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ProxyUtilities.java
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ProxyUtilities.java
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/*
* Copyright (c) 2014, 2024 Oracle and/or its affiliates. All rights reserved.
*
* This program and the accompanying materials are made available under the
* terms of the Eclipse Public License v. 2.0, which is available at
* http://www.eclipse.org/legal/epl-2.0.
*
* This Source Code may also be made available under the following Secondary
* Licenses when the conditions for such availability set forth in the
* Eclipse Public License v. 2.0 are satisfied: GNU General Public License,
* version 2 with the GNU Classpath Exception, which is available at
* https://www.gnu.org/software/classpath/license.html.
*
* SPDX-License-Identifier: EPL-2.0 OR GPL-2.0 WITH Classpath-exception-2.0
*/
package org.jvnet.hk2.internal;
import java.lang.reflect.Proxy;
import java.security.AccessController;
import java.security.PrivilegedAction;
import java.util.HashMap;
import java.util.concurrent.locks.ReentrantLock;
import org.glassfish.hk2.api.ActiveDescriptor;
import org.glassfish.hk2.api.Injectee;
import org.glassfish.hk2.api.MultiException;
import org.glassfish.hk2.api.ProxyCtl;
import org.glassfish.hk2.api.ServiceLocator;
import javassist.util.proxy.MethodHandler;
import javassist.util.proxy.ProxyFactory;
import javassist.util.proxy.ProxyObject;
/**
* Utilities around proxying
*
* @author jwells
*
*/
public class ProxyUtilities {
private final static ReentrantLock proxyCreationLock = new ReentrantLock();
private final ReentrantLock lock = new ReentrantLock();
private final HashMap<ClassLoader, DelegatingClassLoader> superClassToDelegator = new HashMap<ClassLoader, DelegatingClassLoader>();
/**
* We put the anchor as the value even though we don't use it in order to
* make it easier to catch memory leaks here. See MemoryTest
*
* @param superclass
* @param interfaces
* @param callback
* @param useJDKProxy
* @param anchor This is put into the WeakMap to make sure that IF this
* map should leak that it will leak big, making it easier to detect
* @return
*/
private <T> T secureCreate(final Class<?> superclass,
final Class<?>[] interfaces,
final MethodHandler callback,
boolean useJDKProxy,
ServiceLocator anchor) {
/* construct the classloader where the generated proxy will be created --
* this classloader must have visibility into the javaassist classloader as well as
* the superclass' classloader
*/
final ClassLoader loader = AccessController.doPrivileged(new PrivilegedAction<ClassLoader>() {
@Override
public ClassLoader run() {
ClassLoader retVal = superclass.getClassLoader();
if (retVal == null) {
try {
retVal = ClassLoader.getSystemClassLoader();
}
catch (SecurityException se) {
throw new IllegalStateException(
"Insufficient privilege to get system classloader while looking for classloader of " +
superclass.getName(), se);
}
}
if (retVal == null) {
throw new IllegalStateException("Could not find system classloader or classloader of " + superclass.getName());
}
return retVal;
}
});
DelegatingClassLoader initDelegatingLoader;
lock.lock();
try {
initDelegatingLoader = superClassToDelegator.get(loader);
if (initDelegatingLoader == null) {
initDelegatingLoader = AccessController.doPrivileged(new PrivilegedAction<DelegatingClassLoader>() {
@Override
public DelegatingClassLoader run() {
return new DelegatingClassLoader(
loader,
ProxyFactory.class.getClassLoader(),
ProxyCtl.class.getClassLoader());
}
});
superClassToDelegator.put(loader, initDelegatingLoader);
}
} finally {
lock.unlock();
}
final DelegatingClassLoader delegatingLoader = initDelegatingLoader;
if (useJDKProxy) {
return AccessController.doPrivileged(new PrivilegedAction<T>() {
@SuppressWarnings("unchecked")
@Override
public T run() {
return (T) Proxy.newProxyInstance(delegatingLoader, interfaces,
new MethodInterceptorInvocationHandler(callback));
}
});
}
return AccessController.doPrivileged(new PrivilegedAction<T>() {
@SuppressWarnings("unchecked")
@Override
public T run() {
proxyCreationLock.lock();
try {
ProxyFactory.ClassLoaderProvider originalProvider = ProxyFactory.classLoaderProvider;
ProxyFactory.classLoaderProvider = new ProxyFactory.ClassLoaderProvider() {
@Override
public ClassLoader get(ProxyFactory arg0) {
return delegatingLoader;
}
};
try {
ProxyFactory proxyFactory = new ProxyFactory();
proxyFactory.setInterfaces(interfaces);
proxyFactory.setSuperclass(superclass);
Class<?> proxyClass = proxyFactory.createClass();
try {
T proxy = (T) proxyClass.newInstance();
((ProxyObject) proxy).setHandler(callback);
return proxy;
} catch (Exception e1) {
throw new RuntimeException(e1);
}
}
finally {
ProxyFactory.classLoaderProvider = originalProvider;
}
} finally {
proxyCreationLock.unlock();
}
}
});
}
@SuppressWarnings("unchecked")
public <T> T generateProxy(Class<?> requestedClass,
ServiceLocatorImpl locator,
ActiveDescriptor<T> root,
ServiceHandleImpl<T> handle,
Injectee injectee) {
boolean isInterface = (requestedClass == null) ? false : requestedClass.isInterface() ;
final Class<?> proxyClass;
Class<?> iFaces[];
if (isInterface) {
proxyClass = requestedClass;
iFaces = new Class<?>[2];
iFaces[0] = proxyClass;
iFaces[1] = ProxyCtl.class;
}
else {
proxyClass = Utilities.getFactoryAwareImplementationClass(root);
iFaces = Utilities.getInterfacesForProxy(root.getContractTypes());
}
T proxy;
try {
proxy = (T) secureCreate(proxyClass,
iFaces,
new MethodInterceptorImpl(locator, root, handle, injectee),
isInterface, locator);
}
catch (Throwable th) {
Exception addMe = new IllegalArgumentException("While attempting to create a Proxy for " + proxyClass.getName() +
" in scope " + root.getScope() + " an error occured while creating the proxy");
if (th instanceof MultiException) {
MultiException me = (MultiException) th;
me.addError(addMe);
throw me;
}
MultiException me = new MultiException(th);
me.addError(addMe);
throw me;
}
return proxy;
}
public void releaseCache() {
lock.lock();
try {
superClassToDelegator.clear();
} finally {
lock.unlock();
}
}
}