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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
22#include "api/transport/field_trial_based_config.h"
23#include "modules/rtp_rtcp/source/rtcp_packet/dlrr.h"
24#include "modules/rtp_rtcp/source/rtp_rtcp_config.h"
25#include "rtc_base/checks.h"
26#include "rtc_base/logging.h"
27
28#ifdef _WIN32
29// Disable warning C4355: 'this' : used in base member initializer list.
30#pragma warning(disable : 4355)
31#endif
32
33namespace webrtc {
34namespace {
35const int64_t kRtpRtcpMaxIdleTimeProcessMs = 5;
Tommi3a5742c2020-05-20 09:32:51 +020036const int64_t kDefaultExpectedRetransmissionTimeMs = 125;
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +020037
38constexpr TimeDelta kRttUpdateInterval = TimeDelta::Millis(1000);
Tommi3a5742c2020-05-20 09:32:51 +020039} // namespace
40
41ModuleRtpRtcpImpl2::RtpSenderContext::RtpSenderContext(
Tomas Gunnarssonf25761d2020-06-03 22:55:33 +020042 const RtpRtcpInterface::Configuration& config)
Tommi3a5742c2020-05-20 09:32:51 +020043 : packet_history(config.clock, config.enable_rtx_padding_prioritization),
44 packet_sender(config, &packet_history),
Erik Språng1d50cb62020-07-02 17:41:32 +020045 non_paced_sender(&packet_sender, this),
Tommi3a5742c2020-05-20 09:32:51 +020046 packet_generator(
47 config,
48 &packet_history,
49 config.paced_sender ? config.paced_sender : &non_paced_sender) {}
Erik Språng1d50cb62020-07-02 17:41:32 +020050void ModuleRtpRtcpImpl2::RtpSenderContext::AssignSequenceNumber(
51 RtpPacketToSend* packet) {
52 packet_generator.AssignSequenceNumber(packet);
53}
Tommi3a5742c2020-05-20 09:32:51 +020054
Tommi3a5742c2020-05-20 09:32:51 +020055ModuleRtpRtcpImpl2::ModuleRtpRtcpImpl2(const Configuration& configuration)
Niels Moller2accc7d2021-01-12 15:54:16 +000056 : worker_queue_(TaskQueueBase::Current()),
Tomas Gunnarsson473bbd82020-06-27 17:44:55 +020057 rtcp_sender_(configuration),
Tommi3a5742c2020-05-20 09:32:51 +020058 rtcp_receiver_(configuration, this),
59 clock_(configuration.clock),
Tommi3a5742c2020-05-20 09:32:51 +020060 last_rtt_process_time_(clock_->TimeInMilliseconds()),
61 next_process_time_(clock_->TimeInMilliseconds() +
62 kRtpRtcpMaxIdleTimeProcessMs),
63 packet_overhead_(28), // IPV4 UDP.
64 nack_last_time_sent_full_ms_(0),
65 nack_last_seq_number_sent_(0),
66 remote_bitrate_(configuration.remote_bitrate_estimator),
67 rtt_stats_(configuration.rtt_stats),
68 rtt_ms_(0) {
Niels Moller2accc7d2021-01-12 15:54:16 +000069 RTC_DCHECK(worker_queue_);
Tommi3a5742c2020-05-20 09:32:51 +020070 process_thread_checker_.Detach();
71 if (!configuration.receiver_only) {
72 rtp_sender_ = std::make_unique<RtpSenderContext>(configuration);
73 // Make sure rtcp sender use same timestamp offset as rtp sender.
74 rtcp_sender_.SetTimestampOffset(
75 rtp_sender_->packet_generator.TimestampOffset());
76 }
77
78 // Set default packet size limit.
79 // TODO(nisse): Kind-of duplicates
80 // webrtc::VideoSendStream::Config::Rtp::kDefaultMaxPacketSize.
