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root/jsr166/jsr166/src/test/tck/SemaphoreTest.java
Revision: 1.44
Committed: Mon Aug 12 06:21:11 2019 UTC (4 years, 9 months ago) by jsr166
Branch: MAIN
Changes since 1.43: +6 -8 lines
Log Message:
testTryAcquire_timeout: cosmetic improvements

File Contents

# User Rev Content
1 dl 1.1 /*
2 dl 1.7 * Written by Doug Lea with assistance from members of JCP JSR-166
3     * Expert Group and released to the public domain, as explained at
4 jsr166 1.26 * http://creativecommons.org/publicdomain/zero/1.0/
5 jsr166 1.15 * Other contributors include Andrew Wright, Jeffrey Hayes,
6     * Pat Fisher, Mike Judd.
7 dl 1.1 */
8    
9 jsr166 1.32 import static java.util.concurrent.TimeUnit.MILLISECONDS;
10    
11     import java.util.Collection;
12 jsr166 1.29 import java.util.concurrent.CountDownLatch;
13     import java.util.concurrent.Semaphore;
14 jsr166 1.39 import java.util.concurrent.ThreadLocalRandom;
15 jsr166 1.32
16     import junit.framework.Test;
17     import junit.framework.TestSuite;
18 dl 1.1
19 dl 1.3 public class SemaphoreTest extends JSR166TestCase {
20 dl 1.1 public static void main(String[] args) {
21 jsr166 1.34 main(suite(), args);
22 dl 1.1 }
23     public static Test suite() {
24 jsr166 1.20 return new TestSuite(SemaphoreTest.class);
25 dl 1.1 }
26    
27 dl 1.4 /**
28 dl 1.6 * Subclass to expose protected methods
29     */
30     static class PublicSemaphore extends Semaphore {
31 jsr166 1.28 PublicSemaphore(int permits) { super(permits); }
32     PublicSemaphore(int permits, boolean fair) { super(permits, fair); }
33 jsr166 1.15 public Collection<Thread> getQueuedThreads() {
34     return super.getQueuedThreads();
35 dl 1.6 }
36 jsr166 1.28 public boolean hasQueuedThread(Thread t) {
37     return super.getQueuedThreads().contains(t);
38     }
39     public void reducePermits(int reduction) {
40     super.reducePermits(reduction);
41 dl 1.6 }
42     }
43    
44     /**
45     * A runnable calling acquire
46     */
47 jsr166 1.19 class InterruptibleLockRunnable extends CheckedRunnable {
48 dl 1.6 final Semaphore lock;
49 jsr166 1.28 InterruptibleLockRunnable(Semaphore s) { lock = s; }
50 jsr166 1.19 public void realRun() {
51 dl 1.6 try {
52     lock.acquire();
53 jsr166 1.19 }
54     catch (InterruptedException ignored) {}
55 dl 1.6 }
56     }
57    
58     /**
59 jsr166 1.21 * A runnable calling acquire that expects to be interrupted
60 dl 1.6 */
61 jsr166 1.19 class InterruptedLockRunnable extends CheckedInterruptedRunnable {
62 dl 1.6 final Semaphore lock;
63 jsr166 1.28 InterruptedLockRunnable(Semaphore s) { lock = s; }
64 jsr166 1.19 public void realRun() throws InterruptedException {
65     lock.acquire();
66 dl 1.6 }
67     }
68    
69     /**
70 jsr166 1.28 * Spin-waits until s.hasQueuedThread(t) becomes true.
71     */
72     void waitForQueuedThread(PublicSemaphore s, Thread t) {
73     long startTime = System.nanoTime();
74     while (!s.hasQueuedThread(t)) {
75     if (millisElapsedSince(startTime) > LONG_DELAY_MS)
76 jsr166 1.43 throw new AssertionError("timed out");
77 jsr166 1.28 Thread.yield();
78     }
79 jsr166 1.31 assertTrue(s.hasQueuedThreads());
80 jsr166 1.28 assertTrue(t.isAlive());
81     }
82    
83     /**
84     * Spin-waits until s.hasQueuedThreads() becomes true.
