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1 /*******************************************************************************
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40 
41 /*
42 //               Intel(R) Integrated Performance Primitives
43 //                   Cryptographic Primitives (ippcp)
44 //
45 //  Contents:
46 //        ippsMontForm()
47 //
48 */
49 
50 #include "owndefs.h"
51 #include "owncp.h"
52 #include "pcpbn.h"
53 #include "pcpmontgomery.h"
54 #include "pcptool.h"
55 
56 /*F*
57 // Name: ippsMontForm
58 //
59 // Purpose: Converts input into Montgomery domain.
60 //
61 // Returns:                   Reason:
62 //      ippStsNullPtrErr         pCtx==NULL
63 //                               pA==NULL
64 //                               pR==NULL
65 //      ippStsContextMatchErr    !MNT_VALID_ID(pCtx)
66 //                               !BN_VALID_ID(pA)
67 //                               !BN_VALID_ID(pR)
68 //      ippStsBadArgErr          A < 0.
69 //      ippStsScaleRangeErr      A >= Modulus.
70 //      ippStsOutOfRangeErr      R can't hold result
71 //      ippStsNoErr              no errors
72 //
73 // Parameters:
74 //    pA    pointer to the input [0, modulus-1]
75 //    pCtx  Montgomery context
76 //    pR    pointer to the output (A*R mod modulus)
77 *F*/
78 IPPFUN(IppStatus, ippsMontForm,(const IppsBigNumState* pA, IppsMontState* pCtx, IppsBigNumState* pR))
79 {
80    IPP_BAD_PTR3_RET(pCtx, pA, pR);
81 
82    pCtx = (IppsMontState*)(IPP_ALIGNED_PTR((pCtx), MONT_ALIGNMENT));
83    pA = (IppsBigNumState*)( IPP_ALIGNED_PTR(pA, BN_ALIGNMENT) );
84    pR = (IppsBigNumState*)( IPP_ALIGNED_PTR(pR, BN_ALIGNMENT) );
85 
86    IPP_BADARG_RET(!MNT_VALID_ID(pCtx), ippStsContextMatchErr);
87    IPP_BADARG_RET(!BN_VALID_ID(pA), ippStsContextMatchErr);
88    IPP_BADARG_RET(!BN_VALID_ID(pR), ippStsContextMatchErr);
89 
90    IPP_BADARG_RET(BN_SIGN(pA) != ippBigNumPOS, ippStsBadArgErr);
91    IPP_BADARG_RET(cpCmp_BNU(BN_NUMBER(pA), BN_SIZE(pA), MOD_MODULUS( MNT_ENGINE(pCtx) ), MOD_LEN( MNT_ENGINE(pCtx) )) >= 0, ippStsScaleRangeErr);
92    IPP_BADARG_RET(BN_ROOM(pR) < MOD_LEN( MNT_ENGINE(pCtx) ), ippStsOutOfRangeErr);
93 
94    {
95       const int usedPoolLen = 1;
96       cpSize nsM = MOD_LEN( MNT_ENGINE(pCtx) );
97       BNU_CHUNK_T* pDataA  = gsModPoolAlloc(MNT_ENGINE(pCtx), usedPoolLen);
98       //tbcd: temporary excluded: assert(NULL!=pDataA);
99 
100       ZEXPAND_COPY_BNU(pDataA, nsM, BN_NUMBER(pA), BN_SIZE(pA));
101 
102       MOD_METHOD( MNT_ENGINE(pCtx) )->encode(BN_NUMBER(pR), pDataA, MNT_ENGINE(pCtx));
103 
104       FIX_BNU(BN_NUMBER(pR), nsM);
105       BN_SIZE(pR) = nsM;
106       BN_SIGN(pR) = ippBigNumPOS;
107 
108       gsModPoolFree(MNT_ENGINE(pCtx), usedPoolLen);
109    }
110 
111    return ippStsNoErr;
112 }
113