81 const size_t kTcpOverIpv4HeaderSize = 40;
82 SetMaxRtpPacketSize(IP_PACKET_SIZE - kTcpOverIpv4HeaderSize);
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +020083
84 if (rtt_stats_) {
85 rtt_update_task_ = RepeatingTaskHandle::DelayedStart(
86 worker_queue_, kRttUpdateInterval, [this]() {
87 PeriodicUpdate();
88 return kRttUpdateInterval;
89 });
90 }
Tommi3a5742c2020-05-20 09:32:51 +020091}
92
93ModuleRtpRtcpImpl2::~ModuleRtpRtcpImpl2() {
Niels Moller2accc7d2021-01-12 15:54:16 +000094 RTC_DCHECK_RUN_ON(worker_queue_);
95 rtt_update_task_.Stop();
96}
97
98// static
99std::unique_ptr<ModuleRtpRtcpImpl2> ModuleRtpRtcpImpl2::Create(
100 const Configuration& configuration) {
101 RTC_DCHECK(configuration.clock);
102 RTC_DCHECK(TaskQueueBase::Current());
103 return std::make_unique<ModuleRtpRtcpImpl2>(configuration);
Tomas Gunnarssonfae05622020-06-03 08:54:39 +0200104}
105
Tommi3a5742c2020-05-20 09:32:51 +0200106// Returns the number of milliseconds until the module want a worker thread
107// to call Process.
108int64_t ModuleRtpRtcpImpl2::TimeUntilNextProcess() {
109 RTC_DCHECK_RUN_ON(&process_thread_checker_);
110 return std::max<int64_t>(0,
111 next_process_time_ - clock_->TimeInMilliseconds());
112}
113
114// Process any pending tasks such as timeouts (non time critical events).
115void ModuleRtpRtcpImpl2::Process() {
116 RTC_DCHECK_RUN_ON(&process_thread_checker_);
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200117
118 const Timestamp now = clock_->CurrentTime();
119
Tommi3a5742c2020-05-20 09:32:51 +0200120 // TODO(bugs.webrtc.org/11581): Figure out why we need to call Process() 200
121 // times a second.
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200122 next_process_time_ = now.ms() + kRtpRtcpMaxIdleTimeProcessMs;
Tommi3a5742c2020-05-20 09:32:51 +0200123
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200124 // TODO(bugs.webrtc.org/11581): once we don't use Process() to trigger
125 // calls to SendRTCP(), the only remaining timer will require remote_bitrate_
126 // to be not null. In that case, we can disable the timer when it is null.
127 if (remote_bitrate_ && rtcp_sender_.Sending() && rtcp_sender_.TMMBR()) {
128 unsigned int target_bitrate = 0;
129 std::vector<unsigned int> ssrcs;
130 if (remote_bitrate_->LatestEstimate(&ssrcs, &target_bitrate)) {
131 if (!ssrcs.empty()) {
132 target_bitrate = target_bitrate / ssrcs.size();
Tommi3a5742c2020-05-20 09:32:51 +0200133 }
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200134 rtcp_sender_.SetTargetBitrate(target_bitrate);
Tommi3a5742c2020-05-20 09:32:51 +0200135 }
136 }
137
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200138 // TODO(bugs.webrtc.org/11581): Run this on a separate set of delayed tasks
139 // based off of next_time_to_send_rtcp_ in RTCPSender.
Tommi3a5742c2020-05-20 09:32:51 +0200140 if (rtcp_sender_.TimeToSendRTCPReport())
141 rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpReport);
Tommi3a5742c2020-05-20 09:32:51 +0200142}
143
144void ModuleRtpRtcpImpl2::SetRtxSendStatus(int mode) {
145 rtp_sender_->packet_generator.SetRtxStatus(mode);
146}
147
148int ModuleRtpRtcpImpl2::RtxSendStatus() const {
149 return rtp_sender_ ? rtp_sender_->packet_generator.RtxStatus() : kRtxOff;
150}
151
152void ModuleRtpRtcpImpl2::SetRtxSendPayloadType(int payload_type,
153 int associated_payload_type) {
154 rtp_sender_->packet_generator.SetRtxPayloadType(payload_type,
155 associated_payload_type);
156}
157
158absl::optional<uint32_t> ModuleRtpRtcpImpl2::RtxSsrc() const {
159 return rtp_sender_ ? rtp_sender_->packet_generator.RtxSsrc() : absl::nullopt;
160}
161
162absl::optional<uint32_t> ModuleRtpRtcpImpl2::FlexfecSsrc() const {
163 if (rtp_sender_) {
164 return rtp_sender_->packet_generator.FlexfecSsrc();
165 }
166 return absl::nullopt;
167}
168
169void ModuleRtpRtcpImpl2::IncomingRtcpPacket(const uint8_t* rtcp_packet,
170 const size_t length) {
171 rtcp_receiver_.IncomingPacket(rtcp_packet, length);
172}
173
174void ModuleRtpRtcpImpl2::RegisterSendPayloadFrequency(int payload_type,
175 int payload_frequency) {
176 rtcp_sender_.SetRtpClockRate(payload_type, payload_frequency);
177}
178
179int32_t ModuleRtpRtcpImpl2::DeRegisterSendPayload(const int8_t payload_type) {
180 return 0;
181}
182
183uint32_t ModuleRtpRtcpImpl2::StartTimestamp() const {
184 return rtp_sender_->packet_generator.TimestampOffset();
185}
186
187// Configure start timestamp, default is a random number.
