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stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +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
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "modules/rtp_rtcp/source/ulpfec_generator.h"
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000012
Yves Gerey988cc082018-10-23 12:03:01 +020013#include <string.h>
14#include <cstdint>
brandtr35c480c2016-08-09 01:23:23 -070015#include <memory>
16#include <utility>
17
Rasmus Brandt393e2662018-01-22 12:52:36 +010018#include "modules/rtp_rtcp/include/rtp_rtcp_defines.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020019#include "modules/rtp_rtcp/source/byte_io.h"
20#include "modules/rtp_rtcp/source/forward_error_correction.h"
Yves Gerey988cc082018-10-23 12:03:01 +020021#include "modules/rtp_rtcp/source/forward_error_correction_internal.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020022#include "modules/rtp_rtcp/source/rtp_utility.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020023#include "rtc_base/checks.h"
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000024
25namespace webrtc {
26
Rasmus Brandtc07ebb32016-10-04 10:57:36 +020027namespace {
28
brandtr74811e52016-08-10 00:51:50 -070029constexpr size_t kRedForFecHeaderLength = 1;
30
marpan@webrtc.org747cd872012-05-22 16:50:00 +000031// This controls the maximum amount of excess overhead (actual - target)
brandtrece4aba2016-09-20 23:16:28 -070032// allowed in order to trigger EncodeFec(), before |params_.max_fec_frames|
marpan@webrtc.org747cd872012-05-22 16:50:00 +000033// is reached. Overhead here is defined as relative to number of media packets.
brandtr74811e52016-08-10 00:51:50 -070034constexpr int kMaxExcessOverhead = 50; // Q8.
35
marpan@webrtc.org747cd872012-05-22 16:50:00 +000036// This is the minimum number of media packets required (above some protection
brandtrece4aba2016-09-20 23:16:28 -070037// level) in order to trigger EncodeFec(), before |params_.max_fec_frames| is
marpan@webrtc.org747cd872012-05-22 16:50:00 +000038// reached.
brandtr74811e52016-08-10 00:51:50 -070039constexpr size_t kMinMediaPackets = 4;
40
marpan@webrtc.org747cd872012-05-22 16:50:00 +000041// Threshold on the received FEC protection level, above which we enforce at
brandtr74811e52016-08-10 00:51:50 -070042// least |kMinMediaPackets| packets for the FEC code. Below this
43// threshold |kMinMediaPackets| is set to default value of 1.
44//
45// The range is between 0 and 255, where 255 corresponds to 100% overhead
46// (relative to the number of protected media packets).
47constexpr uint8_t kHighProtectionThreshold = 80;
48
49// This threshold is used to adapt the |kMinMediaPackets| threshold, based
50// on the average number of packets per frame seen so far. When there are few
51// packets per frame (as given by this threshold), at least
52// |kMinMediaPackets| + 1 packets are sent to the FEC code.
53constexpr float kMinMediaPacketsAdaptationThreshold = 2.0f;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000054
brandtrd726a3f2017-06-29 02:45:35 -070055// At construction time, we don't know the SSRC that is used for the generated
56// FEC packets, but we still need to give it to the ForwardErrorCorrection ctor
57// to be used in the decoding.
58// TODO(brandtr): Get rid of this awkwardness by splitting
59// ForwardErrorCorrection in two objects -- one encoder and one decoder.
60constexpr uint32_t kUnknownSsrc = 0;
61
Rasmus Brandtc07ebb32016-10-04 10:57:36 +020062} // namespace
63
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +000064RedPacket::RedPacket(size_t length)
brandtr869e7cd2016-10-31 05:27:07 -070065 : data_(new uint8_t[length]), length_(length), header_length_(0) {}
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000066
Danil Chapovalov2a5ce2b2018-02-07 09:38:31 +010067RedPacket::~RedPacket() = default;
68
brandtr74811e52016-08-10 00:51:50 -070069void RedPacket::CreateHeader(const uint8_t* rtp_header,
70 size_t header_length,
71 int red_payload_type,
72 int payload_type) {
brandtr624c3352016-09-01 05:01:56 -070073 RTC_DCHECK_LE(header_length + kRedForFecHeaderLength, length_);
brandtr74811e52016-08-10 00:51:50 -070074 memcpy(data_.get(), rtp_header, header_length);
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000075 // Replace payload type.
