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pwestin@webrtc.orgb5180172012-11-09 20:56:23 +00001/*
2 * Copyright (c) 2012 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
Henrik Kjellander0b9e29c2015-11-16 11:12:24 +010011#include "webrtc/modules/pacing/paced_sender.h"
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +000012
pbos@webrtc.org03c817e2014-07-07 10:20:35 +000013#include <map>
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000014#include <queue>
pbos@webrtc.org03c817e2014-07-07 10:20:35 +000015#include <set>
16
sprang0a43fef2015-11-20 09:00:37 -080017#include "webrtc/base/checks.h"
Peter Boström7c704b82015-12-04 16:13:05 +010018#include "webrtc/base/logging.h"
Henrik Kjellanderff761fb2015-11-04 08:31:52 +010019#include "webrtc/modules/include/module_common_types.h"
stefan@webrtc.org82462aa2014-10-23 11:57:05 +000020#include "webrtc/modules/pacing/bitrate_prober.h"
Henrik Kjellander98f53512015-10-28 18:17:40 +010021#include "webrtc/system_wrappers/include/clock.h"
22#include "webrtc/system_wrappers/include/critical_section_wrapper.h"
23#include "webrtc/system_wrappers/include/field_trial.h"
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +000024
25namespace {
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +000026// Time limit in milliseconds between packet bursts.
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +000027const int64_t kMinPacketLimitMs = 5;
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +000028
29// Upper cap on process interval, in case process has not been called in a long
30// time.
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +000031const int64_t kMaxIntervalTimeMs = 30;
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +000032
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +000033} // namespace
34
Erik Språngad113e52015-11-26 16:26:12 +010035// TODO(sprang): Move at least PacketQueue and MediaBudget out to separate
36// files, so that we can more easily test them.
37
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +000038namespace webrtc {
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +000039namespace paced_sender {
40struct Packet {
sprangebbf8a82015-09-21 15:11:14 -070041 Packet(RtpPacketSender::Priority priority,
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000042 uint32_t ssrc,
pbos@webrtc.org03c817e2014-07-07 10:20:35 +000043 uint16_t seq_number,
44 int64_t capture_time_ms,
45 int64_t enqueue_time_ms,
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +000046 size_t length_in_bytes,
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000047 bool retransmission,
48 uint64_t enqueue_order)
49 : priority(priority),
50 ssrc(ssrc),
pbos@webrtc.org03c817e2014-07-07 10:20:35 +000051 sequence_number(seq_number),
52 capture_time_ms(capture_time_ms),
53 enqueue_time_ms(enqueue_time_ms),
54 bytes(length_in_bytes),
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000055 retransmission(retransmission),
56 enqueue_order(enqueue_order) {}
57
sprangebbf8a82015-09-21 15:11:14 -070058 RtpPacketSender::Priority priority;
pbos@webrtc.org03c817e2014-07-07 10:20:35 +000059 uint32_t ssrc;
60 uint16_t sequence_number;
61 int64_t capture_time_ms;
62 int64_t enqueue_time_ms;
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +000063 size_t bytes;
pbos@webrtc.org03c817e2014-07-07 10:20:35 +000064 bool retransmission;
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000065 uint64_t enqueue_order;
66 std::list<Packet>::iterator this_it;
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +000067};
68
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000069// Used by priority queue to sort packets.
70struct Comparator {
71 bool operator()(const Packet* first, const Packet* second) {
72 // Highest prio = 0.
73 if (first->priority != second->priority)
74 return first->priority > second->priority;
75
76 // Retransmissions go first.
77 if (second->retransmission && !first->retransmission)
78 return true;
79
80 // Older frames have higher prio.
81 if (first->capture_time_ms != second->capture_time_ms)
82 return first->capture_time_ms > second->capture_time_ms;
83
84 return first->enqueue_order > second->enqueue_order;
85 }
86};
87
88// Class encapsulating a priority queue with some extensions.
