This allows the SslRole to be queried from the network thread which will simplify some code paths and avoid thread hopping. The next steps will be to remove GetSctpSslRole and only query the DTLS role on the network thread and start combining other operations. Bug: webrtc:11547 Change-Id: I222dc838fc5ee274a294c8d81d38b5a4ea8fea1f Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/298302 Reviewed-by: Harald Alvestrand <hta@webrtc.org> Commit-Queue: Tomas Gunnarsson <tommi@webrtc.org> Cr-Commit-Position: refs/heads/main@{#39642}
444 lines
16 KiB
C++
444 lines
16 KiB
C++
/*
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* Copyright 2019 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "pc/data_channel_controller.h"
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#include <utility>
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#include "absl/algorithm/container.h"
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#include "api/peer_connection_interface.h"
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#include "api/rtc_error.h"
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#include "pc/peer_connection_internal.h"
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#include "pc/sctp_utils.h"
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#include "rtc_base/logging.h"
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namespace webrtc {
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DataChannelController::~DataChannelController() {}
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bool DataChannelController::HasDataChannels() const {
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RTC_DCHECK_RUN_ON(signaling_thread());
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return !sctp_data_channels_.empty();
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}
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bool DataChannelController::HasUsedDataChannels() const {
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RTC_DCHECK_RUN_ON(signaling_thread());
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return has_used_data_channels_;
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}
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RTCError DataChannelController::SendData(
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StreamId sid,
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const SendDataParams& params,
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const rtc::CopyOnWriteBuffer& payload) {
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if (data_channel_transport())
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return DataChannelSendData(sid, params, payload);
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RTC_LOG(LS_ERROR) << "SendData called before transport is ready";
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return RTCError(RTCErrorType::INVALID_STATE);
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}
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void DataChannelController::AddSctpDataStream(StreamId sid) {
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if (data_channel_transport()) {
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network_thread()->BlockingCall([this, sid] {
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if (data_channel_transport()) {
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data_channel_transport()->OpenChannel(sid.stream_id_int());
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}
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});
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}
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}
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void DataChannelController::RemoveSctpDataStream(StreamId sid) {
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if (data_channel_transport()) {
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network_thread()->BlockingCall([this, sid] {
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if (data_channel_transport()) {
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data_channel_transport()->CloseChannel(sid.stream_id_int());
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}
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});
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}
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}
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bool DataChannelController::ReadyToSendData() const {
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RTC_DCHECK_RUN_ON(signaling_thread());
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return (data_channel_transport() && data_channel_transport_ready_to_send_);
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}
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void DataChannelController::OnChannelStateChanged(
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SctpDataChannel* channel,
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DataChannelInterface::DataState state) {
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RTC_DCHECK_RUN_ON(signaling_thread());
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if (state == DataChannelInterface::DataState::kClosed)
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OnSctpDataChannelClosed(channel);
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pc_->OnSctpDataChannelStateChanged(channel, state);
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}
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void DataChannelController::OnDataReceived(
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int channel_id,
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DataMessageType type,
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const rtc::CopyOnWriteBuffer& buffer) {
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RTC_DCHECK_RUN_ON(network_thread());
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if (HandleOpenMessage_n(channel_id, type, buffer))
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return;
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signaling_thread()->PostTask(
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SafeTask(signaling_safety_.flag(), [this, channel_id, type, buffer] {
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RTC_DCHECK_RUN_ON(signaling_thread());
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// TODO(bugs.webrtc.org/11547): The data being received should be
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// delivered on the network thread.
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auto it = FindChannel(StreamId(channel_id));
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if (it != sctp_data_channels_.end())
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(*it)->OnDataReceived(type, buffer);
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}));
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}
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void DataChannelController::OnChannelClosing(int channel_id) {
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RTC_DCHECK_RUN_ON(network_thread());
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signaling_thread()->PostTask(
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SafeTask(signaling_safety_.flag(), [this, channel_id] {
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RTC_DCHECK_RUN_ON(signaling_thread());
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// TODO(bugs.webrtc.org/11547): Should run on the network thread.
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auto it = FindChannel(StreamId(channel_id));
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if (it != sctp_data_channels_.end())
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(*it)->OnClosingProcedureStartedRemotely();
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}));
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}
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void DataChannelController::OnChannelClosed(int channel_id) {
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RTC_DCHECK_RUN_ON(network_thread());
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signaling_thread()->PostTask(
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SafeTask(signaling_safety_.flag(), [this, channel_id] {
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RTC_DCHECK_RUN_ON(signaling_thread());
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auto it = FindChannel(StreamId(channel_id));
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// Remove the channel from our list, close it and free up resources.
