mirror of
https://github.com/klzgrad/naiveproxy.git
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356 lines
14 KiB
C++
356 lines
14 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/http/http_stream_factory.h"
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#include <tuple>
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#include <utility>
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#include "base/logging.h"
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#include "base/metrics/histogram_macros.h"
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#include "base/stl_util.h"
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#include "base/strings/string_number_conversions.h"
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#include "base/strings/string_split.h"
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#include "base/strings/string_util.h"
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#include "base/strings/stringprintf.h"
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#include "base/time/time.h"
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#include "base/trace_event/memory_allocator_dump.h"
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#include "base/trace_event/memory_usage_estimator.h"
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#include "base/trace_event/process_memory_dump.h"
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#include "net/base/host_mapping_rules.h"
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#include "net/base/host_port_pair.h"
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#include "net/base/parse_number.h"
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#include "net/base/port_util.h"
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#include "net/http/http_network_session.h"
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#include "net/http/http_response_headers.h"
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#include "net/http/http_server_properties.h"
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#include "net/http/http_stream_factory_job.h"
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#include "net/http/http_stream_factory_job_controller.h"
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#include "net/http/transport_security_state.h"
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#include "net/quic/quic_http_utils.h"
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#include "net/spdy/bidirectional_stream_spdy_impl.h"
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#include "net/spdy/spdy_http_stream.h"
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#include "net/third_party/quic/core/quic_packets.h"
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#include "net/third_party/quic/core/quic_server_id.h"
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#include "net/third_party/spdy/core/spdy_alt_svc_wire_format.h"
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#include "url/gurl.h"
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#include "url/scheme_host_port.h"
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#include "url/url_constants.h"
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namespace net {
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HttpStreamFactory::HttpStreamFactory(HttpNetworkSession* session)
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: session_(session), job_factory_(std::make_unique<JobFactory>()) {}
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HttpStreamFactory::~HttpStreamFactory() {}
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void HttpStreamFactory::ProcessAlternativeServices(
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HttpNetworkSession* session,
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const HttpResponseHeaders* headers,
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const url::SchemeHostPort& http_server) {
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if (!headers->HasHeader(kAlternativeServiceHeader))
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return;
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std::string alternative_service_str;
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headers->GetNormalizedHeader(kAlternativeServiceHeader,
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&alternative_service_str);
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spdy::SpdyAltSvcWireFormat::AlternativeServiceVector
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alternative_service_vector;
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if (!spdy::SpdyAltSvcWireFormat::ParseHeaderFieldValue(
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alternative_service_str, &alternative_service_vector)) {
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return;
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}
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// Convert spdy::SpdyAltSvcWireFormat::AlternativeService entries
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// to net::AlternativeServiceInfo.
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AlternativeServiceInfoVector alternative_service_info_vector;
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for (const spdy::SpdyAltSvcWireFormat::AlternativeService&
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alternative_service_entry : alternative_service_vector) {
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NextProto protocol =
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NextProtoFromString(alternative_service_entry.protocol_id);
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if (!IsAlternateProtocolValid(protocol) ||
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!session->IsProtocolEnabled(protocol) ||
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!IsPortValid(alternative_service_entry.port)) {
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continue;
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}
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// Check if QUIC version is supported. Filter supported QUIC versions.
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quic::QuicTransportVersionVector advertised_versions;
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if (protocol == kProtoQUIC && !alternative_service_entry.version.empty()) {
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advertised_versions = FilterSupportedAltSvcVersions(
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alternative_service_entry, session->params().quic_supported_versions,
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session->params().support_ietf_format_quic_altsvc);
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if (advertised_versions.empty())
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continue;
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}
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AlternativeService alternative_service(protocol,
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alternative_service_entry.host,
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alternative_service_entry.port);
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base::Time expiration =
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base::Time::Now() +
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base::TimeDelta::FromSeconds(alternative_service_entry.max_age);
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AlternativeServiceInfo alternative_service_info;
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if (protocol == kProtoQUIC) {
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alternative_service_info =
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AlternativeServiceInfo::CreateQuicAlternativeServiceInfo(
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alternative_service, expiration, advertised_versions);
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} else {
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alternative_service_info =
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AlternativeServiceInfo::CreateHttp2AlternativeServiceInfo(
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alternative_service, expiration);
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}
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alternative_service_info_vector.push_back(alternative_service_info);
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}
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session->http_server_properties()->SetAlternativeServices(
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RewriteHost(http_server), alternative_service_info_vector);
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}
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url::SchemeHostPort HttpStreamFactory::RewriteHost(
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const url::SchemeHostPort& server) {
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HostPortPair host_port_pair(server.host(), server.port());
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const HostMappingRules* mapping_rules = GetHostMappingRules();
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if (mapping_rules)
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mapping_rules->RewriteHost(&host_port_pair);
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return url::SchemeHostPort(server.scheme(), host_port_pair.host(),
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host_port_pair.port());
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}
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std::unique_ptr<HttpStreamRequest> HttpStreamFactory::RequestStream(
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const HttpRequestInfo& request_info,
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RequestPriority priority,
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const SSLConfig& server_ssl_config,
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const SSLConfig& proxy_ssl_config,
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HttpStreamRequest::Delegate* delegate,
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bool enable_ip_based_pooling,
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bool enable_alternative_services,