89class PacketQueue {
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +000090 public:
sprang0a43fef2015-11-20 09:00:37 -080091 explicit PacketQueue(Clock* clock)
92 : bytes_(0),
93 clock_(clock),
94 queue_time_sum_(0),
95 time_last_updated_(clock_->TimeInMilliseconds()) {}
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000096 virtual ~PacketQueue() {}
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +000097
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +000098 void Push(const Packet& packet) {
Erik Språngad113e52015-11-26 16:26:12 +010099 if (!AddToDupeSet(packet))
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000100 return;
Erik Språngad113e52015-11-26 16:26:12 +0100101
102 UpdateQueueTime(packet.enqueue_time_ms);
103
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000104 // Store packet in list, use pointers in priority queue for cheaper moves.
105 // Packets have a handle to its own iterator in the list, for easy removal
106 // when popping from queue.
107 packet_list_.push_front(packet);
108 std::list<Packet>::iterator it = packet_list_.begin();
109 it->this_it = it; // Handle for direct removal from list.
110 prio_queue_.push(&(*it)); // Pointer into list.
111 bytes_ += packet.bytes;
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000112 }
113
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000114 const Packet& BeginPop() {
115 const Packet& packet = *prio_queue_.top();
116 prio_queue_.pop();
117 return packet;
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000118 }
119
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000120 void CancelPop(const Packet& packet) { prio_queue_.push(&(*packet.this_it)); }
121
122 void FinalizePop(const Packet& packet) {
123 RemoveFromDupeSet(packet);
124 bytes_ -= packet.bytes;
sprang0a43fef2015-11-20 09:00:37 -0800125 queue_time_sum_ -= (time_last_updated_ - packet.enqueue_time_ms);
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000126 packet_list_.erase(packet.this_it);
Erik Språngad113e52015-11-26 16:26:12 +0100127 RTC_DCHECK_EQ(packet_list_.size(), prio_queue_.size());
128 if (packet_list_.empty())
129 RTC_DCHECK_EQ(0u, queue_time_sum_);
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000130 }
131
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000132 bool Empty() const { return prio_queue_.empty(); }
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000133
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000134 size_t SizeInPackets() const { return prio_queue_.size(); }
135
pkasting@chromium.org2656bf82014-11-17 22:21:14 +0000136 uint64_t SizeInBytes() const { return bytes_; }
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000137
sprang0a43fef2015-11-20 09:00:37 -0800138 int64_t OldestEnqueueTimeMs() const {
139 auto it = packet_list_.rbegin();
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000140 if (it == packet_list_.rend())
141 return 0;
142 return it->enqueue_time_ms;
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000143 }
144
Erik Språngad113e52015-11-26 16:26:12 +0100145 void UpdateQueueTime(int64_t timestamp_ms) {
146 RTC_DCHECK_GE(timestamp_ms, time_last_updated_);
147 int64_t delta = timestamp_ms - time_last_updated_;
148 // Use packet packet_list_.size() not prio_queue_.size() here, as there
149 // might be an outstanding element popped from prio_queue_ currently in the
150 // SendPacket() call, while packet_list_ will always be correct.
151 queue_time_sum_ += delta * packet_list_.size();
152 time_last_updated_ = timestamp_ms;
153 }
154
155 int64_t AverageQueueTimeMs() const {
156 if (prio_queue_.empty())
157 return 0;
158 return queue_time_sum_ / packet_list_.size();
sprang0a43fef2015-11-20 09:00:37 -0800159 }
160
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000161 private:
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000162 // Try to add a packet to the set of ssrc/seqno identifiers currently in the
163 // queue. Return true if inserted, false if this is a duplicate.
164 bool AddToDupeSet(const Packet& packet) {
165 SsrcSeqNoMap::iterator it = dupe_map_.find(packet.ssrc);
166 if (it == dupe_map_.end()) {
167 // First for this ssrc, just insert.
168 dupe_map_[packet.ssrc].insert(packet.sequence_number);
169 return true;
170 }
171
172 // Insert returns a pair, where second is a bool set to true if new element.
173 return it->second.insert(packet.sequence_number).second;
174 }
175
176 void RemoveFromDupeSet(const Packet& packet) {
177 SsrcSeqNoMap::iterator it = dupe_map_.find(packet.ssrc);
sprang0a43fef2015-11-20 09:00:37 -0800178 RTC_DCHECK(it != dupe_map_.end());
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000179 it->second.erase(packet.sequence_number);
180 if (it->second.empty()) {
181 dupe_map_.erase(it);
182 }
183 }
184
185 // List of packets, in the order the were enqueued. Since dequeueing may
186 // occur out of order, use list instead of vector.
