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root/jsr166/jsr166/src/test/tck/ArrayBlockingQueueTest.java
Revision: 1.88
Committed: Sun May 14 01:30:34 2017 UTC (7 years ago) by jsr166
Branch: MAIN
Changes since 1.87: +8 -2 lines
Log Message:
improve testInterruptedTimedPoll

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 1.43 * http://creativecommons.org/publicdomain/zero/1.0/
5 jsr166 1.12 * Other contributors include Andrew Wright, Jeffrey Hayes,
6     * Pat Fisher, Mike Judd.
7 dl 1.1 */
8    
9 jsr166 1.58 import static java.util.concurrent.TimeUnit.MILLISECONDS;
10    
11     import java.util.ArrayList;
12 jsr166 1.48 import java.util.Arrays;
13     import java.util.Collection;
14 jsr166 1.77 import java.util.Collections;
15 jsr166 1.48 import java.util.Iterator;
16     import java.util.NoSuchElementException;
17 jsr166 1.49 import java.util.Queue;
18 jsr166 1.48 import java.util.concurrent.ArrayBlockingQueue;
19     import java.util.concurrent.BlockingQueue;
20     import java.util.concurrent.CountDownLatch;
21     import java.util.concurrent.Executors;
22     import java.util.concurrent.ExecutorService;
23 jsr166 1.74 import java.util.concurrent.ThreadLocalRandom;
24 jsr166 1.58
25     import junit.framework.Test;
26 dl 1.1
27 dl 1.3 public class ArrayBlockingQueueTest extends JSR166TestCase {
28 jsr166 1.32
29 dl 1.1 public static void main(String[] args) {
30 jsr166 1.65 main(suite(), args);
31 dl 1.1 }
32 jsr166 1.32
33 dl 1.1 public static Test suite() {
34 jsr166 1.73 class Implementation implements CollectionImplementation {
35     public Class<?> klazz() { return ArrayBlockingQueue.class; }
36 jsr166 1.75 public Collection emptyCollection() {
37     boolean fair = ThreadLocalRandom.current().nextBoolean();
38     return populatedQueue(0, SIZE, 2 * SIZE, fair);
39     }
40 jsr166 1.73 public Object makeElement(int i) { return i; }
41     public boolean isConcurrent() { return true; }
42     public boolean permitsNulls() { return false; }
43     }
44 jsr166 1.76
45     return newTestSuite(
46     ArrayBlockingQueueTest.class,
47     new Fair().testSuite(),
48     new NonFair().testSuite(),
49     CollectionTest.testSuite(new Implementation()));
50     }
51    
52     public static class Fair extends BlockingQueueTest {
53     protected BlockingQueue emptyCollection() {
54     return populatedQueue(0, SIZE, 2 * SIZE, true);
55     }
56     }
57    
58     public static class NonFair extends BlockingQueueTest {
59     protected BlockingQueue emptyCollection() {
60     return populatedQueue(0, SIZE, 2 * SIZE, false);
61     }
62 dl 1.1 }
63    
64     /**
65 jsr166 1.54 * Returns a new queue of given size containing consecutive
66 jsr166 1.72 * Integers 0 ... n - 1.
67 dl 1.1 */
68 jsr166 1.75 static ArrayBlockingQueue<Integer> populatedQueue(int n) {
69     return populatedQueue(n, n, n, false);
70     }
71    
72     /**
73     * Returns a new queue of given size containing consecutive
74     * Integers 0 ... n - 1, with given capacity range and fairness.
75     */
76     static ArrayBlockingQueue<Integer> populatedQueue(
77     int size, int minCapacity, int maxCapacity, boolean fair) {
78     ThreadLocalRandom rnd = ThreadLocalRandom.current();
79     int capacity = rnd.nextInt(minCapacity, maxCapacity + 1);
80     ArrayBlockingQueue<Integer> q = new ArrayBlockingQueue<>(capacity);
81 dl 1.1 assertTrue(q.isEmpty());
82 jsr166 1.75 // shuffle circular array elements so they wrap
83     {
84     int n = rnd.nextInt(capacity);
85     for (int i = 0; i < n; i++) q.add(42);
86     for (int i = 0; i < n; i++) q.remove();
87     }
88     for (int i = 0; i < size; i++)
89     assertTrue(q.offer((Integer) i));
90     assertEquals(size == 0, q.isEmpty());
91     assertEquals(capacity - size, q.remainingCapacity());
92     assertEquals(size, q.size());
93     if (size > 0)
94     assertEquals((Integer) 0, q.peek());
95 dl 1.1 return q;
96     }
97 jsr166 1.12
98 dl 1.4 /**
99 dl 1.5 * A new queue has the indicated capacity
100 dl 1.4 */
101     public void testConstructor1() {
102 dl 1.3 assertEquals(SIZE, new ArrayBlockingQueue(SIZE).remainingCapacity());
103 dl 1.1 }
104    
105 dl 1.4 /**
106 jsr166 1.18 * Constructor throws IAE if capacity argument nonpositive
107 dl 1.4 */
108 jsr166 1.77 public void testConstructor_nonPositiveCapacity() {
109     for (int i : new int[] { 0, -1, Integer.MIN_VALUE }) {
