mirror of
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389 lines
12 KiB
C++
389 lines
12 KiB
C++
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// Copyright 2018 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/websockets/websocket_http2_handshake_stream.h"
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#include <cstddef>
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#include <utility>
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#include "base/bind.h"
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#include "base/logging.h"
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#include "base/strings/stringprintf.h"
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#include "base/time/time.h"
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#include "net/http/http_request_headers.h"
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#include "net/http/http_request_info.h"
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#include "net/http/http_response_headers.h"
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#include "net/http/http_status_code.h"
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#include "net/spdy/spdy_http_utils.h"
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#include "net/spdy/spdy_session.h"
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#include "net/traffic_annotation/network_traffic_annotation.h"
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#include "net/websockets/websocket_basic_stream.h"
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#include "net/websockets/websocket_deflate_parameters.h"
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#include "net/websockets/websocket_deflate_predictor_impl.h"
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#include "net/websockets/websocket_deflate_stream.h"
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#include "net/websockets/websocket_deflater.h"
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#include "net/websockets/websocket_handshake_constants.h"
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#include "net/websockets/websocket_handshake_request_info.h"
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namespace net {
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namespace {
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bool ValidateStatus(const HttpResponseHeaders* headers) {
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return headers->GetStatusLine() == "HTTP/1.1 200";
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}
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} // namespace
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WebSocketHttp2HandshakeStream::WebSocketHttp2HandshakeStream(
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base::WeakPtr<SpdySession> session,
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WebSocketStream::ConnectDelegate* connect_delegate,
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std::vector<std::string> requested_sub_protocols,
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std::vector<std::string> requested_extensions,
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WebSocketStreamRequest* request)
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: result_(HandshakeResult::HTTP2_INCOMPLETE),
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session_(session),
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connect_delegate_(connect_delegate),
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http_response_info_(nullptr),
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requested_sub_protocols_(requested_sub_protocols),
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requested_extensions_(requested_extensions),
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stream_request_(request),
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request_info_(nullptr),
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stream_closed_(false),
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stream_error_(OK),
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response_headers_complete_(false) {
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DCHECK(connect_delegate);
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DCHECK(request);
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}
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WebSocketHttp2HandshakeStream::~WebSocketHttp2HandshakeStream() {
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spdy_stream_request_.reset();
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RecordHandshakeResult(result_);
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}
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int WebSocketHttp2HandshakeStream::InitializeStream(
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const HttpRequestInfo* request_info,
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bool can_send_early,
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RequestPriority priority,
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const NetLogWithSource& net_log,
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CompletionOnceCallback callback) {
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DCHECK(request_info->traffic_annotation.is_valid());
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request_info_ = request_info;
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priority_ = priority;
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net_log_ = net_log;
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return OK;
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}
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int WebSocketHttp2HandshakeStream::SendRequest(
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const HttpRequestHeaders& headers,
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HttpResponseInfo* response,
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CompletionOnceCallback callback) {
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DCHECK(!headers.HasHeader(websockets::kSecWebSocketKey));
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DCHECK(!headers.HasHeader(websockets::kSecWebSocketProtocol));
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DCHECK(!headers.HasHeader(websockets::kSecWebSocketExtensions));
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DCHECK(headers.HasHeader(HttpRequestHeaders::kOrigin));
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DCHECK(headers.HasHeader(websockets::kUpgrade));
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DCHECK(headers.HasHeader(HttpRequestHeaders::kConnection));
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DCHECK(headers.HasHeader(websockets::kSecWebSocketVersion));
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if (!session_) {
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OnFailure("Connection closed before sending request.");
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return ERR_CONNECTION_CLOSED;
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}
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http_response_info_ = response;
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IPEndPoint address;
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int result = session_->GetPeerAddress(&address);
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if (result != OK) {
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OnFailure("Error getting IP address.");
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return result;
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}
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http_response_info_->socket_address = HostPortPair::FromIPEndPoint(address);
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auto request = std::make_unique<WebSocketHandshakeRequestInfo>(
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request_info_->url, base::Time::Now());
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request->headers.CopyFrom(headers);
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AddVectorHeaderIfNonEmpty(websockets::kSecWebSocketExtensions,
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requested_extensions_, &request->headers);
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AddVectorHeaderIfNonEmpty(websockets::kSecWebSocketProtocol,
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requested_sub_protocols_, &request->headers);
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CreateSpdyHeadersFromHttpRequestForWebSocket(
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request_info_->url, request->headers, &http2_request_headers_);
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connect_delegate_->OnStartOpeningHandshake(std::move(request));
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callback_ = std::move(callback);
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spdy_stream_request_ = std::make_unique<SpdyStreamRequest>();
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int rv = spdy_stream_request_->StartRequest(
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SPDY_BIDIRECTIONAL_STREAM, session_, request_info_->url, priority_,
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request_info_->socket_tag, net_log_,
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base::BindOnce(&WebSocketHttp2HandshakeStream::StartRequestCallback,
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base::Unretained(this)),
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NetworkTrafficAnnotationTag(request_info_->traffic_annotation));
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if (rv == OK) {
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StartRequestCallback(rv);
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return ERR_IO_PENDING;
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}
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return rv;
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}
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int WebSocketHttp2HandshakeStream::ReadResponseHeaders(
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CompletionOnceCallback callback) {
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if (stream_closed_)
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return stream_error_;
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if (response_headers_complete_)
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return ValidateResponse();
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callback_ = std::move(callback);
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return ERR_IO_PENDING;
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}
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int WebSocketHttp2HandshakeStream::ReadResponseBody(
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IOBuffer* buf,
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int buf_len,
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CompletionOnceCallback callback) {
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// Callers should instead call Upgrade() to get a WebSocketStream
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// and call ReadFrames() on that.
