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niklase@google.com470e71d2011-07-07 08:21:25 +00001/*
stefan@webrtc.org29794612012-02-08 08:58:55 +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 */
Henrik Kjellander2557b862015-11-18 22:00:21 +010010#include "webrtc/modules/video_coding/jitter_buffer.h"
niklase@google.com470e71d2011-07-07 08:21:25 +000011
pbos@webrtc.org12dc1a32013-08-05 16:22:53 +000012#include <assert.h>
13
stefan@webrtc.org29794612012-02-08 08:58:55 +000014#include <algorithm>
philipel83f831a2016-03-12 03:30:23 -080015#include <limits>
agalusza@google.comd818dcb2013-07-29 21:48:11 +000016#include <utility>
stefan@webrtc.org29794612012-02-08 08:58:55 +000017
asapersson9a4cd872015-10-23 00:27:14 -070018#include "webrtc/base/checks.h"
pbos854e84c2015-11-16 16:39:06 -080019#include "webrtc/base/logging.h"
tommie4f96502015-10-20 23:00:48 -070020#include "webrtc/base/trace_event.h"
Henrik Kjellanderff761fb2015-11-04 08:31:52 +010021#include "webrtc/modules/rtp_rtcp/include/rtp_rtcp_defines.h"
Henrik Kjellander2557b862015-11-18 22:00:21 +010022#include "webrtc/modules/video_coding/include/video_coding.h"
23#include "webrtc/modules/video_coding/frame_buffer.h"
24#include "webrtc/modules/video_coding/inter_frame_delay.h"
25#include "webrtc/modules/video_coding/internal_defines.h"
26#include "webrtc/modules/video_coding/jitter_buffer_common.h"
27#include "webrtc/modules/video_coding/jitter_estimator.h"
28#include "webrtc/modules/video_coding/packet.h"
Henrik Kjellander98f53512015-10-28 18:17:40 +010029#include "webrtc/system_wrappers/include/clock.h"
30#include "webrtc/system_wrappers/include/critical_section_wrapper.h"
31#include "webrtc/system_wrappers/include/event_wrapper.h"
philipel83f831a2016-03-12 03:30:23 -080032#include "webrtc/system_wrappers/include/field_trial.h"
Henrik Kjellander98f53512015-10-28 18:17:40 +010033#include "webrtc/system_wrappers/include/metrics.h"
niklase@google.com470e71d2011-07-07 08:21:25 +000034
niklase@google.com470e71d2011-07-07 08:21:25 +000035namespace webrtc {
asapersson9a4cd872015-10-23 00:27:14 -070036// Interval for updating SS data.
37static const uint32_t kSsCleanupIntervalSec = 60;
38
mflodman@webrtc.org7c894b72012-11-26 12:40:15 +000039// Use this rtt if no value has been reported.
pkasting@chromium.org16825b12015-01-12 21:51:21 +000040static const int64_t kDefaultRtt = 200;
mflodman@webrtc.org7c894b72012-11-26 12:40:15 +000041
jbauchdb81ffd2015-11-23 03:59:02 -080042// Request a keyframe if no continuous frame has been received for this
43// number of milliseconds and NACKs are disabled.
44static const int64_t kMaxDiscontinuousFramesTime = 1000;
45
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000046typedef std::pair<uint32_t, VCMFrameBuffer*> FrameListPair;
niklase@google.com470e71d2011-07-07 08:21:25 +000047
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000048bool IsKeyFrame(FrameListPair pair) {
49 return pair.second->FrameType() == kVideoFrameKey;
50}
stefan@webrtc.org29794612012-02-08 08:58:55 +000051
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000052bool HasNonEmptyState(FrameListPair pair) {
53 return pair.second->GetState() != kStateEmpty;
stefan@webrtc.orga64300a2013-03-04 15:24:40 +000054}
55
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000056void FrameList::InsertFrame(VCMFrameBuffer* frame) {
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000057 insert(rbegin().base(), FrameListPair(frame->TimeStamp(), frame));
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000058}
59
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000060VCMFrameBuffer* FrameList::PopFrame(uint32_t timestamp) {
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000061 FrameList::iterator it = find(timestamp);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000062 if (it == end())
63 return NULL;
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000064 VCMFrameBuffer* frame = it->second;
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000065 erase(it);
66 return frame;
67}
68
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000069VCMFrameBuffer* FrameList::Front() const {
70 return begin()->second;
71}
72
73VCMFrameBuffer* FrameList::Back() const {
74 return rbegin()->second;
75}
76
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +000077int FrameList::RecycleFramesUntilKeyFrame(FrameList::iterator* key_frame_it,
78 UnorderedFrameList* free_frames) {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000079 int drop_count = 0;
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000080 FrameList::iterator it = begin();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000081 while (!empty()) {
82 // Throw at least one frame.
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +000083 it->second->Reset();
84 free_frames->push_back(it->second);
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000085 erase(it++);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000086 ++drop_count;
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000087 if (it != end() && it->second->FrameType() == kVideoFrameKey) {
88 *key_frame_it = it;
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000089 return drop_count;
90 }
91 }
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000092 *key_frame_it = end();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000093 return drop_count;
94}
95
pbos@webrtc.org4f16c872014-11-24 09:06:48 +000096void FrameList::CleanUpOldOrEmptyFrames(VCMDecodingState* decoding_state,
philipel9d3ab612015-12-21 04:12:39 -080097 UnorderedFrameList* free_frames) {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +000098 while (!empty()) {
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +000099 VCMFrameBuffer* oldest_frame = Front();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000100 bool remove_frame = false;
101 if (oldest_frame->GetState() == kStateEmpty && size() > 1) {
102 // This frame is empty, try to update the last decoded state and drop it
103 // if successful.
104 remove_frame = decoding_state->UpdateEmptyFrame(oldest_frame);
105 } else {
106 remove_frame = decoding_state->IsOldFrame(oldest_frame);
107 }
108 if (!remove_frame) {
109 break;
110 }
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000111 free_frames->push_back(oldest_frame);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000112 TRACE_EVENT_INSTANT1("webrtc", "JB::OldOrEmptyFrameDropped", "timestamp",
113 oldest_frame->TimeStamp());
114 erase(begin());
115 }
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000116}
117
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000118void FrameList::Reset(UnorderedFrameList* free_frames) {
119 while (!empty()) {
120 begin()->second->Reset();
121 free_frames->push_back(begin()->second);
122 erase(begin());
123 }
124}
125
asapersson9a4cd872015-10-23 00:27:14 -0700126bool Vp9SsMap::Insert(const VCMPacket& packet) {
isheriff6b4b5f32016-06-08 00:24:21 -0700127 if (!packet.video_header.codecHeader.VP9.ss_data_available)
asapersson9a4cd872015-10-23 00:27:14 -0700128 return false;
129
isheriff6b4b5f32016-06-08 00:24:21 -0700130 ss_map_[packet.timestamp] = packet.video_header.codecHeader.VP9.gof;
asapersson9a4cd872015-10-23 00:27:14 -0700131 return true;
132}
133
134void Vp9SsMap::Reset() {
135 ss_map_.clear();
136}
137
138bool Vp9SsMap::Find(uint32_t timestamp, SsMap::iterator* it_out) {
139 bool found = false;
140 for (SsMap::iterator it = ss_map_.begin(); it != ss_map_.end(); ++it) {
141 if (it->first == timestamp || IsNewerTimestamp(timestamp, it->first)) {
142 *it_out = it;
143 found = true;
144 }
145 }
146 return found;
147}
148
149void Vp9SsMap::RemoveOld(uint32_t timestamp) {
150 if (!TimeForCleanup(timestamp))
151 return;
152
153 SsMap::iterator it;
154 if (!Find(timestamp, &it))
155 return;
156
157 ss_map_.erase(ss_map_.begin(), it);
158 AdvanceFront(timestamp);
159}
160
161bool Vp9SsMap::TimeForCleanup(uint32_t timestamp) const {
162 if (ss_map_.empty() || !IsNewerTimestamp(timestamp, ss_map_.begin()->first))
163 return false;
164
165 uint32_t diff = timestamp - ss_map_.begin()->first;
166 return diff / kVideoPayloadTypeFrequency >= kSsCleanupIntervalSec;
167}
168
169void Vp9SsMap::AdvanceFront(uint32_t timestamp) {
170 RTC_DCHECK(!ss_map_.empty());
171 GofInfoVP9 gof = ss_map_.begin()->second;
172 ss_map_.erase(ss_map_.begin());
173 ss_map_[timestamp] = gof;
174}
175
asaperssonc253a1c2015-11-06 00:12:01 -0800176// TODO(asapersson): Update according to updates in RTP payload profile.
asapersson9a4cd872015-10-23 00:27:14 -0700177bool Vp9SsMap::UpdatePacket(VCMPacket* packet) {
isheriff6b4b5f32016-06-08 00:24:21 -0700178 uint8_t gof_idx = packet->video_header.codecHeader.VP9.gof_idx;
asapersson9a4cd872015-10-23 00:27:14 -0700179 if (gof_idx == kNoGofIdx)
180 return false; // No update needed.
