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Sebastian Jansson6bcd7f62018-02-27 17:07:02 +01001/*
2 * Copyright (c) 2016 The WebRTC project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11#include "modules/congestion_controller/rtp/probe_controller.h"
12
13#include <algorithm>
14#include <initializer_list>
15
16#include "rtc_base/logging.h"
17#include "rtc_base/numerics/safe_conversions.h"
18#include "system_wrappers/include/field_trial.h"
19#include "system_wrappers/include/metrics.h"
20
21namespace webrtc {
22
23namespace {
24// The minimum number probing packets used.
25constexpr int kMinProbePacketsSent = 5;
26
27// The minimum probing duration in ms.
28constexpr int kMinProbeDurationMs = 15;
29
30// Maximum waiting time from the time of initiating probing to getting
31// the measured results back.
32constexpr int64_t kMaxWaitingTimeForProbingResultMs = 1000;
33
34// Value of |min_bitrate_to_probe_further_bps_| that indicates
35// further probing is disabled.
36constexpr int kExponentialProbingDisabled = 0;
37
38// Default probing bitrate limit. Applied only when the application didn't
39// specify max bitrate.
40constexpr int64_t kDefaultMaxProbingBitrateBps = 5000000;
41
42// Interval between probes when ALR periodic probing is enabled.
43constexpr int64_t kAlrPeriodicProbingIntervalMs = 5000;
44
45// Minimum probe bitrate percentage to probe further for repeated probes,
46// relative to the previous probe. For example, if 1Mbps probe results in
47// 80kbps, then we'll probe again at 1.6Mbps. In that case second probe won't be
48// sent if we get 600kbps from the first one.
49constexpr int kRepeatedProbeMinPercentage = 70;
50
51// If the bitrate drops to a factor |kBitrateDropThreshold| or lower
52// and we recover within |kBitrateDropTimeoutMs|, then we'll send
53// a probe at a fraction |kProbeFractionAfterDrop| of the original bitrate.
54constexpr double kBitrateDropThreshold = 0.66;
55constexpr int kBitrateDropTimeoutMs = 5000;
56constexpr double kProbeFractionAfterDrop = 0.85;
57
58// Timeout for probing after leaving ALR. If the bitrate drops significantly,
59// (as determined by the delay based estimator) and we leave ALR, then we will
60// send a probe if we recover within |kLeftAlrTimeoutMs| ms.
61constexpr int kAlrEndedTimeoutMs = 3000;
62
63// The expected uncertainty of probe result (as a fraction of the target probe
64// This is a limit on how often probing can be done when there is a BW
65// drop detected in ALR.
66constexpr int64_t kMinTimeBetweenAlrProbesMs = 5000;
67
68// bitrate). Used to avoid probing if the probe bitrate is close to our current
69// estimate.
70constexpr double kProbeUncertainty = 0.05;
71
72// Use probing to recover faster after large bitrate estimate drops.
73constexpr char kBweRapidRecoveryExperiment[] =
74 "WebRTC-BweRapidRecoveryExperiment";
75
76} // namespace
77
78ProbeController::ProbeController(NetworkControllerObserver* observer)
79 : observer_(observer), enable_periodic_alr_probing_(false) {
80 Reset(0);
81 in_rapid_recovery_experiment_ = webrtc::field_trial::FindFullName(
82 kBweRapidRecoveryExperiment) == "Enabled";
83}
84
85ProbeController::~ProbeController() {}
86
87void ProbeController::SetBitrates(int64_t min_bitrate_bps,
88 int64_t start_bitrate_bps,
89 int64_t max_bitrate_bps,
90 int64_t at_time_ms) {
91 if (start_bitrate_bps > 0) {
92 start_bitrate_bps_ = start_bitrate_bps;
93 estimated_bitrate_bps_ = start_bitrate_bps;
94 } else if (start_bitrate_bps_ == 0) {
95 start_bitrate_bps_ = min_bitrate_bps;
96 }
97
98 // The reason we use the variable |old_max_bitrate_pbs| is because we
99 // need to set |max_bitrate_bps_| before we call InitiateProbing.
100 int64_t old_max_bitrate_bps = max_bitrate_bps_;
101 max_bitrate_bps_ = max_bitrate_bps;
102
103 switch (state_) {
104 case State::kInit:
105 if (network_available_)
106 InitiateExponentialProbing(at_time_ms);
107 break;
108
109 case State::kWaitingForProbingResult:
110 break;
111
112 case State::kProbingComplete:
113 // If the new max bitrate is higher than the old max bitrate and the
114 // estimate is lower than the new max bitrate then initiate probing.
