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.ConcurrentMap; 020import java.util.concurrent.ExecutionException; 021import java.util.concurrent.Future; 022import java.util.concurrent.TimeUnit; 023 024import org.apache.commons.lang3.Validate; 025import org.apache.commons.lang3.exception.ExceptionUtils; 026 027/** 028 * A utility class providing functionality related to the {@code 029 * java.util.concurrent} package. 030 * 031 * @since 3.0 032 */ 033public class ConcurrentUtils { 034 035 /** 036 * A specialized {@link Future} implementation which wraps a constant value. 037 * 038 * @param <T> The type of the value wrapped by this class 039 */ 040 static final class ConstantFuture<T> implements Future<T> { 041 042 /** The constant value. */ 043 private final T value; 044 045 /** 046 * Creates a new instance of {@link ConstantFuture} and initializes it 047 * with the constant value. 048 * 049 * @param value The value (may be {@code null}) 050 */ 051 ConstantFuture(final T value) { 052 this.value = value; 053 } 054 055 /** 056 * {@inheritDoc} The cancel operation is not supported. This 057 * implementation always returns <strong>false</strong>. 058 */ 059 @Override 060 public boolean cancel(final boolean mayInterruptIfRunning) { 061 return false; 062 } 063 064 /** 065 * {@inheritDoc} This implementation just returns the constant value. 066 */ 067 @Override 068 public T get() { 069 return value; 070 } 071 072 /** 073 * {@inheritDoc} This implementation just returns the constant value; it 074 * does not block, therefore the timeout has no meaning. 075 */ 076 @Override 077 public T get(final long timeout, final TimeUnit unit) { 078 return value; 079 } 080 081 /** 082 * {@inheritDoc} This implementation always returns <strong>false</strong>; there 083 * is no background process which could be canceled. 084 */ 085 @Override 086 public boolean isCancelled() { 087 return false; 088 } 089 090 /** 091 * {@inheritDoc} This implementation always returns <strong>true</strong> because 092 * the constant object managed by this {@link Future} implementation is 093 * always available. 094 */ 095 @Override 096 public boolean isDone() { 097 return true; 098 } 099 } 100 101 /** 102 * Tests whether the specified {@link Throwable} is a checked exception. If 103 * not, an exception is thrown. 104 * 105 * @param ex The {@link Throwable} to check 106 * @return A flag whether the passed in exception is a checked exception 107 * @throws IllegalArgumentException Thrown if the {@link Throwable} is not a checked exception. 108 */ 109 static Throwable checkedException(final Throwable ex) { 110 Validate.isTrue(ExceptionUtils.isChecked(ex), "Not a checked exception: %s", ex); 111 return ex; 112 } 113 114 /** 115 * Gets an implementation of {@link Future} that is immediately done 116 * and returns the specified constant value. 117 * 118 * <p> 119 * This can be useful to return a simple constant immediately from the 120 * concurrent processing, perhaps as part of avoiding nulls. 121 * A constant future can also be useful in testing. 122 * </p> 123 * 124 * @param <T> The type of the value used by this {@link Future} object 125 * @param value The constant value to return, may be null 126 * @return An instance of Future that will return the value, never null 127 */ 128 public static <T> Future<T> constantFuture(final T value) { 129 return new ConstantFuture<>(value); 130 } 131 132 /** 133 * Checks if a concurrent map contains a key and creates a corresponding 134 * value if not. This method first checks the presence of the key in the 135 * given map. If it is already contained, its value is returned. Otherwise 136 * the {@code get()} method of the passed in {@link ConcurrentInitializer} 137 * is called. With the resulting object 138 * {@link #putIfAbsent(ConcurrentMap, Object, Object)} is called. This 139 * handles the case that in the meantime another thread has added the key to 140 * the map. Both the map and the initializer can be {@code null}; in this 141 * case this method simply returns {@code null}. 142 * 143 * @param <K> The type of the keys of the map 144 * @param <V> The type of the values of the map 145 * @param map The map to be modified 146 * @param key The key of the value to be added 147 * @param init The {@link ConcurrentInitializer} for creating the value 148 * @return The value stored in the map after this operation; this may or may 149 * not be the object created by the {@link ConcurrentInitializer} 150 * @throws ConcurrentException Thrown if the initializer throws an exception. 