mirror of
https://github.com/klzgrad/naiveproxy.git
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482 lines
18 KiB
C++
482 lines
18 KiB
C++
// Copyright 2013 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_stream.h"
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#include <utility>
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#include "base/logging.h"
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#include "base/metrics/histogram_functions.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/base/load_flags.h"
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#include "net/base/url_util.h"
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#include "net/http/http_request_headers.h"
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#include "net/http/http_response_headers.h"
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#include "net/http/http_response_info.h"
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#include "net/http/http_status_code.h"
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#include "net/traffic_annotation/network_traffic_annotation.h"
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#include "net/url_request/redirect_info.h"
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#include "net/url_request/url_request.h"
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#include "net/url_request/url_request_context.h"
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#include "net/url_request/websocket_handshake_userdata_key.h"
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#include "net/websockets/websocket_basic_handshake_stream.h"
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#include "net/websockets/websocket_errors.h"
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#include "net/websockets/websocket_event_interface.h"
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#include "net/websockets/websocket_handshake_constants.h"
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#include "net/websockets/websocket_handshake_stream_base.h"
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#include "net/websockets/websocket_handshake_stream_create_helper.h"
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#include "url/gurl.h"
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#include "url/origin.h"
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namespace {
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// Please refer to the comment in class header if the usage changes.
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constexpr net::NetworkTrafficAnnotationTag kTrafficAnnotation =
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net::DefineNetworkTrafficAnnotation("websocket_stream", R"(
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semantics {
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sender: "WebSocket Handshake"
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description:
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"Renderer process initiated WebSocket handshake. The WebSocket "
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"handshake is used to establish a connection between a web page "
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"and a consenting server for bi-directional communication."
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trigger:
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"A handshake is performed every time a new connection is "
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"established via the Javascript or PPAPI WebSocket API. Any web "
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"page or extension can create a WebSocket connection."
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data: "The path and sub-protocols requested when the WebSocket was "
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"created, plus the origin of the creating page."
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destination: OTHER
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}
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policy {
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cookies_allowed: YES
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cookies_store: "user or per-app cookie store"
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setting: "These requests cannot be disabled."
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policy_exception_justification:
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"Not implemented. WebSocket is a core web platform API."
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})");
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} // namespace
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namespace net {
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namespace {
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// The timeout duration of WebSocket handshake.
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// It is defined as the same value as the TCP connection timeout value in
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// net/socket/websocket_transport_client_socket_pool.cc to make it hard for
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// JavaScript programs to recognize the timeout cause.
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const int kHandshakeTimeoutIntervalInSeconds = 240;
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class WebSocketStreamRequestImpl;
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class Delegate : public URLRequest::Delegate {
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public:
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explicit Delegate(WebSocketStreamRequestImpl* owner) : owner_(owner) {}
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~Delegate() override = default;
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// Implementation of URLRequest::Delegate methods.
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void OnReceivedRedirect(URLRequest* request,
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const RedirectInfo& redirect_info,
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bool* defer_redirect) override;
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void OnResponseStarted(URLRequest* request, int net_error) override;
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void OnAuthRequired(URLRequest* request,
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AuthChallengeInfo* auth_info) override;
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void OnCertificateRequested(URLRequest* request,
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SSLCertRequestInfo* cert_request_info) override;
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void OnSSLCertificateError(URLRequest* request,
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const SSLInfo& ssl_info,
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bool fatal) override;
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void OnReadCompleted(URLRequest* request, int bytes_read) override;
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private:
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WebSocketStreamRequestImpl* owner_;
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};
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class WebSocketStreamRequestImpl : public WebSocketStreamRequest {
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public:
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WebSocketStreamRequestImpl(
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const GURL& url,
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const URLRequestContext* context,
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const url::Origin& origin,
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const GURL& site_for_cookies,
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const HttpRequestHeaders& additional_headers,
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std::unique_ptr<WebSocketStream::ConnectDelegate> connect_delegate,
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std::unique_ptr<WebSocketHandshakeStreamCreateHelper> create_helper)
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: delegate_(std::make_unique<Delegate>(this)),
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url_request_(context->CreateRequest(url,
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DEFAULT_PRIORITY,
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delegate_.get(),
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kTrafficAnnotation)),
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connect_delegate_(std::move(connect_delegate)),
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handshake_stream_(nullptr),
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on_handshake_stream_created_has_been_called_(false),
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perform_upgrade_has_been_called_(false) {
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create_helper->set_stream_request(this);
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HttpRequestHeaders headers = additional_headers;
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headers.SetHeader(websockets::kUpgrade, websockets::kWebSocketLowercase);
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if (base::FeatureList::IsEnabled(WebSocketBasicHandshakeStream::
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kWebSocketHandshakeReuseConnection)) {
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// "Keep-Alive" is included in the "Connection" header for consistency
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// with Firefox, even though they don't send a Keep-Alive header and
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// neither do we. Firefox writes "keep-alive" in lowercase, but hopefully
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// no servers care about the difference. TODO(ricea): See if we can do
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// without the "Keep-Alive".
