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terelius54ce6802016-07-13 06:44:41 -07001/*
2 * Copyright (c) 2016 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 "webrtc/tools/event_log_visualizer/analyzer.h"
12
13#include <algorithm>
14#include <limits>
15#include <map>
16#include <sstream>
17#include <string>
18#include <utility>
19
terelius54ce6802016-07-13 06:44:41 -070020#include "webrtc/base/checks.h"
stefan6a850c32016-07-29 10:28:08 -070021#include "webrtc/base/logging.h"
Stefan Holmer60e43462016-09-07 09:58:20 +020022#include "webrtc/base/rate_statistics.h"
ossuf515ab82016-12-07 04:52:58 -080023#include "webrtc/call/audio_receive_stream.h"
24#include "webrtc/call/audio_send_stream.h"
25#include "webrtc/call/call.h"
terelius54ce6802016-07-13 06:44:41 -070026#include "webrtc/common_types.h"
Stefan Holmer280de9e2016-09-30 10:06:51 +020027#include "webrtc/modules/bitrate_controller/include/bitrate_controller.h"
Stefan Holmer13181032016-07-29 14:48:54 +020028#include "webrtc/modules/congestion_controller/include/congestion_controller.h"
terelius54ce6802016-07-13 06:44:41 -070029#include "webrtc/modules/rtp_rtcp/include/rtp_rtcp.h"
30#include "webrtc/modules/rtp_rtcp/include/rtp_rtcp_defines.h"
danilchapbf369fe2016-10-07 07:39:54 -070031#include "webrtc/modules/rtp_rtcp/source/rtcp_packet/common_header.h"
Stefan Holmer13181032016-07-29 14:48:54 +020032#include "webrtc/modules/rtp_rtcp/source/rtcp_packet/transport_feedback.h"
ossuf515ab82016-12-07 04:52:58 -080033#include "webrtc/modules/rtp_rtcp/source/rtp_header_extensions.h"
34#include "webrtc/modules/rtp_rtcp/source/rtp_utility.h"
terelius54ce6802016-07-13 06:44:41 -070035#include "webrtc/video_receive_stream.h"
36#include "webrtc/video_send_stream.h"
37
tereliusdc35dcd2016-08-01 12:03:27 -070038namespace webrtc {
39namespace plotting {
40
terelius54ce6802016-07-13 06:44:41 -070041namespace {
42
43std::string SsrcToString(uint32_t ssrc) {
44 std::stringstream ss;
45 ss << "SSRC " << ssrc;
46 return ss.str();
47}
48
49// Checks whether an SSRC is contained in the list of desired SSRCs.
50// Note that an empty SSRC list matches every SSRC.
51bool MatchingSsrc(uint32_t ssrc, const std::vector<uint32_t>& desired_ssrc) {
52 if (desired_ssrc.size() == 0)
53 return true;
54 return std::find(desired_ssrc.begin(), desired_ssrc.end(), ssrc) !=
55 desired_ssrc.end();
56}
57
58double AbsSendTimeToMicroseconds(int64_t abs_send_time) {
59 // The timestamp is a fixed point representation with 6 bits for seconds
60 // and 18 bits for fractions of a second. Thus, we divide by 2^18 to get the
61 // time in seconds and then multiply by 1000000 to convert to microseconds.
62 static constexpr double kTimestampToMicroSec =
tereliusccbbf8d2016-08-10 07:34:28 -070063 1000000.0 / static_cast<double>(1ul << 18);
terelius54ce6802016-07-13 06:44:41 -070064 return abs_send_time * kTimestampToMicroSec;
65}
66
67// Computes the difference |later| - |earlier| where |later| and |earlier|
68// are counters that wrap at |modulus|. The difference is chosen to have the
69// least absolute value. For example if |modulus| is 8, then the difference will
70// be chosen in the range [-3, 4]. If |modulus| is 9, then the difference will
71// be in [-4, 4].
72int64_t WrappingDifference(uint32_t later, uint32_t earlier, int64_t modulus) {
73 RTC_DCHECK_LE(1, modulus);
74 RTC_DCHECK_LT(later, modulus);
75 RTC_DCHECK_LT(earlier, modulus);
76 int64_t difference =
77 static_cast<int64_t>(later) - static_cast<int64_t>(earlier);
78 int64_t max_difference = modulus / 2;
79 int64_t min_difference = max_difference - modulus + 1;
80 if (difference > max_difference) {
81 difference -= modulus;
82 }
83 if (difference < min_difference) {
84 difference += modulus;
85 }
terelius6addf492016-08-23 17:34:07 -070086 if (difference > max_difference / 2 || difference < min_difference / 2) {
87 LOG(LS_WARNING) << "Difference between" << later << " and " << earlier
88 << " expected to be in the range (" << min_difference / 2
89 << "," << max_difference / 2 << ") but is " << difference
90 << ". Correct unwrapping is uncertain.";
91 }
terelius54ce6802016-07-13 06:44:41 -070092 return difference;
93}
94
ivocaac9d6f2016-09-22 07:01:47 -070095// Return default values for header extensions, to use on streams without stored
96// mapping data. Currently this only applies to audio streams, since the mapping
97// is not stored in the event log.
98// TODO(ivoc): Remove this once this mapping is stored in the event log for
99// audio streams. Tracking bug: webrtc:6399
100webrtc::RtpHeaderExtensionMap GetDefaultHeaderExtensionMap() {
101 webrtc::RtpHeaderExtensionMap default_map;
danilchap4aecc582016-11-15 09:21:00 -0800102 default_map.Register<AudioLevel>(webrtc::RtpExtension::kAudioLevelDefaultId);
103 default_map.Register<AbsoluteSendTime>(
ivocaac9d6f2016-09-22 07:01:47 -0700104 webrtc::RtpExtension::kAbsSendTimeDefaultId);
105 return default_map;
106}
107
tereliusdc35dcd2016-08-01 12:03:27 -0700108constexpr float kLeftMargin = 0.01f;
109constexpr float kRightMargin = 0.02f;
110constexpr float kBottomMargin = 0.02f;
111constexpr float kTopMargin = 0.05f;
terelius54ce6802016-07-13 06:44:41 -0700112
terelius6addf492016-08-23 17:34:07 -0700113class PacketSizeBytes {
114 public:
115 using DataType = LoggedRtpPacket;
116 using ResultType = size_t;
117 size_t operator()(const LoggedRtpPacket& packet) {
118 return packet.total_length;
119 }
120};
121
122class SequenceNumberDiff {
123 public:
124 using DataType = LoggedRtpPacket;
125 using ResultType = int64_t;
126 int64_t operator()(const LoggedRtpPacket& old_packet,
127 const LoggedRtpPacket& new_packet) {
128 return WrappingDifference(new_packet.header.sequenceNumber,
129 old_packet.header.sequenceNumber, 1ul << 16);
130 }
131};
132
tereliusccbbf8d2016-08-10 07:34:28 -0700133class NetworkDelayDiff {
134 public:
135 class AbsSendTime {
136 public:
137 using DataType = LoggedRtpPacket;
138 using ResultType = double;
139 double operator()(const LoggedRtpPacket& old_packet,
140 const LoggedRtpPacket& new_packet) {
141 if (old_packet.header.extension.hasAbsoluteSendTime &&
142 new_packet.header.extension.hasAbsoluteSendTime) {
143 int64_t send_time_diff = WrappingDifference(
144 new_packet.header.extension.absoluteSendTime,
145 old_packet.header.extension.absoluteSendTime, 1ul << 24);
146 int64_t recv_time_diff = new_packet.timestamp - old_packet.timestamp;
147 return static_cast<double>(recv_time_diff -
148 AbsSendTimeToMicroseconds(send_time_diff)) /
149 1000;
150 } else {
151 return 0;
152 }
153 }
154 };
155
156 class CaptureTime {
157 public:
158 using DataType = LoggedRtpPacket;
159 using ResultType = double;
160 double operator()(const LoggedRtpPacket& old_packet,
161 const LoggedRtpPacket& new_packet) {
162 int64_t send_time_diff = WrappingDifference(
163 new_packet.header.timestamp, old_packet.header.timestamp, 1ull << 32);
164 int64_t recv_time_diff = new_packet.timestamp - old_packet.timestamp;
165
166 const double kVideoSampleRate = 90000;
167 // TODO(terelius): We treat all streams as video for now, even though
168 // audio might be sampled at e.g. 16kHz, because it is really difficult to
169 // figure out the true sampling rate of a stream. The effect is that the
170 // delay will be scaled incorrectly for non-video streams.
