| /* |
| * Copyright 2009 The WebRTC project authors. All Rights Reserved. |
| * |
| * Use of this source code is governed by a BSD-style license |
| * that can be found in the LICENSE file in the root of the source |
| * tree. An additional intellectual property rights grant can be found |
| * in the file PATENTS. All contributing project authors may |
| * be found in the AUTHORS file in the root of the source tree. |
| */ |
| |
| #include "pc/channel.h" |
| |
| #include <cstddef> |
| #include <cstdint> |
| #include <memory> |
| #include <optional> |
| #include <span> |
| #include <string> |
| #include <utility> |
| #include <vector> |
| |
| #include "absl/functional/any_invocable.h" |
| #include "api/audio_options.h" |
| #include "api/crypto/crypto_options.h" |
| #include "api/environment/environment.h" |
| #include "api/jsep.h" |
| #include "api/media_types.h" |
| #include "api/rtc_error.h" |
| #include "api/rtp_header_extension_id.h" |
| #include "api/rtp_headers.h" |
| #include "api/rtp_parameters.h" |
| #include "api/rtp_transceiver_direction.h" |
| #include "api/scoped_refptr.h" |
| #include "api/sequence_checker.h" |
| #include "api/task_queue/pending_task_safety_flag.h" |
| #include "media/base/codec.h" |
| #include "media/base/fake_media_engine.h" |
| #include "media/base/fake_rtp.h" |
| #include "media/base/media_channel.h" |
| #include "media/base/media_constants.h" |
| #include "media/base/rid_description.h" |
| #include "media/base/stream_params.h" |
| #include "p2p/base/candidate_pair_interface.h" |
| #include "p2p/base/p2p_constants.h" |
| #include "p2p/base/packet_transport_internal.h" |
| #include "p2p/dtls/dtls_transport_internal.h" |
| #include "p2p/dtls/fake_dtls_transport.h" |
| #include "p2p/test/fake_packet_transport.h" |
| #include "pc/dtls_srtp_transport.h" |
| #include "pc/rtp_transport.h" |
| #include "pc/rtp_transport_internal.h" |
| #include "pc/session_description.h" |
| #include "rtc_base/async_packet_socket.h" |
| #include "rtc_base/buffer.h" |
| #include "rtc_base/byte_order.h" |
| #include "rtc_base/checks.h" |
| #include "rtc_base/rtc_certificate.h" |
| #include "rtc_base/socket.h" |
| #include "rtc_base/ssl_identity.h" |
| #include "rtc_base/task_queue_for_test.h" |
| #include "rtc_base/thread.h" |
| #include "rtc_base/unique_id_generator.h" |
| #include "test/create_test_environment.h" |
| #include "test/gmock.h" |
| #include "test/gtest.h" |
| #include "test/run_loop.h" |
| |
| namespace webrtc { |
| namespace { |
| |
| using ::testing::AllOf; |
| using ::testing::ElementsAre; |
| using ::testing::Field; |
| using ::testing::HasSubstr; |
| |
| const Codec kPcmuCodec = CreateAudioCodec(0, "PCMU", 8000, 1); |
| const Codec kPcmaCodec = CreateAudioCodec(8, "PCMA", 8000, 1); |
| const Codec kH264Codec = CreateVideoCodec(97, "H264"); |
| const Codec kH264SvcCodec = CreateVideoCodec(99, "H264-SVC"); |
| constexpr uint32_t kSsrc1 = 0x1111; |
| constexpr uint32_t kSsrc2 = 0x2222; |
| constexpr uint32_t kSsrc3 = 0x3333; |
| constexpr uint32_t kSsrc4 = 0x4444; |
| constexpr int kAudioPts[] = {0, 8}; |
| constexpr int kVideoPts[] = {97, 99}; |
| constexpr char kAudioMid[] = "0"; |
| constexpr char kVideoMid[] = "1"; |
| enum class NetworkIsWorker { Yes, No }; |
| |
| template <class ChannelT, |
| class MediaSendChannelT, |
| class MediaReceiveChannelT, |
| class MediaSendChannelInterfaceT, |
| class MediaReceiveChannelInterfaceT, |
| class ContentT, |
| class MediaInfoT, |
| class OptionsT> |
| class Traits { |
| public: |
| using Channel = ChannelT; |
| using MediaSendChannel = MediaSendChannelT; |
| using MediaReceiveChannel = MediaReceiveChannelT; |
| using MediaSendChannelInterface = MediaSendChannelInterfaceT; |
| using MediaReceiveChannelInterface = MediaReceiveChannelInterfaceT; |
| using Content = ContentT; |
| using MediaInfo = MediaInfoT; |
| using Options = OptionsT; |
| }; |
| |
| class VoiceTraits : public Traits<BaseChannel, |
| FakeVoiceMediaSendChannel, |
| FakeVoiceMediaReceiveChannel, |
| VoiceMediaSendChannelInterface, |
| VoiceMediaReceiveChannelInterface, |
| AudioContentDescription, |
| VoiceMediaInfo, |
| AudioOptions> {}; |
| |
| class VideoTraits : public Traits<BaseChannel, |
| FakeVideoMediaSendChannel, |
| FakeVideoMediaReceiveChannel, |
| VideoMediaSendChannelInterface, |
| VideoMediaReceiveChannelInterface, |
| VideoContentDescription, |
| VideoMediaInfo, |
| VideoOptions> {}; |
| |
| // Base class for Voice/Video tests |
| template <class T> |
| class ChannelTest : public ::testing::Test { |
| public: |
| enum Flags { |
| RTCP_MUX = 0x1, |
| SSRC_MUX = 0x8, |
| DTLS = 0x10, |
| // Use BaseChannel with PacketTransportInternal rather than |
| // DtlsTransportInternal. |
| RAW_PACKET_TRANSPORT = 0x20, |
| }; |
| |
| ChannelTest(bool verify_playout, |
| std::span<const uint8_t> rtp_data, |
| std::span<const uint8_t> rtcp_data, |
| NetworkIsWorker network_is_worker) |
| : verify_playout_(verify_playout), |
| rtp_packet_(rtp_data.data(), rtp_data.size()), |
| rtcp_packet_(rtcp_data.data(), rtcp_data.size()) { |
| if (network_is_worker == NetworkIsWorker::Yes) { |
| network_thread_ = Thread::Current(); |
| } else { |
| network_thread_keeper_ = Thread::Create(); |
| network_thread_keeper_->SetName("Network", nullptr); |
| network_thread_ = network_thread_keeper_.get(); |
| } |
| RTC_DCHECK(network_thread_); |
| } |
| |
| ~ChannelTest() override { |
| if (network_thread_) { |
| SendTask(network_thread_, [this]() { |
| network_thread_safety_->SetNotAlive(); |
| DeinitChannels(); |
| |
| // Transports must be created and destroyed on the network thread. |
| fake_rtp_dtls_transport1_ = nullptr; |
| fake_rtcp_dtls_transport1_ = nullptr; |
| fake_rtp_dtls_transport2_ = nullptr; |
| fake_rtcp_dtls_transport2_ = nullptr; |
| fake_rtp_packet_transport1_ = nullptr; |
| fake_rtcp_packet_transport1_ = nullptr; |
| fake_rtp_packet_transport2_ = nullptr; |
| fake_rtcp_packet_transport2_ = nullptr; |
| rtp_transport1_ = nullptr; |
| rtp_transport2_ = nullptr; |
| new_rtp_transport_ = nullptr; |
| }); |
| } |
| } |
| |
| void CreateChannels(int flags1, int flags2) { |
| CreateChannels(std::make_unique<typename T::MediaSendChannel>( |
| typename T::Options(), network_thread_), |
| std::make_unique<typename T::MediaReceiveChannel>( |
| typename T::Options(), network_thread_), |
| std::make_unique<typename T::MediaSendChannel>( |
| typename T::Options(), network_thread_), |
| std::make_unique<typename T::MediaReceiveChannel>( |
| typename T::Options(), network_thread_), |
| flags1, flags2); |
| } |
| |
| void CreateChannels(std::unique_ptr<typename T::MediaSendChannel> ch1s, |
| std::unique_ptr<typename T::MediaReceiveChannel> ch1r, |
| std::unique_ptr<typename T::MediaSendChannel> ch2s, |
| std::unique_ptr<typename T::MediaReceiveChannel> ch2r, |
| int flags1, |
| int flags2) { |
| RTC_DCHECK(!channel1_); |
| RTC_DCHECK(!channel2_); |
| |
| // Network thread is started in CreateChannels, to allow the test to |
| // configure a fake clock before any threads are spawned and attempt to |
| // access the time. |
| if (network_thread_keeper_) { |
| network_thread_keeper_->Start(); |
| } |
| |
| // Make sure if using raw packet transports, they're used for both |
| // channels. |
| RTC_DCHECK_EQ(flags1 & RAW_PACKET_TRANSPORT, flags2 & RAW_PACKET_TRANSPORT); |
| Thread* worker_thread = Thread::Current(); |
| |
| network_thread_->BlockingCall([&] { |
| // Based on flags, create fake DTLS or raw packet transports. |
| |
| if (flags1 & RAW_PACKET_TRANSPORT) { |
| fake_rtp_packet_transport1_ = |
| std::make_unique<FakePacketTransport>(env_, "channel1_rtp"); |
| if (!(flags1 & RTCP_MUX)) { |
| fake_rtcp_packet_transport1_ = |
| std::make_unique<FakePacketTransport>(env_, "channel1_rtcp"); |
| } |
| } else { |
| // Confirmed to work with KT_RSA and KT_ECDSA. |
| fake_rtp_dtls_transport1_ = std::make_unique<FakeDtlsTransport>( |
| env_, "channel1", ICE_CANDIDATE_COMPONENT_RTP, network_thread_); |
| if (!(flags1 & RTCP_MUX)) { |
| fake_rtcp_dtls_transport1_ = std::make_unique<FakeDtlsTransport>( |
| env_, "channel1", ICE_CANDIDATE_COMPONENT_RTCP, network_thread_); |
| } |
| if (flags1 & DTLS) { |
| auto cert1 = RTCCertificate::Create( |
| SSLIdentity::Create("session1", KT_DEFAULT)); |
| fake_rtp_dtls_transport1_->SetLocalCertificate(cert1); |
| if (fake_rtcp_dtls_transport1_) { |
| fake_rtcp_dtls_transport1_->SetLocalCertificate(cert1); |
| } |
| } |
| } |
| // Based on flags, create fake DTLS or raw packet transports. |
| if (flags2 & RAW_PACKET_TRANSPORT) { |
| fake_rtp_packet_transport2_ = |
| std::make_unique<FakePacketTransport>(env_, "channel2_rtp"); |
| if (!(flags2 & RTCP_MUX)) { |
| fake_rtcp_packet_transport2_ = |
| std::make_unique<FakePacketTransport>(env_, "channel2_rtcp"); |
| } |
| } else { |
| // Confirmed to work with KT_RSA and KT_ECDSA. |
| fake_rtp_dtls_transport2_ = std::make_unique<FakeDtlsTransport>( |
| env_, "channel2", ICE_CANDIDATE_COMPONENT_RTP, network_thread_); |
| if (!(flags2 & RTCP_MUX)) { |
| fake_rtcp_dtls_transport2_ = std::make_unique<FakeDtlsTransport>( |
| env_, "channel2", ICE_CANDIDATE_COMPONENT_RTCP, network_thread_); |
| } |
| if (flags2 & DTLS) { |
| auto cert2 = RTCCertificate::Create( |
| SSLIdentity::Create("session2", KT_DEFAULT)); |
| fake_rtp_dtls_transport2_->SetLocalCertificate(cert2); |
| if (fake_rtcp_dtls_transport2_) { |
| fake_rtcp_dtls_transport2_->SetLocalCertificate(cert2); |
| } |
| } |
| } |
| rtp_transport1_ = CreateRtpTransportBasedOnFlags( |
| fake_rtp_packet_transport1_.get(), fake_rtcp_packet_transport1_.get(), |
| fake_rtp_dtls_transport1_.get(), fake_rtcp_dtls_transport1_.get(), |
| flags1); |
| rtp_transport2_ = CreateRtpTransportBasedOnFlags( |
| fake_rtp_packet_transport2_.get(), fake_rtcp_packet_transport2_.get(), |
| fake_rtp_dtls_transport2_.get(), fake_rtcp_dtls_transport2_.get(), |
| flags2); |
| }); |
| |
| channel1_ = CreateChannel(worker_thread, network_thread_, std::move(ch1s), |
| std::move(ch1r), rtp_transport1_.get(), flags1); |
| channel2_ = CreateChannel(worker_thread, network_thread_, std::move(ch2s), |
| std::move(ch2r), rtp_transport2_.get(), flags2); |
| CreateContent(flags1, kPcmuCodec, kH264Codec, &local_media_content1_); |
| CreateContent(flags2, kPcmuCodec, kH264Codec, &local_media_content2_); |
| CopyContent(local_media_content1_, &remote_media_content1_); |
| CopyContent(local_media_content2_, &remote_media_content2_); |
| |
| // Add stream information (SSRC) to the local content but not to the remote |
| // content. This means that we per default know the SSRC of what we send but |
| // not what we receive. |
| AddLegacyStreamInContent(kSsrc1, flags1, &local_media_content1_); |
| AddLegacyStreamInContent(kSsrc2, flags2, &local_media_content2_); |
| |
| // If SSRC_MUX is used we also need to know the SSRC of the incoming stream. |
| if (flags1 & SSRC_MUX) { |
| AddLegacyStreamInContent(kSsrc1, flags1, &remote_media_content1_); |
| } |
| if (flags2 & SSRC_MUX) { |
| AddLegacyStreamInContent(kSsrc2, flags2, &remote_media_content2_); |
| } |
| } |
| |
| std::unique_ptr<typename T::Channel> CreateChannel( |
| Thread* worker_thread, |
| Thread* network_thread, |
| std::unique_ptr<typename T::MediaSendChannel> ch_send, |
| std::unique_ptr<typename T::MediaReceiveChannel> ch_receive, |
| RtpTransportInternal* rtp_transport, |
| int flags); |
| |
| std::unique_ptr<RtpTransportInternal> CreateRtpTransportBasedOnFlags( |
| PacketTransportInternal* rtp_packet_transport, |
| PacketTransportInternal* rtcp_packet_transport, |
| DtlsTransportInternal* rtp_dtls_transport, |
| DtlsTransportInternal* rtcp_dtls_transport, |
| int flags) { |
| if (flags & RTCP_MUX) { |
| rtcp_packet_transport = nullptr; |
| rtcp_dtls_transport = nullptr; |
| } |
| |
| if (flags & DTLS) { |
| return CreateDtlsSrtpTransport(rtp_dtls_transport, rtcp_dtls_transport); |
| } else { |
| if (flags & RAW_PACKET_TRANSPORT) { |
| return CreateUnencryptedTransport(rtp_packet_transport, |
| rtcp_packet_transport); |
| } else { |
| return CreateUnencryptedTransport(rtp_dtls_transport, |
| rtcp_dtls_transport); |
| } |
| } |
| } |
| |
| // Unininitializes the channels on the network thread. |
| void DeinitChannels() { |
| if (!channel1_ && !channel2_) |
| return; |
| SendTask(network_thread_, [this]() { |
| if (channel1_) { |
| RTC_DCHECK_RUN_ON(channel1_->network_thread()); |
| channel1_->SetRtpTransport(nullptr); |
| } |
| if (channel2_) { |
| RTC_DCHECK_RUN_ON(channel2_->network_thread()); |
| channel2_->SetRtpTransport(nullptr); |
| } |
| }); |
| } |
| |
| std::unique_ptr<RtpTransport> CreateUnencryptedTransport( |
| PacketTransportInternal* rtp_packet_transport, |
