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-rw-r--r--crypto/ecc.h41
1 files changed, 25 insertions, 16 deletions
diff --git a/crypto/ecc.h b/crypto/ecc.h
index 663d598c7406..e4fd4492c765 100644
--- a/crypto/ecc.h
+++ b/crypto/ecc.h
@@ -34,41 +34,51 @@
* ecc_is_key_valid() - Validate a given ECDH private key
*
* @curve_id: id representing the curve to use
- * @ndigits: curve number of digits
+ * @ndigits: curve's number of digits
* @private_key: private key to be used for the given curve
- * @private_key_len: private key len
+ * @private_key_len: private key length
*
* Returns 0 if the key is acceptable, a negative value otherwise
*/
int ecc_is_key_valid(unsigned int curve_id, unsigned int ndigits,
- const u8 *private_key, unsigned int private_key_len);
+ const u64 *private_key, unsigned int private_key_len);
+
+/**
+ * ecc_gen_privkey() - Generates an ECC private key.
+ * The private key is a random integer in the range 0 < random < n, where n is a
+ * prime that is the order of the cyclic subgroup generated by the distinguished
+ * point G.
+ * @curve_id: id representing the curve to use
+ * @ndigits: curve number of digits
+ * @private_key: buffer for storing the generated private key
+ *
+ * Returns 0 if the private key was generated successfully, a negative value
+ * if an error occurred.
+ */
+int ecc_gen_privkey(unsigned int curve_id, unsigned int ndigits, u64 *privkey);
/**
- * ecdh_make_pub_key() - Compute an ECC public key
+ * ecc_make_pub_key() - Compute an ECC public key
*
* @curve_id: id representing the curve to use
+ * @ndigits: curve's number of digits
* @private_key: pregenerated private key for the given curve
- * @private_key_len: length of private_key
- * @public_key: buffer for storing the public key generated
- * @public_key_len: length of the public_key buffer
+ * @public_key: buffer for storing the generated public key
*
* Returns 0 if the public key was generated successfully, a negative value
* if an error occurred.
*/
-int ecdh_make_pub_key(const unsigned int curve_id, unsigned int ndigits,
- const u8 *private_key, unsigned int private_key_len,
- u8 *public_key, unsigned int public_key_len);
+int ecc_make_pub_key(const unsigned int curve_id, unsigned int ndigits,
+ const u64 *private_key, u64 *public_key);
/**
* crypto_ecdh_shared_secret() - Compute a shared secret
*
* @curve_id: id representing the curve to use
+ * @ndigits: curve's number of digits
* @private_key: private key of part A
- * @private_key_len: length of private_key
* @public_key: public key of counterpart B
- * @public_key_len: length of public_key
* @secret: buffer for storing the calculated shared secret
- * @secret_len: length of the secret buffer
*
* Note: It is recommended that you hash the result of crypto_ecdh_shared_secret
* before using it for symmetric encryption or HMAC.
@@ -77,7 +87,6 @@ int ecdh_make_pub_key(const unsigned int curve_id, unsigned int ndigits,
* if an error occurred.
*/
int crypto_ecdh_shared_secret(unsigned int curve_id, unsigned int ndigits,
- const u8 *private_key, unsigned int private_key_len,
- const u8 *public_key, unsigned int public_key_len,
- u8 *secret, unsigned int secret_len);
+ const u64 *private_key, const u64 *public_key,
+ u64 *secret);
#endif