mirror of
https://github.com/mii443/libdatachannel.git
synced 2025-08-22 15:15:28 +00:00
743 lines
22 KiB
C++
743 lines
22 KiB
C++
/**
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* Copyright (c) 2020 Staz Modrzynski
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* Copyright (c) 2020 Paul-Louis Ageneau
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* Copyright (c) 2020 Filip Klembara (in2core)
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#ifndef RTC_RTP_HPP
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#define RTC_RTP_HPP
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#include "log.hpp"
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#include <cmath>
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#ifdef _WIN32
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#include <winsock2.h>
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#else
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#include <arpa/inet.h>
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#endif
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#ifndef htonll
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#define htonll(x) \
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((uint64_t)(((uint64_t)htonl((uint32_t)(x))) << 32) | (uint64_t)htonl((uint32_t)((x) >> 32)))
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#endif
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#ifndef ntohll
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#define ntohll(x) htonll(x)
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#endif
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namespace rtc {
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typedef uint32_t SSRC;
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#pragma pack(push, 1)
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struct RTP {
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private:
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uint8_t _first;
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uint8_t _payloadType;
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uint16_t _seqNumber;
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uint32_t _timestamp;
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SSRC _ssrc;
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public:
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SSRC csrc[16];
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inline uint8_t version() const { return _first >> 6; }
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inline bool padding() const { return (_first >> 5) & 0x01; }
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inline bool extension() const { return (_first >> 4) & 0x01; }
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inline uint8_t csrcCount() const { return _first & 0x0F; }
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inline uint8_t marker() const { return _payloadType & 0b10000000; }
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inline uint8_t payloadType() const { return _payloadType & 0b01111111; }
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inline uint16_t seqNumber() const { return ntohs(_seqNumber); }
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inline uint32_t timestamp() const { return ntohl(_timestamp); }
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inline uint32_t ssrc() const { return ntohl(_ssrc); }
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inline size_t getSize() const {
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return reinterpret_cast<const char *>(&csrc) - reinterpret_cast<const char *>(this) +
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sizeof(SSRC) * csrcCount();
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}
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[[nodiscard]] char *getBody() {
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return reinterpret_cast<char *>(&csrc) + sizeof(SSRC) * csrcCount();
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}
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[[nodiscard]] const char *getBody() const {
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return reinterpret_cast<const char *>(&csrc) + sizeof(SSRC) * csrcCount();
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}
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inline void preparePacket() { _first |= (1 << 7); }
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inline void setSeqNumber(uint16_t newSeqNo) { _seqNumber = htons(newSeqNo); }
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inline void setPayloadType(uint8_t newPayloadType) {
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_payloadType = (_payloadType & 0b10000000u) | (0b01111111u & newPayloadType);
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}
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inline void setSsrc(uint32_t in_ssrc) { _ssrc = htonl(in_ssrc); }
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inline void setMarker(bool marker) { _payloadType = (_payloadType & 0x7F) | (marker << 7); };
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void setTimestamp(uint32_t i) { _timestamp = htonl(i); }
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void log() {
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PLOG_VERBOSE << "RTP V: " << (int)version() << " P: " << (padding() ? "P" : " ")
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<< " X: " << (extension() ? "X" : " ") << " CC: " << (int)csrcCount()
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<< " M: " << (marker() ? "M" : " ") << " PT: " << (int)payloadType()
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<< " SEQNO: " << seqNumber() << " TS: " << timestamp();
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}
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};
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struct RTCP_ReportBlock {
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SSRC ssrc;
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private:
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uint32_t _fractionLostAndPacketsLost; // fraction lost is 8-bit, packets lost is 24-bit
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uint16_t _seqNoCycles;
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uint16_t _highestSeqNo;
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uint32_t _jitter;
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uint32_t _lastReport;
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uint32_t _delaySinceLastReport;
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public:
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inline void preparePacket(SSRC in_ssrc, [[maybe_unused]] unsigned int packetsLost,
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[[maybe_unused]] unsigned int totalPackets, uint16_t highestSeqNo,
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uint16_t seqNoCycles, uint32_t jitter, uint64_t lastSR_NTP,
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uint64_t lastSR_DELAY) {
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setSeqNo(highestSeqNo, seqNoCycles);
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setJitter(jitter);
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setSSRC(in_ssrc);
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// Middle 32 bits of NTP Timestamp
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// this->lastReport = lastSR_NTP >> 16u;
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setNTPOfSR(uint64_t(lastSR_NTP));
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setDelaySinceSR(uint32_t(lastSR_DELAY));
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// The delay, expressed in units of 1/65536 seconds
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// this->delaySinceLastReport = lastSR_DELAY;
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}
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inline void setSSRC(SSRC in_ssrc) { this->ssrc = htonl(in_ssrc); }
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[[nodiscard]] inline SSRC getSSRC() const { return ntohl(ssrc); }
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inline void setPacketsLost([[maybe_unused]] unsigned int packetsLost,
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[[maybe_unused]] unsigned int totalPackets) {
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// TODO Implement loss percentages.
