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I2P: End-to-End encrypted and anonymous Internet
https://i2pd.website/
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365 lines
15 KiB
365 lines
15 KiB
#include <fstream> |
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#include <iostream> |
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#include <boost/property_tree/ptree.hpp> |
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#include <boost/property_tree/ini_parser.hpp> |
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#include "util/util.h" |
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#include "util/Log.h" |
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#include "Identity.h" |
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#include "ClientContext.h" |
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namespace i2p |
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{ |
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namespace client |
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{ |
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ClientContext context; |
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ClientContext::ClientContext (): m_SharedLocalDestination (nullptr), |
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m_HttpProxy (nullptr), m_SocksProxy (nullptr), m_SamBridge (nullptr), |
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m_BOBCommandChannel (nullptr), m_I2PControlService (nullptr) |
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{ |
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} |
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ClientContext::~ClientContext () |
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{ |
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delete m_HttpProxy; |
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delete m_SocksProxy; |
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delete m_SamBridge; |
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delete m_BOBCommandChannel; |
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delete m_I2PControlService; |
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} |
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void ClientContext::Start () |
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{ |
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if (!m_SharedLocalDestination) |
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{ |
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m_SharedLocalDestination = CreateNewLocalDestination (); // non-public, DSA |
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m_Destinations[m_SharedLocalDestination->GetIdentity ().GetIdentHash ()] = m_SharedLocalDestination; |
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m_SharedLocalDestination->Start (); |
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} |
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std::shared_ptr<ClientDestination> localDestination; |
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// proxies |
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std::string proxyKeys = i2p::util::config::GetArg("-proxykeys", ""); |
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if (proxyKeys.length () > 0) |
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localDestination = LoadLocalDestination (proxyKeys, false); |
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m_HttpProxy = new i2p::proxy::HTTPProxy( |
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i2p::util::config::GetArg("-httpproxyaddress", "127.0.0.1"), |
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i2p::util::config::GetArg("-httpproxyport", 4446), |
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localDestination |
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); |
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m_HttpProxy->Start(); |
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LogPrint("HTTP Proxy started"); |
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m_SocksProxy = new i2p::proxy::SOCKSProxy( |
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i2p::util::config::GetArg("-socksproxyaddress", "127.0.0.1"), |
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i2p::util::config::GetArg("-socksproxyport", 4447), |
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localDestination |
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); |
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m_SocksProxy->Start(); |
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LogPrint("SOCKS Proxy Started"); |
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// I2P tunnels |
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std::string ircDestination = i2p::util::config::GetArg("-ircdest", ""); |
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if (ircDestination.length () > 0) // ircdest is presented |
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{ |
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localDestination = nullptr; |
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std::string ircKeys = i2p::util::config::GetArg("-irckeys", ""); |
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if (ircKeys.length () > 0) |
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localDestination = LoadLocalDestination (ircKeys, false); |
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auto ircPort = i2p::util::config::GetArg("-ircport", 6668); |
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auto ircTunnel = new I2PClientTunnel( |
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ircDestination, i2p::util::config::GetArg("-ircaddress", "127.0.0.1"), |
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ircPort, localDestination |
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); |
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ircTunnel->Start (); |
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// TODO: allow muliple tunnels on the same port (but on a different address) |
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m_ClientTunnels.insert(std::make_pair( |
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ircPort, std::unique_ptr<I2PClientTunnel>(ircTunnel) |
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)); |
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LogPrint("IRC tunnel started"); |
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} |
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std::string eepKeys = i2p::util::config::GetArg("-eepkeys", ""); |
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if (eepKeys.length () > 0) // eepkeys file is presented |
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{ |
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localDestination = LoadLocalDestination (eepKeys, true); |
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auto serverTunnel = new I2PServerTunnel (i2p::util::config::GetArg("-eepaddress", "127.0.0.1"), |
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i2p::util::config::GetArg("-eepport", 80), localDestination); |
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serverTunnel->Start (); |
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m_ServerTunnels.insert (std::make_pair(localDestination->GetIdentHash (), std::unique_ptr<I2PServerTunnel>(serverTunnel))); |
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LogPrint("Server tunnel started"); |
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} |
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ReadTunnels (); |
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// SAM |