115 if (estimated_bitrate_bps_ != 0 &&
116 old_max_bitrate_bps < max_bitrate_bps_ &&
117 estimated_bitrate_bps_ < max_bitrate_bps_) {
118 // The assumption is that if we jump more than 20% in the bandwidth
119 // estimate or if the bandwidth estimate is within 90% of the new
120 // max bitrate then the probing attempt was successful.
121 mid_call_probing_succcess_threshold_ =
122 std::min(estimated_bitrate_bps_ * 1.2, max_bitrate_bps_ * 0.9);
123 mid_call_probing_waiting_for_result_ = true;
124 mid_call_probing_bitrate_bps_ = max_bitrate_bps_;
125
126 RTC_HISTOGRAM_COUNTS_10000("WebRTC.BWE.MidCallProbing.Initiated",
127 max_bitrate_bps_ / 1000);
128
129 InitiateProbing(at_time_ms, {max_bitrate_bps}, false);
130 }
131 break;
132 }
133}
134
135void ProbeController::OnNetworkAvailability(NetworkAvailability msg) {
136 network_available_ = msg.network_available;
137 if (network_available_ && state_ == State::kInit && start_bitrate_bps_ > 0)
138 InitiateExponentialProbing(msg.at_time.ms());
139}
140
141void ProbeController::InitiateExponentialProbing(int64_t at_time_ms) {
142 RTC_DCHECK(network_available_);
143 RTC_DCHECK(state_ == State::kInit);
144 RTC_DCHECK_GT(start_bitrate_bps_, 0);
145
146 // When probing at 1.8 Mbps ( 6x 300), this represents a threshold of
147 // 1.2 Mbps to continue probing.
148 InitiateProbing(at_time_ms, {3 * start_bitrate_bps_, 6 * start_bitrate_bps_},
149 true);
150}
151
152void ProbeController::SetEstimatedBitrate(int64_t bitrate_bps,
153 int64_t at_time_ms) {
154 int64_t now_ms = at_time_ms;
155
156 if (mid_call_probing_waiting_for_result_ &&
157 bitrate_bps >= mid_call_probing_succcess_threshold_) {
158 RTC_HISTOGRAM_COUNTS_10000("WebRTC.BWE.MidCallProbing.Success",
159 mid_call_probing_bitrate_bps_ / 1000);
160 RTC_HISTOGRAM_COUNTS_10000("WebRTC.BWE.MidCallProbing.ProbedKbps",
161 bitrate_bps / 1000);
162 mid_call_probing_waiting_for_result_ = false;
163 }
164
165 if (state_ == State::kWaitingForProbingResult) {
166 // Continue probing if probing results indicate channel has greater
167 // capacity.
168 RTC_LOG(LS_INFO) << "Measured bitrate: " << bitrate_bps
169 << " Minimum to probe further: "
170 << min_bitrate_to_probe_further_bps_;
171
172 if (min_bitrate_to_probe_further_bps_ != kExponentialProbingDisabled &&
173 bitrate_bps > min_bitrate_to_probe_further_bps_) {
174 // Double the probing bitrate.
175 InitiateProbing(now_ms, {2 * bitrate_bps}, true);
176 }
177 }
178
179 if (bitrate_bps < kBitrateDropThreshold * estimated_bitrate_bps_) {
180 time_of_last_large_drop_ms_ = now_ms;
181 bitrate_before_last_large_drop_bps_ = estimated_bitrate_bps_;
182 }
183
184 estimated_bitrate_bps_ = bitrate_bps;
185}
186
187void ProbeController::EnablePeriodicAlrProbing(bool enable) {
188 enable_periodic_alr_probing_ = enable;
189}
190
191void ProbeController::SetAlrStartTimeMs(
192 rtc::Optional<int64_t> alr_start_time_ms) {
193 alr_start_time_ms_ = alr_start_time_ms;
194}
195void ProbeController::SetAlrEndedTimeMs(int64_t alr_end_time_ms) {
196 alr_end_time_ms_.emplace(alr_end_time_ms);
197}
198
199void ProbeController::RequestProbe(int64_t at_time_ms) {
200 // Called once we have returned to normal state after a large drop in
201 // estimated bandwidth. The current response is to initiate a single probe
202 // session (if not already probing) at the previous bitrate.
203 //
204 // If the probe session fails, the assumption is that this drop was a
205 // real one from a competing flow or a network change.
