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Comparing jsr166/src/test/tck/ScheduledExecutorTest.java (file contents):
Revision 1.10 by dl, Mon Dec 22 00:48:56 2003 UTC vs.
Revision 1.73 by jsr166, Tue Oct 6 06:02:53 2015 UTC

# Line 1 | Line 1
1   /*
2 < * Written by members of JCP JSR-166 Expert Group and released to the
3 < * public domain. Use, modify, and redistribute this code in any way
4 < * without acknowledgement. Other contributors include Andrew Wright,
5 < * Jeffrey Hayes, Pat Fischer, Mike Judd.
2 > * 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 > * http://creativecommons.org/publicdomain/zero/1.0/
5 > * Other contributors include Andrew Wright, Jeffrey Hayes,
6 > * Pat Fisher, Mike Judd.
7   */
8  
9 < import junit.framework.*;
10 < import java.util.*;
11 < import java.util.concurrent.*;
9 > import static java.util.concurrent.TimeUnit.MILLISECONDS;
10 > import static java.util.concurrent.TimeUnit.SECONDS;
11 >
12 > import java.util.ArrayList;
13 > import java.util.HashSet;
14 > import java.util.List;
15 > import java.util.concurrent.BlockingQueue;
16 > import java.util.concurrent.Callable;
17 > import java.util.concurrent.CancellationException;
18 > import java.util.concurrent.CountDownLatch;
19 > import java.util.concurrent.ExecutionException;
20 > import java.util.concurrent.Executors;
21 > import java.util.concurrent.ExecutorService;
22 > import java.util.concurrent.Future;
23 > import java.util.concurrent.RejectedExecutionException;
24 > import java.util.concurrent.ScheduledFuture;
25 > import java.util.concurrent.ScheduledThreadPoolExecutor;
26 > import java.util.concurrent.ThreadFactory;
27 > import java.util.concurrent.ThreadPoolExecutor;
28 > import java.util.concurrent.atomic.AtomicInteger;
29 >
30 > import junit.framework.Test;
31 > import junit.framework.TestSuite;
32  
33   public class ScheduledExecutorTest extends JSR166TestCase {
34      public static void main(String[] args) {
35 <        junit.textui.TestRunner.run (suite());  
35 >        main(suite(), args);
36      }
37      public static Test suite() {
38 <        return new TestSuite(ScheduledExecutorTest.class);
38 >        return new TestSuite(ScheduledExecutorTest.class);
39      }
40  
20
41      /**
42       * execute successfully executes a runnable
43       */
44 <    public void testExecute() {
45 <        try {
46 <            TrackedShortRunnable runnable =new TrackedShortRunnable();
47 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
48 <            p1.execute(runnable);
49 <            assertFalse(runnable.done);
50 <            Thread.sleep(SHORT_DELAY_MS);
51 <            p1.shutdown();
32 <            try {
33 <                Thread.sleep(MEDIUM_DELAY_MS);
34 <            } catch(InterruptedException e){
35 <                unexpectedException();
36 <            }
37 <            assertTrue(runnable.done);
38 <            p1.shutdown();
39 <            joinPool(p1);
40 <        }
41 <        catch(Exception e){
42 <            unexpectedException();
44 >    public void testExecute() throws InterruptedException {
45 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
46 >        try (PoolCleaner cleaner = cleaner(p)) {
47 >            final CountDownLatch done = new CountDownLatch(1);
48 >            final Runnable task = new CheckedRunnable() {
49 >                public void realRun() { done.countDown(); }};
50 >            p.execute(task);
51 >            assertTrue(done.await(LONG_DELAY_MS, MILLISECONDS));
52          }
44        
53      }
54  
47
55      /**
56       * delayed schedule of callable successfully executes after delay
57       */
58 <    public void testSchedule1() {
59 <        try {
60 <            TrackedCallable callable = new TrackedCallable();
61 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
62 <            Future f = p1.schedule(callable, SHORT_DELAY_MS, TimeUnit.MILLISECONDS);
63 <            assertFalse(callable.done);
64 <            Thread.sleep(MEDIUM_DELAY_MS);
65 <            assertTrue(callable.done);
66 <            assertEquals(Boolean.TRUE, f.get());
67 <            p1.shutdown();
68 <            joinPool(p1);
69 <        } catch(RejectedExecutionException e){}
70 <        catch(Exception e){
71 <            e.printStackTrace();
72 <            unexpectedException();
58 >    public void testSchedule1() throws Exception {
59 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
60 >        try (PoolCleaner cleaner = cleaner(p)) {
61 >            final long startTime = System.nanoTime();
62 >            final CountDownLatch done = new CountDownLatch(1);
63 >            Callable task = new CheckedCallable<Boolean>() {
64 >                public Boolean realCall() {
65 >                    done.countDown();
66 >                    assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
67 >                    return Boolean.TRUE;
68 >                }};
69 >            Future f = p.schedule(task, timeoutMillis(), MILLISECONDS);
70 >            assertSame(Boolean.TRUE, f.get());
71 >            assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
72 >            assertTrue(done.await(0L, MILLISECONDS));
73          }
74      }
75  
76      /**
77 <     *  delayed schedule of runnable successfully executes after delay
78 <     */
79 <    public void testSchedule3() {
80 <        try {
81 <            TrackedShortRunnable runnable = new TrackedShortRunnable();
82 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
83 <            p1.schedule(runnable, SMALL_DELAY_MS, TimeUnit.MILLISECONDS);
84 <            Thread.sleep(SHORT_DELAY_MS);
85 <            assertFalse(runnable.done);
86 <            Thread.sleep(MEDIUM_DELAY_MS);
87 <            assertTrue(runnable.done);
88 <            p1.shutdown();
89 <            joinPool(p1);
90 <        } catch(Exception e){
91 <            unexpectedException();
77 >     * delayed schedule of runnable successfully executes after delay
78 >     */
79 >    public void testSchedule3() throws Exception {
80 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
81 >        try (PoolCleaner cleaner = cleaner(p)) {
82 >            final long startTime = System.nanoTime();
83 >            final CountDownLatch done = new CountDownLatch(1);
84 >            Runnable task = new CheckedRunnable() {
85 >                public void realRun() {
86 >                    done.countDown();
87 >                    assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
88 >                }};
89 >            Future f = p.schedule(task, timeoutMillis(), MILLISECONDS);
90 >            await(done);
91 >            assertNull(f.get(LONG_DELAY_MS, MILLISECONDS));
92 >            assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
93          }
94      }
95 <    
95 >
96      /**
97       * scheduleAtFixedRate executes runnable after given initial delay
98       */
99 <    public void testSchedule4() {
100 <        try {
101 <            TrackedShortRunnable runnable = new TrackedShortRunnable();
102 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
103 <            ScheduledFuture h = p1.scheduleAtFixedRate(runnable, SHORT_DELAY_MS, SHORT_DELAY_MS, TimeUnit.MILLISECONDS);
104 <            assertFalse(runnable.done);
105 <            Thread.sleep(MEDIUM_DELAY_MS);
106 <            assertTrue(runnable.done);
107 <            h.cancel(true);
108 <            p1.shutdown();
109 <            joinPool(p1);
110 <        } catch(Exception e){
111 <            unexpectedException();
99 >    public void testSchedule4() throws Exception {
100 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
101 >        try (PoolCleaner cleaner = cleaner(p)) {
102 >            final long startTime = System.nanoTime();
103 >            final CountDownLatch done = new CountDownLatch(1);
104 >            Runnable task = new CheckedRunnable() {
105 >                public void realRun() {
106 >                    done.countDown();
107 >                    assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
108 >                }};
109 >            ScheduledFuture f =
110 >                p.scheduleAtFixedRate(task, timeoutMillis(),
111 >                                      LONG_DELAY_MS, MILLISECONDS);
112 >            await(done);
113 >            assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
114 >            f.cancel(true);
115          }
116      }
117  
118      /**
119       * scheduleWithFixedDelay executes runnable after given initial delay
120       */
121 <    public void testSchedule5() {
122 <        try {
123 <            TrackedShortRunnable runnable = new TrackedShortRunnable();
124 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
125 <            ScheduledFuture h = p1.scheduleWithFixedDelay(runnable, SHORT_DELAY_MS, SHORT_DELAY_MS, TimeUnit.MILLISECONDS);
126 <            assertFalse(runnable.done);
127 <            Thread.sleep(MEDIUM_DELAY_MS);
128 <            assertTrue(runnable.done);
129 <            h.cancel(true);
130 <            p1.shutdown();
131 <            joinPool(p1);
132 <        } catch(Exception e){
133 <            unexpectedException();
121 >    public void testSchedule5() throws Exception {
122 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
123 >        try (PoolCleaner cleaner = cleaner(p)) {
124 >            final long startTime = System.nanoTime();
125 >            final CountDownLatch done = new CountDownLatch(1);
126 >            Runnable task = new CheckedRunnable() {
127 >                public void realRun() {
128 >                    done.countDown();
129 >                    assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
130 >                }};
131 >            ScheduledFuture f =
132 >                p.scheduleWithFixedDelay(task, timeoutMillis(),
133 >                                         LONG_DELAY_MS, MILLISECONDS);
134 >            await(done);
135 >            assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
136 >            f.cancel(true);
137 >        }
138 >    }
139 >
140 >    static class RunnableCounter implements Runnable {
141 >        AtomicInteger count = new AtomicInteger(0);
142 >        public void run() { count.getAndIncrement(); }
143 >    }
144 >
145 >    /**
146 >     * scheduleAtFixedRate executes series of tasks at given rate
147 >     */
148 >    public void testFixedRateSequence() throws InterruptedException {
149 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
150 >        try (PoolCleaner cleaner = cleaner(p)) {
151 >            for (int delay = 1; delay <= LONG_DELAY_MS; delay *= 3) {
152 >                long startTime = System.nanoTime();
153 >                int cycles = 10;
