mirror of
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408 lines
12 KiB
C++
408 lines
12 KiB
C++
// Copyright 2015 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "net/spdy/chromium/bidirectional_stream_spdy_impl.h"
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#include <utility>
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#include "base/bind.h"
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#include "base/location.h"
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#include "base/logging.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "base/time/time.h"
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#include "base/timer/timer.h"
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#include "net/http/bidirectional_stream_request_info.h"
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#include "net/spdy/chromium/spdy_buffer.h"
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#include "net/spdy/chromium/spdy_http_utils.h"
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#include "net/spdy/chromium/spdy_stream.h"
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#include "net/spdy/core/spdy_header_block.h"
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namespace net {
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namespace {
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// Time to wait in millisecond to notify |delegate_| of data received.
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// Handing small chunks of data to the caller creates measurable overhead.
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// So buffer data in short time-spans and send a single read notification.
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const int kBufferTimeMs = 1;
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} // namespace
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BidirectionalStreamSpdyImpl::BidirectionalStreamSpdyImpl(
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const base::WeakPtr<SpdySession>& spdy_session,
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NetLogSource source_dependency)
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: spdy_session_(spdy_session),
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request_info_(nullptr),
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delegate_(nullptr),
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source_dependency_(source_dependency),
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negotiated_protocol_(kProtoUnknown),
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more_read_data_pending_(false),
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read_buffer_len_(0),
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written_end_of_stream_(false),
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write_pending_(false),
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stream_closed_(false),
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closed_stream_status_(ERR_FAILED),
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closed_stream_received_bytes_(0),
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closed_stream_sent_bytes_(0),
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closed_has_load_timing_info_(false),
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weak_factory_(this) {}
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BidirectionalStreamSpdyImpl::~BidirectionalStreamSpdyImpl() {
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// Sends a RST to the remote if the stream is destroyed before it completes.
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ResetStream();
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}
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void BidirectionalStreamSpdyImpl::Start(
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const BidirectionalStreamRequestInfo* request_info,
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const NetLogWithSource& net_log,
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bool /*send_request_headers_automatically*/,
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BidirectionalStreamImpl::Delegate* delegate,
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std::unique_ptr<base::Timer> timer) {
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DCHECK(!stream_);
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DCHECK(timer);
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delegate_ = delegate;
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timer_ = std::move(timer);
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if (!spdy_session_) {
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base::ThreadTaskRunnerHandle::Get()->PostTask(
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FROM_HERE,
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base::Bind(&BidirectionalStreamSpdyImpl::NotifyError,
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weak_factory_.GetWeakPtr(), ERR_CONNECTION_CLOSED));
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return;
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}
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request_info_ = request_info;
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int rv = stream_request_.StartRequest(
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SPDY_BIDIRECTIONAL_STREAM, spdy_session_, request_info_->url,
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request_info_->priority, net_log,
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base::Bind(&BidirectionalStreamSpdyImpl::OnStreamInitialized,
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weak_factory_.GetWeakPtr()));
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if (rv != ERR_IO_PENDING)
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OnStreamInitialized(rv);
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}
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void BidirectionalStreamSpdyImpl::SendRequestHeaders() {
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// Request headers will be sent automatically.
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NOTREACHED();
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}
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int BidirectionalStreamSpdyImpl::ReadData(IOBuffer* buf, int buf_len) {
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if (stream_)
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DCHECK(!stream_->IsIdle());
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DCHECK(buf);
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DCHECK(buf_len);
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DCHECK(!timer_->IsRunning()) << "There should be only one ReadData in flight";
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// If there is data buffered, complete the IO immediately.
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if (!read_data_queue_.IsEmpty()) {
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return read_data_queue_.Dequeue(buf->data(), buf_len);
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} else if (stream_closed_) {
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return closed_stream_status_;
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}
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// Read will complete asynchronously and Delegate::OnReadCompleted will be
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// called upon completion.
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read_buffer_ = buf;
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read_buffer_len_ = buf_len;
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return ERR_IO_PENDING;
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}
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void BidirectionalStreamSpdyImpl::SendvData(
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const std::vector<scoped_refptr<IOBuffer>>& buffers,
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const std::vector<int>& lengths,
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bool end_stream) {
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DCHECK_EQ(buffers.size(), lengths.size());
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DCHECK(!write_pending_);
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if (written_end_of_stream_) {
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LOG(ERROR) << "Writing after end of stream is written.";
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base::ThreadTaskRunnerHandle::Get()->PostTask(
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FROM_HERE, base::Bind(&BidirectionalStreamSpdyImpl::NotifyError,
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weak_factory_.GetWeakPtr(), ERR_UNEXPECTED));
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return;
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}
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write_pending_ = true;
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written_end_of_stream_ = end_stream;
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if (MaybeHandleStreamClosedInSendData())
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return;
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DCHECK(!stream_closed_);
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int total_len = 0;
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for (int len : lengths) {
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total_len += len;
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}
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if (buffers.size() == 1) {
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pending_combined_buffer_ = buffers[0];
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} else {
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pending_combined_buffer_ = new net::IOBuffer(total_len);
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int len = 0;
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// TODO(xunjieli): Get rid of extra copy. Coalesce headers and data frames.
