--- jsr166/src/test/tck/ScheduledExecutorSubclassTest.java 2011/05/27 19:43:27 1.25 +++ jsr166/src/test/tck/ScheduledExecutorSubclassTest.java 2015/09/14 03:27:11 1.36 @@ -4,15 +4,36 @@ * http://creativecommons.org/publicdomain/zero/1.0/ */ -import junit.framework.*; -import java.util.*; -import java.util.concurrent.*; import static java.util.concurrent.TimeUnit.MILLISECONDS; -import java.util.concurrent.atomic.*; + +import java.util.ArrayList; +import java.util.List; +import java.util.concurrent.BlockingQueue; +import java.util.concurrent.Callable; +import java.util.concurrent.CancellationException; +import java.util.concurrent.CountDownLatch; +import java.util.concurrent.Delayed; +import java.util.concurrent.ExecutionException; +import java.util.concurrent.Executors; +import java.util.concurrent.ExecutorService; +import java.util.concurrent.Future; +import java.util.concurrent.RejectedExecutionException; +import java.util.concurrent.RejectedExecutionHandler; +import java.util.concurrent.RunnableScheduledFuture; +import java.util.concurrent.ScheduledFuture; +import java.util.concurrent.ScheduledThreadPoolExecutor; +import java.util.concurrent.ThreadFactory; +import java.util.concurrent.ThreadPoolExecutor; +import java.util.concurrent.TimeoutException; +import java.util.concurrent.TimeUnit; +import java.util.concurrent.atomic.AtomicInteger; + +import junit.framework.Test; +import junit.framework.TestSuite; public class ScheduledExecutorSubclassTest extends JSR166TestCase { public static void main(String[] args) { - junit.textui.TestRunner.run(suite()); + main(suite(), args); } public static Test suite() { return new TestSuite(ScheduledExecutorSubclassTest.class); @@ -36,12 +57,12 @@ public class ScheduledExecutorSubclassTe } public boolean isCancelled() { return task.isCancelled(); } public boolean isDone() { return task.isDone(); } - public V get() throws InterruptedException, ExecutionException { + public V get() throws InterruptedException, ExecutionException { V v = task.get(); assertTrue(ran); return v; } - public V get(long time, TimeUnit unit) throws InterruptedException, ExecutionException, TimeoutException { + public V get(long time, TimeUnit unit) throws InterruptedException, ExecutionException, TimeoutException { V v = task.get(time, unit); assertTrue(ran); return v; @@ -57,7 +78,7 @@ public class ScheduledExecutorSubclassTe protected RunnableScheduledFuture decorateTask(Callable c, RunnableScheduledFuture task) { return new CustomTask(task); } - CustomExecutor(int corePoolSize) { super(corePoolSize);} + CustomExecutor(int corePoolSize) { super(corePoolSize); } CustomExecutor(int corePoolSize, RejectedExecutionHandler handler) { super(corePoolSize, handler); } @@ -95,19 +116,18 @@ public class ScheduledExecutorSubclassTe */ public void testSchedule1() throws Exception { CustomExecutor p = new CustomExecutor(1); - final long t0 = System.nanoTime(); - final long timeoutNanos = SHORT_DELAY_MS * 1000L * 1000L; + final long startTime = System.nanoTime(); final CountDownLatch done = new CountDownLatch(1); try { Callable task = new CheckedCallable() { public Boolean realCall() { done.countDown(); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); return Boolean.TRUE; }}; - Future f = p.schedule(task, SHORT_DELAY_MS, MILLISECONDS); - assertEquals(Boolean.TRUE, f.get()); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); + Future f = p.schedule(task, timeoutMillis(), MILLISECONDS); + assertSame(Boolean.TRUE, f.get()); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); assertTrue(done.await(0L, MILLISECONDS)); } finally { joinPool(p); @@ -119,19 +139,18 @@ public class ScheduledExecutorSubclassTe */ public void testSchedule3() throws Exception { CustomExecutor p = new CustomExecutor(1); - final long t0 = System.nanoTime(); - final long timeoutNanos = SHORT_DELAY_MS * 1000L * 1000L; + final long startTime = System.nanoTime(); final CountDownLatch done = new CountDownLatch(1); try { Runnable task = new CheckedRunnable() { public void realRun() { done.countDown(); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); }}; - Future f = p.schedule(task, SHORT_DELAY_MS, MILLISECONDS); - assertNull(f.get()); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); - assertTrue(done.await(0L, MILLISECONDS)); + Future f = p.schedule(task, timeoutMillis(), MILLISECONDS); + await(done); + assertNull(f.get(LONG_DELAY_MS, MILLISECONDS)); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); } finally { joinPool(p); } @@ -142,20 +161,19 @@ public class ScheduledExecutorSubclassTe */ public void testSchedule4() throws InterruptedException { CustomExecutor p = new CustomExecutor(1); - final long t0 = System.nanoTime(); - final long timeoutNanos = SHORT_DELAY_MS * 1000L * 1000L; + final long startTime = System.nanoTime(); final CountDownLatch done = new CountDownLatch(1); try { Runnable task = new CheckedRunnable() { public void realRun() { done.countDown(); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); }}; ScheduledFuture f = - p.scheduleAtFixedRate(task, SHORT_DELAY_MS, - SHORT_DELAY_MS, MILLISECONDS); - assertTrue(done.await(SMALL_DELAY_MS, MILLISECONDS)); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); + p.scheduleAtFixedRate(task, timeoutMillis(), + LONG_DELAY_MS, MILLISECONDS); + await(done); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); f.cancel(true); } finally { joinPool(p); @@ -167,20 +185,19 @@ public class ScheduledExecutorSubclassTe */ public void testSchedule5() throws InterruptedException { CustomExecutor p = new CustomExecutor(1); - final long t0 = System.nanoTime(); - final long timeoutNanos = SHORT_DELAY_MS * 1000L * 1000L; + final long startTime = System.nanoTime(); final CountDownLatch done = new CountDownLatch(1); try { Runnable task = new CheckedRunnable() { public void realRun() { done.countDown(); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); }}; ScheduledFuture f = - p.scheduleWithFixedDelay(task, SHORT_DELAY_MS, - SHORT_DELAY_MS, MILLISECONDS); - assertTrue(done.await(SMALL_DELAY_MS, MILLISECONDS)); - assertTrue(System.nanoTime() - t0 >= timeoutNanos); + p.scheduleWithFixedDelay(task, timeoutMillis(), + LONG_DELAY_MS, MILLISECONDS); + await(done); + assertTrue(millisElapsedSince(startTime) >= timeoutMillis()); f.cancel(true); } finally { joinPool(p); @@ -197,17 +214,27 @@ public class ScheduledExecutorSubclassTe */ public void testFixedRateSequence() throws InterruptedException { CustomExecutor p = new CustomExecutor(1); - RunnableCounter counter = new RunnableCounter(); - ScheduledFuture h = - p.scheduleAtFixedRate(counter, 0, 1, MILLISECONDS); - delay(SMALL_DELAY_MS); - h.cancel(true); - int c = counter.count.get(); - // By time scaling conventions, we must have at least - // an execution per SHORT delay, but no more than one SHORT more - assertTrue(c >= SMALL_DELAY_MS / SHORT_DELAY_MS); - assertTrue(c <= SMALL_DELAY_MS + SHORT_DELAY_MS); - joinPool(p); + try { + for (int delay = 1; delay <= LONG_DELAY_MS; delay *= 3) { + long startTime = System.nanoTime(); + int cycles = 10; + final CountDownLatch done = new CountDownLatch(cycles); + Runnable task = new CheckedRunnable() { + public void realRun() { done.countDown(); }}; + ScheduledFuture