85     */
86     void waitForQueuedThreads(Semaphore s) {
87     long startTime = System.nanoTime();
88     while (!s.hasQueuedThreads()) {
89     if (millisElapsedSince(startTime) > LONG_DELAY_MS)
90 jsr166 1.43 throw new AssertionError("timed out");
91 jsr166 1.28 Thread.yield();
92     }
93     }
94    
95     enum AcquireMethod {
96     acquire() {
97     void acquire(Semaphore s) throws InterruptedException {
98     s.acquire();
99     }
100     },
101     acquireN() {
102     void acquire(Semaphore s, int permits) throws InterruptedException {
103     s.acquire(permits);
104     }
105     },
106     acquireUninterruptibly() {
107     void acquire(Semaphore s) {
108     s.acquireUninterruptibly();
109     }
110     },
111     acquireUninterruptiblyN() {
112     void acquire(Semaphore s, int permits) {
113     s.acquireUninterruptibly(permits);
114     }
115     },
116     tryAcquire() {
117     void acquire(Semaphore s) {
118     assertTrue(s.tryAcquire());
119     }
120     },
121     tryAcquireN() {
122     void acquire(Semaphore s, int permits) {
123     assertTrue(s.tryAcquire(permits));
124     }
125     },
126     tryAcquireTimed() {
127     void acquire(Semaphore s) throws InterruptedException {
128     assertTrue(s.tryAcquire(2 * LONG_DELAY_MS, MILLISECONDS));
129     }
130 jsr166 1.38 Thread.State parkedState() { return Thread.State.TIMED_WAITING; }
131 jsr166 1.28 },
132     tryAcquireTimedN {
133     void acquire(Semaphore s, int permits) throws InterruptedException {
134     assertTrue(s.tryAcquire(permits, 2 * LONG_DELAY_MS, MILLISECONDS));
135     }
136 jsr166 1.38 Thread.State parkedState() { return Thread.State.TIMED_WAITING; }
137 jsr166 1.28 };
138    
139     // Intentionally meta-circular
140    
141     /** Acquires 1 permit. */
142     void acquire(Semaphore s) throws InterruptedException {
143     acquire(s, 1);
144     }
145     /** Acquires the given number of permits. */
146     void acquire(Semaphore s, int permits) throws InterruptedException {
147     for (int i = 0; i < permits; i++)
148     acquire(s);
149     }
150 jsr166 1.38 Thread.State parkedState() { return Thread.State.WAITING; }
151 jsr166 1.28 }
152    
153     /**
154 dl 1.5 * Zero, negative, and positive initial values are allowed in constructor
155 dl 1.4 */
156 jsr166 1.28 public void testConstructor() { testConstructor(false); }
157     public void testConstructor_fair() { testConstructor(true); }
158     public void testConstructor(boolean fair) {
159     for (int permits : new int[] { -42, -1, 0, 1, 42 }) {
160     Semaphore s = new Semaphore(permits, fair);
161     assertEquals(permits, s.availablePermits());
162     assertEquals(fair, s.isFair());
163 jsr166 1.19 }
164 dl 1.13 }
165    
166     /**
167     * Constructor without fairness argument behaves as nonfair
168     */
169 jsr166 1.28 public void testConstructorDefaultsToNonFair() {
170     for (int permits : new int[] { -42, -1, 0, 1, 42 }) {
171 jsr166 1.19 Semaphore s = new Semaphore(permits);
172     assertEquals(permits, s.availablePermits());
173     assertFalse(s.isFair());
174     }
175 dl 1.1 }
176    
177 dl 1.4 /**
178 dl 1.9 * tryAcquire succeeds when sufficient permits, else fails
179 dl 1.4 */
180 jsr166 1.28 public void testTryAcquireInSameThread() { testTryAcquireInSameThread(false); }
181     public void testTryAcquireInSameThread_fair() { testTryAcquireInSameThread(true); }
182     public void testTryAcquireInSameThread(boolean fair) {
183     Semaphore s = new Semaphore(2, fair);
184 dl 1.1 assertEquals(2, s.availablePermits());
185     assertTrue(s.tryAcquire());
186     assertTrue(s.tryAcquire());
187     assertEquals(0, s.availablePermits());
188     assertFalse(s.tryAcquire());
