197 lines
6.1 KiB
C++
197 lines
6.1 KiB
C++
/*
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* Copyright 2007 The WebRTC Project Authors. All rights reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include <memory>
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#include "webrtc/base/autodetectproxy.h"
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#include "webrtc/base/httpcommon.h"
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#include "webrtc/base/httpcommon-inl.h"
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#include "webrtc/base/socketadapters.h"
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#include "webrtc/base/ssladapter.h"
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#include "webrtc/base/sslsocketfactory.h"
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namespace rtc {
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///////////////////////////////////////////////////////////////////////////////
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// ProxySocketAdapter
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// TODO: Consider combining AutoDetectProxy and ProxySocketAdapter. I think
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// the socket adapter is the more appropriate idiom for automatic proxy
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// detection. We may or may not want to combine proxydetect.* as well.
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///////////////////////////////////////////////////////////////////////////////
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class ProxySocketAdapter : public AsyncSocketAdapter {
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public:
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ProxySocketAdapter(SslSocketFactory* factory, int family, int type)
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: AsyncSocketAdapter(NULL), factory_(factory), family_(family),
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type_(type), detect_(NULL) {
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}
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~ProxySocketAdapter() override {
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Close();
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}
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int Connect(const SocketAddress& addr) override {
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ASSERT(NULL == detect_);
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ASSERT(NULL == socket_);
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remote_ = addr;
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if (remote_.IsAnyIP() && remote_.hostname().empty()) {
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LOG_F(LS_ERROR) << "Empty address";
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return SOCKET_ERROR;
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}
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Url<char> url("/", remote_.HostAsURIString(), remote_.port());
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detect_ = new AutoDetectProxy(factory_->agent_);
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detect_->set_server_url(url.url());
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detect_->SignalWorkDone.connect(this,
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&ProxySocketAdapter::OnProxyDetectionComplete);
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detect_->Start();
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return SOCKET_ERROR;
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}
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int GetError() const override {
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if (socket_) {
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return socket_->GetError();
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}
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return detect_ ? EWOULDBLOCK : EADDRNOTAVAIL;
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}
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int Close() override {
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if (socket_) {
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return socket_->Close();
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}
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if (detect_) {
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detect_->Destroy(false);
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detect_ = NULL;
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}
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return 0;
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}
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ConnState GetState() const override {
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if (socket_) {
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return socket_->GetState();
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}
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return detect_ ? CS_CONNECTING : CS_CLOSED;
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}
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private:
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// AutoDetectProxy Slots
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void OnProxyDetectionComplete(SignalThread* thread) {
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ASSERT(detect_ == thread);
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Attach(factory_->CreateProxySocket(detect_->proxy(), family_, type_));
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detect_->Release();
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detect_ = NULL;
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if (0 == AsyncSocketAdapter::Connect(remote_)) {
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SignalConnectEvent(this);
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} else if (!IsBlockingError(socket_->GetError())) {
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SignalCloseEvent(this, socket_->GetError());
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}
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}
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SslSocketFactory* factory_;
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int family_;
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int type_;
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SocketAddress remote_;
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AutoDetectProxy* detect_;
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};
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///////////////////////////////////////////////////////////////////////////////
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// SslSocketFactory
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///////////////////////////////////////////////////////////////////////////////
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SslSocketFactory::SslSocketFactory(SocketFactory* factory,
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const std::string& user_agent)
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: factory_(factory),
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agent_(user_agent),
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autodetect_proxy_(true),
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force_connect_(false),
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logging_level_(LS_VERBOSE),
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binary_mode_(false),
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ignore_bad_cert_(false) {
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}
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SslSocketFactory::~SslSocketFactory() = default;
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Socket* SslSocketFactory::CreateSocket(int type) {
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return CreateSocket(AF_INET, type);
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}
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Socket* SslSocketFactory::CreateSocket(int family, int type) {
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return factory_->CreateSocket(family, type);
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}
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AsyncSocket* SslSocketFactory::CreateAsyncSocket(int type) {
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return CreateAsyncSocket(AF_INET, type);
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}
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AsyncSocket* SslSocketFactory::CreateAsyncSocket(int family, int type) {
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if (autodetect_proxy_) {
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return new ProxySocketAdapter(this, family, type);
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} else {
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return CreateProxySocket(proxy_, family, type);
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}
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}
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AsyncSocket* SslSocketFactory::CreateProxySocket(const ProxyInfo& proxy,
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int family,
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int type) {
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AsyncSocket* socket = factory_->CreateAsyncSocket(family, type);
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if (!socket)
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return NULL;
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// Binary logging happens at the lowest level
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if (!logging_label_.empty() && binary_mode_) {
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socket = new LoggingSocketAdapter(socket, logging_level_,
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logging_label_.c_str(), binary_mode_);
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}
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if (proxy.type) {
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AsyncSocket* proxy_socket = 0;
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if (proxy_.type == PROXY_SOCKS5) {
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proxy_socket = new AsyncSocksProxySocket(socket, proxy.address,
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proxy.username, proxy.password);
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} else {
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// Note: we are trying unknown proxies as HTTPS currently
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AsyncHttpsProxySocket* http_proxy =
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new AsyncHttpsProxySocket(socket, agent_, proxy.address,
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proxy.username, proxy.password);
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http_proxy->SetForceConnect(force_connect_ || !hostname_.empty());
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proxy_socket = http_proxy;
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}
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if (!proxy_socket) {
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delete socket;
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return NULL;
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}
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socket = proxy_socket; // for our purposes the proxy is now the socket
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}
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if (!hostname_.empty()) {
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std::unique_ptr<SSLAdapter> ssl_adapter(SSLAdapter::Create(socket));
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if (!ssl_adapter) {
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LOG_F(LS_ERROR) << "SSL unavailable";
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delete socket;
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return NULL;
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}
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ssl_adapter->set_ignore_bad_cert(ignore_bad_cert_);
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if (ssl_adapter->StartSSL(hostname_.c_str(), true) != 0) {
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LOG_F(LS_ERROR) << "SSL failed to start.";
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return NULL;
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}
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socket = ssl_adapter.release();
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}
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// Regular logging occurs at the highest level
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if (!logging_label_.empty() && !binary_mode_) {
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socket = new LoggingSocketAdapter(socket, logging_level_,
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logging_label_.c_str(), binary_mode_);
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}
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return socket;
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}
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///////////////////////////////////////////////////////////////////////////////
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} // namespace rtc
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