2012-09-26 16:47:40 +00:00
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/*
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* Copyright (c) 2012 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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2015-10-28 18:17:40 +01:00
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#include "webrtc/system_wrappers/include/rtp_to_ntp.h"
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2016-09-30 22:29:43 -07:00
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#include "webrtc/test/gtest.h"
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2012-09-26 16:47:40 +00:00
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namespace webrtc {
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2016-03-15 01:00:47 -07:00
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namespace {
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const uint32_t kOneMsInNtpFrac = 4294967;
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const uint32_t kTimestampTicksPerMs = 90;
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} // namespace
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2012-09-26 16:47:40 +00:00
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TEST(WrapAroundTests, NoWrap) {
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2014-05-07 17:09:44 +00:00
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EXPECT_EQ(0, CheckForWrapArounds(0xFFFFFFFF, 0xFFFFFFFE));
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EXPECT_EQ(0, CheckForWrapArounds(1, 0));
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EXPECT_EQ(0, CheckForWrapArounds(0x00010000, 0x0000FFFF));
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2012-09-26 16:47:40 +00:00
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}
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TEST(WrapAroundTests, ForwardWrap) {
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2014-05-07 17:09:44 +00:00
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EXPECT_EQ(1, CheckForWrapArounds(0, 0xFFFFFFFF));
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EXPECT_EQ(1, CheckForWrapArounds(0, 0xFFFF0000));
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EXPECT_EQ(1, CheckForWrapArounds(0x0000FFFF, 0xFFFFFFFF));
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EXPECT_EQ(1, CheckForWrapArounds(0x0000FFFF, 0xFFFF0000));
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2012-09-26 16:47:40 +00:00
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}
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TEST(WrapAroundTests, BackwardWrap) {
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2014-05-07 17:09:44 +00:00
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EXPECT_EQ(-1, CheckForWrapArounds(0xFFFFFFFF, 0));
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EXPECT_EQ(-1, CheckForWrapArounds(0xFFFF0000, 0));
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EXPECT_EQ(-1, CheckForWrapArounds(0xFFFFFFFF, 0x0000FFFF));
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EXPECT_EQ(-1, CheckForWrapArounds(0xFFFF0000, 0x0000FFFF));
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2012-09-26 16:47:40 +00:00
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}
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2016-11-02 07:14:03 -07:00
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TEST(WrapAroundTests, OldRtcpWrapped_OldRtpTimestamp) {
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RtcpMeasurements rtcp;
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bool new_sr;
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2012-09-26 16:47:40 +00:00
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uint32_t ntp_sec = 0;
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2016-11-02 07:14:03 -07:00
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uint32_t ntp_frac = 1;
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2012-09-26 16:47:40 +00:00
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uint32_t timestamp = 0;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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ntp_frac += kOneMsInNtpFrac;
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timestamp -= kTimestampTicksPerMs;
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// Expected to fail since the older RTCP has a smaller RTP timestamp than the
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// newer (old:0, new:4294967206).
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EXPECT_FALSE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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}
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TEST(WrapAroundTests, NewRtcpWrapped) {
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2016-11-02 07:14:03 -07:00
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RtcpMeasurements rtcp;
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bool new_sr;
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2012-09-26 16:47:40 +00:00
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uint32_t ntp_sec = 0;
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2016-11-02 07:14:03 -07:00
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uint32_t ntp_frac = 1;
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2012-09-26 16:47:40 +00:00
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uint32_t timestamp = 0xFFFFFFFF;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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ntp_frac += kOneMsInNtpFrac;
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timestamp += kTimestampTicksPerMs;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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int64_t timestamp_ms = -1;
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EXPECT_TRUE(RtpToNtpMs(rtcp.list.back().rtp_timestamp, rtcp, ×tamp_ms));
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2012-09-26 16:47:40 +00:00
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// Since this RTP packet has the same timestamp as the RTCP packet constructed
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// at time 0 it should be mapped to 0 as well.
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EXPECT_EQ(0, timestamp_ms);
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2012-09-26 16:47:40 +00:00
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}
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TEST(WrapAroundTests, RtpWrapped) {
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RtcpMeasurements rtcp;
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bool new_sr;
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2012-09-26 16:47:40 +00:00
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uint32_t ntp_sec = 0;
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uint32_t ntp_frac = 1;
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2012-09-26 16:47:40 +00:00
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uint32_t timestamp = 0xFFFFFFFF - 2 * kTimestampTicksPerMs;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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ntp_frac += kOneMsInNtpFrac;
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timestamp += kTimestampTicksPerMs;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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int64_t timestamp_ms = -1;
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EXPECT_TRUE(RtpToNtpMs(rtcp.list.back().rtp_timestamp, rtcp, ×tamp_ms));
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2012-09-26 16:47:40 +00:00
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// Since this RTP packet has the same timestamp as the RTCP packet constructed
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// at time 0 it should be mapped to 0 as well.
