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Tommi3a5742c2020-05-20 09:32:51 +02001/*
2 * Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
3 *
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
11#include "modules/rtp_rtcp/source/rtp_rtcp_impl2.h"
12
13#include <string.h>
14
15#include <algorithm>
16#include <cstdint>
17#include <memory>
18#include <set>
19#include <string>
20#include <utility>
21
Ali Tofighd14e8892022-05-13 11:42:16 +020022#include "absl/strings/string_view.h"
Markus Handellc6b9ac72021-06-18 13:44:51 +020023#include "absl/types/optional.h"
Markus Handell885d5382021-06-21 18:57:36 +020024#include "api/sequence_checker.h"
Tommi3a5742c2020-05-20 09:32:51 +020025#include "api/transport/field_trial_based_config.h"
Markus Handell885d5382021-06-21 18:57:36 +020026#include "api/units/time_delta.h"
Markus Handellc6b9ac72021-06-18 13:44:51 +020027#include "api/units/timestamp.h"
Tommi3a5742c2020-05-20 09:32:51 +020028#include "modules/rtp_rtcp/source/rtcp_packet/dlrr.h"
29#include "modules/rtp_rtcp/source/rtp_rtcp_config.h"
30#include "rtc_base/checks.h"
31#include "rtc_base/logging.h"
Markus Handell885d5382021-06-21 18:57:36 +020032#include "rtc_base/time_utils.h"
Alessio Bazzicabc1c93d2021-03-12 17:45:26 +010033#include "system_wrappers/include/ntp_time.h"
Tommi3a5742c2020-05-20 09:32:51 +020034
35#ifdef _WIN32
36// Disable warning C4355: 'this' : used in base member initializer list.
37#pragma warning(disable : 4355)
38#endif
39
40namespace webrtc {
41namespace {
Tommi3a5742c2020-05-20 09:32:51 +020042const int64_t kDefaultExpectedRetransmissionTimeMs = 125;
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +020043
44constexpr TimeDelta kRttUpdateInterval = TimeDelta::Millis(1000);
Markus Handell885d5382021-06-21 18:57:36 +020045
46RTCPSender::Configuration AddRtcpSendEvaluationCallback(
47 RTCPSender::Configuration config,
48 std::function<void(TimeDelta)> send_evaluation_callback) {
49 config.schedule_next_rtcp_send_evaluation_function =
50 std::move(send_evaluation_callback);
51 return config;
52}
53
Tommi3a5742c2020-05-20 09:32:51 +020054} // namespace
55
56ModuleRtpRtcpImpl2::RtpSenderContext::RtpSenderContext(
Tomas Gunnarssonf25761d2020-06-03 22:55:33 +020057 const RtpRtcpInterface::Configuration& config)
Tommi3a5742c2020-05-20 09:32:51 +020058 : packet_history(config.clock, config.enable_rtx_padding_prioritization),
Erik Språngb6bbdeb2021-08-13 16:12:41 +020059 sequencer(config.local_media_ssrc,
60 config.rtx_send_ssrc,
61 /*require_marker_before_media_padding=*/!config.audio,
62 config.clock),
Tommi3a5742c2020-05-20 09:32:51 +020063 packet_sender(config, &packet_history),
Erik Språng54abf982021-08-13 17:25:44 +020064 non_paced_sender(&packet_sender, &sequencer),
Tommi3a5742c2020-05-20 09:32:51 +020065 packet_generator(
66 config,
67 &packet_history,
Erik Språng54abf982021-08-13 17:25:44 +020068 config.paced_sender ? config.paced_sender : &non_paced_sender) {}
Tommi3a5742c2020-05-20 09:32:51 +020069
Tommi3a5742c2020-05-20 09:32:51 +020070ModuleRtpRtcpImpl2::ModuleRtpRtcpImpl2(const Configuration& configuration)
Niels Moller2accc7d2021-01-12 15:54:16 +000071 : worker_queue_(TaskQueueBase::Current()),
Markus Handell885d5382021-06-21 18:57:36 +020072 rtcp_sender_(AddRtcpSendEvaluationCallback(
73 RTCPSender::Configuration::FromRtpRtcpConfiguration(configuration),
74 [this](TimeDelta duration) {
75 ScheduleRtcpSendEvaluation(duration);
76 })),
Tommi3a5742c2020-05-20 09:32:51 +020077 rtcp_receiver_(configuration, this),
78 clock_(configuration.clock),
Tommi3a5742c2020-05-20 09:32:51 +020079 packet_overhead_(28), // IPV4 UDP.
80 nack_last_time_sent_full_ms_(0),
81 nack_last_seq_number_sent_(0),
Tommi3a5742c2020-05-20 09:32:51 +020082 rtt_stats_(configuration.rtt_stats),
83 rtt_ms_(0) {
Niels Moller2accc7d2021-01-12 15:54:16 +000084 RTC_DCHECK(worker_queue_);
Erik Språngb6bbdeb2021-08-13 16:12:41 +020085 rtcp_thread_checker_.Detach();
Tommi3a5742c2020-05-20 09:32:51 +020086 if (!configuration.receiver_only) {
87 rtp_sender_ = std::make_unique<RtpSenderContext>(configuration);
Erik Språngb6bbdeb2021-08-13 16:12:41 +020088 rtp_sender_->sequencing_checker.Detach();
Tommi3a5742c2020-05-20 09:32:51 +020089 // Make sure rtcp sender use same timestamp offset as rtp sender.
90 rtcp_sender_.SetTimestampOffset(
91 rtp_sender_->packet_generator.TimestampOffset());
92 }
93
94 // Set default packet size limit.
95 // TODO(nisse): Kind-of duplicates
96 // webrtc::VideoSendStream::Config::Rtp::kDefaultMaxPacketSize.
