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1131 lines
49 KiB
Java
1131 lines
49 KiB
Java
/*
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* Copyright (c) 1999, 2019, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation. Oracle designates this
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* particular file as subject to the "Classpath" exception as provided
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* by Oracle in the LICENSE file that accompanied this code.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*/
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package java.lang.reflect;
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import java.lang.module.ModuleDescriptor;
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import java.security.AccessController;
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import java.security.PrivilegedAction;
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import java.util.Arrays;
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import java.util.Collections;
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import java.util.HashMap;
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import java.util.HashSet;
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import java.util.IdentityHashMap;
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import java.util.List;
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import java.util.Map;
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import java.util.Objects;
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import java.util.Set;
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import java.util.concurrent.atomic.AtomicInteger;
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import java.util.concurrent.atomic.AtomicLong;
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import jdk.internal.access.JavaLangAccess;
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import jdk.internal.access.SharedSecrets;
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import jdk.internal.loader.BootLoader;
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import jdk.internal.module.Modules;
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import jdk.internal.misc.VM;
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import jdk.internal.reflect.CallerSensitive;
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import jdk.internal.reflect.Reflection;
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import jdk.internal.loader.ClassLoaderValue;
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import sun.reflect.misc.ReflectUtil;
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import sun.security.action.GetBooleanAction;
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import sun.security.action.GetPropertyAction;
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import sun.security.util.SecurityConstants;
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import static java.lang.module.ModuleDescriptor.Modifier.SYNTHETIC;
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/**
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*
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* {@code Proxy} provides static methods for creating objects that act like instances
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* of interfaces but allow for customized method invocation.
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* To create a proxy instance for some interface {@code Foo}:
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* <pre>{@code
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* InvocationHandler handler = new MyInvocationHandler(...);
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* Foo f = (Foo) Proxy.newProxyInstance(Foo.class.getClassLoader(),
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* new Class<?>[] { Foo.class },
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* handler);
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* }</pre>
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*
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* <p>
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* A <em>proxy class</em> is a class created at runtime that implements a specified
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* list of interfaces, known as <em>proxy interfaces</em>. A <em>proxy instance</em>
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* is an instance of a proxy class.
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*
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* Each proxy instance has an associated <i>invocation handler</i>
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* object, which implements the interface {@link InvocationHandler}.
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* A method invocation on a proxy instance through one of its proxy
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* interfaces will be dispatched to the {@link InvocationHandler#invoke
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* invoke} method of the instance's invocation handler, passing the proxy
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* instance, a {@code java.lang.reflect.Method} object identifying
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* the method that was invoked, and an array of type {@code Object}
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* containing the arguments. The invocation handler processes the
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* encoded method invocation as appropriate and the result that it
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* returns will be returned as the result of the method invocation on
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* the proxy instance.
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*
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* <p>A proxy class has the following properties:
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*
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* <ul>
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* <li>The unqualified name of a proxy class is unspecified. The space
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* of class names that begin with the string {@code "$Proxy"}
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* should be, however, reserved for proxy classes.
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*
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* <li>The package and module in which a proxy class is defined is specified
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* <a href="#membership">below</a>.
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*
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* <li>A proxy class is <em>final and non-abstract</em>.
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*
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* <li>A proxy class extends {@code java.lang.reflect.Proxy}.
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*
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* <li>A proxy class implements exactly the interfaces specified at its
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* creation, in the same order. Invoking {@link Class#getInterfaces() getInterfaces}
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* on its {@code Class} object will return an array containing the same
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* list of interfaces (in the order specified at its creation), invoking
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* {@link Class#getMethods getMethods} on its {@code Class} object will return
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* an array of {@code Method} objects that include all of the
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* methods in those interfaces, and invoking {@code getMethod} will
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* find methods in the proxy interfaces as would be expected.
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*
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* <li>The {@link java.security.ProtectionDomain} of a proxy class
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* is the same as that of system classes loaded by the bootstrap class
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* loader, such as {@code java.lang.Object}, because the code for a
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* proxy class is generated by trusted system code. This protection
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* domain will typically be granted {@code java.security.AllPermission}.
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*
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* <li>The {@link Proxy#isProxyClass Proxy.isProxyClass} method can be used
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* to determine if a given class is a proxy class.
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* </ul>
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*
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* <p>A proxy instance has the following properties:
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*
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* <ul>
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* <li>Given a proxy instance {@code proxy} and one of the
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* interfaces, {@code Foo}, implemented by its proxy class, the
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* following expression will return true:
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* <pre>
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* {@code proxy instanceof Foo}
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* </pre>
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* and the following cast operation will succeed (rather than throwing
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* a {@code ClassCastException}):
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* <pre>
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* {@code (Foo) proxy}
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* </pre>
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*
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* <li>Each proxy instance has an associated invocation handler, the one
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* that was passed to its constructor. The static
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* {@link Proxy#getInvocationHandler Proxy.getInvocationHandler} method
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* will return the invocation handler associated with the proxy instance
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* passed as its argument.
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*
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* <li>An interface method invocation on a proxy instance will be
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* encoded and dispatched to the invocation handler's {@link
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* InvocationHandler#invoke invoke} method as described in the
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* documentation for that method.
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*
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* <li>An invocation of the {@code hashCode},
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* {@code equals}, or {@code toString} methods declared in
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* {@code java.lang.Object} on a proxy instance will be encoded and
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* dispatched to the invocation handler's {@code invoke} method in
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* the same manner as interface method invocations are encoded and
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* dispatched, as described above. The declaring class of the
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* {@code Method} object passed to {@code invoke} will be
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* {@code java.lang.Object}. Other public methods of a proxy
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* instance inherited from {@code java.lang.Object} are not
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* overridden by a proxy class, so invocations of those methods behave
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* like they do for instances of {@code java.lang.Object}.
