170 lines
6.4 KiB
C++
170 lines
6.4 KiB
C++
/*
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* Copyright (c) 2020 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#ifndef VIDEO_ADAPTATION_OVERUSE_FRAME_DETECTOR_H_
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#define VIDEO_ADAPTATION_OVERUSE_FRAME_DETECTOR_H_
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#include <list>
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#include <memory>
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#include "absl/types/optional.h"
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#include "api/task_queue/task_queue_base.h"
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#include "api/video/video_stream_encoder_observer.h"
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#include "rtc_base/constructor_magic.h"
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#include "rtc_base/experiments/field_trial_parser.h"
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#include "rtc_base/numerics/exp_filter.h"
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#include "rtc_base/synchronization/sequence_checker.h"
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#include "rtc_base/task_utils/repeating_task.h"
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#include "rtc_base/thread_annotations.h"
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namespace webrtc {
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class VideoFrame;
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struct CpuOveruseOptions {
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CpuOveruseOptions();
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int low_encode_usage_threshold_percent; // Threshold for triggering underuse.
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int high_encode_usage_threshold_percent; // Threshold for triggering overuse.
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// General settings.
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int frame_timeout_interval_ms; // The maximum allowed interval between two
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// frames before resetting estimations.
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int min_frame_samples; // The minimum number of frames required.
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int min_process_count; // The number of initial process times required before
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// triggering an overuse/underuse.
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int high_threshold_consecutive_count; // The number of consecutive checks
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// above the high threshold before
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// triggering an overuse.
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// New estimator enabled if this is set non-zero.
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int filter_time_ms; // Time constant for averaging
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};
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class OveruseFrameDetectorObserverInterface {
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public:
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// Called to signal that we can handle larger or more frequent frames.
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virtual void AdaptUp() = 0;
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// Called to signal that the source should reduce the resolution or framerate.
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virtual void AdaptDown() = 0;
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protected:
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virtual ~OveruseFrameDetectorObserverInterface() {}
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};
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// Use to detect system overuse based on the send-side processing time of
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// incoming frames. All methods must be called on a single task queue but it can
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// be created and destroyed on an arbitrary thread.
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// OveruseFrameDetector::StartCheckForOveruse must be called to periodically
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// check for overuse.
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class OveruseFrameDetector {
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public:
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explicit OveruseFrameDetector(CpuOveruseMetricsObserver* metrics_observer);
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virtual ~OveruseFrameDetector();
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// Start to periodically check for overuse.
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void StartCheckForOveruse(
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TaskQueueBase* task_queue_base,
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const CpuOveruseOptions& options,
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OveruseFrameDetectorObserverInterface* overuse_observer);
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// StopCheckForOveruse must be called before destruction if
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// StartCheckForOveruse has been called.
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void StopCheckForOveruse();
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// Defines the current maximum framerate targeted by the capturer. This is
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// used to make sure the encode usage percent doesn't drop unduly if the
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// capturer has quiet periods (for instance caused by screen capturers with
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// variable capture rate depending on content updates), otherwise we might
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// experience adaptation toggling.
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virtual void OnTargetFramerateUpdated(int framerate_fps);
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// Called for each captured frame.
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void FrameCaptured(const VideoFrame& frame, int64_t time_when_first_seen_us);
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// Called for each sent frame.
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void FrameSent(uint32_t timestamp,
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int64_t time_sent_in_us,
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int64_t capture_time_us,
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absl::optional<int> encode_duration_us);
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// Interface for cpu load estimation. Intended for internal use only.
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class ProcessingUsage {
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public:
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virtual void Reset() = 0;
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virtual void SetMaxSampleDiffMs(float diff_ms) = 0;
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virtual void FrameCaptured(const VideoFrame& frame,
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int64_t time_when_first_seen_us,
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int64_t last_capture_time_us) = 0;
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// Returns encode_time in us, if there's a new measurement.
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virtual absl::optional<int> FrameSent(
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// These two argument used by old estimator.
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uint32_t timestamp,
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int64_t time_sent_in_us,
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// And these two by the new estimator.
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int64_t capture_time_us,
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absl::optional<int> encode_duration_us) = 0;
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virtual int Value() = 0;
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virtual ~ProcessingUsage() = default;
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};
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protected:
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// Protected for test purposes.
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void CheckForOveruse(OveruseFrameDetectorObserverInterface* overuse_observer);
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void SetOptions(const CpuOveruseOptions& options);
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CpuOveruseOptions options_;
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private:
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void EncodedFrameTimeMeasured(int encode_duration_ms);
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bool IsOverusing(int encode_usage_percent);
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bool IsUnderusing(int encode_usage_percent, int64_t time_now);
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bool FrameTimeoutDetected(int64_t now) const;
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bool FrameSizeChanged(int num_pixels) const;
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void ResetAll(int num_pixels);
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static std::unique_ptr<ProcessingUsage> CreateProcessingUsage(
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const CpuOveruseOptions& options);
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SequenceChecker task_checker_;
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// Owned by the task queue from where StartCheckForOveruse is called.
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RepeatingTaskHandle check_overuse_task_ RTC_GUARDED_BY(task_checker_);
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// Stats metrics.
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CpuOveruseMetricsObserver* const metrics_observer_;
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absl::optional<int> encode_usage_percent_ RTC_GUARDED_BY(task_checker_);
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int64_t num_process_times_ RTC_GUARDED_BY(task_checker_);
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int64_t last_capture_time_us_ RTC_GUARDED_BY(task_checker_);
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// Number of pixels of last captured frame.
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int num_pixels_ RTC_GUARDED_BY(task_checker_);
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int max_framerate_ RTC_GUARDED_BY(task_checker_);
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int64_t last_overuse_time_ms_ RTC_GUARDED_BY(task_checker_);
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int checks_above_threshold_ RTC_GUARDED_BY(task_checker_);
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int num_overuse_detections_ RTC_GUARDED_BY(task_checker_);
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int64_t last_rampup_time_ms_ RTC_GUARDED_BY(task_checker_);
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bool in_quick_rampup_ RTC_GUARDED_BY(task_checker_);
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int current_rampup_delay_ms_ RTC_GUARDED_BY(task_checker_);
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std::unique_ptr<ProcessingUsage> usage_ RTC_PT_GUARDED_BY(task_checker_);
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// If set by field trial, overrides CpuOveruseOptions::filter_time_ms.
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FieldTrialOptional<TimeDelta> filter_time_constant_{"tau"};
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RTC_DISALLOW_COPY_AND_ASSIGN(OveruseFrameDetector);
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};
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} // namespace webrtc
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#endif // VIDEO_ADAPTATION_OVERUSE_FRAME_DETECTOR_H_
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