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niklase@google.com470e71d2011-07-07 08:21:25 +00001/*
pwestin@webrtc.orgf6bb77a2012-01-24 17:16:59 +00002 * Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
niklase@google.com470e71d2011-07-07 08:21:25 +00003 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
pbos@webrtc.orga048d7c2013-05-29 14:27:38 +000011#include "webrtc/modules/rtp_rtcp/source/rtcp_sender.h"
niklase@google.com470e71d2011-07-07 08:21:25 +000012
pbos@webrtc.org12dc1a32013-08-05 16:22:53 +000013#include <assert.h> // assert
14#include <stdlib.h> // rand
stefan@webrtc.org9354cc92012-06-07 08:10:14 +000015#include <string.h> // memcpy
niklase@google.com470e71d2011-07-07 08:21:25 +000016
pbos@webrtc.org12dc1a32013-08-05 16:22:53 +000017#include <algorithm> // min
Erik Språng61be2a42015-04-27 13:32:52 +020018#include <limits> // max
pbos@webrtc.org12dc1a32013-08-05 16:22:53 +000019
Erik Språng61be2a42015-04-27 13:32:52 +020020#include "webrtc/base/checks.h"
pbos@webrtc.orga048d7c2013-05-29 14:27:38 +000021#include "webrtc/common_types.h"
sprang@webrtc.org779c3d12015-03-17 16:42:49 +000022#include "webrtc/modules/rtp_rtcp/source/byte_io.h"
pbos@webrtc.orga048d7c2013-05-29 14:27:38 +000023#include "webrtc/modules/rtp_rtcp/source/rtp_rtcp_impl.h"
24#include "webrtc/system_wrappers/interface/critical_section_wrapper.h"
andresp@webrtc.orgdc80bae2014-04-08 11:06:12 +000025#include "webrtc/system_wrappers/interface/logging.h"
pbos@webrtc.orga048d7c2013-05-29 14:27:38 +000026#include "webrtc/system_wrappers/interface/trace_event.h"
pwestin@webrtc.org741da942011-09-20 13:52:04 +000027
niklase@google.com470e71d2011-07-07 08:21:25 +000028namespace webrtc {
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +000029
30using RTCPUtility::RTCPCnameInformation;
31
Erik Språng61be2a42015-04-27 13:32:52 +020032NACKStringBuilder::NACKStringBuilder()
Erik Språng242e22b2015-05-11 10:17:43 +020033 : stream_(""), count_(0), prevNack_(0), consecutive_(false) {
edjee@google.com79b02892013-04-04 19:43:34 +000034}
35
pbos@webrtc.orgf3e4cee2013-07-31 15:17:19 +000036NACKStringBuilder::~NACKStringBuilder() {}
37
pbos@webrtc.org2f446732013-04-08 11:08:41 +000038void NACKStringBuilder::PushNACK(uint16_t nack)
edjee@google.com79b02892013-04-04 19:43:34 +000039{
Erik Språng242e22b2015-05-11 10:17:43 +020040 if (count_ == 0) {
41 stream_ << nack;
42 } else if (nack == prevNack_ + 1) {
43 consecutive_ = true;
Erik Språng61be2a42015-04-27 13:32:52 +020044 } else {
Erik Språng242e22b2015-05-11 10:17:43 +020045 if (consecutive_) {
46 stream_ << "-" << prevNack_;
47 consecutive_ = false;
edjee@google.com79b02892013-04-04 19:43:34 +000048 }
Erik Språng242e22b2015-05-11 10:17:43 +020049 stream_ << "," << nack;
Erik Språng61be2a42015-04-27 13:32:52 +020050 }
Erik Språng242e22b2015-05-11 10:17:43 +020051 count_++;
52 prevNack_ = nack;
edjee@google.com79b02892013-04-04 19:43:34 +000053}
54
Erik Språng61be2a42015-04-27 13:32:52 +020055std::string NACKStringBuilder::GetResult() {
Erik Språng242e22b2015-05-11 10:17:43 +020056 if (consecutive_) {
57 stream_ << "-" << prevNack_;
58 consecutive_ = false;
Erik Språng61be2a42015-04-27 13:32:52 +020059 }
Erik Språng242e22b2015-05-11 10:17:43 +020060 return stream_.str();
edjee@google.com79b02892013-04-04 19:43:34 +000061}
62
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +000063RTCPSender::FeedbackState::FeedbackState()
64 : send_payload_type(0),
65 frequency_hz(0),
pbos@webrtc.org2f4b14e2014-07-15 15:25:39 +000066 packets_sent(0),
67 media_bytes_sent(0),
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +000068 send_bitrate(0),
69 last_rr_ntp_secs(0),
70 last_rr_ntp_frac(0),
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +000071 remote_sr(0),
Erik Språng61be2a42015-04-27 13:32:52 +020072 has_last_xr_rr(false),
73 module(nullptr) {
74}
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +000075
Erik Språng242e22b2015-05-11 10:17:43 +020076struct RTCPSender::RtcpContext {
77 RtcpContext(const FeedbackState& feedback_state,
78 int32_t nack_size,
79 const uint16_t* nack_list,
80 bool repeat,
81 uint64_t picture_id,
82 uint8_t* buffer,
83 uint32_t buffer_size)
84 : feedback_state(feedback_state),
85 nack_size(nack_size),
86 nack_list(nack_list),
87 repeat(repeat),
88 picture_id(picture_id),
89 buffer(buffer),
90 buffer_size(buffer_size),
91 ntp_sec(0),
92 ntp_frac(0),
Erik Språng242e22b2015-05-11 10:17:43 +020093 position(0) {}
94
95 uint8_t* AllocateData(uint32_t bytes) {
96 DCHECK_LE(position + bytes, buffer_size);
97 uint8_t* ptr = &buffer[position];
98 position += bytes;
99 return ptr;
100 }
101
102 const FeedbackState& feedback_state;
103 int32_t nack_size;
104 const uint16_t* nack_list;
105 bool repeat;
106 uint64_t picture_id;
107 uint8_t* buffer;
108 uint32_t buffer_size;
109 uint32_t ntp_sec;
110 uint32_t ntp_frac;
Erik Språng242e22b2015-05-11 10:17:43 +0200111 uint32_t position;
112};
113
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200114// TODO(sprang): Once all builders use RtcpPacket, call SendToNetwork() here.
115class RTCPSender::PacketBuiltCallback
116 : public rtcp::RtcpPacket::PacketReadyCallback {
117 public:
118 PacketBuiltCallback(RtcpContext* context) : context_(context) {}
119 virtual ~PacketBuiltCallback() {}
120 void OnPacketReady(uint8_t* data, size_t length) override {
121 context_->position += length;
122 }
Erik Språng72aa9a62015-07-31 16:16:02 +0200123 bool BuildPacket(const rtcp::RtcpPacket& packet) {
124 return packet.BuildExternalBuffer(
125 &context_->buffer[context_->position],
126 context_->buffer_size - context_->position, this);
127 }
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200128
129 private:
130 RtcpContext* const context_;
131};
132
pbos@webrtc.org1d0fa5d2015-02-19 12:47:00 +0000133RTCPSender::RTCPSender(
134 int32_t id,
135 bool audio,
136 Clock* clock,
137 ReceiveStatistics* receive_statistics,
138 RtcpPacketTypeCounterObserver* packet_type_counter_observer)
Erik Språng242e22b2015-05-11 10:17:43 +0200139 : id_(id),
140 audio_(audio),
141 clock_(clock),
142 method_(kRtcpOff),
143 critical_section_transport_(
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000144 CriticalSectionWrapper::CreateCriticalSection()),
Erik Språng242e22b2015-05-11 10:17:43 +0200145 cbTransport_(nullptr),
niklase@google.com470e71d2011-07-07 08:21:25 +0000146
Erik Språng242e22b2015-05-11 10:17:43 +0200147 critical_section_rtcp_sender_(
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000148 CriticalSectionWrapper::CreateCriticalSection()),
Erik Språng242e22b2015-05-11 10:17:43 +0200149 using_nack_(false),
150 sending_(false),
151 remb_enabled_(false),
Erik Språng242e22b2015-05-11 10:17:43 +0200152 next_time_to_send_rtcp_(0),
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000153 start_timestamp_(0),
154 last_rtp_timestamp_(0),
155 last_frame_capture_time_ms_(-1),
Erik Språng242e22b2015-05-11 10:17:43 +0200156 ssrc_(0),
157 remote_ssrc_(0),
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000158 receive_statistics_(receive_statistics),
niklase@google.com470e71d2011-07-07 08:21:25 +0000159
Erik Språng242e22b2015-05-11 10:17:43 +0200160 sequence_number_fir_(0),
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000161
Erik Språng242e22b2015-05-11 10:17:43 +0200162 remb_bitrate_(0),
niklase@google.com470e71d2011-07-07 08:21:25 +0000163
Erik Språng242e22b2015-05-11 10:17:43 +0200164 tmmbr_help_(),
165 tmmbr_send_(0),
166 packet_oh_send_(0),
pwestin@webrtc.org741da942011-09-20 13:52:04 +0000167
Erik Språng242e22b2015-05-11 10:17:43 +0200168 app_sub_type_(0),
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200169 app_name_(0),
Erik Språng242e22b2015-05-11 10:17:43 +0200170 app_data_(nullptr),
171 app_length_(0),
niklase@google.com470e71d2011-07-07 08:21:25 +0000172
Erik Språng242e22b2015-05-11 10:17:43 +0200173 xr_send_receiver_reference_time_enabled_(false),
pbos@webrtc.org1d0fa5d2015-02-19 12:47:00 +0000174 packet_type_counter_observer_(packet_type_counter_observer) {
Erik Språng242e22b2015-05-11 10:17:43 +0200175 memset(last_send_report_, 0, sizeof(last_send_report_));
176 memset(last_rtcp_time_, 0, sizeof(last_rtcp_time_));
177
178 builders_[kRtcpSr] = &RTCPSender::BuildSR;
179 builders_[kRtcpRr] = &RTCPSender::BuildRR;
Erik Språng0ea42d32015-06-25 14:46:16 +0200180 builders_[kRtcpSdes] = &RTCPSender::BuildSDES;
Erik Språng242e22b2015-05-11 10:17:43 +0200181 builders_[kRtcpPli] = &RTCPSender::BuildPLI;
182 builders_[kRtcpFir] = &RTCPSender::BuildFIR;
183 builders_[kRtcpSli] = &RTCPSender::BuildSLI;
184 builders_[kRtcpRpsi] = &RTCPSender::BuildRPSI;
185 builders_[kRtcpRemb] = &RTCPSender::BuildREMB;
186 builders_[kRtcpBye] = &RTCPSender::BuildBYE;
187 builders_[kRtcpApp] = &RTCPSender::BuildAPP;
188 builders_[kRtcpTmmbr] = &RTCPSender::BuildTMMBR;
189 builders_[kRtcpTmmbn] = &RTCPSender::BuildTMMBN;
190 builders_[kRtcpNack] = &RTCPSender::BuildNACK;
191 builders_[kRtcpXrVoipMetric] = &RTCPSender::BuildVoIPMetric;
192 builders_[kRtcpXrReceiverReferenceTime] =
193 &RTCPSender::BuildReceiverReferenceTime;
194 builders_[kRtcpXrDlrrReportBlock] = &RTCPSender::BuildDlrr;
niklase@google.com470e71d2011-07-07 08:21:25 +0000195}
196
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000197RTCPSender::~RTCPSender() {
niklase@google.com470e71d2011-07-07 08:21:25 +0000198}
