /* 将 CPU 的其他寄存器的值,保存到from_thread的任务栈中 */
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+ STORE x4, 4 * REGBYTES(sp)
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+ STORE x5, 5 * REGBYTES(sp)
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+ STORE x6, 6 * REGBYTES(sp)
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+ STORE x7, 7 * REGBYTES(sp)
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+ STORE x8, 8 * REGBYTES(sp)
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+ STORE x9, 9 * REGBYTES(sp)
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+ STORE x10, 10 * REGBYTES(sp)
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+ STORE x11, 11 * REGBYTES(sp)
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+ STORE x12, 12 * REGBYTES(sp)
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+ STORE x13, 13 * REGBYTES(sp)
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+ STORE x14, 14 * REGBYTES(sp)
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+ STORE x15, 15 * REGBYTES(sp)
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+ STORE x16, 16 * REGBYTES(sp)
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+ STORE x17, 17 * REGBYTES(sp)
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+ STORE x18, 18 * REGBYTES(sp)
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+ STORE x19, 19 * REGBYTES(sp)
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+ STORE x20, 20 * REGBYTES(sp)
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+ STORE x21, 21 * REGBYTES(sp)
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+ STORE x22, 22 * REGBYTES(sp)
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+ STORE x23, 23 * REGBYTES(sp)
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+ STORE x24, 24 * REGBYTES(sp)
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+ STORE x25, 25 * REGBYTES(sp)
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+ STORE x26, 26 * REGBYTES(sp)
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+ STORE x27, 27 * REGBYTES(sp)
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+ STORE x28, 28 * REGBYTES(sp)
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+ STORE x29, 29 * REGBYTES(sp)
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+ STORE x30, 30 * REGBYTES(sp)
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+ STORE x31, 31 * REGBYTES(sp)
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+
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+ /* 备份 CPU 的 sp (这时,CPU的sp其实就是from thread的sp指针) 寄存器的值到 s0 寄存器中,下面会使用s0,恢复 CPU 的寄存器 */
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+ move s0, sp /* s0 = sp */
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+
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+ /* 在中断函数中,中断函数中调用的C函数,需要使用 sp, 这里,在中断函数中,使用的 sp 为,系统的栈资源 */
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+ /* switch to interrupt stack */
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+ la sp, __stack_end__ /* sp = _sp */
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+
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+ /* interrupt handle */
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+ /* 注意: 在调用C函数之前,比如sp的值为0x30001000, 在执行完C函数后,sp的值还是会变成 0x30001000 */
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+ call rt_interrupt_enter /* 执行所有的中断函数前,调用该函数 */
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+
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+ csrr s1, mcause
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+ csrr s2, mstatus
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+
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+ /* Save the interrupt threshold level */
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+ la t0, INTERRUPT_CORE0_CPU_INT_THRESH_REG
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+ lw s3, 0(t0)
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+
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+ li t2, 0x7fffffff
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+ and t1, s1, t2 /* t1 = mcause & mask */
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+ slli t1, t1, 2 /* t1 = mcause * 4 */
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+ la t2, INTC_INT_PRIO_REG(0)
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+ add t1, t2, t1 /* t1 = INTC_INT_PRIO_REG + 4 * mcause */
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+ lw t2, 0(t1) /* t2 = INTC_INT_PRIO_REG[mcause] */
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+ addi t2, t2, 1 /* t2 = t2 +1 */
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+ sw t2, 0(t0) /* INTERRUPT_CORE0_CPU_INT_THRESH_REG = t2 */
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+ fence
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+
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+ li t0, 0x8
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+ csrrs t0, mstatus, t0
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+
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+ /* call the C dispatcher */
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+ mv a0, sp /* argument 1, stack pointer */
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+ mv a1, s1 /* argument 2, interrupt number (mcause) */
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+ /* mask off the interrupt flag of mcause */
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+ li t0, 0x7fffffff
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+ and a1, a1, t0
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+ jal _global_interrupt_handler
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+
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+ li t0, 0x8
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+ csrrc t0, mstatus, t0
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+
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+ /* restore the interrupt threshold level */
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+ la t0, INTERRUPT_CORE0_CPU_INT_THRESH_REG
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+ sw s3, 0(t0)
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+ fence
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+
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+ call rt_interrupt_leave /* 执行所有的中断函数后,调用该函数 */
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+
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+ /* 上面,将保存执行中断服务函数之前的CPU的sp寄存器到了s0所指向的位置处,当执行完中断服务函数,需要将之前的CPU寄存器,恢复一下,此时sp又变成了from thread的sp了 */
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+ move sp, s0 /* sp = s0 */
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+
