2021-03-19 10:25:58 +00:00
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#include "group/GroupNetworkManager.h"
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#include "p2p/base/basic_packet_socket_factory.h"
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#include "p2p/client/basic_port_allocator.h"
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#include "p2p/base/p2p_transport_channel.h"
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#include "p2p/base/basic_async_resolver_factory.h"
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#include "api/packet_socket_factory.h"
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#include "rtc_base/task_utils/to_queued_task.h"
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#include "rtc_base/rtc_certificate_generator.h"
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#include "p2p/base/ice_credentials_iterator.h"
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#include "api/jsep_ice_candidate.h"
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#include "p2p/base/dtls_transport.h"
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#include "p2p/base/dtls_transport_factory.h"
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#include "pc/dtls_srtp_transport.h"
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#include "pc/dtls_transport.h"
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2021-06-25 00:43:10 +00:00
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#include "media/sctp/sctp_transport_factory.h"
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#include "platform/PlatformInterface.h"
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2021-03-19 10:25:58 +00:00
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#include "StaticThreads.h"
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namespace tgcalls {
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class TurnCustomizerImpl : public webrtc::TurnCustomizer {
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public:
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TurnCustomizerImpl() {
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}
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virtual ~TurnCustomizerImpl() {
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}
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void MaybeModifyOutgoingStunMessage(cricket::PortInterface* port,
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cricket::StunMessage* message) override {
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message->AddAttribute(std::make_unique<cricket::StunByteStringAttribute>(cricket::STUN_ATTR_SOFTWARE, "Telegram "));
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}
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bool AllowChannelData(cricket::PortInterface* port, const void *data, size_t size, bool payload) override {
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return true;
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}
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};
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class SctpDataChannelProviderInterfaceImpl : public sigslot::has_slots<>, public webrtc::SctpDataChannelProviderInterface, public webrtc::DataChannelObserver {
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public:
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SctpDataChannelProviderInterfaceImpl(
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cricket::DtlsTransport *transportChannel,
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std::function<void(bool)> onStateChanged,
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std::function<void(std::string const &)> onMessageReceived,
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std::shared_ptr<Threads> threads
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) :
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_threads(std::move(threads)),
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_onStateChanged(onStateChanged),
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_onMessageReceived(onMessageReceived) {
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assert(_threads->getNetworkThread()->IsCurrent());
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_sctpTransportFactory.reset(new cricket::SctpTransportFactory(_threads->getNetworkThread()));
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_sctpTransport = _sctpTransportFactory->CreateSctpTransport(transportChannel);
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_sctpTransport->SignalReadyToSendData.connect(this, &SctpDataChannelProviderInterfaceImpl::sctpReadyToSendData);
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_sctpTransport->SignalDataReceived.connect(this, &SctpDataChannelProviderInterfaceImpl::sctpDataReceived);
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webrtc::InternalDataChannelInit dataChannelInit;
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dataChannelInit.id = 0;
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_dataChannel = webrtc::SctpDataChannel::Create(
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this,
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"data",
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dataChannelInit,
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_threads->getNetworkThread(),
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_threads->getNetworkThread()
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);
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_dataChannel->RegisterObserver(this);
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}
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virtual ~SctpDataChannelProviderInterfaceImpl() {
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assert(_threads->getNetworkThread()->IsCurrent());
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_dataChannel->UnregisterObserver();
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_dataChannel->Close();
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_dataChannel = nullptr;
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_sctpTransport = nullptr;
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_sctpTransportFactory.reset();
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}
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void sendDataChannelMessage(std::string const &message) {
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assert(_threads->getNetworkThread()->IsCurrent());
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if (_isDataChannelOpen) {
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RTC_LOG(LS_INFO) << "Outgoing DataChannel message: " << message;
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webrtc::DataBuffer buffer(message);
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_dataChannel->Send(buffer);
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} else {
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RTC_LOG(LS_INFO) << "Could not send an outgoing DataChannel message: the channel is not open";