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_fractionLostAndPacketsLost = 0;
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}
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[[nodiscard]] inline unsigned int getLossPercentage() const {
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// TODO Implement loss percentages.
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return 0;
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}
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[[nodiscard]] inline unsigned int getPacketLostCount() const {
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// TODO Implement total packets lost.
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return 0;
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}
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inline uint16_t seqNoCycles() const { return ntohs(_seqNoCycles); }
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inline uint16_t highestSeqNo() const { return ntohs(_highestSeqNo); }
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inline uint32_t jitter() const { return ntohl(_jitter); }
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inline void setSeqNo(uint16_t highestSeqNo, uint16_t seqNoCycles) {
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_highestSeqNo = htons(highestSeqNo);
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_seqNoCycles = htons(seqNoCycles);
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}
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inline void setJitter(uint32_t jitter) { _jitter = htonl(jitter); }
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inline void setNTPOfSR(uint64_t ntp) { _lastReport = htonll(ntp >> 16u); }
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[[nodiscard]] inline uint32_t getNTPOfSR() const { return ntohl(_lastReport) << 16u; }
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inline void setDelaySinceSR(uint32_t sr) {
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// The delay, expressed in units of 1/65536 seconds
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_delaySinceLastReport = htonl(sr);
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}
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[[nodiscard]] inline uint32_t getDelaySinceSR() const { return ntohl(_delaySinceLastReport); }
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inline void log() const {
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PLOG_VERBOSE << "RTCP report block: "
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<< "ssrc="
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<< ntohl(ssrc)
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// TODO: Implement these reports
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// << ", fractionLost=" << fractionLost
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// << ", packetsLost=" << packetsLost
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<< ", highestSeqNo=" << highestSeqNo() << ", seqNoCycles=" << seqNoCycles()
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<< ", jitter=" << jitter() << ", lastSR=" << getNTPOfSR()
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<< ", lastSRDelay=" << getDelaySinceSR();
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}
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};
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struct RTCP_HEADER {
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private:
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uint8_t _first;
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uint8_t _payloadType;
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uint16_t _length;
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public:
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inline uint8_t version() const { return _first >> 6; }
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inline bool padding() const { return (_first >> 5) & 0x01; }
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inline uint8_t reportCount() const { return _first & 0x0F; }
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inline uint8_t payloadType() const { return _payloadType; }
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inline uint16_t length() const { return ntohs(_length); }
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inline size_t lengthInBytes() const { return (1 + length()) * 4; }
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inline void setPayloadType(uint8_t type) { _payloadType = type; }
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inline void setReportCount(uint8_t count) {
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_first = (_first & 0b11100000u) | (count & 0b00011111u);
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}
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inline void setLength(uint16_t length) { _length = htons(length); }
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inline void prepareHeader(uint8_t payloadType, uint8_t reportCount, uint16_t length) {
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_first = 0b10000000; // version 2, no padding
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setReportCount(reportCount);
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setPayloadType(payloadType);
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setLength(length);
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}
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inline void log() const {
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PLOG_VERBOSE << "RTCP header: "
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<< "version=" << unsigned(version()) << ", padding=" << padding()
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<< ", reportCount=" << unsigned(reportCount())
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<< ", payloadType=" << unsigned(payloadType()) << ", length=" << length();
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}
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};
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struct RTCP_FB_HEADER {
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RTCP_HEADER header;
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SSRC packetSender;
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SSRC mediaSource;
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[[nodiscard]] SSRC getPacketSenderSSRC() const { return ntohl(packetSender); }
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[[nodiscard]] SSRC getMediaSourceSSRC() const { return ntohl(mediaSource); }
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void setPacketSenderSSRC(SSRC ssrc) { this->packetSender = htonl(ssrc); }
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void setMediaSourceSSRC(SSRC ssrc) { this->mediaSource = htonl(ssrc); }
