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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 <deque> |
| 6 #include <utility> |
| 7 |
5 #include "base/bind.h" | 8 #include "base/bind.h" |
6 #include "base/memory/ref_counted.h" | 9 #include "base/memory/ref_counted.h" |
7 #include "base/memory/scoped_ptr.h" | 10 #include "base/memory/scoped_ptr.h" |
8 #include "base/test/simple_test_tick_clock.h" | 11 #include "base/test/simple_test_tick_clock.h" |
9 #include "media/cast/cast_defines.h" | 12 #include "media/cast/cast_defines.h" |
10 #include "media/cast/cast_environment.h" | 13 #include "media/cast/cast_environment.h" |
11 #include "media/cast/logging/simple_event_subscriber.h" | 14 #include "media/cast/logging/simple_event_subscriber.h" |
| 15 #include "media/cast/rtcp/test_rtcp_packet_builder.h" |
12 #include "media/cast/test/fake_single_thread_task_runner.h" | 16 #include "media/cast/test/fake_single_thread_task_runner.h" |
13 #include "media/cast/transport/pacing/mock_paced_packet_sender.h" | 17 #include "media/cast/transport/pacing/mock_paced_packet_sender.h" |
14 #include "media/cast/video_receiver/video_receiver.h" | 18 #include "media/cast/video_receiver/video_receiver.h" |
15 #include "testing/gmock/include/gmock/gmock.h" | 19 #include "testing/gmock/include/gmock/gmock.h" |
16 | 20 |
| 21 using ::testing::_; |
| 22 |
17 namespace media { | 23 namespace media { |
18 namespace cast { | 24 namespace cast { |
19 | 25 |
20 using ::testing::_; | |
21 | |
22 namespace { | 26 namespace { |
23 | 27 |
24 const int kPacketSize = 1500; | 28 const int kPacketSize = 1500; |
25 const int64 kStartMillisecond = INT64_C(12345678900000); | |
26 const uint32 kFirstFrameId = 1234; | 29 const uint32 kFirstFrameId = 1234; |
| 30 const int kPlayoutDelayMillis = 100; |
27 | 31 |
28 class FakeVideoClient { | 32 class FakeVideoClient { |
29 public: | 33 public: |
30 FakeVideoClient() : num_called_(0) {} | 34 FakeVideoClient() : num_called_(0) {} |
31 virtual ~FakeVideoClient() {} | 35 virtual ~FakeVideoClient() {} |
32 | 36 |
33 void SetNextExpectedResult(uint32 expected_frame_id, | 37 void AddExpectedResult(uint32 expected_frame_id, |
34 const base::TimeTicks& expected_playout_time) { | 38 const base::TimeTicks& expected_playout_time) { |
35 expected_frame_id_ = expected_frame_id; | 39 expected_results_.push_back( |
36 expected_playout_time_ = expected_playout_time; | 40 std::make_pair(expected_frame_id, expected_playout_time)); |
37 } | 41 } |
38 | 42 |
39 void DeliverEncodedVideoFrame( | 43 void DeliverEncodedVideoFrame( |
40 scoped_ptr<transport::EncodedVideoFrame> video_frame, | 44 scoped_ptr<transport::EncodedVideoFrame> video_frame, |
41 const base::TimeTicks& playout_time) { | 45 const base::TimeTicks& playout_time) { |
| 46 SCOPED_TRACE(::testing::Message() << "num_called_ is " << num_called_); |
42 ASSERT_FALSE(!video_frame) | 47 ASSERT_FALSE(!video_frame) |
43 << "If at shutdown: There were unsatisfied requests enqueued."; | 48 << "If at shutdown: There were unsatisfied requests enqueued."; |
44 EXPECT_EQ(expected_frame_id_, video_frame->frame_id); | 49 ASSERT_FALSE(expected_results_.empty()); |
| 50 EXPECT_EQ(expected_results_.front().first, video_frame->frame_id); |
