33081e58f8
Change-Id: I3a624b9cb164dd4a49606f311f71ea0115afe30a Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/2238572 Commit-Queue: Victor Gomes <victorgomes@chromium.org> Auto-Submit: Victor Gomes <victorgomes@chromium.org> Reviewed-by: Igor Sheludko <ishell@chromium.org> Reviewed-by: Camillo Bruni <cbruni@chromium.org> Cr-Commit-Position: refs/heads/master@{#68296}
283 lines
8.5 KiB
C++
283 lines
8.5 KiB
C++
// Copyright 2014 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "src/libplatform/default-platform.h"
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#include "src/base/platform/semaphore.h"
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#include "src/base/platform/time.h"
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#include "testing/gmock/include/gmock/gmock.h"
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using testing::InSequence;
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using testing::StrictMock;
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namespace v8 {
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namespace platform {
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namespace default_platform_unittest {
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namespace {
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struct MockTask : public Task {
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// See issue v8:8185
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~MockTask() /* override */ { Die(); }
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MOCK_METHOD(void, Run, (), (override));
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MOCK_METHOD(void, Die, ());
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};
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struct MockIdleTask : public IdleTask {
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// See issue v8:8185
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~MockIdleTask() /* override */ { Die(); }
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MOCK_METHOD(void, Run, (double deadline_in_seconds), (override));
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MOCK_METHOD(void, Die, ());
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};
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class DefaultPlatformWithMockTime : public DefaultPlatform {
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public:
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explicit DefaultPlatformWithMockTime(int thread_pool_size = 0)
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: DefaultPlatform(thread_pool_size, IdleTaskSupport::kEnabled, nullptr) {
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mock_time_ = 0.0;
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SetTimeFunctionForTesting([]() { return mock_time_; });
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}
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void IncreaseTime(double seconds) { mock_time_ += seconds; }
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private:
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static double mock_time_;
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};
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double DefaultPlatformWithMockTime::mock_time_ = 0.0;
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template <typename Platform>
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class PlatformTest : public ::testing::Test {
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public:
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Isolate* isolate() { return reinterpret_cast<Isolate*>(dummy_); }
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Platform* platform() { return &platform_; }
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std::shared_ptr<TaskRunner> task_runner() {
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if (!task_runner_) {
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task_runner_ = platform_.GetForegroundTaskRunner(isolate());
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}
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DCHECK_NOT_NULL(task_runner_);
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return task_runner_;
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}
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// These methods take ownership of the task. Tests might still reference them,
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// if the tasks are expected to still exist.
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void CallOnForegroundThread(Task* task) {
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task_runner()->PostTask(std::unique_ptr<Task>(task));
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}
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void CallNonNestableOnForegroundThread(Task* task) {
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task_runner()->PostNonNestableTask(std::unique_ptr<Task>(task));
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}
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void CallDelayedOnForegroundThread(Task* task, double delay_in_seconds) {
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task_runner()->PostDelayedTask(std::unique_ptr<Task>(task),
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delay_in_seconds);
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}
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void CallIdleOnForegroundThread(IdleTask* task) {
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task_runner()->PostIdleTask(std::unique_ptr<IdleTask>(task));
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}
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bool PumpMessageLoop() { return platform_.PumpMessageLoop(isolate()); }
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private:
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Platform platform_;
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InSequence in_sequence_;
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std::shared_ptr<TaskRunner> task_runner_;
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int dummy_ = 0;
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};
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class DefaultPlatformTest : public PlatformTest<DefaultPlatform> {};
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class DefaultPlatformTestWithMockTime
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: public PlatformTest<DefaultPlatformWithMockTime> {};
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} // namespace
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TEST_F(DefaultPlatformTest, PumpMessageLoop) {