171
172 double delay_change =
173 static_cast<double>(recv_time_diff) / 1000 -
174 static_cast<double>(send_time_diff) / kVideoSampleRate * 1000;
terelius6addf492016-08-23 17:34:07 -0700175 if (delay_change < -10000 || 10000 < delay_change) {
176 LOG(LS_WARNING) << "Very large delay change. Timestamps correct?";
177 LOG(LS_WARNING) << "Old capture time " << old_packet.header.timestamp
178 << ", received time " << old_packet.timestamp;
179 LOG(LS_WARNING) << "New capture time " << new_packet.header.timestamp
180 << ", received time " << new_packet.timestamp;
181 LOG(LS_WARNING) << "Receive time difference " << recv_time_diff << " = "
182 << static_cast<double>(recv_time_diff) / 1000000 << "s";
183 LOG(LS_WARNING) << "Send time difference " << send_time_diff << " = "
184 << static_cast<double>(send_time_diff) /
185 kVideoSampleRate
186 << "s";
187 }
tereliusccbbf8d2016-08-10 07:34:28 -0700188 return delay_change;
189 }
190 };
191};
192
193template <typename Extractor>
194class Accumulated {
195 public:
196 using DataType = typename Extractor::DataType;
197 using ResultType = typename Extractor::ResultType;
198 ResultType operator()(const DataType& old_packet,
199 const DataType& new_packet) {
200 sum += extract(old_packet, new_packet);
201 return sum;
202 }
203
204 private:
205 Extractor extract;
206 ResultType sum = 0;
207};
208
terelius6addf492016-08-23 17:34:07 -0700209// For each element in data, use |Extractor| to extract a y-coordinate and
210// store the result in a TimeSeries.
211template <typename Extractor>
212void Pointwise(const std::vector<typename Extractor::DataType>& data,
213 uint64_t begin_time,
214 TimeSeries* result) {
215 Extractor extract;
216 for (size_t i = 0; i < data.size(); i++) {
217 float x = static_cast<float>(data[i].timestamp - begin_time) / 1000000;
218 float y = extract(data[i]);
219 result->points.emplace_back(x, y);
220 }
221}
222
223// For each pair of adjacent elements in |data|, use |Extractor| to extract a
224// y-coordinate and store the result in a TimeSeries. Note that the x-coordinate
225// will be the time of the second element in the pair.
tereliusccbbf8d2016-08-10 07:34:28 -0700226template <typename Extractor>
227void Pairwise(const std::vector<typename Extractor::DataType>& data,
228 uint64_t begin_time,
229 TimeSeries* result) {
230 Extractor extract;
231 for (size_t i = 1; i < data.size(); i++) {
232 float x = static_cast<float>(data[i].timestamp - begin_time) / 1000000;
233 float y = extract(data[i - 1], data[i]);
234 result->points.emplace_back(x, y);
235 }
236}
237
terelius6addf492016-08-23 17:34:07 -0700238// Calculates a moving average of |data| and stores the result in a TimeSeries.
239// A data point is generated every |step| microseconds from |begin_time|
240// to |end_time|. The value of each data point is the average of the data
241// during the preceeding |window_duration_us| microseconds.
242template <typename Extractor>
243void MovingAverage(const std::vector<typename Extractor::DataType>& data,
244 uint64_t begin_time,
245 uint64_t end_time,
246 uint64_t window_duration_us,
247 uint64_t step,
248 float y_scaling,
249 webrtc::plotting::TimeSeries* result) {
250 size_t window_index_begin = 0;
251 size_t window_index_end = 0;
252 typename Extractor::ResultType sum_in_window = 0;
253 Extractor extract;
254
255 for (uint64_t t = begin_time; t < end_time + step; t += step) {
256 while (window_index_end < data.size() &&
257 data[window_index_end].timestamp < t) {
258 sum_in_window += extract(data[window_index_end]);
259 ++window_index_end;
260 }
261 while (window_index_begin < data.size() &&
262 data[window_index_begin].timestamp < t - window_duration_us) {
263 sum_in_window -= extract(data[window_index_begin]);
264 ++window_index_begin;
265 }
266 float window_duration_s = static_cast<float>(window_duration_us) / 1000000;
267 float x = static_cast<float>(t - begin_time) / 1000000;
268 float y = sum_in_window / window_duration_s * y_scaling;
269 result->points.emplace_back(x, y);
270 }
271}
272
terelius54ce6802016-07-13 06:44:41 -0700273} // namespace
274
terelius54ce6802016-07-13 06:44:41 -0700275EventLogAnalyzer::EventLogAnalyzer(const ParsedRtcEventLog& log)
276 : parsed_log_(log), window_duration_(250000), step_(10000) {
277 uint64_t first_timestamp = std::numeric_limits<uint64_t>::max();
278 uint64_t last_timestamp = std::numeric_limits<uint64_t>::min();
terelius88e64e52016-07-19 01:51:06 -0700279
Stefan Holmer13181032016-07-29 14:48:54 +0200280 // Maps a stream identifier consisting of ssrc and direction
terelius88e64e52016-07-19 01:51:06 -0700281 // to the header extensions used by that stream,
282 std::map<StreamId, RtpHeaderExtensionMap> extension_maps;
283
284 PacketDirection direction;
terelius88e64e52016-07-19 01:51:06 -0700285 uint8_t header[IP_PACKET_SIZE];
286 size_t header_length;
287 size_t total_length;
288
ivocaac9d6f2016-09-22 07:01:47 -0700289 // Make a default extension map for streams without configuration information.
290 // TODO(ivoc): Once configuration of audio streams is stored in the event log,
291 // this can be removed. Tracking bug: webrtc:6399
292 RtpHeaderExtensionMap default_extension_map = GetDefaultHeaderExtensionMap();
293
terelius54ce6802016-07-13 06:44:41 -0700294 for (size_t i = 0; i < parsed_log_.GetNumberOfEvents(); i++) {
295 ParsedRtcEventLog::EventType event_type = parsed_log_.GetEventType(i);
terelius88e64e52016-07-19 01:51:06 -0700296 if (event_type != ParsedRtcEventLog::VIDEO_RECEIVER_CONFIG_EVENT &&
297 event_type != ParsedRtcEventLog::VIDEO_SENDER_CONFIG_EVENT &&
298 event_type != ParsedRtcEventLog::AUDIO_RECEIVER_CONFIG_EVENT &&
terelius88c1d2b2016-08-01 05:20:33 -0700299 event_type != ParsedRtcEventLog::AUDIO_SENDER_CONFIG_EVENT &&
300 event_type != ParsedRtcEventLog::LOG_START &&
301 event_type != ParsedRtcEventLog::LOG_END) {
terelius88e64e52016-07-19 01:51:06 -0700302 uint64_t timestamp = parsed_log_.GetTimestamp(i);
303 first_timestamp = std::min(first_timestamp, timestamp);
304 last_timestamp = std::max(last_timestamp, timestamp);
305 }
306
307 switch (parsed_log_.GetEventType(i)) {
308 case ParsedRtcEventLog::VIDEO_RECEIVER_CONFIG_EVENT: {
309 VideoReceiveStream::Config config(nullptr);
310 parsed_log_.GetVideoReceiveConfig(i, &config);
Stefan Holmer13181032016-07-29 14:48:54 +0200311 StreamId stream(config.rtp.remote_ssrc, kIncomingPacket);
danilchap4aecc582016-11-15 09:21:00 -0800312 extension_maps[stream] = RtpHeaderExtensionMap(config.rtp.extensions);
terelius0740a202016-08-08 10:21:04 -0700313 video_ssrcs_.insert(stream);
brandtrfe2bef32017-01-26 08:03:58 -0800314 StreamId rtx_stream(config.rtp.rtx_ssrc, kIncomingPacket);
315 extension_maps[rtx_stream] =
316 RtpHeaderExtensionMap(config.rtp.extensions);
317 video_ssrcs_.insert(rtx_stream);
318 rtx_ssrcs_.insert(rtx_stream);
terelius88e64e52016-07-19 01:51:06 -0700319 break;
320 }
321 case ParsedRtcEventLog::VIDEO_SENDER_CONFIG_EVENT: {
322 VideoSendStream::Config config(nullptr);
323 parsed_log_.GetVideoSendConfig(i, &config);
324 for (auto ssrc : config.rtp.ssrcs) {
Stefan Holmer13181032016-07-29 14:48:54 +0200325 StreamId stream(ssrc, kOutgoingPacket);
danilchap4aecc582016-11-15 09:21:00 -0800326 extension_maps[stream] = RtpHeaderExtensionMap(config.rtp.extensions);
terelius0740a202016-08-08 10:21:04 -0700327 video_ssrcs_.insert(stream);
stefan6a850c32016-07-29 10:28:08 -0700328 }
329 for (auto ssrc : config.rtp.rtx.ssrcs) {
terelius0740a202016-08-08 10:21:04 -0700330 StreamId rtx_stream(ssrc, kOutgoingPacket);
danilchap4aecc582016-11-15 09:21:00 -0800331 extension_maps[rtx_stream] =
332 RtpHeaderExtensionMap(config.rtp.extensions);
terelius0740a202016-08-08 10:21:04 -0700333 video_ssrcs_.insert(rtx_stream);
334 rtx_ssrcs_.insert(rtx_stream);
terelius88e64e52016-07-19 01:51:06 -0700335 }
336 break;
337 }
338 case ParsedRtcEventLog::AUDIO_RECEIVER_CONFIG_EVENT: {
339 AudioReceiveStream::Config config;
ivoce0928d82016-10-10 05:12:51 -0700340 parsed_log_.GetAudioReceiveConfig(i, &config);
341 StreamId stream(config.rtp.remote_ssrc, kIncomingPacket);
danilchap4aecc582016-11-15 09:21:00 -0800342 extension_maps[stream] = RtpHeaderExtensionMap(config.rtp.extensions);
ivoce0928d82016-10-10 05:12:51 -0700343 audio_ssrcs_.insert(stream);
terelius88e64e52016-07-19 01:51:06 -0700344 break;
345 }
346 case ParsedRtcEventLog::AUDIO_SENDER_CONFIG_EVENT: {
347 AudioSendStream::Config config(nullptr);
ivoce0928d82016-10-10 05:12:51 -0700348 parsed_log_.GetAudioSendConfig(i, &config);
349 StreamId stream(config.rtp.ssrc, kOutgoingPacket);
danilchap4aecc582016-11-15 09:21:00 -0800350 extension_maps[stream] = RtpHeaderExtensionMap(config.rtp.extensions);
ivoce0928d82016-10-10 05:12:51 -0700351 audio_ssrcs_.insert(stream);
terelius88e64e52016-07-19 01:51:06 -0700352 break;
353 }
354 case ParsedRtcEventLog::RTP_EVENT: {
Stefan Holmer13181032016-07-29 14:48:54 +0200355 MediaType media_type;
terelius88e64e52016-07-19 01:51:06 -0700356 parsed_log_.GetRtpHeader(i, &direction, &media_type, header,
357 &header_length, &total_length);
358 // Parse header to get SSRC.