76 data_[1] &= 0x80;
brandtr74811e52016-08-10 00:51:50 -070077 data_[1] += red_payload_type;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000078 // Add RED header
79 // f-bit always 0
brandtr74811e52016-08-10 00:51:50 -070080 data_[header_length] = static_cast<uint8_t>(payload_type);
81 header_length_ = header_length + kRedForFecHeaderLength;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000082}
83
84void RedPacket::SetSeqNum(int seq_num) {
brandtr74811e52016-08-10 00:51:50 -070085 RTC_DCHECK_GE(seq_num, 0);
86 RTC_DCHECK_LT(seq_num, 1 << 16);
sprang@webrtc.org779c3d12015-03-17 16:42:49 +000087
88 ByteWriter<uint16_t>::WriteBigEndian(&data_[2], seq_num);
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000089}
90
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +000091void RedPacket::AssignPayload(const uint8_t* payload, size_t length) {
brandtr74811e52016-08-10 00:51:50 -070092 RTC_DCHECK_LE(header_length_ + length, length_);
93 memcpy(data_.get() + header_length_, payload, length);
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +000094}
95
96void RedPacket::ClearMarkerBit() {
97 data_[1] &= 0x7F;
98}
99
100uint8_t* RedPacket::data() const {
brandtr74811e52016-08-10 00:51:50 -0700101 return data_.get();
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000102}
103
pkasting@chromium.org4591fbd2014-11-20 22:28:14 +0000104size_t RedPacket::length() const {
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000105 return length_;
106}
107
brandtr869e7cd2016-10-31 05:27:07 -0700108UlpfecGenerator::UlpfecGenerator()
brandtrd726a3f2017-06-29 02:45:35 -0700109 : UlpfecGenerator(ForwardErrorCorrection::CreateUlpfec(kUnknownSsrc)) {}
brandtrc295e002016-11-03 09:22:33 -0700110
111UlpfecGenerator::UlpfecGenerator(std::unique_ptr<ForwardErrorCorrection> fec)
112 : fec_(std::move(fec)),
Rasmus Brandt393e2662018-01-22 12:52:36 +0100113 last_media_packet_rtp_header_length_(0),
Rasmus Brandt78db1582016-09-21 09:19:34 +0200114 num_protected_frames_(0),
Rasmus Brandt78db1582016-09-21 09:19:34 +0200115 min_num_media_packets_(1) {
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000116 memset(&params_, 0, sizeof(params_));
stefan@webrtc.orgc35f5ce2012-04-11 07:42:25 +0000117 memset(&new_params_, 0, sizeof(new_params_));
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000118}
119
brandtr869e7cd2016-10-31 05:27:07 -0700120UlpfecGenerator::~UlpfecGenerator() = default;
brandtr74811e52016-08-10 00:51:50 -0700121
brandtr1743a192016-11-07 03:36:05 -0800122void UlpfecGenerator::SetFecParameters(const FecProtectionParams& params) {
123 RTC_DCHECK_GE(params.fec_rate, 0);
124 RTC_DCHECK_LE(params.fec_rate, 255);
stefan@webrtc.orgc35f5ce2012-04-11 07:42:25 +0000125 // Store the new params and apply them for the next set of FEC packets being
126 // produced.
brandtr1743a192016-11-07 03:36:05 -0800127 new_params_ = params;
128 if (params.fec_rate > kHighProtectionThreshold) {
brandtr74811e52016-08-10 00:51:50 -0700129 min_num_media_packets_ = kMinMediaPackets;
marpan@webrtc.org747cd872012-05-22 16:50:00 +0000130 } else {
brandtr74811e52016-08-10 00:51:50 -0700131 min_num_media_packets_ = 1;
marpan@webrtc.org747cd872012-05-22 16:50:00 +0000132 }
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000133}
134
brandtr869e7cd2016-10-31 05:27:07 -0700135int UlpfecGenerator::AddRtpPacketAndGenerateFec(const uint8_t* data_buffer,
136 size_t payload_length,
137 size_t rtp_header_length) {
brandtr74811e52016-08-10 00:51:50 -0700138 RTC_DCHECK(generated_fec_packets_.empty());
139 if (media_packets_.empty()) {
stefan@webrtc.orgc35f5ce2012-04-11 07:42:25 +0000140 params_ = new_params_;
141 }
mflodmanfcf54bd2015-04-14 21:28:08 +0200142 bool complete_frame = false;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000143 const bool marker_bit = (data_buffer[1] & kRtpMarkerBitMask) ? true : false;
Rasmus Brandt78db1582016-09-21 09:19:34 +0200144 if (media_packets_.size() < kUlpfecMaxMediaPackets) {
brandtrc295e002016-11-03 09:22:33 -0700145 // Our packet masks can only protect up to |kUlpfecMaxMediaPackets| packets.
