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The test could fail if threads needed a bit more time to spin up. Test only change. PiperOrigin-RevId: 561097187
130 lines
3.3 KiB
C++
130 lines
3.3 KiB
C++
// Copyright 2020 Google LLC
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// https://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "internal/platform/multi_thread_executor.h"
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#include <atomic>
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#include "gtest/gtest.h"
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#include "absl/synchronization/mutex.h"
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#include "absl/time/clock.h"
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#include "absl/time/time.h"
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#include "internal/platform/exception.h"
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namespace nearby {
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namespace {
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const int kMaxThreads = 5;
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}
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TEST(MultiThreadExecutorTest, ConstructorDestructorWorks) {
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MultiThreadExecutor executor(kMaxThreads);
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}
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TEST(MultiThreadExecutorTest, CanExecute) {
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absl::CondVar cond;
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std::atomic_bool done = false;
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MultiThreadExecutor executor(kMaxThreads);
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executor.Execute([&done, &cond]() {
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done = true;
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cond.SignalAll();
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});
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absl::Mutex mutex;
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{
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absl::MutexLock lock(&mutex);
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if (!done) {
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cond.WaitWithTimeout(&mutex, absl::Seconds(1));
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}
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}
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EXPECT_TRUE(done);
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}
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TEST(MultiThreadExecutorTest, JobsExecuteInParallel) {
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absl::Mutex mutex;
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absl::CondVar thread_cond;
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absl::CondVar test_cond;
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MultiThreadExecutor executor(kMaxThreads);
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int count = 0;
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for (int i = 0; i < kMaxThreads; ++i) {
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executor.Execute([&]() {
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absl::MutexLock lock(&mutex);
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count++;
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test_cond.Signal();
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thread_cond.Wait(&mutex);
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count--;
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test_cond.Signal();
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});
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}
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{
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absl::MutexLock lock(&mutex);
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while (count < kMaxThreads) {
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if (test_cond.WaitWithTimeout(&mutex, absl::Seconds(30))) break;
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}
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}
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EXPECT_EQ(count, kMaxThreads);
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thread_cond.SignalAll();
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{
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absl::MutexLock lock(&mutex);
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while (count > 0) {
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if (test_cond.WaitWithTimeout(&mutex, absl::Seconds(30))) break;
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}
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}
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EXPECT_EQ(count, 0);
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}
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TEST(MultiThreadExecutorTest, CanSubmit) {
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MultiThreadExecutor executor(kMaxThreads);
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Future<bool> future;
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bool submitted =
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executor.Submit<bool>([]() { return ExceptionOr<bool>{true}; }, &future);
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EXPECT_TRUE(submitted);
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EXPECT_TRUE(future.Get().result());
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}
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struct ThreadCheckTestClass {
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MultiThreadExecutor executor{kMaxThreads};
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int value ABSL_GUARDED_BY(executor) = 0;
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void incValue() ABSL_EXCLUSIVE_LOCKS_REQUIRED(executor) { value++; }
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int getValue() ABSL_EXCLUSIVE_LOCKS_REQUIRED(executor) { return value; }
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};
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TEST(MultiThreadExecutorTest, ThreadCheck_ExecuteRunnable) {
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ThreadCheckTestClass test_class;
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test_class.executor.Execute(
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[&test_class]() ABSL_EXCLUSIVE_LOCKS_REQUIRED(test_class.executor) {
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test_class.incValue();
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});
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}
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TEST(MultiThreadExecutorTest, ThreadCheck_SubmitCallable) {
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ThreadCheckTestClass test_class;
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Future<int> future;
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bool submitted = test_class.executor.Submit<int>(
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[&test_class]() ABSL_EXCLUSIVE_LOCKS_REQUIRED(test_class.executor) {
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return ExceptionOr<int>{test_class.getValue()};
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},
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&future);
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EXPECT_TRUE(submitted);
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EXPECT_EQ(future.Get().result(), 0);
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}
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} // namespace nearby
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