mirror of https://github.com/encounter/SDL.git
Semaphore test: Put test into separate function.
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parent
548cb90893
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95a6d4e848
116
test/testsem.c
116
test/testsem.c
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@ -21,25 +21,14 @@
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#define NUM_THREADS 10
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static SDL_sem *sem;
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int alive = 1;
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int alive;
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int SDLCALL
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ThreadFunc(void *data)
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{
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int threadnum = (int) (uintptr_t) data;
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while (alive) {
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SDL_SemWait(sem);
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SDL_Log("Thread number %d has got the semaphore (value = %d)!\n",
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threadnum, SDL_SemValue(sem));
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SDL_Delay(200);
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SDL_SemPost(sem);
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SDL_Log("Thread number %d has released the semaphore (value = %d)!\n",
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threadnum, SDL_SemValue(sem));
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SDL_Delay(1); /* For the scheduler */
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}
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SDL_Log("Thread number %d exiting.\n", threadnum);
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return 0;
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}
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typedef struct Thread_State {
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SDL_Thread * thread;
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int number;
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int loop_count;
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int content_count;
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} Thread_State;
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static void
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killed(int sig)
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@ -47,6 +36,61 @@ killed(int sig)
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alive = 0;
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}
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static int SDLCALL
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ThreadFuncRealWorld(void *data)
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{
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Thread_State *state = (Thread_State *) data;
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while (alive) {
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SDL_SemWait(sem);
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SDL_Log("Thread number %d has got the semaphore (value = %d)!\n",
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state->number, SDL_SemValue(sem));
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SDL_Delay(200);
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SDL_SemPost(sem);
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SDL_Log("Thread number %d has released the semaphore (value = %d)!\n",
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state->number, SDL_SemValue(sem));
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++state->loop_count;
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SDL_Delay(1); /* For the scheduler */
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}
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SDL_Log("Thread number %d exiting.\n", state->number);
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return 0;
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}
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static void
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TestRealWorld(int init_sem) {
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Thread_State thread_states[NUM_THREADS];
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int i;
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int loop_count;
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sem = SDL_CreateSemaphore(init_sem);
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SDL_Log("Running %d threads, semaphore value = %d\n", NUM_THREADS,
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init_sem);
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alive = 1;
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/* Create all the threads */
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for (i = 0; i < NUM_THREADS; ++i) {
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char name[64];
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SDL_snprintf(name, sizeof (name), "Thread%u", (unsigned int) i);
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thread_states[i].number = i;
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thread_states[i].loop_count = 0;
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thread_states[i].thread = SDL_CreateThread(ThreadFuncRealWorld, name, (void *) &thread_states[i]);
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}
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/* Wait 10 seconds */
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SDL_Delay(10 * 1000);
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/* Wait for all threads to finish */
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SDL_Log("Waiting for threads to finish\n");
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alive = 0;
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loop_count = 0;
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for (i = 0; i < NUM_THREADS; ++i) {
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SDL_WaitThread(thread_states[i].thread, NULL);
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loop_count += thread_states[i].loop_count;
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}
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SDL_Log("Finished waiting for threads, ran %d loops in total\n\n", loop_count);
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SDL_DestroySemaphore(sem);
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}
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static void
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TestWaitTimeout(void)
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{
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@ -65,21 +109,19 @@ TestWaitTimeout(void)
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duration = end_ticks - start_ticks;
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/* Accept a little offset in the effective wait */
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if (duration > 1900 && duration < 2050)
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SDL_Log("Wait done.\n");
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else
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SDL_Log("Wait took %d milliseconds\n", duration);
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SDL_assert(duration > 1900 && duration < 2050);
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SDL_Log("Wait took %d milliseconds\n\n", duration);
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/* Check to make sure the return value indicates timed out */
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if (retval != SDL_MUTEX_TIMEDOUT)
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SDL_LogError(SDL_LOG_CATEGORY_APPLICATION, "SDL_SemWaitTimeout returned: %d; expected: %d\n", retval, SDL_MUTEX_TIMEDOUT);
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SDL_LogError(SDL_LOG_CATEGORY_APPLICATION, "SDL_SemWaitTimeout returned: %d; expected: %d\n\n", retval, SDL_MUTEX_TIMEDOUT);
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SDL_DestroySemaphore(sem);
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}
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int
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main(int argc, char **argv)
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{
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SDL_Thread *threads[NUM_THREADS];
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uintptr_t i;
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int init_sem;
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/* Enable standard application logging */
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@ -99,30 +141,10 @@ main(int argc, char **argv)
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signal(SIGINT, killed);
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init_sem = atoi(argv[1]);
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sem = SDL_CreateSemaphore(init_sem);
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SDL_Log("Running %d threads, semaphore value = %d\n", NUM_THREADS,
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init_sem);
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/* Create all the threads */
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for (i = 0; i < NUM_THREADS; ++i) {
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char name[64];
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SDL_snprintf(name, sizeof (name), "Thread%u", (unsigned int) i);
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threads[i] = SDL_CreateThread(ThreadFunc, name, (void *) i);
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if (init_sem > 0) {
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TestRealWorld(init_sem);
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}
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/* Wait 10 seconds */
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SDL_Delay(10 * 1000);
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/* Wait for all threads to finish */
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SDL_Log("Waiting for threads to finish\n");
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alive = 0;
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for (i = 0; i < NUM_THREADS; ++i) {
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SDL_WaitThread(threads[i], NULL);
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}
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SDL_Log("Finished waiting for threads\n");
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SDL_DestroySemaphore(sem);
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TestWaitTimeout();
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SDL_Quit();
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