| PacketTransportInternal* rtcp_packet_transport) { |
| auto rtp_transport = std::make_unique<RtpTransport>( |
| rtcp_packet_transport == nullptr, env_.field_trials()); |
| |
| SendTask(network_thread_, |
| [&rtp_transport, rtp_packet_transport, rtcp_packet_transport] { |
| rtp_transport->SetRtpPacketTransport(rtp_packet_transport); |
| if (rtcp_packet_transport) { |
| rtp_transport->SetRtcpPacketTransport(rtcp_packet_transport); |
| } |
| }); |
| return rtp_transport; |
| } |
| |
| std::unique_ptr<DtlsSrtpTransport> CreateDtlsSrtpTransport( |
| DtlsTransportInternal* rtp_dtls_transport, |
| DtlsTransportInternal* rtcp_dtls_transport) { |
| auto dtls_srtp_transport = std::make_unique<DtlsSrtpTransport>( |
| rtcp_dtls_transport == nullptr, env_.field_trials()); |
| |
| SendTask(network_thread_, |
| [&dtls_srtp_transport, rtp_dtls_transport, rtcp_dtls_transport] { |
| dtls_srtp_transport->SetDtlsTransports(rtp_dtls_transport, |
| rtcp_dtls_transport); |
| }); |
| return dtls_srtp_transport; |
| } |
| |
| void ConnectFakeTransports() { |
| SendTask(network_thread_, [this] { |
| bool asymmetric = false; |
| // Depending on test flags, could be using DTLS or raw packet transport. |
| if (fake_rtp_dtls_transport1_ && fake_rtp_dtls_transport2_) { |
| fake_rtp_dtls_transport1_->SetDestination( |
| fake_rtp_dtls_transport2_.get(), asymmetric); |
| } |
| if (fake_rtcp_dtls_transport1_ && fake_rtcp_dtls_transport2_) { |
| fake_rtcp_dtls_transport1_->SetDestination( |
| fake_rtcp_dtls_transport2_.get(), asymmetric); |
| } |
| if (fake_rtp_packet_transport1_ && fake_rtp_packet_transport2_) { |
| fake_rtp_packet_transport1_->SetDestination( |
| fake_rtp_packet_transport2_.get(), asymmetric); |
| } |
| if (fake_rtcp_packet_transport1_ && fake_rtcp_packet_transport2_) { |
| fake_rtcp_packet_transport1_->SetDestination( |
| fake_rtcp_packet_transport2_.get(), asymmetric); |
| } |
| }); |
| // The transport becoming writable will asynchronously update the send state |
| // on the worker thread; since this test uses the main thread as the worker |
| // thread, we must process the message queue for this to occur. |
| WaitForThreads(); |
| } |
| |
| bool SendInitiate() { |
| RTCError result = |
| channel1_->SetLocalContent(&local_media_content1_, SdpType::kOffer); |
| if (result.ok()) { |
| channel1_->Enable(true); |
| FlushCurrentThread(); |
| result = |
| channel2_->SetRemoteContent(&remote_media_content1_, SdpType::kOffer); |
| if (result.ok()) { |
| ConnectFakeTransports(); |
| result = channel2_->SetLocalContent(&local_media_content2_, |
| SdpType::kAnswer); |
| } |
| } |
| return result.ok(); |
| } |
| |
| bool SendAccept() { |
| channel2_->Enable(true); |
| FlushCurrentThread(); |
| return channel1_ |
| ->SetRemoteContent(&remote_media_content2_, SdpType::kAnswer) |
| .ok(); |
| } |
| |
| bool SendOffer() { |
| RTCError result = |
| channel1_->SetLocalContent(&local_media_content1_, SdpType::kOffer); |
| if (result.ok()) { |
| channel1_->Enable(true); |
| result = |
| channel2_->SetRemoteContent(&remote_media_content1_, SdpType::kOffer); |
| } |
| return result.ok(); |
| } |
| |
| bool SendProvisionalAnswer() { |
| RTCError result = |
| channel2_->SetLocalContent(&local_media_content2_, SdpType::kPrAnswer); |
| if (result.ok()) { |
| channel2_->Enable(true); |
| result = channel1_->SetRemoteContent(&remote_media_content2_, |
| SdpType::kPrAnswer); |
| ConnectFakeTransports(); |
| } |
| return result.ok(); |
| } |
| |
| bool SendFinalAnswer() { |
| RTCError result = |
| channel2_->SetLocalContent(&local_media_content2_, SdpType::kAnswer); |
| if (result.ok()) { |
| result = channel1_->SetRemoteContent(&remote_media_content2_, |
| SdpType::kAnswer); |
| } |
| return result.ok(); |
| } |
| |
| void SendRtp(typename T::MediaSendChannel* media_channel, Buffer data) { |
| network_thread_->PostTask(SafeTask( |
| network_thread_safety_, [media_channel, data = std::move(data)]() { |
| media_channel->SendPacket(data.data(), data.size(), |
| AsyncSocketPacketOptions()); |
| })); |
| } |
| |
| void SendRtp1() { SendRtp1(Buffer(rtp_packet_.data(), rtp_packet_.size())); } |
| |
| void SendRtp1(Buffer data) { |
| SendRtp(media_send_channel1_impl(), std::move(data)); |
| } |
| |
| void SendRtp2() { SendRtp2(Buffer(rtp_packet_.data(), rtp_packet_.size())); } |
| |
| void SendRtp2(Buffer data) { |
| SendRtp(media_send_channel2_impl(), std::move(data)); |
| } |
| |
| // Methods to send custom data. |
| void SendCustomRtp1(uint32_t ssrc, int sequence_number, int pl_type = -1) { |
| SendRtp1(CreateRtpData(ssrc, sequence_number, pl_type)); |
| } |
| void SendCustomRtp2(uint32_t ssrc, int sequence_number, int pl_type = -1) { |
| SendRtp2(CreateRtpData(ssrc, sequence_number, pl_type)); |
| } |
| |
| bool CheckRtp1() { |
| return media_receive_channel1_impl()->CheckRtp(rtp_packet_.data(), |
| rtp_packet_.size()); |
| } |
| bool CheckRtp2() { |
| return media_receive_channel2_impl()->CheckRtp(rtp_packet_.data(), |
| rtp_packet_.size()); |
| } |
| // Methods to check custom data. |
| bool CheckCustomRtp1(uint32_t ssrc, int sequence_number, int pl_type = -1) { |
| Buffer data = CreateRtpData(ssrc, sequence_number, pl_type); |
| return media_receive_channel1_impl()->CheckRtp(data.data(), data.size()); |
| } |
| bool CheckCustomRtp2(uint32_t ssrc, int sequence_number, int pl_type = -1) { |
| Buffer data = CreateRtpData(ssrc, sequence_number, pl_type); |
| return media_receive_channel2_impl()->CheckRtp(data.data(), data.size()); |
| } |
| Buffer CreateRtpData(uint32_t ssrc, int sequence_number, int pl_type) { |
| Buffer data(rtp_packet_.data(), rtp_packet_.size()); |
| // Set SSRC in the rtp packet copy. |
| SetBE32(std::span<uint8_t>(data).subspan(8, 4), ssrc); |
| SetBE16(std::span<uint8_t>(data).subspan(2, 2), sequence_number); |
| if (pl_type >= 0) { |
| Set8(data, 1, static_cast<uint8_t>(pl_type)); |
| } |
| return data; |
| } |
| |
| bool CheckNoRtp1() { return media_send_channel1_impl()->CheckNoRtp(); } |
| bool CheckNoRtp2() { return media_send_channel2_impl()->CheckNoRtp(); } |
| |
| void CreateContent(int flags, |
| const Codec& audio_codec, |
| const Codec& video_codec, |
| typename T::Content* content) { |
| // overridden in specialized classes |
| } |
| void CopyContent(const typename T::Content& source, |
| typename T::Content* content) { |
| // overridden in specialized classes |
| } |
| |
| // Creates a MediaContent with one stream. |
| // kPcmuCodec is used as audio codec and kH264Codec is used as video codec. |
| typename T::Content* CreateMediaContentWithStream(uint32_t ssrc) { |
| typename T::Content* content = new typename T::Content(); |
| CreateContent(0, kPcmuCodec, kH264Codec, content); |
| AddLegacyStreamInContent(ssrc, 0, content); |
| return content; |
| } |
| |
| // Will manage the lifetime of a CallThread, making sure it's |
| // destroyed before this object goes out of scope. |
| class ScopedCallThread { |
| public: |
| explicit ScopedCallThread(absl::AnyInvocable<void() &&> functor) |
| : thread_(Thread::Create()) { |
| thread_->Start(); |
| thread_->PostTask(std::move(functor)); |
| } |
| |
| ~ScopedCallThread() { thread_->Stop(); } |
| |
| Thread* thread() { return thread_.get(); } |
| |
| private: |
| std::unique_ptr<Thread> thread_; |
| }; |
| |
| CandidatePairInterface* last_selected_candidate_pair() { |
| return last_selected_candidate_pair_; |
| } |
| |
| void AddLegacyStreamInContent(uint32_t ssrc, |
| int flags, |
| typename T::Content* content) { |
| // Base implementation. |
| } |
| |
| // Utility method that calls BaseChannel::srtp_active() on the network thread |
| // and returns the result. The `srtp_active()` state is maintained on the |
| // network thread, which callers need to factor in. |
| bool IsSrtpActive(std::unique_ptr<typename T::Channel>& channel) { |
| RTC_DCHECK(channel.get()); |
| bool result; |
| SendTask(network_thread_, [&] { result = channel->srtp_active(); }); |
| return result; |
| } |
| |
| // Returns true iff the transport is set for a channel and rtcp_mux_enabled() |
| // returns true. |
| bool IsRtcpMuxEnabled(std::unique_ptr<typename T::Channel>& channel) { |
| RTC_DCHECK(channel.get()); |
| bool result; |
| SendTask(network_thread_, [&] { |
| result = channel->rtp_transport() && |
| channel->rtp_transport()->rtcp_mux_enabled(); |
| }); |
| return result; |
| } |
| |
| // Tests that can be used by derived classes. |
| |
| // Basic sanity check. |
| void TestInit() { |
| CreateChannels(0, 0); |
| EXPECT_FALSE(IsSrtpActive(channel1_)); |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel1_impl()->send_codecs().empty()); |
| EXPECT_TRUE(media_receive_channel1_impl()->recv_streams().empty()); |
| EXPECT_TRUE(media_send_channel1_impl()->rtp_packets().empty()); |
| // Basic sanity test for send and receive channel objects |
| EXPECT_EQ(channel1_->media_send_channel()->media_type(), |
| media_send_channel1_impl()->media_type()); |
| EXPECT_EQ(channel1_->media_receive_channel()->media_type(), |
| media_receive_channel1_impl()->media_type()); |
| EXPECT_EQ(channel1_->media_send_channel()->media_type(), |
| channel1_->media_receive_channel()->media_type()); |
| } |
| |
| // Test that SetLocalContent and SetRemoteContent properly configure |
| // the codecs. |
| void TestSetContents() { |
| CreateChannels(0, 0); |
| typename T::Content content; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content, SdpType::kOffer).ok()); |
| EXPECT_EQ(0U, media_send_channel1_impl()->send_codecs().size()); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| ASSERT_EQ(1U, media_send_channel1_impl()->send_codecs().size()); |
| EXPECT_EQ(content.codecs()[0], |
| media_send_channel1_impl()->send_codecs()[0]); |
| } |
| |
| void TestRemovesExtensionNotPresentInRemoteAnswer() { |
| typename T::Content local; |
| typename T::Content remote; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local); |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &remote); |
| local.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kTransportSequenceNumberUri, |
| RtpHeaderExtensionId(1)), |
| RtpExtension(RtpExtension::kVideoRotationUri, RtpHeaderExtensionId(2)), |
| }); |
| remote.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kVideoRotationUri, RtpHeaderExtensionId(2)), |
| }); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kOffer).ok()); |
| ASSERT_TRUE(channel1_->SetRemoteContent(&remote, SdpType::kAnswer).ok()); |
| |
| EXPECT_THAT(media_receive_channel1_impl()->recv_extensions(), |
| ElementsAre(AllOf( |
| Field("id", &RtpExtension::id, RtpHeaderExtensionId(2)), |
| Field("uri", &RtpExtension::uri, |
| RtpExtension::kVideoRotationUri)))); |
| EXPECT_THAT(media_send_channel1_impl()->send_extensions(), |
| ElementsAre(AllOf( |
| Field("id", &RtpExtension::id, RtpHeaderExtensionId(2)), |
| Field("uri", &RtpExtension::uri, |
| RtpExtension::kVideoRotationUri)))); |
| } |
| void TestRemovesExtensionNotPresentInLocalAnswer() { |
| typename T::Content local; |
| typename T::Content remote; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local); |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &remote); |
| local.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kVideoRotationUri, RtpHeaderExtensionId(1)), |
| }); |
| remote.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kTransportSequenceNumberUri, |
| RtpHeaderExtensionId(2)), |
| RtpExtension(RtpExtension::kVideoRotationUri, RtpHeaderExtensionId(1)), |
| }); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetRemoteContent(&remote, SdpType::kOffer).ok()); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kAnswer).ok()); |
| |
| EXPECT_THAT(media_receive_channel1_impl()->recv_extensions(), |
| ElementsAre(AllOf( |
| Field("id", &RtpExtension::id, RtpHeaderExtensionId(1)), |
| Field("uri", &RtpExtension::uri, |
| RtpExtension::kVideoRotationUri)))); |
| EXPECT_THAT(media_send_channel1_impl()->send_extensions(), |
| ElementsAre(AllOf( |
| Field("id", &RtpExtension::id, RtpHeaderExtensionId(1)), |
| Field("uri", &RtpExtension::uri, |
| RtpExtension::kVideoRotationUri)))); |
| } |
| |
| void TestDuplicateRtpHeaderExtensionIds() { |
| typename T::Content local; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local); |
| local.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kTransportSequenceNumberUri, |
| RtpHeaderExtensionId(1)), |
| RtpExtension(RtpExtension::kVideoRotationUri, RtpHeaderExtensionId(1)), |
| }); |
| |
| CreateChannels(0, 0); |
| RTCError error = channel1_->SetLocalContent(&local, SdpType::kOffer); |
| EXPECT_FALSE(error.ok()); |
| EXPECT_THAT(error.message(), HasSubstr("Duplicate extension ID")); |
| } |
| |
| void TestRtpHeaderExtensionIdOutOfRangeHigh() { |
