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static waitq_t can_start;
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static waitq_t can_start;
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static void testit1(void *data)
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static void testit1(void *data)
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{
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{
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    int i;
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    int i;
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    int arg __attribute__((aligned(16))) = (int)((__native) data);
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    int arg __attribute__((aligned(16))) = (int)((unative_t) data);
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    int after_arg __attribute__((aligned(16)));
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    int after_arg __attribute__((aligned(16)));
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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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}
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}
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static void testit2(void *data)
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static void testit2(void *data)
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{
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{
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    int i;
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    int i;
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    int arg __attribute__((aligned(16))) = (int)((__native) data);
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    int arg __attribute__((aligned(16))) = (int)((unative_t) data);
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    int after_arg __attribute__((aligned(16)));
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    int after_arg __attribute__((aligned(16)));
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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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    printf("MIPS test #1\n");
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    printf("MIPS test #1\n");
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    printf("Creating %d threads... ", THREADS);
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    printf("Creating %d threads... ", THREADS);
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    for (i=0; i<THREADS/2; i++) {  
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    for (i=0; i<THREADS/2; i++) {  
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        if (!(t = thread_create(testit1, (void *)((__native)i*2), TASK, 0, "testit1")))
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        if (!(t = thread_create(testit1, (void *)((unative_t)i*2), TASK, 0, "testit1")))
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            panic("could not create thread\n");
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            panic("could not create thread\n");
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        thread_ready(t);
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        thread_ready(t);
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        if (!(t = thread_create(testit2, (void *)((__native)i*2+1), TASK, 0, "testit2")))
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        if (!(t = thread_create(testit2, (void *)((unative_t)i*2+1), TASK, 0, "testit2")))
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            panic("could not create thread\n");
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            panic("could not create thread\n");
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        thread_ready(t);
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        thread_ready(t);
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    }
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    }
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    printf("ok\n");
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    printf("ok\n");