199
Erik Språng61be2a42015-04-27 13:32:52 +0200200int32_t RTCPSender::RegisterSendTransport(Transport* outgoingTransport) {
Erik Språng242e22b2015-05-11 10:17:43 +0200201 CriticalSectionScoped lock(critical_section_transport_.get());
202 cbTransport_ = outgoingTransport;
Erik Språng61be2a42015-04-27 13:32:52 +0200203 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000204}
205
Erik Språng61be2a42015-04-27 13:32:52 +0200206RTCPMethod RTCPSender::Status() const {
Erik Språng242e22b2015-05-11 10:17:43 +0200207 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
208 return method_;
niklase@google.com470e71d2011-07-07 08:21:25 +0000209}
210
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000211void RTCPSender::SetRTCPStatus(RTCPMethod method) {
Erik Språng242e22b2015-05-11 10:17:43 +0200212 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
213 method_ = method;
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000214
215 if (method == kRtcpOff)
216 return;
Erik Språng242e22b2015-05-11 10:17:43 +0200217 next_time_to_send_rtcp_ =
218 clock_->TimeInMilliseconds() +
219 (audio_ ? RTCP_INTERVAL_AUDIO_MS / 2 : RTCP_INTERVAL_VIDEO_MS / 2);
niklase@google.com470e71d2011-07-07 08:21:25 +0000220}
221
Erik Språng61be2a42015-04-27 13:32:52 +0200222bool RTCPSender::Sending() const {
Erik Språng242e22b2015-05-11 10:17:43 +0200223 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
224 return sending_;
niklase@google.com470e71d2011-07-07 08:21:25 +0000225}
226
Erik Språng61be2a42015-04-27 13:32:52 +0200227int32_t RTCPSender::SetSendingStatus(const FeedbackState& feedback_state,
228 bool sending) {
229 bool sendRTCPBye = false;
230 {
Erik Språng242e22b2015-05-11 10:17:43 +0200231 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
niklase@google.com470e71d2011-07-07 08:21:25 +0000232
Erik Språng242e22b2015-05-11 10:17:43 +0200233 if (method_ != kRtcpOff) {
234 if (sending == false && sending_ == true) {
Erik Språng61be2a42015-04-27 13:32:52 +0200235 // Trigger RTCP bye
236 sendRTCPBye = true;
237 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000238 }
Erik Språng242e22b2015-05-11 10:17:43 +0200239 sending_ = sending;
Erik Språng61be2a42015-04-27 13:32:52 +0200240 }
241 if (sendRTCPBye)
242 return SendRTCP(feedback_state, kRtcpBye);
243 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000244}
245
Erik Språng61be2a42015-04-27 13:32:52 +0200246bool RTCPSender::REMB() const {
Erik Språng242e22b2015-05-11 10:17:43 +0200247 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
248 return remb_enabled_;
pwestin@webrtc.org741da942011-09-20 13:52:04 +0000249}
250
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000251void RTCPSender::SetREMBStatus(bool enable) {
Erik Språng242e22b2015-05-11 10:17:43 +0200252 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
253 remb_enabled_ = enable;
pwestin@webrtc.org741da942011-09-20 13:52:04 +0000254}
255
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000256void RTCPSender::SetREMBData(uint32_t bitrate,
257 const std::vector<uint32_t>& ssrcs) {
Erik Språng242e22b2015-05-11 10:17:43 +0200258 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
259 remb_bitrate_ = bitrate;
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000260 remb_ssrcs_ = ssrcs;
stefan@webrtc.org4ef438e2014-07-11 09:55:30 +0000261
Erik Språng242e22b2015-05-11 10:17:43 +0200262 if (remb_enabled_)
263 SetFlag(kRtcpRemb, false);
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000264 // Send a REMB immediately if we have a new REMB. The frequency of REMBs is
265 // throttled by the caller.
Erik Språng242e22b2015-05-11 10:17:43 +0200266 next_time_to_send_rtcp_ = clock_->TimeInMilliseconds();
pwestin@webrtc.org741da942011-09-20 13:52:04 +0000267}
268
Erik Språng61be2a42015-04-27 13:32:52 +0200269bool RTCPSender::TMMBR() const {
Erik Språng242e22b2015-05-11 10:17:43 +0200270 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
271 return IsFlagPresent(RTCPPacketType::kRtcpTmmbr);
niklase@google.com470e71d2011-07-07 08:21:25 +0000272}
273
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000274void RTCPSender::SetTMMBRStatus(bool enable) {
Erik Språng242e22b2015-05-11 10:17:43 +0200275 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
276 if (enable) {
277 SetFlag(RTCPPacketType::kRtcpTmmbr, false);
278 } else {
279 ConsumeFlag(RTCPPacketType::kRtcpTmmbr, true);
280 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000281}
282
stefan@webrtc.org7c3523c2012-09-11 07:00:42 +0000283void RTCPSender::SetStartTimestamp(uint32_t start_timestamp) {
Erik Språng242e22b2015-05-11 10:17:43 +0200284 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
stefan@webrtc.org7c3523c2012-09-11 07:00:42 +0000285 start_timestamp_ = start_timestamp;
286}
287
288void RTCPSender::SetLastRtpTime(uint32_t rtp_timestamp,
289 int64_t capture_time_ms) {
Erik Språng242e22b2015-05-11 10:17:43 +0200290 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
stefan@webrtc.org7c3523c2012-09-11 07:00:42 +0000291 last_rtp_timestamp_ = rtp_timestamp;
292 if (capture_time_ms < 0) {
293 // We don't currently get a capture time from VoiceEngine.
Erik Språng242e22b2015-05-11 10:17:43 +0200294 last_frame_capture_time_ms_ = clock_->TimeInMilliseconds();
stefan@webrtc.org7c3523c2012-09-11 07:00:42 +0000295 } else {
296 last_frame_capture_time_ms_ = capture_time_ms;
297 }
298}
299
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000300void RTCPSender::SetSSRC(uint32_t ssrc) {
Erik Språng242e22b2015-05-11 10:17:43 +0200301 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
niklase@google.com470e71d2011-07-07 08:21:25 +0000302
Erik Språng242e22b2015-05-11 10:17:43 +0200303 if (ssrc_ != 0) {
Erik Språng61be2a42015-04-27 13:32:52 +0200304 // not first SetSSRC, probably due to a collision
305 // schedule a new RTCP report
306 // make sure that we send a RTP packet
Erik Språng242e22b2015-05-11 10:17:43 +0200307 next_time_to_send_rtcp_ = clock_->TimeInMilliseconds() + 100;
Erik Språng61be2a42015-04-27 13:32:52 +0200308 }
Erik Språng242e22b2015-05-11 10:17:43 +0200309 ssrc_ = ssrc;
niklase@google.com470e71d2011-07-07 08:21:25 +0000310}
311
Erik Språng61be2a42015-04-27 13:32:52 +0200312void RTCPSender::SetRemoteSSRC(uint32_t ssrc) {
Erik Språng242e22b2015-05-11 10:17:43 +0200313 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
314 remote_ssrc_ = ssrc;
niklase@google.com470e71d2011-07-07 08:21:25 +0000315}
316
Peter Boström9ba52f82015-06-01 14:12:28 +0200317int32_t RTCPSender::SetCNAME(const char* c_name) {
318 if (!c_name)
tommi@webrtc.orga990e122012-04-26 15:28:22 +0000319 return -1;
320
Peter Boström9ba52f82015-06-01 14:12:28 +0200321 DCHECK_LT(strlen(c_name), static_cast<size_t>(RTCP_CNAME_SIZE));
Erik Språng242e22b2015-05-11 10:17:43 +0200322 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
Erik Språng0ea42d32015-06-25 14:46:16 +0200323 cname_ = c_name;
pwestin@webrtc.orgf6bb77a2012-01-24 17:16:59 +0000324 return 0;
325}
326
Erik Språng0ea42d32015-06-25 14:46:16 +0200327int32_t RTCPSender::AddMixedCNAME(uint32_t SSRC, const char* c_name) {
328 assert(c_name);
329 DCHECK_LT(strlen(c_name), static_cast<size_t>(RTCP_CNAME_SIZE));
Erik Språng242e22b2015-05-11 10:17:43 +0200330 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
Erik Språng0ea42d32015-06-25 14:46:16 +0200331 if (csrc_cnames_.size() >= kRtpCsrcSize)
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000332 return -1;
Erik Språng0ea42d32015-06-25 14:46:16 +0200333
334 csrc_cnames_[SSRC] = c_name;
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000335 return 0;
336}
337
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000338int32_t RTCPSender::RemoveMixedCNAME(uint32_t SSRC) {
Erik Språng242e22b2015-05-11 10:17:43 +0200339 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
Erik Språng0ea42d32015-06-25 14:46:16 +0200340 auto it = csrc_cnames_.find(SSRC);
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000341
Erik Språng242e22b2015-05-11 10:17:43 +0200342 if (it == csrc_cnames_.end())
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000343 return -1;
Erik Språng61be2a42015-04-27 13:32:52 +0200344
Erik Språng242e22b2015-05-11 10:17:43 +0200345 csrc_cnames_.erase(it);
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000346 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000347}
348
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +0000349bool RTCPSender::TimeToSendRTCPReport(bool sendKeyframeBeforeRTP) const {
niklase@google.com470e71d2011-07-07 08:21:25 +0000350/*
351 For audio we use a fix 5 sec interval
352
353 For video we use 1 sec interval fo a BW smaller than 360 kbit/s,
stefan@webrtc.org9d4762e2014-03-24 17:13:00 +0000354 technicaly we break the max 5% RTCP BW for video below 10 kbit/s but
355 that should be extremely rare
niklase@google.com470e71d2011-07-07 08:21:25 +0000356
357
358From RFC 3550
359
360 MAX RTCP BW is 5% if the session BW
361 A send report is approximately 65 bytes inc CNAME
stefan@webrtc.org9d4762e2014-03-24 17:13:00 +0000362 A receiver report is approximately 28 bytes
niklase@google.com470e71d2011-07-07 08:21:25 +0000363
364 The RECOMMENDED value for the reduced minimum in seconds is 360
365 divided by the session bandwidth in kilobits/second. This minimum
366 is smaller than 5 seconds for bandwidths greater than 72 kb/s.
