Currently there is a hard limit for the estimated captured frame interval of 45ms. As the encoder utilization is calculated as (input frame interval)/(encode time), overuse signals can be triggered even though there is plenty of time to go around if the fps is low. However, in order to avoid falsly estimating low encode usage in case the capturer has a dynamic frame rate, set the frame interval based on the actual current max framerate. BUG=webrtc:4172 Review-Url: https://codereview.webrtc.org/2918143003 Cr-Commit-Position: refs/heads/master@{#18610}
164 lines
6.0 KiB
C++
164 lines
6.0 KiB
C++
/*
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* Copyright (c) 2013 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 WEBRTC_VIDEO_OVERUSE_FRAME_DETECTOR_H_
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#define WEBRTC_VIDEO_OVERUSE_FRAME_DETECTOR_H_
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#include <list>
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#include <memory>
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#include "webrtc/base/constructormagic.h"
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#include "webrtc/base/numerics/exp_filter.h"
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#include "webrtc/base/optional.h"
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#include "webrtc/base/sequenced_task_checker.h"
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#include "webrtc/base/task_queue.h"
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#include "webrtc/base/thread_annotations.h"
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#include "webrtc/modules/video_coding/utility/quality_scaler.h"
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namespace webrtc {
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class EncodedFrameObserver;
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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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};
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struct CpuOveruseMetrics {
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CpuOveruseMetrics() : encode_usage_percent(-1) {}
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int encode_usage_percent; // Average encode time divided by the average time
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// difference between incoming captured frames.
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};
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class CpuOveruseMetricsObserver {
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public:
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virtual ~CpuOveruseMetricsObserver() {}
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virtual void OnEncodedFrameTimeMeasured(int encode_duration_ms,
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const CpuOveruseMetrics& metrics) = 0;
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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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OveruseFrameDetector(const CpuOveruseOptions& options,
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AdaptationObserverInterface* overuse_observer,
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EncodedFrameObserver* encoder_timing_,
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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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// 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, int64_t time_sent_in_us);
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protected:
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void CheckForOveruse(); // Protected for test purposes.
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private:
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class OverdoseInjector;
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class SendProcessingUsage;
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class CheckOveruseTask;
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struct FrameTiming {
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FrameTiming(int64_t capture_time_us, uint32_t timestamp, int64_t now)
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: capture_time_us(capture_time_us),
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timestamp(timestamp),
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capture_us(now),
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last_send_us(-1) {}
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int64_t capture_time_us;
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uint32_t timestamp;
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int64_t capture_us;
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int64_t last_send_us;
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};
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void EncodedFrameTimeMeasured(int encode_duration_ms);
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bool IsOverusing(const CpuOveruseMetrics& metrics);
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bool IsUnderusing(const CpuOveruseMetrics& metrics, 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<SendProcessingUsage> CreateSendProcessingUsage(
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const CpuOveruseOptions& options);
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rtc::SequencedTaskChecker task_checker_;
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// Owned by the task queue from where StartCheckForOveruse is called.
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CheckOveruseTask* check_overuse_task_;
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const CpuOveruseOptions options_;
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// Observer getting overuse reports.
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AdaptationObserverInterface* const observer_;
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EncodedFrameObserver* const encoder_timing_;
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// Stats metrics.
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CpuOveruseMetricsObserver* const metrics_observer_;
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rtc::Optional<CpuOveruseMetrics> metrics_ GUARDED_BY(task_checker_);
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int64_t num_process_times_ GUARDED_BY(task_checker_);
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int64_t last_capture_time_us_ GUARDED_BY(task_checker_);
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int64_t last_processed_capture_time_us_ GUARDED_BY(task_checker_);
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// Number of pixels of last captured frame.
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int num_pixels_ GUARDED_BY(task_checker_);
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int max_framerate_ GUARDED_BY(task_checker_);
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int64_t last_overuse_time_ms_ GUARDED_BY(task_checker_);
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int checks_above_threshold_ GUARDED_BY(task_checker_);
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int num_overuse_detections_ GUARDED_BY(task_checker_);
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int64_t last_rampup_time_ms_ GUARDED_BY(task_checker_);
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bool in_quick_rampup_ GUARDED_BY(task_checker_);
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int current_rampup_delay_ms_ GUARDED_BY(task_checker_);
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// TODO(asapersson): Can these be regular members (avoid separate heap
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// allocs)?
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const std::unique_ptr<SendProcessingUsage> usage_ GUARDED_BY(task_checker_);
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std::list<FrameTiming> frame_timing_ GUARDED_BY(task_checker_);
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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 // WEBRTC_VIDEO_OVERUSE_FRAME_DETECTOR_H_
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