| typename T::Content local; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local); |
| local.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kTransportSequenceNumberUri, |
| RtpHeaderExtensionId(256)), |
| }); |
| |
| CreateChannels(0, 0); |
| RTCError error = channel1_->SetLocalContent(&local, SdpType::kOffer); |
| EXPECT_FALSE(error.ok()); |
| EXPECT_THAT(error.message(), HasSubstr("Bad extension ID")); |
| } |
| |
| void TestRtpHeaderExtensionIdOutOfRangeLow() { |
| typename T::Content local; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local); |
| local.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kTransportSequenceNumberUri, |
| RtpHeaderExtensionId(0)), |
| }); |
| |
| CreateChannels(0, 0); |
| RTCError error = channel1_->SetLocalContent(&local, SdpType::kOffer); |
| EXPECT_FALSE(error.ok()); |
| EXPECT_THAT(error.message(), HasSubstr("Bad extension ID")); |
| } |
| |
| void TestRtpHeaderExtensionIdReassignment() { |
| typename T::Content local; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local); |
| local.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kTransportSequenceNumberUri, |
| RtpHeaderExtensionId(1)), |
| }); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kOffer).ok()); |
| |
| typename T::Content local_updated; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local_updated); |
| local_updated.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kVideoRotationUri, RtpHeaderExtensionId(1)), |
| }); |
| RTCError error = |
| channel1_->SetLocalContent(&local_updated, SdpType::kOffer); |
| EXPECT_FALSE(error.ok()); |
| EXPECT_THAT(error.message(), HasSubstr("RTP extension ID reassignment")); |
| } |
| |
| void TestRtpHeaderExtensionIdHistoryReassignment() { |
| typename T::Content local; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local); |
| local.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kTransportSequenceNumberUri, |
| RtpHeaderExtensionId(1)), |
| }); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kOffer).ok()); |
| |
| typename T::Content local_empty; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local_empty); |
| local_empty.set_rtp_header_extensions({}); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local_empty, SdpType::kOffer).ok()); |
| |
| typename T::Content local_updated; |
| CreateContent(/*flags=*/0, kPcmuCodec, kH264Codec, &local_updated); |
| local_updated.set_rtp_header_extensions({ |
| RtpExtension(RtpExtension::kVideoRotationUri, RtpHeaderExtensionId(1)), |
| }); |
| RTCError error = |
| channel1_->SetLocalContent(&local_updated, SdpType::kOffer); |
| // Expected to succeed because the mapping for ID 1 was cleared by the |
| // previous SetLocalContent call (which set extensions to empty). |
| // RtpTransport allows reuse when not in use by any active MID. |
| EXPECT_TRUE(error.ok()); |
| } |
| |
| // Test that SetLocalContent and SetRemoteContent properly configure |
| // extmap-allow-mixed. |
| void TestSetContentsExtmapAllowMixedCaller(bool offer, bool answer) { |
| // For a caller, SetLocalContent() is called first with an offer and next |
| // SetRemoteContent() is called with the answer. |
| CreateChannels(0, 0); |
| typename T::Content content; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| auto offer_enum = offer ? (T::Content::AttributeLevel::kSession) |
| : (T::Content::AttributeLevel::kNone); |
| auto answer_enum = answer ? (T::Content::AttributeLevel::kSession) |
| : (T::Content::AttributeLevel::kNone); |
| content.set_extmap_allow_mixed_level(offer_enum); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content, SdpType::kOffer).ok()); |
| content.set_extmap_allow_mixed_level(answer_enum); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| EXPECT_EQ(answer, media_send_channel1_impl()->ExtmapAllowMixed()); |
| } |
| |
| void TestSetContentsExtmapAllowMixedCallee(bool offer, bool answer) { |
| // For a callee, SetRemoteContent() is called first with an offer and next |
| // SetLocalContent() is called with the answer. |
| CreateChannels(0, 0); |
| typename T::Content content; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| auto offer_enum = offer ? (T::Content::AttributeLevel::kSession) |
| : (T::Content::AttributeLevel::kNone); |
| auto answer_enum = answer ? (T::Content::AttributeLevel::kSession) |
| : (T::Content::AttributeLevel::kNone); |
| content.set_extmap_allow_mixed_level(offer_enum); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kOffer).ok()); |
| content.set_extmap_allow_mixed_level(answer_enum); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content, SdpType::kAnswer).ok()); |
| EXPECT_EQ(answer, media_send_channel1_impl()->ExtmapAllowMixed()); |
| } |
| |
| // Test that SetLocalContent and SetRemoteContent properly deals |
| // with an empty offer. |
| void TestSetContentsNullOffer() { |
| CreateChannels(0, 0); |
| typename T::Content content; |
| EXPECT_TRUE(channel1_->SetLocalContent(&content, SdpType::kOffer).ok()); |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| EXPECT_EQ(0U, media_send_channel1_impl()->send_codecs().size()); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| ASSERT_EQ(1U, media_send_channel1_impl()->send_codecs().size()); |
| EXPECT_EQ(content.codecs()[0], |
| media_send_channel1_impl()->send_codecs()[0]); |
| } |
| |
| // Test that SetLocalContent and SetRemoteContent properly set RTCP |
| // mux. |
| void TestSetContentsRtcpMux() { |
| CreateChannels(0, 0); |
| typename T::Content content; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| // Both sides agree on mux. Should no longer be a separate RTCP channel. |
| content.set_rtcp_mux(true); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| // Only initiator supports mux. Should still have a separate RTCP channel. |
| EXPECT_TRUE(channel2_->SetLocalContent(&content, SdpType::kOffer).ok()); |
| content.set_rtcp_mux(false); |
| EXPECT_TRUE(channel2_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| } |
| |
| // Test that SetLocalContent and SetRemoteContent properly set RTCP |
| // reduced_size. |
| void TestSetContentsRtcpReducedSize() { |
| CreateChannels(0, 0); |
| typename T::Content content; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| // Both sides agree on reduced size. |
| content.set_rtcp_reduced_size(true); |
| // The RTCP mode is a send property and should be configured based on |
| // the remote content and not the local content. |
| EXPECT_TRUE(channel1_->SetLocalContent(&content, SdpType::kOffer).ok()); |
| EXPECT_EQ(media_receive_channel1_impl()->RtcpMode(), RtcpMode::kCompound); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| EXPECT_EQ(media_receive_channel1_impl()->RtcpMode(), |
| RtcpMode::kReducedSize); |
| // Only initiator supports reduced size. |
| EXPECT_TRUE(channel2_->SetLocalContent(&content, SdpType::kOffer).ok()); |
| EXPECT_EQ(media_receive_channel2_impl()->RtcpMode(), RtcpMode::kCompound); |
| content.set_rtcp_reduced_size(false); |
| EXPECT_TRUE(channel2_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| EXPECT_EQ(media_receive_channel2_impl()->RtcpMode(), RtcpMode::kCompound); |
| // Peer renegotiates without reduced size. |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kAnswer).ok()); |
| EXPECT_EQ(media_receive_channel1_impl()->RtcpMode(), RtcpMode::kCompound); |
| } |
| |
| // Test that SetLocalContent and SetRemoteContent properly |
| // handles adding and removing StreamParams when the action is a full |
| // SdpType::kOffer / SdpType::kAnswer. |
| void TestChangeStreamParamsInContent() { |
| StreamParams stream1; |
| stream1.id = "stream1"; |
| stream1.ssrcs.push_back(kSsrc1); |
| stream1.cname = "stream1_cname"; |
| |
| StreamParams stream2; |
| stream2.id = "stream2"; |
| stream2.ssrcs.push_back(kSsrc2); |
| stream2.cname = "stream2_cname"; |
| |
| // Setup a call where channel 1 send `stream1` to channel 2. |
| CreateChannels(0, 0); |
| typename T::Content content1; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content1); |
| content1.AddStream(stream1); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content1, SdpType::kOffer).ok()); |
| channel1_->Enable(true); |
| EXPECT_EQ(1u, media_send_channel1_impl()->send_streams().size()); |
| EXPECT_TRUE(channel2_->SetRemoteContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_EQ(1u, media_receive_channel2_impl()->recv_streams().size()); |
| ConnectFakeTransports(); |
| |
| // Channel 2 do not send anything. |
| typename T::Content content2; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content2); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content2, SdpType::kAnswer).ok()); |
| EXPECT_EQ(0u, media_receive_channel1_impl()->recv_streams().size()); |
| EXPECT_TRUE(channel2_->SetLocalContent(&content2, SdpType::kAnswer).ok()); |
| channel2_->Enable(true); |
| EXPECT_EQ(0u, media_send_channel2_impl()->send_streams().size()); |
| |
| SendCustomRtp1(kSsrc1, 0); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckCustomRtp2(kSsrc1, 0)); |
| |
| // Let channel 2 update the content by sending `stream2` and enable SRTP. |
| typename T::Content content3; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content3); |
| content3.AddStream(stream2); |
| EXPECT_TRUE(channel2_->SetLocalContent(&content3, SdpType::kOffer).ok()); |
| ASSERT_EQ(1u, media_send_channel2_impl()->send_streams().size()); |
| EXPECT_EQ(stream2, media_send_channel2_impl()->send_streams()[0]); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content3, SdpType::kOffer).ok()); |
| ASSERT_EQ(1u, media_receive_channel1_impl()->recv_streams().size()); |
| EXPECT_EQ(stream2, media_receive_channel1_impl()->recv_streams()[0]); |
| |
| // Channel 1 replies but stop sending stream1. |
| typename T::Content content4; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content4); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content4, SdpType::kAnswer).ok()); |
| EXPECT_EQ(0u, media_send_channel1_impl()->send_streams().size()); |
| |
| EXPECT_TRUE(channel2_->SetRemoteContent(&content4, SdpType::kAnswer).ok()); |
| EXPECT_EQ(0u, media_receive_channel2_impl()->recv_streams().size()); |
| |
| SendCustomRtp2(kSsrc2, 0); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckCustomRtp1(kSsrc2, 0)); |
| } |
| |
| class MockReceiveChannel : public T::MediaReceiveChannel { |
| public: |
| MockReceiveChannel(const typename T::Options& options, |
| Thread* network_thread) |
| : T::MediaReceiveChannel(options, network_thread) {} |
| |
| void OnDemuxerCriteriaUpdatePending() override { |
| ++pending_count_; |
| T::MediaReceiveChannel::OnDemuxerCriteriaUpdatePending(); |
| } |
| |
| void OnDemuxerCriteriaUpdateComplete() override { |
| --pending_count_; |
| T::MediaReceiveChannel::OnDemuxerCriteriaUpdateComplete(); |
| } |
| |
| bool AddRecvStream(const StreamParams& sp) override { |
| add_stream_called_ = true; |
| if (pending_count_ <= 0) { |
| criteria_not_pending_during_add_stream_ = true; |
| } |
| return T::MediaReceiveChannel::AddRecvStream(sp); |
| } |
| |
| bool add_stream_called() const { return add_stream_called_; } |
| bool criteria_not_pending_during_add_stream() const { |
| return criteria_not_pending_during_add_stream_; |
| } |
| |
| private: |
| int pending_count_ = 0; |
| bool add_stream_called_ = false; |
| bool criteria_not_pending_during_add_stream_ = false; |
| }; |
| |
| void TestUpdateRemoteStreamsRaceWithRtpPacket() { |
| auto ch1r = std::make_unique<MockReceiveChannel>(typename T::Options(), |
| network_thread_); |
| MockReceiveChannel* mock_ch1r = ch1r.get(); |
| |
| CreateChannels(std::make_unique<typename T::MediaSendChannel>( |
| typename T::Options(), network_thread_), |
| std::move(ch1r), |
| std::make_unique<typename T::MediaSendChannel>( |
| typename T::Options(), network_thread_), |
| std::make_unique<typename T::MediaReceiveChannel>( |
| typename T::Options(), network_thread_), |
| 0, 0); |
| |
| // Configure a new stream `stream1` to be added |
| StreamParams stream1; |
| stream1.id = "stream1"; |
| stream1.ssrcs.push_back(kSsrc1); |
| stream1.cname = "stream1_cname"; |
| |
| typename T::Content content1; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content1); |
| content1.AddStream(stream1); |
| |
| ASSERT_TRUE(channel1_->SetLocalContent(&content1, SdpType::kOffer).ok()); |
| channel1_->Enable(true); |
| |
| typename T::Content content2; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content2); |
| ASSERT_TRUE(channel2_->SetRemoteContent(&content1, SdpType::kOffer).ok()); |
| ConnectFakeTransports(); |
| |
| // Configure answer adding stream2. |
| StreamParams stream2; |
| stream2.id = "stream2"; |
| stream2.ssrcs.push_back(kSsrc2); |
| stream2.cname = "stream2_cname"; |
