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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
Mirko Bonadei575998c2019-07-25 13:57:41 +020011#include "rtc_tools/rtc_event_log_visualizer/analyzer.h"
terelius54ce6802016-07-13 06:44:41 -070012
13#include <algorithm>
Oleh Prypin6581f212017-11-16 00:17:05 +010014#include <cmath>
terelius54ce6802016-07-13 06:44:41 -070015#include <limits>
16#include <map>
Mirko Bonadei317a1f02019-09-17 17:06:18 +020017#include <memory>
terelius54ce6802016-07-13 06:44:41 -070018#include <string>
19#include <utility>
20
Björn Tereliusc69c1bb2019-10-11 15:06:58 +020021#include "absl/algorithm/container.h"
Bjorn Terelius6c4b1b72019-01-11 13:01:29 +010022#include "absl/strings/string_view.h"
Artem Titov741daaf2019-03-21 14:37:36 +010023#include "api/function_view.h"
Niels Möller0d863f72020-11-24 17:50:31 +010024#include "api/network_state_predictor.h"
Sebastian Jansson95edb032019-01-17 16:24:12 +010025#include "api/transport/field_trial_based_config.h"
Sebastian Jansson5c94f552018-10-15 18:46:51 +020026#include "api/transport/goog_cc_factory.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020027#include "call/audio_receive_stream.h"
28#include "call/audio_send_stream.h"
29#include "call/call.h"
30#include "call/video_receive_stream.h"
31#include "call/video_send_stream.h"
Kristoffer Erlandssona2ce4232020-04-01 14:33:30 +020032#include "logging/rtc_event_log/rtc_event_processor.h"
Elad Alon99a81b62017-09-21 10:25:29 +020033#include "logging/rtc_event_log/rtc_stream_config.h"
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +020034#include "modules/audio_coding/audio_network_adaptor/include/audio_network_adaptor.h"
Sebastian Jansson172fd852018-05-24 14:17:06 +020035#include "modules/congestion_controller/goog_cc/acknowledged_bitrate_estimator.h"
36#include "modules/congestion_controller/goog_cc/bitrate_estimator.h"
Sebastian Jansson04b18cb2018-07-02 09:25:25 +020037#include "modules/congestion_controller/goog_cc/delay_based_bwe.h"
Bjorn Terelius28db2662017-10-04 14:22:43 +020038#include "modules/congestion_controller/include/receive_side_congestion_controller.h"
Sebastian Jansson5c94f552018-10-15 18:46:51 +020039#include "modules/congestion_controller/rtp/transport_feedback_adapter.h"
Erik Språnge7942432019-06-12 13:30:02 +020040#include "modules/pacing/paced_sender.h"
Niels Möllerfd6c0912017-10-31 10:19:10 +010041#include "modules/pacing/packet_router.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020042#include "modules/rtp_rtcp/include/rtp_rtcp_defines.h"
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +020043#include "modules/rtp_rtcp/source/rtcp_packet.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020044#include "modules/rtp_rtcp/source/rtcp_packet/common_header.h"
45#include "modules/rtp_rtcp/source/rtcp_packet/receiver_report.h"
46#include "modules/rtp_rtcp/source/rtcp_packet/remb.h"
47#include "modules/rtp_rtcp/source/rtcp_packet/sender_report.h"
48#include "modules/rtp_rtcp/source/rtcp_packet/transport_feedback.h"
49#include "modules/rtp_rtcp/source/rtp_header_extensions.h"
Tomas Gunnarssonf25761d2020-06-03 22:55:33 +020050#include "modules/rtp_rtcp/source/rtp_rtcp_interface.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020051#include "modules/rtp_rtcp/source/rtp_utility.h"
52#include "rtc_base/checks.h"
53#include "rtc_base/format_macros.h"
54#include "rtc_base/logging.h"
Bjorn Terelius0295a962017-10-25 17:42:41 +020055#include "rtc_base/numerics/sequence_number_util.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020056#include "rtc_base/rate_statistics.h"
Jonas Olsson366a50c2018-09-06 13:41:30 +020057#include "rtc_base/strings/string_builder.h"
Mirko Bonadei575998c2019-07-25 13:57:41 +020058#include "rtc_tools/rtc_event_log_visualizer/log_simulation.h"
Björn Tereliusae1892d2020-06-17 11:55:55 +020059#include "test/explicit_key_value_config.h"
Bjorn Terelius6984ad22017-10-24 12:19:45 +020060
tereliusdc35dcd2016-08-01 12:03:27 -070061namespace webrtc {
tereliusdc35dcd2016-08-01 12:03:27 -070062
terelius54ce6802016-07-13 06:44:41 -070063namespace {
64
65std::string SsrcToString(uint32_t ssrc) {
Jonas Olsson366a50c2018-09-06 13:41:30 +020066 rtc::StringBuilder ss;
terelius54ce6802016-07-13 06:44:41 -070067 ss << "SSRC " << ssrc;
Jonas Olsson84df1c72018-09-14 16:59:32 +020068 return ss.Release();
terelius54ce6802016-07-13 06:44:41 -070069}
70
71// Checks whether an SSRC is contained in the list of desired SSRCs.
72// Note that an empty SSRC list matches every SSRC.
73bool MatchingSsrc(uint32_t ssrc, const std::vector<uint32_t>& desired_ssrc) {
Mirko Bonadei1f173152019-07-25 15:28:14 +020074 if (desired_ssrc.empty())
terelius54ce6802016-07-13 06:44:41 -070075 return true;
76 return std::find(desired_ssrc.begin(), desired_ssrc.end(), ssrc) !=
77 desired_ssrc.end();
78}
79
80double AbsSendTimeToMicroseconds(int64_t abs_send_time) {
81 // The timestamp is a fixed point representation with 6 bits for seconds
82 // and 18 bits for fractions of a second. Thus, we divide by 2^18 to get the
Qingsi Wang8eca1ff2018-02-02 11:49:44 -080083 // time in seconds and then multiply by kNumMicrosecsPerSec to convert to
84 // microseconds.
terelius54ce6802016-07-13 06:44:41 -070085 static constexpr double kTimestampToMicroSec =
Qingsi Wang8eca1ff2018-02-02 11:49:44 -080086 static_cast<double>(kNumMicrosecsPerSec) / static_cast<double>(1ul << 18);
terelius54ce6802016-07-13 06:44:41 -070087 return abs_send_time * kTimestampToMicroSec;
88}
89
90// Computes the difference |later| - |earlier| where |later| and |earlier|
91// are counters that wrap at |modulus|. The difference is chosen to have the
92// least absolute value. For example if |modulus| is 8, then the difference will
93// be chosen in the range [-3, 4]. If |modulus| is 9, then the difference will
94// be in [-4, 4].
95int64_t WrappingDifference(uint32_t later, uint32_t earlier, int64_t modulus) {
96 RTC_DCHECK_LE(1, modulus);
97 RTC_DCHECK_LT(later, modulus);
98 RTC_DCHECK_LT(earlier, modulus);
99 int64_t difference =
100 static_cast<int64_t>(later) - static_cast<int64_t>(earlier);
101 int64_t max_difference = modulus / 2;
102 int64_t min_difference = max_difference - modulus + 1;
103 if (difference > max_difference) {
104 difference -= modulus;
105 }
106 if (difference < min_difference) {
107 difference += modulus;
108 }
terelius6addf492016-08-23 17:34:07 -0700109 if (difference > max_difference / 2 || difference < min_difference / 2) {
Mirko Bonadei675513b2017-11-09 11:09:25 +0100110 RTC_LOG(LS_WARNING) << "Difference between" << later << " and " << earlier
111 << " expected to be in the range ("
112 << min_difference / 2 << "," << max_difference / 2
113 << ") but is " << difference
114 << ". Correct unwrapping is uncertain.";
terelius6addf492016-08-23 17:34:07 -0700115 }
terelius54ce6802016-07-13 06:44:41 -0700116 return difference;
117}
118
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200119// This is much more reliable for outgoing streams than for incoming streams.
120template <typename RtpPacketContainer>
Danil Chapovalov431abd92018-06-18 12:54:17 +0200121absl::optional<uint32_t> EstimateRtpClockFrequency(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200122 const RtpPacketContainer& packets,
123 int64_t end_time_us) {
124 RTC_CHECK(packets.size() >= 2);
125 SeqNumUnwrapper<uint32_t> unwrapper;
Philip Eliasson1f850a62019-03-19 12:15:00 +0000126 int64_t first_rtp_timestamp =
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200127 unwrapper.Unwrap(packets[0].rtp.header.timestamp);
128 int64_t first_log_timestamp = packets[0].log_time_us();
Philip Eliasson1f850a62019-03-19 12:15:00 +0000129 int64_t last_rtp_timestamp = first_rtp_timestamp;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200130 int64_t last_log_timestamp = first_log_timestamp;
131 for (size_t i = 1; i < packets.size(); i++) {
132 if (packets[i].log_time_us() > end_time_us)
133 break;
134 last_rtp_timestamp = unwrapper.Unwrap(packets[i].rtp.header.timestamp);
135 last_log_timestamp = packets[i].log_time_us();
136 }
137 if (last_log_timestamp - first_log_timestamp < kNumMicrosecsPerSec) {
138 RTC_LOG(LS_WARNING)
139 << "Failed to estimate RTP clock frequency: Stream too short. ("
140 << packets.size() << " packets, "
141 << last_log_timestamp - first_log_timestamp << " us)";
Danil Chapovalov431abd92018-06-18 12:54:17 +0200142 return absl::nullopt;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200143 }
144 double duration =
145 static_cast<double>(last_log_timestamp - first_log_timestamp) /
146 kNumMicrosecsPerSec;
147 double estimated_frequency =
148 (last_rtp_timestamp - first_rtp_timestamp) / duration;
149 for (uint32_t f : {8000, 16000, 32000, 48000, 90000}) {
philipel3fa49382019-08-20 15:59:57 +0200150 if (std::fabs(estimated_frequency - f) < 0.15 * f) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200151 return f;
152 }
153 }
154 RTC_LOG(LS_WARNING) << "Failed to estimate RTP clock frequency: Estimate "
155 << estimated_frequency
philipel3fa49382019-08-20 15:59:57 +0200156 << " not close to any stardard RTP frequency.";
Danil Chapovalov431abd92018-06-18 12:54:17 +0200157 return absl::nullopt;
ivocaac9d6f2016-09-22 07:01:47 -0700158}
159
Danil Chapovalov431abd92018-06-18 12:54:17 +0200160absl::optional<double> NetworkDelayDiff_AbsSendTime(
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100161 const LoggedRtpPacketIncoming& old_packet,
162 const LoggedRtpPacketIncoming& new_packet) {
163 if (old_packet.rtp.header.extension.hasAbsoluteSendTime &&
164 new_packet.rtp.header.extension.hasAbsoluteSendTime) {
terelius53dc23c2017-03-13 05:24:05 -0700165 int64_t send_time_diff = WrappingDifference(
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100166 new_packet.rtp.header.extension.absoluteSendTime,
167 old_packet.rtp.header.extension.absoluteSendTime, 1ul << 24);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200168 int64_t recv_time_diff =
169 new_packet.log_time_us() - old_packet.log_time_us();
terelius53dc23c2017-03-13 05:24:05 -0700170 double delay_change_us =
171 recv_time_diff - AbsSendTimeToMicroseconds(send_time_diff);
Oskar Sundbom3928dbc2017-11-16 10:53:09 +0100172 return delay_change_us / 1000;
terelius53dc23c2017-03-13 05:24:05 -0700173 } else {
Danil Chapovalov431abd92018-06-18 12:54:17 +0200174 return absl::nullopt;
terelius6addf492016-08-23 17:34:07 -0700175 }
176}
177
Danil Chapovalov431abd92018-06-18 12:54:17 +0200178absl::optional<double> NetworkDelayDiff_CaptureTime(
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100179 const LoggedRtpPacketIncoming& old_packet,
180 const LoggedRtpPacketIncoming& new_packet,
181 const double sample_rate) {
182 int64_t send_time_diff =
183 WrappingDifference(new_packet.rtp.header.timestamp,
184 old_packet.rtp.header.timestamp, 1ull << 32);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200185 int64_t recv_time_diff = new_packet.log_time_us() - old_packet.log_time_us();
terelius53dc23c2017-03-13 05:24:05 -0700186
terelius53dc23c2017-03-13 05:24:05 -0700187 double delay_change =
188 static_cast<double>(recv_time_diff) / 1000 -
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100189 static_cast<double>(send_time_diff) / sample_rate * 1000;
terelius53dc23c2017-03-13 05:24:05 -0700190 if (delay_change < -10000 || 10000 < delay_change) {
Mirko Bonadei675513b2017-11-09 11:09:25 +0100191 RTC_LOG(LS_WARNING) << "Very large delay change. Timestamps correct?";
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100192 RTC_LOG(LS_WARNING) << "Old capture time "
193 << old_packet.rtp.header.timestamp << ", received time "
194 << old_packet.log_time_us();
195 RTC_LOG(LS_WARNING) << "New capture time "
196 << new_packet.rtp.header.timestamp << ", received time "
197 << new_packet.log_time_us();
Mirko Bonadei675513b2017-11-09 11:09:25 +0100198 RTC_LOG(LS_WARNING) << "Receive time difference " << recv_time_diff << " = "
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800199 << static_cast<double>(recv_time_diff) /
200 kNumMicrosecsPerSec
201 << "s";
Mirko Bonadei675513b2017-11-09 11:09:25 +0100202 RTC_LOG(LS_WARNING) << "Send time difference " << send_time_diff << " = "
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100203 << static_cast<double>(send_time_diff) / sample_rate
Mirko Bonadei675513b2017-11-09 11:09:25 +0100204 << "s";
terelius53dc23c2017-03-13 05:24:05 -0700205 }
Oskar Sundbom3928dbc2017-11-16 10:53:09 +0100206 return delay_change;
terelius53dc23c2017-03-13 05:24:05 -0700207}
208
terelius6addf492016-08-23 17:34:07 -0700209
Bjorn Terelius7c974e62019-02-15 17:20:12 +0100210template <typename T>
211TimeSeries CreateRtcpTypeTimeSeries(const std::vector<T>& rtcp_list,
212 AnalyzerConfig config,
213 std::string rtcp_name,
214 int category_id) {
215 TimeSeries time_series(rtcp_name, LineStyle::kNone, PointStyle::kHighlight);
216 for (const auto& rtcp : rtcp_list) {
217 float x = config.GetCallTimeSec(rtcp.log_time_us());
218 float y = category_id;
219 time_series.points.emplace_back(x, y);
220 }
221 return time_series;
222}
223
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800224const char kUnknownEnumValue[] = "unknown";
