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159 lines
5.2 KiB
C++
159 lines
5.2 KiB
C++
// Copyright 2013 The Flutter 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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#define FML_USED_ON_EMBEDDER
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#include "flutter/fml/message_loop_task_queues.h"
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#include "flutter/fml/message_loop_impl.h"
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namespace fml {
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std::mutex MessageLoopTaskQueues::creation_mutex_;
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fml::RefPtr<MessageLoopTaskQueues> MessageLoopTaskQueues::instance_;
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fml::RefPtr<MessageLoopTaskQueues> MessageLoopTaskQueues::GetInstance() {
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std::scoped_lock creation(creation_mutex_);
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if (!instance_) {
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instance_ = fml::MakeRefCounted<MessageLoopTaskQueues>();
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}
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return instance_;
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}
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TaskQueueId MessageLoopTaskQueues::CreateTaskQueue() {
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std::scoped_lock creation(queue_meta_mutex_);
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TaskQueueId loop_id = task_queue_id_counter_;
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++task_queue_id_counter_;
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observers_mutexes_.push_back(std::make_unique<std::mutex>());
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delayed_tasks_mutexes_.push_back(std::make_unique<std::mutex>());
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wakeable_mutexes_.push_back(std::make_unique<std::mutex>());
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task_observers_.push_back(TaskObservers());
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delayed_tasks_.push_back(DelayedTaskQueue());
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wakeables_.push_back(NULL);
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return loop_id;
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}
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MessageLoopTaskQueues::MessageLoopTaskQueues()
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: task_queue_id_counter_(0), order_(0) {}
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MessageLoopTaskQueues::~MessageLoopTaskQueues() = default;
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void MessageLoopTaskQueues::Dispose(TaskQueueId queue_id) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kTasks));
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delayed_tasks_[queue_id] = {};
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}
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void MessageLoopTaskQueues::RegisterTask(TaskQueueId queue_id,
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fml::closure task,
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fml::TimePoint target_time) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kTasks));
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size_t order = order_++;
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delayed_tasks_[queue_id].push({order, std::move(task), target_time});
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WakeUp(queue_id, delayed_tasks_[queue_id].top().GetTargetTime());
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}
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bool MessageLoopTaskQueues::HasPendingTasks(TaskQueueId queue_id) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kTasks));
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return !delayed_tasks_[queue_id].empty();
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}
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void MessageLoopTaskQueues::GetTasksToRunNow(
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TaskQueueId queue_id,
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FlushType type,
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std::vector<fml::closure>& invocations) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kTasks));
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const auto now = fml::TimePoint::Now();
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DelayedTaskQueue& tasks = delayed_tasks_[queue_id];
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while (!tasks.empty()) {
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const auto& top = tasks.top();
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if (top.GetTargetTime() > now) {
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break;
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}
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invocations.emplace_back(std::move(top.GetTask()));
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tasks.pop();
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if (type == FlushType::kSingle) {
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break;
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}
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}
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if (tasks.empty()) {
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WakeUp(queue_id, fml::TimePoint::Max());
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} else {
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WakeUp(queue_id, tasks.top().GetTargetTime());
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}
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}
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void MessageLoopTaskQueues::WakeUp(TaskQueueId queue_id, fml::TimePoint time) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kWakeables));
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if (wakeables_[queue_id]) {
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wakeables_[queue_id]->WakeUp(time);
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}
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}
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size_t MessageLoopTaskQueues::GetNumPendingTasks(TaskQueueId queue_id) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kTasks));
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return delayed_tasks_[queue_id].size();
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}
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void MessageLoopTaskQueues::AddTaskObserver(TaskQueueId queue_id,
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intptr_t key,
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fml::closure callback) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kObservers));
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task_observers_[queue_id][key] = std::move(callback);
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}
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void MessageLoopTaskQueues::RemoveTaskObserver(TaskQueueId queue_id,
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intptr_t key) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kObservers));
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task_observers_[queue_id].erase(key);
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}
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void MessageLoopTaskQueues::NotifyObservers(TaskQueueId queue_id) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kObservers));
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for (const auto& observer : task_observers_[queue_id]) {
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observer.second();
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}
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}
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// Thread safety analysis disabled as it does not account for defered locks.
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void MessageLoopTaskQueues::Swap(TaskQueueId primary, TaskQueueId secondary)
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FML_NO_THREAD_SAFETY_ANALYSIS {
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// task_observers locks
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std::mutex& o1 = GetMutex(primary, MutexType::kObservers);
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std::mutex& o2 = GetMutex(secondary, MutexType::kObservers);
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// delayed_tasks locks
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std::mutex& t1 = GetMutex(primary, MutexType::kTasks);
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std::mutex& t2 = GetMutex(secondary, MutexType::kTasks);
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std::scoped_lock(o1, o2, t1, t2);
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std::swap(task_observers_[primary], task_observers_[secondary]);
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std::swap(delayed_tasks_[primary], delayed_tasks_[secondary]);
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}
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void MessageLoopTaskQueues::SetWakeable(TaskQueueId queue_id,
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fml::Wakeable* wakeable) {
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std::scoped_lock lock(GetMutex(queue_id, MutexType::kWakeables));
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wakeables_[queue_id] = wakeable;
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}
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std::mutex& MessageLoopTaskQueues::GetMutex(TaskQueueId queue_id,
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MutexType type) {
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std::scoped_lock lock(queue_meta_mutex_);
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if (type == MutexType::kTasks) {
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return *delayed_tasks_mutexes_[queue_id];
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} else if (type == MutexType::kObservers) {
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return *observers_mutexes_[queue_id];
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} else {
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return *wakeable_mutexes_[queue_id];
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}
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}
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} // namespace fml
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