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int samPort = i2p::util::config::GetArg("-samport", 0); |
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if (samPort) |
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{ |
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m_SamBridge = new SAMBridge( |
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i2p::util::config::GetArg("-samaddress", "127.0.0.1"), samPort |
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); |
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m_SamBridge->Start (); |
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LogPrint("SAM bridge started"); |
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} |
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// BOB |
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int bobPort = i2p::util::config::GetArg("-bobport", 0); |
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if (bobPort) |
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{ |
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m_BOBCommandChannel = new BOBCommandChannel( |
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i2p::util::config::GetArg("-bobaddress", "127.0.0.1"), bobPort |
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); |
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m_BOBCommandChannel->Start (); |
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LogPrint("BOB command channel started"); |
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} |
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// I2P Control |
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int i2pcontrolPort = i2p::util::config::GetArg("-i2pcontrolport", 0); |
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if(i2pcontrolPort) { |
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m_I2PControlService = new i2pcontrol::I2PControlService( |
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i2p::util::config::GetArg("-i2pcontroladdress", "127.0.0.1"), |
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i2pcontrolPort, |
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i2p::util::config::GetArg( |
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"-i2pcontrolpassword", i2pcontrol::constants::DEFAULT_PASSWORD |
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) |
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); |
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m_I2PControlService->Start(); |
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LogPrint("I2PControl started"); |
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} |
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m_AddressBook.Start (m_SharedLocalDestination.get()); |
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} |
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void ClientContext::Stop () |
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{ |
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m_HttpProxy->Stop(); |
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delete m_HttpProxy; |
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m_HttpProxy = nullptr; |
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LogPrint("HTTP Proxy stopped"); |
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m_SocksProxy->Stop(); |
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delete m_SocksProxy; |
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m_SocksProxy = nullptr; |
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LogPrint("SOCKS Proxy stopped"); |
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for (auto& it: m_ClientTunnels) |
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{ |
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it.second->Stop (); |
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LogPrint("I2P client tunnel on port ", it.first, " stopped"); |
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} |
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m_ClientTunnels.clear (); |
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for (auto& it: m_ServerTunnels) |
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{ |
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it.second->Stop (); |
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LogPrint("I2P server tunnel stopped"); |
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} |
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m_ServerTunnels.clear (); |
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if (m_SamBridge) |
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{ |
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m_SamBridge->Stop (); |
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delete m_SamBridge; |
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m_SamBridge = nullptr; |
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LogPrint("SAM bridge stopped"); |
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} |
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if (m_BOBCommandChannel) |
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{ |
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m_BOBCommandChannel->Stop (); |
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delete m_BOBCommandChannel; |
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m_BOBCommandChannel = nullptr; |
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LogPrint("BOB command channel stopped"); |
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} |
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if (m_I2PControlService) |
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{ |
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m_I2PControlService->Stop (); |
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delete m_I2PControlService; |
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m_I2PControlService = nullptr; |
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LogPrint("I2PControl stopped"); |
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} |
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m_AddressBook.Stop (); |
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for (auto it: m_Destinations) |
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it.second->Stop (); |
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m_Destinations.clear (); |
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m_SharedLocalDestination = nullptr; |
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} |
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std::shared_ptr<ClientDestination> ClientContext::LoadLocalDestination (const std::string& filename, bool isPublic) |
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{ |
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i2p::data::PrivateKeys keys; |
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std::string fullPath = i2p::util::filesystem::GetFullPath (filename); |
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std::ifstream s(fullPath.c_str (), std::ifstream::binary); |
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if (s.is_open ()) |
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{ |
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s.seekg (0, std::ios::end); |
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size_t len = s.tellg(); |
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s.seekg (0, std::ios::beg); |
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uint8_t * buf = new uint8_t[len]; |
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s.read ((char *)buf, len); |
