Any file that uses the RTC_DISALLOW_* macros should #include "webrtc/base/constructormagic.h", but a shocking number of them don't. This causes trouble when we try to wean files off of #including scoped_ptr.h, since a bunch of files get their constructormagic macros only from there. Rather than fixing these errors one by one as they turn up, this CL simply ensures that every file in the WebRTC tree that uses the RTC_DISALLOW_* macros #includes "webrtc/base/constructormagic.h". BUG=webrtc:5520 Review URL: https://codereview.webrtc.org/1917043005 Cr-Commit-Position: refs/heads/master@{#12509}
169 lines
6.2 KiB
C++
169 lines
6.2 KiB
C++
/*
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* Copyright 2004 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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#ifndef WEBRTC_BASE_NATSOCKETFACTORY_H_
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#define WEBRTC_BASE_NATSOCKETFACTORY_H_
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#include <string>
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#include <map>
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#include <memory>
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#include <set>
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#include "webrtc/base/constructormagic.h"
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#include "webrtc/base/natserver.h"
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#include "webrtc/base/socketaddress.h"
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#include "webrtc/base/socketserver.h"
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namespace rtc {
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const size_t kNATEncodedIPv4AddressSize = 8U;
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const size_t kNATEncodedIPv6AddressSize = 20U;
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// Used by the NAT socket implementation.
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class NATInternalSocketFactory {
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public:
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virtual ~NATInternalSocketFactory() {}
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virtual AsyncSocket* CreateInternalSocket(int family, int type,
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const SocketAddress& local_addr, SocketAddress* nat_addr) = 0;
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};
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// Creates sockets that will send all traffic through a NAT, using an existing
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// NATServer instance running at nat_addr. The actual data is sent using sockets
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// from a socket factory, given to the constructor.
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class NATSocketFactory : public SocketFactory, public NATInternalSocketFactory {
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public:
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NATSocketFactory(SocketFactory* factory, const SocketAddress& nat_udp_addr,
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const SocketAddress& nat_tcp_addr);
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// SocketFactory implementation
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Socket* CreateSocket(int type) override;
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Socket* CreateSocket(int family, int type) override;
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AsyncSocket* CreateAsyncSocket(int type) override;
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AsyncSocket* CreateAsyncSocket(int family, int type) override;
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// NATInternalSocketFactory implementation
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AsyncSocket* CreateInternalSocket(int family,
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int type,
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const SocketAddress& local_addr,
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SocketAddress* nat_addr) override;
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private:
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SocketFactory* factory_;
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SocketAddress nat_udp_addr_;
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SocketAddress nat_tcp_addr_;
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RTC_DISALLOW_COPY_AND_ASSIGN(NATSocketFactory);
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};
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// Creates sockets that will send traffic through a NAT depending on what
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// address they bind to. This can be used to simulate a client on a NAT sending
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// to a client that is not behind a NAT.
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// Note that the internal addresses of clients must be unique. This is because
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// there is only one socketserver per thread, and the Bind() address is used to
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// figure out which NAT (if any) the socket should talk to.
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//
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// Example with 3 NATs (2 cascaded), and 3 clients.
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// ss->AddTranslator("1.2.3.4", "192.168.0.1", NAT_ADDR_RESTRICTED);
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// ss->AddTranslator("99.99.99.99", "10.0.0.1", NAT_SYMMETRIC)->
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// AddTranslator("10.0.0.2", "192.168.1.1", NAT_OPEN_CONE);
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// ss->GetTranslator("1.2.3.4")->AddClient("1.2.3.4", "192.168.0.2");
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// ss->GetTranslator("99.99.99.99")->AddClient("10.0.0.3");
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// ss->GetTranslator("99.99.99.99")->GetTranslator("10.0.0.2")->
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// AddClient("192.168.1.2");
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class NATSocketServer : public SocketServer, public NATInternalSocketFactory {
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public:
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class Translator;
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// holds a list of NATs
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class TranslatorMap : private std::map<SocketAddress, Translator*> {
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public:
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~TranslatorMap();
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Translator* Get(const SocketAddress& ext_ip);
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Translator* Add(const SocketAddress& ext_ip, Translator*);
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void Remove(const SocketAddress& ext_ip);
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Translator* FindClient(const SocketAddress& int_ip);
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};
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// a specific NAT
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class Translator {
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public:
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Translator(NATSocketServer* server, NATType type,
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const SocketAddress& int_addr, SocketFactory* ext_factory,
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const SocketAddress& ext_addr);
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~Translator();
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SocketFactory* internal_factory() { return internal_factory_.get(); }
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SocketAddress internal_udp_address() const {
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return nat_server_->internal_udp_address();
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}
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SocketAddress internal_tcp_address() const {
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return SocketAddress(); // nat_server_->internal_tcp_address();
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}
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Translator* GetTranslator(const SocketAddress& ext_ip);
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Translator* AddTranslator(const SocketAddress& ext_ip,
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const SocketAddress& int_ip, NATType type);
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void RemoveTranslator(const SocketAddress& ext_ip);
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bool AddClient(const SocketAddress& int_ip);
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void RemoveClient(const SocketAddress& int_ip);
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// Looks for the specified client in this or a child NAT.
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Translator* FindClient(const SocketAddress& int_ip);
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private:
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NATSocketServer* server_;
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std::unique_ptr<SocketFactory> internal_factory_;
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std::unique_ptr<NATServer> nat_server_;
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TranslatorMap nats_;
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std::set<SocketAddress> clients_;
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};
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explicit NATSocketServer(SocketServer* ss);
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SocketServer* socketserver() { return server_; }
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MessageQueue* queue() { return msg_queue_; }
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Translator* GetTranslator(const SocketAddress& ext_ip);
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Translator* AddTranslator(const SocketAddress& ext_ip,
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const SocketAddress& int_ip, NATType type);
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void RemoveTranslator(const SocketAddress& ext_ip);
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// SocketServer implementation
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Socket* CreateSocket(int type) override;
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Socket* CreateSocket(int family, int type) override;
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AsyncSocket* CreateAsyncSocket(int type) override;
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AsyncSocket* CreateAsyncSocket(int family, int type) override;
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void SetMessageQueue(MessageQueue* queue) override;
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bool Wait(int cms, bool process_io) override;
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void WakeUp() override;
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// NATInternalSocketFactory implementation
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AsyncSocket* CreateInternalSocket(int family,
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int type,
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const SocketAddress& local_addr,
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SocketAddress* nat_addr) override;
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private:
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SocketServer* server_;
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MessageQueue* msg_queue_;
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TranslatorMap nats_;
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RTC_DISALLOW_COPY_AND_ASSIGN(NATSocketServer);
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};
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// Free-standing NAT helper functions.
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size_t PackAddressForNAT(char* buf, size_t buf_size,
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const SocketAddress& remote_addr);
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size_t UnpackAddressFromNAT(const char* buf, size_t buf_size,
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SocketAddress* remote_addr);
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} // namespace rtc
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#endif // WEBRTC_BASE_NATSOCKETFACTORY_H_
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