Add unit tests to rtcp_receiver_test.
R=mflodman@webrtc.org Review URL: https://webrtc-codereview.appspot.com/21989004 git-svn-id: http://webrtc.googlecode.com/svn/trunk@6994 4adac7df-926f-26a2-2b94-8c16560cd09d
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@ -111,6 +111,8 @@ class RtcpReceiverTest : public ::testing::Test {
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rtcp_packet_info_.applicationSubType =
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rtcpPacketInformation.applicationSubType;
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rtcp_packet_info_.applicationName = rtcpPacketInformation.applicationName;
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rtcp_packet_info_.applicationLength =
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rtcpPacketInformation.applicationLength;
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rtcp_packet_info_.report_blocks = rtcpPacketInformation.report_blocks;
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rtcp_packet_info_.rtt = rtcpPacketInformation.rtt;
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rtcp_packet_info_.interArrivalJitter =
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@ -159,6 +161,263 @@ TEST_F(RtcpReceiverTest, InjectSrPacket) {
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kRtcpSr & rtcp_packet_info_.rtcpPacketTypeFlags);
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}
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TEST_F(RtcpReceiverTest, InjectSrPacketFromExpectedPeer) {
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const uint32_t kSenderSsrc = 0x10203;
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rtcp_receiver_->SetRemoteSSRC(kSenderSsrc);
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rtcp::SenderReport sr;
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sr.From(kSenderSsrc);
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rtcp::RawPacket p = sr.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kSenderSsrc, rtcp_packet_info_.remoteSSRC);
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EXPECT_EQ(kRtcpSr, rtcp_packet_info_.rtcpPacketTypeFlags);
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}
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TEST_F(RtcpReceiverTest, InjectRrPacket) {
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const uint32_t kSenderSsrc = 0x10203;
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rtcp::ReceiverReport rr;
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rr.From(kSenderSsrc);
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rtcp::RawPacket p = rr.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kSenderSsrc, rtcp_packet_info_.remoteSSRC);
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EXPECT_EQ(kRtcpRr, rtcp_packet_info_.rtcpPacketTypeFlags);
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ASSERT_EQ(0u, rtcp_packet_info_.report_blocks.size());
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}
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TEST_F(RtcpReceiverTest, InjectRrPacketWithReportBlockNotToUsIgnored) {
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const uint32_t kSenderSsrc = 0x10203;
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const uint32_t kSourceSsrc = 0x123456;
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std::set<uint32_t> ssrcs;
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ssrcs.insert(kSourceSsrc);
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rtcp_receiver_->SetSsrcs(kSourceSsrc, ssrcs);
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rtcp::ReportBlock rb;
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rb.To(kSourceSsrc + 1);
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rtcp::ReceiverReport rr;
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rr.From(kSenderSsrc);
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rr.WithReportBlock(&rb);
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rtcp::RawPacket p = rr.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kSenderSsrc, rtcp_packet_info_.remoteSSRC);
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EXPECT_EQ(kRtcpRr, rtcp_packet_info_.rtcpPacketTypeFlags);
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ASSERT_EQ(0u, rtcp_packet_info_.report_blocks.size());
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}
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TEST_F(RtcpReceiverTest, InjectRrPacketWithOneReportBlock) {
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const uint32_t kSenderSsrc = 0x10203;
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const uint32_t kSourceSsrc = 0x123456;
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std::set<uint32_t> ssrcs;
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ssrcs.insert(kSourceSsrc);
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rtcp_receiver_->SetSsrcs(kSourceSsrc, ssrcs);
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rtcp::ReportBlock rb;
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rb.To(kSourceSsrc);
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rtcp::ReceiverReport rr;
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rr.From(kSenderSsrc);
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rr.WithReportBlock(&rb);
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rtcp::RawPacket p = rr.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kSenderSsrc, rtcp_packet_info_.remoteSSRC);
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EXPECT_EQ(kRtcpRr, rtcp_packet_info_.rtcpPacketTypeFlags);
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ASSERT_EQ(1u, rtcp_packet_info_.report_blocks.size());
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}
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TEST_F(RtcpReceiverTest, InjectRrPacketWithTwoReportBlocks) {
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const uint32_t kSenderSsrc = 0x10203;
