/* SPDX-License-Identifier: BSD-2-Clause */ /* * Copyright (c) 2013, Kenneth MacKay * All rights reserved. * */ #include #include /* Create a public key from a private key. * * Inputs: * private_key - Your private key. * * Outputs: * public_key - Will be filled in with the public key. * * Returns true if the public key was generated successfully, false * if an error occurred. The keys are with the LSB first. */ bool ecc_make_public_key(const uint8_t private_key[32], uint8_t public_key[64]); /* Create a public/private key pair. * * Outputs: * public_key - Will be filled in with the public key. * private_key - Will be filled in with the private key. * * Returns true if the key pair was generated successfully, false * if an error occurred. The keys are with the LSB first. */ bool ecc_make_key(uint8_t public_key[64], uint8_t private_key[32]); /* Check to see if a public key is valid. * * Inputs: * public_key - The public key to check. * * Returns true if the public key is valid, false if it is invalid. */ bool ecc_valid_public_key(const uint8_t public_key[64]); /* Compute a shared secret given your secret key and someone else's * public key. * Note: It is recommended that you hash the result of ecdh_shared_secret * before using it for symmetric encryption or HMAC. * * Inputs: * public_key - The public key of the remote party. * private_key - Your private key. * * Outputs: * secret - Will be filled in with the shared secret value. * * Returns true if the shared secret was generated successfully, false * if an error occurred. Both input and output parameters are with the * LSB first. */ bool ecdh_shared_secret(const uint8_t public_key[64], const uint8_t private_key[32], uint8_t secret[32]);