181
182 SsMap::iterator it;
183 if (!Find(packet->timestamp, &it))
184 return false; // Corresponding SS not yet received.
185
186 if (gof_idx >= it->second.num_frames_in_gof)
187 return false; // Assume corresponding SS not yet received.
188
isheriff6b4b5f32016-06-08 00:24:21 -0700189 RTPVideoHeaderVP9* vp9 = &packet->video_header.codecHeader.VP9;
asapersson9a4cd872015-10-23 00:27:14 -0700190 vp9->temporal_idx = it->second.temporal_idx[gof_idx];
191 vp9->temporal_up_switch = it->second.temporal_up_switch[gof_idx];
192
193 // TODO(asapersson): Set vp9.ref_picture_id[i] and add usage.
194 vp9->num_ref_pics = it->second.num_ref_pics[gof_idx];
asaperssonc253a1c2015-11-06 00:12:01 -0800195 for (uint8_t i = 0; i < it->second.num_ref_pics[gof_idx]; ++i) {
asapersson9a4cd872015-10-23 00:27:14 -0700196 vp9->pid_diff[i] = it->second.pid_diff[gof_idx][i];
197 }
198 return true;
199}
200
201void Vp9SsMap::UpdateFrames(FrameList* frames) {
202 for (const auto& frame_it : *frames) {
203 uint8_t gof_idx =
204 frame_it.second->CodecSpecific()->codecSpecific.VP9.gof_idx;
205 if (gof_idx == kNoGofIdx) {
206 continue;
207 }
208 SsMap::iterator ss_it;
209 if (Find(frame_it.second->TimeStamp(), &ss_it)) {
210 if (gof_idx >= ss_it->second.num_frames_in_gof) {
211 continue; // Assume corresponding SS not yet received.
212 }
213 frame_it.second->SetGofInfo(ss_it->second, gof_idx);
214 }
215 }
216}
217
Qiang Chend4cec152015-06-19 09:17:00 -0700218VCMJitterBuffer::VCMJitterBuffer(Clock* clock,
philipel83f831a2016-03-12 03:30:23 -0800219 std::unique_ptr<EventWrapper> event,
220 NackSender* nack_sender,
221 KeyFrameRequestSender* keyframe_request_sender)
stefan@webrtc.org34c5da62014-04-11 14:08:35 +0000222 : clock_(clock),
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000223 running_(false),
224 crit_sect_(CriticalSectionWrapper::CreateCriticalSection()),
kwiberg0eb15ed2015-12-17 03:04:15 -0800225 frame_event_(std::move(event)),
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000226 max_number_of_frames_(kStartNumberOfFrames),
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000227 free_frames_(),
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000228 decodable_frames_(),
229 incomplete_frames_(),
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000230 last_decoded_state_(),
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000231 first_packet_since_reset_(true),
sprang22691e02016-07-13 10:57:07 -0700232 stats_callback_(nullptr),
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000233 incoming_frame_rate_(0),
234 incoming_frame_count_(0),
235 time_last_incoming_frame_count_(0),
236 incoming_bit_count_(0),
237 incoming_bit_rate_(0),
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000238 num_consecutive_old_packets_(0),
asapersson@webrtc.org96dc6852014-11-03 14:40:38 +0000239 num_packets_(0),
240 num_duplicated_packets_(0),
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000241 num_discarded_packets_(0),
asapersson@webrtc.org83b52002014-11-28 10:17:13 +0000242 time_first_packet_ms_(0),
sprang@webrtc.org70e2d112014-09-24 14:06:56 +0000243 jitter_estimate_(clock),
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000244 inter_frame_delay_(clock_->TimeInMilliseconds()),
mflodman@webrtc.org7c894b72012-11-26 12:40:15 +0000245 rtt_ms_(kDefaultRtt),
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000246 nack_mode_(kNoNack),
247 low_rtt_nack_threshold_ms_(-1),
248 high_rtt_nack_threshold_ms_(-1),
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000249 missing_sequence_numbers_(SequenceNumberLessThan()),
sprang22691e02016-07-13 10:57:07 -0700250 latest_received_sequence_number_(0),
stefan@webrtc.orgbecf9c82013-02-01 15:09:57 +0000251 max_nack_list_size_(0),
252 max_packet_age_to_nack_(0),
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000253 max_incomplete_time_ms_(0),
agalusza@google.coma7e360e2013-08-01 03:15:08 +0000254 decode_error_mode_(kNoErrors),
agalusza@google.comd818dcb2013-07-29 21:48:11 +0000255 average_packets_per_frame_(0.0f),
philipel85130292016-07-06 16:10:31 +0200256 frame_counter_(0) {
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000257 for (int i = 0; i < kStartNumberOfFrames; i++)
258 free_frames_.push_back(new VCMFrameBuffer());
niklase@google.com470e71d2011-07-07 08:21:25 +0000259}
260
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000261VCMJitterBuffer::~VCMJitterBuffer() {
262 Stop();
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000263 for (UnorderedFrameList::iterator it = free_frames_.begin();
264 it != free_frames_.end(); ++it) {
265 delete *it;
266 }
267 for (FrameList::iterator it = incomplete_frames_.begin();
268 it != incomplete_frames_.end(); ++it) {
269 delete it->second;
270 }
271 for (FrameList::iterator it = decodable_frames_.begin();
272 it != decodable_frames_.end(); ++it) {
273 delete it->second;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000274 }
275 delete crit_sect_;
niklase@google.com470e71d2011-07-07 08:21:25 +0000276}
277
asapersson@webrtc.org96dc6852014-11-03 14:40:38 +0000278void VCMJitterBuffer::UpdateHistograms() {
Ã…sa Perssona96f02b2015-04-24 08:52:11 +0200279 if (num_packets_ <= 0 || !running_) {
asapersson@webrtc.org83b52002014-11-28 10:17:13 +0000280 return;
281 }
282 int64_t elapsed_sec =
283 (clock_->TimeInMilliseconds() - time_first_packet_ms_) / 1000;
284 if (elapsed_sec < metrics::kMinRunTimeInSeconds) {
285 return;
286 }
287
asapersson58d992e2016-03-29 02:15:06 -0700288 RTC_LOGGED_HISTOGRAM_PERCENTAGE("WebRTC.Video.DiscardedPacketsInPercent",
289 num_discarded_packets_ * 100 / num_packets_);
290 RTC_LOGGED_HISTOGRAM_PERCENTAGE("WebRTC.Video.DuplicatedPacketsInPercent",
291 num_duplicated_packets_ * 100 / num_packets_);
asapersson@webrtc.org83b52002014-11-28 10:17:13 +0000292
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +0000293 int total_frames =
294 receive_statistics_.key_frames + receive_statistics_.delta_frames;
asapersson@webrtc.org83b52002014-11-28 10:17:13 +0000295 if (total_frames > 0) {
asapersson58d992e2016-03-29 02:15:06 -0700296 RTC_LOGGED_HISTOGRAM_COUNTS_100(
asapersson53805322015-12-21 01:46:20 -0800297 "WebRTC.Video.CompleteFramesReceivedPerSecond",
asapersson@webrtc.org83b52002014-11-28 10:17:13 +0000298 static_cast<int>((total_frames / elapsed_sec) + 0.5f));
asapersson58d992e2016-03-29 02:15:06 -0700299 RTC_LOGGED_HISTOGRAM_COUNTS_1000(
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +0000300 "WebRTC.Video.KeyFramesReceivedInPermille",
301 static_cast<int>(
302 (receive_statistics_.key_frames * 1000.0f / total_frames) + 0.5f));
asapersson@webrtc.org96dc6852014-11-03 14:40:38 +0000303 }
304}
305
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000306void VCMJitterBuffer::Start() {
307 CriticalSectionScoped cs(crit_sect_);
308 running_ = true;
309 incoming_frame_count_ = 0;
310 incoming_frame_rate_ = 0;
311 incoming_bit_count_ = 0;
312 incoming_bit_rate_ = 0;
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000313 time_last_incoming_frame_count_ = clock_->TimeInMilliseconds();
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +0000314 receive_statistics_ = FrameCounts();
niklase@google.com470e71d2011-07-07 08:21:25 +0000315
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000316 num_consecutive_old_packets_ = 0;
asapersson@webrtc.org96dc6852014-11-03 14:40:38 +0000317 num_packets_ = 0;
318 num_duplicated_packets_ = 0;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000319 num_discarded_packets_ = 0;
asapersson@webrtc.org83b52002014-11-28 10:17:13 +0000320 time_first_packet_ms_ = 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000321
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000322 // Start in a non-signaled state.
