
Trying to submit all changes at once proved impossible since there were too many changes in too many files. The changes to PRESUBMIT.py will be uploaded in the last CL. (original CL: https://codereview.webrtc.org/1528503003/) BUG=webrtc:5309 TBR=mflodman@webrtc.org Review URL: https://codereview.webrtc.org/1543503002 Cr-Commit-Position: refs/heads/master@{#11102}
362 lines
12 KiB
C++
362 lines
12 KiB
C++
/*
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* Copyright (c) 2012 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_MODULES_VIDEO_CODING_MEDIA_OPT_UTIL_H_
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#define WEBRTC_MODULES_VIDEO_CODING_MEDIA_OPT_UTIL_H_
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#include <math.h>
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#include <stdlib.h>
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#include "webrtc/base/exp_filter.h"
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#include "webrtc/base/scoped_ptr.h"
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#include "webrtc/modules/video_coding/internal_defines.h"
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#include "webrtc/modules/video_coding/qm_select.h"
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#include "webrtc/system_wrappers/include/trace.h"
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#include "webrtc/typedefs.h"
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namespace webrtc {
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namespace media_optimization {
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// Number of time periods used for (max) window filter for packet loss
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// TODO(marpan): set reasonable window size for filtered packet loss,
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// adjustment should be based on logged/real data of loss stats/correlation.
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enum { kLossPrHistorySize = 10 };
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// 1000 ms, total filter length is (kLossPrHistorySize * 1000) ms
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enum { kLossPrShortFilterWinMs = 1000 };
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// The type of filter used on the received packet loss reports.
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enum FilterPacketLossMode {
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kNoFilter, // No filtering on received loss.
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kAvgFilter, // Recursive average filter.
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kMaxFilter // Max-window filter, over the time interval of:
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// (kLossPrHistorySize * kLossPrShortFilterWinMs) ms.
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};
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// Thresholds for hybrid NACK/FEC
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// common to media optimization and the jitter buffer.
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const int64_t kLowRttNackMs = 20;
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struct VCMProtectionParameters {
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VCMProtectionParameters()
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: rtt(0),
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lossPr(0.0f),
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bitRate(0.0f),
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packetsPerFrame(0.0f),
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packetsPerFrameKey(0.0f),
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frameRate(0.0f),
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keyFrameSize(0.0f),
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fecRateDelta(0),
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fecRateKey(0),
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codecWidth(0),
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codecHeight(0),
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numLayers(1) {}
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int64_t rtt;
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float lossPr;
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float bitRate;
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float packetsPerFrame;
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float packetsPerFrameKey;
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float frameRate;
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float keyFrameSize;
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uint8_t fecRateDelta;
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uint8_t fecRateKey;
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uint16_t codecWidth;
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uint16_t codecHeight;
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int numLayers;
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};
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/******************************/
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/* VCMProtectionMethod class */
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/******************************/
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enum VCMProtectionMethodEnum { kNack, kFec, kNackFec, kNone };
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class VCMLossProbabilitySample {
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public:
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VCMLossProbabilitySample() : lossPr255(0), timeMs(-1) {}
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uint8_t lossPr255;
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int64_t timeMs;
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};
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class VCMProtectionMethod {
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public:
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VCMProtectionMethod();
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virtual ~VCMProtectionMethod();
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// Updates the efficiency of the method using the parameters provided
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//
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// Input:
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// - parameters : Parameters used to calculate efficiency
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//
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// Return value : True if this method is recommended in
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// the given conditions.
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virtual bool UpdateParameters(const VCMProtectionParameters* parameters) = 0;
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// Returns the protection type
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//
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// Return value : The protection type
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enum VCMProtectionMethodEnum Type() const { return _type; }
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// Returns the effective packet loss for ER, required by this protection
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// method
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//
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// Return value : Required effective packet loss
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virtual uint8_t RequiredPacketLossER() { return _effectivePacketLoss; }
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// Extracts the FEC protection factor for Key frame, required by this
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// protection method
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//
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// Return value : Required protectionFactor for Key frame
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virtual uint8_t RequiredProtectionFactorK() { return _protectionFactorK; }
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// Extracts the FEC protection factor for Delta frame, required by this
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// protection method
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//
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// Return value : Required protectionFactor for delta frame
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virtual uint8_t RequiredProtectionFactorD() { return _protectionFactorD; }
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// Extracts whether the FEC Unequal protection (UEP) is used for Key frame.