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EXPECT_FALSE(platform()->PumpMessageLoop(isolate()));
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StrictMock<MockTask>* task = new StrictMock<MockTask>;
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CallOnForegroundThread(task);
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EXPECT_CALL(*task, Run());
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EXPECT_CALL(*task, Die());
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EXPECT_TRUE(PumpMessageLoop());
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EXPECT_FALSE(PumpMessageLoop());
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}
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TEST_F(DefaultPlatformTest, PumpMessageLoopWithTaskRunner) {
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std::shared_ptr<TaskRunner> taskrunner =
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platform()->GetForegroundTaskRunner(isolate());
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EXPECT_FALSE(PumpMessageLoop());
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StrictMock<MockTask>* task = new StrictMock<MockTask>;
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taskrunner->PostTask(std::unique_ptr<Task>(task));
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EXPECT_CALL(*task, Run());
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EXPECT_CALL(*task, Die());
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EXPECT_TRUE(PumpMessageLoop());
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EXPECT_FALSE(PumpMessageLoop());
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}
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TEST_F(DefaultPlatformTest, PumpMessageLoopNested) {
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EXPECT_FALSE(PumpMessageLoop());
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StrictMock<MockTask>* nestable_task1 = new StrictMock<MockTask>;
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StrictMock<MockTask>* non_nestable_task2 = new StrictMock<MockTask>;
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StrictMock<MockTask>* nestable_task3 = new StrictMock<MockTask>;
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StrictMock<MockTask>* non_nestable_task4 = new StrictMock<MockTask>;
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CallOnForegroundThread(nestable_task1);
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CallNonNestableOnForegroundThread(non_nestable_task2);
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CallOnForegroundThread(nestable_task3);
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CallNonNestableOnForegroundThread(non_nestable_task4);
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// Nestable tasks are FIFO; non-nestable tasks are FIFO. A task being
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// non-nestable may cause it to be executed later, but not earlier.
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EXPECT_CALL(*nestable_task1, Run).WillOnce([this]() {
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EXPECT_TRUE(PumpMessageLoop());
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});
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EXPECT_CALL(*nestable_task3, Run());
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EXPECT_CALL(*nestable_task3, Die());
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EXPECT_CALL(*nestable_task1, Die());
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EXPECT_TRUE(PumpMessageLoop());
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EXPECT_CALL(*non_nestable_task2, Run());
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EXPECT_CALL(*non_nestable_task2, Die());
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EXPECT_TRUE(PumpMessageLoop());
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EXPECT_CALL(*non_nestable_task4, Run());
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EXPECT_CALL(*non_nestable_task4, Die());
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EXPECT_TRUE(PumpMessageLoop());
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EXPECT_FALSE(PumpMessageLoop());
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}
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TEST_F(DefaultPlatformTestWithMockTime, PumpMessageLoopDelayed) {
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EXPECT_FALSE(PumpMessageLoop());
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StrictMock<MockTask>* task1 = new StrictMock<MockTask>;
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StrictMock<MockTask>* task2 = new StrictMock<MockTask>;
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CallDelayedOnForegroundThread(task2, 100);
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CallDelayedOnForegroundThread(task1, 10);
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EXPECT_FALSE(PumpMessageLoop());
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platform()->IncreaseTime(11);
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EXPECT_CALL(*task1, Run());
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EXPECT_CALL(*task1, Die());
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EXPECT_TRUE(PumpMessageLoop());
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EXPECT_FALSE(PumpMessageLoop());
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platform()->IncreaseTime(90);
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EXPECT_CALL(*task2, Run());
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EXPECT_CALL(*task2, Die());
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EXPECT_TRUE(PumpMessageLoop());
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}
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TEST_F(DefaultPlatformTestWithMockTime, PumpMessageLoopNoStarvation) {
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EXPECT_FALSE(PumpMessageLoop());
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StrictMock<MockTask>* task1 = new StrictMock<MockTask>;
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StrictMock<MockTask>* task2 = new StrictMock<MockTask>;
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StrictMock<MockTask>* task3 = new StrictMock<MockTask>;
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CallOnForegroundThread(task1);
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CallDelayedOnForegroundThread(task2, 10);
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platform()->IncreaseTime(11);
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EXPECT_CALL(*task1, Run());
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EXPECT_CALL(*task1, Die());
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EXPECT_TRUE(PumpMessageLoop());
