提交 2d56a27c 编写于 作者: z13955633063's avatar z13955633063

修改: ../../libcpu/risc-v/e310/context_gcc.S

	enable interrupt after return form rt_hw_context_switch
上级 3c51848d
......@@ -15,13 +15,7 @@ static void led_thread_entry(void* parameter)
unsigned int count=0;
rt_hw_led_init();
rt_hw_interrupt_enable(0x888);
set_csr(mstatus, MSTATUS_MIE);
asm(
"csrr a5, mie"
);
rt_kprintf("core freq at %d Hz\n", get_cpu_freq());
rt_kprintf("core freq at %d Hz\n", get_cpu_freq());
while (1)
{
/* led1 on */
......@@ -29,7 +23,8 @@ static void led_thread_entry(void* parameter)
/* rt_kprintf("led on, count : %d\r\n",count);*/
#endif
count++;
rt_thread_delay( RT_TIMER_TICK_PER_SECOND*2 ); /* sleep 0.5 second and switch to other thread */
rt_thread_delay( RT_TIMER_TICK_PER_SECOND/2 ); /* sleep 0.5 second and switch to other thread */
while(1);
rt_hw_led_on(0);
/* led1 off */
......@@ -41,7 +36,7 @@ static void led_thread_entry(void* parameter)
rt_thread_delay( RT_TIMER_TICK_PER_SECOND*2);
}
}
static rt_uint8_t led_stack[ 512 ];
static rt_uint8_t led_stack[ 2048 ];
static struct rt_thread led_thread;
void rt_application_init()
{
......
......@@ -30,7 +30,6 @@ static void rtthread_startup(void)
rt_thread_idle_init();
/* start scheduler */
while(1);
rt_system_scheduler_start();
/* never reach here */
......
......@@ -31,7 +31,6 @@ static void rt_hw_timer_init(void)
CLINT_REG(CLINT_MTIME) = 0x0;
CLINT_REG(CLINT_MTIMECMP) = 0x10000;
volatile uint64_t * mtimecmp = (uint64_t*) (CLINT_CTRL_ADDR + CLINT_MTIMECMP);
set_csr(mstatus, MSTATUS_MIE);
*mtimecmp = 0x20000;
return;
}
......
......@@ -74,6 +74,7 @@ static void _puts(const char * s) {
void rt_hw_led_on(int led)
{
/*
// Make sure the HFROSC is on before the next line:
PRCI_REG(PRCI_HFROSCCFG) |= ROSC_EN(1);
// Run off 16 MHz Crystal for accuracy. Note that the
......@@ -82,17 +83,8 @@ void rt_hw_led_on(int led)
PRCI_REG(PRCI_PLLCFG) |= (PLL_SEL(1));
// Turn off HFROSC to save power
PRCI_REG(PRCI_HFROSCCFG) &= ~(ROSC_EN(1));
*/
// Configure UART to print
GPIO_REG(GPIO_OUTPUT_VAL) |= IOF0_UART0_MASK;
GPIO_REG(GPIO_OUTPUT_EN) |= IOF0_UART0_MASK;
GPIO_REG(GPIO_IOF_SEL) &= ~IOF0_UART0_MASK;
GPIO_REG(GPIO_IOF_EN) |= IOF0_UART0_MASK;
// 115200 Baud Rate
UART0_REG(UART_REG_DIV) = 138;
UART0_REG(UART_REG_TXCTRL) = UART_TXEN;
UART0_REG(UART_REG_RXCTRL) = UART_RXEN;
// Wait a bit to avoid corruption on the UART.
// (In some cases, switching to the IOF can lead
......@@ -107,7 +99,6 @@ void rt_hw_led_on(int led)
//_puts(*((const char **) 0x100C));
//_puts("\n\r");
_puts(led_msg);
uint16_t r=0xFF;
uint16_t g=0;
uint16_t b=0;
......@@ -115,6 +106,7 @@ void rt_hw_led_on(int led)
// Set up RGB PWM
/*
PWM1_REG(PWM_CFG) = 0;
// To balance the power consumption, make one left, one right, and one center aligned.
PWM1_REG(PWM_CFG) = (PWM_CFG_ENALWAYS) | (PWM_CFG_CMP2CENTER);
......@@ -124,16 +116,10 @@ void rt_hw_led_on(int led)
// the LEDs are intentionally left somewhat dim,
// as the full brightness can be painful to look at.
