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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 <stdint.h> | 5 #include <stdint.h> |
6 | 6 |
7 #include "base/test/simple_test_tick_clock.h" | 7 #include "base/test/simple_test_tick_clock.h" |
8 #include "media/cast/cast_defines.h" | 8 #include "media/cast/cast_defines.h" |
9 #include "media/cast/cast_environment.h" | 9 #include "media/cast/cast_environment.h" |
10 #include "media/cast/rtcp/mock_rtcp_receiver_feedback.h" | 10 #include "media/cast/rtcp/mock_rtcp_receiver_feedback.h" |
11 #include "media/cast/rtcp/mock_rtcp_sender_feedback.h" | 11 #include "media/cast/rtcp/mock_rtcp_sender_feedback.h" |
12 #include "media/cast/rtcp/rtcp.h" | 12 #include "media/cast/rtcp/rtcp.h" |
13 #include "media/cast/rtcp/test_rtcp_packet_builder.h" | 13 #include "media/cast/rtcp/test_rtcp_packet_builder.h" |
14 #include "media/cast/test/fake_single_thread_task_runner.h" | 14 #include "media/cast/test/fake_single_thread_task_runner.h" |
15 #include "media/cast/transport/cast_transport_config.h" | 15 #include "media/cast/transport/cast_transport_config.h" |
16 #include "media/cast/transport/cast_transport_sender_impl.h" | 16 #include "media/cast/transport/cast_transport_sender_impl.h" |
17 #include "media/cast/transport/pacing/paced_sender.h" | 17 #include "media/cast/transport/pacing/paced_sender.h" |
18 #include "testing/gmock/include/gmock/gmock.h" | 18 #include "testing/gmock/include/gmock/gmock.h" |
19 | 19 |
20 namespace media { | 20 namespace media { |
21 namespace cast { | 21 namespace cast { |
22 | 22 |
23 using testing::_; | 23 using testing::_; |
24 | 24 |
25 static const uint32 kSenderSsrc = 0x10203; | 25 static const uint32 kSenderSsrc = 0x10203; |
26 static const uint32 kReceiverSsrc = 0x40506; | 26 static const uint32 kReceiverSsrc = 0x40506; |
27 static const std::string kCName("test@10.1.1.1"); | 27 static const std::string kCName("test@10.1.1.1"); |
28 static const uint32 kRtcpIntervalMs = 500; | 28 static const uint32 kRtcpIntervalMs = 500; |
29 static const int64 kStartMillisecond = INT64_C(12345678900000); | |
30 static const int64 kAddedDelay = 123; | 29 static const int64 kAddedDelay = 123; |
31 static const int64 kAddedShortDelay = 100; | 30 static const int64 kAddedShortDelay = 100; |
32 | 31 |
33 class RtcpTestPacketSender : public transport::PacketSender { | 32 class RtcpTestPacketSender : public transport::PacketSender { |
34 public: | 33 public: |
35 explicit RtcpTestPacketSender(base::SimpleTestTickClock* testing_clock) | 34 explicit RtcpTestPacketSender(base::SimpleTestTickClock* testing_clock) |
36 : drop_packets_(false), | 35 : drop_packets_(false), |
37 short_delay_(false), | 36 short_delay_(false), |
38 rtcp_receiver_(NULL), | 37 rtcp_receiver_(NULL), |
39 testing_clock_(testing_clock) {} | 38 testing_clock_(testing_clock) {} |
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136 transport_sender, | 135 transport_sender, |
137 paced_packet_sender, | 136 paced_packet_sender, |
138 rtp_receiver_statistics, | 137 rtp_receiver_statistics, |
139 rtcp_mode, | 138 rtcp_mode, |
140 rtcp_interval, | 139 rtcp_interval, |
141 local_ssrc, | 140 local_ssrc, |
142 remote_ssrc, | 141 remote_ssrc, |
143 c_name, | 142 c_name, |
144 true) {} | 143 true) {} |
145 | 144 |
146 using Rtcp::CheckForWrapAround; | 145 using Rtcp::OnReceivedNtp; |