45 EXPECT_EQ(transport::kVp8, video_frame->codec); | 51 EXPECT_EQ(transport::kVp8, video_frame->codec); |
46 EXPECT_EQ(expected_playout_time_, playout_time); | 52 EXPECT_EQ(expected_results_.front().second, playout_time); |
| 53 expected_results_.pop_front(); |
47 ++num_called_; | 54 ++num_called_; |
48 } | 55 } |
49 | 56 |
50 int number_times_called() const { return num_called_; } | 57 int number_times_called() const { return num_called_; } |
51 | 58 |
52 private: | 59 private: |
| 60 std::deque<std::pair<uint32, base::TimeTicks> > expected_results_; |
53 int num_called_; | 61 int num_called_; |
54 uint32 expected_frame_id_; | |
55 base::TimeTicks expected_playout_time_; | |
56 | 62 |
57 DISALLOW_COPY_AND_ASSIGN(FakeVideoClient); | 63 DISALLOW_COPY_AND_ASSIGN(FakeVideoClient); |
58 }; | 64 }; |
59 } // namespace | 65 } // namespace |
60 | 66 |
61 class VideoReceiverTest : public ::testing::Test { | 67 class VideoReceiverTest : public ::testing::Test { |
62 protected: | 68 protected: |
63 VideoReceiverTest() { | 69 VideoReceiverTest() { |
64 // Configure to use vp8 software implementation. | 70 config_.rtp_max_delay_ms = kPlayoutDelayMillis; |
65 config_.rtp_max_delay_ms = 100; | |
66 config_.use_external_decoder = false; | 71 config_.use_external_decoder = false; |
67 // Note: Frame rate must divide 1000 without remainder so the test code | 72 // Note: Frame rate must divide 1000 without remainder so the test code |
68 // doesn't have to account for rounding errors. | 73 // doesn't have to account for rounding errors. |
69 config_.max_frame_rate = 25; | 74 config_.max_frame_rate = 25; |
70 config_.codec = transport::kVp8; | 75 config_.codec = transport::kVp8; // Frame skipping not allowed. |
| 76 config_.feedback_ssrc = 1234; |
| 77 config_.incoming_ssrc = 5678; |
71 testing_clock_ = new base::SimpleTestTickClock(); | 78 testing_clock_ = new base::SimpleTestTickClock(); |
72 testing_clock_->Advance( | 79 testing_clock_->Advance(base::TimeTicks::Now() - base::TimeTicks()); |
73 base::TimeDelta::FromMilliseconds(kStartMillisecond)); | 80 start_time_ = testing_clock_->NowTicks(); |
74 task_runner_ = new test::FakeSingleThreadTaskRunner(testing_clock_); | 81 task_runner_ = new test::FakeSingleThreadTaskRunner(testing_clock_); |
75 | 82 |
76 cast_environment_ = | 83 cast_environment_ = |
77 new CastEnvironment(scoped_ptr<base::TickClock>(testing_clock_).Pass(), | 84 new CastEnvironment(scoped_ptr<base::TickClock>(testing_clock_).Pass(), |
78 task_runner_, | 85 task_runner_, |
79 task_runner_, | 86 task_runner_, |
80 task_runner_); | 87 task_runner_); |
81 | 88 |
82 receiver_.reset(new VideoReceiver( | 89 receiver_.reset(new VideoReceiver( |
83 cast_environment_, config_, &mock_transport_)); | 90 cast_environment_, config_, &mock_transport_)); |
(...skipping 10 matching lines...) Expand all Loading... |
94 rtp_header_.reference_frame_id = rtp_header_.frame_id; | 101 rtp_header_.reference_frame_id = rtp_header_.frame_id; |
95 rtp_header_.packet_id = 0; | 102 rtp_header_.packet_id = 0; |
96 rtp_header_.max_packet_id = 0; | 103 rtp_header_.max_packet_id = 0; |
97 } | 104 } |
98 | 105 |
99 void FeedOneFrameIntoReceiver() { | 106 void FeedOneFrameIntoReceiver() { |
100 receiver_->OnReceivedPayloadData( | 107 receiver_->OnReceivedPayloadData( |
