📄 sha256algid.c
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/* Copyright 2003-2005, Voltage Security, all rights reserved.
*/
#include "vibe.h"
#include "environment.h"
#include "base.h"
#include "libctx.h"
#include "algobj.h"
#include "oidlist.h"
#include "algid.h"
int VtDerCoderSHA256 (
VtDerCoderInfo *coderInfo,
Pointer object,
unsigned int flag
)
{
unsigned int bufferSize;
VoltAlgorithmObject **obj = (VoltAlgorithmObject **) 0;
VoltDerCoderEncodeData *encodeData = &(coderInfo->info.encodeData);
VoltDerCoderGetAlgData *getAlgData = &(coderInfo->info.getAlgData);
VoltDerCoderDecodeData *decodeData = &(coderInfo->info.decodeData);
Asn1AlgorithmId *algId;
VoltLibCtx *libCtx;
unsigned char sha256AlgID[VoltSHA256AlgIdBytesLen] =
{ VoltSHA256AlgIdBytes };
switch (flag)
{
default:
return (VT_ERROR_INVALID_TYPE);
case VOLT_DER_TYPE_ENCODE_FLAG:
/* If the flag is ENCODE, return the SHA-256 algID.
*/
/* Check the args.
*/
if (object != (Pointer)0)
return (VT_ERROR_NON_NULL_ARG);
/* The SHA-256 info should be NULL.
*/
if (encodeData->info != (Pointer)0)
return (VT_ERROR_NON_NULL_ARG);
/* We need a place to drop the length.
*/
if (encodeData->encodingLen == (unsigned int *)0)
return (VT_ERROR_NULL_ARG);
bufferSize = encodeData->bufferSize;
if (encodeData->encoding == (unsigned char *)0)
bufferSize = 0;
*(encodeData->encodingLen) = VoltSHA256AlgIdBytesLen;
if (bufferSize < VoltSHA256AlgIdBytesLen)
return (VT_ERROR_BUFFER_TOO_SMALL);
/* There's only one possible SHA-256 alg ID.
*/
libCtx = encodeData->libCtx;
Z2Memcpy (encodeData->encoding, sha256AlgID, VoltSHA256AlgIdBytesLen);
return (0);
case VOLT_DER_TYPE_DECODE_FLAG:
/* If the flag is decode, set the object to perform SHA-256.
*/
if(object == (Pointer) 0)
return VT_ERROR_NULL_ARG;
obj = (VoltAlgorithmObject **) object;
/* Check the args, the info should be a pointer to a
* VoltDerCoderDecodeData struct, with the type
* VOLT_DER_TYPE_ALG_ID_FLAG.
*/
if (decodeData->type != VOLT_DER_TYPE_ALG_ID_FLAG)
return (VT_ERROR_UNKNOWN_BER);
/* Make sure this is the algId for SHA-256.
*/
algId = (Asn1AlgorithmId *)(decodeData->asn1Object);
if (algId->oid->base.length != VoltSHA256OidBytesLen)
return (VT_ERROR_UNKNOWN_BER);
libCtx = (VoltLibCtx *)((*obj)->voltObject.libraryCtx);
if (Z2Memcmp (
algId->oid->base.data, sha256AlgID + VoltSHA256AlgIdOidOffset,
VoltSHA256OidBytesLen) != 0)
return (VT_ERROR_UNKNOWN_BER);
VtDestroyAlgorithmObject ((VtAlgorithmObject *)object);
return (VtCreateAlgorithmObject (
libCtx, VtAlgorithmImplSHA256, (Pointer)0,
(VtAlgorithmObject *)object));
case VOLT_DER_TYPE_GET_ALG_FLAG:
/* If the flag is get alg, check the input to see if it's the
* SHA-256 OID.
*/
/* Check the args.
*/
if (object != (Pointer)0)
return (VT_ERROR_NON_NULL_ARG);
if ( (getAlgData->algorithm == (unsigned int *)0) ||
(getAlgData->oid == (unsigned char *)0) )
return (VT_ERROR_NULL_ARG);
if (getAlgData->oidLen != VoltSHA256OidBytesLen)
return (VT_ERROR_UNKNOWN_BER);
libCtx = getAlgData->libCtx;
if (Z2Memcmp (
getAlgData->oid, sha256AlgID + VoltSHA256AlgIdOidOffset,
VoltSHA256OidBytesLen) != 0)
return (VT_ERROR_UNKNOWN_BER);
/* The OID matches, the algorithm is SHA-256.
*/
*(getAlgData->algorithm) = VT_ALG_ID_SHA256;
getAlgData->SymKeyParam = (VtKeyParam *)0;
getAlgData->DigestImpl = VtAlgorithmImplSHA256;
return (0);
}
}
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