| |
| typename T::Content content3; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content3); |
| content3.AddStream(stream2); |
| |
| // Call SetRemoteContent. |
| RTCError error = channel1_->SetRemoteContent(&content3, SdpType::kAnswer); |
| |
| EXPECT_TRUE(error.ok()) << "SetRemoteContent failed: " << error.message(); |
| EXPECT_TRUE(mock_ch1r->add_stream_called()); |
| EXPECT_FALSE(mock_ch1r->criteria_not_pending_during_add_stream()) |
| << "Race condition detected: demuxer criteria was not pending during " |
| "AddRecvStream!"; |
| } |
| |
| // Test that we only start playout and sending at the right times. |
| void TestPlayoutAndSendingStates() { |
| CreateChannels(0, 0); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel2_impl()->sending()); |
| channel1_->Enable(true); |
| FlushCurrentThread(); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); |
| EXPECT_TRUE( |
| channel1_->SetLocalContent(&local_media_content1_, SdpType::kOffer) |
| .ok()); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); |
| EXPECT_TRUE( |
| channel2_->SetRemoteContent(&local_media_content1_, SdpType::kOffer) |
| .ok()); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel2_impl()->sending()); |
| EXPECT_TRUE( |
| channel2_->SetLocalContent(&local_media_content2_, SdpType::kAnswer) |
| .ok()); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel2_impl()->sending()); |
| ConnectFakeTransports(); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel2_impl()->sending()); |
| channel2_->Enable(true); |
| FlushCurrentThread(); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel2_impl()->sending()); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(&local_media_content2_, SdpType::kAnswer) |
| .ok()); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| } |
| |
| // Test that changing the MediaContentDirection in the local and remote |
| // session description start playout and sending at the right time. |
| void TestMediaContentDirection() { |
| CreateChannels(0, 0); |
| typename T::Content content1; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content1); |
| typename T::Content content2; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content2); |
| // Set `content2` to be InActive. |
| content2.set_direction(RtpTransceiverDirection::kInactive); |
| |
| channel1_->Enable(true); |
| channel2_->Enable(true); |
| FlushCurrentThread(); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel2_impl()->sending()); |
| |
| EXPECT_TRUE(channel1_->SetLocalContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel2_->SetRemoteContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel2_->SetLocalContent(&content2, SdpType::kPrAnswer).ok()); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(&content2, SdpType::kPrAnswer).ok()); |
| ConnectFakeTransports(); |
| |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); // remote InActive |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel2_impl()->playout()); // local InActive |
| } |
| EXPECT_FALSE(media_send_channel2_impl()->sending()); // local InActive |
| |
| // Update `content2` to be RecvOnly. |
| content2.set_direction(RtpTransceiverDirection::kRecvOnly); |
| EXPECT_TRUE(channel2_->SetLocalContent(&content2, SdpType::kPrAnswer).ok()); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(&content2, SdpType::kPrAnswer).ok()); |
| |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel2_impl()->playout()); // local RecvOnly |
| } |
| EXPECT_FALSE(media_send_channel2_impl()->sending()); // local RecvOnly |
| |
| // Update `content2` to be SendRecv. |
| content2.set_direction(RtpTransceiverDirection::kSendRecv); |
| EXPECT_TRUE(channel2_->SetLocalContent(&content2, SdpType::kAnswer).ok()); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content2, SdpType::kAnswer).ok()); |
| |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel2_impl()->sending()); |
| |
| // Update `content2` to be inactive on the receiver while sending at the |
| // sender. |
| content2.set_direction(RtpTransceiverDirection::kInactive); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel2_->SetRemoteContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel2_->SetLocalContent(&content2, SdpType::kAnswer).ok()); |
| content2.set_direction(RtpTransceiverDirection::kRecvOnly); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content2, SdpType::kAnswer).ok()); |
| if (verify_playout_) { |
| EXPECT_FALSE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| |
| // Re-enable `content2`. |
| content2.set_direction(RtpTransceiverDirection::kSendRecv); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel2_->SetRemoteContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel2_->SetLocalContent(&content2, SdpType::kAnswer).ok()); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content2, SdpType::kAnswer).ok()); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| } |
| |
| // Test setting up a call. |
| void TestCallSetup() { |
| CreateChannels(0, 0); |
| EXPECT_FALSE(IsSrtpActive(channel1_)); |
| EXPECT_TRUE(SendInitiate()); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel1_impl()->playout()); |
| } |
| EXPECT_FALSE(media_send_channel1_impl()->sending()); |
| EXPECT_TRUE(SendAccept()); |
| EXPECT_FALSE(IsSrtpActive(channel1_)); |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| EXPECT_EQ(1U, media_send_channel1_impl()->send_codecs().size()); |
| if (verify_playout_) { |
| EXPECT_TRUE(media_receive_channel2_impl()->playout()); |
| } |
| EXPECT_TRUE(media_send_channel2_impl()->sending()); |
| EXPECT_EQ(1U, media_send_channel2_impl()->send_codecs().size()); |
| } |
| |
| // Send voice RTP data to the other side and ensure it gets there. |
| void SendRtpToRtp() { |
| CreateChannels(RTCP_MUX, RTCP_MUX); |
| EXPECT_TRUE(SendInitiate()); |
| EXPECT_TRUE(SendAccept()); |
| EXPECT_TRUE(IsRtcpMuxEnabled(channel1_)); |
| EXPECT_TRUE(IsRtcpMuxEnabled(channel2_)); |
| SendRtp1(); |
| SendRtp2(); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckRtp2()); |
| EXPECT_TRUE(CheckNoRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| } |
| |
| void TestDeinit() { |
| CreateChannels(0, 0); |
| EXPECT_TRUE(SendInitiate()); |
| EXPECT_TRUE(SendAccept()); |
| SendRtp1(); |
| SendRtp2(); |
| |
| DeinitChannels(); |
| |
| // Do not wait, destroy channels. |
| channel1_.reset(nullptr); |
| channel2_.reset(nullptr); |
| } |
| |
| void SendDtlsSrtpToDtlsSrtp(int flags1, int flags2) { |
| CreateChannels(flags1 | DTLS, flags2 | DTLS); |
| EXPECT_FALSE(IsSrtpActive(channel1_)); |
| EXPECT_FALSE(IsSrtpActive(channel2_)); |
| EXPECT_TRUE(SendInitiate()); |
| WaitForThreads(); |
| EXPECT_TRUE(SendAccept()); |
| EXPECT_TRUE(IsSrtpActive(channel1_)); |
| EXPECT_TRUE(IsSrtpActive(channel2_)); |
| SendRtp1(); |
| SendRtp2(); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckRtp2()); |
| EXPECT_TRUE(CheckNoRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| } |
| |
| // Test that we can send and receive early media when a provisional answer is |
| // sent and received. The test uses SRTP, RTCP mux and SSRC mux. |
| void SendEarlyMediaUsingRtcpMuxSrtp() { |
| int sequence_number1_1 = 0, sequence_number2_2 = 0; |
| |
| CreateChannels(SSRC_MUX | RTCP_MUX | DTLS, SSRC_MUX | RTCP_MUX | DTLS); |
| EXPECT_TRUE(SendOffer()); |
| EXPECT_TRUE(SendProvisionalAnswer()); |
| EXPECT_TRUE(IsSrtpActive(channel1_)); |
| EXPECT_TRUE(IsSrtpActive(channel2_)); |
| EXPECT_TRUE(IsRtcpMuxEnabled(channel1_)); |
| EXPECT_TRUE(IsRtcpMuxEnabled(channel2_)); |
| WaitForThreads(); // Wait for 'sending' flag go through network thread. |
| SendCustomRtp1(kSsrc1, ++sequence_number1_1); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckCustomRtp2(kSsrc1, sequence_number1_1)); |
| |
| // Send packets from callee and verify that it is received. |
| SendCustomRtp2(kSsrc2, ++sequence_number2_2); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckCustomRtp1(kSsrc2, sequence_number2_2)); |
| |
| // Complete call setup and ensure everything is still OK. |
| EXPECT_TRUE(SendFinalAnswer()); |
| EXPECT_TRUE(IsSrtpActive(channel1_)); |
| EXPECT_TRUE(IsSrtpActive(channel2_)); |
| SendCustomRtp1(kSsrc1, ++sequence_number1_1); |
| SendCustomRtp2(kSsrc2, ++sequence_number2_2); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckCustomRtp2(kSsrc1, sequence_number1_1)); |
| EXPECT_TRUE(CheckCustomRtp1(kSsrc2, sequence_number2_2)); |
| } |
| |
| // Test that we properly send RTP without SRTP from a thread. |
| void SendRtpToRtpOnThread() { |
| CreateChannels(0, 0); |
| EXPECT_TRUE(SendInitiate()); |
| EXPECT_TRUE(SendAccept()); |
| ScopedCallThread send_rtp1([this] { SendRtp1(); }); |
| ScopedCallThread send_rtp2([this] { SendRtp2(); }); |
| Thread* involved_threads[] = {send_rtp1.thread(), send_rtp2.thread()}; |
| WaitForThreads(involved_threads); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckRtp2()); |
| EXPECT_TRUE(CheckNoRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| } |
| |
| // Test that the mediachannel retains its sending state after the transport |
| // becomes non-writable. |
| void SendWithWritabilityLoss() { |
| CreateChannels(RTCP_MUX, RTCP_MUX); |
| EXPECT_TRUE(SendInitiate()); |
| EXPECT_TRUE(SendAccept()); |
| EXPECT_TRUE(IsRtcpMuxEnabled(channel1_)); |
| EXPECT_TRUE(IsRtcpMuxEnabled(channel2_)); |
| SendRtp1(); |
| SendRtp2(); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckRtp2()); |
| EXPECT_TRUE(CheckNoRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| |
| // Lose writability, which should fail. |
| SendTask(network_thread_, |
| [this] { fake_rtp_dtls_transport1_->SetWritable(false); }); |
| SendRtp1(); |
| SendRtp2(); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| |
| // Regain writability |
| SendTask(network_thread_, |
| [this] { fake_rtp_dtls_transport1_->SetWritable(true); }); |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| SendRtp1(); |
| SendRtp2(); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckRtp2()); |
| EXPECT_TRUE(CheckNoRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| |
| // Lose writability completely |
| SendTask(network_thread_, [this] { |
| bool asymmetric = true; |
| fake_rtp_dtls_transport1_->SetDestination(nullptr, asymmetric); |
| }); |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| |
| // Should fail also. |
| SendRtp1(); |
| SendRtp2(); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| EXPECT_TRUE(CheckNoRtp1()); |
| |
| // Gain writability back |
| SendTask(network_thread_, [this] { |
| bool asymmetric = true; |
| fake_rtp_dtls_transport1_->SetDestination(fake_rtp_dtls_transport2_.get(), |
| asymmetric); |
| }); |
| EXPECT_TRUE(media_send_channel1_impl()->sending()); |
| SendRtp1(); |
| SendRtp2(); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckRtp1()); |
| EXPECT_TRUE(CheckRtp2()); |
| EXPECT_TRUE(CheckNoRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| } |
| |
| void SendBundleToBundle(std::span<const int, 2> pl_types, |
| bool rtcp_mux, |
| bool secure) { |
| int sequence_number1_1 = 0, sequence_number2_2 = 0; |
| // Only pl_type1 was added to the bundle filter for both `channel1_` |
| // and `channel2_`. |
| int pl_type1 = pl_types[0]; |
| int pl_type2 = pl_types[1]; |
| int flags = SSRC_MUX; |
| if (secure) |
| flags |= DTLS; |
| if (rtcp_mux) { |
| flags |= RTCP_MUX; |
| } |
| CreateChannels(flags, flags); |
| EXPECT_TRUE(SendInitiate()); |
| EXPECT_TRUE(SendAccept()); |
| |
| // Both channels can receive pl_type1 only. |
| SendCustomRtp1(kSsrc1, ++sequence_number1_1, pl_type1); |
| SendCustomRtp2(kSsrc2, ++sequence_number2_2, pl_type1); |
| WaitForThreads(); |
| EXPECT_TRUE(CheckCustomRtp2(kSsrc1, sequence_number1_1, pl_type1)); |
| EXPECT_TRUE(CheckCustomRtp1(kSsrc2, sequence_number2_2, pl_type1)); |
| EXPECT_TRUE(CheckNoRtp1()); |
| EXPECT_TRUE(CheckNoRtp2()); |
| |
| SendCustomRtp1(kSsrc3, ++sequence_number1_1, pl_type2); |
| SendCustomRtp2(kSsrc4, ++sequence_number2_2, pl_type2); |
| WaitForThreads(); |
| EXPECT_FALSE(CheckCustomRtp2(kSsrc3, sequence_number1_1, pl_type2)); |
| EXPECT_FALSE(CheckCustomRtp1(kSsrc4, sequence_number2_2, pl_type2)); |
| } |
| |
| void TestSetContentFailure() { |
| CreateChannels(0, 0); |
| |
| std::unique_ptr<typename T::Content> content( |
| CreateMediaContentWithStream(1)); |
| |
| media_receive_channel1_impl()->set_fail_set_recv_codecs(true); |
| EXPECT_FALSE( |
| channel1_->SetLocalContent(content.get(), SdpType::kOffer).ok()); |
| EXPECT_FALSE( |
| channel1_->SetLocalContent(content.get(), SdpType::kAnswer).ok()); |
| |
| media_send_channel1_impl()->set_fail_set_send_codecs(true); |
| EXPECT_FALSE( |
| channel1_->SetRemoteContent(content.get(), SdpType::kOffer).ok()); |
| |