101 payload_.data(), payload_.size(), rtp_header_); | 108 payload_.data(), payload_.size(), rtp_header_); |
102 } | 109 } |
103 | 110 |
| 111 void FeedLipSyncInfoIntoReceiver() { |
| 112 const base::TimeTicks now = testing_clock_->NowTicks(); |
| 113 const int64 rtp_timestamp = (now - start_time_) * |
| 114 kVideoFrequency / base::TimeDelta::FromSeconds(1); |
| 115 CHECK_LE(0, rtp_timestamp); |
| 116 uint32 ntp_seconds; |
| 117 uint32 ntp_fraction; |
| 118 ConvertTimeTicksToNtp(now, &ntp_seconds, &ntp_fraction); |
| 119 TestRtcpPacketBuilder rtcp_packet; |
| 120 rtcp_packet.AddSrWithNtp(config_.incoming_ssrc, |
| 121 ntp_seconds, ntp_fraction, |
| 122 static_cast<uint32>(rtp_timestamp)); |
| 123 receiver_->IncomingPacket(rtcp_packet.GetPacket().Pass()); |
| 124 } |
| 125 |
104 VideoReceiverConfig config_; | 126 VideoReceiverConfig config_; |
105 std::vector<uint8> payload_; | 127 std::vector<uint8> payload_; |
| 128 uint32 lip_sync_rtp_timestamp_; |
| 129 base::TimeTicks lip_sync_capture_time_; |
106 RtpCastHeader rtp_header_; | 130 RtpCastHeader rtp_header_; |
107 base::SimpleTestTickClock* testing_clock_; // Owned by CastEnvironment. | 131 base::SimpleTestTickClock* testing_clock_; // Owned by CastEnvironment. |
| 132 base::TimeTicks start_time_; |
108 transport::MockPacedPacketSender mock_transport_; | 133 transport::MockPacedPacketSender mock_transport_; |
109 scoped_refptr<test::FakeSingleThreadTaskRunner> task_runner_; | 134 scoped_refptr<test::FakeSingleThreadTaskRunner> task_runner_; |
110 scoped_refptr<CastEnvironment> cast_environment_; | 135 scoped_refptr<CastEnvironment> cast_environment_; |
111 FakeVideoClient fake_video_client_; | 136 FakeVideoClient fake_video_client_; |
112 | 137 |
113 // Important for the VideoReceiver to be declared last, since its dependencies | 138 // Important for the VideoReceiver to be declared last, since its dependencies |
114 // must remain alive until after its destruction. | 139 // must remain alive until after its destruction. |
115 scoped_ptr<VideoReceiver> receiver_; | 140 scoped_ptr<VideoReceiver> receiver_; |
116 | 141 |
117 DISALLOW_COPY_AND_ASSIGN(VideoReceiverTest); | 142 DISALLOW_COPY_AND_ASSIGN(VideoReceiverTest); |
118 }; | 143 }; |
119 | 144 |
120 TEST_F(VideoReceiverTest, GetOnePacketEncodedFrame) { | 145 TEST_F(VideoReceiverTest, ReceivesOneFrame) { |
121 SimpleEventSubscriber event_subscriber; | 146 SimpleEventSubscriber event_subscriber; |
122 cast_environment_->Logging()->AddRawEventSubscriber(&event_subscriber); | 147 cast_environment_->Logging()->AddRawEventSubscriber(&event_subscriber); |
123 | 148 |
124 EXPECT_CALL(mock_transport_, SendRtcpPacket(_, _)) | 149 EXPECT_CALL(mock_transport_, SendRtcpPacket(_, _)) |
125 .WillRepeatedly(testing::Return(true)); | 150 .WillRepeatedly(testing::Return(true)); |
126 | 151 |
| 152 FeedLipSyncInfoIntoReceiver(); |
| 153 task_runner_->RunTasks(); |
| 154 |
127 // Enqueue a request for a video frame. | 155 // Enqueue a request for a video frame. |
128 receiver_->GetEncodedVideoFrame( | 156 receiver_->GetEncodedVideoFrame( |
129 base::Bind(&FakeVideoClient::DeliverEncodedVideoFrame, | 157 base::Bind(&FakeVideoClient::DeliverEncodedVideoFrame, |