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000187 std::list<Packet> packet_list_;
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000188 // Priority queue of the packets, sorted according to Comparator.
189 // Use pointers into list, to avoid moving whole struct within heap.
190 std::priority_queue<Packet*, std::vector<Packet*>, Comparator> prio_queue_;
191 // Total number of bytes in the queue.
192 uint64_t bytes_;
193 // Map<ssrc, set<seq_no> >, for checking duplicates.
194 typedef std::map<uint32_t, std::set<uint16_t> > SsrcSeqNoMap;
195 SsrcSeqNoMap dupe_map_;
sprang0a43fef2015-11-20 09:00:37 -0800196 Clock* const clock_;
197 int64_t queue_time_sum_;
198 int64_t time_last_updated_;
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000199};
200
201class IntervalBudget {
202 public:
203 explicit IntervalBudget(int initial_target_rate_kbps)
204 : target_rate_kbps_(initial_target_rate_kbps),
205 bytes_remaining_(0) {}
206
207 void set_target_rate_kbps(int target_rate_kbps) {
208 target_rate_kbps_ = target_rate_kbps;
stefanc62642c2015-07-07 04:20:34 -0700209 bytes_remaining_ =
210 std::max(-kWindowMs * target_rate_kbps_ / 8, bytes_remaining_);
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000211 }
212
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +0000213 void IncreaseBudget(int64_t delta_time_ms) {
214 int64_t bytes = target_rate_kbps_ * delta_time_ms / 8;
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000215 if (bytes_remaining_ < 0) {
216 // We overused last interval, compensate this interval.
217 bytes_remaining_ = bytes_remaining_ + bytes;
218 } else {
219 // If we underused last interval we can't use it this interval.
220 bytes_remaining_ = bytes;
221 }
222 }
223
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +0000224 void UseBudget(size_t bytes) {
225 bytes_remaining_ = std::max(bytes_remaining_ - static_cast<int>(bytes),
stefanc62642c2015-07-07 04:20:34 -0700226 -kWindowMs * target_rate_kbps_ / 8);
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000227 }
228
Stefan Holmer01b48882015-05-05 10:21:24 +0200229 size_t bytes_remaining() const {
230 return static_cast<size_t>(std::max(0, bytes_remaining_));
231 }
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000232
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000233 int target_rate_kbps() const { return target_rate_kbps_; }
234
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000235 private:
stefanc62642c2015-07-07 04:20:34 -0700236 static const int kWindowMs = 500;
237
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000238 int target_rate_kbps_;
239 int bytes_remaining_;
240};
241} // namespace paced_sender
pwestin@webrtc.org52aa0192013-04-25 17:35:56 +0000242
sprang0a43fef2015-11-20 09:00:37 -0800243const int64_t PacedSender::kMaxQueueLengthMs = 2000;
stefan@webrtc.org88e0dda2014-07-04 09:20:42 +0000244const float PacedSender::kDefaultPaceMultiplier = 2.5f;
245
246PacedSender::PacedSender(Clock* clock,
247 Callback* callback,
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000248 int bitrate_kbps,
pbos@webrtc.org709e2972014-03-19 10:59:52 +0000249 int max_bitrate_kbps,
250 int min_bitrate_kbps)
stefan@webrtc.org88e0dda2014-07-04 09:20:42 +0000251 : clock_(clock),
252 callback_(callback),
pbos@webrtc.org03c817e2014-07-07 10:20:35 +0000253 critsect_(CriticalSectionWrapper::CreateCriticalSection()),
pwestin@webrtc.orgdb418562013-03-22 23:39:29 +0000254 paused_(false),
stefan@webrtc.orge9f0f592015-02-16 15:47:51 +0000255 probing_enabled_(true),
pbos@webrtc.org709e2972014-03-19 10:59:52 +0000256 media_budget_(new paced_sender::IntervalBudget(max_bitrate_kbps)),
257 padding_budget_(new paced_sender::IntervalBudget(min_bitrate_kbps)),
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000258 prober_(new BitrateProber()),
259 bitrate_bps_(1000 * bitrate_kbps),
sprang0a43fef2015-11-20 09:00:37 -0800260 max_bitrate_kbps_(max_bitrate_kbps),
