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408 lines
13 KiB
C++
408 lines
13 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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/**
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* \file rtcpcompoundpacketbuilder.h
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*/
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#ifndef RTCPCOMPOUNDPACKETBUILDER_H
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#define RTCPCOMPOUNDPACKETBUILDER_H
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#include <list>
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#include <algorithm>
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#include "rtpconfig.h"
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#include "rtcpcompoundpacket.h"
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#include "rtptimeutilities.h"
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#include "rtcpsdespacket.h"
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#include "rtperrors.h"
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#include "rtpendian.h"
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#include "export.h"
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namespace qrtplib
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{
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/** This class can be used to construct an RTCP compound packet.
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* The RTCPCompoundPacketBuilder class can be used to construct an RTCP compound packet. It inherits the member
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* functions of RTCPCompoundPacket which can be used to access the information in the compound packet once it has
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* been built successfully. The member functions described below return \c ERR_RTP_RTCPCOMPPACKBUILDER_NOTENOUGHBYTESLEFT
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* if the action would cause the maximum allowed size to be exceeded.
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*/
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class QRTPLIB_API RTCPCompoundPacketBuilder: public RTCPCompoundPacket
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{
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public:
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/** Constructs an RTCPCompoundPacketBuilder instance, optionally installing a memory manager. */
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RTCPCompoundPacketBuilder();
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~RTCPCompoundPacketBuilder();
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/** Starts building an RTCP compound packet with maximum size \c maxpacketsize.
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* Starts building an RTCP compound packet with maximum size \c maxpacketsize. New memory will be allocated
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* to store the packet.
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*/
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int InitBuild(std::size_t maxpacketsize);
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/** Starts building a RTCP compound packet.
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* Starts building a RTCP compound packet. Data will be stored in \c externalbuffer which
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* can contain \c buffersize bytes.
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*/
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int InitBuild(void *externalbuffer, std::size_t buffersize);
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/** Adds a sender report to the compound packet.
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* Tells the packet builder that the packet should start with a sender report which will contain
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* the sender information specified by this function's arguments. Once the sender report is started,
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* report blocks can be added using the AddReportBlock function.
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*/
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int StartSenderReport(uint32_t senderssrc, const RTPNTPTime &ntptimestamp, uint32_t rtptimestamp, uint32_t packetcount, uint32_t octetcount);
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/** Adds a receiver report to the compound packet.
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* Tells the packet builder that the packet should start with a receiver report which will contain
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* he sender SSRC \c senderssrc. Once the sender report is started, report blocks can be added using the
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* AddReportBlock function.
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*/
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int StartReceiverReport(uint32_t senderssrc);
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/** Adds the report block information specified by the function's arguments.
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* Adds the report block information specified by the function's arguments. If more than 31 report blocks
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* are added, the builder will automatically use a new RTCP receiver report packet.
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*/
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int AddReportBlock(uint32_t ssrc, uint8_t fractionlost, int32_t packetslost, uint32_t exthighestseq, uint32_t jitter, uint32_t lsr, uint32_t dlsr);
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/** Starts an SDES chunk for participant \c ssrc. */
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int AddSDESSource(uint32_t ssrc);
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/** Adds a normal (non-private) SDES item of type \c t to the current SDES chunk.
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* Adds a normal (non-private) SDES item of type \c t to the current SDES chunk. The item's value
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* will have length \c itemlength and will contain the data \c itemdata.
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*/
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int AddSDESNormalItem(RTCPSDESPacket::ItemType t, const void *itemdata, uint8_t itemlength);
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#ifdef RTP_SUPPORT_SDESPRIV
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/** Adds an SDES PRIV item described by the function's arguments to the current SDES chunk. */
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int AddSDESPrivateItem(const void *prefixdata, uint8_t prefixlength, const void *valuedata, uint8_t valuelength);
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#endif // RTP_SUPPORT_SDESPRIV
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/** Adds a BYE packet to the compound packet.