147 using Rtcp::OnReceivedLipSyncInfo; | 146 using Rtcp::OnReceivedLipSyncInfo; |
148 }; | 147 }; |
149 | 148 |
150 class RtcpTest : public ::testing::Test { | 149 class RtcpTest : public ::testing::Test { |
151 protected: | 150 protected: |
152 RtcpTest() | 151 RtcpTest() |
153 : testing_clock_(new base::SimpleTestTickClock()), | 152 : testing_clock_(new base::SimpleTestTickClock()), |
154 task_runner_(new test::FakeSingleThreadTaskRunner(testing_clock_)), | 153 task_runner_(new test::FakeSingleThreadTaskRunner(testing_clock_)), |
155 cast_environment_(new CastEnvironment( | 154 cast_environment_(new CastEnvironment( |
156 scoped_ptr<base::TickClock>(testing_clock_).Pass(), | 155 scoped_ptr<base::TickClock>(testing_clock_).Pass(), |
157 task_runner_, | 156 task_runner_, |
158 task_runner_, | 157 task_runner_, |
159 task_runner_)), | 158 task_runner_)), |
160 sender_to_receiver_(testing_clock_), | 159 sender_to_receiver_(testing_clock_), |
161 receiver_to_sender_(cast_environment_, testing_clock_), | 160 receiver_to_sender_(cast_environment_, testing_clock_), |
162 rtp_sender_stats_(kVideoFrequency) { | 161 rtp_sender_stats_(kVideoFrequency) { |
163 testing_clock_->Advance( | 162 testing_clock_->Advance(base::TimeTicks::Now() - base::TimeTicks()); |
164 base::TimeDelta::FromMilliseconds(kStartMillisecond)); | |
165 net::IPEndPoint dummy_endpoint; | 163 net::IPEndPoint dummy_endpoint; |
166 transport_sender_.reset(new transport::CastTransportSenderImpl( | 164 transport_sender_.reset(new transport::CastTransportSenderImpl( |
167 NULL, | 165 NULL, |
168 testing_clock_, | 166 testing_clock_, |
169 dummy_endpoint, | 167 dummy_endpoint, |
170 base::Bind(&UpdateCastTransportStatus), | 168 base::Bind(&UpdateCastTransportStatus), |
171 transport::BulkRawEventsCallback(), | 169 transport::BulkRawEventsCallback(), |
172 base::TimeDelta(), | 170 base::TimeDelta(), |
173 task_runner_, | 171 task_runner_, |
174 &sender_to_receiver_)); | 172 &sender_to_receiver_)); |
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197 RtcpTestPacketSender sender_to_receiver_; | 195 RtcpTestPacketSender sender_to_receiver_; |
198 scoped_ptr<transport::CastTransportSenderImpl> transport_sender_; | 196 scoped_ptr<transport::CastTransportSenderImpl> transport_sender_; |
199 LocalRtcpTransport receiver_to_sender_; | 197 LocalRtcpTransport receiver_to_sender_; |
200 MockRtcpSenderFeedback mock_sender_feedback_; | 198 MockRtcpSenderFeedback mock_sender_feedback_; |
201 RtpSenderStatistics rtp_sender_stats_; | 199 RtpSenderStatistics rtp_sender_stats_; |
202 | 200 |
203 DISALLOW_COPY_AND_ASSIGN(RtcpTest); | 201 DISALLOW_COPY_AND_ASSIGN(RtcpTest); |
204 }; | 202 }; |
205 | 203 |
206 TEST_F(RtcpTest, TimeToSend) { | 204 TEST_F(RtcpTest, TimeToSend) { |
207 base::TimeTicks start_time; | 205 const base::TimeTicks start_time = cast_environment_->Clock()->NowTicks(); |
208 start_time += base::TimeDelta::FromMilliseconds(kStartMillisecond); | |
209 Rtcp rtcp(cast_environment_, | 206 Rtcp rtcp(cast_environment_, |
210 &mock_sender_feedback_, | 207 &mock_sender_feedback_, |
211 transport_sender_.get(), | 208 transport_sender_.get(), |
212 &receiver_to_sender_, | 209 &receiver_to_sender_, |
213 NULL, | 210 NULL, |
214 kRtcpCompound, | 211 kRtcpCompound, |
215 base::TimeDelta::FromMilliseconds(kRtcpIntervalMs), | 212 base::TimeDelta::FromMilliseconds(kRtcpIntervalMs), |