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for (size_t i = 0; i < buffers.size(); ++i) {
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memcpy(pending_combined_buffer_->data() + len, buffers[i]->data(),
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lengths[i]);
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len += lengths[i];
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}
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}
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stream_->SendData(pending_combined_buffer_.get(), total_len,
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end_stream ? NO_MORE_DATA_TO_SEND : MORE_DATA_TO_SEND);
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}
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NextProto BidirectionalStreamSpdyImpl::GetProtocol() const {
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return negotiated_protocol_;
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}
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int64_t BidirectionalStreamSpdyImpl::GetTotalReceivedBytes() const {
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if (stream_closed_)
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return closed_stream_received_bytes_;
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if (!stream_)
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return 0;
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return stream_->raw_received_bytes();
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}
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int64_t BidirectionalStreamSpdyImpl::GetTotalSentBytes() const {
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if (stream_closed_)
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return closed_stream_sent_bytes_;
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if (!stream_)
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return 0;
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return stream_->raw_sent_bytes();
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}
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bool BidirectionalStreamSpdyImpl::GetLoadTimingInfo(
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LoadTimingInfo* load_timing_info) const {
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if (stream_closed_) {
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if (!closed_has_load_timing_info_)
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return false;
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*load_timing_info = closed_load_timing_info_;
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return true;
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}
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// If |stream_| isn't created or has ID 0, return false. This is to match
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// the implementation in SpdyHttpStream.
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if (!stream_ || stream_->stream_id() == 0)
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return false;
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return stream_->GetLoadTimingInfo(load_timing_info);
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}
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void BidirectionalStreamSpdyImpl::PopulateNetErrorDetails(
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NetErrorDetails* details) {}
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void BidirectionalStreamSpdyImpl::OnHeadersSent() {
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DCHECK(stream_);
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negotiated_protocol_ = kProtoHTTP2;
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if (delegate_)
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delegate_->OnStreamReady(/*request_headers_sent=*/true);
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}
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void BidirectionalStreamSpdyImpl::OnHeadersReceived(
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const SpdyHeaderBlock& response_headers) {
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DCHECK(stream_);
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if (delegate_)
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delegate_->OnHeadersReceived(response_headers);
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}
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void BidirectionalStreamSpdyImpl::OnDataReceived(
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std::unique_ptr<SpdyBuffer> buffer) {
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DCHECK(stream_);
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DCHECK(!stream_closed_);
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// If |buffer| is null, BidirectionalStreamSpdyImpl::OnClose will be invoked
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// by SpdyStream to indicate the end of stream.
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if (!buffer)
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return;
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// When buffer is consumed, SpdyStream::OnReadBufferConsumed will adjust
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// recv window size accordingly.
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read_data_queue_.Enqueue(std::move(buffer));
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if (read_buffer_) {
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// Handing small chunks of data to the caller creates measurable overhead.
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// So buffer data in short time-spans and send a single read notification.
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ScheduleBufferedRead();
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}
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}
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void BidirectionalStreamSpdyImpl::OnDataSent() {
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DCHECK(write_pending_);
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pending_combined_buffer_ = nullptr;
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write_pending_ = false;
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if (delegate_)
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delegate_->OnDataSent();
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}
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void BidirectionalStreamSpdyImpl::OnTrailers(const SpdyHeaderBlock& trailers) {
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DCHECK(stream_);
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DCHECK(!stream_closed_);
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if (delegate_)
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delegate_->OnTrailersReceived(trailers);
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}
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void BidirectionalStreamSpdyImpl::OnClose(int status) {
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DCHECK(stream_);
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stream_closed_ = true;
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closed_stream_status_ = status;
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closed_stream_received_bytes_ = stream_->raw_received_bytes();
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closed_stream_sent_bytes_ = stream_->raw_sent_bytes();
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closed_has_load_timing_info_ =
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stream_->GetLoadTimingInfo(&closed_load_timing_info_);
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if (status != OK) {
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NotifyError(status);
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return;
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}
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ResetStream();
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// Complete any remaining read, as all data has been buffered.
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// If user has not called ReadData (i.e |read_buffer_| is nullptr), this will
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// do nothing.
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timer_->Stop();
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// |this| might get destroyed after calling into |delegate_| in
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// DoBufferedRead().