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void log() {
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header.log();
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PLOG_VERBOSE << "FB: "
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<< " packet sender: " << getPacketSenderSSRC()
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<< " media source: " << getMediaSourceSSRC();
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}
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};
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struct RTCP_SR {
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RTCP_HEADER header;
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SSRC _senderSSRC;
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private:
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uint64_t _ntpTimestamp;
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uint32_t _rtpTimestamp;
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uint32_t _packetCount;
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uint32_t _octetCount;
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RTCP_ReportBlock _reportBlocks;
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public:
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inline void preparePacket(SSRC senderSSRC, uint8_t reportCount) {
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unsigned int length =
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((sizeof(header) + 24 + reportCount * sizeof(RTCP_ReportBlock)) / 4) - 1;
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header.prepareHeader(200, reportCount, uint16_t(length));
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this->_senderSSRC = htonl(senderSSRC);
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}
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[[nodiscard]] inline RTCP_ReportBlock *getReportBlock(int num) { return &_reportBlocks + num; }
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[[nodiscard]] inline const RTCP_ReportBlock *getReportBlock(int num) const {
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return &_reportBlocks + num;
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}
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[[nodiscard]] static unsigned int size(unsigned int reportCount) {
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return sizeof(RTCP_HEADER) + 24 + reportCount * sizeof(RTCP_ReportBlock);
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}
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[[nodiscard]] inline size_t getSize() const {
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// "length" in packet is one less than the number of 32 bit words in the packet.
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return sizeof(uint32_t) * (1 + size_t(header.length()));
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}
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inline uint64_t ntpTimestamp() const { return ntohll(_ntpTimestamp); }
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inline uint32_t rtpTimestamp() const { return ntohl(_rtpTimestamp); }
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inline uint32_t packetCount() const { return ntohl(_packetCount); }
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inline uint32_t octetCount() const { return ntohl(_octetCount); }
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inline uint32_t senderSSRC() const { return ntohl(_senderSSRC); }
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inline void setNtpTimestamp(uint64_t ts) { _ntpTimestamp = htonll(ts); }
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inline void setRtpTimestamp(uint32_t ts) { _rtpTimestamp = htonl(ts); }
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inline void setOctetCount(uint32_t ts) { _octetCount = htonl(ts); }
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inline void setPacketCount(uint32_t ts) { _packetCount = htonl(ts); }
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inline void log() const {
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header.log();
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PLOG_VERBOSE << "RTCP SR: "
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<< " SSRC=" << senderSSRC() << ", NTP_TS=" << ntpTimestamp()
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<< ", RTP_TS=" << rtpTimestamp() << ", packetCount=" << packetCount()
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<< ", octetCount=" << octetCount();
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for (unsigned i = 0; i < unsigned(header.reportCount()); i++) {
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getReportBlock(i)->log();
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}
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}
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};
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struct RTCP_SDES_ITEM {
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public:
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uint8_t type;
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private:
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uint8_t _length;
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char _text[1];
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public:
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inline std::string text() const { return std::string(_text, _length); }
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inline void setText(std::string text) {
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if(text.size() > 0xFF)
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throw std::invalid_argument("text is too long");
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_length = uint8_t(text.size());
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memcpy(_text, text.data(), text.size());
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}
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inline uint8_t length() { return _length; }
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[[nodiscard]] static unsigned int size(uint8_t textLength) { return textLength + 2; }
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};
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struct RTCP_SDES_CHUNK {
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private:
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SSRC _ssrc;
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RTCP_SDES_ITEM _items;
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public:
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inline SSRC ssrc() const { return ntohl(_ssrc); }
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inline void setSSRC(SSRC ssrc) { _ssrc = htonl(ssrc); }
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/// Get item at given index
