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@ -1351,46 +1351,6 @@ namespace transport |
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SendSessionRequest (token); |
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SendSessionRequest (token); |
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return true; |
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return true; |
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} |
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} |
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void SSU2Session::SendHolePunch (uint32_t nonce, const boost::asio::ip::udp::endpoint& ep, |
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const uint8_t * introKey, uint64_t token) |
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{ |
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// we are Charlie
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LogPrint (eLogDebug, "SSU2: Sending HolePunch to ", ep); |
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Header header; |
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uint8_t h[32], payload[SSU2_MAX_PACKET_SIZE]; |
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// fill packet
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header.h.connID = htobe64 (((uint64_t)nonce << 32) | nonce); // dest id
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RAND_bytes (header.buf + 8, 4); // random packet num
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header.h.type = eSSU2HolePunch; |
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header.h.flags[0] = 2; // ver
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header.h.flags[1] = (uint8_t)i2p::context.GetNetID (); // netID
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header.h.flags[2] = 0; // flag
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memcpy (h, header.buf, 16); |
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uint64_t c = ~header.h.connID; |
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memcpy (h + 16, &c, 8); // source id
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RAND_bytes (h + 24, 8); // token
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// payload
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payload[0] = eSSU2BlkDateTime; |
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htobe16buf (payload + 1, 4); |
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htobe32buf (payload + 3, (i2p::util::GetMillisecondsSinceEpoch () + 500)/1000); |
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size_t payloadSize = 7; |
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payloadSize += CreateAddressBlock (payload + payloadSize, m_MaxPayloadSize - payloadSize, ep); |
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payloadSize += CreateRelayResponseBlock (payload + payloadSize, m_MaxPayloadSize - payloadSize, |
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eSSU2RelayResponseCodeAccept, nonce, token, ep.address ().is_v4 ()); |
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payloadSize += CreatePaddingBlock (payload + payloadSize, m_MaxPayloadSize - payloadSize); |
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// encrypt
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uint8_t n[12]; |
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CreateNonce (be32toh (header.h.packetNum), n); |
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i2p::crypto::AEADChaCha20Poly1305 (payload, payloadSize, h, 32, introKey, n, payload, payloadSize + 16, true); |
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payloadSize += 16; |
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header.ll[0] ^= CreateHeaderMask (introKey, payload + (payloadSize - 24)); |
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header.ll[1] ^= CreateHeaderMask (introKey, payload + (payloadSize - 12)); |
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memset (n, 0, 12); |
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i2p::crypto::ChaCha20 (h + 16, 16, introKey, n, h + 16); |
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// send
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m_Server.Send (header.buf, 16, h + 16, 16, payload, payloadSize, ep); |
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} |
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bool SSU2Session::ProcessHolePunch (uint8_t * buf, size_t len) |
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bool SSU2Session::ProcessHolePunch (uint8_t * buf, size_t len) |
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{ |
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{ |
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@ -1985,8 +1945,8 @@ namespace transport |
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{ |
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{ |
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// we are Charlie
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// we are Charlie
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SSU2RelayResponseCode code = eSSU2RelayResponseCodeAccept; |
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SSU2RelayResponseCode code = eSSU2RelayResponseCodeAccept; |
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uint64_t token = 0; |
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boost::asio::ip::udp::endpoint ep; |
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bool isV4 = false; |
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std::shared_ptr<const i2p::data::RouterInfo::Address> addr; |
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auto r = i2p::data::netdb.FindRouter (buf + 1); // Alice
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auto r = i2p::data::netdb.FindRouter (buf + 1); // Alice
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if (r) |
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if (r) |
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{ |
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{ |
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@ -1999,31 +1959,29 @@ namespace transport |
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s.Insert (buf + 47, asz); // Alice Port, Alice IP
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s.Insert (buf + 47, asz); // Alice Port, Alice IP
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if (s.Verify (r->GetIdentity (), buf + 47 + asz)) |
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if (s.Verify (r->GetIdentity (), buf + 47 + asz)) |
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{ |
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{ |
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// send HolePunch
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// obtain and check endpoint and address for HolePunch
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boost::asio::ip::udp::endpoint ep; |
