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Comparing jsr166/src/test/tck/ReentrantReadWriteLockTest.java (file contents):
Revision 1.8 by dl, Fri Dec 19 14:44:25 2003 UTC vs.
Revision 1.77 by jsr166, Fri Jul 3 01:25:15 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.concurrent.locks.*;
11 < import java.util.concurrent.*;
12 < import java.io.*;
13 < import java.util.*;
9 > import static java.util.concurrent.TimeUnit.MILLISECONDS;
10 >
11 > import java.util.Arrays;
12 > import java.util.Collection;
13 > import java.util.HashSet;
14 > import java.util.concurrent.CountDownLatch;
15 > import java.util.concurrent.atomic.AtomicBoolean;
16 > import java.util.concurrent.locks.Condition;
17 > import java.util.concurrent.locks.Lock;
18 > import java.util.concurrent.locks.ReentrantReadWriteLock;
19 >
20 > import junit.framework.AssertionFailedError;
21 > import junit.framework.Test;
22 > import junit.framework.TestSuite;
23  
24   public class ReentrantReadWriteLockTest extends JSR166TestCase {
25      public static void main(String[] args) {
26 <        junit.textui.TestRunner.run (suite());  
26 >        main(suite(), args);
27      }
28      public static Test suite() {
29 <        return new TestSuite(ReentrantReadWriteLockTest.class);
29 >        return new TestSuite(ReentrantReadWriteLockTest.class);
30      }
31  
32      /**
33       * A runnable calling lockInterruptibly
34       */
35 <    class InterruptibleLockRunnable implements Runnable {
35 >    class InterruptibleLockRunnable extends CheckedRunnable {
36          final ReentrantReadWriteLock lock;
37          InterruptibleLockRunnable(ReentrantReadWriteLock l) { lock = l; }
38 <        public void run() {
39 <            try {
30 <                lock.writeLock().lockInterruptibly();
31 <            } catch(InterruptedException success){}
38 >        public void realRun() throws InterruptedException {
39 >            lock.writeLock().lockInterruptibly();
40          }
41      }
42  
35
43      /**
44       * A runnable calling lockInterruptibly that expects to be
45       * interrupted
46       */
47 <    class InterruptedLockRunnable implements Runnable {
47 >    class InterruptedLockRunnable extends CheckedInterruptedRunnable {
48          final ReentrantReadWriteLock lock;
49          InterruptedLockRunnable(ReentrantReadWriteLock l) { lock = l; }
50 <        public void run() {
51 <            try {
45 <                lock.writeLock().lockInterruptibly();
46 <                threadShouldThrow();
47 <            } catch(InterruptedException success){}
50 >        public void realRun() throws InterruptedException {
51 >            lock.writeLock().lockInterruptibly();
52          }
53      }
54  
# Line 53 | Line 57 | public class ReentrantReadWriteLockTest
57       */
58      static class PublicReentrantReadWriteLock extends ReentrantReadWriteLock {
59          PublicReentrantReadWriteLock() { super(); }
60 <        public Collection<Thread> getQueuedThreads() {
61 <            return super.getQueuedThreads();
60 >        PublicReentrantReadWriteLock(boolean fair) { super(fair); }
61 >        public Thread getOwner() {
62 >            return super.getOwner();
63          }
64 <        public PublicCondition newCondition() {
65 <            return new PublicCondition(this);
64 >        public Collection<Thread> getQueuedThreads() {
65 >            return super.getQueuedThreads();
66          }
67 <
68 <        static class PublicCondition extends ReentrantReadWriteLock.WriterConditionObject {
64 <            PublicCondition(PublicReentrantReadWriteLock l) { super(l); }
65 <            public Collection<Thread> getWaitingThreads() {
66 <                return super.getWaitingThreads();
67 <            }
67 >        public Collection<Thread> getWaitingThreads(Condition c) {
68 >            return super.getWaitingThreads(c);
69          }
69
70      }
71  
72      /**
73 <     * Constructor sets given fairness, and is in unlocked state
73 >     * Releases write lock, checking that it had a hold count of 1.
74       */
75 <    public void testConstructor() {
76 <        ReentrantReadWriteLock rl = new ReentrantReadWriteLock();
77 <        assertFalse(rl.isFair());
78 <        assertFalse(rl.isWriteLocked());
79 <        assertEquals(0, rl.getReadLocks());
80 <        ReentrantReadWriteLock r2 = new ReentrantReadWriteLock(true);
81 <        assertTrue(r2.isFair());
82 <        assertFalse(r2.isWriteLocked());
83 <        assertEquals(0, r2.getReadLocks());
75 >    void releaseWriteLock(PublicReentrantReadWriteLock lock) {
76 >        ReentrantReadWriteLock.WriteLock writeLock = lock.writeLock();
77 >        assertWriteLockedByMoi(lock);
78 >        assertEquals(1, lock.getWriteHoldCount());
79 >        writeLock.unlock();
80 >        assertNotWriteLocked(lock);
81      }
82  
83      /**
84 <     * write-locking and read-locking an unlocked lock succeed
84 >     * Spin-waits until lock.hasQueuedThread(t) becomes true.
85       */
86 <    public void testLock() {
87 <        ReentrantReadWriteLock rl = new ReentrantReadWriteLock();
88 <        rl.writeLock().lock();
89 <        assertTrue(rl.isWriteLocked());
90 <        assertTrue(rl.isWriteLockedByCurrentThread());
91 <        assertEquals(0, rl.getReadLocks());
92 <        rl.writeLock().unlock();
93 <        assertFalse(rl.isWriteLocked());
94 <        assertFalse(rl.isWriteLockedByCurrentThread());
98 <        assertEquals(0, rl.getReadLocks());
99 <        rl.readLock().lock();
100 <        assertFalse(rl.isWriteLocked());
101 <        assertFalse(rl.isWriteLockedByCurrentThread());
102 <        assertEquals(1, rl.getReadLocks());
103 <        rl.readLock().unlock();
104 <        assertFalse(rl.isWriteLocked());
105 <        assertFalse(rl.isWriteLockedByCurrentThread());
106 <        assertEquals(0, rl.getReadLocks());
86 >    void waitForQueuedThread(PublicReentrantReadWriteLock lock, Thread t) {
87 >        long startTime = System.nanoTime();
88 >        while (!lock.hasQueuedThread(t)) {
89 >            if (millisElapsedSince(startTime) > LONG_DELAY_MS)
90 >                throw new AssertionFailedError("timed out");
91 >            Thread.yield();
92 >        }
93 >        assertTrue(t.isAlive());
94 >        assertNotSame(t, lock.getOwner());
95      }
96  
109
97      /**
98 <     * locking an unlocked fair lock succeeds
99 <     */
100 <    public void testFairLock() {
101 <        ReentrantReadWriteLock rl = new ReentrantReadWriteLock(true);
102 <        rl.writeLock().lock();
103 <        assertTrue(rl.isWriteLocked());
104 <        assertTrue(rl.isWriteLockedByCurrentThread());
105 <        assertEquals(0, rl.getReadLocks());
106 <        rl.writeLock().unlock();
120 <        assertFalse(rl.isWriteLocked());
121 <        assertFalse(rl.isWriteLockedByCurrentThread());
122 <        assertEquals(0, rl.getReadLocks());
123 <        rl.readLock().lock();
124 <        assertFalse(rl.isWriteLocked());
125 <        assertFalse(rl.isWriteLockedByCurrentThread());
126 <        assertEquals(1, rl.getReadLocks());
127 <        rl.readLock().unlock();
128 <        assertFalse(rl.isWriteLocked());
129 <        assertFalse(rl.isWriteLockedByCurrentThread());
130 <        assertEquals(0, rl.getReadLocks());
98 >     * Checks that lock is not write-locked.
99 >     */
100 >    void assertNotWriteLocked(PublicReentrantReadWriteLock lock) {
101 >        assertFalse(lock.isWriteLocked());
102 >        assertFalse(lock.isWriteLockedByCurrentThread());
103 >        assertFalse(lock.writeLock().isHeldByCurrentThread());
104 >        assertEquals(0, lock.getWriteHoldCount());
105 >        assertEquals(0, lock.writeLock().getHoldCount());
106 >        assertNull(lock.getOwner());
107      }
108  
109      /**
110 <     * getWriteHoldCount returns number of recursive holds
110 >     * Checks that lock is write-locked by the given thread.
111       */
112 <    public void testGetHoldCount() {
113 <        ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
114 <        for(int i = 1; i <= SIZE; i++) {
115 <            lock.writeLock().lock();
116 <            assertEquals(i,lock.getWriteHoldCount());
117 <        }
118 <        for(int i = SIZE; i > 0; i--) {
119 <            lock.writeLock().unlock();
120 <            assertEquals(i-1,lock.getWriteHoldCount());
121 <        }
112 >    void assertWriteLockedBy(PublicReentrantReadWriteLock lock, Thread t) {
113 >        assertTrue(lock.isWriteLocked());
114 >        assertSame(t, lock.getOwner());
115 >        assertEquals(t == Thread.currentThread(),
116 >                     lock.isWriteLockedByCurrentThread());
117 >        assertEquals(t == Thread.currentThread(),
118 >                     lock.writeLock().isHeldByCurrentThread());
119 >        assertEquals(t == Thread.currentThread(),
120 >                     lock.getWriteHoldCount() > 0);
121 >        assertEquals(t == Thread.currentThread(),
122 >                     lock.writeLock().getHoldCount() > 0);
123 >        assertEquals(0, lock.getReadLockCount());
124      }
147    
125  
126      /**
127 <     * write-unlocking an unlocked lock throws IllegalMonitorStateException
127 >     * Checks that lock is write-locked by the current thread.
128       */
129 <    public void testUnlock_IllegalMonitorStateException() {
130 <        ReentrantReadWriteLock rl = new ReentrantReadWriteLock();
154 <        try {
155 <            rl.writeLock().unlock();
156 <            shouldThrow();
157 <        } catch(IllegalMonitorStateException success){}
129 >    void assertWriteLockedByMoi(PublicReentrantReadWriteLock lock) {
130 >        assertWriteLockedBy(lock, Thread.currentThread());
131      }
132  
160
133      /**
134 <     * write-lockInterruptibly is interruptible
134 >     * Checks that condition c has no waiters.
135       */
136 <    public void testWriteLockInterruptibly_Interrupted() {
137 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
138 <        lock.writeLock().lock();
167 <        Thread t = new Thread(new Runnable() {
168 <                public void run() {
169 <                    try {
170 <                        lock.writeLock().lockInterruptibly();
171 <                        threadShouldThrow();
172 <                    } catch(InterruptedException success){}
173 <                }
174 <            });
175 <        try {
176 <            t.start();
177 <            t.interrupt();
178 <            lock.writeLock().unlock();
179 <            t.join();
180 <        } catch(Exception e){
181 <            unexpectedException();
182 <        }
183 <    }
136 >    void assertHasNoWaiters(PublicReentrantReadWriteLock lock, Condition c) {
137 >        assertHasWaiters(lock, c, new Thread[] {});
138 >    }
139  
140      /**
141 <     * timed write-trylock is interruptible
141 >     * Checks that condition c has exactly the given waiter threads.
142       */
143 <    public void testWriteTryLock_Interrupted() {
144 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
145 <        lock.writeLock().lock();
146 <        Thread t = new Thread(new Runnable() {
147 <                public void run() {
148 <                    try {
149 <                        lock.writeLock().tryLock(1000,TimeUnit.MILLISECONDS);
150 <                        threadShouldThrow();
151 <                    } catch(InterruptedException success){}
152 <                }
198 <            });
199 <        try {
200 <            t.start();
201 <            t.interrupt();
202 <            lock.writeLock().unlock();
203 <            t.join();
204 <        } catch(Exception e){
205 <            unexpectedException();
206 <        }
143 >    void assertHasWaiters(PublicReentrantReadWriteLock lock, Condition c,
144 >                          Thread... threads) {
145 >        lock.writeLock().lock();
146 >        assertEquals(threads.length > 0, lock.hasWaiters(c));
147 >        assertEquals(threads.length, lock.getWaitQueueLength(c));
148 >        assertEquals(threads.length == 0, lock.getWaitingThreads(c).isEmpty());
149 >        assertEquals(threads.length, lock.getWaitingThreads(c).size());
150 >        assertEquals(new HashSet<Thread>(lock.getWaitingThreads(c)),
151 >                     new HashSet<Thread>(Arrays.asList(threads)));
152 >        lock.writeLock().unlock();
153      }
154  
155 +    enum AwaitMethod { await, awaitTimed, awaitNanos, awaitUntil }
156 +
157      /**
158 <     * read-lockInterruptibly is interruptible
158 >     * Awaits condition "indefinitely" using the specified AwaitMethod.