189 jsr166 1.28 assertFalse(s.tryAcquire());
190     assertEquals(0, s.availablePermits());
191 dl 1.1 }
192    
193 dl 1.4 /**
194 jsr166 1.28 * timed tryAcquire times out
195 dl 1.5 */
196 jsr166 1.44 public void testTryAcquire_timeout() throws InterruptedException {
197     final boolean fair = randomBoolean();
198 jsr166 1.39 final Semaphore s = new Semaphore(0, fair);
199     final long startTime = System.nanoTime();
200 jsr166 1.44 assertFalse(s.tryAcquire(timeoutMillis(), MILLISECONDS));
201 jsr166 1.28 assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
202     }
203    
204     /**
205     * timed tryAcquire(N) times out
206     */
207 jsr166 1.44 public void testTryAcquireN_timeout() throws InterruptedException {
208     final boolean fair = randomBoolean();
209 jsr166 1.39 final Semaphore s = new Semaphore(2, fair);
210     final long startTime = System.nanoTime();
211 jsr166 1.44 assertFalse(s.tryAcquire(3, timeoutMillis(), MILLISECONDS));
212 jsr166 1.28 assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
213     }
214    
215     /**
216     * acquire(), acquire(N), timed tryAcquired, timed tryAcquire(N)
217     * are interruptible
218     */
219     public void testInterruptible_acquire() { testInterruptible(false, AcquireMethod.acquire); }
220     public void testInterruptible_acquire_fair() { testInterruptible(true, AcquireMethod.acquire); }
221     public void testInterruptible_acquireN() { testInterruptible(false, AcquireMethod.acquireN); }
222     public void testInterruptible_acquireN_fair() { testInterruptible(true, AcquireMethod.acquireN); }
223     public void testInterruptible_tryAcquireTimed() { testInterruptible(false, AcquireMethod.tryAcquireTimed); }
224     public void testInterruptible_tryAcquireTimed_fair() { testInterruptible(true, AcquireMethod.tryAcquireTimed); }
225     public void testInterruptible_tryAcquireTimedN() { testInterruptible(false, AcquireMethod.tryAcquireTimedN); }
226     public void testInterruptible_tryAcquireTimedN_fair() { testInterruptible(true, AcquireMethod.tryAcquireTimedN); }
227     public void testInterruptible(boolean fair, final AcquireMethod acquirer) {
228     final PublicSemaphore s = new PublicSemaphore(0, fair);
229 jsr166 1.38 final java.util.concurrent.CyclicBarrier pleaseInterrupt
230     = new java.util.concurrent.CyclicBarrier(2);
231 jsr166 1.28 Thread t = newStartedThread(new CheckedRunnable() {
232     public void realRun() {
233     // Interrupt before acquire
234     Thread.currentThread().interrupt();
235     try {
236     acquirer.acquire(s);
237     shouldThrow();
238     } catch (InterruptedException success) {}
239 jsr166 1.38 assertFalse(Thread.interrupted());
240 jsr166 1.28
241 jsr166 1.38 // Interrupt before acquire(N)
242     Thread.currentThread().interrupt();
243 jsr166 1.28 try {
244 jsr166 1.38 acquirer.acquire(s, 3);
245 jsr166 1.28 shouldThrow();
246     } catch (InterruptedException success) {}
247 jsr166 1.38 assertFalse(Thread.interrupted());
248 jsr166 1.28
249 jsr166 1.38 // Interrupt during acquire
250     await(pleaseInterrupt);
251 jsr166 1.28 try {
252 jsr166 1.38 acquirer.acquire(s);
253 jsr166 1.28 shouldThrow();
254     } catch (InterruptedException success) {}
255 jsr166 1.38 assertFalse(Thread.interrupted());
256 jsr166 1.28
257     // Interrupt during acquire(N)
258 jsr166 1.38 await(pleaseInterrupt);
259 jsr166 1.28 try {
260     acquirer.acquire(s, 3);
261     shouldThrow();
262     } catch (InterruptedException success) {}
263 jsr166 1.38 assertFalse(Thread.interrupted());
264 jsr166 1.19 }});
265    
266 jsr166 1.38 for (int n = 2; n-->0; ) {
267     await(pleaseInterrupt);
268     assertThreadBlocks(t, acquirer.parkedState());