225
226const char kIceCandidateTypeLocal[] = "local";
227const char kIceCandidateTypeStun[] = "stun";
228const char kIceCandidateTypePrflx[] = "prflx";
229const char kIceCandidateTypeRelay[] = "relay";
230
231const char kProtocolUdp[] = "udp";
232const char kProtocolTcp[] = "tcp";
233const char kProtocolSsltcp[] = "ssltcp";
234const char kProtocolTls[] = "tls";
235
236const char kAddressFamilyIpv4[] = "ipv4";
237const char kAddressFamilyIpv6[] = "ipv6";
238
239const char kNetworkTypeEthernet[] = "ethernet";
240const char kNetworkTypeLoopback[] = "loopback";
241const char kNetworkTypeWifi[] = "wifi";
242const char kNetworkTypeVpn[] = "vpn";
243const char kNetworkTypeCellular[] = "cellular";
244
245std::string GetIceCandidateTypeAsString(webrtc::IceCandidateType type) {
246 switch (type) {
247 case webrtc::IceCandidateType::kLocal:
248 return kIceCandidateTypeLocal;
249 case webrtc::IceCandidateType::kStun:
250 return kIceCandidateTypeStun;
251 case webrtc::IceCandidateType::kPrflx:
252 return kIceCandidateTypePrflx;
253 case webrtc::IceCandidateType::kRelay:
254 return kIceCandidateTypeRelay;
255 default:
256 return kUnknownEnumValue;
257 }
258}
259
260std::string GetProtocolAsString(webrtc::IceCandidatePairProtocol protocol) {
261 switch (protocol) {
262 case webrtc::IceCandidatePairProtocol::kUdp:
263 return kProtocolUdp;
264 case webrtc::IceCandidatePairProtocol::kTcp:
265 return kProtocolTcp;
266 case webrtc::IceCandidatePairProtocol::kSsltcp:
267 return kProtocolSsltcp;
268 case webrtc::IceCandidatePairProtocol::kTls:
269 return kProtocolTls;
270 default:
271 return kUnknownEnumValue;
272 }
273}
274
275std::string GetAddressFamilyAsString(
276 webrtc::IceCandidatePairAddressFamily family) {
277 switch (family) {
278 case webrtc::IceCandidatePairAddressFamily::kIpv4:
279 return kAddressFamilyIpv4;
280 case webrtc::IceCandidatePairAddressFamily::kIpv6:
281 return kAddressFamilyIpv6;
282 default:
283 return kUnknownEnumValue;
284 }
285}
286
287std::string GetNetworkTypeAsString(webrtc::IceCandidateNetworkType type) {
288 switch (type) {
289 case webrtc::IceCandidateNetworkType::kEthernet:
290 return kNetworkTypeEthernet;
291 case webrtc::IceCandidateNetworkType::kLoopback:
292 return kNetworkTypeLoopback;
293 case webrtc::IceCandidateNetworkType::kWifi:
294 return kNetworkTypeWifi;
295 case webrtc::IceCandidateNetworkType::kVpn:
296 return kNetworkTypeVpn;
297 case webrtc::IceCandidateNetworkType::kCellular:
298 return kNetworkTypeCellular;
299 default:
300 return kUnknownEnumValue;
301 }
302}
303
304std::string GetCandidatePairLogDescriptionAsString(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200305 const LoggedIceCandidatePairConfig& config) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800306 // Example: stun:wifi->relay(tcp):cellular@udp:ipv4
307 // represents a pair of a local server-reflexive candidate on a WiFi network
308 // and a remote relay candidate using TCP as the relay protocol on a cell
309 // network, when the candidate pair communicates over UDP using IPv4.
Jonas Olsson366a50c2018-09-06 13:41:30 +0200310 rtc::StringBuilder ss;
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800311 std::string local_candidate_type =
312 GetIceCandidateTypeAsString(config.local_candidate_type);
313 std::string remote_candidate_type =
314 GetIceCandidateTypeAsString(config.remote_candidate_type);
315 if (config.local_candidate_type == webrtc::IceCandidateType::kRelay) {
316 local_candidate_type +=
317 "(" + GetProtocolAsString(config.local_relay_protocol) + ")";
318 }
319 ss << local_candidate_type << ":"
320 << GetNetworkTypeAsString(config.local_network_type) << ":"
321 << GetAddressFamilyAsString(config.local_address_family) << "->"
322 << remote_candidate_type << ":"
323 << GetAddressFamilyAsString(config.remote_address_family) << "@"
324 << GetProtocolAsString(config.candidate_pair_protocol);
Jonas Olsson84df1c72018-09-14 16:59:32 +0200325 return ss.Release();
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800326}
327
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200328std::string GetDirectionAsString(PacketDirection direction) {
329 if (direction == kIncomingPacket) {
330 return "Incoming";
331 } else {
332 return "Outgoing";
333 }
334}
335
336std::string GetDirectionAsShortString(PacketDirection direction) {
337 if (direction == kIncomingPacket) {
338 return "In";
339 } else {
340 return "Out";
341 }
342}
343
terelius54ce6802016-07-13 06:44:41 -0700344} // namespace
345
Sebastian Janssonb290a6d2019-01-03 14:46:23 +0100346EventLogAnalyzer::EventLogAnalyzer(const ParsedRtcEventLog& log,
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200347 bool normalize_time)
Bjorn Terelius068fc352019-02-13 22:38:25 +0100348 : parsed_log_(log) {
349 config_.window_duration_ = 250000;
350 config_.step_ = 10000;
351 config_.normalize_time_ = normalize_time;
352 config_.begin_time_ = parsed_log_.first_timestamp();
353 config_.end_time_ = parsed_log_.last_timestamp();
354 if (config_.end_time_ < config_.begin_time_) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200355 RTC_LOG(LS_WARNING) << "No useful events in the log.";
Bjorn Terelius068fc352019-02-13 22:38:25 +0100356 config_.begin_time_ = config_.end_time_ = 0;
Björn Tereliusff612732018-04-25 14:23:01 +0000357 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200358
Björn Terelius0d1b28c2020-05-27 20:25:06 +0200359 RTC_LOG(LS_INFO) << "Log is "
360 << (parsed_log_.last_timestamp() -
361 parsed_log_.first_timestamp()) /
362 1000000
363 << " seconds long.";
Bjorn Terelius48b82792020-05-19 10:57:24 +0200364}
365
366EventLogAnalyzer::EventLogAnalyzer(const ParsedRtcEventLog& log,
367 const AnalyzerConfig& config)
368 : parsed_log_(log), config_(config) {
Björn Terelius0d1b28c2020-05-27 20:25:06 +0200369 RTC_LOG(LS_INFO) << "Log is "
370 << (parsed_log_.last_timestamp() -
371 parsed_log_.first_timestamp()) /
372 1000000
373 << " seconds long.";
terelius54ce6802016-07-13 06:44:41 -0700374}
375
Sebastian Jansson5c94f552018-10-15 18:46:51 +0200376class BitrateObserver : public RemoteBitrateObserver {
Stefan Holmer13181032016-07-29 14:48:54 +0200377 public:
378 BitrateObserver() : last_bitrate_bps_(0), bitrate_updated_(false) {}
379
Sebastian Jansson5c94f552018-10-15 18:46:51 +0200380 void Update(NetworkControlUpdate update) {
381 if (update.target_rate) {
382 last_bitrate_bps_ = update.target_rate->target_rate.bps();
383 bitrate_updated_ = true;
384 }
Stefan Holmer13181032016-07-29 14:48:54 +0200385 }
386
387 void OnReceiveBitrateChanged(const std::vector<uint32_t>& ssrcs,
388 uint32_t bitrate) override {}
389
390 uint32_t last_bitrate_bps() const { return last_bitrate_bps_; }
391 bool GetAndResetBitrateUpdated() {
392 bool bitrate_updated = bitrate_updated_;
393 bitrate_updated_ = false;
394 return bitrate_updated;
395 }
396
397 private:
398 uint32_t last_bitrate_bps_;
399 bool bitrate_updated_;
400};
401
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200402void EventLogAnalyzer::CreatePacketGraph(PacketDirection direction,
terelius54ce6802016-07-13 06:44:41 -0700403 Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200404 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
405 // Filter on SSRC.
406 if (!MatchingSsrc(stream.ssrc, desired_ssrc_)) {
terelius6addf492016-08-23 17:34:07 -0700407 continue;
terelius54ce6802016-07-13 06:44:41 -0700408 }
terelius54ce6802016-07-13 06:44:41 -0700409
Bjorn Terelius48b82792020-05-19 10:57:24 +0200410 TimeSeries time_series(GetStreamName(parsed_log_, direction, stream.ssrc),
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200411 LineStyle::kBar);
412 auto GetPacketSize = [](const LoggedRtpPacket& packet) {
Danil Chapovalov431abd92018-06-18 12:54:17 +0200413 return absl::optional<float>(packet.total_length);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200414 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200415 auto ToCallTime = [this](const LoggedRtpPacket& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100416 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200417 };
418 ProcessPoints<LoggedRtpPacket>(ToCallTime, GetPacketSize,
419 stream.packet_view, &time_series);
philipel35ba9bd2017-04-19 05:58:51 -0700420 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700421 }
422
Bjorn Terelius068fc352019-02-13 22:38:25 +0100423 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
424 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -0700425 plot->SetSuggestedYAxis(0, 1, "Packet size (bytes)", kBottomMargin,
426 kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200427 plot->SetTitle(GetDirectionAsString(direction) + " RTP packets");
terelius54ce6802016-07-13 06:44:41 -0700428}
429
Bjorn Terelius7c974e62019-02-15 17:20:12 +0100430void EventLogAnalyzer::CreateRtcpTypeGraph(PacketDirection direction,
431 Plot* plot) {
432 plot->AppendTimeSeries(CreateRtcpTypeTimeSeries(
433 parsed_log_.transport_feedbacks(direction), config_, "TWCC", 1));
434 plot->AppendTimeSeries(CreateRtcpTypeTimeSeries(
435 parsed_log_.receiver_reports(direction), config_, "RR", 2));
436 plot->AppendTimeSeries(CreateRtcpTypeTimeSeries(
437 parsed_log_.sender_reports(direction), config_, "SR", 3));
438 plot->AppendTimeSeries(CreateRtcpTypeTimeSeries(
439 parsed_log_.extended_reports(direction), config_, "XR", 4));
440 plot->AppendTimeSeries(CreateRtcpTypeTimeSeries(parsed_log_.nacks(direction),
441 config_, "NACK", 5));
442 plot->AppendTimeSeries(CreateRtcpTypeTimeSeries(parsed_log_.rembs(direction),
443 config_, "REMB", 6));
444 plot->AppendTimeSeries(
445 CreateRtcpTypeTimeSeries(parsed_log_.firs(direction), config_, "FIR", 7));
446 plot->AppendTimeSeries(
447 CreateRtcpTypeTimeSeries(parsed_log_.plis(direction), config_, "PLI", 8));
Björn Terelius4ef56382021-02-03 14:12:24 +0100448 plot->AppendTimeSeries(
449 CreateRtcpTypeTimeSeries(parsed_log_.byes(direction), config_, "BYE", 9));
Bjorn Terelius7c974e62019-02-15 17:20:12 +0100450 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
451 "Time (s)", kLeftMargin, kRightMargin);
452 plot->SetSuggestedYAxis(0, 1, "RTCP type", kBottomMargin, kTopMargin);
453 plot->SetTitle(GetDirectionAsString(direction) + " RTCP packets");
Bjorn Tereliusf640b872019-07-24 15:46:39 +0200454 plot->SetYAxisTickLabels({{1, "TWCC"},
455 {2, "RR"},
456 {3, "SR"},
457 {4, "XR"},
458 {5, "NACK"},
459 {6, "REMB"},
460 {7, "FIR"},
Björn Terelius4ef56382021-02-03 14:12:24 +0100461 {8, "PLI"},
462 {9, "BYE"}});
Bjorn Terelius7c974e62019-02-15 17:20:12 +0100463}
464
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200465template <typename IterableType>
philipelccd74892016-09-05 02:46:25 -0700466void EventLogAnalyzer::CreateAccumulatedPacketsTimeSeries(
philipelccd74892016-09-05 02:46:25 -0700467 Plot* plot,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200468 const IterableType& packets,
469 const std::string& label) {
470 TimeSeries time_series(label, LineStyle::kStep);
471 for (size_t i = 0; i < packets.size(); i++) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100472 float x = config_.GetCallTimeSec(packets[i].log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200473 time_series.points.emplace_back(x, i + 1);
philipelccd74892016-09-05 02:46:25 -0700474 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200475 plot->AppendTimeSeries(std::move(time_series));
philipelccd74892016-09-05 02:46:25 -0700476}
477
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200478void EventLogAnalyzer::CreateAccumulatedPacketsGraph(PacketDirection direction,
479 Plot* plot) {
480 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
481 if (!MatchingSsrc(stream.ssrc, desired_ssrc_))
482 continue;
Bjorn Terelius48b82792020-05-19 10:57:24 +0200483 std::string label = std::string("RTP ") +
484 GetStreamName(parsed_log_, direction, stream.ssrc);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200485 CreateAccumulatedPacketsTimeSeries(plot, stream.packet_view, label);
486 }
487 std::string label =
488 std::string("RTCP ") + "(" + GetDirectionAsShortString(direction) + ")";
489 if (direction == kIncomingPacket) {
490 CreateAccumulatedPacketsTimeSeries(
491 plot, parsed_log_.incoming_rtcp_packets(), label);
492 } else {
493 CreateAccumulatedPacketsTimeSeries(
494 plot, parsed_log_.outgoing_rtcp_packets(), label);
495 }
philipelccd74892016-09-05 02:46:25 -0700496
Bjorn Terelius068fc352019-02-13 22:38:25 +0100497 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
498 "Time (s)", kLeftMargin, kRightMargin);
philipelccd74892016-09-05 02:46:25 -0700499 plot->SetSuggestedYAxis(0, 1, "Received Packets", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200500 plot->SetTitle(std::string("Accumulated ") + GetDirectionAsString(direction) +
501 " RTP/RTCP packets");
philipelccd74892016-09-05 02:46:25 -0700502}
503
Kristoffer Erlandsson283c1062020-03-30 13:01:37 +0200504void EventLogAnalyzer::CreatePacketRateGraph(PacketDirection direction,
505 Plot* plot) {
506 auto CountPackets = [](auto packet) { return 1.0; };
507 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
508 // Filter on SSRC.