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+ /* 下面两句话,相当于将 rt_thread_switch_interrupt_flag 值,赋值给了s2 */
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+ /* 将 rt_thread_switch_interrupt_flag 的地址值,赋值给 s0 寄存器*/
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+ la s0, rt_thread_switch_interrupt_flag /* s0 = &rt_thread_switch_interrupt_flag */
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+ /* 将 s0 所指向的地址处的内容,取出来,赋值给 s2 寄存器,其实就是将 rt_thread_switch_interrupt_flag 的值,赋值给了 s2 寄存器*/
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+ lw s2, 0(s0) /* s2 = *s0 = rt_thread_switch_interrupt_flag */
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+
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+ /* 如果 s2的值,即 rt_thread_switch_interrupt_flag 值,如果不为0,则需要继续执行下一条指令,如果为0,则需要跳转到 spurious_interrupt 标号处 执行 */
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+ /* 如果 s2的值等于0,rt_thread_switch_interrupt_flag等于0, 则不需要在中断处理函数中,进行上下文切换,反之则需要 */
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+ /* 如果不需要上下文切换, */
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+
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+ /* 在这里,跳转到 spurious_interrupt的话,是不会进行上下文切换的,因为,此时CPU的sp指针还是from线程的*/
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+ beqz s2, spurious_interrupt /* if (s2 == 0) goto spurious_interrupt; else 执行下一条语句*/
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+
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+ /* 需要上下文切换: 主要目的是将CPU的sp指针,赋值为to_thread的sp */
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+
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+ /* 将 s0 所执向的地址的内容设置为0, 也就是,将变量 rt_thread_switch_interrupt_flag 赋值为了 0 */
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+ /* s0存放的值是 rt_thread_switch_interrupt_flag 变量的地址*/
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+ sw zero, 0(s0) /* *s0 = 0; 也就是 rt_thread_switch_interrupt_flag = 0 */
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+ /* 将 mepc 的值,赋值给 a0 寄存器,mepc 的值是,跳转到中断函数执行之前的 PC 指针 */
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+ /* 这时的mpec其实,还是from线程,在跳转到中断执行前的一个PC地址 */
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+ csrr a0, mepc /* a0 = mepc */
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+
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+ /* 将 mpec 的值写回到freom thread任务栈中的 epc 中,待后续,恢复from线程时,使用 */
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+ STORE a0, 0 * REGBYTES(sp) /* from_thread->sp->epc = a0 ,中断入口处*/
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+
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+ /* 将from_thread的sp指针,赋值为CPU的sp指针 */
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+ la s0, rt_interrupt_from_thread /* s0 = &rt_interrupt_from_thread 注意: rt_interrupt_from_thread = &(from_thread->sp) */
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+ LOAD s1, 0(s0) /* s1 = rt_interrupt_from_thread,也就是s1 = &(from_thread->sp) */
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+ STORE sp, 0(s1) /* from_thread->sp = sp*/
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+
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+ /* 接下来,需要开始恢复CPU的sp为to_thread的sp了 */
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+ la s0, rt_interrupt_to_thread /* s0 = &rt_interrupt_to_thread 注意: rt_interrupt_to_thread = &(to_thred->sp)*/
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+ LOAD s1, 0(s0) /* s1 = rt_interrupt_to_thread, 也就是s1 = &(to_thred->sp) */
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+ LOAD sp, 0(s1) /* sp = (to_thred->sp)*/
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+
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+ /* 将CPU的 mepc设置为to_thred的mepc,待中断退出,执行mret指令后,将从该地址开始执行 */
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+ LOAD a0, 0 * REGBYTES(sp) /* a0 = to_thread的mepc的值*/
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+ csrw mepc, a0 /* mepc = a0 */
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+
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+
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+spurious_interrupt:
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+ LOAD x1, 1 * REGBYTES(sp)
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+
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+ /* Remain in M-mode after mret */
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+ li t0, 0x00001800
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+ csrs mstatus, t0
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+ LOAD t0, 2 * REGBYTES(sp)
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+ csrs mstatus, t0
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+
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+ LOAD x4, 4 * REGBYTES(sp)
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+ LOAD x5, 5 * REGBYTES(sp)
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+ LOAD x6, 6 * REGBYTES(sp)
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+ LOAD x7, 7 * REGBYTES(sp)
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+ LOAD x8, 8 * REGBYTES(sp)
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+ LOAD x9, 9 * REGBYTES(sp)
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+ LOAD x10, 10 * REGBYTES(sp)
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+ LOAD x11, 11 * REGBYTES(sp)
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+ LOAD x12, 12 * REGBYTES(sp)
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+ LOAD x13, 13 * REGBYTES(sp)
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+ LOAD x14, 14 * REGBYTES(sp)
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+ LOAD x15, 15 * REGBYTES(sp)
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+ LOAD x16, 16 * REGBYTES(sp)
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+ LOAD x17, 17 * REGBYTES(sp)
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+ LOAD x18, 18 * REGBYTES(sp)
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+ LOAD x19, 19 * REGBYTES(sp)
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+ LOAD x20, 20 * REGBYTES(sp)
|
||
+ LOAD x21, 21 * REGBYTES(sp)
|
||
+ LOAD x22, 22 * REGBYTES(sp)
|
||
+ LOAD x23, 23 * REGBYTES(sp)
|
||
+ LOAD x24, 24 * REGBYTES(sp)
|
||
+ LOAD x25, 25 * REGBYTES(sp)
|
||
+ LOAD x26, 26 * REGBYTES(sp)
|
||
+ LOAD x27, 27 * REGBYTES(sp)
|
||
+ LOAD x28, 28 * REGBYTES(sp)
|
||
+ LOAD x29, 29 * REGBYTES(sp)
|
||
+ LOAD x30, 30 * REGBYTES(sp)
|
||
+ LOAD x31, 31 * REGBYTES(sp)
|
||
+
|
||
+ addi sp, sp, 32 * REGBYTES
|
||
+ mret
|
||
+ .size _interrupt_handler, .-_interrupt_handler
|
||
+#endif
|
||
--
|
||
2.35.1.windows.2
|
||
|