stefan@webrtc.org89fd1e82014-07-15 16:40:38 +0000261 time_last_update_us_(clock->TimeInMicroseconds()),
sprang0a43fef2015-11-20 09:00:37 -0800262 packets_(new paced_sender::PacketQueue(clock)),
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000263 packet_counter_(0) {
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000264 UpdateBytesPerInterval(kMinPacketLimitMs);
265}
266
stefan@webrtc.org89fd1e82014-07-15 16:40:38 +0000267PacedSender::~PacedSender() {}
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000268
pwestin@webrtc.orgdb418562013-03-22 23:39:29 +0000269void PacedSender::Pause() {
270 CriticalSectionScoped cs(critsect_.get());
271 paused_ = true;
272}
273
274void PacedSender::Resume() {
275 CriticalSectionScoped cs(critsect_.get());
276 paused_ = false;
277}
278
stefan@webrtc.orge9f0f592015-02-16 15:47:51 +0000279void PacedSender::SetProbingEnabled(bool enabled) {
sprang0a43fef2015-11-20 09:00:37 -0800280 RTC_CHECK_EQ(0u, packet_counter_);
stefan@webrtc.orge9f0f592015-02-16 15:47:51 +0000281 probing_enabled_ = enabled;
282}
283
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000284void PacedSender::UpdateBitrate(int bitrate_kbps,
285 int max_bitrate_kbps,
pbos@webrtc.org709e2972014-03-19 10:59:52 +0000286 int min_bitrate_kbps) {
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000287 CriticalSectionScoped cs(critsect_.get());
sprang0a43fef2015-11-20 09:00:37 -0800288 // Don't set media bitrate here as it may be boosted in order to meet max
289 // queue time constraint. Just update max_bitrate_kbps_ and let media_budget_
290 // be updated in Process().
pbos@webrtc.org709e2972014-03-19 10:59:52 +0000291 padding_budget_->set_target_rate_kbps(min_bitrate_kbps);
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000292 bitrate_bps_ = 1000 * bitrate_kbps;
sprang0a43fef2015-11-20 09:00:37 -0800293 max_bitrate_kbps_ = max_bitrate_kbps;
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000294}
295
Peter Boströme23e7372015-10-08 11:44:14 +0200296void PacedSender::InsertPacket(RtpPacketSender::Priority priority,
297 uint32_t ssrc,
298 uint16_t sequence_number,
299 int64_t capture_time_ms,
300 size_t bytes,
301 bool retransmission) {
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000302 CriticalSectionScoped cs(critsect_.get());
303
sprang0a43fef2015-11-20 09:00:37 -0800304 if (probing_enabled_ && !prober_->IsProbing())
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000305 prober_->SetEnabled(true);
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000306 prober_->MaybeInitializeProbe(bitrate_bps_);
307
Erik Språngad113e52015-11-26 16:26:12 +0100308 int64_t now_ms = clock_->TimeInMilliseconds();
sprang0a43fef2015-11-20 09:00:37 -0800309 if (capture_time_ms < 0)
Erik Språngad113e52015-11-26 16:26:12 +0100310 capture_time_ms = now_ms;
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000311
Erik Språngad113e52015-11-26 16:26:12 +0100312 packets_->Push(paced_sender::Packet(priority, ssrc, sequence_number,
313 capture_time_ms, now_ms, bytes,
314 retransmission, packet_counter_++));
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000315}
316
pkasting@chromium.org2656bf82014-11-17 22:21:14 +0000317int64_t PacedSender::ExpectedQueueTimeMs() const {
stefan@webrtc.org19a40ff2013-11-27 14:16:20 +0000318 CriticalSectionScoped cs(critsect_.get());
sprang0a43fef2015-11-20 09:00:37 -0800319 RTC_DCHECK_GT(max_bitrate_kbps_, 0);
320 return static_cast<int64_t>(packets_->SizeInBytes() * 8 / max_bitrate_kbps_);
stefan@webrtc.orgbfacda62013-03-27 16:36:01 +0000321}
322
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000323size_t PacedSender::QueueSizePackets() const {
324 CriticalSectionScoped cs(critsect_.get());
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000325 return packets_->SizeInPackets();
326}
327
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +0000328int64_t PacedSender::QueueInMs() const {