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/// @note All items with index < `num` must be valid, otherwise this function has undefined
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/// behaviour (use `safelyCountChunkSize` to check if chunk is valid)
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/// @param num Index of item to return
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inline RTCP_SDES_ITEM *getItem(int num) {
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auto base = &_items;
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while (num-- > 0) {
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auto itemSize = RTCP_SDES_ITEM::size(base->length());
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base = reinterpret_cast<RTCP_SDES_ITEM *>(reinterpret_cast<uint8_t *>(base) + itemSize);
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}
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return reinterpret_cast<RTCP_SDES_ITEM *>(base);
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}
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long safelyCountChunkSize(size_t maxChunkSize) {
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if (maxChunkSize < RTCP_SDES_CHUNK::size({})) {
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// chunk is truncated
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return -1;
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} else {
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size_t size = sizeof(SSRC);
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unsigned int i = 0;
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// We can always access first 4 bytes of first item (in case of no items there will be 4
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// null bytes)
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auto item = getItem(i);
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std::vector<uint8_t> textsLength{};
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while (item->type != 0) {
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if (size + RTCP_SDES_ITEM::size(0) > maxChunkSize) {
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// item is too short
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return -1;
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}
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auto itemLength = item->length();
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if (size + RTCP_SDES_ITEM::size(itemLength) >= maxChunkSize) {
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// item is too large (it can't be equal to chunk size because after item there
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// must be 1-4 null bytes as padding)
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return -1;
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}
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textsLength.push_back(itemLength);
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// safely to access next item
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item = getItem(++i);
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}
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auto realSize = RTCP_SDES_CHUNK::size(textsLength);
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if (realSize > maxChunkSize) {
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// Chunk is too large
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return -1;
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}
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return realSize;
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}
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}
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[[nodiscard]] static unsigned int size(const std::vector<uint8_t> textLengths) {
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unsigned int itemsSize = 0;
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for (auto length : textLengths) {
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itemsSize += RTCP_SDES_ITEM::size(length);
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}
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auto nullTerminatedItemsSize = itemsSize + 1;
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auto words = uint8_t(std::ceil(double(nullTerminatedItemsSize) / 4)) + 1;
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return words * 4;
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}
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/// Get size of chunk
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/// @note All items must be valid, otherwise this function has undefined behaviour (use
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/// `safelyCountChunkSize` to check if chunk is valid)
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[[nodiscard]] unsigned int getSize() {
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std::vector<uint8_t> textLengths{};
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unsigned int i = 0;
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auto item = getItem(i);
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while (item->type != 0) {
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textLengths.push_back(item->length());
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item = getItem(++i);
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}
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return size(textLengths);
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}
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};
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struct RTCP_SDES {
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RTCP_HEADER header;
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private:
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RTCP_SDES_CHUNK _chunks;
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public:
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inline void preparePacket(uint8_t chunkCount) {
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unsigned int chunkSize = 0;
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for (uint8_t i = 0; i < chunkCount; i++) {
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auto chunk = getChunk(i);
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chunkSize += chunk->getSize();
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}
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uint16_t length = uint16_t((sizeof(header) + chunkSize) / 4 - 1);
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header.prepareHeader(202, chunkCount, length);
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}
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bool isValid() {
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auto chunksSize = header.lengthInBytes() - sizeof(header);
