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@ -1,4 +1,6 @@ |
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#include <openssl/rand.h> |
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#include <openssl/rand.h> |
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#include <openssl/sha.h> |
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#include <openssl/hmac.h> |
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#include "Crypto.h" |
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#include "Crypto.h" |
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#include "Ed25519.h" |
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#include "Ed25519.h" |
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#include "ChaCha20.h" |
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#include "ChaCha20.h" |
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@ -18,6 +20,35 @@ namespace transport |
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{ |
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{ |
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} |
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} |
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bool NTCP2Session::KeyDerivationFunction (const uint8_t * rs, const uint8_t * pub, uint8_t * derived) |
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{ |
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static const char protocolName[] = "Noise_XK_25519_ChaChaPoly_SHA256"; // 32 bytes
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uint8_t h[64], ck[33]; |
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SHA256 ((const uint8_t *)protocolName, 32, h); |
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memcpy (ck, h, 32); |
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// h = SHA256(h || rs)
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memcpy (h + 32, rs, 32); |
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SHA256 (h, 64, h); |
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// h = SHA256(h || pub)
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memcpy (h + 32, pub, 32); |
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SHA256 (h, 64, h); |
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// x25519 between rs and priv
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uint8_t inputKeyMaterial[32]; |
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BN_CTX * ctx = BN_CTX_new (); |
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i2p::crypto::GetEd25519 ()->Mul (rs, m_ExpandedPrivateKey, inputKeyMaterial, ctx); // rs*priv
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BN_CTX_free (ctx); |
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// temp_key = HMAC-SHA256(ck, input_key_material)
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uint8_t tempKey[32]; unsigned int len; |
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HMAC(EVP_sha256(), ck, 32, inputKeyMaterial, 32, tempKey, &len); |
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// ck = HMAC-SHA256(temp_key, byte(0x01))
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inputKeyMaterial[0] = 1; |
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HMAC(EVP_sha256(), tempKey, 32, inputKeyMaterial, 1, ck, &len); |
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// derived = HMAC-SHA256(temp_key, ck || byte(0x02))
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ck[32] = 2; |
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HMAC(EVP_sha256(), tempKey, 32, ck, 33, derived, &len); |
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return true; |
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} |
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void NTCP2Session::CreateEphemeralKey (uint8_t * pub) |
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void NTCP2Session::CreateEphemeralKey (uint8_t * pub) |
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{ |
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{ |
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uint8_t key[32]; |
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uint8_t key[32]; |
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