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const NetLogWithSource& net_log) {
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return RequestStreamInternal(
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request_info, priority, server_ssl_config, proxy_ssl_config, delegate,
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nullptr, HttpStreamRequest::HTTP_STREAM, false /* is_websocket */,
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enable_ip_based_pooling, enable_alternative_services, net_log);
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}
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std::unique_ptr<HttpStreamRequest>
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HttpStreamFactory::RequestWebSocketHandshakeStream(
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const HttpRequestInfo& request_info,
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RequestPriority priority,
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const SSLConfig& server_ssl_config,
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const SSLConfig& proxy_ssl_config,
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HttpStreamRequest::Delegate* delegate,
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WebSocketHandshakeStreamBase::CreateHelper* create_helper,
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bool enable_ip_based_pooling,
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bool enable_alternative_services,
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const NetLogWithSource& net_log) {
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DCHECK(create_helper);
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return RequestStreamInternal(
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request_info, priority, server_ssl_config, proxy_ssl_config, delegate,
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create_helper, HttpStreamRequest::HTTP_STREAM, true /* is_websocket */,
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enable_ip_based_pooling, enable_alternative_services, net_log);
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}
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std::unique_ptr<HttpStreamRequest>
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HttpStreamFactory::RequestBidirectionalStreamImpl(
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const HttpRequestInfo& request_info,
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RequestPriority priority,
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const SSLConfig& server_ssl_config,
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const SSLConfig& proxy_ssl_config,
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HttpStreamRequest::Delegate* delegate,
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bool enable_ip_based_pooling,
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bool enable_alternative_services,
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const NetLogWithSource& net_log) {
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DCHECK(request_info.url.SchemeIs(url::kHttpsScheme));
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return RequestStreamInternal(
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request_info, priority, server_ssl_config, proxy_ssl_config, delegate,
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nullptr, HttpStreamRequest::BIDIRECTIONAL_STREAM,
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false /* is_websocket */, enable_ip_based_pooling,
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enable_alternative_services, net_log);
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}
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std::unique_ptr<HttpStreamRequest> HttpStreamFactory::RequestStreamInternal(
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const HttpRequestInfo& request_info,
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RequestPriority priority,
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const SSLConfig& server_ssl_config,
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const SSLConfig& proxy_ssl_config,
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HttpStreamRequest::Delegate* delegate,
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WebSocketHandshakeStreamBase::CreateHelper*
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websocket_handshake_stream_create_helper,
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HttpStreamRequest::StreamType stream_type,
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bool is_websocket,
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bool enable_ip_based_pooling,
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bool enable_alternative_services,
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const NetLogWithSource& net_log) {
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auto job_controller = std::make_unique<JobController>(
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this, delegate, session_, job_factory_.get(), request_info,
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/* is_preconnect = */ false, is_websocket, enable_ip_based_pooling,
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enable_alternative_services, server_ssl_config, proxy_ssl_config);
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JobController* job_controller_raw_ptr = job_controller.get();
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job_controller_set_.insert(std::move(job_controller));
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return job_controller_raw_ptr->Start(delegate,
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websocket_handshake_stream_create_helper,
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net_log, stream_type, priority);
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}
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void HttpStreamFactory::PreconnectStreams(int num_streams,
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const HttpRequestInfo& request_info) {
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DCHECK(request_info.url.is_valid());
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SSLConfig server_ssl_config;
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SSLConfig proxy_ssl_config;
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session_->GetSSLConfig(request_info, &server_ssl_config, &proxy_ssl_config);
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auto job_controller = std::make_unique<JobController>(
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this, nullptr, session_, job_factory_.get(), request_info,
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/* is_preconnect = */ true,
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/* is_websocket = */ false,
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/* enable_ip_based_pooling = */ true,
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/* enable_alternative_services = */ true, server_ssl_config,
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proxy_ssl_config);
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JobController* job_controller_raw_ptr = job_controller.get();
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job_controller_set_.insert(std::move(job_controller));
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job_controller_raw_ptr->Preconnect(num_streams);
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}
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const HostMappingRules* HttpStreamFactory::GetHostMappingRules() const {
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return &session_->params().host_mapping_rules;
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}
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void HttpStreamFactory::OnJobControllerComplete(JobController* controller) {
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for (auto it = job_controller_set_.begin(); it != job_controller_set_.end();
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++it) {
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if (it->get() == controller) {
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job_controller_set_.erase(it);
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return;
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}
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}
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NOTREACHED();
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}
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HttpStreamFactory::PreconnectingProxyServer::PreconnectingProxyServer(
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ProxyServer proxy_server,
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PrivacyMode privacy_mode)
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: proxy_server(proxy_server), privacy_mode(privacy_mode) {}
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bool HttpStreamFactory::PreconnectingProxyServer::operator<(
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const PreconnectingProxyServer& other) const {
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return std::tie(proxy_server, privacy_mode) <
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std::tie(other.proxy_server, other.privacy_mode);
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}
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bool HttpStreamFactory::PreconnectingProxyServer::operator==(
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const PreconnectingProxyServer& other) const {
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return proxy_server == other.proxy_server &&
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privacy_mode == other.privacy_mode;
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}
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bool HttpStreamFactory::OnInitConnection(const JobController& controller,
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const ProxyInfo& proxy_info,
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PrivacyMode privacy_mode) {
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if (!controller.is_preconnect()) {
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// Connection initialization can be skipped only for the preconnect jobs.
