openssl/crypto/evp/m_sha1.c
Dr. Matthias St. Pierre 25f2138b0a Reorganize private crypto header files
Currently, there are two different directories which contain internal
header files of libcrypto which are meant to be shared internally:

While header files in 'include/internal' are intended to be shared
between libcrypto and libssl, the files in 'crypto/include/internal'
are intended to be shared inside libcrypto only.

To make things complicated, the include search path is set up in such
a way that the directive #include "internal/file.h" could refer to
a file in either of these two directoroes. This makes it necessary
in some cases to add a '_int.h' suffix to some files to resolve this
ambiguity:

  #include "internal/file.h"      # located in 'include/internal'
  #include "internal/file_int.h"  # located in 'crypto/include/internal'

This commit moves the private crypto headers from

  'crypto/include/internal'  to  'include/crypto'

As a result, the include directives become unambiguous

  #include "internal/file.h"       # located in 'include/internal'
  #include "crypto/file.h"         # located in 'include/crypto'

hence the superfluous '_int.h' suffixes can be stripped.

The files 'store_int.h' and 'store.h' need to be treated specially;
they are joined into a single file.

Reviewed-by: Richard Levitte <levitte@openssl.org>
(Merged from https://github.com/openssl/openssl/pull/9333)
2019-09-28 20:26:34 +02:00

