9b5467e88d
BUG=4066 R=jiayl@webrtc.org, juberti@webrtc.org Review URL: https://webrtc-codereview.appspot.com/31109004 git-svn-id: http://webrtc.googlecode.com/svn/trunk@7816 4adac7df-926f-26a2-2b94-8c16560cd09d
581 lines
17 KiB
C++
581 lines
17 KiB
C++
/*
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* libjingle
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* Copyright 2012, Google Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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* 3. The name of the author may not be used to endorse or promote products
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* derived from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
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* EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "talk/app/webrtc/datachannel.h"
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#include <string>
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#include "talk/app/webrtc/mediastreamprovider.h"
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#include "talk/app/webrtc/sctputils.h"
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#include "webrtc/base/logging.h"
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#include "webrtc/base/refcount.h"
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namespace webrtc {
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static size_t kMaxQueuedReceivedDataBytes = 16 * 1024 * 1024;
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static size_t kMaxQueuedSendDataBytes = 16 * 1024 * 1024;
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enum {
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MSG_CHANNELREADY,
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};
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DataChannel::PacketQueue::PacketQueue() : byte_count_(0) {}
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DataChannel::PacketQueue::~PacketQueue() {
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Clear();
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}
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bool DataChannel::PacketQueue::Empty() const {
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return packets_.empty();
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}
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DataBuffer* DataChannel::PacketQueue::Front() {
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return packets_.front();
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}
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void DataChannel::PacketQueue::Pop() {
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if (packets_.empty()) {
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return;
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}
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byte_count_ -= packets_.front()->size();
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packets_.pop_front();
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}
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void DataChannel::PacketQueue::Push(DataBuffer* packet) {
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byte_count_ += packet->size();
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packets_.push_back(packet);
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}
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void DataChannel::PacketQueue::Clear() {
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while (!packets_.empty()) {
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delete packets_.front();
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packets_.pop_front();
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}
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byte_count_ = 0;
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}
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void DataChannel::PacketQueue::Swap(PacketQueue* other) {
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size_t other_byte_count = other->byte_count_;
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other->byte_count_ = byte_count_;
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byte_count_ = other_byte_count;
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other->packets_.swap(packets_);
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}
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rtc::scoped_refptr<DataChannel> DataChannel::Create(
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DataChannelProviderInterface* provider,
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cricket::DataChannelType dct,
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const std::string& label,
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const InternalDataChannelInit& config) {
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rtc::scoped_refptr<DataChannel> channel(
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new rtc::RefCountedObject<DataChannel>(provider, dct, label));
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if (!channel->Init(config)) {
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return NULL;
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}
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return channel;
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}
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DataChannel::DataChannel(
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DataChannelProviderInterface* provider,
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cricket::DataChannelType dct,
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const std::string& label)
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: label_(label),
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observer_(NULL),
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state_(kConnecting),
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data_channel_type_(dct),
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provider_(provider),
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waiting_for_open_ack_(false),
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was_ever_writable_(false),
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connected_to_provider_(false),
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send_ssrc_set_(false),
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receive_ssrc_set_(false),
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send_ssrc_(0),
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receive_ssrc_(0) {
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}
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bool DataChannel::Init(const InternalDataChannelInit& config) {
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if (data_channel_type_ == cricket::DCT_RTP &&
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(config.reliable ||
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config.id != -1 ||
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config.maxRetransmits != -1 ||
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config.maxRetransmitTime != -1)) {
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LOG(LS_ERROR) << "Failed to initialize the RTP data channel due to "
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<< "invalid DataChannelInit.";
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return false;
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} else if (data_channel_type_ == cricket::DCT_SCTP) {
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if (config.id < -1 ||
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config.maxRetransmits < -1 ||
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config.maxRetransmitTime < -1) {
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LOG(LS_ERROR) << "Failed to initialize the SCTP data channel due to "
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<< "invalid DataChannelInit.";
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return false;
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}
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if (config.maxRetransmits != -1 && config.maxRetransmitTime != -1) {
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LOG(LS_ERROR) <<
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"maxRetransmits and maxRetransmitTime should not be both set.";
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return false;
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}
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config_ = config;
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// Try to connect to the transport in case the transport channel already
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// exists.