97 const size_t kTcpOverIpv4HeaderSize = 40;
98 SetMaxRtpPacketSize(IP_PACKET_SIZE - kTcpOverIpv4HeaderSize);
Ivo Creusen8c40d512021-07-13 12:53:22 +000099 rtt_update_task_ = RepeatingTaskHandle::DelayedStart(
100 worker_queue_, kRttUpdateInterval, [this]() {
101 PeriodicUpdate();
102 return kRttUpdateInterval;
103 });
Tommi3a5742c2020-05-20 09:32:51 +0200104}
105
106ModuleRtpRtcpImpl2::~ModuleRtpRtcpImpl2() {
Niels Moller2accc7d2021-01-12 15:54:16 +0000107 RTC_DCHECK_RUN_ON(worker_queue_);
108 rtt_update_task_.Stop();
109}
110
111// static
112std::unique_ptr<ModuleRtpRtcpImpl2> ModuleRtpRtcpImpl2::Create(
113 const Configuration& configuration) {
114 RTC_DCHECK(configuration.clock);
115 RTC_DCHECK(TaskQueueBase::Current());
116 return std::make_unique<ModuleRtpRtcpImpl2>(configuration);
Tomas Gunnarssonfae05622020-06-03 08:54:39 +0200117}
118
Tommi3a5742c2020-05-20 09:32:51 +0200119void ModuleRtpRtcpImpl2::SetRtxSendStatus(int mode) {
120 rtp_sender_->packet_generator.SetRtxStatus(mode);
121}
122
123int ModuleRtpRtcpImpl2::RtxSendStatus() const {
124 return rtp_sender_ ? rtp_sender_->packet_generator.RtxStatus() : kRtxOff;
125}
126
127void ModuleRtpRtcpImpl2::SetRtxSendPayloadType(int payload_type,
128 int associated_payload_type) {
129 rtp_sender_->packet_generator.SetRtxPayloadType(payload_type,
130 associated_payload_type);
131}
132
133absl::optional<uint32_t> ModuleRtpRtcpImpl2::RtxSsrc() const {
134 return rtp_sender_ ? rtp_sender_->packet_generator.RtxSsrc() : absl::nullopt;
135}
136
137absl::optional<uint32_t> ModuleRtpRtcpImpl2::FlexfecSsrc() const {
138 if (rtp_sender_) {
139 return rtp_sender_->packet_generator.FlexfecSsrc();
140 }
141 return absl::nullopt;
142}
143
144void ModuleRtpRtcpImpl2::IncomingRtcpPacket(const uint8_t* rtcp_packet,
145 const size_t length) {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200146 RTC_DCHECK_RUN_ON(&rtcp_thread_checker_);
Tommi3a5742c2020-05-20 09:32:51 +0200147 rtcp_receiver_.IncomingPacket(rtcp_packet, length);
148}
149
150void ModuleRtpRtcpImpl2::RegisterSendPayloadFrequency(int payload_type,
151 int payload_frequency) {
152 rtcp_sender_.SetRtpClockRate(payload_type, payload_frequency);
153}
154
155int32_t ModuleRtpRtcpImpl2::DeRegisterSendPayload(const int8_t payload_type) {
156 return 0;
157}
158
159uint32_t ModuleRtpRtcpImpl2::StartTimestamp() const {
160 return rtp_sender_->packet_generator.TimestampOffset();
161}
162
163// Configure start timestamp, default is a random number.
164void ModuleRtpRtcpImpl2::SetStartTimestamp(const uint32_t timestamp) {
165 rtcp_sender_.SetTimestampOffset(timestamp);
166 rtp_sender_->packet_generator.SetTimestampOffset(timestamp);
167 rtp_sender_->packet_sender.SetTimestampOffset(timestamp);
168}
169
170uint16_t ModuleRtpRtcpImpl2::SequenceNumber() const {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200171 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Erik Språng54abf982021-08-13 17:25:44 +0200172 return rtp_sender_->sequencer.media_sequence_number();
Tommi3a5742c2020-05-20 09:32:51 +0200173}
174
175// Set SequenceNumber, default is a random number.
176void ModuleRtpRtcpImpl2::SetSequenceNumber(const uint16_t seq_num) {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200177 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Erik Språng54abf982021-08-13 17:25:44 +0200178 if (rtp_sender_->sequencer.media_sequence_number() != seq_num) {
179 rtp_sender_->sequencer.set_media_sequence_number(seq_num);
180 rtp_sender_->packet_history.Clear();
Erik Språngbb904972021-08-06 13:10:11 +0200181 }
Tommi3a5742c2020-05-20 09:32:51 +0200182}
183
184void ModuleRtpRtcpImpl2::SetRtpState(const RtpState& rtp_state) {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200185 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Tommi3a5742c2020-05-20 09:32:51 +0200186 rtp_sender_->packet_generator.SetRtpState(rtp_state);
Erik Språng54abf982021-08-13 17:25:44 +0200187 rtp_sender_->sequencer.SetRtpState(rtp_state);
Tommi3a5742c2020-05-20 09:32:51 +0200188 rtcp_sender_.SetTimestampOffset(rtp_state.start_timestamp);
189}
190
191void ModuleRtpRtcpImpl2::SetRtxState(const RtpState& rtp_state) {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200192 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Tommi3a5742c2020-05-20 09:32:51 +0200193 rtp_sender_->packet_generator.SetRtxRtpState(rtp_state);
Erik Språng54abf982021-08-13 17:25:44 +0200194 rtp_sender_->sequencer.set_rtx_sequence_number(rtp_state.sequence_number);
Tommi3a5742c2020-05-20 09:32:51 +0200195}
196
197RtpState ModuleRtpRtcpImpl2::GetRtpState() const {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200198 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Tommi3a5742c2020-05-20 09:32:51 +0200199 RtpState state = rtp_sender_->packet_generator.GetRtpState();
Erik Språng54abf982021-08-13 17:25:44 +0200200 rtp_sender_->sequencer.PopulateRtpState(state);
Tommi3a5742c2020-05-20 09:32:51 +0200201 return state;
202}
203
204RtpState ModuleRtpRtcpImpl2::GetRtxState() const {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200205 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Erik Språngbb904972021-08-06 13:10:11 +0200206 RtpState state = rtp_sender_->packet_generator.GetRtxRtpState();