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const uint32_t kSourceSsrcs[] = {0x40506, 0x50607};
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const uint16_t kSequenceNumbers[] = {10, 12423};
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const int kNumSsrcs = sizeof(kSourceSsrcs) / sizeof(kSourceSsrcs[0]);
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std::set<uint32_t> ssrcs(kSourceSsrcs, kSourceSsrcs + kNumSsrcs);
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rtcp_receiver_->SetSsrcs(kSourceSsrcs[0], ssrcs);
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rtcp::ReportBlock rb1;
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rb1.To(kSourceSsrcs[0]);
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rb1.WithExtHighestSeqNum(kSequenceNumbers[0]);
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rb1.WithFractionLost(10);
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rb1.WithCumulativeLost(5);
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rtcp::ReportBlock rb2;
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rb2.To(kSourceSsrcs[1]);
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rb2.WithExtHighestSeqNum(kSequenceNumbers[1]);
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rtcp::ReceiverReport rr1;
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rr1.From(kSenderSsrc);
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rr1.WithReportBlock(&rb1);
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rr1.WithReportBlock(&rb2);
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rtcp::RawPacket p1 = rr1.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p1.buffer(), p1.buffer_length()));
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ASSERT_EQ(2u, rtcp_packet_info_.report_blocks.size());
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EXPECT_EQ(10, rtcp_packet_info_.report_blocks.front().fractionLost);
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EXPECT_EQ(0, rtcp_packet_info_.report_blocks.back().fractionLost);
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rtcp::ReportBlock rb3;
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rb3.To(kSourceSsrcs[0]);
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rb3.WithExtHighestSeqNum(kSequenceNumbers[0]);
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rtcp::ReportBlock rb4;
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rb4.To(kSourceSsrcs[1]);
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rb4.WithExtHighestSeqNum(kSequenceNumbers[1]);
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rb4.WithFractionLost(20);
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rb4.WithCumulativeLost(10);
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rtcp::ReceiverReport rr2;
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rr2.From(kSenderSsrc);
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rr2.WithReportBlock(&rb3);
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rr2.WithReportBlock(&rb4);
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rtcp::RawPacket p2 = rr2.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p2.buffer(), p2.buffer_length()));
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ASSERT_EQ(2u, rtcp_packet_info_.report_blocks.size());
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EXPECT_EQ(0, rtcp_packet_info_.report_blocks.front().fractionLost);
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EXPECT_EQ(20, rtcp_packet_info_.report_blocks.back().fractionLost);
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}
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TEST_F(RtcpReceiverTest, InjectIjWithNoItem) {
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rtcp::Ij ij;
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rtcp::RawPacket p = ij.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(0U, rtcp_packet_info_.rtcpPacketTypeFlags);
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}
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TEST_F(RtcpReceiverTest, InjectIjWithOneItem) {
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rtcp::Ij ij;
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ij.WithJitterItem(0x11111111);
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rtcp::RawPacket p = ij.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kRtcpTransmissionTimeOffset, rtcp_packet_info_.rtcpPacketTypeFlags);
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EXPECT_EQ(0x11111111U, rtcp_packet_info_.interArrivalJitter);
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}
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TEST_F(RtcpReceiverTest, InjectAppWithNoData) {
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rtcp::App app;
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app.WithSubType(30);
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uint32_t name = 'n' << 24;
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name += 'a' << 16;
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name += 'm' << 8;
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name += 'e';
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app.WithName(name);
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rtcp::RawPacket p = app.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kRtcpApp, rtcp_packet_info_.rtcpPacketTypeFlags);
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EXPECT_EQ(30, rtcp_packet_info_.applicationSubType);
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EXPECT_EQ(name, rtcp_packet_info_.applicationName);
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EXPECT_EQ(0, rtcp_packet_info_.applicationLength);
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}
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TEST_F(RtcpReceiverTest, InjectAppWithData) {
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rtcp::App app;
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app.WithSubType(30);
