253 lines
8.5 KiB
C++
253 lines
8.5 KiB
C++
/*
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* Copyright 2018 The Android Open Source Project
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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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* http://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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*/
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#include <base/bind.h>
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#include <base/bind_helpers.h>
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#include <base/logging.h>
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#include <gtest/gtest.h>
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#include <future>
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#include "message_loop_thread.h"
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#include "repeating_timer.h"
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using bluetooth::common::MessageLoopThread;
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using bluetooth::common::RepeatingTimer;
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// Allowed error between the expected and actual delay for DoInThreadDelayed().
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constexpr uint32_t delay_error_ms = 100;
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/**
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* Unit tests to verify Task Scheduler.
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*/
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class RepeatingTimerTest : public ::testing::Test {
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public:
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void ShouldNotHappen() { FAIL() << "Should not happen"; }
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void IncreaseTaskCounter(int scheduled_tasks, std::promise<void>* promise) {
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counter_++;
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if (counter_ == scheduled_tasks) {
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promise->set_value();
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}
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}
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void GetName(std::string* name, std::promise<void>* promise) {
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char my_name[256];
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pthread_getname_np(pthread_self(), my_name, sizeof(my_name));
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name->append(my_name);
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promise->set_value();
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}
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void SleepAndIncreaseCounter(std::promise<void>* promise, int sleep_ms) {
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promise->set_value();
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std::this_thread::sleep_for(std::chrono::milliseconds(sleep_ms));
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counter_++;
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}
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void VerifyDelayTimeAndSleep(std::chrono::steady_clock::time_point start_time,
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int interval_ms, int scheduled_tasks,
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int task_length_ms,
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std::promise<void>* promise) {
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auto end_time = std::chrono::steady_clock::now();
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auto actual_delay = std::chrono::duration_cast<std::chrono::milliseconds>(
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end_time - start_time);
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counter_++;
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int64_t scheduled_delay_ms = interval_ms * counter_;
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if (counter_ == scheduled_tasks) {
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promise->set_value();
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}
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ASSERT_NEAR(scheduled_delay_ms, actual_delay.count(), delay_error_ms);
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std::this_thread::sleep_for(std::chrono::milliseconds(task_length_ms));
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}
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void VerifyMultipleDelayedTasks(int scheduled_tasks, int task_length_ms,
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int interval_between_tasks_ms) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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message_loop_thread.EnableRealTimeScheduling();
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auto future = promise_->get_future();
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auto start_time = std::chrono::steady_clock::now();
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timer_->SchedulePeriodic(
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message_loop_thread.GetWeakPtr(), FROM_HERE,
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base::BindRepeating(&RepeatingTimerTest::VerifyDelayTimeAndSleep,
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base::Unretained(this), start_time,
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interval_between_tasks_ms, scheduled_tasks,
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task_length_ms, promise_),
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base::TimeDelta::FromMilliseconds(interval_between_tasks_ms));
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future.get();
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timer_->CancelAndWait();
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}
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void CancelRepeatingTimerAndWait() { timer_->CancelAndWait(); }
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protected:
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void SetUp() override {
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::testing::Test::SetUp();
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counter_ = 0;
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timer_ = new RepeatingTimer();
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promise_ = new std::promise<void>();
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}
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void TearDown() override {
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if (promise_ != nullptr) {
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delete promise_;
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promise_ = nullptr;
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}
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if (timer_ != nullptr) {
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delete timer_;
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timer_ = nullptr;
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}
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}
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int counter_;
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RepeatingTimer* timer_;
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std::promise<void>* promise_;
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};
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TEST_F(RepeatingTimerTest, initial_is_not_scheduled) {
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ASSERT_FALSE(timer_->IsScheduled());
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}
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TEST_F(RepeatingTimerTest, cancel_without_scheduling) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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EXPECT_FALSE(timer_->IsScheduled());
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timer_->CancelAndWait();
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EXPECT_FALSE(timer_->IsScheduled());
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}