188void ModuleRtpRtcpImpl2::SetStartTimestamp(const uint32_t timestamp) {
189 rtcp_sender_.SetTimestampOffset(timestamp);
190 rtp_sender_->packet_generator.SetTimestampOffset(timestamp);
191 rtp_sender_->packet_sender.SetTimestampOffset(timestamp);
192}
193
194uint16_t ModuleRtpRtcpImpl2::SequenceNumber() const {
195 return rtp_sender_->packet_generator.SequenceNumber();
196}
197
198// Set SequenceNumber, default is a random number.
199void ModuleRtpRtcpImpl2::SetSequenceNumber(const uint16_t seq_num) {
200 rtp_sender_->packet_generator.SetSequenceNumber(seq_num);
201}
202
203void ModuleRtpRtcpImpl2::SetRtpState(const RtpState& rtp_state) {
204 rtp_sender_->packet_generator.SetRtpState(rtp_state);
Tommi3a5742c2020-05-20 09:32:51 +0200205 rtcp_sender_.SetTimestampOffset(rtp_state.start_timestamp);
206}
207
208void ModuleRtpRtcpImpl2::SetRtxState(const RtpState& rtp_state) {
209 rtp_sender_->packet_generator.SetRtxRtpState(rtp_state);
210}
211
212RtpState ModuleRtpRtcpImpl2::GetRtpState() const {
213 RtpState state = rtp_sender_->packet_generator.GetRtpState();
Tommi3a5742c2020-05-20 09:32:51 +0200214 return state;
215}
216
217RtpState ModuleRtpRtcpImpl2::GetRtxState() const {
218 return rtp_sender_->packet_generator.GetRtxRtpState();
219}
220
221void ModuleRtpRtcpImpl2::SetRid(const std::string& rid) {
222 if (rtp_sender_) {
223 rtp_sender_->packet_generator.SetRid(rid);
224 }
225}
226
227void ModuleRtpRtcpImpl2::SetMid(const std::string& mid) {
228 if (rtp_sender_) {
229 rtp_sender_->packet_generator.SetMid(mid);
230 }
231 // TODO(bugs.webrtc.org/4050): If we end up supporting the MID SDES item for
232 // RTCP, this will need to be passed down to the RTCPSender also.
233}
234
235void ModuleRtpRtcpImpl2::SetCsrcs(const std::vector<uint32_t>& csrcs) {
236 rtcp_sender_.SetCsrcs(csrcs);
237 rtp_sender_->packet_generator.SetCsrcs(csrcs);
238}
239
240// TODO(pbos): Handle media and RTX streams separately (separate RTCP
241// feedbacks).
242RTCPSender::FeedbackState ModuleRtpRtcpImpl2::GetFeedbackState() {
Tomas Gunnarssona1163742020-06-29 17:41:22 +0200243 // TODO(bugs.webrtc.org/11581): Called by potentially multiple threads.
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200244 // Mostly "Send*" methods. Make sure it's only called on the
Tomas Gunnarssona1163742020-06-29 17:41:22 +0200245 // construction thread.
246
Tommi3a5742c2020-05-20 09:32:51 +0200247 RTCPSender::FeedbackState state;
248 // This is called also when receiver_only is true. Hence below
249 // checks that rtp_sender_ exists.
