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- Propagating `RtpPacketInfo::local_capture_clock_offset`, an existing field that is related to the abs-capture-timestamp header extension field `estimated_capture_clock_offset` - Propagated through `SourceTracker::SourceEntry` Bug: webrtc:10739, b/246753278 Change-Id: I21d9841e4f3a35da5f8d7b31582898309421d524 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/275241 Reviewed-by: Tomas Gunnarsson <tommi@webrtc.org> Reviewed-by: Danil Chapovalov <danilchap@webrtc.org> Commit-Queue: Alessio Bazzica <alessiob@webrtc.org> Cr-Commit-Position: refs/heads/main@{#38129}
218 lines
5.2 KiB
C++
218 lines
5.2 KiB
C++
/*
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* Copyright (c) 2019 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "api/rtp_packet_infos.h"
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#include "api/units/time_delta.h"
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#include "test/gmock.h"
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#include "test/gtest.h"
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namespace webrtc {
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TEST(RtpPacketInfoTest, Ssrc) {
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constexpr uint32_t kValue = 4038189233;
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RtpPacketInfo lhs;
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RtpPacketInfo rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs.set_ssrc(kValue);
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EXPECT_EQ(rhs.ssrc(), kValue);
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EXPECT_FALSE(lhs == rhs);
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EXPECT_TRUE(lhs != rhs);
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lhs = rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs = RtpPacketInfo();
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EXPECT_NE(rhs.ssrc(), kValue);
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rhs = RtpPacketInfo(/*ssrc=*/kValue, /*csrcs=*/{}, /*rtp_timestamp=*/{},
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/*receive_time=*/Timestamp::Zero());
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EXPECT_EQ(rhs.ssrc(), kValue);
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}
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TEST(RtpPacketInfoTest, Csrcs) {
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const std::vector<uint32_t> value = {4038189233, 3016333617, 1207992985};
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RtpPacketInfo lhs;
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RtpPacketInfo rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs.set_csrcs(value);
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EXPECT_EQ(rhs.csrcs(), value);
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EXPECT_FALSE(lhs == rhs);
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EXPECT_TRUE(lhs != rhs);
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lhs = rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs = RtpPacketInfo();
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EXPECT_NE(rhs.csrcs(), value);
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rhs = RtpPacketInfo(/*ssrc=*/{}, /*csrcs=*/value, /*rtp_timestamp=*/{},
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/*receive_time=*/Timestamp::Zero());
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EXPECT_EQ(rhs.csrcs(), value);
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}
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TEST(RtpPacketInfoTest, RtpTimestamp) {
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constexpr uint32_t kValue = 4038189233;
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RtpPacketInfo lhs;
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RtpPacketInfo rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs.set_rtp_timestamp(kValue);
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EXPECT_EQ(rhs.rtp_timestamp(), kValue);
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EXPECT_FALSE(lhs == rhs);
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EXPECT_TRUE(lhs != rhs);
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lhs = rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs = RtpPacketInfo();
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EXPECT_NE(rhs.rtp_timestamp(), kValue);
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rhs = RtpPacketInfo(/*ssrc=*/{}, /*csrcs=*/{}, /*rtp_timestamp=*/kValue,
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/*receive_time=*/Timestamp::Zero());
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EXPECT_EQ(rhs.rtp_timestamp(), kValue);
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}
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TEST(RtpPacketInfoTest, ReceiveTimeMs) {
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constexpr Timestamp kValue = Timestamp::Micros(8868963877546349045LL);
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RtpPacketInfo lhs;
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RtpPacketInfo rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs.set_receive_time(kValue);
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EXPECT_EQ(rhs.receive_time(), kValue);
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EXPECT_FALSE(lhs == rhs);
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EXPECT_TRUE(lhs != rhs);
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lhs = rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs = RtpPacketInfo();
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EXPECT_NE(rhs.receive_time(), kValue);
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rhs = RtpPacketInfo(/*ssrc=*/{}, /*csrcs=*/{}, /*rtp_timestamp=*/{},
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/*receive_time=*/kValue);
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EXPECT_EQ(rhs.receive_time(), kValue);
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}
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TEST(RtpPacketInfoTest, AudioLevel) {
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constexpr absl::optional<uint8_t> kValue = 31;
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RtpPacketInfo lhs;
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RtpPacketInfo rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs.set_audio_level(kValue);
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EXPECT_EQ(rhs.audio_level(), kValue);
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EXPECT_FALSE(lhs == rhs);
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EXPECT_TRUE(lhs != rhs);
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lhs = rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs = RtpPacketInfo();
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EXPECT_NE(rhs.audio_level(), kValue);
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rhs = RtpPacketInfo(/*ssrc=*/{}, /*csrcs=*/{}, /*rtp_timestamp=*/{},
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/*receive_time=*/Timestamp::Zero());
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rhs.set_audio_level(kValue);
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EXPECT_EQ(rhs.audio_level(), kValue);
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}
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TEST(RtpPacketInfoTest, AbsoluteCaptureTime) {
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constexpr absl::optional<AbsoluteCaptureTime> kValue = AbsoluteCaptureTime{
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.absolute_capture_timestamp = 12, .estimated_capture_clock_offset = 34};
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RtpPacketInfo lhs;
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RtpPacketInfo rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs.set_absolute_capture_time(kValue);
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EXPECT_EQ(rhs.absolute_capture_time(), kValue);
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EXPECT_FALSE(lhs == rhs);
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EXPECT_TRUE(lhs != rhs);
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lhs = rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs = RtpPacketInfo();
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EXPECT_NE(rhs.absolute_capture_time(), kValue);
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rhs = RtpPacketInfo(/*ssrc=*/{}, /*csrcs=*/{}, /*rtp_timestamp=*/{},
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/*receive_time=*/Timestamp::Zero());
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rhs.set_absolute_capture_time(kValue);
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EXPECT_EQ(rhs.absolute_capture_time(), kValue);
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}
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TEST(RtpPacketInfoTest, LocalCaptureClockOffset) {
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constexpr TimeDelta kValue = TimeDelta::Micros(8868963877546349045LL);
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RtpPacketInfo lhs;
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RtpPacketInfo rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs.set_local_capture_clock_offset(kValue);
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EXPECT_EQ(rhs.local_capture_clock_offset(), kValue);
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EXPECT_FALSE(lhs == rhs);
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EXPECT_TRUE(lhs != rhs);
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lhs = rhs;
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EXPECT_TRUE(lhs == rhs);
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EXPECT_FALSE(lhs != rhs);
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rhs = RtpPacketInfo();
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EXPECT_EQ(rhs.local_capture_clock_offset(), absl::nullopt);
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rhs = RtpPacketInfo(/*ssrc=*/{}, /*csrcs=*/{}, /*rtp_timestamp=*/{},
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/*receive_time=*/Timestamp::Zero());
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rhs.set_local_capture_clock_offset(kValue);
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EXPECT_EQ(rhs.local_capture_clock_offset(), kValue);
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}
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} // namespace webrtc
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