All Downloads are FREE. Search and download functionalities are using the official Maven repository.

java.util.concurrent.atomic.AtomicIntegerFieldUpdater Maven / Gradle / Ivy

There is a newer version: 0.54
Show newest version
/*
 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
 *
 * This code is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License version 2 only, as
 * published by the Free Software Foundation.  Oracle designates this
 * particular file as subject to the "Classpath" exception as provided
 * by Oracle in the LICENSE file that accompanied this code.
 *
 * This code is distributed in the hope that it will be useful, but WITHOUT
 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * version 2 for more details (a copy is included in the LICENSE file that
 * accompanied this code).
 *
 * You should have received a copy of the GNU General Public License version
 * 2 along with this work; if not, write to the Free Software Foundation,
 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
 *
 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
 * or visit www.oracle.com if you need additional information or have any
 * questions.
 */

/*
 * This file is available under and governed by the GNU General Public
 * License version 2 only, as published by the Free Software Foundation.
 * However, the following notice accompanied the original version of this
 * file:
 *
 * Written by Doug Lea with assistance from members of JCP JSR-166
 * Expert Group and released to the public domain, as explained at
 * http://creativecommons.org/publicdomain/zero/1.0/
 */

package java.util.concurrent.atomic;
import java.lang.reflect.*;
import org.apidesign.bck2brwsr.core.JavaScriptBody;

/**
 * A reflection-based utility that enables atomic updates to
 * designated {@code volatile int} fields of designated classes.
 * This class is designed for use in atomic data structures in which
 * several fields of the same node are independently subject to atomic
 * updates.
 *
 * 

Note that the guarantees of the {@code compareAndSet} * method in this class are weaker than in other atomic classes. * Because this class cannot ensure that all uses of the field * are appropriate for purposes of atomic access, it can * guarantee atomicity only with respect to other invocations of * {@code compareAndSet} and {@code set} on the same updater. * * @since 1.5 * @author Doug Lea * @param The type of the object holding the updatable field */ public abstract class AtomicIntegerFieldUpdater { /** * Creates and returns an updater for objects with the given field. * The Class argument is needed to check that reflective types and * generic types match. * * @param tclass the class of the objects holding the field * @param fieldName the name of the field to be updated * @return the updater * @throws IllegalArgumentException if the field is not a * volatile integer type * @throws RuntimeException with a nested reflection-based * exception if the class does not hold field or is the wrong type */ public static AtomicIntegerFieldUpdater newUpdater(Class tclass, String fieldName) { return new AtomicIntegerFieldUpdaterImpl(tclass, fieldName); } /** * Protected do-nothing constructor for use by subclasses. */ protected AtomicIntegerFieldUpdater() { } /** * Atomically sets the field of the given object managed by this updater * to the given updated value if the current value {@code ==} the * expected value. This method is guaranteed to be atomic with respect to * other calls to {@code compareAndSet} and {@code set}, but not * necessarily with respect to other changes in the field. * * @param obj An object whose field to conditionally set * @param expect the expected value * @param update the new value * @return true if successful * @throws ClassCastException if {@code obj} is not an instance * of the class possessing the field established in the constructor */ public abstract boolean compareAndSet(T obj, int expect, int update); /** * Atomically sets the field of the given object managed by this updater * to the given updated value if the current value {@code ==} the * expected value. This method is guaranteed to be atomic with respect to * other calls to {@code compareAndSet} and {@code set}, but not * necessarily with respect to other changes in the field. * *