509 if (!MatchingSsrc(stream.ssrc, desired_ssrc_)) {
510 continue;
511 }
512 TimeSeries time_series(
Bjorn Terelius48b82792020-05-19 10:57:24 +0200513 std::string("RTP ") +
514 GetStreamName(parsed_log_, direction, stream.ssrc),
Kristoffer Erlandsson283c1062020-03-30 13:01:37 +0200515 LineStyle::kLine);
516 MovingAverage<LoggedRtpPacket, double>(CountPackets, stream.packet_view,
517 config_, &time_series);
518 plot->AppendTimeSeries(std::move(time_series));
519 }
520 TimeSeries time_series(
521 std::string("RTCP ") + "(" + GetDirectionAsShortString(direction) + ")",
522 LineStyle::kLine);
523 if (direction == kIncomingPacket) {
524 MovingAverage<LoggedRtcpPacketIncoming, double>(
525 CountPackets, parsed_log_.incoming_rtcp_packets(), config_,
526 &time_series);
527 } else {
528 MovingAverage<LoggedRtcpPacketOutgoing, double>(
529 CountPackets, parsed_log_.outgoing_rtcp_packets(), config_,
530 &time_series);
531 }
532 plot->AppendTimeSeries(std::move(time_series));
533
534 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
535 "Time (s)", kLeftMargin, kRightMargin);
536 plot->SetSuggestedYAxis(0, 1, "Packet Rate (packets/s)", kBottomMargin,
537 kTopMargin);
538 plot->SetTitle("Rate of " + GetDirectionAsString(direction) +
539 " RTP/RTCP packets");
540}
541
Kristoffer Erlandssona2ce4232020-04-01 14:33:30 +0200542void EventLogAnalyzer::CreateTotalPacketRateGraph(PacketDirection direction,
543 Plot* plot) {
544 // Contains a log timestamp to enable counting logged events of different
545 // types using MovingAverage().
546 class LogTime {
547 public:
548 explicit LogTime(int64_t log_time_us) : log_time_us_(log_time_us) {}
549
550 int64_t log_time_us() const { return log_time_us_; }
551
552 private:
553 int64_t log_time_us_;
554 };
555
556 std::vector<LogTime> packet_times;
557 auto handle_rtp = [&](const LoggedRtpPacket& packet) {
558 packet_times.emplace_back(packet.log_time_us());
559 };
560 RtcEventProcessor process;
561 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
562 process.AddEvents(stream.packet_view, handle_rtp);
563 }
564 if (direction == kIncomingPacket) {
565 auto handle_incoming_rtcp = [&](const LoggedRtcpPacketIncoming& packet) {
566 packet_times.emplace_back(packet.log_time_us());
567 };
568 process.AddEvents(parsed_log_.incoming_rtcp_packets(),
569 handle_incoming_rtcp);
570 } else {
571 auto handle_outgoing_rtcp = [&](const LoggedRtcpPacketOutgoing& packet) {
572 packet_times.emplace_back(packet.log_time_us());
573 };
574 process.AddEvents(parsed_log_.outgoing_rtcp_packets(),
575 handle_outgoing_rtcp);
576 }
577 process.ProcessEventsInOrder();
578 TimeSeries time_series(std::string("Total ") + "(" +
579 GetDirectionAsShortString(direction) + ") packets",
580 LineStyle::kLine);
581 MovingAverage<LogTime, uint64_t>([](auto packet) { return 1; }, packet_times,
582 config_, &time_series);
583 plot->AppendTimeSeries(std::move(time_series));
584
585 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
586 "Time (s)", kLeftMargin, kRightMargin);
587 plot->SetSuggestedYAxis(0, 1, "Packet Rate (packets/s)", kBottomMargin,
588 kTopMargin);
589 plot->SetTitle("Rate of all " + GetDirectionAsString(direction) +
590 " RTP/RTCP packets");
591}
592
terelius54ce6802016-07-13 06:44:41 -0700593// For each SSRC, plot the time between the consecutive playouts.
594void EventLogAnalyzer::CreatePlayoutGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200595 for (const auto& playout_stream : parsed_log_.audio_playout_events()) {
596 uint32_t ssrc = playout_stream.first;
597 if (!MatchingSsrc(ssrc, desired_ssrc_))
598 continue;
Danil Chapovalov431abd92018-06-18 12:54:17 +0200599 absl::optional<int64_t> last_playout_ms;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200600 TimeSeries time_series(SsrcToString(ssrc), LineStyle::kBar);
Minyue Li27e2b7d2018-05-07 15:20:24 +0200601 for (const auto& playout_event : playout_stream.second) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100602 float x = config_.GetCallTimeSec(playout_event.log_time_us());
Minyue Li27e2b7d2018-05-07 15:20:24 +0200603 int64_t playout_time_ms = playout_event.log_time_ms();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200604 // If there were no previous playouts, place the point on the x-axis.
Minyue Li27e2b7d2018-05-07 15:20:24 +0200605 float y = playout_time_ms - last_playout_ms.value_or(playout_time_ms);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200606 time_series.points.push_back(TimeSeriesPoint(x, y));
Minyue Li27e2b7d2018-05-07 15:20:24 +0200607 last_playout_ms.emplace(playout_time_ms);
terelius54ce6802016-07-13 06:44:41 -0700608 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200609 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700610 }
611
Bjorn Terelius068fc352019-02-13 22:38:25 +0100612 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
613 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -0700614 plot->SetSuggestedYAxis(0, 1, "Time since last playout (ms)", kBottomMargin,
615 kTopMargin);
616 plot->SetTitle("Audio playout");
terelius54ce6802016-07-13 06:44:41 -0700617}
618
ivocaac9d6f2016-09-22 07:01:47 -0700619// For audio SSRCs, plot the audio level.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200620void EventLogAnalyzer::CreateAudioLevelGraph(PacketDirection direction,
621 Plot* plot) {
622 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
Bjorn Terelius48b82792020-05-19 10:57:24 +0200623 if (!IsAudioSsrc(parsed_log_, direction, stream.ssrc))
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200624 continue;
Bjorn Terelius48b82792020-05-19 10:57:24 +0200625 TimeSeries time_series(GetStreamName(parsed_log_, direction, stream.ssrc),
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200626 LineStyle::kLine);
627 for (auto& packet : stream.packet_view) {
ivocaac9d6f2016-09-22 07:01:47 -0700628 if (packet.header.extension.hasAudioLevel) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100629 float x = config_.GetCallTimeSec(packet.log_time_us());
ivocaac9d6f2016-09-22 07:01:47 -0700630 // The audio level is stored in -dBov (so e.g. -10 dBov is stored as 10)
631 // Here we convert it to dBov.
632 float y = static_cast<float>(-packet.header.extension.audioLevel);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200633 time_series.points.emplace_back(TimeSeriesPoint(x, y));
ivocaac9d6f2016-09-22 07:01:47 -0700634 }
635 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200636 plot->AppendTimeSeries(std::move(time_series));
ivocaac9d6f2016-09-22 07:01:47 -0700637 }
638
Bjorn Terelius068fc352019-02-13 22:38:25 +0100639 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
640 "Time (s)", kLeftMargin, kRightMargin);
Yves Gerey665174f2018-06-19 15:03:05 +0200641 plot->SetYAxis(-127, 0, "Audio level (dBov)", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200642 plot->SetTitle(GetDirectionAsString(direction) + " audio level");
ivocaac9d6f2016-09-22 07:01:47 -0700643}
644
Konrad Hofbauerca3c8012019-02-15 20:52:19 +0100645// For each SSRC, plot the sequence number difference between consecutive
646// incoming packets.
terelius54ce6802016-07-13 06:44:41 -0700647void EventLogAnalyzer::CreateSequenceNumberGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200648 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
649 // Filter on SSRC.
650 if (!MatchingSsrc(stream.ssrc, desired_ssrc_)) {
terelius6addf492016-08-23 17:34:07 -0700651 continue;
terelius54ce6802016-07-13 06:44:41 -0700652 }
terelius54ce6802016-07-13 06:44:41 -0700653
Bjorn Terelius48b82792020-05-19 10:57:24 +0200654 TimeSeries time_series(
655 GetStreamName(parsed_log_, kIncomingPacket, stream.ssrc),
656 LineStyle::kBar);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200657 auto GetSequenceNumberDiff = [](const LoggedRtpPacketIncoming& old_packet,
658 const LoggedRtpPacketIncoming& new_packet) {
659 int64_t diff =
660 WrappingDifference(new_packet.rtp.header.sequenceNumber,
661 old_packet.rtp.header.sequenceNumber, 1ul << 16);
662 return diff;
663 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200664 auto ToCallTime = [this](const LoggedRtpPacketIncoming& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100665 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200666 };
667 ProcessPairs<LoggedRtpPacketIncoming, float>(
668 ToCallTime, GetSequenceNumberDiff, stream.incoming_packets,
669 &time_series);
philipel35ba9bd2017-04-19 05:58:51 -0700670 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700671 }
672
Bjorn Terelius068fc352019-02-13 22:38:25 +0100673 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
674 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -0700675 plot->SetSuggestedYAxis(0, 1, "Difference since last packet", kBottomMargin,
676 kTopMargin);
Konrad Hofbauerca3c8012019-02-15 20:52:19 +0100677 plot->SetTitle("Incoming sequence number delta");
terelius54ce6802016-07-13 06:44:41 -0700678}
679
Stefan Holmer99f8e082016-09-09 13:37:50 +0200680void EventLogAnalyzer::CreateIncomingPacketLossGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200681 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
682 const std::vector<LoggedRtpPacketIncoming>& packets =
683 stream.incoming_packets;
684 // Filter on SSRC.
Mirko Bonadei1f173152019-07-25 15:28:14 +0200685 if (!MatchingSsrc(stream.ssrc, desired_ssrc_) || packets.empty()) {
Stefan Holmer99f8e082016-09-09 13:37:50 +0200686 continue;
687 }
688
Bjorn Terelius48b82792020-05-19 10:57:24 +0200689 TimeSeries time_series(
690 GetStreamName(parsed_log_, kIncomingPacket, stream.ssrc),
691 LineStyle::kLine, PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200692 // TODO(terelius): Should the window and step size be read from the class
693 // instead?