110     try {
111     new ArrayBlockingQueue(i);
112     shouldThrow();
113     } catch (IllegalArgumentException success) {}
114     for (boolean fair : new boolean[] { true, false }) {
115     try {
116     new ArrayBlockingQueue(i, fair);
117     shouldThrow();
118     } catch (IllegalArgumentException success) {}
119     }
120     }
121 dl 1.1 }
122    
123 dl 1.4 /**
124 dl 1.5 * Initializing from null Collection throws NPE
125 dl 1.4 */
126 jsr166 1.77 public void testConstructor_nullCollection() {
127 dl 1.1 try {
128 jsr166 1.48 new ArrayBlockingQueue(1, true, null);
129 dl 1.4 shouldThrow();
130 jsr166 1.17 } catch (NullPointerException success) {}
131 dl 1.1 }
132    
133 dl 1.4 /**
134 dl 1.5 * Initializing from Collection of null elements throws NPE
135 dl 1.4 */
136     public void testConstructor4() {
137 jsr166 1.48 Collection<Integer> elements = Arrays.asList(new Integer[SIZE]);
138 dl 1.1 try {
139 jsr166 1.48 new ArrayBlockingQueue(SIZE, false, elements);
140 dl 1.4 shouldThrow();
141 jsr166 1.17 } catch (NullPointerException success) {}
142 dl 1.1 }
143    
144 dl 1.4 /**
145 dl 1.5 * Initializing from Collection with some null elements throws NPE
146 dl 1.4 */
147     public void testConstructor5() {
148 jsr166 1.48 Integer[] ints = new Integer[SIZE];
149 jsr166 1.66 for (int i = 0; i < SIZE - 1; ++i)
150 jsr166 1.48 ints[i] = i;
151     Collection<Integer> elements = Arrays.asList(ints);
152 dl 1.1 try {
153 jsr166 1.62 new ArrayBlockingQueue(SIZE, false, elements);
154 dl 1.4 shouldThrow();
155 jsr166 1.17 } catch (NullPointerException success) {}
156 dl 1.1 }
157    
158 dl 1.4 /**
159 dl 1.5 * Initializing from too large collection throws IAE
160 dl 1.4 */
161 jsr166 1.77 public void testConstructor_collectionTooLarge() {
162     // just barely fits - succeeds
163     new ArrayBlockingQueue(SIZE, false,
164     Collections.nCopies(SIZE, ""));
165 dl 1.1 try {
166 jsr166 1.77 new ArrayBlockingQueue(SIZE - 1, false,
167     Collections.nCopies(SIZE, ""));
168 dl 1.4 shouldThrow();
169 jsr166 1.17 } catch (IllegalArgumentException success) {}
170 dl 1.1 }
171    
172 dl 1.4 /**
173 dl 1.5 * Queue contains all elements of collection used to initialize
174 dl 1.4 */
175     public void testConstructor7() {
176 jsr166 1.19 Integer[] ints = new Integer[SIZE];
177     for (int i = 0; i < SIZE; ++i)
178 jsr166 1.48 ints[i] = i;
179     Collection<Integer> elements = Arrays.asList(ints);
180     ArrayBlockingQueue q = new ArrayBlockingQueue(SIZE, true, elements);
181 jsr166 1.19 for (int i = 0; i < SIZE; ++i)
182     assertEquals(ints[i], q.poll());
183 dl 1.1 }
184    
185 dl 1.4 /**
186 dl 1.5 * Queue transitions from empty to full when elements added
187 dl 1.4 */
188 dl 1.1 public void testEmptyFull() {
189 jsr166 1.77 BlockingQueue q = populatedQueue(0, 2, 2, false);
190 dl 1.1 assertTrue(q.isEmpty());
191 dl 1.4 assertEquals(2, q.remainingCapacity());
192 dl 1.3 q.add(one);
193 dl 1.1 assertFalse(q.isEmpty());
194 jsr166 1.77 assertTrue(q.offer(two));
195 dl 1.1 assertFalse(q.isEmpty());
196 dl 1.4 assertEquals(0, q.remainingCapacity());
197     assertFalse(q.offer(three));
198 dl 1.1 }
199    
200 dl 1.4 /**
201 dl 1.5 * remainingCapacity decreases on add, increases on remove
202 dl 1.4 */
203     public void testRemainingCapacity() {
204 jsr166 1.77 int size = ThreadLocalRandom.current().nextInt(1, SIZE);
205     BlockingQueue q = populatedQueue(size, size, 2 * size, false);
206     int spare = q.remainingCapacity();
207     int capacity = spare + size;
208     for (int i = 0; i < size; i++) {
209     assertEquals(spare + i, q.remainingCapacity());
210     assertEquals(capacity, q.size() + q.remainingCapacity());
211 jsr166 1.64 assertEquals(i, q.remove());
212 dl 1.1 }
213 jsr166 1.77 for (int i = 0; i < size; i++) {
214     assertEquals(capacity - i, q.remainingCapacity());
215     assertEquals(capacity, q.size() + q.remainingCapacity());
216 jsr166 1.64 assertTrue(q.add(i));
217 dl 1.1 }
218     }
219    
220 dl 1.4 /**
221 dl 1.5 * Offer succeeds if not full; fails if full
222 dl 1.4 */
223     public void testOffer() {
224 dl 1.1 ArrayBlockingQueue q = new ArrayBlockingQueue(1);
225 dl 1.3 assertTrue(q.offer(zero));
226     assertFalse(q.offer(one));
227 dl 1.1 }
228    
229 dl 1.4 /**
230 dl 1.5 * add succeeds if not full; throws ISE if full
