author | darcy |
Fri, 19 Aug 2011 17:42:24 -0700 | |
changeset 10350 | 6d009f117062 |
parent 9242 | ef138d47df58 |
child 11279 | d9dab5ec5044 |
permissions | -rw-r--r-- |
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/* |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. Oracle designates this |
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* particular file as subject to the "Classpath" exception as provided |
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* by Oracle in the LICENSE file that accompanied this code. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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*/ |
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/* |
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* This file is available under and governed by the GNU General Public |
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* License version 2 only, as published by the Free Software Foundation. |
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* However, the following notice accompanied the original version of this |
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* file: |
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* |
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* Written by Doug Lea with assistance from members of JCP JSR-166 |
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* Expert Group and released to the public domain, as explained at |
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* http://creativecommons.org/publicdomain/zero/1.0/ |
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*/ |
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package java.util.concurrent; |
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import java.util.concurrent.locks.*; |
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import java.util.*; |
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/** |
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* A bounded {@linkplain BlockingQueue blocking queue} backed by an |
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* array. This queue orders elements FIFO (first-in-first-out). The |
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* <em>head</em> of the queue is that element that has been on the |
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* queue the longest time. The <em>tail</em> of the queue is that |
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* element that has been on the queue the shortest time. New elements |
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* are inserted at the tail of the queue, and the queue retrieval |
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* operations obtain elements at the head of the queue. |
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* |
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* <p>This is a classic "bounded buffer", in which a |
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* fixed-sized array holds elements inserted by producers and |
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* extracted by consumers. Once created, the capacity cannot be |
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* changed. Attempts to {@code put} an element into a full queue |
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* will result in the operation blocking; attempts to {@code take} an |
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* element from an empty queue will similarly block. |
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* |
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* <p>This class supports an optional fairness policy for ordering |
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* waiting producer and consumer threads. By default, this ordering |
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* is not guaranteed. However, a queue constructed with fairness set |
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* to {@code true} grants threads access in FIFO order. Fairness |
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* generally decreases throughput but reduces variability and avoids |
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* starvation. |
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* |
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* <p>This class and its iterator implement all of the |
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* <em>optional</em> methods of the {@link Collection} and {@link |
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* Iterator} interfaces. |
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* |
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* <p>This class is a member of the |
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* <a href="{@docRoot}/../technotes/guides/collections/index.html"> |
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* Java Collections Framework</a>. |
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* |
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* @since 1.5 |
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* @author Doug Lea |
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* @param <E> the type of elements held in this collection |
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*/ |
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public class ArrayBlockingQueue<E> extends AbstractQueue<E> |
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implements BlockingQueue<E>, java.io.Serializable { |
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/** |
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* Serialization ID. This class relies on default serialization |
