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Side by Side Diff: media/cast/test/receiver.cc

Issue 184813009: Cast Streaming API end-to-end browser_test. (Closed) Base URL: svn://svn.chromium.org/chrome/trunk/src
Patch Set: Fix LoggingImplTest + REBASE Created 6 years, 9 months ago
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1 // Copyright 2013 The Chromium Authors. All rights reserved. 1 // Copyright 2013 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include <algorithm> 5 #include <algorithm>
6 #include <climits> 6 #include <climits>
7 #include <cstdarg> 7 #include <cstdarg>
8 #include <cstdio> 8 #include <cstdio>
9 #include <string> 9 #include <string>
10 10
11 #include "base/at_exit.h" 11 #include "base/at_exit.h"
12 #include "base/command_line.h" 12 #include "base/command_line.h"
13 #include "base/logging.h" 13 #include "base/logging.h"
14 #include "base/memory/ref_counted.h" 14 #include "base/memory/ref_counted.h"
15 #include "base/memory/scoped_ptr.h" 15 #include "base/memory/scoped_ptr.h"
16 #include "base/message_loop/message_loop.h" 16 #include "base/message_loop/message_loop.h"
17 #include "base/threading/thread.h" 17 #include "base/threading/thread.h"
18 #include "base/time/default_tick_clock.h" 18 #include "base/time/default_tick_clock.h"
19 #include "media/base/video_frame.h" 19 #include "media/base/video_frame.h"
20 #include "media/cast/cast_config.h" 20 #include "media/cast/cast_config.h"
21 #include "media/cast/cast_environment.h" 21 #include "media/cast/cast_environment.h"
22 #include "media/cast/cast_receiver.h" 22 #include "media/cast/cast_receiver.h"
23 #include "media/cast/logging/logging_defines.h" 23 #include "media/cast/logging/logging_defines.h"
24 #include "media/cast/test/utility/default_config.h"
25 #include "media/cast/test/utility/in_process_receiver.h"
24 #include "media/cast/test/utility/input_builder.h" 26 #include "media/cast/test/utility/input_builder.h"
27 #include "media/cast/test/utility/standalone_cast_environment.h"
25 #include "media/cast/transport/transport/udp_transport.h" 28 #include "media/cast/transport/transport/udp_transport.h"
26 #include "net/base/net_util.h" 29 #include "net/base/net_util.h"
27 30
28 #if defined(OS_LINUX) 31 #if defined(OS_LINUX)
29 #include "media/cast/test/linux_output_window.h" 32 #include "media/cast/test/linux_output_window.h"
30 #endif // OS_LINUX 33 #endif // OS_LINUX
31 34
32 namespace media { 35 namespace media {
33 namespace cast { 36 namespace cast {
37
34 // Settings chosen to match default sender settings. 38 // Settings chosen to match default sender settings.
