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364 lines
13 KiB
C++
364 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 rtcppacketbuilder.h
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*/
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#ifndef RTCPPACKETBUILDER_H
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#define RTCPPACKETBUILDER_H
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#include "rtptypes.h"
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#include "rtperrors.h"
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#include "rtcpsdesinfo.h"
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#include "rtptimeutilities.h"
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#include "export.h"
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namespace qrtplib
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{
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class RTPSources;
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class RTPPacketBuilder;
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class RTCPScheduler;
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class RTCPCompoundPacket;
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class RTCPCompoundPacketBuilder;
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/** This class can be used to build RTCP compound packets, on a higher level than the RTCPCompoundPacketBuilder.
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* The class RTCPPacketBuilder can be used to build RTCP compound packets. This class is more high-level
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* than the RTCPCompoundPacketBuilder class: it uses the information of an RTPPacketBuilder instance and of
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* an RTPSources instance to automatically generate the next compound packet which should be sent. It also
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* provides functions to determine when SDES items other than the CNAME item should be sent.
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*/
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class QRTPLIB_API RTCPPacketBuilder
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{
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public:
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/** Creates an RTCPPacketBuilder instance.
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* Creates an instance which will use the source table \c sources and the RTP packet builder
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* \c rtppackbuilder to determine the information for the next RTCP compound packet. Optionally,
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* the memory manager \c mgr can be installed.
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*/
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RTCPPacketBuilder(RTPSources &sources, RTPPacketBuilder &rtppackbuilder);
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~RTCPPacketBuilder();
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/** Initializes the builder.
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* Initializes the builder to use the maximum allowed packet size \c maxpacksize, timestamp unit
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* \c timestampunit and the SDES CNAME item specified by \c cname with length \c cnamelen.
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* The timestamp unit is defined as a time interval divided by the timestamp interval corresponding to
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* that interval: for 8000 Hz audio this would be 1/8000.
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*/
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int Init(std::size_t maxpacksize, double timestampunit, const void *cname, std::size_t cnamelen);
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/** Cleans up the builder. */
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void Destroy();
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/** Sets the timestamp unit to be used to \c tsunit.
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* Sets the timestamp unit to be used to \c tsunit. The timestamp unit is defined as a time interval
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* divided by the timestamp interval corresponding to that interval: for 8000 Hz audio this would
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* be 1/8000.
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*/
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int SetTimestampUnit(double tsunit)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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if (tsunit < 0)
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return ERR_RTP_RTCPPACKETBUILDER_ILLEGALTIMESTAMPUNIT;
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timestampunit = tsunit;
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return 0;
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}
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/** Sets the maximum size allowed size of an RTCP compound packet to \c maxpacksize. */
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int SetMaximumPacketSize(std::size_t maxpacksize)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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if (maxpacksize < RTP_MINPACKETSIZE)
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return ERR_RTP_RTCPPACKETBUILDER_ILLEGALMAXPACKSIZE;
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maxpacketsize = maxpacksize;
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return 0;
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}
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/** This function allows you to inform RTCP packet builder about the delay between sampling the first
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* sample of a packet and sending the packet.
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* This function allows you to inform RTCP packet builder about the delay between sampling the first
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* sample of a packet and sending the packet. This delay is taken into account when calculating the
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* relation between RTP timestamp and wallclock time, used for inter-media synchronization.
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*/
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int SetPreTransmissionDelay(const RTPTime &delay)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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transmissiondelay = delay;
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return 0;
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}
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/** Builds the next RTCP compound packet which should be sent and stores it in \c pack. */
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int BuildNextPacket(RTCPCompoundPacket **pack);
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/** Builds a BYE packet with reason for leaving specified by \c reason and length \c reasonlength.
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* Builds a BYE packet with reason for leaving specified by \c reason and length \c reasonlength. If
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* \c useSRifpossible is set to \c true, the RTCP compound packet will start with a sender report if
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* allowed. Otherwise, a receiver report is used.
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*/
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int BuildBYEPacket(RTCPCompoundPacket **pack, const void *reason, std::size_t reasonlength, bool useSRifpossible = true);
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/** Sets the RTCP interval for the SDES name item.
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* After all possible sources in the source table have been processed, the class will check if other
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* SDES items need to be sent. If \c count is zero or negative, nothing will happen. If \c count
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* is positive, an SDES name item will be added after the sources in the source table have been
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* processed \c count times.
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*/
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void SetNameInterval(int count)
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{
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if (!init)
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return;
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interval_name = count;
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}
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/** Sets the RTCP interval for the SDES e-mail item.
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* After all possible sources in the source table have been processed, the class will check if other
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* SDES items need to be sent. If \c count is zero or negative, nothing will happen. If \c count
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* is positive, an SDES e-mail item will be added after the sources in the source table have been
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* processed \c count times.
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*/
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void SetEMailInterval(int count)
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{
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if (!init)
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return;
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interval_email = count;
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}
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/** Sets the RTCP interval for the SDES location item.
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* After all possible sources in the source table have been processed, the class will check if other
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* SDES items need to be sent. If \c count is zero or negative, nothing will happen. If \c count
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* is positive, an SDES location item will be added after the sources in the source table have been
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* processed \c count times.