231 dl 1.4 */
232     public void testAdd() {
233 jsr166 1.63 ArrayBlockingQueue q = new ArrayBlockingQueue(SIZE);
234 jsr166 1.78 for (int i = 0; i < SIZE; i++) assertTrue(q.add((Integer) i));
235 jsr166 1.63 assertEquals(0, q.remainingCapacity());
236 jsr166 1.15 try {
237 jsr166 1.78 q.add((Integer) SIZE);
238 jsr166 1.17 shouldThrow();
239     } catch (IllegalStateException success) {}
240 dl 1.1 }
241    
242 dl 1.4 /**
243 dl 1.6 * addAll(this) throws IAE
244     */
245     public void testAddAllSelf() {
246 jsr166 1.63 ArrayBlockingQueue q = populatedQueue(SIZE);
247 dl 1.6 try {
248     q.addAll(q);
249     shouldThrow();
250 jsr166 1.17 } catch (IllegalArgumentException success) {}
251 dl 1.6 }
252    
253 dl 1.4 /**
254 dl 1.5 * addAll of a collection with any null elements throws NPE after
255     * possibly adding some elements
256 dl 1.4 */
257     public void testAddAll3() {
258 jsr166 1.63 ArrayBlockingQueue q = new ArrayBlockingQueue(SIZE);
259     Integer[] ints = new Integer[SIZE];
260 jsr166 1.66 for (int i = 0; i < SIZE - 1; ++i)
261 jsr166 1.63 ints[i] = new Integer(i);
262 dl 1.1 try {
263     q.addAll(Arrays.asList(ints));
264 dl 1.4 shouldThrow();
265 jsr166 1.17 } catch (NullPointerException success) {}
266 dl 1.1 }
267 jsr166 1.30
268 dl 1.4 /**
269 dl 1.5 * addAll throws ISE if not enough room
270 dl 1.4 */
271 jsr166 1.78 public void testAddAll_insufficientSpace() {
272 jsr166 1.80 int size = ThreadLocalRandom.current().nextInt(1, SIZE);
273 jsr166 1.78 ArrayBlockingQueue q = populatedQueue(0, size, size, false);
274     // Just fits:
275     q.addAll(populatedQueue(size, size, 2 * size, false));
276     assertEquals(0, q.remainingCapacity());
277     assertEquals(size, q.size());
278     assertEquals(0, q.peek());
279 dl 1.1 try {
280 jsr166 1.78 q = populatedQueue(0, size, size, false);
281     q.addAll(Collections.nCopies(size + 1, 42));
282 dl 1.4 shouldThrow();
283 jsr166 1.17 } catch (IllegalStateException success) {}
284 dl 1.1 }
285 jsr166 1.30
286 dl 1.4 /**
287 dl 1.5 * Queue contains all elements, in traversal order, of successful addAll
288 dl 1.4 */
289     public void testAddAll5() {
290 jsr166 1.17 Integer[] empty = new Integer[0];
291     Integer[] ints = new Integer[SIZE];
292     for (int i = 0; i < SIZE; ++i)
293     ints[i] = new Integer(i);
294     ArrayBlockingQueue q = new ArrayBlockingQueue(SIZE);
295     assertFalse(q.addAll(Arrays.asList(empty)));
296     assertTrue(q.addAll(Arrays.asList(ints)));
297     for (int i = 0; i < SIZE; ++i)
298     assertEquals(ints[i], q.poll());
299 dl 1.1 }
300    
301 dl 1.4 /**
302 dl 1.5 * all elements successfully put are contained
303 dl 1.4 */
304 jsr166 1.17 public void testPut() throws InterruptedException {
305     ArrayBlockingQueue q = new ArrayBlockingQueue(SIZE);
306     for (int i = 0; i < SIZE; ++i) {
307 jsr166 1.60 Integer x = new Integer(i);
308     q.put(x);
309     assertTrue(q.contains(x));
310 dl 1.1 }
311 jsr166 1.17 assertEquals(0, q.remainingCapacity());
312 dl 1.1 }
313    
314 dl 1.4 /**
315 dl 1.5 * put blocks interruptibly if full
316 dl 1.4 */
317 jsr166 1.17 public void testBlockingPut() throws InterruptedException {
318 dl 1.10 final ArrayBlockingQueue q = new ArrayBlockingQueue(SIZE);
319 jsr166 1.47 final CountDownLatch pleaseInterrupt = new CountDownLatch(1);
320     Thread t = newStartedThread(new CheckedRunnable() {
321 jsr166 1.25 public void realRun() throws InterruptedException {
322     for (int i = 0; i < SIZE; ++i)
323     q.put(i);
324     assertEquals(SIZE, q.size());
325     assertEquals(0, q.remainingCapacity());
326 jsr166 1.47
327     Thread.currentThread().interrupt();
328     try {
329     q.put(99);
330     shouldThrow();
331     } catch (InterruptedException success) {}
332     assertFalse(Thread.interrupted());
333    
334     pleaseInterrupt.countDown();
335 jsr166 1.17 try {
336 jsr166 1.25 q.put(99);
337     shouldThrow();
338     } catch (InterruptedException success) {}
339 jsr166 1.47 assertFalse(Thread.interrupted());
340 jsr166 1.25 }});
341 jsr166 1.17
342 jsr166 1.47 await(pleaseInterrupt);
343 jsr166 1.84 assertThreadBlocks(t, Thread.State.WAITING);
344 jsr166 1.17 t.interrupt();
345 jsr166 1.47 awaitTermination(t);
346 jsr166 1.25 assertEquals(SIZE, q.size());
347     assertEquals(0, q.remainingCapacity());
348 dl 1.1 }
349    
350 dl 1.4 /**