130 base::Unretained(&fake_video_client_))); | 158 base::Unretained(&fake_video_client_))); |
131 | 159 |
132 // The request should not be satisfied since no packets have been received. | 160 // The request should not be satisfied since no packets have been received. |
133 task_runner_->RunTasks(); | 161 task_runner_->RunTasks(); |
134 EXPECT_EQ(0, fake_video_client_.number_times_called()); | 162 EXPECT_EQ(0, fake_video_client_.number_times_called()); |
135 | 163 |
136 // Deliver one video frame to the receiver and expect to get one frame back. | 164 // Deliver one video frame to the receiver and expect to get one frame back. |
137 fake_video_client_.SetNextExpectedResult(kFirstFrameId, | 165 const base::TimeDelta target_playout_delay = |
138 testing_clock_->NowTicks()); | 166 base::TimeDelta::FromMilliseconds(kPlayoutDelayMillis); |
| 167 fake_video_client_.AddExpectedResult( |
| 168 kFirstFrameId, testing_clock_->NowTicks() + target_playout_delay); |
139 FeedOneFrameIntoReceiver(); | 169 FeedOneFrameIntoReceiver(); |
140 task_runner_->RunTasks(); | 170 task_runner_->RunTasks(); |
141 EXPECT_EQ(1, fake_video_client_.number_times_called()); | 171 EXPECT_EQ(1, fake_video_client_.number_times_called()); |
142 | 172 |
143 std::vector<FrameEvent> frame_events; | 173 std::vector<FrameEvent> frame_events; |
144 event_subscriber.GetFrameEventsAndReset(&frame_events); | 174 event_subscriber.GetFrameEventsAndReset(&frame_events); |
145 | 175 |
146 ASSERT_TRUE(!frame_events.empty()); | 176 ASSERT_TRUE(!frame_events.empty()); |
147 EXPECT_EQ(FRAME_ACK_SENT, frame_events.begin()->type); | 177 EXPECT_EQ(FRAME_ACK_SENT, frame_events.begin()->type); |
148 EXPECT_EQ(rtp_header_.frame_id, frame_events.begin()->frame_id); | 178 EXPECT_EQ(rtp_header_.frame_id, frame_events.begin()->frame_id); |
149 EXPECT_EQ(rtp_header_.rtp_timestamp, frame_events.begin()->rtp_timestamp); | 179 EXPECT_EQ(rtp_header_.rtp_timestamp, frame_events.begin()->rtp_timestamp); |
150 | 180 |
151 cast_environment_->Logging()->RemoveRawEventSubscriber(&event_subscriber); | 181 cast_environment_->Logging()->RemoveRawEventSubscriber(&event_subscriber); |
152 } | 182 } |
153 | 183 |
154 TEST_F(VideoReceiverTest, MultiplePendingGetCalls) { | 184 TEST_F(VideoReceiverTest, ReceivesFramesRefusingToSkipAny) { |
155 EXPECT_CALL(mock_transport_, SendRtcpPacket(_, _)) | 185 EXPECT_CALL(mock_transport_, SendRtcpPacket(_, _)) |
156 .WillRepeatedly(testing::Return(true)); | 186 .WillRepeatedly(testing::Return(true)); |
157 | 187 |
158 // Enqueue a request for an video frame. | 188 const uint32 rtp_advance_per_frame = kVideoFrequency / config_.max_frame_rate; |
| 189 const base::TimeDelta time_advance_per_frame = |
| 190 base::TimeDelta::FromSeconds(1) / config_.max_frame_rate; |
| 191 |
| 192 // Feed and process lip sync in receiver. |
| 193 FeedLipSyncInfoIntoReceiver(); |
| 194 task_runner_->RunTasks(); |
| 195 const base::TimeTicks first_frame_capture_time = testing_clock_->NowTicks(); |
| 196 |
| 197 // Enqueue a request for a video frame. |
159 const VideoFrameEncodedCallback frame_encoded_callback = | 198 const VideoFrameEncodedCallback frame_encoded_callback = |
160 base::Bind(&FakeVideoClient::DeliverEncodedVideoFrame, | 199 base::Bind(&FakeVideoClient::DeliverEncodedVideoFrame, |