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uint32_t name = 'n' << 24;
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name += 'a' << 16;
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name += 'm' << 8;
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name += 'e';
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app.WithName(name);
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const char kData[] = {'t', 'e', 's', 't', 'd', 'a', 't', 'a'};
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const size_t kDataLength = sizeof(kData) / sizeof(kData[0]);
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app.WithData((const uint8_t*)kData, kDataLength);
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rtcp::RawPacket p = app.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kRtcpApp, rtcp_packet_info_.rtcpPacketTypeFlags);
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EXPECT_EQ(30, rtcp_packet_info_.applicationSubType);
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EXPECT_EQ(name, rtcp_packet_info_.applicationName);
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EXPECT_EQ(kDataLength, rtcp_packet_info_.applicationLength);
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}
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TEST_F(RtcpReceiverTest, InjectSdesWithOneChunk) {
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const uint32_t kSenderSsrc = 0x123456;
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rtcp::Sdes sdes;
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sdes.WithCName(kSenderSsrc, "alice@host");
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rtcp::RawPacket p = sdes.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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char cName[RTCP_CNAME_SIZE];
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EXPECT_EQ(0, rtcp_receiver_->CNAME(kSenderSsrc, cName));
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EXPECT_EQ(0, strncmp(cName, "alice@host", RTCP_CNAME_SIZE));
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}
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TEST_F(RtcpReceiverTest, InjectByePacket) {
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const uint32_t kSenderSsrc = 0x123456;
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rtcp::Sdes sdes;
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sdes.WithCName(kSenderSsrc, "alice@host");
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rtcp::RawPacket p = sdes.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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char cName[RTCP_CNAME_SIZE];
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EXPECT_EQ(0, rtcp_receiver_->CNAME(kSenderSsrc, cName));
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// Verify that BYE removes the CNAME.
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rtcp::Bye bye;
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bye.From(kSenderSsrc);
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rtcp::RawPacket p2 = bye.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p2.buffer(), p2.buffer_length()));
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EXPECT_EQ(-1, rtcp_receiver_->CNAME(kSenderSsrc, cName));
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}
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TEST_F(RtcpReceiverTest, InjectPliPacket) {
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const uint32_t kSourceSsrc = 0x123456;
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std::set<uint32_t> ssrcs;
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ssrcs.insert(kSourceSsrc);
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rtcp_receiver_->SetSsrcs(kSourceSsrc, ssrcs);
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rtcp::Pli pli;
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pli.To(kSourceSsrc);
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rtcp::RawPacket p = pli.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kRtcpPli, rtcp_packet_info_.rtcpPacketTypeFlags);
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}
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TEST_F(RtcpReceiverTest, PliPacketNotToUsIgnored) {
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const uint32_t kSourceSsrc = 0x123456;
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std::set<uint32_t> ssrcs;
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ssrcs.insert(kSourceSsrc);
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rtcp_receiver_->SetSsrcs(kSourceSsrc, ssrcs);
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rtcp::Pli pli;
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pli.To(kSourceSsrc + 1);
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rtcp::RawPacket p = pli.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(0U, rtcp_packet_info_.rtcpPacketTypeFlags);
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}
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TEST_F(RtcpReceiverTest, InjectFirPacket) {
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const uint32_t kSourceSsrc = 0x123456;
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std::set<uint32_t> ssrcs;
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ssrcs.insert(kSourceSsrc);
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rtcp_receiver_->SetSsrcs(kSourceSsrc, ssrcs);
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rtcp::Fir fir;
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fir.To(kSourceSsrc);
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rtcp::RawPacket p = fir.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kRtcpFir, rtcp_packet_info_.rtcpPacketTypeFlags);
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}
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TEST_F(RtcpReceiverTest, FirPacketNotToUsIgnored) {
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const uint32_t kSourceSsrc = 0x123456;