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//
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// Return value : Required Unequal protection on/off state.
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virtual bool RequiredUepProtectionK() { return _useUepProtectionK; }
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// Extracts whether the the FEC Unequal protection (UEP) is used for Delta
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// frame.
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//
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// Return value : Required Unequal protection on/off state.
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virtual bool RequiredUepProtectionD() { return _useUepProtectionD; }
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virtual int MaxFramesFec() const { return 1; }
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// Updates content metrics
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void UpdateContentMetrics(const VideoContentMetrics* contentMetrics);
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protected:
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uint8_t _effectivePacketLoss;
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uint8_t _protectionFactorK;
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uint8_t _protectionFactorD;
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// Estimation of residual loss after the FEC
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float _scaleProtKey;
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int32_t _maxPayloadSize;
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VCMQmRobustness* _qmRobustness;
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bool _useUepProtectionK;
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bool _useUepProtectionD;
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float _corrFecCost;
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enum VCMProtectionMethodEnum _type;
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};
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class VCMNackMethod : public VCMProtectionMethod {
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public:
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VCMNackMethod();
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virtual ~VCMNackMethod();
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virtual bool UpdateParameters(const VCMProtectionParameters* parameters);
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// Get the effective packet loss
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bool EffectivePacketLoss(const VCMProtectionParameters* parameter);
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};
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class VCMFecMethod : public VCMProtectionMethod {
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public:
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VCMFecMethod();
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virtual ~VCMFecMethod();
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virtual bool UpdateParameters(const VCMProtectionParameters* parameters);
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// Get the effective packet loss for ER
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bool EffectivePacketLoss(const VCMProtectionParameters* parameters);
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// Get the FEC protection factors
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bool ProtectionFactor(const VCMProtectionParameters* parameters);
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// Get the boost for key frame protection
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uint8_t BoostCodeRateKey(uint8_t packetFrameDelta,
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uint8_t packetFrameKey) const;
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// Convert the rates: defined relative to total# packets or source# packets
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uint8_t ConvertFECRate(uint8_t codeRate) const;
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// Get the average effective recovery from FEC: for random loss model
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float AvgRecoveryFEC(const VCMProtectionParameters* parameters) const;
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// Update FEC with protectionFactorD
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void UpdateProtectionFactorD(uint8_t protectionFactorD);
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// Update FEC with protectionFactorK
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void UpdateProtectionFactorK(uint8_t protectionFactorK);
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// Compute the bits per frame. Account for temporal layers when applicable.
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int BitsPerFrame(const VCMProtectionParameters* parameters);
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protected:
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enum { kUpperLimitFramesFec = 6 };
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// Thresholds values for the bytes/frame and round trip time, below which we
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// may turn off FEC, depending on |_numLayers| and |_maxFramesFec|.
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// Max bytes/frame for VGA, corresponds to ~140k at 25fps.
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enum { kMaxBytesPerFrameForFec = 700 };
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// Max bytes/frame for CIF and lower: corresponds to ~80k at 25fps.
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enum { kMaxBytesPerFrameForFecLow = 400 };
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// Max bytes/frame for frame size larger than VGA, ~200k at 25fps.
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enum { kMaxBytesPerFrameForFecHigh = 1000 };
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};
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class VCMNackFecMethod : public VCMFecMethod {
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public:
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VCMNackFecMethod(int64_t lowRttNackThresholdMs,
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int64_t highRttNackThresholdMs);
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virtual ~VCMNackFecMethod();
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virtual bool UpdateParameters(const VCMProtectionParameters* parameters);
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// Get the effective packet loss for ER
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bool EffectivePacketLoss(const VCMProtectionParameters* parameters);
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// Get the protection factors
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bool ProtectionFactor(const VCMProtectionParameters* parameters);
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// Get the max number of frames the FEC is allowed to be based on.
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int MaxFramesFec() const;
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// Turn off the FEC based on low bitrate and other factors.
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bool BitRateTooLowForFec(const VCMProtectionParameters* parameters);
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private:
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int ComputeMaxFramesFec(const VCMProtectionParameters* parameters);
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int64_t _lowRttNackMs;
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int64_t _highRttNackMs;
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int _maxFramesFec;
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};
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class VCMLossProtectionLogic {
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public:
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explicit VCMLossProtectionLogic(int64_t nowMs);
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~VCMLossProtectionLogic();
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// Set the protection method to be used
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//
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// Input:
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// - newMethodType : New requested protection method type. If one
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// is already set, it will be deleted and replaced
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void SetMethod(VCMProtectionMethodEnum newMethodType);
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// Update the round-trip time
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//
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// Input:
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// - rtt : Round-trip time in seconds.