694 const int64_t kWindowUs = 1000000;
695 const int64_t kStep = 1000000;
Bjorn Terelius2eb31882017-11-30 15:15:25 +0100696 SeqNumUnwrapper<uint16_t> unwrapper_;
697 SeqNumUnwrapper<uint16_t> prior_unwrapper_;
terelius4c9b4af2017-01-30 08:44:51 -0800698 size_t window_index_begin = 0;
699 size_t window_index_end = 0;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200700 uint64_t highest_seq_number =
701 unwrapper_.Unwrap(packets[0].rtp.header.sequenceNumber) - 1;
702 uint64_t highest_prior_seq_number =
703 prior_unwrapper_.Unwrap(packets[0].rtp.header.sequenceNumber) - 1;
terelius4c9b4af2017-01-30 08:44:51 -0800704
Bjorn Terelius068fc352019-02-13 22:38:25 +0100705 for (int64_t t = config_.begin_time_; t < config_.end_time_ + kStep;
706 t += kStep) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200707 while (window_index_end < packets.size() &&
708 packets[window_index_end].rtp.log_time_us() < t) {
709 uint64_t sequence_number = unwrapper_.Unwrap(
710 packets[window_index_end].rtp.header.sequenceNumber);
terelius4c9b4af2017-01-30 08:44:51 -0800711 highest_seq_number = std::max(highest_seq_number, sequence_number);
712 ++window_index_end;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200713 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200714 while (window_index_begin < packets.size() &&
715 packets[window_index_begin].rtp.log_time_us() < t - kWindowUs) {
716 uint64_t sequence_number = prior_unwrapper_.Unwrap(
717 packets[window_index_begin].rtp.header.sequenceNumber);
terelius4c9b4af2017-01-30 08:44:51 -0800718 highest_prior_seq_number =
719 std::max(highest_prior_seq_number, sequence_number);
720 ++window_index_begin;
721 }
Bjorn Terelius068fc352019-02-13 22:38:25 +0100722 float x = config_.GetCallTimeSec(t);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200723 uint64_t expected_packets = highest_seq_number - highest_prior_seq_number;
terelius4c9b4af2017-01-30 08:44:51 -0800724 if (expected_packets > 0) {
725 int64_t received_packets = window_index_end - window_index_begin;
726 int64_t lost_packets = expected_packets - received_packets;
727 float y = static_cast<float>(lost_packets) / expected_packets * 100;
728 time_series.points.emplace_back(x, y);
729 }
Stefan Holmer99f8e082016-09-09 13:37:50 +0200730 }
philipel35ba9bd2017-04-19 05:58:51 -0700731 plot->AppendTimeSeries(std::move(time_series));
Stefan Holmer99f8e082016-09-09 13:37:50 +0200732 }
733
Bjorn Terelius068fc352019-02-13 22:38:25 +0100734 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
735 "Time (s)", kLeftMargin, kRightMargin);
Konrad Hofbauerd036c652019-02-14 16:17:28 +0100736 plot->SetSuggestedYAxis(0, 1, "Loss rate (in %)", kBottomMargin, kTopMargin);
737 plot->SetTitle("Incoming packet loss (derived from incoming packets)");
Stefan Holmer99f8e082016-09-09 13:37:50 +0200738}
739
terelius2ee076d2017-08-15 02:04:02 -0700740void EventLogAnalyzer::CreateIncomingDelayGraph(Plot* plot) {
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100741 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200742 // Filter on SSRC.
743 if (!MatchingSsrc(stream.ssrc, desired_ssrc_) ||
Bjorn Terelius48b82792020-05-19 10:57:24 +0200744 IsRtxSsrc(parsed_log_, kIncomingPacket, stream.ssrc)) {
terelius88e64e52016-07-19 01:51:06 -0700745 continue;
746 }
terelius54ce6802016-07-13 06:44:41 -0700747
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100748 const std::vector<LoggedRtpPacketIncoming>& packets =
749 stream.incoming_packets;
750 if (packets.size() < 100) {
751 RTC_LOG(LS_WARNING) << "Can't estimate the RTP clock frequency with "
752 << packets.size() << " packets in the stream.";
753 continue;
754 }
Björn Terelius0d1b28c2020-05-27 20:25:06 +0200755 int64_t segment_end_us = parsed_log_.first_log_segment().stop_time_us();
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100756 absl::optional<uint32_t> estimated_frequency =
Bjorn Terelius48b82792020-05-19 10:57:24 +0200757 EstimateRtpClockFrequency(packets, segment_end_us);
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100758 if (!estimated_frequency)
759 continue;
760 const double frequency_hz = *estimated_frequency;
Bjorn Terelius48b82792020-05-19 10:57:24 +0200761 if (IsVideoSsrc(parsed_log_, kIncomingPacket, stream.ssrc) &&
762 frequency_hz != 90000) {
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100763 RTC_LOG(LS_WARNING)
764 << "Video stream should use a 90 kHz clock but appears to use "
765 << frequency_hz / 1000 << ". Discarding.";
766 continue;
767 }
768
769 auto ToCallTime = [this](const LoggedRtpPacketIncoming& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100770 return this->config_.GetCallTimeSec(packet.log_time_us());
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100771 };
772 auto ToNetworkDelay = [frequency_hz](
773 const LoggedRtpPacketIncoming& old_packet,
774 const LoggedRtpPacketIncoming& new_packet) {
775 return NetworkDelayDiff_CaptureTime(old_packet, new_packet, frequency_hz);
776 };
777
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200778 TimeSeries capture_time_data(
Bjorn Terelius48b82792020-05-19 10:57:24 +0200779 GetStreamName(parsed_log_, kIncomingPacket, stream.ssrc) +
780 " capture-time",
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200781 LineStyle::kLine);
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100782 AccumulatePairs<LoggedRtpPacketIncoming, double>(
783 ToCallTime, ToNetworkDelay, packets, &capture_time_data);
philipel35ba9bd2017-04-19 05:58:51 -0700784 plot->AppendTimeSeries(std::move(capture_time_data));
terelius88e64e52016-07-19 01:51:06 -0700785
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200786 TimeSeries send_time_data(
Bjorn Terelius48b82792020-05-19 10:57:24 +0200787 GetStreamName(parsed_log_, kIncomingPacket, stream.ssrc) +
788 " abs-send-time",
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200789 LineStyle::kLine);
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100790 AccumulatePairs<LoggedRtpPacketIncoming, double>(
791 ToCallTime, NetworkDelayDiff_AbsSendTime, packets, &send_time_data);
792 plot->AppendTimeSeriesIfNotEmpty(std::move(send_time_data));
terelius54ce6802016-07-13 06:44:41 -0700793 }
794
Bjorn Terelius068fc352019-02-13 22:38:25 +0100795 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
796 "Time (s)", kLeftMargin, kRightMargin);
Konrad Hofbauer5be3bbd2019-01-21 12:31:07 +0100797 plot->SetSuggestedYAxis(0, 1, "Delay (ms)", kBottomMargin, kTopMargin);
798 plot->SetTitle("Incoming network delay (relative to first packet)");
terelius54ce6802016-07-13 06:44:41 -0700799}
800
tereliusf736d232016-08-04 10:00:11 -0700801// Plot the fraction of packets lost (as perceived by the loss-based BWE).
802void EventLogAnalyzer::CreateFractionLossGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +0100803 TimeSeries time_series("Fraction lost", LineStyle::kLine,
804 PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200805 for (auto& bwe_update : parsed_log_.bwe_loss_updates()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100806 float x = config_.GetCallTimeSec(bwe_update.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200807 float y = static_cast<float>(bwe_update.fraction_lost) / 255 * 100;
philipel35ba9bd2017-04-19 05:58:51 -0700808 time_series.points.emplace_back(x, y);
tereliusf736d232016-08-04 10:00:11 -0700809 }
tereliusf736d232016-08-04 10:00:11 -0700810
Bjorn Terelius19f5be32017-10-18 12:39:49 +0200811 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +0100812 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
813 "Time (s)", kLeftMargin, kRightMargin);
Konrad Hofbauerd036c652019-02-14 16:17:28 +0100814 plot->SetSuggestedYAxis(0, 10, "Loss rate (in %)", kBottomMargin, kTopMargin);
815 plot->SetTitle("Outgoing packet loss (as reported by BWE)");
tereliusf736d232016-08-04 10:00:11 -0700816}
817
terelius54ce6802016-07-13 06:44:41 -0700818// Plot the total bandwidth used by all RTP streams.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200819void EventLogAnalyzer::CreateTotalIncomingBitrateGraph(Plot* plot) {
820 // TODO(terelius): This could be provided by the parser.
821 std::multimap<int64_t, size_t> packets_in_order;
822 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
823 for (const LoggedRtpPacketIncoming& packet : stream.incoming_packets)
824 packets_in_order.insert(
825 std::make_pair(packet.rtp.log_time_us(), packet.rtp.total_length));
terelius54ce6802016-07-13 06:44:41 -0700826 }
827
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200828 auto window_begin = packets_in_order.begin();
829 auto window_end = packets_in_order.begin();
terelius54ce6802016-07-13 06:44:41 -0700830 size_t bytes_in_window = 0;
terelius54ce6802016-07-13 06:44:41 -0700831
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800832 if (!packets_in_order.empty()) {
833 // Calculate a moving average of the bitrate and store in a TimeSeries.
834 TimeSeries bitrate_series("Bitrate", LineStyle::kLine);
835 for (int64_t time = config_.begin_time_;
836 time < config_.end_time_ + config_.step_; time += config_.step_) {
837 while (window_end != packets_in_order.end() && window_end->first < time) {
838 bytes_in_window += window_end->second;
839 ++window_end;
840 }
841 while (window_begin != packets_in_order.end() &&
842 window_begin->first < time - config_.window_duration_) {
843 RTC_DCHECK_LE(window_begin->second, bytes_in_window);
844 bytes_in_window -= window_begin->second;
845 ++window_begin;
846 }
847 float window_duration_in_seconds =
848 static_cast<float>(config_.window_duration_) / kNumMicrosecsPerSec;
849 float x = config_.GetCallTimeSec(time);
850 float y = bytes_in_window * 8 / window_duration_in_seconds / 1000;
851 bitrate_series.points.emplace_back(x, y);
terelius54ce6802016-07-13 06:44:41 -0700852 }
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800853 plot->AppendTimeSeries(std::move(bitrate_series));
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200854 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200855
856 // Overlay the outgoing REMB over incoming bitrate.
857 TimeSeries remb_series("Remb", LineStyle::kStep);
858 for (const auto& rtcp : parsed_log_.rembs(kOutgoingPacket)) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100859 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200860 float y = static_cast<float>(rtcp.remb.bitrate_bps()) / 1000;
861 remb_series.points.emplace_back(x, y);
862 }
863 plot->AppendTimeSeriesIfNotEmpty(std::move(remb_series));
864
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800865 if (!parsed_log_.generic_packets_received().empty()) {
866 TimeSeries time_series("Incoming generic bitrate", LineStyle::kLine);
867 auto GetPacketSizeKilobits = [](const LoggedGenericPacketReceived& packet) {
868 return packet.packet_length * 8.0 / 1000.0;
869 };
870 MovingAverage<LoggedGenericPacketReceived, double>(
871 GetPacketSizeKilobits, parsed_log_.generic_packets_received(), config_,
872 &time_series);
873 plot->AppendTimeSeries(std::move(time_series));
874 }
875
Bjorn Terelius068fc352019-02-13 22:38:25 +0100876 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
877 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200878 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
879 plot->SetTitle("Incoming RTP bitrate");
880}
881
882// Plot the total bandwidth used by all RTP streams.
883void EventLogAnalyzer::CreateTotalOutgoingBitrateGraph(Plot* plot,
884 bool show_detector_state,
885 bool show_alr_state) {
886 // TODO(terelius): This could be provided by the parser.
887 std::multimap<int64_t, size_t> packets_in_order;
888 for (const auto& stream : parsed_log_.outgoing_rtp_packets_by_ssrc()) {
889 for (const LoggedRtpPacketOutgoing& packet : stream.outgoing_packets)
890 packets_in_order.insert(
891 std::make_pair(packet.rtp.log_time_us(), packet.rtp.total_length));
892 }
893
894 auto window_begin = packets_in_order.begin();
895 auto window_end = packets_in_order.begin();
896 size_t bytes_in_window = 0;
897
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800898 if (!packets_in_order.empty()) {
899 // Calculate a moving average of the bitrate and store in a TimeSeries.