154 >                final CountDownLatch done = new CountDownLatch(cycles);
155 >                Runnable task = new CheckedRunnable() {
156 >                    public void realRun() { done.countDown(); }};
157 >                ScheduledFuture h =
158 >                    p.scheduleAtFixedRate(task, 0, delay, MILLISECONDS);
159 >                await(done);
160 >                h.cancel(true);
161 >                double normalizedTime =
162 >                    (double) millisElapsedSince(startTime) / delay;
163 >                if (normalizedTime >= cycles - 1 &&
164 >                    normalizedTime <= cycles)
165 >                    return;
166 >            }
167 >            throw new AssertionError("unexpected execution rate");
168 >        }
169 >    }
170 >
171 >    /**
172 >     * scheduleWithFixedDelay executes series of tasks with given period
173 >     */
174 >    public void testFixedDelaySequence() throws InterruptedException {
175 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
176 >        try (PoolCleaner cleaner = cleaner(p)) {
177 >            for (int delay = 1; delay <= LONG_DELAY_MS; delay *= 3) {
178 >                long startTime = System.nanoTime();
179 >                int cycles = 10;
180 >                final CountDownLatch done = new CountDownLatch(cycles);
181 >                Runnable task = new CheckedRunnable() {
182 >                    public void realRun() { done.countDown(); }};
183 >                ScheduledFuture h =
184 >                    p.scheduleWithFixedDelay(task, 0, delay, MILLISECONDS);
185 >                await(done);
186 >                h.cancel(true);
187 >                double normalizedTime =
188 >                    (double) millisElapsedSince(startTime) / delay;
189 >                if (normalizedTime >= cycles - 1 &&
190 >                    normalizedTime <= cycles)
191 >                    return;
192 >            }
193 >            throw new AssertionError("unexpected execution rate");
194          }
195      }
196 <    
196 >
197      /**
198 <     *  execute (null) throws NPE
198 >     * execute(null) throws NPE
199       */
200 <    public void testExecuteNull() {
201 <        ScheduledThreadPoolExecutor se = null;
202 <        try {
203 <            se = new ScheduledThreadPoolExecutor(1);
204 <            se.execute(null);
205 <            shouldThrow();
206 <        } catch(NullPointerException success){}
136 <        catch(Exception e){
137 <            unexpectedException();
200 >    public void testExecuteNull() throws InterruptedException {
201 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
202 >        try (PoolCleaner cleaner = cleaner(p)) {
203 >            try {
204 >                p.execute(null);
205 >                shouldThrow();
206 >            } catch (NullPointerException success) {}
207          }
139        
140        joinPool(se);
208      }
209  
210      /**
211 <     * schedule (null) throws NPE
211 >     * schedule(null) throws NPE
212       */
213 <    public void testScheduleNull() {
214 <        ScheduledThreadPoolExecutor se = new ScheduledThreadPoolExecutor(1);
215 <        try {
216 <            TrackedCallable callable = null;
217 <            Future f = se.schedule(callable, SHORT_DELAY_MS, TimeUnit.MILLISECONDS);
218 <            shouldThrow();
219 <        } catch(NullPointerException success){}
220 <        catch(Exception e){
154 <            unexpectedException();
213 >    public void testScheduleNull() throws InterruptedException {
214 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
215 >        try (PoolCleaner cleaner = cleaner(p)) {
216 >            try {
217 >                TrackedCallable callable = null;
218 >                Future f = p.schedule(callable, SHORT_DELAY_MS, MILLISECONDS);
219 >                shouldThrow();
220 >            } catch (NullPointerException success) {}
221          }
156        joinPool(se);
222      }
223 <  
223 >
224      /**
225       * execute throws RejectedExecutionException if shutdown
226       */
227 <    public void testSchedule1_RejectedExecutionException() {
228 <        ScheduledThreadPoolExecutor se = new ScheduledThreadPoolExecutor(1);
229 <        try {
230 <            se.shutdown();
231 <            se.schedule(new NoOpRunnable(),
232 <                        MEDIUM_DELAY_MS, TimeUnit.MILLISECONDS);
233 <            shouldThrow();
234 <        } catch(RejectedExecutionException success){
227 >    public void testSchedule1_RejectedExecutionException() throws InterruptedException {
228 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
229 >        try (PoolCleaner cleaner = cleaner(p)) {
230 >            try {
231 >                p.shutdown();
232 >                p.schedule(new NoOpRunnable(),
233 >                           MEDIUM_DELAY_MS, MILLISECONDS);
234 >                shouldThrow();
235 >            } catch (RejectedExecutionException success) {
236 >            } catch (SecurityException ok) {}
237          }
171        joinPool(se);
172
238      }
239  
240      /**
241       * schedule throws RejectedExecutionException if shutdown
242       */
243 <    public void testSchedule2_RejectedExecutionException() {
244 <        ScheduledThreadPoolExecutor se = new ScheduledThreadPoolExecutor(1);
245 <        try {
246 <            se.shutdown();
247 <            se.schedule(new NoOpCallable(),
248 <                        MEDIUM_DELAY_MS, TimeUnit.MILLISECONDS);
249 <            shouldThrow();
250 <        } catch(RejectedExecutionException success){
243 >    public void testSchedule2_RejectedExecutionException() throws InterruptedException {
244 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
245 >        try (PoolCleaner cleaner = cleaner(p)) {
246 >            try {
247 >                p.shutdown();
248 >                p.schedule(new NoOpCallable(),
249 >                           MEDIUM_DELAY_MS, MILLISECONDS);
250 >                shouldThrow();
251 >            } catch (RejectedExecutionException success) {
252 >            } catch (SecurityException ok) {}
253          }
187        joinPool(se);
254      }
255  
256      /**
257       * schedule callable throws RejectedExecutionException if shutdown
258       */
259 <     public void testSchedule3_RejectedExecutionException() {
260 <         ScheduledThreadPoolExecutor se = new ScheduledThreadPoolExecutor(1);
261 <         try {
262 <            se.shutdown();
263 <            se.schedule(new NoOpCallable(),
264 <                        MEDIUM_DELAY_MS, TimeUnit.MILLISECONDS);
265 <            shouldThrow();
266 <        } catch(RejectedExecutionException success){
267 <        }
268 <         joinPool(se);
259 >    public void testSchedule3_RejectedExecutionException() throws InterruptedException {
260 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
261 >        try (PoolCleaner cleaner = cleaner(p)) {
262 >            try {
263 >                p.shutdown();
264 >                p.schedule(new NoOpCallable(),
265 >                           MEDIUM_DELAY_MS, MILLISECONDS);
266 >                shouldThrow();
267 >            } catch (RejectedExecutionException success) {
268 >            } catch (SecurityException ok) {}
269 >        }
270      }
271  
272      /**
273 <     *  scheduleAtFixedRate throws RejectedExecutionException if shutdown
274 <     */
275 <    public void testScheduleAtFixedRate1_RejectedExecutionException() {
276 <        ScheduledThreadPoolExecutor se = new ScheduledThreadPoolExecutor(1);
277 <        try {
278 <            se.shutdown();
279 <            se.scheduleAtFixedRate(new NoOpRunnable(),
280 <                                   MEDIUM_DELAY_MS, MEDIUM_DELAY_MS, TimeUnit.MILLISECONDS);
281 <            shouldThrow();
282 <        } catch(RejectedExecutionException success){
283 <        }
284 <        joinPool(se);
273 >     * scheduleAtFixedRate throws RejectedExecutionException if shutdown
274 >     */
275 >    public void testScheduleAtFixedRate1_RejectedExecutionException() throws InterruptedException {
276 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
277 >        try (PoolCleaner cleaner = cleaner(p)) {
278 >            try {
279 >                p.shutdown();
280 >                p.scheduleAtFixedRate(new NoOpRunnable(),
281 >                                      MEDIUM_DELAY_MS, MEDIUM_DELAY_MS, MILLISECONDS);
282 >                shouldThrow();
283 >            } catch (RejectedExecutionException success) {
284 >            } catch (SecurityException ok) {}
285 >        }
286      }
287 <    
287 >
288      /**
289       * scheduleWithFixedDelay throws RejectedExecutionException if shutdown
290       */
291 <    public void testScheduleWithFixedDelay1_RejectedExecutionException() {
292 <        ScheduledThreadPoolExecutor se = new ScheduledThreadPoolExecutor(1);
293 <        try {
294 <            se.shutdown();
295 <            se.scheduleWithFixedDelay(new NoOpRunnable(),
296 <                                      MEDIUM_DELAY_MS, MEDIUM_DELAY_MS, TimeUnit.MILLISECONDS);
297 <            shouldThrow();
298 <        } catch(RejectedExecutionException success){
299 <        }
300 <        joinPool(se);
291 >    public void testScheduleWithFixedDelay1_RejectedExecutionException() throws InterruptedException {
292 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
293 >        try (PoolCleaner cleaner = cleaner(p)) {
294 >            try {
295 >                p.shutdown();
296 >                p.scheduleWithFixedDelay(new NoOpRunnable(),
297 >                                         MEDIUM_DELAY_MS, MEDIUM_DELAY_MS, MILLISECONDS);
298 >                shouldThrow();
299 >            } catch (RejectedExecutionException success) {
300 >            } catch (SecurityException ok) {}
301 >        }
302      }
303  
304      /**
305 <     *  getActiveCount increases but doesn't overestimate, when a
306 <     *  thread becomes active
307 <     */
308 <    public void testGetActiveCount() {
309 <        ScheduledThreadPoolExecutor p2 = new ScheduledThreadPoolExecutor(2);
310 <        assertEquals(0, p2.getActiveCount());
311 <        p2.execute(new SmallRunnable());
312 <        try {
313 <            Thread.sleep(SHORT_DELAY_MS);
314 <        } catch(Exception e){
315 <            unexpectedException();
316 <        }
317 <        assertEquals(1, p2.getActiveCount());
318 <        joinPool(p2);
319 <    }
320 <    
321 <    /**
253 <     *    getCompletedTaskCount increases, but doesn't overestimate,
254 <     *   when tasks complete
255 <     */
256 <    public void testGetCompletedTaskCount() {
257 <        ScheduledThreadPoolExecutor p2 = new ScheduledThreadPoolExecutor(2);