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000323 waiting_for_completion_.frame_size = 0;
324 waiting_for_completion_.timestamp = 0;
325 waiting_for_completion_.latest_packet_time = -1;
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000326 first_packet_since_reset_ = true;
mflodman@webrtc.org7c894b72012-11-26 12:40:15 +0000327 rtt_ms_ = kDefaultRtt;
mikhal@webrtc.org8392cd92013-04-25 21:30:50 +0000328 last_decoded_state_.Reset();
sprang22691e02016-07-13 10:57:07 -0700329
330 decodable_frames_.Reset(&free_frames_);
331 incomplete_frames_.Reset(&free_frames_);
niklase@google.com470e71d2011-07-07 08:21:25 +0000332}
333
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000334void VCMJitterBuffer::Stop() {
sprang22691e02016-07-13 10:57:07 -0700335 CriticalSectionScoped cs(crit_sect_);
asapersson@webrtc.org96dc6852014-11-03 14:40:38 +0000336 UpdateHistograms();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000337 running_ = false;
338 last_decoded_state_.Reset();
asaperssona9455ab2015-07-31 06:10:09 -0700339
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000340 // Make sure we wake up any threads waiting on these events.
stefan@webrtc.org2baf5f52013-03-13 08:46:25 +0000341 frame_event_->Set();
niklase@google.com470e71d2011-07-07 08:21:25 +0000342}
343
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000344bool VCMJitterBuffer::Running() const {
345 CriticalSectionScoped cs(crit_sect_);
346 return running_;
niklase@google.com470e71d2011-07-07 08:21:25 +0000347}
348
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000349void VCMJitterBuffer::Flush() {
350 CriticalSectionScoped cs(crit_sect_);
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000351 decodable_frames_.Reset(&free_frames_);
352 incomplete_frames_.Reset(&free_frames_);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000353 last_decoded_state_.Reset(); // TODO(mikhal): sync reset.
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000354 num_consecutive_old_packets_ = 0;
355 // Also reset the jitter and delay estimates
356 jitter_estimate_.Reset();
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000357 inter_frame_delay_.Reset(clock_->TimeInMilliseconds());
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000358 waiting_for_completion_.frame_size = 0;
359 waiting_for_completion_.timestamp = 0;
360 waiting_for_completion_.latest_packet_time = -1;
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000361 first_packet_since_reset_ = true;
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000362 missing_sequence_numbers_.clear();
niklase@google.com470e71d2011-07-07 08:21:25 +0000363}
364
niklase@google.com470e71d2011-07-07 08:21:25 +0000365// Get received key and delta frames
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +0000366FrameCounts VCMJitterBuffer::FrameStatistics() const {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000367 CriticalSectionScoped cs(crit_sect_);
sprang@webrtc.org71f055f2013-12-04 15:09:27 +0000368 return receive_statistics_;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000369}
370
asapersson@webrtc.org96dc6852014-11-03 14:40:38 +0000371int VCMJitterBuffer::num_packets() const {
372 CriticalSectionScoped cs(crit_sect_);
373 return num_packets_;
374}
375
376int VCMJitterBuffer::num_duplicated_packets() const {
377 CriticalSectionScoped cs(crit_sect_);
378 return num_duplicated_packets_;
379}
380
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000381int VCMJitterBuffer::num_discarded_packets() const {
382 CriticalSectionScoped cs(crit_sect_);
383 return num_discarded_packets_;
384}
385
386// Calculate framerate and bitrate.
387void VCMJitterBuffer::IncomingRateStatistics(unsigned int* framerate,
388 unsigned int* bitrate) {
389 assert(framerate);
390 assert(bitrate);
391 CriticalSectionScoped cs(crit_sect_);
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000392 const int64_t now = clock_->TimeInMilliseconds();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000393 int64_t diff = now - time_last_incoming_frame_count_;
394 if (diff < 1000 && incoming_frame_rate_ > 0 && incoming_bit_rate_ > 0) {
395 // Make sure we report something even though less than
396 // 1 second has passed since last update.
397 *framerate = incoming_frame_rate_;
398 *bitrate = incoming_bit_rate_;
399 } else if (incoming_frame_count_ != 0) {
400 // We have received frame(s) since last call to this function
401
402 // Prepare calculations
403 if (diff <= 0) {
404 diff = 1;
niklase@google.com470e71d2011-07-07 08:21:25 +0000405 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000406 // we add 0.5f for rounding
407 float rate = 0.5f + ((incoming_frame_count_ * 1000.0f) / diff);
408 if (rate < 1.0f) {
409 rate = 1.0f;
410 }
411
412 // Calculate frame rate
413 // Let r be rate.
414 // r(0) = 1000*framecount/delta_time.
415 // (I.e. frames per second since last calculation.)
416 // frame_rate = r(0)/2 + r(-1)/2
417 // (I.e. fr/s average this and the previous calculation.)
418 *framerate = (incoming_frame_rate_ + static_cast<unsigned int>(rate)) / 2;
419 incoming_frame_rate_ = static_cast<unsigned int>(rate);
420
421 // Calculate bit rate
422 if (incoming_bit_count_ == 0) {
423 *bitrate = 0;
424 } else {
philipel9d3ab612015-12-21 04:12:39 -0800425 *bitrate =
426 10 * ((100 * incoming_bit_count_) / static_cast<unsigned int>(diff));
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000427 }
428 incoming_bit_rate_ = *bitrate;
429
430 // Reset count
431 incoming_frame_count_ = 0;
432 incoming_bit_count_ = 0;
433 time_last_incoming_frame_count_ = now;
434
435 } else {
436 // No frames since last call
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000437 time_last_incoming_frame_count_ = clock_->TimeInMilliseconds();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000438 *framerate = 0;
stefan@webrtc.org49806792013-04-30 22:05:07 +0000439 *bitrate = 0;
440 incoming_frame_rate_ = 0;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000441 incoming_bit_rate_ = 0;
442 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000443}
444
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000445// Returns immediately or a |max_wait_time_ms| ms event hang waiting for a
446// complete frame, |max_wait_time_ms| decided by caller.
isheriff6b4b5f32016-06-08 00:24:21 -0700447VCMEncodedFrame* VCMJitterBuffer::NextCompleteFrame(uint32_t max_wait_time_ms) {
mikhal@webrtc.orgc1f243f2013-04-22 22:24:38 +0000448 crit_sect_->Enter();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000449 if (!running_) {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000450 crit_sect_->Leave();
isheriff6b4b5f32016-06-08 00:24:21 -0700451 return nullptr;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000452 }
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000453 CleanUpOldOrEmptyFrames();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000454
agalusza@google.comd177c102013-08-08 01:12:33 +0000455 if (decodable_frames_.empty() ||
456 decodable_frames_.Front()->GetState() != kStateComplete) {
philipel9d3ab612015-12-21 04:12:39 -0800457 const int64_t end_wait_time_ms =
458 clock_->TimeInMilliseconds() + max_wait_time_ms;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000459 int64_t wait_time_ms = max_wait_time_ms;
460 while (wait_time_ms > 0) {
461 crit_sect_->Leave();
462 const EventTypeWrapper ret =
philipel9d3ab612015-12-21 04:12:39 -0800463 frame_event_->Wait(static_cast<uint32_t>(wait_time_ms));
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000464 crit_sect_->Enter();
465 if (ret == kEventSignaled) {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000466 // Are we shutting down the jitter buffer?
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000467 if (!running_) {
468 crit_sect_->Leave();
isheriff6b4b5f32016-06-08 00:24:21 -0700469 return nullptr;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000470 }
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000471 // Finding oldest frame ready for decoder.
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000472 CleanUpOldOrEmptyFrames();
agalusza@google.comd177c102013-08-08 01:12:33 +0000473 if (decodable_frames_.empty() ||
474 decodable_frames_.Front()->GetState() != kStateComplete) {
stefan@webrtc.orga678a3b2013-01-21 07:42:11 +0000475 wait_time_ms = end_wait_time_ms - clock_->TimeInMilliseconds();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000476 } else {
477 break;
478 }
479 } else {
mikhal@webrtc.org9c7685f2013-05-07 16:07:52 +0000480 break;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000481 }
482 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000483 }
agalusza@google.comd177c102013-08-08 01:12:33 +0000484 if (decodable_frames_.empty() ||
485 decodable_frames_.Front()->GetState() != kStateComplete) {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000486 crit_sect_->Leave();
isheriff6b4b5f32016-06-08 00:24:21 -0700487 return nullptr;
mikhal@webrtc.orgdc3cd212013-04-25 20:27:04 +0000488 }
isheriff6b4b5f32016-06-08 00:24:21 -0700489 VCMEncodedFrame* encoded_frame = decodable_frames_.Front();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000490 crit_sect_->Leave();
isheriff6b4b5f32016-06-08 00:24:21 -0700491 return encoded_frame;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000492}
493
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000494bool VCMJitterBuffer::NextMaybeIncompleteTimestamp(uint32_t* timestamp) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000495 CriticalSectionScoped cs(crit_sect_);
496 if (!running_) {
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000497 return false;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000498 }
agalusza@google.coma7e360e2013-08-01 03:15:08 +0000499 if (decode_error_mode_ == kNoErrors) {
mikhal@webrtc.orgdc3cd212013-04-25 20:27:04 +0000500 // No point to continue, as we are not decoding with errors.