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* even for the items array, which is default-serialized, even if |
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* it is empty. Otherwise it could not be declared final, which is |
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* necessary here. |
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*/ |
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private static final long serialVersionUID = -817911632652898426L; |
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/** The queued items */ |
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final Object[] items; |
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/** items index for next take, poll, peek or remove */ |
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int takeIndex; |
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/** items index for next put, offer, or add */ |
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int putIndex; |
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/** Number of elements in the queue */ |
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int count; |
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/* |
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* Concurrency control uses the classic two-condition algorithm |
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* found in any textbook. |
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*/ |
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/** Main lock guarding all access */ |
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final ReentrantLock lock; |
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/** Condition for waiting takes */ |
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private final Condition notEmpty; |
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/** Condition for waiting puts */ |
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private final Condition notFull; |
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// Internal helper methods |
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/** |
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* Circularly increment i. |
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*/ |
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final int inc(int i) { |
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return (++i == items.length) ? 0 : i; |
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} |
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/** |
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* Circularly decrement i. |
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*/ |
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final int dec(int i) { |
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return ((i == 0) ? items.length : i) - 1; |
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} |
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@SuppressWarnings("unchecked") |
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static <E> E cast(Object item) { |
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return (E) item; |
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} |
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/** |
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* Returns item at index i. |
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*/ |
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final E itemAt(int i) { |
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return this.<E>cast(items[i]); |
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} |
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/** |
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* Throws NullPointerException if argument is null. |
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* |
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* @param v the element |
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*/ |
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private static void checkNotNull(Object v) { |
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if (v == null) |
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throw new NullPointerException(); |
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} |
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/** |
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* Inserts element at current put position, advances, and signals. |
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* Call only when holding lock. |
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*/ |
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private void insert(E x) { |
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items[putIndex] = x; |
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putIndex = inc(putIndex); |
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++count; |
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notEmpty.signal(); |
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} |
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/** |
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* Extracts element at current take position, advances, and signals. |
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* Call only when holding lock. |
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*/ |
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private E extract() { |
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final Object[] items = this.items; |
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E x = this.<E>cast(items[takeIndex]); |
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items[takeIndex] = null; |