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constexpr char kKeepAliveUpgrade[] = "Keep-Alive, Upgrade";
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headers.SetHeader(HttpRequestHeaders::kConnection, kKeepAliveUpgrade);
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} else {
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headers.SetHeader(HttpRequestHeaders::kConnection, websockets::kUpgrade);
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}
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headers.SetHeader(HttpRequestHeaders::kOrigin, origin.Serialize());
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headers.SetHeader(websockets::kSecWebSocketVersion,
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websockets::kSupportedVersion);
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// Remove HTTP headers that are important to websocket connections: they
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// will be added later.
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headers.RemoveHeader(websockets::kSecWebSocketExtensions);
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headers.RemoveHeader(websockets::kSecWebSocketKey);
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headers.RemoveHeader(websockets::kSecWebSocketProtocol);
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url_request_->SetExtraRequestHeaders(headers);
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url_request_->set_initiator(origin);
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url_request_->set_site_for_cookies(site_for_cookies);
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url_request_->SetUserData(kWebSocketHandshakeUserDataKey,
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std::move(create_helper));
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url_request_->SetLoadFlags(LOAD_DISABLE_CACHE | LOAD_BYPASS_CACHE);
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connect_delegate_->OnCreateRequest(url_request_.get());
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}
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// Destroying this object destroys the URLRequest, which cancels the request
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// and so terminates the handshake if it is incomplete.
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~WebSocketStreamRequestImpl() override = default;
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void OnHandshakeStreamCreated(
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WebSocketHandshakeStreamBase* handshake_stream) override {
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// TODO(bnc): Change to DCHECK after https://crbug.com/842575 is fixed.
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CHECK(handshake_stream);
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on_handshake_stream_created_has_been_called_ = true;
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handshake_stream_ = handshake_stream;
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}
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void OnFailure(const std::string& message) override {
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failure_message_ = message;
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}
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void Start(std::unique_ptr<base::Timer> timer) {
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DCHECK(timer);
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base::TimeDelta timeout(base::TimeDelta::FromSeconds(
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kHandshakeTimeoutIntervalInSeconds));
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timer_ = std::move(timer);
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timer_->Start(FROM_HERE, timeout,
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base::Bind(&WebSocketStreamRequestImpl::OnTimeout,
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base::Unretained(this)));
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url_request_->Start();
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}
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void PerformUpgrade() {
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// Fail gracefully instead of crashing. TODO(bnc): Investigate and fix.
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if (!handshake_stream_ || !connect_delegate_) {
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ReportFailure(ERR_NOT_IMPLEMENTED);
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return;
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}
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DCHECK(timer_);
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CHECK(!perform_upgrade_has_been_called_);
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CHECK(on_handshake_stream_created_has_been_called_);
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// TODO(bnc): Change to DCHECK after https://crbug.com/842575 is fixed.
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CHECK(handshake_stream_);
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CHECK(connect_delegate_);
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perform_upgrade_has_been_called_ = true;
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timer_->Stop();
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std::unique_ptr<URLRequest> url_request = std::move(url_request_);
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WebSocketHandshakeStreamBase* handshake_stream = handshake_stream_;
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handshake_stream_ = nullptr;
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// TODO(bnc): Combine into one line after https://crbug.com/842575 is fixed.
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std::unique_ptr<WebSocketStream> stream = handshake_stream->Upgrade();
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connect_delegate_->OnSuccess(std::move(stream));
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// This is safe even if |this| has already been deleted.
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url_request->CancelWithError(ERR_WS_UPGRADE);
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}
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std::string FailureMessageFromNetError(int net_error) {
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if (net_error == ERR_TUNNEL_CONNECTION_FAILED) {
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// This error is common and confusing, so special-case it.
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// TODO(ricea): Include the HostPortPair of the selected proxy server in
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// the error message. This is not currently possible because it isn't set
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// in HttpResponseInfo when a ERR_TUNNEL_CONNECTION_FAILED error happens.