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if (it != sctp_data_channels_.end()) {
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rtc::scoped_refptr<SctpDataChannel> channel = std::move(*it);
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// Note: this causes OnSctpDataChannelClosed() to not do anything
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// when called from within `OnClosingProcedureComplete`.
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sctp_data_channels_.erase(it);
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sid_allocator_.ReleaseSid(channel->sid());
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channel->OnClosingProcedureComplete();
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}
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}));
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}
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void DataChannelController::OnReadyToSend() {
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RTC_DCHECK_RUN_ON(network_thread());
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signaling_thread()->PostTask(SafeTask(signaling_safety_.flag(), [this] {
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RTC_DCHECK_RUN_ON(signaling_thread());
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data_channel_transport_ready_to_send_ = true;
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auto copy = sctp_data_channels_;
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for (const auto& channel : copy)
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channel->OnTransportReady();
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}));
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}
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void DataChannelController::OnTransportClosed(RTCError error) {
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RTC_DCHECK_RUN_ON(network_thread());
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signaling_thread()->PostTask(
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SafeTask(signaling_safety_.flag(), [this, error] {
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RTC_DCHECK_RUN_ON(signaling_thread());
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OnTransportChannelClosed(error);
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}));
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}
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void DataChannelController::SetupDataChannelTransport_n() {
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RTC_DCHECK_RUN_ON(network_thread());
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// There's a new data channel transport. This needs to be signaled to the
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// `sctp_data_channels_` so that they can reopen and reconnect. This is
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// necessary when bundling is applied.
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NotifyDataChannelsOfTransportCreated();
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}
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void DataChannelController::TeardownDataChannelTransport_n() {
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RTC_DCHECK_RUN_ON(network_thread());
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if (data_channel_transport()) {
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data_channel_transport()->SetDataSink(nullptr);
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}
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set_data_channel_transport(nullptr);
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}
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void DataChannelController::OnTransportChanged(
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DataChannelTransportInterface* new_data_channel_transport) {
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RTC_DCHECK_RUN_ON(network_thread());
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if (data_channel_transport() &&
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data_channel_transport() != new_data_channel_transport) {
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// Changed which data channel transport is used for `sctp_mid_` (eg. now
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// it's bundled).
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data_channel_transport()->SetDataSink(nullptr);
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set_data_channel_transport(new_data_channel_transport);
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if (new_data_channel_transport) {
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new_data_channel_transport->SetDataSink(this);
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// There's a new data channel transport. This needs to be signaled to the
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// `sctp_data_channels_` so that they can reopen and reconnect. This is
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// necessary when bundling is applied.
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NotifyDataChannelsOfTransportCreated();
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}
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}
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}
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std::vector<DataChannelStats> DataChannelController::GetDataChannelStats()
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const {
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RTC_DCHECK_RUN_ON(signaling_thread());
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std::vector<DataChannelStats> stats;
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stats.reserve(sctp_data_channels_.size());
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for (const auto& channel : sctp_data_channels_)
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stats.push_back(channel->GetStats());
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return stats;
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}
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bool DataChannelController::HandleOpenMessage_n(
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int channel_id,
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DataMessageType type,
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const rtc::CopyOnWriteBuffer& buffer) {
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if (type != DataMessageType::kControl || !IsOpenMessage(buffer))
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return false;
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// Received OPEN message; parse and signal that a new data channel should
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// be created.