900 TimeSeries bitrate_series("Bitrate", LineStyle::kLine);
901 for (int64_t time = config_.begin_time_;
902 time < config_.end_time_ + config_.step_; time += config_.step_) {
903 while (window_end != packets_in_order.end() && window_end->first < time) {
904 bytes_in_window += window_end->second;
905 ++window_end;
906 }
907 while (window_begin != packets_in_order.end() &&
908 window_begin->first < time - config_.window_duration_) {
909 RTC_DCHECK_LE(window_begin->second, bytes_in_window);
910 bytes_in_window -= window_begin->second;
911 ++window_begin;
912 }
913 float window_duration_in_seconds =
914 static_cast<float>(config_.window_duration_) / kNumMicrosecsPerSec;
915 float x = config_.GetCallTimeSec(time);
916 float y = bytes_in_window * 8 / window_duration_in_seconds / 1000;
917 bitrate_series.points.emplace_back(x, y);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200918 }
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800919 plot->AppendTimeSeries(std::move(bitrate_series));
terelius54ce6802016-07-13 06:44:41 -0700920 }
921
terelius8058e582016-07-25 01:32:41 -0700922 // Overlay the send-side bandwidth estimate over the outgoing bitrate.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200923 TimeSeries loss_series("Loss-based estimate", LineStyle::kStep);
924 for (auto& loss_update : parsed_log_.bwe_loss_updates()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100925 float x = config_.GetCallTimeSec(loss_update.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200926 float y = static_cast<float>(loss_update.bitrate_bps) / 1000;
927 loss_series.points.emplace_back(x, y);
928 }
philipel10fc0e62017-04-11 01:50:23 -0700929
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200930 TimeSeries delay_series("Delay-based estimate", LineStyle::kStep);
931 IntervalSeries overusing_series("Overusing", "#ff8e82",
932 IntervalSeries::kHorizontal);
933 IntervalSeries underusing_series("Underusing", "#5092fc",
934 IntervalSeries::kHorizontal);
935 IntervalSeries normal_series("Normal", "#c4ffc4",
936 IntervalSeries::kHorizontal);
937 IntervalSeries* last_series = &normal_series;
938 double last_detector_switch = 0.0;
philipel23c7f252017-07-14 06:30:03 -0700939
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200940 BandwidthUsage last_detector_state = BandwidthUsage::kBwNormal;
philipel23c7f252017-07-14 06:30:03 -0700941
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200942 for (auto& delay_update : parsed_log_.bwe_delay_updates()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100943 float x = config_.GetCallTimeSec(delay_update.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200944 float y = static_cast<float>(delay_update.bitrate_bps) / 1000;
philipel23c7f252017-07-14 06:30:03 -0700945
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200946 if (last_detector_state != delay_update.detector_state) {
947 last_series->intervals.emplace_back(last_detector_switch, x);
948 last_detector_state = delay_update.detector_state;
949 last_detector_switch = x;
philipel23c7f252017-07-14 06:30:03 -0700950
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200951 switch (delay_update.detector_state) {
952 case BandwidthUsage::kBwNormal:
953 last_series = &normal_series;
954 break;
955 case BandwidthUsage::kBwUnderusing:
956 last_series = &underusing_series;
957 break;
958 case BandwidthUsage::kBwOverusing:
959 last_series = &overusing_series;
960 break;
961 case BandwidthUsage::kLast:
962 RTC_NOTREACHED();
philipele127e7a2017-03-29 16:28:53 +0200963 }
964 }
philipel23c7f252017-07-14 06:30:03 -0700965
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200966 delay_series.points.emplace_back(x, y);
967 }
Bjorn Terelius9e336ec2018-04-24 16:28:35 +0200968
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200969 RTC_CHECK(last_series);
Bjorn Terelius068fc352019-02-13 22:38:25 +0100970 last_series->intervals.emplace_back(last_detector_switch, config_.end_time_);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200971
972 TimeSeries created_series("Probe cluster created.", LineStyle::kNone,
973 PointStyle::kHighlight);
974 for (auto& cluster : parsed_log_.bwe_probe_cluster_created_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100975 float x = config_.GetCallTimeSec(cluster.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200976 float y = static_cast<float>(cluster.bitrate_bps) / 1000;
977 created_series.points.emplace_back(x, y);
978 }
979
980 TimeSeries result_series("Probing results.", LineStyle::kNone,
981 PointStyle::kHighlight);
Bjorn Terelius7a0bb002018-05-29 14:45:53 +0200982 for (auto& result : parsed_log_.bwe_probe_success_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100983 float x = config_.GetCallTimeSec(result.log_time_us());
Bjorn Terelius7a0bb002018-05-29 14:45:53 +0200984 float y = static_cast<float>(result.bitrate_bps) / 1000;
985 result_series.points.emplace_back(x, y);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200986 }
987
Piotr (Peter) Slatalaf996c842019-01-04 06:54:22 -0800988 TimeSeries probe_failures_series("Probe failed", LineStyle::kNone,
989 PointStyle::kHighlight);
990 for (auto& failure : parsed_log_.bwe_probe_failure_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100991 float x = config_.GetCallTimeSec(failure.log_time_us());
Piotr (Peter) Slatalaf996c842019-01-04 06:54:22 -0800992 probe_failures_series.points.emplace_back(x, 0);
993 }
994
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200995 IntervalSeries alr_state("ALR", "#555555", IntervalSeries::kHorizontal);
996 bool previously_in_alr = false;
997 int64_t alr_start = 0;
998 for (auto& alr : parsed_log_.alr_state_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100999 float y = config_.GetCallTimeSec(alr.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001000 if (!previously_in_alr && alr.in_alr) {
1001 alr_start = alr.log_time_us();
1002 previously_in_alr = true;
1003 } else if (previously_in_alr && !alr.in_alr) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001004 float x = config_.GetCallTimeSec(alr_start);
Ilya Nikolaevskiya4259f62017-12-05 13:19:45 +01001005 alr_state.intervals.emplace_back(x, y);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001006 previously_in_alr = false;
Björn Tereliusff612732018-04-25 14:23:01 +00001007 }
Björn Tereliusff612732018-04-25 14:23:01 +00001008 }
1009
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001010 if (previously_in_alr) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001011 float x = config_.GetCallTimeSec(alr_start);
1012 float y = config_.GetCallTimeSec(config_.end_time_);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001013 alr_state.intervals.emplace_back(x, y);
1014 }
1015
1016 if (show_detector_state) {
1017 plot->AppendIntervalSeries(std::move(overusing_series));
1018 plot->AppendIntervalSeries(std::move(underusing_series));
1019 plot->AppendIntervalSeries(std::move(normal_series));
1020 }
1021
1022 if (show_alr_state) {
1023 plot->AppendIntervalSeries(std::move(alr_state));
1024 }
1025 plot->AppendTimeSeries(std::move(loss_series));
Piotr (Peter) Slatalaf996c842019-01-04 06:54:22 -08001026 plot->AppendTimeSeriesIfNotEmpty(std::move(probe_failures_series));
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001027 plot->AppendTimeSeries(std::move(delay_series));
1028 plot->AppendTimeSeries(std::move(created_series));
1029 plot->AppendTimeSeries(std::move(result_series));
1030
1031 // Overlay the incoming REMB over the outgoing bitrate.
Björn Tereliusff612732018-04-25 14:23:01 +00001032 TimeSeries remb_series("Remb", LineStyle::kStep);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001033 for (const auto& rtcp : parsed_log_.rembs(kIncomingPacket)) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001034 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001035 float y = static_cast<float>(rtcp.remb.bitrate_bps()) / 1000;
terelius2c8e8a32017-06-02 01:29:48 -07001036 remb_series.points.emplace_back(x, y);
1037 }
1038 plot->AppendTimeSeriesIfNotEmpty(std::move(remb_series));
1039
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -08001040 if (!parsed_log_.generic_packets_sent().empty()) {
1041 {
1042 TimeSeries time_series("Outgoing generic total bitrate",
1043 LineStyle::kLine);
1044 auto GetPacketSizeKilobits = [](const LoggedGenericPacketSent& packet) {
1045 return packet.packet_length() * 8.0 / 1000.0;
1046 };
1047 MovingAverage<LoggedGenericPacketSent, double>(
1048 GetPacketSizeKilobits, parsed_log_.generic_packets_sent(), config_,
1049 &time_series);
1050 plot->AppendTimeSeries(std::move(time_series));
1051 }
1052
1053 {
1054 TimeSeries time_series("Outgoing generic payload bitrate",
1055 LineStyle::kLine);
1056 auto GetPacketSizeKilobits = [](const LoggedGenericPacketSent& packet) {
1057 return packet.payload_length * 8.0 / 1000.0;
1058 };
1059 MovingAverage<LoggedGenericPacketSent, double>(
1060 GetPacketSizeKilobits, parsed_log_.generic_packets_sent(), config_,
1061 &time_series);
1062 plot->AppendTimeSeries(std::move(time_series));
1063 }
1064 }
1065
Bjorn Terelius068fc352019-02-13 22:38:25 +01001066 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1067 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -07001068 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001069 plot->SetTitle("Outgoing RTP bitrate");
terelius54ce6802016-07-13 06:44:41 -07001070}
1071
1072// For each SSRC, plot the bandwidth used by that stream.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001073void EventLogAnalyzer::CreateStreamBitrateGraph(PacketDirection direction,
1074 Plot* plot) {
1075 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
1076 // Filter on SSRC.
1077 if (!MatchingSsrc(stream.ssrc, desired_ssrc_)) {
terelius6addf492016-08-23 17:34:07 -07001078 continue;
terelius54ce6802016-07-13 06:44:41 -07001079 }
1080
Bjorn Terelius48b82792020-05-19 10:57:24 +02001081 TimeSeries time_series(GetStreamName(parsed_log_, direction, stream.ssrc),
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001082 LineStyle::kLine);
1083 auto GetPacketSizeKilobits = [](const LoggedRtpPacket& packet) {
1084 return packet.total_length * 8.0 / 1000.0;
1085 };
terelius53dc23c2017-03-13 05:24:05 -07001086 MovingAverage<LoggedRtpPacket, double>(
Bjorn Terelius068fc352019-02-13 22:38:25 +01001087 GetPacketSizeKilobits, stream.packet_view, config_, &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001088 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -07001089 }
1090
Bjorn Terelius068fc352019-02-13 22:38:25 +01001091 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1092 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -07001093 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001094 plot->SetTitle(GetDirectionAsString(direction) + " bitrate per stream");
terelius54ce6802016-07-13 06:44:41 -07001095}
1096
Bjorn Terelius9775a582019-02-15 17:29:58 +01001097// Plot the bitrate allocation for each temporal and spatial layer.
1098// Computed from RTCP XR target bitrate block, so the graph is only populated if
1099// those are sent.
1100void EventLogAnalyzer::CreateBitrateAllocationGraph(PacketDirection direction,
1101 Plot* plot) {
1102 std::map<LayerDescription, TimeSeries> time_series;
1103 const auto& xr_list = parsed_log_.extended_reports(direction);
1104 for (const auto& rtcp : xr_list) {
1105 const absl::optional<rtcp::TargetBitrate>& target_bitrate =
1106 rtcp.xr.target_bitrate();
1107 if (!target_bitrate.has_value())
1108 continue;
1109 for (const auto& bitrate_item : target_bitrate->GetTargetBitrates()) {
1110 LayerDescription layer(rtcp.xr.sender_ssrc(), bitrate_item.spatial_layer,
1111 bitrate_item.temporal_layer);
1112 auto time_series_it = time_series.find(layer);
1113 if (time_series_it == time_series.end()) {
1114 std::string layer_name = GetLayerName(layer);
1115 bool inserted;
1116 std::tie(time_series_it, inserted) = time_series.insert(
1117 std::make_pair(layer, TimeSeries(layer_name, LineStyle::kStep)));
1118 RTC_DCHECK(inserted);
1119 }
1120 float x = config_.GetCallTimeSec(rtcp.log_time_us());
1121 float y = bitrate_item.target_bitrate_kbps;
1122 time_series_it->second.points.emplace_back(x, y);
1123 }
1124 }
1125 for (auto& layer : time_series) {
1126 plot->AppendTimeSeries(std::move(layer.second));
1127 }
1128 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1129 "Time (s)", kLeftMargin, kRightMargin);
1130 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
1131 if (direction == kIncomingPacket)
1132 plot->SetTitle("Target bitrate per incoming layer");
1133 else
1134 plot->SetTitle("Target bitrate per outgoing layer");
1135}
1136
Sebastian Jansson1175ae02019-03-13 08:56:58 +01001137void EventLogAnalyzer::CreateGoogCcSimulationGraph(Plot* plot) {
1138 TimeSeries target_rates("Simulated target rate", LineStyle::kStep,
1139 PointStyle::kHighlight);
1140 TimeSeries delay_based("Logged delay-based estimate", LineStyle::kStep,
1141 PointStyle::kHighlight);
1142 TimeSeries loss_based("Logged loss-based estimate", LineStyle::kStep,
1143 PointStyle::kHighlight);
1144 TimeSeries probe_results("Logged probe success", LineStyle::kNone,
1145 PointStyle::kHighlight);
1146
Sebastian Jansson1175ae02019-03-13 08:56:58 +01001147 LogBasedNetworkControllerSimulation simulation(
Mirko Bonadei317a1f02019-09-17 17:06:18 +02001148 std::make_unique<GoogCcNetworkControllerFactory>(),
Sebastian Jansson1175ae02019-03-13 08:56:58 +01001149 [&](const NetworkControlUpdate& update, Timestamp at_time) {
1150 if (update.target_rate) {
1151 target_rates.points.emplace_back(
1152 config_.GetCallTimeSec(at_time.us()),
1153 update.target_rate->target_rate.kbps<float>());
1154 }
1155 });
1156
1157 simulation.ProcessEventsInLog(parsed_log_);
1158 for (const auto& logged : parsed_log_.bwe_delay_updates())
1159 delay_based.points.emplace_back(
1160 config_.GetCallTimeSec(logged.log_time_us()),
1161 logged.bitrate_bps / 1000);
1162 for (const auto& logged : parsed_log_.bwe_probe_success_events())
1163 probe_results.points.emplace_back(
1164 config_.GetCallTimeSec(logged.log_time_us()),
1165 logged.bitrate_bps / 1000);
1166 for (const auto& logged : parsed_log_.bwe_loss_updates())
1167 loss_based.points.emplace_back(config_.GetCallTimeSec(logged.log_time_us()),
1168 logged.bitrate_bps / 1000);
1169
1170 plot->AppendTimeSeries(std::move(delay_based));
1171 plot->AppendTimeSeries(std::move(loss_based));
1172 plot->AppendTimeSeries(std::move(probe_results));
1173 plot->AppendTimeSeries(std::move(target_rates));
1174
1175 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1176 "Time (s)", kLeftMargin, kRightMargin);
1177 plot->SetSuggestedYAxis(0, 10, "Bitrate (kbps)", kBottomMargin, kTopMargin);
1178 plot->SetTitle("Simulated BWE behavior");
1179}
1180
Bjorn Terelius28db2662017-10-04 14:22:43 +02001181void EventLogAnalyzer::CreateSendSideBweSimulationGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001182 using RtpPacketType = LoggedRtpPacketOutgoing;
1183 using TransportFeedbackType = LoggedRtcpPacketTransportFeedback;
Stefan Holmer13181032016-07-29 14:48:54 +02001184
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001185 // TODO(terelius): This could be provided by the parser.
