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The crux of ECIES. Generate a secret from two EC keys.
At least one private key must be known, but it doesn't matter which.
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@@ -285,4 +285,39 @@ EC_KEY* CKey::GeneratePrivateDeterministicKey(const NewcoinAddress& family, cons
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return pkey;
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return pkey;
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}
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}
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static void* ecies_key_derivation(const void *input, size_t ilen, void *output, size_t *olen)
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{ // This function must not be changed as it must be what ECDH_compute_key expects
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if (*olen < SHA512_DIGEST_LENGTH)
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return NULL;
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*olen = SHA512_DIGEST_LENGTH;
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return SHA512(static_cast<const unsigned char *>(input), ilen, static_cast<unsigned char *>(output));
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}
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std::vector<unsigned char> CKey::getECIESSecret(CKey& otherKey)
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{ // Retrieve a secret generated from an EC key pair. At least one private key must be known.
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if(!pkey || !otherKey.pkey)
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throw std::runtime_error("missing key");
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EC_KEY *pubkey, *privkey;
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if(EC_KEY_get0_private_key(pkey))
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{
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privkey=pkey;
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pubkey=otherKey.pkey;
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}
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else if(EC_KEY_get0_private_key(otherKey.pkey))
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{
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privkey=otherKey.pkey;
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pubkey=pkey;
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}
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else throw std::runtime_error("no private key");
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std::vector<unsigned char> ret(SHA512_DIGEST_LENGTH);
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if (ECDH_compute_key(&(ret.front()), SHA512_DIGEST_LENGTH, EC_KEY_get0_public_key(pubkey),
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privkey, ecies_key_derivation) != SHA512_DIGEST_LENGTH)
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throw std::runtime_error("ecdh key failed");
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return ret;
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}
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// vim:ts=4
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// vim:ts=4
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