351 jsr166 1.47 * put blocks interruptibly waiting for take when full
352 dl 1.4 */
353 jsr166 1.17 public void testPutWithTake() throws InterruptedException {
354 jsr166 1.27 final int capacity = 2;
355     final ArrayBlockingQueue q = new ArrayBlockingQueue(capacity);
356 jsr166 1.47 final CountDownLatch pleaseTake = new CountDownLatch(1);
357     final CountDownLatch pleaseInterrupt = new CountDownLatch(1);
358     Thread t = newStartedThread(new CheckedRunnable() {
359 jsr166 1.27 public void realRun() throws InterruptedException {
360 jsr166 1.47 for (int i = 0; i < capacity; i++)
361 jsr166 1.27 q.put(i);
362 jsr166 1.47 pleaseTake.countDown();
363     q.put(86);
364    
365     pleaseInterrupt.countDown();
366 jsr166 1.17 try {
367 jsr166 1.27 q.put(99);
368     shouldThrow();
369     } catch (InterruptedException success) {}
370 jsr166 1.47 assertFalse(Thread.interrupted());
371 jsr166 1.17 }});
372    
373 jsr166 1.47 await(pleaseTake);
374 jsr166 1.51 assertEquals(0, q.remainingCapacity());
375 jsr166 1.27 assertEquals(0, q.take());
376 jsr166 1.47
377     await(pleaseInterrupt);
378 jsr166 1.83 assertThreadBlocks(t, Thread.State.WAITING);
379 jsr166 1.17 t.interrupt();
380 jsr166 1.47 awaitTermination(t);
381 jsr166 1.51 assertEquals(0, q.remainingCapacity());
382 dl 1.1 }
383    
384 dl 1.4 /**
385 dl 1.5 * timed offer times out if full and elements not taken
386 dl 1.4 */
387 jsr166 1.17 public void testTimedOffer() throws InterruptedException {
388 dl 1.1 final ArrayBlockingQueue q = new ArrayBlockingQueue(2);
389 jsr166 1.46 final CountDownLatch pleaseInterrupt = new CountDownLatch(1);
390     Thread t = newStartedThread(new CheckedRunnable() {
391 jsr166 1.17 public void realRun() throws InterruptedException {
392     q.put(new Object());
393     q.put(new Object());
394 jsr166 1.46 long startTime = System.nanoTime();
395     assertFalse(q.offer(new Object(), timeoutMillis(), MILLISECONDS));
396     assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
397     pleaseInterrupt.countDown();
398 jsr166 1.24 try {
399 jsr166 1.46 q.offer(new Object(), 2 * LONG_DELAY_MS, MILLISECONDS);
400 jsr166 1.24 shouldThrow();
401     } catch (InterruptedException success) {}
402 jsr166 1.87 assertFalse(Thread.interrupted());
403 jsr166 1.24 }});
404 jsr166 1.17
405 jsr166 1.46 await(pleaseInterrupt);
406 jsr166 1.84 assertThreadBlocks(t, Thread.State.TIMED_WAITING);
407 jsr166 1.17 t.interrupt();
408 jsr166 1.46 awaitTermination(t);
409 dl 1.1 }
410    
411 dl 1.4 /**
412 dl 1.5 * take retrieves elements in FIFO order
413 dl 1.4 */
414 jsr166 1.17 public void testTake() throws InterruptedException {
415     ArrayBlockingQueue q = populatedQueue(SIZE);
416     for (int i = 0; i < SIZE; ++i) {
417 jsr166 1.25 assertEquals(i, q.take());
418 jsr166 1.15 }
419 dl 1.1 }
420    
421 dl 1.4 /**
422 dl 1.5 * Take removes existing elements until empty, then blocks interruptibly
423 dl 1.4 */
424 jsr166 1.17 public void testBlockingTake() throws InterruptedException {
425 jsr166 1.25 final ArrayBlockingQueue q = populatedQueue(SIZE);
426 jsr166 1.47 final CountDownLatch pleaseInterrupt = new CountDownLatch(1);
427     Thread t = newStartedThread(new CheckedRunnable() {
428 jsr166 1.17 public void realRun() throws InterruptedException {
429 jsr166 1.82 for (int i = 0; i < SIZE; i++) assertEquals(i, q.take());
430 jsr166 1.47
431     Thread.currentThread().interrupt();
432     try {
433     q.take();
434     shouldThrow();
435     } catch (InterruptedException success) {}
436     assertFalse(Thread.interrupted());
437    
438     pleaseInterrupt.countDown();
439 jsr166 1.25 try {
440     q.take();
441     shouldThrow();
442     } catch (InterruptedException success) {}
443 jsr166 1.47 assertFalse(Thread.interrupted());
444 jsr166 1.25 }});
445 jsr166 1.17
446 jsr166 1.47 await(pleaseInterrupt);
447 jsr166 1.82 assertThreadBlocks(t, Thread.State.WAITING);
448 jsr166 1.25 t.interrupt();
449 jsr166 1.47 awaitTermination(t);
450 dl 1.1 }
451    
452 dl 1.4 /**
453 dl 1.5 * poll succeeds unless empty
454 dl 1.4 */
455     public void testPoll() {
456 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
457     for (int i = 0; i < SIZE; ++i) {
458 jsr166 1.25 assertEquals(i, q.poll());
459 dl 1.1 }
460 jsr166 1.15 assertNull(q.poll());
461 dl 1.1 }
462    
463 dl 1.4 /**