35 #define DEFAULT_SEND_PORT "0" 39 #define DEFAULT_SEND_PORT "0"
36 #define DEFAULT_RECEIVE_PORT "2344" 40 #define DEFAULT_RECEIVE_PORT "2344"
37 #define DEFAULT_SEND_IP "0.0.0.0" 41 #define DEFAULT_SEND_IP "0.0.0.0"
38 #define DEFAULT_RESTART "0" 42 #define DEFAULT_RESTART "0"
39 #define DEFAULT_AUDIO_FEEDBACK_SSRC "1" 43 #define DEFAULT_AUDIO_FEEDBACK_SSRC "1"
40 #define DEFAULT_AUDIO_INCOMING_SSRC "2" 44 #define DEFAULT_AUDIO_INCOMING_SSRC "2"
41 #define DEFAULT_AUDIO_PAYLOAD_TYPE "127" 45 #define DEFAULT_AUDIO_PAYLOAD_TYPE "127"
42 #define DEFAULT_VIDEO_FEEDBACK_SSRC "12" 46 #define DEFAULT_VIDEO_FEEDBACK_SSRC "12"
43 #define DEFAULT_VIDEO_INCOMING_SSRC "11" 47 #define DEFAULT_VIDEO_INCOMING_SSRC "11"
44 #define DEFAULT_VIDEO_PAYLOAD_TYPE "96" 48 #define DEFAULT_VIDEO_PAYLOAD_TYPE "96"
45 #define DEFAULT_VIDEO_CODEC_WIDTH "640" 49 #define DEFAULT_VIDEO_CODEC_WIDTH "640"
46 #define DEFAULT_VIDEO_CODEC_HEIGHT "480" 50 #define DEFAULT_VIDEO_CODEC_HEIGHT "480"
47 #define DEFAULT_VIDEO_CODEC_BITRATE "2000" 51 #define DEFAULT_VIDEO_CODEC_BITRATE "2000"
48 52
49 static const int kAudioSamplingFrequency = 48000;
50 #if defined(OS_LINUX) 53 #if defined(OS_LINUX)
51 const int kVideoWindowWidth = 1280; 54 const int kVideoWindowWidth = 1280;
52 const int kVideoWindowHeight = 720; 55 const int kVideoWindowHeight = 720;
53 #endif // OS_LINUX 56 #endif // OS_LINUX
54 static const int kFrameTimerMs = 33;
55 57
56 void GetPorts(int* tx_port, int* rx_port) { 58 void GetPorts(int* tx_port, int* rx_port) {
57 test::InputBuilder tx_input( 59 test::InputBuilder tx_input(
58 "Enter send port.", DEFAULT_SEND_PORT, 1, INT_MAX); 60 "Enter send port.", DEFAULT_SEND_PORT, 1, INT_MAX);
59 *tx_port = tx_input.GetIntInput(); 61 *tx_port = tx_input.GetIntInput();
60 62
61 test::InputBuilder rx_input( 63 test::InputBuilder rx_input(
62 "Enter receive port.", DEFAULT_RECEIVE_PORT, 1, INT_MAX); 64 "Enter receive port.", DEFAULT_RECEIVE_PORT, 1, INT_MAX);
63 *rx_port = rx_input.GetIntInput(); 65 *rx_port = rx_input.GetIntInput();
64 } 66 }
(...skipping 31 matching lines...) Expand 10 before | Expand all | Expand 10 after
96 98
97 void GetPayloadtype(AudioReceiverConfig* audio_config) { 99 void GetPayloadtype(AudioReceiverConfig* audio_config) {
98 test::InputBuilder input("Choose audio receiver payload type.", 100 test::InputBuilder input("Choose audio receiver payload type.",
99 DEFAULT_AUDIO_PAYLOAD_TYPE, 101 DEFAULT_AUDIO_PAYLOAD_TYPE,
100 96, 102 96,
101 127); 103 127);
102 audio_config->rtp_payload_type = input.GetIntInput(); 104 audio_config->rtp_payload_type = input.GetIntInput();
103 } 105 }
104 106
105 AudioReceiverConfig GetAudioReceiverConfig() { 107 AudioReceiverConfig GetAudioReceiverConfig() {
106 AudioReceiverConfig audio_config; 108 AudioReceiverConfig audio_config = GetDefaultAudioReceiverConfig();
107
108 GetSsrcs(&audio_config); 109 GetSsrcs(&audio_config);
109 GetPayloadtype(&audio_config); 110 GetPayloadtype(&audio_config);
110
111 audio_config.rtcp_c_name = "audio_receiver@a.b.c.d";
112
113 VLOG(1) << "Using OPUS 48Khz stereo";
114 audio_config.use_external_decoder = false;
115 audio_config.frequency = 48000;
116 audio_config.channels = 2;
117 audio_config.codec = transport::kOpus;
