Index: media/cast/net/rtcp/rtcp_unittest.cc |
diff --git a/media/cast/net/rtcp/rtcp_unittest.cc b/media/cast/net/rtcp/rtcp_unittest.cc |
index ec35e513cf6046e47d860a3592492c17ed14d508..0b0d32785ba4d2b3c2f0f5edf131087d5e76e976 100644 |
--- a/media/cast/net/rtcp/rtcp_unittest.cc |
+++ b/media/cast/net/rtcp/rtcp_unittest.cc |
@@ -7,11 +7,9 @@ |
#include "base/test/simple_test_tick_clock.h" |
#include "media/cast/cast_defines.h" |
#include "media/cast/net/cast_transport_config.h" |
-#include "media/cast/net/cast_transport_sender_impl.h" |
#include "media/cast/net/pacing/paced_sender.h" |
#include "media/cast/net/rtcp/rtcp.h" |
-#include "media/cast/net/rtcp/test_rtcp_packet_builder.h" |
-#include "media/cast/test/fake_single_thread_task_runner.h" |
+#include "media/cast/test/skewed_tick_clock.h" |
#include "testing/gmock/include/gmock/gmock.h" |
namespace media { |
@@ -21,79 +19,26 @@ using testing::_; |
static const uint32 kSenderSsrc = 0x10203; |
static const uint32 kReceiverSsrc = 0x40506; |
-static const int64 kAddedDelay = 123; |
-static const int64 kAddedShortDelay = 100; |
+static const int kInitialReceiverClockOffsetSeconds = -5; |
-class RtcpTestPacketSender : public PacketSender { |
+class FakeRtcpTransport : public PacedPacketSender { |
public: |
- explicit RtcpTestPacketSender(base::SimpleTestTickClock* testing_clock) |
- : drop_packets_(false), |
- short_delay_(false), |
- rtcp_receiver_(NULL), |
- testing_clock_(testing_clock) {} |
- virtual ~RtcpTestPacketSender() {} |
- // Packet lists imply a RTP packet. |
- void set_rtcp_receiver(Rtcp* rtcp) { rtcp_receiver_ = rtcp; } |
- |
- void set_short_delay() { short_delay_ = true; } |
- |
- void set_drop_packets(bool drop_packets) { drop_packets_ = drop_packets; } |
- |
- // A singular packet implies a RTCP packet. |
- virtual bool SendPacket(PacketRef packet, |
- const base::Closure& cb) OVERRIDE { |
- if (short_delay_) { |
- testing_clock_->Advance( |
- base::TimeDelta::FromMilliseconds(kAddedShortDelay)); |
- } else { |
- testing_clock_->Advance(base::TimeDelta::FromMilliseconds(kAddedDelay)); |
- } |
- if (drop_packets_) |
- return true; |
- |
- rtcp_receiver_->IncomingRtcpPacket(&packet->data[0], packet->data.size()); |
- return true; |
- } |
- |
- private: |
- bool drop_packets_; |
- bool short_delay_; |
- Rtcp* rtcp_receiver_; |
- base::SimpleTestTickClock* testing_clock_; // Not owned. |
+ explicit FakeRtcpTransport(base::SimpleTestTickClock* clock) |
+ : clock_(clock), |
+ packet_delay_(base::TimeDelta::FromMilliseconds(42)) {} |
- DISALLOW_COPY_AND_ASSIGN(RtcpTestPacketSender); |
-}; |
- |
-class LocalRtcpTransport : public PacedPacketSender { |
- public: |
- explicit LocalRtcpTransport(base::SimpleTestTickClock* testing_clock) |
- : drop_packets_(false), |
- short_delay_(false), |
- testing_clock_(testing_clock) {} |
+ void set_rtcp_destination(Rtcp* rtcp) { rtcp_ = rtcp; } |
- void set_rtcp_receiver(Rtcp* rtcp) { rtcp_ = rtcp; } |
- |
- void set_short_delay() { short_delay_ = true; } |
- |
- void set_drop_packets(bool drop_packets) { drop_packets_ = drop_packets; } |
- |
- virtual bool SendRtcpPacket(uint32 ssrc, |
- PacketRef packet) OVERRIDE { |
- if (short_delay_) { |
- testing_clock_->Advance( |
