mirror of
https://github.com/klzgrad/naiveproxy.git
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231 lines
8.0 KiB
C++
231 lines
8.0 KiB
C++
// Copyright 2018 The Chromium Authors. All rights reserved.
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// Copyright 2018 klzgrad <kizdiv@gmail.com>. 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/tools/naive/naive_proxy.h"
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#include <utility>
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#include "base/bind.h"
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#include "base/location.h"
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#include "base/logging.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "net/base/net_errors.h"
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#include "net/http/http_network_session.h"
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#include "net/proxy_resolution/proxy_config.h"
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#include "net/proxy_resolution/proxy_info.h"
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#include "net/proxy_resolution/proxy_list.h"
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#include "net/proxy_resolution/proxy_resolution_service.h"
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#include "net/socket/client_socket_pool_manager.h"
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#include "net/socket/server_socket.h"
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#include "net/socket/stream_socket.h"
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#include "net/third_party/quic/core/quic_versions.h"
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#include "net/tools/naive/http_proxy_socket.h"
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#include "net/tools/naive/socks5_server_socket.h"
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namespace net {
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NaiveProxy::NaiveProxy(std::unique_ptr<ServerSocket> listen_socket,
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Protocol protocol,
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bool use_proxy,
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HttpNetworkSession* session,
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const NetworkTrafficAnnotationTag& traffic_annotation)
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: listen_socket_(std::move(listen_socket)),
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protocol_(protocol),
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use_proxy_(use_proxy),
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session_(session),
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net_log_(
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NetLogWithSource::Make(session->net_log(), NetLogSourceType::NONE)),
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last_id_(0),
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traffic_annotation_(traffic_annotation),
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weak_ptr_factory_(this) {
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DCHECK(listen_socket_);
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// Start accepting connections in next run loop in case when delegate is not
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// ready to get callbacks.
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base::ThreadTaskRunnerHandle::Get()->PostTask(
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FROM_HERE, base::BindOnce(&NaiveProxy::DoAcceptLoop,
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weak_ptr_factory_.GetWeakPtr()));
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}
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NaiveProxy::~NaiveProxy() = default;
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void NaiveProxy::DoAcceptLoop() {
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int result;
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do {
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result = listen_socket_->Accept(
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&accepted_socket_, base::BindRepeating(&NaiveProxy::OnAcceptComplete,
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weak_ptr_factory_.GetWeakPtr()));
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if (result == ERR_IO_PENDING)
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return;
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HandleAcceptResult(result);
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} while (result == OK);
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}
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void NaiveProxy::OnAcceptComplete(int result) {
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HandleAcceptResult(result);
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if (result == OK)
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DoAcceptLoop();
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}
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void NaiveProxy::HandleAcceptResult(int result) {
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if (result != OK) {
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LOG(ERROR) << "Accept error: rv=" << result;
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return;
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}
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DoConnect();
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}
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void NaiveProxy::DoConnect() {
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std::unique_ptr<StreamSocket> socket;
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NaiveConnection::Direction pad_direction;
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if (protocol_ == kSocks5) {
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socket = std::make_unique<Socks5ServerSocket>(std::move(accepted_socket_),
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traffic_annotation_);
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pad_direction = NaiveConnection::kClient;
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} else if (protocol_ == kHttp) {
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socket = std::make_unique<HttpProxySocket>(std::move(accepted_socket_),
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traffic_annotation_);
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pad_direction = NaiveConnection::kServer;
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} else {
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return;
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}
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pad_direction = NaiveConnection::kNone;
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auto connection_ptr = std::make_unique<NaiveConnection>(
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++last_id_, pad_direction, std::move(socket), this, traffic_annotation_);
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auto* connection = connection_ptr.get();
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connection_by_id_[connection->id()] = std::move(connection_ptr);
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int result = connection->Connect(
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base::BindRepeating(&NaiveProxy::OnConnectComplete,
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weak_ptr_factory_.GetWeakPtr(), connection->id()));
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if (result == ERR_IO_PENDING)
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return;
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HandleConnectResult(connection, result);
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}
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int NaiveProxy::OnConnectServer(unsigned int connection_id,
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const StreamSocket* client_socket,
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ClientSocketHandle* server_socket,
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CompletionRepeatingCallback callback) {
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// Ignores socket limit set by socket pool for this type of socket.