161 base::Unretained(&fake_video_client_)); | 200 base::Unretained(&fake_video_client_)); |
162 receiver_->GetEncodedVideoFrame(frame_encoded_callback); | 201 receiver_->GetEncodedVideoFrame(frame_encoded_callback); |
163 task_runner_->RunTasks(); | 202 task_runner_->RunTasks(); |
164 EXPECT_EQ(0, fake_video_client_.number_times_called()); | 203 EXPECT_EQ(0, fake_video_client_.number_times_called()); |
165 | 204 |
166 // Receive one video frame and expect to see the first request satisfied. | 205 // Receive one video frame and expect to see the first request satisfied. |
167 fake_video_client_.SetNextExpectedResult(kFirstFrameId, | 206 const base::TimeDelta target_playout_delay = |
168 testing_clock_->NowTicks()); | 207 base::TimeDelta::FromMilliseconds(kPlayoutDelayMillis); |
169 const base::TimeTicks time_at_first_frame_feed = testing_clock_->NowTicks(); | 208 fake_video_client_.AddExpectedResult( |
| 209 kFirstFrameId, first_frame_capture_time + target_playout_delay); |
| 210 rtp_header_.rtp_timestamp = 0; |
170 FeedOneFrameIntoReceiver(); | 211 FeedOneFrameIntoReceiver(); |
171 task_runner_->RunTasks(); | 212 task_runner_->RunTasks(); |
172 EXPECT_EQ(1, fake_video_client_.number_times_called()); | 213 EXPECT_EQ(1, fake_video_client_.number_times_called()); |
173 | 214 |
174 testing_clock_->Advance( | 215 // Enqueue a second request for a video frame, but it should not be |
175 base::TimeDelta::FromSeconds(1) / config_.max_frame_rate); | |
176 | |
177 // Enqueue a second request for an video frame, but it should not be | |
178 // fulfilled yet. | 216 // fulfilled yet. |
179 receiver_->GetEncodedVideoFrame(frame_encoded_callback); | 217 receiver_->GetEncodedVideoFrame(frame_encoded_callback); |
180 task_runner_->RunTasks(); | 218 task_runner_->RunTasks(); |
181 EXPECT_EQ(1, fake_video_client_.number_times_called()); | 219 EXPECT_EQ(1, fake_video_client_.number_times_called()); |
182 | 220 |
183 // Receive one video frame out-of-order: Make sure that we are not continuous | 221 // Receive one video frame out-of-order: Make sure that we are not continuous |
184 // and that the RTP timestamp represents a time in the future. | 222 // and that the RTP timestamp represents a time in the future. |
185 rtp_header_.is_key_frame = false; | 223 rtp_header_.is_key_frame = false; |
186 rtp_header_.frame_id = kFirstFrameId + 2; | 224 rtp_header_.frame_id = kFirstFrameId + 2; |
187 rtp_header_.reference_frame_id = 0; | 225 rtp_header_.reference_frame_id = 0; |
188 rtp_header_.rtp_timestamp += | 226 rtp_header_.rtp_timestamp += 2 * rtp_advance_per_frame; |
189 config_.rtp_max_delay_ms * kVideoFrequency / 1000; | |
190 fake_video_client_.SetNextExpectedResult( | |
191 kFirstFrameId + 2, | |
192 time_at_first_frame_feed + | |
193 base::TimeDelta::FromMilliseconds(config_.rtp_max_delay_ms)); | |
194 FeedOneFrameIntoReceiver(); | 227 FeedOneFrameIntoReceiver(); |
195 | 228 |
196 // Frame 2 should not come out at this point in time. | 229 // Frame 2 should not come out at this point in time. |
197 task_runner_->RunTasks(); | 230 task_runner_->RunTasks(); |
198 EXPECT_EQ(1, fake_video_client_.number_times_called()); | 231 EXPECT_EQ(1, fake_video_client_.number_times_called()); |
199 | 232 |