250 if (rtp_sender_) {
251 StreamDataCounters rtp_stats;
252 StreamDataCounters rtx_stats;
253 rtp_sender_->packet_sender.GetDataCounters(&rtp_stats, &rtx_stats);
254 state.packets_sent =
255 rtp_stats.transmitted.packets + rtx_stats.transmitted.packets;
256 state.media_bytes_sent = rtp_stats.transmitted.payload_bytes +
257 rtx_stats.transmitted.payload_bytes;
258 state.send_bitrate =
259 rtp_sender_->packet_sender.GetSendRates().Sum().bps<uint32_t>();
260 }
261 state.receiver = &rtcp_receiver_;
262
Alessio Bazzica79011ef2021-03-10 14:52:35 +0100263 uint32_t received_ntp_secs = 0;
264 uint32_t received_ntp_frac = 0;
265 state.remote_sr = 0;
266 if (rtcp_receiver_.NTP(&received_ntp_secs, &received_ntp_frac,
267 /*rtcp_arrival_time_secs=*/&state.last_rr_ntp_secs,
268 /*rtcp_arrival_time_frac=*/&state.last_rr_ntp_frac,
269 /*rtcp_timestamp=*/nullptr)) {
270 state.remote_sr = ((received_ntp_secs & 0x0000ffff) << 16) +
271 ((received_ntp_frac & 0xffff0000) >> 16);
272 }
Tommi3a5742c2020-05-20 09:32:51 +0200273
274 state.last_xr_rtis = rtcp_receiver_.ConsumeReceivedXrReferenceTimeInfo();
275
276 return state;
277}
278
279// TODO(nisse): This method shouldn't be called for a receive-only
280// stream. Delete rtp_sender_ check as soon as all applications are
281// updated.
282int32_t ModuleRtpRtcpImpl2::SetSendingStatus(const bool sending) {
283 if (rtcp_sender_.Sending() != sending) {
284 // Sends RTCP BYE when going from true to false
285 if (rtcp_sender_.SetSendingStatus(GetFeedbackState(), sending) != 0) {
286 RTC_LOG(LS_WARNING) << "Failed to send RTCP BYE";
287 }
288 }
289 return 0;
290}
291
292bool ModuleRtpRtcpImpl2::Sending() const {
293 return rtcp_sender_.Sending();
294}
295
296// TODO(nisse): This method shouldn't be called for a receive-only
297// stream. Delete rtp_sender_ check as soon as all applications are
298// updated.
299void ModuleRtpRtcpImpl2::SetSendingMediaStatus(const bool sending) {
300 if (rtp_sender_) {
301 rtp_sender_->packet_generator.SetSendingMediaStatus(sending);
302 } else {
303 RTC_DCHECK(!sending);
304 }
305}
306
307bool ModuleRtpRtcpImpl2::SendingMedia() const {
308 return rtp_sender_ ? rtp_sender_->packet_generator.SendingMedia() : false;
309}
310
311bool ModuleRtpRtcpImpl2::IsAudioConfigured() const {
312 return rtp_sender_ ? rtp_sender_->packet_generator.IsAudioConfigured()
313 : false;
314}
315
316void ModuleRtpRtcpImpl2::SetAsPartOfAllocation(bool part_of_allocation) {
317 RTC_CHECK(rtp_sender_);
318 rtp_sender_->packet_sender.ForceIncludeSendPacketsInAllocation(
319 part_of_allocation);
320}
321
322bool ModuleRtpRtcpImpl2::OnSendingRtpFrame(uint32_t timestamp,
323 int64_t capture_time_ms,
324 int payload_type,
325 bool force_sender_report) {
326 if (!Sending())
327 return false;
328
329 rtcp_sender_.SetLastRtpTime(timestamp, capture_time_ms, payload_type);
330 // Make sure an RTCP report isn't queued behind a key frame.
331 if (rtcp_sender_.TimeToSendRTCPReport(force_sender_report))
332 rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpReport);
333
334 return true;
335}
336
337bool ModuleRtpRtcpImpl2::TrySendPacket(RtpPacketToSend* packet,
338 const PacedPacketInfo& pacing_info) {
339 RTC_DCHECK(rtp_sender_);
340 // TODO(sprang): Consider if we can remove this check.
341 if (!rtp_sender_->packet_generator.SendingMedia()) {
342 return false;
343 }
344 rtp_sender_->packet_sender.SendPacket(packet, pacing_info);
345 return true;
346}
347
Erik Språng1d50cb62020-07-02 17:41:32 +0200348void ModuleRtpRtcpImpl2::SetFecProtectionParams(
349 const FecProtectionParams& delta_params,
350 const FecProtectionParams& key_params) {
351 RTC_DCHECK(rtp_sender_);
352 rtp_sender_->packet_sender.SetFecProtectionParameters(delta_params,
353 key_params);
354}
355
356std::vector<std::unique_ptr<RtpPacketToSend>>
357ModuleRtpRtcpImpl2::FetchFecPackets() {
358 RTC_DCHECK(rtp_sender_);
359 auto fec_packets = rtp_sender_->packet_sender.FetchFecPackets();
360 if (!fec_packets.empty()) {
361 // Don't assign sequence numbers for FlexFEC packets.