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EXPECT_EQ(0, timestamp_ms);
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// Two kTimestampTicksPerMs advanced.
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timestamp += kTimestampTicksPerMs;
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EXPECT_TRUE(RtpToNtpMs(timestamp, rtcp, ×tamp_ms));
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EXPECT_EQ(2, timestamp_ms);
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// Wrapped rtp.
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timestamp += kTimestampTicksPerMs;
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EXPECT_TRUE(RtpToNtpMs(timestamp, rtcp, ×tamp_ms));
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EXPECT_EQ(3, timestamp_ms);
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2012-09-26 16:47:40 +00:00
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}
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TEST(WrapAroundTests, OldRtp_RtcpsWrapped) {
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2016-11-02 07:14:03 -07:00
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RtcpMeasurements rtcp;
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bool new_sr;
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2012-09-26 16:47:40 +00:00
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uint32_t ntp_sec = 0;
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2016-11-02 07:14:03 -07:00
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uint32_t ntp_frac = 1;
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2012-09-26 16:47:40 +00:00
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uint32_t timestamp = 0;
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2016-11-02 07:14:03 -07:00
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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ntp_frac += kOneMsInNtpFrac;
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timestamp += kTimestampTicksPerMs;
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2016-11-02 07:14:03 -07:00
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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timestamp -= 2*kTimestampTicksPerMs;
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2016-11-02 07:14:03 -07:00
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int64_t timestamp_ms = -1;
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EXPECT_FALSE(RtpToNtpMs(timestamp, rtcp, ×tamp_ms));
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2012-09-26 16:47:40 +00:00
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}
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TEST(WrapAroundTests, OldRtp_NewRtcpWrapped) {
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2016-11-02 07:14:03 -07:00
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RtcpMeasurements rtcp;
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bool new_sr;
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2012-09-26 16:47:40 +00:00
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uint32_t ntp_sec = 0;
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2016-11-02 07:14:03 -07:00
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uint32_t ntp_frac = 1;
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2012-09-26 16:47:40 +00:00
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uint32_t timestamp = 0xFFFFFFFF;
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2016-11-02 07:14:03 -07:00
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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ntp_frac += kOneMsInNtpFrac;
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timestamp += kTimestampTicksPerMs;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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2012-09-26 16:47:40 +00:00
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timestamp -= kTimestampTicksPerMs;
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2016-11-02 07:14:03 -07:00
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int64_t timestamp_ms = -1;
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EXPECT_TRUE(RtpToNtpMs(timestamp, rtcp, ×tamp_ms));
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2012-09-26 16:47:40 +00:00
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// Constructed at the same time as the first RTCP and should therefore be
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// mapped to zero.
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EXPECT_EQ(0, timestamp_ms);
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2012-09-26 16:47:40 +00:00
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}
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2016-11-02 07:14:03 -07:00
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TEST(UpdateRtcpListTests, InjectRtcpSr) {
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const uint32_t kNtpSec = 10;
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const uint32_t kNtpFrac = 12345;
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const uint32_t kTs = 0x12345678;
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bool new_sr;
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RtcpMeasurements rtcp;
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EXPECT_TRUE(UpdateRtcpList(kNtpSec, kNtpFrac, kTs, &rtcp, &new_sr));
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EXPECT_TRUE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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EXPECT_EQ(kNtpSec, rtcp.list.front().ntp_secs);
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EXPECT_EQ(kNtpFrac, rtcp.list.front().ntp_frac);
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EXPECT_EQ(kTs, rtcp.list.front().rtp_timestamp);
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// Add second report.
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EXPECT_TRUE(UpdateRtcpList(kNtpSec, kNtpFrac + kOneMsInNtpFrac, kTs + 1,
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&rtcp, &new_sr));
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EXPECT_EQ(2u, rtcp.list.size());
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EXPECT_EQ(kTs + 1, rtcp.list.front().rtp_timestamp);
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EXPECT_EQ(kTs + 0, rtcp.list.back().rtp_timestamp);
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// List should contain last two reports.
