blob: 48cfbff24b5038e3a04c8e82dbf301d6668da13e [file] [log] [blame]
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 Bonadei92ea95e2017-09-15 06:47:31 +020011#include "rtc_tools/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>
terelius54ce6802016-07-13 06:44:41 -070017#include <string>
18#include <utility>
19
Karl Wiberg918f50c2018-07-05 11:40:33 +020020#include "absl/memory/memory.h"
Bjorn Terelius6c4b1b72019-01-11 13:01:29 +010021#include "absl/strings/string_view.h"
Sebastian Jansson95edb032019-01-17 16:24:12 +010022#include "api/transport/field_trial_based_config.h"
Sebastian Jansson5c94f552018-10-15 18:46:51 +020023#include "api/transport/goog_cc_factory.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020024#include "call/audio_receive_stream.h"
25#include "call/audio_send_stream.h"
26#include "call/call.h"
27#include "call/video_receive_stream.h"
28#include "call/video_send_stream.h"
Mirko Bonadei71207422017-09-15 13:58:09 +020029#include "common_types.h" // NOLINT(build/include)
Elad Alon99a81b62017-09-21 10:25:29 +020030#include "logging/rtc_event_log/rtc_stream_config.h"
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +020031#include "modules/audio_coding/audio_network_adaptor/include/audio_network_adaptor.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020032#include "modules/audio_coding/neteq/tools/audio_sink.h"
33#include "modules/audio_coding/neteq/tools/fake_decode_from_file.h"
34#include "modules/audio_coding/neteq/tools/neteq_delay_analyzer.h"
35#include "modules/audio_coding/neteq/tools/neteq_replacement_input.h"
36#include "modules/audio_coding/neteq/tools/neteq_test.h"
37#include "modules/audio_coding/neteq/tools/resample_input_audio_file.h"
Sebastian Jansson172fd852018-05-24 14:17:06 +020038#include "modules/congestion_controller/goog_cc/acknowledged_bitrate_estimator.h"
39#include "modules/congestion_controller/goog_cc/bitrate_estimator.h"
Sebastian Jansson04b18cb2018-07-02 09:25:25 +020040#include "modules/congestion_controller/goog_cc/delay_based_bwe.h"
Bjorn Terelius28db2662017-10-04 14:22:43 +020041#include "modules/congestion_controller/include/receive_side_congestion_controller.h"
Sebastian Jansson5c94f552018-10-15 18:46:51 +020042#include "modules/congestion_controller/rtp/transport_feedback_adapter.h"
Niels Möllerfd6c0912017-10-31 10:19:10 +010043#include "modules/pacing/packet_router.h"
Sebastian Jansson5c94f552018-10-15 18:46:51 +020044#include "modules/remote_bitrate_estimator/include/bwe_defines.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020045#include "modules/rtp_rtcp/include/rtp_rtcp.h"
46#include "modules/rtp_rtcp/include/rtp_rtcp_defines.h"
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +020047#include "modules/rtp_rtcp/source/rtcp_packet.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020048#include "modules/rtp_rtcp/source/rtcp_packet/common_header.h"
49#include "modules/rtp_rtcp/source/rtcp_packet/receiver_report.h"
50#include "modules/rtp_rtcp/source/rtcp_packet/remb.h"
51#include "modules/rtp_rtcp/source/rtcp_packet/sender_report.h"
52#include "modules/rtp_rtcp/source/rtcp_packet/transport_feedback.h"
53#include "modules/rtp_rtcp/source/rtp_header_extensions.h"
54#include "modules/rtp_rtcp/source/rtp_utility.h"
55#include "rtc_base/checks.h"
56#include "rtc_base/format_macros.h"
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +020057#include "rtc_base/function_view.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020058#include "rtc_base/logging.h"
Bjorn Terelius0295a962017-10-25 17:42:41 +020059#include "rtc_base/numerics/sequence_number_util.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020060#include "rtc_base/rate_statistics.h"
Jonas Olsson366a50c2018-09-06 13:41:30 +020061#include "rtc_base/strings/string_builder.h"
terelius54ce6802016-07-13 06:44:41 -070062
Bjorn Terelius6984ad22017-10-24 12:19:45 +020063#ifndef BWE_TEST_LOGGING_COMPILE_TIME_ENABLE
64#define BWE_TEST_LOGGING_COMPILE_TIME_ENABLE 0
65#endif // BWE_TEST_LOGGING_COMPILE_TIME_ENABLE
66
tereliusdc35dcd2016-08-01 12:03:27 -070067namespace webrtc {
tereliusdc35dcd2016-08-01 12:03:27 -070068
terelius54ce6802016-07-13 06:44:41 -070069namespace {
70
Qingsi Wang8eca1ff2018-02-02 11:49:44 -080071const int kNumMicrosecsPerSec = 1000000;
72
elad.alonec304f92017-03-08 05:03:53 -080073void SortPacketFeedbackVector(std::vector<PacketFeedback>* vec) {
74 auto pred = [](const PacketFeedback& packet_feedback) {
75 return packet_feedback.arrival_time_ms == PacketFeedback::kNotReceived;
76 };
77 vec->erase(std::remove_if(vec->begin(), vec->end(), pred), vec->end());
78 std::sort(vec->begin(), vec->end(), PacketFeedbackComparator());
79}
80
terelius54ce6802016-07-13 06:44:41 -070081std::string SsrcToString(uint32_t ssrc) {
Jonas Olsson366a50c2018-09-06 13:41:30 +020082 rtc::StringBuilder ss;
terelius54ce6802016-07-13 06:44:41 -070083 ss << "SSRC " << ssrc;
Jonas Olsson84df1c72018-09-14 16:59:32 +020084 return ss.Release();
terelius54ce6802016-07-13 06:44:41 -070085}
86
87// Checks whether an SSRC is contained in the list of desired SSRCs.
88// Note that an empty SSRC list matches every SSRC.
89bool MatchingSsrc(uint32_t ssrc, const std::vector<uint32_t>& desired_ssrc) {
90 if (desired_ssrc.size() == 0)
91 return true;
92 return std::find(desired_ssrc.begin(), desired_ssrc.end(), ssrc) !=
93 desired_ssrc.end();
94}
95
96double AbsSendTimeToMicroseconds(int64_t abs_send_time) {
97 // The timestamp is a fixed point representation with 6 bits for seconds
98 // and 18 bits for fractions of a second. Thus, we divide by 2^18 to get the
Qingsi Wang8eca1ff2018-02-02 11:49:44 -080099 // time in seconds and then multiply by kNumMicrosecsPerSec to convert to
100 // microseconds.
terelius54ce6802016-07-13 06:44:41 -0700101 static constexpr double kTimestampToMicroSec =
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800102 static_cast<double>(kNumMicrosecsPerSec) / static_cast<double>(1ul << 18);
terelius54ce6802016-07-13 06:44:41 -0700103 return abs_send_time * kTimestampToMicroSec;
104}
105
106// Computes the difference |later| - |earlier| where |later| and |earlier|
107// are counters that wrap at |modulus|. The difference is chosen to have the
108// least absolute value. For example if |modulus| is 8, then the difference will
109// be chosen in the range [-3, 4]. If |modulus| is 9, then the difference will
110// be in [-4, 4].
111int64_t WrappingDifference(uint32_t later, uint32_t earlier, int64_t modulus) {
112 RTC_DCHECK_LE(1, modulus);
113 RTC_DCHECK_LT(later, modulus);
114 RTC_DCHECK_LT(earlier, modulus);
115 int64_t difference =
116 static_cast<int64_t>(later) - static_cast<int64_t>(earlier);
117 int64_t max_difference = modulus / 2;
118 int64_t min_difference = max_difference - modulus + 1;
119 if (difference > max_difference) {
120 difference -= modulus;
121 }
122 if (difference < min_difference) {
123 difference += modulus;
124 }
terelius6addf492016-08-23 17:34:07 -0700125 if (difference > max_difference / 2 || difference < min_difference / 2) {
Mirko Bonadei675513b2017-11-09 11:09:25 +0100126 RTC_LOG(LS_WARNING) << "Difference between" << later << " and " << earlier
127 << " expected to be in the range ("
128 << min_difference / 2 << "," << max_difference / 2
129 << ") but is " << difference
130 << ". Correct unwrapping is uncertain.";
terelius6addf492016-08-23 17:34:07 -0700131 }
terelius54ce6802016-07-13 06:44:41 -0700132 return difference;
133}
134
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200135// This is much more reliable for outgoing streams than for incoming streams.
136template <typename RtpPacketContainer>
Danil Chapovalov431abd92018-06-18 12:54:17 +0200137absl::optional<uint32_t> EstimateRtpClockFrequency(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200138 const RtpPacketContainer& packets,
139 int64_t end_time_us) {
140 RTC_CHECK(packets.size() >= 2);
141 SeqNumUnwrapper<uint32_t> unwrapper;
142 uint64_t first_rtp_timestamp =
143 unwrapper.Unwrap(packets[0].rtp.header.timestamp);
144 int64_t first_log_timestamp = packets[0].log_time_us();
145 uint64_t last_rtp_timestamp = first_rtp_timestamp;
146 int64_t last_log_timestamp = first_log_timestamp;
147 for (size_t i = 1; i < packets.size(); i++) {
148 if (packets[i].log_time_us() > end_time_us)
149 break;
150 last_rtp_timestamp = unwrapper.Unwrap(packets[i].rtp.header.timestamp);
151 last_log_timestamp = packets[i].log_time_us();
152 }
153 if (last_log_timestamp - first_log_timestamp < kNumMicrosecsPerSec) {
154 RTC_LOG(LS_WARNING)
155 << "Failed to estimate RTP clock frequency: Stream too short. ("
156 << packets.size() << " packets, "
157 << last_log_timestamp - first_log_timestamp << " us)";
Danil Chapovalov431abd92018-06-18 12:54:17 +0200158 return absl::nullopt;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200159 }
160 double duration =
161 static_cast<double>(last_log_timestamp - first_log_timestamp) /
162 kNumMicrosecsPerSec;
163 double estimated_frequency =
164 (last_rtp_timestamp - first_rtp_timestamp) / duration;
165 for (uint32_t f : {8000, 16000, 32000, 48000, 90000}) {
166 if (std::fabs(estimated_frequency - f) < 0.05 * f) {
167 return f;
168 }
169 }
170 RTC_LOG(LS_WARNING) << "Failed to estimate RTP clock frequency: Estimate "
171 << estimated_frequency
172 << "not close to any stardard RTP frequency.";
Danil Chapovalov431abd92018-06-18 12:54:17 +0200173 return absl::nullopt;
ivocaac9d6f2016-09-22 07:01:47 -0700174}
175
tereliusdc35dcd2016-08-01 12:03:27 -0700176constexpr float kLeftMargin = 0.01f;
177constexpr float kRightMargin = 0.02f;
178constexpr float kBottomMargin = 0.02f;
179constexpr float kTopMargin = 0.05f;
terelius54ce6802016-07-13 06:44:41 -0700180
Danil Chapovalov431abd92018-06-18 12:54:17 +0200181absl::optional<double> NetworkDelayDiff_AbsSendTime(
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100182 const LoggedRtpPacketIncoming& old_packet,
183 const LoggedRtpPacketIncoming& new_packet) {
184 if (old_packet.rtp.header.extension.hasAbsoluteSendTime &&
185 new_packet.rtp.header.extension.hasAbsoluteSendTime) {
terelius53dc23c2017-03-13 05:24:05 -0700186 int64_t send_time_diff = WrappingDifference(
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100187 new_packet.rtp.header.extension.absoluteSendTime,
188 old_packet.rtp.header.extension.absoluteSendTime, 1ul << 24);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200189 int64_t recv_time_diff =
190 new_packet.log_time_us() - old_packet.log_time_us();
terelius53dc23c2017-03-13 05:24:05 -0700191 double delay_change_us =
192 recv_time_diff - AbsSendTimeToMicroseconds(send_time_diff);
Oskar Sundbom3928dbc2017-11-16 10:53:09 +0100193 return delay_change_us / 1000;
terelius53dc23c2017-03-13 05:24:05 -0700194 } else {
Danil Chapovalov431abd92018-06-18 12:54:17 +0200195 return absl::nullopt;
terelius6addf492016-08-23 17:34:07 -0700196 }
197}
198
Danil Chapovalov431abd92018-06-18 12:54:17 +0200199absl::optional<double> NetworkDelayDiff_CaptureTime(
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100200 const LoggedRtpPacketIncoming& old_packet,
201 const LoggedRtpPacketIncoming& new_packet,
202 const double sample_rate) {
203 int64_t send_time_diff =
204 WrappingDifference(new_packet.rtp.header.timestamp,
205 old_packet.rtp.header.timestamp, 1ull << 32);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200206 int64_t recv_time_diff = new_packet.log_time_us() - old_packet.log_time_us();
terelius53dc23c2017-03-13 05:24:05 -0700207
terelius53dc23c2017-03-13 05:24:05 -0700208 double delay_change =
209 static_cast<double>(recv_time_diff) / 1000 -
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100210 static_cast<double>(send_time_diff) / sample_rate * 1000;
terelius53dc23c2017-03-13 05:24:05 -0700211 if (delay_change < -10000 || 10000 < delay_change) {
Mirko Bonadei675513b2017-11-09 11:09:25 +0100212 RTC_LOG(LS_WARNING) << "Very large delay change. Timestamps correct?";
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100213 RTC_LOG(LS_WARNING) << "Old capture time "
214 << old_packet.rtp.header.timestamp << ", received time "
215 << old_packet.log_time_us();
216 RTC_LOG(LS_WARNING) << "New capture time "
217 << new_packet.rtp.header.timestamp << ", received time "
218 << new_packet.log_time_us();
Mirko Bonadei675513b2017-11-09 11:09:25 +0100219 RTC_LOG(LS_WARNING) << "Receive time difference " << recv_time_diff << " = "
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800220 << static_cast<double>(recv_time_diff) /
221 kNumMicrosecsPerSec
222 << "s";
Mirko Bonadei675513b2017-11-09 11:09:25 +0100223 RTC_LOG(LS_WARNING) << "Send time difference " << send_time_diff << " = "
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100224 << static_cast<double>(send_time_diff) / sample_rate
Mirko Bonadei675513b2017-11-09 11:09:25 +0100225 << "s";
terelius53dc23c2017-03-13 05:24:05 -0700226 }
Oskar Sundbom3928dbc2017-11-16 10:53:09 +0100227 return delay_change;
terelius53dc23c2017-03-13 05:24:05 -0700228}
229
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200230// For each element in data_view, use |f()| to extract a y-coordinate and
terelius53dc23c2017-03-13 05:24:05 -0700231// store the result in a TimeSeries.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200232template <typename DataType, typename IterableType>
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200233void ProcessPoints(rtc::FunctionView<float(const DataType&)> fx,
Danil Chapovalov431abd92018-06-18 12:54:17 +0200234 rtc::FunctionView<absl::optional<float>(const DataType&)> fy,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200235 const IterableType& data_view,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200236 TimeSeries* result) {
237 for (size_t i = 0; i < data_view.size(); i++) {
238 const DataType& elem = data_view[i];
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200239 float x = fx(elem);
Danil Chapovalov431abd92018-06-18 12:54:17 +0200240 absl::optional<float> y = fy(elem);
terelius53dc23c2017-03-13 05:24:05 -0700241 if (y)
242 result->points.emplace_back(x, *y);
243 }
244}
245
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200246// For each pair of adjacent elements in |data|, use |f()| to extract a
terelius6addf492016-08-23 17:34:07 -0700247// y-coordinate and store the result in a TimeSeries. Note that the x-coordinate
248// will be the time of the second element in the pair.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200249template <typename DataType, typename ResultType, typename IterableType>
terelius53dc23c2017-03-13 05:24:05 -0700250void ProcessPairs(
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200251 rtc::FunctionView<float(const DataType&)> fx,
Danil Chapovalov431abd92018-06-18 12:54:17 +0200252 rtc::FunctionView<absl::optional<ResultType>(const DataType&,
253 const DataType&)> fy,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200254 const IterableType& data,
terelius53dc23c2017-03-13 05:24:05 -0700255 TimeSeries* result) {
tereliusccbbf8d2016-08-10 07:34:28 -0700256 for (size_t i = 1; i < data.size(); i++) {
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200257 float x = fx(data[i]);
Danil Chapovalov431abd92018-06-18 12:54:17 +0200258 absl::optional<ResultType> y = fy(data[i - 1], data[i]);
terelius53dc23c2017-03-13 05:24:05 -0700259 if (y)
260 result->points.emplace_back(x, static_cast<float>(*y));
261 }
262}
263
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200264// For each pair of adjacent elements in |data|, use |f()| to extract a
terelius53dc23c2017-03-13 05:24:05 -0700265// y-coordinate and store the result in a TimeSeries. Note that the x-coordinate
266// will be the time of the second element in the pair.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200267template <typename DataType, typename ResultType, typename IterableType>
terelius53dc23c2017-03-13 05:24:05 -0700268void AccumulatePairs(
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200269 rtc::FunctionView<float(const DataType&)> fx,
Danil Chapovalov431abd92018-06-18 12:54:17 +0200270 rtc::FunctionView<absl::optional<ResultType>(const DataType&,
271 const DataType&)> fy,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200272 const IterableType& data,
terelius53dc23c2017-03-13 05:24:05 -0700273 TimeSeries* result) {
274 ResultType sum = 0;
275 for (size_t i = 1; i < data.size(); i++) {
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200276 float x = fx(data[i]);
Danil Chapovalov431abd92018-06-18 12:54:17 +0200277 absl::optional<ResultType> y = fy(data[i - 1], data[i]);
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100278 if (y) {
terelius53dc23c2017-03-13 05:24:05 -0700279 sum += *y;
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100280 result->points.emplace_back(x, static_cast<float>(sum));
281 }
tereliusccbbf8d2016-08-10 07:34:28 -0700282 }
283}
284
terelius6addf492016-08-23 17:34:07 -0700285// Calculates a moving average of |data| and stores the result in a TimeSeries.