359 RtpUtility::RtpHeaderParser rtp_parser(header, header_length);
360 RTPHeader parsed_header;
361 rtp_parser.Parse(&parsed_header);
Stefan Holmer13181032016-07-29 14:48:54 +0200362 StreamId stream(parsed_header.ssrc, direction);
terelius88e64e52016-07-19 01:51:06 -0700363 // Look up the extension_map and parse it again to get the extensions.
364 if (extension_maps.count(stream) == 1) {
365 RtpHeaderExtensionMap* extension_map = &extension_maps[stream];
366 rtp_parser.Parse(&parsed_header, extension_map);
ivocaac9d6f2016-09-22 07:01:47 -0700367 } else {
368 // Use the default extension map.
369 // TODO(ivoc): Once configuration of audio streams is stored in the
370 // event log, this can be removed.
371 // Tracking bug: webrtc:6399
372 rtp_parser.Parse(&parsed_header, &default_extension_map);
terelius88e64e52016-07-19 01:51:06 -0700373 }
374 uint64_t timestamp = parsed_log_.GetTimestamp(i);
375 rtp_packets_[stream].push_back(
Stefan Holmer13181032016-07-29 14:48:54 +0200376 LoggedRtpPacket(timestamp, parsed_header, total_length));
terelius88e64e52016-07-19 01:51:06 -0700377 break;
378 }
379 case ParsedRtcEventLog::RTCP_EVENT: {
Stefan Holmer13181032016-07-29 14:48:54 +0200380 uint8_t packet[IP_PACKET_SIZE];
381 MediaType media_type;
382 parsed_log_.GetRtcpPacket(i, &direction, &media_type, packet,
383 &total_length);
384
danilchapbf369fe2016-10-07 07:39:54 -0700385 // Currently feedback is logged twice, both for audio and video.
386 // Only act on one of them.
387 if (media_type == MediaType::VIDEO) {
388 rtcp::CommonHeader header;
389 const uint8_t* packet_end = packet + total_length;
390 for (const uint8_t* block = packet; block < packet_end;
391 block = header.NextPacket()) {
392 RTC_CHECK(header.Parse(block, packet_end - block));
393 if (header.type() == rtcp::TransportFeedback::kPacketType &&
394 header.fmt() == rtcp::TransportFeedback::kFeedbackMessageType) {
395 std::unique_ptr<rtcp::TransportFeedback> rtcp_packet(
396 new rtcp::TransportFeedback());
397 if (rtcp_packet->Parse(header)) {
398 uint32_t ssrc = rtcp_packet->sender_ssrc();
Stefan Holmer13181032016-07-29 14:48:54 +0200399 StreamId stream(ssrc, direction);
400 uint64_t timestamp = parsed_log_.GetTimestamp(i);
401 rtcp_packets_[stream].push_back(LoggedRtcpPacket(
402 timestamp, kRtcpTransportFeedback, std::move(rtcp_packet)));
403 }
Stefan Holmer13181032016-07-29 14:48:54 +0200404 }
Stefan Holmer13181032016-07-29 14:48:54 +0200405 }
Stefan Holmer13181032016-07-29 14:48:54 +0200406 }
terelius88e64e52016-07-19 01:51:06 -0700407 break;
408 }
409 case ParsedRtcEventLog::LOG_START: {
410 break;
411 }
412 case ParsedRtcEventLog::LOG_END: {
413 break;
414 }
415 case ParsedRtcEventLog::BWE_PACKET_LOSS_EVENT: {
terelius8058e582016-07-25 01:32:41 -0700416 BwePacketLossEvent bwe_update;
417 bwe_update.timestamp = parsed_log_.GetTimestamp(i);
418 parsed_log_.GetBwePacketLossEvent(i, &bwe_update.new_bitrate,
419 &bwe_update.fraction_loss,
420 &bwe_update.expected_packets);
421 bwe_loss_updates_.push_back(bwe_update);
terelius88e64e52016-07-19 01:51:06 -0700422 break;
423 }
minyue4b7c9522017-01-24 04:54:59 -0800424 case ParsedRtcEventLog::AUDIO_NETWORK_ADAPTATION_EVENT: {
425 break;
426 }
terelius88e64e52016-07-19 01:51:06 -0700427 case ParsedRtcEventLog::BWE_PACKET_DELAY_EVENT: {
428 break;
429 }
430 case ParsedRtcEventLog::AUDIO_PLAYOUT_EVENT: {
431 break;
432 }
433 case ParsedRtcEventLog::UNKNOWN_EVENT: {
434 break;
435 }
436 }
terelius54ce6802016-07-13 06:44:41 -0700437 }
terelius88e64e52016-07-19 01:51:06 -0700438
terelius54ce6802016-07-13 06:44:41 -0700439 if (last_timestamp < first_timestamp) {
440 // No useful events in the log.