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return "Establishing a tunnel via proxy server failed.";
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} else {
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return std::string("Error in connection establishment: ") +
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ErrorToString(net_error);
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}
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}
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void ReportFailure(int net_error) {
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DCHECK(timer_);
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timer_->Stop();
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if (failure_message_.empty()) {
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switch (net_error) {
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case OK:
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case ERR_IO_PENDING:
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break;
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case ERR_ABORTED:
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failure_message_ = "WebSocket opening handshake was canceled";
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break;
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case ERR_TIMED_OUT:
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failure_message_ = "WebSocket opening handshake timed out";
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break;
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default:
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failure_message_ = FailureMessageFromNetError(net_error);
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break;
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}
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}
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ReportFailureWithMessage(failure_message_);
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}
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void ReportFailureWithMessage(const std::string& failure_message) {
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connect_delegate_->OnFailure(failure_message);
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}
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void OnFinishOpeningHandshake() {
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WebSocketDispatchOnFinishOpeningHandshake(connect_delegate(),
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url_request_->url(),
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url_request_->response_headers(),
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url_request_->response_time());
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}
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WebSocketStream::ConnectDelegate* connect_delegate() const {
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return connect_delegate_.get();
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}
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void OnTimeout() {
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url_request_->CancelWithError(ERR_TIMED_OUT);
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}
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private:
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// |delegate_| needs to be declared before |url_request_| so that it gets
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// initialised first.
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std::unique_ptr<Delegate> delegate_;
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// Deleting the WebSocketStreamRequestImpl object deletes this URLRequest
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// object, cancelling the whole connection.
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std::unique_ptr<URLRequest> url_request_;
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std::unique_ptr<WebSocketStream::ConnectDelegate> connect_delegate_;
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// This is owned by the caller of
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// WebsocketHandshakeStreamCreateHelper::CreateBasicStream() or
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// CreateHttp2Stream(). Both the stream and this object will be destroyed
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// during the destruction of the URLRequest object associated with the
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// handshake. This is only guaranteed to be a valid pointer if the handshake
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// succeeded.
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WebSocketHandshakeStreamBase* handshake_stream_;
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// TODO(bnc): Remove after https://crbug.com/842575 is fixed.
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bool on_handshake_stream_created_has_been_called_;
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bool perform_upgrade_has_been_called_;
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// The failure message supplied by WebSocketBasicHandshakeStream, if any.
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std::string failure_message_;
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// A timer for handshake timeout.
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std::unique_ptr<base::Timer> timer_;
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};
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class SSLErrorCallbacks : public WebSocketEventInterface::SSLErrorCallbacks {
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public:
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explicit SSLErrorCallbacks(URLRequest* url_request)
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: url_request_(url_request) {}
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void CancelSSLRequest(int error, const SSLInfo* ssl_info) override {
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if (ssl_info) {
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url_request_->CancelWithSSLError(error, *ssl_info);
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} else {
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url_request_->CancelWithError(error);
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}
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}
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void ContinueSSLRequest() override {
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url_request_->ContinueDespiteLastError();
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}
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private:
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URLRequest* url_request_;
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};
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void Delegate::OnReceivedRedirect(URLRequest* request,
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const RedirectInfo& redirect_info,
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bool* defer_redirect) {
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// This code should never be reached for externally generated redirects,
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// as WebSocketBasicHandshakeStream is responsible for filtering out
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// all response codes besides 101, 401, and 407. As such, the URLRequest
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// should never see a redirect sent over the network. However, internal
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// redirects also result in this method being called, such as those
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// caused by HSTS.
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// Because it's security critical to prevent externally-generated
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// redirects in WebSockets, perform additional checks to ensure this
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// is only internal.
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GURL::Replacements replacements;
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replacements.SetSchemeStr("wss");
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GURL expected_url = request->original_url().ReplaceComponents(replacements);
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if (redirect_info.new_method != "GET" ||
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redirect_info.new_url != expected_url) {
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// This should not happen.