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000501 return false;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000502 }
503
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000504 CleanUpOldOrEmptyFrames();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000505
jbauchdb81ffd2015-11-23 03:59:02 -0800506 VCMFrameBuffer* oldest_frame;
agalusza@google.comd177c102013-08-08 01:12:33 +0000507 if (decodable_frames_.empty()) {
jbauchdb81ffd2015-11-23 03:59:02 -0800508 if (nack_mode_ != kNoNack || incomplete_frames_.size() <= 1) {
509 return false;
510 }
511 oldest_frame = incomplete_frames_.Front();
512 // Frame will only be removed from buffer if it is complete (or decodable).
513 if (oldest_frame->GetState() < kStateComplete) {
514 return false;
515 }
516 } else {
517 oldest_frame = decodable_frames_.Front();
518 // If we have exactly one frame in the buffer, release it only if it is
519 // complete. We know decodable_frames_ is not empty due to the previous
520 // check.
philipel9d3ab612015-12-21 04:12:39 -0800521 if (decodable_frames_.size() == 1 && incomplete_frames_.empty() &&
522 oldest_frame->GetState() != kStateComplete) {
jbauchdb81ffd2015-11-23 03:59:02 -0800523 return false;
524 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000525 }
mikhal@webrtc.orgd3cd5652013-05-03 17:54:18 +0000526
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000527 *timestamp = oldest_frame->TimeStamp();
528 return true;
529}
530
531VCMEncodedFrame* VCMJitterBuffer::ExtractAndSetDecode(uint32_t timestamp) {
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000532 CriticalSectionScoped cs(crit_sect_);
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000533 if (!running_) {
534 return NULL;
535 }
536 // Extract the frame with the desired timestamp.
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000537 VCMFrameBuffer* frame = decodable_frames_.PopFrame(timestamp);
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000538 bool continuous = true;
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000539 if (!frame) {
540 frame = incomplete_frames_.PopFrame(timestamp);
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000541 if (frame)
542 continuous = last_decoded_state_.ContinuousFrame(frame);
543 else
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000544 return NULL;
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000545 }
hclam@chromium.org1a7b9b92013-07-08 21:31:18 +0000546 TRACE_EVENT_ASYNC_STEP0("webrtc", "Video", timestamp, "Extract");
mikhal@webrtc.orgcb20a5b2013-05-15 17:10:44 +0000547 // Frame pulled out from jitter buffer, update the jitter estimate.
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000548 const bool retransmitted = (frame->GetNackCount() > 0);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000549 if (retransmitted) {
philipelae284082016-05-09 12:14:29 +0200550 if (WaitForRetransmissions())
551 jitter_estimate_.FrameNacked();
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000552 } else if (frame->Length() > 0) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000553 // Ignore retransmitted and empty frames.
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000554 if (waiting_for_completion_.latest_packet_time >= 0) {
555 UpdateJitterEstimate(waiting_for_completion_, true);
556 }
mikhal@webrtc.orgcb20a5b2013-05-15 17:10:44 +0000557 if (frame->GetState() == kStateComplete) {
558 UpdateJitterEstimate(*frame, false);
559 } else {
560 // Wait for this one to get complete.
561 waiting_for_completion_.frame_size = frame->Length();
philipel9d3ab612015-12-21 04:12:39 -0800562 waiting_for_completion_.latest_packet_time = frame->LatestPacketTimeMs();
mikhal@webrtc.orgcb20a5b2013-05-15 17:10:44 +0000563 waiting_for_completion_.timestamp = frame->TimeStamp();
564 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000565 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000566
567 // The state must be changed to decoding before cleaning up zero sized
568 // frames to avoid empty frames being cleaned up and then given to the
mikhal@webrtc.orgcb20a5b2013-05-15 17:10:44 +0000569 // decoder. Propagates the missing_frame bit.
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000570 frame->PrepareForDecode(continuous);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000571
mikhal@webrtc.orgcb20a5b2013-05-15 17:10:44 +0000572 // We have a frame - update the last decoded state and nack list.
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000573 last_decoded_state_.SetState(frame);
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000574 DropPacketsFromNackList(last_decoded_state_.sequence_num());
agalusza@google.comd818dcb2013-07-29 21:48:11 +0000575
576 if ((*frame).IsSessionComplete())
577 UpdateAveragePacketsPerFrame(frame->NumPackets());
578
mikhal@webrtc.org759b0412013-05-07 16:36:00 +0000579 return frame;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000580}
581
582// Release frame when done with decoding. Should never be used to release
583// frames from within the jitter buffer.
584void VCMJitterBuffer::ReleaseFrame(VCMEncodedFrame* frame) {
sprang22691e02016-07-13 10:57:07 -0700585 RTC_CHECK(frame != nullptr);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000586 CriticalSectionScoped cs(crit_sect_);
587 VCMFrameBuffer* frame_buffer = static_cast<VCMFrameBuffer*>(frame);
sprang22691e02016-07-13 10:57:07 -0700588 RecycleFrameBuffer(frame_buffer);
stefan@webrtc.org791eec72011-10-11 07:53:43 +0000589}
590
niklase@google.com470e71d2011-07-07 08:21:25 +0000591// Gets frame to use for this timestamp. If no match, get empty frame.
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000592VCMFrameBufferEnum VCMJitterBuffer::GetFrame(const VCMPacket& packet,
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000593 VCMFrameBuffer** frame,
594 FrameList** frame_list) {
595 *frame = incomplete_frames_.PopFrame(packet.timestamp);
596 if (*frame != NULL) {
597 *frame_list = &incomplete_frames_;
598 return kNoError;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000599 }
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000600 *frame = decodable_frames_.PopFrame(packet.timestamp);
601 if (*frame != NULL) {
602 *frame_list = &decodable_frames_;
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000603 return kNoError;
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000604 }
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000605
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000606 *frame_list = NULL;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000607 // No match, return empty frame.
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000608 *frame = GetEmptyFrame();
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000609 if (*frame == NULL) {
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000610 // No free frame! Try to reclaim some...
stefan@webrtc.org34c5da62014-04-11 14:08:35 +0000611 LOG(LS_WARNING) << "Unable to get empty frame; Recycling.";
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000612 bool found_key_frame = RecycleFramesUntilKeyFrame();
613 *frame = GetEmptyFrame();
sprang22691e02016-07-13 10:57:07 -0700614 RTC_CHECK(*frame);
stefan@webrtc.org34c5da62014-04-11 14:08:35 +0000615 if (!found_key_frame) {
sprang22691e02016-07-13 10:57:07 -0700616 RecycleFrameBuffer(*frame);
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000617 return kFlushIndicator;
stefan@webrtc.org34c5da62014-04-11 14:08:35 +0000618 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000619 }
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000620 (*frame)->Reset();
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000621 return kNoError;
niklase@google.com470e71d2011-07-07 08:21:25 +0000622}
623
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000624int64_t VCMJitterBuffer::LastPacketTime(const VCMEncodedFrame* frame,
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000625 bool* retransmitted) const {
626 assert(retransmitted);
627 CriticalSectionScoped cs(crit_sect_);
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000628 const VCMFrameBuffer* frame_buffer =
629 static_cast<const VCMFrameBuffer*>(frame);
630 *retransmitted = (frame_buffer->GetNackCount() > 0);
631 return frame_buffer->LatestPacketTimeMs();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000632}
633
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000634VCMFrameBufferEnum VCMJitterBuffer::InsertPacket(const VCMPacket& packet,
635 bool* retransmitted) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000636 CriticalSectionScoped cs(crit_sect_);
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +0000637
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000638 ++num_packets_;
asapersson@webrtc.org83b52002014-11-28 10:17:13 +0000639 if (num_packets_ == 1) {
640 time_first_packet_ms_ = clock_->TimeInMilliseconds();
641 }
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000642 // Does this packet belong to an old frame?
643 if (last_decoded_state_.IsOldPacket(&packet)) {
644 // Account only for media packets.
645 if (packet.sizeBytes > 0) {
646 num_discarded_packets_++;
647 num_consecutive_old_packets_++;
pbos@webrtc.org55707692014-12-19 15:45:03 +0000648 if (stats_callback_ != NULL)
649 stats_callback_->OnDiscardedPacketsUpdated(num_discarded_packets_);
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000650 }
651 // Update last decoded sequence number if the packet arrived late and
652 // belongs to a frame with a timestamp equal to the last decoded
653 // timestamp.
654 last_decoded_state_.UpdateOldPacket(&packet);
655 DropPacketsFromNackList(last_decoded_state_.sequence_num());
656
Noah Richardse4cb4e92015-05-22 14:03:00 -0700657 // Also see if this old packet made more incomplete frames continuous.
