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40 
41 /*
42 //
43 //  Purpose:
44 //     Cryptography Primitive.
45 //     ECC operation results
46 //
47 //  Contents:
48 //     ippsECCGetResultString()
49 //
50 //
51 */
52 
53 #include "owndefs.h"
54 #include "owncp.h"
55 
56 /*F*
57 //    Name: ippsECCGetResultString
58 //
59 // Purpose: Returns the string corresponding to code
60 //          that represents the result of validation
61 //
62 // Parameters:
63 //    code       The code of the validation result
64 //
65 *F*/
66 
67 IPPFUN( const char*, ippsECCGetResultString, (IppECResult code))
68 {
69    switch(code) {
70    case ippECValid:           return "Validation pass successfully";
71    case ippECCompositeBase:   return "Finite Field produced by Composite";
72    case ippECComplicatedBase: return "Too much non-zero terms in the polynomial";
73    case ippECIsZeroDiscriminant: return "Zero discriminamt";
74    case ippECCompositeOrder:     return "Composite Base Point order";
75    case ippECInvalidOrder:       return "Invalid Base Point order";
76    case ippECIsWeakMOV:          return "EC cover by MOV Reduction Test";
77    case ippECIsWeakSSSA:         return "EC cover by SS-SA Reduction Test";
78    case ippECIsSupersingular:    return "EC is supersingular curve";
79    case ippECInvalidPrivateKey:  return "Invalid Private Key";
80    case ippECInvalidPublicKey:   return "Invalid Public Key";
81    case ippECInvalidKeyPair:     return "Invalid Key Pair";
82    case ippECPointOutOfGroup:    return "Point is out of group";
83    case ippECPointIsAtInfinite:  return "Point at Infinity";
84    case ippECPointIsNotValid:    return "Invalid EC Point";
85    case ippECPointIsEqual:       return "Points are equal";
86    case ippECPointIsNotEqual:    return "Points are different";
87    case ippECInvalidSignature:   return "Invalid Signature";
88    default:                      return "Unknown ECC result";
89    }
90 }
91