216 kSenderSsrc, | 213 kSenderSsrc, |
217 kReceiverSsrc, | 214 kReceiverSsrc, |
218 kCName, | 215 kCName, |
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503 | 500 |
504 EXPECT_TRUE(rtcp_receiver.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); | 501 EXPECT_TRUE(rtcp_receiver.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
505 EXPECT_NEAR(kAddedDelay + kAddedShortDelay, rtt.InMilliseconds(), 2); | 502 EXPECT_NEAR(kAddedDelay + kAddedShortDelay, rtt.InMilliseconds(), 2); |
506 } | 503 } |
507 | 504 |
508 TEST_F(RtcpTest, NtpAndTime) { | 505 TEST_F(RtcpTest, NtpAndTime) { |
509 const int64 kSecondsbetweenYear1900and2010 = INT64_C(40176 * 24 * 60 * 60); | 506 const int64 kSecondsbetweenYear1900and2010 = INT64_C(40176 * 24 * 60 * 60); |
510 const int64 kSecondsbetweenYear1900and2030 = INT64_C(47481 * 24 * 60 * 60); | 507 const int64 kSecondsbetweenYear1900and2030 = INT64_C(47481 * 24 * 60 * 60); |
511 | 508 |
512 uint32 ntp_seconds_1 = 0; | 509 uint32 ntp_seconds_1 = 0; |
513 uint32 ntp_fractions_1 = 0; | 510 uint32 ntp_fraction_1 = 0; |
514 base::TimeTicks input_time = base::TimeTicks::Now(); | 511 base::TimeTicks input_time = base::TimeTicks::Now(); |
515 ConvertTimeTicksToNtp(input_time, &ntp_seconds_1, &ntp_fractions_1); | 512 ConvertTimeTicksToNtp(input_time, &ntp_seconds_1, &ntp_fraction_1); |
516 | 513 |
517 // Verify absolute value. | 514 // Verify absolute value. |
518 EXPECT_GT(ntp_seconds_1, kSecondsbetweenYear1900and2010); | 515 EXPECT_GT(ntp_seconds_1, kSecondsbetweenYear1900and2010); |
519 EXPECT_LT(ntp_seconds_1, kSecondsbetweenYear1900and2030); | 516 EXPECT_LT(ntp_seconds_1, kSecondsbetweenYear1900and2030); |
520 | 517 |
521 base::TimeTicks out_1 = ConvertNtpToTimeTicks(ntp_seconds_1, ntp_fractions_1); | 518 base::TimeTicks out_1 = ConvertNtpToTimeTicks(ntp_seconds_1, ntp_fraction_1); |
522 EXPECT_EQ(input_time, out_1); // Verify inverse. | 519 EXPECT_EQ(input_time, out_1); // Verify inverse. |
523 | 520 |
524 base::TimeDelta time_delta = base::TimeDelta::FromMilliseconds(1000); | 521 base::TimeDelta time_delta = base::TimeDelta::FromMilliseconds(1000); |
525 input_time += time_delta; | 522 input_time += time_delta; |
526 | 523 |
527 uint32 ntp_seconds_2 = 0; | 524 uint32 ntp_seconds_2 = 0; |
528 uint32 ntp_fractions_2 = 0; | 525 uint32 ntp_fraction_2 = 0; |
529 | 526 |
530 ConvertTimeTicksToNtp(input_time, &ntp_seconds_2, &ntp_fractions_2); | 527 ConvertTimeTicksToNtp(input_time, &ntp_seconds_2, &ntp_fraction_2); |
531 base::TimeTicks out_2 = ConvertNtpToTimeTicks(ntp_seconds_2, ntp_fractions_2); | 528 base::TimeTicks out_2 = ConvertNtpToTimeTicks(ntp_seconds_2, ntp_fraction_2); |
532 EXPECT_EQ(input_time, out_2); // Verify inverse. | 529 EXPECT_EQ(input_time, out_2); // Verify inverse. |
533 | 530 |
534 // Verify delta. | 531 // Verify delta. |
535 EXPECT_EQ((out_2 - out_1), time_delta); | 532 EXPECT_EQ((out_2 - out_1), time_delta); |
536 EXPECT_EQ((ntp_seconds_2 - ntp_seconds_1), UINT32_C(1)); | 533 EXPECT_EQ((ntp_seconds_2 - ntp_seconds_1), UINT32_C(1)); |
537 EXPECT_NEAR(ntp_fractions_2, ntp_fractions_1, 1); | 534 EXPECT_NEAR(ntp_fraction_2, ntp_fraction_1, 1); |
538 | 535 |
539 time_delta = base::TimeDelta::FromMilliseconds(500); | 536 time_delta = base::TimeDelta::FromMilliseconds(500); |