367
368 If the participant has not yet sent an RTCP packet (the variable
369 initial is true), the constant Tmin is set to 2.5 seconds, else it
370 is set to 5 seconds.
371
372 The interval between RTCP packets is varied randomly over the
373 range [0.5,1.5] times the calculated interval to avoid unintended
374 synchronization of all participants
375
376 if we send
377 If the participant is a sender (we_sent true), the constant C is
378 set to the average RTCP packet size (avg_rtcp_size) divided by 25%
379 of the RTCP bandwidth (rtcp_bw), and the constant n is set to the
380 number of senders.
381
382 if we receive only
383 If we_sent is not true, the constant C is set
384 to the average RTCP packet size divided by 75% of the RTCP
385 bandwidth. The constant n is set to the number of receivers
386 (members - senders). If the number of senders is greater than
387 25%, senders and receivers are treated together.
388
389 reconsideration NOT required for peer-to-peer
390 "timer reconsideration" is
391 employed. This algorithm implements a simple back-off mechanism
392 which causes users to hold back RTCP packet transmission if the
393 group sizes are increasing.
394
395 n = number of members
396 C = avg_size/(rtcpBW/4)
397
398 3. The deterministic calculated interval Td is set to max(Tmin, n*C).
399
400 4. The calculated interval T is set to a number uniformly distributed
401 between 0.5 and 1.5 times the deterministic calculated interval.
402
403 5. The resulting value of T is divided by e-3/2=1.21828 to compensate
404 for the fact that the timer reconsideration algorithm converges to
405 a value of the RTCP bandwidth below the intended average
406*/
407
Erik Språng242e22b2015-05-11 10:17:43 +0200408 int64_t now = clock_->TimeInMilliseconds();
xians@webrtc.org8738d272011-11-25 13:43:53 +0000409
Erik Språng242e22b2015-05-11 10:17:43 +0200410 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
xians@webrtc.org8738d272011-11-25 13:43:53 +0000411
Erik Språng242e22b2015-05-11 10:17:43 +0200412 if (method_ == kRtcpOff)
niklase@google.com470e71d2011-07-07 08:21:25 +0000413 return false;
niklase@google.com470e71d2011-07-07 08:21:25 +0000414
Erik Språng242e22b2015-05-11 10:17:43 +0200415 if (!audio_ && sendKeyframeBeforeRTP) {
Erik Språng61be2a42015-04-27 13:32:52 +0200416 // for video key-frames we want to send the RTCP before the large key-frame
417 // if we have a 100 ms margin
418 now += RTCP_SEND_BEFORE_KEY_FRAME_MS;
419 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000420
Erik Språng242e22b2015-05-11 10:17:43 +0200421 if (now >= next_time_to_send_rtcp_) {
Erik Språng61be2a42015-04-27 13:32:52 +0200422 return true;
423 } else if (now < 0x0000ffff &&
Erik Språng242e22b2015-05-11 10:17:43 +0200424 next_time_to_send_rtcp_ > 0xffff0000) { // 65 sec margin
Erik Språng61be2a42015-04-27 13:32:52 +0200425 // wrap
426 return true;
427 }
428 return false;
niklase@google.com470e71d2011-07-07 08:21:25 +0000429}
430
pkasting@chromium.org16825b12015-01-12 21:51:21 +0000431int64_t RTCPSender::SendTimeOfSendReport(uint32_t sendReport) {
Erik Språng242e22b2015-05-11 10:17:43 +0200432 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
niklase@google.com470e71d2011-07-07 08:21:25 +0000433
Erik Språng61be2a42015-04-27 13:32:52 +0200434 // This is only saved when we are the sender
Erik Språng242e22b2015-05-11 10:17:43 +0200435 if ((last_send_report_[0] == 0) || (sendReport == 0)) {
Erik Språng61be2a42015-04-27 13:32:52 +0200436 return 0; // will be ignored
437 } else {
438 for (int i = 0; i < RTCP_NUMBER_OF_SR; ++i) {
Erik Språng242e22b2015-05-11 10:17:43 +0200439 if (last_send_report_[i] == sendReport)
440 return last_rtcp_time_[i];
niklase@google.com470e71d2011-07-07 08:21:25 +0000441 }
Erik Språng61be2a42015-04-27 13:32:52 +0200442 }
443 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000444}
445
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000446bool RTCPSender::SendTimeOfXrRrReport(uint32_t mid_ntp,
447 int64_t* time_ms) const {
Erik Språng242e22b2015-05-11 10:17:43 +0200448 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000449
450 if (last_xr_rr_.empty()) {
451 return false;
452 }
453 std::map<uint32_t, int64_t>::const_iterator it = last_xr_rr_.find(mid_ntp);
454 if (it == last_xr_rr_.end()) {
455 return false;
456 }
457 *time_ms = it->second;
458 return true;
459}
460
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200461int32_t RTCPSender::AddReportBlock(const RTCPReportBlock& report_block) {
462 if (report_blocks_.size() >= RTCP_MAX_REPORT_BLOCKS) {
andresp@webrtc.orgdc80bae2014-04-08 11:06:12 +0000463 LOG(LS_WARNING) << "Too many report blocks.";
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000464 return -1;
465 }
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200466 rtcp::ReportBlock* block = &report_blocks_[report_block.remoteSSRC];
467 block->To(report_block.remoteSSRC);
468 block->WithFractionLost(report_block.fractionLost);
469 block->WithCumulativeLost(report_block.cumulativeLost);
470 block->WithExtHighestSeqNum(report_block.extendedHighSeqNum);
471 block->WithJitter(report_block.jitter);
472 block->WithLastSr(report_block.lastSR);
473 block->WithDelayLastSr(report_block.delaySinceLastSR);
474
pwestin@webrtc.org26f8d9c2012-01-19 15:53:09 +0000475 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000476}
477
Erik Språng242e22b2015-05-11 10:17:43 +0200478RTCPSender::BuildResult RTCPSender::BuildSR(RtcpContext* ctx) {
Erik Språng61be2a42015-04-27 13:32:52 +0200479 for (int i = (RTCP_NUMBER_OF_SR - 2); i >= 0; i--) {
480 // shift old
Erik Språng242e22b2015-05-11 10:17:43 +0200481 last_send_report_[i + 1] = last_send_report_[i];
482 last_rtcp_time_[i + 1] = last_rtcp_time_[i];
Erik Språng61be2a42015-04-27 13:32:52 +0200483 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000484
Erik Språng242e22b2015-05-11 10:17:43 +0200485 last_rtcp_time_[0] = Clock::NtpToMs(ctx->ntp_sec, ctx->ntp_frac);
486 last_send_report_[0] = (ctx->ntp_sec << 16) + (ctx->ntp_frac >> 16);
niklase@google.com470e71d2011-07-07 08:21:25 +0000487
Erik Språng61be2a42015-04-27 13:32:52 +0200488 // The timestamp of this RTCP packet should be estimated as the timestamp of
489 // the frame being captured at this moment. We are calculating that
490 // timestamp as the last frame's timestamp + the time since the last frame
491 // was captured.
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200492 uint32_t rtp_timestamp =
493 start_timestamp_ + last_rtp_timestamp_ +
494 (clock_->TimeInMilliseconds() - last_frame_capture_time_ms_) *
495 (ctx->feedback_state.frequency_hz / 1000);
niklase@google.com470e71d2011-07-07 08:21:25 +0000496
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200497 rtcp::SenderReport report;
498 report.From(ssrc_);
499 report.WithNtpSec(ctx->ntp_sec);
500 report.WithNtpFrac(ctx->ntp_frac);
501 report.WithRtpTimestamp(rtp_timestamp);
502 report.WithPacketCount(ctx->feedback_state.packets_sent);
503 report.WithOctetCount(ctx->feedback_state.media_bytes_sent);
niklase@google.com470e71d2011-07-07 08:21:25 +0000504
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200505 for (auto it : report_blocks_)
506 report.WithReportBlock(it.second);
niklase@google.com470e71d2011-07-07 08:21:25 +0000507
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200508 PacketBuiltCallback callback(ctx);
Erik Språng72aa9a62015-07-31 16:16:02 +0200509 if (!callback.BuildPacket(report))
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200510 return BuildResult::kTruncated;
niklase@google.com470e71d2011-07-07 08:21:25 +0000511
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200512 report_blocks_.clear();
Erik Språng242e22b2015-05-11 10:17:43 +0200513 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000514}
515
Erik Språng0ea42d32015-06-25 14:46:16 +0200516RTCPSender::BuildResult RTCPSender::BuildSDES(RtcpContext* ctx) {
517 size_t length_cname = cname_.length();
518 CHECK_LT(length_cname, static_cast<size_t>(RTCP_CNAME_SIZE));
niklase@google.com470e71d2011-07-07 08:21:25 +0000519
Erik Språng0ea42d32015-06-25 14:46:16 +0200520 rtcp::Sdes sdes;
521 sdes.WithCName(ssrc_, cname_);
522
523 for (const auto it : csrc_cnames_)
524 sdes.WithCName(it.first, it.second);
525
526 PacketBuiltCallback callback(ctx);
Erik Språng72aa9a62015-07-31 16:16:02 +0200527 if (!callback.BuildPacket(sdes))
Erik Språng242e22b2015-05-11 10:17:43 +0200528 return BuildResult::kTruncated;
niklase@google.com470e71d2011-07-07 08:21:25 +0000529
Erik Språng242e22b2015-05-11 10:17:43 +0200530 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000531}
532
Erik Språng242e22b2015-05-11 10:17:43 +0200533RTCPSender::BuildResult RTCPSender::BuildRR(RtcpContext* ctx) {
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200534 rtcp::ReceiverReport report;
535 report.From(ssrc_);
536 for (auto it : report_blocks_)
537 report.WithReportBlock(it.second);
538
539 PacketBuiltCallback callback(ctx);
Erik Språng72aa9a62015-07-31 16:16:02 +0200540 if (!callback.BuildPacket(report))
Erik Språng242e22b2015-05-11 10:17:43 +0200541 return BuildResult::kTruncated;
Erik Språng61be2a42015-04-27 13:32:52 +0200542
Erik Språngbdc0b0d2015-06-22 15:21:24 +0200543 report_blocks_.clear();
Erik Språng242e22b2015-05-11 10:17:43 +0200544
545 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000546}
547
Erik Språng242e22b2015-05-11 10:17:43 +0200548RTCPSender::BuildResult RTCPSender::BuildPLI(RtcpContext* ctx) {
Erik Språng72aa9a62015-07-31 16:16:02 +0200549 rtcp::Pli pli;
550 pli.From(ssrc_);
551 pli.To(remote_ssrc_);
552
553 PacketBuiltCallback callback(ctx);
554 if (!callback.BuildPacket(pli))
Erik Språng242e22b2015-05-11 10:17:43 +0200555 return BuildResult::kTruncated;
Erik Språng61be2a42015-04-27 13:32:52 +0200556
Erik Språng242e22b2015-05-11 10:17:43 +0200557 TRACE_EVENT_INSTANT0(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"),
558 "RTCPSender::PLI");
559 ++packet_type_counter_.pli_packets;
560 TRACE_COUNTER_ID1(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"), "RTCP_PLICount",
561 ssrc_, packet_type_counter_.pli_packets);
562
563 return BuildResult::kSuccess;
Erik Språng61be2a42015-04-27 13:32:52 +0200564}
565
Erik Språng242e22b2015-05-11 10:17:43 +0200566RTCPSender::BuildResult RTCPSender::BuildFIR(RtcpContext* ctx) {
Erik Språng242e22b2015-05-11 10:17:43 +0200567 if (!ctx->repeat)
sprang62dae192015-08-05 02:35:35 -0700568 ++sequence_number_fir_; // Do not increase if repetition.
