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.collections4;
018
019import java.util.Collection;
020import java.util.LinkedHashMap;
021import java.util.Map;
022import java.util.Objects;
023
024import org.apache.commons.collections4.functors.ChainedTransformer;
025import org.apache.commons.collections4.functors.CloneTransformer;
026import org.apache.commons.collections4.functors.ClosureTransformer;
027import org.apache.commons.collections4.functors.ConstantTransformer;
028import org.apache.commons.collections4.functors.EqualPredicate;
029import org.apache.commons.collections4.functors.ExceptionTransformer;
030import org.apache.commons.collections4.functors.FactoryTransformer;
031import org.apache.commons.collections4.functors.IfTransformer;
032import org.apache.commons.collections4.functors.InstantiateTransformer;
033import org.apache.commons.collections4.functors.InvokerTransformer;
034import org.apache.commons.collections4.functors.MapTransformer;
035import org.apache.commons.collections4.functors.NOPTransformer;
036import org.apache.commons.collections4.functors.PredicateTransformer;
037import org.apache.commons.collections4.functors.StringValueTransformer;
038import org.apache.commons.collections4.functors.SwitchTransformer;
039
040/**
041 * {@code TransformerUtils} provides reference implementations and
042 * utilities for the Transformer functor interface. The supplied transformers are:
043 * <ul>
044 * <li>Invoker - returns the result of a method call on the input object</li>
045 * <li>Clone - returns a clone of the input object</li>
046 * <li>Constant - always returns the same object</li>
047 * <li>Closure - performs a Closure and returns the input object</li>
048 * <li>Predicate - returns the result of the predicate as a Boolean</li>
049 * <li>Factory - returns a new object from a factory</li>
050 * <li>Chained - chains two or more transformers together</li>
051 * <li>If - calls one transformer or another based on a predicate</li>
052 * <li>Switch - calls one transformer based on one or more predicates</li>
053 * <li>SwitchMap - calls one transformer looked up from a Map</li>
054 * <li>Instantiate - the Class input object is instantiated</li>
055 * <li>Map - returns an object from a supplied Map</li>
056 * <li>Null - always returns null</li>
057 * <li>NOP - returns the input object, which should be immutable</li>
058 * <li>Exception - always throws an exception</li>
059 * <li>StringValue - returns a {@link String} representation of the input object</li>
060 * </ul>
061 * <p>
062 * Since v4.1 only transformers which are considered to be safe are
063 * Serializable. Transformers considered to be unsafe for serialization are:
064 * </p>
065 * <ul>
066 * <li>Invoker</li>
067 * <li>Clone</li>
068 * <li>Instantiate</li>
069 * </ul>
070 *
071 * @since 3.0
072 */
073public class TransformerUtils {
074
075    /**
076     * Creates a Transformer that calls a Closure each time the transformer is used.
077     * The transformer returns the input object.
078     *
079     * @param <T>  the input/output type
080     * @param closure  The closure to run each time in the transformer, not null
081     * @return The transformer
082     * @throws NullPointerException if the closure is null
083     * @see ClosureTransformer
084     */
085    public static <T> Transformer<T, T> asTransformer(final Closure<? super T> closure) {
086        return ClosureTransformer.closureTransformer(closure);
087    }
088
089    /**
090     * Creates a Transformer that calls a Factory each time the transformer is used.
091     * The transformer will return the value returned by the factory.
092     *
093     * @param <I>  the input type
094     * @param <O>  the output type
095     * @param factory  The factory to run each time in the transformer, not null
096     * @return The transformer
097     * @throws NullPointerException if the factory is null
098     * @see FactoryTransformer
099     */
100    public static <I, O> Transformer<I, O> asTransformer(final Factory<? extends O> factory) {
101        return FactoryTransformer.factoryTransformer(factory);
102    }
103
104    /**
105     * Creates a Transformer that calls a Predicate each time the transformer is used.
106     * The transformer will return either {@link Boolean#TRUE} or {@link Boolean#FALSE}.
107     *
108     * @param <T>  the input type
109     * @param predicate  The predicate to run each time in the transformer, not null
110     * @return The transformer
111     * @throws NullPointerException if the predicate is null
112     * @see PredicateTransformer
113     */
114    public static <T> Transformer<T, Boolean> asTransformer(final Predicate<? super T> predicate) {
115        return PredicateTransformer.predicateTransformer(predicate);
116    }
117
118    /**
119     * Create a new Transformer that calls each transformer in turn, passing the
120     * result into the next transformer. The ordering is that of the iterator()
121     * method on the collection.
