146 lines
		
	
	
		
			2.8 KiB
		
	
	
	
		
			C
		
	
	
	
			
		
		
	
	
			146 lines
		
	
	
		
			2.8 KiB
		
	
	
	
		
			C
		
	
	
	
/*
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 * File: condvar3_1.c
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 *
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 * Test Synopsis:
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 * - Test timeout of multiple waits on a CV with some signaled.
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 *
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 * Test Method (Validation or Falsification):
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 * - Validation
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 *
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 * Requirements Tested:
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 * - 
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 *
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 * Features Tested:
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 * - 
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 *
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 * Cases Tested:
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 * - 
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 *
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 * Description:
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 * - Because some CVs are never signaled, we expect their waits to time out.
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 *   Some are signaled, the rest time out. Pthread_cond_destroy() will fail
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 *   unless all are accounted for, either signaled or timedout.
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 *
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 * Environment:
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 * -
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 *
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 * Input:
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 * - None.
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 *
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 * Output:
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 * - File name, Line number, and failed expression on failure.
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 * - No output on success.
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 *
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 * Assumptions:
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 * - 
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 *
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 * Pass Criteria:
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 * - pthread_cond_timedwait returns ETIMEDOUT.
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 * - Process returns zero exit status.
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 *
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 * Fail Criteria:
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 * - pthread_cond_timedwait does not return ETIMEDOUT.
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 * - Process returns non-zero exit status.
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 */
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#include "test.h"
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#include <sys/timeb.h>
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static pthread_cond_t cv;
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static pthread_cond_t cv1;
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static pthread_mutex_t mutex;
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static struct timespec abstime = { 0, 0 };
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static int timedout = 0;
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static int signaled = 0;
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static int awoken = 0;
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static int waiting = 0;
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enum {
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  NUMTHREADS = 60
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};
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void *
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mythread(void * arg)
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{
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  int result;
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  assert(pthread_mutex_lock(&mutex) == 0);
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  if ( ++waiting == NUMTHREADS)
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    assert(pthread_cond_signal(&cv1) == 0);
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  result = pthread_cond_timedwait(&cv, &mutex, &abstime);
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  if (result == ETIMEDOUT)
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    {
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      timedout++;
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    }
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  else
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    {
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      awoken++;
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    }
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  assert(pthread_mutex_unlock(&mutex) == 0);
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  return arg;
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}
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int
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main()
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{
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  int i;
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  pthread_t t[NUMTHREADS + 1];
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  int result = 0;
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  struct timeb currSysTime;
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  const DWORD NANOSEC_PER_MILLISEC = 1000000;
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  assert(pthread_cond_init(&cv, NULL) == 0);
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  assert(pthread_cond_init(&cv1, NULL) == 0);
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  assert(pthread_mutex_init(&mutex, NULL) == 0);
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  /* get current system time */
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  ftime(&currSysTime);
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  abstime.tv_sec = currSysTime.time;
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  abstime.tv_nsec = NANOSEC_PER_MILLISEC * currSysTime.millitm;
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  abstime.tv_sec += 5;
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  assert(pthread_mutex_lock(&mutex) == 0);
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  for (i = 1; i <= NUMTHREADS; i++)
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    {
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      assert(pthread_create(&t[i], NULL, mythread, (void *) i) == 0);
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    }
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  do {
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    assert(pthread_cond_wait(&cv1,&mutex) == 0);
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  } while ( NUMTHREADS != waiting );
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  assert(pthread_mutex_unlock(&mutex) == 0);
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  for (i = NUMTHREADS/3; i <= 2*NUMTHREADS/3; i++)
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    {
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      assert(pthread_cond_signal(&cv) == 0);
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      signaled++;
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    }
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  for (i = 1; i <= NUMTHREADS; i++)
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    {
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      assert(pthread_join(t[i], (void **) &result) == 0);
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        assert(result == i);
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    }
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  printf("awk = %d\n", awoken);
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  printf("sig = %d\n", signaled);
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  printf("tot = %d\n", timedout);
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  assert(signaled == awoken);
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  assert(timedout == NUMTHREADS - signaled);
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  result = pthread_cond_destroy(&cv);
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  assert(result == 0);
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  return 0;
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}
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