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@ -55,12 +55,18 @@ namespace client
@@ -55,12 +55,18 @@ namespace client
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void I2CPDestination::SetEncryptionPrivateKey (const uint8_t * key) |
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{ |
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memcpy (m_EncryptionPrivateKey, key, 256); |
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m_Decryptor = i2p::data::PrivateKeys::CreateDecryptor (m_Identity->GetCryptoKeyType (), m_EncryptionPrivateKey); |
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m_Decryptor = i2p::data::PrivateKeys::CreateDecryptor (m_Identity->GetCryptoKeyType (), key); |
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} |
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void I2CPDestination::SetECIESx25519EncryptionPrivateKey (const uint8_t * key) |
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{ |
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m_ECIESx25519Decryptor = std::make_shared<i2p::crypto::ECIESX25519AEADRatchetDecryptor>(key, true); // calculate public
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} |
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bool I2CPDestination::Decrypt (const uint8_t * encrypted, uint8_t * data, BN_CTX * ctx, i2p::data::CryptoKeyType preferredCrypto) const |
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{ |
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if (preferredCrypto == i2p::data::CRYPTO_KEY_TYPE_ECIES_X25519_AEAD_RATCHET && m_ECIESx25519Decryptor) |
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return m_ECIESx25519Decryptor->Decrypt (encrypted, data, ctx, true); |
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if (m_Decryptor) |
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return m_Decryptor->Decrypt (encrypted, data, ctx, true); |
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else |
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@ -68,6 +74,19 @@ namespace client
@@ -68,6 +74,19 @@ namespace client
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return false; |
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} |
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const uint8_t * I2CPDestination::GetEncryptionPublicKey (i2p::data::CryptoKeyType keyType) const |
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{ |
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if (keyType == i2p::data::CRYPTO_KEY_TYPE_ECIES_X25519_AEAD_RATCHET && m_ECIESx25519Decryptor) |
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return m_ECIESx25519Decryptor->GetPubicKey (); |
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return nullptr; |
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} |
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bool I2CPDestination::SupportsEncryptionType (i2p::data::CryptoKeyType keyType) const |
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{ |
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return keyType == i2p::data::CRYPTO_KEY_TYPE_ECIES_X25519_AEAD_RATCHET ? (bool)m_ECIESx25519Decryptor : m_EncryptionKeyType == keyType; |
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} |
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void I2CPDestination::HandleDataMessage (const uint8_t * buf, size_t len) |
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{ |
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uint32_t length = bufbe32toh (buf); |
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@ -77,7 +96,8 @@ namespace client
@@ -77,7 +96,8 @@ namespace client
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void I2CPDestination::CreateNewLeaseSet (std::vector<std::shared_ptr<i2p::tunnel::InboundTunnel> > tunnels) |
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{ |
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i2p::data::LocalLeaseSet ls (m_Identity, m_EncryptionPrivateKey, tunnels); // we don't care about encryption key
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uint8_t priv[256] = {0}; |
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i2p::data::LocalLeaseSet ls (m_Identity, priv, tunnels); // we don't care about encryption key, we need leases only
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m_LeaseSetExpirationTime = ls.GetExpirationTime (); |
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uint8_t * leases = ls.GetLeases (); |
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leases[-1] = tunnels.size (); |
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@ -572,28 +592,22 @@ namespace client
@@ -572,28 +592,22 @@ namespace client
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offset += ls.GetBufferLen (); |
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// private keys
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int numPrivateKeys = buf[offset]; offset++; |
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uint16_t currentKeyType = 0; |
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const uint8_t * currentKey = nullptr; |
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for (int i = 0; i < numPrivateKeys; i++) |
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{ |
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if (offset + 4 > len) return; |
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uint16_t keyType = bufbe16toh (buf + offset); offset += 2; // encryption type
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uint16_t keyLen = bufbe16toh (buf + offset); offset += 2; // private key length
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if (offset + keyLen > len) return; |
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if (!currentKey || keyType > currentKeyType) |
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if (keyType == i2p::data::CRYPTO_KEY_TYPE_ECIES_X25519_AEAD_RATCHET) |
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m_Destination->SetECIESx25519EncryptionPrivateKey (buf + offset); |
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else |
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{ |
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currentKeyType = keyType; |
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currentKey = buf + offset; |
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m_Destination->SetEncryptionType (keyType); |
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m_Destination->SetEncryptionPrivateKey (buf + offset); |
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} |
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offset += keyLen; |
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} |
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// TODO: support multiple keys
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if (currentKey) |
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{ |
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m_Destination->SetEncryptionPrivateKey (currentKey); |
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m_Destination->SetEncryptionType (currentKeyType); |
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} |
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m_Destination->LeaseSet2Created (storeType, ls.GetBuffer (), ls.GetBufferLen ()); |
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} |
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} |
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