286// A data point is generated every |step| microseconds from |begin_time|
287// to |end_time|. The value of each data point is the average of the data
288// during the preceeding |window_duration_us| microseconds.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200289template <typename DataType, typename ResultType, typename IterableType>
terelius53dc23c2017-03-13 05:24:05 -0700290void MovingAverage(
Danil Chapovalov431abd92018-06-18 12:54:17 +0200291 rtc::FunctionView<absl::optional<ResultType>(const DataType&)> fy,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200292 const IterableType& data_view,
Bjorn Terelius068fc352019-02-13 22:38:25 +0100293 AnalyzerConfig config,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200294 TimeSeries* result) {
terelius6addf492016-08-23 17:34:07 -0700295 size_t window_index_begin = 0;
296 size_t window_index_end = 0;
terelius53dc23c2017-03-13 05:24:05 -0700297 ResultType sum_in_window = 0;
terelius6addf492016-08-23 17:34:07 -0700298
Bjorn Terelius068fc352019-02-13 22:38:25 +0100299 for (int64_t t = config.begin_time_; t < config.end_time_ + config.step_;
300 t += config.step_) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200301 while (window_index_end < data_view.size() &&
302 data_view[window_index_end].log_time_us() < t) {
Danil Chapovalov431abd92018-06-18 12:54:17 +0200303 absl::optional<ResultType> value = fy(data_view[window_index_end]);
terelius53dc23c2017-03-13 05:24:05 -0700304 if (value)
305 sum_in_window += *value;
terelius6addf492016-08-23 17:34:07 -0700306 ++window_index_end;
307 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200308 while (window_index_begin < data_view.size() &&
309 data_view[window_index_begin].log_time_us() <
Bjorn Terelius068fc352019-02-13 22:38:25 +0100310 t - config.window_duration_) {
Danil Chapovalov431abd92018-06-18 12:54:17 +0200311 absl::optional<ResultType> value = fy(data_view[window_index_begin]);
terelius53dc23c2017-03-13 05:24:05 -0700312 if (value)
313 sum_in_window -= *value;
terelius6addf492016-08-23 17:34:07 -0700314 ++window_index_begin;
315 }
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800316 float window_duration_s =
Bjorn Terelius068fc352019-02-13 22:38:25 +0100317 static_cast<float>(config.window_duration_) / kNumMicrosecsPerSec;
318 float x = config.GetCallTimeSec(t);
terelius53dc23c2017-03-13 05:24:05 -0700319 float y = sum_in_window / window_duration_s;
terelius6addf492016-08-23 17:34:07 -0700320 result->points.emplace_back(x, y);
321 }
322}
323
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800324const char kUnknownEnumValue[] = "unknown";
325
326const char kIceCandidateTypeLocal[] = "local";
327const char kIceCandidateTypeStun[] = "stun";
328const char kIceCandidateTypePrflx[] = "prflx";
329const char kIceCandidateTypeRelay[] = "relay";
330
331const char kProtocolUdp[] = "udp";
332const char kProtocolTcp[] = "tcp";
333const char kProtocolSsltcp[] = "ssltcp";
334const char kProtocolTls[] = "tls";
335
336const char kAddressFamilyIpv4[] = "ipv4";
337const char kAddressFamilyIpv6[] = "ipv6";
338
339const char kNetworkTypeEthernet[] = "ethernet";
340const char kNetworkTypeLoopback[] = "loopback";
341const char kNetworkTypeWifi[] = "wifi";
342const char kNetworkTypeVpn[] = "vpn";
343const char kNetworkTypeCellular[] = "cellular";
344
345std::string GetIceCandidateTypeAsString(webrtc::IceCandidateType type) {
346 switch (type) {
347 case webrtc::IceCandidateType::kLocal:
348 return kIceCandidateTypeLocal;
349 case webrtc::IceCandidateType::kStun:
350 return kIceCandidateTypeStun;
351 case webrtc::IceCandidateType::kPrflx:
352 return kIceCandidateTypePrflx;
353 case webrtc::IceCandidateType::kRelay:
354 return kIceCandidateTypeRelay;
355 default:
356 return kUnknownEnumValue;
357 }
358}
359
360std::string GetProtocolAsString(webrtc::IceCandidatePairProtocol protocol) {
361 switch (protocol) {
362 case webrtc::IceCandidatePairProtocol::kUdp:
363 return kProtocolUdp;
364 case webrtc::IceCandidatePairProtocol::kTcp:
365 return kProtocolTcp;
366 case webrtc::IceCandidatePairProtocol::kSsltcp:
367 return kProtocolSsltcp;
368 case webrtc::IceCandidatePairProtocol::kTls:
369 return kProtocolTls;
370 default:
371 return kUnknownEnumValue;
372 }
373}
374
375std::string GetAddressFamilyAsString(
376 webrtc::IceCandidatePairAddressFamily family) {
377 switch (family) {
378 case webrtc::IceCandidatePairAddressFamily::kIpv4:
379 return kAddressFamilyIpv4;
380 case webrtc::IceCandidatePairAddressFamily::kIpv6:
381 return kAddressFamilyIpv6;
382 default:
383 return kUnknownEnumValue;
384 }
385}
386
387std::string GetNetworkTypeAsString(webrtc::IceCandidateNetworkType type) {
388 switch (type) {
389 case webrtc::IceCandidateNetworkType::kEthernet:
390 return kNetworkTypeEthernet;
391 case webrtc::IceCandidateNetworkType::kLoopback:
392 return kNetworkTypeLoopback;
393 case webrtc::IceCandidateNetworkType::kWifi:
394 return kNetworkTypeWifi;
395 case webrtc::IceCandidateNetworkType::kVpn:
396 return kNetworkTypeVpn;
397 case webrtc::IceCandidateNetworkType::kCellular:
398 return kNetworkTypeCellular;
399 default:
400 return kUnknownEnumValue;
401 }
402}
403
404std::string GetCandidatePairLogDescriptionAsString(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200405 const LoggedIceCandidatePairConfig& config) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800406 // Example: stun:wifi->relay(tcp):cellular@udp:ipv4
407 // represents a pair of a local server-reflexive candidate on a WiFi network
408 // and a remote relay candidate using TCP as the relay protocol on a cell
409 // network, when the candidate pair communicates over UDP using IPv4.
Jonas Olsson366a50c2018-09-06 13:41:30 +0200410 rtc::StringBuilder ss;
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800411 std::string local_candidate_type =
412 GetIceCandidateTypeAsString(config.local_candidate_type);
413 std::string remote_candidate_type =
414 GetIceCandidateTypeAsString(config.remote_candidate_type);
415 if (config.local_candidate_type == webrtc::IceCandidateType::kRelay) {
416 local_candidate_type +=
417 "(" + GetProtocolAsString(config.local_relay_protocol) + ")";
418 }
419 ss << local_candidate_type << ":"
420 << GetNetworkTypeAsString(config.local_network_type) << ":"
421 << GetAddressFamilyAsString(config.local_address_family) << "->"
422 << remote_candidate_type << ":"
423 << GetAddressFamilyAsString(config.remote_address_family) << "@"
424 << GetProtocolAsString(config.candidate_pair_protocol);
Jonas Olsson84df1c72018-09-14 16:59:32 +0200425 return ss.Release();
Qingsi Wang8eca1ff2018-02-02 11:49:44 -0800426}
427
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200428std::string GetDirectionAsString(PacketDirection direction) {
429 if (direction == kIncomingPacket) {
430 return "Incoming";
431 } else {
432 return "Outgoing";
433 }
434}
435
436std::string GetDirectionAsShortString(PacketDirection direction) {
437 if (direction == kIncomingPacket) {
438 return "In";
439 } else {
440 return "Out";
441 }
442}
443
terelius54ce6802016-07-13 06:44:41 -0700444} // namespace
445
Sebastian Janssonb290a6d2019-01-03 14:46:23 +0100446EventLogAnalyzer::EventLogAnalyzer(const ParsedRtcEventLog& log,
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200447 bool normalize_time)
Bjorn Terelius068fc352019-02-13 22:38:25 +0100448 : parsed_log_(log) {
449 config_.window_duration_ = 250000;
450 config_.step_ = 10000;
451 config_.normalize_time_ = normalize_time;
452 config_.begin_time_ = parsed_log_.first_timestamp();
453 config_.end_time_ = parsed_log_.last_timestamp();
454 if (config_.end_time_ < config_.begin_time_) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200455 RTC_LOG(LS_WARNING) << "No useful events in the log.";
Bjorn Terelius068fc352019-02-13 22:38:25 +0100456 config_.begin_time_ = config_.end_time_ = 0;
Björn Tereliusff612732018-04-25 14:23:01 +0000457 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200458
459 const auto& log_start_events = parsed_log_.start_log_events();
460 const auto& log_end_events = parsed_log_.stop_log_events();
461 auto start_iter = log_start_events.begin();
462 auto end_iter = log_end_events.begin();
463 while (start_iter != log_start_events.end()) {
464 int64_t start = start_iter->log_time_us();
465 ++start_iter;
Danil Chapovalov431abd92018-06-18 12:54:17 +0200466 absl::optional<int64_t> next_start;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200467 if (start_iter != log_start_events.end())
468 next_start.emplace(start_iter->log_time_us());
469 if (end_iter != log_end_events.end() &&
470 end_iter->log_time_us() <=
471 next_start.value_or(std::numeric_limits<int64_t>::max())) {
472 int64_t end = end_iter->log_time_us();
473 RTC_DCHECK_LE(start, end);
474 log_segments_.push_back(std::make_pair(start, end));
475 ++end_iter;
476 } else {
477 // we're missing an end event. Assume that it occurred just before the
478 // next start.
479 log_segments_.push_back(
Bjorn Terelius068fc352019-02-13 22:38:25 +0100480 std::make_pair(start, next_start.value_or(config_.end_time_)));
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200481 }
henrik.lundin3c938fc2017-06-14 06:09:58 -0700482 }
Bjorn Terelius2eb31882017-11-30 15:15:25 +0100483 RTC_LOG(LS_INFO) << "Found " << log_segments_.size()
Yves Gerey665174f2018-06-19 15:03:05 +0200484 << " (LOG_START, LOG_END) segments in log.";
terelius54ce6802016-07-13 06:44:41 -0700485}
486
Sebastian Jansson5c94f552018-10-15 18:46:51 +0200487class BitrateObserver : public RemoteBitrateObserver {
Stefan Holmer13181032016-07-29 14:48:54 +0200488 public:
489 BitrateObserver() : last_bitrate_bps_(0), bitrate_updated_(false) {}
490
Sebastian Jansson5c94f552018-10-15 18:46:51 +0200491 void Update(NetworkControlUpdate update) {
492 if (update.target_rate) {
493 last_bitrate_bps_ = update.target_rate->target_rate.bps();
494 bitrate_updated_ = true;
495 }
Stefan Holmer13181032016-07-29 14:48:54 +0200496 }
497
498 void OnReceiveBitrateChanged(const std::vector<uint32_t>& ssrcs,
499 uint32_t bitrate) override {}
500
501 uint32_t last_bitrate_bps() const { return last_bitrate_bps_; }
502 bool GetAndResetBitrateUpdated() {
503 bool bitrate_updated = bitrate_updated_;
504 bitrate_updated_ = false;
505 return bitrate_updated;
506 }
507
508 private:
509 uint32_t last_bitrate_bps_;
510 bool bitrate_updated_;
511};
512
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200513void EventLogAnalyzer::CreatePacketGraph(PacketDirection direction,
terelius54ce6802016-07-13 06:44:41 -0700514 Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200515 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
516 // Filter on SSRC.
517 if (!MatchingSsrc(stream.ssrc, desired_ssrc_)) {
terelius6addf492016-08-23 17:34:07 -0700518 continue;
terelius54ce6802016-07-13 06:44:41 -0700519 }
terelius54ce6802016-07-13 06:44:41 -0700520
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200521 TimeSeries time_series(GetStreamName(direction, stream.ssrc),
522 LineStyle::kBar);
523 auto GetPacketSize = [](const LoggedRtpPacket& packet) {
Danil Chapovalov431abd92018-06-18 12:54:17 +0200524 return absl::optional<float>(packet.total_length);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200525 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200526 auto ToCallTime = [this](const LoggedRtpPacket& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100527 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200528 };
529 ProcessPoints<LoggedRtpPacket>(ToCallTime, GetPacketSize,
530 stream.packet_view, &time_series);
philipel35ba9bd2017-04-19 05:58:51 -0700531 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700532 }
533
Bjorn Terelius068fc352019-02-13 22:38:25 +0100534 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
535 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -0700536 plot->SetSuggestedYAxis(0, 1, "Packet size (bytes)", kBottomMargin,
537 kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200538 plot->SetTitle(GetDirectionAsString(direction) + " RTP packets");
terelius54ce6802016-07-13 06:44:41 -0700539}
540
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200541template <typename IterableType>
philipelccd74892016-09-05 02:46:25 -0700542void EventLogAnalyzer::CreateAccumulatedPacketsTimeSeries(
philipelccd74892016-09-05 02:46:25 -0700543 Plot* plot,
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200544 const IterableType& packets,
545 const std::string& label) {
546 TimeSeries time_series(label, LineStyle::kStep);
547 for (size_t i = 0; i < packets.size(); i++) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100548 float x = config_.GetCallTimeSec(packets[i].log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200549 time_series.points.emplace_back(x, i + 1);
philipelccd74892016-09-05 02:46:25 -0700550 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200551 plot->AppendTimeSeries(std::move(time_series));
philipelccd74892016-09-05 02:46:25 -0700552}
553
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200554void EventLogAnalyzer::CreateAccumulatedPacketsGraph(PacketDirection direction,
555 Plot* plot) {
556 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
557 if (!MatchingSsrc(stream.ssrc, desired_ssrc_))
558 continue;
559 std::string label =
560 std::string("RTP ") + GetStreamName(direction, stream.ssrc);
561 CreateAccumulatedPacketsTimeSeries(plot, stream.packet_view, label);
562 }
563 std::string label =
564 std::string("RTCP ") + "(" + GetDirectionAsShortString(direction) + ")";
565 if (direction == kIncomingPacket) {
566 CreateAccumulatedPacketsTimeSeries(
567 plot, parsed_log_.incoming_rtcp_packets(), label);
568 } else {
569 CreateAccumulatedPacketsTimeSeries(
570 plot, parsed_log_.outgoing_rtcp_packets(), label);
571 }
philipelccd74892016-09-05 02:46:25 -0700572
Bjorn Terelius068fc352019-02-13 22:38:25 +0100573 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
574 "Time (s)", kLeftMargin, kRightMargin);
philipelccd74892016-09-05 02:46:25 -0700575 plot->SetSuggestedYAxis(0, 1, "Received Packets", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200576 plot->SetTitle(std::string("Accumulated ") + GetDirectionAsString(direction) +
577 " RTP/RTCP packets");
philipelccd74892016-09-05 02:46:25 -0700578}
579
terelius54ce6802016-07-13 06:44:41 -0700580// For each SSRC, plot the time between the consecutive playouts.
581void EventLogAnalyzer::CreatePlayoutGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200582 for (const auto& playout_stream : parsed_log_.audio_playout_events()) {
583 uint32_t ssrc = playout_stream.first;
584 if (!MatchingSsrc(ssrc, desired_ssrc_))
585 continue;
Danil Chapovalov431abd92018-06-18 12:54:17 +0200586 absl::optional<int64_t> last_playout_ms;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200587 TimeSeries time_series(SsrcToString(ssrc), LineStyle::kBar);
Minyue Li27e2b7d2018-05-07 15:20:24 +0200588 for (const auto& playout_event : playout_stream.second) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100589 float x = config_.GetCallTimeSec(playout_event.log_time_us());
Minyue Li27e2b7d2018-05-07 15:20:24 +0200590 int64_t playout_time_ms = playout_event.log_time_ms();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200591 // If there were no previous playouts, place the point on the x-axis.