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* </ul>
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*
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* <h2><a id="membership">Package and Module Membership of Proxy Class</a></h2>
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*
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* The package and module to which a proxy class belongs are chosen such that
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* the accessibility of the proxy class is in line with the accessibility of
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* the proxy interfaces. Specifically, the package and the module membership
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* of a proxy class defined via the
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* {@link Proxy#getProxyClass(ClassLoader, Class[])} or
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* {@link Proxy#newProxyInstance(ClassLoader, Class[], InvocationHandler)}
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* methods is specified as follows:
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*
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* <ol>
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* <li>If all the proxy interfaces are in <em>exported</em> or <em>open</em>
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* packages:
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* <ol type="a">
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* <li>if all the proxy interfaces are <em>public</em>, then the proxy class is
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* <em>public</em> in a package exported by the
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* {@linkplain ClassLoader#getUnnamedModule() unnamed module} of the specified
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* loader. The name of the package is unspecified.</li>
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*
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* <li>if at least one of all the proxy interfaces is <em>non-public</em>, then
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* the proxy class is <em>non-public</em> in the package and module of the
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* non-public interfaces. All the non-public interfaces must be in the same
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* package and module; otherwise, proxying them is
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* <a href="#restrictions">not possible</a>.</li>
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* </ol>
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* </li>
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* <li>If at least one proxy interface is in a package that is
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* <em>non-exported</em> and <em>non-open</em>:
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* <ol type="a">
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* <li>if all the proxy interfaces are <em>public</em>, then the proxy class is
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* <em>public</em> in a <em>non-exported</em>, <em>non-open</em> package of
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* <a href="#dynamicmodule"><em>dynamic module</em>.</a>
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* The names of the package and the module are unspecified.</li>
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*
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* <li>if at least one of all the proxy interfaces is <em>non-public</em>, then
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* the proxy class is <em>non-public</em> in the package and module of the
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* non-public interfaces. All the non-public interfaces must be in the same
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* package and module; otherwise, proxying them is
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* <a href="#restrictions">not possible</a>.</li>
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* </ol>
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* </li>
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* </ol>
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*
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* <p>
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* Note that if proxy interfaces with a mix of accessibilities -- for example,
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* an exported public interface and a non-exported non-public interface -- are
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* proxied by the same instance, then the proxy class's accessibility is
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* governed by the least accessible proxy interface.
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* <p>
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* Note that it is possible for arbitrary code to obtain access to a proxy class
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* in an open package with {@link AccessibleObject#setAccessible setAccessible},
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* whereas a proxy class in a non-open package is never accessible to
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* code outside the module of the proxy class.
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*
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* <p>
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* Throughout this specification, a "non-exported package" refers to a package
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* that is not exported to all modules, and a "non-open package" refers to
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* a package that is not open to all modules. Specifically, these terms refer to
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* a package that either is not exported/open by its containing module or is
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* exported/open in a qualified fashion by its containing module.
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*
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* <h3><a id="dynamicmodule">Dynamic Modules</a></h3>
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* <p>
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* A dynamic module is a named module generated at runtime. A proxy class
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* defined in a dynamic module is encapsulated and not accessible to any module.
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* Calling {@link Constructor#newInstance(Object...)} on a proxy class in
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* a dynamic module will throw {@code IllegalAccessException};
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* {@code Proxy.newProxyInstance} method should be used instead.
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*
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* <p>
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* A dynamic module can read the modules of all of the superinterfaces of a proxy
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* class and the modules of the types referenced by all public method signatures
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* of a proxy class. If a superinterface or a referenced type, say {@code T},
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* is in a non-exported package, the {@linkplain Module module} of {@code T} is
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* updated to export the package of {@code T} to the dynamic module.
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*
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* <h3>Methods Duplicated in Multiple Proxy Interfaces</h3>
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*
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* <p>When two or more proxy interfaces contain a method with
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* the same name and parameter signature, the order of the proxy class's
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* interfaces becomes significant. When such a <i>duplicate method</i>
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* is invoked on a proxy instance, the {@code Method} object passed
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* to the invocation handler will not necessarily be the one whose
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* declaring class is assignable from the reference type of the interface
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* that the proxy's method was invoked through. This limitation exists
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* because the corresponding method implementation in the generated proxy
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* class cannot determine which interface it was invoked through.
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* Therefore, when a duplicate method is invoked on a proxy instance,
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* the {@code Method} object for the method in the foremost interface
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* that contains the method (either directly or inherited through a
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* superinterface) in the proxy class's list of interfaces is passed to
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* the invocation handler's {@code invoke} method, regardless of the
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* reference type through which the method invocation occurred.
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*
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* <p>If a proxy interface contains a method with the same name and
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* parameter signature as the {@code hashCode}, {@code equals},
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* or {@code toString} methods of {@code java.lang.Object},
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* when such a method is invoked on a proxy instance, the
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* {@code Method} object passed to the invocation handler will have
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* {@code java.lang.Object} as its declaring class. In other words,
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* the public, non-final methods of {@code java.lang.Object}
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* logically precede all of the proxy interfaces for the determination of
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* which {@code Method} object to pass to the invocation handler.
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*
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* <p>Note also that when a duplicate method is dispatched to an
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* invocation handler, the {@code invoke} method may only throw
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* checked exception types that are assignable to one of the exception
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* types in the {@code throws} clause of the method in <i>all</i> of
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* the proxy interfaces that it can be invoked through. If the
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* {@code invoke} method throws a checked exception that is not
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* assignable to any of the exception types declared by the method in one
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* of the proxy interfaces that it can be invoked through, then an
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* unchecked {@code UndeclaredThrowableException} will be thrown by
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* the invocation on the proxy instance. This restriction means that not
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* all of the exception types returned by invoking
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* {@code getExceptionTypes} on the {@code Method} object
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* passed to the {@code invoke} method can necessarily be thrown
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* successfully by the {@code invoke} method.