159       */
160 <    public void testReadLockInterruptibly_Interrupted() {
161 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
162 <        lock.writeLock().lock();
163 <        Thread t = new Thread(new Runnable() {
164 <                public void run() {
165 <                    try {
166 <                        lock.readLock().lockInterruptibly();
167 <                        threadShouldThrow();
168 <                    } catch(InterruptedException success){}
169 <                }
170 <            });
171 <        try {
172 <            t.start();
173 <            t.interrupt();
174 <            lock.writeLock().unlock();
175 <            t.join();
176 <        } catch(Exception e){
177 <            unexpectedException();
160 >    void await(Condition c, AwaitMethod awaitMethod)
161 >            throws InterruptedException {
162 >        long timeoutMillis = 2 * LONG_DELAY_MS;
163 >        switch (awaitMethod) {
164 >        case await:
165 >            c.await();
166 >            break;
167 >        case awaitTimed:
168 >            assertTrue(c.await(timeoutMillis, MILLISECONDS));
169 >            break;
170 >        case awaitNanos:
171 >            long timeoutNanos = MILLISECONDS.toNanos(timeoutMillis);
172 >            long nanosRemaining = c.awaitNanos(timeoutNanos);
173 >            assertTrue(nanosRemaining > timeoutNanos / 2);
174 >            assertTrue(nanosRemaining <= timeoutNanos);
175 >            break;
176 >        case awaitUntil:
177 >            assertTrue(c.awaitUntil(delayedDate(timeoutMillis)));
178 >            break;
179 >        default:
180 >            throw new AssertionError();
181          }
182 <    }
182 >    }
183  
184      /**
185 <     * timed read-trylock is interruptible
185 >     * Constructor sets given fairness, and is in unlocked state
186       */
187 <    public void testReadTryLock_Interrupted() {
188 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
189 <        lock.writeLock().lock();
190 <        Thread t = new Thread(new Runnable() {
191 <                public void run() {
192 <                    try {
193 <                        lock.readLock().tryLock(1000,TimeUnit.MILLISECONDS);
194 <                        threadShouldThrow();
195 <                    } catch(InterruptedException success){}
196 <                }
197 <            });
198 <        try {
199 <            t.start();
200 <            t.interrupt();
201 <            t.join();
202 <        } catch(Exception e){
203 <            unexpectedException();
253 <        }
187 >    public void testConstructor() {
188 >        PublicReentrantReadWriteLock lock;
189 >
190 >        lock = new PublicReentrantReadWriteLock();
191 >        assertFalse(lock.isFair());
192 >        assertNotWriteLocked(lock);
193 >        assertEquals(0, lock.getReadLockCount());
194 >
195 >        lock = new PublicReentrantReadWriteLock(true);
196 >        assertTrue(lock.isFair());
197 >        assertNotWriteLocked(lock);
198 >        assertEquals(0, lock.getReadLockCount());
199 >
200 >        lock = new PublicReentrantReadWriteLock(false);
201 >        assertFalse(lock.isFair());
202 >        assertNotWriteLocked(lock);
203 >        assertEquals(0, lock.getReadLockCount());
204      }
205  
256    
206      /**
207 <     * write-trylock fails if locked
207 >     * write-locking and read-locking an unlocked lock succeed
208       */
209 <    public void testWriteTryLockWhenLocked() {
210 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
211 <        lock.writeLock().lock();
212 <        Thread t = new Thread(new Runnable() {
213 <                public void run() {
214 <                    threadAssertFalse(lock.writeLock().tryLock());
215 <                }
216 <            });
217 <        try {
218 <            t.start();
219 <            t.join();
220 <            lock.writeLock().unlock();
221 <        } catch(Exception e){
222 <            unexpectedException();
223 <        }
224 <    }
209 >    public void testLock()      { testLock(false); }
210 >    public void testLock_fair() { testLock(true); }
211 >    public void testLock(boolean fair) {
212 >        PublicReentrantReadWriteLock lock =
213 >            new PublicReentrantReadWriteLock(fair);
214 >        assertNotWriteLocked(lock);
215 >        lock.writeLock().lock();
216 >        assertWriteLockedByMoi(lock);
217 >        lock.writeLock().unlock();
218 >        assertNotWriteLocked(lock);
219 >        assertEquals(0, lock.getReadLockCount());
220 >        lock.readLock().lock();
221 >        assertNotWriteLocked(lock);
222 >        assertEquals(1, lock.getReadLockCount());
223 >        lock.readLock().unlock();
224 >        assertNotWriteLocked(lock);
225 >        assertEquals(0, lock.getReadLockCount());
226 >    }
227  
228      /**
229 <     * read-trylock fails if locked
229 >     * getWriteHoldCount returns number of recursive holds
230       */
231 <    public void testReadTryLockWhenLocked() {
232 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
233 <        lock.writeLock().lock();
234 <        Thread t = new Thread(new Runnable() {
235 <                public void run() {
236 <                    threadAssertFalse(lock.readLock().tryLock());
237 <                }
238 <            });
239 <        try {
289 <            t.start();
290 <            t.join();
231 >    public void testGetWriteHoldCount()      { testGetWriteHoldCount(false); }
232 >    public void testGetWriteHoldCount_fair() { testGetWriteHoldCount(true); }
233 >    public void testGetWriteHoldCount(boolean fair) {
234 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
235 >        for (int i = 1; i <= SIZE; i++) {
236 >            lock.writeLock().lock();
237 >            assertEquals(i,lock.getWriteHoldCount());
238 >        }
239 >        for (int i = SIZE; i > 0; i--) {
240              lock.writeLock().unlock();
241 <        } catch(Exception e){
293 <            unexpectedException();
241 >            assertEquals(i - 1,lock.getWriteHoldCount());
242          }
243 <    }
243 >    }
244  
245      /**
246 <     * Multiple threads can hold a read lock when not write-locked
246 >     * writelock.getHoldCount returns number of recursive holds
247       */
248 <    public void testMultipleReadLocks() {
249 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
250 <        lock.readLock().lock();
251 <        Thread t = new Thread(new Runnable() {
252 <                public void run() {
253 <                    threadAssertTrue(lock.readLock().tryLock());
254 <                    lock.readLock().unlock();
255 <                }
256 <            });
257 <        try {
258 <            t.start();
311 <            t.join();
312 <            lock.readLock().unlock();
313 <        } catch(Exception e){
314 <            unexpectedException();
248 >    public void testGetHoldCount()      { testGetHoldCount(false); }
249 >    public void testGetHoldCount_fair() { testGetHoldCount(true); }
250 >    public void testGetHoldCount(boolean fair) {
251 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
252 >        for (int i = 1; i <= SIZE; i++) {
253 >            lock.writeLock().lock();
254 >            assertEquals(i,lock.writeLock().getHoldCount());
255 >        }
256 >        for (int i = SIZE; i > 0; i--) {
257 >            lock.writeLock().unlock();
258 >            assertEquals(i - 1,lock.writeLock().getHoldCount());
259          }
260 <    }
260 >    }
261  
262      /**
263 <     * A writelock succeeds after reading threads unlock
263 >     * getReadHoldCount returns number of recursive holds
264       */
265 <    public void testWriteAfterMultipleReadLocks() {
266 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
267 <        lock.readLock().lock();
268 <        Thread t1 = new Thread(new Runnable() {
269 <                public void run() {
270 <                    lock.readLock().lock();
271 <                    lock.readLock().unlock();
272 <                }
273 <            });
330 <        Thread t2 = new Thread(new Runnable() {
331 <                public void run() {
332 <                    lock.writeLock().lock();
333 <                    lock.writeLock().unlock();
334 <                }
335 <            });
336 <
337 <        try {
338 <            t1.start();
339 <            t2.start();
340 <            Thread.sleep(SHORT_DELAY_MS);
265 >    public void testGetReadHoldCount()      { testGetReadHoldCount(false); }
266 >    public void testGetReadHoldCount_fair() { testGetReadHoldCount(true); }
267 >    public void testGetReadHoldCount(boolean fair) {
268 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
269 >        for (int i = 1; i <= SIZE; i++) {
270 >            lock.readLock().lock();
271 >            assertEquals(i,lock.getReadHoldCount());
272 >        }
273 >        for (int i = SIZE; i > 0; i--) {
274              lock.readLock().unlock();
275 <            t1.join(MEDIUM_DELAY_MS);
343 <            t2.join(MEDIUM_DELAY_MS);
344 <            assertTrue(!t1.isAlive());
345 <            assertTrue(!t2.isAlive());
346 <          
347 <        } catch(Exception e){
348 <            unexpectedException();
275 >            assertEquals(i - 1,lock.getReadHoldCount());
276          }
277 <    }
277 >    }
278  
279      /**
280 <     * Readlocks succeed after a writing thread unlocks
280 >     * write-unlocking an unlocked lock throws IllegalMonitorStateException
281       */
282 <    public void testReadAfterWriteLock() {
283 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
284 <        lock.writeLock().lock();
285 <        Thread t1 = new Thread(new Runnable() {
359 <                public void run() {
360 <                    lock.readLock().lock();
361 <                    lock.readLock().unlock();
362 <                }
363 <            });
364 <        Thread t2 = new Thread(new Runnable() {
365 <                public void run() {
366 <                    lock.readLock().lock();
367 <                    lock.readLock().unlock();
368 <                }
369 <            });
370 <
282 >    public void testWriteUnlock_IMSE()      { testWriteUnlock_IMSE(false); }
283 >    public void testWriteUnlock_IMSE_fair() { testWriteUnlock_IMSE(true); }
284 >    public void testWriteUnlock_IMSE(boolean fair) {
285 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
286          try {
372            t1.start();
373            t2.start();
374            Thread.sleep(SHORT_DELAY_MS);
287              lock.writeLock().unlock();
288 <            t1.join(MEDIUM_DELAY_MS);
289 <            t2.join(MEDIUM_DELAY_MS);
290 <            assertTrue(!t1.isAlive());
379 <            assertTrue(!t2.isAlive());
380 <          
381 <        } catch(Exception e){
382 <            unexpectedException();
383 <        }
384 <    }
385 <
288 >            shouldThrow();
289 >        } catch (IllegalMonitorStateException success) {}
290 >    }
291  
292      /**
293 <     * Read trylock succeeds if readlocked but not writelocked
293 >     * read-unlocking an unlocked lock throws IllegalMonitorStateException
294       */
295 <    public void testTryLockWhenReadLocked() {
296 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
297 <        lock.readLock().lock();
298 <        Thread t = new Thread(new Runnable() {
394 <                public void run() {
395 <                    threadAssertTrue(lock.readLock().tryLock());
396 <                    lock.readLock().unlock();
397 <                }
398 <            });
295 >    public void testReadUnlock_IMSE()      { testReadUnlock_IMSE(false); }
296 >    public void testReadUnlock_IMSE_fair() { testReadUnlock_IMSE(true); }
297 >    public void testReadUnlock_IMSE(boolean fair) {
298 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
299          try {
400            t.start();
401            t.join();
300              lock.readLock().unlock();
301 <        } catch(Exception e){
302 <            unexpectedException();
303 <        }
406 <    }
407 <
408 <    
301 >            shouldThrow();
302 >        } catch (IllegalMonitorStateException success) {}
303 >    }
304  
305      /**
306 <     * write trylock fails when readlocked
306 >     * write-lockInterruptibly is interruptible
307       */
308 <    public void testWriteTryLockWhenReadLocked() {
309 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
310 <        lock.readLock().lock();
311 <        Thread t = new Thread(new Runnable() {
312 <                public void run() {
313 <                    threadAssertFalse(lock.writeLock().tryLock());
314 <                }
315 <            });
316 <        try {
317 <            t.start();
423 <            t.join();
424 <            lock.readLock().unlock();
425 <        } catch(Exception e){
426 <            unexpectedException();
427 <        }
428 <    }
308 >    public void testWriteLockInterruptibly_Interruptible()      { testWriteLockInterruptibly_Interruptible(false); }
309 >    public void testWriteLockInterruptibly_Interruptible_fair() { testWriteLockInterruptibly_Interruptible(true); }
310 >    public void testWriteLockInterruptibly_Interruptible(boolean fair) {
311 >        final PublicReentrantReadWriteLock lock =
312 >            new PublicReentrantReadWriteLock(fair);
313 >        lock.writeLock().lock();
314 >        Thread t = newStartedThread(new CheckedInterruptedRunnable() {
315 >            public void realRun() throws InterruptedException {
316 >                lock.writeLock().lockInterruptibly();
317 >            }});
318  
319 <    
319 >        waitForQueuedThread(lock, t);
320 >        t.interrupt();
321 >        awaitTermination(t);
322 >        releaseWriteLock(lock);
323 >    }
324  
325      /**
326 <     * write timed trylock times out if locked
327 <     */
328 <    public void testWriteTryLock_Timeout() {
329 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
