crypto_poly1305(input+i, input + 16, POLY1305_BLOCK_SIZE, key);
status |= memcmp(mac, input + i, 16);
}
- printf("%s: Poly1305 (overlaping i/o)\n", status != 0 ? "FAILED" : "OK");
+ printf("%s: Poly1305 (overlapping i/o)\n", status != 0 ? "FAILED" : "OK");
return status;
}
crypto_blake2b(input+i, input + 64, BLAKE2B_BLOCK_SIZE);
status |= memcmp(hash, input + i, 64);
}
- printf("%s: Blake2b (overlaping i/o)\n", status != 0 ? "FAILED" : "OK");
+ printf("%s: Blake2b (overlapping i/o)\n", status != 0 ? "FAILED" : "OK");
return status;
}
crypto_sha512(input+i, input + 64, SHA_512_BLOCK_SIZE);
status |= memcmp(hash, input + i, 64);
}
- printf("%s: Sha512 (overlaping i/o)\n", status != 0 ? "FAILED" : "OK");
+ printf("%s: Sha512 (overlapping i/o)\n", status != 0 ? "FAILED" : "OK");
return status;
}
crypto_hmac_sha512(input+i, key, 32, input + 64, SHA_512_BLOCK_SIZE);
status |= memcmp(hash, input + i, 64);
}
- printf("%s: HMAC SHA-512 (overlaping i/o)\n", status != 0 ? "FAILED" : "OK");
+ printf("%s: HMAC SHA-512 (overlapping i/o)\n", status != 0 ? "FAILED" : "OK");
return status;
}
}
free(work_area);
free(clean_work_area);
- printf("%s: Argon2i (overlaping i/o)\n", status != 0 ? "FAILED" : "OK");
+ printf("%s: Argon2i (overlapping i/o)\n", status != 0 ? "FAILED" : "OK");
return status;
}
crypto_x25519(seperate, sk, pk);
status |= memcmp(seperate, overlapping + i, 32);
}
- printf("%s: x25519 (overlaping i/o)\n", status != 0 ? "FAILED" : "OK");
+ printf("%s: x25519 (overlapping i/o)\n", status != 0 ? "FAILED" : "OK");
return status;
}
crypto_key_exchange(seperate, sk, pk);
status |= memcmp(seperate, overlapping + i, 32);
}
- printf("%s: key_exchange (overlaping i/o)\n", status != 0 ? "FAILED" : "OK");
+ printf("%s: key_exchange (overlapping i/o)\n", status != 0 ? "FAILED" : "OK");
return status;
}