540 input_time += time_delta; | 537 input_time += time_delta; |
541 | 538 |
542 uint32 ntp_seconds_3 = 0; | 539 uint32 ntp_seconds_3 = 0; |
543 uint32 ntp_fractions_3 = 0; | 540 uint32 ntp_fraction_3 = 0; |
544 | 541 |
545 ConvertTimeTicksToNtp(input_time, &ntp_seconds_3, &ntp_fractions_3); | 542 ConvertTimeTicksToNtp(input_time, &ntp_seconds_3, &ntp_fraction_3); |
546 base::TimeTicks out_3 = ConvertNtpToTimeTicks(ntp_seconds_3, ntp_fractions_3); | 543 base::TimeTicks out_3 = ConvertNtpToTimeTicks(ntp_seconds_3, ntp_fraction_3); |
547 EXPECT_EQ(input_time, out_3); // Verify inverse. | 544 EXPECT_EQ(input_time, out_3); // Verify inverse. |
548 | 545 |
549 // Verify delta. | 546 // Verify delta. |
550 EXPECT_EQ((out_3 - out_2), time_delta); | 547 EXPECT_EQ((out_3 - out_2), time_delta); |
551 EXPECT_NEAR((ntp_fractions_3 - ntp_fractions_2), 0xffffffff / 2, 1); | 548 EXPECT_NEAR((ntp_fraction_3 - ntp_fraction_2), 0xffffffff / 2, 1); |
552 } | 549 } |
553 | 550 |
554 TEST_F(RtcpTest, WrapAround) { | 551 TEST_F(RtcpTest, UsesReportsToConvertRemoteNtpTimeToLocalTimeTicks) { |
555 RtcpPeer rtcp_peer(cast_environment_, | 552 RtcpPeer rtcp(cast_environment_, |
556 &mock_sender_feedback_, | 553 &mock_sender_feedback_, |
557 transport_sender_.get(), | 554 transport_sender_.get(), |
558 NULL, | 555 &receiver_to_sender_, |
559 NULL, | 556 NULL, |
560 kRtcpReducedSize, | 557 kRtcpReducedSize, |
561 base::TimeDelta::FromMilliseconds(kRtcpIntervalMs), | 558 base::TimeDelta::FromMilliseconds(kRtcpIntervalMs), |
562 kReceiverSsrc, | 559 kReceiverSsrc, |
563 kSenderSsrc, | 560 kSenderSsrc, |
564 kCName); | 561 kCName); |
565 uint32 new_timestamp = 0; | 562 |
566 uint32 old_timestamp = 0; | 563 // Start out with a simulated "remote clock" that is perfectly synchronized to |
567 EXPECT_EQ(0, rtcp_peer.CheckForWrapAround(new_timestamp, old_timestamp)); | 564 // the local clock. |
568 new_timestamp = 1234567890; | 565 base::SimpleTestTickClock remote_clock; |
569 old_timestamp = 1234567000; | 566 remote_clock.Advance(testing_clock_->NowTicks() - base::TimeTicks()); |
570 EXPECT_EQ(0, rtcp_peer.CheckForWrapAround(new_timestamp, old_timestamp)); | 567 uint32 remote_ntp_seconds = 0; |
571 new_timestamp = 1234567000; | 568 uint32 remote_ntp_fraction = 0; |
572 old_timestamp = 1234567890; | 569 ConvertTimeTicksToNtp( |
573 EXPECT_EQ(0, rtcp_peer.CheckForWrapAround(new_timestamp, old_timestamp)); | 570 remote_clock.NowTicks(), &remote_ntp_seconds, &remote_ntp_fraction); |
574 new_timestamp = 123; | 571 |
575 old_timestamp = 4234567890u; | 572 // Expect the operation fails before the first call to OnReceivedNtp(). |
576 EXPECT_EQ(1, rtcp_peer.CheckForWrapAround(new_timestamp, old_timestamp)); | 573 EXPECT_TRUE(rtcp.ToApproximateLocalTime(remote_ntp_seconds, |
577 new_timestamp = 4234567890u; | 574 remote_ntp_fraction).is_null()); |
578 old_timestamp = 123; | 575 |
579 EXPECT_EQ(-1, rtcp_peer.CheckForWrapAround(new_timestamp, old_timestamp)); | 576 // Now receive the NTP timestamp and expect ToApproximateLocalTime() will |
| 577 // return current time according to both clocks. |
| 578 rtcp.OnReceivedNtp(remote_ntp_seconds, remote_ntp_fraction); |
| 579 uint32 ntp_seconds = remote_ntp_seconds; |
| 580 uint32 ntp_fraction = remote_ntp_fraction; |
| 581 EXPECT_EQ(testing_clock_->NowTicks(), |
| 582 rtcp.ToApproximateLocalTime(ntp_seconds, ntp_fraction)); |