Erik Språng54abf982021-08-13 17:25:44 +0200207 state.sequence_number = rtp_sender_->sequencer.rtx_sequence_number();
Erik Språngbb904972021-08-06 13:10:11 +0200208 return state;
Tommi3a5742c2020-05-20 09:32:51 +0200209}
210
Ivo Creusen8c40d512021-07-13 12:53:22 +0000211void ModuleRtpRtcpImpl2::SetNonSenderRttMeasurement(bool enabled) {
212 rtcp_sender_.SetNonSenderRttMeasurement(enabled);
213 rtcp_receiver_.SetNonSenderRttMeasurement(enabled);
214}
215
Tommi08be9ba2021-06-15 23:01:57 +0200216uint32_t ModuleRtpRtcpImpl2::local_media_ssrc() const {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200217 RTC_DCHECK_RUN_ON(&rtcp_thread_checker_);
Tommi08be9ba2021-06-15 23:01:57 +0200218 RTC_DCHECK_EQ(rtcp_receiver_.local_media_ssrc(), rtcp_sender_.SSRC());
219 return rtcp_receiver_.local_media_ssrc();
220}
221
Ali Tofighd14e8892022-05-13 11:42:16 +0200222void ModuleRtpRtcpImpl2::SetMid(absl::string_view mid) {
Tommi3a5742c2020-05-20 09:32:51 +0200223 if (rtp_sender_) {
224 rtp_sender_->packet_generator.SetMid(mid);
225 }
226 // TODO(bugs.webrtc.org/4050): If we end up supporting the MID SDES item for
227 // RTCP, this will need to be passed down to the RTCPSender also.
228}
229
230void ModuleRtpRtcpImpl2::SetCsrcs(const std::vector<uint32_t>& csrcs) {
231 rtcp_sender_.SetCsrcs(csrcs);
232 rtp_sender_->packet_generator.SetCsrcs(csrcs);
233}
234
235// TODO(pbos): Handle media and RTX streams separately (separate RTCP
236// feedbacks).
237RTCPSender::FeedbackState ModuleRtpRtcpImpl2::GetFeedbackState() {
Tomas Gunnarssona1163742020-06-29 17:41:22 +0200238 // TODO(bugs.webrtc.org/11581): Called by potentially multiple threads.
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200239 // Mostly "Send*" methods. Make sure it's only called on the
Tomas Gunnarssona1163742020-06-29 17:41:22 +0200240 // construction thread.
241
Tommi3a5742c2020-05-20 09:32:51 +0200242 RTCPSender::FeedbackState state;
243 // This is called also when receiver_only is true. Hence below
244 // checks that rtp_sender_ exists.
245 if (rtp_sender_) {
246 StreamDataCounters rtp_stats;
247 StreamDataCounters rtx_stats;
248 rtp_sender_->packet_sender.GetDataCounters(&rtp_stats, &rtx_stats);
249 state.packets_sent =
250 rtp_stats.transmitted.packets + rtx_stats.transmitted.packets;
251 state.media_bytes_sent = rtp_stats.transmitted.payload_bytes +
252 rtx_stats.transmitted.payload_bytes;
253 state.send_bitrate =
254 rtp_sender_->packet_sender.GetSendRates().Sum().bps<uint32_t>();
255 }
256 state.receiver = &rtcp_receiver_;
257
Alessio Bazzica79011ef2021-03-10 14:52:35 +0100258 uint32_t received_ntp_secs = 0;
259 uint32_t received_ntp_frac = 0;
260 state.remote_sr = 0;
261 if (rtcp_receiver_.NTP(&received_ntp_secs, &received_ntp_frac,
262 /*rtcp_arrival_time_secs=*/&state.last_rr_ntp_secs,
263 /*rtcp_arrival_time_frac=*/&state.last_rr_ntp_frac,
Alessio Bazzica048adc72021-03-10 15:05:55 +0100264 /*rtcp_timestamp=*/nullptr,
265 /*remote_sender_packet_count=*/nullptr,
266 /*remote_sender_octet_count=*/nullptr,
267 /*remote_sender_reports_count=*/nullptr)) {
Alessio Bazzica79011ef2021-03-10 14:52:35 +0100268 state.remote_sr = ((received_ntp_secs & 0x0000ffff) << 16) +
269 ((received_ntp_frac & 0xffff0000) >> 16);
270 }
Tommi3a5742c2020-05-20 09:32:51 +0200271
272 state.last_xr_rtis = rtcp_receiver_.ConsumeReceivedXrReferenceTimeInfo();
273
274 return state;
275}
276
Tommi3a5742c2020-05-20 09:32:51 +0200277int32_t ModuleRtpRtcpImpl2::SetSendingStatus(const bool sending) {
278 if (rtcp_sender_.Sending() != sending) {
279 // Sends RTCP BYE when going from true to false
Tomas Gunnarssondbcf5d32021-04-23 20:31:08 +0200280 rtcp_sender_.SetSendingStatus(GetFeedbackState(), sending);
Tommi3a5742c2020-05-20 09:32:51 +0200281 }
282 return 0;
283}
284
285bool ModuleRtpRtcpImpl2::Sending() const {
286 return rtcp_sender_.Sending();
287}
288
Tommi3a5742c2020-05-20 09:32:51 +0200289void ModuleRtpRtcpImpl2::SetSendingMediaStatus(const bool sending) {
Niels Möller253f36f2022-07-18 15:01:12 +0200290 rtp_sender_->packet_generator.SetSendingMediaStatus(sending);
Tommi3a5742c2020-05-20 09:32:51 +0200291}
292
293bool ModuleRtpRtcpImpl2::SendingMedia() const {
294 return rtp_sender_ ? rtp_sender_->packet_generator.SendingMedia() : false;
295}
296
297bool ModuleRtpRtcpImpl2::IsAudioConfigured() const {
298 return rtp_sender_ ? rtp_sender_->packet_generator.IsAudioConfigured()
299 : false;
300}
301
302void ModuleRtpRtcpImpl2::SetAsPartOfAllocation(bool part_of_allocation) {
303 RTC_CHECK(rtp_sender_);
304 rtp_sender_->packet_sender.ForceIncludeSendPacketsInAllocation(
305 part_of_allocation);
306}
307
308bool ModuleRtpRtcpImpl2::OnSendingRtpFrame(uint32_t timestamp,
309 int64_t capture_time_ms,
310 int payload_type,
311 bool force_sender_report) {
312 if (!Sending())
313 return false;
314
Markus Handellc6b9ac72021-06-18 13:44:51 +0200315 // TODO(bugs.webrtc.org/12873): Migrate this method and it's users to use
316 // optional Timestamps.