- base::TimeDelta::FromMilliseconds(kAddedShortDelay)); |
- } else { |
- testing_clock_->Advance(base::TimeDelta::FromMilliseconds(kAddedDelay)); |
- } |
- if (drop_packets_) |
- return true; |
+ base::TimeDelta packet_delay() const { return packet_delay_; } |
+ void set_packet_delay(base::TimeDelta delay) { packet_delay_ = delay; } |
+ virtual bool SendRtcpPacket(uint32 ssrc, PacketRef packet) OVERRIDE { |
+ clock_->Advance(packet_delay_); |
rtcp_->IncomingRtcpPacket(&packet->data[0], packet->data.size()); |
return true; |
} |
- virtual bool SendPackets( |
- const SendPacketVector& packets) OVERRIDE { |
+ virtual bool SendPackets(const SendPacketVector& packets) OVERRIDE { |
return false; |
} |
@@ -102,23 +47,21 @@ class LocalRtcpTransport : public PacedPacketSender { |
return false; |
} |
- virtual void CancelSendingPacket( |
- const PacketKey& packet_key) OVERRIDE { |
+ virtual void CancelSendingPacket(const PacketKey& packet_key) OVERRIDE { |
} |
private: |
- bool drop_packets_; |
- bool short_delay_; |
+ base::SimpleTestTickClock* const clock_; |
+ base::TimeDelta packet_delay_; |
Rtcp* rtcp_; |
- base::SimpleTestTickClock* testing_clock_; // Not owned. |
- DISALLOW_COPY_AND_ASSIGN(LocalRtcpTransport); |
+ DISALLOW_COPY_AND_ASSIGN(FakeRtcpTransport); |
}; |
-class MockReceiverStats : public RtpReceiverStatistics { |
+class FakeReceiverStats : public RtpReceiverStatistics { |
public: |
- MockReceiverStats() {} |
- virtual ~MockReceiverStats() {} |
+ FakeReceiverStats() {} |
+ virtual ~FakeReceiverStats() {} |
virtual void GetStatistics(uint8* fraction_lost, |
uint32* cumulative_lost, |
@@ -131,7 +74,7 @@ class MockReceiverStats : public RtpReceiverStatistics { |
} |
private: |
- DISALLOW_COPY_AND_ASSIGN(MockReceiverStats); |
+ DISALLOW_COPY_AND_ASSIGN(FakeReceiverStats); |
}; |
class MockFrameSender { |
@@ -141,11 +84,8 @@ class MockFrameSender { |
MOCK_METHOD1(OnReceivedCastFeedback, |
void(const RtcpCastMessage& cast_message)); |
- MOCK_METHOD4(OnReceivedRtt, |
- void(base::TimeDelta rtt, |
- base::TimeDelta avg_rtt, |
- base::TimeDelta min_rtt, |
- base::TimeDelta max_rtt)); |
+ MOCK_METHOD1(OnMeasuredRoundTripTime, void(base::TimeDelta rtt)); |
+ |
private: |
DISALLOW_COPY_AND_ASSIGN(MockFrameSender); |
}; |
@@ -153,251 +93,134 @@ class MockFrameSender { |
class RtcpTest : public ::testing::Test { |
protected: |
RtcpTest() |
- : testing_clock_(new base::SimpleTestTickClock()), |
- task_runner_( |
- new test::FakeSingleThreadTaskRunner(testing_clock_.get())), |
- sender_to_receiver_(testing_clock_.get()), |
- receiver_to_sender_(testing_clock_.get()) { |
- testing_clock_->Advance(base::TimeTicks::Now() - base::TimeTicks()); |
+ : sender_clock_(new base::SimpleTestTickClock()), |
+ receiver_clock_(new test::SkewedTickClock(sender_clock_.get())), |
+ sender_to_receiver_(sender_clock_.get()), |
+ receiver_to_sender_(sender_clock_.get()), |
+ rtcp_for_sender_(base::Bind(&MockFrameSender::OnReceivedCastFeedback, |
+ base::Unretained(&mock_frame_sender_)), |
+ base::Bind(&MockFrameSender::OnMeasuredRoundTripTime, |
+ base::Unretained(&mock_frame_sender_)), |
+ RtcpLogMessageCallback(), |
+ sender_clock_.get(), |
+ &sender_to_receiver_, |
+ kSenderSsrc, |
+ kReceiverSsrc), |