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CallOnForegroundThread(task3);
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EXPECT_CALL(*task2, Run());
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EXPECT_CALL(*task2, Die());
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EXPECT_TRUE(PumpMessageLoop());
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EXPECT_CALL(*task3, Run());
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EXPECT_CALL(*task3, Die());
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EXPECT_TRUE(PumpMessageLoop());
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}
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TEST_F(DefaultPlatformTestWithMockTime,
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PendingDelayedTasksAreDestroyedOnShutdown) {
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StrictMock<MockTask>* task = new StrictMock<MockTask>;
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CallDelayedOnForegroundThread(task, 10);
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EXPECT_CALL(*task, Die());
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}
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TEST_F(DefaultPlatformTestWithMockTime, RunIdleTasks) {
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StrictMock<MockIdleTask>* task = new StrictMock<MockIdleTask>;
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CallIdleOnForegroundThread(task);
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EXPECT_CALL(*task, Run(42.0 + 23.0));
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EXPECT_CALL(*task, Die());
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platform()->IncreaseTime(23.0);
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platform()->RunIdleTasks(isolate(), 42.0);
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}
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TEST_F(DefaultPlatformTestWithMockTime,
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PendingIdleTasksAreDestroyedOnShutdown) {
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StrictMock<MockIdleTask>* task = new StrictMock<MockIdleTask>;
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CallIdleOnForegroundThread(task);
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EXPECT_CALL(*task, Die());
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}
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namespace {
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class TestBackgroundTask : public Task {
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public:
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explicit TestBackgroundTask(base::Semaphore* sem, bool* executed)
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: sem_(sem), executed_(executed) {}
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~TestBackgroundTask() override { Die(); }
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MOCK_METHOD(void, Die, ());
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void Run() override {
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*executed_ = true;
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sem_->Signal();
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}
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private:
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base::Semaphore* sem_;
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bool* executed_;
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};
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} // namespace
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TEST(CustomDefaultPlatformTest, RunBackgroundTask) {
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DefaultPlatform platform(1);
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base::Semaphore sem(0);
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bool task_executed = false;
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StrictMock<TestBackgroundTask>* task =
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new StrictMock<TestBackgroundTask>(&sem, &task_executed);
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EXPECT_CALL(*task, Die());
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platform.CallOnWorkerThread(std::unique_ptr<Task>(task));
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EXPECT_TRUE(sem.WaitFor(base::TimeDelta::FromSeconds(1)));
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EXPECT_TRUE(task_executed);
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}
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TEST(CustomDefaultPlatformTest, PostForegroundTaskAfterPlatformTermination) {
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std::shared_ptr<TaskRunner> foreground_taskrunner;
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{
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DefaultPlatformWithMockTime platform(1);
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int dummy;
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Isolate* isolate = reinterpret_cast<Isolate*>(&dummy);
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foreground_taskrunner = platform.GetForegroundTaskRunner(isolate);
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}
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// It should still be possible to post foreground tasks, even when the
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// platform does not exist anymore.
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StrictMock<MockTask>* task1 = new StrictMock<MockTask>;
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EXPECT_CALL(*task1, Die());
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foreground_taskrunner->PostTask(std::unique_ptr<Task>(task1));
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StrictMock<MockTask>* task2 = new StrictMock<MockTask>;
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EXPECT_CALL(*task2, Die());
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foreground_taskrunner->PostDelayedTask(std::unique_ptr<Task>(task2), 10);
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StrictMock<MockIdleTask>* task3 = new StrictMock<MockIdleTask>;
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EXPECT_CALL(*task3, Die());
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foreground_taskrunner->PostIdleTask(std::unique_ptr<IdleTask>(task3));
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}
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} // namespace default_platform_unittest
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} // namespace platform
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} // namespace v8
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