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.lang.Thread.UncaughtExceptionHandler;
020import java.util.Objects;
021import java.util.concurrent.ExecutorService;
022import java.util.concurrent.Executors;
023import java.util.concurrent.ThreadFactory;
024import java.util.concurrent.atomic.AtomicLong;
025
026/**
027 * An implementation of the {@link ThreadFactory} interface that provides some
028 * configuration options for the threads it creates.
029 * <p>
030 * A {@link ThreadFactory} is used for instance by an {@link ExecutorService} to
031 * create the threads it uses for executing tasks. In many cases users do not
032 * have to care about a {@link ThreadFactory} because the default one used by an
033 * {@link ExecutorService} will do. However, if there are special requirements
034 * for the threads, a custom {@link ThreadFactory} has to be created.
035 * </p>
036 * <p>
037 * This class provides some frequently needed configuration options for the
038 * threads it creates. These are the following:
039 * </p>
040 * <ul>
041 * <li>A name pattern for the threads created by this factory can be specified.
042 * This is often useful if an application uses multiple executor services for
043 * different purposes. If the names of the threads used by these services have
044 * meaningful names, log output or exception traces can be much easier to read.
045 * Naming patterns are <em>format strings</em> as used by the {@code
046 * String.format()} method. The string can contain the place holder {@code %d}
047 * which will be replaced by the number of the current thread ({@code
048 * ThreadFactoryImpl} keeps a counter of the threads it has already created).
049 * For instance, the naming pattern {@code "My %d. worker thread"} will result
050 * in thread names like {@code "My 1. worker thread"}, {@code
051 * "My 2. worker thread"} and so on.</li>
052 * <li>A flag whether the threads created by this factory should be daemon
053 * threads. This can impact the exit behavior of the current Java application
054 * because the JVM shuts down if there are only daemon threads running.</li>
055 * <li>The priority of the thread. Here an integer value can be provided. The
056 * {@link Thread} class defines constants for valid ranges of priority
057 * values.</li>
058 * <li>The {@link UncaughtExceptionHandler} for the thread. This handler is
059 * called if an uncaught exception occurs within the thread.</li>
060 * </ul>
061 * <p>
062 * {@link BasicThreadFactory} wraps another thread factory which actually
063 * creates new threads. The configuration options are set on the threads created
064 * by the wrapped thread factory. On construction time the factory to be wrapped
065 * can be specified. If none is provided, a default {@link ThreadFactory} is
066 * used.
067 * </p>
068 * <p>
069 * Instances of {@link BasicThreadFactory} are not created directly, but the
070 * nested {@link Builder} class is used for this purpose. Using the builder only
071 * the configuration options an application is interested in need to be set. The
072 * following example shows how a {@link BasicThreadFactory} is created and
073 * installed in an {@link ExecutorService}:
074 * </p>
075 *
076 * <pre>
077 * // Create a factory that produces daemon threads with a naming pattern and
078 * // a priority
079 * BasicThreadFactory factory = new BasicThreadFactory.Builder()
080 *     .namingPattern(&quot;workerthread-%d&quot;)
081 *     .daemon(true)
082 *     .priority(Thread.MAX_PRIORITY)
083 *     .build();
084 * // Create an executor service for single-threaded execution
085 * ExecutorService exec = Executors.newSingleThreadExecutor(factory);
086 * </pre>
087 *
088 * @since 3.0
089 */
090public class BasicThreadFactory implements ThreadFactory {
091
092    /**
093     * A <em>builder</em> class for creating instances of {@code
094     * BasicThreadFactory}.
095     * <p>
096     * Using this builder class instances of {@link BasicThreadFactory} can be
097     * created and initialized. The class provides methods that correspond to
098     * the configuration options supported by {@link BasicThreadFactory}. Method
099     * chaining is supported. Refer to the documentation of {@code
100     * BasicThreadFactory} for a usage example.
101     * </p>
102     */
103    public static class Builder implements org.apache.commons.lang3.builder.Builder<BasicThreadFactory> {
104
105        /** The wrapped factory. */
106        private ThreadFactory factory;
107
108        /** The uncaught exception handler. */
109        private Thread.UncaughtExceptionHandler exceptionHandler;
110
111        /**
112         * The naming pattern for newly created threads.
113         * <p>
114         * The naming pattern is a {@link String#format(String, Object...) format string} that expects a single argument. This argument is the number of the
115         * thread to be created. For instance, if the naming pattern is {@code "MyThread-%d"}, the first thread created by this factory will be named
116         * {@code "MyThread-1"}, the second one {@code "MyThread-2"} and so on.
117         * </p>
118         */
119        private String namingPattern;
120
121        /** The priority. */
122        private Integer priority;
123
124        /** The daemon flag. */
125        private Boolean daemon;
126
127        /**
128         * Constructs a new instance.
