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@ -49,21 +49,29 @@ namespace data
@@ -49,21 +49,29 @@ namespace data
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IdentityEx::IdentityEx(const uint8_t * publicKey, const uint8_t * signingKey, SigningKeyType type, CryptoKeyType cryptoType) |
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{ |
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uint8_t randomPaddingBlock[32]; |
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RAND_bytes (randomPaddingBlock, 32); |
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/*uint8_t randomPaddingBlock[32];
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RAND_bytes (randomPaddingBlock, 32);*/ |
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if (cryptoType == CRYPTO_KEY_TYPE_ECIES_X25519_AEAD) |
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{ |
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memcpy (m_StandardIdentity.publicKey, publicKey ? publicKey : randomPaddingBlock, 32); |
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/*memcpy (m_StandardIdentity.publicKey, publicKey ? publicKey : randomPaddingBlock, 32);
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for (int i = 0; i < 7; i++) // 224 bytes
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memcpy (m_StandardIdentity.publicKey + 32*(i + 1), randomPaddingBlock, 32); |
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memcpy (m_StandardIdentity.publicKey + 32*(i + 1), randomPaddingBlock, 32);*/ |
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if (publicKey) |
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{ |
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memcpy (m_StandardIdentity.publicKey, publicKey, 32); |
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RAND_bytes (m_StandardIdentity.publicKey + 32, 224); |
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} |
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else |
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RAND_bytes (m_StandardIdentity.publicKey, 256); |
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} |
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else |
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{ |
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if (publicKey) |
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memcpy (m_StandardIdentity.publicKey, publicKey, 256); |
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else |
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for (int i = 0; i < 8; i++) // 256 bytes
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memcpy (m_StandardIdentity.publicKey + 32*i, randomPaddingBlock, 32); |
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RAND_bytes (m_StandardIdentity.publicKey, 256); |
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/*for (int i = 0; i < 8; i++) // 256 bytes
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memcpy (m_StandardIdentity.publicKey + 32*i, randomPaddingBlock, 32);*/ |
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} |
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if (type != SIGNING_KEY_TYPE_DSA_SHA1) |
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{ |
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@ -102,8 +110,9 @@ namespace data
@@ -102,8 +110,9 @@ namespace data
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case SIGNING_KEY_TYPE_REDDSA_SHA512_ED25519: |
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{ |
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size_t padding = 128 - i2p::crypto::EDDSA25519_PUBLIC_KEY_LENGTH; // 96 = 128 - 32
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for (int i = 0; i < 3; i++) // 96 bytes
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memcpy (m_StandardIdentity.signingKey + 32*i, randomPaddingBlock, 32); |
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/*for (int i = 0; i < 3; i++) // 96 bytes
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memcpy (m_StandardIdentity.signingKey + 32*i, randomPaddingBlock, 32);*/ |
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RAND_bytes (m_StandardIdentity.signingKey, 96); |
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memcpy (m_StandardIdentity.signingKey + padding, signingKey, i2p::crypto::EDDSA25519_PUBLIC_KEY_LENGTH); |
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break; |
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} |
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