1186 std::multimap<int64_t, const RtpPacketType*> outgoing_rtp;
1187 for (const auto& stream : parsed_log_.outgoing_rtp_packets_by_ssrc()) {
1188 for (const RtpPacketType& rtp_packet : stream.outgoing_packets)
1189 outgoing_rtp.insert(
1190 std::make_pair(rtp_packet.rtp.log_time_us(), &rtp_packet));
Stefan Holmer13181032016-07-29 14:48:54 +02001191 }
1192
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001193 const std::vector<TransportFeedbackType>& incoming_rtcp =
1194 parsed_log_.transport_feedbacks(kIncomingPacket);
Stefan Holmer13181032016-07-29 14:48:54 +02001195
1196 SimulatedClock clock(0);
1197 BitrateObserver observer;
Danil Chapovalov83bbe912019-08-07 12:24:53 +02001198 RtcEventLogNull null_event_log;
nisse0245da02016-11-30 03:35:20 -08001199 PacketRouter packet_router;
Stefan Holmer5c8942a2017-08-22 16:16:44 +02001200 PacedSender pacer(&clock, &packet_router, &null_event_log);
Sebastian Jansson05acd2b2019-01-21 13:07:47 +01001201 TransportFeedbackAdapter transport_feedback;
Sebastian Jansson2db5fc02019-04-30 14:17:45 +02001202 auto factory = GoogCcNetworkControllerFactory();
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001203 TimeDelta process_interval = factory.GetProcessInterval();
Stefan Holmer13181032016-07-29 14:48:54 +02001204 // TODO(holmer): Log the call config and use that here instead.
1205 static const uint32_t kDefaultStartBitrateBps = 300000;
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001206 NetworkControllerConfig cc_config;
Danil Chapovalov0c626af2020-02-10 11:16:00 +01001207 cc_config.constraints.at_time = Timestamp::Micros(clock.TimeInMicroseconds());
Danil Chapovalovcad3e0e2020-02-17 18:46:07 +01001208 cc_config.constraints.starting_rate =
1209 DataRate::BitsPerSec(kDefaultStartBitrateBps);
Sebastian Jansson2db5fc02019-04-30 14:17:45 +02001210 cc_config.event_log = &null_event_log;
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001211 auto goog_cc = factory.Create(cc_config);
Stefan Holmer13181032016-07-29 14:48:54 +02001212
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001213 TimeSeries time_series("Delay-based estimate", LineStyle::kStep,
1214 PointStyle::kHighlight);
Björn Tereliusae1892d2020-06-17 11:55:55 +02001215 TimeSeries acked_time_series("Raw acked bitrate", LineStyle::kLine,
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001216 PointStyle::kHighlight);
Björn Tereliusae1892d2020-06-17 11:55:55 +02001217 TimeSeries robust_time_series("Robust throughput estimate", LineStyle::kLine,
1218 PointStyle::kHighlight);
1219 TimeSeries acked_estimate_time_series("Ackednowledged bitrate estimate",
1220 LineStyle::kLine,
1221 PointStyle::kHighlight);
Stefan Holmer13181032016-07-29 14:48:54 +02001222
1223 auto rtp_iterator = outgoing_rtp.begin();
1224 auto rtcp_iterator = incoming_rtcp.begin();
1225
1226 auto NextRtpTime = [&]() {
1227 if (rtp_iterator != outgoing_rtp.end())
1228 return static_cast<int64_t>(rtp_iterator->first);
1229 return std::numeric_limits<int64_t>::max();
1230 };
1231
1232 auto NextRtcpTime = [&]() {
1233 if (rtcp_iterator != incoming_rtcp.end())
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001234 return static_cast<int64_t>(rtcp_iterator->log_time_us());
Stefan Holmer13181032016-07-29 14:48:54 +02001235 return std::numeric_limits<int64_t>::max();
1236 };
Bjorn Tereliusa728c912018-12-06 12:26:30 +01001237 int64_t next_process_time_us_ = std::min({NextRtpTime(), NextRtcpTime()});
Stefan Holmer13181032016-07-29 14:48:54 +02001238
1239 auto NextProcessTime = [&]() {
1240 if (rtcp_iterator != incoming_rtcp.end() ||
1241 rtp_iterator != outgoing_rtp.end()) {
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001242 return next_process_time_us_;
Stefan Holmer13181032016-07-29 14:48:54 +02001243 }
1244 return std::numeric_limits<int64_t>::max();
1245 };
1246
Björn Tereliusae1892d2020-06-17 11:55:55 +02001247 RateStatistics acked_bitrate(750, 8000);
1248 test::ExplicitKeyValueConfig throughput_config(
1249 "WebRTC-Bwe-RobustThroughputEstimatorSettings/"
1250 "enabled:true,reduce_bias:true,assume_shared_link:false,initial_packets:"
1251 "10,min_packets:25,window_duration:750ms,unacked_weight:0.5/");
1252 std::unique_ptr<AcknowledgedBitrateEstimatorInterface>
1253 robust_throughput_estimator(
1254 AcknowledgedBitrateEstimatorInterface::Create(&throughput_config));
1255 FieldTrialBasedConfig field_trial_config;
Björn Terelius251b0dc2019-11-11 21:00:18 +01001256 std::unique_ptr<AcknowledgedBitrateEstimatorInterface>
1257 acknowledged_bitrate_estimator(
Björn Tereliusae1892d2020-06-17 11:55:55 +02001258 AcknowledgedBitrateEstimatorInterface::Create(&field_trial_config));
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001259 int64_t time_us =
1260 std::min({NextRtpTime(), NextRtcpTime(), NextProcessTime()});
Stefan Holmer492ee282016-10-27 17:19:20 +02001261 int64_t last_update_us = 0;
Stefan Holmer13181032016-07-29 14:48:54 +02001262 while (time_us != std::numeric_limits<int64_t>::max()) {
1263 clock.AdvanceTimeMicroseconds(time_us - clock.TimeInMicroseconds());
Bjorn Tereliusc60a7772018-12-05 21:15:30 +01001264 if (clock.TimeInMicroseconds() >= NextRtpTime()) {
1265 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtpTime());
1266 const RtpPacketType& rtp_packet = *rtp_iterator->second;
1267 if (rtp_packet.rtp.header.extension.hasTransportSequenceNumber) {
Erik Språng30a276b2019-04-23 12:00:11 +02001268 RtpPacketSendInfo packet_info;
1269 packet_info.ssrc = rtp_packet.rtp.header.ssrc;
Bjorn Tereliusf2e9cab2019-05-27 16:44:09 +02001270 packet_info.transport_sequence_number =
Erik Språng30a276b2019-04-23 12:00:11 +02001271 rtp_packet.rtp.header.extension.transportSequenceNumber;
1272 packet_info.rtp_sequence_number = rtp_packet.rtp.header.sequenceNumber;
Erik Språng30a276b2019-04-23 12:00:11 +02001273 packet_info.length = rtp_packet.rtp.total_length;
Björn Tereliusae1892d2020-06-17 11:55:55 +02001274 if (IsRtxSsrc(parsed_log_, PacketDirection::kOutgoingPacket,
1275 rtp_packet.rtp.header.ssrc)) {
1276 // Don't set the optional media type as we don't know if it is
1277 // a retransmission, FEC or padding.
1278 } else if (IsVideoSsrc(parsed_log_, PacketDirection::kOutgoingPacket,
1279 rtp_packet.rtp.header.ssrc)) {
1280 packet_info.packet_type = RtpPacketMediaType::kVideo;
1281 } else if (IsAudioSsrc(parsed_log_, PacketDirection::kOutgoingPacket,
1282 rtp_packet.rtp.header.ssrc)) {
1283 packet_info.packet_type = RtpPacketMediaType::kAudio;
1284 }
Bjorn Tereliusc60a7772018-12-05 21:15:30 +01001285 transport_feedback.AddPacket(
Erik Språng30a276b2019-04-23 12:00:11 +02001286 packet_info,
1287 0u, // Per packet overhead bytes.
Danil Chapovalov0c626af2020-02-10 11:16:00 +01001288 Timestamp::Micros(rtp_packet.rtp.log_time_us()));
Bjorn Tereliusc60a7772018-12-05 21:15:30 +01001289 }
Björn Tereliusae1892d2020-06-17 11:55:55 +02001290 rtc::SentPacket sent_packet;
1291 sent_packet.send_time_ms = rtp_packet.rtp.log_time_ms();
1292 sent_packet.info.included_in_allocation = true;
1293 sent_packet.info.packet_size_bytes = rtp_packet.rtp.total_length;
1294 if (rtp_packet.rtp.header.extension.hasTransportSequenceNumber) {
1295 sent_packet.packet_id =
1296 rtp_packet.rtp.header.extension.transportSequenceNumber;
1297 sent_packet.info.included_in_feedback = true;
1298 }
1299 auto sent_msg = transport_feedback.ProcessSentPacket(sent_packet);
1300 if (sent_msg)
1301 observer.Update(goog_cc->OnSentPacket(*sent_msg));
Bjorn Tereliusc60a7772018-12-05 21:15:30 +01001302 ++rtp_iterator;
1303 }
Stefan Holmer13181032016-07-29 14:48:54 +02001304 if (clock.TimeInMicroseconds() >= NextRtcpTime()) {
stefanc3de0332016-08-02 07:22:17 -07001305 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtcpTime());
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001306
1307 auto feedback_msg = transport_feedback.ProcessTransportFeedback(
Sebastian Jansson05acd2b2019-01-21 13:07:47 +01001308 rtcp_iterator->transport_feedback,
Danil Chapovalov0c626af2020-02-10 11:16:00 +01001309 Timestamp::Millis(clock.TimeInMilliseconds()));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001310 absl::optional<uint32_t> bitrate_bps;
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001311 if (feedback_msg) {
1312 observer.Update(goog_cc->OnTransportPacketsFeedback(*feedback_msg));
Sebastian Jansson88290ae2019-06-20 12:26:31 +02001313 std::vector<PacketResult> feedback =
1314 feedback_msg->SortedByReceiveTime();
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001315 if (!feedback.empty()) {
Björn Terelius251b0dc2019-11-11 21:00:18 +01001316 acknowledged_bitrate_estimator->IncomingPacketFeedbackVector(
1317 feedback);
Björn Tereliusae1892d2020-06-17 11:55:55 +02001318 robust_throughput_estimator->IncomingPacketFeedbackVector(feedback);
1319 for (const PacketResult& packet : feedback) {
Sebastian Jansson88290ae2019-06-20 12:26:31 +02001320 acked_bitrate.Update(packet.sent_packet.size.bytes(),
1321 packet.receive_time.ms());
Björn Tereliusae1892d2020-06-17 11:55:55 +02001322 }
Sebastian Jansson88290ae2019-06-20 12:26:31 +02001323 bitrate_bps = acked_bitrate.Rate(feedback.back().receive_time.ms());
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001324 }
Stefan Holmer13181032016-07-29 14:48:54 +02001325 }
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001326
Bjorn Terelius068fc352019-02-13 22:38:25 +01001327 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001328 float y = bitrate_bps.value_or(0) / 1000;
1329 acked_time_series.points.emplace_back(x, y);
Björn Tereliusae1892d2020-06-17 11:55:55 +02001330 y = robust_throughput_estimator->bitrate()
1331 .value_or(DataRate::Zero())
1332 .kbps();
1333 robust_time_series.points.emplace_back(x, y);
Björn Terelius251b0dc2019-11-11 21:00:18 +01001334 y = acknowledged_bitrate_estimator->bitrate()
Sebastian Jansson88290ae2019-06-20 12:26:31 +02001335 .value_or(DataRate::Zero())
1336 .kbps();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001337 acked_estimate_time_series.points.emplace_back(x, y);
Stefan Holmer13181032016-07-29 14:48:54 +02001338 ++rtcp_iterator;
1339 }
stefanc3de0332016-08-02 07:22:17 -07001340 if (clock.TimeInMicroseconds() >= NextProcessTime()) {
1341 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextProcessTime());
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001342 ProcessInterval msg;
Danil Chapovalov0c626af2020-02-10 11:16:00 +01001343 msg.at_time = Timestamp::Micros(clock.TimeInMicroseconds());
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001344 observer.Update(goog_cc->OnProcessInterval(msg));
1345 next_process_time_us_ += process_interval.us();
stefanc3de0332016-08-02 07:22:17 -07001346 }
Stefan Holmer492ee282016-10-27 17:19:20 +02001347 if (observer.GetAndResetBitrateUpdated() ||
1348 time_us - last_update_us >= 1e6) {
Stefan Holmer13181032016-07-29 14:48:54 +02001349 uint32_t y = observer.last_bitrate_bps() / 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001350 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Stefan Holmer13181032016-07-29 14:48:54 +02001351 time_series.points.emplace_back(x, y);
Stefan Holmer492ee282016-10-27 17:19:20 +02001352 last_update_us = time_us;
Stefan Holmer13181032016-07-29 14:48:54 +02001353 }
1354 time_us = std::min({NextRtpTime(), NextRtcpTime(), NextProcessTime()});
1355 }
1356 // Add the data set to the plot.
philipel35ba9bd2017-04-19 05:58:51 -07001357 plot->AppendTimeSeries(std::move(time_series));
Björn Tereliusae1892d2020-06-17 11:55:55 +02001358 plot->AppendTimeSeries(std::move(robust_time_series));
philipel35ba9bd2017-04-19 05:58:51 -07001359 plot->AppendTimeSeries(std::move(acked_time_series));
Bjorn Terelius6984ad22017-10-24 12:19:45 +02001360 plot->AppendTimeSeriesIfNotEmpty(std::move(acked_estimate_time_series));
Stefan Holmer13181032016-07-29 14:48:54 +02001361
Bjorn Terelius068fc352019-02-13 22:38:25 +01001362 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1363 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -07001364 plot->SetSuggestedYAxis(0, 10, "Bitrate (kbps)", kBottomMargin, kTopMargin);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001365 plot->SetTitle("Simulated send-side BWE behavior");
1366}
1367
1368void EventLogAnalyzer::CreateReceiveSideBweSimulationGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001369 using RtpPacketType = LoggedRtpPacketIncoming;
Bjorn Terelius28db2662017-10-04 14:22:43 +02001370 class RembInterceptingPacketRouter : public PacketRouter {
1371 public:
1372 void OnReceiveBitrateChanged(const std::vector<uint32_t>& ssrcs,
1373 uint32_t bitrate_bps) override {
1374 last_bitrate_bps_ = bitrate_bps;
1375 bitrate_updated_ = true;
1376 PacketRouter::OnReceiveBitrateChanged(ssrcs, bitrate_bps);
1377 }
1378 uint32_t last_bitrate_bps() const { return last_bitrate_bps_; }
1379 bool GetAndResetBitrateUpdated() {
1380 bool bitrate_updated = bitrate_updated_;
1381 bitrate_updated_ = false;
1382 return bitrate_updated;
1383 }
1384
1385 private:
Bjorn Terelius571e1302020-06-09 10:29:09 +02001386 // We don't know the start bitrate, but assume that it is the default 300
1387 // kbps.
