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/*
// Purpose:
// Intel(R) Integrated Performance Primitives. Cryptography Primitives.
// Internal Unsigned arithmetic
//
// Contents:
// cpSqrAdc_BNU_school()
//
*/
#include "owncp.h"
#include "pcpbnuarith.h"
#include "pcpbnumisc.h"
/*F*
// Name: cpSqrAdc_BNU_school
//
// Purpose: Square BigNums.
//
// Returns:
// extension of result of square BigNum
//
// Parameters:
// pA source BigNum
// pR resultant BigNum
// nsA size of A
//
*F*/
#if defined(_USE_C_cpSqrAdc_BNU_school_)
#pragma message ("C version of cpSqrAdc_BNU_school: ON")
#else
#pragma message ("C version of cpSqrAdc_BNU_school: OFF")
#endif
#if !((_IPP==_IPP_W7) || \
(_IPP==_IPP_T7) || \
(_IPP==_IPP_V8) || \
(_IPP==_IPP_P8) || \
(_IPP>=_IPP_G9) || \
(_IPP==_IPP_S8) || \
(_IPP32E==_IPP32E_M7) || \
(_IPP32E==_IPP32E_U8) || \
(_IPP32E==_IPP32E_Y8) || \
(_IPP32E>=_IPP32E_E9) || \
(_IPP32E==_IPP32E_N8)) || \
defined(_USE_C_cpSqrAdc_BNU_school_)
BNU_CHUNK_T cpSqrAdc_BNU_school(BNU_CHUNK_T* pR, const BNU_CHUNK_T* pA, cpSize nsA)
{
cpSize i;
BNU_CHUNK_T extension;
BNU_CHUNK_T rH, rL;
/* init result */
pR[0] = 0;
for(i=1, extension=0; i<nsA; i++) {
MUL_AB(rH, rL, pA[i], pA[0]);
ADD_AB(extension, pR[i], rL, extension);
extension += rH;
}
pR[i] = extension;
/* add other a[i]*a[j] */
for(i=1; i<nsA-1; i++) {
BNU_CHUNK_T a = pA[i];
cpSize j;
for(j=i+1, extension=0; j<nsA; j++) {
MUL_AB(rH, rL, pA[j], a);
ADD_ABC(extension, pR[i+j], rL, pR[i+j], extension);
extension += rH;
}
pR[i+j] = extension;
}
/* double a[i]*a[j] */
for(i=1, extension=0; i<(2*nsA-1); i++) {
ADD_ABC(extension, pR[i], pR[i], pR[i], extension);
}
pR[i] = extension;
/* add a[i]^2 */
for(i=0, extension=0; i<nsA; i++) {
MUL_AB(rH, rL, pA[i], pA[i]);
ADD_ABC(extension, pR[2*i], pR[2*i], rL, extension);
ADD_ABC(extension, pR[2*i+1], pR[2*i+1], rH, extension);
}
return pR[2*nsA-1];
}
#endif