362 const bool generate_sequence_numbers =
363 !rtp_sender_->packet_sender.FlexFecSsrc().has_value();
364 if (generate_sequence_numbers) {
365 for (auto& fec_packet : fec_packets) {
366 rtp_sender_->packet_generator.AssignSequenceNumber(fec_packet.get());
367 }
368 }
369 }
370 return fec_packets;
371}
372
Tommi3a5742c2020-05-20 09:32:51 +0200373void ModuleRtpRtcpImpl2::OnPacketsAcknowledged(
374 rtc::ArrayView<const uint16_t> sequence_numbers) {
375 RTC_DCHECK(rtp_sender_);
376 rtp_sender_->packet_history.CullAcknowledgedPackets(sequence_numbers);
377}
378
379bool ModuleRtpRtcpImpl2::SupportsPadding() const {
380 RTC_DCHECK(rtp_sender_);
381 return rtp_sender_->packet_generator.SupportsPadding();
382}
383
384bool ModuleRtpRtcpImpl2::SupportsRtxPayloadPadding() const {
385 RTC_DCHECK(rtp_sender_);
386 return rtp_sender_->packet_generator.SupportsRtxPayloadPadding();
387}
388
389std::vector<std::unique_ptr<RtpPacketToSend>>
390ModuleRtpRtcpImpl2::GeneratePadding(size_t target_size_bytes) {
391 RTC_DCHECK(rtp_sender_);
392 return rtp_sender_->packet_generator.GeneratePadding(
393 target_size_bytes, rtp_sender_->packet_sender.MediaHasBeenSent());
394}
395
396std::vector<RtpSequenceNumberMap::Info>
397ModuleRtpRtcpImpl2::GetSentRtpPacketInfos(
398 rtc::ArrayView<const uint16_t> sequence_numbers) const {
399 RTC_DCHECK(rtp_sender_);
400 return rtp_sender_->packet_sender.GetSentRtpPacketInfos(sequence_numbers);
401}
402
403size_t ModuleRtpRtcpImpl2::ExpectedPerPacketOverhead() const {
404 if (!rtp_sender_) {
405 return 0;
406 }
407 return rtp_sender_->packet_generator.ExpectedPerPacketOverhead();
408}
409
410size_t ModuleRtpRtcpImpl2::MaxRtpPacketSize() const {
411 RTC_DCHECK(rtp_sender_);
412 return rtp_sender_->packet_generator.MaxRtpPacketSize();
413}
414
415void ModuleRtpRtcpImpl2::SetMaxRtpPacketSize(size_t rtp_packet_size) {
416 RTC_DCHECK_LE(rtp_packet_size, IP_PACKET_SIZE)
417 << "rtp packet size too large: " << rtp_packet_size;
418 RTC_DCHECK_GT(rtp_packet_size, packet_overhead_)
419 << "rtp packet size too small: " << rtp_packet_size;
420
421 rtcp_sender_.SetMaxRtpPacketSize(rtp_packet_size);
422 if (rtp_sender_) {
423 rtp_sender_->packet_generator.SetMaxRtpPacketSize(rtp_packet_size);
424 }
425}
426
427RtcpMode ModuleRtpRtcpImpl2::RTCP() const {
428 return rtcp_sender_.Status();
429}
430
431// Configure RTCP status i.e on/off.
432void ModuleRtpRtcpImpl2::SetRTCPStatus(const RtcpMode method) {
433 rtcp_sender_.SetRTCPStatus(method);
434}
435
436int32_t ModuleRtpRtcpImpl2::SetCNAME(const char* c_name) {
437 return rtcp_sender_.SetCNAME(c_name);
438}
439
Tommi3a5742c2020-05-20 09:32:51 +0200440int32_t ModuleRtpRtcpImpl2::RemoteNTP(uint32_t* received_ntpsecs,
441 uint32_t* received_ntpfrac,
442 uint32_t* rtcp_arrival_time_secs,
443 uint32_t* rtcp_arrival_time_frac,
444 uint32_t* rtcp_timestamp) const {
445 return rtcp_receiver_.NTP(received_ntpsecs, received_ntpfrac,
446 rtcp_arrival_time_secs, rtcp_arrival_time_frac,
447 rtcp_timestamp)
448 ? 0
449 : -1;
450}
451
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200452// TODO(tommi): Check if |avg_rtt_ms|, |min_rtt_ms|, |max_rtt_ms| params are
453// actually used in practice (some callers ask for it but don't use it). It
454// could be that only |rtt| is needed and if so, then the fast path could be to
455// just call rtt_ms() and rely on the calculation being done periodically.
