mirror of
https://github.com/PurpleI2P/i2pd
synced 2024-11-10 00:00:29 +03:00
157 lines
4.9 KiB
C++
157 lines
4.9 KiB
C++
/*
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* Copyright (c) 2022, The PurpleI2P Project
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*
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* This file is part of Purple i2pd project and licensed under BSD3
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*
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* See full license text in LICENSE file at top of project tree
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*/
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#include <string.h>
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#include <openssl/rand.h>
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#include "Log.h"
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#include "RouterContext.h"
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#include "Transports.h"
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#include "SSU2.h"
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namespace i2p
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{
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namespace transport
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{
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SSU2Session::SSU2Session (SSU2Server& server, std::shared_ptr<const i2p::data::RouterInfo> in_RemoteRouter,
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std::shared_ptr<const i2p::data::RouterInfo::Address> addr, bool peerTest):
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TransportSession (in_RemoteRouter, SSU2_TERMINATION_TIMEOUT),
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m_Server (server), m_Address (addr), m_DestConnID (0), m_SourceConnID (0)
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{
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m_NoiseState.reset (new i2p::crypto::NoiseSymmetricState);
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if (in_RemoteRouter && addr)
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{
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// outgoing
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InitNoiseXKState1 (*m_NoiseState, addr->s);
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}
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}
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SSU2Session::~SSU2Session ()
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{
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}
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void SSU2Session::SendSessionRequest ()
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{
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m_EphemeralKeys = i2p::transport::transports.GetNextX25519KeysPair ();
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m_NoiseState->MixHash (m_EphemeralKeys->GetPublicKey (), 32);
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uint8_t sharedSecret[32];
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m_EphemeralKeys->Agree (m_Address->s, sharedSecret);
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m_NoiseState->MixKey (sharedSecret);
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Header header;
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uint8_t headerX[48], payload[1200]; // TODO: correct payload size
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size_t payloadSize = 8;
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// fill packet
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RAND_bytes ((uint8_t *)&m_DestConnID, 8);
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header.h.connID = m_DestConnID; // dest id
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memset (header.h.packetNum, 0, 4);
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header.h.type = eSSU2SessionRequest;
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header.h.flags[0] = 2; // ver
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header.h.flags[1] = 2; // netID TODO:
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header.h.flags[2] = 0; // flag
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RAND_bytes ((uint8_t *)&m_SourceConnID, 8);
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memcpy (headerX, &m_SourceConnID, 8); // source id
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memset (headerX + 8, 0, 8); // token
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memcpy (headerX + 16, m_EphemeralKeys->GetPublicKey (), 32); // X
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m_Server.AddPendingOutgoingSession (boost::asio::ip::udp::endpoint (m_Address->host, m_Address->port), shared_from_this ());
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// encrypt
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const uint8_t nonce[12] = {0};
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i2p::crypto::AEADChaCha20Poly1305 (payload, payloadSize, m_NoiseState->m_H, 32, m_NoiseState->m_CK + 32, nonce, payload, payloadSize + 16, true);
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payloadSize += 16;
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CreateHeaderMask (m_Address->i, payload + (payloadSize - 24), m_Address->i, payload + (payloadSize - 12));
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EncryptHeader (header);
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i2p::crypto::ChaCha20 (headerX, 48, m_Address->i, nonce, headerX);
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}
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void SSU2Session::EncryptHeader (Header& h)
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{
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h.ll[0] ^= m_HeaderMask.ll[0];
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h.ll[1] ^= m_HeaderMask.ll[1];
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}
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void SSU2Session::CreateHeaderMask (const uint8_t * kh1, const uint8_t * nonce1, const uint8_t * kh2, const uint8_t * nonce2)
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{
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// Header Encryption KDF
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uint8_t data[8] = {0};
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i2p::crypto::ChaCha20 (data, 8, kh1, nonce1, m_HeaderMask.buf);
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i2p::crypto::ChaCha20 (data, 8, kh2, nonce2, m_HeaderMask.buf + 8);
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}
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SSU2Server::SSU2Server (int port):
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m_Socket (m_Service), m_Endpoint (boost::asio::ip::udp::v6 (), port)
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{
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}
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void SSU2Server::OpenSocket ()
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{
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try
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{
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m_Socket.open (boost::asio::ip::udp::v6());
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m_Socket.set_option (boost::asio::socket_base::receive_buffer_size (SSU2_SOCKET_RECEIVE_BUFFER_SIZE));
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m_Socket.set_option (boost::asio::socket_base::send_buffer_size (SSU2_SOCKET_SEND_BUFFER_SIZE));
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m_Socket.bind (m_Endpoint);
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LogPrint (eLogInfo, "SSU2: Start listening port ", m_Endpoint.port());
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}
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catch (std::exception& ex )
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{
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LogPrint (eLogError, "SSU2: Failed to bind to port ", m_Endpoint.port(), ": ", ex.what());
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ThrowFatal ("Unable to start SSU2 transport at port ", m_Endpoint.port(), ": ", ex.what ());
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}
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}
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void SSU2Server::AddSession (uint64_t connID, std::shared_ptr<SSU2Session> session)
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{
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m_Sessions.emplace (connID, session);
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}
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void SSU2Server::AddPendingOutgoingSession (const boost::asio::ip::udp::endpoint& ep, std::shared_ptr<SSU2Session> session)
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{
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m_PendingOutgoingSessions.emplace (ep, session);
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}
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void SSU2Server::ProcessNextPacket (uint8_t * buf, size_t len, const boost::asio::ip::udp::endpoint& senderEndpoint)
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{
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uint64_t key = 0, connID;
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i2p::crypto::ChaCha20 ((uint8_t *)&key, 8, i2p::context.GetNTCP2IV (), buf + (len - 24), (uint8_t *)&key); // TODO: use SSU2 intro key
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memcpy (&connID, buf, 8);
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connID ^= key;
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auto it = m_Sessions.find (connID);
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if (it != m_Sessions.end ())
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{
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}
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else
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{
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// check pending sessions if it's SessionCreated
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auto it1 = m_PendingOutgoingSessions.find (senderEndpoint);
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if (it1 != m_PendingOutgoingSessions.end ())
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{
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m_PendingOutgoingSessions.erase (it1);
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}
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else
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{
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// assume new incoming session
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}
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}
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}
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void SSU2Server::Send (const uint8_t * header, size_t headerLen, const uint8_t * headerX, size_t headerXLen,
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const uint8_t * payload, size_t payloadLen, const boost::asio::ip::udp::endpoint& to)
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{
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std::vector<boost::asio::const_buffer> bufs
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{
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boost::asio::buffer (header, headerLen),
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boost::asio::buffer (headerX, headerXLen),
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boost::asio::buffer (payload, payloadLen)
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};
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boost::system::error_code ec;
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m_Socket.send_to (bufs, to, 0, ec);
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}
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}
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}
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