blob: 41d0ea3c58d08b96299761f751228afeb92ae290 [file] [log] [blame]
stefan@webrtc.org360e3762013-08-22 09:29:56 +00001/*
2 * Copyright (c) 2013 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
pbos@webrtc.org16e03b72013-10-28 16:32:01 +000011#include "webrtc/test/fake_encoder.h"
stefan@webrtc.org360e3762013-08-22 09:29:56 +000012
13#include "testing/gtest/include/gtest/gtest.h"
14
pbos@webrtc.orgab990ae2014-09-17 09:02:25 +000015#include "webrtc/modules/video_coding/codecs/interface/video_codec_interface.h"
asapersson@webrtc.org049e4ec2014-11-20 10:19:46 +000016#include "webrtc/system_wrappers/interface/sleep.h"
pbos@webrtc.orgab990ae2014-09-17 09:02:25 +000017
stefan@webrtc.org360e3762013-08-22 09:29:56 +000018namespace webrtc {
pbos@webrtc.orgcb5118c2013-09-03 09:10:37 +000019namespace test {
stefan@webrtc.org360e3762013-08-22 09:29:56 +000020
21FakeEncoder::FakeEncoder(Clock* clock)
22 : clock_(clock),
23 callback_(NULL),
24 target_bitrate_kbps_(0),
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000025 max_target_bitrate_kbps_(-1),
stefan@webrtc.org360e3762013-08-22 09:29:56 +000026 last_encode_time_ms_(0) {
sprang@webrtc.org40709352013-11-26 11:41:59 +000027 // Generate some arbitrary not-all-zero data
28 for (size_t i = 0; i < sizeof(encoded_buffer_); ++i) {
29 encoded_buffer_[i] = static_cast<uint8_t>(i);
30 }
stefan@webrtc.org360e3762013-08-22 09:29:56 +000031}
32
33FakeEncoder::~FakeEncoder() {}
34
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000035void FakeEncoder::SetMaxBitrate(int max_kbps) {
36 assert(max_kbps >= -1); // max_kbps == -1 disables it.
37 max_target_bitrate_kbps_ = max_kbps;
38}
39
stefan@webrtc.org360e3762013-08-22 09:29:56 +000040int32_t FakeEncoder::InitEncode(const VideoCodec* config,
41 int32_t number_of_cores,
42 uint32_t max_payload_size) {
43 config_ = *config;
44 target_bitrate_kbps_ = config_.startBitrate;
45 return 0;
46}
47
48int32_t FakeEncoder::Encode(
49 const I420VideoFrame& input_image,
50 const CodecSpecificInfo* codec_specific_info,
51 const std::vector<VideoFrameType>* frame_types) {
52 assert(config_.maxFramerate > 0);
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000053 int time_since_last_encode_ms = 1000 / config_.maxFramerate;
stefan@webrtc.org360e3762013-08-22 09:29:56 +000054 int64_t time_now_ms = clock_->TimeInMilliseconds();
stefan@webrtc.org0bae1fa2014-11-05 14:05:29 +000055 const bool first_encode = last_encode_time_ms_ == 0;
56 if (!first_encode) {
stefan@webrtc.org360e3762013-08-22 09:29:56 +000057 // For all frames but the first we can estimate the display time by looking
58 // at the display time of the previous frame.
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000059 time_since_last_encode_ms = time_now_ms - last_encode_time_ms_;
stefan@webrtc.org360e3762013-08-22 09:29:56 +000060 }
61
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000062 int bits_available = target_bitrate_kbps_ * time_since_last_encode_ms;
pbos@webrtc.org0181b5f2013-09-09 08:26:30 +000063 int min_bits =
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000064 config_.simulcastStream[0].minBitrate * time_since_last_encode_ms;
pbos@webrtc.org0181b5f2013-09-09 08:26:30 +000065 if (bits_available < min_bits)
66 bits_available = min_bits;
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000067 int max_bits = max_target_bitrate_kbps_ * time_since_last_encode_ms;
68 if (max_bits > 0 && max_bits < bits_available)
69 bits_available = max_bits;
stefan@webrtc.org360e3762013-08-22 09:29:56 +000070 last_encode_time_ms_ = time_now_ms;
71
pbos@webrtc.orgf577ae92014-03-19 08:43:57 +000072 assert(config_.numberOfSimulcastStreams > 0);
stefan@webrtc.org360e3762013-08-22 09:29:56 +000073 for (int i = 0; i < config_.numberOfSimulcastStreams; ++i) {
74 CodecSpecificInfo specifics;
75 memset(&specifics, 0, sizeof(specifics));
pbos@webrtc.org0181b5f2013-09-09 08:26:30 +000076 specifics.codecType = kVideoCodecGeneric;
77 specifics.codecSpecific.generic.simulcast_idx = i;
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000078 int min_stream_bits =
79 config_.simulcastStream[i].minBitrate * time_since_last_encode_ms;
80 int max_stream_bits =
81 config_.simulcastStream[i].maxBitrate * time_since_last_encode_ms;
stefan@webrtc.org360e3762013-08-22 09:29:56 +000082 int stream_bits = (bits_available > max_stream_bits) ? max_stream_bits :
83 bits_available;
84 int stream_bytes = (stream_bits + 7) / 8;
stefan@webrtc.org0bae1fa2014-11-05 14:05:29 +000085 if (first_encode) {
86 // The first frame is a key frame and should be larger.
87 // TODO(holmer): The FakeEncoder should store the bits_available between
88 // encodes so that it can compensate for oversized frames.
