blob: ac86d4cd45c26209e7eb965c6e13317735d0eaac [file] [log] [blame]
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/*
// Intel(R) Integrated Performance Primitives. Cryptography Primitives.
// Operations over GF(p).
//
// Context:
// ippsGFpMul_PE()
//
*/
#include "owndefs.h"
#include "owncp.h"
#include "pcpgfpstuff.h"
#include "pcpgfpxstuff.h"
#include "pcphash.h"
#include "pcphash_rmf.h"
#include "pcptool.h"
/*F*
// Name: ippsGFpMul_PE
//
// Purpose: Multiply of GF element and parent GF element
//
// Returns: Reason:
// ippStsNullPtrErr NULL == pGFp
// NULL == pA
// NULL == pR
// NULL == pParentB
//
// ippStsContextMatchErr invalid pGFp->idCtx
// invalid pA->idCtx
// invalid pR->idCtx
// invalid pParentB->idCtx
//
// ippStsOutOfRangeErr GFPE_ROOM() != GFP_FELEN()
//
// ippStsBadArgErr pGFp does not specify prime field
//
// ippStsNoErr no error
//
// Parameters:
// pA Pointer to the context of the first finite field element.
// pParentB Pointer to the context of the second finite field element.
// pR Pointer to the context of the result finite field element.
// pGFp Pointer to the context of the finite field.
//
*F*/
IPPFUN(IppStatus, ippsGFpMul_PE,(const IppsGFpElement* pA, const IppsGFpElement* pParentB,
IppsGFpElement* pR, IppsGFpState* pGFp))
{
IPP_BAD_PTR4_RET(pA, pParentB, pR, pGFp);
pGFp = (IppsGFpState*)( IPP_ALIGNED_PTR(pGFp, GFP_ALIGNMENT) );
IPP_BADARG_RET( !GFP_TEST_ID(pGFp), ippStsContextMatchErr );
IPP_BADARG_RET( !GFPE_TEST_ID(pA), ippStsContextMatchErr );
IPP_BADARG_RET( !GFPE_TEST_ID(pParentB), ippStsContextMatchErr );
IPP_BADARG_RET( !GFPE_TEST_ID(pR), ippStsContextMatchErr );
{
gsModEngine* pGFE = GFP_PMA(pGFp);
IPP_BADARG_RET( GFP_IS_BASIC(pGFE), ippStsBadArgErr )
IPP_BADARG_RET( (GFPE_ROOM(pA)!=GFP_FELEN(pGFE)) || (GFPE_ROOM(pR)!=GFP_FELEN(pGFE)), ippStsOutOfRangeErr);
IPP_BADARG_RET( (GFPE_ROOM(pParentB)!=GFP_FELEN(GFP_PARENT(pGFE))), ippStsOutOfRangeErr);
cpGFpxMul_GFE(GFPE_DATA(pR), GFPE_DATA(pA), GFPE_DATA(pParentB), pGFE);
return ippStsNoErr;
}
}