317 absl::optional<Timestamp> capture_time;
318 if (capture_time_ms > 0) {
319 capture_time = Timestamp::Millis(capture_time_ms);
320 }
321 absl::optional<int> payload_type_optional;
322 if (payload_type >= 0)
323 payload_type_optional = payload_type;
324 rtcp_sender_.SetLastRtpTime(timestamp, capture_time, payload_type_optional);
Tommi3a5742c2020-05-20 09:32:51 +0200325 // Make sure an RTCP report isn't queued behind a key frame.
326 if (rtcp_sender_.TimeToSendRTCPReport(force_sender_report))
327 rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpReport);
328
329 return true;
330}
331
332bool ModuleRtpRtcpImpl2::TrySendPacket(RtpPacketToSend* packet,
333 const PacedPacketInfo& pacing_info) {
334 RTC_DCHECK(rtp_sender_);
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200335 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Erik Språng54abf982021-08-13 17:25:44 +0200336 if (!rtp_sender_->packet_generator.SendingMedia()) {
Tommi3a5742c2020-05-20 09:32:51 +0200337 return false;
338 }
Erik Språng54abf982021-08-13 17:25:44 +0200339 if (packet->packet_type() == RtpPacketMediaType::kPadding &&
340 packet->Ssrc() == rtp_sender_->packet_generator.SSRC() &&
341 !rtp_sender_->sequencer.CanSendPaddingOnMediaSsrc()) {
342 // New media packet preempted this generated padding packet, discard it.
343 return false;
344 }
345 bool is_flexfec =
346 packet->packet_type() == RtpPacketMediaType::kForwardErrorCorrection &&
347 packet->Ssrc() == rtp_sender_->packet_generator.FlexfecSsrc();
348 if (!is_flexfec) {
349 rtp_sender_->sequencer.Sequence(*packet);
350 }
351
Tommi3a5742c2020-05-20 09:32:51 +0200352 rtp_sender_->packet_sender.SendPacket(packet, pacing_info);
353 return true;
354}
355
Erik Språng1d50cb62020-07-02 17:41:32 +0200356void ModuleRtpRtcpImpl2::SetFecProtectionParams(
357 const FecProtectionParams& delta_params,
358 const FecProtectionParams& key_params) {
359 RTC_DCHECK(rtp_sender_);
360 rtp_sender_->packet_sender.SetFecProtectionParameters(delta_params,
361 key_params);
362}
363
364std::vector<std::unique_ptr<RtpPacketToSend>>
365ModuleRtpRtcpImpl2::FetchFecPackets() {
366 RTC_DCHECK(rtp_sender_);
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200367 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Erik Språng54abf982021-08-13 17:25:44 +0200368 return rtp_sender_->packet_sender.FetchFecPackets();
Erik Språng1d50cb62020-07-02 17:41:32 +0200369}
370
Erik Språng50459492022-09-08 16:53:06 +0200371void ModuleRtpRtcpImpl2::OnAbortedRetransmissions(
372 rtc::ArrayView<const uint16_t> sequence_numbers) {
373 RTC_DCHECK(rtp_sender_);
374 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
375 rtp_sender_->packet_sender.OnAbortedRetransmissions(sequence_numbers);
376}
377
Tommi3a5742c2020-05-20 09:32:51 +0200378void ModuleRtpRtcpImpl2::OnPacketsAcknowledged(
379 rtc::ArrayView<const uint16_t> sequence_numbers) {
380 RTC_DCHECK(rtp_sender_);
381 rtp_sender_->packet_history.CullAcknowledgedPackets(sequence_numbers);
382}
383
384bool ModuleRtpRtcpImpl2::SupportsPadding() const {
385 RTC_DCHECK(rtp_sender_);
386 return rtp_sender_->packet_generator.SupportsPadding();
387}
388
389bool ModuleRtpRtcpImpl2::SupportsRtxPayloadPadding() const {
390 RTC_DCHECK(rtp_sender_);
391 return rtp_sender_->packet_generator.SupportsRtxPayloadPadding();
392}
393
394std::vector<std::unique_ptr<RtpPacketToSend>>
395ModuleRtpRtcpImpl2::GeneratePadding(size_t target_size_bytes) {
396 RTC_DCHECK(rtp_sender_);
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200397 RTC_DCHECK_RUN_ON(&rtp_sender_->sequencing_checker);
Erik Språngbb904972021-08-06 13:10:11 +0200398
Tommi3a5742c2020-05-20 09:32:51 +0200399 return rtp_sender_->packet_generator.GeneratePadding(
Erik Språngbfcfe032021-08-04 14:45:32 +0200400 target_size_bytes, rtp_sender_->packet_sender.MediaHasBeenSent(),
Erik Språng54abf982021-08-13 17:25:44 +0200401 rtp_sender_->sequencer.CanSendPaddingOnMediaSsrc());
Tommi3a5742c2020-05-20 09:32:51 +0200402}
403
404std::vector<RtpSequenceNumberMap::Info>
405ModuleRtpRtcpImpl2::GetSentRtpPacketInfos(
406 rtc::ArrayView<const uint16_t> sequence_numbers) const {
407 RTC_DCHECK(rtp_sender_);
408 return rtp_sender_->packet_sender.GetSentRtpPacketInfos(sequence_numbers);
409}
410
411size_t ModuleRtpRtcpImpl2::ExpectedPerPacketOverhead() const {
412 if (!rtp_sender_) {
413 return 0;
414 }
415 return rtp_sender_->packet_generator.ExpectedPerPacketOverhead();
416}
417
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200418void ModuleRtpRtcpImpl2::OnPacketSendingThreadSwitched() {
419 // Ownership of sequencing is being transferred to another thread.
