- report packet loss timeline
This commit is contained in:
@@ -224,11 +224,6 @@ RtpBuffer::FetchResult RtpBuffer::fetch(ResultList& rl)
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}
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}
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else
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else
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{
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{
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// Did we fetch any packet before ?
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bool is_fetched_packet = mFetchedPacket.get() != nullptr;
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if (is_fetched_packet)
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is_fetched_packet &= mFetchedPacket->rtp().get() != nullptr;
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if (mLastSeqno.has_value())
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if (mLastSeqno.has_value())
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{
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{
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if (mPacketList.empty())
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if (mPacketList.empty())
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@@ -239,7 +234,8 @@ RtpBuffer::FetchResult RtpBuffer::fetch(ResultList& rl)
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else
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else
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{
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{
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// Current sequence number ?
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// Current sequence number ?
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uint32_t seqno = mPacketList.front()->rtp()->GetExtendedSequenceNumber();
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auto& packet = *mPacketList.front();
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uint32_t seqno = packet.rtp()->GetExtendedSequenceNumber();
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// Gap between new packet and previous on
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// Gap between new packet and previous on
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int gap = (int64_t)seqno - (int64_t)*mLastSeqno - 1;
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int gap = (int64_t)seqno - (int64_t)*mLastSeqno - 1;
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@@ -248,7 +244,8 @@ RtpBuffer::FetchResult RtpBuffer::fetch(ResultList& rl)
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{
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{
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// std::cout << "Increase the packet loss for SSRC " << std::hex << mSsrc << std::endl;
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// std::cout << "Increase the packet loss for SSRC " << std::hex << mSsrc << std::endl;
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mStat.mPacketLoss++;
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mStat.mPacketLoss++;
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//mStat.mLoss[gap]++;
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auto currentTimestamp = uint64_t(packet.rtp()->GetReceiveTime().GetDouble() * 1000000);
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mStat.mPacketLossTimeline.push_back({gap, std::chrono::microseconds(currentTimestamp)});
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mLastSeqno = *mLastSeqno + 1;
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mLastSeqno = *mLastSeqno + 1;
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result = FetchResult::Gap;
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result = FetchResult::Gap;
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}
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}
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@@ -18,13 +18,15 @@
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#include "../audio/Audio_Resampler.h"
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#include "../audio/Audio_Resampler.h"
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#include <optional>
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#include <optional>
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#include <chrono>
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using namespace std::chrono_literals;
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namespace MT
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namespace MT
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{
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{
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using jrtplib::RTPPacket;
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using jrtplib::RTPPacket;
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class RtpBuffer
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class RtpBuffer
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{
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{
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public:
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public:
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enum class FetchResult
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enum class FetchResult
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{
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{
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RegularPacket,
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RegularPacket,
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@@ -45,10 +47,15 @@ namespace MT
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const std::vector<short>& pcm() const;
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const std::vector<short>& pcm() const;
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std::vector<short>& pcm();
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std::vector<short>& pcm();
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const std::chrono::microseconds& timestamp() const;
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std::chrono::microseconds& timestamp();
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protected:
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protected:
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std::shared_ptr<RTPPacket> mRtp;
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std::shared_ptr<RTPPacket> mRtp;
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int mTimelength = 0, mRate = 0;
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int mTimelength = 0,
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mRate = 0;
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std::vector<short> mPcm;
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std::vector<short> mPcm;
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std::chrono::microseconds mTimestamp = 0us;
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};
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};
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RtpBuffer(Statistics& stat);
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RtpBuffer(Statistics& stat);
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@@ -80,7 +87,7 @@ namespace MT
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FetchResult fetch(ResultList& rl);
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FetchResult fetch(ResultList& rl);
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protected:
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protected:
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unsigned mSsrc = 0;
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unsigned mSsrc = 0;
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int mHigh = RTP_BUFFER_HIGH,
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int mHigh = RTP_BUFFER_HIGH,
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mLow = RTP_BUFFER_LOW,
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mLow = RTP_BUFFER_LOW,
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@@ -99,21 +106,21 @@ namespace MT
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// To calculate average interval between packet add. It is close to jitter but more useful in debugging.
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// To calculate average interval between packet add. It is close to jitter but more useful in debugging.
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float mLastAddTime = 0.0;
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float mLastAddTime = 0.0;
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};
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};
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class Receiver
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class Receiver
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{
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{
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public:
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public:
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Receiver(Statistics& stat);
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Receiver(Statistics& stat);
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virtual ~Receiver();
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virtual ~Receiver();
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protected:
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protected:
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Statistics& mStat;
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Statistics& mStat;
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};
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};
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class AudioReceiver: public Receiver
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class AudioReceiver: public Receiver
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{
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{
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public:
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public:
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AudioReceiver(const CodecList::Settings& codecSettings, Statistics& stat);
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AudioReceiver(const CodecList::Settings& codecSettings, Statistics& stat);
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~AudioReceiver();
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~AudioReceiver();
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@@ -155,7 +162,7 @@ namespace MT
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// Return samplerate for given packet
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// Return samplerate for given packet
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int samplerateFor(jrtplib::RTPPacket& p);
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int samplerateFor(jrtplib::RTPPacket& p);
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protected:
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protected:
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RtpBuffer mBuffer;
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RtpBuffer mBuffer;
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CodecMap mCodecMap;
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CodecMap mCodecMap;
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PCodec mCodec;
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PCodec mCodec;
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@@ -202,16 +209,16 @@ namespace MT
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void processDecoded(Audio::DataWindow& output, int options);
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void processDecoded(Audio::DataWindow& output, int options);
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void processStatisticsWithAmrCodec(Codec* c);
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void processStatisticsWithAmrCodec(Codec* c);
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};
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};
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class DtmfReceiver: public Receiver
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class DtmfReceiver: public Receiver
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{
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{
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public:
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public:
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DtmfReceiver(Statistics& stat);
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DtmfReceiver(Statistics& stat);
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~DtmfReceiver();
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~DtmfReceiver();
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void add(std::shared_ptr<RTPPacket> p);
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void add(std::shared_ptr<RTPPacket> p);
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};
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};
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}
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}
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#endif
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#endif
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@@ -50,6 +50,12 @@ protected:
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float mMaxDelta = 0.0f;
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float mMaxDelta = 0.0f;
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};
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};
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struct PacketLossEvent
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{
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int mGap = 0;
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std::chrono::microseconds mTimestamp;
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};
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class Statistics
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class Statistics
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{
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{
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public:
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public:
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@@ -86,6 +92,8 @@ public:
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std::map<int, int> mCodecCount; // Stats on used codecs
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std::map<int, int> mCodecCount; // Stats on used codecs
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std::vector<PacketLossEvent> mPacketLossTimeline; // Packet loss timeline
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// It is to calculate network MOS
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// It is to calculate network MOS
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void calculateBurstr(double* burstr, double* loss) const;
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void calculateBurstr(double* burstr, double* loss) const;
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double calculateMos(double maximalMos) const;
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double calculateMos(double maximalMos) const;
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