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std::set<uint32_t> ssrcs;
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ssrcs.insert(kSourceSsrc);
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rtcp_receiver_->SetSsrcs(kSourceSsrc, ssrcs);
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rtcp::Fir fir;
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fir.To(kSourceSsrc + 1);
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rtcp::RawPacket p = fir.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(0U, rtcp_packet_info_.rtcpPacketTypeFlags);
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}
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TEST_F(RtcpReceiverTest, InjectSliPacket) {
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rtcp::Sli sli;
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sli.WithPictureId(40);
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rtcp::RawPacket p = sli.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p.buffer(), p.buffer_length()));
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EXPECT_EQ(kRtcpSli, rtcp_packet_info_.rtcpPacketTypeFlags);
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EXPECT_EQ(40, rtcp_packet_info_.sliPictureId);
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}
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TEST_F(RtcpReceiverTest, XrPacketWithZeroReportBlocksIgnored) {
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rtcp::Xr xr;
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xr.From(0x2345);
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@ -446,58 +705,6 @@ TEST_F(RtcpReceiverTest, TmmbrReceivedWithNoIncomingPacket) {
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EXPECT_EQ(-1, rtcp_receiver_->TMMBRReceived(0, 0, NULL));
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}
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TEST_F(RtcpReceiverTest, TwoReportBlocks) {
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const uint32_t kSenderSsrc = 0x10203;
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const uint32_t kSourceSsrcs[] = {0x40506, 0x50607};
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const uint16_t kSequenceNumbers[] = {10, 12423};
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const int kNumSsrcs = sizeof(kSourceSsrcs) / sizeof(kSourceSsrcs[0]);
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std::set<uint32_t> ssrcs(kSourceSsrcs, kSourceSsrcs + kNumSsrcs);
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rtcp_receiver_->SetSsrcs(kSourceSsrcs[0], ssrcs);
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rtcp::ReportBlock rb1;
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rb1.To(kSourceSsrcs[0]);
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rb1.WithExtHighestSeqNum(kSequenceNumbers[0]);
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rb1.WithFractionLost(10);
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rb1.WithCumulativeLost(5);
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rtcp::ReportBlock rb2;
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rb2.To(kSourceSsrcs[1]);
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rb2.WithExtHighestSeqNum(kSequenceNumbers[1]);
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rtcp::ReceiverReport rr1;
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rr1.From(kSenderSsrc);
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rr1.WithReportBlock(&rb1);
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rr1.WithReportBlock(&rb2);
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rtcp::RawPacket p1 = rr1.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p1.buffer(), p1.buffer_length()));
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ASSERT_EQ(2u, rtcp_packet_info_.report_blocks.size());
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EXPECT_EQ(10, rtcp_packet_info_.report_blocks.front().fractionLost);
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EXPECT_EQ(0, rtcp_packet_info_.report_blocks.back().fractionLost);
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rtcp::ReportBlock rb3;
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rb3.To(kSourceSsrcs[0]);
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rb3.WithExtHighestSeqNum(kSequenceNumbers[0]);
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rtcp::ReportBlock rb4;
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rb4.To(kSourceSsrcs[1]);
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rb4.WithExtHighestSeqNum(kSequenceNumbers[1]);
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rb4.WithFractionLost(20);
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rb4.WithCumulativeLost(10);
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rtcp::ReceiverReport rr2;
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rr2.From(kSenderSsrc);
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rr2.WithReportBlock(&rb3);
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rr2.WithReportBlock(&rb4);
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rtcp::RawPacket p2 = rr2.Build();
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EXPECT_EQ(0, InjectRtcpPacket(p2.buffer(), p2.buffer_length()));
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ASSERT_EQ(2u, rtcp_packet_info_.report_blocks.size());
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EXPECT_EQ(0, rtcp_packet_info_.report_blocks.front().fractionLost);
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EXPECT_EQ(20, rtcp_packet_info_.report_blocks.back().fractionLost);
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}
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TEST_F(RtcpReceiverTest, TmmbrPacketAccepted) {
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const uint32_t kMediaFlowSsrc = 0x2040608;
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const uint32_t kSenderSsrc = 0x10203;
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