269     t.interrupt();
270     }
271 jsr166 1.41
272 jsr166 1.28 awaitTermination(t);
273 dl 1.1 }
274    
275 dl 1.4 /**
276 jsr166 1.28 * acquireUninterruptibly(), acquireUninterruptibly(N) are
277     * uninterruptible
278 dl 1.4 */
279 jsr166 1.28 public void testUninterruptible_acquireUninterruptibly() { testUninterruptible(false, AcquireMethod.acquireUninterruptibly); }
280     public void testUninterruptible_acquireUninterruptibly_fair() { testUninterruptible(true, AcquireMethod.acquireUninterruptibly); }
281     public void testUninterruptible_acquireUninterruptiblyN() { testUninterruptible(false, AcquireMethod.acquireUninterruptiblyN); }
282     public void testUninterruptible_acquireUninterruptiblyN_fair() { testUninterruptible(true, AcquireMethod.acquireUninterruptiblyN); }
283     public void testUninterruptible(boolean fair, final AcquireMethod acquirer) {
284     final PublicSemaphore s = new PublicSemaphore(0, fair);
285 jsr166 1.30 final Semaphore pleaseInterrupt = new Semaphore(-1, fair);
286    
287     Thread t1 = newStartedThread(new CheckedRunnable() {
288 jsr166 1.19 public void realRun() throws InterruptedException {
289 jsr166 1.28 // Interrupt before acquire
290 jsr166 1.30 pleaseInterrupt.release();
291 jsr166 1.28 Thread.currentThread().interrupt();
292     acquirer.acquire(s);
293     assertTrue(Thread.interrupted());
294 jsr166 1.30 }});
295 dl 1.1
296 jsr166 1.30 Thread t2 = newStartedThread(new CheckedRunnable() {
297     public void realRun() throws InterruptedException {
298 jsr166 1.28 // Interrupt during acquire
299 jsr166 1.30 pleaseInterrupt.release();
300 jsr166 1.28 acquirer.acquire(s);
301     assertTrue(Thread.interrupted());
302 jsr166 1.19 }});
303    
304 jsr166 1.30 await(pleaseInterrupt);
305     waitForQueuedThread(s, t1);
306     waitForQueuedThread(s, t2);
307     t2.interrupt();
308    
309 jsr166 1.37 assertThreadBlocks(t1, Thread.State.WAITING);
310     assertThreadBlocks(t2, Thread.State.WAITING);
311 jsr166 1.19
312 jsr166 1.30 s.release(2);
313 jsr166 1.15
314 jsr166 1.30 awaitTermination(t1);
315     awaitTermination(t2);
316 dl 1.1 }
317 dl 1.2
318 dl 1.4 /**
319 dl 1.8 * hasQueuedThreads reports whether there are waiting threads
320     */
321 jsr166 1.28 public void testHasQueuedThreads() { testHasQueuedThreads(false); }
322     public void testHasQueuedThreads_fair() { testHasQueuedThreads(true); }
323     public void testHasQueuedThreads(boolean fair) {
324     final PublicSemaphore lock = new PublicSemaphore(1, fair);
325 jsr166 1.19 assertFalse(lock.hasQueuedThreads());
326     lock.acquireUninterruptibly();
327 jsr166 1.28 Thread t1 = newStartedThread(new InterruptedLockRunnable(lock));
328     waitForQueuedThread(lock, t1);
329 jsr166 1.19 assertTrue(lock.hasQueuedThreads());
330 jsr166 1.28 Thread t2 = newStartedThread(new InterruptibleLockRunnable(lock));
331     waitForQueuedThread(lock, t2);
332 jsr166 1.19 assertTrue(lock.hasQueuedThreads());
333     t1.interrupt();
334 jsr166 1.28 awaitTermination(t1);
335 jsr166 1.19 assertTrue(lock.hasQueuedThreads());
336     lock.release();
337 jsr166 1.28 awaitTermination(t2);
338 jsr166 1.19 assertFalse(lock.hasQueuedThreads());
339 jsr166 1.15 }
340 dl 1.8
341     /**
342 dl 1.6 * getQueueLength reports number of waiting threads
343     */
344 jsr166 1.28 public void testGetQueueLength() { testGetQueueLength(false); }
345     public void testGetQueueLength_fair() { testGetQueueLength(true); }
346     public void testGetQueueLength(boolean fair) {
347     final PublicSemaphore lock = new PublicSemaphore(1, fair);
348 jsr166 1.19 assertEquals(0, lock.getQueueLength());
349     lock.acquireUninterruptibly();
