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I tried to use pthread to do some task faster. I have thousands files (in args) to process and i want to create just a small number of thread many times.
Here's my code :

void callThread(){
    int nbt = 0;
    pthread_t *vp = (pthread_t*)malloc(sizeof(pthread_t)*NBTHREAD);
    for(int i=0;i<args.size();i+=NBTHREAD){
        for(int j=0;j<NBTHREAD;j++){
        for(int k=0;k<nbt;k++){
              if(pthread_join(vp[k], NULL)){
                   cout<<"ERROR pthread_join()"<<endl;

It returns error, i don't know if it's a good way to solve my problem. All the resources are in args (vector of struct) and are independants.
Thanks for help.

share|improve this question
It returns error. What is "it" and what error does "it" return? – NPE Jan 24 '13 at 16:34
what are you hoping to accomplish with thousands of threads? – Sam Miller Jan 24 '13 at 16:35
A better idea would be to create a small pool of threads that act on jobs in a queue. Then add all the files to the queue and let the threads pick the jobs off one by one until there is no more work to be done. – Loki Astari Jan 24 '13 at 16:35
I don't want thousands of threads, i just want to apply the function "calcul" on every struct in "args". But thoose struct are independant so i want to speed up process. – user1788477 Jan 24 '13 at 16:43
@LokiAstari i don't know pool of thread but i think this is what i'm looking for. I will try whit it – user1788477 Jan 24 '13 at 16:46

You're better off making a thread pool with as many threads as the number of cores the cpu has. Then feed the tasks to this pool and let it do its job. You should take a look at this blog post right here for a great example of how to go about creating such thread pool.

A couple of tips that are not mentioned in that post:

  • Use std::thread::hardware_concurrency() to get the number of cores.
  • Figure out a way how to store the tasks, hint: std::packaged_task or something along those lines wrapped in a class so you can track things such as when a task is done, or implement task.join().
  • Also, github with the code of his implementation plus some extra stuff such as std::future support can be found here.
share|improve this answer

You can use a semaphore to limit the number of parallel threads, here is a pseudo code:

Semaphore S = MAX_THREADS_AT_A_TIME  //  Initial semaphore value
declare handle_array[NUM_ITERS];

for(i=0 to NUM_ITERS)
Acquire-Semaphore;  //  S--

handle_array[i] = Run-Thread(MyThread);


for(i=0 to NUM_ITERS)




release-semaphore // S++
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