330 <        lock.writeLock().lock();
331 <        Thread t = new Thread(new Runnable() {
332 <                public void run() {
333 <                    try {
334 <                        threadAssertFalse(lock.writeLock().tryLock(1, TimeUnit.MILLISECONDS));
335 <                    } catch (Exception ex) {
336 <                        threadUnexpectedException();
337 <                    }
338 <                }
339 <            });
340 <        try {
341 <            t.start();
342 <            t.join();
343 <            lock.writeLock().unlock();
451 <        } catch(Exception e){
452 <            unexpectedException();
453 <        }
454 <    }
326 >     * timed write-tryLock is interruptible
327 >     */
328 >    public void testWriteTryLock_Interruptible()      { testWriteTryLock_Interruptible(false); }
329 >    public void testWriteTryLock_Interruptible_fair() { testWriteTryLock_Interruptible(true); }
330 >    public void testWriteTryLock_Interruptible(boolean fair) {
331 >        final PublicReentrantReadWriteLock lock =
332 >            new PublicReentrantReadWriteLock(fair);
333 >        lock.writeLock().lock();
334 >        Thread t = newStartedThread(new CheckedInterruptedRunnable() {
335 >            public void realRun() throws InterruptedException {
336 >                lock.writeLock().tryLock(2 * LONG_DELAY_MS, MILLISECONDS);
337 >            }});
338 >
339 >        waitForQueuedThread(lock, t);
340 >        t.interrupt();
341 >        awaitTermination(t);
342 >        releaseWriteLock(lock);
343 >    }
344  
345      /**
346 <     * read timed trylock times out if write-locked
346 >     * read-lockInterruptibly is interruptible
347       */
348 <    public void testReadTryLock_Timeout() {
349 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
350 <        lock.writeLock().lock();
351 <        Thread t = new Thread(new Runnable() {
352 <                public void run() {
353 <                    try {
354 <                        threadAssertFalse(lock.readLock().tryLock(1, TimeUnit.MILLISECONDS));
355 <                    } catch (Exception ex) {
356 <                        threadUnexpectedException();
357 <                    }
358 <                }
359 <            });
360 <        try {
361 <            t.start();
362 <            t.join();
363 <            lock.writeLock().unlock();
364 <        } catch(Exception e){
365 <            unexpectedException();
366 <        }
367 <    }
348 >    public void testReadLockInterruptibly_Interruptible()      { testReadLockInterruptibly_Interruptible(false); }
349 >    public void testReadLockInterruptibly_Interruptible_fair() { testReadLockInterruptibly_Interruptible(true); }
350 >    public void testReadLockInterruptibly_Interruptible(boolean fair) {
351 >        final PublicReentrantReadWriteLock lock =
352 >            new PublicReentrantReadWriteLock(fair);
353 >        lock.writeLock().lock();
354 >        Thread t = newStartedThread(new CheckedInterruptedRunnable() {
355 >            public void realRun() throws InterruptedException {
356 >                lock.readLock().lockInterruptibly();
357 >            }});
358 >
359 >        waitForQueuedThread(lock, t);
360 >        t.interrupt();
361 >        awaitTermination(t);
362 >        releaseWriteLock(lock);
363 >    }
364 >
365 >    /**
366 >     * timed read-tryLock is interruptible
367 >     */
368 >    public void testReadTryLock_Interruptible()      { testReadTryLock_Interruptible(false); }
369 >    public void testReadTryLock_Interruptible_fair() { testReadTryLock_Interruptible(true); }
370 >    public void testReadTryLock_Interruptible(boolean fair) {
371 >        final PublicReentrantReadWriteLock lock =
372 >            new PublicReentrantReadWriteLock(fair);
373 >        lock.writeLock().lock();
374 >        Thread t = newStartedThread(new CheckedInterruptedRunnable() {
375 >            public void realRun() throws InterruptedException {
376 >                lock.readLock().tryLock(2 * LONG_DELAY_MS, MILLISECONDS);
377 >            }});
378 >
379 >        waitForQueuedThread(lock, t);
380 >        t.interrupt();
381 >        awaitTermination(t);
382 >        releaseWriteLock(lock);
383 >    }
384 >
385 >    /**
386 >     * write-tryLock on an unlocked lock succeeds
387 >     */
388 >    public void testWriteTryLock()      { testWriteTryLock(false); }
389 >    public void testWriteTryLock_fair() { testWriteTryLock(true); }
390 >    public void testWriteTryLock(boolean fair) {
391 >        final PublicReentrantReadWriteLock lock =
392 >            new PublicReentrantReadWriteLock(fair);
393 >        assertTrue(lock.writeLock().tryLock());
394 >        assertWriteLockedByMoi(lock);
395 >        assertTrue(lock.writeLock().tryLock());
396 >        assertWriteLockedByMoi(lock);
397 >        lock.writeLock().unlock();
398 >        releaseWriteLock(lock);
399 >    }
400 >
401 >    /**
402 >     * write-tryLock fails if locked
403 >     */
404 >    public void testWriteTryLockWhenLocked()      { testWriteTryLockWhenLocked(false); }
405 >    public void testWriteTryLockWhenLocked_fair() { testWriteTryLockWhenLocked(true); }
406 >    public void testWriteTryLockWhenLocked(boolean fair) {
407 >        final PublicReentrantReadWriteLock lock =
408 >            new PublicReentrantReadWriteLock(fair);
409 >        lock.writeLock().lock();
410 >        Thread t = newStartedThread(new CheckedRunnable() {
411 >            public void realRun() {
412 >                assertFalse(lock.writeLock().tryLock());
413 >            }});
414 >
415 >        awaitTermination(t);
416 >        releaseWriteLock(lock);
417 >    }
418 >
419 >    /**
420 >     * read-tryLock fails if locked
421 >     */
422 >    public void testReadTryLockWhenLocked()      { testReadTryLockWhenLocked(false); }
423 >    public void testReadTryLockWhenLocked_fair() { testReadTryLockWhenLocked(true); }
424 >    public void testReadTryLockWhenLocked(boolean fair) {
425 >        final PublicReentrantReadWriteLock lock =
426 >            new PublicReentrantReadWriteLock(fair);
427 >        lock.writeLock().lock();
428 >        Thread t = newStartedThread(new CheckedRunnable() {
429 >            public void realRun() {
430 >                assertFalse(lock.readLock().tryLock());
431 >            }});
432  
433 +        awaitTermination(t);
434 +        releaseWriteLock(lock);
435 +    }
436  
437      /**
438 <     * write lockInterruptibly succeeds if lock free else is interruptible
438 >     * Multiple threads can hold a read lock when not write-locked
439       */
440 <    public void testWriteLockInterruptibly() {
441 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
442 <        try {
443 <            lock.writeLock().lockInterruptibly();
444 <        } catch(Exception e) {
445 <            unexpectedException();
446 <        }
447 <        Thread t = new Thread(new Runnable() {
448 <                public void run() {
449 <                    try {
450 <                        lock.writeLock().lockInterruptibly();
451 <                        threadShouldThrow();
452 <                    }
453 <                    catch(InterruptedException success) {
454 <                    }
455 <                }
456 <            });
440 >    public void testMultipleReadLocks()      { testMultipleReadLocks(false); }
441 >    public void testMultipleReadLocks_fair() { testMultipleReadLocks(true); }
442 >    public void testMultipleReadLocks(boolean fair) {
443 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
444 >        lock.readLock().lock();
445 >        Thread t = newStartedThread(new CheckedRunnable() {
446 >            public void realRun() throws InterruptedException {
447 >                assertTrue(lock.readLock().tryLock());
448 >                lock.readLock().unlock();
449 >                assertTrue(lock.readLock().tryLock(LONG_DELAY_MS, MILLISECONDS));
450 >                lock.readLock().unlock();
451 >                lock.readLock().lock();
452 >                lock.readLock().unlock();
453 >            }});
454 >
455 >        awaitTermination(t);
456 >        lock.readLock().unlock();
457 >    }
458 >
459 >    /**
460 >     * A writelock succeeds only after a reading thread unlocks
461 >     */
462 >    public void testWriteAfterReadLock()      { testWriteAfterReadLock(false); }
463 >    public void testWriteAfterReadLock_fair() { testWriteAfterReadLock(true); }
464 >    public void testWriteAfterReadLock(boolean fair) {
465 >        final PublicReentrantReadWriteLock lock =
466 >            new PublicReentrantReadWriteLock(fair);
467 >        lock.readLock().lock();
468 >        Thread t = newStartedThread(new CheckedRunnable() {
469 >            public void realRun() {
470 >                assertEquals(1, lock.getReadLockCount());
471 >                lock.writeLock().lock();
472 >                assertEquals(0, lock.getReadLockCount());
473 >                lock.writeLock().unlock();
474 >            }});
475 >        waitForQueuedThread(lock, t);
476 >        assertNotWriteLocked(lock);
477 >        assertEquals(1, lock.getReadLockCount());
478 >        lock.readLock().unlock();
479 >        assertEquals(0, lock.getReadLockCount());
480 >        awaitTermination(t);
481 >        assertNotWriteLocked(lock);
482 >    }
483 >
484 >    /**
485 >     * A writelock succeeds only after reading threads unlock
486 >     */
487 >    public void testWriteAfterMultipleReadLocks()      { testWriteAfterMultipleReadLocks(false); }
488 >    public void testWriteAfterMultipleReadLocks_fair() { testWriteAfterMultipleReadLocks(true); }
489 >    public void testWriteAfterMultipleReadLocks(boolean fair) {
490 >        final PublicReentrantReadWriteLock lock =
491 >            new PublicReentrantReadWriteLock(fair);
492 >        lock.readLock().lock();
493 >        lock.readLock().lock();
494 >        Thread t1 = newStartedThread(new CheckedRunnable() {
495 >            public void realRun() {
496 >                lock.readLock().lock();
497 >                assertEquals(3, lock.getReadLockCount());
498 >                lock.readLock().unlock();
499 >            }});
500 >        awaitTermination(t1);
501 >
502 >        Thread t2 = newStartedThread(new CheckedRunnable() {
503 >            public void realRun() {
504 >                assertEquals(2, lock.getReadLockCount());
505 >                lock.writeLock().lock();
506 >                assertEquals(0, lock.getReadLockCount());
507 >                lock.writeLock().unlock();
508 >            }});
509 >        waitForQueuedThread(lock, t2);
510 >        assertNotWriteLocked(lock);
511 >        assertEquals(2, lock.getReadLockCount());
512 >        lock.readLock().unlock();
513 >        lock.readLock().unlock();
514 >        assertEquals(0, lock.getReadLockCount());
515 >        awaitTermination(t2);
516 >        assertNotWriteLocked(lock);
517 >    }
518 >
519 >    /**
520 >     * A thread that tries to acquire a fair read lock (non-reentrantly)
521 >     * will block if there is a waiting writer thread
522 >     */
523 >    public void testReaderWriterReaderFairFifo() {
524 >        final PublicReentrantReadWriteLock lock =
525 >            new PublicReentrantReadWriteLock(true);
526 >        final AtomicBoolean t1GotLock = new AtomicBoolean(false);
527 >
528 >        lock.readLock().lock();
529 >        Thread t1 = newStartedThread(new CheckedRunnable() {
530 >            public void realRun() {
531 >                assertEquals(1, lock.getReadLockCount());
532 >                lock.writeLock().lock();
533 >                assertEquals(0, lock.getReadLockCount());
534 >                t1GotLock.set(true);
535 >                lock.writeLock().unlock();
536 >            }});
537 >        waitForQueuedThread(lock, t1);
538 >
539 >        Thread t2 = newStartedThread(new CheckedRunnable() {
540 >            public void realRun() {
541 >                assertEquals(1, lock.getReadLockCount());
542 >                lock.readLock().lock();
543 >                assertEquals(1, lock.getReadLockCount());
544 >                assertTrue(t1GotLock.get());
545 >                lock.readLock().unlock();
546 >            }});
547 >        waitForQueuedThread(lock, t2);
548 >        assertTrue(t1.isAlive());
549 >        assertNotWriteLocked(lock);
550 >        assertEquals(1, lock.getReadLockCount());
551 >        lock.readLock().unlock();
552 >        awaitTermination(t1);
553 >        awaitTermination(t2);
554 >        assertNotWriteLocked(lock);
555 >    }
556 >
557 >    /**
558 >     * Readlocks succeed only after a writing thread unlocks
559 >     */
560 >    public void testReadAfterWriteLock()      { testReadAfterWriteLock(false); }
561 >    public void testReadAfterWriteLock_fair() { testReadAfterWriteLock(true); }
562 >    public void testReadAfterWriteLock(boolean fair) {
563 >        final PublicReentrantReadWriteLock lock =
564 >            new PublicReentrantReadWriteLock(fair);
565 >        lock.writeLock().lock();
566 >        Thread t1 = newStartedThread(new CheckedRunnable() {
567 >            public void realRun() {
568 >                lock.readLock().lock();
569 >                lock.readLock().unlock();
570 >            }});
571 >        Thread t2 = newStartedThread(new CheckedRunnable() {
572 >            public void realRun() {
573 >                lock.readLock().lock();
574 >                lock.readLock().unlock();
575 >            }});
576 >
577 >        waitForQueuedThread(lock, t1);
578 >        waitForQueuedThread(lock, t2);
579 >        releaseWriteLock(lock);
580 >        awaitTermination(t1);
581 >        awaitTermination(t2);
582 >    }
583 >
584 >    /**
585 >     * Read trylock succeeds if write locked by current thread
586 >     */
587 >    public void testReadHoldingWriteLock()      { testReadHoldingWriteLock(false); }