350 jsr166 1.28 Thread t1 = newStartedThread(new InterruptedLockRunnable(lock));
351     waitForQueuedThread(lock, t1);
352 jsr166 1.19 assertEquals(1, lock.getQueueLength());
353 jsr166 1.28 Thread t2 = newStartedThread(new InterruptibleLockRunnable(lock));
354     waitForQueuedThread(lock, t2);
355 jsr166 1.19 assertEquals(2, lock.getQueueLength());
356     t1.interrupt();
357 jsr166 1.28 awaitTermination(t1);
358 jsr166 1.19 assertEquals(1, lock.getQueueLength());
359     lock.release();
360 jsr166 1.28 awaitTermination(t2);
361 jsr166 1.19 assertEquals(0, lock.getQueueLength());
362 jsr166 1.15 }
363 dl 1.6
364     /**
365     * getQueuedThreads includes waiting threads
366     */
367 jsr166 1.28 public void testGetQueuedThreads() { testGetQueuedThreads(false); }
368     public void testGetQueuedThreads_fair() { testGetQueuedThreads(true); }
369     public void testGetQueuedThreads(boolean fair) {
370     final PublicSemaphore lock = new PublicSemaphore(1, fair);
371 jsr166 1.19 assertTrue(lock.getQueuedThreads().isEmpty());
372     lock.acquireUninterruptibly();
373     assertTrue(lock.getQueuedThreads().isEmpty());
374 jsr166 1.28 Thread t1 = newStartedThread(new InterruptedLockRunnable(lock));
375     waitForQueuedThread(lock, t1);
376 jsr166 1.19 assertTrue(lock.getQueuedThreads().contains(t1));
377 jsr166 1.28 Thread t2 = newStartedThread(new InterruptibleLockRunnable(lock));
378     waitForQueuedThread(lock, t2);
379 jsr166 1.19 assertTrue(lock.getQueuedThreads().contains(t1));
380     assertTrue(lock.getQueuedThreads().contains(t2));
381     t1.interrupt();
382 jsr166 1.28 awaitTermination(t1);
383 jsr166 1.19 assertFalse(lock.getQueuedThreads().contains(t1));
384     assertTrue(lock.getQueuedThreads().contains(t2));
385     lock.release();
386 jsr166 1.28 awaitTermination(t2);
387 jsr166 1.19 assertTrue(lock.getQueuedThreads().isEmpty());
388 jsr166 1.15 }
389 dl 1.6
390 dl 1.11 /**
391     * drainPermits reports and removes given number of permits
392     */
393 jsr166 1.28 public void testDrainPermits() { testDrainPermits(false); }
394     public void testDrainPermits_fair() { testDrainPermits(true); }
395     public void testDrainPermits(boolean fair) {
396     Semaphore s = new Semaphore(0, fair);
397 dl 1.11 assertEquals(0, s.availablePermits());
398     assertEquals(0, s.drainPermits());
399     s.release(10);
400     assertEquals(10, s.availablePermits());
401     assertEquals(10, s.drainPermits());
402     assertEquals(0, s.availablePermits());
403     assertEquals(0, s.drainPermits());
404     }
405 dl 1.6
406     /**
407 jsr166 1.28 * release(-N) throws IllegalArgumentException
408 dl 1.6 */
409 jsr166 1.28 public void testReleaseIAE() { testReleaseIAE(false); }
410     public void testReleaseIAE_fair() { testReleaseIAE(true); }
411     public void testReleaseIAE(boolean fair) {
412     Semaphore s = new Semaphore(10, fair);
413     try {
414     s.release(-1);
415     shouldThrow();
416     } catch (IllegalArgumentException success) {}
417 dl 1.6 }
418    
419     /**
420 jsr166 1.28 * reducePermits(-N) throws IllegalArgumentException
421     */
422     public void testReducePermitsIAE() { testReducePermitsIAE(false); }
423     public void testReducePermitsIAE_fair() { testReducePermitsIAE(true); }
424     public void testReducePermitsIAE(boolean fair) {
425     PublicSemaphore s = new PublicSemaphore(10, fair);
426     try {
427     s.reducePermits(-1);
428     shouldThrow();
429     } catch (IllegalArgumentException success) {}
430 dl 1.6 }
431    
432     /**
433 jsr166 1.28 * reducePermits reduces number of permits
434 dl 1.6 */
435 jsr166 1.28 public void testReducePermits() { testReducePermits(false); }
436     public void testReducePermits_fair() { testReducePermits(true); }