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if (chunksSize == 0) {
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return true;
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} else {
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// there is at least one chunk
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unsigned int i = 0;
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unsigned int size = 0;
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while (size < chunksSize) {
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if (chunksSize < size + RTCP_SDES_CHUNK::size({})) {
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// chunk is truncated
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return false;
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}
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auto chunk = getChunk(i++);
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auto chunkSize = chunk->safelyCountChunkSize(chunksSize - size);
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if (chunkSize < 0) {
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// chunk is invalid
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return false;
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}
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size += chunkSize;
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}
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return size == chunksSize;
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}
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}
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/// Returns number of chunks in this packet
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/// @note Returns 0 if packet is invalid
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inline unsigned int chunksCount() {
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if (!isValid()) {
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return 0;
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}
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uint16_t chunksSize = 4 * (header.length() + 1) - sizeof(header);
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unsigned int size = 0;
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unsigned int i = 0;
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while (size < chunksSize) {
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size += getChunk(i++)->getSize();
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}
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return i;
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}
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/// Get chunk at given index
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/// @note All chunks (and their items) with index < `num` must be valid, otherwise this function
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/// has undefined behaviour (use `isValid` to check if chunk is valid)
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/// @param num Index of chunk to return
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inline RTCP_SDES_CHUNK *getChunk(int num) {
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auto base = &_chunks;
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while (num-- > 0) {
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auto chunkSize = base->getSize();
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base =
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reinterpret_cast<RTCP_SDES_CHUNK *>(reinterpret_cast<uint8_t *>(base) + chunkSize);
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}
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return reinterpret_cast<RTCP_SDES_CHUNK *>(base);
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}
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[[nodiscard]] static unsigned int size(const std::vector<std::vector<uint8_t>> lengths) {
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unsigned int chunks_size = 0;
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for (auto length : lengths) {
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chunks_size += RTCP_SDES_CHUNK::size(length);
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}
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return 4 + chunks_size;
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}
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};
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struct RTCP_RR {
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RTCP_HEADER header;
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SSRC _senderSSRC;
|
|
|
|
private:
|
|
RTCP_ReportBlock _reportBlocks;
|
|
|
|
public:
|
|
[[nodiscard]] inline RTCP_ReportBlock *getReportBlock(int num) { return &_reportBlocks + num; }
|
|
[[nodiscard]] inline const RTCP_ReportBlock *getReportBlock(int num) const {
|
|
return &_reportBlocks + num;
|
|
}
|
|
|
|
inline SSRC senderSSRC() const { return ntohl(_senderSSRC); }
|
|
inline void setSenderSSRC(SSRC ssrc) { this->_senderSSRC = htonl(ssrc); }
|
|
|
|
[[nodiscard]] inline size_t getSize() const {
|
|
// "length" in packet is one less than the number of 32 bit words in the packet.
|
|
return sizeof(uint32_t) * (1 + size_t(header.length()));
|
|
}
|
|
|
|
inline void preparePacket(SSRC senderSSRC, uint8_t reportCount) {
|
|
// "length" in packet is one less than the number of 32 bit words in the packet.
|
|
size_t length = (sizeWithReportBlocks(reportCount) / 4) - 1;
|
|
header.prepareHeader(201, reportCount, uint16_t(length));
|
|
this->_senderSSRC = htonl(senderSSRC);
|
|
}
|
|
|
|
inline static size_t sizeWithReportBlocks(uint8_t reportCount) {
|
|
return sizeof(header) + 4 + size_t(reportCount) * sizeof(RTCP_ReportBlock);
|
|
}
|
|
|
|
inline bool isSenderReport() { return header.payloadType() == 200; }
|
|
|
|
inline bool isReceiverReport() { return header.payloadType() == 201; }
|
|
|
|
inline void log() const {
|
|
header.log();
|
|
PLOG_VERBOSE << "RTCP RR: "
|
|
<< " SSRC=" << ntohl(_senderSSRC);
|
|
|
|
for (unsigned i = 0; i < unsigned(header.reportCount()); i++) {
|
|
getReportBlock(i)->log();
|
|
}
|
|
}
|
|
};
|
|
|
|
struct RTCP_REMB {
|
|
RTCP_FB_HEADER header;
|
|
|
|
/*! \brief Unique identifier ('R' 'E' 'M' 'B') */
|
|
char id[4];
|
|
|
|
/*! \brief Num SSRC, Br Exp, Br Mantissa (bit mask) */
|
|
uint32_t bitrate;
|
|
|
|
SSRC ssrc[1];
|
|
|
|
[[nodiscard]] unsigned int getSize() const {
|
|
// "length" in packet is one less than the number of 32 bit words in the packet.
|
|
return sizeof(uint32_t) * (1 + header.header.length());
|
|
}
|
|
|
|
void preparePacket(SSRC senderSSRC, unsigned int numSSRC, unsigned int in_bitrate) {
|
|
|
|
// Report Count becomes the format here.
|
|
header.header.prepareHeader(206, 15, 0);
|
|
|
|
// Always zero.