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OnTransportChannelCreated();
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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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if (provider_->ReadyToSendData()) {
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rtc::Thread::Current()->Post(this, MSG_CHANNELREADY, NULL);
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}
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}
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return true;
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}
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DataChannel::~DataChannel() {}
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void DataChannel::RegisterObserver(DataChannelObserver* observer) {
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observer_ = observer;
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DeliverQueuedReceivedData();
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}
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void DataChannel::UnregisterObserver() {
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observer_ = NULL;
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}
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bool DataChannel::reliable() const {
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if (data_channel_type_ == cricket::DCT_RTP) {
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return false;
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} else {
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return config_.maxRetransmits == -1 &&
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config_.maxRetransmitTime == -1;
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}
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}
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uint64 DataChannel::buffered_amount() const {
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return queued_send_data_.byte_count();
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}
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void DataChannel::Close() {
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if (state_ == kClosed)
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return;
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send_ssrc_ = 0;
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send_ssrc_set_ = false;
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SetState(kClosing);
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UpdateState();
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}
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bool DataChannel::Send(const DataBuffer& buffer) {
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if (state_ != kOpen) {
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return false;
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}
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// TODO(jiayl): the spec is unclear about if the remote side should get the
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// onmessage event. We need to figure out the expected behavior and change the
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// code accordingly.
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if (buffer.size() == 0) {
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return true;
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}
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// If the queue is non-empty, we're waiting for SignalReadyToSend,
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// so just add to the end of the queue and keep waiting.
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if (!queued_send_data_.Empty()) {
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// Only SCTP DataChannel queues the outgoing data when the transport is
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// blocked.
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ASSERT(data_channel_type_ == cricket::DCT_SCTP);
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if (!QueueSendDataMessage(buffer)) {
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Close();
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}
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return true;
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}
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bool success = SendDataMessage(buffer, true);
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if (data_channel_type_ == cricket::DCT_RTP) {
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return success;
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}
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// Always return true for SCTP DataChannel per the spec.
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return true;
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}
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void DataChannel::SetReceiveSsrc(uint32 receive_ssrc) {
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ASSERT(data_channel_type_ == cricket::DCT_RTP);
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if (receive_ssrc_set_) {
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return;
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}
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receive_ssrc_ = receive_ssrc;
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receive_ssrc_set_ = true;
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UpdateState();
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}
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// The remote peer request that this channel shall be closed.
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void DataChannel::RemotePeerRequestClose() {
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DoClose();
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}
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void DataChannel::SetSctpSid(int sid) {
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ASSERT(config_.id < 0 && sid >= 0 && data_channel_type_ == cricket::DCT_SCTP);
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if (config_.id == sid)
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return;
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config_.id = sid;
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provider_->AddSctpDataStream(sid);
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}
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void DataChannel::OnTransportChannelCreated() {
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ASSERT(data_channel_type_ == cricket::DCT_SCTP);
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if (!connected_to_provider_) {
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connected_to_provider_ = provider_->ConnectDataChannel(this);
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}
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// The sid may have been unassigned when provider_->ConnectDataChannel was
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// done. So always add the streams even if connected_to_provider_ is true.
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if (config_.id >= 0) {
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provider_->AddSctpDataStream(config_.id);
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}
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}
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void DataChannel::SetSendSsrc(uint32 send_ssrc) {
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ASSERT(data_channel_type_ == cricket::DCT_RTP);
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if (send_ssrc_set_) {
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return;
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}
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send_ssrc_ = send_ssrc;
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send_ssrc_set_ = true;
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UpdateState();
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}
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void DataChannel::OnMessage(rtc::Message* msg) {
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switch (msg->message_id) {
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case MSG_CHANNELREADY:
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OnChannelReady(true);
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break;
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}
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}
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// The underlaying data engine is closing.
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// This function makes sure the DataChannel is disconnected and changes state to
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// kClosed.
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void DataChannel::OnDataEngineClose() {
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DoClose();
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}
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void DataChannel::OnDataReceived(cricket::DataChannel* channel,
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const cricket::ReceiveDataParams& params,
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const rtc::Buffer& payload) {
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uint32 expected_ssrc =
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(data_channel_type_ == cricket::DCT_RTP) ? receive_ssrc_ : config_.id;
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if (params.ssrc != expected_ssrc) {
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return;
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}
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if (params.type == cricket::DMT_CONTROL) {
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ASSERT(data_channel_type_ == cricket::DCT_SCTP);
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if (!waiting_for_open_ack_) {
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// Ignore it if we are not expecting an ACK message.
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LOG(LS_WARNING) << "DataChannel received unexpected CONTROL message, "
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<< "sid = " << params.ssrc;
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return;
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}
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if (ParseDataChannelOpenAckMessage(payload)) {
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// We can send unordered as soon as we receive the ACK message.