437     public void testReducePermits(boolean fair) {
438     PublicSemaphore s = new PublicSemaphore(10, fair);
439     assertEquals(10, s.availablePermits());
440     s.reducePermits(0);
441     assertEquals(10, s.availablePermits());
442     s.reducePermits(1);
443     assertEquals(9, s.availablePermits());
444     s.reducePermits(10);
445     assertEquals(-1, s.availablePermits());
446     s.reducePermits(10);
447     assertEquals(-11, s.availablePermits());
448     s.reducePermits(0);
449     assertEquals(-11, s.availablePermits());
450 dl 1.6 }
451    
452     /**
453 jsr166 1.28 * a reserialized semaphore has same number of permits and
454     * fairness, but no queued threads
455     */
456     public void testSerialization() { testSerialization(false); }
457     public void testSerialization_fair() { testSerialization(true); }
458     public void testSerialization(boolean fair) {
459     try {
460     Semaphore s = new Semaphore(3, fair);
461     s.acquire();
462     s.acquire();
463     s.release();
464    
465     Semaphore clone = serialClone(s);
466     assertEquals(fair, s.isFair());
467     assertEquals(fair, clone.isFair());
468     assertEquals(2, s.availablePermits());
469     assertEquals(2, clone.availablePermits());
470     clone.acquire();
471     clone.acquire();
472     clone.release();
473     assertEquals(2, s.availablePermits());
474     assertEquals(1, clone.availablePermits());
475 jsr166 1.35 assertFalse(s.hasQueuedThreads());
476     assertFalse(clone.hasQueuedThreads());
477     } catch (InterruptedException e) { threadUnexpectedException(e); }
478 jsr166 1.28
479 jsr166 1.35 {
480     PublicSemaphore s = new PublicSemaphore(0, fair);
481 jsr166 1.28 Thread t = newStartedThread(new InterruptibleLockRunnable(s));
482 jsr166 1.35 // waitForQueuedThreads(s); // suffers from "flicker", so ...
483     waitForQueuedThread(s, t); // ... we use this instead
484     PublicSemaphore clone = serialClone(s);
485 jsr166 1.28 assertEquals(fair, s.isFair());
486     assertEquals(fair, clone.isFair());
487     assertEquals(0, s.availablePermits());
488     assertEquals(0, clone.availablePermits());
489     assertTrue(s.hasQueuedThreads());
490     assertFalse(clone.hasQueuedThreads());
491     s.release();
492     awaitTermination(t);
493     assertFalse(s.hasQueuedThreads());
494     assertFalse(clone.hasQueuedThreads());
495 jsr166 1.35 }
496 dl 1.6 }
497    
498     /**
499 dl 1.9 * tryAcquire(n) succeeds when sufficient permits, else fails
500 dl 1.6 */
501 jsr166 1.28 public void testTryAcquireNInSameThread() { testTryAcquireNInSameThread(false); }
502     public void testTryAcquireNInSameThread_fair() { testTryAcquireNInSameThread(true); }
503     public void testTryAcquireNInSameThread(boolean fair) {
504     Semaphore s = new Semaphore(2, fair);
505     assertEquals(2, s.availablePermits());
506     assertFalse(s.tryAcquire(3));
507 dl 1.6 assertEquals(2, s.availablePermits());
508     assertTrue(s.tryAcquire(2));
509     assertEquals(0, s.availablePermits());
510 jsr166 1.28 assertFalse(s.tryAcquire(1));
511     assertFalse(s.tryAcquire(2));
512     assertEquals(0, s.availablePermits());
513 dl 1.6 }
514    
515     /**
516 jsr166 1.28 * acquire succeeds if permits available
517 dl 1.6 */
518 jsr166 1.28 public void testReleaseAcquireSameThread_acquire() { testReleaseAcquireSameThread(false, AcquireMethod.acquire); }
519     public void testReleaseAcquireSameThread_acquire_fair() { testReleaseAcquireSameThread(true, AcquireMethod.acquire); }
520     public void testReleaseAcquireSameThread_acquireN() { testReleaseAcquireSameThread(false, AcquireMethod.acquireN); }