May fail spuriously * and does not provide ordering guarantees, so is only rarely an * appropriate alternative to {@code compareAndSet}. * * @param obj An object whose field to conditionally set * @param expect the expected value * @param update the new value * @return true if successful * @throws ClassCastException if {@code obj} is not an instance * of the class possessing the field established in the constructor */ public abstract boolean weakCompareAndSet(T obj, int expect, int update); /** * Sets the field of the given object managed by this updater to the * given updated value. This operation is guaranteed to act as a volatile * store with respect to subsequent invocations of {@code compareAndSet}. * * @param obj An object whose field to set * @param newValue the new value */ public abstract void set(T obj, int newValue); /** * Eventually sets the field of the given object managed by this * updater to the given updated value. * * @param obj An object whose field to set * @param newValue the new value * @since 1.6 */ public abstract void lazySet(T obj, int newValue); /** * Gets the current value held in the field of the given object managed * by this updater. * * @param obj An object whose field to get * @return the current value */ public abstract int get(T obj); /** * Atomically sets the field of the given object managed by this updater * to the given value and returns the old value. * * @param obj An object whose field to get and set * @param newValue the new value * @return the previous value */ public int getAndSet(T obj, int newValue) { for (;;) { int current = get(obj); if (compareAndSet(obj, current, newValue)) return current; } } /** * Atomically increments by one the current value of the field of the * given object managed by this updater. * * @param obj An object whose field to get and set * @return the previous value */ public int getAndIncrement(T obj) { for (;;) { int current = get(obj); int next = current + 1; if (compareAndSet(obj, current, next)) return current; } } /** * Atomically decrements by one the current value of the field of the * given object managed by this updater. * * @param obj An object whose field to get and set * @return the previous value */ public int getAndDecrement(T obj) { for (;;) { int current = get(obj); int next = current - 1; if (compareAndSet(obj, current, next)) return current; } } /** * Atomically adds the given value to the current value of the field of * the given object managed by this updater. * * @param obj An object whose field to get and set * @param delta the value to add * @return the previous value */ public int getAndAdd(T obj, int delta) { for (;;) { int current = get(obj); int next = current + delta; if (compareAndSet(obj, current, next)) return current; } } /** * Atomically increments by one the current value of the field of the * given object managed by this updater. * * @param obj An object whose field to get and set * @return the updated value */ public int incrementAndGet(T obj) { for (;;) { int current = get(obj); int next = current + 1; if (compareAndSet(obj, current, next)) return next; } } /** * Atomically decrements by one the current value of the field of the * given object managed by this updater. * * @param obj An object whose field to get and set * @return the updated value */ public int decrementAndGet(T obj) { for (;;) { int current = get(obj); int next = current - 1; if (compareAndSet(obj, current, next)) return next; } } /** * Atomically adds the given value to the current value of the field of * the given object managed by this updater. * * @param obj An object whose field to get and set * @param delta the value to add * @return the updated value */ public int addAndGet(T obj, int delta) { for (;;) { int current = get(obj); int next = current + delta; if (compareAndSet(obj, current, next)) return next; } } /** * Standard hotspot implementation using intrinsics */ private static class AtomicIntegerFieldUpdaterImpl extends AtomicIntegerFieldUpdater { private final Object fn; private Class tclass; private Object cclass; AtomicIntegerFieldUpdaterImpl(Class tclass, Object fieldName) { if (!isFunction(fieldName)) { throw new SecurityException("Updater can be used only from own class!"); } this.tclass = tclass; this.fn = fieldName; } @JavaScriptBody(args = { "obj", "fn" }, body = "return fn.call(obj);") private static native int get(Object obj, Object fn); @JavaScriptBody(args = { "obj", "fn", "v" }, body = "fn.call(obj, v);") private static native void set(Object obj, Object fn, int v); @JavaScriptBody(args = { "f" }, body = "return typeof f === 'function';") private static native boolean isFunction(Object f); private void fullCheck(T obj) { if (!tclass.isInstance(obj)) throw new ClassCastException(); } public boolean compareAndSet(T obj, int expect, int update) { if (obj == null || obj.getClass() != tclass || cclass != null) fullCheck(obj); int prev = get(obj, fn); if (prev == expect) { set(obj, fn, update); return true; } return false; } public boolean weakCompareAndSet(T obj, int expect, int update) { return compareAndSet(obj, expect, update); } public void set(T obj, int newValue) { if (obj == null || obj.getClass() != tclass || cclass != null) fullCheck(obj); set(obj, fn, newValue); } public void lazySet(T obj, int newValue) { if (obj == null || obj.getClass() != tclass || cclass != null) fullCheck(obj); set(obj, fn, newValue); } public final int get(T obj) { if (obj == null || obj.getClass() != tclass || cclass != null) fullCheck(obj); return get(obj, fn); } } }