118 return audio_config; 111 return audio_config;
119 } 112 }
120 113
121 void GetPayloadtype(VideoReceiverConfig* video_config) { 114 void GetPayloadtype(VideoReceiverConfig* video_config) {
122 test::InputBuilder input("Choose video receiver payload type.", 115 test::InputBuilder input("Choose video receiver payload type.",
123 DEFAULT_VIDEO_PAYLOAD_TYPE, 116 DEFAULT_VIDEO_PAYLOAD_TYPE,
124 96, 117 96,
125 127); 118 127);
126 video_config->rtp_payload_type = input.GetIntInput(); 119 video_config->rtp_payload_type = input.GetIntInput();
127 } 120 }
128 121
129 VideoReceiverConfig GetVideoReceiverConfig() { 122 VideoReceiverConfig GetVideoReceiverConfig() {
130 VideoReceiverConfig video_config; 123 VideoReceiverConfig video_config = GetDefaultVideoReceiverConfig();
131
132 GetSsrcs(&video_config); 124 GetSsrcs(&video_config);
133 GetPayloadtype(&video_config); 125 GetPayloadtype(&video_config);
134
135 video_config.rtcp_c_name = "video_receiver@a.b.c.d";
136
137 video_config.use_external_decoder = false;
138
139 VLOG(1) << "Using VP8";
140 video_config.codec = transport::kVp8;
141 return video_config; 126 return video_config;
142 } 127 }
143 128
144 static void UpdateCastTransportStatus(transport::CastTransportStatus status) { 129 // An InProcessReceiver that renders video frames to a LinuxOutputWindow. While
145 VLOG(1) << "CastTransportStatus = " << status; 130 // it does receive audio frames, it does not play them.
146 } 131 class ReceiverDisplay : public InProcessReceiver {
147
148 class ReceiveProcess : public base::RefCountedThreadSafe<ReceiveProcess> {
149 public: 132 public:
150 explicit ReceiveProcess(scoped_refptr<FrameReceiver> frame_receiver) 133 ReceiverDisplay(const scoped_refptr<CastEnvironment>& cast_environment,
151 : frame_receiver_(frame_receiver), 134 const net::IPEndPoint& local_end_point,
135 const net::IPEndPoint& remote_end_point,
136 const AudioReceiverConfig& audio_config,
137 const VideoReceiverConfig& video_config)
138 : InProcessReceiver(cast_environment,
139 local_end_point,
140 remote_end_point,
141 audio_config,
142 video_config),
152 #if defined(OS_LINUX) 143 #if defined(OS_LINUX)
153 render_(0, 0, kVideoWindowWidth, kVideoWindowHeight, "Cast_receiver"), 144 render_(0, 0, kVideoWindowWidth, kVideoWindowHeight, "Cast_receiver"),
154 #endif // OS_LINUX 145 #endif // OS_LINUX
155 last_playout_time_(), 146 last_playout_time_(),
156 last_render_time_() { 147 last_render_time_() {
157 } 148 }
158 149
159 void Start() { 150 virtual ~ReceiverDisplay() {}
160 GetAudioFrame(base::TimeDelta::FromMilliseconds(kFrameTimerMs));
161 GetVideoFrame();
162 }
163 151
164 protected: 152 protected:
165 virtual ~ReceiveProcess() {} 153 virtual void OnVideoFrame(const scoped_refptr<media::VideoFrame>& video_frame,
166 154 const base::TimeTicks& render_time) OVERRIDE {
167 private:
168 friend class base::RefCountedThreadSafe<ReceiveProcess>;
169
170 void DisplayFrame(const scoped_refptr<media::VideoFrame>& video_frame,
171 const base::TimeTicks& render_time) {
172 #ifdef OS_LINUX 155 #ifdef OS_LINUX
173 render_.RenderFrame(video_frame); 156 render_.RenderFrame(video_frame);
174 #endif // OS_LINUX 157 #endif // OS_LINUX
175 // Print out the delta between frames. 158 // Print out the delta between frames.