| media_send_channel1_impl()->set_fail_set_send_codecs(true); |
| EXPECT_FALSE( |
| channel1_->SetRemoteContent(content.get(), SdpType::kAnswer).ok()); |
| } |
| |
| void TestSendTwoOffers() { |
| CreateChannels(0, 0); |
| |
| std::unique_ptr<typename T::Content> content1( |
| CreateMediaContentWithStream(1)); |
| EXPECT_TRUE( |
| channel1_->SetLocalContent(content1.get(), SdpType::kOffer).ok()); |
| EXPECT_TRUE(media_send_channel1_impl()->HasSendStream(1)); |
| |
| std::unique_ptr<typename T::Content> content2( |
| CreateMediaContentWithStream(2)); |
| EXPECT_TRUE( |
| channel1_->SetLocalContent(content2.get(), SdpType::kOffer).ok()); |
| EXPECT_FALSE(media_send_channel1_impl()->HasSendStream(1)); |
| EXPECT_TRUE(media_send_channel1_impl()->HasSendStream(2)); |
| } |
| |
| void TestReceiveTwoOffers() { |
| CreateChannels(0, 0); |
| |
| std::unique_ptr<typename T::Content> content1( |
| CreateMediaContentWithStream(1)); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(content1.get(), SdpType::kOffer).ok()); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(1)); |
| |
| std::unique_ptr<typename T::Content> content2( |
| CreateMediaContentWithStream(2)); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(content2.get(), SdpType::kOffer).ok()); |
| EXPECT_FALSE(media_receive_channel1_impl()->HasRecvStream(1)); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(2)); |
| } |
| |
| void TestSendPrAnswer() { |
| CreateChannels(0, 0); |
| |
| // Receive offer |
| std::unique_ptr<typename T::Content> content1( |
| CreateMediaContentWithStream(1)); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(content1.get(), SdpType::kOffer).ok()); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(1)); |
| |
| // Send PR answer |
| std::unique_ptr<typename T::Content> content2( |
| CreateMediaContentWithStream(2)); |
| EXPECT_TRUE( |
| channel1_->SetLocalContent(content2.get(), SdpType::kPrAnswer).ok()); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(1)); |
| EXPECT_TRUE(media_send_channel1_impl()->HasSendStream(2)); |
| |
| // Send answer |
| std::unique_ptr<typename T::Content> content3( |
| CreateMediaContentWithStream(3)); |
| EXPECT_TRUE( |
| channel1_->SetLocalContent(content3.get(), SdpType::kAnswer).ok()); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(1)); |
| EXPECT_FALSE(media_send_channel1_impl()->HasSendStream(2)); |
| EXPECT_TRUE(media_send_channel1_impl()->HasSendStream(3)); |
| } |
| |
| void TestReceivePrAnswer() { |
| CreateChannels(0, 0); |
| |
| // Send offer |
| std::unique_ptr<typename T::Content> content1( |
| CreateMediaContentWithStream(1)); |
| EXPECT_TRUE( |
| channel1_->SetLocalContent(content1.get(), SdpType::kOffer).ok()); |
| EXPECT_TRUE(media_send_channel1_impl()->HasSendStream(1)); |
| |
| // Receive PR answer |
| std::unique_ptr<typename T::Content> content2( |
| CreateMediaContentWithStream(2)); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(content2.get(), SdpType::kPrAnswer).ok()); |
| EXPECT_TRUE(media_send_channel1_impl()->HasSendStream(1)); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(2)); |
| |
| // Receive answer |
| std::unique_ptr<typename T::Content> content3( |
| CreateMediaContentWithStream(3)); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(content3.get(), SdpType::kAnswer).ok()); |
| EXPECT_TRUE(media_send_channel1_impl()->HasSendStream(1)); |
| EXPECT_FALSE(media_receive_channel1_impl()->HasRecvStream(2)); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(3)); |
| } |
| |
| void TestOnTransportReadyToSend() { |
| CreateChannels(0, 0); |
| EXPECT_FALSE(media_send_channel1_impl()->ready_to_send()); |
| |
| network_thread_->PostTask( |
| [this] { channel1_->OnTransportReadyToSend(true); }); |
| WaitForThreads(); |
| EXPECT_TRUE(media_send_channel1_impl()->ready_to_send()); |
| |
| network_thread_->PostTask( |
| [this] { channel1_->OnTransportReadyToSend(false); }); |
| WaitForThreads(); |
| EXPECT_FALSE(media_send_channel1_impl()->ready_to_send()); |
| } |
| |
| bool SetRemoteContentWithBitrateLimit(int remote_limit) { |
| typename T::Content content; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| content.set_bandwidth(remote_limit); |
| return channel1_->SetRemoteContent(&content, SdpType::kOffer, NULL); |
| } |
| |
| RtpParameters BitrateLimitedParameters(std::optional<int> limit) { |
| RtpParameters parameters; |
| RtpEncodingParameters encoding; |
| encoding.max_bitrate_bps = limit; |
| parameters.encodings.push_back(encoding); |
| return parameters; |
| } |
| |
| void VerifyMaxBitrate(const RtpParameters& parameters, |
| std::optional<int> expected_bitrate) { |
| EXPECT_EQ(1UL, parameters.encodings.size()); |
| EXPECT_EQ(expected_bitrate, parameters.encodings[0].max_bitrate_bps); |
| } |
| |
| void DefaultMaxBitrateIsUnlimited() { |
| CreateChannels(0, 0); |
| EXPECT_TRUE( |
| channel1_->SetLocalContent(&local_media_content1_, SdpType::kOffer) |
| .ok()); |
| EXPECT_EQ(media_send_channel1_impl()->max_bps(), -1); |
| VerifyMaxBitrate( |
| channel1_->media_send_channel()->GetRtpSendParameters(kSsrc1), |
| std::nullopt); |
| } |
| |
| // Test that when a channel gets new RtpTransport with a call to |
| // `SetRtpTransport`, the socket options from the old RtpTransport is merged |
| // with the options on the new one. |
| |
| // For example, audio and video may use separate socket options, but initially |
| // be unbundled, then later become bundled. When this happens, their preferred |
| // socket options should be merged to the underlying transport they share. |
| void SocketOptionsMergedOnSetTransport() { |
| constexpr int kSndBufSize = 4000; |
| constexpr int kRcvBufSize = 8000; |
| |
| CreateChannels(DTLS, DTLS); |
| |
| bool rcv_success, send_success; |
| int rcv_buf, send_buf; |
| SendTask(network_thread_, [&] { |
| new_rtp_transport_ = CreateDtlsSrtpTransport( |
| fake_rtp_dtls_transport2_.get(), fake_rtcp_dtls_transport2_.get()); |
| channel1_->SetOption(BaseChannel::ST_RTP, Socket::Option::OPT_SNDBUF, |
| kSndBufSize); |
| channel2_->SetOption(BaseChannel::ST_RTP, Socket::Option::OPT_RCVBUF, |
| kRcvBufSize); |
| channel1_->SetRtpTransport(new_rtp_transport_.get()); |
| send_success = fake_rtp_dtls_transport2_->GetOption( |
| Socket::Option::OPT_SNDBUF, &send_buf); |
| rcv_success = fake_rtp_dtls_transport2_->GetOption( |
| Socket::Option::OPT_RCVBUF, &rcv_buf); |
| }); |
| |
| ASSERT_TRUE(send_success); |
| EXPECT_EQ(kSndBufSize, send_buf); |
| ASSERT_TRUE(rcv_success); |
| EXPECT_EQ(kRcvBufSize, rcv_buf); |
| } |
| |
| void CreateSimulcastContent(const std::vector<std::string>& rids, |
| typename T::Content* content) { |
| std::vector<RidDescription> rid_descriptions; |
| for (const std::string& name : rids) { |
| rid_descriptions.push_back(RidDescription(name, RidDirection::kSend)); |
| } |
| |
| StreamParams stream; |
| stream.set_rids(rid_descriptions); |
| CreateContent(0, kPcmuCodec, kH264Codec, content); |
| // This is for unified plan, so there can be only one StreamParams. |
| content->mutable_streams().clear(); |
| content->AddStream(stream); |
| } |
| |
| void VerifySimulcastStreamParams(const StreamParams& expected, |
| const typename T::Channel* channel) { |
| const std::vector<StreamParams>& streams = channel->local_streams(); |
| ASSERT_EQ(1u, streams.size()); |
| const StreamParams& result = streams[0]; |
| EXPECT_EQ(expected.rids(), result.rids()); |
| EXPECT_TRUE(result.has_ssrcs()); |
| EXPECT_EQ(expected.rids().size() * 2, result.ssrcs.size()); |
| std::vector<uint32_t> primary_ssrcs; |
| result.GetPrimarySsrcs(&primary_ssrcs); |
| EXPECT_EQ(expected.rids().size(), primary_ssrcs.size()); |
| } |
| |
| void TestUpdateLocalStreamsWithSimulcast() { |
| CreateChannels(0, 0); |
| typename T::Content content1, content2, content3; |
| CreateSimulcastContent({"f", "h", "q"}, &content1); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content1, SdpType::kOffer).ok()); |
| VerifySimulcastStreamParams(content1.streams()[0], channel1_.get()); |
| StreamParams stream1 = channel1_->local_streams()[0]; |
| |
| // Create a similar offer. SetLocalContent should not remove and add. |
| CreateSimulcastContent({"f", "h", "q"}, &content2); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content2, SdpType::kOffer).ok()); |
| VerifySimulcastStreamParams(content2.streams()[0], channel1_.get()); |
| StreamParams stream2 = channel1_->local_streams()[0]; |
| // Check that the streams are identical (SSRCs didn't change). |
| EXPECT_EQ(stream1, stream2); |
| |
| // Create third offer that has same RIDs in different order. |
| CreateSimulcastContent({"f", "q", "h"}, &content3); |
| EXPECT_TRUE(channel1_->SetLocalContent(&content3, SdpType::kOffer).ok()); |
| VerifySimulcastStreamParams(content3.streams()[0], channel1_.get()); |
| } |
| |
| protected: |
| void WaitForThreads() { WaitForThreads(std::span<Thread*>()); } |
| static void ProcessThreadQueue(Thread* thread) { |
| RTC_DCHECK(thread->IsCurrent()); |
| while (!thread->empty()) { |
| thread->ProcessMessages(0); |
| } |
| } |
| void FlushCurrentThread() { main_thread_.Flush(); } |
| void WaitForThreads(std::span<Thread*> threads) { |
| // `threads` and current thread post packets to network thread. |
| for (Thread* thread : threads) { |
| SendTask(thread, [thread] { ProcessThreadQueue(thread); }); |
| } |
| ProcessThreadQueue(Thread::Current()); |
| // Network thread move them around and post back to worker = current thread. |
| if (!network_thread_->IsCurrent()) { |
| SendTask(network_thread_, |
| [this] { ProcessThreadQueue(network_thread_); }); |
| } |
| // Worker thread = current Thread process received messages. |
| ProcessThreadQueue(Thread::Current()); |
| } |
| |
| // Accessors that return the FakeMedia<type>SendChannel object. |
| // Note that these depend on getting the object back that was |
| // passed to the channel constructor. |
| // T::MediaSendChannel is either FakeVoiceMediaSendChannel or |
| // FakeVideoMediaSendChannel. |
| typename T::MediaSendChannel* media_send_channel1_impl() { |
| RTC_DCHECK(channel1_); |
| return static_cast<typename T::MediaSendChannel*>( |
| channel1_->media_send_channel()); |
| } |
| |
| typename T::MediaSendChannel* media_send_channel2_impl() { |
| RTC_DCHECK(channel2_); |
| RTC_DCHECK(channel2_->media_send_channel()); |
| return static_cast<typename T::MediaSendChannel*>( |
| channel2_->media_send_channel()); |
| } |
| typename T::MediaReceiveChannel* media_receive_channel1_impl() { |
| RTC_DCHECK(channel1_); |
| RTC_DCHECK(channel1_->media_receive_channel()); |
| return static_cast<typename T::MediaReceiveChannel*>( |
| channel1_->media_receive_channel()); |
| } |
| |
| typename T::MediaReceiveChannel* media_receive_channel2_impl() { |
| RTC_DCHECK(channel2_); |
| RTC_DCHECK(channel2_->media_receive_channel()); |
| return static_cast<typename T::MediaReceiveChannel*>( |
| channel2_->media_receive_channel()); |
| } |
| |
| void TestSetRtpTransportNullClearsReceiveSinks() { |
| CreateChannels(0, 0); |
| SendTask(channel1_->network_thread(), |
| [this]() { channel1_->SetRtpTransport(nullptr); }); |
| EXPECT_TRUE(absl::c_linear_search( |
| media_receive_channel1_impl()->clear_receive_sinks_calls(), |
| std::nullopt)); |
| } |
| |
| void TestRegisterRtpDemuxerSinkPropagatesReceiveSsrcs() { |
| CreateChannels(0, 0); |
| typename T::Content content; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content); |
| AddLegacyStreamInContent(kSsrc1, 0, &content); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content, SdpType::kOffer).ok()); |
| EXPECT_GT(media_receive_channel1_impl()->receive_ssrcs_n().count(kSsrc1), |
| 0u); |
| } |
| |
| void TestUpdateRemoteStreamsClearsRemovedSinks() { |
| CreateChannels(0, 0); |
| typename T::Content content1; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content1); |
| AddLegacyStreamInContent(kSsrc1, 0, &content1); |
| AddLegacyStreamInContent(kSsrc2, 0, &content1); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content1, SdpType::kOffer).ok()); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(kSsrc1)); |
| EXPECT_TRUE(media_receive_channel1_impl()->HasRecvStream(kSsrc2)); |
| |
| typename T::Content content2; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content2); |
| AddLegacyStreamInContent(kSsrc2, 0, &content2); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content2, SdpType::kOffer).ok()); |
| |
| bool found_cleared_ssrc = false; |
| for (const auto& call : |
| media_receive_channel1_impl()->clear_receive_sinks_calls()) { |
| if (call.has_value() && absl::c_linear_search(*call, kSsrc1)) { |
| found_cleared_ssrc = true; |
| break; |
| } |
| } |
| EXPECT_TRUE(found_cleared_ssrc); |
| } |
| |