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*
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* @author Peter Jones
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* @see InvocationHandler
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* @since 1.3
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* @revised 9
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* @spec JPMS
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*/
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public class Proxy implements java.io.Serializable {
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@java.io.Serial
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private static final long serialVersionUID = -2222568056686623797L;
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/** parameter types of a proxy class constructor */
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private static final Class<?>[] constructorParams =
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{ InvocationHandler.class };
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/**
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* a cache of proxy constructors with
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* {@link Constructor#setAccessible(boolean) accessible} flag already set
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*/
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private static final ClassLoaderValue<Constructor<?>> proxyCache =
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new ClassLoaderValue<>();
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/**
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* System property to revert to generation of proxy class files for version 1.5 (V49).
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* Set to "true" to generate v49 class file format.
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*/
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private static final boolean PROXY_GENERATOR_V49 =
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GetBooleanAction.privilegedGetProperty("jdk.proxy.ProxyGenerator.v49");
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/**
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* the invocation handler for this proxy instance.
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* @serial
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*/
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@SuppressWarnings("serial") // Not statically typed as Serializable
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protected InvocationHandler h;
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/**
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* Prohibits instantiation.
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*/
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private Proxy() {
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}
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/**
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* Constructs a new {@code Proxy} instance from a subclass
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* (typically, a dynamic proxy class) with the specified value
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* for its invocation handler.
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*
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* @param h the invocation handler for this proxy instance
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*
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* @throws NullPointerException if the given invocation handler, {@code h},
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* is {@code null}.
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*/
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protected Proxy(InvocationHandler h) {
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Objects.requireNonNull(h);
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this.h = h;
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}
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/**
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* Returns the {@code java.lang.Class} object for a proxy class
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* given a class loader and an array of interfaces. The proxy class
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* will be defined by the specified class loader and will implement
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* all of the supplied interfaces. If any of the given interfaces
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* is non-public, the proxy class will be non-public. If a proxy class
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* for the same permutation of interfaces has already been defined by the
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* class loader, then the existing proxy class will be returned; otherwise,
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* a proxy class for those interfaces will be generated dynamically
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* and defined by the class loader.
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*
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* @param loader the class loader to define the proxy class
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* @param interfaces the list of interfaces for the proxy class
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* to implement
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* @return a proxy class that is defined in the specified class loader
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* and that implements the specified interfaces
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* @throws IllegalArgumentException if any of the <a href="#restrictions">
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* restrictions</a> on the parameters are violated
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* @throws SecurityException if a security manager, <em>s</em>, is present
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* and any of the following conditions is met:
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* <ul>
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* <li> the given {@code loader} is {@code null} and
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* the caller's class loader is not {@code null} and the
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* invocation of {@link SecurityManager#checkPermission
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* s.checkPermission} with
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* {@code RuntimePermission("getClassLoader")} permission
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* denies access.</li>
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* <li> for each proxy interface, {@code intf},
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* the caller's class loader is not the same as or an
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* ancestor of the class loader for {@code intf} and
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* invocation of {@link SecurityManager#checkPackageAccess
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* s.checkPackageAccess()} denies access to {@code intf}.</li>
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* </ul>
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* @throws NullPointerException if the {@code interfaces} array
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* argument or any of its elements are {@code null}
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*
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* @deprecated Proxy classes generated in a named module are encapsulated
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* and not accessible to code outside its module.
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* {@link Constructor#newInstance(Object...) Constructor.newInstance}
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* will throw {@code IllegalAccessException} when it is called on
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* an inaccessible proxy class.
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* Use {@link #newProxyInstance(ClassLoader, Class[], InvocationHandler)}
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* to create a proxy instance instead.
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*
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* @see <a href="#membership">Package and Module Membership of Proxy Class</a>
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* @revised 9
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* @spec JPMS
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*/
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@Deprecated
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@CallerSensitive
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public static Class<?> getProxyClass(ClassLoader loader,
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Class<?>... interfaces)
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throws IllegalArgumentException
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{
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Class<?> caller = System.getSecurityManager() == null
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? null
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: Reflection.getCallerClass();
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return getProxyConstructor(caller, loader, interfaces)
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.getDeclaringClass();
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}
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/**
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* Returns the {@code Constructor} object of a proxy class that takes a
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* single argument of type {@link InvocationHandler}, given a class loader
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* and an array of interfaces. The returned constructor will have the
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* {@link Constructor#setAccessible(boolean) accessible} flag already set.
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*
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* @param caller passed from a public-facing @CallerSensitive method if
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* SecurityManager is set or {@code null} if there's no
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* SecurityManager
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* @param loader the class loader to define the proxy class
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* @param interfaces the list of interfaces for the proxy class
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* to implement
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* @return a Constructor of the proxy class taking single
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* {@code InvocationHandler} parameter
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*/
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private static Constructor<?> getProxyConstructor(Class<?> caller,
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ClassLoader loader,
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Class<?>... interfaces)
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{
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// optimization for single interface
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if (interfaces.length == 1) {
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Class<?> intf = interfaces[0];
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if (caller != null) {
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checkProxyAccess(caller, loader, intf);
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}
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return proxyCache.sub(intf).computeIfAbsent(
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loader,
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(ld, clv) -> new ProxyBuilder(ld, clv.key()).build()
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);
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} else {
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// interfaces cloned
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final Class<?>[] intfsArray = interfaces.clone();
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if (caller != null) {
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checkProxyAccess(caller, loader, intfsArray);
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}
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final List<Class<?>> intfs = Arrays.asList(intfsArray);
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return proxyCache.sub(intfs).computeIfAbsent(
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loader,
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(ld, clv) -> new ProxyBuilder(ld, clv.key()).build()
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);
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}
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}
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/*
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* Check permissions required to create a Proxy class.