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takeIndex = inc(takeIndex); |
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--count; |
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notFull.signal(); |
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return x; |
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} |
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/** |
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* Deletes item at position i. |
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* Utility for remove and iterator.remove. |
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* Call only when holding lock. |
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*/ |
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void removeAt(int i) { |
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final Object[] items = this.items; |
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// if removing front item, just advance |
181 |
if (i == takeIndex) { |
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items[takeIndex] = null; |
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takeIndex = inc(takeIndex); |
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} else { |
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// slide over all others up through putIndex. |
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for (;;) { |
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int nexti = inc(i); |
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if (nexti != putIndex) { |
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items[i] = items[nexti]; |
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i = nexti; |
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} else { |
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items[i] = null; |
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putIndex = i; |
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break; |
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} |
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} |
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} |
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--count; |
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notFull.signal(); |
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} |
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/** |
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* Creates an {@code ArrayBlockingQueue} with the given (fixed) |
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* capacity and default access policy. |
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* |
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* @param capacity the capacity of this queue |
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* @throws IllegalArgumentException if {@code capacity < 1} |
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*/ |
209 |
public ArrayBlockingQueue(int capacity) { |
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this(capacity, false); |
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} |
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/** |
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* Creates an {@code ArrayBlockingQueue} with the given (fixed) |
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* capacity and the specified access policy. |
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* |
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* @param capacity the capacity of this queue |
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* @param fair if {@code true} then queue accesses for threads blocked |
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* on insertion or removal, are processed in FIFO order; |
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* if {@code false} the access order is unspecified. |
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* @throws IllegalArgumentException if {@code capacity < 1} |
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*/ |
223 |
public ArrayBlockingQueue(int capacity, boolean fair) { |
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if (capacity <= 0) |
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throw new IllegalArgumentException(); |
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this.items = new Object[capacity]; |
2 | 227 |
lock = new ReentrantLock(fair); |
228 |
notEmpty = lock.newCondition(); |
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notFull = lock.newCondition(); |
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} |
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/** |
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* Creates an {@code ArrayBlockingQueue} with the given (fixed) |
2 | 234 |
* capacity, the specified access policy and initially containing the |
235 |
* elements of the given collection, |
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* added in traversal order of the collection's iterator. |
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* |
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* @param capacity the capacity of this queue |
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* @param fair if {@code true} then queue accesses for threads blocked |
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* on insertion or removal, are processed in FIFO order; |
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* if {@code false} the access order is unspecified. |
2 | 242 |
* @param c the collection of elements to initially contain |
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* @throws IllegalArgumentException if {@code capacity} is less than |
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* {@code c.size()}, or less than 1. |