176 if (!last_render_time_.is_null()) { 159 if (!last_render_time_.is_null()) {
177 base::TimeDelta time_diff = render_time - last_render_time_; 160 base::TimeDelta time_diff = render_time - last_render_time_;
178 VLOG(1) << " RenderDelay[mS] = " << time_diff.InMilliseconds(); 161 VLOG(1) << "Size = " << video_frame->coded_size().ToString()
162 << "; RenderDelay[mS] = " << time_diff.InMilliseconds();
179 } 163 }
180 last_render_time_ = render_time; 164 last_render_time_ = render_time;
181 GetVideoFrame();
182 } 165 }
183 166
184 void ReceiveAudioFrame(scoped_ptr<PcmAudioFrame> audio_frame, 167 virtual void OnAudioFrame(scoped_ptr<PcmAudioFrame> audio_frame,
185 const base::TimeTicks& playout_time) { 168 const base::TimeTicks& playout_time) OVERRIDE {
186 // For audio just print the playout delta between audio frames. 169 // For audio just print the playout delta between audio frames.
187 // Default diff time is kFrameTimerMs.
188 base::TimeDelta time_diff =
189 base::TimeDelta::FromMilliseconds(kFrameTimerMs);
190 if (!last_playout_time_.is_null()) { 170 if (!last_playout_time_.is_null()) {
191 time_diff = playout_time - last_playout_time_; 171 base::TimeDelta time_diff = playout_time - last_playout_time_;
192 VLOG(1) << " ***PlayoutDelay[mS] = " << time_diff.InMilliseconds(); 172 VLOG(1) << "SampleRate = " << audio_frame->frequency
173 << "; PlayoutDelay[mS] = " << time_diff.InMilliseconds();
193 } 174 }
194 last_playout_time_ = playout_time; 175 last_playout_time_ = playout_time;
195 } 176 }
196 177
197 void GetAudioFrame(base::TimeDelta playout_diff) {
198 int num_10ms_blocks = playout_diff.InMilliseconds() / 10;
199 frame_receiver_->GetRawAudioFrame(
200 num_10ms_blocks,
201 kAudioSamplingFrequency,
202 base::Bind(&ReceiveProcess::ReceiveAudioFrame, this));
203 base::MessageLoop::current()->PostDelayedTask(
204 FROM_HERE,
205 base::Bind(&ReceiveProcess::GetAudioFrame, this, playout_diff),
206 playout_diff);
207 }
208
209 void GetVideoFrame() {
210 frame_receiver_->GetRawVideoFrame(
211 base::Bind(&ReceiveProcess::DisplayFrame, this));
212 }
213
214 scoped_refptr<FrameReceiver> frame_receiver_;
215 #ifdef OS_LINUX 178 #ifdef OS_LINUX
216 test::LinuxOutputWindow render_; 179 test::LinuxOutputWindow render_;
217 #endif // OS_LINUX 180 #endif // OS_LINUX
218 base::TimeTicks last_playout_time_; 181 base::TimeTicks last_playout_time_;
219 base::TimeTicks last_render_time_; 182 base::TimeTicks last_render_time_;
220 }; 183 };
221 184
222 } // namespace cast 185 } // namespace cast
223 } // namespace media 186 } // namespace media
224 187
225 int main(int argc, char** argv) { 188 int main(int argc, char** argv) {
226 base::AtExitManager at_exit; 189 base::AtExitManager at_exit;
227 base::MessageLoopForIO main_message_loop;
228 CommandLine::Init(argc, argv); 190 CommandLine::Init(argc, argv);
229 InitLogging(logging::LoggingSettings()); 191 InitLogging(logging::LoggingSettings());
230 192
231 VLOG(1) << "Cast Receiver"; 193 // Enable raw event logging only.
232 base::Thread audio_thread("Cast audio decoder thread");
233 base::Thread video_thread("Cast video decoder thread");
234 audio_thread.Start();
235 video_thread.Start();
236
237 scoped_ptr<base::TickClock> clock(new base::DefaultTickClock());
238
239 // Enable main and receiver side threads only. Enable raw event logging.
