Files
OpenCellular/firmware/lib/cryptolib/sha_utility.c
Bill Richardson 0c3ba249ab Massive refactoring of external header files.
This reduces the number of exported header files to the minimum needed by
the existing userspace utilities and firmware implementations.

BUG=chromium:221544
BRANCH=none
TEST=manual, trybots
CQ-DEPEND=CL:47019,CL:47022,CL:47023

  sudo FEATURES=test emerge vboot_reference
  FEATURES=test emerge-$BOARD \
                vboot_reference \
                chromeos-cryptohome \
                chromeos-installer \
                chromeos-u-boot \
                peach-u-boot \
                depthcharge

Change-Id: I2946cc2dbaf5459a6c5eca92ca57d546498e6d85
Signed-off-by: Bill Richardson <wfrichar@chromium.org>
Reviewed-on: https://gerrit.chromium.org/gerrit/47021
Reviewed-by: Randall Spangler <rspangler@chromium.org>
2013-04-02 14:12:52 -07:00

119 lines
3.1 KiB
C

/* Copyright (c) 2011 The Chromium OS Authors. All rights reserved.
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*
* Utility functions for message digest functions.
*/
#include "sysincludes.h"
#include "cryptolib.h"
#include "utility.h"
#include "vboot_api.h"
void DigestInit(DigestContext* ctx, int sig_algorithm) {
ctx->algorithm = hash_type_map[sig_algorithm];
switch(ctx->algorithm) {
#ifndef CHROMEOS_EC
case SHA1_DIGEST_ALGORITHM:
ctx->sha1_ctx = (SHA1_CTX*) VbExMalloc(sizeof(SHA1_CTX));
SHA1_init(ctx->sha1_ctx);
break;
#endif
case SHA256_DIGEST_ALGORITHM:
ctx->sha256_ctx = (SHA256_CTX*) VbExMalloc(sizeof(SHA256_CTX));
SHA256_init(ctx->sha256_ctx);
break;
#ifndef CHROMEOS_EC
case SHA512_DIGEST_ALGORITHM:
ctx->sha512_ctx = (SHA512_CTX*) VbExMalloc(sizeof(SHA512_CTX));
SHA512_init(ctx->sha512_ctx);
break;
#endif
};
}
void DigestUpdate(DigestContext* ctx, const uint8_t* data, uint32_t len) {
switch(ctx->algorithm) {
#ifndef CHROMEOS_EC
case SHA1_DIGEST_ALGORITHM:
SHA1_update(ctx->sha1_ctx, data, len);
break;
#endif
case SHA256_DIGEST_ALGORITHM:
SHA256_update(ctx->sha256_ctx, data, len);
break;
#ifndef CHROMEOS_EC
case SHA512_DIGEST_ALGORITHM:
SHA512_update(ctx->sha512_ctx, data, len);
break;
#endif
};
}
uint8_t* DigestFinal(DigestContext* ctx) {
uint8_t* digest = NULL;
switch(ctx->algorithm) {
#ifndef CHROMEOS_EC
case SHA1_DIGEST_ALGORITHM:
digest = (uint8_t*) VbExMalloc(SHA1_DIGEST_SIZE);
Memcpy(digest, SHA1_final(ctx->sha1_ctx), SHA1_DIGEST_SIZE);
VbExFree(ctx->sha1_ctx);
break;
#endif
case SHA256_DIGEST_ALGORITHM:
digest = (uint8_t*) VbExMalloc(SHA256_DIGEST_SIZE);
Memcpy(digest, SHA256_final(ctx->sha256_ctx), SHA256_DIGEST_SIZE);
VbExFree(ctx->sha256_ctx);
break;
#ifndef CHROMEOS_EC
case SHA512_DIGEST_ALGORITHM:
digest = (uint8_t*) VbExMalloc(SHA512_DIGEST_SIZE);
Memcpy(digest, SHA512_final(ctx->sha512_ctx), SHA512_DIGEST_SIZE);
VbExFree(ctx->sha512_ctx);
break;
#endif
};
return digest;
}
uint8_t* DigestBuf(const uint8_t* buf, uint64_t len, int sig_algorithm) {
/* Allocate enough space for the largest digest */
uint8_t* digest = (uint8_t*) VbExMalloc(SHA512_DIGEST_SIZE);
/* Define an array mapping [sig_algorithm] to function pointers to the
* SHA{1|256|512} functions.
*/
typedef uint8_t* (*Hash_ptr) (const uint8_t*, uint64_t, uint8_t*);
Hash_ptr hash[] = {
#ifdef CHROMEOS_EC
0, /* RSA 1024 */
0,
0,
0, /* RSA 2048 */
0,
0,
0, /* RSA 4096 */
internal_SHA256,
0,
0, /* RSA 8192 */
0,
0,
#else
internal_SHA1, /* RSA 1024 */
internal_SHA256,
internal_SHA512,
internal_SHA1, /* RSA 2048 */
internal_SHA256,
internal_SHA512,
internal_SHA1, /* RSA 4096 */
internal_SHA256,
internal_SHA512,
internal_SHA1, /* RSA 8192 */
internal_SHA256,
internal_SHA512,
#endif
};
/* Call the appropriate hash function. */
return hash[sig_algorithm](buf, len, digest);
}