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*
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* To define a proxy class, it performs the access checks as in
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* Class.forName (VM will invoke ClassLoader.checkPackageAccess):
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* 1. "getClassLoader" permission check if loader == null
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* 2. checkPackageAccess on the interfaces it implements
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*
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* To get a constructor and new instance of a proxy class, it performs
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* the package access check on the interfaces it implements
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* as in Class.getConstructor.
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*
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* If an interface is non-public, the proxy class must be defined by
|
|
* the defining loader of the interface. If the caller's class loader
|
|
* is not the same as the defining loader of the interface, the VM
|
|
* will throw IllegalAccessError when the generated proxy class is
|
|
* being defined.
|
|
*/
|
|
private static void checkProxyAccess(Class<?> caller,
|
|
ClassLoader loader,
|
|
Class<?> ... interfaces)
|
|
{
|
|
SecurityManager sm = System.getSecurityManager();
|
|
if (sm != null) {
|
|
ClassLoader ccl = caller.getClassLoader();
|
|
if (loader == null && ccl != null) {
|
|
sm.checkPermission(SecurityConstants.GET_CLASSLOADER_PERMISSION);
|
|
}
|
|
ReflectUtil.checkProxyPackageAccess(ccl, interfaces);
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Builder for a proxy class.
|
|
*
|
|
* If the module is not specified in this ProxyBuilder constructor,
|
|
* it will map from the given loader and interfaces to the module
|
|
* in which the proxy class will be defined.
|
|
*/
|
|
private static final class ProxyBuilder {
|
|
private static final JavaLangAccess JLA = SharedSecrets.getJavaLangAccess();
|
|
|
|
// prefix for all proxy class names
|
|
private static final String proxyClassNamePrefix = "$Proxy";
|
|
|
|
// next number to use for generation of unique proxy class names
|
|
private static final AtomicLong nextUniqueNumber = new AtomicLong();
|
|
|
|
// a reverse cache of defined proxy classes
|
|
private static final ClassLoaderValue<Boolean> reverseProxyCache =
|
|
new ClassLoaderValue<>();
|
|
|
|
private static Class<?> defineProxyClass(Module m, List<Class<?>> interfaces) {
|
|
String proxyPkg = null; // package to define proxy class in
|
|
int accessFlags = Modifier.PUBLIC | Modifier.FINAL;
|
|
|
|
/*
|
|
* Record the package of a non-public proxy interface so that the
|
|
* proxy class will be defined in the same package. Verify that
|
|
* all non-public proxy interfaces are in the same package.
|
|
*/
|
|
for (Class<?> intf : interfaces) {
|
|
int flags = intf.getModifiers();
|
|
if (!Modifier.isPublic(flags)) {
|
|
accessFlags = Modifier.FINAL; // non-public, final
|
|
String pkg = intf.getPackageName();
|
|
if (proxyPkg == null) {
|
|
proxyPkg = pkg;
|
|
} else if (!pkg.equals(proxyPkg)) {
|
|
throw new IllegalArgumentException(
|
|
"non-public interfaces from different packages");
|
|
}
|
|
}
|
|
}
|
|
|
|
if (proxyPkg == null) {
|
|
// all proxy interfaces are public
|
|
proxyPkg = m.isNamed() ? PROXY_PACKAGE_PREFIX + "." + m.getName()
|
|
: PROXY_PACKAGE_PREFIX;
|
|
} else if (proxyPkg.isEmpty() && m.isNamed()) {
|
|
throw new IllegalArgumentException(
|
|
"Unnamed package cannot be added to " + m);
|
|
}
|
|
|
|
if (m.isNamed()) {
|
|
if (!m.getDescriptor().packages().contains(proxyPkg)) {
|
|
throw new InternalError(proxyPkg + " not exist in " + m.getName());
|
|
}
|
|
}
|
|
|
|
/*
|
|
* Choose a name for the proxy class to generate.
|
|
*/
|
|
long num = nextUniqueNumber.getAndIncrement();
|
|
String proxyName = proxyPkg.isEmpty()
|
|
? proxyClassNamePrefix + num
|
|
: proxyPkg + "." + proxyClassNamePrefix + num;
|
|
|
|
ClassLoader loader = getLoader(m);
|
|
trace(proxyName, m, loader, interfaces);
|
|
|
|
/*
|
|
* Generate the specified proxy class.
|
|
*/
|
|
byte[] proxyClassFile = PROXY_GENERATOR_V49
|
|
? ProxyGenerator_v49.generateProxyClass(proxyName, interfaces, accessFlags)
|
|
: ProxyGenerator.generateProxyClass(loader, proxyName, interfaces, accessFlags);
|
|
try {
|
|
Class<?> pc = JLA.defineClass(loader, proxyName, proxyClassFile,
|
|
null, "__dynamic_proxy__");
|
|
reverseProxyCache.sub(pc).putIfAbsent(loader, Boolean.TRUE);
|
|
return pc;
|
|
} catch (ClassFormatError e) {
|
|
/*
|
|
* A ClassFormatError here means that (barring bugs in the
|
|
* proxy class generation code) there was some other
|
|
* invalid aspect of the arguments supplied to the proxy
|
|
* class creation (such as virtual machine limitations
|
|
* exceeded).