658 FindAndInsertContinuousFramesWithState(last_decoded_state_);
659
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000660 if (num_consecutive_old_packets_ > kMaxConsecutiveOldPackets) {
661 LOG(LS_WARNING)
662 << num_consecutive_old_packets_
663 << " consecutive old packets received. Flushing the jitter buffer.";
664 Flush();
665 return kFlushIndicator;
666 }
667 return kOldPacket;
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000668 }
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000669
asapersson9a4cd872015-10-23 00:27:14 -0700670 num_consecutive_old_packets_ = 0;
671
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000672 VCMFrameBuffer* frame;
673 FrameList* frame_list;
674 const VCMFrameBufferEnum error = GetFrame(packet, &frame, &frame_list);
675 if (error != kNoError)
676 return error;
677
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000678 int64_t now_ms = clock_->TimeInMilliseconds();
679 // We are keeping track of the first and latest seq numbers, and
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000680 // the number of wraps to be able to calculate how many packets we expect.
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000681 if (first_packet_since_reset_) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000682 // Now it's time to start estimating jitter
683 // reset the delay estimate.
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000684 inter_frame_delay_.Reset(now_ms);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000685 }
686
687 // Empty packets may bias the jitter estimate (lacking size component),
688 // therefore don't let empty packet trigger the following updates:
pbos22993e12015-10-19 02:39:06 -0700689 if (packet.frameType != kEmptyFrame) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000690 if (waiting_for_completion_.timestamp == packet.timestamp) {
691 // This can get bad if we have a lot of duplicate packets,
692 // we will then count some packet multiple times.
693 waiting_for_completion_.frame_size += packet.sizeBytes;
694 waiting_for_completion_.latest_packet_time = now_ms;
695 } else if (waiting_for_completion_.latest_packet_time >= 0 &&
696 waiting_for_completion_.latest_packet_time + 2000 <= now_ms) {
697 // A packet should never be more than two seconds late
698 UpdateJitterEstimate(waiting_for_completion_, true);
699 waiting_for_completion_.latest_packet_time = -1;
700 waiting_for_completion_.frame_size = 0;
701 waiting_for_completion_.timestamp = 0;
702 }
703 }
704
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000705 VCMFrameBufferStateEnum previous_state = frame->GetState();
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000706 // Insert packet.
agalusza@google.comd818dcb2013-07-29 21:48:11 +0000707 FrameData frame_data;
708 frame_data.rtt_ms = rtt_ms_;
709 frame_data.rolling_average_packets_per_frame = average_packets_per_frame_;
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000710 VCMFrameBufferEnum buffer_state =
711 frame->InsertPacket(packet, now_ms, decode_error_mode_, frame_data);
712
713 if (previous_state != kStateComplete) {
philipel9d3ab612015-12-21 04:12:39 -0800714 TRACE_EVENT_ASYNC_BEGIN1("webrtc", "Video", frame->TimeStamp(), "timestamp",
715 frame->TimeStamp());
hclam@chromium.org1a7b9b92013-07-08 21:31:18 +0000716 }
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000717
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000718 if (buffer_state > 0) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000719 incoming_bit_count_ += packet.sizeBytes << 3;
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000720 if (first_packet_since_reset_) {
721 latest_received_sequence_number_ = packet.seqNum;
722 first_packet_since_reset_ = false;
723 } else {
724 if (IsPacketRetransmitted(packet)) {
725 frame->IncrementNackCount();
726 }
pbos@webrtc.orgebb467f2014-05-19 15:28:02 +0000727 if (!UpdateNackList(packet.seqNum) &&
728 packet.frameType != kVideoFrameKey) {
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000729 buffer_state = kFlushIndicator;
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000730 }
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000731
philipel9d3ab612015-12-21 04:12:39 -0800732 latest_received_sequence_number_ =
733 LatestSequenceNumber(latest_received_sequence_number_, packet.seqNum);
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000734 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000735 }
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000736
737 // Is the frame already in the decodable list?
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000738 bool continuous = IsContinuous(*frame);
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000739 switch (buffer_state) {
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000740 case kGeneralError:
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000741 case kTimeStampError:
742 case kSizeError: {
sprang22691e02016-07-13 10:57:07 -0700743 RecycleFrameBuffer(frame);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000744 break;
745 }
746 case kCompleteSession: {
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000747 if (previous_state != kStateDecodable &&
748 previous_state != kStateComplete) {
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000749 CountFrame(*frame);
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000750 if (continuous) {
751 // Signal that we have a complete session.
752 frame_event_->Set();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000753 }
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000754 }
kjellander@webrtc.org7d2b6a92015-01-28 18:37:58 +0000755 FALLTHROUGH();
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000756 }
757 // Note: There is no break here - continuing to kDecodableSession.
758 case kDecodableSession: {
759 *retransmitted = (frame->GetNackCount() > 0);
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000760 if (continuous) {
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000761 decodable_frames_.InsertFrame(frame);
762 FindAndInsertContinuousFrames(*frame);
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000763 } else {
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000764 incomplete_frames_.InsertFrame(frame);
jbauchdb81ffd2015-11-23 03:59:02 -0800765 // If NACKs are enabled, keyframes are triggered by |GetNackList|.
philipel9d3ab612015-12-21 04:12:39 -0800766 if (nack_mode_ == kNoNack &&
767 NonContinuousOrIncompleteDuration() >
768 90 * kMaxDiscontinuousFramesTime) {
jbauchdb81ffd2015-11-23 03:59:02 -0800769 return kFlushIndicator;
770 }
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000771 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000772 break;
773 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000774 case kIncomplete: {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000775 if (frame->GetState() == kStateEmpty &&
776 last_decoded_state_.UpdateEmptyFrame(frame)) {
sprang22691e02016-07-13 10:57:07 -0700777 RecycleFrameBuffer(frame);
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000778 return kNoError;
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000779 } else {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000780 incomplete_frames_.InsertFrame(frame);
jbauchdb81ffd2015-11-23 03:59:02 -0800781 // If NACKs are enabled, keyframes are triggered by |GetNackList|.
philipel9d3ab612015-12-21 04:12:39 -0800782 if (nack_mode_ == kNoNack &&
783 NonContinuousOrIncompleteDuration() >
784 90 * kMaxDiscontinuousFramesTime) {
jbauchdb81ffd2015-11-23 03:59:02 -0800785 return kFlushIndicator;
786 }
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000787 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000788 break;
789 }
790 case kNoError:
mikhal@webrtc.orgf31a47a2013-08-26 17:10:11 +0000791 case kOutOfBoundsPacket:
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000792 case kDuplicatePacket: {
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000793 // Put back the frame where it came from.
794 if (frame_list != NULL) {
795 frame_list->InsertFrame(frame);
796 } else {
sprang22691e02016-07-13 10:57:07 -0700797 RecycleFrameBuffer(frame);
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000798 }
asapersson@webrtc.org96dc6852014-11-03 14:40:38 +0000799 ++num_duplicated_packets_;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000800 break;
801 }
stefan@webrtc.org3417eb42013-05-21 15:25:53 +0000802 case kFlushIndicator:
sprang22691e02016-07-13 10:57:07 -0700803 RecycleFrameBuffer(frame);
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +0000804 return kFlushIndicator;
philipel9d3ab612015-12-21 04:12:39 -0800805 default:
806 assert(false);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000807 }
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000808 return buffer_state;
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000809}
810
philipel9d3ab612015-12-21 04:12:39 -0800811bool VCMJitterBuffer::IsContinuousInState(
812 const VCMFrameBuffer& frame,
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000813 const VCMDecodingState& decoding_state) const {
agalusza@google.coma7e360e2013-08-01 03:15:08 +0000814 // Is this frame (complete or decodable) and continuous?
815 // kStateDecodable will never be set when decode_error_mode_ is false
816 // as SessionInfo determines this state based on the error mode (and frame
817 // completeness).
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000818 return (frame.GetState() == kStateComplete ||
819 frame.GetState() == kStateDecodable) &&
820 decoding_state.ContinuousFrame(&frame);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000821}
822
823bool VCMJitterBuffer::IsContinuous(const VCMFrameBuffer& frame) const {
824 if (IsContinuousInState(frame, last_decoded_state_)) {
825 return true;
826 }
827 VCMDecodingState decoding_state;
828 decoding_state.CopyFrom(last_decoded_state_);
829 for (FrameList::const_iterator it = decodable_frames_.begin();
philipel9d3ab612015-12-21 04:12:39 -0800830 it != decodable_frames_.end(); ++it) {
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +0000831 VCMFrameBuffer* decodable_frame = it->second;
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000832 if (IsNewerTimestamp(decodable_frame->TimeStamp(), frame.TimeStamp())) {
833 break;
834 }
835 decoding_state.SetState(decodable_frame);
836 if (IsContinuousInState(frame, decoding_state)) {
837 return true;
838 }
839 }
840 return false;
841}
842
843void VCMJitterBuffer::FindAndInsertContinuousFrames(
844 const VCMFrameBuffer& new_frame) {
845 VCMDecodingState decoding_state;
846 decoding_state.CopyFrom(last_decoded_state_);
847 decoding_state.SetState(&new_frame);
Noah Richardse4cb4e92015-05-22 14:03:00 -0700848 FindAndInsertContinuousFramesWithState(decoding_state);
849}
850
851void VCMJitterBuffer::FindAndInsertContinuousFramesWithState(
852 const VCMDecodingState& original_decoded_state) {
853 // Copy original_decoded_state so we can move the state forward with each
854 // decodable frame we find.