Minyue Li27e2b7d2018-05-07 15:20:24 +0200592 float y = playout_time_ms - last_playout_ms.value_or(playout_time_ms);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200593 time_series.points.push_back(TimeSeriesPoint(x, y));
Minyue Li27e2b7d2018-05-07 15:20:24 +0200594 last_playout_ms.emplace(playout_time_ms);
terelius54ce6802016-07-13 06:44:41 -0700595 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200596 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700597 }
598
Bjorn Terelius068fc352019-02-13 22:38:25 +0100599 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
600 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -0700601 plot->SetSuggestedYAxis(0, 1, "Time since last playout (ms)", kBottomMargin,
602 kTopMargin);
603 plot->SetTitle("Audio playout");
terelius54ce6802016-07-13 06:44:41 -0700604}
605
ivocaac9d6f2016-09-22 07:01:47 -0700606// For audio SSRCs, plot the audio level.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200607void EventLogAnalyzer::CreateAudioLevelGraph(PacketDirection direction,
608 Plot* plot) {
609 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
610 if (!IsAudioSsrc(direction, stream.ssrc))
611 continue;
612 TimeSeries time_series(GetStreamName(direction, stream.ssrc),
613 LineStyle::kLine);
614 for (auto& packet : stream.packet_view) {
ivocaac9d6f2016-09-22 07:01:47 -0700615 if (packet.header.extension.hasAudioLevel) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100616 float x = config_.GetCallTimeSec(packet.log_time_us());
ivocaac9d6f2016-09-22 07:01:47 -0700617 // The audio level is stored in -dBov (so e.g. -10 dBov is stored as 10)
618 // Here we convert it to dBov.
619 float y = static_cast<float>(-packet.header.extension.audioLevel);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200620 time_series.points.emplace_back(TimeSeriesPoint(x, y));
ivocaac9d6f2016-09-22 07:01:47 -0700621 }
622 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200623 plot->AppendTimeSeries(std::move(time_series));
ivocaac9d6f2016-09-22 07:01:47 -0700624 }
625
Bjorn Terelius068fc352019-02-13 22:38:25 +0100626 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
627 "Time (s)", kLeftMargin, kRightMargin);
Yves Gerey665174f2018-06-19 15:03:05 +0200628 plot->SetYAxis(-127, 0, "Audio level (dBov)", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200629 plot->SetTitle(GetDirectionAsString(direction) + " audio level");
ivocaac9d6f2016-09-22 07:01:47 -0700630}
631
terelius54ce6802016-07-13 06:44:41 -0700632// For each SSRC, plot the time between the consecutive playouts.
633void EventLogAnalyzer::CreateSequenceNumberGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200634 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
635 // Filter on SSRC.
636 if (!MatchingSsrc(stream.ssrc, desired_ssrc_)) {
terelius6addf492016-08-23 17:34:07 -0700637 continue;
terelius54ce6802016-07-13 06:44:41 -0700638 }
terelius54ce6802016-07-13 06:44:41 -0700639
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200640 TimeSeries time_series(GetStreamName(kIncomingPacket, stream.ssrc),
641 LineStyle::kBar);
642 auto GetSequenceNumberDiff = [](const LoggedRtpPacketIncoming& old_packet,
643 const LoggedRtpPacketIncoming& new_packet) {
644 int64_t diff =
645 WrappingDifference(new_packet.rtp.header.sequenceNumber,
646 old_packet.rtp.header.sequenceNumber, 1ul << 16);
647 return diff;
648 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200649 auto ToCallTime = [this](const LoggedRtpPacketIncoming& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100650 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +0200651 };
652 ProcessPairs<LoggedRtpPacketIncoming, float>(
653 ToCallTime, GetSequenceNumberDiff, stream.incoming_packets,
654 &time_series);
philipel35ba9bd2017-04-19 05:58:51 -0700655 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -0700656 }
657
Bjorn Terelius068fc352019-02-13 22:38:25 +0100658 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
659 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -0700660 plot->SetSuggestedYAxis(0, 1, "Difference since last packet", kBottomMargin,
661 kTopMargin);
662 plot->SetTitle("Sequence number");
terelius54ce6802016-07-13 06:44:41 -0700663}
664
Stefan Holmer99f8e082016-09-09 13:37:50 +0200665void EventLogAnalyzer::CreateIncomingPacketLossGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200666 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
667 const std::vector<LoggedRtpPacketIncoming>& packets =
668 stream.incoming_packets;
669 // Filter on SSRC.
670 if (!MatchingSsrc(stream.ssrc, desired_ssrc_) || packets.size() == 0) {
Stefan Holmer99f8e082016-09-09 13:37:50 +0200671 continue;
672 }
673
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200674 TimeSeries time_series(GetStreamName(kIncomingPacket, stream.ssrc),
675 LineStyle::kLine, PointStyle::kHighlight);
676 // TODO(terelius): Should the window and step size be read from the class
677 // instead?
678 const int64_t kWindowUs = 1000000;
679 const int64_t kStep = 1000000;
Bjorn Terelius2eb31882017-11-30 15:15:25 +0100680 SeqNumUnwrapper<uint16_t> unwrapper_;
681 SeqNumUnwrapper<uint16_t> prior_unwrapper_;
terelius4c9b4af2017-01-30 08:44:51 -0800682 size_t window_index_begin = 0;
683 size_t window_index_end = 0;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200684 uint64_t highest_seq_number =
685 unwrapper_.Unwrap(packets[0].rtp.header.sequenceNumber) - 1;
686 uint64_t highest_prior_seq_number =
687 prior_unwrapper_.Unwrap(packets[0].rtp.header.sequenceNumber) - 1;
terelius4c9b4af2017-01-30 08:44:51 -0800688
Bjorn Terelius068fc352019-02-13 22:38:25 +0100689 for (int64_t t = config_.begin_time_; t < config_.end_time_ + kStep;
690 t += kStep) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200691 while (window_index_end < packets.size() &&
692 packets[window_index_end].rtp.log_time_us() < t) {
693 uint64_t sequence_number = unwrapper_.Unwrap(
694 packets[window_index_end].rtp.header.sequenceNumber);
terelius4c9b4af2017-01-30 08:44:51 -0800695 highest_seq_number = std::max(highest_seq_number, sequence_number);
696 ++window_index_end;
Stefan Holmer99f8e082016-09-09 13:37:50 +0200697 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200698 while (window_index_begin < packets.size() &&
699 packets[window_index_begin].rtp.log_time_us() < t - kWindowUs) {
700 uint64_t sequence_number = prior_unwrapper_.Unwrap(
701 packets[window_index_begin].rtp.header.sequenceNumber);
terelius4c9b4af2017-01-30 08:44:51 -0800702 highest_prior_seq_number =
703 std::max(highest_prior_seq_number, sequence_number);
704 ++window_index_begin;
705 }
Bjorn Terelius068fc352019-02-13 22:38:25 +0100706 float x = config_.GetCallTimeSec(t);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200707 uint64_t expected_packets = highest_seq_number - highest_prior_seq_number;
terelius4c9b4af2017-01-30 08:44:51 -0800708 if (expected_packets > 0) {
709 int64_t received_packets = window_index_end - window_index_begin;
710 int64_t lost_packets = expected_packets - received_packets;
711 float y = static_cast<float>(lost_packets) / expected_packets * 100;
712 time_series.points.emplace_back(x, y);
713 }
Stefan Holmer99f8e082016-09-09 13:37:50 +0200714 }
philipel35ba9bd2017-04-19 05:58:51 -0700715 plot->AppendTimeSeries(std::move(time_series));
Stefan Holmer99f8e082016-09-09 13:37:50 +0200716 }
717
Bjorn Terelius068fc352019-02-13 22:38:25 +0100718 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
719 "Time (s)", kLeftMargin, kRightMargin);
Konrad Hofbauerd036c652019-02-14 16:17:28 +0100720 plot->SetSuggestedYAxis(0, 1, "Loss rate (in %)", kBottomMargin, kTopMargin);
721 plot->SetTitle("Incoming packet loss (derived from incoming packets)");
Stefan Holmer99f8e082016-09-09 13:37:50 +0200722}
723
terelius2ee076d2017-08-15 02:04:02 -0700724void EventLogAnalyzer::CreateIncomingDelayGraph(Plot* plot) {
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100725 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200726 // Filter on SSRC.
727 if (!MatchingSsrc(stream.ssrc, desired_ssrc_) ||
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200728 IsRtxSsrc(kIncomingPacket, stream.ssrc)) {
terelius88e64e52016-07-19 01:51:06 -0700729 continue;
730 }
terelius54ce6802016-07-13 06:44:41 -0700731
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100732 const std::vector<LoggedRtpPacketIncoming>& packets =
733 stream.incoming_packets;
734 if (packets.size() < 100) {
735 RTC_LOG(LS_WARNING) << "Can't estimate the RTP clock frequency with "
736 << packets.size() << " packets in the stream.";
737 continue;
738 }
739 int64_t end_time_us = log_segments_.empty()
740 ? std::numeric_limits<int64_t>::max()
741 : log_segments_.front().second;
742 absl::optional<uint32_t> estimated_frequency =
743 EstimateRtpClockFrequency(packets, end_time_us);
744 if (!estimated_frequency)
745 continue;
746 const double frequency_hz = *estimated_frequency;
747 if (IsVideoSsrc(kIncomingPacket, stream.ssrc) && frequency_hz != 90000) {
748 RTC_LOG(LS_WARNING)
749 << "Video stream should use a 90 kHz clock but appears to use "
750 << frequency_hz / 1000 << ". Discarding.";
751 continue;
752 }
753
754 auto ToCallTime = [this](const LoggedRtpPacketIncoming& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100755 return this->config_.GetCallTimeSec(packet.log_time_us());
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100756 };
757 auto ToNetworkDelay = [frequency_hz](
758 const LoggedRtpPacketIncoming& old_packet,
759 const LoggedRtpPacketIncoming& new_packet) {
760 return NetworkDelayDiff_CaptureTime(old_packet, new_packet, frequency_hz);
761 };
762
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200763 TimeSeries capture_time_data(
764 GetStreamName(kIncomingPacket, stream.ssrc) + " capture-time",
765 LineStyle::kLine);
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100766 AccumulatePairs<LoggedRtpPacketIncoming, double>(
767 ToCallTime, ToNetworkDelay, packets, &capture_time_data);
philipel35ba9bd2017-04-19 05:58:51 -0700768 plot->AppendTimeSeries(std::move(capture_time_data));
terelius88e64e52016-07-19 01:51:06 -0700769
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200770 TimeSeries send_time_data(
771 GetStreamName(kIncomingPacket, stream.ssrc) + " abs-send-time",
772 LineStyle::kLine);
Bjorn Terelius6c373cc2018-11-01 14:31:10 +0100773 AccumulatePairs<LoggedRtpPacketIncoming, double>(
774 ToCallTime, NetworkDelayDiff_AbsSendTime, packets, &send_time_data);
775 plot->AppendTimeSeriesIfNotEmpty(std::move(send_time_data));
terelius54ce6802016-07-13 06:44:41 -0700776 }
777
Bjorn Terelius068fc352019-02-13 22:38:25 +0100778 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
779 "Time (s)", kLeftMargin, kRightMargin);
Konrad Hofbauer5be3bbd2019-01-21 12:31:07 +0100780 plot->SetSuggestedYAxis(0, 1, "Delay (ms)", kBottomMargin, kTopMargin);
781 plot->SetTitle("Incoming network delay (relative to first packet)");
terelius54ce6802016-07-13 06:44:41 -0700782}
783
tereliusf736d232016-08-04 10:00:11 -0700784// Plot the fraction of packets lost (as perceived by the loss-based BWE).
785void EventLogAnalyzer::CreateFractionLossGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +0100786 TimeSeries time_series("Fraction lost", LineStyle::kLine,
787 PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200788 for (auto& bwe_update : parsed_log_.bwe_loss_updates()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100789 float x = config_.GetCallTimeSec(bwe_update.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200790 float y = static_cast<float>(bwe_update.fraction_lost) / 255 * 100;
philipel35ba9bd2017-04-19 05:58:51 -0700791 time_series.points.emplace_back(x, y);
tereliusf736d232016-08-04 10:00:11 -0700792 }
tereliusf736d232016-08-04 10:00:11 -0700793
Bjorn Terelius19f5be32017-10-18 12:39:49 +0200794 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +0100795 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
796 "Time (s)", kLeftMargin, kRightMargin);
Konrad Hofbauerd036c652019-02-14 16:17:28 +0100797 plot->SetSuggestedYAxis(0, 10, "Loss rate (in %)", kBottomMargin, kTopMargin);
798 plot->SetTitle("Outgoing packet loss (as reported by BWE)");
tereliusf736d232016-08-04 10:00:11 -0700799}
800
terelius54ce6802016-07-13 06:44:41 -0700801// Plot the total bandwidth used by all RTP streams.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200802void EventLogAnalyzer::CreateTotalIncomingBitrateGraph(Plot* plot) {
803 // TODO(terelius): This could be provided by the parser.
804 std::multimap<int64_t, size_t> packets_in_order;
805 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
806 for (const LoggedRtpPacketIncoming& packet : stream.incoming_packets)
807 packets_in_order.insert(
808 std::make_pair(packet.rtp.log_time_us(), packet.rtp.total_length));
terelius54ce6802016-07-13 06:44:41 -0700809 }
810
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200811 auto window_begin = packets_in_order.begin();
812 auto window_end = packets_in_order.begin();
terelius54ce6802016-07-13 06:44:41 -0700813 size_t bytes_in_window = 0;
terelius54ce6802016-07-13 06:44:41 -0700814
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800815 if (!packets_in_order.empty()) {
816 // Calculate a moving average of the bitrate and store in a TimeSeries.
817 TimeSeries bitrate_series("Bitrate", LineStyle::kLine);
818 for (int64_t time = config_.begin_time_;
819 time < config_.end_time_ + config_.step_; time += config_.step_) {
820 while (window_end != packets_in_order.end() && window_end->first < time) {
821 bytes_in_window += window_end->second;
822 ++window_end;
823 }
824 while (window_begin != packets_in_order.end() &&
825 window_begin->first < time - config_.window_duration_) {
826 RTC_DCHECK_LE(window_begin->second, bytes_in_window);
827 bytes_in_window -= window_begin->second;
828 ++window_begin;
829 }
830 float window_duration_in_seconds =
831 static_cast<float>(config_.window_duration_) / kNumMicrosecsPerSec;
832 float x = config_.GetCallTimeSec(time);
833 float y = bytes_in_window * 8 / window_duration_in_seconds / 1000;
834 bitrate_series.points.emplace_back(x, y);
terelius54ce6802016-07-13 06:44:41 -0700835 }
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800836 plot->AppendTimeSeries(std::move(bitrate_series));
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200837 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200838
839 // Overlay the outgoing REMB over incoming bitrate.
840 TimeSeries remb_series("Remb", LineStyle::kStep);
841 for (const auto& rtcp : parsed_log_.rembs(kOutgoingPacket)) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100842 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200843 float y = static_cast<float>(rtcp.remb.bitrate_bps()) / 1000;
844 remb_series.points.emplace_back(x, y);
845 }
846 plot->AppendTimeSeriesIfNotEmpty(std::move(remb_series));
847
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800848 if (!parsed_log_.generic_packets_received().empty()) {
849 TimeSeries time_series("Incoming generic bitrate", LineStyle::kLine);
850 auto GetPacketSizeKilobits = [](const LoggedGenericPacketReceived& packet) {
851 return packet.packet_length * 8.0 / 1000.0;
852 };
853 MovingAverage<LoggedGenericPacketReceived, double>(
854 GetPacketSizeKilobits, parsed_log_.generic_packets_received(), config_,
855 &time_series);
856 plot->AppendTimeSeries(std::move(time_series));
857 }
858
Bjorn Terelius068fc352019-02-13 22:38:25 +0100859 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
860 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200861 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
862 plot->SetTitle("Incoming RTP bitrate");
863}
864
865// Plot the total bandwidth used by all RTP streams.
866void EventLogAnalyzer::CreateTotalOutgoingBitrateGraph(Plot* plot,
867 bool show_detector_state,
868 bool show_alr_state) {
869 // TODO(terelius): This could be provided by the parser.
870 std::multimap<int64_t, size_t> packets_in_order;
871 for (const auto& stream : parsed_log_.outgoing_rtp_packets_by_ssrc()) {
872 for (const LoggedRtpPacketOutgoing& packet : stream.outgoing_packets)
873 packets_in_order.insert(
874 std::make_pair(packet.rtp.log_time_us(), packet.rtp.total_length));
875 }
876
877 auto window_begin = packets_in_order.begin();
878 auto window_end = packets_in_order.begin();
879 size_t bytes_in_window = 0;
880
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800881 if (!packets_in_order.empty()) {
882 // Calculate a moving average of the bitrate and store in a TimeSeries.