151 */ 152 public static <K, V> V createIfAbsent(final ConcurrentMap<K, V> map, final K key, 153 final ConcurrentInitializer<V> init) throws ConcurrentException { 154 if (map == null || init == null) { 155 return null; 156 } 157 158 final V value = map.get(key); 159 if (value == null) { 160 return putIfAbsent(map, key, init.get()); 161 } 162 return value; 163 } 164 165 /** 166 * Checks if a concurrent map contains a key and creates a corresponding 167 * value if not, suppressing checked exceptions. This method calls 168 * {@code createIfAbsent()}. If a {@link ConcurrentException} is thrown, it 169 * is caught and re-thrown as a {@link ConcurrentRuntimeException}. 170 * 171 * @param <K> The type of the keys of the map 172 * @param <V> The type of the values of the map 173 * @param map The map to be modified 174 * @param key The key of the value to be added 175 * @param init The {@link ConcurrentInitializer} for creating the value 176 * @return The value stored in the map after this operation; this may or may 177 * not be the object created by the {@link ConcurrentInitializer} 178 * @throws ConcurrentRuntimeException Thrown if the initializer throws an exception. 179 */ 180 public static <K, V> V createIfAbsentUnchecked(final ConcurrentMap<K, V> map, 181 final K key, final ConcurrentInitializer<V> init) { 182 try { 183 return createIfAbsent(map, key, init); 184 } catch (final ConcurrentException cex) { 185 throw new ConcurrentRuntimeException(cex.getCause()); 186 } 187 } 188 189 /** 190 * Inspects the cause of the specified {@link ExecutionException} and 191 * creates a {@link ConcurrentException} with the checked cause if 192 * necessary. This method performs the following checks on the cause of the 193 * passed in exception: 194 * <ul> 195 * <li>If the passed in exception is {@code null} or the cause is 196 * {@code null}, this method returns {@code null}.</li> 197 * <li>If the cause is a runtime exception, it is directly thrown.</li> 198 * <li>If the cause is an error, it is directly thrown, too.</li> 199 * <li>In any other case the cause is a checked exception. The method then 200 * creates a {@link ConcurrentException}, initializes it with the cause, and 201 * returns it.</li> 202 * </ul> 203 * 204 * @param ex The exception to be processed 205 * @return A {@link ConcurrentException} with the checked cause 206 */ 207 public static ConcurrentException extractCause(final ExecutionException ex) { 208 if (ex == null || ex.getCause() == null) { 209 return null; 210 } 211 ExceptionUtils.throwUnchecked(ex.getCause()); 212 return new ConcurrentException(ex.getMessage(), ex.getCause()); 213 } 214 215 /** 216 * Inspects the cause of the specified {@link ExecutionException} and 217 * creates a {@link ConcurrentRuntimeException} with the checked cause if 218 * necessary. This method works exactly like 219 * {@link #extractCause(ExecutionException)}. The only difference is that 220 * the cause of the specified {@link ExecutionException} is extracted as a 221 * runtime exception. This is an alternative for client code that does not 222 * want to deal with checked exceptions. 223 * 224 * @param ex The exception to be processed 225 * @return A {@link ConcurrentRuntimeException} with the checked cause 226 */ 227 public static ConcurrentRuntimeException extractCauseUnchecked(final ExecutionException ex) { 228 if (ex == null || ex.getCause() == null) { 229 return null; 230 } 231 ExceptionUtils.throwUnchecked(ex.getCause()); 232 return new ConcurrentRuntimeException(ex.getMessage(), ex.getCause()); 233 } 234 235 /** 236 * Handles the specified {@link ExecutionException}. This method calls 237 * {@link #extractCause(ExecutionException)} for obtaining the cause of the 238 * exception - which might already cause an unchecked exception or an error 239 * being thrown. If the cause is a checked exception however, it is wrapped 240 * in a {@link ConcurrentException}, which is thrown. If the passed in 241 * exception is {@code null} or has no cause, the method simply returns 242 * without throwing an exception. 243 * 244 * @param ex The exception to be handled 245 * @throws ConcurrentException Thrown if the cause of the {@code ExecutionException} is a checked exception. 