122     *
123     * @param <T>  the input/output type
124     * @param transformers  A collection of transformers to chain
125     * @return The transformer
126     * @throws NullPointerException if the transformers collection or any of the transformers is null
127     * @see ChainedTransformer
128     */
129    public static <T> Transformer<T, T> chainedTransformer(
130            final Collection<? extends Transformer<? super T, ? extends T>> transformers) {
131        return ChainedTransformer.chainedTransformer(transformers);
132    }
133
134    /**
135     * Create a new Transformer that calls each transformer in turn, passing the
136     * result into the next transformer.
137     *
138     * @param <T>  the input/output type
139     * @param transformers  An array of transformers to chain
140     * @return The transformer
141     * @throws NullPointerException if the transformers array or any of the transformers is null
142     * @see ChainedTransformer
143     */
144    public static <T> Transformer<T, T> chainedTransformer(
145            final Transformer<? super T, ? extends T>... transformers) {
146        return ChainedTransformer.chainedTransformer(transformers);
147    }
148
149    /**
150     * Gets a transformer that returns a clone of the input object.
151     * The input object will be cloned using one of these techniques (in order):
152     * <ul>
153     * <li>public clone method</li>
154     * <li>public copy constructor</li>
155     * <li>serialization clone</li>
156     * </ul>
157     *
158     * @param <T>  the input/output type
159     * @return The transformer
160     * @see CloneTransformer
161     */
162    public static <T> Transformer<T, T> cloneTransformer() {
163        return CloneTransformer.cloneTransformer();
164    }
165
166    /**
167     * Creates a Transformer that will return the same object each time the
168     * transformer is used.
169     *
170     * @param <I>  the input type
171     * @param <O>  the output type
172     * @param constantToReturn  The constant object to return each time in the transformer
173     * @return The transformer.
174     * @see ConstantTransformer
175     */
176    public static <I, O> Transformer<I, O> constantTransformer(final O constantToReturn) {
177        return ConstantTransformer.constantTransformer(constantToReturn);
178    }
179
180    /**
181     * Gets a transformer that always throws an exception.
182     * This could be useful during testing as a placeholder.
183     *
184     * @param <I>  the input type
185     * @param <O>  the output type
186     * @return The transformer
187     * @see ExceptionTransformer
188     */
189    public static <I, O> Transformer<I, O> exceptionTransformer() {
190        return ExceptionTransformer.exceptionTransformer();
191    }
192
193    /**
194     * Create a new Transformer that calls one of two transformers depending
195     * on the specified predicate.
196     *
197     * @param <I>  the input type
198     * @param <O>  the output type
199     * @param predicate  The predicate to switch on
200     * @param trueTransformer  The transformer called if the predicate is true
201     * @param falseTransformer  The transformer called if the predicate is false
202     * @return The transformer
203     * @throws NullPointerException if either the predicate or transformer is null
204     * @see IfTransformer
205     * @since 4.1
206     */
207    public static <I, O> Transformer<I, O> ifTransformer(final Predicate<? super I> predicate,
208                                                         final Transformer<? super I, ? extends O> trueTransformer,
209                                                         final Transformer<? super I, ? extends O> falseTransformer) {
210        return IfTransformer.ifTransformer(predicate, trueTransformer, falseTransformer);
211    }
212
213    /**
214     * Create a new Transformer that calls the transformer if the predicate is true,
215     * otherwise the input object is returned unchanged.
216     *
217     * @param <T>  the input / output type
218     * @param predicate  The predicate to switch on
219     * @param trueTransformer  The transformer called if the predicate is true
220     * @return The transformer
221     * @throws NullPointerException if either the predicate or transformer is null
222     * @see IfTransformer
223     * @since 4.1
224     */
225    public static <T> Transformer<T, T> ifTransformer(final Predicate<? super T> predicate,
226                                                      final Transformer<? super T, ? extends T> trueTransformer) {
227        return IfTransformer.ifTransformer(predicate, trueTransformer);
228    }
229
230    /**
231     * Gets a Transformer that expects an input Class object that it will instantiate.
232     *
233     * @param <T>  the output type
234     * @return The transformer
235     * @see InstantiateTransformer
236     */
237    public static <T> Transformer<Class<? extends T>, T> instantiateTransformer() {
238        return InstantiateTransformer.instantiateTransformer();
239    }
240
241    /**
242     * Creates a Transformer that expects an input Class object that it will
243     * instantiate. The constructor used is determined by the arguments specified
244     * to this method.
245     *
246     * @param <T>  the output type
247     * @param paramTypes  parameter types for the constructor, can be null
248     * @param args  The arguments to pass to the constructor, can be null
249     * @return The transformer
250     * @throws IllegalArgumentException if the paramTypes and args don't match
251     * @see InstantiateTransformer
252     */
253    public static <T> Transformer<Class<? extends T>, T> instantiateTransformer(
254            final Class<?>[] paramTypes, final Object[] args) {
255        return InstantiateTransformer.instantiateTransformer(paramTypes, args);
256    }
257
258    /**
259     * Gets a Transformer that invokes a method on the input object.
