mirror of
https://github.com/klzgrad/naiveproxy.git
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769 lines
28 KiB
C++
769 lines
28 KiB
C++
// Copyright (c) 2012 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/socket/ssl_client_socket_pool.h"
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#include <cstdlib>
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#include <utility>
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#include "base/bind.h"
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#include "base/bind_helpers.h"
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#include "base/metrics/field_trial.h"
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#include "base/metrics/histogram_macros.h"
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#include "base/metrics/sparse_histogram.h"
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#include "base/trace_event/trace_event.h"
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#include "base/values.h"
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#include "net/base/host_port_pair.h"
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#include "net/base/net_errors.h"
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#include "net/base/trace_constants.h"
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#include "net/base/url_util.h"
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#include "net/http/http_proxy_client_socket.h"
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#include "net/http/http_proxy_client_socket_pool.h"
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#include "net/log/net_log_source_type.h"
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#include "net/log/net_log_with_source.h"
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#include "net/socket/client_socket_factory.h"
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#include "net/socket/client_socket_handle.h"
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#include "net/socket/socks_client_socket_pool.h"
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#include "net/socket/ssl_client_socket.h"
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#include "net/socket/transport_client_socket_pool.h"
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#include "net/ssl/ssl_cert_request_info.h"
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#include "net/ssl/ssl_connection_status_flags.h"
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#include "net/ssl/ssl_info.h"
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#include "third_party/boringssl/src/include/openssl/ssl.h"
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namespace net {
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class NetLog;
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SSLSocketParams::SSLSocketParams(
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const scoped_refptr<TransportSocketParams>& direct_params,
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const scoped_refptr<SOCKSSocketParams>& socks_proxy_params,
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const scoped_refptr<HttpProxySocketParams>& http_proxy_params,
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const HostPortPair& host_and_port,
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const SSLConfig& ssl_config,
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PrivacyMode privacy_mode,
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int load_flags,
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bool expect_spdy)
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: direct_params_(direct_params),
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socks_proxy_params_(socks_proxy_params),
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http_proxy_params_(http_proxy_params),
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host_and_port_(host_and_port),
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ssl_config_(ssl_config),
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privacy_mode_(privacy_mode),
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load_flags_(load_flags),
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expect_spdy_(expect_spdy) {
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// Only one set of lower level pool params should be non-NULL.
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DCHECK((direct_params_ && !socks_proxy_params_ && !http_proxy_params_) ||
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(!direct_params_ && socks_proxy_params_ && !http_proxy_params_) ||
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(!direct_params_ && !socks_proxy_params_ && http_proxy_params_));
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}
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SSLSocketParams::~SSLSocketParams() {}
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SSLSocketParams::ConnectionType SSLSocketParams::GetConnectionType() const {
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if (direct_params_.get()) {
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DCHECK(!socks_proxy_params_.get());
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DCHECK(!http_proxy_params_.get());
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return DIRECT;
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}
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if (socks_proxy_params_.get()) {
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DCHECK(!http_proxy_params_.get());
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return SOCKS_PROXY;
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}
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DCHECK(http_proxy_params_.get());
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return HTTP_PROXY;
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}
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const scoped_refptr<TransportSocketParams>&
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SSLSocketParams::GetDirectConnectionParams() const {
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DCHECK_EQ(GetConnectionType(), DIRECT);
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return direct_params_;
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}
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const scoped_refptr<SOCKSSocketParams>&
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SSLSocketParams::GetSocksProxyConnectionParams() const {
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DCHECK_EQ(GetConnectionType(), SOCKS_PROXY);
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return socks_proxy_params_;
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}
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const scoped_refptr<HttpProxySocketParams>&
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SSLSocketParams::GetHttpProxyConnectionParams() const {
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DCHECK_EQ(GetConnectionType(), HTTP_PROXY);
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return http_proxy_params_;
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}
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// Timeout for the SSL handshake portion of the connect.
