mirror of
https://github.com/PurpleI2P/i2pd.git
synced 2024-11-16 00:12:43 +00:00
578 lines
22 KiB
C++
578 lines
22 KiB
C++
#include <cstring>
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#include <cassert>
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#include <string>
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#include <atomic>
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#include "SOCKS.h"
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#include "Identity.h"
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#include "Streaming.h"
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#include "Destination.h"
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#include "ClientContext.h"
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#include "util/I2PEndian.h"
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#include "I2PTunnel.h"
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namespace i2p
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{
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namespace proxy
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{
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static const size_t socks_buffer_size = 8192;
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static const size_t max_socks_hostname_size = 255; // Limit for socks5 and bad idea to traverse
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struct SOCKSDnsAddress
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{
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uint8_t size;
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char value[max_socks_hostname_size];
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void FromString (std::string str)
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{
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size = str.length();
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if (str.length() > max_socks_hostname_size) size = max_socks_hostname_size;
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memcpy(value,str.c_str(),size);
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}
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std::string ToString() { return std::string(value, size); }
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void push_back (char c) { value[size++] = c; }
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};
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class SOCKSServer;
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class SOCKSHandler: public i2p::client::I2PServiceHandler, public std::enable_shared_from_this<SOCKSHandler>
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{
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private:
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enum state
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{
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GET_SOCKSV,
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GET_COMMAND,
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GET_PORT,
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GET_IPV4,
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GET4_IDENT,
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GET4A_HOST,
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GET5_AUTHNUM,
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GET5_AUTH,
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GET5_REQUESTV,
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GET5_GETRSV,
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GET5_GETADDRTYPE,
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GET5_IPV6,
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GET5_HOST_SIZE,
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GET5_HOST,
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DONE
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};
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enum authMethods
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{
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AUTH_NONE = 0, //No authentication, skip to next step
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AUTH_GSSAPI = 1, //GSSAPI authentication
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AUTH_USERPASSWD = 2, //Username and password
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AUTH_UNACCEPTABLE = 0xff //No acceptable method found
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};
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enum addrTypes
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{
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ADDR_IPV4 = 1, //IPv4 address (4 octets)
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ADDR_DNS = 3, // DNS name (up to 255 octets)
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ADDR_IPV6 = 4 //IPV6 address (16 octets)
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};
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enum errTypes
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{
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SOCKS5_OK = 0, // No error for SOCKS5
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SOCKS5_GEN_FAIL = 1, // General server failure
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SOCKS5_RULE_DENIED = 2, // Connection disallowed by ruleset
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SOCKS5_NET_UNREACH = 3, // Network unreachable
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SOCKS5_HOST_UNREACH = 4, // Host unreachable
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SOCKS5_CONN_REFUSED = 5, // Connection refused by the peer
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SOCKS5_TTL_EXPIRED = 6, // TTL Expired
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SOCKS5_CMD_UNSUP = 7, // Command unsuported
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SOCKS5_ADDR_UNSUP = 8, // Address type unsuported
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SOCKS4_OK = 90, // No error for SOCKS4
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SOCKS4_FAIL = 91, // Failed establishing connecting or not allowed
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SOCKS4_IDENTD_MISSING = 92, // Couldn't connect to the identd server
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SOCKS4_IDENTD_DIFFER = 93 // The ID reported by the application and by identd differ
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};
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enum cmdTypes
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{
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CMD_CONNECT = 1, // TCP Connect
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CMD_BIND = 2, // TCP Bind
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CMD_UDP = 3 // UDP associate
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};
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enum socksVersions
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{
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SOCKS4 = 4, // SOCKS4
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SOCKS5 = 5 // SOCKS5
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};
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union address
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{
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uint32_t ip;
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SOCKSDnsAddress dns;
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uint8_t ipv6[16];
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};
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void EnterState(state nstate, uint8_t parseleft = 1);
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bool HandleData(uint8_t *sock_buff, std::size_t len);
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bool ValidateSOCKSRequest();
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void HandleSockRecv(const boost::system::error_code & ecode, std::size_t bytes_transfered);