niklase@google.com470e71d2011-07-07 08:21:25 +0000569
sprang62dae192015-08-05 02:35:35 -0700570 rtcp::Fir fir;
571 fir.From(ssrc_);
572 fir.To(remote_ssrc_);
573 fir.WithCommandSeqNum(sequence_number_fir_);
niklase@google.com470e71d2011-07-07 08:21:25 +0000574
sprang62dae192015-08-05 02:35:35 -0700575 PacketBuiltCallback callback(ctx);
576 if (!callback.BuildPacket(fir))
577 return BuildResult::kTruncated;
Erik Språng242e22b2015-05-11 10:17:43 +0200578
579 TRACE_EVENT_INSTANT0(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"),
580 "RTCPSender::FIR");
581 ++packet_type_counter_.fir_packets;
582 TRACE_COUNTER_ID1(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"), "RTCP_FIRCount",
583 ssrc_, packet_type_counter_.fir_packets);
584
585 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000586}
587
588/*
589 0 1 2 3
590 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
591 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
592 | First | Number | PictureID |
593 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
594*/
Erik Språng242e22b2015-05-11 10:17:43 +0200595RTCPSender::BuildResult RTCPSender::BuildSLI(RtcpContext* ctx) {
sprang0365a272015-08-11 01:02:37 -0700596 rtcp::Sli sli;
597 sli.From(ssrc_);
598 sli.To(remote_ssrc_);
599 // Crop picture id to 6 least significant bits.
600 sli.WithPictureId(ctx->picture_id & 0x3F);
601 sli.WithFirstMb(0);
602 sli.WithNumberOfMb(0x1FFF); // 13 bits, only ones for now.
603
604 PacketBuiltCallback callback(ctx);
605 if (!callback.BuildPacket(sli))
Erik Språng242e22b2015-05-11 10:17:43 +0200606 return BuildResult::kTruncated;
niklase@google.com470e71d2011-07-07 08:21:25 +0000607
Erik Språng242e22b2015-05-11 10:17:43 +0200608 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000609}
610
611/*
612 0 1 2 3
613 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
614 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
615 | PB |0| Payload Type| Native RPSI bit string |
616 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
617 | defined per codec ... | Padding (0) |
618 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
619*/
620/*
621* Note: not generic made for VP8
622*/
Erik Språng242e22b2015-05-11 10:17:43 +0200623RTCPSender::BuildResult RTCPSender::BuildRPSI(RtcpContext* ctx) {
624 if (ctx->feedback_state.send_payload_type == 0xFF)
625 return BuildResult::kError;
626
sprangcf7f54d2015-08-13 04:37:42 -0700627 rtcp::Rpsi rpsi;
628 rpsi.From(ssrc_);
629 rpsi.To(remote_ssrc_);
630 rpsi.WithPayloadType(ctx->feedback_state.send_payload_type);
631 rpsi.WithPictureId(ctx->picture_id);
632
633 PacketBuiltCallback callback(ctx);
634 if (!callback.BuildPacket(rpsi))
Erik Språng242e22b2015-05-11 10:17:43 +0200635 return BuildResult::kTruncated;
niklase@google.com470e71d2011-07-07 08:21:25 +0000636
Erik Språng242e22b2015-05-11 10:17:43 +0200637 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000638}
639
Erik Språng242e22b2015-05-11 10:17:43 +0200640RTCPSender::BuildResult RTCPSender::BuildREMB(RtcpContext* ctx) {
sprangdd4edc52015-08-21 04:21:51 -0700641 rtcp::Remb remb;
642 remb.From(ssrc_);
643 for (uint32_t ssrc : remb_ssrcs_)
644 remb.AppliesTo(ssrc);
645 remb.WithBitrateBps(remb_bitrate_);
646
647 PacketBuiltCallback callback(ctx);
648 if (!callback.BuildPacket(remb))
Erik Språng242e22b2015-05-11 10:17:43 +0200649 return BuildResult::kTruncated;
Erik Språng61be2a42015-04-27 13:32:52 +0200650
Erik Språng242e22b2015-05-11 10:17:43 +0200651 TRACE_EVENT_INSTANT0(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"),
652 "RTCPSender::REMB");
653
654 return BuildResult::kSuccess;
pwestin@webrtc.org741da942011-09-20 13:52:04 +0000655}
656
Erik Språng61be2a42015-04-27 13:32:52 +0200657void RTCPSender::SetTargetBitrate(unsigned int target_bitrate) {
Erik Språng242e22b2015-05-11 10:17:43 +0200658 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
659 tmmbr_send_ = target_bitrate / 1000;
mflodman@webrtc.org117c1192012-01-13 08:52:58 +0000660}
661
Erik Språng242e22b2015-05-11 10:17:43 +0200662RTCPSender::BuildResult RTCPSender::BuildTMMBR(RtcpContext* ctx) {
663 if (ctx->feedback_state.module == NULL)
664 return BuildResult::kError;
Erik Språng61be2a42015-04-27 13:32:52 +0200665 // Before sending the TMMBR check the received TMMBN, only an owner is
666 // allowed to raise the bitrate:
667 // * If the sender is an owner of the TMMBN -> send TMMBR
668 // * If not an owner but the TMMBR would enter the TMMBN -> send TMMBR
niklase@google.com470e71d2011-07-07 08:21:25 +0000669
Erik Språng61be2a42015-04-27 13:32:52 +0200670 // get current bounding set from RTCP receiver
671 bool tmmbrOwner = false;
672 // store in candidateSet, allocates one extra slot
Erik Språng242e22b2015-05-11 10:17:43 +0200673 TMMBRSet* candidateSet = tmmbr_help_.CandidateSet();
niklase@google.com470e71d2011-07-07 08:21:25 +0000674
Erik Språng242e22b2015-05-11 10:17:43 +0200675 // holding critical_section_rtcp_sender_ while calling RTCPreceiver which
676 // will accuire criticalSectionRTCPReceiver_ is a potental deadlock but
Erik Språng61be2a42015-04-27 13:32:52 +0200677 // since RTCPreceiver is not doing the reverse we should be fine
678 int32_t lengthOfBoundingSet =
Erik Språng242e22b2015-05-11 10:17:43 +0200679 ctx->feedback_state.module->BoundingSet(tmmbrOwner, candidateSet);
niklase@google.com470e71d2011-07-07 08:21:25 +0000680
Erik Språng61be2a42015-04-27 13:32:52 +0200681 if (lengthOfBoundingSet > 0) {
682 for (int32_t i = 0; i < lengthOfBoundingSet; i++) {
Erik Språng242e22b2015-05-11 10:17:43 +0200683 if (candidateSet->Tmmbr(i) == tmmbr_send_ &&
684 candidateSet->PacketOH(i) == packet_oh_send_) {
Erik Språng61be2a42015-04-27 13:32:52 +0200685 // do not send the same tuple
Erik Språng242e22b2015-05-11 10:17:43 +0200686 return BuildResult::kAborted;
Erik Språng61be2a42015-04-27 13:32:52 +0200687 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000688 }
Erik Språng61be2a42015-04-27 13:32:52 +0200689 if (!tmmbrOwner) {
690 // use received bounding set as candidate set
691 // add current tuple
Erik Språng242e22b2015-05-11 10:17:43 +0200692 candidateSet->SetEntry(lengthOfBoundingSet, tmmbr_send_, packet_oh_send_,
693 ssrc_);
Erik Språng61be2a42015-04-27 13:32:52 +0200694 int numCandidates = lengthOfBoundingSet + 1;
niklase@google.com470e71d2011-07-07 08:21:25 +0000695
Erik Språng61be2a42015-04-27 13:32:52 +0200696 // find bounding set
697 TMMBRSet* boundingSet = NULL;
Erik Språng242e22b2015-05-11 10:17:43 +0200698 int numBoundingSet = tmmbr_help_.FindTMMBRBoundingSet(boundingSet);
Erik Språng61be2a42015-04-27 13:32:52 +0200699 if (numBoundingSet > 0 || numBoundingSet <= numCandidates)
Erik Språng242e22b2015-05-11 10:17:43 +0200700 tmmbrOwner = tmmbr_help_.IsOwner(ssrc_, numBoundingSet);
Erik Språng61be2a42015-04-27 13:32:52 +0200701 if (!tmmbrOwner) {
702 // did not enter bounding set, no meaning to send this request
Erik Språng242e22b2015-05-11 10:17:43 +0200703 return BuildResult::kAborted;
Erik Språng61be2a42015-04-27 13:32:52 +0200704 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000705 }
Erik Språng61be2a42015-04-27 13:32:52 +0200706 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000707
Erik Språng242e22b2015-05-11 10:17:43 +0200708 if (tmmbr_send_) {
sprang81a3e602015-08-21 05:30:11 -0700709 rtcp::Tmmbr tmmbr;
710 tmmbr.From(ssrc_);
711 tmmbr.To(remote_ssrc_);