|
|
*/
|
|
throw new IllegalArgumentException(e.toString());
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Test if given class is a class defined by
|
|
* {@link #defineProxyClass(Module, List)}
|
|
*/
|
|
static boolean isProxyClass(Class<?> c) {
|
|
return Objects.equals(reverseProxyCache.sub(c).get(c.getClassLoader()),
|
|
Boolean.TRUE);
|
|
}
|
|
|
|
private static boolean isExportedType(Class<?> c) {
|
|
String pn = c.getPackageName();
|
|
return Modifier.isPublic(c.getModifiers()) && c.getModule().isExported(pn);
|
|
}
|
|
|
|
private static boolean isPackagePrivateType(Class<?> c) {
|
|
return !Modifier.isPublic(c.getModifiers());
|
|
}
|
|
|
|
private static String toDetails(Class<?> c) {
|
|
String access = "unknown";
|
|
if (isExportedType(c)) {
|
|
access = "exported";
|
|
} else if (isPackagePrivateType(c)) {
|
|
access = "package-private";
|
|
} else {
|
|
access = "module-private";
|
|
}
|
|
ClassLoader ld = c.getClassLoader();
|
|
return String.format(" %s/%s %s loader %s",
|
|
c.getModule().getName(), c.getName(), access, ld);
|
|
}
|
|
|
|
static void trace(String cn,
|
|
Module module,
|
|
ClassLoader loader,
|
|
List<Class<?>> interfaces) {
|
|
if (isDebug()) {
|
|
System.err.format("PROXY: %s/%s defined by %s%n",
|
|
module.getName(), cn, loader);
|
|
}
|
|
if (isDebug("debug")) {
|
|
interfaces.forEach(c -> System.out.println(toDetails(c)));
|
|
}
|
|
}
|
|
|
|
private static final String DEBUG =
|
|
GetPropertyAction.privilegedGetProperty("jdk.proxy.debug", "");
|
|
|
|
private static boolean isDebug() {
|
|
return !DEBUG.isEmpty();
|
|
}
|
|
private static boolean isDebug(String flag) {
|
|
return DEBUG.equals(flag);
|
|
}
|
|
|
|
// ProxyBuilder instance members start here....
|
|
|
|
private final List<Class<?>> interfaces;
|
|
private final Module module;
|
|
ProxyBuilder(ClassLoader loader, List<Class<?>> interfaces) {
|
|
if (!VM.isModuleSystemInited()) {
|
|
throw new InternalError("Proxy is not supported until "
|
|
+ "module system is fully initialized");
|
|
}
|
|
if (interfaces.size() > 65535) {
|
|
throw new IllegalArgumentException("interface limit exceeded: "
|
|
+ interfaces.size());
|
|
}
|
|
|
|
Set<Class<?>> refTypes = referencedTypes(loader, interfaces);
|
|
|
|
// IAE if violates any restrictions specified in newProxyInstance
|
|
validateProxyInterfaces(loader, interfaces, refTypes);
|
|
|
|
this.interfaces = interfaces;
|
|
this.module = mapToModule(loader, interfaces, refTypes);
|
|
assert getLoader(module) == loader;
|
|
}
|
|
|
|
ProxyBuilder(ClassLoader loader, Class<?> intf) {
|
|
this(loader, Collections.singletonList(intf));
|
|
}
|
|
|
|
/**
|
|
* Generate a proxy class and return its proxy Constructor with
|
|
* accessible flag already set. If the target module does not have access
|
|
* to any interface types, IllegalAccessError will be thrown by the VM
|
|
* at defineClass time.
|
|
*
|
|
* Must call the checkProxyAccess method to perform permission checks
|
|
* before calling this.
|
|
*/
|
|
Constructor<?> build() {
|
|
Class<?> proxyClass = defineProxyClass(module, interfaces);
|
|
final Constructor<?> cons;
|
|
try {
|
|
cons = proxyClass.getConstructor(constructorParams);
|
|
} catch (NoSuchMethodException e) {
|
|
throw new InternalError(e.toString(), e);
|
|
}
|
|
AccessController.doPrivileged(new PrivilegedAction<Void>() {
|
|
public Void run() {
|
|
cons.setAccessible(true);
|
|
return null;
|
|
}
|
|
});
|
|
return cons;
|
|
}
|
|
|
|
/**
|
|
* Validate the given proxy interfaces and the given referenced types
|
|
* are visible to the defining loader.
|
|
*
|
|
* @throws IllegalArgumentException if it violates the restrictions
|
|
* specified in {@link Proxy#newProxyInstance}
|
|
*/
|
|
private static void validateProxyInterfaces(ClassLoader loader,
|
|
List<Class<?>> interfaces,
|
|
Set<Class<?>> refTypes)
|
|
{
|
|
Map<Class<?>, Boolean> interfaceSet = new IdentityHashMap<>(interfaces.size());
|
|
for (Class<?> intf : interfaces) {
|
|
/*
|
|
* Verify that the class loader resolves the name of this
|
|
* interface to the same Class object.
|
|
*/
|
|
ensureVisible(loader, intf);
|
|
|
|
/*
|
|
* Verify that the Class object actually represents an
|
|
* interface.
|
|
*/
|
|
if (!intf.isInterface()) {
|
|
throw new IllegalArgumentException(intf.getName() + " is not an interface");
|
|
}
|
|
|
|
/*
|
|
* Verify that this interface is not a duplicate.