883 TimeSeries bitrate_series("Bitrate", LineStyle::kLine);
884 for (int64_t time = config_.begin_time_;
885 time < config_.end_time_ + config_.step_; time += config_.step_) {
886 while (window_end != packets_in_order.end() && window_end->first < time) {
887 bytes_in_window += window_end->second;
888 ++window_end;
889 }
890 while (window_begin != packets_in_order.end() &&
891 window_begin->first < time - config_.window_duration_) {
892 RTC_DCHECK_LE(window_begin->second, bytes_in_window);
893 bytes_in_window -= window_begin->second;
894 ++window_begin;
895 }
896 float window_duration_in_seconds =
897 static_cast<float>(config_.window_duration_) / kNumMicrosecsPerSec;
898 float x = config_.GetCallTimeSec(time);
899 float y = bytes_in_window * 8 / window_duration_in_seconds / 1000;
900 bitrate_series.points.emplace_back(x, y);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200901 }
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -0800902 plot->AppendTimeSeries(std::move(bitrate_series));
terelius54ce6802016-07-13 06:44:41 -0700903 }
904
terelius8058e582016-07-25 01:32:41 -0700905 // Overlay the send-side bandwidth estimate over the outgoing bitrate.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200906 TimeSeries loss_series("Loss-based estimate", LineStyle::kStep);
907 for (auto& loss_update : parsed_log_.bwe_loss_updates()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100908 float x = config_.GetCallTimeSec(loss_update.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200909 float y = static_cast<float>(loss_update.bitrate_bps) / 1000;
910 loss_series.points.emplace_back(x, y);
911 }
philipel10fc0e62017-04-11 01:50:23 -0700912
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200913 TimeSeries delay_series("Delay-based estimate", LineStyle::kStep);
914 IntervalSeries overusing_series("Overusing", "#ff8e82",
915 IntervalSeries::kHorizontal);
916 IntervalSeries underusing_series("Underusing", "#5092fc",
917 IntervalSeries::kHorizontal);
918 IntervalSeries normal_series("Normal", "#c4ffc4",
919 IntervalSeries::kHorizontal);
920 IntervalSeries* last_series = &normal_series;
921 double last_detector_switch = 0.0;
philipel23c7f252017-07-14 06:30:03 -0700922
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200923 BandwidthUsage last_detector_state = BandwidthUsage::kBwNormal;
philipel23c7f252017-07-14 06:30:03 -0700924
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200925 for (auto& delay_update : parsed_log_.bwe_delay_updates()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100926 float x = config_.GetCallTimeSec(delay_update.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200927 float y = static_cast<float>(delay_update.bitrate_bps) / 1000;
philipel23c7f252017-07-14 06:30:03 -0700928
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200929 if (last_detector_state != delay_update.detector_state) {
930 last_series->intervals.emplace_back(last_detector_switch, x);
931 last_detector_state = delay_update.detector_state;
932 last_detector_switch = x;
philipel23c7f252017-07-14 06:30:03 -0700933
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200934 switch (delay_update.detector_state) {
935 case BandwidthUsage::kBwNormal:
936 last_series = &normal_series;
937 break;
938 case BandwidthUsage::kBwUnderusing:
939 last_series = &underusing_series;
940 break;
941 case BandwidthUsage::kBwOverusing:
942 last_series = &overusing_series;
943 break;
944 case BandwidthUsage::kLast:
945 RTC_NOTREACHED();
philipele127e7a2017-03-29 16:28:53 +0200946 }
947 }
philipel23c7f252017-07-14 06:30:03 -0700948
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200949 delay_series.points.emplace_back(x, y);
950 }
Bjorn Terelius9e336ec2018-04-24 16:28:35 +0200951
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200952 RTC_CHECK(last_series);
Bjorn Terelius068fc352019-02-13 22:38:25 +0100953 last_series->intervals.emplace_back(last_detector_switch, config_.end_time_);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200954
955 TimeSeries created_series("Probe cluster created.", LineStyle::kNone,
956 PointStyle::kHighlight);
957 for (auto& cluster : parsed_log_.bwe_probe_cluster_created_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100958 float x = config_.GetCallTimeSec(cluster.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200959 float y = static_cast<float>(cluster.bitrate_bps) / 1000;
960 created_series.points.emplace_back(x, y);
961 }
962
963 TimeSeries result_series("Probing results.", LineStyle::kNone,
964 PointStyle::kHighlight);
Bjorn Terelius7a0bb002018-05-29 14:45:53 +0200965 for (auto& result : parsed_log_.bwe_probe_success_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100966 float x = config_.GetCallTimeSec(result.log_time_us());
Bjorn Terelius7a0bb002018-05-29 14:45:53 +0200967 float y = static_cast<float>(result.bitrate_bps) / 1000;
968 result_series.points.emplace_back(x, y);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200969 }
970
Piotr (Peter) Slatalaf996c842019-01-04 06:54:22 -0800971 TimeSeries probe_failures_series("Probe failed", LineStyle::kNone,
972 PointStyle::kHighlight);
973 for (auto& failure : parsed_log_.bwe_probe_failure_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100974 float x = config_.GetCallTimeSec(failure.log_time_us());
Piotr (Peter) Slatalaf996c842019-01-04 06:54:22 -0800975 probe_failures_series.points.emplace_back(x, 0);
976 }
977
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200978 IntervalSeries alr_state("ALR", "#555555", IntervalSeries::kHorizontal);
979 bool previously_in_alr = false;
980 int64_t alr_start = 0;
981 for (auto& alr : parsed_log_.alr_state_events()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100982 float y = config_.GetCallTimeSec(alr.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200983 if (!previously_in_alr && alr.in_alr) {
984 alr_start = alr.log_time_us();
985 previously_in_alr = true;
986 } else if (previously_in_alr && !alr.in_alr) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100987 float x = config_.GetCallTimeSec(alr_start);
Ilya Nikolaevskiya4259f62017-12-05 13:19:45 +0100988 alr_state.intervals.emplace_back(x, y);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200989 previously_in_alr = false;
Björn Tereliusff612732018-04-25 14:23:01 +0000990 }
Björn Tereliusff612732018-04-25 14:23:01 +0000991 }
992
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200993 if (previously_in_alr) {
Bjorn Terelius068fc352019-02-13 22:38:25 +0100994 float x = config_.GetCallTimeSec(alr_start);
995 float y = config_.GetCallTimeSec(config_.end_time_);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +0200996 alr_state.intervals.emplace_back(x, y);
997 }
998
999 if (show_detector_state) {
1000 plot->AppendIntervalSeries(std::move(overusing_series));
1001 plot->AppendIntervalSeries(std::move(underusing_series));
1002 plot->AppendIntervalSeries(std::move(normal_series));
1003 }
1004
1005 if (show_alr_state) {
1006 plot->AppendIntervalSeries(std::move(alr_state));
1007 }
1008 plot->AppendTimeSeries(std::move(loss_series));
Piotr (Peter) Slatalaf996c842019-01-04 06:54:22 -08001009 plot->AppendTimeSeriesIfNotEmpty(std::move(probe_failures_series));
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001010 plot->AppendTimeSeries(std::move(delay_series));
1011 plot->AppendTimeSeries(std::move(created_series));
1012 plot->AppendTimeSeries(std::move(result_series));
1013
1014 // Overlay the incoming REMB over the outgoing bitrate.
Björn Tereliusff612732018-04-25 14:23:01 +00001015 TimeSeries remb_series("Remb", LineStyle::kStep);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001016 for (const auto& rtcp : parsed_log_.rembs(kIncomingPacket)) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001017 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001018 float y = static_cast<float>(rtcp.remb.bitrate_bps()) / 1000;
terelius2c8e8a32017-06-02 01:29:48 -07001019 remb_series.points.emplace_back(x, y);
1020 }
1021 plot->AppendTimeSeriesIfNotEmpty(std::move(remb_series));
1022
Piotr (Peter) Slatalacf8405e2019-02-14 13:44:57 -08001023 if (!parsed_log_.generic_packets_sent().empty()) {
1024 {
1025 TimeSeries time_series("Outgoing generic total bitrate",
1026 LineStyle::kLine);
1027 auto GetPacketSizeKilobits = [](const LoggedGenericPacketSent& packet) {
1028 return packet.packet_length() * 8.0 / 1000.0;
1029 };
1030 MovingAverage<LoggedGenericPacketSent, double>(
1031 GetPacketSizeKilobits, parsed_log_.generic_packets_sent(), config_,
1032 &time_series);
1033 plot->AppendTimeSeries(std::move(time_series));
1034 }
1035
1036 {
1037 TimeSeries time_series("Outgoing generic payload bitrate",
1038 LineStyle::kLine);
1039 auto GetPacketSizeKilobits = [](const LoggedGenericPacketSent& packet) {
1040 return packet.payload_length * 8.0 / 1000.0;
1041 };
1042 MovingAverage<LoggedGenericPacketSent, double>(
1043 GetPacketSizeKilobits, parsed_log_.generic_packets_sent(), config_,
1044 &time_series);
1045 plot->AppendTimeSeries(std::move(time_series));
1046 }
1047 }
1048
Bjorn Terelius068fc352019-02-13 22:38:25 +01001049 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1050 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -07001051 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001052 plot->SetTitle("Outgoing RTP bitrate");
terelius54ce6802016-07-13 06:44:41 -07001053}
1054
1055// For each SSRC, plot the bandwidth used by that stream.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001056void EventLogAnalyzer::CreateStreamBitrateGraph(PacketDirection direction,
1057 Plot* plot) {
1058 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
1059 // Filter on SSRC.
1060 if (!MatchingSsrc(stream.ssrc, desired_ssrc_)) {
terelius6addf492016-08-23 17:34:07 -07001061 continue;
terelius54ce6802016-07-13 06:44:41 -07001062 }
1063
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001064 TimeSeries time_series(GetStreamName(direction, stream.ssrc),
1065 LineStyle::kLine);
1066 auto GetPacketSizeKilobits = [](const LoggedRtpPacket& packet) {
1067 return packet.total_length * 8.0 / 1000.0;
1068 };
terelius53dc23c2017-03-13 05:24:05 -07001069 MovingAverage<LoggedRtpPacket, double>(
Bjorn Terelius068fc352019-02-13 22:38:25 +01001070 GetPacketSizeKilobits, stream.packet_view, config_, &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001071 plot->AppendTimeSeries(std::move(time_series));
terelius54ce6802016-07-13 06:44:41 -07001072 }
1073
Bjorn Terelius068fc352019-02-13 22:38:25 +01001074 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1075 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -07001076 plot->SetSuggestedYAxis(0, 1, "Bitrate (kbps)", kBottomMargin, kTopMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001077 plot->SetTitle(GetDirectionAsString(direction) + " bitrate per stream");
terelius54ce6802016-07-13 06:44:41 -07001078}
1079
Bjorn Terelius28db2662017-10-04 14:22:43 +02001080void EventLogAnalyzer::CreateSendSideBweSimulationGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001081 using RtpPacketType = LoggedRtpPacketOutgoing;
1082 using TransportFeedbackType = LoggedRtcpPacketTransportFeedback;
Stefan Holmer13181032016-07-29 14:48:54 +02001083
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001084 // TODO(terelius): This could be provided by the parser.
1085 std::multimap<int64_t, const RtpPacketType*> outgoing_rtp;
1086 for (const auto& stream : parsed_log_.outgoing_rtp_packets_by_ssrc()) {
1087 for (const RtpPacketType& rtp_packet : stream.outgoing_packets)
1088 outgoing_rtp.insert(
1089 std::make_pair(rtp_packet.rtp.log_time_us(), &rtp_packet));
Stefan Holmer13181032016-07-29 14:48:54 +02001090 }
1091
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001092 const std::vector<TransportFeedbackType>& incoming_rtcp =
1093 parsed_log_.transport_feedbacks(kIncomingPacket);
Stefan Holmer13181032016-07-29 14:48:54 +02001094
1095 SimulatedClock clock(0);
1096 BitrateObserver observer;
1097 RtcEventLogNullImpl null_event_log;
nisse0245da02016-11-30 03:35:20 -08001098 PacketRouter packet_router;
Stefan Holmer5c8942a2017-08-22 16:16:44 +02001099 PacedSender pacer(&clock, &packet_router, &null_event_log);
Sebastian Jansson05acd2b2019-01-21 13:07:47 +01001100 TransportFeedbackAdapter transport_feedback;
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001101 auto factory = GoogCcNetworkControllerFactory(&null_event_log);
1102 TimeDelta process_interval = factory.GetProcessInterval();
Stefan Holmer13181032016-07-29 14:48:54 +02001103 // TODO(holmer): Log the call config and use that here instead.
1104 static const uint32_t kDefaultStartBitrateBps = 300000;
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001105 NetworkControllerConfig cc_config;
Sebastian Jansson78416b62018-10-18 13:08:17 +02001106 cc_config.constraints.at_time = Timestamp::us(clock.TimeInMicroseconds());
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001107 cc_config.constraints.starting_rate = DataRate::bps(kDefaultStartBitrateBps);
1108 auto goog_cc = factory.Create(cc_config);
Stefan Holmer13181032016-07-29 14:48:54 +02001109
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001110 TimeSeries time_series("Delay-based estimate", LineStyle::kStep,
1111 PointStyle::kHighlight);
1112 TimeSeries acked_time_series("Acked bitrate", LineStyle::kLine,
1113 PointStyle::kHighlight);
1114 TimeSeries acked_estimate_time_series(
1115 "Acked bitrate estimate", LineStyle::kLine, PointStyle::kHighlight);
Stefan Holmer13181032016-07-29 14:48:54 +02001116
1117 auto rtp_iterator = outgoing_rtp.begin();
1118 auto rtcp_iterator = incoming_rtcp.begin();
1119
1120 auto NextRtpTime = [&]() {
1121 if (rtp_iterator != outgoing_rtp.end())
1122 return static_cast<int64_t>(rtp_iterator->first);
1123 return std::numeric_limits<int64_t>::max();
1124 };
1125
1126 auto NextRtcpTime = [&]() {
1127 if (rtcp_iterator != incoming_rtcp.end())
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001128 return static_cast<int64_t>(rtcp_iterator->log_time_us());
Stefan Holmer13181032016-07-29 14:48:54 +02001129 return std::numeric_limits<int64_t>::max();
1130 };
Bjorn Tereliusa728c912018-12-06 12:26:30 +01001131 int64_t next_process_time_us_ = std::min({NextRtpTime(), NextRtcpTime()});
Stefan Holmer13181032016-07-29 14:48:54 +02001132
1133 auto NextProcessTime = [&]() {
1134 if (rtcp_iterator != incoming_rtcp.end() ||
1135 rtp_iterator != outgoing_rtp.end()) {
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001136 return next_process_time_us_;
Stefan Holmer13181032016-07-29 14:48:54 +02001137 }
1138 return std::numeric_limits<int64_t>::max();
1139 };
1140
Stefan Holmer492ee282016-10-27 17:19:20 +02001141 RateStatistics acked_bitrate(250, 8000);
Bjorn Terelius6984ad22017-10-24 12:19:45 +02001142#if !(BWE_TEST_LOGGING_COMPILE_TIME_ENABLE)
Sebastian Jansson95edb032019-01-17 16:24:12 +01001143 FieldTrialBasedConfig field_trial_config_;
Bjorn Terelius6984ad22017-10-24 12:19:45 +02001144 // The event_log_visualizer should normally not be compiled with
1145 // BWE_TEST_LOGGING_COMPILE_TIME_ENABLE since the normal plots won't work.
1146 // However, compiling with BWE_TEST_LOGGING, runnning with --plot_sendside_bwe
1147 // and piping the output to plot_dynamics.py can be used as a hack to get the
1148 // internal state of various BWE components. In this case, it is important
1149 // we don't instantiate the AcknowledgedBitrateEstimator both here and in
1150 // SendSideCongestionController since that would lead to duplicate outputs.