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}
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}
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virtual void OnStateChange() override {
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assert(_threads->getNetworkThread()->IsCurrent());
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auto state = _dataChannel->state();
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bool isDataChannelOpen = state == webrtc::DataChannelInterface::DataState::kOpen;
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if (_isDataChannelOpen != isDataChannelOpen) {
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_isDataChannelOpen = isDataChannelOpen;
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_onStateChanged(_isDataChannelOpen);
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}
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}
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virtual void OnMessage(const webrtc::DataBuffer& buffer) override {
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assert(_threads->getNetworkThread()->IsCurrent());
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if (!buffer.binary) {
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std::string messageText(buffer.data.data(), buffer.data.data() + buffer.data.size());
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RTC_LOG(LS_INFO) << "Incoming DataChannel message: " << messageText;
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_onMessageReceived(messageText);
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}
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}
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void updateIsConnected(bool isConnected) {
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assert(_threads->getNetworkThread()->IsCurrent());
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if (isConnected) {
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if (!_isSctpTransportStarted) {
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_isSctpTransportStarted = true;
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_sctpTransport->Start(5000, 5000, 262144);
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}
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}
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}
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void sctpReadyToSendData() {
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assert(_threads->getNetworkThread()->IsCurrent());
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_dataChannel->OnTransportReady(true);
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}
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void sctpDataReceived(const cricket::ReceiveDataParams& params, const rtc::CopyOnWriteBuffer& buffer) {
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assert(_threads->getNetworkThread()->IsCurrent());
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_dataChannel->OnDataReceived(params, buffer);
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}
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2021-06-25 00:43:10 +00:00
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virtual bool SendData(int sid, const webrtc::SendDataParams& params, const rtc::CopyOnWriteBuffer& payload, cricket::SendDataResult* result) override {
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2021-03-19 10:25:58 +00:00
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assert(_threads->getNetworkThread()->IsCurrent());
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2021-06-25 00:43:10 +00:00
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return _sctpTransport->SendData(sid, params, payload);
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2021-03-19 10:25:58 +00:00
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}
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virtual bool ConnectDataChannel(webrtc::SctpDataChannel *data_channel) override {
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assert(_threads->getNetworkThread()->IsCurrent());
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return true;
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}
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virtual void DisconnectDataChannel(webrtc::SctpDataChannel* data_channel) override {
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assert(_threads->getNetworkThread()->IsCurrent());
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return;
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}
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virtual void AddSctpDataStream(int sid) override {
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assert(_threads->getNetworkThread()->IsCurrent());
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_sctpTransport->OpenStream(sid);
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}
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virtual void RemoveSctpDataStream(int sid) override {
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assert(_threads->getNetworkThread()->IsCurrent());
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_threads->getNetworkThread()->Invoke<void>(RTC_FROM_HERE, [this, sid]() {
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_sctpTransport->ResetStream(sid);
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});
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}
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virtual bool ReadyToSendData() const override {
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assert(_threads->getNetworkThread()->IsCurrent());
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return _sctpTransport->ReadyToSendData();
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}
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private:
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std::shared_ptr<Threads> _threads;
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std::function<void(bool)> _onStateChanged;
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std::function<void(std::string const &)> _onMessageReceived;
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std::unique_ptr<cricket::SctpTransportFactory> _sctpTransportFactory;
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std::unique_ptr<cricket::SctpTransportInternal> _sctpTransport;
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rtc::scoped_refptr<webrtc::SctpDataChannel> _dataChannel;
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bool _isSctpTransportStarted = false;
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bool _isDataChannelOpen = false;
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};
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webrtc::CryptoOptions GroupNetworkManager::getDefaulCryptoOptions() {
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auto options = webrtc::CryptoOptions();
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options.srtp.enable_aes128_sha1_80_crypto_cipher = false;
