170 lines
4.6 KiB
C++
170 lines
4.6 KiB
C++
// Copyright 2023 The Pigweed Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License"); you may not
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// use this file except in compliance with the License. You may obtain a copy of
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// 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, WITHOUT
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// WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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// License for the specific language governing permissions and limitations under
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// the License.
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#include "pw_async_basic/dispatcher.h"
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#include "pw_assert/check.h"
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#include "pw_chrono/system_clock.h"
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#include "pw_log/log.h"
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using namespace std::chrono_literals;
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namespace pw::async {
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const chrono::SystemClock::duration SLEEP_DURATION = 5s;
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BasicDispatcher::~BasicDispatcher() {
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RequestStop();
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lock_.lock();
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DrainTaskQueue();
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lock_.unlock();
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}
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void BasicDispatcher::Run() {
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lock_.lock();
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while (!stop_requested_) {
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MaybeSleep();
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ExecuteDueTasks();
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}
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DrainTaskQueue();
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lock_.unlock();
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}
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void BasicDispatcher::RunUntilIdle() {
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lock_.lock();
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ExecuteDueTasks();
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if (stop_requested_) {
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DrainTaskQueue();
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}
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lock_.unlock();
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}
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void BasicDispatcher::RunUntil(chrono::SystemClock::time_point end_time) {
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lock_.lock();
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while (end_time < now() && !stop_requested_) {
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MaybeSleep();
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ExecuteDueTasks();
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}
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if (stop_requested_) {
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DrainTaskQueue();
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}
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lock_.unlock();
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}
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void BasicDispatcher::RunFor(chrono::SystemClock::duration duration) {
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RunUntil(now() + duration);
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}
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void BasicDispatcher::MaybeSleep() {
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if (task_queue_.empty() || task_queue_.front().due_time_ > now()) {
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// Sleep until a notification is received or until the due time of the
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// next task. Notifications are sent when tasks are posted or 'stop' is
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// requested.
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chrono::SystemClock::time_point wake_time =
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task_queue_.empty() ? now() + SLEEP_DURATION
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: task_queue_.front().due_time_;
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lock_.unlock();
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PW_LOG_DEBUG("no task due; waiting for signal");
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timed_notification_.try_acquire_until(wake_time);
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lock_.lock();
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}
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}
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void BasicDispatcher::ExecuteDueTasks() {
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while (!task_queue_.empty() && task_queue_.front().due_time_ <= now() &&
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!stop_requested_) {
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backend::NativeTask& task = task_queue_.front();
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task_queue_.pop_front();
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if (task.interval().has_value()) {
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PostTaskInternal(task, task.due_time_ + task.interval().value());
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}
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lock_.unlock();
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PW_LOG_DEBUG("running task");
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Context ctx{this, &task.task_};
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task(ctx, OkStatus());
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lock_.lock();
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}
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}
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void BasicDispatcher::RequestStop() {
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std::lock_guard lock(lock_);
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PW_LOG_DEBUG("stop requested");
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stop_requested_ = true;
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timed_notification_.release();
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}
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void BasicDispatcher::DrainTaskQueue() {
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PW_LOG_DEBUG("draining task queue");
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while (!task_queue_.empty()) {
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backend::NativeTask& task = task_queue_.front();
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task_queue_.pop_front();
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lock_.unlock();
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PW_LOG_DEBUG("running cancelled task");
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Context ctx{this, &task.task_};
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task(ctx, Status::Cancelled());
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lock_.lock();
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}
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}
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void BasicDispatcher::Post(Task& task) { PostAt(task, now()); }
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void BasicDispatcher::PostAfter(Task& task,
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chrono::SystemClock::duration delay) {
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PostAt(task, now() + delay);
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}
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void BasicDispatcher::PostAt(Task& task, chrono::SystemClock::time_point time) {
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lock_.lock();
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PW_LOG_DEBUG("posting task");
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PostTaskInternal(task.native_type(), time);
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lock_.unlock();
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}
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void BasicDispatcher::PostPeriodic(Task& task,
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chrono::SystemClock::duration interval) {
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PostPeriodicAt(task, interval, now());
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}
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void BasicDispatcher::PostPeriodicAt(
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Task& task,
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chrono::SystemClock::duration interval,
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chrono::SystemClock::time_point start_time) {
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PW_DCHECK(interval != chrono::SystemClock::duration::zero());
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task.native_type().set_interval(interval);
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PostAt(task, start_time);
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}
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bool BasicDispatcher::Cancel(Task& task) {
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std::lock_guard lock(lock_);
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return task_queue_.remove(task.native_type());
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}
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void BasicDispatcher::PostTaskInternal(
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backend::NativeTask& task, chrono::SystemClock::time_point time_due) {
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task.due_time_ = time_due;
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auto it_front = task_queue_.begin();
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auto it_behind = task_queue_.before_begin();
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while (it_front != task_queue_.end() && time_due > it_front->due_time_) {
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++it_front;
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++it_behind;
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}
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task_queue_.insert_after(it_behind, task);
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timed_notification_.release();
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}
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} // namespace pw::async
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