+ rtcp_for_receiver_(RtcpCastMessageCallback(), |
+ RtcpRttCallback(), |
+ RtcpLogMessageCallback(), |
+ receiver_clock_.get(), |
+ &receiver_to_sender_, |
+ kReceiverSsrc, |
+ kSenderSsrc) { |
+ sender_clock_->Advance(base::TimeTicks::Now() - base::TimeTicks()); |
+ receiver_clock_->SetSkew( |
+ 1.0, // No skew. |
+ base::TimeDelta::FromSeconds(kInitialReceiverClockOffsetSeconds)); |
+ |
+ sender_to_receiver_.set_rtcp_destination(&rtcp_for_receiver_); |
+ receiver_to_sender_.set_rtcp_destination(&rtcp_for_sender_); |
} |
virtual ~RtcpTest() {} |
- static void UpdateCastTransportStatus(CastTransportStatus status) { |
- bool result = (status == TRANSPORT_AUDIO_INITIALIZED || |
- status == TRANSPORT_VIDEO_INITIALIZED); |
- EXPECT_TRUE(result); |
- } |
- |
- void RunTasks(int during_ms) { |
- for (int i = 0; i < during_ms; ++i) { |
- // Call process the timers every 1 ms. |
- testing_clock_->Advance(base::TimeDelta::FromMilliseconds(1)); |
- task_runner_->RunTasks(); |
- } |
- } |
- |
- scoped_ptr<base::SimpleTestTickClock> testing_clock_; |
- scoped_refptr<test::FakeSingleThreadTaskRunner> task_runner_; |
- LocalRtcpTransport sender_to_receiver_; |
- LocalRtcpTransport receiver_to_sender_; |
+ scoped_ptr<base::SimpleTestTickClock> sender_clock_; |
+ scoped_ptr<test::SkewedTickClock> receiver_clock_; |
+ FakeRtcpTransport sender_to_receiver_; |
+ FakeRtcpTransport receiver_to_sender_; |
MockFrameSender mock_frame_sender_; |
- MockReceiverStats stats_; |
+ Rtcp rtcp_for_sender_; |
+ Rtcp rtcp_for_receiver_; |
+ FakeReceiverStats stats_; |
DISALLOW_COPY_AND_ASSIGN(RtcpTest); |
}; |
-TEST_F(RtcpTest, BasicSenderReport) { |
- Rtcp rtcp(base::Bind(&MockFrameSender::OnReceivedCastFeedback, |
- base::Unretained(&mock_frame_sender_)), |
- base::Bind(&MockFrameSender::OnReceivedRtt, |
- base::Unretained(&mock_frame_sender_)), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &sender_to_receiver_, |
- kSenderSsrc, |
- kReceiverSsrc); |
- sender_to_receiver_.set_rtcp_receiver(&rtcp); |
- rtcp.SendRtcpFromRtpSender(base::TimeTicks(), 0, 1, 1); |
-} |
- |
-TEST_F(RtcpTest, BasicReceiverReport) { |
- Rtcp rtcp(base::Bind(&MockFrameSender::OnReceivedCastFeedback, |
- base::Unretained(&mock_frame_sender_)), |
- base::Bind(&MockFrameSender::OnReceivedRtt, |
- base::Unretained(&mock_frame_sender_)), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &receiver_to_sender_, |
- kSenderSsrc, |
- kReceiverSsrc); |
- receiver_to_sender_.set_rtcp_receiver(&rtcp); |
- rtcp.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
-} |
- |
-TEST_F(RtcpTest, BasicCast) { |
- EXPECT_CALL(mock_frame_sender_, OnReceivedCastFeedback(_)).Times(1); |
- |
- // Media sender. |
- Rtcp rtcp(base::Bind(&MockFrameSender::OnReceivedCastFeedback, |
- base::Unretained(&mock_frame_sender_)), |
- base::Bind(&MockFrameSender::OnReceivedRtt, |
- base::Unretained(&mock_frame_sender_)), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &receiver_to_sender_, |
- kSenderSsrc, |
- kSenderSsrc); |
- receiver_to_sender_.set_rtcp_receiver(&rtcp); |
- RtcpCastMessage cast_message(kSenderSsrc); |
- cast_message.ack_frame_id = kAckFrameId; |
- PacketIdSet missing_packets; |
- cast_message.missing_frames_and_packets[kLostFrameId] = missing_packets; |