260     * The method must have no parameters. If the input object is {@code null},
261     * {@code null} is returned.
262     *
263     * <p>
264     * For example, {@code TransformerUtils.invokerTransformer("getName");}
265     * will call the {@code getName} method on the input object to
266     * determine the transformer result.
267     * </p>
268     *
269     * @param <I>  the input type
270     * @param <O>  the output type
271     * @param methodName  The method name to call on the input object, may not be null
272     * @return The transformer
273     * @throws NullPointerException if the methodName is null.
274     * @see InvokerTransformer
275     */
276    public static <I, O> Transformer<I, O> invokerTransformer(final String methodName) {
277        return InvokerTransformer.invokerTransformer(methodName, null, null);
278    }
279
280    /**
281     * Gets a Transformer that invokes a method on the input object.
282     * The method parameters are specified. If the input object is {@code null},
283     * {@code null} is returned.
284     *
285     * @param <I>  the input type
286     * @param <O>  the output type
287     * @param methodName  The name of the method
288     * @param paramTypes  The parameter types
289     * @param args  The arguments
290     * @return The transformer
291     * @throws NullPointerException if the method name is null
292     * @throws IllegalArgumentException if the paramTypes and args don't match
293     * @see InvokerTransformer
294     */
295    public static <I, O> Transformer<I, O> invokerTransformer(final String methodName, final Class<?>[] paramTypes,
296                                                              final Object[] args) {
297        return InvokerTransformer.invokerTransformer(methodName, paramTypes, args);
298    }
299
300    /**
301     * Creates a Transformer that uses the passed in Map to transform the input
302     * object (as a simple lookup).
303     *
304     * @param <I>  the input type
305     * @param <O>  the output type
306     * @param map  The map to use to transform the objects
307     * @return The transformer, or {@link ConstantTransformer#nullTransformer()} if the
308     *   {@code map} is {@code null}
309     * @see MapTransformer
310     */
311    public static <I, O> Transformer<I, O> mapTransformer(final Map<? super I, ? extends O> map) {
312        return MapTransformer.mapTransformer(map);
313    }
314
315    /**
316     * Gets a transformer that returns the input object.
317     * The input object should be immutable to maintain the
318     * contract of Transformer (although this is not checked).
319     *
320     * @param <T>  the input/output type
321     * @return The transformer
322     * @see NOPTransformer
323     */
324    public static <T> Transformer<T, T> nopTransformer() {
325        return NOPTransformer.nopTransformer();
326    }
327
328    /**
329     * Gets a transformer that always returns null.
330     *
331     * @param <I>  the input type
332     * @param <O>  the output type
333     * @return The transformer
334     * @see ConstantTransformer
335     */
336    public static <I, O> Transformer<I, O> nullTransformer() {
337        return ConstantTransformer.nullTransformer();
338    }
339
340    /**
341     * Gets a transformer that returns a {@link String}
342     * representation of the input object. This is achieved via the
343     * {@code toString} method, {@code null} returns 'null'.
344     *
345     * @param <T>  the input type
346     * @return The transformer
347     * @see StringValueTransformer
348     */
349    public static <T> Transformer<T, String> stringValueTransformer() {
350        return StringValueTransformer.stringValueTransformer();
351    }
352
353    /**
354     * Create a new Transformer that uses the input object as a key to find the
355     * transformer to call.
356     * <p>
357     * The Map consists of object keys and Transformer values. A transformer
358     * is called if the input object equals the key. If there is no match, the
359     * default transformer is called. The default transformer is set in the map
360     * using a null key. If no default is set, null will be returned in a default case.
361     * </p>
362     *
363     * @param <I>  the input type
364     * @param <O>  the output type
365     * @param objectsAndTransformers  A map of objects to transformers
366     * @return The transformer
367     * @throws NullPointerException if the map is null
368     * @throws NullPointerException if any transformer in the map is null
369     * @see SwitchTransformer
370     */
371    @SuppressWarnings("unchecked")
372    public static <I, O> Transformer<I, O> switchMapTransformer(
373            final Map<I, Transformer<I, O>> objectsAndTransformers) {
374
375        Objects.requireNonNull(objectsAndTransformers, "objectsAndTransformers");
376        // copy so the caller's map is not mutated
377        final Map<I, Transformer<I, O>> objects = new LinkedHashMap<>(objectsAndTransformers);
378        final Transformer<? super I, ? extends O> def = objects.remove(null);
379        final int size = objects.size();
380        final Transformer<? super I, ? extends O>[] trs = new Transformer[size];
381        final Predicate<I>[] preds = new Predicate[size];
382        int i = 0;
383        for (final Map.Entry<I, Transformer<I, O>> entry : objects.entrySet()) {
384            preds[i] = EqualPredicate.<I>equalPredicate(entry.getKey());
385            trs[i++] = entry.getValue();
386        }
387        return switchTransformer(preds, trs, def);
388    }
389
390    /**
391     * Create a new Transformer that calls one of the transformers depending
392     * on the predicates.