588 >    public void testReadHoldingWriteLock_fair() { testReadHoldingWriteLock(true); }
589 >    public void testReadHoldingWriteLock(boolean fair) {
590 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
591 >        lock.writeLock().lock();
592 >        assertTrue(lock.readLock().tryLock());
593 >        lock.readLock().unlock();
594 >        lock.writeLock().unlock();
595 >    }
596 >
597 >    /**
598 >     * Read trylock succeeds (barging) even in the presence of waiting
599 >     * readers and/or writers
600 >     */
601 >    public void testReadTryLockBarging()      { testReadTryLockBarging(false); }
602 >    public void testReadTryLockBarging_fair() { testReadTryLockBarging(true); }
603 >    public void testReadTryLockBarging(boolean fair) {
604 >        final PublicReentrantReadWriteLock lock =
605 >            new PublicReentrantReadWriteLock(fair);
606 >        lock.readLock().lock();
607 >
608 >        Thread t1 = newStartedThread(new CheckedRunnable() {
609 >            public void realRun() {
610 >                lock.writeLock().lock();
611 >                lock.writeLock().unlock();
612 >            }});
613 >
614 >        waitForQueuedThread(lock, t1);
615 >
616 >        Thread t2 = newStartedThread(new CheckedRunnable() {
617 >            public void realRun() {
618 >                lock.readLock().lock();
619 >                lock.readLock().unlock();
620 >            }});
621 >
622 >        if (fair)
623 >            waitForQueuedThread(lock, t2);
624 >
625 >        Thread t3 = newStartedThread(new CheckedRunnable() {
626 >            public void realRun() {
627 >                lock.readLock().tryLock();
628 >                lock.readLock().unlock();
629 >            }});
630 >
631 >        assertTrue(lock.getReadLockCount() > 0);
632 >        awaitTermination(t3);
633 >        assertTrue(t1.isAlive());
634 >        if (fair) assertTrue(t2.isAlive());
635 >        lock.readLock().unlock();
636 >        awaitTermination(t1);
637 >        awaitTermination(t2);
638 >    }
639 >
640 >    /**
641 >     * Read lock succeeds if write locked by current thread even if
642 >     * other threads are waiting for readlock
643 >     */
644 >    public void testReadHoldingWriteLock2()      { testReadHoldingWriteLock2(false); }
645 >    public void testReadHoldingWriteLock2_fair() { testReadHoldingWriteLock2(true); }
646 >    public void testReadHoldingWriteLock2(boolean fair) {
647 >        final PublicReentrantReadWriteLock lock =
648 >            new PublicReentrantReadWriteLock(fair);
649 >        lock.writeLock().lock();
650 >        lock.readLock().lock();
651 >        lock.readLock().unlock();
652 >
653 >        Thread t1 = newStartedThread(new CheckedRunnable() {
654 >            public void realRun() {
655 >                lock.readLock().lock();
656 >                lock.readLock().unlock();
657 >            }});
658 >        Thread t2 = newStartedThread(new CheckedRunnable() {
659 >            public void realRun() {
660 >                lock.readLock().lock();
661 >                lock.readLock().unlock();
662 >            }});
663 >
664 >        waitForQueuedThread(lock, t1);
665 >        waitForQueuedThread(lock, t2);
666 >        assertWriteLockedByMoi(lock);
667 >        lock.readLock().lock();
668 >        lock.readLock().unlock();
669 >        releaseWriteLock(lock);
670 >        awaitTermination(t1);
671 >        awaitTermination(t2);
672 >    }
673 >
674 >    /**
675 >     * Read lock succeeds if write locked by current thread even if
676 >     * other threads are waiting for writelock
677 >     */
678 >    public void testReadHoldingWriteLock3()      { testReadHoldingWriteLock3(false); }
679 >    public void testReadHoldingWriteLock3_fair() { testReadHoldingWriteLock3(true); }
680 >    public void testReadHoldingWriteLock3(boolean fair) {
681 >        final PublicReentrantReadWriteLock lock =
682 >            new PublicReentrantReadWriteLock(fair);
683 >        lock.writeLock().lock();
684 >        lock.readLock().lock();
685 >        lock.readLock().unlock();
686 >
687 >        Thread t1 = newStartedThread(new CheckedRunnable() {
688 >            public void realRun() {
689 >                lock.writeLock().lock();
690 >                lock.writeLock().unlock();
691 >            }});
692 >        Thread t2 = newStartedThread(new CheckedRunnable() {
693 >            public void realRun() {
694 >                lock.writeLock().lock();
695 >                lock.writeLock().unlock();
696 >            }});
697 >
698 >        waitForQueuedThread(lock, t1);
699 >        waitForQueuedThread(lock, t2);
700 >        assertWriteLockedByMoi(lock);
701 >        lock.readLock().lock();
702 >        lock.readLock().unlock();
703 >        assertWriteLockedByMoi(lock);
704 >        lock.writeLock().unlock();
705 >        awaitTermination(t1);
706 >        awaitTermination(t2);
707 >    }
708 >
709 >    /**
710 >     * Write lock succeeds if write locked by current thread even if
711 >     * other threads are waiting for writelock
712 >     */
713 >    public void testWriteHoldingWriteLock4()      { testWriteHoldingWriteLock4(false); }
714 >    public void testWriteHoldingWriteLock4_fair() { testWriteHoldingWriteLock4(true); }
715 >    public void testWriteHoldingWriteLock4(boolean fair) {
716 >        final PublicReentrantReadWriteLock lock =
717 >            new PublicReentrantReadWriteLock(fair);
718 >        lock.writeLock().lock();
719 >        lock.writeLock().lock();
720 >        lock.writeLock().unlock();
721 >
722 >        Thread t1 = newStartedThread(new CheckedRunnable() {
723 >            public void realRun() {
724 >                lock.writeLock().lock();
725 >                lock.writeLock().unlock();
726 >            }});
727 >        Thread t2 = newStartedThread(new CheckedRunnable() {
728 >            public void realRun() {
729 >                lock.writeLock().lock();
730 >                lock.writeLock().unlock();
731 >            }});
732 >
733 >        waitForQueuedThread(lock, t1);
734 >        waitForQueuedThread(lock, t2);
735 >        assertWriteLockedByMoi(lock);
736 >        assertEquals(1, lock.getWriteHoldCount());
737 >        lock.writeLock().lock();
738 >        assertWriteLockedByMoi(lock);
739 >        assertEquals(2, lock.getWriteHoldCount());
740 >        lock.writeLock().unlock();
741 >        assertWriteLockedByMoi(lock);
742 >        assertEquals(1, lock.getWriteHoldCount());
743 >        lock.writeLock().unlock();
744 >        awaitTermination(t1);
745 >        awaitTermination(t2);
746 >    }
747 >
748 >    /**
749 >     * Read tryLock succeeds if readlocked but not writelocked
750 >     */
751 >    public void testTryLockWhenReadLocked()      { testTryLockWhenReadLocked(false); }
752 >    public void testTryLockWhenReadLocked_fair() { testTryLockWhenReadLocked(true); }
753 >    public void testTryLockWhenReadLocked(boolean fair) {
754 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
755 >        lock.readLock().lock();
756 >        Thread t = newStartedThread(new CheckedRunnable() {
757 >            public void realRun() {
758 >                assertTrue(lock.readLock().tryLock());
759 >                lock.readLock().unlock();
760 >            }});
761 >
762 >        awaitTermination(t);
763 >        lock.readLock().unlock();
764 >    }
765 >
766 >    /**
767 >     * write tryLock fails when readlocked
768 >     */
769 >    public void testWriteTryLockWhenReadLocked()      { testWriteTryLockWhenReadLocked(false); }
770 >    public void testWriteTryLockWhenReadLocked_fair() { testWriteTryLockWhenReadLocked(true); }
771 >    public void testWriteTryLockWhenReadLocked(boolean fair) {
772 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
773 >        lock.readLock().lock();
774 >        Thread t = newStartedThread(new CheckedRunnable() {
775 >            public void realRun() {
776 >                assertFalse(lock.writeLock().tryLock());
777 >            }});
778 >
779 >        awaitTermination(t);
780 >        lock.readLock().unlock();
781 >    }
782 >
783 >    /**
784 >     * write timed tryLock times out if locked
785 >     */
786 >    public void testWriteTryLock_Timeout()      { testWriteTryLock_Timeout(false); }
787 >    public void testWriteTryLock_Timeout_fair() { testWriteTryLock_Timeout(true); }
788 >    public void testWriteTryLock_Timeout(boolean fair) {
789 >        final PublicReentrantReadWriteLock lock =
790 >            new PublicReentrantReadWriteLock(fair);
791 >        lock.writeLock().lock();
792 >        Thread t = newStartedThread(new CheckedRunnable() {
793 >            public void realRun() throws InterruptedException {
794 >                long startTime = System.nanoTime();
795 >                long timeoutMillis = 10;
796 >                assertFalse(lock.writeLock().tryLock(timeoutMillis, MILLISECONDS));
797 >                assertTrue(millisElapsedSince(startTime) >= timeoutMillis);
798 >            }});
799 >
800 >        awaitTermination(t);
801 >        releaseWriteLock(lock);
802 >    }
803 >
804 >    /**
805 >     * read timed tryLock times out if write-locked
806 >     */
807 >    public void testReadTryLock_Timeout()      { testReadTryLock_Timeout(false); }
808 >    public void testReadTryLock_Timeout_fair() { testReadTryLock_Timeout(true); }
809 >    public void testReadTryLock_Timeout(boolean fair) {
810 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
811 >        lock.writeLock().lock();
812 >        Thread t = newStartedThread(new CheckedRunnable() {
813 >            public void realRun() throws InterruptedException {
814 >                long startTime = System.nanoTime();
815 >                long timeoutMillis = 10;
816 >                assertFalse(lock.readLock().tryLock(timeoutMillis, MILLISECONDS));
817 >                assertTrue(millisElapsedSince(startTime) >= timeoutMillis);
818 >            }});
819 >
820 >        awaitTermination(t);
821 >        assertTrue(lock.writeLock().isHeldByCurrentThread());
822 >        lock.writeLock().unlock();
823 >    }
824 >
825 >    /**
826 >     * write lockInterruptibly succeeds if unlocked, else is interruptible
827 >     */
828 >    public void testWriteLockInterruptibly()      { testWriteLockInterruptibly(false); }
829 >    public void testWriteLockInterruptibly_fair() { testWriteLockInterruptibly(true); }
830 >    public void testWriteLockInterruptibly(boolean fair) {
831 >        final PublicReentrantReadWriteLock lock =
832 >            new PublicReentrantReadWriteLock(fair);
833          try {
834 <            t.start();
835 <            t.interrupt();
836 <            t.join();
837 <            lock.writeLock().unlock();
838 <        } catch(Exception e){
839 <            unexpectedException();
840 <        }
834 >            lock.writeLock().lockInterruptibly();
835 >        } catch (InterruptedException fail) { threadUnexpectedException(fail); }
836 >        Thread t = newStartedThread(new CheckedInterruptedRunnable() {
837 >            public void realRun() throws InterruptedException {
838 >                lock.writeLock().lockInterruptibly();
839 >            }});
840 >
841 >        waitForQueuedThread(lock, t);
842 >        t.interrupt();
843 >        assertTrue(lock.writeLock().isHeldByCurrentThread());
844 >        awaitTermination(t);
845 >        releaseWriteLock(lock);
846      }
847  
848      /**
849 <     *  read lockInterruptibly succeeds if lock free else is interruptible
849 >     * read lockInterruptibly succeeds if lock free else is interruptible
850       */
851 <    public void testReadLockInterruptibly() {
852 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
853 <        try {
854 <            lock.writeLock().lockInterruptibly();
855 <        } catch(Exception e) {
519 <            unexpectedException();
520 <        }
521 <        Thread t = new Thread(new Runnable() {
522 <                public void run() {
523 <                    try {
524 <                        lock.readLock().lockInterruptibly();
525 <                        threadShouldThrow();
526 <                    }
527 <                    catch(InterruptedException success) {
528 <                    }
529 <                }
530 <            });
851 >    public void testReadLockInterruptibly()      { testReadLockInterruptibly(false); }
852 >    public void testReadLockInterruptibly_fair() { testReadLockInterruptibly(true); }
853 >    public void testReadLockInterruptibly(boolean fair) {
854 >        final PublicReentrantReadWriteLock lock =
855 >            new PublicReentrantReadWriteLock(fair);
856          try {
857 <            t.start();
858 <            t.interrupt();
859 <            t.join();
860 <            lock.writeLock().unlock();
861 <        } catch(Exception e){
862 <            unexpectedException();
863 <        }
857 >            lock.readLock().lockInterruptibly();
858 >            lock.readLock().unlock();
859 >            lock.writeLock().lockInterruptibly();
860 >        } catch (InterruptedException fail) { threadUnexpectedException(fail); }
861 >        Thread t = newStartedThread(new CheckedInterruptedRunnable() {
862 >            public void realRun() throws InterruptedException {
863 >                lock.readLock().lockInterruptibly();
864 >            }});
865 >
866 >        waitForQueuedThread(lock, t);
867 >        t.interrupt();
868 >        awaitTermination(t);
869 >        releaseWriteLock(lock);
870      }
871  
872      /**
873       * Calling await without holding lock throws IllegalMonitorStateException
874       */
875 <    public void testAwait_IllegalMonitor() {
876 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
875 >    public void testAwait_IMSE()      { testAwait_IMSE(false); }
876 >    public void testAwait_IMSE_fair() { testAwait_IMSE(true); }
877 >    public void testAwait_IMSE(boolean fair) {