464 jsr166 1.37 * timed poll with zero timeout succeeds when non-empty, else times out
465 dl 1.4 */
466 jsr166 1.17 public void testTimedPoll0() throws InterruptedException {
467     ArrayBlockingQueue q = populatedQueue(SIZE);
468     for (int i = 0; i < SIZE; ++i) {
469 jsr166 1.25 assertEquals(i, q.poll(0, MILLISECONDS));
470 jsr166 1.15 }
471 jsr166 1.17 assertNull(q.poll(0, MILLISECONDS));
472 jsr166 1.47 checkEmpty(q);
473 dl 1.1 }
474    
475 dl 1.4 /**
476 jsr166 1.37 * timed poll with nonzero timeout succeeds when non-empty, else times out
477 dl 1.4 */
478 jsr166 1.17 public void testTimedPoll() throws InterruptedException {
479     ArrayBlockingQueue q = populatedQueue(SIZE);
480     for (int i = 0; i < SIZE; ++i) {
481 jsr166 1.47 long startTime = System.nanoTime();
482     assertEquals(i, q.poll(LONG_DELAY_MS, MILLISECONDS));
483     assertTrue(millisElapsedSince(startTime) < LONG_DELAY_MS);
484     }
485     long startTime = System.nanoTime();
486     assertNull(q.poll(timeoutMillis(), MILLISECONDS));
487     assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
488     checkEmpty(q);
489 dl 1.1 }
490    
491 dl 1.4 /**
492 dl 1.5 * Interrupted timed poll throws InterruptedException instead of
493     * returning timeout status
494 dl 1.4 */
495 jsr166 1.17 public void testInterruptedTimedPoll() throws InterruptedException {
496 jsr166 1.42 final BlockingQueue<Integer> q = populatedQueue(SIZE);
497 jsr166 1.86 final CountDownLatch pleaseInterrupt = new CountDownLatch(1);
498 jsr166 1.42 Thread t = newStartedThread(new CheckedRunnable() {
499 jsr166 1.17 public void realRun() throws InterruptedException {
500 jsr166 1.70 long startTime = System.nanoTime();
501 jsr166 1.88 for (int i = 0; i < SIZE; i++)
502 jsr166 1.70 assertEquals(i, (int) q.poll(LONG_DELAY_MS, MILLISECONDS));
503 jsr166 1.88
504     Thread.currentThread().interrupt();
505     try {
506     q.poll(LONG_DELAY_MS, MILLISECONDS);
507     shouldThrow();
508     } catch (InterruptedException success) {}
509     assertFalse(Thread.interrupted());
510 jsr166 1.86
511     pleaseInterrupt.countDown();
512 jsr166 1.21 try {
513 jsr166 1.70 q.poll(LONG_DELAY_MS, MILLISECONDS);
514 jsr166 1.22 shouldThrow();
515 jsr166 1.86 } catch (InterruptedException success) {}
516     assertFalse(Thread.interrupted());
517    
518     assertTrue(millisElapsedSince(startTime) < LONG_DELAY_MS);
519 jsr166 1.21 }});
520 jsr166 1.17
521 jsr166 1.86 await(pleaseInterrupt);
522 jsr166 1.85 assertThreadBlocks(t, Thread.State.TIMED_WAITING);
523 jsr166 1.17 t.interrupt();
524 jsr166 1.70 awaitTermination(t);
525 jsr166 1.42 checkEmpty(q);
526 dl 1.1 }
527    
528 dl 1.4 /**
529 dl 1.5 * peek returns next element, or null if empty
530 dl 1.4 */
531     public void testPeek() {
532 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
533     for (int i = 0; i < SIZE; ++i) {
534 jsr166 1.26 assertEquals(i, q.peek());
535     assertEquals(i, q.poll());
536 dl 1.1 assertTrue(q.peek() == null ||
537 jsr166 1.26 !q.peek().equals(i));
538 dl 1.1 }
539 jsr166 1.15 assertNull(q.peek());
540 dl 1.1 }
541    
542 dl 1.4 /**
543 dl 1.5 * element returns next element, or throws NSEE if empty
544 dl 1.4 */
545     public void testElement() {
546 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
547     for (int i = 0; i < SIZE; ++i) {
548 jsr166 1.26 assertEquals(i, q.element());
549     assertEquals(i, q.poll());
550 dl 1.1 }
551     try {
552     q.element();
553 dl 1.4 shouldThrow();
554 jsr166 1.17 } catch (NoSuchElementException success) {}
555 dl 1.1 }
556    
557 dl 1.4 /**
558 dl 1.5 * remove removes next element, or throws NSEE if empty
559 dl 1.4 */
560     public void testRemove() {
561 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
562     for (int i = 0; i < SIZE; ++i) {
563 jsr166 1.26 assertEquals(i, q.remove());
564 dl 1.1 }
565     try {
566     q.remove();
567 dl 1.4 shouldThrow();
568 jsr166 1.17 } catch (NoSuchElementException success) {}
569 dl 1.1 }
570    
571 dl 1.4 /**
572 dl 1.5 * contains(x) reports true when elements added but not yet removed
573 dl 1.4 */
574     public void testContains() {
575 jsr166 1.79 int size = ThreadLocalRandom.current().nextInt(1, SIZE);
576     ArrayBlockingQueue q = populatedQueue(size, size, 2 * size, false);
577     assertFalse(q.contains(null));
578     for (int i = 0; i < size; ++i) {
579 dl 1.1 assertTrue(q.contains(new Integer(i)));
