event_simple.c 4.1 KB
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/*
 * Copyright (c) 2006-2021, RT-Thread Development Team
 *
 * SPDX-License-Identifier: Apache-2.0
 *
 * Change Logs:
 *
 */
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/*
 * 程序清单:事件例程
 *
 * 这个程序会创建3个动态线程及初始化一个静态事件对象
 * 一个线程等于事件对象上以接收事件;
 * 一个线程定时发送事件 (事件3)
 * 一个线程定时发送事件 (事件5)
 */
#include <rtthread.h>
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#include <sys/time.h>
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#include "tc_comm.h"

/* 指向线程控制块的指针 */
static rt_thread_t tid1 = RT_NULL;
static rt_thread_t tid2 = RT_NULL;
static rt_thread_t tid3 = RT_NULL;

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/* 事件控制块 */
static struct rt_event event;
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/* 线程1入口函数 */
static void thread1_entry(void *param)
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{
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    rt_uint32_t e;

    while (1)
    {
        /* receive first event */
        if (rt_event_recv(&event, ((1 << 3) | (1 << 5)),
                          RT_EVENT_FLAG_AND | RT_EVENT_FLAG_CLEAR,
                          RT_WAITING_FOREVER, &e) == RT_EOK)
        {
            rt_kprintf("thread1: AND recv event 0x%x\n", e);
        }

        rt_kprintf("thread1: delay 1s to prepare second event\n");
        rt_thread_delay(10);

        /* receive second event */
        if (rt_event_recv(&event, ((1 << 3) | (1 << 5)),
                          RT_EVENT_FLAG_OR | RT_EVENT_FLAG_CLEAR,
                          RT_WAITING_FOREVER, &e) == RT_EOK)
        {
            rt_kprintf("thread1: OR recv event 0x%x\n", e);
        }

        rt_thread_delay(5);
    }
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}

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/* 线程2入口函数 */
static void thread2_entry(void *param)
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{
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    while (1)
    {
        rt_kprintf("thread2: send event1\n");
        rt_event_send(&event, (1 << 3));
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        rt_thread_delay(10);
    }
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}

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/* 线程3入口函数 */
static void thread3_entry(void *param)
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{
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    while (1)
    {
        rt_kprintf("thread3: send event2\n");
        rt_event_send(&event, (1 << 5));
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        rt_thread_delay(20);
    }
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}

int event_simple_init()
{
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    /* 初始化事件对象 */
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    rt_event_init(&event, "event", RT_IPC_FLAG_PRIO);
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    /* 创建线程1 */
    tid1 = rt_thread_create("t1",
                            thread1_entry, RT_NULL, /* 线程入口是thread1_entry, 入口参数是RT_NULL */
                            THREAD_STACK_SIZE, THREAD_PRIORITY, THREAD_TIMESLICE);
    if (tid1 != RT_NULL)
        rt_thread_startup(tid1);
    else
        tc_stat(TC_STAT_END | TC_STAT_FAILED);

    /* 创建线程2 */
    tid2 = rt_thread_create("t2",
                            thread2_entry, RT_NULL, /* 线程入口是thread2_entry, 入口参数是RT_NULL */
                            THREAD_STACK_SIZE, THREAD_PRIORITY, THREAD_TIMESLICE);
    if (tid2 != RT_NULL)
        rt_thread_startup(tid2);
    else
        tc_stat(TC_STAT_END | TC_STAT_FAILED);

    /* 创建线程3 */
    tid3 = rt_thread_create("t3",
                            thread3_entry, RT_NULL, /* 线程入口是thread3_entry, 入口参数是RT_NULL */
                            THREAD_STACK_SIZE, THREAD_PRIORITY, THREAD_TIMESLICE);
    if (tid3 != RT_NULL)
        rt_thread_startup(tid3);
    else
        tc_stat(TC_STAT_END | TC_STAT_FAILED);

    return 0;
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}

#ifdef RT_USING_TC
static void _tc_cleanup()
{
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    /* 调度器上锁,上锁后,将不再切换到其他线程,仅响应中断 */
    rt_enter_critical();
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    /* 删除线程 */
    if (tid1 != RT_NULL && tid1->stat != RT_THREAD_CLOSE)
        rt_thread_delete(tid1);
    if (tid2 != RT_NULL && tid2->stat != RT_THREAD_CLOSE)
        rt_thread_delete(tid2);
    if (tid3 != RT_NULL && tid3->stat != RT_THREAD_CLOSE)
        rt_thread_delete(tid3);
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    /* 执行事件对象脱离 */
    rt_event_detach(&event);
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    /* 调度器解锁 */
    rt_exit_critical();
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    /* 设置TestCase状态 */
    tc_done(TC_STAT_PASSED);
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}

int _tc_event_simple()
{
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    /* 设置TestCase清理回调函数 */
    tc_cleanup(_tc_cleanup);
    event_simple_init();
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    /* 返回TestCase运行的最长时间 */
    return 100;
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}
/* 输出函数命令到finsh shell中 */
FINSH_FUNCTION_EXPORT(_tc_event_simple, a simple event example);
#else
/* 用户应用入口 */
int rt_application_init()
{
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    event_simple_init();
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    return 0;
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}
#endif