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* Adds a BYE packet to the compound packet. It will contain \c numssrcs source identifiers specified in
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* \c ssrcs and will indicate as reason for leaving the string of length \c reasonlength
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* containing data \c reasondata.
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*/
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int AddBYEPacket(uint32_t *ssrcs, uint8_t numssrcs, const void *reasondata, uint8_t reasonlength);
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/** Adds the APP packet specified by the arguments to the compound packet.
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* Adds the APP packet specified by the arguments to the compound packet. Note that \c appdatalen has to be
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* a multiple of four.
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*/
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int AddAPPPacket(uint8_t subtype, uint32_t ssrc, const uint8_t name[4], const void *appdata, std::size_t appdatalen);
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/** Finishes building the compound packet.
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* Finishes building the compound packet. If successful, the RTCPCompoundPacket member functions
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* can be used to access the RTCP packet data.
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*/
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int EndBuild();
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private:
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class Buffer
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{
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public:
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Buffer() :
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packetdata(0), packetlength(0)
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{
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}
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Buffer(uint8_t *data, std::size_t len) :
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packetdata(data), packetlength(len)
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{
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}
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uint8_t *packetdata;
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std::size_t packetlength;
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};
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class Report
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{
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public:
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Report()
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{
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headerdata = (uint8_t *) headerdata32;
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std::fill(&headerdata32[0], &headerdata32[0] + ((sizeof(uint32_t) + sizeof(RTCPSenderReport)) / sizeof(uint32_t)), 0U);
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isSR = false;
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headerlength = 0;
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}
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~Report()
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{
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Clear();
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}
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void Clear()
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{
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std::list<Buffer>::const_iterator it;
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for (it = reportblocks.begin(); it != reportblocks.end(); it++)
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{
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if ((*it).packetdata)
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delete[] (*it).packetdata;
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}
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reportblocks.clear();
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isSR = false;
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headerlength = 0;
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}
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std::size_t NeededBytes()
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{
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std::size_t x, n, d, r;
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n = reportblocks.size();
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if (n == 0)
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{
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if (headerlength == 0)
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return 0;
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x = sizeof(RTCPCommonHeader) + headerlength;
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}
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else
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{
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x = n * sizeof(RTCPReceiverReport);
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d = n / 31; // max 31 reportblocks per report
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r = n % 31;
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if (r != 0)
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d++;
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x += d * (sizeof(RTCPCommonHeader) + sizeof(uint32_t)); /* header and SSRC */
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if (isSR)
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x += sizeof(RTCPSenderReport);
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}
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return x;
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}
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std::size_t NeededBytesWithExtraReportBlock()
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{
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std::size_t x, n, d, r;
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n = reportblocks.size() + 1; // +1 for the extra block
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x = n * sizeof(RTCPReceiverReport);
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d = n / 31; // max 31 reportblocks per report
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r = n % 31;
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if (r != 0)
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d++;
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x += d * (sizeof(RTCPCommonHeader) + sizeof(uint32_t)); /* header and SSRC */
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if (isSR)
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x += sizeof(RTCPSenderReport);
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return x;
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}
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bool isSR;
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uint8_t *headerdata;
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uint32_t headerdata32[(sizeof(uint32_t) + sizeof(RTCPSenderReport)) / sizeof(uint32_t)]; // either for ssrc and sender info or just ssrc
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std::size_t headerlength;
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std::list<Buffer> reportblocks;
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};
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class SDESSource
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{
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public:
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SDESSource(uint32_t s) :
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ssrc(s), totalitemsize(0)
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{
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}
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~SDESSource()
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{
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std::list<Buffer>::const_iterator it;
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for (it = items.begin(); it != items.end(); it++)
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{
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if ((*it).packetdata)
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delete[] (*it).packetdata;
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}
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items.clear();
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}
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std::size_t NeededBytes()
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{
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std::size_t x, r;
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x = totalitemsize + 1; // +1 for the 0 byte which terminates the item list
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r = x % sizeof(uint32_t);
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if (r != 0)
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x += (sizeof(uint32_t) - r); // make sure it ends on a 32 bit boundary
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x += sizeof(uint32_t); // for ssrc