878 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
879          final Condition c = lock.writeLock().newCondition();
880 <        try {
881 <            c.await();
882 <            shouldThrow();
883 <        }
884 <        catch (IllegalMonitorStateException success) {
885 <        }
886 <        catch (Exception ex) {
887 <            shouldThrow();
880 >        for (AwaitMethod awaitMethod : AwaitMethod.values()) {
881 >            long startTime = System.nanoTime();
882 >            try {
883 >                await(c, awaitMethod);
884 >                shouldThrow();
885 >            } catch (IllegalMonitorStateException success) {
886 >            } catch (InterruptedException fail) {
887 >                threadUnexpectedException(fail);
888 >            }
889 >            assertTrue(millisElapsedSince(startTime) < LONG_DELAY_MS);
890          }
891      }
892  
893      /**
894       * Calling signal without holding lock throws IllegalMonitorStateException
895       */
896 <    public void testSignal_IllegalMonitor() {
897 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
896 >    public void testSignal_IMSE()      { testSignal_IMSE(false); }
897 >    public void testSignal_IMSE_fair() { testSignal_IMSE(true); }
898 >    public void testSignal_IMSE(boolean fair) {
899 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
900          final Condition c = lock.writeLock().newCondition();
901          try {
902              c.signal();
903              shouldThrow();
904 <        }
568 <        catch (IllegalMonitorStateException success) {
569 <        }
570 <        catch (Exception ex) {
571 <            unexpectedException();
572 <        }
904 >        } catch (IllegalMonitorStateException success) {}
905      }
906  
907      /**
908 <     * awaitNanos without a signal times out
908 >     * Calling signalAll without holding lock throws IllegalMonitorStateException
909       */
910 <    public void testAwaitNanos_Timeout() {
911 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
910 >    public void testSignalAll_IMSE()      { testSignalAll_IMSE(false); }
911 >    public void testSignalAll_IMSE_fair() { testSignalAll_IMSE(true); }
912 >    public void testSignalAll_IMSE(boolean fair) {
913 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
914          final Condition c = lock.writeLock().newCondition();
915          try {
916 +            c.signalAll();
917 +            shouldThrow();
918 +        } catch (IllegalMonitorStateException success) {}
919 +    }
920 +
921 +    /**
922 +     * awaitNanos without a signal times out
923 +     */
924 +    public void testAwaitNanos_Timeout()      { testAwaitNanos_Timeout(false); }
925 +    public void testAwaitNanos_Timeout_fair() { testAwaitNanos_Timeout(true); }
926 +    public void testAwaitNanos_Timeout(boolean fair) {
927 +        try {
928 +            final ReentrantReadWriteLock lock =
929 +                new ReentrantReadWriteLock(fair);
930 +            final Condition c = lock.writeLock().newCondition();
931              lock.writeLock().lock();
932 <            long t = c.awaitNanos(100);
933 <            assertTrue(t <= 0);
932 >            long startTime = System.nanoTime();
933 >            long timeoutMillis = 10;
934 >            long timeoutNanos = MILLISECONDS.toNanos(timeoutMillis);
935 >            long nanosRemaining = c.awaitNanos(timeoutNanos);
936 >            assertTrue(nanosRemaining <= 0);
937 >            assertTrue(millisElapsedSince(startTime) >= timeoutMillis);
938              lock.writeLock().unlock();
939 <        }
587 <        catch (Exception ex) {
588 <            unexpectedException();
589 <        }
939 >        } catch (InterruptedException fail) { threadUnexpectedException(fail); }
940      }
941  
592
942      /**
943 <     *  timed await without a signal times out
943 >     * timed await without a signal times out
944       */
945 <    public void testAwait_Timeout() {
946 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
947 <        final Condition c = lock.writeLock().newCondition();
945 >    public void testAwait_Timeout()      { testAwait_Timeout(false); }
946 >    public void testAwait_Timeout_fair() { testAwait_Timeout(true); }
947 >    public void testAwait_Timeout(boolean fair) {
948          try {
949 +            final ReentrantReadWriteLock lock =
950 +                new ReentrantReadWriteLock(fair);
951 +            final Condition c = lock.writeLock().newCondition();
952              lock.writeLock().lock();
953 <            assertFalse(c.await(10, TimeUnit.MILLISECONDS));
953 >            long startTime = System.nanoTime();
954 >            long timeoutMillis = 10;
955 >            assertFalse(c.await(timeoutMillis, MILLISECONDS));
956 >            assertTrue(millisElapsedSince(startTime) >= timeoutMillis);
957              lock.writeLock().unlock();
958 <        }
604 <        catch (Exception ex) {
605 <            unexpectedException();
606 <        }
958 >        } catch (InterruptedException fail) { threadUnexpectedException(fail); }
959      }
960  
961      /**
962       * awaitUntil without a signal times out
963       */
964 <    public void testAwaitUntil_Timeout() {
965 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
966 <        final Condition c = lock.writeLock().newCondition();
967 <        try {
964 >    public void testAwaitUntil_Timeout()      { testAwaitUntil_Timeout(false); }
965 >    public void testAwaitUntil_Timeout_fair() { testAwaitUntil_Timeout(true); }
966 >    public void testAwaitUntil_Timeout(boolean fair) {
967 >        try {
968 >            final ReentrantReadWriteLock lock =
969 >                new ReentrantReadWriteLock(fair);
970 >            final Condition c = lock.writeLock().newCondition();
971              lock.writeLock().lock();
972 <            java.util.Date d = new java.util.Date();
973 <            assertFalse(c.awaitUntil(new java.util.Date(d.getTime() + 10)));
972 >            long startTime = System.nanoTime();
973 >            assertFalse(c.awaitUntil(delayedDate(timeoutMillis())));
974 >            assertTrue(millisElapsedSince(startTime) >= timeoutMillis());
975              lock.writeLock().unlock();
976 <        }
621 <        catch (Exception ex) {
622 <            unexpectedException();
623 <        }
976 >        } catch (InterruptedException fail) { threadUnexpectedException(fail); }
977      }
978  
979      /**
980       * await returns when signalled
981       */
982 <    public void testAwait() {
983 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
982 >    public void testAwait()      { testAwait(false); }
983 >    public void testAwait_fair() { testAwait(true); }
984 >    public void testAwait(boolean fair) {
985 >        final PublicReentrantReadWriteLock lock =
986 >            new PublicReentrantReadWriteLock(fair);
987          final Condition c = lock.writeLock().newCondition();
988 <        Thread t = new Thread(new Runnable() {
989 <                public void run() {
990 <                    try {
991 <                        lock.writeLock().lock();
992 <                        c.await();
993 <                        lock.writeLock().unlock();
994 <                    }
995 <                    catch(InterruptedException e) {
996 <                        threadUnexpectedException();
997 <                    }
998 <                }
999 <            });
988 >        final CountDownLatch locked = new CountDownLatch(1);
989 >        Thread t = newStartedThread(new CheckedRunnable() {
990 >            public void realRun() throws InterruptedException {
991 >                lock.writeLock().lock();
992 >                locked.countDown();
993 >                c.await();
994 >                lock.writeLock().unlock();
995 >            }});
996 >
997 >        await(locked);
998 >        lock.writeLock().lock();
999 >        assertHasWaiters(lock, c, t);
1000 >        c.signal();
1001 >        assertHasNoWaiters(lock, c);
1002 >        assertTrue(t.isAlive());
1003 >        lock.writeLock().unlock();
1004 >        awaitTermination(t);
1005 >    }
1006  
1007 <        try {
1008 <            t.start();
1009 <            Thread.sleep(SHORT_DELAY_MS);
1010 <            lock.writeLock().lock();
1011 <            c.signal();
1012 <            lock.writeLock().unlock();
1013 <            t.join(SHORT_DELAY_MS);
1014 <            assertFalse(t.isAlive());
1015 <        }
1016 <        catch (Exception ex) {
1017 <            unexpectedException();
1018 <        }
1007 >    /**
1008 >     * awaitUninterruptibly is uninterruptible
1009 >     */
1010 >    public void testAwaitUninterruptibly()      { testAwaitUninterruptibly(false); }
1011 >    public void testAwaitUninterruptibly_fair() { testAwaitUninterruptibly(true); }
1012 >    public void testAwaitUninterruptibly(boolean fair) {
1013 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1014 >        final Condition c = lock.writeLock().newCondition();
1015 >        final CountDownLatch pleaseInterrupt = new CountDownLatch(2);
1016 >
1017 >        Thread t1 = newStartedThread(new CheckedRunnable() {
1018 >            public void realRun() {
1019 >                // Interrupt before awaitUninterruptibly
1020 >                lock.writeLock().lock();
1021 >                pleaseInterrupt.countDown();
1022 >                Thread.currentThread().interrupt();
1023 >                c.awaitUninterruptibly();
1024 >                assertTrue(Thread.interrupted());
1025 >                lock.writeLock().unlock();
1026 >            }});
1027 >
1028 >        Thread t2 = newStartedThread(new CheckedRunnable() {
1029 >            public void realRun() {
1030 >                // Interrupt during awaitUninterruptibly
1031 >                lock.writeLock().lock();
1032 >                pleaseInterrupt.countDown();
1033 >                c.awaitUninterruptibly();
1034 >                assertTrue(Thread.interrupted());
1035 >                lock.writeLock().unlock();
1036 >            }});
1037 >
1038 >        await(pleaseInterrupt);
1039 >        lock.writeLock().lock();
1040 >        lock.writeLock().unlock();
1041 >        t2.interrupt();
1042 >
1043 >        assertThreadStaysAlive(t1);
1044 >        assertTrue(t2.isAlive());
1045 >
1046 >        lock.writeLock().lock();
1047 >        c.signalAll();
1048 >        lock.writeLock().unlock();
1049 >
1050 >        awaitTermination(t1);
1051 >        awaitTermination(t2);
1052      }
1053  
1054      /**
1055 <     * awaitUninterruptibly doesn't abort on interrupt
1056 <     */
1057 <    public void testAwaitUninterruptibly() {
1058 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
1055 >     * await/awaitNanos/awaitUntil is interruptible
1056 >     */
1057 >    public void testInterruptible_await()           { testInterruptible(false, AwaitMethod.await); }
1058 >    public void testInterruptible_await_fair()      { testInterruptible(true,  AwaitMethod.await); }
1059 >    public void testInterruptible_awaitTimed()      { testInterruptible(false, AwaitMethod.awaitTimed); }
1060 >    public void testInterruptible_awaitTimed_fair() { testInterruptible(true,  AwaitMethod.awaitTimed); }
1061 >    public void testInterruptible_awaitNanos()      { testInterruptible(false, AwaitMethod.awaitNanos); }
1062 >    public void testInterruptible_awaitNanos_fair() { testInterruptible(true,  AwaitMethod.awaitNanos); }
1063 >    public void testInterruptible_awaitUntil()      { testInterruptible(false, AwaitMethod.awaitUntil); }
1064 >    public void testInterruptible_awaitUntil_fair() { testInterruptible(true,  AwaitMethod.awaitUntil); }
1065 >    public void testInterruptible(boolean fair, final AwaitMethod awaitMethod) {
1066 >        final PublicReentrantReadWriteLock lock =
1067 >            new PublicReentrantReadWriteLock(fair);
1068          final Condition c = lock.writeLock().newCondition();
1069 <        Thread t = new Thread(new Runnable() {
1070 <                public void run() {
1071 <                    lock.writeLock().lock();
1072 <                    c.awaitUninterruptibly();
1069 >        final CountDownLatch locked = new CountDownLatch(1);
1070 >        Thread t = newStartedThread(new CheckedInterruptedRunnable() {
1071 >            public void realRun() throws InterruptedException {
1072 >                lock.writeLock().lock();
1073 >                assertWriteLockedByMoi(lock);
1074 >                assertHasNoWaiters(lock, c);
1075 >                locked.countDown();
1076 >                try {
1077 >                    await(c, awaitMethod);
1078 >                } finally {
1079 >                    assertWriteLockedByMoi(lock);
1080 >                    assertHasNoWaiters(lock, c);
1081                      lock.writeLock().unlock();
1082 <                }
1083 <            });
1082 >                    assertFalse(Thread.interrupted());
1083 >                }
1084 >            }});
1085 >
1086 >        await(locked);
1087 >        assertHasWaiters(lock, c, t);
1088 >        t.interrupt();
1089 >        awaitTermination(t);
1090 >        assertNotWriteLocked(lock);
1091 >    }
1092  
1093 <        try {
1094 <            t.start();
1095 <            Thread.sleep(SHORT_DELAY_MS);
1096 <            t.interrupt();
1097 <            lock.writeLock().lock();
1098 <            c.signal();
1099 <            lock.writeLock().unlock();
1100 <            assert(t.isInterrupted());
1101 <            t.join(SHORT_DELAY_MS);
1102 <            assertFalse(t.isAlive());
1103 <        }
1104 <        catch (Exception ex) {
1105 <            unexpectedException();
1093 >    /**
1094 >     * signalAll wakes up all threads
1095 >     */
1096 >    public void testSignalAll_await()           { testSignalAll(false, AwaitMethod.await); }
1097 >    public void testSignalAll_await_fair()      { testSignalAll(true,  AwaitMethod.await); }