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static const int kSSLHandshakeTimeoutInSeconds = 30;
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SSLConnectJob::SSLConnectJob(const std::string& group_name,
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RequestPriority priority,
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ClientSocketPool::RespectLimits respect_limits,
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const scoped_refptr<SSLSocketParams>& params,
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const base::TimeDelta& timeout_duration,
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TransportClientSocketPool* transport_pool,
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SOCKSClientSocketPool* socks_pool,
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HttpProxyClientSocketPool* http_proxy_pool,
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ClientSocketFactory* client_socket_factory,
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const SSLClientSocketContext& context,
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Delegate* delegate,
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NetLog* net_log)
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: ConnectJob(
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group_name,
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timeout_duration,
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priority,
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respect_limits,
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delegate,
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NetLogWithSource::Make(net_log, NetLogSourceType::SSL_CONNECT_JOB)),
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params_(params),
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transport_pool_(transport_pool),
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socks_pool_(socks_pool),
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http_proxy_pool_(http_proxy_pool),
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client_socket_factory_(client_socket_factory),
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context_(context.cert_verifier,
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context.channel_id_service,
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context.transport_security_state,
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context.cert_transparency_verifier,
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context.ct_policy_enforcer,
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(context.ssl_session_cache_shard.empty()
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? context.ssl_session_cache_shard
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: (params->privacy_mode() == PRIVACY_MODE_ENABLED
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? "pm/" + context.ssl_session_cache_shard
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: context.ssl_session_cache_shard))),
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callback_(
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base::Bind(&SSLConnectJob::OnIOComplete, base::Unretained(this))),
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version_interference_probe_(false),
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version_interference_error_(OK),
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version_interference_details_(SSLErrorDetails::kOther) {}
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SSLConnectJob::~SSLConnectJob() {
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}
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LoadState SSLConnectJob::GetLoadState() const {
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switch (next_state_) {
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case STATE_TUNNEL_CONNECT_COMPLETE:
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if (transport_socket_handle_->socket())
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return LOAD_STATE_ESTABLISHING_PROXY_TUNNEL;
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// else, fall through.
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case STATE_TRANSPORT_CONNECT:
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case STATE_TRANSPORT_CONNECT_COMPLETE:
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case STATE_SOCKS_CONNECT:
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case STATE_SOCKS_CONNECT_COMPLETE:
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case STATE_TUNNEL_CONNECT:
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return transport_socket_handle_->GetLoadState();
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case STATE_SSL_CONNECT:
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case STATE_SSL_CONNECT_COMPLETE:
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return LOAD_STATE_SSL_HANDSHAKE;
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default:
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NOTREACHED();
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return LOAD_STATE_IDLE;
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}
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}
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void SSLConnectJob::GetAdditionalErrorState(ClientSocketHandle* handle) {
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// Headers in |error_response_info_| indicate a proxy tunnel setup
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// problem. See DoTunnelConnectComplete.
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if (error_response_info_.headers.get()) {
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handle->set_pending_http_proxy_connection(
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transport_socket_handle_.release());
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}
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handle->set_ssl_error_response_info(error_response_info_);
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if (!connect_timing_.ssl_start.is_null())
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handle->set_is_ssl_error(true);
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handle->set_connection_attempts(connection_attempts_);
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}
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void SSLConnectJob::OnIOComplete(int result) {
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int rv = DoLoop(result);
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if (rv != ERR_IO_PENDING)
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NotifyDelegateOfCompletion(rv); // Deletes |this|.
