update testcase for kernel.
git-svn-id: https://rt-thread.googlecode.com/svn/trunk@1849 bbd45198-f89e-11dd-88c7-29a3b14d5316
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@ -31,9 +31,9 @@ timer_timeout.c
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heap_malloc.c
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heap_realloc.c
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memp_simple.c
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tc_sample.c
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""")
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CPPDEFINES = ['RT_USING_TC']
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group = DefineGroup('examples', src, depend = [''], CPPDEFINES = CPPDEFINES)
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group = DefineGroup('examples', src, depend = ['RT_USING_TC'])
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Return('group')
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@ -67,6 +67,7 @@ void tc_thread_entry(void* parameter)
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}
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}
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rt_kprintf("RT-Thread TestCase Running Done!\n");
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/* detach tc semaphore */
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rt_sem_detach(&_tc_sem);
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}
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@ -0,0 +1,62 @@
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#include <rtthread.h>
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#include "tc_comm.h"
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static rt_thread_t tid = RT_NULL;
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static void sample_thread(void* parameter)
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{
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rt_kprintf("I'm sample!\n");
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}
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static void sample_thread_cleanup(struct rt_thread *p)
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{
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tid = RT_NULL;
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tc_done(TC_STAT_PASSED);
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}
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int sample_init()
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{
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tid = rt_thread_create("t",
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sample_thread, RT_NULL,
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THREAD_STACK_SIZE, THREAD_PRIORITY, THREAD_TIMESLICE);
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if (tid != RT_NULL)
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{
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rt_thread_startup(tid);
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tid->cleanup = sample_thread_cleanup;
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}
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else
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tc_stat(TC_STAT_END | TC_STAT_FAILED);
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return 0;
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}
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#ifdef RT_USING_TC
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static void _tc_cleanup()
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{
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/* lock scheduler */
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rt_enter_critical();
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/* delete thread */
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if (tid != RT_NULL)
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{
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rt_kprintf("tid1 is bad\n");
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tc_stat(TC_STAT_FAILED);
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}
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/* unlock scheduler */
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rt_exit_critical();
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}
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int _tc_sample()
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{
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/* set tc cleanup */
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tc_cleanup(_tc_cleanup);
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sample_init();
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return 25;
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}
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FINSH_FUNCTION_EXPORT(_tc_sample, a thread testcase example);
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#else
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int rt_application_init()
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{
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sample_init();
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return 0;
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}
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#endif
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@ -20,9 +20,20 @@ static void thread1_entry(void* parameter)
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while (1)
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{
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/* 线程1采用低优先级运行,一直打印计数值 */
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rt_kprintf("thread count: %d\n", count ++);
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// rt_kprintf("thread count: %d\n", count ++);
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count ++;
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}
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}
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static void thread1_cleanup(struct rt_thread *tid)
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{
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if (tid != tid1)
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{
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tc_stat(TC_STAT_END | TC_STAT_FAILED);
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return ;
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}
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rt_kprintf("thread1 end\n");
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tid1 = RT_NULL;
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}
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/* 线程2的入口函数 */
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static void thread2_entry(void* parameter)
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@ -37,19 +48,29 @@ static void thread2_entry(void* parameter)
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* 队列
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*/
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rt_thread_delete(tid1);
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tid1 = RT_NULL;
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/*
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* 线程2继续休眠10个OS Tick然后退出,线程2休眠后应切换到idle线程
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* idle线程将执行真正的线程1控制块和线程栈的删除
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*/
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rt_thread_delay(10);
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}
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static void thread2_cleanup(struct rt_thread *tid)
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{
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/*
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* 线程2运行结束后也将自动被删除(线程控制块和线程栈依然在idle线
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* 线程2运行结束后也将自动被删除(线程控制块和线程栈在idle线
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* 程中释放)
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*/
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if (tid != tid2)
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{
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tc_stat(TC_STAT_END | TC_STAT_FAILED);
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return ;
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}
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rt_kprintf("thread2 end\n");
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tid2 = RT_NULL;
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tc_done(TC_STAT_PASSED);
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}
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/* 线程删除示例的初始化 */
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@ -60,7 +81,10 @@ int thread_delete_init()
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thread1_entry, RT_NULL, /* 入口是thread1_entry,参数是RT_NULL */
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THREAD_STACK_SIZE, THREAD_PRIORITY, THREAD_TIMESLICE);
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if (tid1 != RT_NULL) /* 如果获得线程控制块,启动这个线程 */
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{
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tid1->cleanup = thread1_cleanup;
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rt_thread_startup(tid1);