200 // Enqueue a third request for an video frame. | 233 // Enqueue a third request for a video frame. |
201 receiver_->GetEncodedVideoFrame(frame_encoded_callback); | 234 receiver_->GetEncodedVideoFrame(frame_encoded_callback); |
202 task_runner_->RunTasks(); | 235 task_runner_->RunTasks(); |
203 EXPECT_EQ(1, fake_video_client_.number_times_called()); | 236 EXPECT_EQ(1, fake_video_client_.number_times_called()); |
204 | 237 |
205 // After |rtp_max_delay_ms| has elapsed, Frame 2 is emitted (to satisfy the | 238 // Now, advance time forward such that Frame 2 is now too late for playback. |
206 // second request) because a decision was made to skip over the no-show Frame | 239 // Regardless, the receiver must NOT emit Frame 3 yet because it is not |
207 // 1. | 240 // allowed to skip frames for VP8. |
208 testing_clock_->Advance( | 241 testing_clock_->Advance(2 * time_advance_per_frame + target_playout_delay); |
209 base::TimeDelta::FromMilliseconds(config_.rtp_max_delay_ms)); | |
210 task_runner_->RunTasks(); | 242 task_runner_->RunTasks(); |
211 EXPECT_EQ(2, fake_video_client_.number_times_called()); | 243 EXPECT_EQ(1, fake_video_client_.number_times_called()); |
212 | 244 |
213 // Receive Frame 3 and expect it to fulfill the third request immediately. | 245 // Now receive Frame 2 and expect both the second and third requests to be |
214 rtp_header_.frame_id = kFirstFrameId + 3; | 246 // fulfilled immediately. |
| 247 fake_video_client_.AddExpectedResult( |
| 248 kFirstFrameId + 1, |
| 249 first_frame_capture_time + 1 * time_advance_per_frame + |
| 250 target_playout_delay); |
| 251 fake_video_client_.AddExpectedResult( |
| 252 kFirstFrameId + 2, |
| 253 first_frame_capture_time + 2 * time_advance_per_frame + |
| 254 target_playout_delay); |
| 255 --rtp_header_.frame_id; |
215 rtp_header_.reference_frame_id = rtp_header_.frame_id - 1; | 256 rtp_header_.reference_frame_id = rtp_header_.frame_id - 1; |
216 rtp_header_.rtp_timestamp += kVideoFrequency / config_.max_frame_rate; | 257 rtp_header_.rtp_timestamp -= rtp_advance_per_frame; |
217 fake_video_client_.SetNextExpectedResult(kFirstFrameId + 3, | |
218 testing_clock_->NowTicks()); | |
219 FeedOneFrameIntoReceiver(); | 258 FeedOneFrameIntoReceiver(); |
220 task_runner_->RunTasks(); | 259 task_runner_->RunTasks(); |
221 EXPECT_EQ(3, fake_video_client_.number_times_called()); | 260 EXPECT_EQ(3, fake_video_client_.number_times_called()); |
222 | 261 |
223 // Move forward another |rtp_max_delay_ms| and run any pending tasks (there | 262 // Move forward to the playout time of an unreceived Frame 5. Expect no |
224 // should be none). Expect no additional frames where emitted. | 263 // additional frames were emitted. |
225 testing_clock_->Advance( | 264 testing_clock_->Advance(3 * time_advance_per_frame); |
226 base::TimeDelta::FromMilliseconds(config_.rtp_max_delay_ms)); | |
227 task_runner_->RunTasks(); | 265 task_runner_->RunTasks(); |
228 EXPECT_EQ(3, fake_video_client_.number_times_called()); | 266 EXPECT_EQ(3, fake_video_client_.number_times_called()); |
229 } | 267 } |
230 | 268 |
231 } // namespace cast | 269 } // namespace cast |
232 } // namespace media | 270 } // namespace media |
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