001/*
002 * Licensed to the Apache Software Foundation (ASF) under one or more
003 * contributor license agreements.  See the NOTICE file distributed with
004 * this work for additional information regarding copyright ownership.
005 * The ASF licenses this file to You under the Apache License, Version 2.0
006 * (the "License"); you may not use this file except in compliance with
007 * the License.  You may obtain a copy of the License at
008 *
009 *      https://www.apache.org/licenses/LICENSE-2.0
010 *
011 * Unless required by applicable law or agreed to in writing, software
012 * distributed under the License is distributed on an "AS IS" BASIS,
013 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
014 * See the License for the specific language governing permissions and
015 * limitations under the License.
016 */
017package org.apache.commons.lang3.concurrent;
018
019import java.util.concurrent.atomic.AtomicReference;
020import java.util.concurrent.locks.LockSupport;
021
022import org.apache.commons.lang3.exception.ExceptionUtils;
023import org.apache.commons.lang3.function.FailableConsumer;
024import org.apache.commons.lang3.function.FailableSupplier;
025
026/**
027 * A specialized {@link ConcurrentInitializer} implementation which is similar
028 * to {@link AtomicInitializer}, but ensures that the {@link #initialize()}
029 * method is called only once.
030 *
031 * <p>
032 * As {@link AtomicInitializer} this class is based on atomic variables, so it
033 * can create an object under concurrent access without synchronization.
034 * However, it implements an additional check to guarantee that the
035 * {@link #initialize()} method which actually creates the object cannot be
036 * called multiple times.
037 * </p>
038 * <p>
039 * Because of this additional check this implementation is slightly less
040 * efficient than {@link AtomicInitializer}, but if the object creation in the
041 * {@code initialize()} method is expensive or if multiple invocations of
042 * {@code initialize()} are problematic, it is the better alternative.
043 * </p>
044 * <p>
045 * From its semantics this class has the same properties as
046 * {@link LazyInitializer}. It is a &quot;save&quot; implementation of the lazy
047 * initializer pattern. Comparing both classes in terms of efficiency is
048 * difficult because which one is faster depends on multiple factors. Because
049 * {@link AtomicSafeInitializer} does not use synchronization at all it probably
050 * outruns {@link LazyInitializer}, at least under low or moderate concurrent
051 * access. Developers should run their own benchmarks on the expected target
052 * platform to decide which implementation is suitable for their specific use
053 * case.
054 * </p>
055 *
056 * @param <T> The type of the object managed by this initializer class
057 * @since 3.0
058 */
059public class AtomicSafeInitializer<T> extends AbstractConcurrentInitializer<T, ConcurrentException> {
060
061    /**
062     * Builds a new instance.
063     *
064     * @param <T> The type of results supplied by this builder.
065     * @param <I> The type of the initializer managed by this builder.
066     * @since 3.14.0
067     */
068    public static class Builder<I extends AtomicSafeInitializer<T>, T> extends AbstractBuilder<I, T, Builder<I, T>, ConcurrentException> {
069
070        /**
071         * Constructs a new instance.
072         */
073        public Builder() {
074            // empty
075        }
076
077        @SuppressWarnings("unchecked")
078        @Override
079        public I get() {
080            return (I) new AtomicSafeInitializer(getInitializer(), getCloser());
081        }
082
083    }
084
085    private static final Object NO_INIT = new Object();
086
087    /**
088     * Creates a new builder.
089     *
090     * @param <T> The type of object to build.
091     * @return A new builder.
092     * @since 3.14.0
093     */
094    public static <T> Builder<AtomicSafeInitializer<T>, T> builder() {
095        return new Builder<>();
096    }
097
098    /** A guard which ensures that initialize() is called only once. */
099    private final AtomicReference<AtomicSafeInitializer<T>> factory = new AtomicReference<>();
100
101    /** Holds the reference to the managed object. */
102    private final AtomicReference<T> reference = new AtomicReference<>(getNoInit());
103
104    /**
105     * Constructs a new instance.
106     */
107    public AtomicSafeInitializer() {
108        // empty
109    }
110
111    /**
112     * Constructs a new instance.
113     *
114     * @param initializer The initializer supplier called by {@link #initialize()}.
115     * @param closer The closer consumer called by {@link #close()}.
116     */
117    private AtomicSafeInitializer(final FailableSupplier<T, ConcurrentException> initializer, final FailableConsumer<T, ConcurrentException> closer) {
118        super(initializer, closer);
119    }
120
121    /**
122     * Gets (and initialize, if not initialized yet) the required object.
123     *
124     * @return lazily initialized object.
125     * @throws ConcurrentException Thrown if the initialization of the object causes an exception.
126     */
127    @Override
128    public final T get() throws ConcurrentException {
129        T result;
130        while ((result = reference.get()) == getNoInit()) {
131            if (factory.compareAndSet(null, this)) {
132                try {
133                    reference.set(initialize());
134                } catch (final Throwable t) {
135                    // Allow retry on failure; otherwise callers spin forever.
136                    factory.set(null);
137                    // Rethrow preserving original semantics: unchecked as-is, checked wrapped.
138                    final Throwable checked = ExceptionUtils.throwUnchecked(t);
139                    throw checked instanceof ConcurrentException ? (ConcurrentException) checked : new ConcurrentException(checked);
140                }
141            } else {
142                // Another thread won the CAS; park 1 ms rather than busy-waiting.
143                LockSupport.parkNanos(1_000_000L);
144            }
145        }
146        return result;
147    }
148
149    /** Gets the internal no-init object cast for this instance. */
150    @SuppressWarnings("unchecked")
151    private T getNoInit() {
152        return (T) NO_INIT;
153    }
154
155    /**
156     * {@inheritDoc}
157     */
158    @Override
159    protected ConcurrentException getTypedException(final Exception e) {
160        return new ConcurrentException(e);
161    }
162
163    /**
164     * Tests whether this instance is initialized. Once initialized, always returns true.
165     *
166     * @return whether this instance is initialized. Once initialized, always returns true.
167     * @since 3.14.0
168     */
169    @Override
170    public boolean isInitialized() {
171        return reference.get() != NO_INIT;
172    }
173}