712 tmmbr.WithBitrateKbps(tmmbr_send_);
713 tmmbr.WithOverhead(packet_oh_send_);
714
715 PacketBuiltCallback callback(ctx);
716 if (!callback.BuildPacket(tmmbr))
Erik Språng242e22b2015-05-11 10:17:43 +0200717 return BuildResult::kTruncated;
Erik Språng61be2a42015-04-27 13:32:52 +0200718 }
Erik Språng242e22b2015-05-11 10:17:43 +0200719 return BuildResult::kSuccess;
Erik Språng61be2a42015-04-27 13:32:52 +0200720}
721
Erik Språng242e22b2015-05-11 10:17:43 +0200722RTCPSender::BuildResult RTCPSender::BuildTMMBN(RtcpContext* ctx) {
723 TMMBRSet* boundingSet = tmmbr_help_.BoundingSetToSend();
Erik Språng61be2a42015-04-27 13:32:52 +0200724 if (boundingSet == NULL)
Erik Språng242e22b2015-05-11 10:17:43 +0200725 return BuildResult::kError;
Erik Språng61be2a42015-04-27 13:32:52 +0200726
727 // sanity
Erik Språng242e22b2015-05-11 10:17:43 +0200728 if (ctx->position + 12 + boundingSet->lengthOfSet() * 8 >= IP_PACKET_SIZE) {
Erik Språng61be2a42015-04-27 13:32:52 +0200729 LOG(LS_WARNING) << "Failed to build TMMBN.";
Erik Språng242e22b2015-05-11 10:17:43 +0200730 return BuildResult::kTruncated;
Erik Språng61be2a42015-04-27 13:32:52 +0200731 }
732
733 uint8_t FMT = 4;
734 // add TMMBN indicator
Erik Språng242e22b2015-05-11 10:17:43 +0200735 *ctx->AllocateData(1) = 0x80 + FMT;
736 *ctx->AllocateData(1) = 205;
Erik Språng61be2a42015-04-27 13:32:52 +0200737
738 // Add length later
Erik Språng242e22b2015-05-11 10:17:43 +0200739 int posLength = ctx->position;
740 ctx->AllocateData(2);
Erik Språng61be2a42015-04-27 13:32:52 +0200741
742 // Add our own SSRC
Erik Språng242e22b2015-05-11 10:17:43 +0200743 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ssrc_);
Erik Språng61be2a42015-04-27 13:32:52 +0200744
745 // RFC 5104 4.2.2.2. Semantics
746
747 // SSRC of media source
Erik Språng242e22b2015-05-11 10:17:43 +0200748 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), 0);
Erik Språng61be2a42015-04-27 13:32:52 +0200749
750 // Additional Feedback Control Information (FCI)
751 int numBoundingSet = 0;
752 for (uint32_t n = 0; n < boundingSet->lengthOfSet(); n++) {
753 if (boundingSet->Tmmbr(n) > 0) {
754 uint32_t tmmbrSSRC = boundingSet->Ssrc(n);
Erik Språng242e22b2015-05-11 10:17:43 +0200755 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), tmmbrSSRC);
Erik Språng61be2a42015-04-27 13:32:52 +0200756
757 uint32_t bitRate = boundingSet->Tmmbr(n) * 1000;
758 uint32_t mmbrExp = 0;
759 for (int i = 0; i < 64; i++) {
760 if (bitRate <= (0x1FFFFu << i)) {
761 mmbrExp = i;
andresp@webrtc.org523f9372013-04-11 11:30:39 +0000762 break;
niklase@google.com470e71d2011-07-07 08:21:25 +0000763 }
andresp@webrtc.org523f9372013-04-11 11:30:39 +0000764 }
Erik Språng61be2a42015-04-27 13:32:52 +0200765 uint32_t mmbrMantissa = (bitRate >> mmbrExp);
766 uint32_t measuredOH = boundingSet->PacketOH(n);
asapersson@webrtc.org2dd31342014-10-29 12:42:30 +0000767
Erik Språng242e22b2015-05-11 10:17:43 +0200768 *ctx->AllocateData(1) =
Erik Språng61be2a42015-04-27 13:32:52 +0200769 static_cast<uint8_t>((mmbrExp << 2) + ((mmbrMantissa >> 15) & 0x03));
Erik Språng242e22b2015-05-11 10:17:43 +0200770 *ctx->AllocateData(1) = static_cast<uint8_t>(mmbrMantissa >> 7);
771 *ctx->AllocateData(1) = static_cast<uint8_t>((mmbrMantissa << 1) +
772 ((measuredOH >> 8) & 0x01));
773 *ctx->AllocateData(1) = static_cast<uint8_t>(measuredOH);
Erik Språng61be2a42015-04-27 13:32:52 +0200774 numBoundingSet++;
asapersson@webrtc.org2dd31342014-10-29 12:42:30 +0000775 }
Erik Språng61be2a42015-04-27 13:32:52 +0200776 }
777 uint16_t length = static_cast<uint16_t>(2 + 2 * numBoundingSet);
Erik Språng242e22b2015-05-11 10:17:43 +0200778 ctx->buffer[posLength++] = static_cast<uint8_t>(length >> 8);
779 ctx->buffer[posLength] = static_cast<uint8_t>(length);
780
781 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000782}
783
Erik Språng242e22b2015-05-11 10:17:43 +0200784RTCPSender::BuildResult RTCPSender::BuildAPP(RtcpContext* ctx) {
Erik Språng61be2a42015-04-27 13:32:52 +0200785 // sanity
Erik Språng242e22b2015-05-11 10:17:43 +0200786 if (app_data_ == NULL) {
Erik Språng61be2a42015-04-27 13:32:52 +0200787 LOG(LS_WARNING) << "Failed to build app specific.";
Erik Språng242e22b2015-05-11 10:17:43 +0200788 return BuildResult::kError;
Erik Språng61be2a42015-04-27 13:32:52 +0200789 }
Erik Språng242e22b2015-05-11 10:17:43 +0200790 if (ctx->position + 12 + app_length_ >= IP_PACKET_SIZE) {
Erik Språng61be2a42015-04-27 13:32:52 +0200791 LOG(LS_WARNING) << "Failed to build app specific.";
Erik Språng242e22b2015-05-11 10:17:43 +0200792 return BuildResult::kTruncated;
Erik Språng61be2a42015-04-27 13:32:52 +0200793 }
Erik Språng242e22b2015-05-11 10:17:43 +0200794 *ctx->AllocateData(1) = 0x80 + app_sub_type_;
Erik Språng61be2a42015-04-27 13:32:52 +0200795
796 // Add APP ID
Erik Språng242e22b2015-05-11 10:17:43 +0200797 *ctx->AllocateData(1) = 204;
Erik Språng61be2a42015-04-27 13:32:52 +0200798
Erik Språng242e22b2015-05-11 10:17:43 +0200799 uint16_t length = (app_length_ >> 2) + 2; // include SSRC and name
800 *ctx->AllocateData(1) = static_cast<uint8_t>(length >> 8);
801 *ctx->AllocateData(1) = static_cast<uint8_t>(length);
Erik Språng61be2a42015-04-27 13:32:52 +0200802
803 // Add our own SSRC
Erik Språng242e22b2015-05-11 10:17:43 +0200804 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ssrc_);
Erik Språng61be2a42015-04-27 13:32:52 +0200805
806 // Add our application name
Erik Språng242e22b2015-05-11 10:17:43 +0200807 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), app_name_);
Erik Språng61be2a42015-04-27 13:32:52 +0200808
809 // Add the data
Erik Språng242e22b2015-05-11 10:17:43 +0200810 memcpy(ctx->AllocateData(app_length_), app_data_.get(), app_length_);
811
812 return BuildResult::kSuccess;
Erik Språng61be2a42015-04-27 13:32:52 +0200813}
814
Erik Språng242e22b2015-05-11 10:17:43 +0200815RTCPSender::BuildResult RTCPSender::BuildNACK(RtcpContext* ctx) {
Erik Språng61be2a42015-04-27 13:32:52 +0200816 // sanity
Erik Språng242e22b2015-05-11 10:17:43 +0200817 if (ctx->position + 16 >= IP_PACKET_SIZE) {
Erik Språng61be2a42015-04-27 13:32:52 +0200818 LOG(LS_WARNING) << "Failed to build NACK.";
Erik Språng242e22b2015-05-11 10:17:43 +0200819 return BuildResult::kTruncated;
Erik Språng61be2a42015-04-27 13:32:52 +0200820 }
821
Erik Språng242e22b2015-05-11 10:17:43 +0200822 // int size, uint16_t* nack_list
Erik Språng61be2a42015-04-27 13:32:52 +0200823 // add nack list
824 uint8_t FMT = 1;
Erik Språng242e22b2015-05-11 10:17:43 +0200825 *ctx->AllocateData(1) = 0x80 + FMT;
826 *ctx->AllocateData(1) = 205;
Erik Språng61be2a42015-04-27 13:32:52 +0200827
Erik Språng242e22b2015-05-11 10:17:43 +0200828 *ctx->AllocateData(1) = 0;
829 int nack_size_pos_ = ctx->position;
830 *ctx->AllocateData(1) = 3; // setting it to one kNACK signal as default
Erik Språng61be2a42015-04-27 13:32:52 +0200831
832 // Add our own SSRC
Erik Språng242e22b2015-05-11 10:17:43 +0200833 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ssrc_);
Erik Språng61be2a42015-04-27 13:32:52 +0200834
835 // Add the remote SSRC
Erik Språng242e22b2015-05-11 10:17:43 +0200836 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), remote_ssrc_);
Erik Språng61be2a42015-04-27 13:32:52 +0200837
838 // Build NACK bitmasks and write them to the RTCP message.
839 // The nack list should be sorted and not contain duplicates if one
840 // wants to build the smallest rtcp nack packet.