855 VCMDecodingState decoding_state;
856 decoding_state.CopyFrom(original_decoded_state);
857
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000858 // When temporal layers are available, we search for a complete or decodable
859 // frame until we hit one of the following:
860 // 1. Continuous base or sync layer.
861 // 2. The end of the list was reached.
862 for (FrameList::iterator it = incomplete_frames_.begin();
philipel9d3ab612015-12-21 04:12:39 -0800863 it != incomplete_frames_.end();) {
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +0000864 VCMFrameBuffer* frame = it->second;
Noah Richardse4cb4e92015-05-22 14:03:00 -0700865 if (IsNewerTimestamp(original_decoded_state.time_stamp(),
866 frame->TimeStamp())) {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000867 ++it;
868 continue;
869 }
870 if (IsContinuousInState(*frame, decoding_state)) {
871 decodable_frames_.InsertFrame(frame);
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +0000872 incomplete_frames_.erase(it++);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000873 decoding_state.SetState(frame);
874 } else if (frame->TemporalId() <= 0) {
875 break;
876 } else {
877 ++it;
878 }
879 }
880}
881
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000882uint32_t VCMJitterBuffer::EstimatedJitterMs() {
883 CriticalSectionScoped cs(crit_sect_);
mikhal@webrtc.org119c67d2013-01-31 17:18:02 +0000884 // Compute RTT multiplier for estimation.
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000885 // low_rtt_nackThresholdMs_ == -1 means no FEC.
886 double rtt_mult = 1.0f;
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000887 if (low_rtt_nack_threshold_ms_ >= 0 &&
pkasting@chromium.org16825b12015-01-12 21:51:21 +0000888 rtt_ms_ >= low_rtt_nack_threshold_ms_) {
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000889 // For RTTs above low_rtt_nack_threshold_ms_ we don't apply extra delay
890 // when waiting for retransmissions.
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000891 rtt_mult = 0.0f;
892 }
mikhal@webrtc.org119c67d2013-01-31 17:18:02 +0000893 return jitter_estimate_.GetJitterEstimate(rtt_mult);
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000894}
895
pkasting@chromium.org16825b12015-01-12 21:51:21 +0000896void VCMJitterBuffer::UpdateRtt(int64_t rtt_ms) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000897 CriticalSectionScoped cs(crit_sect_);
898 rtt_ms_ = rtt_ms;
899 jitter_estimate_.UpdateRtt(rtt_ms);
philipelae284082016-05-09 12:14:29 +0200900 if (!WaitForRetransmissions())
901 jitter_estimate_.ResetNackCount();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000902}
903
904void VCMJitterBuffer::SetNackMode(VCMNackMode mode,
pkasting@chromium.org16825b12015-01-12 21:51:21 +0000905 int64_t low_rtt_nack_threshold_ms,
906 int64_t high_rtt_nack_threshold_ms) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000907 CriticalSectionScoped cs(crit_sect_);
908 nack_mode_ = mode;
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000909 if (mode == kNoNack) {
910 missing_sequence_numbers_.clear();
911 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000912 assert(low_rtt_nack_threshold_ms >= -1 && high_rtt_nack_threshold_ms >= -1);
913 assert(high_rtt_nack_threshold_ms == -1 ||
914 low_rtt_nack_threshold_ms <= high_rtt_nack_threshold_ms);
915 assert(low_rtt_nack_threshold_ms > -1 || high_rtt_nack_threshold_ms == -1);
916 low_rtt_nack_threshold_ms_ = low_rtt_nack_threshold_ms;
917 high_rtt_nack_threshold_ms_ = high_rtt_nack_threshold_ms;
mflodman@webrtc.org7c894b72012-11-26 12:40:15 +0000918 // Don't set a high start rtt if high_rtt_nack_threshold_ms_ is used, to not
Wan-Teh Changf2912872015-06-05 13:16:45 -0700919 // disable NACK in |kNack| mode.
mflodman@webrtc.org7c894b72012-11-26 12:40:15 +0000920 if (rtt_ms_ == kDefaultRtt && high_rtt_nack_threshold_ms_ != -1) {
921 rtt_ms_ = 0;
922 }
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000923 if (!WaitForRetransmissions()) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000924 jitter_estimate_.ResetNackCount();
925 }
926}
927
stefan@webrtc.orgbecf9c82013-02-01 15:09:57 +0000928void VCMJitterBuffer::SetNackSettings(size_t max_nack_list_size,
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000929 int max_packet_age_to_nack,
930 int max_incomplete_time_ms) {
stefan@webrtc.orgbecf9c82013-02-01 15:09:57 +0000931 CriticalSectionScoped cs(crit_sect_);
932 assert(max_packet_age_to_nack >= 0);
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000933 assert(max_incomplete_time_ms_ >= 0);
stefan@webrtc.orgbecf9c82013-02-01 15:09:57 +0000934 max_nack_list_size_ = max_nack_list_size;
935 max_packet_age_to_nack_ = max_packet_age_to_nack;
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000936 max_incomplete_time_ms_ = max_incomplete_time_ms;
stefan@webrtc.orgbecf9c82013-02-01 15:09:57 +0000937}
938
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000939VCMNackMode VCMJitterBuffer::nack_mode() const {
940 CriticalSectionScoped cs(crit_sect_);
941 return nack_mode_;
942}
943
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000944int VCMJitterBuffer::NonContinuousOrIncompleteDuration() {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000945 if (incomplete_frames_.empty()) {
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000946 return 0;
947 }
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +0000948 uint32_t start_timestamp = incomplete_frames_.Front()->TimeStamp();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000949 if (!decodable_frames_.empty()) {
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +0000950 start_timestamp = decodable_frames_.Back()->TimeStamp();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000951 }
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +0000952 return incomplete_frames_.Back()->TimeStamp() - start_timestamp;
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000953}
954
955uint16_t VCMJitterBuffer::EstimatedLowSequenceNumber(
956 const VCMFrameBuffer& frame) const {
957 assert(frame.GetLowSeqNum() >= 0);
958 if (frame.HaveFirstPacket())
959 return frame.GetLowSeqNum();
hclam@chromium.orgfe307e12013-05-16 21:19:59 +0000960
961 // This estimate is not accurate if more than one packet with lower sequence
962 // number is lost.
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000963 return frame.GetLowSeqNum() - 1;
964}
965
Wan-Teh Changb1825a42015-06-03 15:03:35 -0700966std::vector<uint16_t> VCMJitterBuffer::GetNackList(bool* request_key_frame) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000967 CriticalSectionScoped cs(crit_sect_);
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000968 *request_key_frame = false;
969 if (nack_mode_ == kNoNack) {
Wan-Teh Changb1825a42015-06-03 15:03:35 -0700970 return std::vector<uint16_t>();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000971 }
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000972 if (last_decoded_state_.in_initial_state()) {
pbos@webrtc.org4f16c872014-11-24 09:06:48 +0000973 VCMFrameBuffer* next_frame = NextFrame();
agalusza@google.comd177c102013-08-08 01:12:33 +0000974 const bool first_frame_is_key = next_frame &&
philipel9d3ab612015-12-21 04:12:39 -0800975 next_frame->FrameType() == kVideoFrameKey &&
976 next_frame->HaveFirstPacket();
stefan@webrtc.org885cd132013-04-16 09:38:26 +0000977 if (!first_frame_is_key) {
philipel9d3ab612015-12-21 04:12:39 -0800978 bool have_non_empty_frame =
979 decodable_frames_.end() != find_if(decodable_frames_.begin(),
980 decodable_frames_.end(),
981 HasNonEmptyState);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000982 if (!have_non_empty_frame) {
philipel9d3ab612015-12-21 04:12:39 -0800983 have_non_empty_frame =
984 incomplete_frames_.end() != find_if(incomplete_frames_.begin(),
985 incomplete_frames_.end(),
986 HasNonEmptyState);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +0000987 }
stefan@webrtc.org885cd132013-04-16 09:38:26 +0000988 bool found_key_frame = RecycleFramesUntilKeyFrame();
989 if (!found_key_frame) {
990 *request_key_frame = have_non_empty_frame;
Wan-Teh Changb1825a42015-06-03 15:03:35 -0700991 return std::vector<uint16_t>();
stefan@webrtc.org885cd132013-04-16 09:38:26 +0000992 }
993 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000994 }
stefan@webrtc.orga64300a2013-03-04 15:24:40 +0000995 if (TooLargeNackList()) {
996 *request_key_frame = !HandleTooLargeNackList();
stefan@webrtc.org912981f2012-10-12 07:04:52 +0000997 }
stefan@webrtc.orgef144882013-05-07 19:16:33 +0000998 if (max_incomplete_time_ms_ > 0) {
999 int non_continuous_incomplete_duration =
1000 NonContinuousOrIncompleteDuration();
1001 if (non_continuous_incomplete_duration > 90 * max_incomplete_time_ms_) {
stefan@webrtc.org34c5da62014-04-11 14:08:35 +00001002 LOG_F(LS_WARNING) << "Too long non-decodable duration: "
1003 << non_continuous_incomplete_duration << " > "
1004 << 90 * max_incomplete_time_ms_;
philipel9d3ab612015-12-21 04:12:39 -08001005 FrameList::reverse_iterator rit = find_if(
1006 incomplete_frames_.rbegin(), incomplete_frames_.rend(), IsKeyFrame);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001007 if (rit == incomplete_frames_.rend()) {
stefan@webrtc.orgef144882013-05-07 19:16:33 +00001008 // Request a key frame if we don't have one already.
