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Builds out the full v1 scope: a vendored+patched openscreen subset for low-latency Cast Streaming (Mirroring receiver 0F5096E8) alongside the existing Cast V2/HLS and new DLNA/AVTransport casting paths, breadcastd's Idle/Casting state machine with a private IPC socket, the breadcast GTK4 popup as a thin IPC client, and bread.cast.*/bread.command.cast.* breadd integration (device discovery, start/stop, mirroring lifecycle events). Also adds bakery/systemd/Forgejo CI packaging. Validated end-to-end against a real Chromecast/Google TV: negotiated Cast Streaming session, live pipeline playback, and daemon+GUI click-to-cast/ stop through the actual popup.
150 lines
5.6 KiB
C++
150 lines
5.6 KiB
C++
// Copyright 2019 The Chromium Authors
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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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#ifndef PLATFORM_IMPL_TASK_RUNNER_H_
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#define PLATFORM_IMPL_TASK_RUNNER_H_
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#include <condition_variable> // NOLINT
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#include <map>
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#include <memory>
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#include <mutex>
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#include <thread>
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#include <utility>
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#include <vector>
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#include "platform/api/task_runner.h"
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#include "platform/api/time.h"
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#include "platform/base/error.h"
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#include "util/raw_ptr.h"
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#include "util/thread_annotations.h"
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#include "util/trace_logging.h"
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namespace openscreen {
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class TaskRunnerImpl : public TaskRunner {
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public:
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using Task = TaskRunner::Task;
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class TaskWaiter {
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public:
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virtual ~TaskWaiter();
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// These calls should be thread-safe. The absolute minimum is that
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// OnTaskPosted must be safe to call from another thread while this is
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// inside WaitForTaskToBePosted. NOTE: There may be spurious wakeups from
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// WaitForTaskToBePosted depending on whether the specific implementation
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// chooses to clear queued WakeUps before entering WaitForTaskToBePosted.
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// Blocks until some event occurs, which means new tasks may have been
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// posted. Wait may only block up to `timeout` where 0 means don't block at
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// all (not block forever).
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virtual Error WaitForTaskToBePosted(Clock::duration timeout) = 0;
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// If a WaitForTaskToBePosted call is currently blocking, unblock it
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// immediately.
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virtual void OnTaskPosted() = 0;
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};
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explicit TaskRunnerImpl(
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ClockNowFunctionPtr now_function,
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TaskWaiter* event_waiter = nullptr,
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Clock::duration waiter_timeout = std::chrono::milliseconds(100));
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TaskRunnerImpl(const TaskRunnerImpl&) = delete;
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TaskRunnerImpl(TaskRunnerImpl&&) noexcept = delete;
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TaskRunnerImpl& operator=(const TaskRunnerImpl&) = delete;
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TaskRunnerImpl& operator=(TaskRunnerImpl&&) = delete;
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// TaskRunner overrides
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~TaskRunnerImpl() override;
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void PostPackagedTask(Task task) override;
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void PostPackagedTaskWithDelay(Task task, Clock::duration delay) override;
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bool IsRunningOnTaskRunner() override;
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// Blocks the current thread, executing tasks from the queue with the desired
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// timing; and does not return until some time after RequestStopSoon() is
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// called.
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virtual void RunUntilStopped();
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// Blocks the current thread, executing tasks from the queue with the desired
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// timing; and does not return until some time after the current process is
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// signaled with SIGINT or SIGTERM, or after RequestStopSoon() is called.
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virtual void RunUntilSignaled();
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// Thread-safe method for requesting the TaskRunner to stop running after all
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// non-delayed tasks in the queue have run. This behavior allows final
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// clean-up tasks to be executed before the TaskRunner stops.
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//
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// If any non-delayed tasks post additional non-delayed tasks, those will be
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// run as well before returning.
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virtual void RequestStopSoon();
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private:
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#if defined(ENABLE_TRACE_LOGGING)
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// Wrapper around a Task used to store the TraceId Metadata along with the
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// task itself, and to set the current TraceIdHierarchy before executing the
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// task.
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class TaskWithMetadata {
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public:
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// NOTE: 'explicit' keyword omitted so that conversion construtor can be
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// used. This simplifies switching between 'Task' and 'TaskWithMetadata'
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// based on the compilation flag.
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TaskWithMetadata(Task task) // NOLINT
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: task_(std::move(task)), trace_ids_(TRACE_HIERARCHY) {}
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void operator()() {
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TRACE_SET_HIERARCHY(trace_ids_);
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std::move(task_)();
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}
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private:
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Task task_;
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TraceIdHierarchy trace_ids_;
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};
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#else // !defined(ENABLE_TRACE_LOGGING)
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using TaskWithMetadata = Task;
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#endif // defined(ENABLE_TRACE_LOGGING)
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// Helper that runs all tasks in `running_tasks_` and then clears it.
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void RunRunnableTasks();
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// Look at all tasks in the delayed task queue, then schedule them if the
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// minimum delay time has elapsed.
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void ScheduleDelayedTasks();
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// Transfers all ready-to-run tasks from `tasks_` to `running_tasks_`. If
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// there are no ready-to-run tasks, and `is_running_` is true, this method
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// will block waiting for new tasks. Returns true if any tasks were
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// transferred.
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bool GrabMoreRunnableTasks() OSP_NO_THREAD_SAFETY_ANALYSIS;
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const ClockNowFunctionPtr now_function_;
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// Flag that indicates whether the task runner loop should continue. This is
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// only meant to be read/written on the thread executing RunUntilStopped().
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bool is_running_;
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// This mutex is used for `tasks_` and `delayed_tasks_`, and also for
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// notifying the run loop to wake up when it is waiting for a task to be added
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// to the queue in `run_loop_wakeup_`.
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std::mutex task_mutex_;
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std::vector<TaskWithMetadata> tasks_ OSP_GUARDED_BY(task_mutex_);
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std::multimap<Clock::time_point, TaskWithMetadata> delayed_tasks_ OSP_GUARDED_BY(task_mutex_);
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// When `task_waiter_` is nullptr, `run_loop_wakeup_` is used for sleeping the
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// task runner. Otherwise, `run_loop_wakeup_` isn't used and `task_waiter_`
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// is used instead (along with `waiter_timeout_`).
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std::condition_variable run_loop_wakeup_;
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const raw_ptr<TaskWaiter> task_waiter_;
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Clock::duration waiter_timeout_;
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// To prevent excessive re-allocation of the underlying array of the `tasks_`
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// vector, use an A/B vector-swap mechanism. `running_tasks_` starts out
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// empty, and is swapped with `tasks_` when it is time to run the Tasks.
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std::vector<TaskWithMetadata> running_tasks_;
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std::thread::id task_runner_thread_id_;
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};
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} // namespace openscreen
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#endif // PLATFORM_IMPL_TASK_RUNNER_H_
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