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return x;
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}
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std::size_t NeededBytesWithExtraItem(uint8_t itemdatalength)
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{
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std::size_t x, r;
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x = totalitemsize + sizeof(RTCPSDESHeader) + (std::size_t) itemdatalength + 1;
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r = x % sizeof(uint32_t);
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if (r != 0)
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x += (sizeof(uint32_t) - r); // make sure it ends on a 32 bit boundary
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x += sizeof(uint32_t); // for ssrc
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return x;
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}
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void AddItem(uint8_t *buf, std::size_t len)
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{
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Buffer b(buf, len);
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totalitemsize += len;
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items.push_back(b);
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}
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uint32_t ssrc;
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std::list<Buffer> items;
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private:
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std::size_t totalitemsize;
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};
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class SDES
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{
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public:
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SDES()
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{
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sdesit = sdessources.end();
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}
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~SDES()
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{
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Clear();
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}
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void Clear()
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{
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std::list<SDESSource *>::const_iterator it;
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for (it = sdessources.begin(); it != sdessources.end(); it++)
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delete *it;
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sdessources.clear();
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}
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int AddSSRC(uint32_t ssrc)
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{
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SDESSource *s = new SDESSource(ssrc);
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sdessources.push_back(s);
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sdesit = sdessources.end();
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sdesit--;
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return 0;
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}
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int AddItem(uint8_t *buf, std::size_t len)
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{
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if (sdessources.empty())
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return ERR_RTP_RTCPCOMPPACKBUILDER_NOCURRENTSOURCE;
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(*sdesit)->AddItem(buf, len);
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return 0;
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}
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std::size_t NeededBytes()
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{
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std::list<SDESSource *>::const_iterator it;
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std::size_t x = 0;
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std::size_t n, d, r;
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if (sdessources.empty())
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return 0;
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for (it = sdessources.begin(); it != sdessources.end(); it++)
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x += (*it)->NeededBytes();
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n = sdessources.size();
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d = n / 31;
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r = n % 31;
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if (r != 0)
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d++;
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x += d * sizeof(RTCPCommonHeader);
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return x;
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}
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std::size_t NeededBytesWithExtraItem(uint8_t itemdatalength)
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{
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std::list<SDESSource *>::const_iterator it;
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std::size_t x = 0;
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std::size_t n, d, r;
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if (sdessources.empty())
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return 0;
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for (it = sdessources.begin(); it != sdesit; it++)
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x += (*it)->NeededBytes();
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x += (*sdesit)->NeededBytesWithExtraItem(itemdatalength);
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n = sdessources.size();
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d = n / 31;
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r = n % 31;
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if (r != 0)
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d++;
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x += d * sizeof(RTCPCommonHeader);
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return x;
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}
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std::size_t NeededBytesWithExtraSource()
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{
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std::list<SDESSource *>::const_iterator it;
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std::size_t x = 0;
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std::size_t n, d, r;
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if (sdessources.empty())
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return 0;
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for (it = sdessources.begin(); it != sdessources.end(); it++)
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x += (*it)->NeededBytes();
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// for the extra source we'll need at least 8 bytes (ssrc and four 0 bytes)
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x += sizeof(uint32_t) * 2;
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n = sdessources.size() + 1; // also, the number of sources will increase
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d = n / 31;
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r = n % 31;
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if (r != 0)
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d++;
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x += d * sizeof(RTCPCommonHeader);
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return x;
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}
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std::list<SDESSource *> sdessources;
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private:
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std::list<SDESSource *>::const_iterator sdesit;
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};
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RTPEndian m_endian;
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std::size_t maximumpacketsize;
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uint8_t *buffer;
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bool external;
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bool arebuilding;
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Report report;
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SDES sdes;
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std::list<Buffer> byepackets;
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std::size_t byesize;
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std::list<Buffer> apppackets;
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std::size_t appsize;
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void ClearBuildBuffers();
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};
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} // end namespace
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#endif // RTCPCOMPOUNDPACKETBUILDER_H
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