1151 AcknowledgedBitrateEstimator acknowledged_bitrate_estimator(
Sebastian Jansson95edb032019-01-17 16:24:12 +01001152 &field_trial_config_,
1153 absl::make_unique<BitrateEstimator>(&field_trial_config_));
Bjorn Terelius6984ad22017-10-24 12:19:45 +02001154#endif // !(BWE_TEST_LOGGING_COMPILE_TIME_ENABLE)
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001155 int64_t time_us =
1156 std::min({NextRtpTime(), NextRtcpTime(), NextProcessTime()});
Stefan Holmer492ee282016-10-27 17:19:20 +02001157 int64_t last_update_us = 0;
Stefan Holmer13181032016-07-29 14:48:54 +02001158 while (time_us != std::numeric_limits<int64_t>::max()) {
1159 clock.AdvanceTimeMicroseconds(time_us - clock.TimeInMicroseconds());
Bjorn Tereliusc60a7772018-12-05 21:15:30 +01001160 if (clock.TimeInMicroseconds() >= NextRtpTime()) {
1161 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtpTime());
1162 const RtpPacketType& rtp_packet = *rtp_iterator->second;
1163 if (rtp_packet.rtp.header.extension.hasTransportSequenceNumber) {
1164 RTC_DCHECK(rtp_packet.rtp.header.extension.hasTransportSequenceNumber);
1165 transport_feedback.AddPacket(
1166 rtp_packet.rtp.header.ssrc,
1167 rtp_packet.rtp.header.extension.transportSequenceNumber,
Sebastian Jansson05acd2b2019-01-21 13:07:47 +01001168 rtp_packet.rtp.total_length, PacedPacketInfo(),
1169 Timestamp::us(rtp_packet.rtp.log_time_us()));
Bjorn Tereliusc60a7772018-12-05 21:15:30 +01001170 rtc::SentPacket sent_packet(
1171 rtp_packet.rtp.header.extension.transportSequenceNumber,
1172 rtp_packet.rtp.log_time_us() / 1000);
1173 auto sent_msg = transport_feedback.ProcessSentPacket(sent_packet);
1174 if (sent_msg)
1175 observer.Update(goog_cc->OnSentPacket(*sent_msg));
1176 }
1177 ++rtp_iterator;
1178 }
Stefan Holmer13181032016-07-29 14:48:54 +02001179 if (clock.TimeInMicroseconds() >= NextRtcpTime()) {
stefanc3de0332016-08-02 07:22:17 -07001180 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextRtcpTime());
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001181
1182 auto feedback_msg = transport_feedback.ProcessTransportFeedback(
Sebastian Jansson05acd2b2019-01-21 13:07:47 +01001183 rtcp_iterator->transport_feedback,
1184 Timestamp::ms(clock.TimeInMilliseconds()));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001185 absl::optional<uint32_t> bitrate_bps;
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001186 if (feedback_msg) {
1187 observer.Update(goog_cc->OnTransportPacketsFeedback(*feedback_msg));
1188 std::vector<PacketFeedback> feedback =
1189 transport_feedback.GetTransportFeedbackVector();
1190 SortPacketFeedbackVector(&feedback);
1191 if (!feedback.empty()) {
Bjorn Terelius6984ad22017-10-24 12:19:45 +02001192#if !(BWE_TEST_LOGGING_COMPILE_TIME_ENABLE)
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001193 acknowledged_bitrate_estimator.IncomingPacketFeedbackVector(feedback);
Bjorn Terelius6984ad22017-10-24 12:19:45 +02001194#endif // !(BWE_TEST_LOGGING_COMPILE_TIME_ENABLE)
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001195 for (const PacketFeedback& packet : feedback)
1196 acked_bitrate.Update(packet.payload_size, packet.arrival_time_ms);
1197 bitrate_bps = acked_bitrate.Rate(feedback.back().arrival_time_ms);
1198 }
Stefan Holmer13181032016-07-29 14:48:54 +02001199 }
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001200
Bjorn Terelius068fc352019-02-13 22:38:25 +01001201 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001202 float y = bitrate_bps.value_or(0) / 1000;
1203 acked_time_series.points.emplace_back(x, y);
1204#if !(BWE_TEST_LOGGING_COMPILE_TIME_ENABLE)
1205 y = acknowledged_bitrate_estimator.bitrate_bps().value_or(0) / 1000;
1206 acked_estimate_time_series.points.emplace_back(x, y);
1207#endif // !(BWE_TEST_LOGGING_COMPILE_TIME_ENABLE)
Stefan Holmer13181032016-07-29 14:48:54 +02001208 ++rtcp_iterator;
1209 }
stefanc3de0332016-08-02 07:22:17 -07001210 if (clock.TimeInMicroseconds() >= NextProcessTime()) {
1211 RTC_DCHECK_EQ(clock.TimeInMicroseconds(), NextProcessTime());
Sebastian Jansson5c94f552018-10-15 18:46:51 +02001212 ProcessInterval msg;
1213 msg.at_time = Timestamp::us(clock.TimeInMicroseconds());
1214 observer.Update(goog_cc->OnProcessInterval(msg));
1215 next_process_time_us_ += process_interval.us();
stefanc3de0332016-08-02 07:22:17 -07001216 }
Stefan Holmer492ee282016-10-27 17:19:20 +02001217 if (observer.GetAndResetBitrateUpdated() ||
1218 time_us - last_update_us >= 1e6) {
Stefan Holmer13181032016-07-29 14:48:54 +02001219 uint32_t y = observer.last_bitrate_bps() / 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001220 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Stefan Holmer13181032016-07-29 14:48:54 +02001221 time_series.points.emplace_back(x, y);
Stefan Holmer492ee282016-10-27 17:19:20 +02001222 last_update_us = time_us;
Stefan Holmer13181032016-07-29 14:48:54 +02001223 }
1224 time_us = std::min({NextRtpTime(), NextRtcpTime(), NextProcessTime()});
1225 }
1226 // Add the data set to the plot.
philipel35ba9bd2017-04-19 05:58:51 -07001227 plot->AppendTimeSeries(std::move(time_series));
1228 plot->AppendTimeSeries(std::move(acked_time_series));
Bjorn Terelius6984ad22017-10-24 12:19:45 +02001229 plot->AppendTimeSeriesIfNotEmpty(std::move(acked_estimate_time_series));
Stefan Holmer13181032016-07-29 14:48:54 +02001230
Bjorn Terelius068fc352019-02-13 22:38:25 +01001231 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1232 "Time (s)", kLeftMargin, kRightMargin);
tereliusdc35dcd2016-08-01 12:03:27 -07001233 plot->SetSuggestedYAxis(0, 10, "Bitrate (kbps)", kBottomMargin, kTopMargin);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001234 plot->SetTitle("Simulated send-side BWE behavior");
1235}
1236
1237void EventLogAnalyzer::CreateReceiveSideBweSimulationGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001238 using RtpPacketType = LoggedRtpPacketIncoming;
Bjorn Terelius28db2662017-10-04 14:22:43 +02001239 class RembInterceptingPacketRouter : public PacketRouter {
1240 public:
1241 void OnReceiveBitrateChanged(const std::vector<uint32_t>& ssrcs,
1242 uint32_t bitrate_bps) override {
1243 last_bitrate_bps_ = bitrate_bps;
1244 bitrate_updated_ = true;
1245 PacketRouter::OnReceiveBitrateChanged(ssrcs, bitrate_bps);
1246 }
1247 uint32_t last_bitrate_bps() const { return last_bitrate_bps_; }
1248 bool GetAndResetBitrateUpdated() {
1249 bool bitrate_updated = bitrate_updated_;
1250 bitrate_updated_ = false;
1251 return bitrate_updated;
1252 }
1253
1254 private:
1255 uint32_t last_bitrate_bps_;
1256 bool bitrate_updated_;
1257 };
1258
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001259 std::multimap<int64_t, const RtpPacketType*> incoming_rtp;
Bjorn Terelius28db2662017-10-04 14:22:43 +02001260
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001261 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
1262 if (IsVideoSsrc(kIncomingPacket, stream.ssrc)) {
1263 for (const auto& rtp_packet : stream.incoming_packets)
1264 incoming_rtp.insert(
1265 std::make_pair(rtp_packet.rtp.log_time_us(), &rtp_packet));
Bjorn Terelius28db2662017-10-04 14:22:43 +02001266 }
1267 }
1268
1269 SimulatedClock clock(0);
1270 RembInterceptingPacketRouter packet_router;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001271 // TODO(terelius): The PacketRouter is used as the RemoteBitrateObserver.
Bjorn Terelius28db2662017-10-04 14:22:43 +02001272 // Is this intentional?
1273 ReceiveSideCongestionController rscc(&clock, &packet_router);
1274 // TODO(holmer): Log the call config and use that here instead.
1275 // static const uint32_t kDefaultStartBitrateBps = 300000;
1276 // rscc.SetBweBitrates(0, kDefaultStartBitrateBps, -1);
1277
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001278 TimeSeries time_series("Receive side estimate", LineStyle::kLine,
1279 PointStyle::kHighlight);
1280 TimeSeries acked_time_series("Received bitrate", LineStyle::kLine);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001281
1282 RateStatistics acked_bitrate(250, 8000);
1283 int64_t last_update_us = 0;
1284 for (const auto& kv : incoming_rtp) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001285 const RtpPacketType& packet = *kv.second;
1286 int64_t arrival_time_ms = packet.rtp.log_time_us() / 1000;
1287 size_t payload = packet.rtp.total_length; /*Should subtract header?*/
1288 clock.AdvanceTimeMicroseconds(packet.rtp.log_time_us() -
Bjorn Terelius28db2662017-10-04 14:22:43 +02001289 clock.TimeInMicroseconds());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001290 rscc.OnReceivedPacket(arrival_time_ms, payload, packet.rtp.header);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001291 acked_bitrate.Update(payload, arrival_time_ms);
Danil Chapovalov431abd92018-06-18 12:54:17 +02001292 absl::optional<uint32_t> bitrate_bps = acked_bitrate.Rate(arrival_time_ms);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001293 if (bitrate_bps) {
1294 uint32_t y = *bitrate_bps / 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001295 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Bjorn Terelius28db2662017-10-04 14:22:43 +02001296 acked_time_series.points.emplace_back(x, y);
1297 }
1298 if (packet_router.GetAndResetBitrateUpdated() ||
1299 clock.TimeInMicroseconds() - last_update_us >= 1e6) {
1300 uint32_t y = packet_router.last_bitrate_bps() / 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001301 float x = config_.GetCallTimeSec(clock.TimeInMicroseconds());
Bjorn Terelius28db2662017-10-04 14:22:43 +02001302 time_series.points.emplace_back(x, y);
1303 last_update_us = clock.TimeInMicroseconds();
1304 }
1305 }
1306 // Add the data set to the plot.
1307 plot->AppendTimeSeries(std::move(time_series));
1308 plot->AppendTimeSeries(std::move(acked_time_series));
1309
Bjorn Terelius068fc352019-02-13 22:38:25 +01001310 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1311 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Terelius28db2662017-10-04 14:22:43 +02001312 plot->SetSuggestedYAxis(0, 10, "Bitrate (kbps)", kBottomMargin, kTopMargin);
1313 plot->SetTitle("Simulated receive-side BWE behavior");
Stefan Holmer13181032016-07-29 14:48:54 +02001314}
1315
tereliuse34c19c2016-08-15 08:47:14 -07001316void EventLogAnalyzer::CreateNetworkDelayFeedbackGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001317 TimeSeries late_feedback_series("Late feedback results.", LineStyle::kNone,
1318 PointStyle::kHighlight);
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001319 TimeSeries time_series("Network delay", LineStyle::kLine,
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001320 PointStyle::kHighlight);
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001321 int64_t min_send_receive_diff_ms = std::numeric_limits<int64_t>::max();
1322 int64_t min_rtt_ms = std::numeric_limits<int64_t>::max();
stefanc3de0332016-08-02 07:22:17 -07001323
stefana0a8ed72017-09-06 02:06:32 -07001324 int64_t prev_y = 0;
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001325 for (auto packet : GetNetworkTrace(parsed_log_)) {
1326 if (packet.arrival_time_ms == PacketFeedback::kNotReceived)
1327 continue;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001328 float x = config_.GetCallTimeSec(1000 * packet.feedback_arrival_time_ms);
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001329 if (packet.send_time_ms == PacketFeedback::kNoSendTime) {
1330 late_feedback_series.points.emplace_back(x, prev_y);
1331 continue;
stefanc3de0332016-08-02 07:22:17 -07001332 }
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001333 int64_t y = packet.arrival_time_ms - packet.send_time_ms;
1334 prev_y = y;
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001335 int64_t rtt_ms = packet.feedback_arrival_time_ms - packet.send_time_ms;
1336 min_rtt_ms = std::min(rtt_ms, min_rtt_ms);
1337 min_send_receive_diff_ms = std::min(y, min_send_receive_diff_ms);
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001338 time_series.points.emplace_back(x, y);
stefanc3de0332016-08-02 07:22:17 -07001339 }
Christoffer Rodbro89f64d32018-09-27 14:29:35 +02001340
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001341 // We assume that the base network delay (w/o queues) is equal to half
1342 // the minimum RTT. Therefore rescale the delays by subtracting the minimum
1343 // observed 1-ways delay and add half the minumum RTT.
1344 const int64_t estimated_clock_offset_ms =
1345 min_send_receive_diff_ms - min_rtt_ms / 2;
stefanc3de0332016-08-02 07:22:17 -07001346 for (TimeSeriesPoint& point : time_series.points)
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001347 point.y -= estimated_clock_offset_ms;
stefana0a8ed72017-09-06 02:06:32 -07001348 for (TimeSeriesPoint& point : late_feedback_series.points)
Bjorn Terelius57ba7e12018-10-25 15:31:35 +02001349 point.y -= estimated_clock_offset_ms;
1350
stefanc3de0332016-08-02 07:22:17 -07001351 // Add the data set to the plot.
stefana0a8ed72017-09-06 02:06:32 -07001352 plot->AppendTimeSeriesIfNotEmpty(std::move(time_series));
1353 plot->AppendTimeSeriesIfNotEmpty(std::move(late_feedback_series));
stefanc3de0332016-08-02 07:22:17 -07001354
Bjorn Terelius068fc352019-02-13 22:38:25 +01001355 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1356 "Time (s)", kLeftMargin, kRightMargin);
stefanc3de0332016-08-02 07:22:17 -07001357 plot->SetSuggestedYAxis(0, 10, "Delay (ms)", kBottomMargin, kTopMargin);
Konrad Hofbauer5be3bbd2019-01-21 12:31:07 +01001358 plot->SetTitle("Outgoing network delay (based on per-packet feedback)");
stefanc3de0332016-08-02 07:22:17 -07001359}
stefan08383272016-12-20 08:51:52 -08001360
Bjorn Terelius0295a962017-10-25 17:42:41 +02001361void EventLogAnalyzer::CreatePacerDelayGraph(Plot* plot) {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001362 for (const auto& stream : parsed_log_.outgoing_rtp_packets_by_ssrc()) {
1363 const std::vector<LoggedRtpPacketOutgoing>& packets =
1364 stream.outgoing_packets;
Bjorn Terelius0295a962017-10-25 17:42:41 +02001365
1366 if (packets.size() < 2) {
Mirko Bonadei675513b2017-11-09 11:09:25 +01001367 RTC_LOG(LS_WARNING)
1368 << "Can't estimate a the RTP clock frequency or the "
1369 "pacer delay with less than 2 packets in the stream";
Bjorn Terelius0295a962017-10-25 17:42:41 +02001370 continue;
1371 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001372 int64_t end_time_us = log_segments_.empty()
1373 ? std::numeric_limits<int64_t>::max()
1374 : log_segments_.front().second;
Danil Chapovalov431abd92018-06-18 12:54:17 +02001375 absl::optional<uint32_t> estimated_frequency =
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001376 EstimateRtpClockFrequency(packets, end_time_us);
Bjorn Terelius0295a962017-10-25 17:42:41 +02001377 if (!estimated_frequency)
1378 continue;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001379 if (IsVideoSsrc(kOutgoingPacket, stream.ssrc) &&
1380 *estimated_frequency != 90000) {
Mirko Bonadei675513b2017-11-09 11:09:25 +01001381 RTC_LOG(LS_WARNING)
Bjorn Terelius0295a962017-10-25 17:42:41 +02001382 << "Video stream should use a 90 kHz clock but appears to use "
1383 << *estimated_frequency / 1000 << ". Discarding.";
1384 continue;
1385 }
1386
1387 TimeSeries pacer_delay_series(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001388 GetStreamName(kOutgoingPacket, stream.ssrc) + "(" +
Bjorn Terelius0295a962017-10-25 17:42:41 +02001389 std::to_string(*estimated_frequency / 1000) + " kHz)",
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001390 LineStyle::kLine, PointStyle::kHighlight);
Bjorn Terelius0295a962017-10-25 17:42:41 +02001391 SeqNumUnwrapper<uint32_t> timestamp_unwrapper;
1392 uint64_t first_capture_timestamp =
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001393 timestamp_unwrapper.Unwrap(packets.front().rtp.header.timestamp);
1394 uint64_t first_send_timestamp = packets.front().rtp.log_time_us();
1395 for (const auto& packet : packets) {
Bjorn Terelius0295a962017-10-25 17:42:41 +02001396 double capture_time_ms = (static_cast<double>(timestamp_unwrapper.Unwrap(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001397 packet.rtp.header.timestamp)) -
Bjorn Terelius0295a962017-10-25 17:42:41 +02001398 first_capture_timestamp) /
1399 *estimated_frequency * 1000;
1400 double send_time_ms =
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001401 static_cast<double>(packet.rtp.log_time_us() - first_send_timestamp) /
1402 1000;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001403 float x = config_.GetCallTimeSec(packet.rtp.log_time_us());
Bjorn Terelius0295a962017-10-25 17:42:41 +02001404 float y = send_time_ms - capture_time_ms;
1405 pacer_delay_series.points.emplace_back(x, y);
1406 }
1407 plot->AppendTimeSeries(std::move(pacer_delay_series));
1408 }
1409
Bjorn Terelius068fc352019-02-13 22:38:25 +01001410 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1411 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Terelius0295a962017-10-25 17:42:41 +02001412 plot->SetSuggestedYAxis(0, 10, "Pacer delay (ms)", kBottomMargin, kTopMargin);
1413 plot->SetTitle(
1414 "Delay from capture to send time. (First packet normalized to 0.)");
1415}
1416
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001417void EventLogAnalyzer::CreateTimestampGraph(PacketDirection direction,
1418 Plot* plot) {
1419 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
1420 TimeSeries rtp_timestamps(
1421 GetStreamName(direction, stream.ssrc) + " capture-time",
1422 LineStyle::kLine, PointStyle::kHighlight);
1423 for (const auto& packet : stream.packet_view) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001424 float x = config_.GetCallTimeSec(packet.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001425 float y = packet.header.timestamp;
1426 rtp_timestamps.points.emplace_back(x, y);
stefane372d3c2017-02-02 08:04:18 -08001427 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001428 plot->AppendTimeSeries(std::move(rtp_timestamps));
Björn Tereliusff612732018-04-25 14:23:01 +00001429
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001430 TimeSeries rtcp_timestamps(
1431 GetStreamName(direction, stream.ssrc) + " rtcp capture-time",
1432 LineStyle::kLine, PointStyle::kHighlight);
1433 // TODO(terelius): Why only sender reports?
