Click here to Skip to main content
15,893,564 members
Articles / Programming Languages / C

BasicAdmin - Personal Organizer

Rate me:
Please Sign up or sign in to vote.
4.94/5 (14 votes)
1 Aug 2009CPOL6 min read 50.9K   5.6K   60  
Finance, contacts, notes organizer
#ifndef CRYPTOPP_RW_H
#define CRYPTOPP_RW_H

/** \file
	This file contains classes that implement the
	Rabin-Williams signature schemes as defined in IEEE P1363.
*/

#include "pubkey.h"

NAMESPACE_BEGIN(CryptoPP)

//! _
class CRYPTOPP_DLL RWFunction : public TrapdoorFunction, public PublicKey
{
	typedef RWFunction ThisClass;

public:
	void Initialize(const Integer &n)
		{m_n = n;}

	void BERDecode(BufferedTransformation &bt);
	void DEREncode(BufferedTransformation &bt) const;

	Integer ApplyFunction(const Integer &x) const;
	Integer PreimageBound() const {return ++(m_n>>1);}
	Integer ImageBound() const {return m_n;}

	bool Validate(RandomNumberGenerator &rng, unsigned int level) const;
	bool GetVoidValue(const char *name, const std::type_info &valueType, void *pValue) const;
	void AssignFrom(const NameValuePairs &source);

	const Integer& GetModulus() const {return m_n;}
	void SetModulus(const Integer &n) {m_n = n;}

protected:
	Integer m_n;
};

//! _
class CRYPTOPP_DLL InvertibleRWFunction : public RWFunction, public TrapdoorFunctionInverse, public PrivateKey
{
	typedef InvertibleRWFunction ThisClass;

public:
	void Initialize(const Integer &n, const Integer &p, const Integer &q, const Integer &u)
		{m_n = n; m_p = p; m_q = q; m_u = u;}
	// generate a random private key
	void Initialize(RandomNumberGenerator &rng, unsigned int modulusBits)
		{GenerateRandomWithKeySize(rng, modulusBits);}

	void BERDecode(BufferedTransformation &bt);
	void DEREncode(BufferedTransformation &bt) const;

	Integer CalculateInverse(RandomNumberGenerator &rng, const Integer &x) const;

	// GeneratibleCryptoMaterial
	bool Validate(RandomNumberGenerator &rng, unsigned int level) const;
	bool GetVoidValue(const char *name, const std::type_info &valueType, void *pValue) const;
	void AssignFrom(const NameValuePairs &source);
	/*! parameters: (ModulusSize) */
	void GenerateRandom(RandomNumberGenerator &rng, const NameValuePairs &alg);

	const Integer& GetPrime1() const {return m_p;}
	const Integer& GetPrime2() const {return m_q;}
	const Integer& GetMultiplicativeInverseOfPrime2ModPrime1() const {return m_u;}

	void SetPrime1(const Integer &p) {m_p = p;}
	void SetPrime2(const Integer &q) {m_q = q;}
	void SetMultiplicativeInverseOfPrime2ModPrime1(const Integer &u) {m_u = u;}

protected:
	Integer m_p, m_q, m_u;
};

//! RW
struct RW
{
	static std::string StaticAlgorithmName() {return "RW";}
	typedef RWFunction PublicKey;
	typedef InvertibleRWFunction PrivateKey;
};

//! RWSS
template <class STANDARD, class H>
struct RWSS : public TF_SS<STANDARD, H, RW>
{
};

NAMESPACE_END

#endif

By viewing downloads associated with this article you agree to the Terms of Service and the article's licence.

If a file you wish to view isn't highlighted, and is a text file (not binary), please let us know and we'll add colourisation support for it.

License

This article, along with any associated source code and files, is licensed under The Code Project Open License (CPOL)


Written By
Software Developer
Argentina Argentina
System developer from Argentina.

Programmed in VB 5,6,.NET, C#, Java, PL-SQL, Transac-SQL, C, C++ and even some "calculator" language.

Love to build small, useful applications.
Usually building big and complicated apps based on solid, reliable components.

Hobbies: reading, photography, chess, paddle, running.

Comments and Discussions