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}
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int SSLConnectJob::DoLoop(int result) {
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TRACE_EVENT0(kNetTracingCategory, "SSLConnectJob::DoLoop");
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DCHECK_NE(next_state_, STATE_NONE);
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int rv = result;
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do {
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State state = next_state_;
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next_state_ = STATE_NONE;
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switch (state) {
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case STATE_TRANSPORT_CONNECT:
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DCHECK_EQ(OK, rv);
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rv = DoTransportConnect();
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break;
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case STATE_TRANSPORT_CONNECT_COMPLETE:
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rv = DoTransportConnectComplete(rv);
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break;
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case STATE_SOCKS_CONNECT:
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DCHECK_EQ(OK, rv);
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rv = DoSOCKSConnect();
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break;
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case STATE_SOCKS_CONNECT_COMPLETE:
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rv = DoSOCKSConnectComplete(rv);
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break;
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case STATE_TUNNEL_CONNECT:
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DCHECK_EQ(OK, rv);
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rv = DoTunnelConnect();
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break;
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case STATE_TUNNEL_CONNECT_COMPLETE:
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rv = DoTunnelConnectComplete(rv);
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break;
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case STATE_SSL_CONNECT:
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DCHECK_EQ(OK, rv);
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rv = DoSSLConnect();
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break;
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case STATE_SSL_CONNECT_COMPLETE:
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rv = DoSSLConnectComplete(rv);
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break;
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default:
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NOTREACHED() << "bad state";
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rv = ERR_FAILED;
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break;
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}
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} while (rv != ERR_IO_PENDING && next_state_ != STATE_NONE);
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return rv;
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}
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int SSLConnectJob::DoTransportConnect() {
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DCHECK(transport_pool_);
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next_state_ = STATE_TRANSPORT_CONNECT_COMPLETE;
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transport_socket_handle_.reset(new ClientSocketHandle());
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scoped_refptr<TransportSocketParams> direct_params =
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params_->GetDirectConnectionParams();
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return transport_socket_handle_->Init(group_name(), direct_params, priority(),
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respect_limits(), callback_,
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transport_pool_, net_log());
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}
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int SSLConnectJob::DoTransportConnectComplete(int result) {
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connection_attempts_.insert(
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connection_attempts_.end(),
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transport_socket_handle_->connection_attempts().begin(),
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transport_socket_handle_->connection_attempts().end());
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if (result == OK) {
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next_state_ = STATE_SSL_CONNECT;
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transport_socket_handle_->socket()->GetPeerAddress(&server_address_);
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}
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return result;
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}
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int SSLConnectJob::DoSOCKSConnect() {
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DCHECK(socks_pool_);
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next_state_ = STATE_SOCKS_CONNECT_COMPLETE;
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transport_socket_handle_.reset(new ClientSocketHandle());
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scoped_refptr<SOCKSSocketParams> socks_proxy_params =
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params_->GetSocksProxyConnectionParams();
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return transport_socket_handle_->Init(group_name(), socks_proxy_params,
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priority(), respect_limits(), callback_,
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socks_pool_, net_log());
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}
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int SSLConnectJob::DoSOCKSConnectComplete(int result) {
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if (result == OK)
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next_state_ = STATE_SSL_CONNECT;
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return result;
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}
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int SSLConnectJob::DoTunnelConnect() {
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DCHECK(http_proxy_pool_);
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next_state_ = STATE_TUNNEL_CONNECT_COMPLETE;
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transport_socket_handle_.reset(new ClientSocketHandle());
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scoped_refptr<HttpProxySocketParams> http_proxy_params =
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params_->GetHttpProxyConnectionParams();
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return transport_socket_handle_->Init(group_name(), http_proxy_params,
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priority(), respect_limits(), callback_,
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http_proxy_pool_, net_log());
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}
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int SSLConnectJob::DoTunnelConnectComplete(int result) {
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// Extract the information needed to prompt for appropriate proxy
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// authentication so that when ClientSocketPoolBaseHelper calls
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// |GetAdditionalErrorState|, we can easily set the state.
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if (result == ERR_SSL_CLIENT_AUTH_CERT_NEEDED) {
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error_response_info_ = transport_socket_handle_->ssl_error_response_info();
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} else if (result == ERR_PROXY_AUTH_REQUESTED ||
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result == ERR_HTTPS_PROXY_TUNNEL_RESPONSE) {
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StreamSocket* socket = transport_socket_handle_->socket();
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ProxyClientSocket* tunnel_socket = static_cast<ProxyClientSocket*>(socket);
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error_response_info_ = *tunnel_socket->GetConnectResponseInfo();
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}
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if (result < 0)
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return result;
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next_state_ = STATE_SSL_CONNECT;
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return result;
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}
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int SSLConnectJob::DoSSLConnect() {
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TRACE_EVENT0(kNetTracingCategory, "SSLConnectJob::DoSSLConnect");
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next_state_ = STATE_SSL_CONNECT_COMPLETE;
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// Reset the timeout to just the time allowed for the SSL handshake.
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ResetTimer(base::TimeDelta::FromSeconds(kSSLHandshakeTimeoutInSeconds));
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// If the handle has a fresh socket, get its connect start and DNS times.
