/* * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS HEADER. * * Copyright (c) 2010-2011 Oracle and/or its affiliates. All rights reserved. * * The contents of this file are subject to the terms of either the GNU * General Public License Version 2 only ("GPL") or the Common Development * and Distribution License("CDDL") (collectively, the "License"). You * may not use this file except in compliance with the License. You can * obtain a copy of the License at * http://glassfish.java.net/public/CDDL+GPL_1_1.html * or packager/legal/LICENSE.txt. See the License for the specific * language governing permissions and limitations under the License. * * When distributing the software, include this License Header Notice in each * file and include the License file at packager/legal/LICENSE.txt. * * GPL Classpath Exception: * Oracle designates this particular file as subject to the "Classpath" * exception as provided by Oracle in the GPL Version 2 section of the License * file that accompanied this code. * * Modifications: * If applicable, add the following below the License Header, with the fields * enclosed by brackets [] replaced by your own identifying information: * "Portions Copyright [year] [name of copyright owner]" * * Contributor(s): * If you wish your version of this file to be governed by only the CDDL or * only the GPL Version 2, indicate your decision by adding "[Contributor] * elects to include this software in this distribution under the [CDDL or GPL * Version 2] license." If you don't indicate a single choice of license, a * recipient has the option to distribute your version of this file under * either the CDDL, the GPL Version 2 or to extend the choice of license to * its licensees as provided above. However, if you add GPL Version 2 code * and therefore, elected the GPL Version 2 license, then the option applies * only if the new code is made subject to such option by the copyright * holder. */ package com.sun.jersey.core.spi.component; import com.sun.jersey.core.reflection.AnnotatedMethod; import com.sun.jersey.core.reflection.MethodList; import com.sun.jersey.core.reflection.ReflectionHelper; import com.sun.jersey.spi.inject.Injectable; import com.sun.jersey.spi.inject.InjectableProviderContext; import com.sun.jersey.spi.inject.Errors; import java.lang.annotation.Annotation; import java.lang.reflect.Constructor; import java.lang.reflect.InvocationTargetException; import java.lang.reflect.Method; import java.lang.reflect.Modifier; import java.lang.reflect.Type; import java.util.ArrayList; import java.util.Collections; import java.util.Comparator; import java.util.HashSet; import java.util.LinkedList; import java.util.List; import java.util.SortedSet; import java.util.TreeSet; /** * A constructor of a component. * * @param <T> the type to construct * @author Paul.Sandoz@Sun.Com */ public class ComponentConstructor<T> { /** * A tuple of a constructor and the list of injectables associated with * the parameters of the constructor. * * @param <T> the type to construct. */ private static class ConstructorInjectablePair<T> { /** * The constructor. */ private final Constructor<T> con; /** * The list of injectables associated with the parameters of the * constructor; */ private final List<Injectable> is; /** * Create a new tuple of a constructor and list of injectables. * * @param con the constructor * @param is the list of injectables. */ private ConstructorInjectablePair(Constructor<T> con, List<Injectable> is) { this.con = con; this.is = is; } } private static class ConstructorComparator<T> implements Comparator<ConstructorInjectablePair<T>> { @Override public int compare(ConstructorInjectablePair<T> o1, ConstructorInjectablePair<T> o2) { int p = Collections.frequency(o1.is, null) - Collections.frequency(o2.is, null); if (p != 0) return p; return o2.con.getParameterTypes().length - o1.con.getParameterTypes().length; } } private final InjectableProviderContext ipc; private final Class<T> c; private final List<Method> postConstructs; private final ComponentInjector<T> ci; public ComponentConstructor(InjectableProviderContext ipc, Class<T> c, ComponentInjector<T> ci) { this.ipc = ipc; this.c = c; this.ci = ci; this.postConstructs = getPostConstructMethods(c); } private static List<Method> getPostConstructMethods(Class c) { Class postConstructClass = ReflectionHelper.classForName("javax.annotation.PostConstruct"); LinkedList<Method> list = new LinkedList<Method>(); HashSet<String> names = new HashSet<String>(); if (postConstructClass != null) { MethodList methodList = new MethodList(c, true); for (AnnotatedMethod m : methodList. hasAnnotation(postConstructClass). hasNumParams(0). hasReturnType(void.class)) { Method method = m.getMethod(); // only add method if not hidden/overridden if (names.add(method.getName())) { ReflectionHelper.setAccessibleMethod(method); // methods from the superclass should go first, so inserting at the beginning list.addFirst(method); } } } return list; } /** * Get a new instance. * * @return a new instance. */ public T getInstance() throws InstantiationException, IllegalAccessException, IllegalArgumentException, InvocationTargetException { final int modifiers = c.getModifiers(); if (!Modifier.isPublic(modifiers)) { Errors.nonPublicClass(c); } if (Modifier.isAbstract(modifiers)) { if (Modifier.isInterface(modifiers)) { Errors.interfaceClass(c); } else { Errors.abstractClass(c); } } if (c.getEnclosingClass() != null && !Modifier.isStatic(modifiers)) { Errors.innerClass(c); } if (Modifier.isPublic(modifiers) && !Modifier.isAbstract(modifiers)) { if (c.getConstructors().length == 0) { Errors.nonPublicConstructor(c); } } final T t = _getInstance(); ci.inject(t); for (Method postConstruct : postConstructs) { postConstruct.invoke(t); } return t; } private T _getInstance() throws InstantiationException, IllegalAccessException, IllegalArgumentException, InvocationTargetException { ConstructorInjectablePair<T> cip = getConstructor(); if (cip == null || cip.is.isEmpty()) { return c.newInstance(); } else { if (cip.is.contains(null)) { // Missing dependency for (int i = 0; i < cip.is.size(); i++) { if (cip.is.get(i) == null) { Errors.missingDependency(cip.con, i); } } } Object[] params = new Object[cip.is.size()]; int i = 0; for (Injectable injectable : cip.is) { if (injectable != null) params[i++] = injectable.getValue(); } return cip.con.newInstance(params); } } /** * Get the most suitable constructor. The constructor with the most * parameters and that has the most parameters associated with * Injectable instances will be chosen. * * @param <T> The type to construct. * @param c the class to instantiate. * @return a list of constructor and list of injectables for the constructor * parameters. */ private ConstructorInjectablePair<T> getConstructor() { if (c.getConstructors().length == 0) return null; SortedSet<ConstructorInjectablePair<T>> cs = new TreeSet<ConstructorInjectablePair<T>>( new ConstructorComparator()); AnnotatedContext aoc = new AnnotatedContext(); for (Constructor con : c.getConstructors()) { List<Injectable> is = new ArrayList<Injectable>(); int ps = con.getParameterTypes().length; aoc.setAccessibleObject(con); for (int p = 0; p < ps; p++) { Type pgtype = con.getGenericParameterTypes()[p]; Annotation[] as = con.getParameterAnnotations()[p]; aoc.setAnnotations(as); Injectable i = null; for (Annotation a : as) { i = ipc.getInjectable( a.annotationType(), aoc, a, pgtype, ComponentScope.UNDEFINED_SINGLETON); } is.add(i); } cs.add(new ConstructorInjectablePair<T>(con, is)); } return cs.first(); } }