1388 uint32_t last_bitrate_bps_ = 300000;
1389 bool bitrate_updated_ = false;
Bjorn Terelius28db2662017-10-04 14:22:43 +02001390 };
1391
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001392 std::multimap<int64_t, const RtpPacketType*> incoming_rtp;
Bjorn Terelius28db2662017-10-04 14:22:43 +02001393
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001394 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
Bjorn Terelius48b82792020-05-19 10:57:24 +02001395 if (IsVideoSsrc(parsed_log_, kIncomingPacket, stream.ssrc)) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001396 for (const auto& rtp_packet : stream.incoming_packets)
1397 incoming_rtp.insert(
1398 std::make_pair(rtp_packet.rtp.log_time_us(), &rtp_packet));
Bjorn Terelius28db2662017-10-04 14:22:43 +02001399 }
1400 }
1401
1402 SimulatedClock clock(0);
1403 RembInterceptingPacketRouter packet_router;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001404 // TODO(terelius): The PacketRouter is used as the RemoteBitrateObserver.
Bjorn Terelius28db2662017-10-04 14:22:43 +02001405 // Is this intentional?
1406 ReceiveSideCongestionController rscc(&clock, &packet_router);
1407 // TODO(holmer): Log the call config and use that here instead.
1408 // static const uint32_t kDefaultStartBitrateBps = 300000;
1409 // rscc.SetBweBitrates(0, kDefaultStartBitrateBps, -1);
1410
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001411 TimeSeries time_series("Receive side estimate", LineStyle::kLine,
1412 PointStyle::kHighlight);
1413 TimeSeries acked_time_series("Received bitrate", LineStyle::kLine);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001414
1415 RateStatistics acked_bitrate(250, 8000);
1416 int64_t last_update_us = 0;
1417 for (const auto& kv : incoming_rtp) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001418 const RtpPacketType& packet = *kv.second;
1419 int64_t arrival_time_ms = packet.rtp.log_time_us() / 1000;
1420 size_t payload = packet.rtp.total_length; /*Should subtract header?*/
1421 clock.AdvanceTimeMicroseconds(packet.rtp.log_time_us() -
Bjorn Terelius28db2662017-10-04 14:22:43 +02001422 clock.TimeInMicroseconds());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001423 rscc.OnReceivedPacket(arrival_time_ms, payload, packet.rtp.header);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001424 acked_bitrate.Update(payload, arrival_time_ms);
Danil Chapovalov431abd92018-06-18 12:54:17 +02001425 absl::optional<uint32_t> bitrate_bps = acked_bitrate.Rate(arrival_time_ms);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001426 if (bitrate_bps) {
1427 uint32_t y = *bitrate_bps / 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001428 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Bjorn Terelius28db2662017-10-04 14:22:43 +02001429 acked_time_series.points.emplace_back(x, y);
1430 }
1431 if (packet_router.GetAndResetBitrateUpdated() ||
1432 clock.TimeInMicroseconds() - last_update_us >= 1e6) {
1433 uint32_t y = packet_router.last_bitrate_bps() / 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001434 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Bjorn Terelius28db2662017-10-04 14:22:43 +02001435 time_series.points.emplace_back(x, y);
1436 last_update_us = clock.TimeInMicroseconds();
1437 }
1438 }
1439 // Add the data set to the plot.
1440 plot->AppendTimeSeries(std::move(time_series));
1441 plot->AppendTimeSeries(std::move(acked_time_series));
1442
Bjorn Terelius068fc352019-02-13 22:38:25 +01001443 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1444 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001445 plot->SetSuggestedYAxis(0, 10, "Bitrate (kbps)", kBottomMargin, kTopMargin);
1446 plot->SetTitle("Simulated receive-side BWE behavior");
Stefan Holmer13181032016-07-29 14:48:54 +02001447}
1448
tereliuse34c19c2016-08-15 08:47:14 -07001449void EventLogAnalyzer::CreateNetworkDelayFeedbackGraph(Plot* plot) {
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001450 TimeSeries time_series("Network delay", LineStyle::kLine,
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001451 PointStyle::kHighlight);
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001452 int64_t min_send_receive_diff_ms = std::numeric_limits<int64_t>::max();
1453 int64_t min_rtt_ms = std::numeric_limits<int64_t>::max();
stefanc3de0332016-08-02 07:22:17 -07001454
stefana0a8ed72017-09-06 02:06:32 -07001455 int64_t prev_y = 0;
Björn Tereliusc69c1bb2019-10-11 15:06:58 +02001456 std::vector<MatchedSendArrivalTimes> matched_rtp_rtcp =
1457 GetNetworkTrace(parsed_log_);
1458 absl::c_stable_sort(matched_rtp_rtcp, [](const MatchedSendArrivalTimes& a,
1459 const MatchedSendArrivalTimes& b) {
philipel3574d052019-11-18 14:38:13 +01001460 return a.feedback_arrival_time_ms < b.feedback_arrival_time_ms ||
1461 (a.feedback_arrival_time_ms == b.feedback_arrival_time_ms &&
1462 a.arrival_time_ms < b.arrival_time_ms);
Björn Tereliusc69c1bb2019-10-11 15:06:58 +02001463 });
1464 for (const auto& packet : matched_rtp_rtcp) {
Sebastian Jansson74f96ec2019-10-29 12:57:54 +01001465 if (packet.arrival_time_ms == MatchedSendArrivalTimes::kNotReceived)
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001466 continue;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001467 float x = config_.GetCallTimeSec(1000 * packet.feedback_arrival_time_ms);
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001468 int64_t y = packet.arrival_time_ms - packet.send_time_ms;
1469 prev_y = y;
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001470 int64_t rtt_ms = packet.feedback_arrival_time_ms - packet.send_time_ms;
1471 min_rtt_ms = std::min(rtt_ms, min_rtt_ms);
1472 min_send_receive_diff_ms = std::min(y, min_send_receive_diff_ms);
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001473 time_series.points.emplace_back(x, y);
stefanc3de0332016-08-02 07:22:17 -07001474 }
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001475
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001476 // We assume that the base network delay (w/o queues) is equal to half
1477 // the minimum RTT. Therefore rescale the delays by subtracting the minimum
Mirko Bonadei604e75c2019-07-25 11:55:47 +02001478 // observed 1-ways delay and add half the minimum RTT.
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001479 const int64_t estimated_clock_offset_ms =
1480 min_send_receive_diff_ms - min_rtt_ms / 2;
stefanc3de0332016-08-02 07:22:17 -07001481 for (TimeSeriesPoint& point : time_series.points)
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001482 point.y -= estimated_clock_offset_ms;
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001483
stefanc3de0332016-08-02 07:22:17 -07001484 // Add the data set to the plot.
stefana0a8ed72017-09-06 02:06:32 -07001485 plot->AppendTimeSeriesIfNotEmpty(std::move(time_series));
stefanc3de0332016-08-02 07:22:17 -07001486
Bjorn Terelius068fc352019-02-13 22:38:25 +01001487 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1488 "Time (s)", kLeftMargin, kRightMargin);
stefanc3de0332016-08-02 07:22:17 -07001489 plot->SetSuggestedYAxis(0, 10, "Delay (ms)", kBottomMargin, kTopMargin);
Konrad Hofbauer5be3bbd2019-01-21 12:31:07 +01001490 plot->SetTitle("Outgoing network delay (based on per-packet feedback)");
stefanc3de0332016-08-02 07:22:17 -07001491}
stefan08383272016-12-20 08:51:52 -08001492
Bjorn Terelius0295a962017-10-25 17:42:41 +02001493void EventLogAnalyzer::CreatePacerDelayGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001494 for (const auto& stream : parsed_log_.outgoing_rtp_packets_by_ssrc()) {
1495 const std::vector<LoggedRtpPacketOutgoing>& packets =
1496 stream.outgoing_packets;
Bjorn Terelius0295a962017-10-25 17:42:41 +02001497
Bjorn Terelius48b82792020-05-19 10:57:24 +02001498 if (IsRtxSsrc(parsed_log_, kOutgoingPacket, stream.ssrc)) {
Konrad Hofbauerbfb735b2019-04-16 11:12:11 +02001499 continue;
1500 }
1501
Bjorn Terelius0295a962017-10-25 17:42:41 +02001502 if (packets.size() < 2) {
Mirko Bonadei675513b2017-11-09 11:09:25 +01001503 RTC_LOG(LS_WARNING)
1504 << "Can't estimate a the RTP clock frequency or the "
1505 "pacer delay with less than 2 packets in the stream";
Bjorn Terelius0295a962017-10-25 17:42:41 +02001506 continue;
1507 }
Björn Terelius0d1b28c2020-05-27 20:25:06 +02001508 int64_t segment_end_us = parsed_log_.first_log_segment().stop_time_us();
Danil Chapovalov431abd92018-06-18 12:54:17 +02001509 absl::optional<uint32_t> estimated_frequency =
Bjorn Terelius48b82792020-05-19 10:57:24 +02001510 EstimateRtpClockFrequency(packets, segment_end_us);
Bjorn Terelius0295a962017-10-25 17:42:41 +02001511 if (!estimated_frequency)
1512 continue;
Bjorn Terelius48b82792020-05-19 10:57:24 +02001513 if (IsVideoSsrc(parsed_log_, kOutgoingPacket, stream.ssrc) &&
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001514 *estimated_frequency != 90000) {
Mirko Bonadei675513b2017-11-09 11:09:25 +01001515 RTC_LOG(LS_WARNING)
Bjorn Terelius0295a962017-10-25 17:42:41 +02001516 << "Video stream should use a 90 kHz clock but appears to use "
1517 << *estimated_frequency / 1000 << ". Discarding.";
1518 continue;
1519 }
1520
1521 TimeSeries pacer_delay_series(
Bjorn Terelius48b82792020-05-19 10:57:24 +02001522 GetStreamName(parsed_log_, kOutgoingPacket, stream.ssrc) + "(" +
Bjorn Terelius0295a962017-10-25 17:42:41 +02001523 std::to_string(*estimated_frequency / 1000) + " kHz)",
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001524 LineStyle::kLine, PointStyle::kHighlight);
Bjorn Terelius0295a962017-10-25 17:42:41 +02001525 SeqNumUnwrapper<uint32_t> timestamp_unwrapper;
1526 uint64_t first_capture_timestamp =
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001527 timestamp_unwrapper.Unwrap(packets.front().rtp.header.timestamp);
1528 uint64_t first_send_timestamp = packets.front().rtp.log_time_us();
1529 for (const auto& packet : packets) {
Bjorn Terelius0295a962017-10-25 17:42:41 +02001530 double capture_time_ms = (static_cast<double>(timestamp_unwrapper.Unwrap(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001531 packet.rtp.header.timestamp)) -
Bjorn Terelius0295a962017-10-25 17:42:41 +02001532 first_capture_timestamp) /
1533 *estimated_frequency * 1000;
1534 double send_time_ms =
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001535 static_cast<double>(packet.rtp.log_time_us() - first_send_timestamp) /
1536 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001537 float x = config_.GetCallTimeSec(packet.rtp.log_time_us());
Bjorn Terelius0295a962017-10-25 17:42:41 +02001538 float y = send_time_ms - capture_time_ms;
1539 pacer_delay_series.points.emplace_back(x, y);
1540 }
1541 plot->AppendTimeSeries(std::move(pacer_delay_series));
1542 }
1543
Bjorn Terelius068fc352019-02-13 22:38:25 +01001544 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1545 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Terelius0295a962017-10-25 17:42:41 +02001546 plot->SetSuggestedYAxis(0, 10, "Pacer delay (ms)", kBottomMargin, kTopMargin);
1547 plot->SetTitle(
1548 "Delay from capture to send time. (First packet normalized to 0.)");
1549}
1550
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001551void EventLogAnalyzer::CreateTimestampGraph(PacketDirection direction,
1552 Plot* plot) {
1553 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
1554 TimeSeries rtp_timestamps(
Bjorn Terelius48b82792020-05-19 10:57:24 +02001555 GetStreamName(parsed_log_, direction, stream.ssrc) + " capture-time",
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001556 LineStyle::kLine, PointStyle::kHighlight);
1557 for (const auto& packet : stream.packet_view) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001558 float x = config_.GetCallTimeSec(packet.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001559 float y = packet.header.timestamp;
1560 rtp_timestamps.points.emplace_back(x, y);
stefane372d3c2017-02-02 08:04:18 -08001561 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001562 plot->AppendTimeSeries(std::move(rtp_timestamps));
Björn Tereliusff612732018-04-25 14:23:01 +00001563
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001564 TimeSeries rtcp_timestamps(
Bjorn Terelius48b82792020-05-19 10:57:24 +02001565 GetStreamName(parsed_log_, direction, stream.ssrc) +
1566 " rtcp capture-time",
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001567 LineStyle::kLine, PointStyle::kHighlight);
1568 // TODO(terelius): Why only sender reports?