|
|
*/
|
|
if (interfaceSet.put(intf, Boolean.TRUE) != null) {
|
|
throw new IllegalArgumentException("repeated interface: " + intf.getName());
|
|
}
|
|
}
|
|
|
|
for (Class<?> type : refTypes) {
|
|
ensureVisible(loader, type);
|
|
}
|
|
}
|
|
|
|
/*
|
|
* Returns all types referenced by all public non-static method signatures of
|
|
* the proxy interfaces
|
|
*/
|
|
private static Set<Class<?>> referencedTypes(ClassLoader loader,
|
|
List<Class<?>> interfaces) {
|
|
var types = new HashSet<Class<?>>();
|
|
for (var intf : interfaces) {
|
|
for (Method m : intf.getMethods()) {
|
|
if (!Modifier.isStatic(m.getModifiers())) {
|
|
addElementType(types, m.getReturnType());
|
|
addElementTypes(types, m.getSharedParameterTypes());
|
|
addElementTypes(types, m.getSharedExceptionTypes());
|
|
}
|
|
}
|
|
}
|
|
return types;
|
|
}
|
|
|
|
private static void addElementTypes(HashSet<Class<?>> types,
|
|
Class<?> ... classes) {
|
|
for (var cls : classes) {
|
|
addElementType(types, cls);
|
|
}
|
|
}
|
|
|
|
private static void addElementType(HashSet<Class<?>> types,
|
|
Class<?> cls) {
|
|
var type = getElementType(cls);
|
|
if (!type.isPrimitive()) {
|
|
types.add(type);
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Returns the module that the generated proxy class belongs to.
|
|
*
|
|
* If all proxy interfaces are public and in exported packages,
|
|
* then the proxy class is in unnamed module.
|
|
*
|
|
* If any of proxy interface is package-private, then the proxy class
|
|
* is in the same module of the package-private interface.
|
|
*
|
|
* If all proxy interfaces are public and at least one in a non-exported
|
|
* package, then the proxy class is in a dynamic module in a
|
|
* non-exported package. Reads edge and qualified exports are added
|
|
* for dynamic module to access.
|
|
*/
|
|
private static Module mapToModule(ClassLoader loader,
|
|
List<Class<?>> interfaces,
|
|
Set<Class<?>> refTypes) {
|
|
Map<Class<?>, Module> modulePrivateTypes = new HashMap<>();
|
|
Map<Class<?>, Module> packagePrivateTypes = new HashMap<>();
|
|
for (Class<?> intf : interfaces) {
|
|
Module m = intf.getModule();
|
|
if (Modifier.isPublic(intf.getModifiers())) {
|
|
// module-private types
|
|
if (!m.isExported(intf.getPackageName())) {
|
|
modulePrivateTypes.put(intf, m);
|
|
}
|
|
} else {
|
|
packagePrivateTypes.put(intf, m);
|
|
}
|
|
}
|
|
|
|
// all proxy interfaces are public and exported, the proxy class
|
|
// is in unnamed module. Such proxy class is accessible to
|
|
// any unnamed module and named module that can read unnamed module
|
|
if (packagePrivateTypes.isEmpty() && modulePrivateTypes.isEmpty()) {
|
|
return loader != null ? loader.getUnnamedModule()
|
|
: BootLoader.getUnnamedModule();
|
|
}
|
|
|
|
if (packagePrivateTypes.size() > 0) {
|
|
// all package-private types must be in the same runtime package
|
|
// i.e. same package name and same module (named or unnamed)
|
|
//
|
|
// Configuration will fail if M1 and in M2 defined by the same loader
|
|
// and both have the same package p (so no need to check class loader)
|
|
if (packagePrivateTypes.size() > 1 &&
|
|
(packagePrivateTypes.keySet().stream() // more than one package
|
|
.map(Class::getPackageName).distinct().count() > 1 ||
|
|
packagePrivateTypes.values().stream() // or more than one module
|
|
.distinct().count() > 1)) {
|
|
throw new IllegalArgumentException(
|
|
"non-public interfaces from different packages");
|
|
}
|
|
|
|
// all package-private types are in the same module (named or unnamed)
|
|
Module target = null;
|
|
for (Module m : packagePrivateTypes.values()) {
|
|
if (getLoader(m) != loader) {
|
|
// the specified loader is not the same class loader
|
|
// of the non-public interface
|
|
throw new IllegalArgumentException(
|
|
"non-public interface is not defined by the given loader");
|
|
}
|
|
target = m;
|
|
}
|
|
|
|
// validate if the target module can access all other interfaces
|
|
for (Class<?> intf : interfaces) {
|
|
Module m = intf.getModule();
|
|
if (m == target) continue;
|
|
|
|
if (!target.canRead(m) || !m.isExported(intf.getPackageName(), target)) {
|
|
throw new IllegalArgumentException(target + " can't access " + intf.getName());
|
|
}
|
|
}
|
|
|
|
// return the module of the package-private interface
|
|
return target;
|
|
}
|
|
|
|
// All proxy interfaces are public and at least one in a non-exported
|
|
// package. So maps to a dynamic proxy module and add reads edge
|
|
// and qualified exports, if necessary
|
|
Module target = getDynamicModule(loader);
|
|
|
|
// set up proxy class access to proxy interfaces and types
|
|
// referenced in the method signature
|
|
Set<Class<?>> types = new HashSet<>(interfaces);
|
|
types.addAll(refTypes);
|
|
for (Class<?> c : types) {
|
|
ensureAccess(target, c);
|
|
}
|
|
return target;
|
|
}
|
|
|
|
/*
|
|
* Ensure the given module can access the given class.
|
|
*/
|
|
private static void ensureAccess(Module target, Class<?> c) {
|
|
Module m = c.getModule();
|
|
// add read edge and qualified export for the target module to access
|
|
if (!target.canRead(m)) {
|
|
Modules.addReads(target, m);
|
|
}
|
|
String pn = c.getPackageName();
|
|
if (!m.isExported(pn, target)) {
|
|
Modules.addExports(m, pn, target);
|
|
}
|
|
}
|
|
|
|
/*
|
|
* Ensure the given class is visible to the class loader.