441 first_timestamp = last_timestamp = 0;
442 }
443 begin_time_ = first_timestamp;
444 end_time_ = last_timestamp;
tereliusdc35dcd2016-08-01 12:03:27 -0700445 call_duration_s_ = static_cast<float>(end_time_ - begin_time_) / 1000000;
terelius54ce6802016-07-13 06:44:41 -0700446}
447
Stefan Holmer13181032016-07-29 14:48:54 +0200448class BitrateObserver : public CongestionController::Observer,
449 public RemoteBitrateObserver {
450 public:
451 BitrateObserver() : last_bitrate_bps_(0), bitrate_updated_(false) {}
452
minyue78b4d562016-11-30 04:47:39 -0800453 // TODO(minyue): remove this when old OnNetworkChanged is deprecated. See
454 // https://bugs.chromium.org/p/webrtc/issues/detail?id=6796
455 using CongestionController::Observer::OnNetworkChanged;
456
Stefan Holmer13181032016-07-29 14:48:54 +0200457 void OnNetworkChanged(uint32_t bitrate_bps,
458 uint8_t fraction_loss,
minyue78b4d562016-11-30 04:47:39 -0800459 int64_t rtt_ms,
460 int64_t probing_interval_ms) override {
Stefan Holmer13181032016-07-29 14:48:54 +0200461 last_bitrate_bps_ = bitrate_bps;
462 bitrate_updated_ = true;
463 }
464
465 void OnReceiveBitrateChanged(const std::vector<uint32_t>& ssrcs,
466 uint32_t bitrate) override {}
467
468 uint32_t last_bitrate_bps() const { return last_bitrate_bps_; }
469 bool GetAndResetBitrateUpdated() {
470 bool bitrate_updated = bitrate_updated_;
471 bitrate_updated_ = false;
472 return bitrate_updated;
473 }
474
475 private:
476 uint32_t last_bitrate_bps_;
477 bool bitrate_updated_;
478};
479
Stefan Holmer99f8e082016-09-09 13:37:50 +0200480bool EventLogAnalyzer::IsRtxSsrc(StreamId stream_id) const {
terelius0740a202016-08-08 10:21:04 -0700481 return rtx_ssrcs_.count(stream_id) == 1;
482}
483
Stefan Holmer99f8e082016-09-09 13:37:50 +0200484bool EventLogAnalyzer::IsVideoSsrc(StreamId stream_id) const {
terelius0740a202016-08-08 10:21:04 -0700485 return video_ssrcs_.count(stream_id) == 1;
486}
487
Stefan Holmer99f8e082016-09-09 13:37:50 +0200488bool EventLogAnalyzer::IsAudioSsrc(StreamId stream_id) const {
terelius0740a202016-08-08 10:21:04 -0700489 return audio_ssrcs_.count(stream_id) == 1;
490}
491
Stefan Holmer99f8e082016-09-09 13:37:50 +0200492std::string EventLogAnalyzer::GetStreamName(StreamId stream_id) const {
493 std::stringstream name;
494 if (IsAudioSsrc(stream_id)) {
495 name << "Audio ";
496 } else if (IsVideoSsrc(stream_id)) {
497 name << "Video ";
498 } else {
499 name << "Unknown ";
500 }
501 if (IsRtxSsrc(stream_id))
502 name << "RTX ";
ivocaac9d6f2016-09-22 07:01:47 -0700503 if (stream_id.GetDirection() == kIncomingPacket) {
504 name << "(In) ";
505 } else {
506 name << "(Out) ";
507 }
Stefan Holmer99f8e082016-09-09 13:37:50 +0200508 name << SsrcToString(stream_id.GetSsrc());
509 return name.str();
510}
511
terelius54ce6802016-07-13 06:44:41 -0700512void EventLogAnalyzer::CreatePacketGraph(PacketDirection desired_direction,
513 Plot* plot) {
terelius6addf492016-08-23 17:34:07 -0700514 for (auto& kv : rtp_packets_) {
515 StreamId stream_id = kv.first;
516 const std::vector<LoggedRtpPacket>& packet_stream = kv.second;
517 // Filter on direction and SSRC.
518 if (stream_id.GetDirection() != desired_direction ||
519 !MatchingSsrc(stream_id.GetSsrc(), desired_ssrc_)) {
520 continue;
terelius54ce6802016-07-13 06:44:41 -0700521 }
terelius54ce6802016-07-13 06:44:41 -0700522
terelius6addf492016-08-23 17:34:07 -0700523 TimeSeries time_series;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200524 time_series.label = GetStreamName(stream_id);
terelius6addf492016-08-23 17:34:07 -0700525 time_series.style = BAR_GRAPH;
526 Pointwise<PacketSizeBytes>(packet_stream, begin_time_, &time_series);
527 plot->series_list_.push_back(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700528 }
529
tereliusdc35dcd2016-08-01 12:03:27 -0700530 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
531 plot->SetSuggestedYAxis(0, 1, "Packet size (bytes)", kBottomMargin,
532 kTopMargin);
terelius54ce6802016-07-13 06:44:41 -0700533 if (desired_direction == webrtc::PacketDirection::kIncomingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700534 plot->SetTitle("Incoming RTP packets");
terelius54ce6802016-07-13 06:44:41 -0700535 } else if (desired_direction == webrtc::PacketDirection::kOutgoingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700536 plot->SetTitle("Outgoing RTP packets");
terelius54ce6802016-07-13 06:44:41 -0700537 }
538}
539
philipelccd74892016-09-05 02:46:25 -0700540template <typename T>
541void EventLogAnalyzer::CreateAccumulatedPacketsTimeSeries(
542 PacketDirection desired_direction,
543 Plot* plot,
544 const std::map<StreamId, std::vector<T>>& packets,
545 const std::string& label_prefix) {
546 for (auto& kv : packets) {
547 StreamId stream_id = kv.first;
548 const std::vector<T>& packet_stream = kv.second;
549 // Filter on direction and SSRC.
550 if (stream_id.GetDirection() != desired_direction ||
551 !MatchingSsrc(stream_id.GetSsrc(), desired_ssrc_)) {
552 continue;
553 }
554
555 TimeSeries time_series;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200556 time_series.label = label_prefix + " " + GetStreamName(stream_id);
philipelccd74892016-09-05 02:46:25 -0700557 time_series.style = LINE_GRAPH;
558
559 for (size_t i = 0; i < packet_stream.size(); i++) {
560 float x = static_cast<float>(packet_stream[i].timestamp - begin_time_) /
561 1000000;
562 time_series.points.emplace_back(x, i);
563 time_series.points.emplace_back(x, i + 1);
564 }
565
566 plot->series_list_.push_back(std::move(time_series));
567 }
568}
569
570void EventLogAnalyzer::CreateAccumulatedPacketsGraph(
571 PacketDirection desired_direction,
572 Plot* plot) {
573 CreateAccumulatedPacketsTimeSeries(desired_direction, plot, rtp_packets_,
574 "RTP");
575 CreateAccumulatedPacketsTimeSeries(desired_direction, plot, rtcp_packets_,
576 "RTCP");
577
578 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
579 plot->SetSuggestedYAxis(0, 1, "Received Packets", kBottomMargin, kTopMargin);
580 if (desired_direction == webrtc::PacketDirection::kIncomingPacket) {
581 plot->SetTitle("Accumulated Incoming RTP/RTCP packets");
582 } else if (desired_direction == webrtc::PacketDirection::kOutgoingPacket) {
583 plot->SetTitle("Accumulated Outgoing RTP/RTCP packets");
584 }
585}
586
terelius54ce6802016-07-13 06:44:41 -0700587// For each SSRC, plot the time between the consecutive playouts.
588void EventLogAnalyzer::CreatePlayoutGraph(Plot* plot) {
589 std::map<uint32_t, TimeSeries> time_series;
590 std::map<uint32_t, uint64_t> last_playout;
591
592 uint32_t ssrc;
terelius54ce6802016-07-13 06:44:41 -0700593
594 for (size_t i = 0; i < parsed_log_.GetNumberOfEvents(); i++) {
595 ParsedRtcEventLog::EventType event_type = parsed_log_.GetEventType(i);
596 if (event_type == ParsedRtcEventLog::AUDIO_PLAYOUT_EVENT) {
597 parsed_log_.GetAudioPlayout(i, &ssrc);
598 uint64_t timestamp = parsed_log_.GetTimestamp(i);
599 if (MatchingSsrc(ssrc, desired_ssrc_)) {
600 float x = static_cast<float>(timestamp - begin_time_) / 1000000;
601 float y = static_cast<float>(timestamp - last_playout[ssrc]) / 1000;
602 if (time_series[ssrc].points.size() == 0) {
603 // There were no previusly logged playout for this SSRC.
604 // Generate a point, but place it on the x-axis.
605 y = 0;
606 }
terelius54ce6802016-07-13 06:44:41 -0700607 time_series[ssrc].points.push_back(TimeSeriesPoint(x, y));
608 last_playout[ssrc] = timestamp;
609 }
610 }
611 }
612
613 // Set labels and put in graph.
614 for (auto& kv : time_series) {
615 kv.second.label = SsrcToString(kv.first);
616 kv.second.style = BAR_GRAPH;
tereliusdc35dcd2016-08-01 12:03:27 -0700617 plot->series_list_.push_back(std::move(kv.second));
terelius54ce6802016-07-13 06:44:41 -0700618 }
619
tereliusdc35dcd2016-08-01 12:03:27 -0700620 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
621 plot->SetSuggestedYAxis(0, 1, "Time since last playout (ms)", kBottomMargin,
622 kTopMargin);
623 plot->SetTitle("Audio playout");
terelius54ce6802016-07-13 06:44:41 -0700624}
625
ivocaac9d6f2016-09-22 07:01:47 -0700626// For audio SSRCs, plot the audio level.