240 // Running transport on the main thread.
241 media::cast::CastLoggingConfig logging_config; 194 media::cast::CastLoggingConfig logging_config;
242 logging_config.enable_raw_data_collection = true; 195 logging_config.enable_raw_data_collection = true;
243 196
244 scoped_refptr<media::cast::CastEnvironment> cast_environment( 197 scoped_refptr<media::cast::CastEnvironment> cast_environment(
245 new media::cast::CastEnvironment(clock.Pass(), 198 new media::cast::StandaloneCastEnvironment(logging_config));
246 main_message_loop.message_loop_proxy(),
247 NULL,
248 audio_thread.message_loop_proxy(),
249 NULL,
250 video_thread.message_loop_proxy(),
251 main_message_loop.message_loop_proxy(),
252 logging_config));
253 199
254 media::cast::AudioReceiverConfig audio_config = 200 media::cast::AudioReceiverConfig audio_config =
255 media::cast::GetAudioReceiverConfig(); 201 media::cast::GetAudioReceiverConfig();
256 media::cast::VideoReceiverConfig video_config = 202 media::cast::VideoReceiverConfig video_config =
257 media::cast::GetVideoReceiverConfig(); 203 media::cast::GetVideoReceiverConfig();
258 204
259 int remote_port, local_port; 205 int remote_port, local_port;
260 media::cast::GetPorts(&remote_port, &local_port); 206 media::cast::GetPorts(&remote_port, &local_port);
261 if (!local_port) { 207 if (!local_port) {
262 LOG(ERROR) << "Invalid local port."; 208 LOG(ERROR) << "Invalid local port.";
(...skipping 11 matching lines...) Expand all
274 } 220 }
275 221
276 if (!net::ParseIPLiteralToNumber(local_ip_address, &local_ip_number)) { 222 if (!net::ParseIPLiteralToNumber(local_ip_address, &local_ip_number)) {
277 LOG(ERROR) << "Invalid local IP address."; 223 LOG(ERROR) << "Invalid local IP address.";
278 return 1; 224 return 1;
279 } 225 }
280 226
281 net::IPEndPoint remote_end_point(remote_ip_number, remote_port); 227 net::IPEndPoint remote_end_point(remote_ip_number, remote_port);
282 net::IPEndPoint local_end_point(local_ip_number, local_port); 228 net::IPEndPoint local_end_point(local_ip_number, local_port);
283 229
284 scoped_ptr<media::cast::transport::UdpTransport> transport( 230 media::cast::ReceiverDisplay* const receiver_display =
285 new media::cast::transport::UdpTransport( 231 new media::cast::ReceiverDisplay(cast_environment,
286 NULL, 232 local_end_point,
287 main_message_loop.message_loop_proxy(), 233 remote_end_point,
288 local_end_point, 234 audio_config,
289 remote_end_point, 235 video_config);
290 base::Bind(&media::cast::UpdateCastTransportStatus))); 236 receiver_display->Start();
291 scoped_ptr<media::cast::CastReceiver> cast_receiver(
292 media::cast::CastReceiver::CreateCastReceiver(
293 cast_environment, audio_config, video_config, transport.get()));
294 237
295 // TODO(hubbe): Make the cast receiver do this automatically. 238 base::MessageLoop().Run(); // Run forever (i.e., until SIGTERM).
296 transport->StartReceiving(cast_receiver->packet_receiver()); 239 NOTREACHED();
297
298 scoped_refptr<media::cast::ReceiveProcess> receive_process(
299 new media::cast::ReceiveProcess(cast_receiver->frame_receiver()));
300 receive_process->Start();
301 main_message_loop.Run();
302 return 0; 240 return 0;
303 } 241 }
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