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// This should always be the case.
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const LoadTimingInfo::ConnectTiming& socket_connect_timing =
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transport_socket_handle_->connect_timing();
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if (!transport_socket_handle_->is_reused() &&
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!socket_connect_timing.connect_start.is_null()) {
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// Overwriting |connect_start| serves two purposes - it adjusts timing so
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// |connect_start| doesn't include dns times, and it adjusts the time so
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// as not to include time spent waiting for an idle socket.
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connect_timing_.connect_start = socket_connect_timing.connect_start;
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connect_timing_.dns_start = socket_connect_timing.dns_start;
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connect_timing_.dns_end = socket_connect_timing.dns_end;
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}
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connect_timing_.ssl_start = base::TimeTicks::Now();
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SSLConfig ssl_config = params_->ssl_config();
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if (version_interference_probe_) {
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DCHECK_EQ(SSL_PROTOCOL_VERSION_TLS1_3, ssl_config.version_max);
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ssl_config.version_max = SSL_PROTOCOL_VERSION_TLS1_2;
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ssl_config.version_interference_probe = true;
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}
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ssl_socket_ = client_socket_factory_->CreateSSLClientSocket(
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std::move(transport_socket_handle_), params_->host_and_port(), ssl_config,
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context_);
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return ssl_socket_->Connect(callback_);
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}
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int SSLConnectJob::DoSSLConnectComplete(int result) {
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// Version interference probes should not result in success.
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DCHECK(!version_interference_probe_ || result != OK);
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connect_timing_.ssl_end = base::TimeTicks::Now();
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if (result != OK && !server_address_.address().empty()) {
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connection_attempts_.push_back(ConnectionAttempt(server_address_, result));
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server_address_ = IPEndPoint();
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}
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// If we want SPDY over ALPN, make sure it succeeded.
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if (params_->expect_spdy() &&
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ssl_socket_->GetNegotiatedProtocol() != kProtoHTTP2) {
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return ERR_ALPN_NEGOTIATION_FAILED;
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}
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// Perform a TLS 1.3 version interference probe on various connection
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// errors. The retry will never produce a successful connection but may map
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// errors to ERR_SSL_VERSION_INTERFERENCE, which signals a probable
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// version-interfering middlebox.
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if (params_->ssl_config().version_max == SSL_PROTOCOL_VERSION_TLS1_3 &&
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!version_interference_probe_) {
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if (result == ERR_CONNECTION_CLOSED || result == ERR_SSL_PROTOCOL_ERROR ||
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result == ERR_SSL_VERSION_OR_CIPHER_MISMATCH ||
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result == ERR_CONNECTION_RESET ||
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result == ERR_SSL_BAD_RECORD_MAC_ALERT) {
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// Report the error code for each time a version interference probe is
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// triggered.
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UMA_HISTOGRAM_SPARSE_SLOWLY("Net.SSLVersionInterferenceProbeTrigger",
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std::abs(result));
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net_log().AddEventWithNetErrorCode(
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NetLogEventType::SSL_VERSION_INTERFERENCE_PROBE, result);
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SSLErrorDetails details = ssl_socket_->GetConnectErrorDetails();
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ResetStateForRetry();
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version_interference_probe_ = true;
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version_interference_error_ = result;
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version_interference_details_ = details;
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next_state_ = GetInitialState(params_->GetConnectionType());
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return OK;
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}
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}
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const std::string& host = params_->host_and_port().host();
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bool is_google =
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host == "google.com" ||
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(host.size() > 11 && host.rfind(".google.com") == host.size() - 11);