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keys.FromBuffer (buf, len); |
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delete[] buf; |
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LogPrint ("Local address ", m_AddressBook.ToAddress(keys.GetPublic ().GetIdentHash ()), " loaded"); |
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} |
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else |
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{ |
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LogPrint ("Can't open file ", fullPath, " Creating new one"); |
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keys = i2p::data::PrivateKeys::CreateRandomKeys (i2p::data::SIGNING_KEY_TYPE_ECDSA_SHA256_P256); |
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std::ofstream f (fullPath, std::ofstream::binary | std::ofstream::out); |
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size_t len = keys.GetFullLen (); |
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uint8_t * buf = new uint8_t[len]; |
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len = keys.ToBuffer (buf, len); |
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f.write ((char *)buf, len); |
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delete[] buf; |
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LogPrint ("New private keys file ", fullPath, " for ", m_AddressBook.ToAddress(keys.GetPublic ().GetIdentHash ()), " created"); |
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} |
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std::shared_ptr<ClientDestination> localDestination = nullptr; |
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std::unique_lock<std::mutex> l(m_DestinationsMutex); |
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auto it = m_Destinations.find (keys.GetPublic ().GetIdentHash ()); |
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if (it != m_Destinations.end ()) |
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{ |
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LogPrint (eLogWarning, "Local destination ", m_AddressBook.ToAddress(keys.GetPublic ().GetIdentHash ()), " alreday exists"); |
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localDestination = it->second; |
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} |
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else |
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{ |
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localDestination = std::make_shared<ClientDestination> (keys, isPublic); |
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m_Destinations[localDestination->GetIdentHash ()] = localDestination; |
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localDestination->Start (); |
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} |
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return localDestination; |
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} |
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std::shared_ptr<ClientDestination> ClientContext::CreateNewLocalDestination (bool isPublic, i2p::data::SigningKeyType sigType, |
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const std::map<std::string, std::string> * params) |
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{ |
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i2p::data::PrivateKeys keys = i2p::data::PrivateKeys::CreateRandomKeys (sigType); |
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auto localDestination = std::make_shared<ClientDestination> (keys, isPublic, params); |
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std::unique_lock<std::mutex> l(m_DestinationsMutex); |
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m_Destinations[localDestination->GetIdentHash ()] = localDestination; |
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localDestination->Start (); |
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return localDestination; |
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} |
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void ClientContext::DeleteLocalDestination (std::shared_ptr<ClientDestination> destination) |
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{ |
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if (!destination) return; |
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auto it = m_Destinations.find (destination->GetIdentHash ()); |
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if (it != m_Destinations.end ()) |
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{ |
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auto d = it->second; |
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{ |
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std::unique_lock<std::mutex> l(m_DestinationsMutex); |
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m_Destinations.erase (it); |
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} |
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d->Stop (); |
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} |
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} |
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std::shared_ptr<ClientDestination> ClientContext::CreateNewLocalDestination (const i2p::data::PrivateKeys& keys, bool isPublic, |
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const std::map<std::string, std::string> * params) |
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{ |
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auto it = m_Destinations.find (keys.GetPublic ().GetIdentHash ()); |
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if (it != m_Destinations.end ()) |
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{ |
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LogPrint ("Local destination ", m_AddressBook.ToAddress(keys.GetPublic ().GetIdentHash ()), " exists"); |
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if (!it->second->IsRunning ()) |
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{ |
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it->second->Start (); |
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return it->second; |
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} |
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return nullptr; |
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} |
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auto localDestination = std::make_shared<ClientDestination> (keys, isPublic, params); |
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std::unique_lock<std::mutex> l(m_DestinationsMutex); |
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m_Destinations[keys.GetPublic ().GetIdentHash ()] = localDestination; |
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localDestination->Start (); |
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return localDestination; |
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} |
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std::shared_ptr<ClientDestination> ClientContext::FindLocalDestination (const i2p::data::IdentHash& destination) const |
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{ |
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auto it = m_Destinations.find (destination); |
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if (it != m_Destinations.end ()) |
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return it->second; |
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return nullptr; |
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} |
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void ClientContext::ReadTunnels () |
