}
/** Encrypt <b>len</b> bytes on <b>from</b> using the cipher in <b>env</b>;
- * on success, return 0. Does not check for failure.
+ * on success. Does not check for failure.
*/
-int
+void
crypto_cipher_crypt_inplace(crypto_cipher_t *env, char *buf, size_t len)
{
tor_assert(len < SIZE_T_CEILING);
aes_crypt_inplace(env->cipher, buf, len);
- return 0;
}
/** Encrypt <b>fromlen</b> bytes (at least 1) from <b>from</b> with the key in
const char *from, size_t fromlen);
int crypto_cipher_decrypt(crypto_cipher_t *env, char *to,
const char *from, size_t fromlen);
-int crypto_cipher_crypt_inplace(crypto_cipher_t *env, char *d, size_t len);
+void crypto_cipher_crypt_inplace(crypto_cipher_t *env, char *d, size_t len);
int crypto_cipher_encrypt_with_iv(const char *key,
char *to, size_t tolen,
*
* If <b>encrypt_mode</b> is 1 then encrypt, else decrypt.
*
- * Return -1 if the crypto fails, else return 0.
+ * Returns 0.
*/
static int
relay_crypt_one_payload(crypto_cipher_t *cipher, uint8_t *in,
int encrypt_mode)
{
- int r;
(void)encrypt_mode;
- r = crypto_cipher_crypt_inplace(cipher, (char*) in, CELL_PAYLOAD_SIZE);
+ crypto_cipher_crypt_inplace(cipher, (char*) in, CELL_PAYLOAD_SIZE);
- if (r) {
- log_warn(LD_BUG,"Error during relay encryption");
- return -1;
- }
return 0;
}