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DLOG(FATAL) << "Unauthorized WebSocket redirect to "
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<< redirect_info.new_method << " "
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<< redirect_info.new_url.spec();
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request->Cancel();
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}
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}
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void Delegate::OnResponseStarted(URLRequest* request, int net_error) {
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DCHECK_NE(ERR_IO_PENDING, net_error);
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// All error codes, including OK and ABORTED, as with
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// Net.ErrorCodesForMainFrame3
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base::UmaHistogramSparse("Net.WebSocket.ErrorCodes", -net_error);
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if (net::IsLocalhost(request->url())) {
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base::UmaHistogramSparse("Net.WebSocket.ErrorCodes_Localhost", -net_error);
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} else {
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base::UmaHistogramSparse("Net.WebSocket.ErrorCodes_NotLocalhost",
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-net_error);
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}
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if (net_error != OK) {
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DVLOG(3) << "OnResponseStarted (request failed)";
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owner_->ReportFailure(net_error);
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return;
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}
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const int response_code = request->GetResponseCode();
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DVLOG(3) << "OnResponseStarted (response code " << response_code << ")";
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if (request->response_info().connection_info ==
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HttpResponseInfo::CONNECTION_INFO_HTTP2) {
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if (response_code == HTTP_OK) {
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owner_->PerformUpgrade();
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return;
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}
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owner_->ReportFailure(net_error);
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return;
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}
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switch (response_code) {
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case HTTP_SWITCHING_PROTOCOLS:
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owner_->PerformUpgrade();
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return;
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case HTTP_UNAUTHORIZED:
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owner_->OnFinishOpeningHandshake();
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owner_->ReportFailureWithMessage(
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"HTTP Authentication failed; no valid credentials available");
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return;
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case HTTP_PROXY_AUTHENTICATION_REQUIRED:
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owner_->OnFinishOpeningHandshake();
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owner_->ReportFailureWithMessage("Proxy authentication failed");
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return;
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default:
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owner_->ReportFailure(net_error);
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}
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}
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void Delegate::OnAuthRequired(URLRequest* request,
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AuthChallengeInfo* auth_info) {
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// This should only be called if credentials are not already stored.
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request->CancelAuth();
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}
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void Delegate::OnCertificateRequested(URLRequest* request,
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SSLCertRequestInfo* cert_request_info) {
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// This method is called when a client certificate is requested, and the
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// request context does not already contain a client certificate selection for
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// the endpoint. In this case, a main frame resource request would pop-up UI
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// to permit selection of a client certificate, but since WebSockets are
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// sub-resources they should not pop-up UI and so there is nothing more we can
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// do.
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request->Cancel();
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}
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void Delegate::OnSSLCertificateError(URLRequest* request,
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const SSLInfo& ssl_info,
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bool fatal) {
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owner_->connect_delegate()->OnSSLCertificateError(
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std::make_unique<SSLErrorCallbacks>(request), ssl_info, fatal);
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}
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void Delegate::OnReadCompleted(URLRequest* request, int bytes_read) {
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NOTREACHED();
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}
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} // namespace
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WebSocketStreamRequest::~WebSocketStreamRequest() = default;
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WebSocketStream::WebSocketStream() = default;
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WebSocketStream::~WebSocketStream() = default;
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WebSocketStream::ConnectDelegate::~ConnectDelegate() = default;
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std::unique_ptr<WebSocketStreamRequest> WebSocketStream::CreateAndConnectStream(
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const GURL& socket_url,
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std::unique_ptr<WebSocketHandshakeStreamCreateHelper> create_helper,
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const url::Origin& origin,
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const GURL& site_for_cookies,
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const HttpRequestHeaders& additional_headers,
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URLRequestContext* url_request_context,
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const NetLogWithSource& net_log,
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std::unique_ptr<ConnectDelegate> connect_delegate) {
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auto request = std::make_unique<WebSocketStreamRequestImpl>(
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socket_url, url_request_context, origin, site_for_cookies,
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additional_headers, std::move(connect_delegate),
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std::move(create_helper));
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request->Start(std::make_unique<base::Timer>(false, false));
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return std::move(request);
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}
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std::unique_ptr<WebSocketStreamRequest>
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WebSocketStream::CreateAndConnectStreamForTesting(
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const GURL& socket_url,
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std::unique_ptr<WebSocketHandshakeStreamCreateHelper> create_helper,
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const url::Origin& origin,
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const GURL& site_for_cookies,
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const HttpRequestHeaders& additional_headers,
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URLRequestContext* url_request_context,
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const NetLogWithSource& net_log,
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std::unique_ptr<WebSocketStream::ConnectDelegate> connect_delegate,
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std::unique_ptr<base::Timer> timer) {
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auto request = std::make_unique<WebSocketStreamRequestImpl>(
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socket_url, url_request_context, origin, site_for_cookies,
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additional_headers, std::move(connect_delegate),
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std::move(create_helper));
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request->Start(std::move(timer));
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return std::move(request);
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}
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void WebSocketDispatchOnFinishOpeningHandshake(
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WebSocketStream::ConnectDelegate* connect_delegate,
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const GURL& url,
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const scoped_refptr<HttpResponseHeaders>& headers,
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base::Time response_time) {
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DCHECK(connect_delegate);
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if (headers.get()) {
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connect_delegate->OnFinishOpeningHandshake(
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std::make_unique<WebSocketHandshakeResponseInfo>(url, headers,
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response_time));
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}
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}
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} // namespace net
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