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options.srtp.enable_gcm_crypto_suites = true;
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return options;
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}
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GroupNetworkManager::GroupNetworkManager(
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std::function<void(const State &)> stateUpdated,
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std::function<void(rtc::CopyOnWriteBuffer const &, bool)> transportMessageReceived,
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std::function<void(bool)> dataChannelStateUpdated,
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std::function<void(std::string const &)> dataChannelMessageReceived,
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std::shared_ptr<Threads> threads) :
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_threads(std::move(threads)),
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_stateUpdated(std::move(stateUpdated)),
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_transportMessageReceived(std::move(transportMessageReceived)),
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_dataChannelStateUpdated(dataChannelStateUpdated),
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_dataChannelMessageReceived(dataChannelMessageReceived) {
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assert(_threads->getNetworkThread()->IsCurrent());
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_localIceParameters = PeerIceParameters(rtc::CreateRandomString(cricket::ICE_UFRAG_LENGTH), rtc::CreateRandomString(cricket::ICE_PWD_LENGTH));
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_localCertificate = rtc::RTCCertificateGenerator::GenerateCertificate(rtc::KeyParams(rtc::KT_ECDSA), absl::nullopt);
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2021-06-25 00:43:10 +00:00
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_networkMonitorFactory = PlatformInterface::SharedInstance()->createNetworkMonitorFactory();
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2021-03-19 10:25:58 +00:00
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_socketFactory.reset(new rtc::BasicPacketSocketFactory(_threads->getNetworkThread()));
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2021-06-25 00:43:10 +00:00
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_networkManager = std::make_unique<rtc::BasicNetworkManager>(_networkMonitorFactory.get());
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_asyncResolverFactory = std::make_unique<webrtc::BasicAsyncResolverFactory>();
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_dtlsSrtpTransport = std::make_unique<webrtc::DtlsSrtpTransport>(true);
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_dtlsSrtpTransport->SetDtlsTransports(nullptr, nullptr);
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_dtlsSrtpTransport->SetActiveResetSrtpParams(false);
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_dtlsSrtpTransport->SignalReadyToSend.connect(this, &GroupNetworkManager::DtlsReadyToSend);
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_dtlsSrtpTransport->SignalRtpPacketReceived.connect(this, &GroupNetworkManager::RtpPacketReceived_n);
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resetDtlsSrtpTransport();
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}
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GroupNetworkManager::~GroupNetworkManager() {
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assert(_threads->getNetworkThread()->IsCurrent());
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RTC_LOG(LS_INFO) << "GroupNetworkManager::~GroupNetworkManager()";
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_dtlsSrtpTransport.reset();
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_dtlsTransport.reset();
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_dataChannelInterface.reset();
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_transportChannel.reset();
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_asyncResolverFactory.reset();
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_portAllocator.reset();
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_networkManager.reset();
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_socketFactory.reset();
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}
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void GroupNetworkManager::resetDtlsSrtpTransport() {
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_portAllocator.reset(new cricket::BasicPortAllocator(_networkManager.get(), _socketFactory.get(), _turnCustomizer.get(), nullptr));
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_portAllocator->set_flags(_portAllocator->flags());
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_portAllocator->Initialize();
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_portAllocator->SetConfiguration({}, {}, 2, webrtc::NO_PRUNE, _turnCustomizer.get());
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_transportChannel.reset(new cricket::P2PTransportChannel("transport", 0, _portAllocator.get(), _asyncResolverFactory.get(), nullptr));
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cricket::IceConfig iceConfig;
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iceConfig.continual_gathering_policy = cricket::GATHER_ONCE;
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iceConfig.prioritize_most_likely_candidate_pairs = true;
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iceConfig.regather_on_failed_networks_interval = 8000;
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_transportChannel->SetIceConfig(iceConfig);
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cricket::IceParameters localIceParameters(
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_localIceParameters.ufrag,
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_localIceParameters.pwd,
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false
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);
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_transportChannel->SetIceParameters(localIceParameters);
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const bool isOutgoing = false;
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_transportChannel->SetIceRole(isOutgoing ? cricket::ICEROLE_CONTROLLING : cricket::ICEROLE_CONTROLLED);
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_transportChannel->SetRemoteIceMode(cricket::ICEMODE_LITE);
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_transportChannel->SignalIceTransportStateChanged.connect(this, &GroupNetworkManager::transportStateChanged);
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_transportChannel->SignalReadPacket.connect(this, &GroupNetworkManager::transportPacketReceived);
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webrtc::CryptoOptions cryptoOptions = GroupNetworkManager::getDefaulCryptoOptions();