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NOTREACHED();
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return OK;
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}
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void WebSocketHttp2HandshakeStream::Close(bool not_reusable) {
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spdy_stream_request_.reset();
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if (stream_) {
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stream_ = nullptr;
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stream_closed_ = true;
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stream_error_ = ERR_CONNECTION_CLOSED;
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}
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stream_adapter_.reset();
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}
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bool WebSocketHttp2HandshakeStream::IsResponseBodyComplete() const {
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return false;
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}
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bool WebSocketHttp2HandshakeStream::IsConnectionReused() const {
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return true;
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}
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void WebSocketHttp2HandshakeStream::SetConnectionReused() {}
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bool WebSocketHttp2HandshakeStream::CanReuseConnection() const {
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return false;
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}
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int64_t WebSocketHttp2HandshakeStream::GetTotalReceivedBytes() const {
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return stream_ ? stream_->raw_received_bytes() : 0;
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}
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int64_t WebSocketHttp2HandshakeStream::GetTotalSentBytes() const {
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return stream_ ? stream_->raw_sent_bytes() : 0;
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}
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bool WebSocketHttp2HandshakeStream::GetAlternativeService(
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AlternativeService* alternative_service) const {
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return false;
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}
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bool WebSocketHttp2HandshakeStream::GetLoadTimingInfo(
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LoadTimingInfo* load_timing_info) const {
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return stream_ && stream_->GetLoadTimingInfo(load_timing_info);
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}
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void WebSocketHttp2HandshakeStream::GetSSLInfo(SSLInfo* ssl_info) {
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if (stream_)
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stream_->GetSSLInfo(ssl_info);
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}
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void WebSocketHttp2HandshakeStream::GetSSLCertRequestInfo(
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SSLCertRequestInfo* cert_request_info) {
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// A multiplexed stream cannot request client certificates. Client
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// authentication may only occur during the initial SSL handshake.
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NOTREACHED();
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}
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bool WebSocketHttp2HandshakeStream::GetRemoteEndpoint(IPEndPoint* endpoint) {
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return session_ && session_->GetRemoteEndpoint(endpoint);
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}
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void WebSocketHttp2HandshakeStream::PopulateNetErrorDetails(
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NetErrorDetails* /*details*/) {
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return;
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}
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Error WebSocketHttp2HandshakeStream::GetTokenBindingSignature(
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crypto::ECPrivateKey* key,
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TokenBindingType tb_type,
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std::vector<uint8_t>* out) {
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return stream_->GetTokenBindingSignature(key, tb_type, out);
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}
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void WebSocketHttp2HandshakeStream::Drain(HttpNetworkSession* session) {
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Close(true /* not_reusable */);
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}
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void WebSocketHttp2HandshakeStream::SetPriority(RequestPriority priority) {
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priority_ = priority;
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if (stream_)
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stream_->SetPriority(priority_);
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}
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HttpStream* WebSocketHttp2HandshakeStream::RenewStreamForAuth() {
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// Renewing the stream is not supported.
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return nullptr;
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}
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std::unique_ptr<WebSocketStream> WebSocketHttp2HandshakeStream::Upgrade() {
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DCHECK(extension_params_.get());
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stream_adapter_->DetachDelegate();
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std::unique_ptr<WebSocketStream> basic_stream =
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std::make_unique<WebSocketBasicStream>(
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std::move(stream_adapter_), nullptr, sub_protocol_, extensions_);
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if (!extension_params_->deflate_enabled)
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return basic_stream;
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RecordDeflateMode(
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extension_params_->deflate_parameters.client_context_take_over_mode());
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return std::make_unique<WebSocketDeflateStream>(
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std::move(basic_stream), extension_params_->deflate_parameters,
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std::make_unique<WebSocketDeflatePredictorImpl>());
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}
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void WebSocketHttp2HandshakeStream::OnHeadersSent() {
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base::ResetAndReturn(&callback_).Run(OK);
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}
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void WebSocketHttp2HandshakeStream::OnHeadersReceived(
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const spdy::SpdyHeaderBlock& response_headers) {
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DCHECK(!response_headers_complete_);
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DCHECK(http_response_info_);
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response_headers_complete_ = true;
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const bool headers_valid =
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SpdyHeadersToHttpResponse(response_headers, http_response_info_);
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DCHECK(headers_valid);
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http_response_info_->response_time = stream_->response_time();
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// Do not store SSLInfo in the response here, HttpNetworkTransaction will take
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// care of that part.