258 <        assertEquals(0, p2.getCompletedTaskCount());
259 <        p2.execute(new SmallRunnable());
260 <        try {
261 <            Thread.sleep(MEDIUM_DELAY_MS);
262 <        } catch(Exception e){
263 <            unexpectedException();
305 >     * getActiveCount increases but doesn't overestimate, when a
306 >     * thread becomes active
307 >     */
308 >    public void testGetActiveCount() throws InterruptedException {
309 >        final CountDownLatch done = new CountDownLatch(1);
310 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(2);
311 >        try (PoolCleaner cleaner = cleaner(p, done)) {
312 >            final CountDownLatch threadStarted = new CountDownLatch(1);
313 >            assertEquals(0, p.getActiveCount());
314 >            p.execute(new CheckedRunnable() {
315 >                public void realRun() throws InterruptedException {
316 >                    threadStarted.countDown();
317 >                    assertEquals(1, p.getActiveCount());
318 >                    await(done);
319 >                }});
320 >            await(threadStarted);
321 >            assertEquals(1, p.getActiveCount());
322          }
265        assertEquals(1, p2.getCompletedTaskCount());
266        joinPool(p2);
323      }
324 <    
324 >
325      /**
326 <     *  getCorePoolSize returns size given in constructor if not otherwise set
327 <     */
328 <    public void testGetCorePoolSize() {
329 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
330 <        assertEquals(1, p1.getCorePoolSize());
331 <        joinPool(p1);
326 >     * getCompletedTaskCount increases, but doesn't overestimate,
327 >     * when tasks complete
328 >     */
329 >    public void testGetCompletedTaskCount() throws InterruptedException {
330 >        final ThreadPoolExecutor p = new ScheduledThreadPoolExecutor(2);
331 >        try (PoolCleaner cleaner = cleaner(p)) {
332 >            final CountDownLatch threadStarted = new CountDownLatch(1);
333 >            final CountDownLatch threadProceed = new CountDownLatch(1);
334 >            final CountDownLatch threadDone = new CountDownLatch(1);
335 >            assertEquals(0, p.getCompletedTaskCount());
336 >            p.execute(new CheckedRunnable() {
337 >                public void realRun() throws InterruptedException {
338 >                    threadStarted.countDown();
339 >                    assertEquals(0, p.getCompletedTaskCount());
340 >                    threadProceed.await();
341 >                    threadDone.countDown();
342 >                }});
343 >            await(threadStarted);
344 >            assertEquals(0, p.getCompletedTaskCount());
345 >            threadProceed.countDown();
346 >            threadDone.await();
347 >            long startTime = System.nanoTime();
348 >            while (p.getCompletedTaskCount() != 1) {
349 >                if (millisElapsedSince(startTime) > LONG_DELAY_MS)
350 >                    fail("timed out");
351 >                Thread.yield();
352 >            }
353 >        }
354      }
355 <    
355 >
356      /**
357 <     *    getLargestPoolSize increases, but doesn't overestimate, when
280 <     *   multiple threads active
357 >     * getCorePoolSize returns size given in constructor if not otherwise set
358       */
359 <    public void testGetLargestPoolSize() {
360 <        ScheduledThreadPoolExecutor p2 = new ScheduledThreadPoolExecutor(2);
361 <        assertEquals(0, p2.getLargestPoolSize());
362 <        p2.execute(new SmallRunnable());
363 <        p2.execute(new SmallRunnable());
364 <        try {
365 <            Thread.sleep(SHORT_DELAY_MS);
366 <        } catch(Exception e){
367 <            unexpectedException();
368 <        }
369 <        assertEquals(2, p2.getLargestPoolSize());
370 <        joinPool(p2);
371 <    }
372 <    
373 <    /**
374 <     *   getPoolSize increases, but doesn't overestimate, when threads
375 <     *   become active
376 <     */
377 <    public void testGetPoolSize() {
378 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
379 <        assertEquals(0, p1.getPoolSize());
380 <        p1.execute(new SmallRunnable());
381 <        assertEquals(1, p1.getPoolSize());
382 <        joinPool(p1);
383 <    }
384 <    
385 <    /**
386 <     *    getTaskCount increases, but doesn't overestimate, when tasks
387 <     *    submitted
388 <     */
389 <    public void testGetTaskCount() {
390 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
391 <        assertEquals(0, p1.getTaskCount());
392 <        for(int i = 0; i < 5; i++)
393 <            p1.execute(new SmallRunnable());
394 <        try {
395 <            Thread.sleep(SHORT_DELAY_MS);
396 <        } catch(Exception e){
397 <            unexpectedException();
359 >    public void testGetCorePoolSize() throws InterruptedException {
360 >        ThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
361 >        try (PoolCleaner cleaner = cleaner(p)) {
362 >            assertEquals(1, p.getCorePoolSize());
363 >        }
364 >    }
365 >
366 >    /**
367 >     * getLargestPoolSize increases, but doesn't overestimate, when
368 >     * multiple threads active
369 >     */
370 >    public void testGetLargestPoolSize() throws InterruptedException {
371 >        final int THREADS = 3;
372 >        final ThreadPoolExecutor p = new ScheduledThreadPoolExecutor(THREADS);
373 >        final CountDownLatch threadsStarted = new CountDownLatch(THREADS);
374 >        final CountDownLatch done = new CountDownLatch(1);
375 >        try (PoolCleaner cleaner = cleaner(p, done)) {
376 >            assertEquals(0, p.getLargestPoolSize());
377 >            for (int i = 0; i < THREADS; i++)
378 >                p.execute(new CheckedRunnable() {
379 >                    public void realRun() throws InterruptedException {
380 >                        threadsStarted.countDown();
381 >                        await(done);
382 >                        assertEquals(THREADS, p.getLargestPoolSize());
383 >                    }});
384 >            await(threadsStarted);
385 >            assertEquals(THREADS, p.getLargestPoolSize());
386 >        }
387 >        assertEquals(THREADS, p.getLargestPoolSize());
388 >    }
389 >
390 >    /**
391 >     * getPoolSize increases, but doesn't overestimate, when threads
392 >     * become active
393 >     */
394 >    public void testGetPoolSize() throws InterruptedException {
395 >        final ThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
396 >        final CountDownLatch threadStarted = new CountDownLatch(1);
397 >        final CountDownLatch done = new CountDownLatch(1);
398 >        try (PoolCleaner cleaner = cleaner(p, done)) {
399 >            assertEquals(0, p.getPoolSize());
400 >            p.execute(new CheckedRunnable() {
401 >                public void realRun() throws InterruptedException {
402 >                    threadStarted.countDown();
403 >                    assertEquals(1, p.getPoolSize());
404 >                    await(done);
405 >                }});
406 >            await(threadStarted);
407 >            assertEquals(1, p.getPoolSize());
408 >        }
409 >    }
410 >
411 >    /**
412 >     * getTaskCount increases, but doesn't overestimate, when tasks
413 >     * submitted
414 >     */
415 >    public void testGetTaskCount() throws InterruptedException {
416 >        final int TASKS = 3;
417 >        final CountDownLatch done = new CountDownLatch(1);
418 >        final ThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
419 >        try (PoolCleaner cleaner = cleaner(p, done)) {
420 >            final CountDownLatch threadStarted = new CountDownLatch(1);
421 >            assertEquals(0, p.getTaskCount());
422 >            assertEquals(0, p.getCompletedTaskCount());
423 >            p.execute(new CheckedRunnable() {
424 >                public void realRun() throws InterruptedException {
425 >                    threadStarted.countDown();
426 >                    await(done);
427 >                }});
428 >            await(threadStarted);
429 >            assertEquals(1, p.getTaskCount());
430 >            assertEquals(0, p.getCompletedTaskCount());
431 >            for (int i = 0; i < TASKS; i++) {
432 >                assertEquals(1 + i, p.getTaskCount());
433 >                p.execute(new CheckedRunnable() {
434 >                    public void realRun() throws InterruptedException {
435 >                        threadStarted.countDown();
436 >                        assertEquals(1 + TASKS, p.getTaskCount());
437 >                        await(done);
438 >                    }});
439 >            }
440 >            assertEquals(1 + TASKS, p.getTaskCount());
441 >            assertEquals(0, p.getCompletedTaskCount());
442          }
443 <        assertEquals(5, p1.getTaskCount());
444 <        joinPool(p1);
443 >        assertEquals(1 + TASKS, p.getTaskCount());
444 >        assertEquals(1 + TASKS, p.getCompletedTaskCount());
445      }
446  
447 <    /**
447 >    /**
448       * getThreadFactory returns factory in constructor if not set
449       */
450 <    public void testGetThreadFactory() {
451 <        ThreadFactory tf = new SimpleThreadFactory();
452 <        ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1, tf);
453 <        assertSame(tf, p.getThreadFactory());
454 <        p.shutdown();
455 <        joinPool(p);
450 >    public void testGetThreadFactory() throws InterruptedException {
451 >        final ThreadFactory threadFactory = new SimpleThreadFactory();
452 >        final ScheduledThreadPoolExecutor p =
453 >            new ScheduledThreadPoolExecutor(1, threadFactory);
454 >        try (PoolCleaner cleaner = cleaner(p)) {
455 >            assertSame(threadFactory, p.getThreadFactory());
456 >        }
457      }
458  
459 <    /**
459 >    /**
460       * setThreadFactory sets the thread factory returned by getThreadFactory
461       */
462 <    public void testSetThreadFactory() {
463 <        ThreadFactory tf = new SimpleThreadFactory();
464 <        ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
465 <        p.setThreadFactory(tf);
466 <        assertSame(tf, p.getThreadFactory());
467 <        p.shutdown();
468 <        joinPool(p);
462 >    public void testSetThreadFactory() throws InterruptedException {
463 >        ThreadFactory threadFactory = new SimpleThreadFactory();
464 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
465 >        try (PoolCleaner cleaner = cleaner(p)) {
466 >            p.setThreadFactory(threadFactory);
467 >            assertSame(threadFactory, p.getThreadFactory());
468 >        }
469      }
470  
471 <    /**
471 >    /**