580 jsr166 1.26 assertEquals(i, q.poll());
581 dl 1.1 assertFalse(q.contains(new Integer(i)));
582     }
583     }
584    
585 dl 1.4 /**
586 dl 1.5 * clear removes all elements
587 dl 1.4 */
588     public void testClear() {
589 jsr166 1.81 int size = ThreadLocalRandom.current().nextInt(1, 5);
590     ArrayBlockingQueue q = populatedQueue(size, size, 2 * size, false);
591     int capacity = size + q.remainingCapacity();
592 dl 1.1 q.clear();
593     assertTrue(q.isEmpty());
594     assertEquals(0, q.size());
595 jsr166 1.81 assertEquals(capacity, q.remainingCapacity());
596 dl 1.3 q.add(one);
597 dl 1.1 assertFalse(q.isEmpty());
598 dl 1.11 assertTrue(q.contains(one));
599 dl 1.1 q.clear();
600     assertTrue(q.isEmpty());
601     }
602    
603 dl 1.4 /**
604 dl 1.5 * containsAll(c) is true when c contains a subset of elements
605 dl 1.4 */
606     public void testContainsAll() {
607 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
608     ArrayBlockingQueue p = new ArrayBlockingQueue(SIZE);
609     for (int i = 0; i < SIZE; ++i) {
610 dl 1.1 assertTrue(q.containsAll(p));
611     assertFalse(p.containsAll(q));
612     p.add(new Integer(i));
613     }
614     assertTrue(p.containsAll(q));
615     }
616    
617 dl 1.4 /**
618 dl 1.5 * retainAll(c) retains only those elements of c and reports true if changed
619 dl 1.4 */
620     public void testRetainAll() {
621 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
622     ArrayBlockingQueue p = populatedQueue(SIZE);
623     for (int i = 0; i < SIZE; ++i) {
624 dl 1.1 boolean changed = q.retainAll(p);
625     if (i == 0)
626     assertFalse(changed);
627     else
628     assertTrue(changed);
629    
630     assertTrue(q.containsAll(p));
631 jsr166 1.66 assertEquals(SIZE - i, q.size());
632 dl 1.1 p.remove();
633     }
634     }
635    
636 dl 1.4 /**
637 dl 1.5 * removeAll(c) removes only those elements of c and reports true if changed
638 dl 1.4 */
639     public void testRemoveAll() {
640 dl 1.3 for (int i = 1; i < SIZE; ++i) {
641     ArrayBlockingQueue q = populatedQueue(SIZE);
642     ArrayBlockingQueue p = populatedQueue(i);
643 dl 1.1 assertTrue(q.removeAll(p));
644 jsr166 1.66 assertEquals(SIZE - i, q.size());
645 dl 1.1 for (int j = 0; j < i; ++j) {
646 jsr166 1.60 Integer x = (Integer)(p.remove());
647     assertFalse(q.contains(x));
648 dl 1.1 }
649     }
650     }
651    
652 jsr166 1.74 void checkToArray(ArrayBlockingQueue<Integer> q) {
653 jsr166 1.55 int size = q.size();
654 jsr166 1.74 Object[] a1 = q.toArray();
655     assertEquals(size, a1.length);
656     Integer[] a2 = q.toArray(new Integer[0]);
657     assertEquals(size, a2.length);
658     Integer[] a3 = q.toArray(new Integer[Math.max(0, size - 1)]);
659     assertEquals(size, a3.length);
660     Integer[] a4 = new Integer[size];
661     assertSame(a4, q.toArray(a4));
662     Integer[] a5 = new Integer[size + 1];
663     Arrays.fill(a5, 42);
664     assertSame(a5, q.toArray(a5));
665     Integer[] a6 = new Integer[size + 2];
666     Arrays.fill(a6, 42);
667     assertSame(a6, q.toArray(a6));
668     Object[][] as = { a1, a2, a3, a4, a5, a6 };
669     for (Object[] a : as) {
670     if (a.length > size) assertNull(a[size]);
671     if (a.length > size + 1) assertEquals(42, a[size + 1]);
672     }
673 jsr166 1.55 Iterator it = q.iterator();
674 jsr166 1.74 Integer s = q.peek();
675 jsr166 1.55 for (int i = 0; i < size; i++) {
676     Integer x = (Integer) it.next();
677 jsr166 1.74 assertEquals(s + i, (int) x);
678     for (Object[] a : as)
679     assertSame(a1[i], x);
680 jsr166 1.55 }
681     }
682    
683 dl 1.4 /**
684 jsr166 1.74 * toArray() and toArray(a) contain all elements in FIFO order
685 dl 1.4 */
686 jsr166 1.40 public void testToArray() {
687 jsr166 1.74 final ThreadLocalRandom rnd = ThreadLocalRandom.current();
688     final int size = rnd.nextInt(6);
689     final int capacity = Math.max(1, size + rnd.nextInt(size + 1));
690     ArrayBlockingQueue<Integer> q = new ArrayBlockingQueue<>(capacity);
691     for (int i = 0; i < size; i++) {
692 jsr166 1.55 checkToArray(q);
693     q.add(i);
694     }
695     // Provoke wraparound
696 jsr166 1.74 int added = size * 2;
697     for (int i = 0; i < added; i++) {
698 jsr166 1.55 checkToArray(q);
699 jsr166 1.74 assertEquals((Integer) i, q.poll());
700     q.add(size + i);
701 jsr166 1.55 }
