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guava-tests/test/com/google/common/base/FinalizableReferenceQueueClassLoaderUnloadingTest.java
166 строк
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cpovirk
Use equality assertions instead of object-identity assertions for `Throwable`, `Class`, and `Enum` (if that one came up).
14 апр 2026, 18:07
14 апр 2026, 18:07
21a7198
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/* * Copyright (C) 2005 The Guava Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ package com.google.common.base; import static com.google.common.base.StandardSystemProperty.JAVA_CLASS_PATH; import static com.google.common.base.StandardSystemProperty.PATH_SEPARATOR; import static com.google.common.truth.Truth.assertThat; import com.google.common.annotations.GwtIncompatible; import com.google.common.annotations.J2ktIncompatible; import com.google.common.collect.ImmutableList; import com.google.common.testing.GcFinalization; import java.io.File; import java.lang.ref.WeakReference; import java.lang.reflect.Constructor; import java.lang.reflect.Field; import java.net.MalformedURLException; import java.net.URL; import java.net.URLClassLoader; import java.util.concurrent.atomic.AtomicReference; import org.jspecify.annotations.NullUnmarked; import org.junit.Test; import org.junit.runner.RunWith; import org.junit.runners.JUnit4; /** * Tests that the {@code ClassLoader} of {@link FinalizableReferenceQueue} can be unloaded. These * tests are separate from {@link FinalizableReferenceQueueTest} so that they can be excluded from * coverage runs, as the coverage system interferes with them. * * @author Eamonn McManus */ @AndroidIncompatible @GwtIncompatible @J2ktIncompatible @RunWith(JUnit4.class) @NullUnmarked public class FinalizableReferenceQueueClassLoaderUnloadingTest { /* * The following tests check that the use of FinalizableReferenceQueue does not prevent the * ClassLoader that loaded that class from later being garbage-collected. If anything continues * to reference the FinalizableReferenceQueue class then its ClassLoader cannot be * garbage-collected, even if there are no more instances of FinalizableReferenceQueue itself. * The code in FinalizableReferenceQueue goes to considerable trouble to ensure that there are * no such references and the tests here check that that trouble has not been in vain. * * When we reference FinalizableReferenceQueue in this test, we are referencing a class that is * loaded by this test and that will obviously remain loaded for as long as the test is running. * So in order to check ClassLoader garbage collection we need to create a new ClassLoader and * make it load its own version of FinalizableReferenceQueue. Then we need to interact with that * parallel version through reflection in order to exercise the parallel * FinalizableReferenceQueue, and then check that the parallel ClassLoader can be * garbage-collected after that. */ public static class MyFinalizableWeakReference extends FinalizableWeakReference<Object> { public MyFinalizableWeakReference(Object x, FinalizableReferenceQueue queue) { super(x, queue); } @Override public void finalizeReferent() {} } private WeakReference<ClassLoader> useFrqInSeparateLoader() throws Exception { ClassLoader myLoader = getClass().getClassLoader(); URLClassLoader sepLoader = new URLClassLoader(getClassPathUrls(), myLoader.getParent()); // sepLoader is the loader that we will use to load the parallel FinalizableReferenceQueue (FRQ) // and friends, and that we will eventually expect to see garbage-collected. The assumption // is that the ClassLoader of this test is a URLClassLoader, and that it loads FRQ itself // rather than delegating to a parent ClassLoader. If this assumption is violated the test will // fail and will need to be rewritten. Class<?> frqC = FinalizableReferenceQueue.class; Class<?> sepFrqC = sepLoader.loadClass(frqC.getName()); assertThat(frqC).isNotEqualTo(sepFrqC); // Check the assumptions above. // FRQ tries to load the Finalizer class (for the reference-collecting thread) in a few ways. // If the class is accessible to the system ClassLoader (ClassLoader.getSystemClassLoader()) // then FRQ does not bother to load Finalizer.class through a separate ClassLoader. That happens // in our test environment, which foils the purpose of this test, so we disable the logic for // our test by setting a static field. We are changing the field in the parallel version of FRQ // and each test creates its own one of those, so there is no test interference here. Class<?> sepFrqSystemLoaderC = sepLoader.loadClass(FinalizableReferenceQueue.SystemLoader.class.getName()); Field disabled = sepFrqSystemLoaderC.getDeclaredField("disabled"); disabled.setAccessible(true); disabled.set(null, true); // Now make a parallel FRQ and an associated FinalizableWeakReference to an object, in order to // exercise some classes from the parallel ClassLoader. AtomicReference<Object> sepFrqA = new AtomicReference<Object>(sepFrqC.getDeclaredConstructor().newInstance()); Class<?> sepFwrC = sepLoader.loadClass(MyFinalizableWeakReference.class.getName()); Constructor<?> sepFwrCons = sepFwrC.getConstructor(Object.class, sepFrqC); // The object that we will wrap in FinalizableWeakReference is a Stopwatch. Class<?> sepStopwatchC = sepLoader.loadClass(Stopwatch.class.getName()); assertThat(sepLoader).isSameInstanceAs(sepStopwatchC.getClassLoader()); AtomicReference<Object> sepStopwatchA = new AtomicReference<Object>(sepStopwatchC.getMethod("createUnstarted").invoke(null)); AtomicReference<WeakReference<?>> sepStopwatchRef = new AtomicReference<WeakReference<?>>( (WeakReference<?>) sepFwrCons.newInstance(sepStopwatchA.get(), sepFrqA.get())); assertThat(sepStopwatchA.get()).isNotNull(); // Clear all references to the Stopwatch and wait for it to be gc'd. sepStopwatchA.set(null); GcFinalization.awaitClear(sepStopwatchRef.get()); // Return a weak reference to the parallel ClassLoader. This is the reference that should // eventually become clear if there are no other references to the ClassLoader. return new WeakReference<ClassLoader>(sepLoader); } /** * Tests that the use of a {@link FinalizableReferenceQueue} does not subsequently prevent the * loader of that class from being garbage-collected. */ @Test public void testUnloadable() throws Exception { WeakReference<ClassLoader> loaderRef = useFrqInSeparateLoader(); GcFinalization.awaitClear(loaderRef); } private URL[] getClassPathUrls() { ClassLoader classLoader = getClass().getClassLoader(); return classLoader instanceof URLClassLoader ? ((URLClassLoader) classLoader).getURLs() : parseJavaClassPath().toArray(new URL[0]); } /** * Returns the URLs in the class path specified by the {@code java.class.path} {@linkplain * System#getProperty system property}. */ // TODO(b/65488446): Make this a public API. private static ImmutableList<URL> parseJavaClassPath() { ImmutableList.Builder<URL> urls = ImmutableList.builder(); for (String entry : Splitter.on(PATH_SEPARATOR.value()).split(JAVA_CLASS_PATH.value())) { try { try { urls.add(new File(entry).toURI().toURL()); } catch (SecurityException e) { // File.toURI checks to see if the file is a directory urls.add(new URL("file", null, new File(entry).getAbsolutePath())); } } catch (MalformedURLException e) { throw new AssertionError("malformed class path entry: " + entry, e); } } return urls.build(); } }