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266 lines
8.0 KiB
C++
266 lines
8.0 KiB
C++
/*
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This file is a part of JRTPLIB
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Copyright (c) 1999-2017 Jori Liesenborgs
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Contact: jori.liesenborgs@gmail.com
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This library was developed at the Expertise Centre for Digital Media
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(http://www.edm.uhasselt.be), a research center of the Hasselt University
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(http://www.uhasselt.be). The library is based upon work done for
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my thesis at the School for Knowledge Technology (Belgium/The Netherlands).
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Permission is hereby granted, free of charge, to any person obtaining a
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copy of this software and associated documentation files (the "Software"),
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to deal in the Software without restriction, including without limitation
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the rights to use, copy, modify, merge, publish, distribute, sublicense,
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and/or sell copies of the Software, and to permit persons to whom the
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Software is furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included
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in all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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IN THE SOFTWARE.
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*/
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#include "rtpsourcedata.h"
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#include "rtpdefines.h"
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#include "rtpaddress.h"
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#define ACCEPTPACKETCODE \
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*accept = true; \
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\
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sentdata = true; \
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packetsreceived++; \
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numnewpackets++; \
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\
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if (pack->GetExtendedSequenceNumber() == 0) \
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{ \
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baseseqnr = 0x0000FFFF; \
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numcycles = 0x00010000; \
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} \
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else \
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baseseqnr = pack->GetExtendedSequenceNumber() - 1; \
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\
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exthighseqnr = baseseqnr + 1; \
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prevpacktime = receivetime; \
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prevexthighseqnr = baseseqnr; \
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savedextseqnr = baseseqnr; \
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\
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pack->SetExtendedSequenceNumber(exthighseqnr); \
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\
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prevtimestamp = pack->GetTimestamp(); \
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lastmsgtime = prevpacktime; \
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if (!ownpacket) /* for own packet, this value is set on an outgoing packet */ \
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lastrtptime = prevpacktime;
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namespace qrtplib
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{
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void RTPSourceStats::ProcessPacket(
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RTPPacket *pack,
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const RTPTime &receivetime,
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double tsunit,
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bool ownpacket,
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bool *accept)
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{
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// Note that the sequence number in the RTP packet is still just the
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// 16 bit number contained in the RTP header
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if (!sentdata) // no valid packets received yet
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{
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ACCEPTPACKETCODE
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}
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else // already got packets
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{
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uint16_t maxseq16;
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uint32_t extseqnr;
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// Adjust max extended sequence number and set extende seq nr of packet
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*accept = true;
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packetsreceived++;
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numnewpackets++;
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maxseq16 = (uint16_t) (exthighseqnr & 0x0000FFFF);
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if (pack->GetExtendedSequenceNumber() >= maxseq16)
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{
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extseqnr = numcycles + pack->GetExtendedSequenceNumber();
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exthighseqnr = extseqnr;
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}
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else
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{
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uint16_t dif1, dif2;
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dif1 = ((uint16_t) pack->GetExtendedSequenceNumber());
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dif1 -= maxseq16;
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dif2 = maxseq16;
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dif2 -= ((uint16_t) pack->GetExtendedSequenceNumber());
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if (dif1 < dif2)
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{
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numcycles += 0x00010000;
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extseqnr = numcycles + pack->GetExtendedSequenceNumber();
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exthighseqnr = extseqnr;
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}
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else
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extseqnr = numcycles + pack->GetExtendedSequenceNumber();
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}
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pack->SetExtendedSequenceNumber(extseqnr);
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// Calculate jitter
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if (tsunit > 0)
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{
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#if 0
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RTPTime curtime = receivetime;
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double diffts1,diffts2,diff;
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curtime -= prevpacktime;
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diffts1 = curtime.GetDouble()/tsunit;
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diffts2 = (double)pack->GetTimestamp() - (double)prevtimestamp;
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diff = diffts1 - diffts2;
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if (diff < 0)
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diff = -diff;
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diff -= djitter;
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diff /= 16.0;
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djitter += diff;