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TEST_F(RepeatingTimerTest, periodic_run) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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auto future = promise_->get_future();
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uint32_t delay_ms = 5;
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int num_tasks = 200;
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timer_->SchedulePeriodic(
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message_loop_thread.GetWeakPtr(), FROM_HERE,
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base::BindRepeating(&RepeatingTimerTest::IncreaseTaskCounter,
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base::Unretained(this), num_tasks, promise_),
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base::TimeDelta::FromMilliseconds(delay_ms));
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future.get();
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ASSERT_GE(counter_, num_tasks);
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timer_->CancelAndWait();
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}
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TEST_F(RepeatingTimerTest, schedule_periodic_task_zero_interval) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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uint32_t interval_ms = 0;
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ASSERT_FALSE(timer_->SchedulePeriodic(
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message_loop_thread.GetWeakPtr(), FROM_HERE,
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base::BindRepeating(&RepeatingTimerTest::ShouldNotHappen,
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base::Unretained(this)),
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base::TimeDelta::FromMilliseconds(interval_ms)));
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std::this_thread::sleep_for(std::chrono::milliseconds(delay_error_ms));
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}
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// Verify that deleting the timer without cancelling it will cancel the task
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TEST_F(RepeatingTimerTest, periodic_delete_without_cancel) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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uint32_t delay_ms = 5;
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timer_->SchedulePeriodic(
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message_loop_thread.GetWeakPtr(), FROM_HERE,
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base::BindRepeating(&RepeatingTimerTest::ShouldNotHappen,
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base::Unretained(this)),
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base::TimeDelta::FromMilliseconds(delay_ms));
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delete timer_;
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timer_ = nullptr;
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std::this_thread::sleep_for(std::chrono::milliseconds(delay_error_ms));
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}
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TEST_F(RepeatingTimerTest, cancel_single_task_near_fire_no_race_condition) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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uint32_t delay_ms = 5;
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timer_->SchedulePeriodic(message_loop_thread.GetWeakPtr(), FROM_HERE,
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base::DoNothing(),
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base::TimeDelta::FromMilliseconds(delay_ms));
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std::this_thread::sleep_for(std::chrono::milliseconds(delay_ms));
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timer_->CancelAndWait();
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}
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TEST_F(RepeatingTimerTest, cancel_periodic_task) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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uint32_t delay_ms = 5;
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int num_tasks = 5;
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auto future = promise_->get_future();
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timer_->SchedulePeriodic(
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message_loop_thread.GetWeakPtr(), FROM_HERE,
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base::BindRepeating(&RepeatingTimerTest::IncreaseTaskCounter,
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base::Unretained(this), num_tasks, promise_),
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base::TimeDelta::FromMilliseconds(delay_ms));
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future.wait();
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timer_->CancelAndWait();
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std::this_thread::sleep_for(
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std::chrono::milliseconds(delay_ms + delay_error_ms));
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int counter = counter_;
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std::this_thread::sleep_for(
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std::chrono::milliseconds(delay_ms + delay_error_ms));
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ASSERT_EQ(counter, counter_);
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}
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// Schedule 10 short periodic tasks with interval 1 ms between each; verify the
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// functionality
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TEST_F(RepeatingTimerTest, schedule_multiple_delayed_tasks) {
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VerifyMultipleDelayedTasks(10, 0, 1);
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}
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// Schedule 10 periodic tasks with interval 2 ms between each and each takes 1
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// ms; verify the functionality
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TEST_F(RepeatingTimerTest, schedule_multiple_delayed_slow_tasks) {
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VerifyMultipleDelayedTasks(10, 1, 2);
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}
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TEST_F(RepeatingTimerTest,
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message_loop_thread_down_cancel_scheduled_periodic_task) {
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std::string name = "test_thread";
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MessageLoopThread message_loop_thread(name);
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message_loop_thread.StartUp();
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std::string my_name;
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auto future = promise_->get_future();
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uint32_t delay_ms = 5;
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int num_tasks = 5;
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timer_->SchedulePeriodic(
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message_loop_thread.GetWeakPtr(), FROM_HERE,
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base::BindRepeating(&RepeatingTimerTest::IncreaseTaskCounter,
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base::Unretained(this), num_tasks, promise_),
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base::TimeDelta::FromMilliseconds(delay_ms));
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future.wait();
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message_loop_thread.ShutDown();
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std::this_thread::sleep_for(
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std::chrono::milliseconds(delay_ms + delay_error_ms));
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int counter = counter_;
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std::this_thread::sleep_for(
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std::chrono::milliseconds(delay_ms + delay_error_ms));
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ASSERT_EQ(counter, counter_);
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}
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