2 | 245 |
* @throws NullPointerException if the specified collection or any |
246 |
* of its elements are null |
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*/ |
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public ArrayBlockingQueue(int capacity, boolean fair, |
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Collection<? extends E> c) { |
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this(capacity, fair); |
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final ReentrantLock lock = this.lock; |
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lock.lock(); // Lock only for visibility, not mutual exclusion |
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try { |
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int i = 0; |
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try { |
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for (E e : c) { |
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checkNotNull(e); |
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items[i++] = e; |
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} |
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} catch (ArrayIndexOutOfBoundsException ex) { |
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262 |
throw new IllegalArgumentException(); |
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263 |
} |
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264 |
count = i; |
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putIndex = (i == capacity) ? 0 : i; |
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266 |
} finally { |
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267 |
lock.unlock(); |
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268 |
} |
2 | 269 |
} |
270 |
||
271 |
/** |
|
272 |
* Inserts the specified element at the tail of this queue if it is |
|
273 |
* possible to do so immediately without exceeding the queue's capacity, |
|
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274 |
* returning {@code true} upon success and throwing an |
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* {@code IllegalStateException} if this queue is full. |
2 | 276 |
* |
277 |
* @param e the element to add |
|
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* @return {@code true} (as specified by {@link Collection#add}) |
2 | 279 |
* @throws IllegalStateException if this queue is full |
280 |
* @throws NullPointerException if the specified element is null |
|
281 |
*/ |
|
282 |
public boolean add(E e) { |
|
283 |
return super.add(e); |
|
284 |
} |
|
285 |
||
286 |
/** |
|
287 |
* Inserts the specified element at the tail of this queue if it is |
|
288 |
* possible to do so immediately without exceeding the queue's capacity, |
|
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* returning {@code true} upon success and {@code false} if this queue |
2 | 290 |
* is full. This method is generally preferable to method {@link #add}, |
291 |
* which can fail to insert an element only by throwing an exception. |
|
292 |
* |
|
293 |
* @throws NullPointerException if the specified element is null |
|
294 |
*/ |
|
295 |
public boolean offer(E e) { |
|
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296 |
checkNotNull(e); |
2 | 297 |
final ReentrantLock lock = this.lock; |
298 |
lock.lock(); |
|
299 |
try { |
|
300 |
if (count == items.length) |
|
301 |
return false; |
|
302 |
else { |
|
303 |
insert(e); |
|
304 |
return true; |
|
305 |
} |
|
306 |
} finally { |
|
307 |
lock.unlock(); |
|
308 |
} |
|
309 |
} |
|
310 |
||
311 |
/** |
|
312 |
* Inserts the specified element at the tail of this queue, waiting |
|
313 |
* for space to become available if the queue is full. |
|
314 |
* |
|
315 |
* @throws InterruptedException {@inheritDoc} |
|
316 |
* @throws NullPointerException {@inheritDoc} |
|
317 |
*/ |
|
318 |
public void put(E e) throws InterruptedException { |
|
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319 |
checkNotNull(e); |
2 | 320 |
final ReentrantLock lock = this.lock; |
321 |
lock.lockInterruptibly(); |
|
322 |
try { |
|
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323 |
while (count == items.length) |
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324 |
notFull.await(); |
2 | 325 |
insert(e); |
326 |
} finally { |
|
327 |
lock.unlock(); |
|
328 |
} |
|
329 |
} |
|
330 |
||
331 |
/** |
|
332 |
* Inserts the specified element at the tail of this queue, waiting |
|
333 |
* up to the specified wait time for space to become available if |
|
334 |
* the queue is full. |
|
335 |
* |
|
336 |
* @throws InterruptedException {@inheritDoc} |
|
337 |
* @throws NullPointerException {@inheritDoc} |
|
338 |
*/ |
|
339 |
public boolean offer(E e, long timeout, TimeUnit unit) |
|
340 |
throws InterruptedException { |
|
341 |
||
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342 |
checkNotNull(e); |
2 | 343 |
long nanos = unit.toNanos(timeout); |
344 |
final ReentrantLock lock = this.lock; |
|
345 |
lock.lockInterruptibly(); |
|
346 |
try { |
|
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347 |
while (count == items.length) { |
2 | 348 |
if (nanos <= 0) |
349 |
return false; |
|
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350 |
nanos = notFull.awaitNanos(nanos); |
2 | 351 |
} |
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352 |
insert(e); |
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353 |
return true; |
2 | 354 |
} finally { |
355 |
lock.unlock(); |
|
356 |
} |
|
357 |
} |
|
358 |
||
359 |
public E poll() { |
|
360 |
final ReentrantLock lock = this.lock; |
|
361 |
lock.lock(); |
|
362 |
try { |
|
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363 |
return (count == 0) ? null : extract(); |
2 | 364 |