| void TestUpdateRemoteStreamsClearsUnsignaledSinks() { |
| CreateChannels(0, 0); |
| |
| typename T::Content content1; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content1); |
| StreamParams unsignaled_stream; |
| content1.AddStream(unsignaled_stream); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content1, SdpType::kOffer).ok()); |
| |
| media_receive_channel1_impl()->AddFakeUnsignaledSsrc(kSsrc3); |
| |
| typename T::Content content2; |
| CreateContent(0, kPcmuCodec, kH264Codec, &content2); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&content2, SdpType::kOffer).ok()); |
| |
| bool found_cleared_ssrc = false; |
| for (const auto& call : |
| media_receive_channel1_impl()->clear_receive_sinks_calls()) { |
| if (call.has_value() && absl::c_linear_search(*call, kSsrc3)) { |
| found_cleared_ssrc = true; |
| break; |
| } |
| } |
| EXPECT_TRUE(found_cleared_ssrc); |
| } |
| |
| test::RunLoop main_thread_; |
| const Environment env_ = CreateTestEnvironment(); |
| // TODO(pbos): Remove playout from all media channels and let renderers mute |
| // themselves. |
| const bool verify_playout_; |
| scoped_refptr<PendingTaskSafetyFlag> network_thread_safety_ = |
| PendingTaskSafetyFlag::CreateDetached(); |
| std::unique_ptr<Thread> network_thread_keeper_; |
| Thread* network_thread_; |
| std::unique_ptr<FakeDtlsTransport> fake_rtp_dtls_transport1_; |
| std::unique_ptr<FakeDtlsTransport> fake_rtcp_dtls_transport1_; |
| std::unique_ptr<FakeDtlsTransport> fake_rtp_dtls_transport2_; |
| std::unique_ptr<FakeDtlsTransport> fake_rtcp_dtls_transport2_; |
| std::unique_ptr<FakePacketTransport> fake_rtp_packet_transport1_; |
| std::unique_ptr<FakePacketTransport> fake_rtcp_packet_transport1_; |
| std::unique_ptr<FakePacketTransport> fake_rtp_packet_transport2_; |
| std::unique_ptr<FakePacketTransport> fake_rtcp_packet_transport2_; |
| std::unique_ptr<RtpTransportInternal> rtp_transport1_; |
| std::unique_ptr<RtpTransportInternal> rtp_transport2_; |
| std::unique_ptr<RtpTransportInternal> new_rtp_transport_; |
| FakeMediaEngine media_engine_; |
| std::unique_ptr<typename T::Channel> channel1_; |
| std::unique_ptr<typename T::Channel> channel2_; |
| typename T::Content local_media_content1_; |
| typename T::Content local_media_content2_; |
| typename T::Content remote_media_content1_; |
| typename T::Content remote_media_content2_; |
| // The RTP and RTCP packets to send in the tests. |
| Buffer rtp_packet_; |
| Buffer rtcp_packet_; |
| CandidatePairInterface* last_selected_candidate_pair_; |
| UniqueRandomIdGenerator ssrc_generator_; |
| }; |
| |
| template <> |
| std::unique_ptr<BaseChannel> ChannelTest<VoiceTraits>::CreateChannel( |
| Thread* worker_thread, |
| Thread* network_thread, |
| std::unique_ptr<FakeVoiceMediaSendChannel> send_ch, |
| std::unique_ptr<FakeVoiceMediaReceiveChannel> receive_ch, |
| RtpTransportInternal* rtp_transport, |
| int flags) { |
| Thread* signaling_thread = Thread::Current(); |
| auto channel = std::make_unique<BaseChannel>( |
| worker_thread, network_thread, signaling_thread, std::move(send_ch), |
| std::move(receive_ch), kAudioMid, MediaType::AUDIO, (flags & DTLS) != 0, |
| CryptoOptions(), &ssrc_generator_); |
| SendTask(network_thread, [&]() { |
| RTC_DCHECK_RUN_ON(channel->network_thread()); |
| channel->SetRtpTransport(rtp_transport); |
| }); |
| return channel; |
| } |
| |
| template <> |
| void ChannelTest<VoiceTraits>::CreateContent(int flags, |
| const Codec& audio_codec, |
| const Codec& video_codec, |
| AudioContentDescription* audio) { |
| audio->AddCodec(audio_codec); |
| audio->set_rtcp_mux((flags & RTCP_MUX) != 0); |
| } |
| |
| template <> |
| void ChannelTest<VoiceTraits>::CopyContent( |
| const AudioContentDescription& source, |
| AudioContentDescription* audio) { |
| *audio = source; |
| } |
| |
| template <> |
| void ChannelTest<VoiceTraits>::AddLegacyStreamInContent( |
| uint32_t ssrc, |
| int flags, |
| AudioContentDescription* audio) { |
| audio->AddLegacyStream(ssrc); |
| } |
| |
| class VoiceChannelSingleThreadTest : public ChannelTest<VoiceTraits> { |
| public: |
| using Base = ChannelTest<VoiceTraits>; |
| VoiceChannelSingleThreadTest() |
| : Base(true, kPcmuFrame, kFakeRtcpReport, NetworkIsWorker::Yes) {} |
| }; |
| |
| class VoiceChannelDoubleThreadTest : public ChannelTest<VoiceTraits> { |
| public: |
| using Base = ChannelTest<VoiceTraits>; |
| VoiceChannelDoubleThreadTest() |
| : Base(true, kPcmuFrame, kFakeRtcpReport, NetworkIsWorker::No) {} |
| }; |
| |
| class VoiceChannelWithEncryptedRtpHeaderExtensionsSingleThreadTest |
| : public ChannelTest<VoiceTraits> { |
| public: |
| using Base = ChannelTest<VoiceTraits>; |
| VoiceChannelWithEncryptedRtpHeaderExtensionsSingleThreadTest() |
| : Base(true, |
| kPcmuFrameWithExtensions, |
| kFakeRtcpReport, |
| NetworkIsWorker::Yes) {} |
| }; |
| |
| class VoiceChannelWithEncryptedRtpHeaderExtensionsDoubleThreadTest |
| : public ChannelTest<VoiceTraits> { |
| public: |
| using Base = ChannelTest<VoiceTraits>; |
| VoiceChannelWithEncryptedRtpHeaderExtensionsDoubleThreadTest() |
| : Base(true, |
| kPcmuFrameWithExtensions, |
| kFakeRtcpReport, |
| NetworkIsWorker::No) {} |
| }; |
| |
| // override to add NULL parameter |
| template <> |
| std::unique_ptr<BaseChannel> ChannelTest<VideoTraits>::CreateChannel( |
| Thread* worker_thread, |
| Thread* network_thread, |
| std::unique_ptr<FakeVideoMediaSendChannel> send_ch, |
| std::unique_ptr<FakeVideoMediaReceiveChannel> receive_ch, |
| RtpTransportInternal* rtp_transport, |
| int flags) { |
| Thread* signaling_thread = Thread::Current(); |
| auto channel = std::make_unique<BaseChannel>( |
| worker_thread, network_thread, signaling_thread, std::move(send_ch), |
| std::move(receive_ch), kVideoMid, MediaType::VIDEO, (flags & DTLS) != 0, |
| CryptoOptions(), &ssrc_generator_); |
| SendTask(network_thread, [&]() { |
| RTC_DCHECK_RUN_ON(channel->network_thread()); |
| channel->SetRtpTransport(rtp_transport); |
| }); |
| return channel; |
| } |
| |
| template <> |
| void ChannelTest<VideoTraits>::CreateContent(int flags, |
| const Codec& audio_codec, |
| const Codec& video_codec, |
| VideoContentDescription* video) { |
| video->AddCodec(video_codec); |
| video->set_rtcp_mux((flags & RTCP_MUX) != 0); |
| } |
| |
| template <> |
| void ChannelTest<VideoTraits>::CopyContent( |
| const VideoContentDescription& source, |
| VideoContentDescription* video) { |
| *video = source; |
| } |
| |
| template <> |
| void ChannelTest<VideoTraits>::AddLegacyStreamInContent( |
| uint32_t ssrc, |
| int flags, |
| VideoContentDescription* video) { |
| video->AddLegacyStream(ssrc); |
| } |
| |
| class VideoChannelSingleThreadTest : public ChannelTest<VideoTraits> { |
| public: |
| using Base = ChannelTest<VideoTraits>; |
| VideoChannelSingleThreadTest() |
| : Base(false, kH264Packet, kFakeRtcpReport, NetworkIsWorker::Yes) {} |
| }; |
| |
| class VideoChannelDoubleThreadTest : public ChannelTest<VideoTraits> { |
| public: |
| using Base = ChannelTest<VideoTraits>; |
| VideoChannelDoubleThreadTest() |
| : Base(false, kH264Packet, kFakeRtcpReport, NetworkIsWorker::No) {} |
| }; |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestInit) { |
| Base::TestInit(); |
| EXPECT_FALSE(media_send_channel1_impl()->IsStreamMuted(0)); |
| EXPECT_TRUE(media_send_channel1_impl()->dtmf_info_queue().empty()); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestDeinit) { |
| Base::TestDeinit(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContents) { |
| Base::TestSetContents(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContentsExtmapAllowMixedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContentsExtmapAllowMixedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContentsNullOffer) { |
| Base::TestSetContentsNullOffer(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContentsRtcpMux) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContentsRtcpMuxWithPrAnswer) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContentsRtcpReducedSize) { |
| Base::TestSetContentsRtcpReducedSize(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestChangeStreamParamsInContent) { |
| Base::TestChangeStreamParamsInContent(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestPlayoutAndSendingStates) { |
| Base::TestPlayoutAndSendingStates(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestMediaContentDirection) { |
| Base::TestMediaContentDirection(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestCallSetup) { |
| Base::TestCallSetup(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendRtpToRtp) { |
| Base::SendRtpToRtp(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendDtlsSrtpToDtlsSrtp) { |
| Base::SendDtlsSrtpToDtlsSrtp(0, 0); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendDtlsSrtpToDtlsSrtpRtcpMux) { |
| Base::SendDtlsSrtpToDtlsSrtp(RTCP_MUX, RTCP_MUX); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendEarlyMediaUsingRtcpMuxSrtp) { |
| Base::SendEarlyMediaUsingRtcpMuxSrtp(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendRtpToRtpOnThread) { |
| Base::SendRtpToRtpOnThread(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendWithWritabilityLoss) { |
| Base::SendWithWritabilityLoss(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSetContentFailure) { |
| Base::TestSetContentFailure(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSendTwoOffers) { |
| Base::TestSendTwoOffers(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestReceiveTwoOffers) { |
| Base::TestReceiveTwoOffers(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestSendPrAnswer) { |
| Base::TestSendPrAnswer(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestReceivePrAnswer) { |
| Base::TestReceivePrAnswer(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, TestOnTransportReadyToSend) { |
| Base::TestOnTransportReadyToSend(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendBundleToBundle) { |
| Base::SendBundleToBundle(kAudioPts, false, false); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendBundleToBundleSecure) { |
| Base::SendBundleToBundle(kAudioPts, false, true); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendBundleToBundleWithRtcpMux) { |
| Base::SendBundleToBundle(kAudioPts, true, false); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SendBundleToBundleWithRtcpMuxSecure) { |
| Base::SendBundleToBundle(kAudioPts, true, true); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, DefaultMaxBitrateIsUnlimited) { |
| Base::DefaultMaxBitrateIsUnlimited(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, SocketOptionsMergedOnSetTransport) { |
| Base::SocketOptionsMergedOnSetTransport(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, RemovesExtensionNotPresentInRemoteAnswer) { |
| Base::TestRemovesExtensionNotPresentInRemoteAnswer(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, RemovesExtensionNotPresentInLocalAnswer) { |
| Base::TestRemovesExtensionNotPresentInLocalAnswer(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, DuplicateRtpHeaderExtensionIds) { |
| Base::TestDuplicateRtpHeaderExtensionIds(); |
| } |
| |
| #if GTEST_HAS_DEATH_TEST && !defined(WEBRTC_ANDROID) |
| TEST_F(VoiceChannelSingleThreadTest, |
| RtpHeaderExtensionIdOutOfRangeHighDeathTest) { |
| #if RTC_DCHECK_IS_ON |
| // Note - EXPECT_DEBUG_DEATH does not work as expected here. |
| EXPECT_DEATH(Base::TestRtpHeaderExtensionIdOutOfRangeHigh(), "Check failed:"); |
| #else |
| Base::TestRtpHeaderExtensionIdOutOfRangeHigh(); |
| #endif |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| RtpHeaderExtensionIdOutOfRangeLowDeathTest) { |
| #if RTC_DCHECK_IS_ON |
| // Note - EXPECT_DEBUG_DEATH does not work as expected here. |
| EXPECT_DEATH(Base::TestRtpHeaderExtensionIdOutOfRangeLow(), "Check failed:"); |
| #else |
| Base::TestRtpHeaderExtensionIdOutOfRangeLow(); |
| #endif |
| } |
| #endif |
| |
| TEST_F(VoiceChannelSingleThreadTest, RtpHeaderExtensionIdReassignment) { |
| Base::TestRtpHeaderExtensionIdReassignment(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| TestRtpHeaderExtensionIdHistoryReassignment) { |
| Base::TestRtpHeaderExtensionIdHistoryReassignment(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| TestSetRtpTransportNullClearsReceiveSinks) { |
| Base::TestSetRtpTransportNullClearsReceiveSinks(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| TestRegisterRtpDemuxerSinkPropagatesReceiveSsrcs) { |
| Base::TestRegisterRtpDemuxerSinkPropagatesReceiveSsrcs(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| TestUpdateRemoteStreamsClearsRemovedSinks) { |
| Base::TestUpdateRemoteStreamsClearsRemovedSinks(); |
| } |
| |
| TEST_F(VoiceChannelSingleThreadTest, |