Tommi3a5742c2020-05-20 09:32:51 +0200456int32_t ModuleRtpRtcpImpl2::RTT(const uint32_t remote_ssrc,
457 int64_t* rtt,
458 int64_t* avg_rtt,
459 int64_t* min_rtt,
460 int64_t* max_rtt) const {
461 int32_t ret = rtcp_receiver_.RTT(remote_ssrc, rtt, avg_rtt, min_rtt, max_rtt);
462 if (rtt && *rtt == 0) {
463 // Try to get RTT from RtcpRttStats class.
464 *rtt = rtt_ms();
465 }
466 return ret;
467}
468
469int64_t ModuleRtpRtcpImpl2::ExpectedRetransmissionTimeMs() const {
470 int64_t expected_retransmission_time_ms = rtt_ms();
471 if (expected_retransmission_time_ms > 0) {
472 return expected_retransmission_time_ms;
473 }
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200474 // No rtt available (|kRttUpdateInterval| not yet passed?), so try to
Tommi3a5742c2020-05-20 09:32:51 +0200475 // poll avg_rtt_ms directly from rtcp receiver.
476 if (rtcp_receiver_.RTT(rtcp_receiver_.RemoteSSRC(), nullptr,
477 &expected_retransmission_time_ms, nullptr,
478 nullptr) == 0) {
479 return expected_retransmission_time_ms;
480 }
481 return kDefaultExpectedRetransmissionTimeMs;
482}
483
484// Force a send of an RTCP packet.
485// Normal SR and RR are triggered via the process function.
486int32_t ModuleRtpRtcpImpl2::SendRTCP(RTCPPacketType packet_type) {
487 return rtcp_sender_.SendRTCP(GetFeedbackState(), packet_type);
488}
489
Tommi3a5742c2020-05-20 09:32:51 +0200490void ModuleRtpRtcpImpl2::GetSendStreamDataCounters(
491 StreamDataCounters* rtp_counters,
492 StreamDataCounters* rtx_counters) const {
493 rtp_sender_->packet_sender.GetDataCounters(rtp_counters, rtx_counters);
494}
495
496// Received RTCP report.
497int32_t ModuleRtpRtcpImpl2::RemoteRTCPStat(
498 std::vector<RTCPReportBlock>* receive_blocks) const {
499 return rtcp_receiver_.StatisticsReceived(receive_blocks);
500}
501
502std::vector<ReportBlockData> ModuleRtpRtcpImpl2::GetLatestReportBlockData()
503 const {
504 return rtcp_receiver_.GetLatestReportBlockData();
505}
506
507// (REMB) Receiver Estimated Max Bitrate.
508void ModuleRtpRtcpImpl2::SetRemb(int64_t bitrate_bps,
509 std::vector<uint32_t> ssrcs) {
510 rtcp_sender_.SetRemb(bitrate_bps, std::move(ssrcs));
511}
512
513void ModuleRtpRtcpImpl2::UnsetRemb() {
514 rtcp_sender_.UnsetRemb();
515}
516
517void ModuleRtpRtcpImpl2::SetExtmapAllowMixed(bool extmap_allow_mixed) {
518 rtp_sender_->packet_generator.SetExtmapAllowMixed(extmap_allow_mixed);
519}
520
Tommi3a5742c2020-05-20 09:32:51 +0200521void ModuleRtpRtcpImpl2::RegisterRtpHeaderExtension(absl::string_view uri,
522 int id) {
523 bool registered =
524 rtp_sender_->packet_generator.RegisterRtpHeaderExtension(uri, id);
525 RTC_CHECK(registered);
526}
527
528int32_t ModuleRtpRtcpImpl2::DeregisterSendRtpHeaderExtension(
529 const RTPExtensionType type) {
530 return rtp_sender_->packet_generator.DeregisterRtpHeaderExtension(type);
531}
532void ModuleRtpRtcpImpl2::DeregisterSendRtpHeaderExtension(
533 absl::string_view uri) {
534 rtp_sender_->packet_generator.DeregisterRtpHeaderExtension(uri);
535}
536
Tommi3a5742c2020-05-20 09:32:51 +0200537void ModuleRtpRtcpImpl2::SetTmmbn(std::vector<rtcp::TmmbItem> bounding_set) {
538 rtcp_sender_.SetTmmbn(std::move(bounding_set));
539}
540
541// Send a Negative acknowledgment packet.