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void Terminate();
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void AsyncSockRead();
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boost::asio::const_buffers_1 GenerateSOCKS5SelectAuth(authMethods method);
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boost::asio::const_buffers_1 GenerateSOCKS4Response(errTypes error, uint32_t ip, uint16_t port);
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boost::asio::const_buffers_1 GenerateSOCKS5Response(errTypes error, addrTypes type, const address &addr, uint16_t port);
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bool Socks5ChooseAuth();
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void SocksRequestFailed(errTypes error);
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void SocksRequestSuccess();
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void SentSocksFailed(const boost::system::error_code & ecode);
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void SentSocksDone(const boost::system::error_code & ecode);
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void SentSocksResponse(const boost::system::error_code & ecode);
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void HandleStreamRequestComplete (std::shared_ptr<i2p::stream::Stream> stream);
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uint8_t m_sock_buff[socks_buffer_size];
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std::shared_ptr<boost::asio::ip::tcp::socket> m_sock;
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std::shared_ptr<i2p::stream::Stream> m_stream;
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uint8_t *m_remaining_data; //Data left to be sent
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uint8_t m_response[7+max_socks_hostname_size];
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address m_address; //Address
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std::size_t m_remaining_data_len; //Size of the data left to be sent
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uint32_t m_4aip; //Used in 4a requests
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uint16_t m_port;
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uint8_t m_command;
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uint8_t m_parseleft; //Octets left to parse
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authMethods m_authchosen; //Authentication chosen
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addrTypes m_addrtype; //Address type chosen
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socksVersions m_socksv; //Socks version
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cmdTypes m_cmd; // Command requested
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state m_state;
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public:
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SOCKSHandler(SOCKSServer * parent, std::shared_ptr<boost::asio::ip::tcp::socket> sock) :
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I2PServiceHandler(parent), m_sock(sock), m_stream(nullptr),
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m_authchosen(AUTH_UNACCEPTABLE), m_addrtype(ADDR_IPV4)
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{ m_address.ip = 0; EnterState(GET_SOCKSV); }
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~SOCKSHandler() { Terminate(); }
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void Handle() { AsyncSockRead(); }
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};
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void SOCKSHandler::AsyncSockRead()
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{
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LogPrint(eLogDebug,"--- SOCKS async sock read");
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if(m_sock)
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m_sock->async_receive(boost::asio::buffer(m_sock_buff, socks_buffer_size),
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std::bind(&SOCKSHandler::HandleSockRecv, shared_from_this(),
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std::placeholders::_1, std::placeholders::_2));
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else
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LogPrint(eLogError,"--- SOCKS no socket for read");
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}
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void SOCKSHandler::Terminate()
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{
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if (Kill()) return;
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if (m_sock)
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{
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LogPrint(eLogDebug,"--- SOCKS close sock");
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m_sock->close();
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m_sock = nullptr;
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}
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if (m_stream)
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{
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LogPrint(eLogDebug,"--- SOCKS close stream");
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m_stream.reset ();
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}
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Done(shared_from_this());
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}
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boost::asio::const_buffers_1 SOCKSHandler::GenerateSOCKS4Response(SOCKSHandler::errTypes error, uint32_t ip, uint16_t port)
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{
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assert(error >= SOCKS4_OK);
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m_response[0] = '\x00'; //Version
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m_response[1] = error; //Response code
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htobe16buf(m_response+2,port); //Port
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htobe32buf(m_response+4,ip); //IP
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return boost::asio::const_buffers_1(m_response,8);
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}
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boost::asio::const_buffers_1 SOCKSHandler::GenerateSOCKS5Response(SOCKSHandler::errTypes error, SOCKSHandler::addrTypes type, const SOCKSHandler::address &addr, uint16_t port)
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{
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size_t size = 6;
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assert(error <= SOCKS5_ADDR_UNSUP);
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m_response[0] = '\x05'; //Version
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m_response[1] = error; //Response code
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m_response[2] = '\x00'; //RSV
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m_response[3] = type; //Address type
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switch (type)
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{
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case ADDR_IPV4:
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size = 10;
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htobe32buf(m_response+4,addr.ip);
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break;
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case ADDR_IPV6:
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size = 22;
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memcpy(m_response+4,addr.ipv6, 16);
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break;
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case ADDR_DNS:
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size = 7+addr.dns.size;