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bool tls13_supported = IsTLS13ExperimentHost(host);
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if (result == OK ||
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ssl_socket_->IgnoreCertError(result, params_->load_flags())) {
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DCHECK(!connect_timing_.ssl_start.is_null());
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base::TimeDelta connect_duration =
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connect_timing_.ssl_end - connect_timing_.ssl_start;
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if (params_->expect_spdy()) {
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UMA_HISTOGRAM_CUSTOM_TIMES("Net.SpdyConnectionLatency_2",
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connect_duration,
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base::TimeDelta::FromMilliseconds(1),
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base::TimeDelta::FromMinutes(1),
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100);
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}
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UMA_HISTOGRAM_CUSTOM_TIMES("Net.SSL_Connection_Latency_2",
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connect_duration,
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base::TimeDelta::FromMilliseconds(1),
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base::TimeDelta::FromMinutes(1),
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100);
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SSLInfo ssl_info;
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bool has_ssl_info = ssl_socket_->GetSSLInfo(&ssl_info);
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DCHECK(has_ssl_info);
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UMA_HISTOGRAM_ENUMERATION("Net.SSLVersion", SSLConnectionStatusToVersion(
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ssl_info.connection_status),
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SSL_CONNECTION_VERSION_MAX);
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uint16_t cipher_suite =
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SSLConnectionStatusToCipherSuite(ssl_info.connection_status);
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UMA_HISTOGRAM_SPARSE_SLOWLY("Net.SSL_CipherSuite", cipher_suite);
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if (ssl_info.key_exchange_group != 0) {
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UMA_HISTOGRAM_SPARSE_SLOWLY("Net.SSL_KeyExchange.ECDHE",
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ssl_info.key_exchange_group);
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}
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if (ssl_info.handshake_type == SSLInfo::HANDSHAKE_RESUME) {
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UMA_HISTOGRAM_CUSTOM_TIMES("Net.SSL_Connection_Latency_Resume_Handshake",
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connect_duration,
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base::TimeDelta::FromMilliseconds(1),
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base::TimeDelta::FromMinutes(1),
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100);
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} else if (ssl_info.handshake_type == SSLInfo::HANDSHAKE_FULL) {
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UMA_HISTOGRAM_CUSTOM_TIMES("Net.SSL_Connection_Latency_Full_Handshake",
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connect_duration,
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base::TimeDelta::FromMilliseconds(1),
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base::TimeDelta::FromMinutes(1),
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100);
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}
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if (is_google) {
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UMA_HISTOGRAM_CUSTOM_TIMES("Net.SSL_Connection_Latency_Google2",
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connect_duration,
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base::TimeDelta::FromMilliseconds(1),
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base::TimeDelta::FromMinutes(1),
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100);
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if (ssl_info.handshake_type == SSLInfo::HANDSHAKE_RESUME) {
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UMA_HISTOGRAM_CUSTOM_TIMES("Net.SSL_Connection_Latency_Google_"
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"Resume_Handshake",
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connect_duration,
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base::TimeDelta::FromMilliseconds(1),
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base::TimeDelta::FromMinutes(1),
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100);
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} else if (ssl_info.handshake_type == SSLInfo::HANDSHAKE_FULL) {
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UMA_HISTOGRAM_CUSTOM_TIMES("Net.SSL_Connection_Latency_Google_"
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"Full_Handshake",
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connect_duration,
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base::TimeDelta::FromMilliseconds(1),
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base::TimeDelta::FromMinutes(1),
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100);
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}
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}
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if (tls13_supported) {
|
|
UMA_HISTOGRAM_CUSTOM_TIMES("Net.SSL_Connection_Latency_TLS13Experiment",
|
|
connect_duration,
|
|
base::TimeDelta::FromMilliseconds(1),
|
|
base::TimeDelta::FromMinutes(1), 100);
|
|
}
|
|
}
|
|
|
|
UMA_HISTOGRAM_SPARSE_SLOWLY("Net.SSL_Connection_Error", std::abs(result));
|
|
|
|
if (is_google) {
|
|
UMA_HISTOGRAM_SPARSE_SLOWLY("Net.SSL_Connection_Error_Google",
|
|
std::abs(result));
|
|
}
|
|
|
|
if (tls13_supported) {
|
|
UMA_HISTOGRAM_SPARSE_SLOWLY("Net.SSL_Connection_Error_TLS13Experiment",
|
|
std::abs(result));
|
|
}
|
|
|
|
if (result == ERR_SSL_VERSION_INTERFERENCE) {
|
|
// Record the error code version interference was detected at.