702 jsr166 1.74 for (int i = 0; i < size; i++) {
703 jsr166 1.55 checkToArray(q);
704 jsr166 1.74 assertEquals((Integer) (added + i), q.poll());
705 jsr166 1.55 }
706 dl 1.1 }
707 dl 1.6
708     /**
709 jsr166 1.38 * toArray(incompatible array type) throws ArrayStoreException
710 dl 1.6 */
711 jsr166 1.74 public void testToArray_incompatibleArrayType() {
712 jsr166 1.26 ArrayBlockingQueue q = populatedQueue(SIZE);
713 jsr166 1.15 try {
714 jsr166 1.38 q.toArray(new String[10]);
715 jsr166 1.15 shouldThrow();
716 jsr166 1.18 } catch (ArrayStoreException success) {}
717 jsr166 1.74 try {
718     q.toArray(new String[0]);
719     shouldThrow();
720     } catch (ArrayStoreException success) {}
721 dl 1.6 }
722    
723 dl 1.4 /**
724 dl 1.5 * iterator iterates through all elements
725 dl 1.4 */
726 jsr166 1.17 public void testIterator() throws InterruptedException {
727 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
728 jsr166 1.15 Iterator it = q.iterator();
729 jsr166 1.61 int i;
730     for (i = 0; it.hasNext(); i++)
731     assertTrue(q.contains(it.next()));
732     assertEquals(i, SIZE);
733     assertIteratorExhausted(it);
734    
735     it = q.iterator();
736     for (i = 0; it.hasNext(); i++)
737 jsr166 1.17 assertEquals(it.next(), q.take());
738 jsr166 1.61 assertEquals(i, SIZE);
739     assertIteratorExhausted(it);
740     }
741    
742     /**
743     * iterator of empty collection has no elements
744     */
745     public void testEmptyIterator() {
746     assertIteratorExhausted(new ArrayBlockingQueue(SIZE).iterator());
747 dl 1.1 }
748    
749 dl 1.4 /**
750 dl 1.5 * iterator.remove removes current element
751     */
752 jsr166 1.29 public void testIteratorRemove() {
753 dl 1.5 final ArrayBlockingQueue q = new ArrayBlockingQueue(3);
754     q.add(two);
755     q.add(one);
756     q.add(three);
757    
758     Iterator it = q.iterator();
759     it.next();
760     it.remove();
761 jsr166 1.12
762 dl 1.5 it = q.iterator();
763 jsr166 1.28 assertSame(it.next(), one);
764     assertSame(it.next(), three);
765 dl 1.5 assertFalse(it.hasNext());
766     }
767    
768     /**
769     * iterator ordering is FIFO
770 dl 1.4 */
771 dl 1.1 public void testIteratorOrdering() {
772     final ArrayBlockingQueue q = new ArrayBlockingQueue(3);
773 dl 1.3 q.add(one);
774     q.add(two);
775     q.add(three);
776 dl 1.1
777     assertEquals("queue should be full", 0, q.remainingCapacity());
778    
779     int k = 0;
780     for (Iterator it = q.iterator(); it.hasNext();) {
781 jsr166 1.26 assertEquals(++k, it.next());
782 dl 1.1 }
783 dl 1.4 assertEquals(3, k);
784 dl 1.1 }
785    
786 dl 1.4 /**
787 dl 1.5 * Modifications do not cause iterators to fail
788 dl 1.4 */
789 jsr166 1.29 public void testWeaklyConsistentIteration() {
790 dl 1.1 final ArrayBlockingQueue q = new ArrayBlockingQueue(3);
791 dl 1.3 q.add(one);
792     q.add(two);
793     q.add(three);
794 jsr166 1.17 for (Iterator it = q.iterator(); it.hasNext();) {
795     q.remove();
796     it.next();
797 dl 1.1 }
798 dl 1.4 assertEquals(0, q.size());
799 dl 1.1 }
800    
801 dl 1.4 /**
802 dl 1.5 * toString contains toStrings of elements
803 dl 1.4 */
804     public void testToString() {
805 dl 1.3 ArrayBlockingQueue q = populatedQueue(SIZE);
806 dl 1.1 String s = q.toString();
807 dl 1.3 for (int i = 0; i < SIZE; ++i) {
808 jsr166 1.47 assertTrue(s.contains(String.valueOf(i)));
809 dl 1.1 }
810 jsr166 1.12 }
811 dl 1.1
812 dl 1.4 /**
813 dl 1.5 * offer transfers elements across Executor tasks
814 dl 1.4 */
815 dl 1.1 public void testOfferInExecutor() {
816     final ArrayBlockingQueue q = new ArrayBlockingQueue(2);
817 dl 1.3 q.add(one);
818     q.add(two);
819 jsr166 1.47 final CheckedBarrier threadsStarted = new CheckedBarrier(2);
820 jsr166 1.68 final ExecutorService executor = Executors.newFixedThreadPool(2);
821     try (PoolCleaner cleaner = cleaner(executor)) {
822     executor.execute(new CheckedRunnable() {
823     public void realRun() throws InterruptedException {
824     assertFalse(q.offer(three));
825     threadsStarted.await();
826     assertTrue(q.offer(three, LONG_DELAY_MS, MILLISECONDS));
827     assertEquals(0, q.remainingCapacity());
828     }});
829    
830     executor.execute(new CheckedRunnable() {
831     public void realRun() throws InterruptedException {
832     threadsStarted.await();
833     assertEquals(0, q.remainingCapacity());