| TestUpdateRemoteStreamsClearsUnsignaledSinks) { |
| Base::TestUpdateRemoteStreamsClearsUnsignaledSinks(); |
| } |
| |
| // VoiceChannelDoubleThreadTest |
| TEST_F(VoiceChannelDoubleThreadTest, TestInit) { |
| Base::TestInit(); |
| EXPECT_FALSE(media_send_channel1_impl()->IsStreamMuted(0)); |
| EXPECT_TRUE(media_send_channel1_impl()->dtmf_info_queue().empty()); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestDeinit) { |
| Base::TestDeinit(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContents) { |
| Base::TestSetContents(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContentsExtmapAllowMixedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContentsExtmapAllowMixedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContentsNullOffer) { |
| Base::TestSetContentsNullOffer(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContentsRtcpMux) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContentsRtcpMuxWithPrAnswer) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContentsRtcpReducedSize) { |
| Base::TestSetContentsRtcpReducedSize(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestChangeStreamParamsInContent) { |
| Base::TestChangeStreamParamsInContent(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestUpdateRemoteStreamsRaceWithRtpPacket) { |
| Base::TestUpdateRemoteStreamsRaceWithRtpPacket(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestPlayoutAndSendingStates) { |
| Base::TestPlayoutAndSendingStates(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestMediaContentDirection) { |
| Base::TestMediaContentDirection(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestCallSetup) { |
| Base::TestCallSetup(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendRtpToRtp) { |
| Base::SendRtpToRtp(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendDtlsSrtpToDtlsSrtp) { |
| Base::SendDtlsSrtpToDtlsSrtp(0, 0); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendDtlsSrtpToDtlsSrtpRtcpMux) { |
| Base::SendDtlsSrtpToDtlsSrtp(RTCP_MUX, RTCP_MUX); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendEarlyMediaUsingRtcpMuxSrtp) { |
| Base::SendEarlyMediaUsingRtcpMuxSrtp(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendRtpToRtpOnThread) { |
| Base::SendRtpToRtpOnThread(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendWithWritabilityLoss) { |
| Base::SendWithWritabilityLoss(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSetContentFailure) { |
| Base::TestSetContentFailure(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSendTwoOffers) { |
| Base::TestSendTwoOffers(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestReceiveTwoOffers) { |
| Base::TestReceiveTwoOffers(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestSendPrAnswer) { |
| Base::TestSendPrAnswer(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestReceivePrAnswer) { |
| Base::TestReceivePrAnswer(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, TestOnTransportReadyToSend) { |
| Base::TestOnTransportReadyToSend(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendBundleToBundle) { |
| Base::SendBundleToBundle(kAudioPts, false, false); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendBundleToBundleSecure) { |
| Base::SendBundleToBundle(kAudioPts, false, true); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendBundleToBundleWithRtcpMux) { |
| Base::SendBundleToBundle(kAudioPts, true, false); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SendBundleToBundleWithRtcpMuxSecure) { |
| Base::SendBundleToBundle(kAudioPts, true, true); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, DefaultMaxBitrateIsUnlimited) { |
| Base::DefaultMaxBitrateIsUnlimited(); |
| } |
| |
| TEST_F(VoiceChannelDoubleThreadTest, SocketOptionsMergedOnSetTransport) { |
| Base::SocketOptionsMergedOnSetTransport(); |
| } |
| |
| // VideoChannelSingleThreadTest |
| TEST_F(VideoChannelSingleThreadTest, TestInit) { |
| Base::TestInit(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestDeinit) { |
| Base::TestDeinit(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetContents) { |
| Base::TestSetContents(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetContentsExtmapAllowMixedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetContentsExtmapAllowMixedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetContentsNullOffer) { |
| Base::TestSetContentsNullOffer(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetContentsRtcpMux) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetContentsRtcpMuxWithPrAnswer) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestChangeStreamParamsInContent) { |
| Base::TestChangeStreamParamsInContent(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestPlayoutAndSendingStates) { |
| Base::TestPlayoutAndSendingStates(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestMediaContentDirection) { |
| Base::TestMediaContentDirection(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestCallSetup) { |
| Base::TestCallSetup(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendRtpToRtp) { |
| Base::SendRtpToRtp(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendDtlsSrtpToDtlsSrtp) { |
| Base::SendDtlsSrtpToDtlsSrtp(0, 0); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendDtlsSrtpToDtlsSrtpRtcpMux) { |
| Base::SendDtlsSrtpToDtlsSrtp(RTCP_MUX, RTCP_MUX); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendEarlyMediaUsingRtcpMuxSrtp) { |
| Base::SendEarlyMediaUsingRtcpMuxSrtp(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendRtpToRtpOnThread) { |
| Base::SendRtpToRtpOnThread(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendWithWritabilityLoss) { |
| Base::SendWithWritabilityLoss(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetContentFailure) { |
| Base::TestSetContentFailure(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSendTwoOffers) { |
| Base::TestSendTwoOffers(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestReceiveTwoOffers) { |
| Base::TestReceiveTwoOffers(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSendPrAnswer) { |
| Base::TestSendPrAnswer(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestReceivePrAnswer) { |
| Base::TestReceivePrAnswer(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendBundleToBundle) { |
| Base::SendBundleToBundle(kVideoPts, false, false); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendBundleToBundleSecure) { |
| Base::SendBundleToBundle(kVideoPts, false, true); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendBundleToBundleWithRtcpMux) { |
| Base::SendBundleToBundle(kVideoPts, true, false); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SendBundleToBundleWithRtcpMuxSecure) { |
| Base::SendBundleToBundle(kVideoPts, true, true); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestOnTransportReadyToSend) { |
| Base::TestOnTransportReadyToSend(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, DefaultMaxBitrateIsUnlimited) { |
| Base::DefaultMaxBitrateIsUnlimited(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, SocketOptionsMergedOnSetTransport) { |
| Base::SocketOptionsMergedOnSetTransport(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, UpdateLocalStreamsWithSimulcast) { |
| Base::TestUpdateLocalStreamsWithSimulcast(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, RemovesExtensionNotPresentInRemoteAnswer) { |
| Base::TestRemovesExtensionNotPresentInRemoteAnswer(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, RemovesExtensionNotPresentInLocalAnswer) { |
| Base::TestRemovesExtensionNotPresentInLocalAnswer(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, DuplicateRtpHeaderExtensionIds) { |
| Base::TestDuplicateRtpHeaderExtensionIds(); |
| } |
| |
| #if GTEST_HAS_DEATH_TEST && !defined(WEBRTC_ANDROID) |
| TEST_F(VideoChannelSingleThreadTest, |
| RtpHeaderExtensionIdOutOfRangeHighDeathTest) { |
| #if RTC_DCHECK_IS_ON |
| // Note - EXPECT_DEBUG_DEATH does not work as expected here. |
| EXPECT_DEATH(Base::TestRtpHeaderExtensionIdOutOfRangeHigh(), "Check failed:"); |
| #else |
| Base::TestRtpHeaderExtensionIdOutOfRangeHigh(); |
| #endif |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| RtpHeaderExtensionIdOutOfRangeLowDeathTest) { |
| #if RTC_DCHECK_IS_ON |
| // Note - EXPECT_DEBUG_DEATH does not work as expected here. |
| EXPECT_DEATH(Base::TestRtpHeaderExtensionIdOutOfRangeLow(), "Check failed:"); |
| #else |
| Base::TestRtpHeaderExtensionIdOutOfRangeLow(); |
| #endif |
| } |
| #endif |
| |
| TEST_F(VideoChannelSingleThreadTest, RtpHeaderExtensionIdReassignment) { |
| Base::TestRtpHeaderExtensionIdReassignment(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestRtpHeaderExtensionIdHistoryReassignment) { |
| Base::TestRtpHeaderExtensionIdHistoryReassignment(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetLocalOfferWithPacketization) { |
| const Codec kVp8Codec = CreateVideoCodec(97, "VP8"); |
| Codec vp9_codec = CreateVideoCodec(98, "VP9"); |
| vp9_codec.packetization = kPacketizationParamRaw; |
| VideoContentDescription video; |
| video.set_codecs({kVp8Codec, vp9_codec}); |
| |
| CreateChannels(0, 0); |
| |
| EXPECT_TRUE(channel1_->SetLocalContent(&video, SdpType::kOffer).ok()); |
| EXPECT_THAT(media_send_channel1_impl()->send_codecs(), testing::IsEmpty()); |
| ASSERT_THAT(media_receive_channel1_impl()->recv_codecs(), testing::SizeIs(2)); |
| EXPECT_TRUE( |
| media_receive_channel1_impl()->recv_codecs()[0].Matches(kVp8Codec)); |
| EXPECT_EQ(media_receive_channel1_impl()->recv_codecs()[0].packetization, |
| std::nullopt); |
| EXPECT_TRUE( |
| media_receive_channel1_impl()->recv_codecs()[1].Matches(vp9_codec)); |
| EXPECT_EQ(media_receive_channel1_impl()->recv_codecs()[1].packetization, |
| kPacketizationParamRaw); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetRemoteOfferWithPacketization) { |
| const Codec kVp8Codec = CreateVideoCodec(97, "VP8"); |
| Codec vp9_codec = CreateVideoCodec(98, "VP9"); |
| vp9_codec.packetization = kPacketizationParamRaw; |
| VideoContentDescription video; |
| video.set_codecs({kVp8Codec, vp9_codec}); |
| |
| CreateChannels(0, 0); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&video, SdpType::kOffer).ok()); |
| EXPECT_THAT(media_receive_channel1_impl()->recv_codecs(), testing::IsEmpty()); |
| ASSERT_THAT(media_send_channel1_impl()->send_codecs(), testing::SizeIs(2)); |
| EXPECT_TRUE(media_send_channel1_impl()->send_codecs()[0].Matches(kVp8Codec)); |
| EXPECT_EQ(media_send_channel1_impl()->send_codecs()[0].packetization, |
| std::nullopt); |
| EXPECT_TRUE(media_send_channel1_impl()->send_codecs()[1].Matches(vp9_codec)); |
| EXPECT_EQ(media_send_channel1_impl()->send_codecs()[1].packetization, |
| kPacketizationParamRaw); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetAnswerWithPacketization) { |
| const Codec kVp8Codec = CreateVideoCodec(97, "VP8"); |
| Codec vp9_codec = CreateVideoCodec(98, "VP9"); |
| vp9_codec.packetization = kPacketizationParamRaw; |
| VideoContentDescription video; |
| video.set_codecs({kVp8Codec, vp9_codec}); |
| |
| CreateChannels(0, 0); |
| |
| EXPECT_TRUE(channel1_->SetLocalContent(&video, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel1_->SetRemoteContent(&video, SdpType::kAnswer).ok()); |
| ASSERT_THAT(media_receive_channel1_impl()->recv_codecs(), testing::SizeIs(2)); |
| EXPECT_TRUE( |
| media_receive_channel1_impl()->recv_codecs()[0].Matches(kVp8Codec)); |
| EXPECT_EQ(media_receive_channel1_impl()->recv_codecs()[0].packetization, |
| std::nullopt); |
| EXPECT_TRUE( |
| media_receive_channel1_impl()->recv_codecs()[1].Matches(vp9_codec)); |
| EXPECT_EQ(media_receive_channel1_impl()->recv_codecs()[1].packetization, |
| kPacketizationParamRaw); |
| EXPECT_THAT(media_send_channel1_impl()->send_codecs(), testing::SizeIs(2)); |
| EXPECT_TRUE(media_send_channel1_impl()->send_codecs()[0].Matches(kVp8Codec)); |
| EXPECT_EQ(media_send_channel1_impl()->send_codecs()[0].packetization, |
| std::nullopt); |
| EXPECT_TRUE(media_send_channel1_impl()->send_codecs()[1].Matches(vp9_codec)); |
| EXPECT_EQ(media_send_channel1_impl()->send_codecs()[1].packetization, |
| kPacketizationParamRaw); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetLocalAnswerWithoutPacketization) { |
| const Codec kLocalCodec = CreateVideoCodec(98, "VP8"); |
| Codec remote_codec = CreateVideoCodec(99, "VP8"); |
| remote_codec.packetization = kPacketizationParamRaw; |
| VideoContentDescription local_video; |
| local_video.set_codecs({kLocalCodec}); |
| VideoContentDescription remote_video; |
| remote_video.set_codecs({remote_codec}); |
| |
| CreateChannels(0, 0); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&remote_video, SdpType::kOffer).ok()); |