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m_response[4] = addr.dns.size;
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memcpy(m_response+5,addr.dns.value, addr.dns.size);
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break;
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}
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htobe16buf(m_response+size-2,port); //Port
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return boost::asio::const_buffers_1(m_response,size);
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}
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bool SOCKSHandler::Socks5ChooseAuth()
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{
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m_response[0] = '\x05'; //Version
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m_response[1] = m_authchosen; //Response code
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boost::asio::const_buffers_1 response(m_response,2);
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if (m_authchosen == AUTH_UNACCEPTABLE)
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{
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LogPrint(eLogWarning,"--- SOCKS5 authentication negotiation failed");
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boost::asio::async_write(*m_sock, response, std::bind(&SOCKSHandler::SentSocksFailed,
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shared_from_this(), std::placeholders::_1));
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return false;
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}
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else
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{
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LogPrint(eLogDebug,"--- SOCKS5 choosing authentication method: ", m_authchosen);
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boost::asio::async_write(*m_sock, response, std::bind(&SOCKSHandler::SentSocksResponse,
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shared_from_this(), std::placeholders::_1));
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return true;
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}
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}
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/* All hope is lost beyond this point */
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void SOCKSHandler::SocksRequestFailed(SOCKSHandler::errTypes error)
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{
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boost::asio::const_buffers_1 response(nullptr,0);
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assert(error != SOCKS4_OK && error != SOCKS5_OK);
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switch (m_socksv)
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{
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case SOCKS4:
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LogPrint(eLogWarning,"--- SOCKS4 failed: ", error);
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if (error < SOCKS4_OK) error = SOCKS4_FAIL; //Transparently map SOCKS5 errors
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response = GenerateSOCKS4Response(error, m_4aip, m_port);
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break;
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case SOCKS5:
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LogPrint(eLogWarning,"--- SOCKS5 failed: ", error);
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response = GenerateSOCKS5Response(error, m_addrtype, m_address, m_port);
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break;
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}
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boost::asio::async_write(*m_sock, response, std::bind(&SOCKSHandler::SentSocksFailed,
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shared_from_this(), std::placeholders::_1));
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}
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void SOCKSHandler::SocksRequestSuccess()
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{
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boost::asio::const_buffers_1 response(nullptr,0);
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//TODO: this should depend on things like the command type and callbacks may change
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switch (m_socksv)
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{
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case SOCKS4:
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LogPrint(eLogInfo,"--- SOCKS4 connection success");
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response = GenerateSOCKS4Response(SOCKS4_OK, m_4aip, m_port);
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break;
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case SOCKS5:
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LogPrint(eLogInfo,"--- SOCKS5 connection success");
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auto s = i2p::client::context.GetAddressBook().ToAddress(GetOwner()->GetLocalDestination()->GetIdentHash());
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address ad; ad.dns.FromString(s);
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//HACK only 16 bits passed in port as SOCKS5 doesn't allow for more
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response = GenerateSOCKS5Response(SOCKS5_OK, ADDR_DNS, ad, m_stream->GetRecvStreamID());
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break;
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}
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boost::asio::async_write(*m_sock, response, std::bind(&SOCKSHandler::SentSocksDone,
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shared_from_this(), std::placeholders::_1));
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}
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void SOCKSHandler::EnterState(SOCKSHandler::state nstate, uint8_t parseleft) {
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switch (nstate)
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{
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case GET_PORT: parseleft = 2; break;
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case GET_IPV4: m_addrtype = ADDR_IPV4; m_address.ip = 0; parseleft = 4; break;
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case GET4_IDENT: m_4aip = m_address.ip; break;
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case GET4A_HOST:
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case GET5_HOST: m_addrtype = ADDR_DNS; m_address.dns.size = 0; break;
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case GET5_IPV6: m_addrtype = ADDR_IPV6; parseleft = 16; break;
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default:;
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}
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m_parseleft = parseleft;
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m_state = nstate;
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}
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bool SOCKSHandler::ValidateSOCKSRequest()
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{
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if ( m_cmd != CMD_CONNECT )
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{
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//TODO: we need to support binds and other shit!
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LogPrint(eLogError,"--- SOCKS unsupported command: ", m_cmd);
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SocksRequestFailed(SOCKS5_CMD_UNSUP);
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return false;
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}
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//TODO: we may want to support other address types!
