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/*
//
// Purpose:
// Cryptography Primitive.
// Digesting message according to SHA256
//
// Contents:
// ippsSHA256GetTag()
//
*/
#include "owndefs.h"
#include "owncp.h"
#include "pcphash.h"
#include "pcphash_rmf.h"
#include "pcptool.h"
#include "pcpsha256stuff.h"
/*F*
// Name: ippsSHA256GetTag
//
// Purpose: Compute digest based on current state.
// Note, that futher digest update is possible
//
// Returns: Reason:
// ippStsNullPtrErr pTag == NULL
// pState == NULL
// ippStsContextMatchErr pState->idCtx != idCtxSHA256
// ippStsLengthErr max_SHA_digestLen < tagLen <1
// ippStsNoErr no errors
//
// Parameters:
// pTag address of the output digest
// tagLen length of digest
// pState pointer to the SHA256 state
//
*F*/
IPPFUN(IppStatus, ippsSHA256GetTag,(Ipp8u* pTag, Ipp32u tagLen, const IppsSHA256State* pState))
{
/* test state pointer and ID */
IPP_BAD_PTR1_RET(pState);
pState = (IppsSHA256State*)( IPP_ALIGNED_PTR(pState, SHA256_ALIGNMENT) );
IPP_BADARG_RET(idCtxSHA256 !=HASH_CTX_ID(pState), ippStsContextMatchErr);
/* test digest pointer */
IPP_BAD_PTR1_RET(pTag);
IPP_BADARG_RET((tagLen<1)||(sizeof(DigestSHA256)<tagLen), ippStsLengthErr);
{
DigestSHA256 digest;
CopyBlock(HASH_VALUE(pState), digest, sizeof(DigestSHA256));
cpFinalizeSHA256(digest, HASH_BUFF(pState), HAHS_BUFFIDX(pState), HASH_LENLO(pState));
digest[0] = ENDIANNESS32(digest[0]);
digest[1] = ENDIANNESS32(digest[1]);
digest[2] = ENDIANNESS32(digest[2]);
digest[3] = ENDIANNESS32(digest[3]);
digest[4] = ENDIANNESS32(digest[4]);
digest[5] = ENDIANNESS32(digest[5]);
digest[6] = ENDIANNESS32(digest[6]);
digest[7] = ENDIANNESS32(digest[7]);
CopyBlock(digest, pTag, tagLen);
return ippStsNoErr;
}
}