} finally { |
365 |
lock.unlock(); |
|
366 |
} |
|
367 |
} |
|
368 |
||
369 |
public E take() throws InterruptedException { |
|
370 |
final ReentrantLock lock = this.lock; |
|
371 |
lock.lockInterruptibly(); |
|
372 |
try { |
|
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373 |
while (count == 0) |
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|
374 |
notEmpty.await(); |
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375 |
return extract(); |
2 | 376 |
} finally { |
377 |
lock.unlock(); |
|
378 |
} |
|
379 |
} |
|
380 |
||
381 |
public E poll(long timeout, TimeUnit unit) throws InterruptedException { |
|
382 |
long nanos = unit.toNanos(timeout); |
|
383 |
final ReentrantLock lock = this.lock; |
|
384 |
lock.lockInterruptibly(); |
|
385 |
try { |
|
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|
386 |
while (count == 0) { |
2 | 387 |
if (nanos <= 0) |
388 |
return null; |
|
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|
389 |
nanos = notEmpty.awaitNanos(nanos); |
2 | 390 |
} |
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|
391 |
return extract(); |
2 | 392 |
} finally { |
393 |
lock.unlock(); |
|
394 |
} |
|
395 |
} |
|
396 |
||
397 |
public E peek() { |
|
398 |
final ReentrantLock lock = this.lock; |
|
399 |
lock.lock(); |
|
400 |
try { |
|
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|
401 |
return (count == 0) ? null : itemAt(takeIndex); |
2 | 402 |
} finally { |
403 |
lock.unlock(); |
|
404 |
} |
|
405 |
} |
|
406 |
||
407 |
// this doc comment is overridden to remove the reference to collections |
|
408 |
// greater in size than Integer.MAX_VALUE |
|
409 |
/** |
|
410 |
* Returns the number of elements in this queue. |
|
411 |
* |
|
412 |
* @return the number of elements in this queue |
|
413 |
*/ |
|
414 |
public int size() { |
|
415 |
final ReentrantLock lock = this.lock; |
|
416 |
lock.lock(); |
|
417 |
try { |
|
418 |
return count; |
|
419 |
} finally { |
|
420 |
lock.unlock(); |
|
421 |
} |
|
422 |
} |
|
423 |
||
424 |
// this doc comment is a modified copy of the inherited doc comment, |
|
425 |
// without the reference to unlimited queues. |
|
426 |
/** |
|
427 |
* Returns the number of additional elements that this queue can ideally |
|
428 |
* (in the absence of memory or resource constraints) accept without |
|
429 |
* blocking. This is always equal to the initial capacity of this queue |
|
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|
430 |
* less the current {@code size} of this queue. |
2 | 431 |
* |
432 |
* <p>Note that you <em>cannot</em> always tell if an attempt to insert |
|
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|
433 |
* an element will succeed by inspecting {@code remainingCapacity} |
2 | 434 |
* because it may be the case that another thread is about to |
435 |
* insert or remove an element. |
|
436 |
*/ |
|
437 |
public int remainingCapacity() { |
|
438 |
final ReentrantLock lock = this.lock; |
|
439 |
lock.lock(); |
|
440 |
try { |
|
441 |
return items.length - count; |
|
442 |
} finally { |
|
443 |
lock.unlock(); |
|
444 |
} |
|
445 |
} |
|
446 |
||
447 |
/** |
|
448 |
* Removes a single instance of the specified element from this queue, |
|
7976
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|
449 |
* if it is present. More formally, removes an element {@code e} such |
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|
450 |
* that {@code o.equals(e)}, if this queue contains one or more such |
2 | 451 |
* elements. |
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|
452 |
* Returns {@code true} if this queue contained the specified element |
2 | 453 |
* (or equivalently, if this queue changed as a result of the call). |
454 |
* |
|
7976
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|
455 |
* <p>Removal of interior elements in circular array based queues |
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|
456 |
* is an intrinsically slow and disruptive operation, so should |
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|
457 |
* be undertaken only in exceptional circumstances, ideally |
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|
458 |
* only when the queue is known not to be accessible by other |
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changeset
|
459 |
* threads. |
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|
460 |
* |
2 | 461 |
* @param o element to be removed from this queue, if present |
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|
462 |
* @return {@code true} if this queue changed as a result of the call |
2 | 463 |
*/ |
464 |
public boolean remove(Object o) { |
|
465 |
if (o == null) return false; |
|
7976
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|
466 |
final Object[] items = this.items; |
2 | 467 |
final ReentrantLock lock = this.lock; |
468 |
lock.lock(); |
|
469 |
try { |
|
7976
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changeset
|
470 |
for (int i = takeIndex, k = count; k > 0; i = inc(i), k--) { |
2 | 471 |
if (o.equals(items[i])) { |
472 |
removeAt(i); |
|
473 |
return true; |
|
474 |
} |
|
475 |
} |
|
7976
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|
476 |
return false; |
2 | 477 |
} finally { |
478 |
lock.unlock(); |
|
479 |
} |
|
480 |
} |
|
481 |
||
482 |
/** |
|
7976
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|
483 |
* Returns {@code true} if this queue contains the specified element. |
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|
484 |
* More formally, returns {@code true} if and only if this queue contains |
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changeset
|
485 |
* at least one element {@code e} such that {@code o.equals(e)}. |
2 | 486 |
* |
487 |
* @param o object to be checked for containment in this queue |