|
|
DCHECK(version_interference_probe_);
|
|
DCHECK_NE(OK, version_interference_error_);
|
|
UMA_HISTOGRAM_SPARSE_SLOWLY("Net.SSLVersionInterferenceError",
|
|
std::abs(version_interference_error_));
|
|
|
|
if (tls13_supported) {
|
|
UMA_HISTOGRAM_ENUMERATION(
|
|
"Net.SSLVersionInterferenceDetails_TLS13Experiment",
|
|
version_interference_details_, SSLErrorDetails::kLastValue);
|
|
}
|
|
}
|
|
|
|
if (result == OK || IsCertificateError(result)) {
|
|
SetSocket(std::move(ssl_socket_));
|
|
} else if (result == ERR_SSL_CLIENT_AUTH_CERT_NEEDED) {
|
|
error_response_info_.cert_request_info = new SSLCertRequestInfo;
|
|
ssl_socket_->GetSSLCertRequestInfo(
|
|
error_response_info_.cert_request_info.get());
|
|
}
|
|
|
|
return result;
|
|
}
|
|
|
|
SSLConnectJob::State SSLConnectJob::GetInitialState(
|
|
SSLSocketParams::ConnectionType connection_type) {
|
|
switch (connection_type) {
|
|
case SSLSocketParams::DIRECT:
|
|
return STATE_TRANSPORT_CONNECT;
|
|
case SSLSocketParams::HTTP_PROXY:
|
|
return STATE_TUNNEL_CONNECT;
|
|
case SSLSocketParams::SOCKS_PROXY:
|
|
return STATE_SOCKS_CONNECT;
|
|
}
|
|
NOTREACHED();
|
|
return STATE_NONE;
|
|
}
|
|
|
|
int SSLConnectJob::ConnectInternal() {
|
|
next_state_ = GetInitialState(params_->GetConnectionType());
|
|
return DoLoop(OK);
|
|
}
|
|
|
|
void SSLConnectJob::ResetStateForRetry() {
|
|
transport_socket_handle_.reset();
|
|
ssl_socket_.reset();
|
|
error_response_info_ = HttpResponseInfo();
|
|
server_address_ = IPEndPoint();
|
|
}
|
|
|
|
SSLClientSocketPool::SSLConnectJobFactory::SSLConnectJobFactory(
|
|
TransportClientSocketPool* transport_pool,
|
|
SOCKSClientSocketPool* socks_pool,
|
|
HttpProxyClientSocketPool* http_proxy_pool,
|
|
ClientSocketFactory* client_socket_factory,
|
|
const SSLClientSocketContext& context,
|
|
NetLog* net_log)
|
|
: transport_pool_(transport_pool),
|
|
socks_pool_(socks_pool),
|
|
http_proxy_pool_(http_proxy_pool),
|
|
client_socket_factory_(client_socket_factory),
|
|
context_(context),
|
|
net_log_(net_log) {
|
|
base::TimeDelta max_transport_timeout = base::TimeDelta();
|
|
base::TimeDelta pool_timeout;
|
|
if (transport_pool_)
|
|
max_transport_timeout = transport_pool_->ConnectionTimeout();
|
|
if (socks_pool_) {
|
|
pool_timeout = socks_pool_->ConnectionTimeout();
|
|
if (pool_timeout > max_transport_timeout)
|
|
max_transport_timeout = pool_timeout;
|
|
}
|
|
if (http_proxy_pool_) {
|
|
pool_timeout = http_proxy_pool_->ConnectionTimeout();
|
|
if (pool_timeout > max_transport_timeout)
|
|
max_transport_timeout = pool_timeout;
|
|
}
|
|
timeout_ = max_transport_timeout +
|
|
base::TimeDelta::FromSeconds(kSSLHandshakeTimeoutInSeconds);
|
|
}
|
|
|
|
SSLClientSocketPool::SSLConnectJobFactory::~SSLConnectJobFactory() {
|
|
}
|
|
|
|
SSLClientSocketPool::SSLClientSocketPool(
|
|
int max_sockets,
|
|
int max_sockets_per_group,
|
|
CertVerifier* cert_verifier,
|
|
ChannelIDService* channel_id_service,
|
|
TransportSecurityState* transport_security_state,
|
|
CTVerifier* cert_transparency_verifier,
|
|
CTPolicyEnforcer* ct_policy_enforcer,
|
|