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std::string label;
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InternalDataChannelInit config;
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config.id = channel_id;
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if (!ParseDataChannelOpenMessage(buffer, &label, &config)) {
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RTC_LOG(LS_WARNING) << "Failed to parse the OPEN message for sid "
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<< channel_id;
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} else {
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config.open_handshake_role = InternalDataChannelInit::kAcker;
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signaling_thread()->PostTask(
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SafeTask(signaling_safety_.flag(),
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[this, label = std::move(label), config = std::move(config)] {
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RTC_DCHECK_RUN_ON(signaling_thread());
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OnDataChannelOpenMessage(label, config);
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}));
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}
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return true;
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}
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void DataChannelController::OnDataChannelOpenMessage(
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const std::string& label,
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const InternalDataChannelInit& config) {
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rtc::scoped_refptr<DataChannelInterface> channel(
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InternalCreateDataChannelWithProxy(label, &config));
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if (!channel.get()) {
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RTC_LOG(LS_ERROR) << "Failed to create DataChannel from the OPEN message.";
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return;
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}
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pc_->Observer()->OnDataChannel(std::move(channel));
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pc_->NoteDataAddedEvent();
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}
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rtc::scoped_refptr<DataChannelInterface>
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DataChannelController::InternalCreateDataChannelWithProxy(
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const std::string& label,
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const InternalDataChannelInit* config) {
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RTC_DCHECK_RUN_ON(signaling_thread());
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if (pc_->IsClosed()) {
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return nullptr;
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}
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rtc::scoped_refptr<SctpDataChannel> channel =
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InternalCreateSctpDataChannel(label, config);
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if (channel) {
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return SctpDataChannel::CreateProxy(channel);
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}
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return nullptr;
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}
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rtc::scoped_refptr<SctpDataChannel>
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DataChannelController::InternalCreateSctpDataChannel(
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const std::string& label,
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const InternalDataChannelInit* config) {
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RTC_DCHECK_RUN_ON(signaling_thread());
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if (config && !config->IsValid()) {
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RTC_LOG(LS_ERROR) << "Failed to initialize the SCTP data channel due to "
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"invalid DataChannelInit.";
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return nullptr;
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}
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InternalDataChannelInit new_config =
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config ? (*config) : InternalDataChannelInit();
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StreamId sid(new_config.id);
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if (!sid.HasValue()) {
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rtc::SSLRole role;
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// TODO(bugs.webrtc.org/11547): `GetSctpSslRole` likely involves a hop to
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// the network thread. (unless there's no transport). Change this so that
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// the role is checked on the network thread and any network thread related
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// initialization is done at the same time (to avoid additional hops).
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// Use `GetSctpSslRole_n` on the network thread.
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if (pc_->GetSctpSslRole(&role)) {
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sid = sid_allocator_.AllocateSid(role);
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if (!sid.HasValue())
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return nullptr;
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}
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// Note that when we get here, the ID may still be invalid.
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} else if (!sid_allocator_.ReserveSid(sid)) {
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RTC_LOG(LS_ERROR) << "Failed to create a SCTP data channel "
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"because the id is already in use or out of range.";
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return nullptr;
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}
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// In case `sid` has changed. Update `new_config` accordingly.
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new_config.id = sid.stream_id_int();
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// TODO(bugs.webrtc.org/11547): The `data_channel_transport_` pointer belongs
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// to the network thread but there are a few places where we check this
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// pointer from the signaling thread. Instead of this approach, we should have
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// a separate channel initialization step that runs on the network thread
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// where we inform the channel of information about whether there's a
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// transport or not, what the role is, and supply an id if any. Subsequently
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// all that state in the channel code, is needed for callbacks from the
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// transport which is already initiated from the network thread. Then we can
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// Remove the trampoline code (see e.g. PostTask() calls in this file) that
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// travels between the signaling and network threads.
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rtc::scoped_refptr<SctpDataChannel> channel(SctpDataChannel::Create(
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weak_factory_.GetWeakPtr(), label, data_channel_transport() != nullptr,
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new_config, signaling_thread(), network_thread()));
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RTC_DCHECK(channel);
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if (ReadyToSendData()) {
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// Checks if the transport is ready to send because the initial channel
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// ready signal may have been sent before the DataChannel creation.
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// This has to be done async because the upper layer objects (e.g.
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// Chrome glue and WebKit) are not wired up properly until after this
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// function returns.
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signaling_thread()->PostTask(
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SafeTask(signaling_safety_.flag(), [channel = channel] {
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if (channel->state() != DataChannelInterface::DataState::kClosed)
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channel->OnTransportReady();
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}));
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}
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sctp_data_channels_.push_back(channel);
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has_used_data_channels_ = true;
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return channel;
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}
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void DataChannelController::AllocateSctpSids(rtc::SSLRole role) {
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RTC_DCHECK_RUN_ON(signaling_thread());
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std::vector<rtc::scoped_refptr<SctpDataChannel>> channels_to_close;
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for (const auto& channel : sctp_data_channels_) {
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if (!channel->sid().HasValue()) {
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StreamId sid = sid_allocator_.AllocateSid(role);
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if (!sid.HasValue()) {
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channels_to_close.push_back(channel);
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continue;
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}
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// TODO(bugs.webrtc.org/11547): This hides a blocking call to the network
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// thread via AddSctpDataStream. Maybe it's better to move the whole loop
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// to the network thread? Maybe even `sctp_data_channels_`?