PWM1_REG(PWM_CMP0) = 0;
*/
GPIO_REG(GPIO_IOF_SEL) |= ( (1 << GREEN_LED_OFFSET) | (1 << BLUE_LED_OFFSET) | (1 << RED_LED_OFFSET));
GPIO_REG(GPIO_IOF_EN ) |= ( (1 << GREEN_LED_OFFSET) | (1 << BLUE_LED_OFFSET) | (1 << RED_LED_OFFSET));
GPIO_REG(GPIO_OUTPUT_XOR) &= ~( (1 << GREEN_LED_OFFSET) | (1 << BLUE_LED_OFFSET));
GPIO_REG(GPIO_OUTPUT_XOR) |= (1 << RED_LED_OFFSET);
while(1){
volatile uint64_t * now = (volatile uint64_t*)(CLINT_CTRL_ADDR + CLINT_MTIME);
volatile uint64_t then = *now + 100;
while (*now < then) { }
if(r > 0 && b == 0){
r--;
......
......@@ -63,7 +63,7 @@ rt_uint32_t rt_hw_interrupt_get_active(rt_uint32_t fiq_irq)
{
//volatile rt_uint32_t irqstat;
rt_uint32_t id;
return id;
return 0;
}
void rt_hw_interrupt_ack(rt_uint32_t fiq_irq, rt_uint32_t id)
{
......
......@@ -17,9 +17,10 @@
/* SECTION: RT_DEBUG */
/* Thread Debug */
#define RT_DEBUG
#define RT_DEBUG_TIMER 1
/*#define RT_DEBUG_IRQ 1*/
//#define SCHEDULER_DEBUG
/* #define RT_THREAD_DEBUG */
#define RT_DEBUG_SCHEDULER 1
#define RT_DEBUG_THREAD 1
#define RT_USING_OVERFLOW_CHECK
......@@ -31,7 +32,7 @@
/* Using Software Timer */
#define RT_USING_TIMER_SOFT
#define RT_TIMER_THREAD_PRIO 8
#define RT_TIMER_THREAD_STACK_SIZE 512
#define RT_TIMER_THREAD_STACK_SIZE 1024
#define RT_TIMER_TICK_PER_SECOND 10
/* SECTION: IPC */
......@@ -91,7 +92,7 @@
/* Using symbol table */
#define FINSH_USING_SYMTAB
#define FINSH_USING_DESCRIPTION
#define FINSH_THREAD_STACK_SIZE 4096
#define FINSH_THREAD_STACK_SIZE 1024
#define FINSH_USING_MSH
#define FINSH_USING_MSH_ONLY
......@@ -259,5 +260,5 @@
//#define RT_USING_CPU_FFS
#define RT_USING_COMPONENTS_INIT
#define IDLE_THREAD_STACK_SIZE 512
#define IDLE_THREAD_STACK_SIZE 1024
#endif
;/*
; * File : context_iar.S
; * File : context_gcc.S
; * This file is part of RT-Thread RTOS
; * COPYRIGHT (C) 2006, RT-Thread Development Team
; *
......@@ -34,7 +34,6 @@ rt_hw_interrupt_disable:
sw a5, (sp)
csrr a0, mie
li a5, MIP_MEIP|MIP_MTIP|MIP_MSIP
csrrc a5, mie, a5
/* csrrc a5, mstatus, MSTATUS_MIE*/
lw a5, (sp)
addi sp, sp, 12
......@@ -95,9 +94,11 @@ rt_hw_context_switch:
STORE x1, 31*REGBYTES(sp)
STORE x10, 29*REGBYTES(sp)
STORE x1, 30*REGBYTES(sp)
# Remain in M-mode after mret
li t0, MSTATUS_MPP
/*
*Remain in M-mode after mret
*enable interrupt in M-mode
*/
li t0, MSTATUS_MPIE|MSTATUS_MPP
csrs mstatus, t0
LOAD sp, (a1)
......@@ -130,7 +131,7 @@ rt_hw_context_switch:
LOAD x27, 27*REGBYTES(sp)
LOAD x28, 28*REGBYTES(sp)
LOAD x10, 31*REGBYTES(sp)
csrw mepc,a0
csrw mepc,x10
LOAD x10, 29*REGBYTES(sp)
LOAD x1, 30*REGBYTES(sp)
......@@ -194,16 +195,21 @@ rt_hw_context_switch_interrupt:
sw s0, 12(sp)
sw a0, 8(sp)
sw a5, 4(sp)
la a0, rt_thread_switch_interrupt_flag
beqz a5, _reswitch
lw a5, (a0)
bnez a5, _reswitch
li a5, 1
sw a5, (a0)
la a5, rt_interrupt_from_thread
lw a0, 8(sp)
sw a0, (a5)
_reswitch:
la a5, rt_interrupt_to_thread
sw a1, (a5)
lw a5, 4(sp)
lw a0, 8(sp)
lw s0, 12(sp)
......
// See LICENSE for license details.