brandtr35c480c2016-08-09 01:23:23 -0700146 std::unique_ptr<ForwardErrorCorrection::Packet> packet(
147 new ForwardErrorCorrection::Packet());
stefan@webrtc.orgaf5ffd52012-03-23 16:01:15 +0000148 packet->length = payload_length + rtp_header_length;
149 memcpy(packet->data, data_buffer, packet->length);
brandtr74811e52016-08-10 00:51:50 -0700150 media_packets_.push_back(std::move(packet));
Rasmus Brandt393e2662018-01-22 12:52:36 +0100151 // Keep track of the RTP header length, so we can copy the RTP header
152 // from |packet| to newly generated ULPFEC+RED packets.
153 RTC_DCHECK_GE(rtp_header_length, kRtpHeaderSize);
154 last_media_packet_rtp_header_length_ = rtp_header_length;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000155 }
156 if (marker_bit) {
brandtr74811e52016-08-10 00:51:50 -0700157 ++num_protected_frames_;
mflodmanfcf54bd2015-04-14 21:28:08 +0200158 complete_frame = true;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000159 }
marpan@webrtc.org747cd872012-05-22 16:50:00 +0000160 // Produce FEC over at most |params_.max_fec_frames| frames, or as soon as:
161 // (1) the excess overhead (actual overhead - requested/target overhead) is
162 // less than |kMaxExcessOverhead|, and
brandtr74811e52016-08-10 00:51:50 -0700163 // (2) at least |min_num_media_packets_| media packets is reached.
mflodmanfcf54bd2015-04-14 21:28:08 +0200164 if (complete_frame &&
brandtr74811e52016-08-10 00:51:50 -0700165 (num_protected_frames_ == params_.max_fec_frames ||
166 (ExcessOverheadBelowMax() && MinimumMediaPacketsReached()))) {
Rasmus Brandt38213992016-10-04 14:27:56 +0200167 // We are not using Unequal Protection feature of the parity erasure code.
168 constexpr int kNumImportantPackets = 0;
brandtr74811e52016-08-10 00:51:50 -0700169 constexpr bool kUseUnequalProtection = false;
Rasmus Brandt78db1582016-09-21 09:19:34 +0200170 int ret = fec_->EncodeFec(media_packets_, params_.fec_rate,
Rasmus Brandt38213992016-10-04 14:27:56 +0200171 kNumImportantPackets, kUseUnequalProtection,
Rasmus Brandt78db1582016-09-21 09:19:34 +0200172 params_.fec_mask_type, &generated_fec_packets_);
brandtr74811e52016-08-10 00:51:50 -0700173 if (generated_fec_packets_.empty()) {
Rasmus Brandtc07ebb32016-10-04 10:57:36 +0200174 ResetState();
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000175 }
176 return ret;
177 }
178 return 0;
179}
180
brandtr869e7cd2016-10-31 05:27:07 -0700181bool UlpfecGenerator::ExcessOverheadBelowMax() const {
marpan@webrtc.org747cd872012-05-22 16:50:00 +0000182 return ((Overhead() - params_.fec_rate) < kMaxExcessOverhead);
183}
184
brandtr869e7cd2016-10-31 05:27:07 -0700185bool UlpfecGenerator::MinimumMediaPacketsReached() const {
brandtr74811e52016-08-10 00:51:50 -0700186 float average_num_packets_per_frame =
187 static_cast<float>(media_packets_.size()) / num_protected_frames_;
188 int num_media_packets = static_cast<int>(media_packets_.size());
189 if (average_num_packets_per_frame < kMinMediaPacketsAdaptationThreshold) {
190 return num_media_packets >= min_num_media_packets_;
marpan@webrtc.org747cd872012-05-22 16:50:00 +0000191 } else {
192 // For larger rates (more packets/frame), increase the threshold.
brandtr74811e52016-08-10 00:51:50 -0700193 // TODO(brandtr): Investigate what impact this adaptation has.