521     public void testReleaseAcquireSameThread_acquireN_fair() { testReleaseAcquireSameThread(true, AcquireMethod.acquireN); }
522     public void testReleaseAcquireSameThread_acquireUninterruptibly() { testReleaseAcquireSameThread(false, AcquireMethod.acquireUninterruptibly); }
523     public void testReleaseAcquireSameThread_acquireUninterruptibly_fair() { testReleaseAcquireSameThread(true, AcquireMethod.acquireUninterruptibly); }
524     public void testReleaseAcquireSameThread_acquireUninterruptiblyN() { testReleaseAcquireSameThread(false, AcquireMethod.acquireUninterruptibly); }
525     public void testReleaseAcquireSameThread_acquireUninterruptiblyN_fair() { testReleaseAcquireSameThread(true, AcquireMethod.acquireUninterruptibly); }
526     public void testReleaseAcquireSameThread_tryAcquire() { testReleaseAcquireSameThread(false, AcquireMethod.tryAcquire); }
527     public void testReleaseAcquireSameThread_tryAcquire_fair() { testReleaseAcquireSameThread(true, AcquireMethod.tryAcquire); }
528     public void testReleaseAcquireSameThread_tryAcquireN() { testReleaseAcquireSameThread(false, AcquireMethod.tryAcquireN); }
529     public void testReleaseAcquireSameThread_tryAcquireN_fair() { testReleaseAcquireSameThread(true, AcquireMethod.tryAcquireN); }
530     public void testReleaseAcquireSameThread_tryAcquireTimed() { testReleaseAcquireSameThread(false, AcquireMethod.tryAcquireTimed); }
531     public void testReleaseAcquireSameThread_tryAcquireTimed_fair() { testReleaseAcquireSameThread(true, AcquireMethod.tryAcquireTimed); }
532     public void testReleaseAcquireSameThread_tryAcquireTimedN() { testReleaseAcquireSameThread(false, AcquireMethod.tryAcquireTimedN); }
533     public void testReleaseAcquireSameThread_tryAcquireTimedN_fair() { testReleaseAcquireSameThread(true, AcquireMethod.tryAcquireTimedN); }
534     public void testReleaseAcquireSameThread(boolean fair,
535     final AcquireMethod acquirer) {
536     Semaphore s = new Semaphore(1, fair);
537     for (int i = 1; i < 6; i++) {
538     s.release(i);
539     assertEquals(1 + i, s.availablePermits());
540     try {
541     acquirer.acquire(s, i);
542     } catch (InterruptedException e) { threadUnexpectedException(e); }
543     assertEquals(1, s.availablePermits());
544     }
545 dl 1.6 }
546    
547     /**
548 jsr166 1.28 * release in one thread enables acquire in another thread
549 dl 1.6 */
550 jsr166 1.28 public void testReleaseAcquireDifferentThreads_acquire() { testReleaseAcquireDifferentThreads(false, AcquireMethod.acquire); }
551     public void testReleaseAcquireDifferentThreads_acquire_fair() { testReleaseAcquireDifferentThreads(true, AcquireMethod.acquire); }
552     public void testReleaseAcquireDifferentThreads_acquireN() { testReleaseAcquireDifferentThreads(false, AcquireMethod.acquireN); }
553     public void testReleaseAcquireDifferentThreads_acquireN_fair() { testReleaseAcquireDifferentThreads(true, AcquireMethod.acquireN); }
554     public void testReleaseAcquireDifferentThreads_acquireUninterruptibly() { testReleaseAcquireDifferentThreads(false, AcquireMethod.acquireUninterruptibly); }
555     public void testReleaseAcquireDifferentThreads_acquireUninterruptibly_fair() { testReleaseAcquireDifferentThreads(true, AcquireMethod.acquireUninterruptibly); }
556     public void testReleaseAcquireDifferentThreads_acquireUninterruptiblyN() { testReleaseAcquireDifferentThreads(false, AcquireMethod.acquireUninterruptibly); }
557     public void testReleaseAcquireDifferentThreads_acquireUninterruptiblyN_fair() { testReleaseAcquireDifferentThreads(true, AcquireMethod.acquireUninterruptibly); }
558     public void testReleaseAcquireDifferentThreads_tryAcquireTimed() { testReleaseAcquireDifferentThreads(false, AcquireMethod.tryAcquireTimed); }