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return false;
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}
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if (!ProxyServerSupportsPriorities(proxy_info))
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return false;
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PreconnectingProxyServer preconnecting_proxy_server(proxy_info.proxy_server(),
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privacy_mode);
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if (base::ContainsKey(preconnecting_proxy_servers_,
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preconnecting_proxy_server)) {
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UMA_HISTOGRAM_EXACT_LINEAR("Net.PreconnectSkippedToProxyServers", 1, 2);
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// Skip preconnect to the proxy server since we are already preconnecting
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// (probably via some other job). See https://crbug.com/682041 for details.
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return true;
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}
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// Add the proxy server to the set of preconnecting proxy servers.
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// The maximum size of |preconnecting_proxy_servers_|.
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static const size_t kMaxPreconnectingServerSize = 3;
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if (preconnecting_proxy_servers_.size() >= kMaxPreconnectingServerSize) {
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// Erase the first entry. A better approach (at the cost of higher memory
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// overhead) may be to erase the least recently used entry.
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preconnecting_proxy_servers_.erase(preconnecting_proxy_servers_.begin());
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}
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preconnecting_proxy_servers_.insert(preconnecting_proxy_server);
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DCHECK_GE(kMaxPreconnectingServerSize, preconnecting_proxy_servers_.size());
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// The first preconnect should be allowed.
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return false;
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}
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void HttpStreamFactory::OnStreamReady(const ProxyInfo& proxy_info,
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PrivacyMode privacy_mode) {
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if (proxy_info.is_empty())
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return;
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preconnecting_proxy_servers_.erase(
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PreconnectingProxyServer(proxy_info.proxy_server(), privacy_mode));
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}
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bool HttpStreamFactory::ProxyServerSupportsPriorities(
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const ProxyInfo& proxy_info) const {
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if (proxy_info.is_empty() || !proxy_info.proxy_server().is_valid())
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return false;
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if (!proxy_info.proxy_server().is_https())
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return false;
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HostPortPair host_port_pair = proxy_info.proxy_server().host_port_pair();
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DCHECK(!host_port_pair.IsEmpty());
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url::SchemeHostPort scheme_host_port("https", host_port_pair.host(),
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host_port_pair.port());
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return session_->http_server_properties()->SupportsRequestPriority(
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scheme_host_port);
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}
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void HttpStreamFactory::DumpMemoryStats(
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base::trace_event::ProcessMemoryDump* pmd,
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const std::string& parent_absolute_name) const {
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if (job_controller_set_.empty())
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return;
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std::string name =
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base::StringPrintf("%s/stream_factory", parent_absolute_name.c_str());
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base::trace_event::MemoryAllocatorDump* factory_dump =
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pmd->CreateAllocatorDump(name);
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size_t alt_job_count = 0;
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size_t main_job_count = 0;
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size_t num_controllers_for_preconnect = 0;
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for (const auto& it : job_controller_set_) {
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// For a preconnect controller, it should have exactly the main job.
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if (it->is_preconnect()) {
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num_controllers_for_preconnect++;
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continue;
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}
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// For non-preconnects.
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if (it->HasPendingAltJob())
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alt_job_count++;
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if (it->HasPendingMainJob())
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main_job_count++;
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}
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factory_dump->AddScalar(
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base::trace_event::MemoryAllocatorDump::kNameSize,
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base::trace_event::MemoryAllocatorDump::kUnitsBytes,
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base::trace_event::EstimateMemoryUsage(job_controller_set_));
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factory_dump->AddScalar(
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base::trace_event::MemoryAllocatorDump::kNameObjectCount,
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base::trace_event::MemoryAllocatorDump::kUnitsObjects,
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job_controller_set_.size());
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// The number of non-preconnect controllers with a pending alt job.
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factory_dump->AddScalar("alt_job_count",
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base::trace_event::MemoryAllocatorDump::kUnitsObjects,
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alt_job_count);
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// The number of non-preconnect controllers with a pending main job.
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factory_dump->AddScalar("main_job_count",
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base::trace_event::MemoryAllocatorDump::kUnitsObjects,
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main_job_count);
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// The number of preconnect controllers.
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factory_dump->AddScalar("preconnect_count",
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base::trace_event::MemoryAllocatorDump::kUnitsObjects,
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num_controllers_for_preconnect);
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}
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} // namespace net
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