129         *
130         * @deprecated Use {@link BasicThreadFactory#builder()}.
131         */
132        @Deprecated
133        public Builder() {
134            // empty
135        }
136
137        /**
138         * Creates a new {@link BasicThreadFactory} with all configuration
139         * options that have been specified by calling methods on this builder.
140         * After creating the factory {@link #reset()} is called.
141         *
142         * @return The new {@link BasicThreadFactory}.
143         */
144        @Override
145        public BasicThreadFactory build() {
146            final BasicThreadFactory factory = new BasicThreadFactory(this);
147            reset();
148            return factory;
149        }
150
151        /**
152         * Sets the daemon flag for the new {@link BasicThreadFactory} to {@code true} causing a new thread factory to create daemon threads.
153         *
154         * @return A reference to this {@link Builder}.
155         * @since 3.18.0
156         */
157        public Builder daemon() {
158            return daemon(true);
159        }
160
161        /**
162         * Sets the daemon flag for the new {@link BasicThreadFactory}. If this
163         * flag is set to <strong>true</strong> the new thread factory will create daemon
164         * threads.
165         *
166         * @param daemon The value of the daemon flag.
167         * @return A reference to this {@link Builder}.
168         */
169        public Builder daemon(final boolean daemon) {
170            this.daemon = Boolean.valueOf(daemon);
171            return this;
172        }
173
174        /**
175         * Sets the naming pattern to be used by the new {@code
176         * BasicThreadFactory}.
177         * <p>
178         * The naming pattern is a {@link String#format(String, Object...) format string} that expects a single argument. This argument is the number of the
179         * thread to be created. For instance, if the naming pattern is {@code "MyThread-%d"}, the first thread created by this factory will be named
180         * {@code "MyThread-1"}, the second one {@code "MyThread-2"} and so on.
181         * </p>
182         *
183         * @param namingPattern The naming pattern (must not be {@code null}).
184         * @return A reference to this {@link Builder}.
185         * @throws NullPointerException Thrown if the naming pattern is {@code null}.
186         */
187        public Builder namingPattern(final String namingPattern) {
188            this.namingPattern = Objects.requireNonNull(namingPattern, "pattern");
189            return this;
190        }
191
192        /**
193         * Sets the priority for the threads created by the new {@code
194         * BasicThreadFactory}.
195         *
196         * @param priority The priority.
197         * @return A reference to this {@link Builder}.
198         */
199        public Builder priority(final int priority) {
200            this.priority = Integer.valueOf(priority);
201            return this;
202        }
203
204        /**
205         * Resets this builder. All configuration options are set to default
206         * values. Note: If the {@link #build()} method was called, it is not
207         * necessary to call {@code reset()} explicitly because this is done
208         * automatically.
209         */
210        public void reset() {
211            factory = null;
212            exceptionHandler = null;
213            namingPattern = null;
214            priority = null;
215            daemon = null;
216        }
217
218        /**
219         * Sets the uncaught exception handler for the threads created by the new {@link BasicThreadFactory}.
220         *
221         * @param exceptionHandler The {@link UncaughtExceptionHandler} (must not be {@code null}).
222         * @return A reference to this {@link Builder}.
223         * @throws NullPointerException Thrown if the exception handler is {@code null}.
224         */
225        public Builder uncaughtExceptionHandler(
226                final Thread.UncaughtExceptionHandler exceptionHandler) {
227            this.exceptionHandler = Objects.requireNonNull(exceptionHandler, "handler");
228            return this;
229        }
230
231        /**
232         * Sets the {@link ThreadFactory} to be wrapped by the new {@code
233         * BasicThreadFactory}.
234         *
235         * @param factory The wrapped {@link ThreadFactory} (must not be {@code null})
236         * @return A reference to this {@link Builder}
237         * @throws NullPointerException Thrown if the passed in {@link ThreadFactory} is {@code null}.
238         */
239        public Builder wrappedFactory(final ThreadFactory factory) {
240            this.factory = Objects.requireNonNull(factory, "factory");
241            return this;
242        }
243    }
244
245    /**
246     * Creates a new builder.
247     *
248     * @return A new builder.
249     * @since 3.18.0
250     */
251    public static Builder builder() {
252        return new Builder();
253    }
254
255    /** A counter for the threads created by this factory. */
256    private final AtomicLong threadCounter;
257
258    /** The wrapped factory. */
259    private final ThreadFactory wrappedFactory;
260
261    /** The uncaught exception handler. */
262    private final Thread.UncaughtExceptionHandler uncaughtExceptionHandler;
263
264    /**
265     * The naming pattern for newly created threads.
