1 /*
2  *  Copyright 2018 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 #include "modules/congestion_controller/goog_cc/test/goog_cc_printer.h"
11 
12 #include <math.h>
13 
14 #include <utility>
15 
16 #include "absl/types/optional.h"
17 #include "modules/congestion_controller/goog_cc/alr_detector.h"
18 #include "modules/congestion_controller/goog_cc/delay_based_bwe.h"
19 #include "modules/congestion_controller/goog_cc/trendline_estimator.h"
20 #include "modules/remote_bitrate_estimator/aimd_rate_control.h"
21 #include "rtc_base/checks.h"
22 
23 namespace webrtc {
24 namespace {
WriteTypedValue(RtcEventLogOutput * out,int value)25 void WriteTypedValue(RtcEventLogOutput* out, int value) {
26   LogWriteFormat(out, "%i", value);
27 }
WriteTypedValue(RtcEventLogOutput * out,double value)28 void WriteTypedValue(RtcEventLogOutput* out, double value) {
29   LogWriteFormat(out, "%.6f", value);
30 }
WriteTypedValue(RtcEventLogOutput * out,absl::optional<DataRate> value)31 void WriteTypedValue(RtcEventLogOutput* out, absl::optional<DataRate> value) {
32   LogWriteFormat(out, "%.0f", value ? value->bytes_per_sec<double>() : NAN);
33 }
WriteTypedValue(RtcEventLogOutput * out,absl::optional<DataSize> value)34 void WriteTypedValue(RtcEventLogOutput* out, absl::optional<DataSize> value) {
35   LogWriteFormat(out, "%.0f", value ? value->bytes<double>() : NAN);
36 }
WriteTypedValue(RtcEventLogOutput * out,absl::optional<TimeDelta> value)37 void WriteTypedValue(RtcEventLogOutput* out, absl::optional<TimeDelta> value) {
38   LogWriteFormat(out, "%.3f", value ? value->seconds<double>() : NAN);
39 }
WriteTypedValue(RtcEventLogOutput * out,absl::optional<Timestamp> value)40 void WriteTypedValue(RtcEventLogOutput* out, absl::optional<Timestamp> value) {
41   LogWriteFormat(out, "%.3f", value ? value->seconds<double>() : NAN);
42 }
43 
44 template <typename F>
45 class TypedFieldLogger : public FieldLogger {
46  public:
TypedFieldLogger(std::string name,F && getter)47   TypedFieldLogger(std::string name, F&& getter)
48       : name_(std::move(name)), getter_(std::forward<F>(getter)) {}
name() const49   const std::string& name() const override { return name_; }
WriteValue(RtcEventLogOutput * out)50   void WriteValue(RtcEventLogOutput* out) override {
51     WriteTypedValue(out, getter_());
52   }
53 
54  private:
55   std::string name_;
56   F getter_;
57 };
58 
59 template <typename F>
Log(std::string name,F && getter)60 FieldLogger* Log(std::string name, F&& getter) {
61   return new TypedFieldLogger<F>(std::move(name), std::forward<F>(getter));
62 }
63 
64 }  // namespace
GoogCcStatePrinter()65 GoogCcStatePrinter::GoogCcStatePrinter() {
66   for (auto* logger : CreateLoggers()) {
67     loggers_.emplace_back(logger);
68   }
69 }
70 
CreateLoggers()71 std::deque<FieldLogger*> GoogCcStatePrinter::CreateLoggers() {
72   auto stable_estimate = [this] {
73     return DataRate::KilobitsPerSec(
74         controller_->delay_based_bwe_->rate_control_.link_capacity_
75             .estimate_kbps_.value_or(-INFINITY));
76   };
77   auto rate_control_state = [this] {
78     return static_cast<int>(
79         controller_->delay_based_bwe_->rate_control_.rate_control_state_);
80   };
81   auto trend = [this] {
82     return reinterpret_cast<TrendlineEstimator*>(
83         controller_->delay_based_bwe_->active_delay_detector_);
84   };
85   auto acknowledged_rate = [this] {
86     return controller_->acknowledged_bitrate_estimator_->bitrate();
87   };
88   auto loss_cont = [&] {
89     return &controller_->bandwidth_estimation_
90                 ->loss_based_bandwidth_estimation_;
91   };
92   std::deque<FieldLogger*> loggers({
93       Log("time", [=] { return target_.at_time; }),
94       Log("rtt", [=] { return target_.network_estimate.round_trip_time; }),
95       Log("target", [=] { return target_.target_rate; }),
96       Log("stable_target", [=] { return target_.stable_target_rate; }),
97       Log("pacing", [=] { return pacing_.data_rate(); }),
98       Log("padding", [=] { return pacing_.pad_rate(); }),
99       Log("window", [=] { return congestion_window_; }),
100       Log("rate_control_state", [=] { return rate_control_state(); }),
101       Log("stable_estimate", [=] { return stable_estimate(); }),
102       Log("trendline", [=] { return trend()->prev_trend_; }),
103       Log("trendline_modified_offset",