- |
- missing_packets.insert(kLostPacketId1); |
- missing_packets.insert(kLostPacketId2); |
- missing_packets.insert(kLostPacketId3); |
- cast_message.missing_frames_and_packets[kFrameIdWithLostPackets] = |
- missing_packets; |
- rtcp.SendRtcpFromRtpReceiver(&cast_message, base::TimeDelta(), NULL, NULL); |
+TEST_F(RtcpTest, LipSyncGleanedFromSenderReport) { |
+ // Initially, expect no lip-sync info receiver-side without having first |
+ // received a RTCP packet. |
+ base::TimeTicks reference_time; |
+ uint32 rtp_timestamp; |
+ ASSERT_FALSE(rtcp_for_receiver_.GetLatestLipSyncTimes(&rtp_timestamp, |
+ &reference_time)); |
+ |
+ // Send a Sender Report to the receiver. |
+ const base::TimeTicks reference_time_sent = sender_clock_->NowTicks(); |
+ const uint32 rtp_timestamp_sent = 0xbee5; |
+ rtcp_for_sender_.SendRtcpFromRtpSender( |
+ reference_time_sent, rtp_timestamp_sent, 1, 1); |
+ |
+ // Now the receiver should have lip-sync info. Confirm that the lip-sync |
+ // reference time is the same as that sent. |
+ EXPECT_TRUE(rtcp_for_receiver_.GetLatestLipSyncTimes(&rtp_timestamp, |
+ &reference_time)); |
+ const base::TimeTicks rolled_back_time = |
+ (reference_time - |
+ // Roll-back relative clock offset: |
+ base::TimeDelta::FromSeconds(kInitialReceiverClockOffsetSeconds) - |
+ // Roll-back packet transmission time (because RTT is not yet known): |
+ sender_to_receiver_.packet_delay()); |
+ EXPECT_NEAR(0, (reference_time_sent - rolled_back_time).InMicroseconds(), 5); |
+ EXPECT_EQ(rtp_timestamp_sent, rtp_timestamp); |
} |
-TEST_F(RtcpTest, RttReducedSizeRtcp) { |
- // Media receiver. |
- Rtcp rtcp_receiver(RtcpCastMessageCallback(), |
- RtcpRttCallback(), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &receiver_to_sender_, |
- kReceiverSsrc, |
- kSenderSsrc); |
- |
- // Media sender. |
- Rtcp rtcp_sender(base::Bind(&MockFrameSender::OnReceivedCastFeedback, |
- base::Unretained(&mock_frame_sender_)), |
- base::Bind(&MockFrameSender::OnReceivedRtt, |
- base::Unretained(&mock_frame_sender_)), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &sender_to_receiver_, |
- kSenderSsrc, |
- kReceiverSsrc); |
- |
- sender_to_receiver_.set_rtcp_receiver(&rtcp_receiver); |
- receiver_to_sender_.set_rtcp_receiver(&rtcp_sender); |
- |
- base::TimeDelta rtt; |
- base::TimeDelta avg_rtt; |
- base::TimeDelta min_rtt; |
- base::TimeDelta max_rtt; |
- EXPECT_FALSE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- |
- rtcp_sender.SendRtcpFromRtpSender(testing_clock_->NowTicks(), 1, 1, 1); |
- RunTasks(33); |
- rtcp_receiver.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
- EXPECT_TRUE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- rtcp_sender.SendRtcpFromRtpSender(testing_clock_->NowTicks(), 2, 1, 1); |
- RunTasks(33); |
-} |
- |
-TEST_F(RtcpTest, Rtt) { |
- // Media receiver. |
- Rtcp rtcp_receiver(RtcpCastMessageCallback(), |
- RtcpRttCallback(), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &receiver_to_sender_, |
- kReceiverSsrc, |
- kSenderSsrc); |
- |
- // Media sender. |
- Rtcp rtcp_sender(base::Bind(&MockFrameSender::OnReceivedCastFeedback, |
- base::Unretained(&mock_frame_sender_)), |
- base::Bind(&MockFrameSender::OnReceivedRtt, |