841 int numOfNackFields = 0;
842 int maxNackFields =
Erik Språng242e22b2015-05-11 10:17:43 +0200843 std::min<int>(kRtcpMaxNackFields, (IP_PACKET_SIZE - ctx->position) / 4);
Erik Språng61be2a42015-04-27 13:32:52 +0200844 int i = 0;
Erik Språng242e22b2015-05-11 10:17:43 +0200845 while (i < ctx->nack_size && numOfNackFields < maxNackFields) {
846 uint16_t nack = ctx->nack_list[i++];
Erik Språng61be2a42015-04-27 13:32:52 +0200847 uint16_t bitmask = 0;
Erik Språng242e22b2015-05-11 10:17:43 +0200848 while (i < ctx->nack_size) {
849 int shift = static_cast<uint16_t>(ctx->nack_list[i] - nack) - 1;
Erik Språng61be2a42015-04-27 13:32:52 +0200850 if (shift >= 0 && shift <= 15) {
851 bitmask |= (1 << shift);
852 ++i;
853 } else {
854 break;
855 }
856 }
857 // Write the sequence number and the bitmask to the packet.
Erik Språng242e22b2015-05-11 10:17:43 +0200858 assert(ctx->position + 4 < IP_PACKET_SIZE);
859 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2), nack);
860 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2), bitmask);
Erik Språng61be2a42015-04-27 13:32:52 +0200861 numOfNackFields++;
862 }
Erik Språng242e22b2015-05-11 10:17:43 +0200863 ctx->buffer[nack_size_pos_] = static_cast<uint8_t>(2 + numOfNackFields);
Erik Språng61be2a42015-04-27 13:32:52 +0200864
Erik Språng242e22b2015-05-11 10:17:43 +0200865 if (i != ctx->nack_size)
Erik Språng61be2a42015-04-27 13:32:52 +0200866 LOG(LS_WARNING) << "Nack list too large for one packet.";
867
868 // Report stats.
869 NACKStringBuilder stringBuilder;
870 for (int idx = 0; idx < i; ++idx) {
Erik Språng242e22b2015-05-11 10:17:43 +0200871 stringBuilder.PushNACK(ctx->nack_list[idx]);
872 nack_stats_.ReportRequest(ctx->nack_list[idx]);
Erik Språng61be2a42015-04-27 13:32:52 +0200873 }
Erik Språng61be2a42015-04-27 13:32:52 +0200874 packet_type_counter_.nack_requests = nack_stats_.requests();
875 packet_type_counter_.unique_nack_requests = nack_stats_.unique_requests();
Erik Språng242e22b2015-05-11 10:17:43 +0200876
877 TRACE_EVENT_INSTANT1(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"),
878 "RTCPSender::NACK", "nacks",
879 TRACE_STR_COPY(stringBuilder.GetResult().c_str()));
880 ++packet_type_counter_.nack_packets;
881 TRACE_COUNTER_ID1(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"), "RTCP_NACKCount",
882 ssrc_, packet_type_counter_.nack_packets);
883
884 return BuildResult::kSuccess;
Erik Språng61be2a42015-04-27 13:32:52 +0200885}
886
Erik Språng242e22b2015-05-11 10:17:43 +0200887RTCPSender::BuildResult RTCPSender::BuildBYE(RtcpContext* ctx) {
pbos@webrtc.org9334ac22014-11-24 08:25:50 +0000888 // sanity
Erik Språng242e22b2015-05-11 10:17:43 +0200889 if (ctx->position + 8 >= IP_PACKET_SIZE)
890 return BuildResult::kTruncated;
niklase@google.com470e71d2011-07-07 08:21:25 +0000891
pbos@webrtc.org9334ac22014-11-24 08:25:50 +0000892 // Add a bye packet
893 // Number of SSRC + CSRCs.
Erik Språng242e22b2015-05-11 10:17:43 +0200894 *ctx->AllocateData(1) = static_cast<uint8_t>(0x80 + 1 + csrcs_.size());
895 *ctx->AllocateData(1) = 203;
niklase@google.com470e71d2011-07-07 08:21:25 +0000896
pbos@webrtc.org9334ac22014-11-24 08:25:50 +0000897 // length
Erik Språng242e22b2015-05-11 10:17:43 +0200898 *ctx->AllocateData(1) = 0;
899 *ctx->AllocateData(1) = static_cast<uint8_t>(1 + csrcs_.size());
niklase@google.com470e71d2011-07-07 08:21:25 +0000900
pbos@webrtc.org9334ac22014-11-24 08:25:50 +0000901 // Add our own SSRC
Erik Språng242e22b2015-05-11 10:17:43 +0200902 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ssrc_);
niklase@google.com470e71d2011-07-07 08:21:25 +0000903
pbos@webrtc.org9334ac22014-11-24 08:25:50 +0000904 // add CSRCs
Erik Språng242e22b2015-05-11 10:17:43 +0200905 for (size_t i = 0; i < csrcs_.size(); i++)
906 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), csrcs_[i]);
niklase@google.com470e71d2011-07-07 08:21:25 +0000907
Erik Språng242e22b2015-05-11 10:17:43 +0200908 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +0000909}
910
Erik Språng242e22b2015-05-11 10:17:43 +0200911RTCPSender::BuildResult RTCPSender::BuildReceiverReferenceTime(
912 RtcpContext* ctx) {
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000913 const int kRrTimeBlockLength = 20;
Erik Språng242e22b2015-05-11 10:17:43 +0200914 if (ctx->position + kRrTimeBlockLength >= IP_PACKET_SIZE)
915 return BuildResult::kTruncated;
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000916
Erik Språng61be2a42015-04-27 13:32:52 +0200917 if (last_xr_rr_.size() >= RTCP_NUMBER_OF_SR)
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000918 last_xr_rr_.erase(last_xr_rr_.begin());
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000919 last_xr_rr_.insert(std::pair<uint32_t, int64_t>(
Erik Språng242e22b2015-05-11 10:17:43 +0200920 RTCPUtility::MidNtp(ctx->ntp_sec, ctx->ntp_frac),
921 Clock::NtpToMs(ctx->ntp_sec, ctx->ntp_frac)));
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000922
923 // Add XR header.
Erik Språng242e22b2015-05-11 10:17:43 +0200924 *ctx->AllocateData(1) = 0x80;
925 *ctx->AllocateData(1) = 207;
926 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
927 4); // XR packet length.
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000928
929 // Add our own SSRC.
Erik Språng242e22b2015-05-11 10:17:43 +0200930 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ssrc_);
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000931
932 // 0 1 2 3
933 // 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
934 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
935 // | BT=4 | reserved | block length = 2 |
936 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
937 // | NTP timestamp, most significant word |
938 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
939 // | NTP timestamp, least significant word |
940 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
941
942 // Add Receiver Reference Time Report block.
Erik Språng242e22b2015-05-11 10:17:43 +0200943 *ctx->AllocateData(1) = 4; // BT.
944 *ctx->AllocateData(1) = 0; // Reserved.
945 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
946 2); // Block length.
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000947
948 // NTP timestamp.
Erik Språng242e22b2015-05-11 10:17:43 +0200949 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ctx->ntp_sec);
950 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ctx->ntp_frac);
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000951
Erik Språng242e22b2015-05-11 10:17:43 +0200952 return BuildResult::kSuccess;
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000953}
954
Erik Språng242e22b2015-05-11 10:17:43 +0200955RTCPSender::BuildResult RTCPSender::BuildDlrr(RtcpContext* ctx) {
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000956 const int kDlrrBlockLength = 24;
Erik Språng242e22b2015-05-11 10:17:43 +0200957 if (ctx->position + kDlrrBlockLength >= IP_PACKET_SIZE)
958 return BuildResult::kTruncated;
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000959
960 // Add XR header.
Erik Språng242e22b2015-05-11 10:17:43 +0200961 *ctx->AllocateData(1) = 0x80;
962 *ctx->AllocateData(1) = 207;
963 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
964 5); // XR packet length.
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000965
966 // Add our own SSRC.
Erik Språng242e22b2015-05-11 10:17:43 +0200967 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ssrc_);
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000968
969 // 0 1 2 3
970 // 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
971 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
972 // | BT=5 | reserved | block length |
973 // +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
974 // | SSRC_1 (SSRC of first receiver) | sub-
975 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ block
976 // | last RR (LRR) | 1
977 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
978 // | delay since last RR (DLRR) |
979 // +=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+=+
980 // | SSRC_2 (SSRC of second receiver) | sub-
981 // +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+ block
982 // : ... : 2
983
984 // Add DLRR sub block.
Erik Språng242e22b2015-05-11 10:17:43 +0200985 *ctx->AllocateData(1) = 5; // BT.
986 *ctx->AllocateData(1) = 0; // Reserved.
987 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
988 3); // Block length.
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000989
990 // NTP timestamp.
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000991
Erik Språng242e22b2015-05-11 10:17:43 +0200992 const RtcpReceiveTimeInfo& info = ctx->feedback_state.last_xr_rr;
993 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), info.sourceSSRC);
994 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), info.lastRR);
995 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4),
996 info.delaySinceLastRR);
997
998 return BuildResult::kSuccess;
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +0000999}
1000
Erik Språng242e22b2015-05-11 10:17:43 +02001001// TODO(sprang): Add a unit test for this, or remove if the code isn't used.
