2016-07-11 11:14:58 -04:00
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#include "STDInclude.hpp"
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namespace Components
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{
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std::string Network::SelectedPacket;
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wink::signal<wink::slot<Network::CallbackRaw>> Network::StartupSignal;
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std::map<std::string, wink::slot<Network::Callback>> Network::PacketHandlers;
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Network::Address::Address(std::string addrString)
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{
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Game::NET_StringToAdr(addrString.data(), &this->address);
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}
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Network::Address::Address(sockaddr* addr)
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{
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Game::SockadrToNetadr(addr, &this->address);
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}
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bool Network::Address::operator==(const Network::Address &obj)
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{
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return Game::NET_CompareAdr(this->address, obj.address);
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}
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void Network::Address::SetPort(unsigned short port)
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{
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this->address.port = htons(port);
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}
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unsigned short Network::Address::GetPort()
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{
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return ntohs(this->address.port);
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}
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void Network::Address::SetIP(DWORD ip)
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{
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this->address.ip.full = ip;
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}
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void Network::Address::SetIP(Game::netIP_t ip)
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{
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this->address.ip = ip;
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}
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Game::netIP_t Network::Address::GetIP()
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{
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return this->address.ip;
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}
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void Network::Address::SetType(Game::netadrtype_t type)
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{
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this->address.type = type;
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}
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Game::netadrtype_t Network::Address::GetType()
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{
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return this->address.type;
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}
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sockaddr Network::Address::GetSockAddr()
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{
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sockaddr addr;
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this->ToSockAddr(&addr);
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return addr;
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}
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void Network::Address::ToSockAddr(sockaddr* addr)
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{
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if (addr)
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{
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Game::NetadrToSockadr(&this->address, addr);
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}
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}
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void Network::Address::ToSockAddr(sockaddr_in* addr)
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{
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this->ToSockAddr(reinterpret_cast<sockaddr*>(addr));
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}
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Game::netadr_t* Network::Address::Get()
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{
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return &this->address;
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}
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const char* Network::Address::GetCString()
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{
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return Game::NET_AdrToString(this->address);
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}
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std::string Network::Address::GetString()
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{
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return this->GetCString();
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}
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bool Network::Address::IsLocal()
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{
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// According to: https://en.wikipedia.org/wiki/Private_network
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// 10.X.X.X
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if (this->GetIP().bytes[0] == 10) return true;
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// 192.168.X.X
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if (this->GetIP().bytes[0] == 192 && this->GetIP().bytes[1] == 168) return true;
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// 172.16.X.X - 172.31.X.X
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if (this->GetIP().bytes[0] == 172 && (this->GetIP().bytes[1] >= 16) && (this->GetIP().bytes[1] < 32)) return true;
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// TODO: Maybe check for matching localIPs and subnet mask
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return false;
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}
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bool Network::Address::IsSelf()
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{
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if (Game::NET_IsLocalAddress(this->address)) return true; // Loopback
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if (this->GetPort() != (Dvar::Var("net_port").Get<int>() & 0xFFFF)) return false; // Port not equal
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for (int i = 0; i < *Game::numIP; ++i)
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{
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if (this->GetIP().full == Game::localIP[i].full)
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{
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return true;
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}
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}
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return false;
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}
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2016-08-07 16:14:30 -04:00
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bool Network::Address::IsLoopback()
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{
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return Game::NET_IsLocalAddress(this->address);
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}
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2016-07-11 11:14:58 -04:00
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bool Network::Address::IsValid()
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{
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return (this->GetType() != Game::netadrtype_t::NA_BAD);
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}
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void Network::Address::Serialize(Proto::Network::Address* protoAddress)
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{
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protoAddress->set_ip(this->GetIP().full);
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protoAddress->set_port(this->GetPort() & 0xFFFF);
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}
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void Network::Address::Deserialize(const Proto::Network::Address& protoAddress)
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{
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this->SetIP(protoAddress.ip());
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this->SetPort(static_cast<uint16_t>(protoAddress.port()));
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this->SetType(Game::netadrtype_t::NA_IP);
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}
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void Network::Handle(std::string packet, Network::Callback* callback)
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{
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2016-07-22 06:12:11 -04:00
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Network::PacketHandlers[Utils::String::ToLower(packet)] = callback;
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2016-07-11 11:14:58 -04:00
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}
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void Network::OnStart(Network::CallbackRaw* callback)
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{
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Network::StartupSignal.connect(callback);
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}
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void Network::Send(Game::netsrc_t type, Network::Address target, std::string data)
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{
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// NET_OutOfBandPrint only supports non-binary data!
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//Game::NET_OutOfBandPrint(type, *target.Get(), data.data());
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std::string rawData;
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rawData.append("\xFF\xFF\xFF\xFF", 4);
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rawData.append(data);
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//rawData.append("\0", 1);
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Network::SendRaw(type, target, rawData);
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}
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void Network::Send(Network::Address target, std::string data)
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{
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Network::Send(Game::netsrc_t::NS_CLIENT, target, data);
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}
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void Network::SendRaw(Game::netsrc_t type, Network::Address target, std::string data)
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{
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// NET_OutOfBandData doesn't seem to work properly
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//Game::NET_OutOfBandData(type, *target.Get(), data.data(), data.size());
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Game::Sys_SendPacket(type, data.size(), data.data(), *target.Get());
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}
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void Network::SendRaw(Network::Address target, std::string data)
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{
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Network::SendRaw(Game::netsrc_t::NS_CLIENT, target, data);
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}
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void Network::SendCommand(Game::netsrc_t type, Network::Address target, std::string command, std::string data)
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{
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// Use space as separator (possible separators are '\n', ' ').