|
|
header.setMediaSourceSSRC(0);
|
|
|
|
header.setPacketSenderSSRC(senderSSRC);
|
|
|
|
id[0] = 'R';
|
|
id[1] = 'E';
|
|
id[2] = 'M';
|
|
id[3] = 'B';
|
|
|
|
setBitrate(numSSRC, in_bitrate);
|
|
}
|
|
|
|
void setBitrate(unsigned int numSSRC, unsigned int in_bitrate) {
|
|
unsigned int exp = 0;
|
|
while (in_bitrate > pow(2, 18) - 1) {
|
|
exp++;
|
|
in_bitrate /= 2;
|
|
}
|
|
|
|
// "length" in packet is one less than the number of 32 bit words in the packet.
|
|
header.header.setLength(
|
|
uint16_t((offsetof(RTCP_REMB, ssrc) / sizeof(uint32_t)) - 1 + numSSRC));
|
|
|
|
this->bitrate = htonl((numSSRC << (32u - 8u)) | (exp << (32u - 8u - 6u)) | in_bitrate);
|
|
}
|
|
|
|
void setSsrc(int iterator, SSRC newSssrc) { ssrc[iterator] = htonl(newSssrc); }
|
|
|
|
size_t static inline sizeWithSSRCs(int count) {
|
|
return sizeof(RTCP_REMB) + (count - 1) * sizeof(SSRC);
|
|
}
|
|
};
|
|
|
|
struct RTCP_PLI {
|
|
RTCP_FB_HEADER header;
|
|
|
|
void preparePacket(SSRC messageSSRC) {
|
|
header.header.prepareHeader(206, 1, 2);
|
|
header.setPacketSenderSSRC(messageSSRC);
|
|
header.setMediaSourceSSRC(messageSSRC);
|
|
}
|
|
|
|
void print() { header.log(); }
|
|
|
|
[[nodiscard]] static unsigned int size() { return sizeof(RTCP_FB_HEADER); }
|
|
};
|
|
|
|
struct RTCP_FIR_PART {
|
|
uint32_t ssrc;
|
|
uint8_t seqNo;
|
|
uint8_t dummy1;
|
|
uint16_t dummy2;
|
|
};
|
|
|
|
struct RTCP_FIR {
|
|
RTCP_FB_HEADER header;
|
|
RTCP_FIR_PART parts[1];
|
|
|
|
void preparePacket(SSRC messageSSRC, uint8_t seqNo) {
|
|
header.header.prepareHeader(206, 4, 2 + 2 * 1);
|
|
header.setPacketSenderSSRC(messageSSRC);
|
|
header.setMediaSourceSSRC(messageSSRC);
|
|
parts[0].ssrc = htonl(messageSSRC);
|
|
parts[0].seqNo = seqNo;
|
|
}
|
|
|
|
void print() { header.log(); }
|
|
|
|
[[nodiscard]] static unsigned int size() {
|
|
return sizeof(RTCP_FB_HEADER) + sizeof(RTCP_FIR_PART);
|
|
}
|
|
};
|
|
|
|
struct RTCP_NACK_PART {
|
|
uint16_t _pid;
|
|
uint16_t _blp;
|
|
|
|
uint16_t getPID() { return ntohs(_pid); }
|
|
uint16_t getBLP() { return ntohs(_blp); }
|
|
|
|
void setPID(uint16_t pid) { _pid = htons(pid); }
|
|
void setBLP(uint16_t blp) { _blp = htons(blp); }
|
|
|
|
std::vector<uint16_t> getSequenceNumbers() {
|
|
std::vector<uint16_t> result{};
|
|
result.reserve(17);
|
|
uint16_t pid = getPID();
|
|
result.push_back(pid);
|
|
uint16_t bitmask = getBLP();
|
|
uint16_t i = pid + 1;
|
|
while (bitmask > 0) {
|
|
if (bitmask & 0x1) {
|
|
result.push_back(i);
|
|
}
|
|
i += 1;
|
|
bitmask >>= 1;
|
|
}
|
|
return result;
|
|
}
|
|
};
|
|
|
|
class RTCP_NACK {
|
|
public:
|
|
RTCP_FB_HEADER header;
|
|
RTCP_NACK_PART parts[1];
|
|
|
|
public:
|
|
void preparePacket(SSRC ssrc, unsigned int discreteSeqNoCount) {
|
|
header.header.prepareHeader(205, 1, 2 + uint16_t(discreteSeqNoCount));
|
|
header.setMediaSourceSSRC(ssrc);
|
|
header.setPacketSenderSSRC(ssrc);
|
|
}
|
|
|
|
/**
|
|
* Add a packet to the list of missing packets.