393     * <p>
394     * The Map consists of Predicate keys and Transformer values. A transformer
395     * is called if its matching predicate returns true. Each predicate is evaluated
396     * until one returns true. If no predicates evaluate to true, the default
397     * transformer is called. The default transformer is set in the map with a
398     * null key. If no default transformer is set, null will be returned in a default
399     * case. The ordering is that of the iterator() method on the entryset collection
400     * of the map.
401     * </p>
402     *
403     * @param <I>  the input type
404     * @param <O>  the output type
405     * @param predicatesAndTransformers  A map of predicates to transformers
406     * @return The transformer
407     * @throws NullPointerException if the map is null
408     * @throws NullPointerException if any transformer in the map is null
409     * @throws ClassCastException  if the map elements are of the wrong type
410     * @see SwitchTransformer
411     */
412    public static <I, O> Transformer<I, O> switchTransformer(
413            final Map<Predicate<I>, Transformer<I, O>> predicatesAndTransformers) {
414        return SwitchTransformer.switchTransformer(predicatesAndTransformers);
415    }
416
417    /**
418     * Create a new Transformer that calls one of two transformers depending
419     * on the specified predicate.
420     *
421     * @param <I>  the input type
422     * @param <O>  the output type
423     * @param predicate  The predicate to switch on
424     * @param trueTransformer  The transformer called if the predicate is true
425     * @param falseTransformer  The transformer called if the predicate is false
426     * @return The transformer
427     * @throws NullPointerException if either the predicate or transformer is null
428     * @see SwitchTransformer
429     * @deprecated as of 4.1, use {@link #ifTransformer(Predicate, Transformer, Transformer)}
430     */
431    @SuppressWarnings("unchecked")
432    @Deprecated
433    public static <I, O> Transformer<I, O> switchTransformer(final Predicate<? super I> predicate,
434            final Transformer<? super I, ? extends O> trueTransformer,
435            final Transformer<? super I, ? extends O> falseTransformer) {
436        return SwitchTransformer.switchTransformer(new Predicate[] { predicate },
437                                                   new Transformer[] { trueTransformer }, falseTransformer);
438    }
439
440    /**
441     * Create a new Transformer that calls one of the transformers depending
442     * on the predicates. The transformer at array location 0 is called if the
443     * predicate at array location 0 returned true. Each predicate is evaluated
444     * until one returns true. If no predicates evaluate to true, null is returned.
445     *
446     * @param <I>  the input type
447     * @param <O>  the output type
448     * @param predicates  An array of predicates to check
449     * @param transformers  An array of transformers to call
450     * @return The transformer
451     * @throws NullPointerException if either array is null
452     * @throws NullPointerException if any element in the arrays is null
453     * @throws IllegalArgumentException if the arrays have different sizes
454     * @see SwitchTransformer
455     */
456    public static <I, O> Transformer<I, O> switchTransformer(final Predicate<? super I>[] predicates,
457            final Transformer<? super I, ? extends O>[] transformers) {
458        return SwitchTransformer.switchTransformer(predicates, transformers, null);
459    }
460
461    /**
462     * Create a new Transformer that calls one of the transformers depending
463     * on the predicates. The transformer at array location 0 is called if the
464     * predicate at array location 0 returned true. Each predicate is evaluated
465     * until one returns true. If no predicates evaluate to true, the default
466     * transformer is called. If the default transformer is null, null is returned.
467     *
468     * @param <I>  the input type
469     * @param <O>  the output type
470     * @param predicates  An array of predicates to check
471     * @param transformers  An array of transformers to call
472     * @param defaultTransformer  The default to call if no predicate matches, null means return null
473     * @return The transformer
474     * @throws NullPointerException if either array is null
475     * @throws NullPointerException if any element in the arrays is null
476     * @throws IllegalArgumentException if the arrays have different sizes
477     * @see SwitchTransformer
478     */
479    public static <I, O> Transformer<I, O> switchTransformer(final Predicate<? super I>[] predicates,
480            final Transformer<? super I, ? extends O>[] transformers,
481            final Transformer<? super I, ? extends O> defaultTransformer) {
482        return SwitchTransformer.switchTransformer(predicates, transformers, defaultTransformer);
483    }
484
485    /**
486     * This class is not normally instantiated.
487     */
488    private TransformerUtils() {
489        // empty
490    }
491
492}