| 583 EXPECT_EQ(remote_clock.NowTicks(), |
| 584 rtcp.ToApproximateLocalTime(ntp_seconds, ntp_fraction)); |
| 585 |
| 586 // Now advance the local clock and receive the same NTP timestamp again, and |
| 587 // expect ToApproximateLocalTime() will still return the current local time. |
| 588 const base::TimeDelta local_advance_by = |
| 589 base::TimeDelta::FromMicroseconds(1234567); |
| 590 testing_clock_->Advance(local_advance_by); |
| 591 EXPECT_EQ(testing_clock_->NowTicks() - local_advance_by, |
| 592 rtcp.ToApproximateLocalTime(ntp_seconds, ntp_fraction)); |
| 593 rtcp.OnReceivedNtp(remote_ntp_seconds, remote_ntp_fraction); |
| 594 EXPECT_EQ(testing_clock_->NowTicks(), |
| 595 rtcp.ToApproximateLocalTime(ntp_seconds, ntp_fraction)); |
| 596 |
| 597 // Advance sender clock and provide a new NTP timestamp. When |
| 598 // ToApproximateLocalTime() is called with the old NTP timestamp, expect to |
| 599 // get a result that is backwards in time by the same amount the sender clock |
| 600 // was advanced. |
| 601 const base::TimeDelta sender_ahead_by = |
| 602 base::TimeDelta::FromMicroseconds(987654); |
| 603 remote_clock.Advance(sender_ahead_by); |
| 604 ConvertTimeTicksToNtp( |
| 605 remote_clock.NowTicks(), &remote_ntp_seconds, &remote_ntp_fraction); |
| 606 rtcp.OnReceivedNtp(remote_ntp_seconds, remote_ntp_fraction); |
| 607 EXPECT_EQ(testing_clock_->NowTicks() - sender_ahead_by, |
| 608 rtcp.ToApproximateLocalTime(ntp_seconds, ntp_fraction)); |
580 } | 609 } |
581 | 610 |
582 TEST_F(RtcpTest, RtpTimestampInSenderTime) { | 611 TEST_F(RtcpTest, UsesLipSyncToExtrapolateCaptureTime) { |
583 RtcpPeer rtcp_peer(cast_environment_, | 612 RtcpPeer rtcp(cast_environment_, |
584 &mock_sender_feedback_, | 613 &mock_sender_feedback_, |
585 transport_sender_.get(), | 614 transport_sender_.get(), |
586 &receiver_to_sender_, | 615 &receiver_to_sender_, |
587 NULL, | 616 NULL, |
588 kRtcpReducedSize, | 617 kRtcpReducedSize, |
589 base::TimeDelta::FromMilliseconds(kRtcpIntervalMs), | 618 base::TimeDelta::FromMilliseconds(kRtcpIntervalMs), |
590 kReceiverSsrc, | 619 kReceiverSsrc, |
591 kSenderSsrc, | 620 kSenderSsrc, |
592 kCName); | 621 kCName); |
593 int frequency = 32000; | 622 const int frequency = 32000; |
594 uint32 rtp_timestamp = 64000; | 623 uint32 rtp_timestamp = 64000; |
595 base::TimeTicks rtp_timestamp_in_ticks; | |
596 | 624 |
597 // Test fail before we get a OnReceivedLipSyncInfo. | 625 // Expect the operation fails before we get the first OnReceivedLipSyncInfo. |
598 EXPECT_FALSE(rtcp_peer.RtpTimestampInSenderTime( | 626 EXPECT_TRUE( |
599 frequency, rtp_timestamp, &rtp_timestamp_in_ticks)); | 627 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency).is_null()); |
600 | 628 |
601 uint32 ntp_seconds = 0; | 629 uint32 ntp_seconds = 0; |
602 uint32 ntp_fractions = 0; | 630 uint32 ntp_fraction = 0; |
603 uint64 input_time_us = 12345678901000LL; | 631 const base::TimeTicks lip_sync_time = cast_environment_->Clock()->NowTicks(); |
604 base::TimeTicks input_time; | |
605 input_time += base::TimeDelta::FromMicroseconds(input_time_us); | |
606 | 632 |
607 // Test exact match. | 633 // Test exact match. |
608 ConvertTimeTicksToNtp(input_time, &ntp_seconds, &ntp_fractions); | 634 ConvertTimeTicksToNtp(lip_sync_time, &ntp_seconds, &ntp_fraction); |