1098 >    public void testSignalAll_awaitTimed()      { testSignalAll(false, AwaitMethod.awaitTimed); }
1099 >    public void testSignalAll_awaitTimed_fair() { testSignalAll(true,  AwaitMethod.awaitTimed); }
1100 >    public void testSignalAll_awaitNanos()      { testSignalAll(false, AwaitMethod.awaitNanos); }
1101 >    public void testSignalAll_awaitNanos_fair() { testSignalAll(true,  AwaitMethod.awaitNanos); }
1102 >    public void testSignalAll_awaitUntil()      { testSignalAll(false, AwaitMethod.awaitUntil); }
1103 >    public void testSignalAll_awaitUntil_fair() { testSignalAll(true,  AwaitMethod.awaitUntil); }
1104 >    public void testSignalAll(boolean fair, final AwaitMethod awaitMethod) {
1105 >        final PublicReentrantReadWriteLock lock =
1106 >            new PublicReentrantReadWriteLock(fair);
1107 >        final Condition c = lock.writeLock().newCondition();
1108 >        final CountDownLatch locked = new CountDownLatch(2);
1109 >        final Lock writeLock = lock.writeLock();
1110 >        class Awaiter extends CheckedRunnable {
1111 >            public void realRun() throws InterruptedException {
1112 >                writeLock.lock();
1113 >                locked.countDown();
1114 >                await(c, awaitMethod);
1115 >                writeLock.unlock();
1116 >            }
1117          }
1118 +
1119 +        Thread t1 = newStartedThread(new Awaiter());
1120 +        Thread t2 = newStartedThread(new Awaiter());
1121 +
1122 +        await(locked);
1123 +        writeLock.lock();
1124 +        assertHasWaiters(lock, c, t1, t2);
1125 +        c.signalAll();
1126 +        assertHasNoWaiters(lock, c);
1127 +        writeLock.unlock();
1128 +        awaitTermination(t1);
1129 +        awaitTermination(t2);
1130      }
1131  
1132      /**
1133 <     * await is interruptible
1134 <     */
1135 <    public void testAwait_Interrupt() {
1136 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
1133 >     * signal wakes up waiting threads in FIFO order
1134 >     */
1135 >    public void testSignalWakesFifo()      { testSignalWakesFifo(false); }
1136 >    public void testSignalWakesFifo_fair() { testSignalWakesFifo(true); }
1137 >    public void testSignalWakesFifo(boolean fair) {
1138 >        final PublicReentrantReadWriteLock lock =
1139 >            new PublicReentrantReadWriteLock(fair);
1140          final Condition c = lock.writeLock().newCondition();
1141 <        Thread t = new Thread(new Runnable() {
1142 <                public void run() {
1143 <                    try {
1144 <                        lock.writeLock().lock();
1145 <                        c.await();
1146 <                        lock.writeLock().unlock();
1147 <                        threadShouldThrow();
1148 <                    }
1149 <                    catch(InterruptedException success) {
1150 <                    }
1151 <                }
1152 <            });
1141 >        final CountDownLatch locked1 = new CountDownLatch(1);
1142 >        final CountDownLatch locked2 = new CountDownLatch(1);
1143 >        final Lock writeLock = lock.writeLock();
1144 >        Thread t1 = newStartedThread(new CheckedRunnable() {
1145 >            public void realRun() throws InterruptedException {
1146 >                writeLock.lock();
1147 >                locked1.countDown();
1148 >                c.await();
1149 >                writeLock.unlock();
1150 >            }});
1151 >
1152 >        await(locked1);
1153 >
1154 >        Thread t2 = newStartedThread(new CheckedRunnable() {
1155 >            public void realRun() throws InterruptedException {
1156 >                writeLock.lock();
1157 >                locked2.countDown();
1158 >                c.await();
1159 >                writeLock.unlock();
1160 >            }});
1161 >
1162 >        await(locked2);
1163 >
1164 >        writeLock.lock();
1165 >        assertHasWaiters(lock, c, t1, t2);
1166 >        assertFalse(lock.hasQueuedThreads());
1167 >        c.signal();
1168 >        assertHasWaiters(lock, c, t2);
1169 >        assertTrue(lock.hasQueuedThread(t1));
1170 >        assertFalse(lock.hasQueuedThread(t2));
1171 >        c.signal();
1172 >        assertHasNoWaiters(lock, c);
1173 >        assertTrue(lock.hasQueuedThread(t1));
1174 >        assertTrue(lock.hasQueuedThread(t2));
1175 >        writeLock.unlock();
1176 >        awaitTermination(t1);
1177 >        awaitTermination(t2);
1178 >    }
1179  
1180 +    /**
1181 +     * await after multiple reentrant locking preserves lock count
1182 +     */
1183 +    public void testAwaitLockCount()      { testAwaitLockCount(false); }
1184 +    public void testAwaitLockCount_fair() { testAwaitLockCount(true); }
1185 +    public void testAwaitLockCount(boolean fair) {
1186 +        final PublicReentrantReadWriteLock lock =
1187 +            new PublicReentrantReadWriteLock(fair);
1188 +        final Condition c = lock.writeLock().newCondition();
1189 +        final CountDownLatch locked = new CountDownLatch(2);
1190 +        Thread t1 = newStartedThread(new CheckedRunnable() {
1191 +            public void realRun() throws InterruptedException {
1192 +                lock.writeLock().lock();
1193 +                assertWriteLockedByMoi(lock);
1194 +                assertEquals(1, lock.writeLock().getHoldCount());
1195 +                locked.countDown();
1196 +                c.await();
1197 +                assertWriteLockedByMoi(lock);
1198 +                assertEquals(1, lock.writeLock().getHoldCount());
1199 +                lock.writeLock().unlock();
1200 +            }});
1201 +
1202 +        Thread t2 = newStartedThread(new CheckedRunnable() {
1203 +            public void realRun() throws InterruptedException {
1204 +                lock.writeLock().lock();
1205 +                lock.writeLock().lock();
1206 +                assertWriteLockedByMoi(lock);
1207 +                assertEquals(2, lock.writeLock().getHoldCount());
1208 +                locked.countDown();
1209 +                c.await();
1210 +                assertWriteLockedByMoi(lock);
1211 +                assertEquals(2, lock.writeLock().getHoldCount());
1212 +                lock.writeLock().unlock();
1213 +                lock.writeLock().unlock();
1214 +            }});
1215 +
1216 +        await(locked);
1217 +        lock.writeLock().lock();
1218 +        assertHasWaiters(lock, c, t1, t2);
1219 +        c.signalAll();
1220 +        assertHasNoWaiters(lock, c);
1221 +        lock.writeLock().unlock();
1222 +        awaitTermination(t1);
1223 +        awaitTermination(t2);
1224 +    }
1225 +
1226 +    /**
1227 +     * A serialized lock deserializes as unlocked
1228 +     */
1229 +    public void testSerialization()      { testSerialization(false); }
1230 +    public void testSerialization_fair() { testSerialization(true); }
1231 +    public void testSerialization(boolean fair) {
1232 +        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1233 +        lock.writeLock().lock();
1234 +        lock.readLock().lock();
1235 +
1236 +        ReentrantReadWriteLock clone = serialClone(lock);
1237 +        assertEquals(lock.isFair(), clone.isFair());
1238 +        assertTrue(lock.isWriteLocked());
1239 +        assertFalse(clone.isWriteLocked());
1240 +        assertEquals(1, lock.getReadLockCount());
1241 +        assertEquals(0, clone.getReadLockCount());
1242 +        clone.writeLock().lock();
1243 +        clone.readLock().lock();
1244 +        assertTrue(clone.isWriteLocked());
1245 +        assertEquals(1, clone.getReadLockCount());
1246 +        clone.readLock().unlock();
1247 +        clone.writeLock().unlock();
1248 +        assertFalse(clone.isWriteLocked());
1249 +        assertEquals(1, lock.getReadLockCount());
1250 +        assertEquals(0, clone.getReadLockCount());
1251 +    }
1252 +
1253 +    /**
1254 +     * hasQueuedThreads reports whether there are waiting threads
1255 +     */
1256 +    public void testHasQueuedThreads()      { testHasQueuedThreads(false); }
1257 +    public void testHasQueuedThreads_fair() { testHasQueuedThreads(true); }
1258 +    public void testHasQueuedThreads(boolean fair) {
1259 +        final PublicReentrantReadWriteLock lock =
1260 +            new PublicReentrantReadWriteLock(fair);
1261 +        Thread t1 = new Thread(new InterruptedLockRunnable(lock));
1262 +        Thread t2 = new Thread(new InterruptibleLockRunnable(lock));
1263 +        assertFalse(lock.hasQueuedThreads());
1264 +        lock.writeLock().lock();
1265 +        assertFalse(lock.hasQueuedThreads());
1266 +        t1.start();
1267 +        waitForQueuedThread(lock, t1);
1268 +        assertTrue(lock.hasQueuedThreads());
1269 +        t2.start();
1270 +        waitForQueuedThread(lock, t2);
1271 +        assertTrue(lock.hasQueuedThreads());
1272 +        t1.interrupt();
1273 +        awaitTermination(t1);
1274 +        assertTrue(lock.hasQueuedThreads());
1275 +        lock.writeLock().unlock();
1276 +        awaitTermination(t2);
1277 +        assertFalse(lock.hasQueuedThreads());
1278 +    }
1279 +
1280 +    /**
1281 +     * hasQueuedThread(null) throws NPE
1282 +     */
1283 +    public void testHasQueuedThreadNPE()      { testHasQueuedThreadNPE(false); }
1284 +    public void testHasQueuedThreadNPE_fair() { testHasQueuedThreadNPE(true); }
1285 +    public void testHasQueuedThreadNPE(boolean fair) {
1286 +        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1287          try {
1288 <            t.start();
1289 <            Thread.sleep(SHORT_DELAY_MS);
1290 <            t.interrupt();
712 <            t.join(SHORT_DELAY_MS);
713 <            assertFalse(t.isAlive());
714 <        }
715 <        catch (Exception ex) {
716 <            unexpectedException();
717 <        }
1288 >            lock.hasQueuedThread(null);
1289 >            shouldThrow();
1290 >        } catch (NullPointerException success) {}
1291      }
1292  
1293      /**
1294 <     * awaitNanos is interruptible
1294 >     * hasQueuedThread reports whether a thread is queued
1295       */
1296 <    public void testAwaitNanos_Interrupt() {
1297 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
1298 <        final Condition c = lock.writeLock().newCondition();
1299 <        Thread t = new Thread(new Runnable() {
1300 <                public void run() {
1301 <                    try {
1302 <                        lock.writeLock().lock();
1303 <                        c.awaitNanos(SHORT_DELAY_MS * 2 * 1000000);
1304 <                        lock.writeLock().unlock();
1305 <                        threadShouldThrow();
1306 <                    }
1307 <                    catch(InterruptedException success) {
1308 <                    }
1309 <                }
1310 <            });
1296 >    public void testHasQueuedThread()      { testHasQueuedThread(false); }
1297 >    public void testHasQueuedThread_fair() { testHasQueuedThread(true); }
1298 >    public void testHasQueuedThread(boolean fair) {
1299 >        final PublicReentrantReadWriteLock lock =
1300 >            new PublicReentrantReadWriteLock(fair);
1301 >        Thread t1 = new Thread(new InterruptedLockRunnable(lock));
1302 >        Thread t2 = new Thread(new InterruptibleLockRunnable(lock));
1303 >        assertFalse(lock.hasQueuedThread(t1));
1304 >        assertFalse(lock.hasQueuedThread(t2));
1305 >        lock.writeLock().lock();
1306 >        t1.start();
1307 >        waitForQueuedThread(lock, t1);
1308 >        assertTrue(lock.hasQueuedThread(t1));
1309 >        assertFalse(lock.hasQueuedThread(t2));
1310 >        t2.start();
1311 >        waitForQueuedThread(lock, t2);
1312 >        assertTrue(lock.hasQueuedThread(t1));
1313 >        assertTrue(lock.hasQueuedThread(t2));
1314 >        t1.interrupt();
1315 >        awaitTermination(t1);
1316 >        assertFalse(lock.hasQueuedThread(t1));
1317 >        assertTrue(lock.hasQueuedThread(t2));
1318 >        lock.writeLock().unlock();
1319 >        awaitTermination(t2);
1320 >        assertFalse(lock.hasQueuedThread(t1));
1321 >        assertFalse(lock.hasQueuedThread(t2));
1322 >    }
1323 >
1324 >    /**
1325 >     * getQueueLength reports number of waiting threads
1326 >     */
1327 >    public void testGetQueueLength()      { testGetQueueLength(false); }
1328 >    public void testGetQueueLength_fair() { testGetQueueLength(true); }
1329 >    public void testGetQueueLength(boolean fair) {
1330 >        final PublicReentrantReadWriteLock lock =
1331 >            new PublicReentrantReadWriteLock(fair);
1332 >        Thread t1 = new Thread(new InterruptedLockRunnable(lock));
1333 >        Thread t2 = new Thread(new InterruptibleLockRunnable(lock));
1334 >        assertEquals(0, lock.getQueueLength());
1335 >        lock.writeLock().lock();
1336 >        t1.start();
1337 >        waitForQueuedThread(lock, t1);
1338 >        assertEquals(1, lock.getQueueLength());
1339 >        t2.start();
1340 >        waitForQueuedThread(lock, t2);
1341 >        assertEquals(2, lock.getQueueLength());
1342 >        t1.interrupt();
1343 >        awaitTermination(t1);
1344 >        assertEquals(1, lock.getQueueLength());
1345 >        lock.writeLock().unlock();
1346 >        awaitTermination(t2);
1347 >        assertEquals(0, lock.getQueueLength());
1348 >    }
1349 >
1350 >    /**
1351 >     * getQueuedThreads includes waiting threads
1352 >     */
1353 >    public void testGetQueuedThreads()      { testGetQueuedThreads(false); }
1354 >    public void testGetQueuedThreads_fair() { testGetQueuedThreads(true); }
1355 >    public void testGetQueuedThreads(boolean fair) {
1356 >        final PublicReentrantReadWriteLock lock =
1357 >            new PublicReentrantReadWriteLock(fair);
1358 >        Thread t1 = new Thread(new InterruptedLockRunnable(lock));
1359 >        Thread t2 = new Thread(new InterruptibleLockRunnable(lock));
1360 >        assertTrue(lock.getQueuedThreads().isEmpty());
