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c_src/libsodium_api_crypto_hash_sha256.c
// -*- mode: c; tab-width: 8; indent-tabs-mode: 1; st-rulers: [70] -*-
// vim: ts=8 sw=8 ft=c noet
#include "libsodium_api_crypto_hash_sha256.h"
static void LS_API_EXEC(crypto_hash_sha256, statebytes);
static void LS_API_EXEC(crypto_hash_sha256, bytes);
static int LS_API_INIT(crypto_hash_sha256, crypto_hash_sha256);
static void LS_API_EXEC(crypto_hash_sha256, crypto_hash_sha256);
static void LS_API_EXEC(crypto_hash_sha256, init);
static int LS_API_INIT(crypto_hash_sha256, update);
static void LS_API_EXEC(crypto_hash_sha256, update);
static int LS_API_INIT(crypto_hash_sha256, final);
static void LS_API_EXEC(crypto_hash_sha256, final);
libsodium_function_t libsodium_functions_crypto_hash_sha256[] = {
LS_API_R_ARG0(crypto_hash_sha256, statebytes),
LS_API_R_ARG0(crypto_hash_sha256, bytes),
LS_API_R_ARGV(crypto_hash_sha256, crypto_hash_sha256, 1),
LS_API_R_ARG0(crypto_hash_sha256, init),
LS_API_R_ARGV(crypto_hash_sha256, update, 2),
LS_API_R_ARGV(crypto_hash_sha256, final, 1),
{NULL}
};
/* crypto_hash_sha256_statebytes/0 */
static void
LS_API_EXEC(crypto_hash_sha256, statebytes)
{
size_t statebytes;
statebytes = crypto_hash_sha256_statebytes();
ErlDrvTermData spec[] = {
LS_RES_TAG(request),
ERL_DRV_UINT, (ErlDrvUInt)(statebytes),
ERL_DRV_TUPLE, 2
};
LS_RESPOND(request, spec, __FILE__, __LINE__);
}
/* crypto_hash_sha256_bytes/0 */
static void
LS_API_EXEC(crypto_hash_sha256, bytes)
{
size_t bytes;
bytes = crypto_hash_sha256_bytes();
ErlDrvTermData spec[] = {
LS_RES_TAG(request),
ERL_DRV_UINT, (ErlDrvUInt)(bytes),
ERL_DRV_TUPLE, 2
};
LS_RESPOND(request, spec, __FILE__, __LINE__);
}
/* crypto_hash_sha256_crypto_hash_sha256/1 */
typedef struct LS_API_F_ARGV(crypto_hash_sha256, crypto_hash_sha256) {
const unsigned char *in;
unsigned long long inlen;
} LS_API_F_ARGV_T(crypto_hash_sha256, crypto_hash_sha256);
static int
LS_API_INIT(crypto_hash_sha256, crypto_hash_sha256)
{
LS_API_F_ARGV_T(crypto_hash_sha256, crypto_hash_sha256) *argv;
int type;
int type_length;
ErlDrvSizeT x;
void *p;
if (ei_get_type(buffer, index, &type, &type_length) < 0
|| type != ERL_BINARY_EXT) {
return -1;
}
x = (ErlDrvSizeT)(type_length + (sizeof (LS_API_F_ARGV_T(crypto_hash_sha256, crypto_hash_sha256))));
p = (void *)(driver_alloc(x));
if (p == NULL) {
return -1;
}
argv = (LS_API_F_ARGV_T(crypto_hash_sha256, crypto_hash_sha256) *)(p);
p += (sizeof (LS_API_F_ARGV_T(crypto_hash_sha256, crypto_hash_sha256)));
argv->in = (const unsigned char *)(p);
if (ei_decode_binary(buffer, index, (void *)(argv->in), (long *)&(argv->inlen)) < 0) {
(void) driver_free(argv);
return -1;
}
request->argv = (void *)(argv);
return 0;
}
static void
LS_API_EXEC(crypto_hash_sha256, crypto_hash_sha256)
{
LS_API_F_ARGV_T(crypto_hash_sha256, crypto_hash_sha256) *argv;
LS_API_READ_ARGV(crypto_hash_sha256, crypto_hash_sha256);
size_t bytes;
unsigned char *out;
bytes = crypto_hash_sha256_bytes();
out = (unsigned char *)(driver_alloc((ErlDrvSizeT)(bytes)));
if (out == NULL) {
LS_FAIL_OOM(request->port->drv_port);
return;
}
(void) crypto_hash_sha256(out, argv->in, argv->inlen);
ErlDrvTermData spec[] = {
LS_RES_TAG(request),
ERL_DRV_BUF2BINARY, (ErlDrvTermData)(out), bytes,
ERL_DRV_TUPLE, 2
};
LS_RESPOND(request, spec, __FILE__, __LINE__);
(void) driver_free(out);
}
/* crypto_hash_sha256_init/0 */
static void
LS_API_EXEC(crypto_hash_sha256, init)
{
size_t statebytes;
crypto_hash_sha256_state *state;
statebytes = crypto_hash_sha256_statebytes();
state = (crypto_hash_sha256_state *)(sodium_malloc(statebytes));
if (state == NULL) {
LS_FAIL_OOM(request->port->drv_port);
return;
}
