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TLS / SSL OpenSSL-based native driver for Erlang / Elixir
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c_src/p1_sha.c
/*
* Copyright (C) 2002-2016 ProcessOne, SARL. All Rights Reserved.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
*/
#include <erl_nif.h>
#include <string.h>
#include <stdio.h>
#include <openssl/sha.h>
#define SHA1_T 1
#define SHA224_T 224
#define SHA256_T 256
#define SHA384_T 384
#define SHA512_T 512
static int load(ErlNifEnv* env, void** priv, ERL_NIF_TERM load_info)
{
return 0;
}
static int convert(ErlNifEnv* env, int argc,
const ERL_NIF_TERM argv[],
int type, ErlNifBinary *out)
{
ErlNifBinary in;
int res = 0;
if (argc == 1) {
if (enif_inspect_iolist_as_binary(env, argv[0], &in)) {
switch (type) {
case SHA1_T:
res = enif_alloc_binary(SHA_DIGEST_LENGTH, out);
if (res) SHA1(in.data, in.size, out->data);
break;
case SHA224_T:
res = enif_alloc_binary(SHA224_DIGEST_LENGTH, out);
if (res) SHA224(in.data, in.size, out->data);
break;
case SHA256_T:
res = enif_alloc_binary(SHA256_DIGEST_LENGTH, out);
if (res) SHA256(in.data, in.size, out->data);
break;
case SHA384_T:
res = enif_alloc_binary(SHA384_DIGEST_LENGTH, out);
if (res) SHA384(in.data, in.size, out->data);
break;
case SHA512_T:
res = enif_alloc_binary(SHA512_DIGEST_LENGTH, out);
if (res) SHA512(in.data, in.size, out->data);
break;
}
}
}
return res;
}
static ERL_NIF_TERM sha1(ErlNifEnv* env, int argc,
const ERL_NIF_TERM argv[])
{
ErlNifBinary out;
if (convert(env, argc, argv, SHA1_T, &out))
return enif_make_binary(env, &out);
else
return enif_make_badarg(env);
}
static ERL_NIF_TERM sha224(ErlNifEnv* env, int argc,
const ERL_NIF_TERM argv[])
{
ErlNifBinary out;
if (convert(env, argc, argv, SHA224_T, &out))
return enif_make_binary(env, &out);
else
return enif_make_badarg(env);
}
static ERL_NIF_TERM sha256(ErlNifEnv* env, int argc,
const ERL_NIF_TERM argv[])
{
ErlNifBinary out;
if (convert(env, argc, argv, SHA256_T, &out))
return enif_make_binary(env, &out);
else
return enif_make_badarg(env);
}
static ERL_NIF_TERM sha384(ErlNifEnv* env, int argc,
const ERL_NIF_TERM argv[])
{
ErlNifBinary out;
if (convert(env, argc, argv, SHA384_T, &out))
return enif_make_binary(env, &out);
else
return enif_make_badarg(env);
}
static ERL_NIF_TERM sha512(ErlNifEnv* env, int argc,
const ERL_NIF_TERM argv[])
{
ErlNifBinary out;
if (convert(env, argc, argv, SHA512_T, &out))
return enif_make_binary(env, &out);
else
return enif_make_badarg(env);
}
static ERL_NIF_TERM to_hexlist(ErlNifEnv* env, int argc,
const ERL_NIF_TERM argv[])
{
ErlNifBinary in;
ErlNifBinary out;
int res, i;
if (argc == 1) {
if (enif_inspect_iolist_as_binary(env, argv[0], &in)) {
res = enif_alloc_binary(2*in.size, &out);
if (res) {
for (i = 0; i<in.size; i++) {
sprintf((char *) (out.data + 2*i), "%02x", in.data[i]);
}
return enif_make_binary(env, &out);
}
}
}
return enif_make_badarg(env);
}
static ErlNifFunc nif_funcs[] =
{
{"sha1", 1, sha1},
{"sha224", 1, sha224},
{"sha256", 1, sha256},
{"sha384", 1, sha384},
{"sha512", 1, sha512},
{"to_hexlist", 1, to_hexlist}
};
ERL_NIF_INIT(p1_sha, nif_funcs, load, NULL, NULL, NULL)