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How to implement barrier using posix semaphores?

void my_barrier_init(int a){

    int i;  
    bar.number = a;
    bar.counter = 0;

    bar.arr = (sem_t*) malloc(sizeof(sem_t)*bar.number);
    bar.cont = (sem_t*) malloc(sizeof(sem_t)*bar.number);
    for(i = 0; i < bar.number; i++){    
    sem_init(&bar.arr[i], 0, 0);
    sem_init(&bar.cont[i], 0, 0);   }
}

void my_barrier_wait(){
    int i;    
    bar.counter++;

    if(bar.number == bar.counter){      
    for(i = 0; i < bar.number-1; i++){  sem_wait(&bar.arr[i]);    }
    for(i = 0; i < bar.number-1; i++){   sem_post(&bar.cont[i]);     }
    bar.counter = 0;
    }else{
        sem_post(&bar.arr[pthread_self()-2]);
        sem_wait(&bar.cont[pthread_self()-2]);
  }
}

When function my_barrier_wait is called, first (N-1) times it would set(+1) for semaphores in array 'arr' and go to sleep(calling sem_wait). N-th time it decrements semaphores in 'arr' and SHOULD (as I expect) wake up [0..bar.number-1] threads posting +1 for semaphores in 'cont' array. It doesn't work like barrier.

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What is the meaning of pthread_self()-2? The value returned from pthread_self() is an opaque identifier. How do you know you can subtract 2 from it and use it as an array index? –  Celada Dec 22 '12 at 23:36
    
I have main thread, which creates N subthreads, their ids are 2,3,..(N+1), mapping to array of semaphores I shift indexes by (-2) –  dea.diana Dec 23 '12 at 6:23
    
From the manpage of pthread_self(): "Thread identifiers should be considered opaque." –  Celada Dec 23 '12 at 16:09
    
when I tested it, semaphores worked correctly, getvalue returned expected number. Anyway, thank you, I'll probably fix it. But does it help me make it work like barrier? –  dea.diana Dec 23 '12 at 17:28
    
No, it doesn't. But you haven't really said what goes wrong (just "It doesn't work like barrier") so it's hard to guess what the problem is. Maybe bar.counter needs to be protected from concurrent updates with a mutex? –  Celada Dec 23 '12 at 17:40

1 Answer 1

You need to look at this (PDF), The Little Book of Semaphores by Allen Downey. Specifically section 3.6.7. It's in Python, but gist of it should be clear enough.

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