420 rtp_sender_->sequencing_checker.Detach();
421}
422
Tommi3a5742c2020-05-20 09:32:51 +0200423size_t ModuleRtpRtcpImpl2::MaxRtpPacketSize() const {
424 RTC_DCHECK(rtp_sender_);
425 return rtp_sender_->packet_generator.MaxRtpPacketSize();
426}
427
428void ModuleRtpRtcpImpl2::SetMaxRtpPacketSize(size_t rtp_packet_size) {
429 RTC_DCHECK_LE(rtp_packet_size, IP_PACKET_SIZE)
430 << "rtp packet size too large: " << rtp_packet_size;
431 RTC_DCHECK_GT(rtp_packet_size, packet_overhead_)
432 << "rtp packet size too small: " << rtp_packet_size;
433
434 rtcp_sender_.SetMaxRtpPacketSize(rtp_packet_size);
435 if (rtp_sender_) {
436 rtp_sender_->packet_generator.SetMaxRtpPacketSize(rtp_packet_size);
437 }
438}
439
440RtcpMode ModuleRtpRtcpImpl2::RTCP() const {
441 return rtcp_sender_.Status();
442}
443
444// Configure RTCP status i.e on/off.
445void ModuleRtpRtcpImpl2::SetRTCPStatus(const RtcpMode method) {
446 rtcp_sender_.SetRTCPStatus(method);
447}
448
Ali Tofighd14e8892022-05-13 11:42:16 +0200449int32_t ModuleRtpRtcpImpl2::SetCNAME(absl::string_view c_name) {
Tommi3a5742c2020-05-20 09:32:51 +0200450 return rtcp_sender_.SetCNAME(c_name);
451}
452
Tommi3a5742c2020-05-20 09:32:51 +0200453int32_t ModuleRtpRtcpImpl2::RemoteNTP(uint32_t* received_ntpsecs,
454 uint32_t* received_ntpfrac,
455 uint32_t* rtcp_arrival_time_secs,
456 uint32_t* rtcp_arrival_time_frac,
457 uint32_t* rtcp_timestamp) const {
458 return rtcp_receiver_.NTP(received_ntpsecs, received_ntpfrac,
459 rtcp_arrival_time_secs, rtcp_arrival_time_frac,
Alessio Bazzica048adc72021-03-10 15:05:55 +0100460 rtcp_timestamp,
461 /*remote_sender_packet_count=*/nullptr,
462 /*remote_sender_octet_count=*/nullptr,
463 /*remote_sender_reports_count=*/nullptr)
Tommi3a5742c2020-05-20 09:32:51 +0200464 ? 0
465 : -1;
466}
467
Artem Titov913cfa72021-07-28 23:57:33 +0200468// TODO(tommi): Check if `avg_rtt_ms`, `min_rtt_ms`, `max_rtt_ms` params are
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200469// actually used in practice (some callers ask for it but don't use it). It
Artem Titov913cfa72021-07-28 23:57:33 +0200470// could be that only `rtt` is needed and if so, then the fast path could be to
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200471// just call rtt_ms() and rely on the calculation being done periodically.
Tommi3a5742c2020-05-20 09:32:51 +0200472int32_t ModuleRtpRtcpImpl2::RTT(const uint32_t remote_ssrc,
473 int64_t* rtt,
474 int64_t* avg_rtt,
475 int64_t* min_rtt,
476 int64_t* max_rtt) const {
477 int32_t ret = rtcp_receiver_.RTT(remote_ssrc, rtt, avg_rtt, min_rtt, max_rtt);
478 if (rtt && *rtt == 0) {
479 // Try to get RTT from RtcpRttStats class.
480 *rtt = rtt_ms();
481 }
482 return ret;
483}
484
485int64_t ModuleRtpRtcpImpl2::ExpectedRetransmissionTimeMs() const {
486 int64_t expected_retransmission_time_ms = rtt_ms();
487 if (expected_retransmission_time_ms > 0) {
488 return expected_retransmission_time_ms;
489 }
Artem Titov913cfa72021-07-28 23:57:33 +0200490 // No rtt available (`kRttUpdateInterval` not yet passed?), so try to
Tommi3a5742c2020-05-20 09:32:51 +0200491 // poll avg_rtt_ms directly from rtcp receiver.
492 if (rtcp_receiver_.RTT(rtcp_receiver_.RemoteSSRC(), nullptr,
493 &expected_retransmission_time_ms, nullptr,
494 nullptr) == 0) {
495 return expected_retransmission_time_ms;
496 }
497 return kDefaultExpectedRetransmissionTimeMs;
498}
499
500// Force a send of an RTCP packet.