266     * <p>
267     * The naming pattern is a {@link String#format(String, Object...) format string} that expects a single argument. This argument is the number of the thread
268     * to be created. For instance, if the naming pattern is {@code "MyThread-%d"}, the first thread created by this factory will be named {@code "MyThread-1"},
269     * the second one {@code "MyThread-2"} and so on.
270     * </p>
271     */
272    private final String namingPattern;
273
274    /** Stores the priority. */
275    private final Integer priority;
276
277    /** Stores the daemon status flag. */
278    private final Boolean daemon;
279
280    /**
281     * Creates a new instance of {@link ThreadFactory} and configures it
282     * from the specified {@link Builder} object.
283     *
284     * @param builder The {@link Builder} object
285     */
286    private BasicThreadFactory(final Builder builder) {
287        wrappedFactory = builder.factory != null ? builder.factory : Executors.defaultThreadFactory();
288        namingPattern = builder.namingPattern;
289        priority = builder.priority;
290        daemon = builder.daemon;
291        uncaughtExceptionHandler = builder.exceptionHandler;
292        threadCounter = new AtomicLong();
293    }
294
295    /**
296     * Gets the daemon flag. This flag determines whether newly created
297     * threads should be daemon threads. If <strong>true</strong>, this factory object
298     * calls {@code setDaemon(true)} on the newly created threads. Result can be
299     * {@code null} if no daemon flag was provided at creation time.
300     *
301     * @return The daemon flag.
302     */
303    public final Boolean getDaemonFlag() {
304        return daemon;
305    }
306
307    /**
308     * Gets the naming pattern for naming newly created threads. Result can be {@code null} if no naming pattern was provided.
309     * <p>
310     * The naming pattern is a {@link String#format(String, Object...) format string} that expects a single argument. This argument is the number of the thread
311     * to be created. For instance, if the naming pattern is {@code "MyThread-%d"}, the first thread created by this factory will be named {@code "MyThread-1"},
312     * the second one {@code "MyThread-2"} and so on.
313     * </p>
314     *
315     * @return The naming pattern.
316     */
317    public final String getNamingPattern() {
318        return namingPattern;
319    }
320
321    /**
322     * Gets the priority of the threads created by this factory. Result can
323     * be {@code null} if no priority was specified.
324     *
325     * @return The priority for newly created threads.
326     */
327    public final Integer getPriority() {
328        return priority;
329    }
330
331    /**
332     * Gets the number of threads this factory has already created. This
333     * class maintains an internal counter that is incremented each time the
334     * {@link #newThread(Runnable)} method is invoked.
335     *
336     * @return The number of threads created by this factory.
337     */
338    public long getThreadCount() {
339        return threadCounter.get();
340    }
341
342    /**
343     * Gets the {@link UncaughtExceptionHandler} for the threads created by
344     * this factory. Result can be {@code null} if no handler was provided.
345     *
346     * @return The {@link UncaughtExceptionHandler}.
347     */
348    public final Thread.UncaughtExceptionHandler getUncaughtExceptionHandler() {
349        return uncaughtExceptionHandler;
350    }
351
352    /**
353     * Gets the wrapped {@link ThreadFactory}. This factory is used for
354     * actually creating threads. This method never returns {@code null}. If no
355     * {@link ThreadFactory} was passed when this object was created, a default
356     * thread factory is returned.
357     *
358     * @return The wrapped {@link ThreadFactory}.
359     */
360    public final ThreadFactory getWrappedFactory() {
361        return wrappedFactory;
362    }
363
364    /**
365     * Initializes the specified thread. This method is called by
366     * {@link #newThread(Runnable)} after a new thread has been obtained from
367     * the wrapped thread factory. It initializes the thread according to the
368     * options set for this factory.
369     *
370     * @param thread The thread to be initialized.
371     */
372    private void initializeThread(final Thread thread) {
373        if (getNamingPattern() != null) {
374            final Long count = Long.valueOf(threadCounter.incrementAndGet());
375            thread.setName(String.format(getNamingPattern(), count));
376        }
377        if (getUncaughtExceptionHandler() != null) {
378            thread.setUncaughtExceptionHandler(getUncaughtExceptionHandler());
379        }
380        if (getPriority() != null) {
381            thread.setPriority(getPriority().intValue());
382        }
383        if (getDaemonFlag() != null) {
384            thread.setDaemon(getDaemonFlag().booleanValue());
385        }
386    }
387
388    /**
389     * Creates a new thread. This implementation delegates to the wrapped
390     * factory for creating the thread. Then, on the newly created thread the
391     * corresponding configuration options are set.
392     *
393     * @param runnable The {@link Runnable} to be executed by the new thread.
394     * @return The newly created thread.
395     */
396    @Override
397    public Thread newThread(final Runnable runnable) {
398        final Thread thread = getWrappedFactory().newThread(runnable);
399        initializeThread(thread);
400        return thread;
401    }
402}