rt-thread/bsp/hpmicro/libraries/hpm_sdk/soc/HPM6280/toolchains/reset.c

159 lines
4.6 KiB
C

/*
* Copyright (c) 2021-2023 HPMicro
* SPDX-License-Identifier: BSD-3-Clause
*/
#include <stdint.h>
#include "hpm_common.h"
#include "hpm_soc.h"
#include "hpm_l1c_drv.h"
#include "hpm_interrupt.h"
extern void system_init(void);
#ifndef MAIN_ENTRY
#define MAIN_ENTRY main
#endif
extern int MAIN_ENTRY(void);
__attribute__((weak)) void _clean_up(void)
{
/* clean up plic, it will help while debugging */
disable_irq_from_intc();
intc_m_set_threshold(0);
for (uint32_t irq = 0; irq < 128; irq++) {
intc_m_complete_irq(irq);
}
/* clear any bits left in plic enable register */
for (uint32_t i = 0; i < 4; i++) {
*(volatile uint32_t *)(HPM_PLIC_BASE + HPM_PLIC_ENABLE_OFFSET + (i << 2)) = 0;
}
}
__attribute__((weak)) void c_startup(void)
{
uint32_t i, size;
extern uint8_t __bss_start__[], __bss_end__[];
extern uint8_t __tdata_start__[], __tdata_end__[];
extern uint8_t __data_start__[], __data_end__[];
extern uint8_t __ramfunc_start__[], __ramfunc_end__[];
extern uint8_t __noncacheable_bss_start__[], __noncacheable_bss_end__[];
extern uint8_t __noncacheable_init_start__[], __noncacheable_init_end__[];
extern uint8_t __data_load_addr__[], __tdata_load_addr__[];
extern uint8_t __fast_load_addr__[], __noncacheable_init_load_addr__[];
#if defined(FLASH_XIP) || defined(FLASH_UF2)
extern uint8_t __vector_ram_start__[], __vector_ram_end__[], __vector_load_addr__[];
size = __vector_ram_end__ - __vector_ram_start__;
for (i = 0; i < size; i++) {
*(__vector_ram_start__ + i) = *(__vector_load_addr__ + i);
}
#endif
/* bss section */
size = __bss_end__ - __bss_start__;
for (i = 0; i < size; i++) {
*(__bss_start__ + i) = 0;
}
/* noncacheable bss section */
size = __noncacheable_bss_end__ - __noncacheable_bss_start__;
for (i = 0; i < size; i++) {
*(__noncacheable_bss_start__ + i) = 0;
}
/* data section LMA: etext */
size = __data_end__ - __data_start__;
for (i = 0; i < size; i++) {
*(__data_start__ + i) = *(__data_load_addr__ + i);
}
/* ramfunc section LMA: etext + data length */
size = __ramfunc_end__ - __ramfunc_start__;
for (i = 0; i < size; i++) {
*(__ramfunc_start__ + i) = *(__fast_load_addr__ + i);
}
/* tdata section LMA: etext + data length + ramfunc length */
size = __tdata_end__ - __tdata_start__;
for (i = 0; i < size; i++) {
*(__tdata_start__ + i) = *(__tdata_load_addr__ + i);
}
/* noncacheable init section LMA: etext + data length + ramfunc legnth + tdata length*/
size = __noncacheable_init_end__ - __noncacheable_init_start__;
for (i = 0; i < size; i++) {
*(__noncacheable_init_start__ + i) = *(__noncacheable_init_load_addr__ + i);
}
}
__attribute__((weak)) int main(void)
{
while (1) {
;
}
}
__attribute__((weak)) void reset_handler(void)
{
fencei();
/* Call platform specific hardware initialization */
system_init();
/* Entry function */
MAIN_ENTRY();
}
/*
* When compiling C++ code with static objects, the compiler inserts
* a call to __cxa_atexit() with __dso_handle as one of the arguments.
* The dummy versions of these symbols should be provided.
*/
__attribute__((weak)) void __cxa_atexit(void (*arg1)(void *), void *arg2, void *arg3)
{
(void) arg1;
(void) arg2;
(void) arg3;
}
#if (!defined(__SEGGER_RTL_VERSION) || defined(__riscv_xandes)) && !defined(__ICCRISCV__)
void *__dso_handle = (void *) &__dso_handle;
#endif
__attribute__((weak)) void _init(void)
{
}
#ifdef __ICCRISCV__
int __low_level_init(void)
{
#ifdef IAR_MANUAL_COPY /* Enable this code snippet if the .isr_vector and .vector_table need to be copied to RAM manually */
#pragma section = ".isr_vector"
#pragma section = ".isr_vector_init"
#pragma section = ".vector_table"
#pragma section = ".vector_table_init"
/* Initialize section .isr_vector, section .vector_table */
uint8_t *__isr_vector_ram_start = __section_begin(".isr_vector");
uint32_t __isr_vector_ram_size = __section_size(".isr_vector");
uint8_t *__isr_vector_rom_start = __section_begin(".isr_vector_init");
for (uint32_t i = 0; i < __isr_vector_ram_size; i++) {
__isr_vector_ram_start[i] = __isr_vector_rom_start[i];
}
uint8_t *__vector_table_ram_start = __section_begin(".vector_table");
uint32_t __vector_table_ram_size = __section_size(".vector_table");
uint8_t *__vector_rom_start = __section_begin(".vector_table_init");
for (uint32_t i = 0; i < __vector_table_ram_size; i++) {
__vector_table_ram_start[i] = __vector_rom_start[i];
}
#endif
return 1;
}
#endif