501// Normal SR and RR are triggered via the process function.
502int32_t ModuleRtpRtcpImpl2::SendRTCP(RTCPPacketType packet_type) {
503 return rtcp_sender_.SendRTCP(GetFeedbackState(), packet_type);
504}
505
Tommi3a5742c2020-05-20 09:32:51 +0200506void ModuleRtpRtcpImpl2::GetSendStreamDataCounters(
507 StreamDataCounters* rtp_counters,
508 StreamDataCounters* rtx_counters) const {
509 rtp_sender_->packet_sender.GetDataCounters(rtp_counters, rtx_counters);
510}
511
512// Received RTCP report.
Tommi3a5742c2020-05-20 09:32:51 +0200513std::vector<ReportBlockData> ModuleRtpRtcpImpl2::GetLatestReportBlockData()
514 const {
515 return rtcp_receiver_.GetLatestReportBlockData();
516}
517
Alessio Bazzicabc1c93d2021-03-12 17:45:26 +0100518absl::optional<RtpRtcpInterface::SenderReportStats>
519ModuleRtpRtcpImpl2::GetSenderReportStats() const {
520 SenderReportStats stats;
521 uint32_t remote_timestamp_secs;
522 uint32_t remote_timestamp_frac;
523 uint32_t arrival_timestamp_secs;
524 uint32_t arrival_timestamp_frac;
525 if (rtcp_receiver_.NTP(&remote_timestamp_secs, &remote_timestamp_frac,
526 &arrival_timestamp_secs, &arrival_timestamp_frac,
527 /*rtcp_timestamp=*/nullptr, &stats.packets_sent,
528 &stats.bytes_sent, &stats.reports_count)) {
529 stats.last_remote_timestamp.Set(remote_timestamp_secs,
530 remote_timestamp_frac);
531 stats.last_arrival_timestamp.Set(arrival_timestamp_secs,
532 arrival_timestamp_frac);
533 return stats;
534 }
535 return absl::nullopt;
536}
537
Ivo Creusen2562cf02021-09-03 14:51:22 +0000538absl::optional<RtpRtcpInterface::NonSenderRttStats>
539ModuleRtpRtcpImpl2::GetNonSenderRttStats() const {
540 RTCPReceiver::NonSenderRttStats non_sender_rtt_stats =
541 rtcp_receiver_.GetNonSenderRTT();
542 return {{
543 non_sender_rtt_stats.round_trip_time(),
544 non_sender_rtt_stats.total_round_trip_time(),
545 non_sender_rtt_stats.round_trip_time_measurements(),
546 }};
547}
548
Tommi3a5742c2020-05-20 09:32:51 +0200549// (REMB) Receiver Estimated Max Bitrate.
550void ModuleRtpRtcpImpl2::SetRemb(int64_t bitrate_bps,
551 std::vector<uint32_t> ssrcs) {
552 rtcp_sender_.SetRemb(bitrate_bps, std::move(ssrcs));
553}
554
555void ModuleRtpRtcpImpl2::UnsetRemb() {
556 rtcp_sender_.UnsetRemb();
557}
558
559void ModuleRtpRtcpImpl2::SetExtmapAllowMixed(bool extmap_allow_mixed) {
560 rtp_sender_->packet_generator.SetExtmapAllowMixed(extmap_allow_mixed);
561}
562
Tommi3a5742c2020-05-20 09:32:51 +0200563void ModuleRtpRtcpImpl2::RegisterRtpHeaderExtension(absl::string_view uri,
564 int id) {
565 bool registered =
566 rtp_sender_->packet_generator.RegisterRtpHeaderExtension(uri, id);
567 RTC_CHECK(registered);
568}
569
Tommi3a5742c2020-05-20 09:32:51 +0200570void ModuleRtpRtcpImpl2::DeregisterSendRtpHeaderExtension(
571 absl::string_view uri) {
572 rtp_sender_->packet_generator.DeregisterRtpHeaderExtension(uri);
573}
574
Tommi3a5742c2020-05-20 09:32:51 +0200575void ModuleRtpRtcpImpl2::SetTmmbn(std::vector<rtcp::TmmbItem> bounding_set) {
576 rtcp_sender_.SetTmmbn(std::move(bounding_set));
577}
578
579// Send a Negative acknowledgment packet.
580int32_t ModuleRtpRtcpImpl2::SendNACK(const uint16_t* nack_list,
581 const uint16_t size) {
582 uint16_t nack_length = size;
583 uint16_t start_id = 0;
584 int64_t now_ms = clock_->TimeInMilliseconds();
585 if (TimeToSendFullNackList(now_ms)) {
586 nack_last_time_sent_full_ms_ = now_ms;
587 } else {
588 // Only send extended list.
589 if (nack_last_seq_number_sent_ == nack_list[size - 1]) {
590 // Last sequence number is the same, do not send list.
591 return 0;
592 }
593 // Send new sequence numbers.
594 for (int i = 0; i < size; ++i) {
595 if (nack_last_seq_number_sent_ == nack_list[i]) {
596 start_id = i + 1;
597 break;
598 }
599 }
600 nack_length = size - start_id;
601 }
602
603 // Our RTCP NACK implementation is limited to kRtcpMaxNackFields sequence
604 // numbers per RTCP packet.
605 if (nack_length > kRtcpMaxNackFields) {
606 nack_length = kRtcpMaxNackFields;
607 }
608 nack_last_seq_number_sent_ = nack_list[start_id + nack_length - 1];
609
610 return rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpNack, nack_length,
611 &nack_list[start_id]);
612}
613
614void ModuleRtpRtcpImpl2::SendNack(
615 const std::vector<uint16_t>& sequence_numbers) {
616 rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpNack, sequence_numbers.size(),
617 sequence_numbers.data());
618}
619
620bool ModuleRtpRtcpImpl2::TimeToSendFullNackList(int64_t now) const {
621 // Use RTT from RtcpRttStats class if provided.