104           [=] { return trend()->prev_modified_trend_; }),
105       Log("trendline_offset_threshold", [=] { return trend()->threshold_; }),
106       Log("acknowledged_rate", [=] { return acknowledged_rate(); }),
107       Log("est_capacity", [=] { return est_.link_capacity; }),
108       Log("est_capacity_dev", [=] { return est_.link_capacity_std_dev; }),
109       Log("est_capacity_min", [=] { return est_.link_capacity_min; }),
110       Log("est_cross_traffic", [=] { return est_.cross_traffic_ratio; }),
111       Log("est_cross_delay", [=] { return est_.cross_delay_rate; }),
112       Log("est_spike_delay", [=] { return est_.spike_delay_rate; }),
113       Log("est_pre_buffer", [=] { return est_.pre_link_buffer_delay; }),
114       Log("est_post_buffer", [=] { return est_.post_link_buffer_delay; }),
115       Log("est_propagation", [=] { return est_.propagation_delay; }),
116       Log("loss_ratio", [=] { return loss_cont()->last_loss_ratio_; }),
117       Log("loss_average", [=] { return loss_cont()->average_loss_; }),
118       Log("loss_average_max", [=] { return loss_cont()->average_loss_max_; }),
119       Log("loss_thres_inc",
120           [=] { return loss_cont()->loss_increase_threshold(); }),
121       Log("loss_thres_dec",
122           [=] { return loss_cont()->loss_decrease_threshold(); }),
123       Log("loss_dec_rate", [=] { return loss_cont()->decreased_bitrate(); }),
124       Log("loss_based_rate", [=] { return loss_cont()->loss_based_bitrate_; }),
125       Log("loss_ack_rate",
126           [=] { return loss_cont()->acknowledged_bitrate_max_; }),
127       Log("data_window", [=] { return controller_->current_data_window_; }),
128       Log("pushback_target",
129           [=] { return controller_->last_pushback_target_rate_; }),
130   });
131   return loggers;
132 }
133 GoogCcStatePrinter::~GoogCcStatePrinter() = default;
134 
PrintHeaders(RtcEventLogOutput * log)135 void GoogCcStatePrinter::PrintHeaders(RtcEventLogOutput* log) {
136   int ix = 0;
137   for (const auto& logger : loggers_) {
138     if (ix++)
139       log->Write(" ");
140     log->Write(logger->name());
141   }
142   log->Write("\n");
143   log->Flush();
144 }
145 
PrintState(RtcEventLogOutput * log,GoogCcNetworkController * controller,Timestamp at_time)146 void GoogCcStatePrinter::PrintState(RtcEventLogOutput* log,
147                                     GoogCcNetworkController* controller,
148                                     Timestamp at_time) {
149   controller_ = controller;
150   auto state_update = controller_->GetNetworkState(at_time);
151   target_ = state_update.target_rate.value();
152   pacing_ = state_update.pacer_config.value();
153   if (state_update.congestion_window)
154     congestion_window_ = *state_update.congestion_window;
155   if (controller_->network_estimator_) {
156     est_ = controller_->network_estimator_->GetCurrentEstimate().value_or(
157         NetworkStateEstimate());
158   }
159 
160   int ix = 0;
161   for (const auto& logger : loggers_) {
162     if (ix++)
163       log->Write(" ");
164     logger->WriteValue(log);
165   }
166 
167   log->Write("\n");
168   log->Flush();
169 }
170 
GoogCcDebugFactory()171 GoogCcDebugFactory::GoogCcDebugFactory()
172     : GoogCcDebugFactory(GoogCcFactoryConfig()) {}
173 
GoogCcDebugFactory(GoogCcFactoryConfig config)174 GoogCcDebugFactory::GoogCcDebugFactory(GoogCcFactoryConfig config)
175     : GoogCcNetworkControllerFactory(std::move(config)) {}
176 
Create(NetworkControllerConfig config)177 std::unique_ptr<NetworkControllerInterface> GoogCcDebugFactory::Create(
178     NetworkControllerConfig config) {
179   RTC_CHECK(controller_ == nullptr);
180   auto controller = GoogCcNetworkControllerFactory::Create(config);
181   controller_ = static_cast<GoogCcNetworkController*>(controller.get());
182   return controller;
183 }
184 
PrintState(const Timestamp at_time)185 void GoogCcDebugFactory::PrintState(const Timestamp at_time) {
186   if (controller_ && log_writer_) {
187     printer_.PrintState(log_writer_.get(), controller_, at_time);
188   }
189 }
190 
AttachWriter(std::unique_ptr<RtcEventLogOutput> log_writer)191 void GoogCcDebugFactory::AttachWriter(
192     std::unique_ptr<RtcEventLogOutput> log_writer) {
193   if (log_writer) {
194     log_writer_ = std::move(log_writer);
195     printer_.PrintHeaders(log_writer_.get());
196   }
197 }
198 
199 }  // namespace webrtc
200