;/*
; * File : start_gcc.S
; * This file is part of RT-Thread RTOS
; * COPYRIGHT (C) 2006, RT-Thread Development Team
; *
; * This program is free software; you can redistribute it and/or modify
; * it under the terms of the GNU General Public License as published by
; * the Free Software Foundation; either version 2 of the License, or
; * (at your option) any later version.
; *
; * This program is distributed in the hope that it will be useful,
; * but WITHOUT ANY WARRANTY; without even the implied warranty of
; * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
; * GNU General Public License for more details.
; *
; * You should have received a copy of the GNU General Public License along
; * with this program; if not, write to the Free Software Foundation, Inc.,
; * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
; *
; * Change Logs:
; * Date Author Notes
; * 2017-07-16 zhangjun for hifive1
; */
#include <sifive/smp.h>
/* This is defined in sifive/platform.h, but that can't be included from
* assembly. */
#define CLINT_CTRL_ADDR 0x02000000
.section .init
.globl _start
.type _start,@function
.section .init
.globl _start
.type _start,@function
_start:
.cfi_startproc
......@@ -119,7 +138,7 @@ _start:
.align 2
.global trap_entry
trap_entry:
addi sp, sp, -32*REGBYTES
addi sp, sp, -32*REGBYTES
STORE x30, 1*REGBYTES(sp)
STORE x31, 2*REGBYTES(sp)
......@@ -151,8 +170,8 @@ trap_entry:
STORE x28, 28*REGBYTES(sp)
STORE x10, 29*REGBYTES(sp)
STORE x1, 30*REGBYTES(sp)
csrr x1, mepc
STORE x1, 31*REGBYTES(sp)
csrr x10, mepc
STORE x10, 31*REGBYTES(sp)
call rt_interrupt_enter
......@@ -162,7 +181,7 @@ trap_entry:
la a0, rt_thread_switch_interrupt_flag
lw a1, (a0)
beqz a1, rt_hw_context_switch_interrupt_do
bnez a1, rt_hw_context_switch_interrupt_do
# Remain in M-mode after mret
li t0, MSTATUS_MPP
......@@ -197,17 +216,23 @@ trap_entry:
LOAD x27, 27*REGBYTES(sp)
LOAD x28, 28*REGBYTES(sp)
LOAD x10, 31*REGBYTES(sp)
csrw mepc, a0
csrw mepc,x10
LOAD x10, 29*REGBYTES(sp)
LOAD x1, 30*REGBYTES(sp)
addi sp, sp, 32*REGBYTES
addi sp, sp, 32*REGBYTES
mret
rt_hw_context_switch_interrupt_do:
LOAD a0, rt_interrupt_to_thread
LOAD sp, (a0)
la a0, rt_thread_switch_interrupt_flag
lw a5, (a0)
li a5, 0
sw a5, (a0)
LOAD a0, rt_interrupt_to_thread
LOAD sp, (a0)
LOAD x30, 1*REGBYTES(sp)
LOAD x31, 2*REGBYTES(sp)
LOAD x3, 3*REGBYTES(sp)
......@@ -237,10 +262,9 @@ rt_hw_context_switch_interrupt_do:
LOAD x27, 27*REGBYTES(sp)
LOAD x28, 28*REGBYTES(sp)
LOAD x10, 31*REGBYTES(sp)
csrw mepc, a0
csrw mepc,x10
LOAD x10, 29*REGBYTES(sp)
LOAD x1, 30*REGBYTES(sp)
addi sp, sp, 32*REGBYTES
mret
/*
* File : idle.c
* This file is part of RT-Thread RTOS
* COPYRIGHT (C) 2006 - 2012, RT-Thread Development Team
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along
* with this program; if not, write to the Free Software Foundation, Inc.,
* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*
* Change Logs:
* Date Author Notes
* 2006-03-23 Bernard the first version
* 2010-11-10 Bernard add cleanup callback function in thread exit.
* 2012-12-29 Bernard fix compiling warning.
* 2013-12-21 Grissiom let rt_thread_idle_excute loop until there is no
* dead thread.
* 2016-08-09 ArdaFu add method to get the handler of the idle thread.
*/
#include <rthw.h>
#include <rtthread.h>
#if defined (RT_USING_HOOK)
#ifndef RT_USING_IDLE_HOOK
#define RT_USING_IDLE_HOOK
#endif
#endif
#ifndef IDLE_THREAD_STACK_SIZE
#if defined (RT_USING_IDLE_HOOK) || defined(RT_USING_HEAP)
#define IDLE_THREAD_STACK_SIZE 256
#else
#define IDLE_THREAD_STACK_SIZE 128
#endif
#endif
static struct rt_thread idle;
ALIGN(RT_ALIGN_SIZE)
static rt_uint8_t rt_thread_stack[IDLE_THREAD_STACK_SIZE];
extern rt_list_t rt_thread_defunct;
#ifdef RT_USING_IDLE_HOOK
static void (*rt_thread_idle_hook)();
/**
* @ingroup Hook
* This function sets a hook function to idle thread loop. When the system performs
* idle loop, this hook function should be invoked.