542int32_t ModuleRtpRtcpImpl2::SendNACK(const uint16_t* nack_list,
543 const uint16_t size) {
544 uint16_t nack_length = size;
545 uint16_t start_id = 0;
546 int64_t now_ms = clock_->TimeInMilliseconds();
547 if (TimeToSendFullNackList(now_ms)) {
548 nack_last_time_sent_full_ms_ = now_ms;
549 } else {
550 // Only send extended list.
551 if (nack_last_seq_number_sent_ == nack_list[size - 1]) {
552 // Last sequence number is the same, do not send list.
553 return 0;
554 }
555 // Send new sequence numbers.
556 for (int i = 0; i < size; ++i) {
557 if (nack_last_seq_number_sent_ == nack_list[i]) {
558 start_id = i + 1;
559 break;
560 }
561 }
562 nack_length = size - start_id;
563 }
564
565 // Our RTCP NACK implementation is limited to kRtcpMaxNackFields sequence
566 // numbers per RTCP packet.
567 if (nack_length > kRtcpMaxNackFields) {
568 nack_length = kRtcpMaxNackFields;
569 }
570 nack_last_seq_number_sent_ = nack_list[start_id + nack_length - 1];
571
572 return rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpNack, nack_length,
573 &nack_list[start_id]);
574}
575
576void ModuleRtpRtcpImpl2::SendNack(
577 const std::vector<uint16_t>& sequence_numbers) {
578 rtcp_sender_.SendRTCP(GetFeedbackState(), kRtcpNack, sequence_numbers.size(),
579 sequence_numbers.data());
580}
581
582bool ModuleRtpRtcpImpl2::TimeToSendFullNackList(int64_t now) const {
583 // Use RTT from RtcpRttStats class if provided.
584 int64_t rtt = rtt_ms();
585 if (rtt == 0) {
586 rtcp_receiver_.RTT(rtcp_receiver_.RemoteSSRC(), NULL, &rtt, NULL, NULL);
587 }
588
589 const int64_t kStartUpRttMs = 100;
590 int64_t wait_time = 5 + ((rtt * 3) >> 1); // 5 + RTT * 1.5.
591 if (rtt == 0) {
592 wait_time = kStartUpRttMs;
593 }
594
595 // Send a full NACK list once within every |wait_time|.
596 return now - nack_last_time_sent_full_ms_ > wait_time;
597}
598
599// Store the sent packets, needed to answer to Negative acknowledgment requests.
600void ModuleRtpRtcpImpl2::SetStorePacketsStatus(const bool enable,
601 const uint16_t number_to_store) {
602 rtp_sender_->packet_history.SetStorePacketsStatus(
603 enable ? RtpPacketHistory::StorageMode::kStoreAndCull
604 : RtpPacketHistory::StorageMode::kDisabled,
605 number_to_store);
606}
607
608bool ModuleRtpRtcpImpl2::StorePackets() const {
609 return rtp_sender_->packet_history.GetStorageMode() !=
610 RtpPacketHistory::StorageMode::kDisabled;
611}
612
613void ModuleRtpRtcpImpl2::SendCombinedRtcpPacket(
614 std::vector<std::unique_ptr<rtcp::RtcpPacket>> rtcp_packets) {
615 rtcp_sender_.SendCombinedRtcpPacket(std::move(rtcp_packets));
616}
617
618int32_t ModuleRtpRtcpImpl2::SendLossNotification(uint16_t last_decoded_seq_num,
619 uint16_t last_received_seq_num,
620 bool decodability_flag,
621 bool buffering_allowed) {
622 return rtcp_sender_.SendLossNotification(
623 GetFeedbackState(), last_decoded_seq_num, last_received_seq_num,
624 decodability_flag, buffering_allowed);
625}
626
627void ModuleRtpRtcpImpl2::SetRemoteSSRC(const uint32_t ssrc) {
628 // Inform about the incoming SSRC.
629 rtcp_sender_.SetRemoteSSRC(ssrc);
630 rtcp_receiver_.SetRemoteSSRC(ssrc);
631}
632
Tommi3a5742c2020-05-20 09:32:51 +0200633RtpSendRates ModuleRtpRtcpImpl2::GetSendRates() const {
Tomas Gunnarssona1163742020-06-29 17:41:22 +0200634 RTC_DCHECK_RUN_ON(worker_queue_);
Tommi3a5742c2020-05-20 09:32:51 +0200635 return rtp_sender_->packet_sender.GetSendRates();
636}
637
638void ModuleRtpRtcpImpl2::OnRequestSendReport() {
639 SendRTCP(kRtcpSr);
640}
641
642void ModuleRtpRtcpImpl2::OnReceivedNack(
643 const std::vector<uint16_t>& nack_sequence_numbers) {
644 if (!rtp_sender_)
645 return;
646
647 if (!StorePackets() || nack_sequence_numbers.empty()) {
648 return;
649 }
650 // Use RTT from RtcpRttStats class if provided.