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jitter = (uint32_t)djitter;
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#else
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RTPTime curtime = receivetime;
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double diffts1, diffts2, diff;
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uint32_t curts = pack->GetTimestamp();
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curtime -= prevpacktime;
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diffts1 = curtime.GetDouble() / tsunit;
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if (curts > prevtimestamp)
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{
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uint32_t unsigneddiff = curts - prevtimestamp;
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if (unsigneddiff < 0x10000000) // okay, curts realy is larger than prevtimestamp
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diffts2 = (double) unsigneddiff;
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else
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{
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// wraparound occurred and curts is actually smaller than prevtimestamp
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unsigneddiff = -unsigneddiff; // to get the actual difference (in absolute value)
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diffts2 = -((double) unsigneddiff);
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}
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}
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else if (curts < prevtimestamp)
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{
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uint32_t unsigneddiff = prevtimestamp - curts;
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if (unsigneddiff < 0x10000000) // okay, curts really is smaller than prevtimestamp
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diffts2 = -((double) unsigneddiff); // negative since we actually need curts-prevtimestamp
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else
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{
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// wraparound occurred and curts is actually larger than prevtimestamp
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unsigneddiff = -unsigneddiff; // to get the actual difference (in absolute value)
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diffts2 = (double) unsigneddiff;
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}
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}
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else
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diffts2 = 0;
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diff = diffts1 - diffts2;
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if (diff < 0)
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diff = -diff;
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diff -= djitter;
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diff /= 16.0;
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djitter += diff;
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jitter = (uint32_t) djitter;
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#endif
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}
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else
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{
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djitter = 0;
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jitter = 0;
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}
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prevpacktime = receivetime;
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prevtimestamp = pack->GetTimestamp();
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lastmsgtime = prevpacktime;
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if (!ownpacket) // for own packet, this value is set on an outgoing packet
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lastrtptime = prevpacktime;
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}
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}
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RTPSourceData::RTPSourceData(uint32_t s) :
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byetime(0, 0)
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{
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ssrc = s;
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issender = false;
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iscsrc = false;
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timestampunit = -1;
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receivedbye = false;
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byereason = 0;
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byereasonlen = 0;
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rtpaddr = 0;
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rtcpaddr = 0;
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ownssrc = false;
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validated = false;
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processedinrtcp = false;
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isrtpaddrset = false;
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isrtcpaddrset = false;
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}
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RTPSourceData::~RTPSourceData()
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{
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FlushPackets();
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if (byereason)
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delete[] byereason;
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if (rtpaddr)
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delete rtpaddr;
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if (rtcpaddr)
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delete rtcpaddr;
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}
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double RTPSourceData::INF_GetEstimatedTimestampUnit() const
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{
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if (!SRprevinf.HasInfo())
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return -1.0;
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RTPTime t1 = RTPTime(SRinf.GetNTPTimestamp());
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RTPTime t2 = RTPTime(SRprevinf.GetNTPTimestamp());
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if (t1.IsZero() || t2.IsZero()) // one of the times couldn't be calculated
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return -1.0;
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if (t1 <= t2)
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return -1.0;
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t1 -= t2; // get the time difference
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uint32_t tsdiff = SRinf.GetRTPTimestamp() - SRprevinf.GetRTPTimestamp();
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return (t1.GetDouble() / ((double) tsdiff));
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}
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RTPTime RTPSourceData::INF_GetRoundtripTime() const
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{
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if (!RRinf.HasInfo())
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return RTPTime(0, 0);
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if (RRinf.GetDelaySinceLastSR() == 0 && RRinf.GetLastSRTimestamp() == 0)
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return RTPTime(0, 0);
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RTPNTPTime recvtime = RRinf.GetReceiveTime().GetNTPTime();
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uint32_t rtt = ((recvtime.GetMSW() & 0xFFFF) << 16) | ((recvtime.GetLSW() >> 16) & 0xFFFF);
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rtt -= RRinf.GetLastSRTimestamp();
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rtt -= RRinf.GetDelaySinceLastSR();
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double drtt = (((double) rtt) / 65536.0);
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return RTPTime(drtt);
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}
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} // end namespace
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