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/*
// Intel(R) Integrated Performance Primitives. Cryptography Primitives.
// EC over GF(p^m) definitinons
//
// Context:
// ippsGFpECBindGxyTblStd384r1()
//
*/
#include "owndefs.h"
#include "owncp.h"
#include "pcpgfpecstuff.h"
#include "pcpeccp.h"
static IppStatus cpGFpECBindGxyTbl(const BNU_CHUNK_T* pPrime,
const cpPrecompAP* preComp,
IppsGFpECState* pEC)
{
IPP_BAD_PTR1_RET(pEC);
/* use aligned EC context */
pEC = (IppsGFpECState*)( IPP_ALIGNED_PTR(pEC, ECGFP_ALIGNMENT) );
IPP_BADARG_RET(!ECP_TEST_ID(pEC), ippStsContextMatchErr);
{
IppsGFpState* pGF = ECP_GFP(pEC);
gsModEngine* pGFE = GFP_PMA(pGF);
Ipp32u elemLen = GFP_FELEN(pGFE);
/* test if GF is prime GF */
IPP_BADARG_RET(!GFP_IS_BASIC(pGFE), ippStsBadArgErr);
/* test underlying prime value*/
IPP_BADARG_RET(cpCmp_BNU(pPrime, elemLen, GFP_MODULUS(pGFE), elemLen), ippStsBadArgErr);
{
BNU_CHUNK_T* pbp_ec = ECP_G(pEC);
int cmpFlag;
BNU_CHUNK_T* pbp_tbl = cpEcGFpGetPool(1, pEC);
selectAP select_affine_point = preComp->select_affine_point;
const BNU_CHUNK_T* pTbl = preComp->pTbl;
select_affine_point(pbp_tbl, pTbl, 1);
/* check if EC's and G-table's Base Point is the same */
cmpFlag = cpCmp_BNU(pbp_ec, elemLen*2, pbp_tbl, elemLen*2);
cpEcGFpReleasePool(1, pEC);
return cmpFlag? ippStsBadArgErr : ippStsNoErr;
}
}
}
/*F*
// Name: ippsGFpECBindGxyTblStd384r1
//
// Purpose: Enables the use of base point-based pre-computed tables of EC384r1
//
// Returns: Reason:
// ippStsNullPtrErr NULL == pEC
//
// ippStsContextMatchErr invalid pEC->idCtx
//
// ippStsBadArgErr pEC is not EC384r1
//
// ippStsNoErr no error
//
// Parameters:
// pEC Pointer to the context of the elliptic curve
//
*F*/
IPPFUN(IppStatus, ippsGFpECBindGxyTblStd384r1,(IppsGFpECState* pEC))
{
IppStatus sts = cpGFpECBindGxyTbl(secp384r1_p, gfpec_precom_nistP384r1_fun(), pEC);
/* setup pre-computed g-table and point access function */
if(ippStsNoErr==sts)
ECP_PREMULBP(pEC) = gfpec_precom_nistP384r1_fun();
return sts;
}