1434 const auto& sender_reports = parsed_log_.sender_reports(direction);
1435 for (const auto& rtcp : sender_reports) {
1436 if (rtcp.sr.sender_ssrc() != stream.ssrc)
1437 continue;
Bjorn Terelius068fc352019-02-13 22:38:25 +01001438 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001439 float y = rtcp.sr.rtp_timestamp();
1440 rtcp_timestamps.points.emplace_back(x, y);
Björn Tereliusff612732018-04-25 14:23:01 +00001441 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001442 plot->AppendTimeSeriesIfNotEmpty(std::move(rtcp_timestamps));
stefane372d3c2017-02-02 08:04:18 -08001443 }
1444
Bjorn Terelius068fc352019-02-13 22:38:25 +01001445 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1446 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001447 plot->SetSuggestedYAxis(0, 1, "RTP timestamp", kBottomMargin, kTopMargin);
1448 plot->SetTitle(GetDirectionAsString(direction) + " timestamps");
stefane372d3c2017-02-02 08:04:18 -08001449}
michaelt6e5b2192017-02-22 07:33:27 -08001450
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001451void EventLogAnalyzer::CreateSenderAndReceiverReportPlot(
1452 PacketDirection direction,
1453 rtc::FunctionView<float(const rtcp::ReportBlock&)> fy,
1454 std::string title,
1455 std::string yaxis_label,
1456 Plot* plot) {
1457 std::map<uint32_t, TimeSeries> sr_reports_by_ssrc;
1458 const auto& sender_reports = parsed_log_.sender_reports(direction);
1459 for (const auto& rtcp : sender_reports) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001460 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001461 uint32_t ssrc = rtcp.sr.sender_ssrc();
1462 for (const auto& block : rtcp.sr.report_blocks()) {
1463 float y = fy(block);
1464 auto sr_report_it = sr_reports_by_ssrc.find(ssrc);
1465 bool inserted;
1466 if (sr_report_it == sr_reports_by_ssrc.end()) {
1467 std::tie(sr_report_it, inserted) = sr_reports_by_ssrc.emplace(
1468 ssrc, TimeSeries(GetStreamName(direction, ssrc) + " Sender Reports",
1469 LineStyle::kLine, PointStyle::kHighlight));
1470 }
1471 sr_report_it->second.points.emplace_back(x, y);
1472 }
1473 }
1474 for (auto& kv : sr_reports_by_ssrc) {
1475 plot->AppendTimeSeries(std::move(kv.second));
1476 }
1477
1478 std::map<uint32_t, TimeSeries> rr_reports_by_ssrc;
1479 const auto& receiver_reports = parsed_log_.receiver_reports(direction);
1480 for (const auto& rtcp : receiver_reports) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001481 float x = config_.GetCallTimeSec(rtcp.log_time_us());
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001482 uint32_t ssrc = rtcp.rr.sender_ssrc();
1483 for (const auto& block : rtcp.rr.report_blocks()) {
1484 float y = fy(block);
1485 auto rr_report_it = rr_reports_by_ssrc.find(ssrc);
1486 bool inserted;
1487 if (rr_report_it == rr_reports_by_ssrc.end()) {
1488 std::tie(rr_report_it, inserted) = rr_reports_by_ssrc.emplace(
1489 ssrc,
1490 TimeSeries(GetStreamName(direction, ssrc) + " Receiver Reports",
1491 LineStyle::kLine, PointStyle::kHighlight));
1492 }
1493 rr_report_it->second.points.emplace_back(x, y);
1494 }
1495 }
1496 for (auto& kv : rr_reports_by_ssrc) {
1497 plot->AppendTimeSeries(std::move(kv.second));
1498 }
1499
Bjorn Terelius068fc352019-02-13 22:38:25 +01001500 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1501 "Time (s)", kLeftMargin, kRightMargin);
Bjorn Tereliusb1222c22018-07-24 13:45:31 +02001502 plot->SetSuggestedYAxis(0, 1, yaxis_label, kBottomMargin, kTopMargin);
1503 plot->SetTitle(title);
1504}
1505
michaelt6e5b2192017-02-22 07:33:27 -08001506void EventLogAnalyzer::CreateAudioEncoderTargetBitrateGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001507 TimeSeries time_series("Audio encoder target bitrate", LineStyle::kLine,
1508 PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001509 auto GetAnaBitrateBps = [](const LoggedAudioNetworkAdaptationEvent& ana_event)
Danil Chapovalov431abd92018-06-18 12:54:17 +02001510 -> absl::optional<float> {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001511 if (ana_event.config.bitrate_bps)
Danil Chapovalov431abd92018-06-18 12:54:17 +02001512 return absl::optional<float>(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001513 static_cast<float>(*ana_event.config.bitrate_bps));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001514 return absl::nullopt;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001515 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001516 auto ToCallTime = [this](const LoggedAudioNetworkAdaptationEvent& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001517 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001518 };
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001519 ProcessPoints<LoggedAudioNetworkAdaptationEvent>(
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001520 ToCallTime, GetAnaBitrateBps,
1521 parsed_log_.audio_network_adaptation_events(), &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001522 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001523 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1524 "Time (s)", kLeftMargin, kRightMargin);
michaelt6e5b2192017-02-22 07:33:27 -08001525 plot->SetSuggestedYAxis(0, 1, "Bitrate (bps)", kBottomMargin, kTopMargin);
1526 plot->SetTitle("Reported audio encoder target bitrate");
1527}
1528
1529void EventLogAnalyzer::CreateAudioEncoderFrameLengthGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001530 TimeSeries time_series("Audio encoder frame length", LineStyle::kLine,
1531 PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001532 auto GetAnaFrameLengthMs =
1533 [](const LoggedAudioNetworkAdaptationEvent& ana_event) {
michaelt6e5b2192017-02-22 07:33:27 -08001534 if (ana_event.config.frame_length_ms)
Danil Chapovalov431abd92018-06-18 12:54:17 +02001535 return absl::optional<float>(
michaelt6e5b2192017-02-22 07:33:27 -08001536 static_cast<float>(*ana_event.config.frame_length_ms));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001537 return absl::optional<float>();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001538 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001539 auto ToCallTime = [this](const LoggedAudioNetworkAdaptationEvent& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001540 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001541 };
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001542 ProcessPoints<LoggedAudioNetworkAdaptationEvent>(
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001543 ToCallTime, GetAnaFrameLengthMs,
1544 parsed_log_.audio_network_adaptation_events(), &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001545 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001546 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1547 "Time (s)", kLeftMargin, kRightMargin);
michaelt6e5b2192017-02-22 07:33:27 -08001548 plot->SetSuggestedYAxis(0, 1, "Frame length (ms)", kBottomMargin, kTopMargin);
1549 plot->SetTitle("Reported audio encoder frame length");
1550}
1551
terelius2ee076d2017-08-15 02:04:02 -07001552void EventLogAnalyzer::CreateAudioEncoderPacketLossGraph(Plot* plot) {
philipel35ba9bd2017-04-19 05:58:51 -07001553 TimeSeries time_series("Audio encoder uplink packet loss fraction",
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001554 LineStyle::kLine, PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001555 auto GetAnaPacketLoss =
1556 [](const LoggedAudioNetworkAdaptationEvent& ana_event) {
michaelt6e5b2192017-02-22 07:33:27 -08001557 if (ana_event.config.uplink_packet_loss_fraction)
Danil Chapovalov431abd92018-06-18 12:54:17 +02001558 return absl::optional<float>(static_cast<float>(
michaelt6e5b2192017-02-22 07:33:27 -08001559 *ana_event.config.uplink_packet_loss_fraction));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001560 return absl::optional<float>();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001561 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001562 auto ToCallTime = [this](const LoggedAudioNetworkAdaptationEvent& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001563 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001564 };
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001565 ProcessPoints<LoggedAudioNetworkAdaptationEvent>(
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001566 ToCallTime, GetAnaPacketLoss,
1567 parsed_log_.audio_network_adaptation_events(), &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001568 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001569 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1570 "Time (s)", kLeftMargin, kRightMargin);
michaelt6e5b2192017-02-22 07:33:27 -08001571 plot->SetSuggestedYAxis(0, 10, "Percent lost packets", kBottomMargin,
1572 kTopMargin);
1573 plot->SetTitle("Reported audio encoder lost packets");
1574}
1575
1576void EventLogAnalyzer::CreateAudioEncoderEnableFecGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001577 TimeSeries time_series("Audio encoder FEC", LineStyle::kLine,
1578 PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001579 auto GetAnaFecEnabled =
1580 [](const LoggedAudioNetworkAdaptationEvent& ana_event) {
michaelt6e5b2192017-02-22 07:33:27 -08001581 if (ana_event.config.enable_fec)
Danil Chapovalov431abd92018-06-18 12:54:17 +02001582 return absl::optional<float>(
michaelt6e5b2192017-02-22 07:33:27 -08001583 static_cast<float>(*ana_event.config.enable_fec));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001584 return absl::optional<float>();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001585 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001586 auto ToCallTime = [this](const LoggedAudioNetworkAdaptationEvent& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001587 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001588 };
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001589 ProcessPoints<LoggedAudioNetworkAdaptationEvent>(
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001590 ToCallTime, GetAnaFecEnabled,
1591 parsed_log_.audio_network_adaptation_events(), &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001592 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001593 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1594 "Time (s)", kLeftMargin, kRightMargin);
michaelt6e5b2192017-02-22 07:33:27 -08001595 plot->SetSuggestedYAxis(0, 1, "FEC (false/true)", kBottomMargin, kTopMargin);
1596 plot->SetTitle("Reported audio encoder FEC");
1597}
1598
1599void EventLogAnalyzer::CreateAudioEncoderEnableDtxGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001600 TimeSeries time_series("Audio encoder DTX", LineStyle::kLine,
1601 PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001602 auto GetAnaDtxEnabled =
1603 [](const LoggedAudioNetworkAdaptationEvent& ana_event) {
michaelt6e5b2192017-02-22 07:33:27 -08001604 if (ana_event.config.enable_dtx)
Danil Chapovalov431abd92018-06-18 12:54:17 +02001605 return absl::optional<float>(
michaelt6e5b2192017-02-22 07:33:27 -08001606 static_cast<float>(*ana_event.config.enable_dtx));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001607 return absl::optional<float>();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001608 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001609 auto ToCallTime = [this](const LoggedAudioNetworkAdaptationEvent& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001610 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001611 };
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001612 ProcessPoints<LoggedAudioNetworkAdaptationEvent>(
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001613 ToCallTime, GetAnaDtxEnabled,
1614 parsed_log_.audio_network_adaptation_events(), &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001615 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001616 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1617 "Time (s)", kLeftMargin, kRightMargin);
michaelt6e5b2192017-02-22 07:33:27 -08001618 plot->SetSuggestedYAxis(0, 1, "DTX (false/true)", kBottomMargin, kTopMargin);
1619 plot->SetTitle("Reported audio encoder DTX");
1620}
1621
1622void EventLogAnalyzer::CreateAudioEncoderNumChannelsGraph(Plot* plot) {
Bjorn Tereliusb577d5e2017-11-10 16:21:34 +01001623 TimeSeries time_series("Audio encoder number of channels", LineStyle::kLine,
1624 PointStyle::kHighlight);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001625 auto GetAnaNumChannels =
1626 [](const LoggedAudioNetworkAdaptationEvent& ana_event) {
michaelt6e5b2192017-02-22 07:33:27 -08001627 if (ana_event.config.num_channels)
Danil Chapovalov431abd92018-06-18 12:54:17 +02001628 return absl::optional<float>(
michaelt6e5b2192017-02-22 07:33:27 -08001629 static_cast<float>(*ana_event.config.num_channels));
Danil Chapovalov431abd92018-06-18 12:54:17 +02001630 return absl::optional<float>();
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001631 };
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001632 auto ToCallTime = [this](const LoggedAudioNetworkAdaptationEvent& packet) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001633 return this->config_.GetCallTimeSec(packet.log_time_us());
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001634 };
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001635 ProcessPoints<LoggedAudioNetworkAdaptationEvent>(
Stefan Holmer1d4a2272018-05-24 13:48:09 +02001636 ToCallTime, GetAnaNumChannels,
1637 parsed_log_.audio_network_adaptation_events(), &time_series);
philipel35ba9bd2017-04-19 05:58:51 -07001638 plot->AppendTimeSeries(std::move(time_series));
Bjorn Terelius068fc352019-02-13 22:38:25 +01001639 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1640 "Time (s)", kLeftMargin, kRightMargin);
michaelt6e5b2192017-02-22 07:33:27 -08001641 plot->SetSuggestedYAxis(0, 1, "Number of channels (1 (mono)/2 (stereo))",
1642 kBottomMargin, kTopMargin);
1643 plot->SetTitle("Reported audio encoder number of channels");
1644}
henrik.lundin3c938fc2017-06-14 06:09:58 -07001645
1646class NetEqStreamInput : public test::NetEqInput {
1647 public:
1648 // Does not take any ownership, and all pointers must refer to valid objects
1649 // that outlive the one constructed.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001650 NetEqStreamInput(const std::vector<LoggedRtpPacketIncoming>* packet_stream,
Minyue Li27e2b7d2018-05-07 15:20:24 +02001651 const std::vector<LoggedAudioPlayoutEvent>* output_events,
Danil Chapovalov431abd92018-06-18 12:54:17 +02001652 absl::optional<int64_t> end_time_ms)
henrik.lundin3c938fc2017-06-14 06:09:58 -07001653 : packet_stream_(*packet_stream),
1654 packet_stream_it_(packet_stream_.begin()),
Minyue Li27e2b7d2018-05-07 15:20:24 +02001655 output_events_it_(output_events->begin()),
1656 output_events_end_(output_events->end()),
1657 end_time_ms_(end_time_ms) {
henrik.lundin3c938fc2017-06-14 06:09:58 -07001658 RTC_DCHECK(packet_stream);
Minyue Li27e2b7d2018-05-07 15:20:24 +02001659 RTC_DCHECK(output_events);
henrik.lundin3c938fc2017-06-14 06:09:58 -07001660 }
1661
Danil Chapovalov431abd92018-06-18 12:54:17 +02001662 absl::optional<int64_t> NextPacketTime() const override {
henrik.lundin3c938fc2017-06-14 06:09:58 -07001663 if (packet_stream_it_ == packet_stream_.end()) {
Danil Chapovalov431abd92018-06-18 12:54:17 +02001664 return absl::nullopt;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001665 }
Minyue Li27e2b7d2018-05-07 15:20:24 +02001666 if (end_time_ms_ && packet_stream_it_->rtp.log_time_ms() > *end_time_ms_) {
Danil Chapovalov431abd92018-06-18 12:54:17 +02001667 return absl::nullopt;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001668 }
Minyue Li27e2b7d2018-05-07 15:20:24 +02001669 return packet_stream_it_->rtp.log_time_ms();
henrik.lundin3c938fc2017-06-14 06:09:58 -07001670 }
1671
Danil Chapovalov431abd92018-06-18 12:54:17 +02001672 absl::optional<int64_t> NextOutputEventTime() const override {
Minyue Li27e2b7d2018-05-07 15:20:24 +02001673 if (output_events_it_ == output_events_end_) {
Danil Chapovalov431abd92018-06-18 12:54:17 +02001674 return absl::nullopt;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001675 }
Minyue Li27e2b7d2018-05-07 15:20:24 +02001676 if (end_time_ms_ && output_events_it_->log_time_ms() > *end_time_ms_) {
Danil Chapovalov431abd92018-06-18 12:54:17 +02001677 return absl::nullopt;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001678 }
Minyue Li27e2b7d2018-05-07 15:20:24 +02001679 return output_events_it_->log_time_ms();
henrik.lundin3c938fc2017-06-14 06:09:58 -07001680 }
1681
1682 std::unique_ptr<PacketData> PopPacket() override {
1683 if (packet_stream_it_ == packet_stream_.end()) {
1684 return std::unique_ptr<PacketData>();
1685 }
1686 std::unique_ptr<PacketData> packet_data(new PacketData());
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001687 packet_data->header = packet_stream_it_->rtp.header;
Minyue Li27e2b7d2018-05-07 15:20:24 +02001688 packet_data->time_ms = packet_stream_it_->rtp.log_time_ms();
henrik.lundin3c938fc2017-06-14 06:09:58 -07001689
1690 // This is a header-only "dummy" packet. Set the payload to all zeros, with
1691 // length according to the virtual length.