1009 *request_key_frame = true;
Wan-Teh Changb1825a42015-06-03 15:03:35 -07001010 return std::vector<uint16_t>();
stefan@webrtc.orgef144882013-05-07 19:16:33 +00001011 } else {
1012 // Skip to the last key frame. If it's incomplete we will start
1013 // NACKing it.
hclam@chromium.orgfe307e12013-05-16 21:19:59 +00001014 // Note that the estimated low sequence number is correct for VP8
1015 // streams because only the first packet of a key frame is marked.
stefan@webrtc.orgef144882013-05-07 19:16:33 +00001016 last_decoded_state_.Reset();
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +00001017 DropPacketsFromNackList(EstimatedLowSequenceNumber(*rit->second));
stefan@webrtc.orgef144882013-05-07 19:16:33 +00001018 }
1019 }
1020 }
Wan-Teh Changb1825a42015-06-03 15:03:35 -07001021 std::vector<uint16_t> nack_list(missing_sequence_numbers_.begin(),
1022 missing_sequence_numbers_.end());
1023 return nack_list;
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001024}
1025
mikhal@webrtc.orgdbf6a812013-08-21 20:40:47 +00001026void VCMJitterBuffer::SetDecodeErrorMode(VCMDecodeErrorMode error_mode) {
1027 CriticalSectionScoped cs(crit_sect_);
mikhal@webrtc.org3c5a9242013-09-03 20:45:36 +00001028 decode_error_mode_ = error_mode;
agalusza@google.comd177c102013-08-08 01:12:33 +00001029}
1030
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001031VCMFrameBuffer* VCMJitterBuffer::NextFrame() const {
1032 if (!decodable_frames_.empty())
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +00001033 return decodable_frames_.Front();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001034 if (!incomplete_frames_.empty())
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +00001035 return incomplete_frames_.Front();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001036 return NULL;
1037}
1038
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001039bool VCMJitterBuffer::UpdateNackList(uint16_t sequence_number) {
1040 if (nack_mode_ == kNoNack) {
1041 return true;
1042 }
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001043 // Make sure we don't add packets which are already too old to be decoded.
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001044 if (!last_decoded_state_.in_initial_state()) {
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001045 latest_received_sequence_number_ = LatestSequenceNumber(
philipel9d3ab612015-12-21 04:12:39 -08001046 latest_received_sequence_number_, last_decoded_state_.sequence_num());
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001047 }
stefan@webrtc.org7bc465b2013-04-11 17:48:02 +00001048 if (IsNewerSequenceNumber(sequence_number,
1049 latest_received_sequence_number_)) {
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001050 // Push any missing sequence numbers to the NACK list.
1051 for (uint16_t i = latest_received_sequence_number_ + 1;
stefan@webrtc.orga5dee332013-05-07 11:11:17 +00001052 IsNewerSequenceNumber(sequence_number, i); ++i) {
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001053 missing_sequence_numbers_.insert(missing_sequence_numbers_.end(), i);
sprang@webrtc.org0200f702015-02-16 12:06:00 +00001054 TRACE_EVENT_INSTANT1(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"), "AddNack",
1055 "seqnum", i);
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001056 }
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001057 if (TooLargeNackList() && !HandleTooLargeNackList()) {
stefan@webrtc.org34c5da62014-04-11 14:08:35 +00001058 LOG(LS_WARNING) << "Requesting key frame due to too large NACK list.";
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001059 return false;
1060 }
1061 if (MissingTooOldPacket(sequence_number) &&
1062 !HandleTooOldPackets(sequence_number)) {
stefan@webrtc.org34c5da62014-04-11 14:08:35 +00001063 LOG(LS_WARNING) << "Requesting key frame due to missing too old packets";
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001064 return false;
1065 }
1066 } else {
1067 missing_sequence_numbers_.erase(sequence_number);
sprang@webrtc.org0200f702015-02-16 12:06:00 +00001068 TRACE_EVENT_INSTANT1(TRACE_DISABLED_BY_DEFAULT("webrtc_rtp"), "RemoveNack",
1069 "seqnum", sequence_number);
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001070 }
1071 return true;
1072}
1073
1074bool VCMJitterBuffer::TooLargeNackList() const {
1075 return missing_sequence_numbers_.size() > max_nack_list_size_;
1076}
1077
1078bool VCMJitterBuffer::HandleTooLargeNackList() {
1079 // Recycle frames until the NACK list is small enough. It is likely cheaper to
1080 // request a key frame than to retransmit this many missing packets.
stefan@webrtc.org34c5da62014-04-11 14:08:35 +00001081 LOG_F(LS_WARNING) << "NACK list has grown too large: "
1082 << missing_sequence_numbers_.size() << " > "
1083 << max_nack_list_size_;
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001084 bool key_frame_found = false;
stefan@webrtc.org4d2f5de2013-04-09 18:24:41 +00001085 while (TooLargeNackList()) {
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001086 key_frame_found = RecycleFramesUntilKeyFrame();
1087 }
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001088 return key_frame_found;
1089}
1090
1091bool VCMJitterBuffer::MissingTooOldPacket(
1092 uint16_t latest_sequence_number) const {
1093 if (missing_sequence_numbers_.empty()) {
1094 return false;
1095 }
philipel9d3ab612015-12-21 04:12:39 -08001096 const uint16_t age_of_oldest_missing_packet =
1097 latest_sequence_number - *missing_sequence_numbers_.begin();
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001098 // Recycle frames if the NACK list contains too old sequence numbers as
1099 // the packets may have already been dropped by the sender.
1100 return age_of_oldest_missing_packet > max_packet_age_to_nack_;
1101}
1102
1103bool VCMJitterBuffer::HandleTooOldPackets(uint16_t latest_sequence_number) {
1104 bool key_frame_found = false;
philipel9d3ab612015-12-21 04:12:39 -08001105 const uint16_t age_of_oldest_missing_packet =
1106 latest_sequence_number - *missing_sequence_numbers_.begin();
stefan@webrtc.org34c5da62014-04-11 14:08:35 +00001107 LOG_F(LS_WARNING) << "NACK list contains too old sequence numbers: "
1108 << age_of_oldest_missing_packet << " > "
1109 << max_packet_age_to_nack_;
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001110 while (MissingTooOldPacket(latest_sequence_number)) {
1111 key_frame_found = RecycleFramesUntilKeyFrame();
1112 }
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001113 return key_frame_found;
1114}
1115
1116void VCMJitterBuffer::DropPacketsFromNackList(
1117 uint16_t last_decoded_sequence_number) {
1118 // Erase all sequence numbers from the NACK list which we won't need any
1119 // longer.
philipel9d3ab612015-12-21 04:12:39 -08001120 missing_sequence_numbers_.erase(
1121 missing_sequence_numbers_.begin(),
1122 missing_sequence_numbers_.upper_bound(last_decoded_sequence_number));
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001123}
1124
pbos@webrtc.org55707692014-12-19 15:45:03 +00001125void VCMJitterBuffer::RegisterStatsCallback(
1126 VCMReceiveStatisticsCallback* callback) {
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +00001127 CriticalSectionScoped cs(crit_sect_);
pbos@webrtc.org55707692014-12-19 15:45:03 +00001128 stats_callback_ = callback;
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +00001129}
1130
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001131VCMFrameBuffer* VCMJitterBuffer::GetEmptyFrame() {
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001132 if (free_frames_.empty()) {
1133 if (!TryToIncreaseJitterBufferSize()) {
1134 return NULL;
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001135 }
1136 }
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001137 VCMFrameBuffer* frame = free_frames_.front();
1138 free_frames_.pop_front();
1139 return frame;
1140}
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001141
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001142bool VCMJitterBuffer::TryToIncreaseJitterBufferSize() {
1143 if (max_number_of_frames_ >= kMaxNumberOfFrames)
1144 return false;
pbos@webrtc.org4f16c872014-11-24 09:06:48 +00001145 free_frames_.push_back(new VCMFrameBuffer());
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001146 ++max_number_of_frames_;
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001147 TRACE_COUNTER1("webrtc", "JBMaxFrames", max_number_of_frames_);
1148 return true;
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001149}
1150
1151// Recycle oldest frames up to a key frame, used if jitter buffer is completely
1152// full.
1153bool VCMJitterBuffer::RecycleFramesUntilKeyFrame() {
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001154 // First release incomplete frames, and only release decodable frames if there
1155 // are no incomplete ones.