- base::Unretained(&mock_frame_sender_)), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &sender_to_receiver_, |
- kSenderSsrc, |
- kReceiverSsrc); |
- |
- receiver_to_sender_.set_rtcp_receiver(&rtcp_sender); |
- sender_to_receiver_.set_rtcp_receiver(&rtcp_receiver); |
- |
- base::TimeDelta rtt; |
- base::TimeDelta avg_rtt; |
- base::TimeDelta min_rtt; |
- base::TimeDelta max_rtt; |
- EXPECT_FALSE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- |
- rtcp_sender.SendRtcpFromRtpSender(testing_clock_->NowTicks(), 1, 1, 1); |
- RunTasks(33); |
- rtcp_receiver.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
- |
- EXPECT_TRUE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- RunTasks(33); |
- |
- RunTasks(33); |
- |
- EXPECT_NEAR(2 * kAddedDelay, rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedDelay, avg_rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedDelay, min_rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedDelay, max_rtt.InMilliseconds(), 2); |
- |
- rtcp_sender.SendRtcpFromRtpSender(testing_clock_->NowTicks(), 2, 1, 1); |
- RunTasks(33); |
- |
- receiver_to_sender_.set_short_delay(); |
- sender_to_receiver_.set_short_delay(); |
- rtcp_receiver.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
- EXPECT_TRUE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- EXPECT_NEAR(kAddedDelay + kAddedShortDelay, rtt.InMilliseconds(), 2); |
- EXPECT_NEAR( |
- (kAddedShortDelay + 3 * kAddedDelay) / 2, avg_rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(kAddedDelay + kAddedShortDelay, min_rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedDelay, max_rtt.InMilliseconds(), 2); |
- |
- rtcp_sender.SendRtcpFromRtpSender(testing_clock_->NowTicks(), 3, 1, 1); |
- RunTasks(33); |
- |
- rtcp_receiver.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
- EXPECT_TRUE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- EXPECT_NEAR(2 * kAddedShortDelay, rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedShortDelay, min_rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedDelay, max_rtt.InMilliseconds(), 2); |
- |
- rtcp_receiver.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
- EXPECT_TRUE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- EXPECT_NEAR(2 * kAddedShortDelay, rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedShortDelay, min_rtt.InMilliseconds(), 2); |
- EXPECT_NEAR(2 * kAddedDelay, max_rtt.InMilliseconds(), 2); |
-} |
- |
-TEST_F(RtcpTest, RttWithPacketLoss) { |
- // Media receiver. |
- Rtcp rtcp_receiver(RtcpCastMessageCallback(), |
- RtcpRttCallback(), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &receiver_to_sender_, |
- kReceiverSsrc, |
- kSenderSsrc); |
- |
- // Media sender. |
- Rtcp rtcp_sender(base::Bind(&MockFrameSender::OnReceivedCastFeedback, |
- base::Unretained(&mock_frame_sender_)), |
- base::Bind(&MockFrameSender::OnReceivedRtt, |
- base::Unretained(&mock_frame_sender_)), |
- RtcpLogMessageCallback(), |
- testing_clock_.get(), |
- &sender_to_receiver_, |
- kSenderSsrc, |
- kReceiverSsrc); |
- |
- receiver_to_sender_.set_rtcp_receiver(&rtcp_sender); |
- sender_to_receiver_.set_rtcp_receiver(&rtcp_receiver); |
- |
- rtcp_receiver.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