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{ |
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boost::property_tree::ptree pt; |
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std::string pathTunnelsConfigFile = i2p::util::filesystem::GetTunnelsConfigFile().string(); |
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try { |
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boost::property_tree::read_ini( |
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pathTunnelsConfigFile, |
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pt |
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); |
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} catch(const std::exception& ex) { |
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LogPrint(eLogWarning, "Can't read ", pathTunnelsConfigFile, ": ", ex.what ()); |
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return; |
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} |
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int numClientTunnels = 0, numServerTunnels = 0; |
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for(auto& section: pt) { |
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std::string name = section.first; |
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try { |
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std::string type = section.second.get<std::string> (I2P_TUNNELS_SECTION_TYPE); |
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if(type == I2P_TUNNELS_SECTION_TYPE_CLIENT) { |
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// mandatory params |
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std::string dest = section.second.get<std::string> (I2P_CLIENT_TUNNEL_DESTINATION); |
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int port = section.second.get<int> (I2P_CLIENT_TUNNEL_PORT); |
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// optional params |
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std::string address = section.second.get( |
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I2P_CLIENT_TUNNEL_ADDRESS, "127.0.0.1" |
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); |
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std::string keys = section.second.get(I2P_CLIENT_TUNNEL_KEYS, ""); |
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int destinationPort = section.second.get(I2P_CLIENT_TUNNEL_DESTINATION_PORT, 0); |
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std::shared_ptr<ClientDestination> localDestination = nullptr; |
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if(keys.length () > 0) |
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localDestination = LoadLocalDestination (keys, false); |
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auto clientTunnel = new I2PClientTunnel( |
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dest, address, port, localDestination, destinationPort |
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); |
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// TODO: allow multiple tunnels on the same port (but on a different address) |
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if(m_ClientTunnels.insert(std::make_pair(port, std::unique_ptr<I2PClientTunnel>(clientTunnel))).second) |
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clientTunnel->Start (); |
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else |
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LogPrint (eLogError, "I2P client tunnel with port ", port, " already exists"); |
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numClientTunnels++; |
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} else if(type == I2P_TUNNELS_SECTION_TYPE_SERVER || type == I2P_TUNNELS_SECTION_TYPE_HTTP) |
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{ |
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// mandatory params |
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std::string host = section.second.get<std::string> (I2P_SERVER_TUNNEL_HOST); |
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int port = section.second.get<int> (I2P_SERVER_TUNNEL_PORT); |
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std::string keys = section.second.get<std::string> (I2P_SERVER_TUNNEL_KEYS); |
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// optional params |
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int inPort = section.second.get (I2P_SERVER_TUNNEL_INPORT, 0); |
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std::string accessList = section.second.get (I2P_SERVER_TUNNEL_ACCESS_LIST, ""); |
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auto localDestination = LoadLocalDestination (keys, true); |
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I2PServerTunnel * serverTunnel = (type == I2P_TUNNELS_SECTION_TYPE_HTTP) ? new I2PServerTunnelHTTP (host, port, localDestination, inPort) : new I2PServerTunnel (host, port, localDestination, inPort); |
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if (accessList.length () > 0) { |
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std::set<i2p::data::IdentHash> idents; |
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size_t pos = 0, comma; |
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do { |
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comma = accessList.find (',', pos); |
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i2p::data::IdentHash ident; |
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ident.FromBase32 (accessList.substr (pos, comma != std::string::npos ? comma - pos : std::string::npos)); |
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idents.insert (ident); |
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pos = comma + 1; |
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} while (comma != std::string::npos); |
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serverTunnel->SetAccessList (idents); |
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} |
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if (m_ServerTunnels.insert (std::make_pair (localDestination->GetIdentHash (), std::unique_ptr<I2PServerTunnel>(serverTunnel))).second) |
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serverTunnel->Start (); |
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else |
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LogPrint (eLogError, "I2P server tunnel for destination ", m_AddressBook.ToAddress(localDestination->GetIdentHash ()), " already exists"); |
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numServerTunnels++; |
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} else |
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LogPrint (eLogWarning, "Unknown section type=", type, " of ", name, " in ", pathTunnelsConfigFile); |
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} catch (const std::exception& ex) { |
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LogPrint (eLogError, "Can't read tunnel ", name, " params: ", ex.what ()); |
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} |
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} |
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LogPrint (eLogInfo, numClientTunnels, " I2P client tunnels created"); |
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LogPrint (eLogInfo, numServerTunnels, " I2P server tunnels created"); |
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} |
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} |
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}
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