103 lines
		
	
	
		
			2.3 KiB
		
	
	
	
		
			C
		
	
	
	
			
		
		
	
	
			103 lines
		
	
	
		
			2.3 KiB
		
	
	
	
		
			C
		
	
	
	
// RUN: %libomp-compile-and-run
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/*
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 * Threadprivate is tested in 2 ways:
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 * 1. The global variable declared as threadprivate should have
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 *  local copy for each thread. Otherwise race condition and 
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 *  wrong result.
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 * 2. If the value of local copy is retained for the two adjacent
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 *  parallel regions
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 */
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#include "omp_testsuite.h"
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#include <stdlib.h>
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#include <stdio.h>
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static int sum0=0;
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static int myvalue = 0;
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#pragma omp threadprivate(sum0)
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#pragma omp threadprivate(myvalue)
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int test_omp_threadprivate()
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{
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  int sum = 0;
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  int known_sum;
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  int i; 
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  int iter;
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  int *data;
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  int size;
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  int num_failed = 0;
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  int my_random;
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  omp_set_dynamic(0);
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  #pragma omp parallel private(i) 
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  {
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    sum0 = 0;
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    #pragma omp for 
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    for (i = 1; i <= LOOPCOUNT; i++) {
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      sum0 = sum0 + i;
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    } /*end of for*/
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    #pragma omp critical
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    {
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      sum = sum + sum0;
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    } /*end of critical */
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  } /* end of parallel */  
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  known_sum = (LOOPCOUNT * (LOOPCOUNT + 1)) / 2;
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  if (known_sum != sum ) {
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    fprintf (stderr, " known_sum = %d, sum = %d\n", known_sum, sum);
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  }
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  /* the next parallel region is just used to get the number of threads*/
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  omp_set_dynamic(0);
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  #pragma omp parallel
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  {
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    #pragma omp master
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    {
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      size=omp_get_num_threads();
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      data=(int*) malloc(size*sizeof(int));
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    }
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  }/* end parallel*/
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  srand(45);
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  for (iter = 0; iter < 100; iter++) {
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    my_random = rand(); /* random number generator is 
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                 called inside serial region*/
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    /* the first parallel region is used to initialiye myvalue
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       and the array with my_random+rank */
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    #pragma omp parallel
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    {
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      int rank;
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      rank = omp_get_thread_num ();
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      myvalue = data[rank] = my_random + rank;
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    }
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    /* the second parallel region verifies that the 
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       value of "myvalue" is retained */
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    #pragma omp parallel reduction(+:num_failed)
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    {
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      int rank;
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      rank = omp_get_thread_num ();
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      num_failed = num_failed + (myvalue != data[rank]);
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      if(myvalue != data[rank]) {
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        fprintf (stderr, " myvalue = %d, data[rank]= %d\n",
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          myvalue, data[rank]);
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      }
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    }
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  }
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  free (data);
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  return (known_sum == sum) && !num_failed;
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} /* end of check_threadprivate*/
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int main()
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{
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  int i;
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  int num_failed=0;
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  for(i = 0; i < REPETITIONS; i++) {
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    if(!test_omp_threadprivate()) {
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      num_failed++;
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    }
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  }
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  return num_failed;
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}
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