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if (ExtractEndpoint (buf + 47, asz, ep)) |
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if (ExtractEndpoint (buf + 47, asz, ep)) |
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{ |
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{ |
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std::shared_ptr<const i2p::data::RouterInfo::Address> addr; |
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if (!ep.address ().is_unspecified () && ep.port ()) |
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if (!ep.address ().is_unspecified () && ep.port ()) |
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addr = ep.address ().is_v6 () ? r->GetSSU2V6Address () : r->GetSSU2V4Address (); |
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if (addr) |
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{ |
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{ |
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if (m_Server.IsSupported (ep.address ())) |
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if (m_Server.IsSupported (ep.address ())) |
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{ |
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{ |
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token = m_Server.GetIncomingToken (ep); |
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addr = ep.address ().is_v6 () ? r->GetSSU2V6Address () : r->GetSSU2V4Address (); |
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isV4 = ep.address ().is_v4 (); |
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if (!addr) |
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SendHolePunch (bufbe32toh (buf + 33), ep, addr->i, token); |
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{ |
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m_Server.AddConnectedRecently (ep, i2p::util::GetSecondsSinceEpoch ()); |
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LogPrint (eLogWarning, "SSU2: RelayIntro address for endpoint not found"); |
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code = eSSU2RelayResponseCodeCharlieAliceIsUnknown; |
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} |
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} |
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} |
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else |
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else |
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{ |
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{ |
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LogPrint (eLogWarning, "SSU2: RelayIntro unsupported address"); |
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LogPrint (eLogWarning, "SSU2: RelayIntro unsupported address"); |
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code = eSSU2RelayResponseCodeCharlieUnsupportedAddress; |
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code = eSSU2RelayResponseCodeCharlieUnsupportedAddress; |
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} |
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} |
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} |
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} |
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else |
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else |
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{ |
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{ |
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LogPrint (eLogWarning, "SSU2: RelayIntro unknown address"); |
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LogPrint (eLogWarning, "SSU2: RelayIntro invalid endpoint"); |
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code = eSSU2RelayResponseCodeCharlieAliceIsUnknown; |
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code = eSSU2RelayResponseCodeCharlieAliceIsUnknown; |
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} |
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} |
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} |
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} |
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@ -2059,8 +2017,16 @@ namespace transport |
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} |
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} |
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// send relay response to Bob
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// send relay response to Bob
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auto packet = m_Server.GetSentPacketsPool ().AcquireShared (); |
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auto packet = m_Server.GetSentPacketsPool ().AcquireShared (); |
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uint32_t nonce = bufbe32toh (buf + 33); |
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packet->payloadSize = CreateRelayResponseBlock (packet->payload, m_MaxPayloadSize, |
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packet->payloadSize = CreateRelayResponseBlock (packet->payload, m_MaxPayloadSize, |
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code, bufbe32toh (buf + 33), token, isV4); |
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code, nonce, m_Server.GetIncomingToken (ep), ep.address ().is_v4 ()); |
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if (code == eSSU2RelayResponseCodeAccept && addr) |
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{ |
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// send HolePunch
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auto holePunchSession = std::make_shared<SSU2HolePunchSession>(m_Server, nonce, ep, addr); |
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m_Server.AddSession (holePunchSession); |
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holePunchSession->SendHolePunch (packet->payload, packet->payloadSize); // relay response block
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} |
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packet->payloadSize += CreatePaddingBlock (packet->payload + packet->payloadSize, m_MaxPayloadSize - packet->payloadSize); |
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packet->payloadSize += CreatePaddingBlock (packet->payload + packet->payloadSize, m_MaxPayloadSize - packet->payloadSize); |
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/*uint32_t packetNum = */SendData (packet->payload, packet->payloadSize); |
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/*uint32_t packetNum = */SendData (packet->payload, packet->payloadSize); |
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// sometimes Bob doesn't ack this RelayResponse
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// sometimes Bob doesn't ack this RelayResponse
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