(void) crypto_hash_sha256_init(state);
ErlDrvTermData spec[] = {
LS_RES_TAG(request),
ERL_DRV_BUF2BINARY, (ErlDrvTermData)(char *)(state), statebytes,
ERL_DRV_TUPLE, 2
};
LS_RESPOND(request, spec, __FILE__, __LINE__);
(void) sodium_free(state);
}
/* crypto_hash_sha256_update/2 */
typedef struct LS_API_F_ARGV(crypto_hash_sha256, update) {
crypto_hash_sha256_state *state;
const unsigned char *in;
unsigned long long inlen;
} LS_API_F_ARGV_T(crypto_hash_sha256, update);
static int
LS_API_INIT(crypto_hash_sha256, update)
{
LS_API_F_ARGV_T(crypto_hash_sha256, update) *argv;
int skip;
int type;
int type_length;
size_t statebytes;
ErlDrvSizeT x;
void *p;
statebytes = crypto_hash_sha256_statebytes();
if (ei_get_type(buffer, index, &type, &type_length) < 0
|| type != ERL_BINARY_EXT
|| type_length != statebytes) {
return -1;
}
skip = *index;
if (ei_skip_term(buffer, &skip) < 0) {
return -1;
}
if (ei_get_type(buffer, &skip, &type, &type_length) < 0
|| type != ERL_BINARY_EXT) {
return -1;
}
x = (ErlDrvSizeT)(statebytes + type_length + (sizeof (LS_API_F_ARGV_T(crypto_hash_sha256, update))));
p = (void *)(driver_alloc(x));
if (p == NULL) {
return -1;
}
argv = (LS_API_F_ARGV_T(crypto_hash_sha256, update) *)(p);
p += (sizeof (LS_API_F_ARGV_T(crypto_hash_sha256, update)));
argv->state = (crypto_hash_sha256_state *)(p);
p += statebytes;
argv->in = (const unsigned char *)(p);
if (ei_decode_binary(buffer, index, (void *)(argv->state), NULL) < 0) {
(void) driver_free(argv);
return -1;
}
if (ei_decode_binary(buffer, index, (void *)(argv->in), (long *)&(argv->inlen)) < 0) {
(void) driver_free(argv);
return -1;
}
request->argv = (void *)(argv);
return 0;
}
static void
LS_API_EXEC(crypto_hash_sha256, update)
{
LS_API_F_ARGV_T(crypto_hash_sha256, update) *argv;
LS_API_READ_ARGV(crypto_hash_sha256, update);
size_t statebytes;
statebytes = crypto_hash_sha256_statebytes();
(void) crypto_hash_sha256_update(argv->state, argv->in, argv->inlen);
ErlDrvTermData spec[] = {
LS_RES_TAG(request),
ERL_DRV_BUF2BINARY, (ErlDrvTermData)(char *)(argv->state), statebytes,
ERL_DRV_TUPLE, 2
};
LS_RESPOND(request, spec, __FILE__, __LINE__);
}
/* crypto_hash_sha256_final/1 */
typedef struct LS_API_F_ARGV(crypto_hash_sha256, final) {
crypto_hash_sha256_state *state;
} LS_API_F_ARGV_T(crypto_hash_sha256, final);
static int
LS_API_INIT(crypto_hash_sha256, final)
{
LS_API_F_ARGV_T(crypto_hash_sha256, final) *argv;
int type;
int type_length;
size_t statebytes;
ErlDrvSizeT x;
void *p;
statebytes = crypto_hash_sha256_statebytes();
if (ei_get_type(buffer, index, &type, &type_length) < 0
|| type != ERL_BINARY_EXT
|| type_length != statebytes) {
return -1;
}
x = (ErlDrvSizeT)(statebytes + (sizeof (LS_API_F_ARGV_T(crypto_hash_sha256, final))));
p = (void *)(driver_alloc(x));
if (p == NULL) {
return -1;
}
argv = (LS_API_F_ARGV_T(crypto_hash_sha256, final) *)(p);
p += (sizeof (LS_API_F_ARGV_T(crypto_hash_sha256, final)));
argv->state = (crypto_hash_sha256_state *)(p);
if (ei_decode_binary(buffer, index, (void *)(argv->state), NULL) < 0) {
(void) driver_free(argv);
return -1;
}
request->argv = (void *)(argv);
return 0;
}
static void
LS_API_EXEC(crypto_hash_sha256, final)
{
LS_API_F_ARGV_T(crypto_hash_sha256, final) *argv;
LS_API_READ_ARGV(crypto_hash_sha256, final);
size_t bytes;
unsigned char *out;
bytes = crypto_hash_sha256_bytes();
out = (unsigned char *)(driver_alloc((ErlDrvSizeT)(bytes)));
if (out == NULL) {
LS_FAIL_OOM(request->port->drv_port);
return;
}
(void) crypto_hash_sha256_final(argv->state, out);
ErlDrvTermData spec[] = {
LS_RES_TAG(request),
ERL_DRV_BUF2BINARY, (ErlDrvTermData)(out), bytes,
ERL_DRV_TUPLE, 2
};
LS_RESPOND(request, spec, __FILE__, __LINE__);
}