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@ -15,7 +15,8 @@ namespace transport
@@ -15,7 +15,8 @@ namespace transport
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{ |
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SSU2Session::SSU2Session (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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TransportSession (in_RemoteRouter, SSU2_TERMINATION_TIMEOUT), |
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m_Address (addr) |
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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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@ -28,5 +29,38 @@ namespace transport
@@ -28,5 +29,38 @@ namespace transport
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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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uint8_t packet[1200]; // TODO: correct packet size
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size_t packetSize = 64; |
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// fill packet
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memcpy (packet + 32, m_EphemeralKeys->GetPublicKey (), 32); // X
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// encrypt
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CreateHeaderMask (m_Address->i, packet + (packetSize - 24), m_Address->i, packet + (packetSize - 12)); |
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EncryptHeader (*(i2p::crypto::ChipherBlock *)packet); |
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uint8_t nonce[12] = {0}; |
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i2p::crypto::ChaCha20 (packet + 16, 48, m_Address->i, nonce, packet + 16); |
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i2p::crypto::AEADChaCha20Poly1305 (packet + 64, packetSize - 64, m_NoiseState->m_H, 32, m_NoiseState->m_CK, nonce, packet + 64, packetSize - 48, true); |
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} |
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void SSU2Session::EncryptHeader (i2p::crypto::ChipherBlock& header) |
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{ |
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header ^= m_HeaderMask; |
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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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} |
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} |
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