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Line 43... Line 43...
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static waitq_t can_start;
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static waitq_t can_start;
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static atomic_t items_produced;
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static atomic_t items_produced;
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static atomic_t items_consumed;
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static atomic_t items_consumed;
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static void consumer(void *arg);
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static void producer(void *arg);
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static void failed(void);
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static void producer(void *arg)
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static void producer(void *arg)
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{
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{
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    thread_detach(THREAD); 
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    thread_detach(THREAD); 
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    waitq_sleep(&can_start);
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    waitq_sleep(&can_start);
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    atomic_inc(&items_consumed);
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    atomic_inc(&items_consumed);
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    thread_usleep(500);
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    thread_usleep(500);
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    semaphore_up(&sem);
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    semaphore_up(&sem);
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}
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}
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static void failed(void)
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{
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    printf("Test failed prematurely.\n");
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    thread_exit();
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}
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void test_semaphore1(void)
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char * test_semaphore1(void)
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{
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{
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    int i, j, k;
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    int i, j, k;
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    int consumers, producers;
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    int consumers, producers;
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    printf("Semaphore test #1\n");
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    waitq_initialize(&can_start);
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    waitq_initialize(&can_start);
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    semaphore_initialize(&sem, AT_ONCE);
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    semaphore_initialize(&sem, AT_ONCE);
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    for (i=1; i<=3; i++) {
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    for (i = 1; i <= 3; i++) {
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        thread_t *thrd;
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        thread_t *thrd;
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        atomic_set(&items_produced, 0);
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        atomic_set(&items_produced, 0);
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        atomic_set(&items_consumed, 0);
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        atomic_set(&items_consumed, 0);
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        consumers = i * CONSUMERS;
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        consumers = i * CONSUMERS;
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        producers = (4-i) * PRODUCERS;
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        producers = (4 - i) * PRODUCERS;
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        printf("Creating %d consumers and %d producers...", consumers, producers);
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        printf("Creating %d consumers and %d producers...", consumers, producers);
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        for (j=0; j<(CONSUMERS+PRODUCERS)/2; j++) {
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        for (j = 0; j < (CONSUMERS + PRODUCERS) / 2; j++) {
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            for (k=0; k<i; k++) {
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            for (k = 0; k < i; k++) {
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                thrd = thread_create(consumer, NULL, TASK, 0, "consumer");
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                thrd = thread_create(consumer, NULL, TASK, 0, "consumer");
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                if (thrd)
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                if (thrd)
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                    thread_ready(thrd);
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                    thread_ready(thrd);
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                else
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                else
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                    failed();
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                    printf("could not create consumer %d\n", i);
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            }
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            }
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            for (k=0; k<(4-i); k++) {
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            for (k = 0; k < (4 - i); k++) {
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                thrd = thread_create(producer, NULL, TASK, 0, "producer");
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                thrd = thread_create(producer, NULL, TASK, 0, "producer");
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                if (thrd)
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                if (thrd)
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                    thread_ready(thrd);
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                    thread_ready(thrd);
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                else
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                else
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                    failed();
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                    printf("could not create producer %d\n", i);
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            }
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            }
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        }
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        }
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        printf("ok\n");
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        printf("ok\n");
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        thread_sleep(1);
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        thread_sleep(1);
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        waitq_wakeup(&can_start, WAKEUP_ALL);
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        waitq_wakeup(&can_start, WAKEUP_ALL);
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        while (items_consumed.count != consumers || items_produced.count != producers) {
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        while ((items_consumed.count != consumers) || (items_produced.count != producers)) {
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            printf("%d consumers remaining, %d producers remaining\n", consumers - items_consumed.count, producers - items_produced.count);
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            printf("%d consumers remaining, %d producers remaining\n", consumers - items_consumed.count, producers - items_produced.count);
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            thread_sleep(1);
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            thread_sleep(1);
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        }
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        }
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    }
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    }
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    printf("Test passed.\n");
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    return NULL;
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}
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}