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EXPECT_TRUE(UpdateRtcpList(kNtpSec, kNtpFrac + 2 * kOneMsInNtpFrac, kTs + 2,
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&rtcp, &new_sr));
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EXPECT_EQ(2u, rtcp.list.size());
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EXPECT_EQ(kTs + 2, rtcp.list.front().rtp_timestamp);
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EXPECT_EQ(kTs + 1, rtcp.list.back().rtp_timestamp);
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}
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TEST(UpdateRtcpListTests, FailsForZeroNtp) {
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RtcpMeasurements rtcp;
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2012-09-26 16:47:40 +00:00
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uint32_t ntp_sec = 0;
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uint32_t ntp_frac = 0;
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2016-04-19 07:04:47 -07:00
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uint32_t timestamp = 0x12345678;
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2016-11-02 07:14:03 -07:00
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bool new_sr;
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EXPECT_FALSE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_FALSE(new_sr);
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EXPECT_EQ(0u, rtcp.list.size());
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}
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2016-11-02 07:14:03 -07:00
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TEST(UpdateRtcpListTests, FailsForEqualNtp) {
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RtcpMeasurements rtcp;
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uint32_t ntp_sec = 0;
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uint32_t ntp_frac = 699925050;
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uint32_t timestamp = 0x12345678;
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bool new_sr;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_TRUE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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// Ntp time already added, list not updated.
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++timestamp;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_FALSE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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}
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2016-11-02 07:14:03 -07:00
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TEST(UpdateRtcpListTests, FailsForOldNtp) {
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RtcpMeasurements rtcp;
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uint32_t ntp_sec = 1;
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uint32_t ntp_frac = 699925050;
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uint32_t timestamp = 0x12345678;
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bool new_sr;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_TRUE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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// Old ntp time, list not updated.
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ntp_frac -= kOneMsInNtpFrac;
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timestamp += kTimestampTicksPerMs;
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EXPECT_FALSE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_EQ(1u, rtcp.list.size());
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}
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TEST(UpdateRtcpListTests, FailsForEqualTimestamp) {
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RtcpMeasurements rtcp;
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uint32_t ntp_sec = 0;
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uint32_t ntp_frac = 2;
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uint32_t timestamp = 0x12345678;
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bool new_sr;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_TRUE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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// Timestamp already added, list not updated.
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++ntp_frac;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_FALSE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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}
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2016-11-02 07:14:03 -07:00
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TEST(UpdateRtcpListTests, FailsForOldRtpTimestamp) {
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RtcpMeasurements rtcp;
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uint32_t ntp_sec = 0;
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uint32_t ntp_frac = 2;
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uint32_t timestamp = 0x12345678;
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bool new_sr;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_TRUE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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// Old timestamp, list not updated.
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ntp_frac += kOneMsInNtpFrac;
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timestamp -= kTimestampTicksPerMs;
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EXPECT_FALSE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_FALSE(new_sr);
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EXPECT_EQ(1u, rtcp.list.size());
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}
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TEST(UpdateRtcpListTests, VerifyParameters) {
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RtcpMeasurements rtcp;
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uint32_t ntp_sec = 1;
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uint32_t ntp_frac = 2;
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uint32_t timestamp = 0x12345678;
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bool new_sr;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_TRUE(new_sr);
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EXPECT_FALSE(rtcp.params.calculated);
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// Add second report, parameters should be calculated.
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ntp_frac += kOneMsInNtpFrac;
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timestamp += kTimestampTicksPerMs;
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EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
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EXPECT_TRUE(rtcp.params.calculated);
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EXPECT_DOUBLE_EQ(90.0, rtcp.params.frequency_khz);
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EXPECT_NE(0.0, rtcp.params.offset_ms);
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|
|
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}
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TEST(RtpToNtpTests, FailsForEmptyList) {
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RtcpMeasurements rtcp;
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rtcp.params.calculated = true;
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|
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// List is empty, conversion of RTP to NTP time should fail.
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|
|
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EXPECT_EQ(0u, rtcp.list.size());
|
|
|
|
|
int64_t timestamp_ms = -1;
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|
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EXPECT_FALSE(RtpToNtpMs(0, rtcp, ×tamp_ms));
|
|
|
|
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}
|
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|
|
|
|
|
TEST(RtpToNtpTests, FailsForNoParameters) {
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|
|
|
|
RtcpMeasurements rtcp;
|
|
|
|
|
uint32_t ntp_sec = 1;
|
|
|
|
|
uint32_t ntp_frac = 2;
|
|
|
|
|
uint32_t timestamp = 0x12345678;
|
|
|
|
|
bool new_sr;
|
|
|
|
|
EXPECT_TRUE(UpdateRtcpList(ntp_sec, ntp_frac, timestamp, &rtcp, &new_sr));
|
|
|
|
|
EXPECT_EQ(1u, rtcp.list.size());
|
|
|
|
|
// Parameters are not calculated, conversion of RTP to NTP time should fail.
|
|
|
|
|
EXPECT_FALSE(rtcp.params.calculated);
|
|
|
|
|
int64_t timestamp_ms = -1;
|
|
|
|
|
EXPECT_FALSE(RtpToNtpMs(timestamp, rtcp, ×tamp_ms));
|
2016-04-19 07:04:47 -07:00
|
|
|
}
|
2016-11-02 07:14:03 -07:00
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|
|
|
2012-09-26 16:47:40 +00:00
|
|
|
}; // namespace webrtc
|