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000329 CriticalSectionScoped cs(critsect_.get());
330
sprang0a43fef2015-11-20 09:00:37 -0800331 int64_t oldest_packet = packets_->OldestEnqueueTimeMs();
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000332 if (oldest_packet == 0)
333 return 0;
334
335 return clock_->TimeInMilliseconds() - oldest_packet;
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000336}
337
Erik Språngad113e52015-11-26 16:26:12 +0100338int64_t PacedSender::AverageQueueTimeMs() {
339 CriticalSectionScoped cs(critsect_.get());
340 packets_->UpdateQueueTime(clock_->TimeInMilliseconds());
341 return packets_->AverageQueueTimeMs();
342}
343
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +0000344int64_t PacedSender::TimeUntilNextProcess() {
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000345 CriticalSectionScoped cs(critsect_.get());
stefan@webrtc.org82462aa2014-10-23 11:57:05 +0000346 if (prober_->IsProbing()) {
stefan@webrtc.orge9f0f592015-02-16 15:47:51 +0000347 int64_t ret = prober_->TimeUntilNextProbe(clock_->TimeInMilliseconds());
sprang0a43fef2015-11-20 09:00:37 -0800348 if (ret >= 0)
stefan@webrtc.orge9f0f592015-02-16 15:47:51 +0000349 return ret;
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000350 }
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +0000351 int64_t elapsed_time_us = clock_->TimeInMicroseconds() - time_last_update_us_;
352 int64_t elapsed_time_ms = (elapsed_time_us + 500) / 1000;
353 return std::max<int64_t>(kMinPacketLimitMs - elapsed_time_ms, 0);
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000354}
355
356int32_t PacedSender::Process() {
stefan@webrtc.org89fd1e82014-07-15 16:40:38 +0000357 int64_t now_us = clock_->TimeInMicroseconds();
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000358 CriticalSectionScoped cs(critsect_.get());
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +0000359 int64_t elapsed_time_ms = (now_us - time_last_update_us_ + 500) / 1000;
stefan@webrtc.org89fd1e82014-07-15 16:40:38 +0000360 time_last_update_us_ = now_us;
Peter Boströme23e7372015-10-08 11:44:14 +0200361 if (paused_)
stefan@webrtc.org80865fd2013-08-09 11:31:23 +0000362 return 0;
sprang0a43fef2015-11-20 09:00:37 -0800363 int target_bitrate_kbps = max_bitrate_kbps_;
Peter Boströme23e7372015-10-08 11:44:14 +0200364 if (elapsed_time_ms > 0) {
sprang0a43fef2015-11-20 09:00:37 -0800365 size_t queue_size_bytes = packets_->SizeInBytes();
366 if (queue_size_bytes > 0) {
367 // Assuming equal size packets and input/output rate, the average packet
368 // has avg_time_left_ms left to get queue_size_bytes out of the queue, if
369 // time constraint shall be met. Determine bitrate needed for that.
Erik Språngad113e52015-11-26 16:26:12 +0100370 packets_->UpdateQueueTime(clock_->TimeInMilliseconds());
sprang0a43fef2015-11-20 09:00:37 -0800371 int64_t avg_time_left_ms = std::max<int64_t>(
372 1, kMaxQueueLengthMs - packets_->AverageQueueTimeMs());
373 int min_bitrate_needed_kbps =
374 static_cast<int>(queue_size_bytes * 8 / avg_time_left_ms);
375 if (min_bitrate_needed_kbps > target_bitrate_kbps)
376 target_bitrate_kbps = min_bitrate_needed_kbps;
377 }
378
379 media_budget_->set_target_rate_kbps(target_bitrate_kbps);
380
Peter Boströme23e7372015-10-08 11:44:14 +0200381 int64_t delta_time_ms = std::min(kMaxIntervalTimeMs, elapsed_time_ms);
382 UpdateBytesPerInterval(delta_time_ms);
stefan@webrtc.org80865fd2013-08-09 11:31:23 +0000383 }
Peter Boströme23e7372015-10-08 11:44:14 +0200384 while (!packets_->Empty()) {
sprang0a43fef2015-11-20 09:00:37 -0800385 if (media_budget_->bytes_remaining() == 0 && !prober_->IsProbing())
Stefan Holmer586b19b2015-09-18 11:14:31 +0200386 return 0;
387
Peter Boströme23e7372015-10-08 11:44:14 +0200388 // Since we need to release the lock in order to send, we first pop the
389 // element from the priority queue but keep it in storage, so that we can
390 // reinsert it if send fails.