1002RTCPSender::BuildResult RTCPSender::BuildVoIPMetric(RtcpContext* ctx) {
Erik Språng61be2a42015-04-27 13:32:52 +02001003 // sanity
Erik Språng242e22b2015-05-11 10:17:43 +02001004 if (ctx->position + 44 >= IP_PACKET_SIZE)
1005 return BuildResult::kTruncated;
niklase@google.com470e71d2011-07-07 08:21:25 +00001006
Erik Språng61be2a42015-04-27 13:32:52 +02001007 // Add XR header
Erik Språng242e22b2015-05-11 10:17:43 +02001008 *ctx->AllocateData(1) = 0x80;
1009 *ctx->AllocateData(1) = 207;
niklase@google.com470e71d2011-07-07 08:21:25 +00001010
Erik Språng242e22b2015-05-11 10:17:43 +02001011 uint32_t XRLengthPos = ctx->position;
niklase@google.com470e71d2011-07-07 08:21:25 +00001012
Erik Språng61be2a42015-04-27 13:32:52 +02001013 // handle length later on
Erik Språng242e22b2015-05-11 10:17:43 +02001014 ctx->AllocateData(2);
niklase@google.com470e71d2011-07-07 08:21:25 +00001015
Erik Språng61be2a42015-04-27 13:32:52 +02001016 // Add our own SSRC
Erik Språng242e22b2015-05-11 10:17:43 +02001017 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), ssrc_);
niklase@google.com470e71d2011-07-07 08:21:25 +00001018
Erik Språng61be2a42015-04-27 13:32:52 +02001019 // Add a VoIP metrics block
Erik Språng242e22b2015-05-11 10:17:43 +02001020 *ctx->AllocateData(1) = 7;
1021 *ctx->AllocateData(1) = 0;
1022 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2), 8);
niklase@google.com470e71d2011-07-07 08:21:25 +00001023
Erik Språng61be2a42015-04-27 13:32:52 +02001024 // Add the remote SSRC
Erik Språng242e22b2015-05-11 10:17:43 +02001025 ByteWriter<uint32_t>::WriteBigEndian(ctx->AllocateData(4), remote_ssrc_);
niklase@google.com470e71d2011-07-07 08:21:25 +00001026
Erik Språng242e22b2015-05-11 10:17:43 +02001027 *ctx->AllocateData(1) = xr_voip_metric_.lossRate;
1028 *ctx->AllocateData(1) = xr_voip_metric_.discardRate;
1029 *ctx->AllocateData(1) = xr_voip_metric_.burstDensity;
1030 *ctx->AllocateData(1) = xr_voip_metric_.gapDensity;
niklase@google.com470e71d2011-07-07 08:21:25 +00001031
Erik Språng242e22b2015-05-11 10:17:43 +02001032 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
1033 xr_voip_metric_.burstDuration);
1034 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
1035 xr_voip_metric_.gapDuration);
niklase@google.com470e71d2011-07-07 08:21:25 +00001036
Erik Språng242e22b2015-05-11 10:17:43 +02001037 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
1038 xr_voip_metric_.roundTripDelay);
1039 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
1040 xr_voip_metric_.endSystemDelay);
niklase@google.com470e71d2011-07-07 08:21:25 +00001041
Erik Språng242e22b2015-05-11 10:17:43 +02001042 *ctx->AllocateData(1) = xr_voip_metric_.signalLevel;
1043 *ctx->AllocateData(1) = xr_voip_metric_.noiseLevel;
1044 *ctx->AllocateData(1) = xr_voip_metric_.RERL;
1045 *ctx->AllocateData(1) = xr_voip_metric_.Gmin;
niklase@google.com470e71d2011-07-07 08:21:25 +00001046
Erik Språng242e22b2015-05-11 10:17:43 +02001047 *ctx->AllocateData(1) = xr_voip_metric_.Rfactor;
1048 *ctx->AllocateData(1) = xr_voip_metric_.extRfactor;
1049 *ctx->AllocateData(1) = xr_voip_metric_.MOSLQ;
1050 *ctx->AllocateData(1) = xr_voip_metric_.MOSCQ;
niklase@google.com470e71d2011-07-07 08:21:25 +00001051
Erik Språng242e22b2015-05-11 10:17:43 +02001052 *ctx->AllocateData(1) = xr_voip_metric_.RXconfig;
1053 *ctx->AllocateData(1) = 0; // reserved
niklase@google.com470e71d2011-07-07 08:21:25 +00001054
Erik Språng242e22b2015-05-11 10:17:43 +02001055 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
1056 xr_voip_metric_.JBnominal);
1057 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
1058 xr_voip_metric_.JBmax);
1059 ByteWriter<uint16_t>::WriteBigEndian(ctx->AllocateData(2),
1060 xr_voip_metric_.JBabsMax);
niklase@google.com470e71d2011-07-07 08:21:25 +00001061
Erik Språng242e22b2015-05-11 10:17:43 +02001062 ByteWriter<uint16_t>::WriteBigEndian(&ctx->buffer[XRLengthPos], 10);
1063
1064 return BuildResult::kSuccess;
niklase@google.com470e71d2011-07-07 08:21:25 +00001065}
1066
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001067int32_t RTCPSender::SendRTCP(const FeedbackState& feedback_state,
Erik Språng242e22b2015-05-11 10:17:43 +02001068 RTCPPacketType packetType,
1069 int32_t nack_size,
1070 const uint16_t* nack_list,
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001071 bool repeat,
1072 uint64_t pictureID) {
Erik Språng242e22b2015-05-11 10:17:43 +02001073 return SendCompoundRTCP(
1074 feedback_state, std::set<RTCPPacketType>(&packetType, &packetType + 1),
1075 nack_size, nack_list, repeat, pictureID);
1076}
1077
1078int32_t RTCPSender::SendCompoundRTCP(
1079 const FeedbackState& feedback_state,
1080 const std::set<RTCPPacketType>& packetTypes,
1081 int32_t nack_size,
1082 const uint16_t* nack_list,
1083 bool repeat,
1084 uint64_t pictureID) {
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001085 {
Erik Språng242e22b2015-05-11 10:17:43 +02001086 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
1087 if (method_ == kRtcpOff) {
Erik Språng61be2a42015-04-27 13:32:52 +02001088 LOG(LS_WARNING) << "Can't send rtcp if it is disabled.";
1089 return -1;
pwestin@webrtc.org8edb39d2011-12-22 07:40:33 +00001090 }
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001091 }
1092 uint8_t rtcp_buffer[IP_PACKET_SIZE];
Erik Språng242e22b2015-05-11 10:17:43 +02001093 int rtcp_length =
1094 PrepareRTCP(feedback_state, packetTypes, nack_size, nack_list, repeat,
1095 pictureID, rtcp_buffer, IP_PACKET_SIZE);
Erik Språng61be2a42015-04-27 13:32:52 +02001096
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001097 // Sanity don't send empty packets.
Erik Språng242e22b2015-05-11 10:17:43 +02001098 if (rtcp_length <= 0)
1099 return -1;
Erik Språng61be2a42015-04-27 13:32:52 +02001100
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +00001101 return SendToNetwork(rtcp_buffer, static_cast<size_t>(rtcp_length));
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001102}
1103
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001104int RTCPSender::PrepareRTCP(const FeedbackState& feedback_state,
Erik Språng242e22b2015-05-11 10:17:43 +02001105 const std::set<RTCPPacketType>& packetTypes,
1106 int32_t nack_size,
1107 const uint16_t* nack_list,
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001108 bool repeat,
1109 uint64_t pictureID,
1110 uint8_t* rtcp_buffer,
1111 int buffer_size) {
Erik Språng242e22b2015-05-11 10:17:43 +02001112 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001113
Erik Språng242e22b2015-05-11 10:17:43 +02001114 RtcpContext context(feedback_state, nack_size, nack_list, repeat, pictureID,
1115 rtcp_buffer, buffer_size);
1116
1117 // Add all flags as volatile. Non volatile entries will not be overwritten
1118 // and all new volatile flags added will be consumed by the end of this call.
1119 SetFlags(packetTypes, true);
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001120
Erik Språng61be2a42015-04-27 13:32:52 +02001121 if (packet_type_counter_.first_packet_time_ms == -1)
Erik Språng242e22b2015-05-11 10:17:43 +02001122 packet_type_counter_.first_packet_time_ms = clock_->TimeInMilliseconds();
Erik Språng61be2a42015-04-27 13:32:52 +02001123
Erik Språng242e22b2015-05-11 10:17:43 +02001124 bool generate_report;
1125 if (IsFlagPresent(kRtcpSr) || IsFlagPresent(kRtcpRr)) {
1126 // Report type already explicitly set, don't automatically populate.
1127 generate_report = true;
1128 DCHECK(ConsumeFlag(kRtcpReport) == false);
1129 } else {
1130 generate_report =
1131 (ConsumeFlag(kRtcpReport) && method_ == kRtcpNonCompound) ||
1132 method_ == kRtcpCompound;
1133 if (generate_report)
1134 SetFlag(sending_ ? kRtcpSr : kRtcpRr, true);
asapersson@webrtc.orgd08d3892014-12-16 12:03:11 +00001135 }
1136
Erik Språng0ea42d32015-06-25 14:46:16 +02001137 if (IsFlagPresent(kRtcpSr) || (IsFlagPresent(kRtcpRr) && !cname_.empty()))
Erik Språng242e22b2015-05-11 10:17:43 +02001138 SetFlag(kRtcpSdes, true);
1139
1140 // We need to send our NTP even if we haven't received any reports.
1141 clock_->CurrentNtp(context.ntp_sec, context.ntp_frac);
1142
1143 if (generate_report) {
1144 if (!sending_ && xr_send_receiver_reference_time_enabled_)
1145 SetFlag(kRtcpXrReceiverReferenceTime, true);
Erik Språng61be2a42015-04-27 13:32:52 +02001146 if (feedback_state.has_last_xr_rr)
Erik Språng242e22b2015-05-11 10:17:43 +02001147 SetFlag(kRtcpXrDlrrReportBlock, true);
1148
1149 // generate next time to send an RTCP report
Erik Språng61be2a42015-04-27 13:32:52 +02001150 // seeded from RTP constructor
1151 int32_t random = rand() % 1000;
1152 int32_t timeToNext = RTCP_INTERVAL_AUDIO_MS;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001153
Erik Språng242e22b2015-05-11 10:17:43 +02001154 if (audio_) {
Erik Språng61be2a42015-04-27 13:32:52 +02001155 timeToNext = (RTCP_INTERVAL_AUDIO_MS / 2) +
1156 (RTCP_INTERVAL_AUDIO_MS * random / 1000);
1157 } else {
1158 uint32_t minIntervalMs = RTCP_INTERVAL_AUDIO_MS;
Erik Språng242e22b2015-05-11 10:17:43 +02001159 if (sending_) {
Erik Språng61be2a42015-04-27 13:32:52 +02001160 // Calculate bandwidth for video; 360 / send bandwidth in kbit/s.