1569 const auto& sender_reports = parsed_log_.sender_reports(direction);
1570 for (const auto& rtcp : sender_reports) {
1571 if (rtcp.sr.sender_ssrc() != stream.ssrc)
1572 continue;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001573 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001574 float y = rtcp.sr.rtp_timestamp();
1575 rtcp_timestamps.points.emplace_back(x, y);
Björn Tereliusff612732018-04-25 14:23:01 +00001576 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001577 plot->AppendTimeSeriesIfNotEmpty(std::move(rtcp_timestamps));
stefane372d3c2017-02-02 08:04:18 -08001578 }
1579
Bjorn Terelius068fc352019-02-13 22:38:25 +01001580 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1581 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001582 plot->SetSuggestedYAxis(0, 1, "RTP timestamp", kBottomMargin, kTopMargin);
1583 plot->SetTitle(GetDirectionAsString(direction) + " timestamps");
stefane372d3c2017-02-02 08:04:18 -08001584}
michaelt6e5b2192017-02-22 07:33:27 -08001585
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001586void EventLogAnalyzer::CreateSenderAndReceiverReportPlot(
1587 PacketDirection direction,
1588 rtc::FunctionView<float(const rtcp::ReportBlock&)> fy,
1589 std::string title,
1590 std::string yaxis_label,
1591 Plot* plot) {
1592 std::map<uint32_t, TimeSeries> sr_reports_by_ssrc;
1593 const auto& sender_reports = parsed_log_.sender_reports(direction);
1594 for (const auto& rtcp : sender_reports) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001595 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001596 uint32_t ssrc = rtcp.sr.sender_ssrc();
1597 for (const auto& block : rtcp.sr.report_blocks()) {
1598 float y = fy(block);
1599 auto sr_report_it = sr_reports_by_ssrc.find(ssrc);
1600 bool inserted;
1601 if (sr_report_it == sr_reports_by_ssrc.end()) {
1602 std::tie(sr_report_it, inserted) = sr_reports_by_ssrc.emplace(
Bjorn Terelius48b82792020-05-19 10:57:24 +02001603 ssrc, TimeSeries(GetStreamName(parsed_log_, direction, ssrc) +
1604 " Sender Reports",
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001605 LineStyle::kLine, PointStyle::kHighlight));
1606 }
1607 sr_report_it->second.points.emplace_back(x, y);
1608 }
1609 }
1610 for (auto& kv : sr_reports_by_ssrc) {
1611 plot->AppendTimeSeries(std::move(kv.second));
1612 }
1613
1614 std::map<uint32_t, TimeSeries> rr_reports_by_ssrc;
1615 const auto& receiver_reports = parsed_log_.receiver_reports(direction);
1616 for (const auto& rtcp : receiver_reports) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001617 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001618 uint32_t ssrc = rtcp.rr.sender_ssrc();
1619 for (const auto& block : rtcp.rr.report_blocks()) {
1620 float y = fy(block);
1621 auto rr_report_it = rr_reports_by_ssrc.find(ssrc);
1622 bool inserted;
1623 if (rr_report_it == rr_reports_by_ssrc.end()) {
1624 std::tie(rr_report_it, inserted) = rr_reports_by_ssrc.emplace(
Bjorn Terelius48b82792020-05-19 10:57:24 +02001625 ssrc, TimeSeries(GetStreamName(parsed_log_, direction, ssrc) +
1626 " Receiver Reports",
1627 LineStyle::kLine, PointStyle::kHighlight));
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001628 }
1629 rr_report_it->second.points.emplace_back(x, y);
1630 }
1631 }
1632 for (auto& kv : rr_reports_by_ssrc) {
1633 plot->AppendTimeSeries(std::move(kv.second));
1634 }
1635
Bjorn Terelius068fc352019-02-13 22:38:25 +01001636 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1637 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001638 plot->SetSuggestedYAxis(0, 1, yaxis_label, kBottomMargin, kTopMargin);
1639 plot->SetTitle(title);
1640}
1641
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001642void EventLogAnalyzer::CreateIceCandidatePairConfigGraph(Plot* plot) {
1643 std::map<uint32_t, TimeSeries> configs_by_cp_id;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001644 for (const auto& config : parsed_log_.ice_candidate_pair_configs()) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001645 if (configs_by_cp_id.find(config.candidate_pair_id) ==
1646 configs_by_cp_id.end()) {
1647 const std::string candidate_pair_desc =
1648 GetCandidatePairLogDescriptionAsString(config);
Qingsi Wang93a84392018-01-30 17:13:09 -08001649 configs_by_cp_id[config.candidate_pair_id] =
1650 TimeSeries("[" + std::to_string(config.candidate_pair_id) + "]" +
1651 candidate_pair_desc,
1652 LineStyle::kNone, PointStyle::kHighlight);
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001653 candidate_pair_desc_by_id_[config.candidate_pair_id] =
1654 candidate_pair_desc;
1655 }
Bjorn Terelius068fc352019-02-13 22:38:25 +01001656 float x = config_.GetCallTimeSec(config.log_time_us());
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001657 float y = static_cast<float>(config.type);
1658 configs_by_cp_id[config.candidate_pair_id].points.emplace_back(x, y);
1659 }
1660
1661 // TODO(qingsi): There can be a large number of candidate pairs generated by
1662 // certain calls and the frontend cannot render the chart in this case due to
1663 // the failure of generating a palette with the same number of colors.
1664 for (auto& kv : configs_by_cp_id) {
1665 plot->AppendTimeSeries(std::move(kv.second));
1666 }
1667
Bjorn Terelius068fc352019-02-13 22:38:25 +01001668 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1669 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001670 plot->SetSuggestedYAxis(0, 3, "Config Type", kBottomMargin, kTopMargin);
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001671 plot->SetTitle("[IceEventLog] ICE candidate pair configs");
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001672 plot->SetYAxisTickLabels(
1673 {{static_cast<float>(IceCandidatePairConfigType::kAdded), "ADDED"},
1674 {static_cast<float>(IceCandidatePairConfigType::kUpdated), "UPDATED"},
1675 {static_cast<float>(IceCandidatePairConfigType::kDestroyed),
1676 "DESTROYED"},
1677 {static_cast<float>(IceCandidatePairConfigType::kSelected),
1678 "SELECTED"}});
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001679}
1680
1681std::string EventLogAnalyzer::GetCandidatePairLogDescriptionFromId(
1682 uint32_t candidate_pair_id) {
1683 if (candidate_pair_desc_by_id_.find(candidate_pair_id) !=
1684 candidate_pair_desc_by_id_.end()) {
1685 return candidate_pair_desc_by_id_[candidate_pair_id];
1686 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001687 for (const auto& config : parsed_log_.ice_candidate_pair_configs()) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001688 // TODO(qingsi): Add the handling of the "Updated" config event after the
1689 // visualization of property change for candidate pairs is introduced.
1690 if (candidate_pair_desc_by_id_.find(config.candidate_pair_id) ==
1691 candidate_pair_desc_by_id_.end()) {
1692 const std::string candidate_pair_desc =
1693 GetCandidatePairLogDescriptionAsString(config);
1694 candidate_pair_desc_by_id_[config.candidate_pair_id] =
1695 candidate_pair_desc;
1696 }
1697 }
1698 return candidate_pair_desc_by_id_[candidate_pair_id];
1699}
1700
1701void EventLogAnalyzer::CreateIceConnectivityCheckGraph(Plot* plot) {
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001702 constexpr int kEventTypeOffset =
1703 static_cast<int>(IceCandidatePairConfigType::kNumValues);
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001704 std::map<uint32_t, TimeSeries> checks_by_cp_id;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001705 for (const auto& event : parsed_log_.ice_candidate_pair_events()) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001706 if (checks_by_cp_id.find(event.candidate_pair_id) ==
1707 checks_by_cp_id.end()) {
1708 checks_by_cp_id[event.candidate_pair_id] = TimeSeries(
Qingsi Wang93a84392018-01-30 17:13:09 -08001709 "[" + std::to_string(event.candidate_pair_id) + "]" +
1710 GetCandidatePairLogDescriptionFromId(event.candidate_pair_id),
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001711 LineStyle::kNone, PointStyle::kHighlight);
1712 }
Bjorn Terelius068fc352019-02-13 22:38:25 +01001713 float x = config_.GetCallTimeSec(event.log_time_us());
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001714 float y = static_cast<float>(event.type) + kEventTypeOffset;
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001715 checks_by_cp_id[event.candidate_pair_id].points.emplace_back(x, y);
1716 }
1717
1718 // TODO(qingsi): The same issue as in CreateIceCandidatePairConfigGraph.
1719 for (auto& kv : checks_by_cp_id) {
1720 plot->AppendTimeSeries(std::move(kv.second));
1721 }
1722
Bjorn Terelius068fc352019-02-13 22:38:25 +01001723 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1724 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001725 plot->SetSuggestedYAxis(0, 4, "Connectivity State", kBottomMargin,
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001726 kTopMargin);
1727 plot->SetTitle("[IceEventLog] ICE connectivity checks");
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001728
1729 plot->SetYAxisTickLabels(
1730 {{static_cast<float>(IceCandidatePairEventType::kCheckSent) +
1731 kEventTypeOffset,
1732 "CHECK SENT"},
1733 {static_cast<float>(IceCandidatePairEventType::kCheckReceived) +
1734 kEventTypeOffset,
1735 "CHECK RECEIVED"},
1736 {static_cast<float>(IceCandidatePairEventType::kCheckResponseSent) +
1737 kEventTypeOffset,
1738 "RESPONSE SENT"},
1739 {static_cast<float>(IceCandidatePairEventType::kCheckResponseReceived) +
1740 kEventTypeOffset,
1741 "RESPONSE RECEIVED"}});
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001742}
1743
Zach Stein10a58012018-12-07 12:26:28 -08001744void EventLogAnalyzer::CreateDtlsTransportStateGraph(Plot* plot) {
1745 TimeSeries states("DTLS Transport State", LineStyle::kNone,
1746 PointStyle::kHighlight);
1747 for (const auto& event : parsed_log_.dtls_transport_states()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001748 float x = config_.GetCallTimeSec(event.log_time_us());
Zach Stein10a58012018-12-07 12:26:28 -08001749 float y = static_cast<float>(event.dtls_transport_state);
1750 states.points.emplace_back(x, y);
1751 }
1752 plot->AppendTimeSeries(std::move(states));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001753 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1754 "Time (s)", kLeftMargin, kRightMargin);
Zach Stein10a58012018-12-07 12:26:28 -08001755 plot->SetSuggestedYAxis(0, static_cast<float>(DtlsTransportState::kNumValues),
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001756 "Transport State", kBottomMargin, kTopMargin);
Zach Stein10a58012018-12-07 12:26:28 -08001757 plot->SetTitle("DTLS Transport State");
Bjorn Tereliusf640b872019-07-24 15:46:39 +02001758 plot->SetYAxisTickLabels(
1759 {{static_cast<float>(DtlsTransportState::kNew), "NEW"},
1760 {static_cast<float>(DtlsTransportState::kConnecting), "CONNECTING"},
1761 {static_cast<float>(DtlsTransportState::kConnected), "CONNECTED"},
1762 {static_cast<float>(DtlsTransportState::kClosed), "CLOSED"},
1763 {static_cast<float>(DtlsTransportState::kFailed), "FAILED"}});
Zach Stein10a58012018-12-07 12:26:28 -08001764}
1765
1766void EventLogAnalyzer::CreateDtlsWritableStateGraph(Plot* plot) {
1767 TimeSeries writable("DTLS Writable", LineStyle::kNone,
1768 PointStyle::kHighlight);
1769 for (const auto& event : parsed_log_.dtls_writable_states()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001770 float x = config_.GetCallTimeSec(event.log_time_us());
Zach Stein10a58012018-12-07 12:26:28 -08001771 float y = static_cast<float>(event.writable);
1772 writable.points.emplace_back(x, y);
1773 }
1774 plot->AppendTimeSeries(std::move(writable));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001775 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1776 "Time (s)", kLeftMargin, kRightMargin);
Zach Stein10a58012018-12-07 12:26:28 -08001777 plot->SetSuggestedYAxis(0, 1, "Writable", kBottomMargin, kTopMargin);
1778 plot->SetTitle("DTLS Writable State");
1779}
1780
terelius54ce6802016-07-13 06:44:41 -07001781} // namespace webrtc