const std::string& ssl_session_cache_shard,
|
|
ClientSocketFactory* client_socket_factory,
|
|
TransportClientSocketPool* transport_pool,
|
|
SOCKSClientSocketPool* socks_pool,
|
|
HttpProxyClientSocketPool* http_proxy_pool,
|
|
SSLConfigService* ssl_config_service,
|
|
NetLog* net_log)
|
|
: transport_pool_(transport_pool),
|
|
socks_pool_(socks_pool),
|
|
http_proxy_pool_(http_proxy_pool),
|
|
base_(this,
|
|
max_sockets,
|
|
max_sockets_per_group,
|
|
ClientSocketPool::unused_idle_socket_timeout(),
|
|
ClientSocketPool::used_idle_socket_timeout(),
|
|
new SSLConnectJobFactory(
|
|
transport_pool,
|
|
socks_pool,
|
|
http_proxy_pool,
|
|
client_socket_factory,
|
|
SSLClientSocketContext(cert_verifier,
|
|
channel_id_service,
|
|
transport_security_state,
|
|
cert_transparency_verifier,
|
|
ct_policy_enforcer,
|
|
ssl_session_cache_shard),
|
|
net_log)),
|
|
ssl_config_service_(ssl_config_service) {
|
|
if (ssl_config_service_.get())
|
|
ssl_config_service_->AddObserver(this);
|
|
if (transport_pool_)
|
|
base_.AddLowerLayeredPool(transport_pool_);
|
|
if (socks_pool_)
|
|
base_.AddLowerLayeredPool(socks_pool_);
|
|
if (http_proxy_pool_)
|
|
base_.AddLowerLayeredPool(http_proxy_pool_);
|
|
}
|
|
|
|
SSLClientSocketPool::~SSLClientSocketPool() {
|
|
if (ssl_config_service_.get())
|
|
ssl_config_service_->RemoveObserver(this);
|
|
}
|
|
|
|
std::unique_ptr<ConnectJob>
|
|
SSLClientSocketPool::SSLConnectJobFactory::NewConnectJob(
|
|
const std::string& group_name,
|
|
const PoolBase::Request& request,
|
|
ConnectJob::Delegate* delegate) const {
|
|
return std::unique_ptr<ConnectJob>(new SSLConnectJob(
|
|
group_name, request.priority(), request.respect_limits(),
|
|
request.params(), ConnectionTimeout(), transport_pool_, socks_pool_,
|
|
http_proxy_pool_, client_socket_factory_, context_, delegate, net_log_));
|
|
}
|
|
|
|
base::TimeDelta SSLClientSocketPool::SSLConnectJobFactory::ConnectionTimeout()
|
|
const {
|
|
return timeout_;
|
|
}
|
|
|
|
int SSLClientSocketPool::RequestSocket(const std::string& group_name,
|
|
const void* socket_params,
|
|
RequestPriority priority,
|
|
RespectLimits respect_limits,
|
|
ClientSocketHandle* handle,
|
|
const CompletionCallback& callback,
|
|
const NetLogWithSource& net_log) {
|
|
const scoped_refptr<SSLSocketParams>* casted_socket_params =
|
|
static_cast<const scoped_refptr<SSLSocketParams>*>(socket_params);
|
|
|
|
return base_.RequestSocket(group_name, *casted_socket_params, priority,
|
|
respect_limits, handle, callback, net_log);
|
|
}
|
|
|
|
void SSLClientSocketPool::RequestSockets(
|
|
const std::string& group_name,
|
|
const void* params,
|
|
int num_sockets,
|
|
const NetLogWithSource& net_log,
|
|
HttpRequestInfo::RequestMotivation motivation) {
|
|
const scoped_refptr<SSLSocketParams>* casted_params =
|
|
static_cast<const scoped_refptr<SSLSocketParams>*>(params);
|
|
|
|
base_.RequestSockets(group_name, *casted_params, num_sockets, net_log,
|
|
motivation);
|
|
}
|
|
|
|
void SSLClientSocketPool::SetPriority(const std::string& group_name,
|
|
ClientSocketHandle* handle,
|
|
RequestPriority priority) {