627void EventLogAnalyzer::CreateAudioLevelGraph(Plot* plot) {
628 std::map<StreamId, TimeSeries> time_series;
629
630 for (auto& kv : rtp_packets_) {
631 StreamId stream_id = kv.first;
632 const std::vector<LoggedRtpPacket>& packet_stream = kv.second;
633 // TODO(ivoc): When audio send/receive configs are stored in the event
634 // log, a check should be added here to only process audio
635 // streams. Tracking bug: webrtc:6399
636 for (auto& packet : packet_stream) {
637 if (packet.header.extension.hasAudioLevel) {
638 float x = static_cast<float>(packet.timestamp - begin_time_) / 1000000;
639 // The audio level is stored in -dBov (so e.g. -10 dBov is stored as 10)
640 // Here we convert it to dBov.
641 float y = static_cast<float>(-packet.header.extension.audioLevel);
642 time_series[stream_id].points.emplace_back(TimeSeriesPoint(x, y));
643 }
644 }
645 }
646
647 for (auto& series : time_series) {
648 series.second.label = GetStreamName(series.first);
649 series.second.style = LINE_GRAPH;
650 plot->series_list_.push_back(std::move(series.second));
651 }
652
653 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
ivocbf676632016-11-24 08:30:34 -0800654 plot->SetYAxis(-127, 0, "Audio level (dBov)", kBottomMargin,
ivocaac9d6f2016-09-22 07:01:47 -0700655 kTopMargin);
656 plot->SetTitle("Audio level");
657}
658
terelius54ce6802016-07-13 06:44:41 -0700659// For each SSRC, plot the time between the consecutive playouts.
660void EventLogAnalyzer::CreateSequenceNumberGraph(Plot* plot) {
terelius6addf492016-08-23 17:34:07 -0700661 for (auto& kv : rtp_packets_) {
662 StreamId stream_id = kv.first;
663 const std::vector<LoggedRtpPacket>& packet_stream = kv.second;
664 // Filter on direction and SSRC.
665 if (stream_id.GetDirection() != kIncomingPacket ||
666 !MatchingSsrc(stream_id.GetSsrc(), desired_ssrc_)) {
667 continue;
terelius54ce6802016-07-13 06:44:41 -0700668 }
terelius54ce6802016-07-13 06:44:41 -0700669
terelius6addf492016-08-23 17:34:07 -0700670 TimeSeries time_series;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200671 time_series.label = GetStreamName(stream_id);
terelius6addf492016-08-23 17:34:07 -0700672 time_series.style = BAR_GRAPH;
673 Pairwise<SequenceNumberDiff>(packet_stream, begin_time_, &time_series);
674 plot->series_list_.push_back(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700675 }
676
tereliusdc35dcd2016-08-01 12:03:27 -0700677 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
678 plot->SetSuggestedYAxis(0, 1, "Difference since last packet", kBottomMargin,
679 kTopMargin);
680 plot->SetTitle("Sequence number");
terelius54ce6802016-07-13 06:44:41 -0700681}
682
Stefan Holmer99f8e082016-09-09 13:37:50 +0200683void EventLogAnalyzer::CreateIncomingPacketLossGraph(Plot* plot) {
684 for (auto& kv : rtp_packets_) {
685 StreamId stream_id = kv.first;
686 const std::vector<LoggedRtpPacket>& packet_stream = kv.second;
687 // Filter on direction and SSRC.
688 if (stream_id.GetDirection() != kIncomingPacket ||
689 !MatchingSsrc(stream_id.GetSsrc(), desired_ssrc_)) {
690 continue;
691 }
692
693 TimeSeries time_series;
694 time_series.label = GetStreamName(stream_id);
695 time_series.style = LINE_DOT_GRAPH;
696 const uint64_t kWindowUs = 1000000;
697 const LoggedRtpPacket* first_in_window = &packet_stream.front();
698 const LoggedRtpPacket* last_in_window = &packet_stream.front();
699 int packets_in_window = 0;
700 for (const LoggedRtpPacket& packet : packet_stream) {
701 if (packet.timestamp > first_in_window->timestamp + kWindowUs) {
702 uint16_t expected_num_packets = last_in_window->header.sequenceNumber -
703 first_in_window->header.sequenceNumber + 1;
704 float fraction_lost = (expected_num_packets - packets_in_window) /
705 static_cast<float>(expected_num_packets);
706 float y = fraction_lost * 100;
707 float x =
708 static_cast<float>(last_in_window->timestamp - begin_time_) /
709 1000000;
710 time_series.points.emplace_back(x, y);
711 first_in_window = &packet;
712 last_in_window = &packet;
713 packets_in_window = 1;
714 continue;
715 }
716 ++packets_in_window;
717 last_in_window = &packet;
718 }
719 plot->series_list_.push_back(std::move(time_series));
720 }
721
722 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
723 plot->SetSuggestedYAxis(0, 1, "Estimated loss rate (%)", kBottomMargin,
724 kTopMargin);
725 plot->SetTitle("Estimated incoming loss rate");
726}
727
terelius54ce6802016-07-13 06:44:41 -0700728void EventLogAnalyzer::CreateDelayChangeGraph(Plot* plot) {
terelius88e64e52016-07-19 01:51:06 -0700729 for (auto& kv : rtp_packets_) {
730 StreamId stream_id = kv.first;
tereliusccbbf8d2016-08-10 07:34:28 -0700731 const std::vector<LoggedRtpPacket>& packet_stream = kv.second;
terelius88e64e52016-07-19 01:51:06 -0700732 // Filter on direction and SSRC.
733 if (stream_id.GetDirection() != kIncomingPacket ||
Stefan Holmer99f8e082016-09-09 13:37:50 +0200734 !MatchingSsrc(stream_id.GetSsrc(), desired_ssrc_) ||
735 IsAudioSsrc(stream_id) || !IsVideoSsrc(stream_id) ||
736 IsRtxSsrc(stream_id)) {
terelius88e64e52016-07-19 01:51:06 -0700737 continue;
738 }
terelius54ce6802016-07-13 06:44:41 -0700739
tereliusccbbf8d2016-08-10 07:34:28 -0700740 TimeSeries capture_time_data;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200741 capture_time_data.label = GetStreamName(stream_id) + " capture-time";
tereliusccbbf8d2016-08-10 07:34:28 -0700742 capture_time_data.style = BAR_GRAPH;
743 Pairwise<NetworkDelayDiff::CaptureTime>(packet_stream, begin_time_,
744 &capture_time_data);
745 plot->series_list_.push_back(std::move(capture_time_data));
terelius88e64e52016-07-19 01:51:06 -0700746
tereliusccbbf8d2016-08-10 07:34:28 -0700747 TimeSeries send_time_data;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200748 send_time_data.label = GetStreamName(stream_id) + " abs-send-time";
tereliusccbbf8d2016-08-10 07:34:28 -0700749 send_time_data.style = BAR_GRAPH;
750 Pairwise<NetworkDelayDiff::AbsSendTime>(packet_stream, begin_time_,
751 &send_time_data);
752 plot->series_list_.push_back(std::move(send_time_data));
terelius54ce6802016-07-13 06:44:41 -0700753 }
754
tereliusdc35dcd2016-08-01 12:03:27 -0700755 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
756 plot->SetSuggestedYAxis(0, 1, "Latency change (ms)", kBottomMargin,
757 kTopMargin);
758 plot->SetTitle("Network latency change between consecutive packets");
terelius54ce6802016-07-13 06:44:41 -0700759}
760
761void EventLogAnalyzer::CreateAccumulatedDelayChangeGraph(Plot* plot) {
terelius88e64e52016-07-19 01:51:06 -0700762 for (auto& kv : rtp_packets_) {
763 StreamId stream_id = kv.first;
tereliusccbbf8d2016-08-10 07:34:28 -0700764 const std::vector<LoggedRtpPacket>& packet_stream = kv.second;
terelius88e64e52016-07-19 01:51:06 -0700765 // Filter on direction and SSRC.
