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| |
| /* |
| * This is a regression test for the bug that the interval timer |
| * is not initialized when _PR_CreateCPU calls PR_IntervalNow. |
| * The bug would make this test program finish prematurely, |
| * when the SHORT_TIMEOUT period expires. The correct behavior |
| * is for the test to finish when the LONG_TIMEOUT period expires. |
| */ |
| |
| #include "prlock.h" |
| #include "prcvar.h" |
| #include "prthread.h" |
| #include "prinrval.h" |
| #include "prlog.h" |
| #include <stdio.h> |
| #include <stdlib.h> |
| |
| /* The timeouts, in milliseconds */ |
| #define SHORT_TIMEOUT 1000 |
| #define LONG_TIMEOUT 3000 |
| |
| PRLock *lock1, *lock2; |
| PRCondVar *cv1, *cv2; |
| |
| void ThreadFunc(void *arg) |
| { |
| PR_Lock(lock1); |
| PR_WaitCondVar(cv1, PR_MillisecondsToInterval(SHORT_TIMEOUT)); |
| PR_Unlock(lock1); |
| } |
| |
| int main(int argc, char **argv) |
| { |
| PRThread *thread; |
| PRIntervalTime start, end; |
| PRUint32 elapsed_ms; |
| |
| lock1 = PR_NewLock(); |
| PR_ASSERT(NULL != lock1); |
| cv1 = PR_NewCondVar(lock1); |
| PR_ASSERT(NULL != cv1); |
| lock2 = PR_NewLock(); |
| PR_ASSERT(NULL != lock2); |
| cv2 = PR_NewCondVar(lock2); |
| PR_ASSERT(NULL != cv2); |
| start = PR_IntervalNow(); |
| thread = PR_CreateThread( |
| PR_USER_THREAD, |
| ThreadFunc, |
| NULL, |
| PR_PRIORITY_NORMAL, |
| PR_LOCAL_THREAD, |
| PR_JOINABLE_THREAD, |
| 0); |
| PR_ASSERT(NULL != thread); |
| PR_Lock(lock2); |
| PR_WaitCondVar(cv2, PR_MillisecondsToInterval(LONG_TIMEOUT)); |
| PR_Unlock(lock2); |
| PR_JoinThread(thread); |
| end = PR_IntervalNow(); |
| elapsed_ms = PR_IntervalToMilliseconds((PRIntervalTime)(end - start)); |
| /* Allow 100ms imprecision */ |
| if (elapsed_ms < LONG_TIMEOUT - 100 || elapsed_ms > LONG_TIMEOUT + 100) { |
| printf("Elapsed time should be %u ms but is %u ms\n", |
| LONG_TIMEOUT, elapsed_ms); |
| printf("FAIL\n"); |
| exit(1); |
| } |
| printf("Elapsed time: %u ms, expected time: %u ms\n", |
| LONG_TIMEOUT, elapsed_ms); |
| printf("PASS\n"); |
| return 0; |
| } |