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externals/cryptopp/pkcspad.h
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123
externals/cryptopp/pkcspad.h
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// pkcspad.h - originally written and placed in the public domain by Wei Dai
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/// \file pkcspad.h
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/// \brief Classes for PKCS padding schemes
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/// \details PKCS #1 v1.5, v2.0 and P1363a allow MD2, MD5, SHA1, SHA224, SHA256, SHA384,
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/// SHA512, Tiger and RipeMd-160 to be instantiated.
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#ifndef CRYPTOPP_PKCSPAD_H
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#define CRYPTOPP_PKCSPAD_H
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#include "cryptlib.h"
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#include "pubkey.h"
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#include "hashfwd.h"
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#ifdef CRYPTOPP_IS_DLL
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#include "sha.h"
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#endif
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NAMESPACE_BEGIN(CryptoPP)
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/// \brief PKCS #1 v1.5 Encryption Padding Scheme
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/// \sa <a href="http://www.weidai.com/scan-mirror/ca.html#cem_PKCS1-1.5">EME-PKCS1-v1_5</a>
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class PKCS_EncryptionPaddingScheme : public PK_EncryptionMessageEncodingMethod
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{
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public:
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CRYPTOPP_STATIC_CONSTEXPR const char* StaticAlgorithmName() {return "EME-PKCS1-v1_5";}
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size_t MaxUnpaddedLength(size_t paddedLength) const;
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void Pad(RandomNumberGenerator &rng, const byte *raw, size_t inputLength, byte *padded, size_t paddedLength, const NameValuePairs ¶meters) const;
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DecodingResult Unpad(const byte *padded, size_t paddedLength, byte *raw, const NameValuePairs ¶meters) const;
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};
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/// \brief PKCS #1 decoration data structure
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template <class H> class PKCS_DigestDecoration
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{
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public:
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static const byte decoration[];
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static const unsigned int length;
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};
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// PKCS_DigestDecoration can be instantiated with the following
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// classes as specified in PKCS #1 v2.0 and P1363a
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// SHA1, SHA224, SHA256, SHA384, SHA512, Tiger, RIPEMD160, MD2, MD5
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#if defined(CRYPTOPP_IS_DLL)
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA1>;
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA224>;
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA256>;
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA384>;
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA512>;
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// http://github.com/weidai11/cryptopp/issues/517
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA3_256>;
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA3_384>;
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CRYPTOPP_DLL_TEMPLATE_CLASS PKCS_DigestDecoration<SHA3_512>;
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#endif
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// https://github.com/weidai11/cryptopp/issues/300 and
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// https://github.com/weidai11/cryptopp/issues/533
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#if defined(__clang__)
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template<> const byte PKCS_DigestDecoration<SHA1>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA1>::length;
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template<> const byte PKCS_DigestDecoration<SHA224>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA224>::length;
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template<> const byte PKCS_DigestDecoration<SHA256>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA256>::length;
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template<> const byte PKCS_DigestDecoration<SHA384>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA384>::length;
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template<> const byte PKCS_DigestDecoration<SHA512>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA512>::length;
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// http://github.com/weidai11/cryptopp/issues/517
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template<> const byte PKCS_DigestDecoration<SHA3_256>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA3_256>::length;
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template<> const byte PKCS_DigestDecoration<SHA3_384>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA3_384>::length;
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template<> const byte PKCS_DigestDecoration<SHA3_512>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<SHA3_512>::length;
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template<> const byte PKCS_DigestDecoration<Weak1::MD2>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<Weak1::MD2>::length;
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template<> const byte PKCS_DigestDecoration<Weak1::MD5>::decoration[];
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template<> const unsigned int PKCS_DigestDecoration<Weak1::MD5>::length;
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#endif
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/// \brief PKCS #1 v1.5 Signature Encoding Scheme
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/// \sa <a href="http://www.weidai.com/scan-mirror/sig.html#sem_PKCS1-1.5">EMSA-PKCS1-v1_5</a>
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class CRYPTOPP_DLL PKCS1v15_SignatureMessageEncodingMethod : public PK_DeterministicSignatureMessageEncodingMethod
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{
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public:
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CRYPTOPP_STATIC_CONSTEXPR const char* CRYPTOPP_API StaticAlgorithmName() {return "EMSA-PKCS1-v1_5";}
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size_t MinRepresentativeBitLength(size_t hashIdentifierSize, size_t digestSize) const
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{return 8 * (digestSize + hashIdentifierSize + 10);}
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void ComputeMessageRepresentative(RandomNumberGenerator &rng,
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const byte *recoverableMessage, size_t recoverableMessageLength,
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HashTransformation &hash, HashIdentifier hashIdentifier, bool messageEmpty,
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byte *representative, size_t representativeBitLength) const;
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struct HashIdentifierLookup
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{
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template <class H> struct HashIdentifierLookup2
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{
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static HashIdentifier Lookup()
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{
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return HashIdentifier(PKCS_DigestDecoration<H>::decoration, PKCS_DigestDecoration<H>::length);
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}
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};
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};
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};
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/// \brief PKCS #1 version 1.5, for use with RSAES and RSASS
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/// \dontinclude pkcspad.h
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struct PKCS1v15 : public SignatureStandard, public EncryptionStandard
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{
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typedef PKCS_EncryptionPaddingScheme EncryptionMessageEncodingMethod;
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typedef PKCS1v15_SignatureMessageEncodingMethod SignatureMessageEncodingMethod;
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};
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NAMESPACE_END
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#endif
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