472       * setThreadFactory(null) throws NPE
473       */
474 <    public void testSetThreadFactoryNull() {
475 <        ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
476 <        try {
477 <            p.setThreadFactory(null);
478 <            shouldThrow();
479 <        } catch (NullPointerException success) {
480 <        } finally {
359 <            joinPool(p);
474 >    public void testSetThreadFactoryNull() throws InterruptedException {
475 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
476 >        try (PoolCleaner cleaner = cleaner(p)) {
477 >            try {
478 >                p.setThreadFactory(null);
479 >                shouldThrow();
480 >            } catch (NullPointerException success) {}
481          }
482      }
483 <    
483 >
484      /**
485 <     *   is isShutDown is false before shutdown, true after
485 >     * isShutdown is false before shutdown, true after
486       */
487      public void testIsShutdown() {
488 <        
489 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
488 >
489 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
490          try {
491 <            assertFalse(p1.isShutdown());
491 >            assertFalse(p.isShutdown());
492          }
493          finally {
494 <            p1.shutdown();
494 >            try { p.shutdown(); } catch (SecurityException ok) { return; }
495          }
496 <        assertTrue(p1.isShutdown());
496 >        assertTrue(p.isShutdown());
497      }
498  
378        
499      /**
500 <     *   isTerminated is false before termination, true after
500 >     * isTerminated is false before termination, true after
501       */
502 <    public void testIsTerminated() {
503 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
504 <        try {
505 <            p1.execute(new SmallRunnable());
506 <        } finally {
507 <            p1.shutdown();
502 >    public void testIsTerminated() throws InterruptedException {
503 >        final ThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
504 >        try (PoolCleaner cleaner = cleaner(p)) {
505 >            final CountDownLatch threadStarted = new CountDownLatch(1);
506 >            final CountDownLatch done = new CountDownLatch(1);
507 >            assertFalse(p.isTerminated());
508 >            p.execute(new CheckedRunnable() {
509 >                public void realRun() throws InterruptedException {
510 >                    assertFalse(p.isTerminated());
511 >                    threadStarted.countDown();
512 >                    await(done);
513 >                }});
514 >            await(threadStarted);
515 >            assertFalse(p.isTerminating());
516 >            done.countDown();
517 >            try { p.shutdown(); } catch (SecurityException ok) { return; }
518 >            assertTrue(p.awaitTermination(LONG_DELAY_MS, MILLISECONDS));
519 >            assertTrue(p.isTerminated());
520          }
389        try {
390            assertTrue(p1.awaitTermination(LONG_DELAY_MS, TimeUnit.MILLISECONDS));
391            assertTrue(p1.isTerminated());
392        } catch(Exception e){
393            unexpectedException();
394        }      
521      }
522  
523      /**
524 <     *  isTerminating is not true when running or when terminated
525 <     */
526 <    public void testIsTerminating() {
527 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
528 <        assertFalse(p1.isTerminating());
529 <        try {
530 <            p1.execute(new SmallRunnable());
531 <            assertFalse(p1.isTerminating());
532 <        } finally {
533 <            p1.shutdown();
524 >     * isTerminating is not true when running or when terminated
525 >     */
526 >    public void testIsTerminating() throws InterruptedException {
527 >        final ThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
528 >        final CountDownLatch threadStarted = new CountDownLatch(1);
529 >        final CountDownLatch done = new CountDownLatch(1);
530 >        try (PoolCleaner cleaner = cleaner(p)) {
531 >            assertFalse(p.isTerminating());
532 >            p.execute(new CheckedRunnable() {
533 >                public void realRun() throws InterruptedException {
534 >                    assertFalse(p.isTerminating());
535 >                    threadStarted.countDown();
536 >                    await(done);
537 >                }});
538 >            await(threadStarted);
539 >            assertFalse(p.isTerminating());
540 >            done.countDown();
541 >            try { p.shutdown(); } catch (SecurityException ok) { return; }
542 >            assertTrue(p.awaitTermination(LONG_DELAY_MS, MILLISECONDS));
543 >            assertTrue(p.isTerminated());
544 >            assertFalse(p.isTerminating());
545          }
409        try {
410            assertTrue(p1.awaitTermination(LONG_DELAY_MS, TimeUnit.MILLISECONDS));
411            assertTrue(p1.isTerminated());
412            assertFalse(p1.isTerminating());
413        } catch(Exception e){
414            unexpectedException();
415        }      
546      }
547  
548      /**
549       * getQueue returns the work queue, which contains queued tasks
550       */
551 <    public void testGetQueue() {
552 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
553 <        ScheduledFuture[] tasks = new ScheduledFuture[5];
554 <        for(int i = 0; i < 5; i++){
555 <            tasks[i] = p1.schedule(new SmallPossiblyInterruptedRunnable(), 1, TimeUnit.MILLISECONDS);
556 <        }
557 <        try {
558 <            Thread.sleep(SHORT_DELAY_MS);
559 <            BlockingQueue<Runnable> q = p1.getQueue();
560 <            assertTrue(q.contains(tasks[4]));
551 >    public void testGetQueue() throws InterruptedException {
552 >        final CountDownLatch done = new CountDownLatch(1);
553 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
554 >        try (PoolCleaner cleaner = cleaner(p, done)) {
555 >            final CountDownLatch threadStarted = new CountDownLatch(1);
556 >            ScheduledFuture[] tasks = new ScheduledFuture[5];
557 >            for (int i = 0; i < tasks.length; i++) {
558 >                Runnable r = new CheckedRunnable() {
559 >                    public void realRun() throws InterruptedException {
560 >                        threadStarted.countDown();
561 >                        await(done);
562 >                    }};
563 >                tasks[i] = p.schedule(r, 1, MILLISECONDS);
564 >            }
565 >            await(threadStarted);
566 >            BlockingQueue<Runnable> q = p.getQueue();
567 >            assertTrue(q.contains(tasks[tasks.length - 1]));
568              assertFalse(q.contains(tasks[0]));
432            p1.shutdownNow();
433        } catch(Exception e) {
434            unexpectedException();
435        } finally {
436            joinPool(p1);
569          }
570      }
571  
572      /**
573       * remove(task) removes queued task, and fails to remove active task
574       */
575 <    public void testRemove() {
576 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
577 <        ScheduledFuture[] tasks = new ScheduledFuture[5];
578 <        for(int i = 0; i < 5; i++){
579 <            tasks[i] = p1.schedule(new SmallPossiblyInterruptedRunnable(), 1, TimeUnit.MILLISECONDS);
580 <        }
581 <        try {
582 <            Thread.sleep(SHORT_DELAY_MS);
583 <            BlockingQueue<Runnable> q = p1.getQueue();
584 <            assertFalse(p1.remove((Runnable)tasks[0]));
575 >    public void testRemove() throws InterruptedException {
576 >        final CountDownLatch done = new CountDownLatch(1);
577 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
578 >        try (PoolCleaner cleaner = cleaner(p, done)) {
579 >            ScheduledFuture[] tasks = new ScheduledFuture[5];
580 >            final CountDownLatch threadStarted = new CountDownLatch(1);
581 >            for (int i = 0; i < tasks.length; i++) {
582 >                Runnable r = new CheckedRunnable() {
583 >                    public void realRun() throws InterruptedException {
584 >                        threadStarted.countDown();
585 >                        await(done);
586 >                    }};
587 >                tasks[i] = p.schedule(r, 1, MILLISECONDS);
588 >            }
589 >            await(threadStarted);
590 >            BlockingQueue<Runnable> q = p.getQueue();
591 >            assertFalse(p.remove((Runnable)tasks[0]));
592              assertTrue(q.contains((Runnable)tasks[4]));
593              assertTrue(q.contains((Runnable)tasks[3]));
594 <            assertTrue(p1.remove((Runnable)tasks[4]));
595 <            assertFalse(p1.remove((Runnable)tasks[4]));
594 >            assertTrue(p.remove((Runnable)tasks[4]));
595 >            assertFalse(p.remove((Runnable)tasks[4]));
596              assertFalse(q.contains((Runnable)tasks[4]));
597              assertTrue(q.contains((Runnable)tasks[3]));
598 <            assertTrue(p1.remove((Runnable)tasks[3]));
598 >            assertTrue(p.remove((Runnable)tasks[3]));
599              assertFalse(q.contains((Runnable)tasks[3]));
461            p1.shutdownNow();
462        } catch(Exception e) {
463            unexpectedException();
464        } finally {
465            joinPool(p1);
600          }
601      }
602  
603      /**
604 <     *  purge removes cancelled tasks from the queue
604 >     * purge eventually removes cancelled tasks from the queue
605       */
606 <    public void testPurge() {
607 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
608 <        ScheduledFuture[] tasks = new ScheduledFuture[5];
609 <        for(int i = 0; i < 5; i++){
610 <            tasks[i] = p1.schedule(new SmallPossiblyInterruptedRunnable(), 1, TimeUnit.MILLISECONDS);
606 >    public void testPurge() throws InterruptedException {
607 >        final ScheduledFuture[] tasks = new ScheduledFuture[5];
608 >        final Runnable releaser = new Runnable() { public void run() {
609 >            for (ScheduledFuture task : tasks)
610 >                if (task != null) task.cancel(true); }};
611 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
612 >        try (PoolCleaner cleaner = cleaner(p, releaser)) {
613 >            for (int i = 0; i < tasks.length; i++)
614 >                tasks[i] = p.schedule(new SmallPossiblyInterruptedRunnable(),
615 >                                      LONG_DELAY_MS, MILLISECONDS);
616 >            int max = tasks.length;
617 >            if (tasks[4].cancel(true)) --max;
618 >            if (tasks[3].cancel(true)) --max;
619 >            // There must eventually be an interference-free point at
620 >            // which purge will not fail. (At worst, when queue is empty.)
