Files
nearby/internal/platform/implementation/linux/mutext_test.cc
T
Timothy Hutchins ff9438a3ed Started implementing Linux specific platform
This is the start of the implementing for the Linux platform.

I aim to make this as similar to the Windows platform as possible,
although due to the fundamental difference in the two OS's, there will
be things that need to be different.
As such, I will be using the Windows platform files as a base, and
reimplementing the functions with Linux equivalents.

I am sure this will have bugs, which by my best attempt will be fixed
when found.
2023-05-19 19:19:15 -05:00

106 lines
2.5 KiB
C++

// Copyright 2021 Google LLC
//
// 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
//
// https://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.
#include "internal/platform/implementation/linux/mutex.h"
#include <future> // NOLINT
#include "gtest/gtest.h"
class MutexTests : public testing::Test {
public:
class MutexTest {
public:
MutexTest(nearby::linux::Mutex& mutex) : mutex_(mutex) {}
std::future<bool> WaitForLock() { // NOLINT
return std::async(std::launch::async,
// for this lambda you need C++14
[this]() mutable {
absl::MutexLock(&mutex_.GetMutex());
return true;
});
}
void PostEvent() {
absl::MutexLock(&mutex_.GetMutex());
mutex_.Unlock();
}
private:
nearby::linux::Mutex& mutex_;
};
};
TEST_F(MutexTests, SuccessfulRecursiveCreation) {
// Arrange
nearby::linux::Mutex mutex =
nearby::linux::Mutex(nearby::linux::Mutex::Mode::kRecursive);
// Act
std::recursive_mutex& actual = mutex.GetRecursiveMutex();
// Assert
ASSERT_TRUE(actual.native_handle() != nullptr);
}
TEST_F(MutexTests, SuccessfulCreation) {
// Arrange
nearby::linux::Mutex mutex(nearby::linux::Mutex::Mode::kRegular);
// Act
absl::Mutex& actual = mutex.GetMutex();
// Assert
ASSERT_TRUE(&actual != nullptr);
}
TEST_F(MutexTests, SuccessfulSignal) {
// Arrange
nearby::linux::Mutex mutex(nearby::linux::Mutex::Mode::kRegular);
nearby::linux::Mutex& mutexRef = mutex;
MutexTest mutexTest(mutexRef);
mutex.Lock();
// Act
auto result = mutexTest.WaitForLock();
mutex.Unlock();
// Assert
ASSERT_TRUE(result.get());
}
TEST_F(MutexTests, SuccessfulRecursiveSignal) {
// Arrange
nearby::linux::Mutex mutex(nearby::linux::Mutex::Mode::kRecursive);
nearby::linux::Mutex& mutexRef = mutex;
MutexTest mutexTest(mutexRef);
mutex.Lock();
mutex.Lock();
mutex.Lock();
// Act
auto result = mutexTest.WaitForLock();
mutex.Unlock();
mutex.Unlock();
mutex.Unlock();
// Assert
ASSERT_TRUE(result.get());
}