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1 /* | 1 /* |
2 * Copyright (c) 2014 The WebRTC project authors. All Rights Reserved. | 2 * Copyright (c) 2014 The WebRTC project authors. All Rights Reserved. |
3 * | 3 * |
4 * Use of this source code is governed by a BSD-style license | 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 | 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 | 6 * tree. An additional intellectual property rights grant can be found |
7 * in the file PATENTS. All contributing project authors may | 7 * in the file PATENTS. All contributing project authors may |
8 * be found in the AUTHORS file in the root of the source tree. | 8 * be found in the AUTHORS file in the root of the source tree. |
9 */ | 9 */ |
10 | 10 |
11 #include "webrtc/modules/pacing/bitrate_prober.h" | 11 #include "webrtc/modules/pacing/bitrate_prober.h" |
12 | 12 |
13 #include <assert.h> | 13 #include <assert.h> |
14 #include <algorithm> | 14 #include <algorithm> |
15 #include <limits> | 15 #include <limits> |
16 #include <sstream> | 16 #include <sstream> |
| 17 #include <utility> |
17 | 18 |
18 #include "webrtc/base/checks.h" | 19 #include "webrtc/base/checks.h" |
19 #include "webrtc/base/logging.h" | 20 #include "webrtc/base/logging.h" |
20 #include "webrtc/modules/pacing/paced_sender.h" | 21 #include "webrtc/modules/pacing/paced_sender.h" |
21 | 22 |
22 namespace webrtc { | 23 namespace webrtc { |
23 | 24 |
24 namespace { | 25 namespace { |
| 26 |
| 27 // Inactivity threshold above which probing is restarted. |
| 28 constexpr int kInactivityThresholdMs = 5000; |
| 29 |
25 int ComputeDeltaFromBitrate(size_t packet_size, uint32_t bitrate_bps) { | 30 int ComputeDeltaFromBitrate(size_t packet_size, uint32_t bitrate_bps) { |
26 assert(bitrate_bps > 0); | 31 assert(bitrate_bps > 0); |
27 // Compute the time delta needed to send packet_size bytes at bitrate_bps | 32 // Compute the time delta needed to send packet_size bytes at bitrate_bps |
28 // bps. Result is in milliseconds. | 33 // bps. Result is in milliseconds. |
29 return static_cast<int>(1000ll * static_cast<int64_t>(packet_size) * 8ll / | 34 return static_cast<int>((1000ll * packet_size * 8) / bitrate_bps); |
30 bitrate_bps); | |
31 } | 35 } |
32 } // namespace | 36 } // namespace |
33 | 37 |
34 BitrateProber::BitrateProber() | 38 BitrateProber::BitrateProber() |
35 : probing_state_(kDisabled), | 39 : probing_state_(ProbingState::kDisabled), |
36 packet_size_last_send_(0), | 40 packet_size_last_sent_(0), |
37 time_last_send_ms_(-1), | 41 time_last_probe_sent_ms_(-1), |
38 next_cluster_id_(0) {} | 42 next_cluster_id_(0) { |
| 43 SetEnabled(true); |
| 44 } |
39 | 45 |
40 void BitrateProber::SetEnabled(bool enable) { | 46 void BitrateProber::SetEnabled(bool enable) { |
41 if (enable) { | 47 if (enable) { |
42 if (probing_state_ == kDisabled) { | 48 if (probing_state_ == ProbingState::kDisabled) { |
43 probing_state_ = kAllowedToProbe; | 49 probing_state_ = ProbingState::kInactive; |
44 LOG(LS_INFO) << "Initial bandwidth probing enabled"; | 50 LOG(LS_INFO) << "Bandwidth probing enabled, set to inactive"; |
45 } | 51 } |
46 } else { | 52 } else { |
47 probing_state_ = kDisabled; | 53 probing_state_ = ProbingState::kDisabled; |
48 LOG(LS_INFO) << "Initial bandwidth probing disabled"; | 54 LOG(LS_INFO) << "Bandwidth probing disabled"; |
49 } | 55 } |
50 } | 56 } |
51 | 57 |
52 bool BitrateProber::IsProbing() const { | 58 bool BitrateProber::IsProbing() const { |
53 return probing_state_ == kProbing; | 59 return probing_state_ == ProbingState::kActive; |
54 } | 60 } |
55 | 61 |
56 void BitrateProber::OnIncomingPacket(uint32_t bitrate_bps, | 62 void BitrateProber::OnIncomingPacket(uint32_t bitrate_bps, |
57 size_t packet_size, | 63 size_t packet_size, |
58 int64_t now_ms) { | 64 int64_t now_ms) { |
59 // Don't initialize probing unless we have something large enough to start | 65 // Don't initialize probing unless we have something large enough to start |
60 // probing. | 66 // probing. |