|
|
*/
|
|
private static void ensureVisible(ClassLoader ld, Class<?> c) {
|
|
Class<?> type = null;
|
|
try {
|
|
type = Class.forName(c.getName(), false, ld);
|
|
} catch (ClassNotFoundException e) {
|
|
}
|
|
if (type != c) {
|
|
throw new IllegalArgumentException(c.getName() +
|
|
" referenced from a method is not visible from class loader");
|
|
}
|
|
}
|
|
|
|
private static Class<?> getElementType(Class<?> type) {
|
|
Class<?> e = type;
|
|
while (e.isArray()) {
|
|
e = e.getComponentType();
|
|
}
|
|
return e;
|
|
}
|
|
|
|
private static final ClassLoaderValue<Module> dynProxyModules =
|
|
new ClassLoaderValue<>();
|
|
private static final AtomicInteger counter = new AtomicInteger();
|
|
|
|
/*
|
|
* Define a dynamic module for the generated proxy classes in
|
|
* a non-exported package named com.sun.proxy.$MODULE.
|
|
*
|
|
* Each class loader will have one dynamic module.
|
|
*/
|
|
private static Module getDynamicModule(ClassLoader loader) {
|
|
return dynProxyModules.computeIfAbsent(loader, (ld, clv) -> {
|
|
// create a dynamic module and setup module access
|
|
String mn = "jdk.proxy" + counter.incrementAndGet();
|
|
String pn = PROXY_PACKAGE_PREFIX + "." + mn;
|
|
ModuleDescriptor descriptor =
|
|
ModuleDescriptor.newModule(mn, Set.of(SYNTHETIC))
|
|
.packages(Set.of(pn))
|
|
.build();
|
|
Module m = Modules.defineModule(ld, descriptor, null);
|
|
Modules.addReads(m, Proxy.class.getModule());
|
|
// java.base to create proxy instance
|
|
Modules.addExports(m, pn, Object.class.getModule());
|
|
return m;
|
|
});
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Returns a proxy instance for the specified interfaces
|
|
* that dispatches method invocations to the specified invocation
|
|
* handler.
|
|
* <p>
|
|
* <a id="restrictions">{@code IllegalArgumentException} will be thrown
|
|
* if any of the following restrictions is violated:</a>
|
|
* <ul>
|
|
* <li>All of {@code Class} objects in the given {@code interfaces} array
|
|
* must represent interfaces, not classes or primitive types.
|
|
*
|
|
* <li>No two elements in the {@code interfaces} array may
|
|
* refer to identical {@code Class} objects.
|
|
*
|
|
* <li>All of the interface types must be visible by name through the
|
|
* specified class loader. In other words, for class loader
|
|
* {@code cl} and every interface {@code i}, the following
|
|
* expression must be true:<p>
|
|
* {@code Class.forName(i.getName(), false, cl) == i}
|
|
*
|
|
* <li>All of the types referenced by all
|
|
* public method signatures of the specified interfaces
|
|
* and those inherited by their superinterfaces
|
|
* must be visible by name through the specified class loader.
|
|
*
|
|
* <li>All non-public interfaces must be in the same package
|
|
* and module, defined by the specified class loader and
|
|
* the module of the non-public interfaces can access all of
|
|
* the interface types; otherwise, it would not be possible for
|
|
* the proxy class to implement all of the interfaces,
|
|
* regardless of what package it is defined in.
|
|
*
|
|
* <li>For any set of member methods of the specified interfaces
|
|
* that have the same signature:
|
|
* <ul>
|
|
* <li>If the return type of any of the methods is a primitive
|
|
* type or void, then all of the methods must have that same
|
|
* return type.
|
|
* <li>Otherwise, one of the methods must have a return type that
|
|
* is assignable to all of the return types of the rest of the
|
|
* methods.
|
|
* </ul>
|
|
*
|
|
* <li>The resulting proxy class must not exceed any limits imposed
|
|
* on classes by the virtual machine. For example, the VM may limit
|
|
* the number of interfaces that a class may implement to 65535; in
|
|
* that case, the size of the {@code interfaces} array must not
|
|
* exceed 65535.
|
|
* </ul>
|
|
*
|
|
* <p>Note that the order of the specified proxy interfaces is
|
|
* significant: two requests for a proxy class with the same combination
|
|
* of interfaces but in a different order will result in two distinct
|
|
* proxy classes.
|
|
*
|
|
* @param loader the class loader to define the proxy class
|
|
* @param interfaces the list of interfaces for the proxy class
|
|
* to implement
|
|
* @param h the invocation handler to dispatch method invocations to
|
|
* @return a proxy instance with the specified invocation handler of a
|
|
* proxy class that is defined by the specified class loader
|
|
* and that implements the specified interfaces
|
|
* @throws IllegalArgumentException if any of the <a href="#restrictions">
|
|
* restrictions</a> on the parameters are violated
|
|
* @throws SecurityException if a security manager, <em>s</em>, is present
|
|
* and any of the following conditions is met:
|
|
* <ul>
|
|
* <li> the given {@code loader} is {@code null} and
|
|
* the caller's class loader is not {@code null} and the
|
|
* invocation of {@link SecurityManager#checkPermission
|
|
* s.checkPermission} with
|
|
* {@code RuntimePermission("getClassLoader")} permission
|
|
* denies access;</li>
|
|
* <li> for each proxy interface, {@code intf},
|
|
* the caller's class loader is not the same as or an
|
|
* ancestor of the class loader for {@code intf} and
|
|
* invocation of {@link SecurityManager#checkPackageAccess
|
|
* s.checkPackageAccess()} denies access to {@code intf};</li>
|
|
* <li> any of the given proxy interfaces is non-public and the
|
|
* caller class is not in the same {@linkplain Package runtime package}
|
|
* as the non-public interface and the invocation of
|
|
* {@link SecurityManager#checkPermission s.checkPermission} with
|
|
* {@code ReflectPermission("newProxyInPackage.{package name}")}
|
|
* permission denies access.</li>
|
|
* </ul>
|
|
* @throws NullPointerException if the {@code interfaces} array
|
|
* argument or any of its elements are {@code null}, or
|
|
* if the invocation handler, {@code h}, is
|
|
* {@code null}
|
|
*
|
|
* @see <a href="#membership">Package and Module Membership of Proxy Class</a>
|
|
* @revised 9
|
|
* @spec JPMS
|
|
*/
|
|
@CallerSensitive
|
|
public static Object newProxyInstance(ClassLoader loader,
|
|
Class<?>[] interfaces,
|
|
InvocationHandler h) {
|
|
Objects.requireNonNull(h);
|
|
|
|
final Class<?> caller = System.getSecurityManager() == null
|
|
? null
|
|
: Reflection.getCallerClass();
|
|
|
|
/*
|
|
* Look up or generate the designated proxy class and its constructor.