1361 >        lock.writeLock().lock();
1362 >        assertTrue(lock.getQueuedThreads().isEmpty());
1363 >        t1.start();
1364 >        waitForQueuedThread(lock, t1);
1365 >        assertEquals(1, lock.getQueuedThreads().size());
1366 >        assertTrue(lock.getQueuedThreads().contains(t1));
1367 >        t2.start();
1368 >        waitForQueuedThread(lock, t2);
1369 >        assertEquals(2, lock.getQueuedThreads().size());
1370 >        assertTrue(lock.getQueuedThreads().contains(t1));
1371 >        assertTrue(lock.getQueuedThreads().contains(t2));
1372 >        t1.interrupt();
1373 >        awaitTermination(t1);
1374 >        assertFalse(lock.getQueuedThreads().contains(t1));
1375 >        assertTrue(lock.getQueuedThreads().contains(t2));
1376 >        assertEquals(1, lock.getQueuedThreads().size());
1377 >        lock.writeLock().unlock();
1378 >        awaitTermination(t2);
1379 >        assertTrue(lock.getQueuedThreads().isEmpty());
1380 >    }
1381  
1382 +    /**
1383 +     * hasWaiters throws NPE if null
1384 +     */
1385 +    public void testHasWaitersNPE()      { testHasWaitersNPE(false); }
1386 +    public void testHasWaitersNPE_fair() { testHasWaitersNPE(true); }
1387 +    public void testHasWaitersNPE(boolean fair) {
1388 +        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1389          try {
1390 <            t.start();
1391 <            Thread.sleep(SHORT_DELAY_MS);
1392 <            t.interrupt();
743 <            t.join(SHORT_DELAY_MS);
744 <            assertFalse(t.isAlive());
745 <        }
746 <        catch (Exception ex) {
747 <            unexpectedException();
748 <        }
1390 >            lock.hasWaiters(null);
1391 >            shouldThrow();
1392 >        } catch (NullPointerException success) {}
1393      }
1394  
1395      /**
1396 <     * awaitUntil is interruptible
1396 >     * getWaitQueueLength throws NPE if null
1397       */
1398 <    public void testAwaitUntil_Interrupt() {
1399 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
1400 <        final Condition c = lock.writeLock().newCondition();
1401 <        Thread t = new Thread(new Runnable() {
1402 <                public void run() {
1403 <                    try {
1404 <                        lock.writeLock().lock();
1405 <                        java.util.Date d = new java.util.Date();
1406 <                        c.awaitUntil(new java.util.Date(d.getTime() + 10000));
763 <                        lock.writeLock().unlock();
764 <                        threadShouldThrow();
765 <                    }
766 <                    catch(InterruptedException success) {
767 <                    }
768 <                }
769 <            });
1398 >    public void testGetWaitQueueLengthNPE()      { testGetWaitQueueLengthNPE(false); }
1399 >    public void testGetWaitQueueLengthNPE_fair() { testGetWaitQueueLengthNPE(true); }
1400 >    public void testGetWaitQueueLengthNPE(boolean fair) {
1401 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1402 >        try {
1403 >            lock.getWaitQueueLength(null);
1404 >            shouldThrow();
1405 >        } catch (NullPointerException success) {}
1406 >    }
1407  
1408 +    /**
1409 +     * getWaitingThreads throws NPE if null
1410 +     */
1411 +    public void testGetWaitingThreadsNPE()      { testGetWaitingThreadsNPE(false); }
1412 +    public void testGetWaitingThreadsNPE_fair() { testGetWaitingThreadsNPE(true); }
1413 +    public void testGetWaitingThreadsNPE(boolean fair) {
1414 +        final PublicReentrantReadWriteLock lock = new PublicReentrantReadWriteLock(fair);
1415          try {
1416 <            t.start();
1417 <            Thread.sleep(SHORT_DELAY_MS);
1418 <            t.interrupt();
775 <            t.join(SHORT_DELAY_MS);
776 <            assertFalse(t.isAlive());
777 <        }
778 <        catch (Exception ex) {
779 <            unexpectedException();
780 <        }
1416 >            lock.getWaitingThreads(null);
1417 >            shouldThrow();
1418 >        } catch (NullPointerException success) {}
1419      }
1420  
1421      /**
1422 <     * signalAll wakes up all threads
1422 >     * hasWaiters throws IllegalArgumentException if not owned
1423       */
1424 <    public void testSignalAll() {
1425 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
1424 >    public void testHasWaitersIAE()      { testHasWaitersIAE(false); }
1425 >    public void testHasWaitersIAE_fair() { testHasWaitersIAE(true); }
1426 >    public void testHasWaitersIAE(boolean fair) {
1427 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1428          final Condition c = lock.writeLock().newCondition();
1429 <        Thread t1 = new Thread(new Runnable() {
1430 <                public void run() {
1431 <                    try {
1432 <                        lock.writeLock().lock();
1433 <                        c.await();
1434 <                        lock.writeLock().unlock();
795 <                    }
796 <                    catch(InterruptedException e) {
797 <                        threadUnexpectedException();
798 <                    }
799 <                }
800 <            });
801 <
802 <        Thread t2 = new Thread(new Runnable() {
803 <                public void run() {
804 <                    try {
805 <                        lock.writeLock().lock();
806 <                        c.await();
807 <                        lock.writeLock().unlock();
808 <                    }
809 <                    catch(InterruptedException e) {
810 <                        threadUnexpectedException();
811 <                    }
812 <                }
813 <            });
1429 >        final ReentrantReadWriteLock lock2 = new ReentrantReadWriteLock(fair);
1430 >        try {
1431 >            lock2.hasWaiters(c);
1432 >            shouldThrow();
1433 >        } catch (IllegalArgumentException success) {}
1434 >    }
1435  
1436 +    /**
1437 +     * hasWaiters throws IllegalMonitorStateException if not locked
1438 +     */
1439 +    public void testHasWaitersIMSE()      { testHasWaitersIMSE(false); }
1440 +    public void testHasWaitersIMSE_fair() { testHasWaitersIMSE(true); }
1441 +    public void testHasWaitersIMSE(boolean fair) {
1442 +        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1443 +        final Condition c = lock.writeLock().newCondition();
1444          try {
1445 <            t1.start();
1446 <            t2.start();
1447 <            Thread.sleep(SHORT_DELAY_MS);
819 <            lock.writeLock().lock();
820 <            c.signalAll();
821 <            lock.writeLock().unlock();
822 <            t1.join(SHORT_DELAY_MS);
823 <            t2.join(SHORT_DELAY_MS);
824 <            assertFalse(t1.isAlive());
825 <            assertFalse(t2.isAlive());
826 <        }
827 <        catch (Exception ex) {
828 <            unexpectedException();
829 <        }
1445 >            lock.hasWaiters(c);
1446 >            shouldThrow();
1447 >        } catch (IllegalMonitorStateException success) {}
1448      }
1449  
1450      /**
1451 <     * A serialized lock deserializes as unlocked
1451 >     * getWaitQueueLength throws IllegalArgumentException if not owned
1452       */
1453 <    public void testSerialization() {
1454 <        ReentrantReadWriteLock l = new ReentrantReadWriteLock();
1455 <        l.readLock().lock();
1456 <        l.readLock().unlock();
1453 >    public void testGetWaitQueueLengthIAE()      { testGetWaitQueueLengthIAE(false); }
1454 >    public void testGetWaitQueueLengthIAE_fair() { testGetWaitQueueLengthIAE(true); }
1455 >    public void testGetWaitQueueLengthIAE(boolean fair) {
1456 >        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1457 >        final Condition c = lock.writeLock().newCondition();
1458 >        final ReentrantReadWriteLock lock2 = new ReentrantReadWriteLock(fair);
1459 >        try {
1460 >            lock2.getWaitQueueLength(c);
1461 >            shouldThrow();
1462 >        } catch (IllegalArgumentException success) {}
1463 >    }
1464  
1465 +    /**
1466 +     * getWaitQueueLength throws IllegalMonitorStateException if not locked
1467 +     */
1468 +    public void testGetWaitQueueLengthIMSE()      { testGetWaitQueueLengthIMSE(false); }
1469 +    public void testGetWaitQueueLengthIMSE_fair() { testGetWaitQueueLengthIMSE(true); }
1470 +    public void testGetWaitQueueLengthIMSE(boolean fair) {
1471 +        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1472 +        final Condition c = lock.writeLock().newCondition();
1473          try {
1474 <            ByteArrayOutputStream bout = new ByteArrayOutputStream(10000);
1475 <            ObjectOutputStream out = new ObjectOutputStream(new BufferedOutputStream(bout));
1476 <            out.writeObject(l);
844 <            out.close();
845 <
846 <            ByteArrayInputStream bin = new ByteArrayInputStream(bout.toByteArray());
847 <            ObjectInputStream in = new ObjectInputStream(new BufferedInputStream(bin));
848 <            ReentrantReadWriteLock r = (ReentrantReadWriteLock) in.readObject();
849 <            r.readLock().lock();
850 <            r.readLock().unlock();
851 <        } catch(Exception e){
852 <            e.printStackTrace();
853 <            unexpectedException();
854 <        }
1474 >            lock.getWaitQueueLength(c);
1475 >            shouldThrow();
1476 >        } catch (IllegalMonitorStateException success) {}
1477      }
1478  
1479      /**
1480 <     * getQueueLength reports number of waiting threads
1480 >     * getWaitingThreads throws IllegalArgumentException if not owned
1481       */
1482 <    public void testGetQueueLength() {
1483 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();
1484 <        Thread t1 = new Thread(new InterruptedLockRunnable(lock));
1485 <        Thread t2 = new Thread(new InterruptibleLockRunnable(lock));
1482 >    public void testGetWaitingThreadsIAE()      { testGetWaitingThreadsIAE(false); }
1483 >    public void testGetWaitingThreadsIAE_fair() { testGetWaitingThreadsIAE(true); }
1484 >    public void testGetWaitingThreadsIAE(boolean fair) {
1485 >        final PublicReentrantReadWriteLock lock =
1486 >            new PublicReentrantReadWriteLock(fair);
1487 >        final Condition c = lock.writeLock().newCondition();
1488 >        final PublicReentrantReadWriteLock lock2 =
1489 >            new PublicReentrantReadWriteLock(fair);
1490          try {
1491 <            assertEquals(0, lock.getQueueLength());
1492 <            lock.writeLock().lock();
1493 <            t1.start();
1494 <            Thread.sleep(SHORT_DELAY_MS);
869 <            assertEquals(1, lock.getQueueLength());
870 <            t2.start();
871 <            Thread.sleep(SHORT_DELAY_MS);
872 <            assertEquals(2, lock.getQueueLength());
873 <            t1.interrupt();
874 <            Thread.sleep(SHORT_DELAY_MS);
875 <            assertEquals(1, lock.getQueueLength());
876 <            lock.writeLock().unlock();
877 <            Thread.sleep(SHORT_DELAY_MS);
878 <            assertEquals(0, lock.getQueueLength());
879 <            t1.join();
880 <            t2.join();
881 <        } catch(Exception e){
882 <            unexpectedException();
883 <        }
884 <    }
1491 >            lock2.getWaitingThreads(c);
1492 >            shouldThrow();
1493 >        } catch (IllegalArgumentException success) {}
1494 >    }
1495  
1496      /**
1497 <     * getQueuedThreads includes waiting threads
1497 >     * getWaitingThreads throws IllegalMonitorStateException if not locked
1498       */
1499 <    public void testGetQueuedThreads() {
1500 <        final PublicReentrantReadWriteLock lock = new PublicReentrantReadWriteLock();
1501 <        Thread t1 = new Thread(new InterruptedLockRunnable(lock));
1502 <        Thread t2 = new Thread(new InterruptibleLockRunnable(lock));
1499 >    public void testGetWaitingThreadsIMSE()      { testGetWaitingThreadsIMSE(false); }
1500 >    public void testGetWaitingThreadsIMSE_fair() { testGetWaitingThreadsIMSE(true); }
1501 >    public void testGetWaitingThreadsIMSE(boolean fair) {
1502 >        final PublicReentrantReadWriteLock lock =
1503 >            new PublicReentrantReadWriteLock(fair);
1504 >        final Condition c = lock.writeLock().newCondition();
1505          try {
1506 <            assertTrue(lock.getQueuedThreads().isEmpty());
1507 <            lock.writeLock().lock();
1508 <            assertTrue(lock.getQueuedThreads().isEmpty());
1509 <            t1.start();
898 <            Thread.sleep(SHORT_DELAY_MS);
899 <            assertTrue(lock.getQueuedThreads().contains(t1));
900 <            t2.start();
901 <            Thread.sleep(SHORT_DELAY_MS);
902 <            assertTrue(lock.getQueuedThreads().contains(t1));
903 <            assertTrue(lock.getQueuedThreads().contains(t2));
904 <            t1.interrupt();
905 <            Thread.sleep(SHORT_DELAY_MS);
906 <            assertFalse(lock.getQueuedThreads().contains(t1));
907 <            assertTrue(lock.getQueuedThreads().contains(t2));
908 <            lock.writeLock().unlock();
909 <            Thread.sleep(SHORT_DELAY_MS);
910 <            assertTrue(lock.getQueuedThreads().isEmpty());
911 <            t1.join();
912 <            t2.join();
913 <        } catch(Exception e){
914 <            unexpectedException();
915 <        }
916 <    }
1506 >            lock.getWaitingThreads(c);
1507 >            shouldThrow();
1508 >        } catch (IllegalMonitorStateException success) {}
1509 >    }
1510  
1511      /**
1512       * hasWaiters returns true when a thread is waiting, else false
1513       */
1514 <    public void testHasWaiters() {
1515 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
1516 <        final ReentrantReadWriteLock.WriterConditionObject c = (ReentrantReadWriteLock.WriterConditionObject)(lock.writeLock().newCondition());