244 lines
4.8 KiB
C

/*
* Copyright 1995-2018 The OpenSSL Project Authors. All Rights Reserved.
*
* Licensed under the Apache License 2.0 (the "License"). You may not use
* this file except in compliance with the License. You can obtain a copy
* in the file LICENSE in the source distribution or at
* https://www.openssl.org/source/license.html
*/
#include <stdio.h>
#include "internal/cryptlib.h"
#include <openssl/evp.h>
#include <openssl/objects.h>
#include <openssl/sha.h>
#include <openssl/rsa.h>
#include "crypto/evp.h"
#include "crypto/sha.h"
static int init(EVP_MD_CTX *ctx)
{
return SHA1_Init(EVP_MD_CTX_md_data(ctx));
}
static int update(EVP_MD_CTX *ctx, const void *data, size_t count)
{
return SHA1_Update(EVP_MD_CTX_md_data(ctx), data, count);
}
static int final(EVP_MD_CTX *ctx, unsigned char *md)
{
return SHA1_Final(md, EVP_MD_CTX_md_data(ctx));
}
static int ctrl(EVP_MD_CTX *ctx, int cmd, int p1, void *p2)
{
return sha1_ctrl(ctx != NULL ? EVP_MD_CTX_md_data(ctx) : NULL, cmd, p1, p2);
}
static const EVP_MD sha1_md = {
NID_sha1,
NID_sha1WithRSAEncryption,
SHA_DIGEST_LENGTH,
EVP_MD_FLAG_DIGALGID_ABSENT,
init,
update,
final,
NULL,
NULL,
SHA_CBLOCK,
sizeof(EVP_MD *) + sizeof(SHA_CTX),
ctrl
};
const EVP_MD *EVP_sha1(void)
{
return &sha1_md;
}
static int init224(EVP_MD_CTX *ctx)
{
return SHA224_Init(EVP_MD_CTX_md_data(ctx));
}
static int update224(EVP_MD_CTX *ctx, const void *data, size_t count)
{
return SHA224_Update(EVP_MD_CTX_md_data(ctx), data, count);
}
static int final224(EVP_MD_CTX *ctx, unsigned char *md)
{
return SHA224_Final(md, EVP_MD_CTX_md_data(ctx));
}
static int init256(EVP_MD_CTX *ctx)
{
return SHA256_Init(EVP_MD_CTX_md_data(ctx));
}
static int update256(EVP_MD_CTX *ctx, const void *data, size_t count)
{
return SHA256_Update(EVP_MD_CTX_md_data(ctx), data, count);
}
static int final256(EVP_MD_CTX *ctx, unsigned char *md)
{
return SHA256_Final(md, EVP_MD_CTX_md_data(ctx));
}
static const EVP_MD sha224_md = {
NID_sha224,
NID_sha224WithRSAEncryption,
SHA224_DIGEST_LENGTH,
EVP_MD_FLAG_DIGALGID_ABSENT,
init224,
update224,
final224,
NULL,
NULL,
SHA256_CBLOCK,
sizeof(EVP_MD *) + sizeof(SHA256_CTX),
};
const EVP_MD *EVP_sha224(void)
{
return &sha224_md;
}
static const EVP_MD sha256_md = {
NID_sha256,
NID_sha256WithRSAEncryption,
SHA256_DIGEST_LENGTH,
EVP_MD_FLAG_DIGALGID_ABSENT,
init256,
update256,
final256,
NULL,
NULL,
SHA256_CBLOCK,
sizeof(EVP_MD *) + sizeof(SHA256_CTX),
};
const EVP_MD *EVP_sha256(void)
{
return &sha256_md;
}
static int init512_224(EVP_MD_CTX *ctx)
{
return sha512_224_init(EVP_MD_CTX_md_data(ctx));
}
static int init512_256(EVP_MD_CTX *ctx)
{
return sha512_256_init(EVP_MD_CTX_md_data(ctx));
}
static int init384(EVP_MD_CTX *ctx)
{
return SHA384_Init(EVP_MD_CTX_md_data(ctx));
}
static int update384(EVP_MD_CTX *ctx, const void *data, size_t count)
{
return SHA384_Update(EVP_MD_CTX_md_data(ctx), data, count);
}
static int final384(EVP_MD_CTX *ctx, unsigned char *md)
{
return SHA384_Final(md, EVP_MD_CTX_md_data(ctx));
}
static int init512(EVP_MD_CTX *ctx)
{
return SHA512_Init(EVP_MD_CTX_md_data(ctx));
}
/* See comment in SHA224/256 section */
static int update512(EVP_MD_CTX *ctx, const void *data, size_t count)
{
return SHA512_Update(EVP_MD_CTX_md_data(ctx), data, count);
}
static int final512(EVP_MD_CTX *ctx, unsigned char *md)
{
return SHA512_Final(md, EVP_MD_CTX_md_data(ctx));
}
static const EVP_MD sha512_224_md = {
NID_sha512_224,
NID_sha512_224WithRSAEncryption,
SHA224_DIGEST_LENGTH,
EVP_MD_FLAG_DIGALGID_ABSENT,
init512_224,
update512,
final512,
NULL,
NULL,
SHA512_CBLOCK,
sizeof(EVP_MD *) + sizeof(SHA512_CTX),
};
const EVP_MD *EVP_sha512_224(void)
{
return &sha512_224_md;
}
static const EVP_MD sha512_256_md = {
NID_sha512_256,
NID_sha512_256WithRSAEncryption,
SHA256_DIGEST_LENGTH,
EVP_MD_FLAG_DIGALGID_ABSENT,
init512_256,
update512,
final512,
NULL,
NULL,
SHA512_CBLOCK,
sizeof(EVP_MD *) + sizeof(SHA512_CTX),
};
const EVP_MD *EVP_sha512_256(void)
{
return &sha512_256_md;
}
static const EVP_MD sha384_md = {
NID_sha384,
NID_sha384WithRSAEncryption,
SHA384_DIGEST_LENGTH,
EVP_MD_FLAG_DIGALGID_ABSENT,
init384,
update384,
final384,
NULL,
NULL,
SHA512_CBLOCK,
sizeof(EVP_MD *) + sizeof(SHA512_CTX),
};
const EVP_MD *EVP_sha384(void)
{
return &sha384_md;
}
static const EVP_MD sha512_md = {
NID_sha512,
NID_sha512WithRSAEncryption,
SHA512_DIGEST_LENGTH,
EVP_MD_FLAG_DIGALGID_ABSENT,
init512,
update512,
final512,
NULL,
NULL,
SHA512_CBLOCK,
sizeof(EVP_MD *) + sizeof(SHA512_CTX),
};
const EVP_MD *EVP_sha512(void)
{
return &sha512_md;
}