89 stream_bytes *= 10;
90 }
pbos@webrtc.orgc095f512013-08-22 12:34:58 +000091 if (static_cast<size_t>(stream_bytes) > sizeof(encoded_buffer_))
henrik.lundin@webrtc.orgba975e22013-10-23 11:04:57 +000092 stream_bytes = sizeof(encoded_buffer_);
stefan@webrtc.org360e3762013-08-22 09:29:56 +000093
pbos@webrtc.orgc095f512013-08-22 12:34:58 +000094 EncodedImage encoded(
95 encoded_buffer_, stream_bytes, sizeof(encoded_buffer_));
stefan@webrtc.org360e3762013-08-22 09:29:56 +000096 encoded._timeStamp = input_image.timestamp();
97 encoded.capture_time_ms_ = input_image.render_time_ms();
pbos@webrtc.org0181b5f2013-09-09 08:26:30 +000098 encoded._frameType = (*frame_types)[i];
pbos@webrtc.org3349ae02014-03-13 12:52:27 +000099 // Always encode something on the first frame.
100 if (min_stream_bits > bits_available && i > 0) {
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000101 encoded._length = 0;
102 encoded._frameType = kSkipFrame;
103 }
pbos@webrtc.orgf577ae92014-03-19 08:43:57 +0000104 assert(callback_ != NULL);
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000105 if (callback_->Encoded(encoded, &specifics, NULL) != 0)
106 return -1;
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000107 bits_available -= encoded._length * 8;
108 }
109 return 0;
110}
111
112int32_t FakeEncoder::RegisterEncodeCompleteCallback(
113 EncodedImageCallback* callback) {
114 callback_ = callback;
115 return 0;
116}
117
118int32_t FakeEncoder::Release() { return 0; }
119
120int32_t FakeEncoder::SetChannelParameters(uint32_t packet_loss, int rtt) {
121 return 0;
122}
123
124int32_t FakeEncoder::SetRates(uint32_t new_target_bitrate, uint32_t framerate) {
125 target_bitrate_kbps_ = new_target_bitrate;
126 return 0;
127}
pbos@webrtc.org3349ae02014-03-13 12:52:27 +0000128
stefan@webrtc.org79c33592014-08-06 09:24:53 +0000129FakeH264Encoder::FakeH264Encoder(Clock* clock)
130 : FakeEncoder(clock), callback_(NULL), idr_counter_(0) {
131 FakeEncoder::RegisterEncodeCompleteCallback(this);
132}
133
134int32_t FakeH264Encoder::RegisterEncodeCompleteCallback(
135 EncodedImageCallback* callback) {
136 callback_ = callback;
137 return 0;
138}
139
140int32_t FakeH264Encoder::Encoded(EncodedImage& encoded_image,
141 const CodecSpecificInfo* codec_specific_info,
142 const RTPFragmentationHeader* fragments) {
143 const size_t kSpsSize = 8;
144 const size_t kPpsSize = 11;
145 const int kIdrFrequency = 10;
146 RTPFragmentationHeader fragmentation;
147 if (idr_counter_++ % kIdrFrequency == 0 &&
148 encoded_image._length > kSpsSize + kPpsSize + 1) {
149 const size_t kNumSlices = 3;
150 fragmentation.VerifyAndAllocateFragmentationHeader(kNumSlices);
151 fragmentation.fragmentationOffset[0] = 0;
152 fragmentation.fragmentationLength[0] = kSpsSize;
153 fragmentation.fragmentationOffset[1] = kSpsSize;
154 fragmentation.fragmentationLength[1] = kPpsSize;
155 fragmentation.fragmentationOffset[2] = kSpsSize + kPpsSize;
156 fragmentation.fragmentationLength[2] =
157 encoded_image._length - (kSpsSize + kPpsSize);
158 const uint8_t kSpsNalHeader = 0x37;
159 const uint8_t kPpsNalHeader = 0x38;
160 const uint8_t kIdrNalHeader = 0x15;
161 encoded_image._buffer[fragmentation.fragmentationOffset[0]] = kSpsNalHeader;
162 encoded_image._buffer[fragmentation.fragmentationOffset[1]] = kPpsNalHeader;
163 encoded_image._buffer[fragmentation.fragmentationOffset[2]] = kIdrNalHeader;
164 } else {
165 const size_t kNumSlices = 1;
166 fragmentation.VerifyAndAllocateFragmentationHeader(kNumSlices);
167 fragmentation.fragmentationOffset[0] = 0;
168 fragmentation.fragmentationLength[0] = encoded_image._length;
169 const uint8_t kNalHeader = 0x11;
170 encoded_image._buffer[fragmentation.fragmentationOffset[0]] = kNalHeader;
171 }
172 uint8_t value = 0;
173 int fragment_counter = 0;
174 for (size_t i = 0; i < encoded_image._length; ++i) {
175 if (fragment_counter == fragmentation.fragmentationVectorSize ||
176 i != fragmentation.fragmentationOffset[fragment_counter]) {
177 encoded_image._buffer[i] = value++;
178 } else {
179 ++fragment_counter;
180 }
181 }
182 return callback_->Encoded(encoded_image, NULL, &fragmentation);
183}
asapersson@webrtc.org049e4ec2014-11-20 10:19:46 +0000184
185DelayedEncoder::DelayedEncoder(Clock* clock, int delay_ms)
186 : test::FakeEncoder(clock),
187 delay_ms_(delay_ms) {}
188
189int32_t DelayedEncoder::Encode(const I420VideoFrame& input_image,
190 const CodecSpecificInfo* codec_specific_info,
191 const std::vector<VideoFrameType>* frame_types) {
192 SleepMs(delay_ms_);
193 return FakeEncoder::Encode(input_image, codec_specific_info, frame_types);
194}
pbos@webrtc.orgcb5118c2013-09-03 09:10:37 +0000195} // namespace test
stefan@webrtc.org360e3762013-08-22 09:29:56 +0000196} // namespace webrtc