621 >            long startTime = System.nanoTime();
622 >            do {
623 >                p.purge();
624 >                long count = p.getTaskCount();
625 >                if (count == max)
626 >                    return;
627 >            } while (millisElapsedSince(startTime) < LONG_DELAY_MS);
628 >            fail("Purge failed to remove cancelled tasks");
629 >        }
630 >    }
631 >
632 >    /**
633 >     * shutdownNow returns a list containing tasks that were not run,
634 >     * and those tasks are drained from the queue
635 >     */
636 >    public void testShutdownNow() throws InterruptedException {
637 >        final int poolSize = 2;
638 >        final int count = 5;
639 >        final AtomicInteger ran = new AtomicInteger(0);
640 >        final ScheduledThreadPoolExecutor p =
641 >            new ScheduledThreadPoolExecutor(poolSize);
642 >        final CountDownLatch threadsStarted = new CountDownLatch(poolSize);
643 >        Runnable waiter = new CheckedRunnable() { public void realRun() {
644 >            threadsStarted.countDown();
645 >            try {
646 >                MILLISECONDS.sleep(2 * LONG_DELAY_MS);
647 >            } catch (InterruptedException success) {}
648 >            ran.getAndIncrement();
649 >        }};
650 >        for (int i = 0; i < count; i++)
651 >            p.execute(waiter);
652 >        await(threadsStarted);
653 >        assertEquals(poolSize, p.getActiveCount());
654 >        assertEquals(0, p.getCompletedTaskCount());
655 >        final List<Runnable> queuedTasks;
656 >        try {
657 >            queuedTasks = p.shutdownNow();
658 >        } catch (SecurityException ok) {
659 >            return; // Allowed in case test doesn't have privs
660 >        }
661 >        assertTrue(p.isShutdown());
662 >        assertTrue(p.getQueue().isEmpty());
663 >        assertEquals(count - poolSize, queuedTasks.size());
664 >        assertTrue(p.awaitTermination(LONG_DELAY_MS, MILLISECONDS));
665 >        assertTrue(p.isTerminated());
666 >        assertEquals(poolSize, ran.get());
667 >        assertEquals(poolSize, p.getCompletedTaskCount());
668 >    }
669 >
670 >    /**
671 >     * shutdownNow returns a list containing tasks that were not run,
672 >     * and those tasks are drained from the queue
673 >     */
674 >    public void testShutdownNow_delayedTasks() throws InterruptedException {
675 >        final ScheduledThreadPoolExecutor p = new ScheduledThreadPoolExecutor(1);
676 >        List<ScheduledFuture> tasks = new ArrayList<>();
677 >        for (int i = 0; i < 3; i++) {
678 >            Runnable r = new NoOpRunnable();
679 >            tasks.add(p.schedule(r, 9, SECONDS));
680 >            tasks.add(p.scheduleAtFixedRate(r, 9, 9, SECONDS));
681 >            tasks.add(p.scheduleWithFixedDelay(r, 9, 9, SECONDS));
682 >        }
683 >        if (testImplementationDetails)
684 >            assertEquals(new HashSet(tasks), new HashSet(p.getQueue()));
685 >        final List<Runnable> queuedTasks;
686 >        try {
687 >            queuedTasks = p.shutdownNow();
688 >        } catch (SecurityException ok) {
689 >            return; // Allowed in case test doesn't have privs
690 >        }
691 >        assertTrue(p.isShutdown());
692 >        assertTrue(p.getQueue().isEmpty());
693 >        if (testImplementationDetails)
694 >            assertEquals(new HashSet(tasks), new HashSet(queuedTasks));
695 >        assertEquals(tasks.size(), queuedTasks.size());
696 >        for (ScheduledFuture task : tasks) {
697 >            assertFalse(task.isDone());
698 >            assertFalse(task.isCancelled());
699          }
700 <        int max = 5;
701 <        if (tasks[4].cancel(true)) --max;
480 <        if (tasks[3].cancel(true)) --max;
481 <        p1.purge();
482 <        long count = p1.getTaskCount();
483 <        assertTrue(count > 0 && count <= max);
484 <        joinPool(p1);
700 >        assertTrue(p.awaitTermination(LONG_DELAY_MS, MILLISECONDS));
701 >        assertTrue(p.isTerminated());
702      }
703  
704      /**
705 <     *  shutDownNow returns a list containing tasks that were not run
705 >     * By default, periodic tasks are cancelled at shutdown.
706 >     * By default, delayed tasks keep running after shutdown.
