u32 kappa[ANUBIS_MAX_N];
u32 inter[ANUBIS_MAX_N];
- switch (key_len)
- {
+ switch (key_len) {
case 16: case 20: case 24: case 28:
case 32: case 36: case 40:
break;
default:
*flags |= CRYPTO_TFM_RES_BAD_KEY_LEN;
- return - EINVAL;
+ return -EINVAL;
}
ctx->key_len = key_len * 8;
/*
* compute kappa^{r+1} from kappa^r:
*/
- if (r == R) {
+ if (r == R)
break;
- }
for (i = 0; i < N; i++) {
int j = i;
inter[i] = T0[(kappa[j--] >> 24) ];
- if (j < 0) j = N - 1;
+ if (j < 0)
+ j = N - 1;
inter[i] ^= T1[(kappa[j--] >> 16) & 0xff];
- if (j < 0) j = N - 1;
+ if (j < 0)
+ j = N - 1;
inter[i] ^= T2[(kappa[j--] >> 8) & 0xff];
- if (j < 0) j = N - 1;
+ if (j < 0)
+ j = N - 1;
inter[i] ^= T3[(kappa[j ] ) & 0xff];
}
kappa[0] = inter[0] ^ rc[r];
- for (i = 1; i < N; i++) {
+ for (i = 1; i < N; i++)
kappa[i] = inter[i];
- }
}
/*
static int __init anubis_mod_init(void)
{
int ret = 0;
-
+
ret = crypto_register_alg(&anubis_alg);
return ret;
}