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// Though, our handler only needs exactly 1 char as separator and doesn't which char it is
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std::string packet;
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packet.append(command);
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packet.append(" ", 1);
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packet.append(data);
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Network::Send(type, target, packet);
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}
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void Network::SendCommand(Network::Address target, std::string command, std::string data)
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{
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Network::SendCommand(Game::netsrc_t::NS_CLIENT, target, command, data);
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}
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void Network::Broadcast(unsigned short port, std::string data)
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{
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Address target;
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target.SetPort(port);
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target.SetIP(INADDR_BROADCAST);
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target.SetType(Game::netadrtype_t::NA_BROADCAST);
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Network::Send(Game::netsrc_t::NS_CLIENT, target, data);
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}
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void Network::BroadcastRange(unsigned int min, unsigned int max, std::string data)
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{
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for (unsigned int i = min; i < max; ++i)
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{
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Network::Broadcast(static_cast<unsigned short>(i & 0xFFFF), data);
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}
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}
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void Network::BroadcastAll(std::string data)
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{
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Network::BroadcastRange(100, 65536, data);
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}
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int Network::PacketInterceptionHandler(const char* packet)
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{
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// Packet rate limit.
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static uint32_t packets = 0;
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static int lastClean = 0;
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if ((Game::Sys_Milliseconds() - lastClean) > 1'000)
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{
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packets = 0;
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lastClean = Game::Sys_Milliseconds();
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}
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if ((++packets) > NETWORK_MAX_PACKETS_PER_SECOND)
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{
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return 1;
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}
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std::string packetCommand = packet;
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auto pos = packetCommand.find_first_of("\\\n ");
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if (pos != std::string::npos)
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{
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packetCommand = packetCommand.substr(0, pos);
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}
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2016-07-22 06:12:11 -04:00
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packetCommand = Utils::String::ToLower(packetCommand);
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2016-07-11 11:14:58 -04:00
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// Check if custom handler exists
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for (auto i = Network::PacketHandlers.begin(); i != Network::PacketHandlers.end(); ++i)
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{
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2016-07-22 06:12:11 -04:00
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if (Utils::String::ToLower(i->first) == packetCommand)
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2016-07-11 11:14:58 -04:00
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{
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Network::SelectedPacket = i->first;
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return 0;
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}
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}
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// No interception
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return 1;
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}
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void Network::DeployPacket(Game::netadr_t* from, Game::msg_t* msg)
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{
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if (Network::PacketHandlers.find(Network::SelectedPacket) != Network::PacketHandlers.end())
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{
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std::string data;
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size_t offset = Network::SelectedPacket.size() + 4 + 1;
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if (static_cast<size_t>(msg->cursize) > offset)
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{
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data.append(msg->data + offset, msg->cursize - offset);
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}
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// Remove trailing 0x00 byte
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// Actually, don't remove it, it might be part of the packet. Send correctly formatted packets instead!
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//if (data.size() && !data[data.size() - 1]) data.pop_back();
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Network::PacketHandlers[Network::SelectedPacket](from, data);
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}
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else
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{
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Logger::Print("Error: Network packet intercepted, but handler is missing!\n");
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}
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}
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void Network::NetworkStart()
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{
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Network::StartupSignal();
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}
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2016-08-07 19:57:00 -04:00
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__declspec(naked) void Network::NetworkStartStub()
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2016-07-11 11:14:58 -04:00
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{
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__asm
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{
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mov eax, 64D900h
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call eax
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jmp Network::NetworkStart
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}
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}
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2016-08-07 19:57:00 -04:00
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__declspec(naked) void Network::DeployPacketStub()
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2016-07-11 11:14:58 -04:00
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{
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__asm
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{
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lea eax, [esp + 0C54h]
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push ebp // Command
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push eax // Address pointer
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call Network::DeployPacket
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add esp, 8h
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mov al, 1
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pop edi
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pop esi
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pop ebp
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pop ebx
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add esp, 0C40h
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retn
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}
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}
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Network::Network()
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{
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Assert_Size(Game::netadr_t, 20);
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// maximum size in NET_OutOfBandPrint
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Utils::Hook::Set<DWORD>(0x4AEF08, 0x1FFFC);
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Utils::Hook::Set<DWORD>(0x4AEFA3, 0x1FFFC);
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// increase max port binding attempts from 10 to 100
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Utils::Hook::Set<BYTE>(0x4FD48A, 100);
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// Parse port as short in Net_AddrToString
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Utils::Hook::Set<char*>(0x4698E3, "%u.%u.%u.%u:%hu");
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// Install startup handler
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Utils::Hook(0x4FD4D4, Network::NetworkStartStub, HOOK_JUMP).Install()->Quick();
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// Install interception handler
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Utils::Hook(0x5AA709, Network::PacketInterceptionHandler, HOOK_CALL).Install()->Quick();
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// Install packet deploy hook
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Utils::Hook::RedirectJump(0x5AA713, Network::DeployPacketStub);
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// For /dev/urandom :P
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Network::Handle("resolveAddress", [] (Address address, std::string data)
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{
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Network::SendRaw(address, address.GetString());
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});
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}
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Network::~Network()
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{
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Network::SelectedPacket.clear();
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Network::PacketHandlers.clear();
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Network::StartupSignal.clear();
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}
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}
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