707 >     * Check that changing the default values work:
708 >     * - setExecuteExistingDelayedTasksAfterShutdownPolicy
709 >     * - setContinueExistingPeriodicTasksAfterShutdownPolicy
710 >     */
711 >    public void testShutdown_cancellation() throws Exception {
712 >        Boolean[] allBooleans = { null, Boolean.FALSE, Boolean.TRUE };
713 >        for (Boolean policy : allBooleans)
714 >    {
715 >        final int poolSize = 2;
716 >        final ScheduledThreadPoolExecutor p
717 >            = new ScheduledThreadPoolExecutor(poolSize);
718 >        final boolean effectiveDelayedPolicy = (policy != Boolean.FALSE);
719 >        final boolean effectivePeriodicPolicy = (policy == Boolean.TRUE);
720 >        final boolean effectiveRemovePolicy = (policy == Boolean.TRUE);
721 >        if (policy != null) {
722 >            p.setExecuteExistingDelayedTasksAfterShutdownPolicy(policy);
723 >            p.setContinueExistingPeriodicTasksAfterShutdownPolicy(policy);
724 >            p.setRemoveOnCancelPolicy(policy);
725 >        }
726 >        assertEquals(effectiveDelayedPolicy,
727 >                     p.getExecuteExistingDelayedTasksAfterShutdownPolicy());
728 >        assertEquals(effectivePeriodicPolicy,
729 >                     p.getContinueExistingPeriodicTasksAfterShutdownPolicy());
730 >        assertEquals(effectiveRemovePolicy,
731 >                     p.getRemoveOnCancelPolicy());
732 >        // Strategy: Wedge the pool with poolSize "blocker" threads
733 >        final AtomicInteger ran = new AtomicInteger(0);
734 >        final CountDownLatch poolBlocked = new CountDownLatch(poolSize);
735 >        final CountDownLatch unblock = new CountDownLatch(1);
736 >        final CountDownLatch periodicLatch1 = new CountDownLatch(2);
737 >        final CountDownLatch periodicLatch2 = new CountDownLatch(2);
738 >        Runnable task = new CheckedRunnable() { public void realRun()
739 >                                                    throws InterruptedException {
740 >            poolBlocked.countDown();
741 >            assertTrue(unblock.await(LONG_DELAY_MS, MILLISECONDS));
742 >            ran.getAndIncrement();
743 >        }};
744 >        List<Future<?>> blockers = new ArrayList<>();
745 >        List<Future<?>> periodics = new ArrayList<>();
746 >        List<Future<?>> delayeds = new ArrayList<>();
747 >        for (int i = 0; i < poolSize; i++)
748 >            blockers.add(p.submit(task));
749 >        assertTrue(poolBlocked.await(LONG_DELAY_MS, MILLISECONDS));
750 >
751 >        periodics.add(p.scheduleAtFixedRate(countDowner(periodicLatch1),
752 >                                            1, 1, MILLISECONDS));
753 >        periodics.add(p.scheduleWithFixedDelay(countDowner(periodicLatch2),
754 >                                               1, 1, MILLISECONDS));
755 >        delayeds.add(p.schedule(task, 1, MILLISECONDS));
756 >
757 >        assertTrue(p.getQueue().containsAll(periodics));
758 >        assertTrue(p.getQueue().containsAll(delayeds));
759 >        try { p.shutdown(); } catch (SecurityException ok) { return; }
760 >        assertTrue(p.isShutdown());
761 >        assertFalse(p.isTerminated());
762 >        for (Future<?> periodic : periodics) {
763 >            assertTrue(effectivePeriodicPolicy ^ periodic.isCancelled());
764 >            assertTrue(effectivePeriodicPolicy ^ periodic.isDone());
765 >        }
766 >        for (Future<?> delayed : delayeds) {
767 >            assertTrue(effectiveDelayedPolicy ^ delayed.isCancelled());
768 >            assertTrue(effectiveDelayedPolicy ^ delayed.isDone());
769 >        }
770 >        if (testImplementationDetails) {
771 >            assertEquals(effectivePeriodicPolicy,
772 >                         p.getQueue().containsAll(periodics));
773 >            assertEquals(effectiveDelayedPolicy,
774 >                         p.getQueue().containsAll(delayeds));
775 >        }
776 >        // Release all pool threads
777 >        unblock.countDown();
778 >
779 >        for (Future<?> delayed : delayeds) {
780 >            if (effectiveDelayedPolicy) {
781 >                assertNull(delayed.get());
782 >            }
783 >        }
784 >        if (effectivePeriodicPolicy) {
785 >            assertTrue(periodicLatch1.await(LONG_DELAY_MS, MILLISECONDS));
786 >            assertTrue(periodicLatch2.await(LONG_DELAY_MS, MILLISECONDS));
787 >            for (Future<?> periodic : periodics) {
788 >                assertTrue(periodic.cancel(false));
789 >                assertTrue(periodic.isCancelled());
790 >                assertTrue(periodic.isDone());
791 >            }
792 >        }
793 >        assertTrue(p.awaitTermination(LONG_DELAY_MS, MILLISECONDS));
794 >        assertTrue(p.isTerminated());
795 >        assertEquals(2 + (effectiveDelayedPolicy ? 1 : 0), ran.get());
796 >    }}
797 >
798 >    /**
799 >     * completed submit of callable returns result
800       */
801 <    public void testShutDownNow() {
802 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
803 <        for(int i = 0; i < 5; i++)
804 <            p1.schedule(new SmallPossiblyInterruptedRunnable(), SHORT_DELAY_MS, TimeUnit.MILLISECONDS);
805 <        List l = p1.shutdownNow();
806 <        assertTrue(p1.isShutdown());
807 <        assertTrue(l.size() > 0 && l.size() <= 5);
497 <        joinPool(p1);
801 >    public void testSubmitCallable() throws Exception {
802 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
803 >        try (PoolCleaner cleaner = cleaner(e)) {
804 >            Future<String> future = e.submit(new StringTask());
805 >            String result = future.get();
806 >            assertSame(TEST_STRING, result);
807 >        }
808      }
809  
810      /**
811 <     * In default setting, shutdown cancels periodic but not delayed
502 <     * tasks at shutdown
811 >     * completed submit of runnable returns successfully
812       */
813 <    public void testShutDown1() {
814 <        try {
815 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
816 <            assertTrue(p1.getExecuteExistingDelayedTasksAfterShutdownPolicy());
817 <            assertFalse(p1.getContinueExistingPeriodicTasksAfterShutdownPolicy());
818 <
510 <            ScheduledFuture[] tasks = new ScheduledFuture[5];
511 <            for(int i = 0; i < 5; i++)
512 <                tasks[i] = p1.schedule(new NoOpRunnable(), SHORT_DELAY_MS, TimeUnit.MILLISECONDS);
513 <            p1.shutdown();
514 <            BlockingQueue q = p1.getQueue();
515 <            for (Iterator it = q.iterator(); it.hasNext();) {
516 <                ScheduledFuture t = (ScheduledFuture)it.next();
517 <                assertFalse(t.isCancelled());
518 <            }
519 <            assertTrue(p1.isShutdown());
520 <            Thread.sleep(SMALL_DELAY_MS);
521 <            for (int i = 0; i < 5; ++i) {
522 <                assertTrue(tasks[i].isDone());
523 <                assertFalse(tasks[i].isCancelled());
524 <            }
525 <            
526 <        }
527 <        catch(Exception ex) {
528 <            unexpectedException();
813 >    public void testSubmitRunnable() throws Exception {
814 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
815 >        try (PoolCleaner cleaner = cleaner(e)) {
816 >            Future<?> future = e.submit(new NoOpRunnable());
817 >            future.get();
818 >            assertTrue(future.isDone());
819          }
820      }
821  
532
822      /**
823 <     * If setExecuteExistingDelayedTasksAfterShutdownPolicy is false,
535 <     * delayed tasks are cancelled at shutdown
823 >     * completed submit of (runnable, result) returns result
824       */
825 <    public void testShutDown2() {
826 <        try {
827 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
828 <            p1.setExecuteExistingDelayedTasksAfterShutdownPolicy(false);
829 <            ScheduledFuture[] tasks = new ScheduledFuture[5];
830 <            for(int i = 0; i < 5; i++)
543 <                tasks[i] = p1.schedule(new NoOpRunnable(), SHORT_DELAY_MS, TimeUnit.MILLISECONDS);
544 <            p1.shutdown();
545 <            assertTrue(p1.isShutdown());
546 <            BlockingQueue q = p1.getQueue();
547 <            assertTrue(q.isEmpty());
548 <            Thread.sleep(SMALL_DELAY_MS);
549 <            assertTrue(p1.isTerminated());
550 <        }
551 <        catch(Exception ex) {
552 <            unexpectedException();
825 >    public void testSubmitRunnable2() throws Exception {
826 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
827 >        try (PoolCleaner cleaner = cleaner(e)) {
828 >            Future<String> future = e.submit(new NoOpRunnable(), TEST_STRING);
829 >            String result = future.get();
830 >            assertSame(TEST_STRING, result);
831          }
832      }
833  
556
834      /**
835 <     * If setContinueExistingPeriodicTasksAfterShutdownPolicy is set false,
559 <     * periodic tasks are not cancelled at shutdown
835 >     * invokeAny(null) throws NPE
836       */
837 <    public void testShutDown3() {
838 <        try {
839 <            ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
840 <            p1.setContinueExistingPeriodicTasksAfterShutdownPolicy(false);
841 <            ScheduledFuture task =
842 <                p1.scheduleAtFixedRate(new NoOpRunnable(), 5, 5, TimeUnit.MILLISECONDS);
843 <            p1.shutdown();
568 <            assertTrue(p1.isShutdown());
569 <            BlockingQueue q = p1.getQueue();
570 <            assertTrue(q.isEmpty());
571 <            Thread.sleep(SHORT_DELAY_MS);
572 <            assertTrue(p1.isTerminated());
573 <        }
574 <        catch(Exception ex) {
575 <            unexpectedException();
837 >    public void testInvokeAny1() throws Exception {
838 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
839 >        try (PoolCleaner cleaner = cleaner(e)) {
840 >            try {
841 >                e.invokeAny(null);
842 >                shouldThrow();
843 >            } catch (NullPointerException success) {}
844          }
845      }
846  
847      /**
848 <     * if setContinueExistingPeriodicTasksAfterShutdownPolicy is true,
581 <     * periodic tasks are cancelled at shutdown
848 >     * invokeAny(empty collection) throws IAE
849       */
850 <    public void testShutDown4() {
851 <        ScheduledThreadPoolExecutor p1 = new ScheduledThreadPoolExecutor(1);
852 <        try {
853 <            p1.setContinueExistingPeriodicTasksAfterShutdownPolicy(true);
854 <            ScheduledFuture task =
855 <                p1.scheduleAtFixedRate(new NoOpRunnable(), 5, 5, TimeUnit.MILLISECONDS);
856 <            assertFalse(task.isCancelled());
590 <            p1.shutdown();
591 <            assertFalse(task.isCancelled());
592 <            assertFalse(p1.isTerminated());
