#include "config.h"
#include "libssh/crypto.h"
#include "libssh/wrapper.h"
#include <gcrypt.h>
SHACTX
sha1_init(void)
{
SHACTX ctx = NULL;
gcry_md_open(&ctx, GCRY_MD_SHA1, 0);
return ctx;
}
int
sha1_update(SHACTX c, const void *data, size_t len)
{
gcry_md_write(c, data, len);
return SSH_OK;
}
void
sha1_ctx_free(SHACTX c)
{
gcry_md_close(c);
}
int
sha1_final(unsigned char *md, SHACTX c)
{
unsigned char *tmp = NULL;
gcry_md_final(c);
tmp = gcry_md_read(c, 0);
if (tmp == NULL) {
gcry_md_close(c);
return SSH_ERROR;
}
memcpy(md, tmp, SHA_DIGEST_LEN);
gcry_md_close(c);
return SSH_OK;
}
int
sha1(const unsigned char *digest, size_t len, unsigned char *hash)
{
gcry_md_hash_buffer(GCRY_MD_SHA1, hash, digest, len);
return SSH_OK;
}
SHA256CTX
sha256_init(void)
{
SHA256CTX ctx = NULL;
gcry_md_open(&ctx, GCRY_MD_SHA256, 0);
return ctx;
}
void
sha256_ctx_free(SHA256CTX c)
{
gcry_md_close(c);
}
int
sha256_update(SHACTX c, const void *data, size_t len)
{
gcry_md_write(c, data, len);
return SSH_OK;
}
int
sha256_final(unsigned char *md, SHACTX c)
{
unsigned char *tmp = NULL;
gcry_md_final(c);
tmp = gcry_md_read(c, 0);
if (tmp == NULL) {
gcry_md_close(c);
return SSH_ERROR;
}
memcpy(md, tmp, SHA256_DIGEST_LEN);
gcry_md_close(c);
return SSH_OK;
}
int
sha256(const unsigned char *digest, size_t len, unsigned char *hash)
{
gcry_md_hash_buffer(GCRY_MD_SHA256, hash, digest, len);
return SSH_OK;
}
SHA384CTX
sha384_init(void)
{
SHA384CTX ctx = NULL;
gcry_md_open(&ctx, GCRY_MD_SHA384, 0);
return ctx;
}
void
sha384_ctx_free(SHA384CTX c)
{
gcry_md_close(c);
}
int
sha384_update(SHACTX c, const void *data, size_t len)
{
gcry_md_write(c, data, len);
return SSH_OK;
}
int
sha384_final(unsigned char *md, SHACTX c)
{
unsigned char *tmp = NULL;
gcry_md_final(c);
tmp = gcry_md_read(c, 0);
if (tmp == NULL) {
gcry_md_close(c);
return SSH_ERROR;
}
memcpy(md, tmp, SHA384_DIGEST_LEN);
gcry_md_close(c);
return SSH_OK;
}
int
sha384(const unsigned char *digest, size_t len, unsigned char *hash)
{
gcry_md_hash_buffer(GCRY_MD_SHA384, hash, digest, len);
return SSH_OK;
}
SHA512CTX
sha512_init(void)
{
SHA512CTX ctx = NULL;
gcry_md_open(&ctx, GCRY_MD_SHA512, 0);
return ctx;
}
void
sha512_ctx_free(SHA512CTX c)
{
gcry_md_close(c);
}
int
sha512_update(SHACTX c, const void *data, size_t len)
{
gcry_md_write(c, data, len);
return SSH_OK;
}
int
sha512_final(unsigned char *md, SHACTX c)
{
unsigned char *tmp = NULL;
gcry_md_final(c);
tmp = gcry_md_read(c, 0);
if (tmp == NULL) {
gcry_md_close(c);
return SSH_ERROR;
}
memcpy(md, tmp, SHA512_DIGEST_LEN);
gcry_md_close(c);
return SSH_OK;
}
int
sha512(const unsigned char *digest, size_t len, unsigned char *hash)
{
gcry_md_hash_buffer(GCRY_MD_SHA512, hash, digest, len);
return SSH_OK;
}
MD5CTX
md5_init(void)
{
MD5CTX c = NULL;
gcry_md_open(&c, GCRY_MD_MD5, 0);
return c;
}
void
md5_ctx_free(MD5CTX c)
{
gcry_md_close(c);
}
int
md5_update(MD5CTX c, const void *data, size_t len)
{
gcry_md_write(c, data, len);
return SSH_OK;
}
int
md5_final(unsigned char *md, MD5CTX c)
{
unsigned char *tmp = NULL;
gcry_md_final(c);
tmp = gcry_md_read(c, 0);
if (tmp == NULL) {
gcry_md_close(c);
return SSH_ERROR;
}
memcpy(md, tmp, MD5_DIGEST_LEN);
gcry_md_close(c);
return SSH_OK;
}