651 int64_t rtt = rtt_ms();
652 if (rtt == 0) {
653 rtcp_receiver_.RTT(rtcp_receiver_.RemoteSSRC(), NULL, &rtt, NULL, NULL);
654 }
655 rtp_sender_->packet_generator.OnReceivedNack(nack_sequence_numbers, rtt);
656}
657
658void ModuleRtpRtcpImpl2::OnReceivedRtcpReportBlocks(
659 const ReportBlockList& report_blocks) {
660 if (rtp_sender_) {
661 uint32_t ssrc = SSRC();
662 absl::optional<uint32_t> rtx_ssrc;
663 if (rtp_sender_->packet_generator.RtxStatus() != kRtxOff) {
664 rtx_ssrc = rtp_sender_->packet_generator.RtxSsrc();
665 }
666
667 for (const RTCPReportBlock& report_block : report_blocks) {
668 if (ssrc == report_block.source_ssrc) {
669 rtp_sender_->packet_generator.OnReceivedAckOnSsrc(
670 report_block.extended_highest_sequence_number);
671 } else if (rtx_ssrc && *rtx_ssrc == report_block.source_ssrc) {
672 rtp_sender_->packet_generator.OnReceivedAckOnRtxSsrc(
673 report_block.extended_highest_sequence_number);
674 }
675 }
676 }
677}
678
Tommi3a5742c2020-05-20 09:32:51 +0200679void ModuleRtpRtcpImpl2::set_rtt_ms(int64_t rtt_ms) {
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200680 RTC_DCHECK_RUN_ON(worker_queue_);
Tommi3a5742c2020-05-20 09:32:51 +0200681 {
Markus Handellf7303e62020-07-09 01:34:42 +0200682 MutexLock lock(&mutex_rtt_);
Tommi3a5742c2020-05-20 09:32:51 +0200683 rtt_ms_ = rtt_ms;
684 }
685 if (rtp_sender_) {
686 rtp_sender_->packet_history.SetRtt(rtt_ms);
687 }
688}
689
690int64_t ModuleRtpRtcpImpl2::rtt_ms() const {
Markus Handellf7303e62020-07-09 01:34:42 +0200691 MutexLock lock(&mutex_rtt_);
Tommi3a5742c2020-05-20 09:32:51 +0200692 return rtt_ms_;
693}
694
695void ModuleRtpRtcpImpl2::SetVideoBitrateAllocation(
696 const VideoBitrateAllocation& bitrate) {
697 rtcp_sender_.SetVideoBitrateAllocation(bitrate);
698}
699
700RTPSender* ModuleRtpRtcpImpl2::RtpSender() {
701 return rtp_sender_ ? &rtp_sender_->packet_generator : nullptr;
702}
703
704const RTPSender* ModuleRtpRtcpImpl2::RtpSender() const {
705 return rtp_sender_ ? &rtp_sender_->packet_generator : nullptr;
706}
707
Tomas Gunnarssonba0ba712020-07-01 08:53:21 +0200708void ModuleRtpRtcpImpl2::PeriodicUpdate() {
709 RTC_DCHECK_RUN_ON(worker_queue_);
710
711 Timestamp check_since = clock_->CurrentTime() - kRttUpdateInterval;
712 absl::optional<TimeDelta> rtt =
713 rtcp_receiver_.OnPeriodicRttUpdate(check_since, rtcp_sender_.Sending());
714 if (rtt) {
715 rtt_stats_->OnRttUpdate(rtt->ms());
716 set_rtt_ms(rtt->ms());
717 }
718
719 // kTmmbrTimeoutIntervalMs is 25 seconds, so an order of seconds.
720 // Instead of this polling approach, consider having an optional timer in the
721 // RTCPReceiver class that is started/stopped based on the state of
722 // rtcp_sender_.TMMBR().
723 if (rtcp_sender_.TMMBR() && rtcp_receiver_.UpdateTmmbrTimers())
724 rtcp_receiver_.NotifyTmmbrUpdated();
725}
726
Tommi3a5742c2020-05-20 09:32:51 +0200727} // namespace webrtc