*
* @param hook the specified hook function
*
* @note the hook function must be simple and never be blocked or suspend.
*/
void rt_thread_idle_sethook(void (*hook)(void))
{
rt_thread_idle_hook = hook;
}
#endif
/* Return whether there is defunctional thread to be deleted. */
rt_inline int _has_defunct_thread(void)
{
/* The rt_list_isempty has prototype of "int rt_list_isempty(const rt_list_t *l)".
* So the compiler has a good reason that the rt_thread_defunct list does
* not change within rt_thread_idle_excute thus optimize the "while" loop
* into a "if".
*
* So add the volatile qualifier here. */
const volatile rt_list_t *l = (const volatile rt_list_t*)&rt_thread_defunct;
return l->next != l;
}
/**
* @ingroup Thread
*
* This function will perform system background job when system idle.
*/
void rt_thread_idle_excute(void)
{
/* Loop until there is no dead thread. So one call to rt_thread_idle_excute
* will do all the cleanups. */
while (_has_defunct_thread())
{
rt_base_t lock;
rt_thread_t thread;
#ifdef RT_USING_MODULE
rt_module_t module = RT_NULL;
#endif
RT_DEBUG_NOT_IN_INTERRUPT;
/* disable interrupt */
lock = rt_hw_interrupt_disable();
/* re-check whether list is empty */
if (_has_defunct_thread())
{
/* get defunct thread */
thread = rt_list_entry(rt_thread_defunct.next,
struct rt_thread,
tlist);
#ifdef RT_USING_MODULE
/* get thread's parent module */
module = (rt_module_t)thread->module_id;
/* if the thread is module's main thread */
if (module != RT_NULL && module->module_thread == thread)
{
/* detach module's main thread */
module->module_thread = RT_NULL;
}
#endif
/* remove defunct thread */
rt_list_remove(&(thread->tlist));
/* invoke thread cleanup */
if (thread->cleanup != RT_NULL)
thread->cleanup(thread);
/* if it's a system object, not delete it */
if (rt_object_is_systemobject((rt_object_t)thread) == RT_TRUE)
{
/* enable interrupt */
rt_hw_interrupt_enable(lock);
return;
}
}
else
{
/* enable interrupt */
rt_hw_interrupt_enable(lock);
/* may the defunct thread list is removed by others, just return */
return;
}
/* enable interrupt */
rt_hw_interrupt_enable(lock);
#ifdef RT_USING_HEAP
#if defined(RT_USING_MODULE) && defined(RT_USING_SLAB)
/* the thread belongs to an application module */
if (thread->flags & RT_OBJECT_FLAG_MODULE)
rt_module_free((rt_module_t)thread->module_id, thread->stack_addr);
else
#endif
/* release thread's stack */
RT_KERNEL_FREE(thread->stack_addr);
/* delete thread object */
rt_object_delete((rt_object_t)thread);
#endif
#ifdef RT_USING_MODULE
if (module != RT_NULL)
{
extern rt_err_t rt_module_destroy(rt_module_t module);
/* if sub thread list and main thread are all empty */
if ((module->module_thread == RT_NULL) &&
rt_list_isempty(&module->module_object[RT_Object_Class_Thread].object_list))
{
module->nref --;
}
/* destroy module */
if (module->nref == 0)
rt_module_destroy(module);
}
#endif
}
}
static void rt_thread_idle_entry(void *parameter)
{
while (1)
{
#ifdef RT_USING_IDLE_HOOK
if (rt_thread_idle_hook != RT_NULL)
{
rt_thread_idle_hook();
}
#endif
rt_thread_idle_excute();
}
}
/**
* @ingroup SystemInit
*
* This function will initialize idle thread, then start it.
*
* @note this function must be invoked when system init.
*/
void rt_thread_idle_init(void)
{
/* initialize thread */
rt_thread_init(&idle,
"tidle",
rt_thread_idle_entry,
RT_NULL,
&rt_thread_stack[0],
sizeof(rt_thread_stack),
RT_THREAD_PRIORITY_MAX - 1,
32);
/* startup */
rt_thread_startup(&idle);
}
/**
* @ingroup Thread
*
* This function will get the handler of the idle thread.
*
*/
rt_thread_t rt_thread_idle_gethandler(void)
{
return (rt_thread_t)(&idle);
}
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