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001692 packet_data->payload.SetSize(packet_stream_it_->rtp.total_length -
1693 packet_stream_it_->rtp.header_length);
henrik.lundin3c938fc2017-06-14 06:09:58 -07001694 std::fill_n(packet_data->payload.data(), packet_data->payload.size(), 0);
1695
1696 ++packet_stream_it_;
1697 return packet_data;
1698 }
1699
1700 void AdvanceOutputEvent() override {
Minyue Li27e2b7d2018-05-07 15:20:24 +02001701 if (output_events_it_ != output_events_end_) {
1702 ++output_events_it_;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001703 }
1704 }
1705
1706 bool ended() const override { return !NextEventTime(); }
1707
Danil Chapovalov431abd92018-06-18 12:54:17 +02001708 absl::optional<RTPHeader> NextHeader() const override {
henrik.lundin3c938fc2017-06-14 06:09:58 -07001709 if (packet_stream_it_ == packet_stream_.end()) {
Danil Chapovalov431abd92018-06-18 12:54:17 +02001710 return absl::nullopt;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001711 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001712 return packet_stream_it_->rtp.header;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001713 }
1714
1715 private:
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001716 const std::vector<LoggedRtpPacketIncoming>& packet_stream_;
1717 std::vector<LoggedRtpPacketIncoming>::const_iterator packet_stream_it_;
Minyue Li27e2b7d2018-05-07 15:20:24 +02001718 std::vector<LoggedAudioPlayoutEvent>::const_iterator output_events_it_;
1719 const std::vector<LoggedAudioPlayoutEvent>::const_iterator output_events_end_;
Danil Chapovalov431abd92018-06-18 12:54:17 +02001720 const absl::optional<int64_t> end_time_ms_;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001721};
1722
1723namespace {
Bjorn Terelius6c4b1b72019-01-11 13:01:29 +01001724
1725// Factory to create a "replacement decoder" that produces the decoded audio
1726// by reading from a file rather than from the encoded payloads.
1727class ReplacementAudioDecoderFactory : public AudioDecoderFactory {
1728 public:
1729 ReplacementAudioDecoderFactory(const absl::string_view replacement_file_name,
1730 int file_sample_rate_hz)
1731 : replacement_file_name_(replacement_file_name),
1732 file_sample_rate_hz_(file_sample_rate_hz) {}
1733
1734 std::vector<AudioCodecSpec> GetSupportedDecoders() override {
1735 RTC_NOTREACHED();
1736 return {};
1737 }
1738
1739 bool IsSupportedDecoder(const SdpAudioFormat& format) override {
1740 return true;
1741 }
1742
1743 std::unique_ptr<AudioDecoder> MakeAudioDecoder(
1744 const SdpAudioFormat& format,
1745 absl::optional<AudioCodecPairId> codec_pair_id) override {
1746 auto replacement_file = absl::make_unique<test::ResampleInputAudioFile>(
1747 replacement_file_name_, file_sample_rate_hz_);
1748 replacement_file->set_output_rate_hz(48000);
1749 return absl::make_unique<test::FakeDecodeFromFile>(
1750 std::move(replacement_file), 48000, false);
1751 }
1752
1753 private:
1754 const std::string replacement_file_name_;
1755 const int file_sample_rate_hz_;
1756};
1757
henrik.lundin3c938fc2017-06-14 06:09:58 -07001758// Creates a NetEq test object and all necessary input and output helpers. Runs
1759// the test and returns the NetEqDelayAnalyzer object that was used to
1760// instrument the test.
Minyue Lic6ff7572018-05-04 09:46:44 +02001761std::unique_ptr<test::NetEqStatsGetter> CreateNetEqTestAndRun(
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001762 const std::vector<LoggedRtpPacketIncoming>* packet_stream,
Minyue Li27e2b7d2018-05-07 15:20:24 +02001763 const std::vector<LoggedAudioPlayoutEvent>* output_events,
Danil Chapovalov431abd92018-06-18 12:54:17 +02001764 absl::optional<int64_t> end_time_ms,
henrik.lundin3c938fc2017-06-14 06:09:58 -07001765 const std::string& replacement_file_name,
1766 int file_sample_rate_hz) {
1767 std::unique_ptr<test::NetEqInput> input(
Minyue Li27e2b7d2018-05-07 15:20:24 +02001768 new NetEqStreamInput(packet_stream, output_events, end_time_ms));
henrik.lundin3c938fc2017-06-14 06:09:58 -07001769
1770 constexpr int kReplacementPt = 127;
1771 std::set<uint8_t> cn_types;
1772 std::set<uint8_t> forbidden_types;
1773 input.reset(new test::NetEqReplacementInput(std::move(input), kReplacementPt,
1774 cn_types, forbidden_types));
1775
1776 NetEq::Config config;
1777 config.max_packets_in_buffer = 200;
1778 config.enable_fast_accelerate = true;
1779
1780 std::unique_ptr<test::VoidAudioSink> output(new test::VoidAudioSink());
1781
Niels Möller3f651d82018-12-19 15:06:17 +01001782 rtc::scoped_refptr<AudioDecoderFactory> decoder_factory =
Bjorn Terelius6c4b1b72019-01-11 13:01:29 +01001783 new rtc::RefCountedObject<ReplacementAudioDecoderFactory>(
1784 replacement_file_name, file_sample_rate_hz);
Niels Möller3f651d82018-12-19 15:06:17 +01001785
Niels Möller05543682019-01-10 16:55:06 +01001786 test::NetEqTest::DecoderMap codecs = {
1787 {kReplacementPt, SdpAudioFormat("l16", 48000, 1)}};
henrik.lundin3c938fc2017-06-14 06:09:58 -07001788
1789 std::unique_ptr<test::NetEqDelayAnalyzer> delay_cb(
1790 new test::NetEqDelayAnalyzer);
Minyue Lic6ff7572018-05-04 09:46:44 +02001791 std::unique_ptr<test::NetEqStatsGetter> neteq_stats_getter(
1792 new test::NetEqStatsGetter(std::move(delay_cb)));
henrik.lundin3c938fc2017-06-14 06:09:58 -07001793 test::DefaultNetEqTestErrorCallback error_cb;
1794 test::NetEqTest::Callbacks callbacks;
1795 callbacks.error_callback = &error_cb;
Minyue Lic6ff7572018-05-04 09:46:44 +02001796 callbacks.post_insert_packet = neteq_stats_getter->delay_analyzer();
1797 callbacks.get_audio_callback = neteq_stats_getter.get();
henrik.lundin3c938fc2017-06-14 06:09:58 -07001798
Niels Möllerbd6dee82019-01-02 09:39:47 +01001799 test::NetEqTest test(config, decoder_factory, codecs, nullptr,
Niels Möller3f651d82018-12-19 15:06:17 +01001800 std::move(input), std::move(output), callbacks);
henrik.lundin3c938fc2017-06-14 06:09:58 -07001801 test.Run();
Minyue Lic6ff7572018-05-04 09:46:44 +02001802 return neteq_stats_getter;
henrik.lundin3c938fc2017-06-14 06:09:58 -07001803}
1804} // namespace
1805
Minyue Lic6ff7572018-05-04 09:46:44 +02001806EventLogAnalyzer::NetEqStatsGetterMap EventLogAnalyzer::SimulateNetEq(
henrik.lundin3c938fc2017-06-14 06:09:58 -07001807 const std::string& replacement_file_name,
Minyue Lic6ff7572018-05-04 09:46:44 +02001808 int file_sample_rate_hz) const {
1809 NetEqStatsGetterMap neteq_stats;
1810
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001811 for (const auto& stream : parsed_log_.incoming_rtp_packets_by_ssrc()) {
Minyue Li27e2b7d2018-05-07 15:20:24 +02001812 const uint32_t ssrc = stream.ssrc;
1813 if (!IsAudioSsrc(kIncomingPacket, ssrc))
1814 continue;
1815 const std::vector<LoggedRtpPacketIncoming>* audio_packets =
1816 &stream.incoming_packets;
1817 if (audio_packets == nullptr) {
1818 // No incoming audio stream found.
1819 continue;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001820 }
henrik.lundin3c938fc2017-06-14 06:09:58 -07001821
Minyue Li27e2b7d2018-05-07 15:20:24 +02001822 RTC_DCHECK(neteq_stats.find(ssrc) == neteq_stats.end());
1823
1824 std::map<uint32_t, std::vector<LoggedAudioPlayoutEvent>>::const_iterator
1825 output_events_it = parsed_log_.audio_playout_events().find(ssrc);
1826 if (output_events_it == parsed_log_.audio_playout_events().end()) {
1827 // Could not find output events with SSRC matching the input audio stream.
1828 // Using the first available stream of output events.
1829 output_events_it = parsed_log_.audio_playout_events().cbegin();
1830 }
1831
Danil Chapovalov431abd92018-06-18 12:54:17 +02001832 absl::optional<int64_t> end_time_ms =
Minyue Li27e2b7d2018-05-07 15:20:24 +02001833 log_segments_.empty()
Danil Chapovalov431abd92018-06-18 12:54:17 +02001834 ? absl::nullopt
1835 : absl::optional<int64_t>(log_segments_.front().second / 1000);
Minyue Li27e2b7d2018-05-07 15:20:24 +02001836
1837 neteq_stats[ssrc] = CreateNetEqTestAndRun(
1838 audio_packets, &output_events_it->second, end_time_ms,
1839 replacement_file_name, file_sample_rate_hz);
henrik.lundin3c938fc2017-06-14 06:09:58 -07001840 }
1841
Minyue Lic6ff7572018-05-04 09:46:44 +02001842 return neteq_stats;
1843}
1844
Minyue Lic97933f2018-08-10 12:51:15 +02001845// Given a NetEqStatsGetter and the SSRC that the NetEqStatsGetter was created
1846// for, this method generates a plot for the jitter buffer delay profile.
Minyue Lic6ff7572018-05-04 09:46:44 +02001847void EventLogAnalyzer::CreateAudioJitterBufferGraph(
Minyue Li01d2a672018-06-21 21:17:19 +02001848 uint32_t ssrc,
1849 const test::NetEqStatsGetter* stats_getter,
Minyue Lic6ff7572018-05-04 09:46:44 +02001850 Plot* plot) const {
Minyue Li45fc6df2018-06-21 11:47:14 +02001851 test::NetEqDelayAnalyzer::Delays arrival_delay_ms;
1852 test::NetEqDelayAnalyzer::Delays corrected_arrival_delay_ms;
1853 test::NetEqDelayAnalyzer::Delays playout_delay_ms;
1854 test::NetEqDelayAnalyzer::Delays target_delay_ms;
1855
Minyue Li01d2a672018-06-21 21:17:19 +02001856 stats_getter->delay_analyzer()->CreateGraphs(
Minyue Li45fc6df2018-06-21 11:47:14 +02001857 &arrival_delay_ms, &corrected_arrival_delay_ms, &playout_delay_ms,
1858 &target_delay_ms);
henrik.lundin3c938fc2017-06-14 06:09:58 -07001859
Minyue Lic97933f2018-08-10 12:51:15 +02001860 TimeSeries time_series_packet_arrival("packet arrival delay",
1861 LineStyle::kLine);
1862 TimeSeries time_series_relative_packet_arrival(
1863 "Relative packet arrival delay", LineStyle::kLine);
1864 TimeSeries time_series_play_time("Playout delay", LineStyle::kLine);
1865 TimeSeries time_series_target_time("Target delay", LineStyle::kLine,
1866 PointStyle::kHighlight);
Minyue Li45fc6df2018-06-21 11:47:14 +02001867
1868 for (const auto& data : arrival_delay_ms) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001869 const float x = config_.GetCallTimeSec(data.first * 1000); // ms to us.
Minyue Li45fc6df2018-06-21 11:47:14 +02001870 const float y = data.second;
Minyue Lic97933f2018-08-10 12:51:15 +02001871 time_series_packet_arrival.points.emplace_back(TimeSeriesPoint(x, y));
Minyue Li45fc6df2018-06-21 11:47:14 +02001872 }
1873 for (const auto& data : corrected_arrival_delay_ms) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001874 const float x = config_.GetCallTimeSec(data.first * 1000); // ms to us.
Minyue Li45fc6df2018-06-21 11:47:14 +02001875 const float y = data.second;
Minyue Lic97933f2018-08-10 12:51:15 +02001876 time_series_relative_packet_arrival.points.emplace_back(
Minyue Li45fc6df2018-06-21 11:47:14 +02001877 TimeSeriesPoint(x, y));
1878 }
1879 for (const auto& data : playout_delay_ms) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001880 const float x = config_.GetCallTimeSec(data.first * 1000); // ms to us.
Minyue Li45fc6df2018-06-21 11:47:14 +02001881 const float y = data.second;
Minyue Lic97933f2018-08-10 12:51:15 +02001882 time_series_play_time.points.emplace_back(TimeSeriesPoint(x, y));
Minyue Li45fc6df2018-06-21 11:47:14 +02001883 }
1884 for (const auto& data : target_delay_ms) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001885 const float x = config_.GetCallTimeSec(data.first * 1000); // ms to us.
Minyue Li45fc6df2018-06-21 11:47:14 +02001886 const float y = data.second;
Minyue Lic97933f2018-08-10 12:51:15 +02001887 time_series_target_time.points.emplace_back(TimeSeriesPoint(x, y));
henrik.lundin3c938fc2017-06-14 06:09:58 -07001888 }
1889
Minyue Lic97933f2018-08-10 12:51:15 +02001890 plot->AppendTimeSeries(std::move(time_series_packet_arrival));
1891 plot->AppendTimeSeries(std::move(time_series_relative_packet_arrival));
1892 plot->AppendTimeSeries(std::move(time_series_play_time));
1893 plot->AppendTimeSeries(std::move(time_series_target_time));
henrik.lundin3c938fc2017-06-14 06:09:58 -07001894
Bjorn Terelius068fc352019-02-13 22:38:25 +01001895 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1896 "Time (s)", kLeftMargin, kRightMargin);
Minyue Li45fc6df2018-06-21 11:47:14 +02001897 plot->SetSuggestedYAxis(0, 1, "Relative delay (ms)", kBottomMargin,
1898 kTopMargin);
Minyue Li27e2b7d2018-05-07 15:20:24 +02001899 plot->SetTitle("NetEq timing for " + GetStreamName(kIncomingPacket, ssrc));
1900}
1901
Minyue Lic9ac93f2018-06-26 13:01:32 +02001902template <typename NetEqStatsType>
1903void EventLogAnalyzer::CreateNetEqStatsGraphInternal(
Minyue Li27e2b7d2018-05-07 15:20:24 +02001904 const NetEqStatsGetterMap& neteq_stats,
Minyue Lic9ac93f2018-06-26 13:01:32 +02001905 rtc::FunctionView<const std::vector<std::pair<int64_t, NetEqStatsType>>*(
1906 const test::NetEqStatsGetter*)> data_extractor,
1907 rtc::FunctionView<float(const NetEqStatsType&)> stats_extractor,
Minyue Li27e2b7d2018-05-07 15:20:24 +02001908 const std::string& plot_name,
1909 Plot* plot) const {
Minyue Li27e2b7d2018-05-07 15:20:24 +02001910 std::map<uint32_t, TimeSeries> time_series;
Minyue Li27e2b7d2018-05-07 15:20:24 +02001911
1912 for (const auto& st : neteq_stats) {
1913 const uint32_t ssrc = st.first;
Minyue Lic9ac93f2018-06-26 13:01:32 +02001914 const std::vector<std::pair<int64_t, NetEqStatsType>>* data_vector =
1915 data_extractor(st.second.get());
1916 for (const auto& data : *data_vector) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01001917 const float time =
1918 config_.GetCallTimeSec(data.first * 1000); // ms to us.