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_dtlsTransport.reset(new cricket::DtlsTransport(_transportChannel.get(), cryptoOptions, nullptr));
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_dtlsTransport->SignalWritableState.connect(
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this, &GroupNetworkManager::OnTransportWritableState_n);
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_dtlsTransport->SignalReceivingState.connect(
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this, &GroupNetworkManager::OnTransportReceivingState_n);
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_dtlsTransport->SetDtlsRole(rtc::SSLRole::SSL_SERVER);
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_dtlsTransport->SetLocalCertificate(_localCertificate);
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_dtlsSrtpTransport->SetDtlsTransports(_dtlsTransport.get(), nullptr);
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}
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void GroupNetworkManager::start() {
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_transportChannel->MaybeStartGathering();
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2021-06-25 00:43:10 +00:00
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const auto weak = std::weak_ptr<GroupNetworkManager>(shared_from_this());
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_dataChannelInterface.reset(new SctpDataChannelProviderInterfaceImpl(
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_dtlsTransport.get(),
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[weak, threads = _threads](bool state) {
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assert(threads->getNetworkThread()->IsCurrent());
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const auto strong = weak.lock();
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if (!strong) {
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return;
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}
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strong->_dataChannelStateUpdated(state);
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},
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[weak, threads = _threads](std::string const &message) {
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assert(threads->getNetworkThread()->IsCurrent());
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const auto strong = weak.lock();
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if (!strong) {
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return;
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}
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strong->_dataChannelMessageReceived(message);
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},
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_threads
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));
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2021-03-19 10:25:58 +00:00
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}
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void GroupNetworkManager::stop() {
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_transportChannel->SignalIceTransportStateChanged.disconnect(this);
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_transportChannel->SignalReadPacket.disconnect(this);
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_dtlsTransport->SignalWritableState.disconnect(this);
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_dtlsTransport->SignalReceivingState.disconnect(this);
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_dtlsSrtpTransport->SetDtlsTransports(nullptr, nullptr);
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_dataChannelInterface.reset();
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_dtlsTransport.reset();
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_transportChannel.reset();
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_portAllocator.reset();
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_localIceParameters = PeerIceParameters(rtc::CreateRandomString(cricket::ICE_UFRAG_LENGTH), rtc::CreateRandomString(cricket::ICE_PWD_LENGTH));
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_localCertificate = rtc::RTCCertificateGenerator::GenerateCertificate(rtc::KeyParams(rtc::KT_ECDSA), absl::nullopt);
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resetDtlsSrtpTransport();
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}
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PeerIceParameters GroupNetworkManager::getLocalIceParameters() {
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return _localIceParameters;
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}
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std::unique_ptr<rtc::SSLFingerprint> GroupNetworkManager::getLocalFingerprint() {
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auto certificate = _localCertificate;
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if (!certificate) {
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return nullptr;
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}
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return rtc::SSLFingerprint::CreateFromCertificate(*certificate);
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}
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void GroupNetworkManager::setRemoteParams(PeerIceParameters const &remoteIceParameters, std::vector<cricket::Candidate> const &iceCandidates, rtc::SSLFingerprint *fingerprint) {
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_remoteIceParameters = remoteIceParameters;
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cricket::IceParameters parameters(
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remoteIceParameters.ufrag,
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remoteIceParameters.pwd,
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false
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);
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_transportChannel->SetRemoteIceParameters(parameters);
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for (const auto &candidate : iceCandidates) {
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_transportChannel->AddRemoteCandidate(candidate);
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}
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if (fingerprint) {
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_dtlsTransport->SetRemoteFingerprint(fingerprint->algorithm, fingerprint->digest.data(), fingerprint->digest.size());
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}
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}
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void GroupNetworkManager::sendDataChannelMessage(std::string const &message) {
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if (_dataChannelInterface) {
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_dataChannelInterface->sendDataChannelMessage(message);
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}
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}