|
7976
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changeset
|
488 |
* @return {@code true} if this queue contains the specified element |
2 | 489 |
*/ |
490 |
public boolean contains(Object o) { |
|
491 |
if (o == null) return false; |
|
7976
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|
492 |
final Object[] items = this.items; |
2 | 493 |
final ReentrantLock lock = this.lock; |
494 |
lock.lock(); |
|
495 |
try { |
|
7976
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changeset
|
496 |
for (int i = takeIndex, k = count; k > 0; i = inc(i), k--) |
2 | 497 |
if (o.equals(items[i])) |
498 |
return true; |
|
499 |
return false; |
|
500 |
} finally { |
|
501 |
lock.unlock(); |
|
502 |
} |
|
503 |
} |
|
504 |
||
505 |
/** |
|
506 |
* Returns an array containing all of the elements in this queue, in |
|
507 |
* proper sequence. |
|
508 |
* |
|
509 |
* <p>The returned array will be "safe" in that no references to it are |
|
510 |
* maintained by this queue. (In other words, this method must allocate |
|
511 |
* a new array). The caller is thus free to modify the returned array. |
|
512 |
* |
|
513 |
* <p>This method acts as bridge between array-based and collection-based |
|
514 |
* APIs. |
|
515 |
* |
|
516 |
* @return an array containing all of the elements in this queue |
|
517 |
*/ |
|
518 |
public Object[] toArray() { |
|
7976
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changeset
|
519 |
final Object[] items = this.items; |
2 | 520 |
final ReentrantLock lock = this.lock; |
521 |
lock.lock(); |
|
522 |
try { |
|
7976
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changeset
|
523 |
final int count = this.count; |
2 | 524 |
Object[] a = new Object[count]; |
7976
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changeset
|
525 |
for (int i = takeIndex, k = 0; k < count; i = inc(i), k++) |
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changeset
|
526 |
a[k] = items[i]; |
2 | 527 |
return a; |
528 |
} finally { |
|
529 |
lock.unlock(); |
|
530 |
} |
|
531 |
} |
|
532 |
||
533 |
/** |
|
534 |
* Returns an array containing all of the elements in this queue, in |
|
535 |
* proper sequence; the runtime type of the returned array is that of |
|
536 |
* the specified array. If the queue fits in the specified array, it |
|
537 |
* is returned therein. Otherwise, a new array is allocated with the |
|
538 |
* runtime type of the specified array and the size of this queue. |
|
539 |
* |
|
540 |
* <p>If this queue fits in the specified array with room to spare |
|
541 |
* (i.e., the array has more elements than this queue), the element in |
|
542 |
* the array immediately following the end of the queue is set to |
|
7976
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changeset
|
543 |
* {@code null}. |
2 | 544 |
* |
545 |
* <p>Like the {@link #toArray()} method, this method acts as bridge between |
|
546 |
* array-based and collection-based APIs. Further, this method allows |
|
547 |
* precise control over the runtime type of the output array, and may, |
|
548 |
* under certain circumstances, be used to save allocation costs. |
|
549 |
* |
|
7976
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changeset
|
550 |
* <p>Suppose {@code x} is a queue known to contain only strings. |
2 | 551 |
* The following code can be used to dump the queue into a newly |
7976
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changeset
|
552 |
* allocated array of {@code String}: |
2 | 553 |
* |
554 |
* <pre> |
|
555 |
* String[] y = x.toArray(new String[0]);</pre> |
|
556 |
* |
|
7976
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changeset
|
557 |
* Note that {@code toArray(new Object[0])} is identical in function to |
f273c0d04215
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changeset
|
558 |
* {@code toArray()}. |
2 | 559 |
* |
560 |
* @param a the array into which the elements of the queue are to |
|
561 |
* be stored, if it is big enough; otherwise, a new array of the |
|
562 |
* same runtime type is allocated for this purpose |
|
563 |
* @return an array containing all of the elements in this queue |
|
564 |
* @throws ArrayStoreException if the runtime type of the specified array |
|
565 |
* is not a supertype of the runtime type of every element in |
|
566 |
* this queue |
|
567 |
* @throws NullPointerException if the specified array is null |
|
568 |
*/ |
|
7976
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changeset
|
569 |
@SuppressWarnings("unchecked") |
2 | 570 |
public <T> T[] toArray(T[] a) { |
7976
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7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
571 |
final Object[] items = this.items; |
2 | 572 |
final ReentrantLock lock = this.lock; |
573 |
lock.lock(); |
|
574 |
try { |
|
7976
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7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
575 |
final int count = this.count; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
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parents:
5506
diff
changeset
|
576 |
final int len = a.length; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
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diff
changeset
|
577 |
if (len < count) |
2 | 578 |
a = (T[])java.lang.reflect.Array.newInstance( |
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
579 |
a.getClass().getComponentType(), count); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
580 |
for (int i = takeIndex, k = 0; k < count; i = inc(i), k++) |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
581 |
a[k] = (T) items[i]; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
582 |
if (len > count) |
2 | 583 |
a[count] = null; |
584 |
return a; |
|
585 |
} finally { |
|
586 |