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channel->SetSctpSid(sid);
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}
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}
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// Since closing modifies the list of channels, we have to do the actual
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// closing outside the loop.
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for (const auto& channel : channels_to_close) {
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channel->CloseAbruptlyWithDataChannelFailure("Failed to allocate SCTP SID");
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}
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}
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void DataChannelController::OnSctpDataChannelClosed(SctpDataChannel* channel) {
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RTC_DCHECK_RUN_ON(signaling_thread());
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for (auto it = sctp_data_channels_.begin(); it != sctp_data_channels_.end();
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++it) {
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if (it->get() == channel) {
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if (channel->sid().HasValue()) {
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// After the closing procedure is done, it's safe to use this ID for
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// another data channel.
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sid_allocator_.ReleaseSid(channel->sid());
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}
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// Since this method is triggered by a signal from the DataChannel,
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// we can't free it directly here; we need to free it asynchronously.
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rtc::scoped_refptr<SctpDataChannel> release = std::move(*it);
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sctp_data_channels_.erase(it);
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signaling_thread()->PostTask(SafeTask(signaling_safety_.flag(),
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[release = std::move(release)] {}));
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return;
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}
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}
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}
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void DataChannelController::OnTransportChannelClosed(RTCError error) {
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RTC_DCHECK_RUN_ON(signaling_thread());
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// Use a temporary copy of the SCTP DataChannel list because the
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// DataChannel may callback to us and try to modify the list.
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// TODO(tommi): `OnTransportChannelClosed` is called from
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// `SdpOfferAnswerHandler::DestroyDataChannelTransport` just before
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// `TeardownDataChannelTransport_n` is called (but on the network thread) from
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// the same function. Once `sctp_data_channels_` moves to the network thread,
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// we can get rid of this function (OnTransportChannelClosed) and run this
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// loop from within the TeardownDataChannelTransport_n callback.
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std::vector<rtc::scoped_refptr<SctpDataChannel>> temp_sctp_dcs;
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temp_sctp_dcs.swap(sctp_data_channels_);
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for (const auto& channel : temp_sctp_dcs) {
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channel->OnTransportChannelClosed(error);
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}
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}
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DataChannelTransportInterface* DataChannelController::data_channel_transport()
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const {
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// TODO(bugs.webrtc.org/11547): Only allow this accessor to be called on the
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// network thread.
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// RTC_DCHECK_RUN_ON(network_thread());
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return data_channel_transport_;
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}
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void DataChannelController::set_data_channel_transport(
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DataChannelTransportInterface* transport) {
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RTC_DCHECK_RUN_ON(network_thread());
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data_channel_transport_ = transport;
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}
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RTCError DataChannelController::DataChannelSendData(
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StreamId sid,
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const SendDataParams& params,
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const rtc::CopyOnWriteBuffer& payload) {
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// TODO(bugs.webrtc.org/11547): Expect method to be called on the network
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// thread instead. Remove the BlockingCall() below and move associated state
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// to the network thread.
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RTC_DCHECK_RUN_ON(signaling_thread());
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RTC_DCHECK(data_channel_transport());
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return network_thread()->BlockingCall([this, sid, params, payload] {
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return data_channel_transport()->SendData(sid.stream_id_int(), params,
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payload);
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});
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}
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void DataChannelController::NotifyDataChannelsOfTransportCreated() {
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RTC_DCHECK_RUN_ON(network_thread());
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RTC_DCHECK(data_channel_transport());
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signaling_thread()->PostTask(SafeTask(signaling_safety_.flag(), [this] {
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RTC_DCHECK_RUN_ON(signaling_thread());
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auto copy = sctp_data_channels_;
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for (const auto& channel : copy) {
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channel->OnTransportChannelCreated();
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}
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}));
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}
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std::vector<rtc::scoped_refptr<SctpDataChannel>>::iterator
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DataChannelController::FindChannel(StreamId stream_id) {
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RTC_DCHECK_RUN_ON(signaling_thread());
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return absl::c_find_if(sctp_data_channels_,
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[&](const auto& c) { return c->sid() == stream_id; });
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}
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rtc::Thread* DataChannelController::network_thread() const {
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return pc_->network_thread();
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}
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rtc::Thread* DataChannelController::signaling_thread() const {
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return pc_->signaling_thread();
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}
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} // namespace webrtc
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