1517 <        Thread t = new Thread(new Runnable() {
1518 <                public void run() {
1519 <                    try {
1520 <                        lock.writeLock().lock();
1521 <                        threadAssertFalse(c.hasWaiters());
1522 <                        threadAssertEquals(0, c.getWaitQueueLength());
1523 <                        c.await();
1524 <                        lock.writeLock().unlock();
1525 <                    }
1526 <                    catch(InterruptedException e) {
1527 <                        threadUnexpectedException();
1528 <                    }
1529 <                }
1530 <            });
1531 <
1532 <        try {
1533 <            t.start();
1534 <            Thread.sleep(SHORT_DELAY_MS);
1535 <            lock.writeLock().lock();
1536 <            assertTrue(c.hasWaiters());
1537 <            assertEquals(1, c.getWaitQueueLength());
1538 <            c.signal();
1539 <            lock.writeLock().unlock();
1540 <            Thread.sleep(SHORT_DELAY_MS);
1541 <            lock.writeLock().lock();
1542 <            assertFalse(c.hasWaiters());
950 <            assertEquals(0, c.getWaitQueueLength());
951 <            lock.writeLock().unlock();
952 <            t.join(SHORT_DELAY_MS);
953 <            assertFalse(t.isAlive());
954 <        }
955 <        catch (Exception ex) {
956 <            unexpectedException();
957 <        }
1514 >    public void testHasWaiters()      { testHasWaiters(false); }
1515 >    public void testHasWaiters_fair() { testHasWaiters(true); }
1516 >    public void testHasWaiters(boolean fair) {
1517 >        final PublicReentrantReadWriteLock lock =
1518 >            new PublicReentrantReadWriteLock(fair);
1519 >        final Condition c = lock.writeLock().newCondition();
1520 >        final CountDownLatch locked = new CountDownLatch(1);
1521 >        Thread t = newStartedThread(new CheckedRunnable() {
1522 >            public void realRun() throws InterruptedException {
1523 >                lock.writeLock().lock();
1524 >                assertHasNoWaiters(lock, c);
1525 >                assertFalse(lock.hasWaiters(c));
1526 >                locked.countDown();
1527 >                c.await();
1528 >                assertHasNoWaiters(lock, c);
1529 >                assertFalse(lock.hasWaiters(c));
1530 >                lock.writeLock().unlock();
1531 >            }});
1532 >
1533 >        await(locked);
1534 >        lock.writeLock().lock();
1535 >        assertHasWaiters(lock, c, t);
1536 >        assertTrue(lock.hasWaiters(c));
1537 >        c.signal();
1538 >        assertHasNoWaiters(lock, c);
1539 >        assertFalse(lock.hasWaiters(c));
1540 >        lock.writeLock().unlock();
1541 >        awaitTermination(t);
1542 >        assertHasNoWaiters(lock, c);
1543      }
1544  
1545      /**
1546       * getWaitQueueLength returns number of waiting threads
1547       */
1548 <    public void testGetWaitQueueLength() {
1549 <        final ReentrantReadWriteLock lock = new ReentrantReadWriteLock();      
1550 <        final ReentrantReadWriteLock.WriterConditionObject c = (ReentrantReadWriteLock.WriterConditionObject)(lock.writeLock().newCondition());
1551 <        Thread t1 = new Thread(new Runnable() {
1552 <                public void run() {
1553 <                    try {
1554 <                        lock.writeLock().lock();
1555 <                        threadAssertFalse(c.hasWaiters());
1556 <                        threadAssertEquals(0, c.getWaitQueueLength());
1557 <                        c.await();
1558 <                        lock.writeLock().unlock();
1559 <                    }
1560 <                    catch(InterruptedException e) {
1561 <                        threadUnexpectedException();
1562 <                    }
1563 <                }
1564 <            });
1565 <
1566 <        Thread t2 = new Thread(new Runnable() {
1567 <                public void run() {
1568 <                    try {
1569 <                        lock.writeLock().lock();
1570 <                        threadAssertTrue(c.hasWaiters());
1571 <                        threadAssertEquals(1, c.getWaitQueueLength());
1572 <                        c.await();
988 <                        lock.writeLock().unlock();
989 <                    }
990 <                    catch(InterruptedException e) {
991 <                        threadUnexpectedException();
992 <                    }
993 <                }
994 <            });
995 <
996 <        try {
997 <            t1.start();
998 <            Thread.sleep(SHORT_DELAY_MS);
999 <            t2.start();
1000 <            Thread.sleep(SHORT_DELAY_MS);
1001 <            lock.writeLock().lock();
1002 <            assertTrue(c.hasWaiters());
1003 <            assertEquals(2, c.getWaitQueueLength());
1004 <            c.signalAll();
1005 <            lock.writeLock().unlock();
1006 <            Thread.sleep(SHORT_DELAY_MS);
1007 <            lock.writeLock().lock();
1008 <            assertFalse(c.hasWaiters());
1009 <            assertEquals(0, c.getWaitQueueLength());
1010 <            lock.writeLock().unlock();
1011 <            t1.join(SHORT_DELAY_MS);
1012 <            t2.join(SHORT_DELAY_MS);
1013 <            assertFalse(t1.isAlive());
1014 <            assertFalse(t2.isAlive());
1015 <        }
1016 <        catch (Exception ex) {
1017 <            unexpectedException();
1018 <        }
1548 >    public void testGetWaitQueueLength()      { testGetWaitQueueLength(false); }
1549 >    public void testGetWaitQueueLength_fair() { testGetWaitQueueLength(true); }
1550 >    public void testGetWaitQueueLength(boolean fair) {
1551 >        final PublicReentrantReadWriteLock lock =
1552 >            new PublicReentrantReadWriteLock(fair);
1553 >        final Condition c = lock.writeLock().newCondition();
1554 >        final CountDownLatch locked = new CountDownLatch(1);
1555 >        Thread t = newStartedThread(new CheckedRunnable() {
1556 >            public void realRun() throws InterruptedException {
1557 >                lock.writeLock().lock();
1558 >                assertEquals(0, lock.getWaitQueueLength(c));
1559 >                locked.countDown();
1560 >                c.await();
1561 >                lock.writeLock().unlock();
1562 >            }});
1563 >
1564 >        await(locked);
1565 >        lock.writeLock().lock();
1566 >        assertHasWaiters(lock, c, t);
1567 >        assertEquals(1, lock.getWaitQueueLength(c));
1568 >        c.signal();
1569 >        assertHasNoWaiters(lock, c);
1570 >        assertEquals(0, lock.getWaitQueueLength(c));
1571 >        lock.writeLock().unlock();
1572 >        awaitTermination(t);
1573      }
1574  
1575      /**
1576       * getWaitingThreads returns only and all waiting threads
1577       */
1578 <    public void testGetWaitingThreads() {
1579 <        final PublicReentrantReadWriteLock lock = new PublicReentrantReadWriteLock();  
1580 <        final PublicReentrantReadWriteLock.PublicCondition c = (PublicReentrantReadWriteLock.PublicCondition)lock.newCondition();
1581 <        Thread t1 = new Thread(new Runnable() {
1582 <                public void run() {
1583 <                    try {
1584 <                        lock.writeLock().lock();
1585 <                        threadAssertTrue(c.getWaitingThreads().isEmpty());
1586 <                        c.await();
1587 <                        lock.writeLock().unlock();
1588 <                    }
1589 <                    catch(InterruptedException e) {
1590 <                        threadUnexpectedException();
1591 <                    }
1592 <                }
1593 <            });
1594 <
1595 <        Thread t2 = new Thread(new Runnable() {
1596 <                public void run() {
1597 <                    try {
1598 <                        lock.writeLock().lock();
1599 <                        threadAssertFalse(c.getWaitingThreads().isEmpty());
1600 <                        c.await();
1601 <                        lock.writeLock().unlock();
1602 <                    }
1603 <                    catch(InterruptedException e) {
1604 <                        threadUnexpectedException();
1605 <                    }
1606 <                }
1607 <            });
1608 <
1609 <        try {
1610 <            lock.writeLock().lock();
1611 <            assertTrue(c.getWaitingThreads().isEmpty());
1612 <            lock.writeLock().unlock();
1613 <            t1.start();
1614 <            Thread.sleep(SHORT_DELAY_MS);
1615 <            t2.start();
1616 <            Thread.sleep(SHORT_DELAY_MS);
1617 <            lock.writeLock().lock();
1618 <            assertTrue(c.hasWaiters());
1619 <            assertTrue(c.getWaitingThreads().contains(t1));
1620 <            assertTrue(c.getWaitingThreads().contains(t2));
1621 <            c.signalAll();
1622 <            lock.writeLock().unlock();
1623 <            Thread.sleep(SHORT_DELAY_MS);
1624 <            lock.writeLock().lock();
1625 <            assertFalse(c.hasWaiters());
1626 <            assertTrue(c.getWaitingThreads().isEmpty());
1627 <            lock.writeLock().unlock();
1628 <            t1.join(SHORT_DELAY_MS);
1629 <            t2.join(SHORT_DELAY_MS);
1630 <            assertFalse(t1.isAlive());
1631 <            assertFalse(t2.isAlive());
1632 <        }
1633 <        catch (Exception ex) {
1634 <            unexpectedException();
1635 <        }
1578 >    public void testGetWaitingThreads()      { testGetWaitingThreads(false); }
1579 >    public void testGetWaitingThreads_fair() { testGetWaitingThreads(true); }
1580 >    public void testGetWaitingThreads(boolean fair) {
1581 >        final PublicReentrantReadWriteLock lock =
1582 >            new PublicReentrantReadWriteLock(fair);
1583 >        final Condition c = lock.writeLock().newCondition();
1584 >        final CountDownLatch locked1 = new CountDownLatch(1);
1585 >        final CountDownLatch locked2 = new CountDownLatch(1);
1586 >        Thread t1 = new Thread(new CheckedRunnable() {
1587 >            public void realRun() throws InterruptedException {
1588 >                lock.writeLock().lock();
1589 >                assertTrue(lock.getWaitingThreads(c).isEmpty());
1590 >                locked1.countDown();
1591 >                c.await();
1592 >                lock.writeLock().unlock();
1593 >            }});
1594 >
1595 >        Thread t2 = new Thread(new CheckedRunnable() {
1596 >            public void realRun() throws InterruptedException {
1597 >                lock.writeLock().lock();
1598 >                assertFalse(lock.getWaitingThreads(c).isEmpty());
1599 >                locked2.countDown();
1600 >                c.await();
1601 >                lock.writeLock().unlock();
1602 >            }});
1603 >
1604 >        lock.writeLock().lock();
1605 >        assertTrue(lock.getWaitingThreads(c).isEmpty());
1606 >        lock.writeLock().unlock();
1607 >
1608 >        t1.start();
1609 >        await(locked1);
1610 >        t2.start();
1611 >        await(locked2);
1612 >
1613 >        lock.writeLock().lock();
1614 >        assertTrue(lock.hasWaiters(c));
1615 >        assertTrue(lock.getWaitingThreads(c).contains(t1));
1616 >        assertTrue(lock.getWaitingThreads(c).contains(t2));
1617 >        assertEquals(2, lock.getWaitingThreads(c).size());
1618 >        c.signalAll();
1619 >        assertHasNoWaiters(lock, c);
1620 >        lock.writeLock().unlock();
1621 >
1622 >        awaitTermination(t1);
1623 >        awaitTermination(t2);
1624 >
1625 >        assertHasNoWaiters(lock, c);
1626 >    }
1627 >
1628 >    /**
1629 >     * toString indicates current lock state
1630 >     */
1631 >    public void testToString()      { testToString(false); }
1632 >    public void testToString_fair() { testToString(true); }
1633 >    public void testToString(boolean fair) {
1634 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1635 >        assertTrue(lock.toString().contains("Write locks = 0"));
1636 >        assertTrue(lock.toString().contains("Read locks = 0"));
1637 >        lock.writeLock().lock();
1638 >        assertTrue(lock.toString().contains("Write locks = 1"));
1639 >        assertTrue(lock.toString().contains("Read locks = 0"));
1640 >        lock.writeLock().unlock();
1641 >        lock.readLock().lock();
1642 >        lock.readLock().lock();
1643 >        assertTrue(lock.toString().contains("Write locks = 0"));
1644 >        assertTrue(lock.toString().contains("Read locks = 2"));
1645 >    }
1646 >
1647 >    /**
1648 >     * readLock.toString indicates current lock state
1649 >     */
1650 >    public void testReadLockToString()      { testReadLockToString(false); }
1651 >    public void testReadLockToString_fair() { testReadLockToString(true); }
1652 >    public void testReadLockToString(boolean fair) {
1653 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1654 >        assertTrue(lock.readLock().toString().contains("Read locks = 0"));
1655 >        lock.readLock().lock();
1656 >        lock.readLock().lock();
1657 >        assertTrue(lock.readLock().toString().contains("Read locks = 2"));
1658 >    }
1659 >
1660 >    /**
1661 >     * writeLock.toString indicates current lock state
1662 >     */
1663 >    public void testWriteLockToString()      { testWriteLockToString(false); }
1664 >    public void testWriteLockToString_fair() { testWriteLockToString(true); }
1665 >    public void testWriteLockToString(boolean fair) {
1666 >        ReentrantReadWriteLock lock = new ReentrantReadWriteLock(fair);
1667 >        assertTrue(lock.writeLock().toString().contains("Unlocked"));
1668 >        lock.writeLock().lock();
1669 >        assertTrue(lock.writeLock().toString().contains("Locked"));
1670 >        lock.writeLock().unlock();
1671 >        assertTrue(lock.writeLock().toString().contains("Unlocked"));
1672      }
1673  
1674   }

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