lock.unlock(); |
|
587 |
} |
|
588 |
} |
|
589 |
||
590 |
public String toString() { |
|
591 |
final ReentrantLock lock = this.lock; |
|
592 |
lock.lock(); |
|
593 |
try { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
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parents:
5506
diff
changeset
|
594 |
int k = count; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
595 |
if (k == 0) |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
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diff
changeset
|
596 |
return "[]"; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
597 |
|
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
598 |
StringBuilder sb = new StringBuilder(); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
599 |
sb.append('['); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
600 |
for (int i = takeIndex; ; i = inc(i)) { |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
601 |
Object e = items[i]; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
602 |
sb.append(e == this ? "(this Collection)" : e); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
603 |
if (--k == 0) |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
604 |
return sb.append(']').toString(); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
605 |
sb.append(',').append(' '); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
606 |
} |
2 | 607 |
} finally { |
608 |
lock.unlock(); |
|
609 |
} |
|
610 |
} |
|
611 |
||
612 |
/** |
|
613 |
* Atomically removes all of the elements from this queue. |
|
614 |
* The queue will be empty after this call returns. |
|
615 |
*/ |
|
616 |
public void clear() { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
617 |
final Object[] items = this.items; |
2 | 618 |
final ReentrantLock lock = this.lock; |
619 |
lock.lock(); |
|
620 |
try { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
621 |
for (int i = takeIndex, k = count; k > 0; i = inc(i), k--) |
2 | 622 |
items[i] = null; |
623 |
count = 0; |
|
624 |
putIndex = 0; |
|
625 |
takeIndex = 0; |
|
626 |
notFull.signalAll(); |
|
627 |
} finally { |
|
628 |
lock.unlock(); |
|
629 |
} |
|
630 |
} |
|
631 |
||
632 |
/** |
|
633 |
* @throws UnsupportedOperationException {@inheritDoc} |
|
634 |
* @throws ClassCastException {@inheritDoc} |
|
635 |
* @throws NullPointerException {@inheritDoc} |
|
636 |
* @throws IllegalArgumentException {@inheritDoc} |
|
637 |
*/ |
|
638 |
public int drainTo(Collection<? super E> c) { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
639 |
checkNotNull(c); |
2 | 640 |
if (c == this) |
641 |
throw new IllegalArgumentException(); |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
642 |
final Object[] items = this.items; |
2 | 643 |
final ReentrantLock lock = this.lock; |
644 |
lock.lock(); |
|
645 |
try { |
|
646 |
int i = takeIndex; |
|
647 |
int n = 0; |
|
648 |
int max = count; |
|
649 |
while (n < max) { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
650 |
c.add(this.<E>cast(items[i])); |
2 | 651 |
items[i] = null; |
652 |
i = inc(i); |
|
653 |
++n; |
|
654 |
} |
|
655 |
if (n > 0) { |
|
656 |
count = 0; |
|
657 |
putIndex = 0; |
|
658 |
takeIndex = 0; |
|
659 |
notFull.signalAll(); |
|
660 |
} |
|
661 |
return n; |
|
662 |
} finally { |
|
663 |
lock.unlock(); |
|
664 |
} |
|
665 |
} |
|
666 |
||
667 |
/** |
|
668 |
* @throws UnsupportedOperationException {@inheritDoc} |
|
669 |
* @throws ClassCastException {@inheritDoc} |
|
670 |
* @throws NullPointerException {@inheritDoc} |
|
671 |
* @throws IllegalArgumentException {@inheritDoc} |
|
672 |
*/ |
|
673 |
public int drainTo(Collection<? super E> c, int maxElements) { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
674 |
checkNotNull(c); |
2 | 675 |
if (c == this) |
676 |
throw new IllegalArgumentException(); |
|
677 |
if (maxElements <= 0) |
|
678 |
return 0; |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
679 |
final Object[] items = this.items; |
2 | 680 |
final ReentrantLock lock = this.lock; |
681 |
lock.lock(); |
|
682 |
try { |
|
683 |
int i = takeIndex; |
|
684 |
int n = 0; |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
685 |
int max = (maxElements < count) ? maxElements : count; |
2 | 686 |
while (n < max) { |
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
687 |
c.add(this.<E>cast(items[i])); |
2 | 688 |
items[i] = null; |
689 |
i = inc(i); |
|
690 |
++n; |
|
691 |
} |
|
692 |
if (n > 0) { |
|
693 |
count -= n; |
|
694 |
takeIndex = i; |
|
695 |
notFull.signalAll(); |
|
696 |
} |
|
697 |
return n; |
|
698 |
} finally { |
|
699 |
lock.unlock(); |
|
700 |
} |
|
701 |
} |
|
702 |
||
703 |
/** |
|
704 |
* Returns an iterator over the elements in this queue in proper sequence. |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
705 |
* The elements will be returned in order from first (head) to last (tail). |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
706 |
* |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
707 |
* <p>The returned {@code Iterator} is a "weakly consistent" iterator that |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
708 |
* will never throw {@link java.util.ConcurrentModificationException |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
709 |
* ConcurrentModificationException}, |
2 | 710 |
* and guarantees to traverse elements as they existed upon |
711 |
* construction of the iterator, and may (but is not guaranteed to) |
|
712 |
* reflect any modifications subsequent to construction. |
|
713 |
* |
|
714 |
* @return an iterator over the elements in this queue in proper sequence |
|
715 |
*/ |
|
716 |
public Iterator<E> iterator() { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
717 |
return new Itr(); |
2 | 718 |
} |
719 |
||
720 |
/** |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