| EXPECT_TRUE(channel1_->SetLocalContent(&local_video, SdpType::kAnswer).ok()); |
| ASSERT_THAT(media_receive_channel1_impl()->recv_codecs(), testing::SizeIs(1)); |
| EXPECT_EQ(media_receive_channel1_impl()->recv_codecs()[0].packetization, |
| std::nullopt); |
| ASSERT_THAT(media_send_channel1_impl()->send_codecs(), testing::SizeIs(1)); |
| EXPECT_EQ(media_send_channel1_impl()->send_codecs()[0].packetization, |
| std::nullopt); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, TestSetRemoteAnswerWithoutPacketization) { |
| Codec local_codec = CreateVideoCodec(98, "VP8"); |
| local_codec.packetization = kPacketizationParamRaw; |
| const Codec kRemoteCodec = CreateVideoCodec(99, "VP8"); |
| VideoContentDescription local_video; |
| local_video.set_codecs({local_codec}); |
| VideoContentDescription remote_video; |
| remote_video.set_codecs({kRemoteCodec}); |
| |
| CreateChannels(0, 0); |
| |
| EXPECT_TRUE(channel1_->SetLocalContent(&local_video, SdpType::kOffer).ok()); |
| EXPECT_TRUE( |
| channel1_->SetRemoteContent(&remote_video, SdpType::kAnswer).ok()); |
| ASSERT_THAT(media_receive_channel1_impl()->recv_codecs(), testing::SizeIs(1)); |
| EXPECT_EQ(media_receive_channel1_impl()->recv_codecs()[0].packetization, |
| std::nullopt); |
| ASSERT_THAT(media_send_channel1_impl()->send_codecs(), testing::SizeIs(1)); |
| EXPECT_EQ(media_send_channel1_impl()->send_codecs()[0].packetization, |
| std::nullopt); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestSetRemoteAnswerWithInvalidPacketization) { |
| Codec local_codec = CreateVideoCodec(98, "VP8"); |
| local_codec.packetization = kPacketizationParamRaw; |
| Codec remote_codec = CreateVideoCodec(99, "VP8"); |
| remote_codec.packetization = "unknownpacketizationattributevalue"; |
| VideoContentDescription local_video; |
| local_video.set_codecs({local_codec}); |
| VideoContentDescription remote_video; |
| remote_video.set_codecs({remote_codec}); |
| |
| CreateChannels(0, 0); |
| |
| EXPECT_TRUE(channel1_->SetLocalContent(&local_video, SdpType::kOffer).ok()); |
| EXPECT_FALSE( |
| channel1_->SetRemoteContent(&remote_video, SdpType::kAnswer).ok()); |
| ASSERT_THAT(media_receive_channel1_impl()->recv_codecs(), testing::SizeIs(1)); |
| EXPECT_EQ(media_receive_channel1_impl()->recv_codecs()[0].packetization, |
| kPacketizationParamRaw); |
| EXPECT_THAT(media_send_channel1_impl()->send_codecs(), testing::IsEmpty()); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestSetLocalAnswerWithInvalidPacketization) { |
| Codec local_codec = CreateVideoCodec(98, "VP8"); |
| local_codec.packetization = kPacketizationParamRaw; |
| const Codec kRemoteCodec = CreateVideoCodec(99, "VP8"); |
| VideoContentDescription local_video; |
| local_video.set_codecs({local_codec}); |
| VideoContentDescription remote_video; |
| remote_video.set_codecs({kRemoteCodec}); |
| |
| CreateChannels(0, 0); |
| |
| EXPECT_TRUE(channel1_->SetRemoteContent(&remote_video, SdpType::kOffer).ok()); |
| EXPECT_FALSE(channel1_->SetLocalContent(&local_video, SdpType::kAnswer).ok()); |
| EXPECT_THAT(media_receive_channel1_impl()->recv_codecs(), testing::IsEmpty()); |
| ASSERT_THAT(media_send_channel1_impl()->send_codecs(), testing::SizeIs(1)); |
| EXPECT_EQ(media_send_channel1_impl()->send_codecs()[0].packetization, |
| std::nullopt); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| StopsPacketizationVerificationWhenMatchIsFoundInRemoteAnswer) { |
| Codec vp8_foo = CreateVideoCodec(96, "VP8"); |
| vp8_foo.packetization = "foo"; |
| Codec vp8_bar = CreateVideoCodec(97, "VP8"); |
| vp8_bar.packetization = "bar"; |
| Codec vp9 = CreateVideoCodec(98, "VP9"); |
| Codec vp9_foo = CreateVideoCodec(99, "VP9"); |
| vp9_foo.packetization = "bar"; |
| VideoContentDescription local; |
| local.set_codecs({vp8_foo, vp8_bar, vp9_foo}); |
| VideoContentDescription remote; |
| remote.set_codecs({vp8_foo, vp9}); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kOffer).ok()); |
| ASSERT_TRUE(channel1_->SetRemoteContent(&remote, SdpType::kAnswer).ok()); |
| |
| EXPECT_THAT( |
| media_receive_channel1_impl()->recv_codecs(), |
| ElementsAre( |
| AllOf(Field(&Codec::id, 96), Field(&Codec::packetization, "foo")), |
| AllOf(Field(&Codec::id, 97), Field(&Codec::packetization, "bar")), |
| AllOf(Field(&Codec::id, 99), |
| Field(&Codec::packetization, std::nullopt)))); |
| EXPECT_THAT(media_send_channel1_impl()->send_codecs(), |
| ElementsAre(AllOf(Field(&Codec::id, 96), |
| Field(&Codec::packetization, "foo")), |
| AllOf(Field(&Codec::id, 98), |
| Field(&Codec::packetization, std::nullopt)))); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| StopsPacketizationVerificationWhenMatchIsFoundInLocalAnswer) { |
| Codec vp8_foo = CreateVideoCodec(96, "VP8"); |
| vp8_foo.packetization = "foo"; |
| Codec vp8_bar = CreateVideoCodec(97, "VP8"); |
| vp8_bar.packetization = "bar"; |
| Codec vp9 = CreateVideoCodec(98, "VP9"); |
| Codec vp9_foo = CreateVideoCodec(99, "VP9"); |
| vp9_foo.packetization = "bar"; |
| VideoContentDescription local; |
| local.set_codecs({vp8_foo, vp9}); |
| VideoContentDescription remote; |
| remote.set_codecs({vp8_foo, vp8_bar, vp9_foo}); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetRemoteContent(&remote, SdpType::kOffer).ok()); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kAnswer).ok()); |
| |
| EXPECT_THAT( |
| media_receive_channel1_impl()->recv_codecs(), |
| ElementsAre( |
| AllOf(Field("id", &Codec::id, 96), |
| Field("packetization", &Codec::packetization, "foo")), |
| AllOf(Field("id", &Codec::id, 98), |
| Field("packetization", &Codec::packetization, std::nullopt)))); |
| EXPECT_THAT( |
| media_send_channel1_impl()->send_codecs(), |
| ElementsAre( |
| AllOf(Field("id", &Codec::id, 96), |
| Field("packetization", &Codec::packetization, "foo")), |
| AllOf(Field("id", &Codec::id, 97), |
| Field("packetization", &Codec::packetization, "bar")), |
| AllOf(Field("id", &Codec::id, 99), |
| Field("packetization", &Codec::packetization, std::nullopt)))); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| ConsidersAllCodecsWithDiffrentPacketizationsInRemoteAnswer) { |
| Codec vp8 = CreateVideoCodec(96, "VP8"); |
| Codec vp8_raw = CreateVideoCodec(97, "VP8"); |
| vp8_raw.packetization = kPacketizationParamRaw; |
| VideoContentDescription local; |
| local.set_codecs({vp8, vp8_raw}); |
| VideoContentDescription remote; |
| remote.set_codecs({vp8_raw, vp8}); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kOffer).ok()); |
| ASSERT_TRUE(channel1_->SetRemoteContent(&remote, SdpType::kAnswer).ok()); |
| |
| EXPECT_THAT(media_receive_channel1_impl()->recv_codecs(), |
| UnorderedElementsAre( |
| AllOf(Field(&Codec::id, 96), |
| Field(&Codec::packetization, std::nullopt)), |
| AllOf(Field(&Codec::id, 97), |
| Field(&Codec::packetization, kPacketizationParamRaw)))); |
| EXPECT_THAT(media_send_channel1_impl()->send_codecs(), |
| UnorderedElementsAre( |
| AllOf(Field(&Codec::id, 97), |
| Field(&Codec::packetization, kPacketizationParamRaw)), |
| AllOf(Field(&Codec::id, 96), |
| Field(&Codec::packetization, std::nullopt)))); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| ConsidersAllCodecsWithDiffrentPacketizationsInLocalAnswer) { |
| Codec vp8 = CreateVideoCodec(96, "VP8"); |
| Codec vp8_raw = CreateVideoCodec(97, "VP8"); |
| vp8_raw.packetization = kPacketizationParamRaw; |
| VideoContentDescription local; |
| local.set_codecs({vp8_raw, vp8}); |
| VideoContentDescription remote; |
| remote.set_codecs({vp8, vp8_raw}); |
| |
| CreateChannels(0, 0); |
| ASSERT_TRUE(channel1_->SetRemoteContent(&remote, SdpType::kOffer).ok()); |
| ASSERT_TRUE(channel1_->SetLocalContent(&local, SdpType::kAnswer).ok()); |
| |
| EXPECT_THAT( |
| media_receive_channel1_impl()->recv_codecs(), |
| ElementsAre(AllOf(Field(&Codec::id, 97), |
| Field(&Codec::packetization, kPacketizationParamRaw)), |
| AllOf(Field(&Codec::id, 96), |
| Field(&Codec::packetization, std::nullopt)))); |
| EXPECT_THAT( |
| media_send_channel1_impl()->send_codecs(), |
| ElementsAre(AllOf(Field(&Codec::id, 96), |
| Field(&Codec::packetization, std::nullopt)), |
| AllOf(Field(&Codec::id, 97), |
| Field(&Codec::packetization, kPacketizationParamRaw)))); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestSetRtpTransportNullClearsReceiveSinks) { |
| Base::TestSetRtpTransportNullClearsReceiveSinks(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestRegisterRtpDemuxerSinkPropagatesReceiveSsrcs) { |
| Base::TestRegisterRtpDemuxerSinkPropagatesReceiveSsrcs(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestUpdateRemoteStreamsClearsRemovedSinks) { |
| Base::TestUpdateRemoteStreamsClearsRemovedSinks(); |
| } |
| |
| TEST_F(VideoChannelSingleThreadTest, |
| TestUpdateRemoteStreamsClearsUnsignaledSinks) { |
| Base::TestUpdateRemoteStreamsClearsUnsignaledSinks(); |
| } |
| |
| // VideoChannelDoubleThreadTest |
| TEST_F(VideoChannelDoubleThreadTest, TestInit) { |
| Base::TestInit(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestDeinit) { |
| Base::TestDeinit(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSetContents) { |
| Base::TestSetContents(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSetContentsExtmapAllowMixedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCaller) { |
| Base::TestSetContentsExtmapAllowMixedCaller(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSetContentsExtmapAllowMixedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/true); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, |
| TestSetContentsExtmapAllowMixedNotSupportedAsCallee) { |
| Base::TestSetContentsExtmapAllowMixedCallee(/*offer=*/true, /*answer=*/false); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSetContentsNullOffer) { |
| Base::TestSetContentsNullOffer(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSetContentsRtcpMux) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSetContentsRtcpMuxWithPrAnswer) { |
| Base::TestSetContentsRtcpMux(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestChangeStreamParamsInContent) { |
| Base::TestChangeStreamParamsInContent(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestPlayoutAndSendingStates) { |
| Base::TestPlayoutAndSendingStates(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestMediaContentDirection) { |
| Base::TestMediaContentDirection(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestCallSetup) { |
| Base::TestCallSetup(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendRtpToRtp) { |
| Base::SendRtpToRtp(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendDtlsSrtpToDtlsSrtp) { |
| Base::SendDtlsSrtpToDtlsSrtp(0, 0); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendDtlsSrtpToDtlsSrtpRtcpMux) { |
| Base::SendDtlsSrtpToDtlsSrtp(RTCP_MUX, RTCP_MUX); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendEarlyMediaUsingRtcpMuxSrtp) { |
| Base::SendEarlyMediaUsingRtcpMuxSrtp(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendRtpToRtpOnThread) { |
| Base::SendRtpToRtpOnThread(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendWithWritabilityLoss) { |
| Base::SendWithWritabilityLoss(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSetContentFailure) { |
| Base::TestSetContentFailure(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSendTwoOffers) { |
| Base::TestSendTwoOffers(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestUpdateRemoteStreamsRaceWithRtpPacket) { |
| Base::TestUpdateRemoteStreamsRaceWithRtpPacket(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestReceiveTwoOffers) { |
| Base::TestReceiveTwoOffers(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestSendPrAnswer) { |
| Base::TestSendPrAnswer(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestReceivePrAnswer) { |
| Base::TestReceivePrAnswer(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendBundleToBundle) { |
| Base::SendBundleToBundle(kVideoPts, false, false); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendBundleToBundleSecure) { |
| Base::SendBundleToBundle(kVideoPts, false, true); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendBundleToBundleWithRtcpMux) { |
| Base::SendBundleToBundle(kVideoPts, true, false); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SendBundleToBundleWithRtcpMuxSecure) { |
| Base::SendBundleToBundle(kVideoPts, true, true); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, TestOnTransportReadyToSend) { |
| Base::TestOnTransportReadyToSend(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, DefaultMaxBitrateIsUnlimited) { |
| Base::DefaultMaxBitrateIsUnlimited(); |
| } |
| |
| TEST_F(VideoChannelDoubleThreadTest, SocketOptionsMergedOnSetTransport) { |
| Base::SocketOptionsMergedOnSetTransport(); |
| } |
| |
| } // namespace |
| |
| } // namespace webrtc |