206 bool in_alr = alr_start_time_ms_.has_value();
207 bool alr_ended_recently =
208 (alr_end_time_ms_.has_value() &&
209 at_time_ms - alr_end_time_ms_.value() < kAlrEndedTimeoutMs);
210 if (in_alr || alr_ended_recently || in_rapid_recovery_experiment_) {
211 if (state_ == State::kProbingComplete) {
212 uint32_t suggested_probe_bps =
213 kProbeFractionAfterDrop * bitrate_before_last_large_drop_bps_;
214 uint32_t min_expected_probe_result_bps =
215 (1 - kProbeUncertainty) * suggested_probe_bps;
216 int64_t time_since_drop_ms = at_time_ms - time_of_last_large_drop_ms_;
217 int64_t time_since_probe_ms = at_time_ms - last_bwe_drop_probing_time_ms_;
218 if (min_expected_probe_result_bps > estimated_bitrate_bps_ &&
219 time_since_drop_ms < kBitrateDropTimeoutMs &&
220 time_since_probe_ms > kMinTimeBetweenAlrProbesMs) {
221 RTC_LOG(LS_INFO) << "Detected big bandwidth drop, start probing.";
222 // Track how often we probe in response to bandwidth drop in ALR.
223 RTC_HISTOGRAM_COUNTS_10000(
224 "WebRTC.BWE.BweDropProbingIntervalInS",
225 (at_time_ms - last_bwe_drop_probing_time_ms_) / 1000);
226 InitiateProbing(at_time_ms, {suggested_probe_bps}, false);
227 last_bwe_drop_probing_time_ms_ = at_time_ms;
228 }
229 }
230 }
231}
232
233void ProbeController::Reset(int64_t at_time_ms) {
234 network_available_ = true;
235 state_ = State::kInit;
236 min_bitrate_to_probe_further_bps_ = kExponentialProbingDisabled;
237 time_last_probing_initiated_ms_ = 0;
238 estimated_bitrate_bps_ = 0;
239 start_bitrate_bps_ = 0;
240 max_bitrate_bps_ = 0;
241 int64_t now_ms = at_time_ms;
242 last_bwe_drop_probing_time_ms_ = now_ms;
243 alr_end_time_ms_.reset();
244 mid_call_probing_waiting_for_result_ = false;
245 time_of_last_large_drop_ms_ = now_ms;
246 bitrate_before_last_large_drop_bps_ = 0;
247}
248
249void ProbeController::Process(int64_t at_time_ms) {
250 int64_t now_ms = at_time_ms;
251
252 if (now_ms - time_last_probing_initiated_ms_ >
253 kMaxWaitingTimeForProbingResultMs) {
254 mid_call_probing_waiting_for_result_ = false;
255
256 if (state_ == State::kWaitingForProbingResult) {
257 RTC_LOG(LS_INFO) << "kWaitingForProbingResult: timeout";
258 state_ = State::kProbingComplete;
259 min_bitrate_to_probe_further_bps_ = kExponentialProbingDisabled;
260 }
261 }
262
263 if (state_ != State::kProbingComplete || !enable_periodic_alr_probing_)
264 return;
265
266 // Probe bandwidth periodically when in ALR state.
267 if (alr_start_time_ms_ && estimated_bitrate_bps_ > 0) {
268 int64_t next_probe_time_ms =
269 std::max(*alr_start_time_ms_, time_last_probing_initiated_ms_) +
270 kAlrPeriodicProbingIntervalMs;
271 if (now_ms >= next_probe_time_ms) {
272 InitiateProbing(now_ms, {estimated_bitrate_bps_ * 2}, true);
273 }
274 }
275}
276
277void ProbeController::InitiateProbing(
278 int64_t now_ms,
279 std::initializer_list<int64_t> bitrates_to_probe,
280 bool probe_further) {
281 for (int64_t bitrate : bitrates_to_probe) {
282 RTC_DCHECK_GT(bitrate, 0);
283 int64_t max_probe_bitrate_bps =
284 max_bitrate_bps_ > 0 ? max_bitrate_bps_ : kDefaultMaxProbingBitrateBps;
285 if (bitrate > max_probe_bitrate_bps) {
286 bitrate = max_probe_bitrate_bps;
287 probe_further = false;
288 }
289
290 ProbeClusterConfig config;
291 config.at_time = Timestamp::ms(now_ms);
292 config.target_data_rate = DataRate::bps(rtc::dchecked_cast<int>(bitrate));
293 config.target_duration = TimeDelta::ms(kMinProbeDurationMs);
294 config.target_probe_count = kMinProbePacketsSent;
295 observer_->OnProbeClusterConfig(config);
296 }
297 time_last_probing_initiated_ms_ = now_ms;
298 if (probe_further) {
299 state_ = State::kWaitingForProbingResult;
300 min_bitrate_to_probe_further_bps_ =
301 (*(bitrates_to_probe.end() - 1)) * kRepeatedProbeMinPercentage / 100;
302 } else {
303 state_ = State::kProbingComplete;
304 min_bitrate_to_probe_further_bps_ = kExponentialProbingDisabled;
305 }
306}
307
308} // namespace webrtc