source: CIVL/examples/pthread/condvar.cvl@ f6ce0eb

1.23 2.0 main test-branch
Last change on this file since f6ce0eb was 6fe2cd9, checked in by John Edenhofner <johneden@…>, 12 years ago

Almost done

git-svn-id: svn://vsl.cis.udel.edu/civl/trunk@1040 fb995dde-84ed-4084-dfe6-e5aef3e2452c

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[8090425]1/*****************************************************************************
2* SOURCE: This is a translation of a Pthread program from the Lawrence Livermore
3* Computing Center POSIX Threads Programming Exercise at:
4* https://computing.llnl.gov/tutorials/pthreads/exercise.html
5* SUPERSOURCE: Adapted from example code in "Pthreads Programming", B. Nichols
6* et al. O'Reilly and Associates.
[bf81b8c]7* FILE: condvar.cvl
[38374b7]8* DESCRIPTION:
9* Example code for using Pthreads condition variables. The main thread
10* creates three threads. Two of those threads increment a "count" variable,
11* while the third thread watches the value of "count". When "count"
12* reaches a predefined limit, the waiting thread is signaled by one of the
13* incrementing threads. The waiting thread "awakens" and then modifies
14* count. The program continues until the incrementing threads reach
15* TCOUNT. The main program prints the final value of count.
[8090425]16* Command line execution:
17* civl verify -inputNUM_THREADS=3 -inputTCOUNT=10 -inputCOUNT_LIMIT=12 condvar.cvl
[38374b7]18******************************************************************************/
[6fe2cd9]19
[38374b7]20#include "pthread.cvh"
21#include <civlc.h>
22#include <stdio.h>
23#include <stdlib.h>
24
[8090425]25$input int NUM_THREADS;
26$input int TCOUNT;
27$input int COUNT_LIMIT;
[38374b7]28
[bf81b8c]29int count = 0;
[38374b7]30pthread_mutex_t count_mutex;
31pthread_cond_t count_threshold_cv;
32
33void *inc_count(void *t)
34{
35 int i;
[6fe2cd9]36 long my_id = (long)*t; // Dereference rather than direct conv
[38374b7]37
38 for (i=0; i < TCOUNT; i++) {
39 pthread_mutex_lock(&count_mutex);
40 count++;
41
42 /*
43 Check the value of count and signal waiting thread when condition is
44 reached. Note that this occurs while mutex is locked.
45 */
46 if (count == COUNT_LIMIT) {
[6fe2cd9]47 printf("inc_count(): thread %d, count = %d Threshold reached. ", my_id, count);
[38374b7]48 pthread_cond_signal(&count_threshold_cv);
49 printf("Just sent signal.\n");
50 }
[6fe2cd9]51 printf("inc_count(): thread %d, count = %d, unlocking mutex\n", my_id, count);
[38374b7]52 pthread_mutex_unlock(&count_mutex);
53
54 /* Do some work so threads can alternate on mutex lock */
[2beb8ff]55 //sleep(1);
[38374b7]56 }
[6fe2cd9]57 pthread_exit(NULL, false, NULL, 0); //Different parameters
[38374b7]58}
59
60void *watch_count(void *t)
61{
[6fe2cd9]62 long my_id = (long)*t; // Dereference rather than direct conv
[38374b7]63
[bf81b8c]64 printf("Starting watch_count(): thread %d\n", my_id);
[38374b7]65
66 /*
67 Lock mutex and wait for signal. Note that the pthread_cond_wait routine
68 will automatically and atomically unlock mutex while it waits.
69 Also, note that if COUNT_LIMIT is reached before this routine is run by
70 the waiting thread, the loop will be skipped to prevent pthread_cond_wait
71 from never returning.
72 */
73 pthread_mutex_lock(&count_mutex);
74 while (count < COUNT_LIMIT) {
[bf81b8c]75 printf("watch_count(): thread %d Count= %d. Going into wait...\n", my_id,count);
[38374b7]76 pthread_cond_wait(&count_threshold_cv, &count_mutex);
[bf81b8c]77 printf("watch_count(): thread %d Condition signal received. Count= %d\n", my_id,count);
78 printf("watch_count(): thread %d Updating the value of count...\n", my_id,count);
[38374b7]79 count += 125;
[bf81b8c]80 printf("watch_count(): thread %d count now = %d.\n", my_id, count);
[38374b7]81 }
[bf81b8c]82 printf("watch_count(): thread %d Unlocking mutex.\n", my_id);
[38374b7]83 pthread_mutex_unlock(&count_mutex);
[6fe2cd9]84 pthread_exit(NULL, false, NULL, 0); //Different parameters
[38374b7]85}
86
[8090425]87int main(void)
[38374b7]88{
89 int i, rc;
90 long t1=1, t2=2, t3=3;
91 pthread_t threads[3];
92 pthread_attr_t attr;
93
94 /* Initialize mutex and condition variable objects */
95 pthread_mutex_init(&count_mutex, NULL);
96 pthread_cond_init (&count_threshold_cv, NULL);
97
98 /* For portability, explicitly create threads in a joinable state */
99 pthread_attr_init(&attr);
100 pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_JOINABLE);
[bf81b8c]101 pthread_create(&threads[0], &attr, watch_count, (void *)&t1);
102 pthread_create(&threads[1], &attr, inc_count, (void *)&t2);
103 pthread_create(&threads[2], &attr, inc_count, (void *)&t3);
[38374b7]104
105 /* Wait for all threads to complete */
106 for (i = 0; i < NUM_THREADS; i++) {
107 pthread_join(threads[i], NULL);
108 }
[6fe2cd9]109 printf ("Main(): Waited and joined with %d threads. Final value of count = %d. Done.\n", NUM_THREADS, count);
[38374b7]110
111 /* Clean up and exit */
112 pthread_attr_destroy(&attr);
113 pthread_mutex_destroy(&count_mutex);
114 pthread_cond_destroy(&count_threshold_cv);
[6fe2cd9]115 pthread_exit(NULL, true, NULL, 0); //Different parameters
[bf81b8c]116 return 0;
[38374b7]117}
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