| Index: webrtc/video/stream_synchronization_unittest.cc
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| diff --git a/webrtc/video/stream_synchronization_unittest.cc b/webrtc/video/stream_synchronization_unittest.cc
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| index d328d6af437ff5c8761f73ecbc46e425efa9beb8..770bbf6eebd56aced50f89d394bea406c8718cb1 100644
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| --- a/webrtc/video/stream_synchronization_unittest.cc
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| +++ b/webrtc/video/stream_synchronization_unittest.cc
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| @@ -36,19 +36,20 @@ class Time {
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|  
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|    RtcpMeasurement GenerateRtcp(int frequency, uint32_t offset) const {
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|      RtcpMeasurement rtcp;
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| -    NowNtp(&rtcp.ntp_secs, &rtcp.ntp_frac);
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| -    rtcp.rtp_timestamp = NowRtp(frequency, offset);
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| +    rtcp.ntp_time = GetNowNtp();
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| +    rtcp.rtp_timestamp = GetNowRtp(frequency, offset);
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|      return rtcp;
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|    }
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|  
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| -  void NowNtp(uint32_t* ntp_secs, uint32_t* ntp_frac) const {
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| -    *ntp_secs = time_now_ms_ / 1000 + kNtpJan1970;
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| +  NtpTime GetNowNtp() const {
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| +    uint32_t ntp_secs = time_now_ms_ / 1000 + kNtpJan1970;
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|      int64_t remainder_ms = time_now_ms_ % 1000;
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| -    *ntp_frac = static_cast<uint32_t>(
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| +    uint32_t ntp_frac = static_cast<uint32_t>(
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|          static_cast<double>(remainder_ms) * kNtpFracPerMs + 0.5);
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| +    return NtpTime(ntp_secs, ntp_frac);
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|    }
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|  
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| -  uint32_t NowRtp(int frequency, uint32_t offset) const {
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| +  uint32_t GetNowRtp(int frequency, uint32_t offset) const {
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|      return frequency * time_now_ms_ / 1000 + offset;
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|    }
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|  
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| @@ -105,31 +106,36 @@ class StreamSynchronizationTest : public ::testing::Test {
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|      // Generate NTP/RTP timestamp pair for both streams corresponding to RTCP.
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|      RtcpMeasurement rtcp =
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|          send_time_->GenerateRtcp(audio_frequency, audio_offset);
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| -    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_secs, rtcp.ntp_frac, rtcp.rtp_timestamp,
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| +    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_time.seconds(),
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| +                               rtcp.ntp_time.fractions(), rtcp.rtp_timestamp,
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|                                 &audio.rtcp, &new_sr));
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|      send_time_->IncreaseTimeMs(100);
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|      receive_time_->IncreaseTimeMs(100);
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|      rtcp = send_time_->GenerateRtcp(video_frequency, video_offset);
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| -    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_secs, rtcp.ntp_frac, rtcp.rtp_timestamp,
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| +    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_time.seconds(),
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| +                               rtcp.ntp_time.fractions(), rtcp.rtp_timestamp,
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|                                 &video.rtcp, &new_sr));
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|      send_time_->IncreaseTimeMs(900);
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|      receive_time_->IncreaseTimeMs(900);
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|      rtcp = send_time_->GenerateRtcp(audio_frequency, audio_offset);
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| -    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_secs, rtcp.ntp_frac, rtcp.rtp_timestamp,
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| +    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_time.seconds(),
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| +                               rtcp.ntp_time.fractions(), rtcp.rtp_timestamp,
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|                                 &audio.rtcp, &new_sr));
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|      send_time_->IncreaseTimeMs(100);
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|      receive_time_->IncreaseTimeMs(100);
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|      rtcp = send_time_->GenerateRtcp(video_frequency, video_offset);
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| -    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_secs, rtcp.ntp_frac, rtcp.rtp_timestamp,
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| +    EXPECT_TRUE(UpdateRtcpList(rtcp.ntp_time.seconds(),
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| +                               rtcp.ntp_time.fractions(), rtcp.rtp_timestamp,
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|                                 &video.rtcp, &new_sr));
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| +
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|      send_time_->IncreaseTimeMs(900);
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|      receive_time_->IncreaseTimeMs(900);
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|  
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|      // Capture an audio and a video frame at the same time.
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| -    audio.latest_timestamp = send_time_->NowRtp(audio_frequency,
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| -                                                audio_offset);
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| -    video.latest_timestamp = send_time_->NowRtp(video_frequency,
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| -                                                video_offset);
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| +    audio.latest_timestamp =
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| +        send_time_->GetNowRtp(audio_frequency, audio_offset);
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| +    video.latest_timestamp =
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| +        send_time_->GetNowRtp(video_frequency, video_offset);
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|  
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|      if (audio_delay_ms > video_delay_ms) {
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|        // Audio later than video.
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| 
 |