834     assertSame(one, q.take());
835     }});
836     }
837 dl 1.1 }
838    
839 dl 1.4 /**
840 jsr166 1.47 * timed poll retrieves elements across Executor threads
841 dl 1.4 */
842 dl 1.1 public void testPollInExecutor() {
843     final ArrayBlockingQueue q = new ArrayBlockingQueue(2);
844 jsr166 1.47 final CheckedBarrier threadsStarted = new CheckedBarrier(2);
845 jsr166 1.68 final ExecutorService executor = Executors.newFixedThreadPool(2);
846     try (PoolCleaner cleaner = cleaner(executor)) {
847     executor.execute(new CheckedRunnable() {
848     public void realRun() throws InterruptedException {
849     assertNull(q.poll());
850     threadsStarted.await();
851     assertSame(one, q.poll(LONG_DELAY_MS, MILLISECONDS));
852     checkEmpty(q);
853     }});
854    
855     executor.execute(new CheckedRunnable() {
856     public void realRun() throws InterruptedException {
857     threadsStarted.await();
858     q.put(one);
859     }});
860     }
861 dl 1.1 }
862 dl 1.2
863 dl 1.4 /**
864 dl 1.5 * A deserialized serialized queue has same elements in same order
865 dl 1.4 */
866 jsr166 1.17 public void testSerialization() throws Exception {
867 jsr166 1.49 Queue x = populatedQueue(SIZE);
868     Queue y = serialClone(x);
869 dl 1.2
870 jsr166 1.56 assertNotSame(x, y);
871 jsr166 1.49 assertEquals(x.size(), y.size());
872     assertEquals(x.toString(), y.toString());
873     assertTrue(Arrays.equals(x.toArray(), y.toArray()));
874     while (!x.isEmpty()) {
875     assertFalse(y.isEmpty());
876     assertEquals(x.remove(), y.remove());
877     }
878     assertTrue(y.isEmpty());
879 dl 1.6 }
880    
881     /**
882     * drainTo(c) empties queue into another collection c
883 jsr166 1.12 */
884 dl 1.6 public void testDrainTo() {
885     ArrayBlockingQueue q = populatedQueue(SIZE);
886     ArrayList l = new ArrayList();
887     q.drainTo(l);
888 jsr166 1.51 assertEquals(0, q.size());
889     assertEquals(SIZE, l.size());
890 jsr166 1.12 for (int i = 0; i < SIZE; ++i)
891 dl 1.6 assertEquals(l.get(i), new Integer(i));
892 dl 1.11 q.add(zero);
893     q.add(one);
894     assertFalse(q.isEmpty());
895     assertTrue(q.contains(zero));
896     assertTrue(q.contains(one));
897     l.clear();
898     q.drainTo(l);
899 jsr166 1.51 assertEquals(0, q.size());
900     assertEquals(2, l.size());
901 jsr166 1.12 for (int i = 0; i < 2; ++i)
902 dl 1.11 assertEquals(l.get(i), new Integer(i));
903 dl 1.6 }
904    
905     /**
906     * drainTo empties full queue, unblocking a waiting put.
907 jsr166 1.12 */
908 jsr166 1.17 public void testDrainToWithActivePut() throws InterruptedException {
909 dl 1.6 final ArrayBlockingQueue q = populatedQueue(SIZE);
910 jsr166 1.17 Thread t = new Thread(new CheckedRunnable() {
911     public void realRun() throws InterruptedException {
912 jsr166 1.66 q.put(new Integer(SIZE + 1));
913 jsr166 1.17 }});
914    
915     t.start();
916     ArrayList l = new ArrayList();
917     q.drainTo(l);
918     assertTrue(l.size() >= SIZE);
919     for (int i = 0; i < SIZE; ++i)
920     assertEquals(l.get(i), new Integer(i));
921     t.join();
922     assertTrue(q.size() + l.size() >= SIZE);
923 dl 1.6 }
924    
925     /**
926 jsr166 1.34 * drainTo(c, n) empties first min(n, size) elements of queue into c
927 jsr166 1.12 */
928 dl 1.6 public void testDrainToN() {
929 jsr166 1.66 ArrayBlockingQueue q = new ArrayBlockingQueue(SIZE * 2);
930 dl 1.6 for (int i = 0; i < SIZE + 2; ++i) {
931 jsr166 1.13 for (int j = 0; j < SIZE; j++)
932 dl 1.11 assertTrue(q.offer(new Integer(j)));
933 dl 1.6 ArrayList l = new ArrayList();
934     q.drainTo(l, i);
935 jsr166 1.35 int k = (i < SIZE) ? i : SIZE;
936 jsr166 1.52 assertEquals(k, l.size());
937 jsr166 1.66 assertEquals(SIZE - k, q.size());
938 jsr166 1.12 for (int j = 0; j < k; ++j)
939 dl 1.6 assertEquals(l.get(j), new Integer(j));
940 jsr166 1.59 do {} while (q.poll() != null);
941 dl 1.2 }
942     }
943    
944 jsr166 1.57 /**
945     * remove(null), contains(null) always return false
946     */
947     public void testNeverContainsNull() {
948     Collection<?>[] qs = {
949 jsr166 1.80 populatedQueue(0, 1, 10, false),
950     populatedQueue(2, 2, 10, true),
951 jsr166 1.57 };
952    
953     for (Collection<?> q : qs) {
954     assertFalse(q.contains(null));
955     assertFalse(q.remove(null));
956     }
957     }
958 dl 1.1 }