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*/
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void SetLocationInterval(int count)
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{
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if (!init)
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return;
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interval_location = count;
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}
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/** Sets the RTCP interval for the SDES phone item.
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* After all possible sources in the source table have been processed, the class will check if other
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* SDES items need to be sent. If \c count is zero or negative, nothing will happen. If \c count
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* is positive, an SDES phone item will be added after the sources in the source table have been
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* processed \c count times.
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*/
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void SetPhoneInterval(int count)
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{
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if (!init)
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return;
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interval_phone = count;
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}
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/** Sets the RTCP interval for the SDES tool item.
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* After all possible sources in the source table have been processed, the class will check if other
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* SDES items need to be sent. If \c count is zero or negative, nothing will happen. If \c count
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* is positive, an SDES tool item will be added after the sources in the source table have been
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* processed \c count times.
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*/
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void SetToolInterval(int count)
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{
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if (!init)
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return;
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interval_tool = count;
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}
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/** Sets the RTCP interval for the SDES note item.
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* After all possible sources in the source table have been processed, the class will check if other
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* SDES items need to be sent. If \c count is zero or negative, nothing will happen. If \c count
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* is positive, an SDES note item will be added after the sources in the source table have been
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* processed \c count times.
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*/
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void SetNoteInterval(int count)
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{
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if (!init)
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return;
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interval_note = count;
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}
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/** Sets the SDES name item for the local participant to the value \c s with length \c len. */
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int SetLocalName(const void *s, std::size_t len)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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return ownsdesinfo.SetName((const uint8_t *) s, len);
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}
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/** Sets the SDES e-mail item for the local participant to the value \c s with length \c len. */
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int SetLocalEMail(const void *s, std::size_t len)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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return ownsdesinfo.SetEMail((const uint8_t *) s, len);
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}
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/** Sets the SDES location item for the local participant to the value \c s with length \c len. */
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int SetLocalLocation(const void *s, std::size_t len)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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return ownsdesinfo.SetLocation((const uint8_t *) s, len);
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}
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/** Sets the SDES phone item for the local participant to the value \c s with length \c len. */
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int SetLocalPhone(const void *s, std::size_t len)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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return ownsdesinfo.SetPhone((const uint8_t *) s, len);
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}
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/** Sets the SDES tool item for the local participant to the value \c s with length \c len. */
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int SetLocalTool(const void *s, std::size_t len)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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return ownsdesinfo.SetTool((const uint8_t *) s, len);
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}
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/** Sets the SDES note item for the local participant to the value \c s with length \c len. */
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int SetLocalNote(const void *s, std::size_t len)
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{
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if (!init)
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return ERR_RTP_RTCPPACKETBUILDER_NOTINIT;
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return ownsdesinfo.SetNote((const uint8_t *) s, len);
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}
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/** Returns the own CNAME item with length \c len */
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uint8_t *GetLocalCNAME(std::size_t *len) const
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{
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if (!init)
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return 0;
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return ownsdesinfo.GetCNAME(len);
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}
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private:
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void ClearAllSourceFlags();
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int FillInReportBlocks(RTCPCompoundPacketBuilder *pack, const RTPTime &curtime, int maxcount, bool *full, int *added, int *skipped, bool *atendoflist);
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int FillInSDES(RTCPCompoundPacketBuilder *pack, bool *full, bool *processedall, int *added);
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void ClearAllSDESFlags();
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RTPSources &sources;
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RTPPacketBuilder &rtppacketbuilder;
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bool init;
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std::size_t maxpacketsize;
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double timestampunit;
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bool firstpacket;
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RTPTime prevbuildtime, transmissiondelay;
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class RTCPSDESInfoInternal: public RTCPSDESInfo
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{
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public:
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RTCPSDESInfoInternal()
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{
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ClearFlags();
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}
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void ClearFlags()
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{
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pname = false;
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pemail = false;
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plocation = false;
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pphone = false;
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ptool = false;
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pnote = false;
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}
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bool ProcessedName() const
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{
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return pname;
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}
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bool ProcessedEMail() const
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{
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return pemail;
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}
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bool ProcessedLocation() const
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{
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return plocation;
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}
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bool ProcessedPhone() const
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{
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return pphone;
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}
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bool ProcessedTool() const
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{
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return ptool;
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}
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bool ProcessedNote() const
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{
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return pnote;
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}
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void SetProcessedName(bool v)
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{
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pname = v;
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}
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void SetProcessedEMail(bool v)
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{
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pemail = v;
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}
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void SetProcessedLocation(bool v)
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{
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plocation = v;
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}
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void SetProcessedPhone(bool v)
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{
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pphone = v;
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}
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void SetProcessedTool(bool v)
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{
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ptool = v;
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}
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void SetProcessedNote(bool v)
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{
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pnote = v;
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}
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private:
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bool pname, pemail, plocation, pphone, ptool, pnote;
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};
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RTCPSDESInfoInternal ownsdesinfo;
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int interval_name, interval_email, interval_location;
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int interval_phone, interval_tool, interval_note;
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bool doname, doemail, doloc, dophone, dotool, donote;
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bool processingsdes;
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int sdesbuildcount;
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};
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} // end namespace
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#endif // RTCPPACKETBUILDER_H
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