721 |
* Iterator for ArrayBlockingQueue. To maintain weak consistency |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
722 |
* with respect to puts and takes, we (1) read ahead one slot, so |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
723 |
* as to not report hasNext true but then not have an element to |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
724 |
* return -- however we later recheck this slot to use the most |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
725 |
* current value; (2) ensure that each array slot is traversed at |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
726 |
* most once (by tracking "remaining" elements); (3) skip over |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
727 |
* null slots, which can occur if takes race ahead of iterators. |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
728 |
* However, for circular array-based queues, we cannot rely on any |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
729 |
* well established definition of what it means to be weakly |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
730 |
* consistent with respect to interior removes since these may |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
731 |
* require slot overwrites in the process of sliding elements to |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
732 |
* cover gaps. So we settle for resiliency, operating on |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
733 |
* established apparent nexts, which may miss some elements that |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
734 |
* have moved between calls to next. |
2 | 735 |
*/ |
736 |
private class Itr implements Iterator<E> { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
737 |
private int remaining; // Number of elements yet to be returned |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
738 |
private int nextIndex; // Index of element to be returned by next |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
739 |
private E nextItem; // Element to be returned by next call to next |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
740 |
private E lastItem; // Element returned by last call to next |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
741 |
private int lastRet; // Index of last element returned, or -1 if none |
2 | 742 |
|
743 |
Itr() { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
744 |
final ReentrantLock lock = ArrayBlockingQueue.this.lock; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
745 |
lock.lock(); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
746 |
try { |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
747 |
lastRet = -1; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
748 |
if ((remaining = count) > 0) |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
749 |
nextItem = itemAt(nextIndex = takeIndex); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
750 |
} finally { |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
751 |
lock.unlock(); |
2 | 752 |
} |
753 |
} |
|
754 |
||
755 |
public boolean hasNext() { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
756 |
return remaining > 0; |
2 | 757 |
} |
758 |
||
759 |
public E next() { |
|
760 |
final ReentrantLock lock = ArrayBlockingQueue.this.lock; |
|
761 |
lock.lock(); |
|
762 |
try { |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
763 |
if (remaining <= 0) |
2 | 764 |
throw new NoSuchElementException(); |
765 |
lastRet = nextIndex; |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
766 |
E x = itemAt(nextIndex); // check for fresher value |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
767 |
if (x == null) { |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
768 |
x = nextItem; // we are forced to report old value |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
769 |
lastItem = null; // but ensure remove fails |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
770 |
} |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
771 |
else |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
772 |
lastItem = x; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
773 |
while (--remaining > 0 && // skip over nulls |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
774 |
(nextItem = itemAt(nextIndex = inc(nextIndex))) == null) |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
775 |
; |
2 | 776 |
return x; |
777 |
} finally { |
|
778 |
lock.unlock(); |
|
779 |
} |
|
780 |
} |
|
781 |
||
782 |
public void remove() { |
|
783 |
final ReentrantLock lock = ArrayBlockingQueue.this.lock; |
|
784 |
lock.lock(); |
|
785 |
try { |
|
786 |
int i = lastRet; |
|
787 |
if (i == -1) |
|
788 |
throw new IllegalStateException(); |
|
789 |
lastRet = -1; |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
790 |
E x = lastItem; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
791 |
lastItem = null; |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
792 |
// only remove if item still at index |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
793 |
if (x != null && x == items[i]) { |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
794 |
boolean removingHead = (i == takeIndex); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
795 |
removeAt(i); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
796 |
if (!removingHead) |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
797 |
nextIndex = dec(nextIndex); |
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
798 |
} |
2 | 799 |
} finally { |
800 |
lock.unlock(); |
|
801 |
} |
|
802 |
} |
|
803 |
} |
|
7976
f273c0d04215
7005424: Resync java.util.concurrent classes with Dougs CVS - Jan 2011
dl
parents:
5506
diff
changeset
|
804 |
|
2 | 805 |
} |