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webrtc::RtpTransport *GroupNetworkManager::getRtpTransport() {
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return _dtlsSrtpTransport.get();
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}
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void GroupNetworkManager::checkConnectionTimeout() {
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const auto weak = std::weak_ptr<GroupNetworkManager>(shared_from_this());
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_threads->getNetworkThread()->PostDelayedTask(RTC_FROM_HERE, [weak]() {
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auto strong = weak.lock();
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if (!strong) {
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return;
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}
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int64_t currentTimestamp = rtc::TimeMillis();
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const int64_t maxTimeout = 20000;
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if (strong->_lastNetworkActivityMs + maxTimeout < currentTimestamp) {
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GroupNetworkManager::State emitState;
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emitState.isReadyToSendData = false;
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emitState.isFailed = true;
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strong->_stateUpdated(emitState);
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}
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strong->checkConnectionTimeout();
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}, 1000);
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}
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void GroupNetworkManager::candidateGathered(cricket::IceTransportInternal *transport, const cricket::Candidate &candidate) {
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assert(_threads->getNetworkThread()->IsCurrent());
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}
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void GroupNetworkManager::candidateGatheringState(cricket::IceTransportInternal *transport) {
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assert(_threads->getNetworkThread()->IsCurrent());
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}
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void GroupNetworkManager::OnTransportWritableState_n(rtc::PacketTransportInternal *transport) {
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assert(_threads->getNetworkThread()->IsCurrent());
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UpdateAggregateStates_n();
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}
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void GroupNetworkManager::OnTransportReceivingState_n(rtc::PacketTransportInternal *transport) {
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assert(_threads->getNetworkThread()->IsCurrent());
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UpdateAggregateStates_n();
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}
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void GroupNetworkManager::DtlsReadyToSend(bool isReadyToSend) {
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UpdateAggregateStates_n();
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if (isReadyToSend) {
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const auto weak = std::weak_ptr<GroupNetworkManager>(shared_from_this());
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|
_threads->getNetworkThread()->PostTask(RTC_FROM_HERE, [weak]() {
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|
const auto strong = weak.lock();
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|
if (!strong) {
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|
return;
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|
}
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|
strong->UpdateAggregateStates_n();
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});
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}
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}
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void GroupNetworkManager::transportStateChanged(cricket::IceTransportInternal *transport) {
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UpdateAggregateStates_n();
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}
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void GroupNetworkManager::transportReadyToSend(cricket::IceTransportInternal *transport) {
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assert(_threads->getNetworkThread()->IsCurrent());
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|
}
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void GroupNetworkManager::transportPacketReceived(rtc::PacketTransportInternal *transport, const char *bytes, size_t size, const int64_t ×tamp, int unused) {
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|
assert(_threads->getNetworkThread()->IsCurrent());
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|
|
_lastNetworkActivityMs = rtc::TimeMillis();
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|
}
|
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|
void GroupNetworkManager::RtpPacketReceived_n(rtc::CopyOnWriteBuffer *packet, int64_t packet_time_us, bool isUnresolved) {
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|
|
if (_transportMessageReceived) {
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|
|
_transportMessageReceived(*packet, isUnresolved);
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|
|
}
|
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|
|
}
|
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|
|
void GroupNetworkManager::UpdateAggregateStates_n() {
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|
|
|
assert(_threads->getNetworkThread()->IsCurrent());
|
|
|
|
|
|
|
|
auto state = _transportChannel->GetIceTransportState();
|
|
|
|
bool isConnected = false;
|
|
|
|
switch (state) {
|
|
|
|
case webrtc::IceTransportState::kConnected:
|
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|
|
case webrtc::IceTransportState::kCompleted:
|
|
|
|
isConnected = true;
|
|
|
|
break;
|
|
|
|
default:
|
|
|
|
break;
|
|
|
|
}
|
|
|
|
|
|
|
|
if (!_dtlsSrtpTransport->IsWritable(false)) {
|
|
|
|
isConnected = false;
|
|
|
|
}
|
|
|
|
|
|
|
|
if (_isConnected != isConnected) {
|
|
|
|
_isConnected = isConnected;
|
|
|
|
|
|
|
|
GroupNetworkManager::State emitState;
|
|
|
|
emitState.isReadyToSendData = isConnected;
|
|
|
|
_stateUpdated(emitState);
|
|
|
|
|
|
|
|
if (_dataChannelInterface) {
|
|
|
|
_dataChannelInterface->updateIsConnected(isConnected);
|
|
|
|
}
|
|
|
|
}
|
|
|
|
}
|
|
|
|
|
|
|
|
void GroupNetworkManager::sctpReadyToSendData() {
|
|
|
|
}
|
|
|
|
|
|
|
|
void GroupNetworkManager::sctpDataReceived(const cricket::ReceiveDataParams& params, const rtc::CopyOnWriteBuffer& buffer) {
|
|
|
|
}
|
|
|
|
|
|
|
|
} // namespace tgcalls
|