mirror of
https://github.com/kidfromjupiter/nearby.git
synced 2026-09-14 22:56:12 -04:00
193 lines
6.1 KiB
C++
193 lines
6.1 KiB
C++
// Copyright 2021 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 "platform/impl/windows/scheduled_executor.h"
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#include <utility>
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#include "platform/impl/windows/test_data.h"
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#include "gtest/gtest.h"
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TEST(ScheduledExecutorTests, ExecuteSucceeds) {
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// Arrange
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std::string expected(RUNNABLE_0_TEXT.c_str());
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std::unique_ptr<location::nearby::windows::ScheduledExecutor>
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submittableExecutor =
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std::make_unique<location::nearby::windows::ScheduledExecutor>();
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std::string output = std::string();
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// Container to note threads that ran
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std::unique_ptr<std::vector<DWORD>> threadIds =
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std::make_unique<std::vector<DWORD>>();
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CRITICAL_SECTION crit_sec;
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InitializeCriticalSection(&crit_sec);
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threadIds->push_back(GetCurrentThreadId());
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// Act
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submittableExecutor->Execute([&output, &threadIds, &crit_sec]() {
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EnterCriticalSection(&crit_sec);
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threadIds->push_back(GetCurrentThreadId());
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output.append(RUNNABLE_0_TEXT.c_str());
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LeaveCriticalSection(&crit_sec);
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});
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submittableExecutor->Shutdown();
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DeleteCriticalSection(&crit_sec);
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// Assert
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// We should've run 1 time on the main thread, and 1 times on the
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// workerThread
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ASSERT_EQ(threadIds->size(), 2);
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// We should still be on the main thread
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ASSERT_EQ(GetCurrentThreadId(), threadIds->at(0));
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// We should've run all runnables on the worker thread
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ASSERT_EQ(output, expected);
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}
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TEST(ScheduledExecutorTests, ScheduleSucceeds) {
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// Arrange
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std::string expected(RUNNABLE_0_TEXT.c_str());
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std::unique_ptr<location::nearby::windows::ScheduledExecutor>
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submittableExecutor =
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std::make_unique<location::nearby::windows::ScheduledExecutor>();
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std::string output = std::string();
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// Container to note threads that ran
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std::unique_ptr<std::vector<DWORD>> threadIds =
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std::make_unique<std::vector<DWORD>>();
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CRITICAL_SECTION crit_sec;
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InitializeCriticalSection(&crit_sec);
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threadIds->push_back(GetCurrentThreadId());
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std::chrono::system_clock::time_point timeNow =
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std::chrono::system_clock::now();
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std::chrono::system_clock::time_point timeExecuted;
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// Act
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submittableExecutor->Schedule(
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[&output, &threadIds, &timeExecuted, &crit_sec]() {
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EnterCriticalSection(&crit_sec);
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timeExecuted = std::chrono::system_clock::now();
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threadIds->push_back(GetCurrentThreadId());
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output.append(RUNNABLE_0_TEXT.c_str());
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LeaveCriticalSection(&crit_sec);
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},
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absl::Milliseconds(50));
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SleepEx(100, true); // Yield the thread
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submittableExecutor->Shutdown();
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DeleteCriticalSection(&crit_sec);
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auto difference = std::chrono::duration_cast<std::chrono::milliseconds>(
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timeExecuted - timeNow)
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.count();
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// Assert
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// We should've run 1 time on the main thread, and 1 times on the
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// workerThread
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ASSERT_TRUE(difference >= 50) << "difference was: " << difference;
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ASSERT_TRUE(difference < 100) << "difference was: " << difference;
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ASSERT_EQ(threadIds->size(), 2);
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// We should still be on the main thread
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ASSERT_EQ(GetCurrentThreadId(), threadIds->at(0));
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// We should've run all runnables on the worker thread
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ASSERT_EQ(output, expected);
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}
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TEST(ScheduledExecutorTests, CancelSucceeds) {
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// Arrange
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std::string expected("");
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std::unique_ptr<location::nearby::windows::ScheduledExecutor>
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submittableExecutor =
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std::make_unique<location::nearby::windows::ScheduledExecutor>();
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std::string output = std::string();
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// Container to note threads that ran
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std::unique_ptr<std::vector<DWORD>> threadIds =
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std::make_unique<std::vector<DWORD>>();
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threadIds->push_back(GetCurrentThreadId());
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// Act
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auto cancelable = submittableExecutor->Schedule(
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[&output, &threadIds]() {
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threadIds->push_back(GetCurrentThreadId());
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output.append(RUNNABLE_0_TEXT.c_str());
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},
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absl::Milliseconds(1000));
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SleepEx(100, true); // Yield the thread
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auto actual = cancelable->Cancel();
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submittableExecutor->Shutdown();
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// Assert
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ASSERT_TRUE(actual);
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ASSERT_EQ(threadIds->size(), 1);
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// We should still be on the main thread
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ASSERT_EQ(GetCurrentThreadId(), threadIds->at(0));
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// We should've run all runnables on the worker thread
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ASSERT_EQ(output, expected);
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}
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TEST(ScheduledExecutorTests, CancelAfterStartedFails) {
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// Arrange
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std::string expected(RUNNABLE_0_TEXT.c_str());
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std::unique_ptr<location::nearby::windows::ScheduledExecutor>
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submittableExecutor =
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std::make_unique<location::nearby::windows::ScheduledExecutor>();
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std::string output = std::string();
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// Container to note threads that ran
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std::unique_ptr<std::vector<DWORD>> threadIds =
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std::make_unique<std::vector<DWORD>>();
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CRITICAL_SECTION crit_sec;
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InitializeCriticalSection(&crit_sec);
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threadIds->push_back(GetCurrentThreadId());
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// Act
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auto cancelable = submittableExecutor->Schedule(
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[&output, &threadIds, &crit_sec]() {
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EnterCriticalSection(&crit_sec);
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threadIds->push_back(GetCurrentThreadId());
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output.append(RUNNABLE_0_TEXT.c_str());
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LeaveCriticalSection(&crit_sec);
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},
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absl::Milliseconds(100));
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SleepEx(1000, true); // Yield the thread
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auto actual = cancelable->Cancel();
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submittableExecutor->Shutdown();
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DeleteCriticalSection(&crit_sec);
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// Assert
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ASSERT_FALSE(actual);
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ASSERT_EQ(threadIds->size(), 2);
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// We should still be on the main thread
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ASSERT_EQ(GetCurrentThreadId(), threadIds->at(0));
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// We should've run all runnables on the worker thread
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ASSERT_EQ(output, expected);
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}
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