766 if (stream_id.GetDirection() != kIncomingPacket ||
Stefan Holmer99f8e082016-09-09 13:37:50 +0200767 !MatchingSsrc(stream_id.GetSsrc(), desired_ssrc_) ||
768 IsAudioSsrc(stream_id) || !IsVideoSsrc(stream_id) ||
769 IsRtxSsrc(stream_id)) {
terelius88e64e52016-07-19 01:51:06 -0700770 continue;
771 }
terelius54ce6802016-07-13 06:44:41 -0700772
tereliusccbbf8d2016-08-10 07:34:28 -0700773 TimeSeries capture_time_data;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200774 capture_time_data.label = GetStreamName(stream_id) + " capture-time";
tereliusccbbf8d2016-08-10 07:34:28 -0700775 capture_time_data.style = LINE_GRAPH;
776 Pairwise<Accumulated<NetworkDelayDiff::CaptureTime>>(
777 packet_stream, begin_time_, &capture_time_data);
778 plot->series_list_.push_back(std::move(capture_time_data));
terelius88e64e52016-07-19 01:51:06 -0700779
tereliusccbbf8d2016-08-10 07:34:28 -0700780 TimeSeries send_time_data;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200781 send_time_data.label = GetStreamName(stream_id) + " abs-send-time";
tereliusccbbf8d2016-08-10 07:34:28 -0700782 send_time_data.style = LINE_GRAPH;
783 Pairwise<Accumulated<NetworkDelayDiff::AbsSendTime>>(
784 packet_stream, begin_time_, &send_time_data);
785 plot->series_list_.push_back(std::move(send_time_data));
terelius54ce6802016-07-13 06:44:41 -0700786 }
787
tereliusdc35dcd2016-08-01 12:03:27 -0700788 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
789 plot->SetSuggestedYAxis(0, 1, "Latency change (ms)", kBottomMargin,
790 kTopMargin);
791 plot->SetTitle("Accumulated network latency change");
terelius54ce6802016-07-13 06:44:41 -0700792}
793
tereliusf736d232016-08-04 10:00:11 -0700794// Plot the fraction of packets lost (as perceived by the loss-based BWE).
795void EventLogAnalyzer::CreateFractionLossGraph(Plot* plot) {
796 plot->series_list_.push_back(TimeSeries());
797 for (auto& bwe_update : bwe_loss_updates_) {
798 float x = static_cast<float>(bwe_update.timestamp - begin_time_) / 1000000;
799 float y = static_cast<float>(bwe_update.fraction_loss) / 255 * 100;
800 plot->series_list_.back().points.emplace_back(x, y);
801 }
802 plot->series_list_.back().label = "Fraction lost";
803 plot->series_list_.back().style = LINE_DOT_GRAPH;
804
805 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
806 plot->SetSuggestedYAxis(0, 10, "Percent lost packets", kBottomMargin,
807 kTopMargin);
808 plot->SetTitle("Reported packet loss");
809}
810
terelius54ce6802016-07-13 06:44:41 -0700811// Plot the total bandwidth used by all RTP streams.
812void EventLogAnalyzer::CreateTotalBitrateGraph(
813 PacketDirection desired_direction,
814 Plot* plot) {
815 struct TimestampSize {
816 TimestampSize(uint64_t t, size_t s) : timestamp(t), size(s) {}
817 uint64_t timestamp;
818 size_t size;
819 };
820 std::vector<TimestampSize> packets;
821
822 PacketDirection direction;
823 size_t total_length;
824
825 // Extract timestamps and sizes for the relevant packets.
826 for (size_t i = 0; i < parsed_log_.GetNumberOfEvents(); i++) {
827 ParsedRtcEventLog::EventType event_type = parsed_log_.GetEventType(i);
828 if (event_type == ParsedRtcEventLog::RTP_EVENT) {
829 parsed_log_.GetRtpHeader(i, &direction, nullptr, nullptr, nullptr,
830 &total_length);
831 if (direction == desired_direction) {
832 uint64_t timestamp = parsed_log_.GetTimestamp(i);
833 packets.push_back(TimestampSize(timestamp, total_length));
834 }
835 }
836 }
837
838 size_t window_index_begin = 0;
839 size_t window_index_end = 0;
840 size_t bytes_in_window = 0;
terelius54ce6802016-07-13 06:44:41 -0700841
842 // Calculate a moving average of the bitrate and store in a TimeSeries.
tereliusdc35dcd2016-08-01 12:03:27 -0700843 plot->series_list_.push_back(TimeSeries());
terelius54ce6802016-07-13 06:44:41 -0700844 for (uint64_t time = begin_time_; time < end_time_ + step_; time += step_) {
845 while (window_index_end < packets.size() &&
846 packets[window_index_end].timestamp < time) {
847 bytes_in_window += packets[window_index_end].size;
terelius6addf492016-08-23 17:34:07 -0700848 ++window_index_end;
terelius54ce6802016-07-13 06:44:41 -0700849 }
850 while (window_index_begin < packets.size() &&
851 packets[window_index_begin].timestamp < time - window_duration_) {
852 RTC_DCHECK_LE(packets[window_index_begin].size, bytes_in_window);
853 bytes_in_window -= packets[window_index_begin].size;
terelius6addf492016-08-23 17:34:07 -0700854 ++window_index_begin;
terelius54ce6802016-07-13 06:44:41 -0700855 }
856 float window_duration_in_seconds =
857 static_cast<float>(window_duration_) / 1000000;
858 float x = static_cast<float>(time - begin_time_) / 1000000;
859 float y = bytes_in_window * 8 / window_duration_in_seconds / 1000;
tereliusdc35dcd2016-08-01 12:03:27 -0700860 plot->series_list_.back().points.push_back(TimeSeriesPoint(x, y));
terelius54ce6802016-07-13 06:44:41 -0700861 }
862
863 // Set labels.
864 if (desired_direction == webrtc::PacketDirection::kIncomingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700865 plot->series_list_.back().label = "Incoming bitrate";
terelius54ce6802016-07-13 06:44:41 -0700866 } else if (desired_direction == webrtc::PacketDirection::kOutgoingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700867 plot->series_list_.back().label = "Outgoing bitrate";
terelius54ce6802016-07-13 06:44:41 -0700868 }
tereliusdc35dcd2016-08-01 12:03:27 -0700869 plot->series_list_.back().style = LINE_GRAPH;
terelius54ce6802016-07-13 06:44:41 -0700870
terelius8058e582016-07-25 01:32:41 -0700871 // Overlay the send-side bandwidth estimate over the outgoing bitrate.
872 if (desired_direction == kOutgoingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700873 plot->series_list_.push_back(TimeSeries());
terelius8058e582016-07-25 01:32:41 -0700874 for (auto& bwe_update : bwe_loss_updates_) {
875 float x =
876 static_cast<float>(bwe_update.timestamp - begin_time_) / 1000000;
877 float y = static_cast<float>(bwe_update.new_bitrate) / 1000;
tereliusdc35dcd2016-08-01 12:03:27 -0700878 plot->series_list_.back().points.emplace_back(x, y);
terelius8058e582016-07-25 01:32:41 -0700879 }
tereliusdc35dcd2016-08-01 12:03:27 -0700880 plot->series_list_.back().label = "Loss-based estimate";
881 plot->series_list_.back().style = LINE_GRAPH;
terelius8058e582016-07-25 01:32:41 -0700882 }
tereliusdc35dcd2016-08-01 12:03:27 -0700883 plot->series_list_.back().style = LINE_GRAPH;
884 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
885 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
terelius54ce6802016-07-13 06:44:41 -0700886 if (desired_direction == webrtc::PacketDirection::kIncomingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700887 plot->SetTitle("Incoming RTP bitrate");
terelius54ce6802016-07-13 06:44:41 -0700888 } else if (desired_direction == webrtc::PacketDirection::kOutgoingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700889 plot->SetTitle("Outgoing RTP bitrate");
terelius54ce6802016-07-13 06:44:41 -0700890 }
891}
892
893// For each SSRC, plot the bandwidth used by that stream.
894void EventLogAnalyzer::CreateStreamBitrateGraph(
895 PacketDirection desired_direction,
896 Plot* plot) {
terelius6addf492016-08-23 17:34:07 -0700897 for (auto& kv : rtp_packets_) {
898 StreamId stream_id = kv.first;
899 const std::vector<LoggedRtpPacket>& packet_stream = kv.second;
900 // Filter on direction and SSRC.