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auto weak_this = weak_factory_.GetWeakPtr();
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DoBufferedRead();
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if (weak_this.get() && write_pending_)
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OnDataSent();
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}
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NetLogSource BidirectionalStreamSpdyImpl::source_dependency() const {
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return source_dependency_;
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}
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int BidirectionalStreamSpdyImpl::SendRequestHeadersHelper() {
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SpdyHeaderBlock headers;
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HttpRequestInfo http_request_info;
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http_request_info.url = request_info_->url;
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http_request_info.method = request_info_->method;
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http_request_info.extra_headers = request_info_->extra_headers;
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CreateSpdyHeadersFromHttpRequest(
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http_request_info, http_request_info.extra_headers, true, &headers);
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written_end_of_stream_ = request_info_->end_stream_on_headers;
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return stream_->SendRequestHeaders(std::move(headers),
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request_info_->end_stream_on_headers
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? NO_MORE_DATA_TO_SEND
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: MORE_DATA_TO_SEND);
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}
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void BidirectionalStreamSpdyImpl::OnStreamInitialized(int rv) {
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DCHECK_NE(ERR_IO_PENDING, rv);
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if (rv == OK) {
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stream_ = stream_request_.ReleaseStream();
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stream_->SetDelegate(this);
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rv = SendRequestHeadersHelper();
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if (rv == OK) {
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OnHeadersSent();
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return;
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} else if (rv == ERR_IO_PENDING) {
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return;
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}
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}
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NotifyError(rv);
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}
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void BidirectionalStreamSpdyImpl::NotifyError(int rv) {
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ResetStream();
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write_pending_ = false;
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if (delegate_) {
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BidirectionalStreamImpl::Delegate* delegate = delegate_;
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delegate_ = nullptr;
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// Cancel any pending callback.
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weak_factory_.InvalidateWeakPtrs();
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delegate->OnFailed(rv);
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// |this| can be null when returned from delegate.
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}
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}
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void BidirectionalStreamSpdyImpl::ResetStream() {
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if (!stream_)
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return;
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if (!stream_->IsClosed()) {
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// This sends a RST to the remote.
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stream_->DetachDelegate();
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DCHECK(!stream_);
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} else {
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// Stream is already closed, so it is not legal to call DetachDelegate.
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stream_.reset();
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}
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}
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void BidirectionalStreamSpdyImpl::ScheduleBufferedRead() {
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// If there is already a scheduled DoBufferedRead, don't issue
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// another one. Mark that we have received more data and return.
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if (timer_->IsRunning()) {
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more_read_data_pending_ = true;
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return;
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}
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more_read_data_pending_ = false;
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timer_->Start(FROM_HERE, base::TimeDelta::FromMilliseconds(kBufferTimeMs),
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base::Bind(&BidirectionalStreamSpdyImpl::DoBufferedRead,
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weak_factory_.GetWeakPtr()));
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}
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void BidirectionalStreamSpdyImpl::DoBufferedRead() {
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DCHECK(!timer_->IsRunning());
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// Check to see that the stream has not errored out.
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DCHECK(stream_ || stream_closed_);
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DCHECK(!stream_closed_ || closed_stream_status_ == OK);
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// When |more_read_data_pending_| is true, it means that more data has arrived
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// since started waiting. Wait a little longer and continue to buffer.
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if (more_read_data_pending_ && ShouldWaitForMoreBufferedData()) {
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ScheduleBufferedRead();
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return;
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}
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int rv = 0;
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if (read_buffer_) {
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rv = ReadData(read_buffer_.get(), read_buffer_len_);
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DCHECK_NE(ERR_IO_PENDING, rv);
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read_buffer_ = nullptr;
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read_buffer_len_ = 0;
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if (delegate_)
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delegate_->OnDataRead(rv);
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}
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}
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bool BidirectionalStreamSpdyImpl::ShouldWaitForMoreBufferedData() const {
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if (stream_closed_)
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return false;
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DCHECK_GT(read_buffer_len_, 0);
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return read_data_queue_.GetTotalSize() <
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static_cast<size_t>(read_buffer_len_);
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}
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bool BidirectionalStreamSpdyImpl::MaybeHandleStreamClosedInSendData() {
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if (stream_)
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return false;
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// If |stream_| is closed without an error before client half closes,
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// blackhole any pending write data. crbug.com/650438.
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if (stream_closed_ && closed_stream_status_ == OK) {
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base::ThreadTaskRunnerHandle::Get()->PostTask(
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FROM_HERE, base::Bind(&BidirectionalStreamSpdyImpl::OnDataSent,
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weak_factory_.GetWeakPtr()));
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return true;
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}
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LOG(ERROR) << "Trying to send data after stream has been destroyed.";
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base::ThreadTaskRunnerHandle::Get()->PostTask(
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FROM_HERE, base::Bind(&BidirectionalStreamSpdyImpl::NotifyError,
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weak_factory_.GetWeakPtr(), ERR_UNEXPECTED));
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return true;
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}
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} // namespace net
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