1161 uint32_t send_bitrate_kbit = feedback_state.send_bitrate / 1000;
1162 if (send_bitrate_kbit != 0)
1163 minIntervalMs = 360000 / send_bitrate_kbit;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001164 }
Erik Språng61be2a42015-04-27 13:32:52 +02001165 if (minIntervalMs > RTCP_INTERVAL_VIDEO_MS)
1166 minIntervalMs = RTCP_INTERVAL_VIDEO_MS;
1167 timeToNext = (minIntervalMs / 2) + (minIntervalMs * random / 1000);
1168 }
Erik Språng242e22b2015-05-11 10:17:43 +02001169 next_time_to_send_rtcp_ = clock_->TimeInMilliseconds() + timeToNext;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001170
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001171 StatisticianMap statisticians =
1172 receive_statistics_->GetActiveStatisticians();
1173 if (!statisticians.empty()) {
Erik Språng61be2a42015-04-27 13:32:52 +02001174 for (auto it = statisticians.begin(); it != statisticians.end(); ++it) {
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001175 RTCPReportBlock report_block;
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001176 if (PrepareReport(feedback_state, it->first, it->second,
1177 &report_block)) {
1178 AddReportBlock(report_block);
Erik Språng61be2a42015-04-27 13:32:52 +02001179 }
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001180 }
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001181 }
1182 }
1183
Erik Språng242e22b2015-05-11 10:17:43 +02001184 auto it = report_flags_.begin();
1185 while (it != report_flags_.end()) {
1186 auto builder = builders_.find(it->type);
1187 DCHECK(builder != builders_.end());
1188 if (it->is_volatile) {
1189 report_flags_.erase(it++);
1190 } else {
1191 ++it;
Erik Språng61be2a42015-04-27 13:32:52 +02001192 }
Erik Språng242e22b2015-05-11 10:17:43 +02001193
1194 uint32_t start_position = context.position;
Erik Språng0ea42d32015-06-25 14:46:16 +02001195 BuildResult result = (this->*(builder->second))(&context);
Erik Språng242e22b2015-05-11 10:17:43 +02001196 switch (result) {
1197 case BuildResult::kError:
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001198 return -1;
Erik Språng242e22b2015-05-11 10:17:43 +02001199 case BuildResult::kTruncated:
1200 return context.position;
1201 case BuildResult::kAborted:
1202 context.position = start_position;
1203 FALLTHROUGH();
1204 case BuildResult::kSuccess:
1205 continue;
Erik Språng61be2a42015-04-27 13:32:52 +02001206 default:
Erik Språng242e22b2015-05-11 10:17:43 +02001207 abort();
Erik Språng61be2a42015-04-27 13:32:52 +02001208 }
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +00001209 }
pbos@webrtc.org1d0fa5d2015-02-19 12:47:00 +00001210
1211 if (packet_type_counter_observer_ != NULL) {
1212 packet_type_counter_observer_->RtcpPacketTypesCounterUpdated(
Erik Språng242e22b2015-05-11 10:17:43 +02001213 remote_ssrc_, packet_type_counter_);
pbos@webrtc.org1d0fa5d2015-02-19 12:47:00 +00001214 }
1215
Erik Språng242e22b2015-05-11 10:17:43 +02001216 DCHECK(AllVolatileFlagsConsumed());
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001217
Erik Språng242e22b2015-05-11 10:17:43 +02001218 return context.position;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001219}
1220
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001221bool RTCPSender::PrepareReport(const FeedbackState& feedback_state,
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001222 uint32_t ssrc,
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001223 StreamStatistician* statistician,
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001224 RTCPReportBlock* report_block) {
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001225 // Do we have receive statistics to send?
sprang@webrtc.org54ae4ff2013-12-19 13:26:02 +00001226 RtcpStatistics stats;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001227 if (!statistician->GetStatistics(&stats, true))
1228 return false;
1229 report_block->fractionLost = stats.fraction_lost;
1230 report_block->cumulativeLost = stats.cumulative_lost;
1231 report_block->extendedHighSeqNum =
1232 stats.extended_max_sequence_number;
1233 report_block->jitter = stats.jitter;
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001234 report_block->remoteSSRC = ssrc;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001235
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001236 // TODO(sprang): Do we really need separate time stamps for each report?
1237 // Get our NTP as late as possible to avoid a race.
1238 uint32_t ntp_secs;
1239 uint32_t ntp_frac;
1240 clock_->CurrentNtp(ntp_secs, ntp_frac);
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001241
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001242 // Delay since last received report.
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001243 uint32_t delaySinceLastReceivedSR = 0;
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001244 if ((feedback_state.last_rr_ntp_secs != 0) ||
1245 (feedback_state.last_rr_ntp_frac != 0)) {
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001246 // Get the 16 lowest bits of seconds and the 16 highest bits of fractions.
1247 uint32_t now = ntp_secs & 0x0000FFFF;
Erik Språng61be2a42015-04-27 13:32:52 +02001248 now <<= 16;
Erik Språngbdc0b0d2015-06-22 15:21:24 +02001249 now += (ntp_frac & 0xffff0000) >> 16;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001250
Erik Språng61be2a42015-04-27 13:32:52 +02001251 uint32_t receiveTime = feedback_state.last_rr_ntp_secs & 0x0000FFFF;
1252 receiveTime <<= 16;
1253 receiveTime += (feedback_state.last_rr_ntp_frac & 0xffff0000) >> 16;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001254
1255 delaySinceLastReceivedSR = now-receiveTime;
1256 }
1257 report_block->delaySinceLastSR = delaySinceLastReceivedSR;
pbos@webrtc.org59f20bb2013-09-09 16:02:19 +00001258 report_block->lastSR = feedback_state.remote_sr;
stefan@webrtc.org286fe0b2013-08-21 20:58:21 +00001259 return true;
niklase@google.com470e71d2011-07-07 08:21:25 +00001260}
1261
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +00001262int32_t RTCPSender::SendToNetwork(const uint8_t* dataBuffer, size_t length) {
Erik Språng242e22b2015-05-11 10:17:43 +02001263 CriticalSectionScoped lock(critical_section_transport_.get());
1264 if (cbTransport_) {
1265 if (cbTransport_->SendRTCPPacket(id_, dataBuffer, length) > 0)
Erik Språng61be2a42015-04-27 13:32:52 +02001266 return 0;
1267 }
1268 return -1;
niklase@google.com470e71d2011-07-07 08:21:25 +00001269}
1270
pbos@webrtc.org9334ac22014-11-24 08:25:50 +00001271void RTCPSender::SetCsrcs(const std::vector<uint32_t>& csrcs) {
1272 assert(csrcs.size() <= kRtpCsrcSize);
Erik Språng242e22b2015-05-11 10:17:43 +02001273 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
pbos@webrtc.org9334ac22014-11-24 08:25:50 +00001274 csrcs_ = csrcs;
niklase@google.com470e71d2011-07-07 08:21:25 +00001275}
1276
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +00001277int32_t RTCPSender::SetApplicationSpecificData(uint8_t subType,
1278 uint32_t name,
1279 const uint8_t* data,
1280 uint16_t length) {
Erik Språng61be2a42015-04-27 13:32:52 +02001281 if (length % 4 != 0) {
1282 LOG(LS_ERROR) << "Failed to SetApplicationSpecificData.";
1283 return -1;
1284 }
Erik Språng242e22b2015-05-11 10:17:43 +02001285 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
niklase@google.com470e71d2011-07-07 08:21:25 +00001286
Erik Språng242e22b2015-05-11 10:17:43 +02001287 SetFlag(kRtcpApp, true);
1288 app_sub_type_ = subType;
1289 app_name_ = name;
1290 app_data_.reset(new uint8_t[length]);
1291 app_length_ = length;
1292 memcpy(app_data_.get(), data, length);
Erik Språng61be2a42015-04-27 13:32:52 +02001293 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +00001294}
1295
Erik Språng61be2a42015-04-27 13:32:52 +02001296int32_t RTCPSender::SetRTCPVoIPMetrics(const RTCPVoIPMetric* VoIPMetric) {
Erik Språng242e22b2015-05-11 10:17:43 +02001297 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
1298 memcpy(&xr_voip_metric_, VoIPMetric, sizeof(RTCPVoIPMetric));
niklase@google.com470e71d2011-07-07 08:21:25 +00001299
Erik Språng242e22b2015-05-11 10:17:43 +02001300 SetFlag(kRtcpXrVoipMetric, true);
Erik Språng61be2a42015-04-27 13:32:52 +02001301 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +00001302}
1303
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +00001304void RTCPSender::SendRtcpXrReceiverReferenceTime(bool enable) {
Erik Språng242e22b2015-05-11 10:17:43 +02001305 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
1306 xr_send_receiver_reference_time_enabled_ = enable;
asapersson@webrtc.org8469f7b2013-10-02 13:15:34 +00001307}
1308
asapersson@webrtc.org8d02f5d2013-11-21 08:57:04 +00001309bool RTCPSender::RtcpXrReceiverReferenceTime() const {
Erik Språng242e22b2015-05-11 10:17:43 +02001310 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
1311 return xr_send_receiver_reference_time_enabled_;
asapersson@webrtc.org8d02f5d2013-11-21 08:57:04 +00001312}
1313
niklase@google.com470e71d2011-07-07 08:21:25 +00001314// no callbacks allowed inside this function
pbos@webrtc.orgd16e8392014-12-19 13:49:55 +00001315int32_t RTCPSender::SetTMMBN(const TMMBRSet* boundingSet,
1316 uint32_t maxBitrateKbit) {
Erik Språng242e22b2015-05-11 10:17:43 +02001317 CriticalSectionScoped lock(critical_section_rtcp_sender_.get());
niklase@google.com470e71d2011-07-07 08:21:25 +00001318
Erik Språng242e22b2015-05-11 10:17:43 +02001319 if (0 == tmmbr_help_.SetTMMBRBoundingSetToSend(boundingSet, maxBitrateKbit)) {
1320 SetFlag(kRtcpTmmbn, true);
Erik Språng61be2a42015-04-27 13:32:52 +02001321 return 0;
1322 }
1323 return -1;
niklase@google.com470e71d2011-07-07 08:21:25 +00001324}
Erik Språng61be2a42015-04-27 13:32:52 +02001325
Erik Språng242e22b2015-05-11 10:17:43 +02001326void RTCPSender::SetFlag(RTCPPacketType type, bool is_volatile) {
1327 report_flags_.insert(ReportFlag(type, is_volatile));
1328}
1329
1330void RTCPSender::SetFlags(const std::set<RTCPPacketType>& types,
1331 bool is_volatile) {
1332 for (RTCPPacketType type : types)
1333 SetFlag(type, is_volatile);
1334}
1335
1336bool RTCPSender::IsFlagPresent(RTCPPacketType type) const {
1337 return report_flags_.find(ReportFlag(type, false)) != report_flags_.end();
1338}
1339
1340bool RTCPSender::ConsumeFlag(RTCPPacketType type, bool forced) {
1341 auto it = report_flags_.find(ReportFlag(type, false));
1342 if (it == report_flags_.end())
1343 return false;
1344 if (it->is_volatile || forced)
1345 report_flags_.erase((it));
1346 return true;
1347}
1348
1349bool RTCPSender::AllVolatileFlagsConsumed() const {
1350 for (const ReportFlag& flag : report_flags_) {
1351 if (flag.is_volatile)
1352 return false;
1353 }
1354 return true;
1355}
1356
pbos@webrtc.orgd900e8b2013-07-03 15:12:26 +00001357} // namespace webrtc