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void UpdateRtt(int64_t rtt);
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// Update the filtered packet loss.
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//
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// Input:
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// - packetLossEnc : The reported packet loss filtered
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// (max window or average)
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void UpdateFilteredLossPr(uint8_t packetLossEnc);
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// Update the current target bit rate.
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//
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// Input:
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// - bitRate : The current target bit rate in kbits/s
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void UpdateBitRate(float bitRate);
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// Update the number of packets per frame estimate, for delta frames
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//
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// Input:
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// - nPackets : Number of packets in the latest sent frame.
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void UpdatePacketsPerFrame(float nPackets, int64_t nowMs);
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// Update the number of packets per frame estimate, for key frames
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//
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// Input:
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// - nPackets : umber of packets in the latest sent frame.
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void UpdatePacketsPerFrameKey(float nPackets, int64_t nowMs);
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// Update the keyFrameSize estimate
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//
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// Input:
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// - keyFrameSize : The size of the latest sent key frame.
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void UpdateKeyFrameSize(float keyFrameSize);
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// Update the frame rate
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//
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// Input:
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// - frameRate : The current target frame rate.
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void UpdateFrameRate(float frameRate) { _frameRate = frameRate; }
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// Update the frame size
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//
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// Input:
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// - width : The codec frame width.
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// - height : The codec frame height.
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void UpdateFrameSize(uint16_t width, uint16_t height);
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// Update the number of active layers
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//
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// Input:
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// - numLayers : Number of layers used.
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void UpdateNumLayers(int numLayers);
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// The amount of packet loss to cover for with FEC.
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//
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// Input:
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// - fecRateKey : Packet loss to cover for with FEC when
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// sending key frames.
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// - fecRateDelta : Packet loss to cover for with FEC when
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// sending delta frames.
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void UpdateFECRates(uint8_t fecRateKey, uint8_t fecRateDelta) {
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_fecRateKey = fecRateKey;
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_fecRateDelta = fecRateDelta;
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}
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// Update the protection methods with the current VCMProtectionParameters
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// and set the requested protection settings.
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// Return value : Returns true on update
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bool UpdateMethod();
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// Returns the method currently selected.
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//
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// Return value : The protection method currently selected.
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VCMProtectionMethod* SelectedMethod() const;
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// Return the protection type of the currently selected method
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VCMProtectionMethodEnum SelectedType() const;
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// Updates the filtered loss for the average and max window packet loss,
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// and returns the filtered loss probability in the interval [0, 255].
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// The returned filtered loss value depends on the parameter |filter_mode|.
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// The input parameter |lossPr255| is the received packet loss.
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// Return value : The filtered loss probability
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uint8_t FilteredLoss(int64_t nowMs,
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FilterPacketLossMode filter_mode,
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uint8_t lossPr255);
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void Reset(int64_t nowMs);
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void Release();
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private:
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// Sets the available loss protection methods.
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void UpdateMaxLossHistory(uint8_t lossPr255, int64_t now);
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uint8_t MaxFilteredLossPr(int64_t nowMs) const;
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rtc::scoped_ptr<VCMProtectionMethod> _selectedMethod;
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VCMProtectionParameters _currentParameters;
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int64_t _rtt;
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float _lossPr;
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float _bitRate;
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float _frameRate;
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float _keyFrameSize;
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uint8_t _fecRateKey;
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uint8_t _fecRateDelta;
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int64_t _lastPrUpdateT;
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int64_t _lastPacketPerFrameUpdateT;
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int64_t _lastPacketPerFrameUpdateTKey;
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rtc::ExpFilter _lossPr255;
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VCMLossProbabilitySample _lossPrHistory[kLossPrHistorySize];
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uint8_t _shortMaxLossPr255;
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rtc::ExpFilter _packetsPerFrame;
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rtc::ExpFilter _packetsPerFrameKey;
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uint16_t _codecWidth;
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uint16_t _codecHeight;
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int _numLayers;
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};
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} // namespace media_optimization
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} // namespace webrtc
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#endif // WEBRTC_MODULES_VIDEO_CODING_MEDIA_OPT_UTIL_H_
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