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waiting_for_open_ack_ = false;
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LOG(LS_INFO) << "DataChannel received OPEN_ACK message, sid = "
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<< params.ssrc;
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} else {
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LOG(LS_WARNING) << "DataChannel failed to parse OPEN_ACK message, sid = "
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<< params.ssrc;
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}
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return;
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}
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ASSERT(params.type == cricket::DMT_BINARY ||
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params.type == cricket::DMT_TEXT);
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LOG(LS_VERBOSE) << "DataChannel received DATA message, sid = " << params.ssrc;
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// We can send unordered as soon as we receive any DATA message since the
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// remote side must have received the OPEN (and old clients do not send
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// OPEN_ACK).
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waiting_for_open_ack_ = false;
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bool binary = (params.type == cricket::DMT_BINARY);
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rtc::scoped_ptr<DataBuffer> buffer(new DataBuffer(payload, binary));
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if (was_ever_writable_ && observer_) {
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observer_->OnMessage(*buffer.get());
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} else {
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if (queued_received_data_.byte_count() + payload.length() >
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kMaxQueuedReceivedDataBytes) {
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LOG(LS_ERROR) << "Queued received data exceeds the max buffer size.";
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queued_received_data_.Clear();
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if (data_channel_type_ != cricket::DCT_RTP) {
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Close();
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}
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return;
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}
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queued_received_data_.Push(buffer.release());
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}
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}
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void DataChannel::OnChannelReady(bool writable) {
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if (!writable) {
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return;
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}
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// Update the readyState and send the queued control message if the channel
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// is writable for the first time; otherwise it means the channel was blocked
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// for sending and now unblocked, so send the queued data now.
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if (!was_ever_writable_) {
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was_ever_writable_ = true;
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if (data_channel_type_ == cricket::DCT_SCTP) {
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rtc::Buffer payload;
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if (config_.open_handshake_role == InternalDataChannelInit::kOpener) {
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WriteDataChannelOpenMessage(label_, config_, &payload);
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SendControlMessage(payload);
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} else if (config_.open_handshake_role ==
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InternalDataChannelInit::kAcker) {
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WriteDataChannelOpenAckMessage(&payload);
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SendControlMessage(payload);
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}
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}
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UpdateState();
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ASSERT(queued_send_data_.Empty());
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} else if (state_ == kOpen) {
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// TODO(jiayl): Sending OPEN message here contradicts with the pre-condition
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// that the readyState is open. According to the standard, the channel
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// should not become open before the OPEN message is sent.
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SendQueuedControlMessages();
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SendQueuedDataMessages();
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}
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}
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void DataChannel::DoClose() {
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if (state_ == kClosed)
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return;
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receive_ssrc_set_ = false;
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send_ssrc_set_ = false;
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SetState(kClosing);
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UpdateState();
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}
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void DataChannel::UpdateState() {
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switch (state_) {
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case kConnecting: {
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if (send_ssrc_set_ == receive_ssrc_set_) {
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if (data_channel_type_ == cricket::DCT_RTP && !connected_to_provider_) {
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connected_to_provider_ = provider_->ConnectDataChannel(this);
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}
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if (was_ever_writable_) {
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// TODO(jiayl): Do not transition to kOpen if we failed to send the
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// OPEN message.
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SendQueuedControlMessages();
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SetState(kOpen);
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// If we have received buffers before the channel got writable.
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// Deliver them now.
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DeliverQueuedReceivedData();
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}
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}
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break;
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}
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case kOpen: {
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break;
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}
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case kClosing: {
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DisconnectFromTransport();
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if (!send_ssrc_set_ && !receive_ssrc_set_) {
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SetState(kClosed);
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}
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break;
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}
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case kClosed:
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break;
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}
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}
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void DataChannel::SetState(DataState state) {
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if (state_ == state)
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return;
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state_ = state;
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if (observer_) {
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observer_->OnStateChange();
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}
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}
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void DataChannel::DisconnectFromTransport() {
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if (!connected_to_provider_)
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return;
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provider_->DisconnectDataChannel(this);
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connected_to_provider_ = false;
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if (data_channel_type_ == cricket::DCT_SCTP && config_.id >= 0) {
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provider_->RemoveSctpDataStream(config_.id);
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}
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}
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void DataChannel::DeliverQueuedReceivedData() {
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if (!was_ever_writable_ || !observer_) {
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return;
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}
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while (!queued_received_data_.Empty()) {
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rtc::scoped_ptr<DataBuffer> buffer(queued_received_data_.Front());
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observer_->OnMessage(*buffer);
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queued_received_data_.Pop();
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}
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}
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void DataChannel::SendQueuedDataMessages() {
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ASSERT(was_ever_writable_ && state_ == kOpen);
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while (!queued_send_data_.Empty()) {
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rtc::scoped_ptr<DataBuffer> buffer(queued_send_data_.Front());
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if (!SendDataMessage(*buffer, false)) {
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break;
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}
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queued_send_data_.Pop();
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}
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}
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bool DataChannel::SendDataMessage(const DataBuffer& buffer,
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bool queue_if_blocked) {
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cricket::SendDataParams send_params;
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if (data_channel_type_ == cricket::DCT_SCTP) {
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send_params.ordered = config_.ordered;
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// Send as ordered if it is waiting for the OPEN_ACK message.