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}
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else
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tc_stat(TC_STAT_END | TC_STAT_FAILED);
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@ -69,7 +93,10 @@ int thread_delete_init()
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thread2_entry, RT_NULL, /* 入口是thread2_entry,参数是RT_NULL */
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THREAD_STACK_SIZE, THREAD_PRIORITY - 1, THREAD_TIMESLICE);
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if (tid2 != RT_NULL) /* 如果获得线程控制块,启动这个线程 */
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{
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tid2->cleanup = thread2_cleanup;
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rt_thread_startup(tid2);
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}
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else
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tc_stat(TC_STAT_END | TC_STAT_FAILED);
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@ -83,10 +110,16 @@ static void _tc_cleanup()
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rt_enter_critical();
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/* delete thread */
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if (tid1 != RT_NULL && tid1->stat != RT_THREAD_CLOSE)
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if (tid1 != RT_NULL)
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{
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rt_kprintf("tid1 is bad\n");
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tc_stat(TC_STAT_FAILED);
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if (tid2 != RT_NULL && tid2->stat != RT_THREAD_CLOSE)
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}
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if (tid2 != RT_NULL)
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{
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rt_kprintf("tid2 is bad\n");
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tc_stat(TC_STAT_FAILED);
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}
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/* unlock scheduler */
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rt_exit_critical();
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@ -98,7 +131,7 @@ int _tc_thread_delete()
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tc_cleanup(_tc_cleanup);
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thread_delete_init();
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return 100;
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return 25;
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}
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FINSH_FUNCTION_EXPORT(_tc_thread_delete, a thread delete example);
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#else
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@ -91,6 +91,9 @@ static void _tc_cleanup()
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/* 调度器解锁 */
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rt_exit_critical();
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/* 设置TestCase状态 */
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tc_done(TC_STAT_PASSED);
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}
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int _tc_thread_detach()
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@ -100,7 +103,7 @@ int _tc_thread_detach()
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thread_detach_init();
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/* 返回TestCase运行的最长时间 */
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return 100;
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return 25;
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}
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/* 输出函数命令到finsh shell中 */
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FINSH_FUNCTION_EXPORT(_tc_thread_detach, a static thread example);
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@ -28,7 +28,7 @@ static void thread2_entry(void* parameter)
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tick = rt_tick_get();
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while (1)
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{
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if (rt_tick_get() - tick >= 100)
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if (rt_tick_get() - tick >= 50)
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{
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if (count == 0)
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tc_done(TC_STAT_FAILED);
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@ -25,6 +25,17 @@ static void thread1_entry(void* parameter)
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/* 当线程1被唤醒时 */
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rt_kprintf("thread1 resumed\n");
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}
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static void thread_cleanup(rt_thread_t tid)
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{
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if (tid == tid1)
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{
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tid1 = RT_NULL;
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}
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if (tid == tid2)
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{
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tid = RT_NULL;
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}
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}
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/* 线程2入口 */
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static void thread2_entry(void* parameter)
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/* 唤醒线程1 */
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rt_thread_resume(tid1);
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rt_kprintf("thread2: to resume thread1\n");
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/* 延时10个OS Tick */
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rt_thread_delay(10);
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thread1_entry, RT_NULL, /* 线程入口是thread1_entry, 入口参数是RT_NULL */
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THREAD_STACK_SIZE, THREAD_PRIORITY, THREAD_TIMESLICE);
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if (tid1 != RT_NULL)
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{
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tid1->cleanup = thread_cleanup;
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rt_thread_startup(tid1);
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}
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else
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tc_stat(TC_STAT_END | TC_STAT_FAILED);
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thread2_entry, RT_NULL, /* 线程入口是thread2_entry, 入口参数是RT_NULL */
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THREAD_STACK_SIZE, THREAD_PRIORITY - 1, THREAD_TIMESLICE);
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if (tid2 != RT_NULL)
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{
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tid2->cleanup = thread_cleanup;
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rt_thread_startup(tid2);
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}
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else
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tc_stat(TC_STAT_END | TC_STAT_FAILED);
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@ -90,7 +108,7 @@ int _tc_thread_resume()
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thread_resume_init();
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/* 返回TestCase运行的最长时间 */
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return 100;
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return 25;
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}
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/* 输出函数命令到finsh shell中 */
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FINSH_FUNCTION_EXPORT(_tc_thread_resume, a thread resume example);
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@ -34,6 +34,7 @@ static void thread2_entry(void* parameter)
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rt_thread_delay(10);
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/* 线程2自动退出 */
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tid2 = RT_NULL;
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}
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int thread_suspend_init()
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@ -86,7 +86,7 @@ int _tc_thread_yield()
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thread_yield_init();
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/* 返回TestCase运行的最长时间 */
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return 100;
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return 30;
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}
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/* 输出函数命令到finsh shell中 */
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FINSH_FUNCTION_EXPORT(_tc_thread_yield, a thread yield example);
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