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http_response_info_->was_alpn_negotiated = true;
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http_response_info_->request_time = stream_->GetRequestTime();
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http_response_info_->connection_info =
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HttpResponseInfo::CONNECTION_INFO_HTTP2;
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http_response_info_->alpn_negotiated_protocol =
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HttpResponseInfo::ConnectionInfoToString(
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http_response_info_->connection_info);
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http_response_info_->vary_data.Init(*request_info_,
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*http_response_info_->headers.get());
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if (callback_)
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base::ResetAndReturn(&callback_).Run(ValidateResponse());
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}
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void WebSocketHttp2HandshakeStream::OnClose(int status) {
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DCHECK(stream_adapter_);
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DCHECK_GT(ERR_IO_PENDING, status);
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stream_closed_ = true;
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stream_error_ = status;
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stream_ = nullptr;
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stream_adapter_.reset();
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// If response headers have already been received,
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// then ValidateResponse() sets |result_|.
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if (!response_headers_complete_)
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result_ = HandshakeResult::HTTP2_FAILED;
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OnFailure(std::string("Stream closed with error: ") + ErrorToString(status));
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if (callback_)
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base::ResetAndReturn(&callback_).Run(status);
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}
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void WebSocketHttp2HandshakeStream::StartRequestCallback(int rv) {
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DCHECK(callback_);
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if (rv != OK) {
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spdy_stream_request_.reset();
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base::ResetAndReturn(&callback_).Run(rv);
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return;
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}
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stream_ = spdy_stream_request_->ReleaseStream();
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spdy_stream_request_.reset();
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stream_adapter_ =
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std::make_unique<WebSocketSpdyStreamAdapter>(stream_, this, net_log_);
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rv = stream_->SendRequestHeaders(std::move(http2_request_headers_),
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MORE_DATA_TO_SEND);
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// SendRequestHeaders() always returns asynchronously,
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// and instead of taking a callback, it calls OnHeadersSent().
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DCHECK_EQ(ERR_IO_PENDING, rv);
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}
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int WebSocketHttp2HandshakeStream::ValidateResponse() {
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DCHECK(http_response_info_);
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const HttpResponseHeaders* headers = http_response_info_->headers.get();
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const int response_code = headers->response_code();
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switch (response_code) {
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case HTTP_OK:
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OnFinishOpeningHandshake();
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return ValidateUpgradeResponse(headers);
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// We need to pass these through for authentication to work.
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case HTTP_UNAUTHORIZED:
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case HTTP_PROXY_AUTHENTICATION_REQUIRED:
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return OK;
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// Other status codes are potentially risky (see the warnings in the
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// WHATWG WebSocket API spec) and so are dropped by default.
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default:
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OnFailure(base::StringPrintf(
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"Error during WebSocket handshake: Unexpected response code: %d",
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headers->response_code()));
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OnFinishOpeningHandshake();
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result_ = HandshakeResult::HTTP2_INVALID_STATUS;
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return ERR_INVALID_RESPONSE;
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}
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}
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int WebSocketHttp2HandshakeStream::ValidateUpgradeResponse(
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const HttpResponseHeaders* headers) {
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extension_params_ = std::make_unique<WebSocketExtensionParams>();
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std::string failure_message;
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if (!ValidateStatus(headers)) {
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result_ = HandshakeResult::HTTP2_INVALID_STATUS;
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} else if (!ValidateSubProtocol(headers, requested_sub_protocols_,
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&sub_protocol_, &failure_message)) {
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result_ = HandshakeResult::HTTP2_FAILED_SUBPROTO;
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} else if (!ValidateExtensions(headers, &extensions_, &failure_message,
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extension_params_.get())) {
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result_ = HandshakeResult::HTTP2_FAILED_EXTENSIONS;
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} else {
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result_ = HandshakeResult::HTTP2_CONNECTED;
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return OK;
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}
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OnFailure("Error during WebSocket handshake: " + failure_message);
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return ERR_INVALID_RESPONSE;
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}
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void WebSocketHttp2HandshakeStream::OnFinishOpeningHandshake() {
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DCHECK(http_response_info_);
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WebSocketDispatchOnFinishOpeningHandshake(
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connect_delegate_, request_info_->url, http_response_info_->headers,
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http_response_info_->response_time);
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}
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void WebSocketHttp2HandshakeStream::OnFailure(const std::string& message) {
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stream_request_->OnFailure(message);
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}
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} // namespace net
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