194 return num_media_packets >= min_num_media_packets_ + 1;
marpan@webrtc.org747cd872012-05-22 16:50:00 +0000195 }
196}
197
brandtr869e7cd2016-10-31 05:27:07 -0700198bool UlpfecGenerator::FecAvailable() const {
brandtr74811e52016-08-10 00:51:50 -0700199 return !generated_fec_packets_.empty();
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000200}
201
brandtr869e7cd2016-10-31 05:27:07 -0700202size_t UlpfecGenerator::NumAvailableFecPackets() const {
brandtr74811e52016-08-10 00:51:50 -0700203 return generated_fec_packets_.size();
mflodmanfcf54bd2015-04-14 21:28:08 +0200204}
205
brandtr869e7cd2016-10-31 05:27:07 -0700206size_t UlpfecGenerator::MaxPacketOverhead() const {
Rasmus Brandt78db1582016-09-21 09:19:34 +0200207 return fec_->MaxPacketOverhead();
brandtr6631e8a2016-09-13 03:23:29 -0700208}
209
brandtr869e7cd2016-10-31 05:27:07 -0700210std::vector<std::unique_ptr<RedPacket>> UlpfecGenerator::GetUlpfecPacketsAsRed(
brandtr74811e52016-08-10 00:51:50 -0700211 int red_payload_type,
212 int ulpfec_payload_type,
Rasmus Brandt393e2662018-01-22 12:52:36 +0100213 uint16_t first_seq_num) {
brandtr74811e52016-08-10 00:51:50 -0700214 std::vector<std::unique_ptr<RedPacket>> red_packets;
215 red_packets.reserve(generated_fec_packets_.size());
216 RTC_DCHECK(!media_packets_.empty());
217 ForwardErrorCorrection::Packet* last_media_packet =
218 media_packets_.back().get();
219 uint16_t seq_num = first_seq_num;
Danil Chapovalov2a5ce2b2018-02-07 09:38:31 +0100220 for (const auto* fec_packet : generated_fec_packets_) {
brandtr74811e52016-08-10 00:51:50 -0700221 // Wrap FEC packet (including FEC headers) in a RED packet. Since the
222 // FEC packets in |generated_fec_packets_| don't have RTP headers, we
223 // reuse the header from the last media packet.
Rasmus Brandt393e2662018-01-22 12:52:36 +0100224 RTC_DCHECK_GT(last_media_packet_rtp_header_length_, 0);
225 std::unique_ptr<RedPacket> red_packet(
226 new RedPacket(last_media_packet_rtp_header_length_ +
227 kRedForFecHeaderLength + fec_packet->length));
228 red_packet->CreateHeader(last_media_packet->data,
229 last_media_packet_rtp_header_length_,
brandtr74811e52016-08-10 00:51:50 -0700230 red_payload_type, ulpfec_payload_type);
231 red_packet->SetSeqNum(seq_num++);
mflodmanfcf54bd2015-04-14 21:28:08 +0200232 red_packet->ClearMarkerBit();
brandtr74811e52016-08-10 00:51:50 -0700233 red_packet->AssignPayload(fec_packet->data, fec_packet->length);
brandtr74811e52016-08-10 00:51:50 -0700234 red_packets.push_back(std::move(red_packet));
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000235 }
Rasmus Brandtc07ebb32016-10-04 10:57:36 +0200236
237 ResetState();
238
brandtr74811e52016-08-10 00:51:50 -0700239 return red_packets;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000240}
241
brandtr869e7cd2016-10-31 05:27:07 -0700242int UlpfecGenerator::Overhead() const {
brandtr74811e52016-08-10 00:51:50 -0700243 RTC_DCHECK(!media_packets_.empty());
244 int num_fec_packets =
Rasmus Brandt78db1582016-09-21 09:19:34 +0200245 fec_->NumFecPackets(media_packets_.size(), params_.fec_rate);
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000246 // Return the overhead in Q8.
brandtr74811e52016-08-10 00:51:50 -0700247 return (num_fec_packets << 8) / media_packets_.size();
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000248}
249
brandtr869e7cd2016-10-31 05:27:07 -0700250void UlpfecGenerator::ResetState() {
brandtr74811e52016-08-10 00:51:50 -0700251 media_packets_.clear();
Rasmus Brandt393e2662018-01-22 12:52:36 +0100252 last_media_packet_rtp_header_length_ = 0;
Rasmus Brandtc07ebb32016-10-04 10:57:36 +0200253 generated_fec_packets_.clear();
254 num_protected_frames_ = 0;
stefan@webrtc.orge0d6fa42012-03-20 22:10:56 +0000255}
256
257} // namespace webrtc