901 if (stream_id.GetDirection() != desired_direction ||
902 !MatchingSsrc(stream_id.GetSsrc(), desired_ssrc_)) {
903 continue;
terelius54ce6802016-07-13 06:44:41 -0700904 }
905
terelius6addf492016-08-23 17:34:07 -0700906 TimeSeries time_series;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200907 time_series.label = GetStreamName(stream_id);
terelius6addf492016-08-23 17:34:07 -0700908 time_series.style = LINE_GRAPH;
909 double bytes_to_kilobits = 8.0 / 1000;
910 MovingAverage<PacketSizeBytes>(packet_stream, begin_time_, end_time_,
911 window_duration_, step_, bytes_to_kilobits,
912 &time_series);
913 plot->series_list_.push_back(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700914 }
915
tereliusdc35dcd2016-08-01 12:03:27 -0700916 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
917 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
terelius54ce6802016-07-13 06:44:41 -0700918 if (desired_direction == webrtc::PacketDirection::kIncomingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700919 plot->SetTitle("Incoming bitrate per stream");
terelius54ce6802016-07-13 06:44:41 -0700920 } else if (desired_direction == webrtc::PacketDirection::kOutgoingPacket) {
tereliusdc35dcd2016-08-01 12:03:27 -0700921 plot->SetTitle("Outgoing bitrate per stream");
terelius54ce6802016-07-13 06:44:41 -0700922 }
923}
924
tereliuse34c19c2016-08-15 08:47:14 -0700925void EventLogAnalyzer::CreateBweSimulationGraph(Plot* plot) {
Stefan Holmer13181032016-07-29 14:48:54 +0200926 std::map<uint64_t, const LoggedRtpPacket*> outgoing_rtp;
927 std::map<uint64_t, const LoggedRtcpPacket*> incoming_rtcp;
928
929 for (const auto& kv : rtp_packets_) {
930 if (kv.first.GetDirection() == PacketDirection::kOutgoingPacket) {
931 for (const LoggedRtpPacket& rtp_packet : kv.second)
932 outgoing_rtp.insert(std::make_pair(rtp_packet.timestamp, &rtp_packet));
933 }
934 }
935
936 for (const auto& kv : rtcp_packets_) {
937 if (kv.first.GetDirection() == PacketDirection::kIncomingPacket) {
938 for (const LoggedRtcpPacket& rtcp_packet : kv.second)
939 incoming_rtcp.insert(
940 std::make_pair(rtcp_packet.timestamp, &rtcp_packet));
941 }
942 }
943
944 SimulatedClock clock(0);
945 BitrateObserver observer;
946 RtcEventLogNullImpl null_event_log;
nisse0245da02016-11-30 03:35:20 -0800947 PacketRouter packet_router;
948 CongestionController cc(&clock, &observer, &observer, &null_event_log,
949 &packet_router);
Stefan Holmer13181032016-07-29 14:48:54 +0200950 // TODO(holmer): Log the call config and use that here instead.
951 static const uint32_t kDefaultStartBitrateBps = 300000;
952 cc.SetBweBitrates(0, kDefaultStartBitrateBps, -1);
953
954 TimeSeries time_series;
tereliuse34c19c2016-08-15 08:47:14 -0700955 time_series.label = "Delay-based estimate";
Stefan Holmer13181032016-07-29 14:48:54 +0200956 time_series.style = LINE_DOT_GRAPH;
Stefan Holmer60e43462016-09-07 09:58:20 +0200957 TimeSeries acked_time_series;
958 acked_time_series.label = "Acked bitrate";
959 acked_time_series.style = LINE_DOT_GRAPH;
Stefan Holmer13181032016-07-29 14:48:54 +0200960
961 auto rtp_iterator = outgoing_rtp.begin();
962 auto rtcp_iterator = incoming_rtcp.begin();
963
964 auto NextRtpTime = [&]() {
965 if (rtp_iterator != outgoing_rtp.end())
966 return static_cast<int64_t>(rtp_iterator->first);
967 return std::numeric_limits<int64_t>::max();
968 };
969
970 auto NextRtcpTime = [&]() {
971 if (rtcp_iterator != incoming_rtcp.end())
972 return static_cast<int64_t>(rtcp_iterator->first);
973 return std::numeric_limits<int64_t>::max();
974 };
975
976 auto NextProcessTime = [&]() {
977 if (rtcp_iterator != incoming_rtcp.end() ||
978 rtp_iterator != outgoing_rtp.end()) {
979 return clock.TimeInMicroseconds() +
980 std::max<int64_t>(cc.TimeUntilNextProcess() * 1000, 0);
981 }
982 return std::numeric_limits<int64_t>::max();
983 };
984
Stefan Holmer492ee282016-10-27 17:19:20 +0200985 RateStatistics acked_bitrate(250, 8000);
Stefan Holmer60e43462016-09-07 09:58:20 +0200986
Stefan Holmer13181032016-07-29 14:48:54 +0200987 int64_t time_us = std::min(NextRtpTime(), NextRtcpTime());
Stefan Holmer492ee282016-10-27 17:19:20 +0200988 int64_t last_update_us = 0;
Stefan Holmer13181032016-07-29 14:48:54 +0200989 while (time_us != std::numeric_limits<int64_t>::max()) {
990 clock.AdvanceTimeMicroseconds(time_us - clock.TimeInMicroseconds());
991 if (clock.TimeInMicroseconds() >= NextRtcpTime()) {
stefanc3de0332016-08-02 07:22:17 -0700992 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtcpTime());
Stefan Holmer13181032016-07-29 14:48:54 +0200993 const LoggedRtcpPacket& rtcp = *rtcp_iterator->second;
994 if (rtcp.type == kRtcpTransportFeedback) {
Stefan Holmer60e43462016-09-07 09:58:20 +0200995 TransportFeedbackObserver* observer = cc.GetTransportFeedbackObserver();
996 observer->OnTransportFeedback(*static_cast<rtcp::TransportFeedback*>(
997 rtcp.packet.get()));
998 std::vector<PacketInfo> feedback =
999 observer->GetTransportFeedbackVector();
1000 rtc::Optional<uint32_t> bitrate_bps;
1001 if (!feedback.empty()) {
1002 for (const PacketInfo& packet : feedback)
1003 acked_bitrate.Update(packet.payload_size, packet.arrival_time_ms);
1004 bitrate_bps = acked_bitrate.Rate(feedback.back().arrival_time_ms);
1005 }
1006 uint32_t y = 0;
1007 if (bitrate_bps)
1008 y = *bitrate_bps / 1000;
1009 float x = static_cast<float>(clock.TimeInMicroseconds() - begin_time_) /
1010 1000000;
1011 acked_time_series.points.emplace_back(x, y);
Stefan Holmer13181032016-07-29 14:48:54 +02001012 }
1013 ++rtcp_iterator;
1014 }
1015 if (clock.TimeInMicroseconds() >= NextRtpTime()) {
stefanc3de0332016-08-02 07:22:17 -07001016 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtpTime());
Stefan Holmer13181032016-07-29 14:48:54 +02001017 const LoggedRtpPacket& rtp = *rtp_iterator->second;
1018 if (rtp.header.extension.hasTransportSequenceNumber) {
1019 RTC_DCHECK(rtp.header.extension.hasTransportSequenceNumber);
1020 cc.GetTransportFeedbackObserver()->AddPacket(
stefana93d5ac2016-08-17 02:14:32 -07001021 rtp.header.extension.transportSequenceNumber, rtp.total_length,
1022 PacketInfo::kNotAProbe);
Stefan Holmer13181032016-07-29 14:48:54 +02001023 rtc::SentPacket sent_packet(
1024 rtp.header.extension.transportSequenceNumber, rtp.timestamp / 1000);
1025 cc.OnSentPacket(sent_packet);
1026 }
1027 ++rtp_iterator;
1028 }
stefanc3de0332016-08-02 07:22:17 -07001029 if (clock.TimeInMicroseconds() >= NextProcessTime()) {
1030 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextProcessTime());
Stefan Holmer13181032016-07-29 14:48:54 +02001031 cc.Process();
stefanc3de0332016-08-02 07:22:17 -07001032 }
Stefan Holmer492ee282016-10-27 17:19:20 +02001033 if (observer.GetAndResetBitrateUpdated() ||
1034 time_us - last_update_us >= 1e6) {
Stefan Holmer13181032016-07-29 14:48:54 +02001035 uint32_t y = observer.last_bitrate_bps() / 1000;
Stefan Holmer13181032016-07-29 14:48:54 +02001036 float x = static_cast<float>(clock.TimeInMicroseconds() - begin_time_) /
1037 1000000;
1038 time_series.points.emplace_back(x, y);
Stefan Holmer492ee282016-10-27 17:19:20 +02001039 last_update_us = time_us;
Stefan Holmer13181032016-07-29 14:48:54 +02001040 }
1041 time_us = std::min({NextRtpTime(), NextRtcpTime(), NextProcessTime()});
1042 }
1043 // Add the data set to the plot.
tereliusdc35dcd2016-08-01 12:03:27 -07001044 plot->series_list_.push_back(std::move(time_series));
Stefan Holmer60e43462016-09-07 09:58:20 +02001045 plot->series_list_.push_back(std::move(acked_time_series));
Stefan Holmer13181032016-07-29 14:48:54 +02001046
tereliusdc35dcd2016-08-01 12:03:27 -07001047 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
1048 plot->SetSuggestedYAxis(0, 10, "Bitrate (kbps)", kBottomMargin, kTopMargin);
1049 plot->SetTitle("Simulated BWE behavior");
Stefan Holmer13181032016-07-29 14:48:54 +02001050}
1051
Stefan Holmer280de9e2016-09-30 10:06:51 +02001052// TODO(holmer): Remove once TransportFeedbackAdapter no longer needs a
1053// BitrateController.