1156 FrameList::iterator key_frame_it;
1157 bool key_frame_found = false;
1158 int dropped_frames = 0;
1159 dropped_frames += incomplete_frames_.RecycleFramesUntilKeyFrame(
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001160 &key_frame_it, &free_frames_);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001161 key_frame_found = key_frame_it != incomplete_frames_.end();
1162 if (dropped_frames == 0) {
1163 dropped_frames += decodable_frames_.RecycleFramesUntilKeyFrame(
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001164 &key_frame_it, &free_frames_);
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001165 key_frame_found = key_frame_it != decodable_frames_.end();
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001166 }
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001167 TRACE_EVENT_INSTANT0("webrtc", "JB::RecycleFramesUntilKeyFrame");
1168 if (key_frame_found) {
stefan@webrtc.org34c5da62014-04-11 14:08:35 +00001169 LOG(LS_INFO) << "Found key frame while dropping frames.";
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001170 // Reset last decoded state to make sure the next frame decoded is a key
1171 // frame, and start NACKing from here.
1172 last_decoded_state_.Reset();
stefan@webrtc.org50fb4af2013-06-17 07:33:58 +00001173 DropPacketsFromNackList(EstimatedLowSequenceNumber(*key_frame_it->second));
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001174 } else if (decodable_frames_.empty()) {
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001175 // All frames dropped. Reset the decoding state and clear missing sequence
1176 // numbers as we're starting fresh.
1177 last_decoded_state_.Reset();
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001178 missing_sequence_numbers_.clear();
edjee@google.com79b02892013-04-04 19:43:34 +00001179 }
stefan@webrtc.orgc8b29a22013-06-17 07:13:16 +00001180 return key_frame_found;
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001181}
1182
1183// Must be called under the critical section |crit_sect_|.
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001184void VCMJitterBuffer::CountFrame(const VCMFrameBuffer& frame) {
pbos@webrtc.org4f16c872014-11-24 09:06:48 +00001185 incoming_frame_count_++;
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001186
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001187 if (frame.FrameType() == kVideoFrameKey) {
philipel9d3ab612015-12-21 04:12:39 -08001188 TRACE_EVENT_ASYNC_STEP0("webrtc", "Video", frame.TimeStamp(),
1189 "KeyComplete");
hclam@chromium.org806dc3b2013-04-09 19:54:10 +00001190 } else {
philipel9d3ab612015-12-21 04:12:39 -08001191 TRACE_EVENT_ASYNC_STEP0("webrtc", "Video", frame.TimeStamp(),
1192 "DeltaComplete");
hclam@chromium.org806dc3b2013-04-09 19:54:10 +00001193 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001194
1195 // Update receive statistics. We count all layers, thus when you use layers
1196 // adding all key and delta frames might differ from frame count.
stefan@webrtc.org4cf1a8a2013-06-27 15:20:14 +00001197 if (frame.IsSessionComplete()) {
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +00001198 if (frame.FrameType() == kVideoFrameKey) {
1199 ++receive_statistics_.key_frames;
skvlad98bb6642016-04-07 15:36:45 -07001200 if (receive_statistics_.key_frames == 1) {
1201 LOG(LS_INFO) << "Received first complete key frame";
1202 }
pbos@webrtc.orgce4e9a32014-12-18 13:50:16 +00001203 } else {
1204 ++receive_statistics_.delta_frames;
1205 }
skvlad98bb6642016-04-07 15:36:45 -07001206
pbos@webrtc.org55707692014-12-19 15:45:03 +00001207 if (stats_callback_ != NULL)
1208 stats_callback_->OnFrameCountsUpdated(receive_statistics_);
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001209 }
niklase@google.com470e71d2011-07-07 08:21:25 +00001210}
1211
agalusza@google.comd818dcb2013-07-29 21:48:11 +00001212void VCMJitterBuffer::UpdateAveragePacketsPerFrame(int current_number_packets) {
1213 if (frame_counter_ > kFastConvergeThreshold) {
philipel9d3ab612015-12-21 04:12:39 -08001214 average_packets_per_frame_ =
1215 average_packets_per_frame_ * (1 - kNormalConvergeMultiplier) +
1216 current_number_packets * kNormalConvergeMultiplier;
agalusza@google.comd818dcb2013-07-29 21:48:11 +00001217 } else if (frame_counter_ > 0) {
philipel9d3ab612015-12-21 04:12:39 -08001218 average_packets_per_frame_ =
1219 average_packets_per_frame_ * (1 - kFastConvergeMultiplier) +
1220 current_number_packets * kFastConvergeMultiplier;
agalusza@google.comd818dcb2013-07-29 21:48:11 +00001221 frame_counter_++;
1222 } else {
1223 average_packets_per_frame_ = current_number_packets;
1224 frame_counter_++;
1225 }
1226}
1227
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001228// Must be called under the critical section |crit_sect_|.
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001229void VCMJitterBuffer::CleanUpOldOrEmptyFrames() {
pbos@webrtc.org4f16c872014-11-24 09:06:48 +00001230 decodable_frames_.CleanUpOldOrEmptyFrames(&last_decoded_state_,
1231 &free_frames_);
1232 incomplete_frames_.CleanUpOldOrEmptyFrames(&last_decoded_state_,
1233 &free_frames_);
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001234 if (!last_decoded_state_.in_initial_state()) {
1235 DropPacketsFromNackList(last_decoded_state_.sequence_num());
1236 }
mikhal@webrtc.org832caca2011-12-13 21:15:05 +00001237}
1238
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001239// Must be called from within |crit_sect_|.
1240bool VCMJitterBuffer::IsPacketRetransmitted(const VCMPacket& packet) const {
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001241 return missing_sequence_numbers_.find(packet.seqNum) !=
philipel9d3ab612015-12-21 04:12:39 -08001242 missing_sequence_numbers_.end();
niklase@google.com470e71d2011-07-07 08:21:25 +00001243}
1244
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001245// Must be called under the critical section |crit_sect_|. Should never be
1246// called with retransmitted frames, they must be filtered out before this
1247// function is called.
1248void VCMJitterBuffer::UpdateJitterEstimate(const VCMJitterSample& sample,
1249 bool incomplete_frame) {
1250 if (sample.latest_packet_time == -1) {
1251 return;
1252 }
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001253 UpdateJitterEstimate(sample.latest_packet_time, sample.timestamp,
1254 sample.frame_size, incomplete_frame);
1255}
1256
1257// Must be called under the critical section crit_sect_. Should never be
1258// called with retransmitted frames, they must be filtered out before this
1259// function is called.
1260void VCMJitterBuffer::UpdateJitterEstimate(const VCMFrameBuffer& frame,
1261 bool incomplete_frame) {
1262 if (frame.LatestPacketTimeMs() == -1) {
1263 return;
1264 }
1265 // No retransmitted frames should be a part of the jitter
1266 // estimate.
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001267 UpdateJitterEstimate(frame.LatestPacketTimeMs(), frame.TimeStamp(),
1268 frame.Length(), incomplete_frame);
1269}
1270
1271// Must be called under the critical section |crit_sect_|. Should never be
1272// called with retransmitted frames, they must be filtered out before this
1273// function is called.
philipel9d3ab612015-12-21 04:12:39 -08001274void VCMJitterBuffer::UpdateJitterEstimate(int64_t latest_packet_time_ms,
1275 uint32_t timestamp,
1276 unsigned int frame_size,
1277 bool incomplete_frame) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001278 if (latest_packet_time_ms == -1) {
1279 return;
1280 }
1281 int64_t frame_delay;
philipel9d3ab612015-12-21 04:12:39 -08001282 bool not_reordered = inter_frame_delay_.CalculateDelay(
1283 timestamp, &frame_delay, latest_packet_time_ms);
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001284 // Filter out frames which have been reordered in time by the network
1285 if (not_reordered) {
1286 // Update the jitter estimate with the new samples
1287 jitter_estimate_.UpdateEstimate(frame_delay, frame_size, incomplete_frame);
1288 }
1289}
1290
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001291bool VCMJitterBuffer::WaitForRetransmissions() {
1292 if (nack_mode_ == kNoNack) {
1293 // NACK disabled -> don't wait for retransmissions.
1294 return false;
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001295 }
stefan@webrtc.orga64300a2013-03-04 15:24:40 +00001296 // Evaluate if the RTT is higher than |high_rtt_nack_threshold_ms_|, and in
1297 // that case we don't wait for retransmissions.
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001298 if (high_rtt_nack_threshold_ms_ >= 0 &&
pkasting@chromium.org16825b12015-01-12 21:51:21 +00001299 rtt_ms_ >= high_rtt_nack_threshold_ms_) {
stefan@webrtc.org912981f2012-10-12 07:04:52 +00001300 return false;
1301 }
1302 return true;
1303}
philipel83f831a2016-03-12 03:30:23 -08001304
sprang22691e02016-07-13 10:57:07 -07001305void VCMJitterBuffer::RecycleFrameBuffer(VCMFrameBuffer* frame) {
1306 frame->Reset();
1307 free_frames_.push_back(frame);
1308}
1309
stefan@webrtc.org932ab182011-11-29 11:33:31 +00001310} // namespace webrtc