593 <            assertTrue(p1.isShutdown());
594 <            Thread.sleep(SHORT_DELAY_MS);
595 <            assertFalse(task.isCancelled());
596 <            task.cancel(true);
597 <            assertTrue(task.isCancelled());
598 <            Thread.sleep(SHORT_DELAY_MS);
599 <            assertTrue(p1.isTerminated());
600 <        }
601 <        catch(Exception ex) {
602 <            unexpectedException();
603 <        }
604 <        finally {
605 <            p1.shutdownNow();
850 >    public void testInvokeAny2() throws Exception {
851 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
852 >        try (PoolCleaner cleaner = cleaner(e)) {
853 >            try {
854 >                e.invokeAny(new ArrayList<Callable<String>>());
855 >                shouldThrow();
856 >            } catch (IllegalArgumentException success) {}
857          }
858      }
859  
860      /**
861 <     * completed submit of callable returns result
861 >     * invokeAny(c) throws NPE if c has null elements
862       */
863 <    public void testSubmitCallable() {
864 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
865 <        try {
866 <            Future<String> future = e.submit(new StringTask());
867 <            String result = future.get();
868 <            assertSame(TEST_STRING, result);
869 <        }
870 <        catch (ExecutionException ex) {
871 <            unexpectedException();
872 <        }
873 <        catch (InterruptedException ex) {
874 <            unexpectedException();
624 <        } finally {
625 <            joinPool(e);
863 >    public void testInvokeAny3() throws Exception {
864 >        CountDownLatch latch = new CountDownLatch(1);
865 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
866 >        try (PoolCleaner cleaner = cleaner(e)) {
867 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
868 >            l.add(latchAwaitingStringTask(latch));
869 >            l.add(null);
870 >            try {
871 >                e.invokeAny(l);
872 >                shouldThrow();
873 >            } catch (NullPointerException success) {}
874 >            latch.countDown();
875          }
876      }
877  
878      /**
879 <     * completed submit of runnable returns successfully
879 >     * invokeAny(c) throws ExecutionException if no task completes
880       */
881 <    public void testSubmitRunnable() {
882 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
883 <        try {
884 <            Future<?> future = e.submit(new NoOpRunnable());
885 <            future.get();
886 <            assertTrue(future.isDone());
887 <        }
888 <        catch (ExecutionException ex) {
889 <            unexpectedException();
890 <        }
891 <        catch (InterruptedException ex) {
643 <            unexpectedException();
644 <        } finally {
645 <            joinPool(e);
881 >    public void testInvokeAny4() throws Exception {
882 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
883 >        try (PoolCleaner cleaner = cleaner(e)) {
884 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
885 >            l.add(new NPETask());
886 >            try {
887 >                e.invokeAny(l);
888 >                shouldThrow();
889 >            } catch (ExecutionException success) {
890 >                assertTrue(success.getCause() instanceof NullPointerException);
891 >            }
892          }
893      }
894  
895      /**
896 <     * completed submit of (runnable, result) returns result
896 >     * invokeAny(c) returns result of some task
897       */
898 <    public void testSubmitRunnable2() {
899 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
900 <        try {
901 <            Future<String> future = e.submit(new NoOpRunnable(), TEST_STRING);
902 <            String result = future.get();
898 >    public void testInvokeAny5() throws Exception {
899 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
900 >        try (PoolCleaner cleaner = cleaner(e)) {
901 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
902 >            l.add(new StringTask());
903 >            l.add(new StringTask());
904 >            String result = e.invokeAny(l);
905              assertSame(TEST_STRING, result);
906          }
907 <        catch (ExecutionException ex) {
908 <            unexpectedException();
907 >    }
908 >
909 >    /**
910 >     * invokeAll(null) throws NPE
911 >     */
912 >    public void testInvokeAll1() throws Exception {
913 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
914 >        try (PoolCleaner cleaner = cleaner(e)) {
915 >            try {
916 >                e.invokeAll(null);
917 >                shouldThrow();
918 >            } catch (NullPointerException success) {}
919          }
920 <        catch (InterruptedException ex) {
921 <            unexpectedException();
922 <        } finally {
923 <            joinPool(e);
920 >    }
921 >
922 >    /**
923 >     * invokeAll(empty collection) returns empty collection
924 >     */
925 >    public void testInvokeAll2() throws Exception {
926 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
927 >        try (PoolCleaner cleaner = cleaner(e)) {
928 >            List<Future<String>> r = e.invokeAll(new ArrayList<Callable<String>>());
929 >            assertTrue(r.isEmpty());
930          }
931      }
932  
933 +    /**
934 +     * invokeAll(c) throws NPE if c has null elements
935 +     */
936 +    public void testInvokeAll3() throws Exception {
937 +        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
938 +        try (PoolCleaner cleaner = cleaner(e)) {
939 +            List<Callable<String>> l = new ArrayList<Callable<String>>();
940 +            l.add(new StringTask());
941 +            l.add(null);
942 +            try {
943 +                e.invokeAll(l);
944 +                shouldThrow();
945 +            } catch (NullPointerException success) {}
946 +        }
947 +    }
948  
949 +    /**
950 +     * get of invokeAll(c) throws exception on failed task
951 +     */
952 +    public void testInvokeAll4() throws Exception {
953 +        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
954 +        try (PoolCleaner cleaner = cleaner(e)) {
955 +            List<Callable<String>> l = new ArrayList<Callable<String>>();
956 +            l.add(new NPETask());
957 +            List<Future<String>> futures = e.invokeAll(l);
958 +            assertEquals(1, futures.size());
959 +            try {
960 +                futures.get(0).get();
961 +                shouldThrow();
962 +            } catch (ExecutionException success) {
963 +                assertTrue(success.getCause() instanceof NullPointerException);
964 +            }
965 +        }
966 +    }
967  
968 +    /**
969 +     * invokeAll(c) returns results of all completed tasks
970 +     */
971 +    public void testInvokeAll5() throws Exception {
972 +        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
973 +        try (PoolCleaner cleaner = cleaner(e)) {
974 +            List<Callable<String>> l = new ArrayList<Callable<String>>();
975 +            l.add(new StringTask());
976 +            l.add(new StringTask());
977 +            List<Future<String>> futures = e.invokeAll(l);
978 +            assertEquals(2, futures.size());
979 +            for (Future<String> future : futures)
980 +                assertSame(TEST_STRING, future.get());
981 +        }
982 +    }
983  
984 +    /**
985 +     * timed invokeAny(null) throws NPE
986 +     */
987 +    public void testTimedInvokeAny1() throws Exception {
988 +        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
989 +        try (PoolCleaner cleaner = cleaner(e)) {
990 +            try {
991 +                e.invokeAny(null, MEDIUM_DELAY_MS, MILLISECONDS);
992 +                shouldThrow();
993 +            } catch (NullPointerException success) {}
994 +        }
995 +    }
996  
997      /**
998 <     * invokeAny(null) throws NPE
998 >     * timed invokeAny(,,null) throws NPE
999       */
1000 <    public void testInvokeAny1() {
1001 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1002 <        try {
1003 <            e.invokeAny(null);
1004 <        } catch (NullPointerException success) {
1005 <        } catch(Exception ex) {
1006 <            unexpectedException();
1007 <        } finally {
1008 <            joinPool(e);
1000 >    public void testTimedInvokeAnyNullTimeUnit() throws Exception {
1001 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1002 >        try (PoolCleaner cleaner = cleaner(e)) {
1003 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1004 >            l.add(new StringTask());
1005 >            try {
1006 >                e.invokeAny(l, MEDIUM_DELAY_MS, null);
1007 >                shouldThrow();
1008 >            } catch (NullPointerException success) {}
1009          }
1010      }
1011  
1012      /**
1013 <     * invokeAny(empty collection) throws IAE
1013 >     * timed invokeAny(empty collection) throws IAE
1014       */
1015 <    public void testInvokeAny2() {
1016 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1017 <        try {
1018 <            e.invokeAny(new ArrayList<Callable<String>>());
1019 <        } catch (IllegalArgumentException success) {
1020 <        } catch(Exception ex) {
1021 <            unexpectedException();
698 <        } finally {
699 <            joinPool(e);
1015 >    public void testTimedInvokeAny2() throws Exception {
1016 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1017 >        try (PoolCleaner cleaner = cleaner(e)) {
1018 >            try {
1019 >                e.invokeAny(new ArrayList<Callable<String>>(), MEDIUM_DELAY_MS, MILLISECONDS);
1020 >                shouldThrow();
1021 >            } catch (IllegalArgumentException success) {}
1022          }
1023      }
1024  
1025      /**
1026 <     * invokeAny(c) throws NPE if c has null elements
1026 >     * timed invokeAny(c) throws NPE if c has null elements
1027       */
1028 <    public void testInvokeAny3() {
1029 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1030 <        try {
1031 <            ArrayList<Callable<String>> l = new ArrayList<Callable<String>>();
1032 <            l.add(new StringTask());
1028 >    public void testTimedInvokeAny3() throws Exception {
1029 >        CountDownLatch latch = new CountDownLatch(1);
1030 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1031 >        try (PoolCleaner cleaner = cleaner(e)) {
1032 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1033 >            l.add(latchAwaitingStringTask(latch));
1034              l.add(null);
1035 <            e.invokeAny(l);
1036 <        } catch (NullPointerException success) {
1037 <        } catch(Exception ex) {
1038 <            unexpectedException();
1039 <        } finally {
717 <            joinPool(e);