|
|
* @param fciCount The number of FCI fields that are present in this packet.
|
|
* Let the number start at zero and let this function grow the number.
|
|
* @param fciPID The seq no of the active FCI. It will be initialized automatically, and will
|
|
* change automatically.
|
|
* @param missingPacket The seq no of the missing packet. This will be added to the queue.
|
|
* @return true if the packet has grown, false otherwise.
|
|
*/
|
|
bool addMissingPacket(unsigned int *fciCount, uint16_t *fciPID, uint16_t missingPacket) {
|
|
if (*fciCount == 0 || missingPacket < *fciPID || missingPacket > (*fciPID + 16)) {
|
|
parts[*fciCount].setPID(missingPacket);
|
|
parts[*fciCount].setBLP(0);
|
|
*fciPID = missingPacket;
|
|
(*fciCount)++;
|
|
return true;
|
|
} else {
|
|
// TODO SPEED!
|
|
uint16_t blp = parts[(*fciCount) - 1].getBLP();
|
|
uint16_t newBit = uint16_t(1u << (missingPacket - (1 + *fciPID)));
|
|
parts[(*fciCount) - 1].setBLP(blp | newBit);
|
|
return false;
|
|
}
|
|
}
|
|
|
|
[[nodiscard]] static unsigned int getSize(unsigned int discreteSeqNoCount) {
|
|
return offsetof(RTCP_NACK, parts) + sizeof(RTCP_NACK_PART) * discreteSeqNoCount;
|
|
}
|
|
|
|
[[nodiscard]] unsigned int getSeqNoCount() { return header.header.length() - 2; }
|
|
};
|
|
|
|
class RTP_RTX {
|
|
private:
|
|
RTP header;
|
|
|
|
public:
|
|
size_t copyTo(RTP *dest, size_t totalSize, uint8_t originalPayloadType) {
|
|
memmove((char *)dest, (char *)this, header.getSize());
|
|
dest->setSeqNumber(getOriginalSeqNo());
|
|
dest->setPayloadType(originalPayloadType);
|
|
memmove(dest->getBody(), getBody(), getBodySize(totalSize));
|
|
return totalSize;
|
|
}
|
|
|
|
[[nodiscard]] uint16_t getOriginalSeqNo() const {
|
|
return ntohs(*(uint16_t *)(header.getBody()));
|
|
}
|
|
|
|
[[nodiscard]] char *getBody() { return header.getBody() + sizeof(uint16_t); }
|
|
|
|
[[nodiscard]] const char *getBody() const { return header.getBody() + sizeof(uint16_t); }
|
|
|
|
[[nodiscard]] size_t getBodySize(size_t totalSize) {
|
|
return totalSize - (getBody() - reinterpret_cast<char *>(this));
|
|
}
|
|
|
|
[[nodiscard]] size_t getSize() const{
|
|
return header.getSize() + sizeof(uint16_t);
|
|
}
|
|
|
|
[[nodiscard]] RTP &getHeader() { return header; }
|
|
|
|
/*
|
|
* Returns the new size of the packet
|
|
*/
|
|
size_t normalizePacket(size_t totalSize, SSRC originalSSRC, uint8_t originalPayloadType) {
|
|
header.setSeqNumber(getOriginalSeqNo());
|
|
header.setSsrc(originalSSRC);
|
|
header.setPayloadType(originalPayloadType);
|
|
// TODO, the -12 is the size of the header (which is variable!)
|
|
memmove(header.getBody(), getBody(), totalSize - getSize());
|
|
return totalSize - 2;
|
|
}
|
|
};
|
|
|
|
#pragma pack(pop)
|
|
|
|
}; // namespace rtc
|
|
|
|
#endif
|