1054class NullBitrateController : public BitrateController {
1055 public:
1056 ~NullBitrateController() override {}
1057 RtcpBandwidthObserver* CreateRtcpBandwidthObserver() override {
1058 return nullptr;
1059 }
1060 void SetStartBitrate(int start_bitrate_bps) override {}
1061 void SetMinMaxBitrate(int min_bitrate_bps, int max_bitrate_bps) override {}
1062 void SetBitrates(int start_bitrate_bps,
1063 int min_bitrate_bps,
1064 int max_bitrate_bps) override {}
1065 void ResetBitrates(int bitrate_bps,
1066 int min_bitrate_bps,
1067 int max_bitrate_bps) override {}
1068 void OnDelayBasedBweResult(const DelayBasedBwe::Result& result) override {}
1069 bool AvailableBandwidth(uint32_t* bandwidth) const override { return false; }
1070 void SetReservedBitrate(uint32_t reserved_bitrate_bps) override {}
1071 bool GetNetworkParameters(uint32_t* bitrate,
1072 uint8_t* fraction_loss,
1073 int64_t* rtt) override {
1074 return false;
1075 }
1076 int64_t TimeUntilNextProcess() override { return 0; }
1077 void Process() override {}
1078};
1079
tereliuse34c19c2016-08-15 08:47:14 -07001080void EventLogAnalyzer::CreateNetworkDelayFeedbackGraph(Plot* plot) {
stefanc3de0332016-08-02 07:22:17 -07001081 std::map<uint64_t, const LoggedRtpPacket*> outgoing_rtp;
1082 std::map<uint64_t, const LoggedRtcpPacket*> incoming_rtcp;
1083
1084 for (const auto& kv : rtp_packets_) {
1085 if (kv.first.GetDirection() == PacketDirection::kOutgoingPacket) {
1086 for (const LoggedRtpPacket& rtp_packet : kv.second)
1087 outgoing_rtp.insert(std::make_pair(rtp_packet.timestamp, &rtp_packet));
1088 }
1089 }
1090
1091 for (const auto& kv : rtcp_packets_) {
1092 if (kv.first.GetDirection() == PacketDirection::kIncomingPacket) {
1093 for (const LoggedRtcpPacket& rtcp_packet : kv.second)
1094 incoming_rtcp.insert(
1095 std::make_pair(rtcp_packet.timestamp, &rtcp_packet));
1096 }
1097 }
1098
1099 SimulatedClock clock(0);
Stefan Holmer280de9e2016-09-30 10:06:51 +02001100 NullBitrateController null_controller;
1101 TransportFeedbackAdapter feedback_adapter(&clock, &null_controller);
stefan41aab322016-10-10 08:16:30 -07001102 feedback_adapter.InitBwe();
stefanc3de0332016-08-02 07:22:17 -07001103
1104 TimeSeries time_series;
1105 time_series.label = "Network Delay Change";
1106 time_series.style = LINE_DOT_GRAPH;
1107 int64_t estimated_base_delay_ms = std::numeric_limits<int64_t>::max();
1108
1109 auto rtp_iterator = outgoing_rtp.begin();
1110 auto rtcp_iterator = incoming_rtcp.begin();
1111
1112 auto NextRtpTime = [&]() {
1113 if (rtp_iterator != outgoing_rtp.end())
1114 return static_cast<int64_t>(rtp_iterator->first);
1115 return std::numeric_limits<int64_t>::max();
1116 };
1117
1118 auto NextRtcpTime = [&]() {
1119 if (rtcp_iterator != incoming_rtcp.end())
1120 return static_cast<int64_t>(rtcp_iterator->first);
1121 return std::numeric_limits<int64_t>::max();
1122 };
1123
1124 int64_t time_us = std::min(NextRtpTime(), NextRtcpTime());
1125 while (time_us != std::numeric_limits<int64_t>::max()) {
1126 clock.AdvanceTimeMicroseconds(time_us - clock.TimeInMicroseconds());
1127 if (clock.TimeInMicroseconds() >= NextRtcpTime()) {
1128 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtcpTime());
1129 const LoggedRtcpPacket& rtcp = *rtcp_iterator->second;
1130 if (rtcp.type == kRtcpTransportFeedback) {
Stefan Holmer60e43462016-09-07 09:58:20 +02001131 feedback_adapter.OnTransportFeedback(
1132 *static_cast<rtcp::TransportFeedback*>(rtcp.packet.get()));
stefanc3de0332016-08-02 07:22:17 -07001133 std::vector<PacketInfo> feedback =
Stefan Holmer60e43462016-09-07 09:58:20 +02001134 feedback_adapter.GetTransportFeedbackVector();
stefanc3de0332016-08-02 07:22:17 -07001135 for (const PacketInfo& packet : feedback) {
1136 int64_t y = packet.arrival_time_ms - packet.send_time_ms;
1137 float x =
1138 static_cast<float>(clock.TimeInMicroseconds() - begin_time_) /
1139 1000000;
1140 estimated_base_delay_ms = std::min(y, estimated_base_delay_ms);
1141 time_series.points.emplace_back(x, y);
1142 }
1143 }
1144 ++rtcp_iterator;
1145 }
1146 if (clock.TimeInMicroseconds() >= NextRtpTime()) {
1147 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtpTime());
1148 const LoggedRtpPacket& rtp = *rtp_iterator->second;
1149 if (rtp.header.extension.hasTransportSequenceNumber) {
1150 RTC_DCHECK(rtp.header.extension.hasTransportSequenceNumber);
1151 feedback_adapter.AddPacket(rtp.header.extension.transportSequenceNumber,
stefan985d2802016-11-15 06:54:09 -08001152 rtp.total_length, PacketInfo::kNotAProbe);
stefanc3de0332016-08-02 07:22:17 -07001153 feedback_adapter.OnSentPacket(
1154 rtp.header.extension.transportSequenceNumber, rtp.timestamp / 1000);
1155 }
1156 ++rtp_iterator;
1157 }
1158 time_us = std::min(NextRtpTime(), NextRtcpTime());
1159 }
1160 // We assume that the base network delay (w/o queues) is the min delay
1161 // observed during the call.
1162 for (TimeSeriesPoint& point : time_series.points)
1163 point.y -= estimated_base_delay_ms;
1164 // Add the data set to the plot.
1165 plot->series_list_.push_back(std::move(time_series));
1166
1167 plot->SetXAxis(0, call_duration_s_, "Time (s)", kLeftMargin, kRightMargin);
1168 plot->SetSuggestedYAxis(0, 10, "Delay (ms)", kBottomMargin, kTopMargin);
1169 plot->SetTitle("Network Delay Change.");
1170}
stefan08383272016-12-20 08:51:52 -08001171
1172std::vector<std::pair<int64_t, int64_t>> EventLogAnalyzer::GetFrameTimestamps()
1173 const {
1174 std::vector<std::pair<int64_t, int64_t>> timestamps;
1175 size_t largest_stream_size = 0;
1176 const std::vector<LoggedRtpPacket>* largest_video_stream = nullptr;
1177 // Find the incoming video stream with the most number of packets that is
1178 // not rtx.
1179 for (const auto& kv : rtp_packets_) {
1180 if (kv.first.GetDirection() == kIncomingPacket &&
1181 video_ssrcs_.find(kv.first) != video_ssrcs_.end() &&
1182 rtx_ssrcs_.find(kv.first) == rtx_ssrcs_.end() &&
1183 kv.second.size() > largest_stream_size) {
1184 largest_stream_size = kv.second.size();
1185 largest_video_stream = &kv.second;
1186 }
1187 }
1188 if (largest_video_stream == nullptr) {
1189 for (auto& packet : *largest_video_stream) {
1190 if (packet.header.markerBit) {
1191 int64_t capture_ms = packet.header.timestamp / 90.0;
1192 int64_t arrival_ms = packet.timestamp / 1000.0;
1193 timestamps.push_back(std::make_pair(capture_ms, arrival_ms));
1194 }
1195 }
1196 }
1197 return timestamps;
1198}
terelius54ce6802016-07-13 06:44:41 -07001199} // namespace plotting
1200} // namespace webrtc