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4.x
src/test/java/io/reactivex/rxjava4/internal/schedulers/InstantPeriodicTaskTest.java
236 строк
7 KB
David Karnok
4.x: Convert from JUnit 4 to JUnit 6 (#8202)
30 июн 2026, 12:01
Не верифицирован
30 июн 2026, 12:01
531388f
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/* * Copyright (c) 2016-present, RxJava Contributors. * * 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 io.reactivex.rxjava4.internal.schedulers; import static org.junit.jupiter.api.Assertions.*; import java.util.List; import java.util.concurrent.*; import org.junit.jupiter.api.Test; import io.reactivex.rxjava4.core.RxJavaTest; import io.reactivex.rxjava4.exceptions.TestException; import io.reactivex.rxjava4.internal.functions.Functions; import io.reactivex.rxjava4.plugins.RxJavaPlugins; import io.reactivex.rxjava4.testsupport.TestHelper; public class InstantPeriodicTaskTest extends RxJavaTest { @Test public void taskCrash() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); List<Throwable> errors = TestHelper.trackPluginErrors(); try { InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); try { task.call(); fail("Should have thrown!"); } catch (TestException excepted) { // excepted } TestHelper.assertUndeliverable(errors, 0, TestException.class); } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } @Test public void dispose() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); try { InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); assertFalse(task.isDisposed()); task.dispose(); assertTrue(task.isDisposed()); task.dispose(); assertTrue(task.isDisposed()); } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } @Test public void dispose2() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); try { InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); task.setFirst(new FutureTask<Void>(Functions.EMPTY_RUNNABLE, null)); task.setRest(new FutureTask<Void>(Functions.EMPTY_RUNNABLE, null)); assertFalse(task.isDisposed()); task.dispose(); assertTrue(task.isDisposed()); task.dispose(); assertTrue(task.isDisposed()); } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } @Test public void dispose2CurrentThread() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); try { InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); task.runner = Thread.currentThread(); task.setFirst(new FutureTask<Void>(Functions.EMPTY_RUNNABLE, null)); task.setRest(new FutureTask<Void>(Functions.EMPTY_RUNNABLE, null)); assertFalse(task.isDisposed()); task.dispose(); assertTrue(task.isDisposed()); task.dispose(); assertTrue(task.isDisposed()); } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } @Test public void dispose3() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); try { InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); task.dispose(); FutureTask<Void> f1 = new FutureTask<>(Functions.EMPTY_RUNNABLE, null); task.setFirst(f1); assertTrue(f1.isCancelled()); FutureTask<Void> f2 = new FutureTask<>(Functions.EMPTY_RUNNABLE, null); task.setRest(f2); assertTrue(f2.isCancelled()); } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } @Test public void disposeOnCurrentThread() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); try { InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); task.runner = Thread.currentThread(); task.dispose(); FutureTask<Void> f1 = new FutureTask<>(Functions.EMPTY_RUNNABLE, null); task.setFirst(f1); assertTrue(f1.isCancelled()); FutureTask<Void> f2 = new FutureTask<>(Functions.EMPTY_RUNNABLE, null); task.setRest(f2); assertTrue(f2.isCancelled()); } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } @Test public void firstCancelRace() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); try { for (int i = 0; i < TestHelper.RACE_LONG_LOOPS; i++) { final InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); final FutureTask<Void> f1 = new FutureTask<>(Functions.EMPTY_RUNNABLE, null); Runnable r1 = () -> task.setFirst(f1); Runnable r2 = task::dispose; TestHelper.race(r1, r2); assertTrue(f1.isCancelled()); assertTrue(task.isDisposed()); } } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } @Test public void restCancelRace() throws Exception { ExecutorService exec = Executors.newSingleThreadExecutor(); try { for (int i = 0; i < TestHelper.RACE_LONG_LOOPS; i++) { final InstantPeriodicTask task = new InstantPeriodicTask(() -> { throw new TestException(); }, exec); final FutureTask<Void> f1 = new FutureTask<>(Functions.EMPTY_RUNNABLE, null); Runnable r1 = () -> task.setRest(f1); Runnable r2 = task::dispose; TestHelper.race(r1, r2); assertTrue(f1.isCancelled()); assertTrue(task.isDisposed()); } } finally { exec.shutdownNow(); RxJavaPlugins.reset(); } } }