559     public void testReleaseAcquireDifferentThreads_tryAcquireTimed_fair() { testReleaseAcquireDifferentThreads(true, AcquireMethod.tryAcquireTimed); }
560     public void testReleaseAcquireDifferentThreads_tryAcquireTimedN() { testReleaseAcquireDifferentThreads(false, AcquireMethod.tryAcquireTimedN); }
561     public void testReleaseAcquireDifferentThreads_tryAcquireTimedN_fair() { testReleaseAcquireDifferentThreads(true, AcquireMethod.tryAcquireTimedN); }
562     public void testReleaseAcquireDifferentThreads(boolean fair,
563     final AcquireMethod acquirer) {
564     final Semaphore s = new Semaphore(0, fair);
565     final int rounds = 4;
566     long startTime = System.nanoTime();
567     Thread t = newStartedThread(new CheckedRunnable() {
568     public void realRun() throws InterruptedException {
569     for (int i = 0; i < rounds; i++) {
570     assertFalse(s.hasQueuedThreads());
571     if (i % 2 == 0)
572     acquirer.acquire(s);
573     else
574     acquirer.acquire(s, 3);
575     }}});
576    
577     for (int i = 0; i < rounds; i++) {
578     while (! (s.availablePermits() == 0 && s.hasQueuedThreads()))
579     Thread.yield();
580     assertTrue(t.isAlive());
581     if (i % 2 == 0)
582     s.release();
583     else
584     s.release(3);
585     }
586     awaitTermination(t);
587     assertEquals(0, s.availablePermits());
588     assertTrue(millisElapsedSince(startTime) < LONG_DELAY_MS);
589 dl 1.6 }
590    
591     /**
592 jsr166 1.28 * fair locks are strictly FIFO
593 dl 1.6 */
594 jsr166 1.28 public void testFairLocksFifo() {
595     final PublicSemaphore s = new PublicSemaphore(1, true);
596     final CountDownLatch pleaseRelease = new CountDownLatch(1);
597     Thread t1 = newStartedThread(new CheckedRunnable() {
598 jsr166 1.20 public void realRun() throws InterruptedException {
599 jsr166 1.28 // Will block; permits are available, but not three
600     s.acquire(3);
601 jsr166 1.19 }});
602    
603 jsr166 1.36 waitForQueuedThread(s, t1);
604 dl 1.6
605 jsr166 1.28 Thread t2 = newStartedThread(new CheckedRunnable() {
606 jsr166 1.20 public void realRun() throws InterruptedException {
607 jsr166 1.28 // Will fail, even though 1 permit is available
608 jsr166 1.42 assertFalse(
609     s.tryAcquire(randomExpiredTimeout(), randomTimeUnit()));
610     assertFalse(
611     s.tryAcquire(1, randomExpiredTimeout(), randomTimeUnit()));
612 jsr166 1.28
613     // untimed tryAcquire will barge and succeed
614     assertTrue(s.tryAcquire());
615 jsr166 1.19 s.release(2);
616 jsr166 1.28 assertTrue(s.tryAcquire(2));
617     s.release();
618    
619     pleaseRelease.countDown();
620     // Will queue up behind t1, even though 1 permit is available
621 jsr166 1.19 s.acquire();
622     }});
623    
624 jsr166 1.28 await(pleaseRelease);
625     waitForQueuedThread(s, t2);
626 jsr166 1.19 s.release(2);
627 jsr166 1.28 awaitTermination(t1);
628     assertTrue(t2.isAlive());
629 jsr166 1.19 s.release();
630 jsr166 1.28 awaitTermination(t2);
631 jsr166 1.33 }
632 dl 1.6
633 dl 1.14 /**
634     * toString indicates current number of permits
635     */
636 jsr166 1.28 public void testToString() { testToString(false); }
637     public void testToString_fair() { testToString(true); }
638     public void testToString(boolean fair) {
639     PublicSemaphore s = new PublicSemaphore(0, fair);
640     assertTrue(s.toString().contains("Permits = 0"));
641 dl 1.14 s.release();
642 jsr166 1.28 assertTrue(s.toString().contains("Permits = 1"));
643     s.release(2);
644     assertTrue(s.toString().contains("Permits = 3"));
645     s.reducePermits(5);
646     assertTrue(s.toString().contains("Permits = -2"));
647 dl 1.14 }
648 dl 1.2
649 dl 1.1 }