622 int64_t rtt = rtt_ms();
623 if (rtt == 0) {
624 rtcp_receiver_.RTT(rtcp_receiver_.RemoteSSRC(), NULL, &rtt, NULL, NULL);
625 }
626
627 const int64_t kStartUpRttMs = 100;
628 int64_t wait_time = 5 + ((rtt * 3) >> 1); // 5 + RTT * 1.5.
629 if (rtt == 0) {
630 wait_time = kStartUpRttMs;
631 }
632
Artem Titov913cfa72021-07-28 23:57:33 +0200633 // Send a full NACK list once within every `wait_time`.
Tommi3a5742c2020-05-20 09:32:51 +0200634 return now - nack_last_time_sent_full_ms_ > wait_time;
635}
636
637// Store the sent packets, needed to answer to Negative acknowledgment requests.
638void ModuleRtpRtcpImpl2::SetStorePacketsStatus(const bool enable,
639 const uint16_t number_to_store) {
640 rtp_sender_->packet_history.SetStorePacketsStatus(
641 enable ? RtpPacketHistory::StorageMode::kStoreAndCull
642 : RtpPacketHistory::StorageMode::kDisabled,
643 number_to_store);
644}
645
646bool ModuleRtpRtcpImpl2::StorePackets() const {
647 return rtp_sender_->packet_history.GetStorageMode() !=
648 RtpPacketHistory::StorageMode::kDisabled;
649}
650
651void ModuleRtpRtcpImpl2::SendCombinedRtcpPacket(
652 std::vector<std::unique_ptr<rtcp::RtcpPacket>> rtcp_packets) {
653 rtcp_sender_.SendCombinedRtcpPacket(std::move(rtcp_packets));
654}
655
656int32_t ModuleRtpRtcpImpl2::SendLossNotification(uint16_t last_decoded_seq_num,
657 uint16_t last_received_seq_num,
658 bool decodability_flag,
659 bool buffering_allowed) {
660 return rtcp_sender_.SendLossNotification(
661 GetFeedbackState(), last_decoded_seq_num, last_received_seq_num,
662 decodability_flag, buffering_allowed);
663}
664
665void ModuleRtpRtcpImpl2::SetRemoteSSRC(const uint32_t ssrc) {
666 // Inform about the incoming SSRC.
667 rtcp_sender_.SetRemoteSSRC(ssrc);
668 rtcp_receiver_.SetRemoteSSRC(ssrc);
669}
670
Tommi08be9ba2021-06-15 23:01:57 +0200671void ModuleRtpRtcpImpl2::SetLocalSsrc(uint32_t local_ssrc) {
Erik Språngb6bbdeb2021-08-13 16:12:41 +0200672 RTC_DCHECK_RUN_ON(&rtcp_thread_checker_);
Tommi08be9ba2021-06-15 23:01:57 +0200673 rtcp_receiver_.set_local_media_ssrc(local_ssrc);
674 rtcp_sender_.SetSsrc(local_ssrc);
675}
676
Tommi3a5742c2020-05-20 09:32:51 +0200677RtpSendRates ModuleRtpRtcpImpl2::GetSendRates() const {
Tommi1050fbc2021-06-03 17:58:28 +0200678 // Typically called on the `rtp_transport_queue_` owned by an
679 // RtpTransportControllerSendInterface instance.
Tommi3a5742c2020-05-20 09:32:51 +0200680 return rtp_sender_->packet_sender.GetSendRates();
681}
682
683void ModuleRtpRtcpImpl2::OnRequestSendReport() {
684 SendRTCP(kRtcpSr);
685}
686
687void ModuleRtpRtcpImpl2::OnReceivedNack(
688 const std::vector<uint16_t>& nack_sequence_numbers) {
689 if (!rtp_sender_)
690 return;
691
692 if (!StorePackets() || nack_sequence_numbers.empty()) {
693 return;
694 }
695 // Use RTT from RtcpRttStats class if provided.
696 int64_t rtt = rtt_ms();
697 if (rtt == 0) {
698 rtcp_receiver_.RTT(rtcp_receiver_.RemoteSSRC(), NULL, &rtt, NULL, NULL);
699 }
700 rtp_sender_->packet_generator.OnReceivedNack(nack_sequence_numbers, rtt);
701}
702
703void ModuleRtpRtcpImpl2::OnReceivedRtcpReportBlocks(
704 const ReportBlockList& report_blocks) {
705 if (rtp_sender_) {
706 uint32_t ssrc = SSRC();
707 absl::optional<uint32_t> rtx_ssrc;
708 if (rtp_sender_->packet_generator.RtxStatus() != kRtxOff) {
709 rtx_ssrc = rtp_sender_->packet_generator.RtxSsrc();
710 }
711
712 for (const RTCPReportBlock& report_block : report_blocks) {
713 if (ssrc == report_block.source_ssrc) {
714 rtp_sender_->packet_generator.OnReceivedAckOnSsrc(
715 report_block.extended_highest_sequence_number);
716 } else if (rtx_ssrc && *rtx_ssrc == report_block.source_ssrc) {
717 rtp_sender_->packet_generator.OnReceivedAckOnRtxSsrc(
718 report_block.extended_highest_sequence_number);
719 }
720 }
721 }
722}
723
Tommi3a5742c2020-05-20 09:32:51 +0200724void ModuleRtpRtcpImpl2::set_rtt_ms(int64_t rtt_ms) {
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200725 RTC_DCHECK_RUN_ON(worker_queue_);
Tommi3a5742c2020-05-20 09:32:51 +0200726 {
Markus Handellf7303e62020-07-09 01:34:42 +0200727 MutexLock lock(&mutex_rtt_);
Tommi3a5742c2020-05-20 09:32:51 +0200728 rtt_ms_ = rtt_ms;
729 }
730 if (rtp_sender_) {
Danil Chapovalova2ee9232022-03-04 15:03:02 +0100731 rtp_sender_->packet_history.SetRtt(TimeDelta::Millis(rtt_ms));
Tommi3a5742c2020-05-20 09:32:51 +0200732 }