|
|
base_.SetPriority(group_name, handle, priority);
|
|
}
|
|
|
|
void SSLClientSocketPool::CancelRequest(const std::string& group_name,
|
|
ClientSocketHandle* handle) {
|
|
base_.CancelRequest(group_name, handle);
|
|
}
|
|
|
|
void SSLClientSocketPool::ReleaseSocket(const std::string& group_name,
|
|
std::unique_ptr<StreamSocket> socket,
|
|
int id) {
|
|
base_.ReleaseSocket(group_name, std::move(socket), id);
|
|
}
|
|
|
|
void SSLClientSocketPool::FlushWithError(int error) {
|
|
base_.FlushWithError(error);
|
|
}
|
|
|
|
void SSLClientSocketPool::CloseIdleSockets() {
|
|
base_.CloseIdleSockets();
|
|
}
|
|
|
|
void SSLClientSocketPool::CloseIdleSocketsInGroup(
|
|
const std::string& group_name) {
|
|
base_.CloseIdleSocketsInGroup(group_name);
|
|
}
|
|
|
|
int SSLClientSocketPool::IdleSocketCount() const {
|
|
return base_.idle_socket_count();
|
|
}
|
|
|
|
int SSLClientSocketPool::IdleSocketCountInGroup(
|
|
const std::string& group_name) const {
|
|
return base_.IdleSocketCountInGroup(group_name);
|
|
}
|
|
|
|
LoadState SSLClientSocketPool::GetLoadState(
|
|
const std::string& group_name, const ClientSocketHandle* handle) const {
|
|
return base_.GetLoadState(group_name, handle);
|
|
}
|
|
|
|
void SSLClientSocketPool::DumpMemoryStats(
|
|
base::trace_event::ProcessMemoryDump* pmd,
|
|
const std::string& parent_dump_absolute_name) const {
|
|
base_.DumpMemoryStats(pmd, parent_dump_absolute_name);
|
|
}
|
|
|
|
std::unique_ptr<base::DictionaryValue> SSLClientSocketPool::GetInfoAsValue(
|
|
const std::string& name,
|
|
const std::string& type,
|
|
bool include_nested_pools) const {
|
|
std::unique_ptr<base::DictionaryValue> dict(base_.GetInfoAsValue(name, type));
|
|
if (include_nested_pools) {
|
|
auto list = std::make_unique<base::ListValue>();
|
|
if (transport_pool_) {
|
|
list->Append(transport_pool_->GetInfoAsValue("transport_socket_pool",
|
|
"transport_socket_pool",
|
|
false));
|
|
}
|
|
if (socks_pool_) {
|
|
list->Append(socks_pool_->GetInfoAsValue("socks_pool",
|
|
"socks_pool",
|
|
true));
|
|
}
|
|
if (http_proxy_pool_) {
|
|
list->Append(http_proxy_pool_->GetInfoAsValue("http_proxy_pool",
|
|
"http_proxy_pool",
|
|
true));
|
|
}
|
|
dict->Set("nested_pools", std::move(list));
|
|
}
|
|
return dict;
|
|
}
|
|
|
|
base::TimeDelta SSLClientSocketPool::ConnectionTimeout() const {
|
|
return base_.ConnectionTimeout();
|
|
}
|
|
|
|
bool SSLClientSocketPool::IsStalled() const {
|
|
return base_.IsStalled();
|
|
}
|
|
|
|
void SSLClientSocketPool::AddHigherLayeredPool(HigherLayeredPool* higher_pool) {
|
|
base_.AddHigherLayeredPool(higher_pool);
|
|
}
|
|
|
|
void SSLClientSocketPool::RemoveHigherLayeredPool(
|
|
HigherLayeredPool* higher_pool) {
|
|
base_.RemoveHigherLayeredPool(higher_pool);
|
|
}
|
|
|
|
bool SSLClientSocketPool::CloseOneIdleConnection() {
|
|
if (base_.CloseOneIdleSocket())
|
|
return true;
|
|
return base_.CloseOneIdleConnectionInHigherLayeredPool();
|
|
}
|
|
|
|
void SSLClientSocketPool::OnSSLConfigChanged() {
|
|
FlushWithError(ERR_NETWORK_CHANGED);
|
|
}
|
|
|
|
} // namespace net
|