61 if (packet_size < PacedSender::kMinProbePacketSize) | 67 if (packet_size < PacedSender::kMinProbePacketSize) |
62 return; | 68 return; |
63 if (probing_state_ != kAllowedToProbe) | 69 if (probing_state_ != ProbingState::kInactive) |
64 return; | 70 return; |
65 // Max number of packets used for probing. | 71 // Max number of packets used for probing. |
66 const int kMaxNumProbes = 2; | 72 const int kMaxNumProbes = 2; |
67 const int kPacketsPerProbe = 5; | 73 const int kPacketsPerProbe = 5; |
68 const float kProbeBitrateMultipliers[kMaxNumProbes] = {3, 6}; | 74 const float kProbeBitrateMultipliers[kMaxNumProbes] = {3, 6}; |
69 std::stringstream bitrate_log; | 75 std::stringstream bitrate_log; |
70 bitrate_log << "Start probing for bandwidth, (bitrate:packets): "; | 76 bitrate_log << "Start probing for bandwidth, (bitrate:packets): "; |
71 for (int i = 0; i < kMaxNumProbes; ++i) { | 77 for (int i = 0; i < kMaxNumProbes; ++i) { |
72 ProbeCluster cluster; | 78 ProbeCluster cluster; |
73 // We need one extra to get 5 deltas for the first probe, therefore (i == 0) | 79 // We need one extra to get 5 deltas for the first probe, therefore (i == 0) |
74 cluster.max_probe_packets = kPacketsPerProbe + (i == 0 ? 1 : 0); | 80 cluster.max_probe_packets = kPacketsPerProbe + (i == 0 ? 1 : 0); |
75 cluster.probe_bitrate_bps = kProbeBitrateMultipliers[i] * bitrate_bps; | 81 cluster.probe_bitrate_bps = kProbeBitrateMultipliers[i] * bitrate_bps; |
76 cluster.id = next_cluster_id_++; | 82 cluster.id = next_cluster_id_++; |
77 | 83 |
78 bitrate_log << "(" << cluster.probe_bitrate_bps << ":" | 84 bitrate_log << "(" << cluster.probe_bitrate_bps << ":" |
79 << cluster.max_probe_packets << ") "; | 85 << cluster.max_probe_packets << ") "; |
80 | 86 |
81 clusters_.push(cluster); | 87 clusters_.push(cluster); |
82 } | 88 } |
83 LOG(LS_INFO) << bitrate_log.str().c_str(); | 89 LOG(LS_INFO) << bitrate_log.str().c_str(); |
84 // Set last send time to current time so TimeUntilNextProbe doesn't short | 90 probing_state_ = ProbingState::kActive; |
85 // circuit due to inactivity. | 91 } |
86 time_last_send_ms_ = now_ms; | 92 |
87 probing_state_ = kProbing; | 93 void BitrateProber::ResetState() { |
| 94 time_last_probe_sent_ms_ = -1; |
| 95 packet_size_last_sent_ = 0; |
| 96 clusters_ = std::queue<ProbeCluster>(); |
| 97 // If its enabled, reset to inactive. |
| 98 if (probing_state_ != ProbingState::kDisabled) |
| 99 probing_state_ = ProbingState::kInactive; |
88 } | 100 } |
89 | 101 |
90 int BitrateProber::TimeUntilNextProbe(int64_t now_ms) { | 102 int BitrateProber::TimeUntilNextProbe(int64_t now_ms) { |
91 if (probing_state_ != kDisabled && clusters_.empty()) { | 103 // Probing is not active or probing is already complete. |
92 probing_state_ = kWait; | 104 if (probing_state_ != ProbingState::kActive || clusters_.empty()) |
| 105 return -1; |
| 106 // time_last_probe_sent_ms_ of -1 indicates no probes have yet been sent. |
| 107 int64_t elapsed_time_ms; |
| 108 if (time_last_probe_sent_ms_ == -1) { |
| 109 elapsed_time_ms = 0; |
| 110 } else { |
| 111 elapsed_time_ms = now_ms - time_last_probe_sent_ms_; |
93 } | 112 } |
94 | 113 // If no probes have been sent for a while, abort current probing and |
95 if (clusters_.empty() || time_last_send_ms_ == -1) { | 114 // reset. |
96 // No probe started, probe finished, or too long since last probe packet. | 115 if (elapsed_time_ms > kInactivityThresholdMs) { |
97 return -1; | 116 ResetState(); |
98 } | |
99 int64_t elapsed_time_ms = now_ms - time_last_send_ms_; | |
100 // If no packets have been sent for n milliseconds, temporarily deactivate to | |
101 // not keep spinning. | |
102 static const int kInactiveSendDeltaMs = 5000; | |
103 if (elapsed_time_ms > kInactiveSendDeltaMs) { | |
104 time_last_send_ms_ = -1; | |
105 probing_state_ = kAllowedToProbe; | |
106 return -1; | 117 return -1; |
107 } | 118 } |
108 // We will send the first probe packet immediately if no packet has been | 119 // We will send the first probe packet immediately if no packet has been |
109 // sent before. | 120 // sent before. |