391 const paced_sender::Packet& packet = packets_->BeginPop();
392 if (SendPacket(packet)) {
393 // Send succeeded, remove it from the queue.
394 packets_->FinalizePop(packet);
sprang0a43fef2015-11-20 09:00:37 -0800395 if (prober_->IsProbing())
Peter Boströme23e7372015-10-08 11:44:14 +0200396 return 0;
Peter Boströme23e7372015-10-08 11:44:14 +0200397 } else {
398 // Send failed, put it back into the queue.
399 packets_->CancelPop(packet);
400 return 0;
401 }
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000402 }
Peter Boströme23e7372015-10-08 11:44:14 +0200403
404 if (!packets_->Empty())
405 return 0;
406
407 size_t padding_needed;
sprang0a43fef2015-11-20 09:00:37 -0800408 if (prober_->IsProbing()) {
Peter Boströme23e7372015-10-08 11:44:14 +0200409 padding_needed = prober_->RecommendedPacketSize();
sprang0a43fef2015-11-20 09:00:37 -0800410 } else {
Peter Boströme23e7372015-10-08 11:44:14 +0200411 padding_needed = padding_budget_->bytes_remaining();
sprang0a43fef2015-11-20 09:00:37 -0800412 }
Peter Boströme23e7372015-10-08 11:44:14 +0200413
414 if (padding_needed > 0)
415 SendPadding(static_cast<size_t>(padding_needed));
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000416 return 0;
417}
418
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000419bool PacedSender::SendPacket(const paced_sender::Packet& packet) {
stefan@webrtc.org19a40ff2013-11-27 14:16:20 +0000420 critsect_->Leave();
pbos@webrtc.org03c817e2014-07-07 10:20:35 +0000421 const bool success = callback_->TimeToSendPacket(packet.ssrc,
422 packet.sequence_number,
423 packet.capture_time_ms,
424 packet.retransmission);
stefan@webrtc.org19a40ff2013-11-27 14:16:20 +0000425 critsect_->Enter();
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000426
427 if (success) {
428 // Update media bytes sent.
429 prober_->PacketSent(clock_->TimeInMilliseconds(), packet.bytes);
430 media_budget_->UseBudget(packet.bytes);
431 padding_budget_->UseBudget(packet.bytes);
stefan@webrtc.org19a40ff2013-11-27 14:16:20 +0000432 }
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000433
434 return success;
435}
436
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +0000437void PacedSender::SendPadding(size_t padding_needed) {
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000438 critsect_->Leave();
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +0000439 size_t bytes_sent = callback_->TimeToSendPadding(padding_needed);
sprang@webrtc.orgdcebf2d2014-11-04 16:27:16 +0000440 critsect_->Enter();
441
Stefan Holmer01b48882015-05-05 10:21:24 +0200442 if (bytes_sent > 0) {
443 prober_->PacketSent(clock_->TimeInMilliseconds(), bytes_sent);
444 media_budget_->UseBudget(bytes_sent);
445 padding_budget_->UseBudget(bytes_sent);
446 }
stefan@webrtc.org19a40ff2013-11-27 14:16:20 +0000447}
448
pkasting@chromium.org0b1534c2014-12-15 22:09:40 +0000449void PacedSender::UpdateBytesPerInterval(int64_t delta_time_ms) {
stefan@webrtc.orgc3cc3752013-06-04 09:36:56 +0000450 media_budget_->IncreaseBudget(delta_time_ms);
451 padding_budget_->IncreaseBudget(delta_time_ms);
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000452}
pwestin@webrtc.orgb5180172012-11-09 20:56:23 +0000453} // namespace webrtc