Minyue Lic9ac93f2018-06-26 13:01:32 +02001919 const float value = stats_extractor(data.second);
Minyue Li27e2b7d2018-05-07 15:20:24 +02001920 time_series[ssrc].points.emplace_back(TimeSeriesPoint(time, value));
Minyue Li27e2b7d2018-05-07 15:20:24 +02001921 }
1922 }
1923
1924 for (auto& series : time_series) {
1925 series.second.label = GetStreamName(kIncomingPacket, series.first);
1926 series.second.line_style = LineStyle::kLine;
1927 plot->AppendTimeSeries(std::move(series.second));
1928 }
1929
Bjorn Terelius068fc352019-02-13 22:38:25 +01001930 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1931 "Time (s)", kLeftMargin, kRightMargin);
Minyue Li45fc6df2018-06-21 11:47:14 +02001932 plot->SetSuggestedYAxis(0, 1, plot_name, kBottomMargin, kTopMargin);
Minyue Li27e2b7d2018-05-07 15:20:24 +02001933 plot->SetTitle(plot_name);
henrik.lundin3c938fc2017-06-14 06:09:58 -07001934}
Bjorn Terelius2eb31882017-11-30 15:15:25 +01001935
Minyue Lic9ac93f2018-06-26 13:01:32 +02001936void EventLogAnalyzer::CreateNetEqNetworkStatsGraph(
1937 const NetEqStatsGetterMap& neteq_stats,
1938 rtc::FunctionView<float(const NetEqNetworkStatistics&)> stats_extractor,
1939 const std::string& plot_name,
1940 Plot* plot) const {
1941 CreateNetEqStatsGraphInternal<NetEqNetworkStatistics>(
1942 neteq_stats,
1943 [](const test::NetEqStatsGetter* stats_getter) {
1944 return stats_getter->stats();
1945 },
1946 stats_extractor, plot_name, plot);
1947}
1948
1949void EventLogAnalyzer::CreateNetEqLifetimeStatsGraph(
1950 const NetEqStatsGetterMap& neteq_stats,
1951 rtc::FunctionView<float(const NetEqLifetimeStatistics&)> stats_extractor,
1952 const std::string& plot_name,
1953 Plot* plot) const {
1954 CreateNetEqStatsGraphInternal<NetEqLifetimeStatistics>(
1955 neteq_stats,
1956 [](const test::NetEqStatsGetter* stats_getter) {
1957 return stats_getter->lifetime_stats();
1958 },
1959 stats_extractor, plot_name, plot);
1960}
1961
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001962void EventLogAnalyzer::CreateIceCandidatePairConfigGraph(Plot* plot) {
1963 std::map<uint32_t, TimeSeries> configs_by_cp_id;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02001964 for (const auto& config : parsed_log_.ice_candidate_pair_configs()) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001965 if (configs_by_cp_id.find(config.candidate_pair_id) ==
1966 configs_by_cp_id.end()) {
1967 const std::string candidate_pair_desc =
1968 GetCandidatePairLogDescriptionAsString(config);
Qingsi Wang93a84392018-01-30 17:13:09 -08001969 configs_by_cp_id[config.candidate_pair_id] =
1970 TimeSeries("[" + std::to_string(config.candidate_pair_id) + "]" +
1971 candidate_pair_desc,
1972 LineStyle::kNone, PointStyle::kHighlight);
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001973 candidate_pair_desc_by_id_[config.candidate_pair_id] =
1974 candidate_pair_desc;
1975 }
Bjorn Terelius068fc352019-02-13 22:38:25 +01001976 float x = config_.GetCallTimeSec(config.log_time_us());
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001977 float y = static_cast<float>(config.type);
1978 configs_by_cp_id[config.candidate_pair_id].points.emplace_back(x, y);
1979 }
1980
1981 // TODO(qingsi): There can be a large number of candidate pairs generated by
1982 // certain calls and the frontend cannot render the chart in this case due to
1983 // the failure of generating a palette with the same number of colors.
1984 for (auto& kv : configs_by_cp_id) {
1985 plot->AppendTimeSeries(std::move(kv.second));
1986 }
1987
Bjorn Terelius068fc352019-02-13 22:38:25 +01001988 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
1989 "Time (s)", kLeftMargin, kRightMargin);
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08001990 plot->SetSuggestedYAxis(0, 3, "Numeric Config Type", kBottomMargin,
1991 kTopMargin);
1992 plot->SetTitle("[IceEventLog] ICE candidate pair configs");
1993}
1994
1995std::string EventLogAnalyzer::GetCandidatePairLogDescriptionFromId(
1996 uint32_t candidate_pair_id) {
1997 if (candidate_pair_desc_by_id_.find(candidate_pair_id) !=
1998 candidate_pair_desc_by_id_.end()) {
1999 return candidate_pair_desc_by_id_[candidate_pair_id];
2000 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002001 for (const auto& config : parsed_log_.ice_candidate_pair_configs()) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08002002 // TODO(qingsi): Add the handling of the "Updated" config event after the
2003 // visualization of property change for candidate pairs is introduced.
2004 if (candidate_pair_desc_by_id_.find(config.candidate_pair_id) ==
2005 candidate_pair_desc_by_id_.end()) {
2006 const std::string candidate_pair_desc =
2007 GetCandidatePairLogDescriptionAsString(config);
2008 candidate_pair_desc_by_id_[config.candidate_pair_id] =
2009 candidate_pair_desc;
2010 }
2011 }
2012 return candidate_pair_desc_by_id_[candidate_pair_id];
2013}
2014
2015void EventLogAnalyzer::CreateIceConnectivityCheckGraph(Plot* plot) {
2016 std::map<uint32_t, TimeSeries> checks_by_cp_id;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002017 for (const auto& event : parsed_log_.ice_candidate_pair_events()) {
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08002018 if (checks_by_cp_id.find(event.candidate_pair_id) ==
2019 checks_by_cp_id.end()) {
2020 checks_by_cp_id[event.candidate_pair_id] = TimeSeries(
Qingsi Wang93a84392018-01-30 17:13:09 -08002021 "[" + std::to_string(event.candidate_pair_id) + "]" +
2022 GetCandidatePairLogDescriptionFromId(event.candidate_pair_id),
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08002023 LineStyle::kNone, PointStyle::kHighlight);
2024 }
Bjorn Terelius068fc352019-02-13 22:38:25 +01002025 float x = config_.GetCallTimeSec(event.log_time_us());
Zach Stein6353fbc2018-12-03 14:35:59 -08002026 constexpr int kIceCandidatePairEventTypeOffset =
2027 static_cast<int>(IceCandidatePairConfigType::kNumValues);
2028 float y = static_cast<float>(event.type) + kIceCandidatePairEventTypeOffset;
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08002029 checks_by_cp_id[event.candidate_pair_id].points.emplace_back(x, y);
2030 }
2031
2032 // TODO(qingsi): The same issue as in CreateIceCandidatePairConfigGraph.
2033 for (auto& kv : checks_by_cp_id) {
2034 plot->AppendTimeSeries(std::move(kv.second));
2035 }
2036
Bjorn Terelius068fc352019-02-13 22:38:25 +01002037 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
2038 "Time (s)", kLeftMargin, kRightMargin);
Qingsi Wang8eca1ff2018-02-02 11:49:44 -08002039 plot->SetSuggestedYAxis(0, 4, "Numeric Connectivity State", kBottomMargin,
2040 kTopMargin);
2041 plot->SetTitle("[IceEventLog] ICE connectivity checks");
2042}
2043
Zach Stein10a58012018-12-07 12:26:28 -08002044void EventLogAnalyzer::CreateDtlsTransportStateGraph(Plot* plot) {
2045 TimeSeries states("DTLS Transport State", LineStyle::kNone,
2046 PointStyle::kHighlight);
2047 for (const auto& event : parsed_log_.dtls_transport_states()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01002048 float x = config_.GetCallTimeSec(event.log_time_us());
Zach Stein10a58012018-12-07 12:26:28 -08002049 float y = static_cast<float>(event.dtls_transport_state);
2050 states.points.emplace_back(x, y);
2051 }
2052 plot->AppendTimeSeries(std::move(states));
Bjorn Terelius068fc352019-02-13 22:38:25 +01002053 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
2054 "Time (s)", kLeftMargin, kRightMargin);
Zach Stein10a58012018-12-07 12:26:28 -08002055 plot->SetSuggestedYAxis(0, static_cast<float>(DtlsTransportState::kNumValues),
2056 "Numeric Transport State", kBottomMargin, kTopMargin);
2057 plot->SetTitle("DTLS Transport State");
2058}
2059
2060void EventLogAnalyzer::CreateDtlsWritableStateGraph(Plot* plot) {
2061 TimeSeries writable("DTLS Writable", LineStyle::kNone,
2062 PointStyle::kHighlight);
2063 for (const auto& event : parsed_log_.dtls_writable_states()) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01002064 float x = config_.GetCallTimeSec(event.log_time_us());
Zach Stein10a58012018-12-07 12:26:28 -08002065 float y = static_cast<float>(event.writable);
2066 writable.points.emplace_back(x, y);
2067 }
2068 plot->AppendTimeSeries(std::move(writable));
Bjorn Terelius068fc352019-02-13 22:38:25 +01002069 plot->SetXAxis(config_.CallBeginTimeSec(), config_.CallEndTimeSec(),
2070 "Time (s)", kLeftMargin, kRightMargin);
Zach Stein10a58012018-12-07 12:26:28 -08002071 plot->SetSuggestedYAxis(0, 1, "Writable", kBottomMargin, kTopMargin);
2072 plot->SetTitle("DTLS Writable State");
2073}
2074
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002075void EventLogAnalyzer::PrintNotifications(FILE* file) {
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002076 fprintf(file, "========== TRIAGE NOTIFICATIONS ==========\n");
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002077 for (const auto& alert : incoming_rtp_recv_time_gaps_) {
2078 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2079 }
2080 for (const auto& alert : incoming_rtcp_recv_time_gaps_) {
2081 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2082 }
2083 for (const auto& alert : outgoing_rtp_send_time_gaps_) {
2084 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2085 }
2086 for (const auto& alert : outgoing_rtcp_send_time_gaps_) {
2087 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2088 }
2089 for (const auto& alert : incoming_seq_num_jumps_) {
2090 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2091 }
2092 for (const auto& alert : incoming_capture_time_jumps_) {
2093 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2094 }
2095 for (const auto& alert : outgoing_seq_num_jumps_) {
2096 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2097 }
2098 for (const auto& alert : outgoing_capture_time_jumps_) {
2099 fprintf(file, "%3.3lf s : %s\n", alert.Time(), alert.ToString().c_str());
2100 }
2101 for (const auto& alert : outgoing_high_loss_alerts_) {
2102 fprintf(file, " : %s\n", alert.ToString().c_str());
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002103 }
2104 fprintf(file, "========== END TRIAGE NOTIFICATIONS ==========\n");
2105}
2106
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002107void EventLogAnalyzer::CreateStreamGapAlerts(PacketDirection direction) {
2108 // With 100 packets/s (~800kbps), false positives would require 10 s without
2109 // data.
2110 constexpr int64_t kMaxSeqNumJump = 1000;
2111 // With a 90 kHz clock, false positives would require 10 s without data.
2112 constexpr int64_t kMaxCaptureTimeJump = 900000;
2113
2114 int64_t end_time_us = log_segments_.empty()
2115 ? std::numeric_limits<int64_t>::max()
2116 : log_segments_.front().second;
2117
2118 SeqNumUnwrapper<uint16_t> seq_num_unwrapper;
Danil Chapovalov431abd92018-06-18 12:54:17 +02002119 absl::optional<int64_t> last_seq_num;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002120 SeqNumUnwrapper<uint32_t> capture_time_unwrapper;
Danil Chapovalov431abd92018-06-18 12:54:17 +02002121 absl::optional<int64_t> last_capture_time;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002122 // Check for gaps in sequence numbers and capture timestamps.
2123 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
2124 for (const auto& packet : stream.packet_view) {
2125 if (packet.log_time_us() > end_time_us) {
2126 // Only process the first (LOG_START, LOG_END) segment.
2127 break;
2128 }
2129
2130 int64_t seq_num = seq_num_unwrapper.Unwrap(packet.header.sequenceNumber);
2131 if (last_seq_num.has_value() &&
2132 std::abs(seq_num - last_seq_num.value()) > kMaxSeqNumJump) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01002133 Alert_SeqNumJump(direction,
2134 config_.GetCallTimeSec(packet.log_time_us()),
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002135 packet.header.ssrc);
2136 }
2137 last_seq_num.emplace(seq_num);
2138
2139 int64_t capture_time =
2140 capture_time_unwrapper.Unwrap(packet.header.timestamp);
2141 if (last_capture_time.has_value() &&
2142 std::abs(capture_time - last_capture_time.value()) >
2143 kMaxCaptureTimeJump) {
Bjorn Terelius068fc352019-02-13 22:38:25 +01002144 Alert_CaptureTimeJump(direction,
2145 config_.GetCallTimeSec(packet.log_time_us()),
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002146 packet.header.ssrc);
2147 }
2148 last_capture_time.emplace(capture_time);
2149 }
2150 }
2151}
2152
2153void EventLogAnalyzer::CreateTransmissionGapAlerts(PacketDirection direction) {
2154 constexpr int64_t kMaxRtpTransmissionGap = 500000;
2155 constexpr int64_t kMaxRtcpTransmissionGap = 2000000;
2156 int64_t end_time_us = log_segments_.empty()
2157 ? std::numeric_limits<int64_t>::max()
2158 : log_segments_.front().second;
2159
2160 // TODO(terelius): The parser could provide a list of all packets, ordered
2161 // by time, for each direction.
2162 std::multimap<int64_t, const LoggedRtpPacket*> rtp_in_direction;
2163 for (const auto& stream : parsed_log_.rtp_packets_by_ssrc(direction)) {
2164 for (const LoggedRtpPacket& rtp_packet : stream.packet_view)
2165 rtp_in_direction.emplace(rtp_packet.log_time_us(), &rtp_packet);
2166 }
Danil Chapovalov431abd92018-06-18 12:54:17 +02002167 absl::optional<int64_t> last_rtp_time;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002168 for (const auto& kv : rtp_in_direction) {
2169 int64_t timestamp = kv.first;
2170 if (timestamp > end_time_us) {
2171 // Only process the first (LOG_START, LOG_END) segment.
2172 break;
2173 }
2174 int64_t duration = timestamp - last_rtp_time.value_or(0);
2175 if (last_rtp_time.has_value() && duration > kMaxRtpTransmissionGap) {
2176 // No packet sent/received for more than 500 ms.
Bjorn Terelius068fc352019-02-13 22:38:25 +01002177 Alert_RtpLogTimeGap(direction, config_.GetCallTimeSec(timestamp),
2178 duration / 1000);
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002179 }
2180 last_rtp_time.emplace(timestamp);
2181 }
2182
Danil Chapovalov431abd92018-06-18 12:54:17 +02002183 absl::optional<int64_t> last_rtcp_time;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002184 if (direction == kIncomingPacket) {
2185 for (const auto& rtcp : parsed_log_.incoming_rtcp_packets()) {
2186 if (rtcp.log_time_us() > end_time_us) {
2187 // Only process the first (LOG_START, LOG_END) segment.
2188 break;
2189 }
2190 int64_t duration = rtcp.log_time_us() - last_rtcp_time.value_or(0);
2191 if (last_rtcp_time.has_value() && duration > kMaxRtcpTransmissionGap) {
2192 // No feedback sent/received for more than 2000 ms.
Bjorn Terelius068fc352019-02-13 22:38:25 +01002193 Alert_RtcpLogTimeGap(direction,
2194 config_.GetCallTimeSec(rtcp.log_time_us()),
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002195 duration / 1000);
2196 }
2197 last_rtcp_time.emplace(rtcp.log_time_us());
2198 }
2199 } else {
2200 for (const auto& rtcp : parsed_log_.outgoing_rtcp_packets()) {
2201 if (rtcp.log_time_us() > end_time_us) {
2202 // Only process the first (LOG_START, LOG_END) segment.
2203 break;
2204 }
2205 int64_t duration = rtcp.log_time_us() - last_rtcp_time.value_or(0);
2206 if (last_rtcp_time.has_value() && duration > kMaxRtcpTransmissionGap) {
2207 // No feedback sent/received for more than 2000 ms.
Bjorn Terelius068fc352019-02-13 22:38:25 +01002208 Alert_RtcpLogTimeGap(direction,
2209 config_.GetCallTimeSec(rtcp.log_time_us()),
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002210 duration / 1000);
2211 }
2212 last_rtcp_time.emplace(rtcp.log_time_us());
2213 }
2214 }
2215}
2216
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002217// TODO(terelius): Notifications could possibly be generated by the same code
2218// that produces the graphs. There is some code duplication that could be
2219// avoided, but that might be solved anyway when we move functionality from the
2220// analyzer to the parser.
2221void EventLogAnalyzer::CreateTriageNotifications() {
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002222 CreateStreamGapAlerts(kIncomingPacket);
2223 CreateStreamGapAlerts(kOutgoingPacket);
2224 CreateTransmissionGapAlerts(kIncomingPacket);
2225 CreateTransmissionGapAlerts(kOutgoingPacket);
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002226
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002227 int64_t end_time_us = log_segments_.empty()
2228 ? std::numeric_limits<int64_t>::max()
2229 : log_segments_.front().second;
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002230
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002231 constexpr double kMaxLossFraction = 0.05;
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002232 // Loss feedback
2233 int64_t total_lost_packets = 0;
2234 int64_t total_expected_packets = 0;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002235 for (auto& bwe_update : parsed_log_.bwe_loss_updates()) {
2236 if (bwe_update.log_time_us() > end_time_us) {
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002237 // Only process the first (LOG_START, LOG_END) segment.
2238 break;
2239 }
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002240 int64_t lost_packets = static_cast<double>(bwe_update.fraction_lost) / 255 *
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002241 bwe_update.expected_packets;
2242 total_lost_packets += lost_packets;
2243 total_expected_packets += bwe_update.expected_packets;
2244 }
2245 double avg_outgoing_loss =
2246 static_cast<double>(total_lost_packets) / total_expected_packets;
Bjorn Tereliusc4ca1d32018-04-27 14:33:34 +02002247 if (avg_outgoing_loss > kMaxLossFraction) {
2248 Alert_OutgoingHighLoss(avg_outgoing_loss);
Bjorn Terelius2eb31882017-11-30 15:15:25 +01002249 }
2250}
2251
terelius54ce6802016-07-13 06:44:41 -07002252} // namespace webrtc