163 lines
4.4 KiB
C++
163 lines
4.4 KiB
C++
#ifndef CRYPTOPP_RW_H
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#define CRYPTOPP_RW_H
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/** \file
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This file contains classes that implement the
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Rabin-Williams signature schemes as defined in IEEE P1363.
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*/
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#include "pubkey.h"
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#include "integer.h"
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NAMESPACE_BEGIN(CryptoPP)
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const word IFSSR_R = 6;
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const word IFSSA_R = 12;
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//! .
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template <word r>
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class RWFunction : virtual public TrapdoorFunction, public PublicKey
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{
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typedef RWFunction ThisClass;
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public:
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void Initialize(const Integer &n)
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{m_n = n;}
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void BERDecode(BufferedTransformation &bt);
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void DEREncode(BufferedTransformation &bt) const;
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Integer ApplyFunction(const Integer &x) const;
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Integer PreimageBound() const {return m_n;}
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Integer ImageBound() const {return ++(m_n>>1);}
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bool Validate(RandomNumberGenerator &rng, unsigned int level) const;
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bool GetVoidValue(const char *name, const std::type_info &valueType, void *pValue) const;
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void AssignFrom(const NameValuePairs &source);
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const Integer& GetModulus() const {return m_n;}
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void SetModulus(const Integer &n) {m_n = n;}
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protected:
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Integer m_n;
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};
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//! .
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template <word r>
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class InvertibleRWFunction : public RWFunction<r>, public TrapdoorFunctionInverse, public PrivateKey
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{
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typedef InvertibleRWFunction ThisClass;
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public:
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void Initialize(const Integer &n, const Integer &p, const Integer &q, const Integer &u)
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{m_n = n; m_p = p; m_q = q; m_u = u;}
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// generate a random private key
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void Initialize(RandomNumberGenerator &rng, unsigned int modulusBits)
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{GenerateRandomWithKeySize(rng, modulusBits);}
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void BERDecode(BufferedTransformation &bt);
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void DEREncode(BufferedTransformation &bt) const;
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Integer CalculateInverse(const Integer &x) const;
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// GeneratibleCryptoMaterial
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bool Validate(RandomNumberGenerator &rng, unsigned int level) const;
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bool GetVoidValue(const char *name, const std::type_info &valueType, void *pValue) const;
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void AssignFrom(const NameValuePairs &source);
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/*! parameters: (ModulusSize) */
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void GenerateRandom(RandomNumberGenerator &rng, const NameValuePairs &alg);
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const Integer& GetPrime1() const {return m_p;}
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const Integer& GetPrime2() const {return m_q;}
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const Integer& GetMultiplicativeInverseOfPrime2ModPrime1() const {return m_u;}
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void SetPrime1(const Integer &p) {m_p = p;}
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void SetPrime2(const Integer &q) {m_q = q;}
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void SetMultiplicativeInverseOfPrime2ModPrime1(const Integer &u) {m_u = u;}
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protected:
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Integer m_p, m_q, m_u;
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};
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//! .
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class EMSA2Pad : public PK_PaddingAlgorithm
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{
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public:
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static const char *StaticAlgorithmName() {return "EMSA2";}
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unsigned int MaxUnpaddedLength(unsigned int paddedLength) const {return (paddedLength+1)/8-2;}
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void Pad(RandomNumberGenerator &rng, const byte *raw, unsigned int inputLength, byte *padded, unsigned int paddedLength) const;
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DecodingResult Unpad(const byte *padded, unsigned int paddedLength, byte *raw) const;
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};
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//! .
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template <class H>
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class EMSA2DecoratedHashModule : public HashTransformationWithDefaultTruncation
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{
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public:
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EMSA2DecoratedHashModule() : empty(true) {}
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void Update(const byte *input, unsigned int length)
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{h.Update(input, length); empty = empty && length==0;}
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unsigned int DigestSize() const;
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void Final(byte *digest);
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void Restart() {h.Restart(); empty=true;}
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private:
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H h;
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bool empty;
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};
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template <class H> struct EMSA2DigestDecoration
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{
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static const byte decoration;
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};
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//! EMSA2, for use with RW
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/*! The following hash functions are supported: SHA, RIPEMD160. */
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struct P1363_EMSA2 : public SignatureStandard
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{
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template <class H> struct SignaturePaddingAlgorithm {typedef EMSA2Pad type;};
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template <class H> struct DecoratedHashingAlgorithm {typedef EMSA2DecoratedHashModule<H> type;};
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};
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template<> struct CryptoStandardTraits<P1363_EMSA2> : public P1363_EMSA2 {};
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// EMSA2DecoratedHashModule can be instantiated with the following two classes.
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class SHA;
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class RIPEMD160;
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template <class H>
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void EMSA2DecoratedHashModule<H>::Final(byte *digest)
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{
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digest[0] = empty ? 0x4b : 0x6b;
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h.Final(digest+1);
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digest[DigestSize()-1] = EMSA2DigestDecoration<H>::decoration;
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empty=true;
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}
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template <class H>
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unsigned int EMSA2DecoratedHashModule<H>::DigestSize() const
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{
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return h.DigestSize() + 2;
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}
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//! .
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template <word r>
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struct RW
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{
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static std::string StaticAlgorithmName() {return "RW";}
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typedef RWFunction<r> PublicKey;
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typedef InvertibleRWFunction<r> PrivateKey;
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};
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//! RW
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template <class H, class STANDARD = P1363_EMSA2>
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struct RWSSA : public TF_SSA<STANDARD, H, RW<IFSSA_R> >
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{
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};
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NAMESPACE_END
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#endif
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