733}
734
735int64_t ModuleRtpRtcpImpl2::rtt_ms() const {
Markus Handellf7303e62020-07-09 01:34:42 +0200736 MutexLock lock(&mutex_rtt_);
Tommi3a5742c2020-05-20 09:32:51 +0200737 return rtt_ms_;
738}
739
740void ModuleRtpRtcpImpl2::SetVideoBitrateAllocation(
741 const VideoBitrateAllocation& bitrate) {
742 rtcp_sender_.SetVideoBitrateAllocation(bitrate);
743}
744
745RTPSender* ModuleRtpRtcpImpl2::RtpSender() {
746 return rtp_sender_ ? &rtp_sender_->packet_generator : nullptr;
747}
748
749const RTPSender* ModuleRtpRtcpImpl2::RtpSender() const {
750 return rtp_sender_ ? &rtp_sender_->packet_generator : nullptr;
751}
752
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200753void ModuleRtpRtcpImpl2::PeriodicUpdate() {
754 RTC_DCHECK_RUN_ON(worker_queue_);
755
756 Timestamp check_since = clock_->CurrentTime() - kRttUpdateInterval;
757 absl::optional<TimeDelta> rtt =
758 rtcp_receiver_.OnPeriodicRttUpdate(check_since, rtcp_sender_.Sending());
759 if (rtt) {
Ivo Creusen8c40d512021-07-13 12:53:22 +0000760 if (rtt_stats_) {
761 rtt_stats_->OnRttUpdate(rtt->ms());
762 }
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200763 set_rtt_ms(rtt->ms());
764 }
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200765}
766
Markus Handell885d5382021-06-21 18:57:36 +0200767void ModuleRtpRtcpImpl2::MaybeSendRtcp() {
Danil Chapovalov6e7c2682022-07-25 15:58:28 +0200768 RTC_DCHECK_RUN_ON(worker_queue_);
Markus Handell885d5382021-06-21 18:57:36 +0200769 if (rtcp_sender_.TimeToSendRTCPReport())
770 rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpReport);
771}
772
773// TODO(bugs.webrtc.org/12889): Consider removing this function when the issue
774// is resolved.
Markus Handell885d5382021-06-21 18:57:36 +0200775void ModuleRtpRtcpImpl2::MaybeSendRtcpAtOrAfterTimestamp(
776 Timestamp execution_time) {
Danil Chapovalov6e7c2682022-07-25 15:58:28 +0200777 RTC_DCHECK_RUN_ON(worker_queue_);
Markus Handell885d5382021-06-21 18:57:36 +0200778 Timestamp now = clock_->CurrentTime();
779 if (now >= execution_time) {
780 MaybeSendRtcp();
781 return;
782 }
783
Byoungchan Leee044ec52022-07-21 17:21:45 +0900784 TimeDelta delta = execution_time - now;
785 // TaskQueue may run task 1ms earlier, so don't print warning if in this case.
786 if (delta > TimeDelta::Millis(1)) {
787 RTC_DLOG(LS_WARNING) << "BUGBUG: Task queue scheduled delayed call "
788 << delta << " too early.";
789 }
Markus Handell885d5382021-06-21 18:57:36 +0200790
Byoungchan Leee044ec52022-07-21 17:21:45 +0900791 ScheduleMaybeSendRtcpAtOrAfterTimestamp(execution_time, delta);
Markus Handell885d5382021-06-21 18:57:36 +0200792}
793
794void ModuleRtpRtcpImpl2::ScheduleRtcpSendEvaluation(TimeDelta duration) {
795 // We end up here under various sequences including the worker queue, and
796 // the RTCPSender lock is held.
797 // We're assuming that the fact that RTCPSender executes under other sequences
798 // than the worker queue on which it's created on implies that external
799 // synchronization is present and removes this activity before destruction.
800 if (duration.IsZero()) {
Danil Chapovalov677c1dd2022-07-07 13:34:25 +0200801 worker_queue_->PostTask(SafeTask(task_safety_.flag(), [this] {
Markus Handell885d5382021-06-21 18:57:36 +0200802 RTC_DCHECK_RUN_ON(worker_queue_);
803 MaybeSendRtcp();
804 }));
805 } else {
806 Timestamp execution_time = clock_->CurrentTime() + duration;
807 ScheduleMaybeSendRtcpAtOrAfterTimestamp(execution_time, duration);
808 }
809}
810
811void ModuleRtpRtcpImpl2::ScheduleMaybeSendRtcpAtOrAfterTimestamp(
812 Timestamp execution_time,
813 TimeDelta duration) {
814 // We end up here under various sequences including the worker queue, and
815 // the RTCPSender lock is held.
Artem Titov913cfa72021-07-28 23:57:33 +0200816 // See note in ScheduleRtcpSendEvaluation about why `worker_queue_` can be
Markus Handell885d5382021-06-21 18:57:36 +0200817 // accessed.
818 worker_queue_->PostDelayedTask(
Danil Chapovalov677c1dd2022-07-07 13:34:25 +0200819 SafeTask(task_safety_.flag(),
820 [this, execution_time] {
821 RTC_DCHECK_RUN_ON(worker_queue_);
822 MaybeSendRtcpAtOrAfterTimestamp(execution_time);
823 }),
824 duration.RoundUpTo(TimeDelta::Millis(1)));
Markus Handell885d5382021-06-21 18:57:36 +0200825}
826
Tommi3a5742c2020-05-20 09:32:51 +0200827} // namespace webrtc