|
|
*/
|
|
Constructor<?> cons = getProxyConstructor(caller, loader, interfaces);
|
|
|
|
return newProxyInstance(caller, cons, h);
|
|
}
|
|
|
|
private static Object newProxyInstance(Class<?> caller, // null if no SecurityManager
|
|
Constructor<?> cons,
|
|
InvocationHandler h) {
|
|
/*
|
|
* Invoke its constructor with the designated invocation handler.
|
|
*/
|
|
try {
|
|
if (caller != null) {
|
|
checkNewProxyPermission(caller, cons.getDeclaringClass());
|
|
}
|
|
|
|
return cons.newInstance(new Object[]{h});
|
|
} catch (IllegalAccessException | InstantiationException e) {
|
|
throw new InternalError(e.toString(), e);
|
|
} catch (InvocationTargetException e) {
|
|
Throwable t = e.getCause();
|
|
if (t instanceof RuntimeException) {
|
|
throw (RuntimeException) t;
|
|
} else {
|
|
throw new InternalError(t.toString(), t);
|
|
}
|
|
}
|
|
}
|
|
|
|
private static void checkNewProxyPermission(Class<?> caller, Class<?> proxyClass) {
|
|
SecurityManager sm = System.getSecurityManager();
|
|
if (sm != null) {
|
|
if (ReflectUtil.isNonPublicProxyClass(proxyClass)) {
|
|
ClassLoader ccl = caller.getClassLoader();
|
|
ClassLoader pcl = proxyClass.getClassLoader();
|
|
|
|
// do permission check if the caller is in a different runtime package
|
|
// of the proxy class
|
|
String pkg = proxyClass.getPackageName();
|
|
String callerPkg = caller.getPackageName();
|
|
|
|
if (pcl != ccl || !pkg.equals(callerPkg)) {
|
|
sm.checkPermission(new ReflectPermission("newProxyInPackage." + pkg));
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Returns the class loader for the given module.
|
|
*/
|
|
private static ClassLoader getLoader(Module m) {
|
|
PrivilegedAction<ClassLoader> pa = m::getClassLoader;
|
|
return AccessController.doPrivileged(pa);
|
|
}
|
|
|
|
/**
|
|
* Returns true if the given class is a proxy class.
|
|
*
|
|
* @implNote The reliability of this method is important for the ability
|
|
* to use it to make security decisions, so its implementation should
|
|
* not just test if the class in question extends {@code Proxy}.
|
|
*
|
|
* @param cl the class to test
|
|
* @return {@code true} if the class is a proxy class and
|
|
* {@code false} otherwise
|
|
* @throws NullPointerException if {@code cl} is {@code null}
|
|
*
|
|
* @revised 9
|
|
* @spec JPMS
|
|
*/
|
|
public static boolean isProxyClass(Class<?> cl) {
|
|
return Proxy.class.isAssignableFrom(cl) && ProxyBuilder.isProxyClass(cl);
|
|
}
|
|
|
|
/**
|
|
* Returns the invocation handler for the specified proxy instance.
|
|
*
|
|
* @param proxy the proxy instance to return the invocation handler for
|
|
* @return the invocation handler for the proxy instance
|
|
* @throws IllegalArgumentException if the argument is not a
|
|
* proxy instance
|
|
* @throws SecurityException if a security manager, <em>s</em>, is present
|
|
* and the caller's class loader is not the same as or an
|
|
* ancestor of the class loader for the invocation handler
|
|
* and invocation of {@link SecurityManager#checkPackageAccess
|
|
* s.checkPackageAccess()} denies access to the invocation
|
|
* handler's class.
|
|
*/
|
|
@CallerSensitive
|
|
public static InvocationHandler getInvocationHandler(Object proxy)
|
|
throws IllegalArgumentException
|
|
{
|
|
/*
|
|
* Verify that the object is actually a proxy instance.
|
|
*/
|
|
if (!isProxyClass(proxy.getClass())) {
|
|
throw new IllegalArgumentException("not a proxy instance");
|
|
}
|
|
|
|
final Proxy p = (Proxy) proxy;
|
|
final InvocationHandler ih = p.h;
|
|
if (System.getSecurityManager() != null) {
|
|
Class<?> ihClass = ih.getClass();
|
|
Class<?> caller = Reflection.getCallerClass();
|
|
if (ReflectUtil.needsPackageAccessCheck(caller.getClassLoader(),
|
|
ihClass.getClassLoader()))
|
|
{
|
|
ReflectUtil.checkPackageAccess(ihClass);
|
|
}
|
|
}
|
|
|
|
return ih;
|
|
}
|
|
|
|
private static final String PROXY_PACKAGE_PREFIX = ReflectUtil.PROXY_PACKAGE;
|
|
}
|