h = + p.scheduleAtFixedRate(task, 0, delay, MILLISECONDS); + done.await(); + h.cancel(true); + double normalizedTime = + (double) millisElapsedSince(startTime) / delay; + if (normalizedTime >= cycles - 1 && + normalizedTime <= cycles) + return; + } + throw new AssertionError("unexpected execution rate"); + } finally { + joinPool(p); + } } /** @@ -215,15 +242,27 @@ public class ScheduledExecutorSubclassTe */ public void testFixedDelaySequence() throws InterruptedException { CustomExecutor p = new CustomExecutor(1); - RunnableCounter counter = new RunnableCounter(); - ScheduledFuture h = - p.scheduleWithFixedDelay(counter, 0, 1, MILLISECONDS); - delay(SMALL_DELAY_MS); - h.cancel(true); - int c = counter.count.get(); - assertTrue(c >= SMALL_DELAY_MS / SHORT_DELAY_MS); - assertTrue(c <= SMALL_DELAY_MS + SHORT_DELAY_MS); - joinPool(p); + try { + for (int delay = 1; delay <= LONG_DELAY_MS; delay *= 3) { + long startTime = System.nanoTime(); + int cycles = 10; + final CountDownLatch done = new CountDownLatch(cycles); + Runnable task = new CheckedRunnable() { + public void realRun() { done.countDown(); }}; + ScheduledFuture h = + p.scheduleWithFixedDelay(task, 0, delay, MILLISECONDS); + done.await(); + h.cancel(true); + double normalizedTime = + (double) millisElapsedSince(startTime) / delay; + if (normalizedTime >= cycles - 1 && + normalizedTime <= cycles) + return; + } + throw new AssertionError("unexpected execution rate"); + } finally { + joinPool(p); + } } /** @@ -374,12 +413,16 @@ public class ScheduledExecutorSubclassTe threadProceed.await(); threadDone.countDown(); }}); - assertTrue(threadStarted.await(SMALL_DELAY_MS, MILLISECONDS)); + await(threadStarted); assertEquals(0, p.getCompletedTaskCount()); threadProceed.countDown(); threadDone.await(); - delay(SHORT_DELAY_MS); - assertEquals(1, p.getCompletedTaskCount()); + long startTime = System.nanoTime(); + while (p.getCompletedTaskCount() != 1) { + if (millisElapsedSince(startTime) > LONG_DELAY_MS) + fail("timed out"); + Thread.yield(); + } } finally { joinPool(p); } @@ -1198,22 +1241,29 @@ public class ScheduledExecutorSubclassTe public void testTimedInvokeAll6() throws Exception { ExecutorService e = new CustomExecutor(2); try { - List> l = new ArrayList>(); - l.add(new StringTask()); - l.add(Executors.callable(new MediumPossiblyInterruptedRunnable(), TEST_STRING)); - l.add(new StringTask()); - List> futures = - e.invokeAll(l, SHORT_DELAY_MS, MILLISECONDS); - assertEquals(3, futures.size()); - Iterator> it = futures.iterator(); - Future f1 = it.next(); - Future f2 = it.next(); - Future f3 = it.next(); - assertTrue(f1.isDone()); - assertTrue(f2.isDone()); - assertTrue(f3.isDone()); - assertFalse(f1.isCancelled()); - assertTrue(f2.isCancelled()); + for (long timeout = timeoutMillis();;) { + List> tasks = new ArrayList<>(); + tasks.add(new StringTask("0")); + tasks.add(Executors.callable(new LongPossiblyInterruptedRunnable(), TEST_STRING)); + tasks.add(new StringTask("2")); + long startTime = System.nanoTime(); + List> futures = + e.invokeAll(tasks, timeout, MILLISECONDS); + assertEquals(tasks.size(), futures.size()); + assertTrue(millisElapsedSince(startTime) >= timeout); + for (Future future : futures) + assertTrue(future.isDone()); + assertTrue(futures.get(1).isCancelled()); + try { + assertEquals("0", futures.get(0).get()); + assertEquals("2", futures.get(2).get()); + break; + } catch (CancellationException retryWithLongerTimeout) { + timeout *= 2; + if (timeout >= LONG_DELAY_MS / 2) + fail("expected exactly one task to be cancelled"); + } + } } finally { joinPool(e); }