609 rtcp_peer.OnReceivedLipSyncInfo(rtp_timestamp, ntp_seconds, ntp_fractions); | 635 rtcp.OnReceivedNtp(ntp_seconds, ntp_fraction); |
610 EXPECT_TRUE(rtcp_peer.RtpTimestampInSenderTime( | 636 rtcp.OnReceivedLipSyncInfo(rtp_timestamp, ntp_seconds, ntp_fraction); |
611 frequency, rtp_timestamp, &rtp_timestamp_in_ticks)); | 637 EXPECT_FALSE( |
612 EXPECT_EQ(input_time, rtp_timestamp_in_ticks); | 638 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency).is_null()); |
| 639 EXPECT_EQ(lip_sync_time, |
| 640 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency)); |
613 | 641 |
614 // Test older rtp_timestamp. | 642 // Test older rtp_timestamp. |
615 rtp_timestamp = 32000; | 643 rtp_timestamp = 32000; |
616 EXPECT_TRUE(rtcp_peer.RtpTimestampInSenderTime( | 644 EXPECT_FALSE( |
617 frequency, rtp_timestamp, &rtp_timestamp_in_ticks)); | 645 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency).is_null()); |
618 EXPECT_EQ(input_time - base::TimeDelta::FromMilliseconds(1000), | 646 EXPECT_EQ(lip_sync_time - base::TimeDelta::FromMilliseconds(1000), |
619 rtp_timestamp_in_ticks); | 647 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency)); |
620 | 648 |
621 // Test older rtp_timestamp with wrap. | 649 // Test older rtp_timestamp with wrap. |
622 rtp_timestamp = 4294903296u; | 650 rtp_timestamp = 4294903296u; |
623 EXPECT_TRUE(rtcp_peer.RtpTimestampInSenderTime( | 651 EXPECT_FALSE( |
624 frequency, rtp_timestamp, &rtp_timestamp_in_ticks)); | 652 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency).is_null()); |
625 EXPECT_EQ(input_time - base::TimeDelta::FromMilliseconds(4000), | 653 EXPECT_EQ(lip_sync_time - base::TimeDelta::FromMilliseconds(4000), |
626 rtp_timestamp_in_ticks); | 654 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency)); |
627 | 655 |
628 // Test newer rtp_timestamp. | 656 // Test newer rtp_timestamp. |
629 rtp_timestamp = 128000; | 657 rtp_timestamp = 128000; |
630 EXPECT_TRUE(rtcp_peer.RtpTimestampInSenderTime( | 658 EXPECT_FALSE( |
631 frequency, rtp_timestamp, &rtp_timestamp_in_ticks)); | 659 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency).is_null()); |
632 EXPECT_EQ(input_time + base::TimeDelta::FromMilliseconds(2000), | 660 EXPECT_EQ(lip_sync_time + base::TimeDelta::FromMilliseconds(2000), |
633 rtp_timestamp_in_ticks); | 661 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency)); |
634 | 662 |
635 // Test newer rtp_timestamp with wrap. | 663 // Test newer rtp_timestamp with wrap. |
636 rtp_timestamp = 4294903296u; | 664 rtp_timestamp = 4294903296u; |
637 rtcp_peer.OnReceivedLipSyncInfo(rtp_timestamp, ntp_seconds, ntp_fractions); | 665 rtcp.OnReceivedLipSyncInfo(rtp_timestamp, ntp_seconds, ntp_fraction); |
638 rtp_timestamp = 64000; | 666 rtp_timestamp = 64000; |
639 EXPECT_TRUE(rtcp_peer.RtpTimestampInSenderTime( | 667 EXPECT_FALSE( |
640 frequency, rtp_timestamp, &rtp_timestamp_in_ticks)); | 668 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency).is_null()); |
641 EXPECT_EQ(input_time + base::TimeDelta::FromMilliseconds(4000), | 669 EXPECT_EQ(lip_sync_time + base::TimeDelta::FromMilliseconds(4000), |
642 rtp_timestamp_in_ticks); | 670 rtcp.ToApproximateCaptureTime(rtp_timestamp, frequency)); |
643 } | 671 } |
644 | 672 |
645 } // namespace cast | 673 } // namespace cast |
646 } // namespace media | 674 } // namespace media |
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