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constexpr int request_load_flags = LOAD_IGNORE_LIMITS;
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constexpr RequestPriority request_priority = MAXIMUM_PRIORITY;
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ProxyInfo proxy_info;
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SSLConfig server_ssl_config;
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SSLConfig proxy_ssl_config;
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if (use_proxy_) {
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const auto& proxy_config = session_->proxy_resolution_service()->config();
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DCHECK(proxy_config);
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const ProxyList& proxy_list =
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proxy_config.value().value().proxy_rules().single_proxies;
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if (proxy_list.IsEmpty())
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return ERR_MANDATORY_PROXY_CONFIGURATION_FAILED;
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proxy_info.UseProxyList(proxy_list);
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proxy_info.set_traffic_annotation(
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net::MutableNetworkTrafficAnnotationTag(traffic_annotation_));
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HttpRequestInfo req_info;
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session_->GetSSLConfig(req_info, &server_ssl_config, &proxy_ssl_config);
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proxy_ssl_config.disable_cert_verification_network_fetches = true;
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} else {
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proxy_info.UseDirect();
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}
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HostPortPair request_endpoint;
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if (protocol_ == kSocks5) {
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const auto* socket = static_cast<const Socks5ServerSocket*>(client_socket);
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request_endpoint = socket->request_endpoint();
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} else if (protocol_ == kHttp) {
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const auto* socket = static_cast<const HttpProxySocket*>(client_socket);
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request_endpoint = socket->request_endpoint();
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}
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if (request_endpoint.IsEmpty()) {
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LOG(ERROR) << "Connection " << connection_id << " to invalid origin";
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return ERR_ADDRESS_INVALID;
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}
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LOG(INFO) << "Connection " << connection_id << " to "
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<< request_endpoint.ToString();
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auto quic_version = quic::QUIC_VERSION_UNSUPPORTED;
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if (proxy_info.is_quic()) {
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quic_version = quic::QUIC_VERSION_43;
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}
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return InitSocketHandleForRawConnect2(
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request_endpoint, session_, request_load_flags, request_priority,
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proxy_info, quic_version, server_ssl_config, proxy_ssl_config,
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PRIVACY_MODE_DISABLED, net_log_, server_socket, callback);
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}
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void NaiveProxy::OnConnectComplete(int connection_id, int result) {
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NaiveConnection* connection = FindConnection(connection_id);
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if (!connection)
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return;
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HandleConnectResult(connection, result);
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}
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void NaiveProxy::HandleConnectResult(NaiveConnection* connection, int result) {
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if (result != OK) {
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Close(connection->id(), result);
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return;
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}
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DoRun(connection);
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}
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void NaiveProxy::DoRun(NaiveConnection* connection) {
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int result = connection->Run(
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base::BindRepeating(&NaiveProxy::OnRunComplete,
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weak_ptr_factory_.GetWeakPtr(), connection->id()));
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if (result == ERR_IO_PENDING)
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return;
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HandleRunResult(connection, result);
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}
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void NaiveProxy::OnRunComplete(int connection_id, int result) {
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NaiveConnection* connection = FindConnection(connection_id);
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if (!connection)
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return;
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HandleRunResult(connection, result);
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}
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void NaiveProxy::HandleRunResult(NaiveConnection* connection, int result) {
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Close(connection->id(), result);
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}
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void NaiveProxy::Close(int connection_id, int reason) {
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auto it = connection_by_id_.find(connection_id);
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if (it == connection_by_id_.end())
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return;
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LOG(INFO) << "Connection " << connection_id
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<< " closed: " << ErrorToShortString(reason);
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// The call stack might have callbacks which still have the pointer of
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// connection. Instead of referencing connection with ID all the time,
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// destroys the connection in next run loop to make sure any pending
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// callbacks in the call stack return.
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base::ThreadTaskRunnerHandle::Get()->DeleteSoon(FROM_HERE,
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std::move(it->second));
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connection_by_id_.erase(it);
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}
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NaiveConnection* NaiveProxy::FindConnection(int connection_id) {
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auto it = connection_by_id_.find(connection_id);
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if (it == connection_by_id_.end())
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return nullptr;
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return it->second.get();
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}
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// This is called after any delegate callbacks are called to check if Close()
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// has been called during callback processing. Using the pointer of connection,
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// |connection| is safe here because Close() deletes the connection in next run
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// loop.
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bool NaiveProxy::HasClosedConnection(NaiveConnection* connection) {
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return FindConnection(connection->id()) != connection;
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}
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} // namespace net
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