246 */ 247 public static void handleCause(final ExecutionException ex) throws ConcurrentException { 248 final ConcurrentException cause = extractCause(ex); 249 if (cause != null) { 250 throw cause; 251 } 252 } 253 254 /** 255 * Handles the specified {@link ExecutionException} and transforms it into a 256 * runtime exception. This method works exactly like 257 * {@link #handleCause(ExecutionException)}, but instead of a 258 * {@link ConcurrentException} it throws a 259 * {@link ConcurrentRuntimeException}. This is an alternative for client 260 * code that does not want to deal with checked exceptions. 261 * 262 * @param ex The exception to be handled 263 * @throws ConcurrentRuntimeException Thrown if the cause of the {@code ExecutionException} is a checked exception; this exception is then wrapped in the 264 * thrown runtime exception. 265 */ 266 public static void handleCauseUnchecked(final ExecutionException ex) { 267 final ConcurrentRuntimeException cause = extractCauseUnchecked(ex); 268 if (cause != null) { 269 throw cause; 270 } 271 } 272 273 /** 274 * Invokes the specified {@link ConcurrentInitializer} and returns the 275 * object produced by the initializer. This method just invokes the {@code 276 * get()} method of the given {@link ConcurrentInitializer}. It is 277 * {@code null}-safe: if the argument is {@code null}, result is also 278 * {@code null}. 279 * 280 * @param <T> The type of the object produced by the initializer 281 * @param initializer The {@link ConcurrentInitializer} to be invoked 282 * @return The object managed by the {@link ConcurrentInitializer} 283 * @throws ConcurrentException Thrown if the {@link ConcurrentInitializer} throws an exception. 284 */ 285 public static <T> T initialize(final ConcurrentInitializer<T> initializer) 286 throws ConcurrentException { 287 return initializer != null ? initializer.get() : null; 288 } 289 290 /** 291 * Invokes the specified {@link ConcurrentInitializer} and transforms 292 * occurring exceptions to runtime exceptions. This method works like 293 * {@link #initialize(ConcurrentInitializer)}, but if the {@code 294 * ConcurrentInitializer} throws a {@link ConcurrentException}, it is 295 * caught, and the cause is wrapped in a {@link ConcurrentRuntimeException}. 296 * So client code does not have to deal with checked exceptions. 297 * 298 * @param <T> The type of the object produced by the initializer 299 * @param initializer The {@link ConcurrentInitializer} to be invoked 300 * @return The object managed by the {@link ConcurrentInitializer} 301 * @throws ConcurrentRuntimeException Thrown if the initializer throws an exception. 302 */ 303 public static <T> T initializeUnchecked(final ConcurrentInitializer<T> initializer) { 304 try { 305 return initialize(initializer); 306 } catch (final ConcurrentException cex) { 307 throw new ConcurrentRuntimeException(cex.getCause()); 308 } 309 } 310 311 /** 312 * Puts a value in the specified {@link ConcurrentMap} if the key is not yet 313 * present. This method works similar to the {@code putIfAbsent()} method of 314 * the {@link ConcurrentMap} interface, but the value returned is different. 315 * Basically, this method is equivalent to the following code fragment: 316 * 317 * <pre> 318 * if (!map.containsKey(key)) { 319 * map.put(key, value); 320 * return value; 321 * } else { 322 * return map.get(key); 323 * } 324 * </pre> 325 * 326 * <p> 327 * except that the action is performed atomically. So this method always 328 * returns the value which is stored in the map. 329 * </p> 330 * <p> 331 * This method is {@code null}-safe: It accepts a {@code null} map as input 332 * without throwing an exception. In this case the return value is 333 * {@code null}, too. 334 * </p> 335 * 336 * @param <K> The type of the keys of the map 337 * @param <V> The type of the values of the map 338 * @param map The map to be modified 339 * @param key The key of the value to be added 340 * @param value The value to be added 341 * @return The value stored in the map after this operation 342 */ 343 public static <K, V> V putIfAbsent(final ConcurrentMap<K, V> map, final K key, final V value) { 344 if (map == null) { 345 return null; 346 } 347 final V result = map.putIfAbsent(key, value); 348 return result != null ? result : value; 349 } 350 351 /** 352 * Private constructor so that no instances can be created. This class 353 * contains only static utility methods. 354 */ 355 private ConcurrentUtils() { 356 } 357 358}