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if ( m_addrtype != ADDR_DNS )
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{
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switch (m_socksv)
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{
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case SOCKS5:
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LogPrint(eLogError,"--- SOCKS5 unsupported address type: ", m_addrtype);
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break;
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case SOCKS4:
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LogPrint(eLogError,"--- SOCKS4a rejected because it's actually SOCKS4");
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break;
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}
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SocksRequestFailed(SOCKS5_ADDR_UNSUP);
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return false;
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}
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//TODO: we may want to support other domains
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if(m_addrtype == ADDR_DNS && m_address.dns.ToString().find(".i2p") == std::string::npos)
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{
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LogPrint(eLogError,"--- SOCKS invalid hostname: ", m_address.dns.ToString());
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SocksRequestFailed(SOCKS5_ADDR_UNSUP);
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return false;
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}
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return true;
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}
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bool SOCKSHandler::HandleData(uint8_t *sock_buff, std::size_t len)
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{
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assert(len); // This should always be called with a least a byte left to parse
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while (len > 0)
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{
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switch (m_state)
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{
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case GET_SOCKSV:
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m_socksv = (SOCKSHandler::socksVersions) *sock_buff;
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switch (*sock_buff)
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{
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case SOCKS4:
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EnterState(GET_COMMAND); //Initialize the parser at the right position
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break;
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case SOCKS5:
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EnterState(GET5_AUTHNUM); //Initialize the parser at the right position
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break;
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default:
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LogPrint(eLogError,"--- SOCKS rejected invalid version: ", ((int)*sock_buff));
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Terminate();
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return false;
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}
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break;
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case GET5_AUTHNUM:
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EnterState(GET5_AUTH, *sock_buff);
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break;
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case GET5_AUTH:
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m_parseleft --;
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if (*sock_buff == AUTH_NONE)
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m_authchosen = AUTH_NONE;
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if ( m_parseleft == 0 )
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{
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if (!Socks5ChooseAuth()) return false;
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EnterState(GET5_REQUESTV);
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}
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break;
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case GET_COMMAND:
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switch (*sock_buff)
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{
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case CMD_CONNECT:
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case CMD_BIND:
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break;
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case CMD_UDP:
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if (m_socksv == SOCKS5) break;
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default:
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LogPrint(eLogError,"--- SOCKS invalid command: ", ((int)*sock_buff));
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SocksRequestFailed(SOCKS5_GEN_FAIL);
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return false;
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}
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m_cmd = (SOCKSHandler::cmdTypes)*sock_buff;
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switch (m_socksv)
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{
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case SOCKS5: EnterState(GET5_GETRSV); break;
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case SOCKS4: EnterState(GET_PORT); break;
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}
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break;
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case GET_PORT:
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m_port = (m_port << 8)|((uint16_t)*sock_buff);
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m_parseleft--;
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if (m_parseleft == 0)
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{
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switch (m_socksv)
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{
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case SOCKS5: EnterState(DONE); break;
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case SOCKS4: EnterState(GET_IPV4); break;
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}
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}
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break;
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case GET_IPV4:
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m_address.ip = (m_address.ip << 8)|((uint32_t)*sock_buff);
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m_parseleft--;
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if (m_parseleft == 0)
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{
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switch (m_socksv)
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{
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case SOCKS5: EnterState(GET_PORT); break;
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case SOCKS4: EnterState(GET4_IDENT); m_4aip = m_address.ip; break;
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}
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}
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break;
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case GET4_IDENT:
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if (!*sock_buff)