- rtcp_sender.SendRtcpFromRtpSender(testing_clock_->NowTicks(), 0, 1, 1); |
- RunTasks(33); |
- |
- base::TimeDelta rtt; |
- base::TimeDelta avg_rtt; |
- base::TimeDelta min_rtt; |
- base::TimeDelta max_rtt; |
- EXPECT_FALSE(rtcp_sender.Rtt(&rtt, &avg_rtt, &min_rtt, &max_rtt)); |
- |
- receiver_to_sender_.set_short_delay(); |
- sender_to_receiver_.set_short_delay(); |
- receiver_to_sender_.set_drop_packets(true); |
- |
- rtcp_receiver.SendRtcpFromRtpReceiver(NULL, base::TimeDelta(), NULL, &stats_); |
- rtcp_sender.SendRtcpFromRtpSender(testing_clock_->NowTicks(), 1, 1, 1); |
- RunTasks(33); |
- |
+// TODO(miu): There were a few tests here that didn't actually test anything |
+// except that the code wouldn't crash and a callback method was invoked. We |
+// need to fill-in more testing of RTCP now that much of the refactoring work |
+// has been completed. |
+ |
+TEST_F(RtcpTest, RoundTripTimesDeterminedFromReportPingPong) { |
+ const int iterations = 12; |
+ EXPECT_CALL(mock_frame_sender_, OnMeasuredRoundTripTime(_)) |
+ .Times(iterations); |
+ |
+ // Initially, neither side knows the round trip time. |
+ ASSERT_EQ(base::TimeDelta(), rtcp_for_sender_.current_round_trip_time()); |
+ ASSERT_EQ(base::TimeDelta(), rtcp_for_receiver_.current_round_trip_time()); |
+ |
+ // Do a number of ping-pongs, checking how the round trip times are measured |
+ // by the sender and receiver. |
+ base::TimeDelta expected_rtt_according_to_sender; |
+ base::TimeDelta expected_rtt_according_to_receiver; |
+ for (int i = 0; i < iterations; ++i) { |
+ const base::TimeDelta one_way_trip_time = |
+ base::TimeDelta::FromMilliseconds(1 << i); |
+ sender_to_receiver_.set_packet_delay(one_way_trip_time); |
+ receiver_to_sender_.set_packet_delay(one_way_trip_time); |
+ |
+ // Sender --> Receiver |
+ base::TimeTicks reference_time_sent = sender_clock_->NowTicks(); |
+ uint32 rtp_timestamp_sent = 0xbee5 + i; |
+ rtcp_for_sender_.SendRtcpFromRtpSender( |
+ reference_time_sent, rtp_timestamp_sent, 1, 1); |
+ EXPECT_EQ(expected_rtt_according_to_sender, |
+ rtcp_for_sender_.current_round_trip_time()); |
+#ifdef SENDER_PROVIDES_REPORT_BLOCK |
+ EXPECT_EQ(expected_rtt_according_to_receiver, |
+ rtcp_for_receiver_.current_round_trip_time()); |
+#endif |
+ |
+ // Receiver --> Sender |
+ rtcp_for_receiver_.SendRtcpFromRtpReceiver( |
+ NULL, base::TimeDelta(), NULL, &stats_); |
+ expected_rtt_according_to_sender = one_way_trip_time * 2; |
+ EXPECT_EQ(expected_rtt_according_to_sender, |
+ rtcp_for_sender_.current_round_trip_time()); |
+#ifdef SENDER_PROVIDES_REPORT_BLOCK |
+ EXPECT_EQ(expected_rtt_according_to_receiver, |
+ rtcp_for_receiver_.current_round_trip_time(); |
+#endif |
+ |
+ // In the next iteration of this loop, after the receiver gets the sender |
+ // report, it will be measuring a round trip time consisting of two |
+ // different one-way trip times. |
+ expected_rtt_according_to_receiver = |
+ (one_way_trip_time + one_way_trip_time * 2) / 2; |
+ } |
} |
-TEST_F(RtcpTest, NtpAndTime) { |
+// TODO(miu): Find a better home for this test. |
+TEST(MisplacedCastTest, NtpAndTime) { |
const int64 kSecondsbetweenYear1900and2010 = INT64_C(40176 * 24 * 60 * 60); |
const int64 kSecondsbetweenYear1900and2030 = INT64_C(47481 * 24 * 60 * 60); |