110 int time_until_probe_ms = 0; | 121 int time_until_probe_ms = 0; |
111 if (packet_size_last_send_ != 0 && probing_state_ == kProbing) { | 122 if (packet_size_last_sent_ != 0 && probing_state_ == ProbingState::kActive) { |
112 int next_delta_ms = ComputeDeltaFromBitrate( | 123 int next_delta_ms = ComputeDeltaFromBitrate( |
113 packet_size_last_send_, clusters_.front().probe_bitrate_bps); | 124 packet_size_last_sent_, clusters_.front().probe_bitrate_bps); |
114 time_until_probe_ms = next_delta_ms - elapsed_time_ms; | 125 time_until_probe_ms = next_delta_ms - elapsed_time_ms; |
115 // There is no point in trying to probe with less than 1 ms between packets | 126 // There is no point in trying to probe with less than 1 ms between packets |
116 // as it essentially means trying to probe at infinite bandwidth. | 127 // as it essentially means trying to probe at infinite bandwidth. |
117 const int kMinProbeDeltaMs = 1; | 128 const int kMinProbeDeltaMs = 1; |
118 // If we have waited more than 3 ms for a new packet to probe with we will | 129 // If we have waited more than 3 ms for a new packet to probe with we will |
119 // consider this probing session over. | 130 // consider this probing session over. |
120 const int kMaxProbeDelayMs = 3; | 131 const int kMaxProbeDelayMs = 3; |
121 if (next_delta_ms < kMinProbeDeltaMs || | 132 if (next_delta_ms < kMinProbeDeltaMs || |
122 time_until_probe_ms < -kMaxProbeDelayMs) { | 133 time_until_probe_ms < -kMaxProbeDelayMs) { |
123 // We currently disable probing after the first probe, as we only want | 134 probing_state_ = ProbingState::kSuspended; |
124 // to probe at the beginning of a connection. We should set this to | 135 LOG(LS_INFO) << "Delta too small or missed probing accurately, suspend"; |
125 // kWait if we later want to probe periodically. | |
126 probing_state_ = kWait; | |
127 LOG(LS_INFO) << "Next delta too small, stop probing."; | |
128 time_until_probe_ms = 0; | 136 time_until_probe_ms = 0; |
129 } | 137 } |
130 } | 138 } |
131 return std::max(time_until_probe_ms, 0); | 139 return std::max(time_until_probe_ms, 0); |
132 } | 140 } |
133 | 141 |
134 int BitrateProber::CurrentClusterId() const { | 142 int BitrateProber::CurrentClusterId() const { |
135 RTC_DCHECK(!clusters_.empty()); | 143 RTC_DCHECK(!clusters_.empty()); |
136 RTC_DCHECK_EQ(kProbing, probing_state_); | 144 RTC_DCHECK(ProbingState::kActive == probing_state_); |
137 return clusters_.front().id; | 145 return clusters_.front().id; |
138 } | 146 } |
139 | 147 |
140 size_t BitrateProber::RecommendedPacketSize() const { | 148 size_t BitrateProber::RecommendedPacketSize() const { |
141 return packet_size_last_send_; | 149 return packet_size_last_sent_; |
142 } | 150 } |
143 | 151 |
144 void BitrateProber::PacketSent(int64_t now_ms, size_t packet_size) { | 152 void BitrateProber::PacketSent(int64_t now_ms, size_t packet_size) { |
145 assert(packet_size > 0); | 153 assert(packet_size > 0); |
146 if (packet_size < PacedSender::kMinProbePacketSize) | 154 if (packet_size < PacedSender::kMinProbePacketSize) |
147 return; | 155 return; |
148 packet_size_last_send_ = packet_size; | 156 packet_size_last_sent_ = packet_size; |
149 time_last_send_ms_ = now_ms; | 157 if (probing_state_ != ProbingState::kActive) |
150 if (probing_state_ != kProbing) | |
151 return; | 158 return; |
| 159 time_last_probe_sent_ms_ = now_ms; |
152 if (!clusters_.empty()) { | 160 if (!clusters_.empty()) { |
153 ProbeCluster* cluster = &clusters_.front(); | 161 ProbeCluster* cluster = &clusters_.front(); |
154 ++cluster->sent_probe_packets; | 162 ++cluster->sent_probe_packets; |
155 if (cluster->sent_probe_packets == cluster->max_probe_packets) | 163 if (cluster->sent_probe_packets == cluster->max_probe_packets) |
156 clusters_.pop(); | 164 clusters_.pop(); |
157 if (clusters_.empty()) | 165 if (clusters_.empty()) |
158 probing_state_ = kWait; | 166 probing_state_ = ProbingState::kSuspended; |
159 } | 167 } |
160 } | 168 } |
161 } // namespace webrtc | 169 } // namespace webrtc |
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