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{
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if( m_4aip == 0 || m_4aip > 255 )
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EnterState(DONE);
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else
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EnterState(GET4A_HOST);
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}
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break;
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case GET4A_HOST:
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if (!*sock_buff)
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{
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EnterState(DONE);
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break;
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}
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if (m_address.dns.size >= max_socks_hostname_size)
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{
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LogPrint(eLogError,"--- SOCKS4a destination is too large");
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SocksRequestFailed(SOCKS4_FAIL);
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return false;
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}
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m_address.dns.push_back(*sock_buff);
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break;
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case GET5_REQUESTV:
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if (*sock_buff != SOCKS5)
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{
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LogPrint(eLogError,"--- SOCKS5 rejected unknown request version: ", ((int)*sock_buff));
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SocksRequestFailed(SOCKS5_GEN_FAIL);
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return false;
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}
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EnterState(GET_COMMAND);
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break;
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case GET5_GETRSV:
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if ( *sock_buff != 0 )
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{
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LogPrint(eLogError,"--- SOCKS5 unknown reserved field: ", ((int)*sock_buff));
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SocksRequestFailed(SOCKS5_GEN_FAIL);
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return false;
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}
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EnterState(GET5_GETADDRTYPE);
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break;
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case GET5_GETADDRTYPE:
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switch (*sock_buff)
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{
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case ADDR_IPV4: EnterState(GET_IPV4); break;
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case ADDR_IPV6: EnterState(GET5_IPV6); break;
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case ADDR_DNS : EnterState(GET5_HOST_SIZE); break;
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default:
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LogPrint(eLogError,"--- SOCKS5 unknown address type: ", ((int)*sock_buff));
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SocksRequestFailed(SOCKS5_GEN_FAIL);
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return false;
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}
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break;
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case GET5_IPV6:
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m_address.ipv6[16-m_parseleft] = *sock_buff;
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m_parseleft--;
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if (m_parseleft == 0) EnterState(GET_PORT);
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break;
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case GET5_HOST_SIZE:
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EnterState(GET5_HOST, *sock_buff);
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break;
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case GET5_HOST:
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m_address.dns.push_back(*sock_buff);
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m_parseleft--;
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if (m_parseleft == 0) EnterState(GET_PORT);
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break;
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default:
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LogPrint(eLogError,"--- SOCKS parse state?? ", m_state);
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|
Terminate();
|
|
return false;
|
|
}
|
|
sock_buff++;
|
|
len--;
|
|
if (m_state == DONE)
|
|
{
|
|
m_remaining_data_len = len;
|
|
m_remaining_data = sock_buff;
|
|
return ValidateSOCKSRequest();
|
|
}
|
|
}
|
|
return true;
|
|
}
|
|
|
|
void SOCKSHandler::HandleSockRecv(const boost::system::error_code & ecode, std::size_t len)
|
|
{
|
|
LogPrint(eLogDebug,"--- SOCKS sock recv: ", len);
|
|
if(ecode)
|
|
{
|
|
LogPrint(eLogWarning," --- SOCKS sock recv got error: ", ecode);
|
|
Terminate();
|
|
return;
|
|
}
|
|
|
|
if (HandleData(m_sock_buff, len))
|
|
{
|
|
if (m_state == DONE)
|
|
{
|
|
LogPrint(eLogInfo,"--- SOCKS requested ", m_address.dns.ToString(), ":" , m_port);
|
|
GetOwner()->CreateStream ( std::bind (&SOCKSHandler::HandleStreamRequestComplete,
|
|
shared_from_this(), std::placeholders::_1), m_address.dns.ToString(), m_port);
|
|
}
|
|
else
|
|
AsyncSockRead();
|
|
}
|
|
}
|
|
|
|
void SOCKSHandler::SentSocksFailed(const boost::system::error_code & ecode)
|
|
{
|
|
if (!ecode)
|
|
Terminate();
|
|
else
|
|
{
|
|
LogPrint (eLogError,"--- SOCKS Closing socket after sending failure because: ", ecode.message ());
|
|
Terminate();
|
|
}
|
|
}
|
|
|
|
void SOCKSHandler::SentSocksDone(const boost::system::error_code & ecode)
|
|
{
|
|
if (!ecode)
|
|
{
|
|
if (Kill()) return;
|
|
LogPrint (eLogInfo,"--- SOCKS New I2PTunnel connection");
|
|
auto connection = std::make_shared<i2p::client::I2PTunnelConnection>(GetOwner(), m_sock, m_stream);
|
|
GetOwner()->AddHandler (connection);
|
|
connection->I2PConnect (m_remaining_data,m_remaining_data_len);
|
|
Done(shared_from_this());
|
|
}
|
|
else
|
|
{
|
|
LogPrint (eLogError,"--- SOCKS Closing socket after completion reply because: ", ecode.message ());
|
|
Terminate();
|
|
}
|
|
}
|
|
|
|
void SOCKSHandler::SentSocksResponse(const boost::system::error_code & ecode)
|
|
{
|
|
if (ecode)
|
|
{
|
|
LogPrint (eLogError,"--- SOCKS Closing socket after sending reply because: ", ecode.message ());
|
|
Terminate();
|
|
}
|
|
}
|
|
|
|
void SOCKSHandler::HandleStreamRequestComplete (std::shared_ptr<i2p::stream::Stream> stream)
|
|
{
|
|
if (stream)
|
|
{
|
|
m_stream = stream;
|
|
SocksRequestSuccess();
|
|
}
|
|
else
|
|
{
|
|
LogPrint (eLogError,"--- SOCKS Issue when creating the stream, check the previous warnings for more info.");
|
|
SocksRequestFailed(SOCKS5_HOST_UNREACH);
|
|
}
|
|
}
|
|
|
|
SOCKSServer::SOCKSServer(const std::string& address, int port, std::shared_ptr<i2p::client::ClientDestination> localDestination)
|
|
: TCPIPAcceptor(
|
|
address, port,
|
|
localDestination ? localDestination : i2p::client::context.GetSharedLocalDestination()
|
|
)
|
|
{
|
|
}
|
|
|
|
std::shared_ptr<i2p::client::I2PServiceHandler> SOCKSServer::CreateHandler(std::shared_ptr<boost::asio::ip::tcp::socket> socket)
|
|
{
|
|
return std::make_shared<SOCKSHandler> (this, socket);
|
|
}
|
|
|
|
}
|
|
}
|