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if (waiting_for_open_ack_ && !config_.ordered) {
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send_params.ordered = true;
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LOG(LS_VERBOSE) << "Sending data as ordered for unordered DataChannel "
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<< "because the OPEN_ACK message has not been received.";
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}
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send_params.max_rtx_count = config_.maxRetransmits;
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send_params.max_rtx_ms = config_.maxRetransmitTime;
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send_params.ssrc = config_.id;
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} else {
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send_params.ssrc = send_ssrc_;
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}
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send_params.type = buffer.binary ? cricket::DMT_BINARY : cricket::DMT_TEXT;
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cricket::SendDataResult send_result = cricket::SDR_SUCCESS;
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bool success = provider_->SendData(send_params, buffer.data, &send_result);
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if (success) {
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return true;
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}
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if (data_channel_type_ != cricket::DCT_SCTP) {
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return false;
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}
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if (send_result == cricket::SDR_BLOCK) {
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if (!queue_if_blocked || QueueSendDataMessage(buffer)) {
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return false;
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}
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}
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// Close the channel if the error is not SDR_BLOCK, or if queuing the
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// message failed.
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LOG(LS_ERROR) << "Closing the DataChannel due to a failure to send data, "
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<< "send_result = " << send_result;
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Close();
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return false;
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}
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bool DataChannel::QueueSendDataMessage(const DataBuffer& buffer) {
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if (queued_send_data_.byte_count() >= kMaxQueuedSendDataBytes) {
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LOG(LS_ERROR) << "Can't buffer any more data for the data channel.";
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return false;
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}
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queued_send_data_.Push(new DataBuffer(buffer));
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return true;
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}
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void DataChannel::SendQueuedControlMessages() {
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ASSERT(was_ever_writable_);
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PacketQueue control_packets;
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control_packets.Swap(&queued_control_data_);
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|
|
while (!control_packets.Empty()) {
|
|
rtc::scoped_ptr<DataBuffer> buf(control_packets.Front());
|
|
SendControlMessage(buf->data);
|
|
control_packets.Pop();
|
|
}
|
|
}
|
|
|
|
void DataChannel::QueueControlMessage(const rtc::Buffer& buffer) {
|
|
queued_control_data_.Push(new DataBuffer(buffer, true));
|
|
}
|
|
|
|
bool DataChannel::SendControlMessage(const rtc::Buffer& buffer) {
|
|
bool is_open_message =
|
|
(config_.open_handshake_role == InternalDataChannelInit::kOpener);
|
|
|
|
ASSERT(data_channel_type_ == cricket::DCT_SCTP &&
|
|
was_ever_writable_ &&
|
|
config_.id >= 0 &&
|
|
(!is_open_message || !config_.negotiated));
|
|
|
|
cricket::SendDataParams send_params;
|
|
send_params.ssrc = config_.id;
|
|
send_params.ordered = config_.ordered || is_open_message;
|
|
send_params.type = cricket::DMT_CONTROL;
|
|
|
|
cricket::SendDataResult send_result = cricket::SDR_SUCCESS;
|
|
bool retval = provider_->SendData(send_params, buffer, &send_result);
|
|
if (retval) {
|
|
LOG(LS_INFO) << "Sent CONTROL message on channel " << config_.id;
|
|
|
|
if (is_open_message) {
|
|
// Send data as ordered before we receive any message from the remote peer
|
|
// to make sure the remote peer will not receive any data before it
|
|
// receives the OPEN message.
|
|
waiting_for_open_ack_ = true;
|
|
}
|
|
} else if (send_result == cricket::SDR_BLOCK) {
|
|
QueueControlMessage(buffer);
|
|
} else {
|
|
LOG(LS_ERROR) << "Closing the DataChannel due to a failure to send"
|
|
<< " the CONTROL message, send_result = " << send_result;
|
|
Close();
|
|
}
|
|
return retval;
|
|
}
|
|
|
|
} // namespace webrtc
|