1035 >            try {
1036 >                e.invokeAny(l, MEDIUM_DELAY_MS, MILLISECONDS);
1037 >                shouldThrow();
1038 >            } catch (NullPointerException success) {}
1039 >            latch.countDown();
1040          }
1041      }
1042  
1043      /**
1044 <     * invokeAny(c) throws ExecutionException if no task completes
1044 >     * timed invokeAny(c) throws ExecutionException if no task completes
1045       */
1046 <    public void testInvokeAny4() {
1047 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1048 <        try {
1049 <            ArrayList<Callable<String>> l = new ArrayList<Callable<String>>();
1046 >    public void testTimedInvokeAny4() throws Exception {
1047 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1048 >        try (PoolCleaner cleaner = cleaner(e)) {
1049 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1050              l.add(new NPETask());
1051 <            e.invokeAny(l);
1052 <        } catch (ExecutionException success) {
1053 <        } catch(Exception ex) {
1054 <            unexpectedException();
1055 <        } finally {
1056 <            joinPool(e);
1051 >            try {
1052 >                e.invokeAny(l, MEDIUM_DELAY_MS, MILLISECONDS);
1053 >                shouldThrow();
1054 >            } catch (ExecutionException success) {
1055 >                assertTrue(success.getCause() instanceof NullPointerException);
1056 >            }
1057          }
1058      }
1059  
1060      /**
1061 <     * invokeAny(c) returns result of some task
1061 >     * timed invokeAny(c) returns result of some task
1062       */
1063 <    public void testInvokeAny5() {
1064 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1065 <        try {
1066 <            ArrayList<Callable<String>> l = new ArrayList<Callable<String>>();
1063 >    public void testTimedInvokeAny5() throws Exception {
1064 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1065 >        try (PoolCleaner cleaner = cleaner(e)) {
1066 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1067              l.add(new StringTask());
1068              l.add(new StringTask());
1069 <            String result = e.invokeAny(l);
1069 >            String result = e.invokeAny(l, MEDIUM_DELAY_MS, MILLISECONDS);
1070              assertSame(TEST_STRING, result);
749        } catch (ExecutionException success) {
750        } catch(Exception ex) {
751            unexpectedException();
752        } finally {
753            joinPool(e);
1071          }
1072      }
1073  
1074      /**
1075 <     * invokeAll(null) throws NPE
1075 >     * timed invokeAll(null) throws NPE
1076       */
1077 <    public void testInvokeAll1() {
1078 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1079 <        try {
1080 <            e.invokeAll(null);
1081 <        } catch (NullPointerException success) {
1082 <        } catch(Exception ex) {
1083 <            unexpectedException();
767 <        } finally {
768 <            joinPool(e);
1077 >    public void testTimedInvokeAll1() throws Exception {
1078 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1079 >        try (PoolCleaner cleaner = cleaner(e)) {
1080 >            try {
1081 >                e.invokeAll(null, MEDIUM_DELAY_MS, MILLISECONDS);
1082 >                shouldThrow();
1083 >            } catch (NullPointerException success) {}
1084          }
1085      }
1086  
1087      /**
1088 <     * invokeAll(empty collection) returns empty collection
1088 >     * timed invokeAll(,,null) throws NPE
1089       */
1090 <    public void testInvokeAll2() {
1091 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1092 <        try {
1093 <            List<Future<String>> r = e.invokeAll(new ArrayList<Callable<String>>());
1090 >    public void testTimedInvokeAllNullTimeUnit() throws Exception {
1091 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1092 >        try (PoolCleaner cleaner = cleaner(e)) {
1093 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1094 >            l.add(new StringTask());
1095 >            try {
1096 >                e.invokeAll(l, MEDIUM_DELAY_MS, null);
1097 >                shouldThrow();
1098 >            } catch (NullPointerException success) {}
1099 >        }
1100 >    }
1101 >
1102 >    /**
1103 >     * timed invokeAll(empty collection) returns empty collection
1104 >     */
1105 >    public void testTimedInvokeAll2() throws Exception {
1106 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1107 >        try (PoolCleaner cleaner = cleaner(e)) {
1108 >            List<Future<String>> r = e.invokeAll(new ArrayList<Callable<String>>(),
1109 >                                                 MEDIUM_DELAY_MS, MILLISECONDS);
1110              assertTrue(r.isEmpty());
780        } catch(Exception ex) {
781            unexpectedException();
782        } finally {
783            joinPool(e);
1111          }
1112      }
1113  
1114      /**
1115 <     * invokeAll(c) throws NPE if c has null elements
1115 >     * timed invokeAll(c) throws NPE if c has null elements
1116       */
1117 <    public void testInvokeAll3() {
1118 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1119 <        try {
1120 <            ArrayList<Callable<String>> l = new ArrayList<Callable<String>>();
1117 >    public void testTimedInvokeAll3() throws Exception {
1118 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1119 >        try (PoolCleaner cleaner = cleaner(e)) {
1120 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1121              l.add(new StringTask());
1122              l.add(null);
1123 <            e.invokeAll(l);
1124 <        } catch (NullPointerException success) {
1125 <        } catch(Exception ex) {
1126 <            unexpectedException();
800 <        } finally {
801 <            joinPool(e);
1123 >            try {
1124 >                e.invokeAll(l, MEDIUM_DELAY_MS, MILLISECONDS);
1125 >                shouldThrow();
1126 >            } catch (NullPointerException success) {}
1127          }
1128      }
1129  
1130      /**
1131 <     * get of invokeAll(c) throws exception on failed task
1131 >     * get of element of invokeAll(c) throws exception on failed task
1132       */
1133 <    public void testInvokeAll4() {
1134 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1135 <        try {
1136 <            ArrayList<Callable<String>> l = new ArrayList<Callable<String>>();
1133 >    public void testTimedInvokeAll4() throws Exception {
1134 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1135 >        try (PoolCleaner cleaner = cleaner(e)) {
1136 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1137              l.add(new NPETask());
1138 <            List<Future<String>> result = e.invokeAll(l);
1139 <            assertEquals(1, result.size());
1140 <            for (Iterator<Future<String>> it = result.iterator(); it.hasNext();)
1141 <                it.next().get();
1142 <        } catch(ExecutionException success) {
1143 <        } catch(Exception ex) {
1144 <            unexpectedException();
1145 <        } finally {
1146 <            joinPool(e);
1138 >            List<Future<String>> futures =
1139 >                e.invokeAll(l, LONG_DELAY_MS, MILLISECONDS);
1140 >            assertEquals(1, futures.size());
1141 >            try {
1142 >                futures.get(0).get();
1143 >                shouldThrow();
1144 >            } catch (ExecutionException success) {
1145 >                assertTrue(success.getCause() instanceof NullPointerException);
1146 >            }
1147          }
1148      }
1149  
1150      /**
1151 <     * invokeAll(c) returns results of all completed tasks
1151 >     * timed invokeAll(c) returns results of all completed tasks
1152       */
1153 <    public void testInvokeAll5() {
1154 <        ExecutorService e = new ScheduledThreadPoolExecutor(2);
1155 <        try {
1156 <            ArrayList<Callable<String>> l = new ArrayList<Callable<String>>();
1153 >    public void testTimedInvokeAll5() throws Exception {
1154 >        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1155 >        try (PoolCleaner cleaner = cleaner(e)) {
1156 >            List<Callable<String>> l = new ArrayList<Callable<String>>();
1157              l.add(new StringTask());
1158              l.add(new StringTask());
1159 <            List<Future<String>> result = e.invokeAll(l);
1160 <            assertEquals(2, result.size());
1161 <            for (Iterator<Future<String>> it = result.iterator(); it.hasNext();)
1162 <                assertSame(TEST_STRING, it.next().get());
1163 <        } catch (ExecutionException success) {
839 <        } catch(Exception ex) {
840 <            unexpectedException();
841 <        } finally {
842 <            joinPool(e);
1159 >            List<Future<String>> futures =
1160 >                e.invokeAll(l, LONG_DELAY_MS, MILLISECONDS);
1161 >            assertEquals(2, futures.size());
1162 >            for (Future<String> future : futures)
1163 >                assertSame(TEST_STRING, future.get());
1164          }
1165      }
1166  
1167 +    /**
1168 +     * timed invokeAll(c) cancels tasks not completed by timeout
1169 +     */
1170 +    public void testTimedInvokeAll6() throws Exception {
1171 +        final ExecutorService e = new ScheduledThreadPoolExecutor(2);
1172 +        try (PoolCleaner cleaner = cleaner(e)) {
1173 +            for (long timeout = timeoutMillis();;) {
1174 +                List<Callable<String>> tasks = new ArrayList<>();
1175 +                tasks.add(new StringTask("0"));
1176 +                tasks.add(Executors.callable(new LongPossiblyInterruptedRunnable(), TEST_STRING));
1177 +                tasks.add(new StringTask("2"));
1178 +                long startTime = System.nanoTime();
1179 +                List<Future<String>> futures =
1180 +                    e.invokeAll(tasks, timeout, MILLISECONDS);
1181 +                assertEquals(tasks.size(), futures.size());
1182 +                assertTrue(millisElapsedSince(startTime) >= timeout);
1183 +                for (Future future : futures)
1184 +                    assertTrue(future.isDone());
1185 +                assertTrue(futures.get(1).isCancelled());
1186 +                try {
1187 +                    assertEquals("0", futures.get(0).get());
1188 +                    assertEquals("2", futures.get(2).get());
1189 +                    break;
1190 +                } catch (CancellationException retryWithLongerTimeout) {
1191 +                    timeout *= 2;
1192 +                    if (timeout >= LONG_DELAY_MS / 2)
1193 +                        fail("expected exactly one task to be cancelled");
1194 +                }
1195 +            }
1196 +        }
1197 +    }
1198  
1199   }

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