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131 lines
4.6 KiB
C++
131 lines
4.6 KiB
C++
// speck.h - written and placed in the public domain by Jeffrey Walton
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//! \file speck.h
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//! \brief Classes for the Speck block cipher
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//! \details Speck is a block cipher designed by Ray Beaulieu, Douglas Shors, Jason Smith,
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//! Stefan Treatman-Clark, Bryan Weeks and Louis Wingers.
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//! \sa <A HREF="http://eprint.iacr.org/2013/404">The SIMON and SPECK Families of
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//! Lightweight Block Ciphers</A> and <A HREF="http://iadgov.github.io/simon-speck/">
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//! The Simon and Speck GitHub</A>
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//! \since Crypto++ 6.0
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#ifndef CRYPTOPP_SPECK_H
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#define CRYPTOPP_SPECK_H
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#include "config.h"
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#include "seckey.h"
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#include "secblock.h"
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NAMESPACE_BEGIN(CryptoPP)
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//! \class SPECK_Info
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//! \brief SPECK block cipher information
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//! \tparam BS block size of the cipher, in bytes
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//! \since Crypto++ 6.0
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template <unsigned int BS, unsigned int D, unsigned int N, unsigned int M>
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struct SPECK_Info : public FixedBlockSize<BS>, VariableKeyLength<D, N, M>
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{
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static const std::string StaticAlgorithmName()
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{
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// Format is Cipher-Blocksize(Keylength)
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return "SPECK-" + IntToString(BS*8);
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}
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};
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//! \class SPECK_Base
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//! \brief SPECK block cipher base class
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//! \tparam BS block size of the cipher, in bytes
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//! \details User code should use SPECK128, SPECK512, SPECK1024
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//! \sa SPECK32, SPECK48, SPECK64, SPECK96, SPECK128, <a href="http://www.cryptopp.com/wiki/SPECK">SPECK</a>
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//! \since Crypto++ 6.0
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template <class W>
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struct SPECK_Base
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{
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typedef SecBlock<W, AllocatorWithCleanup<W, true> > AlignedSecBlock;
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mutable AlignedSecBlock m_wspace; // workspace
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AlignedSecBlock m_rkey; // round keys
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unsigned int m_kwords; // number of key words
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};
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//! \class SPECK64
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//! \brief SPECK 64-bit block cipher
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//! \details SPECK64 provides 64-bit block size. The valid key sizes are 98-bit and 128-bit.
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//! \note Crypto++ provides a byte oriented implementation
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//! \sa SPECK32, SPECK64, and SPECK128, <a href="http://www.cryptopp.com/wiki/SPECK">SPECK</a>
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//! \since Crypto++ 6.0
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class CRYPTOPP_NO_VTABLE SPECK64 : public SPECK_Info<8, 12, 12, 16>, public BlockCipherDocumentation
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{
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public:
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//! \brief SPECK block cipher transformation functions
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//! \details Provides implementation common to encryption and decryption
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//! \since Crypto++ 6.0
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class CRYPTOPP_NO_VTABLE Base : protected SPECK_Base<word32>, public BlockCipherImpl<SPECK_Info<8, 12, 12, 16> >
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{
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public:
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std::string AlgorithmName() const {
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return StaticAlgorithmName() + "(" + IntToString(m_kwords*sizeof(word32)*8) + ")";
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}
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protected:
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void UncheckedSetKey(const byte *userKey, unsigned int keyLength, const NameValuePairs ¶ms);
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};
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class CRYPTOPP_NO_VTABLE Enc : public Base
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{
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protected:
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void ProcessAndXorBlock(const byte *inBlock, const byte *xorBlock, byte *outBlock) const;
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};
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class CRYPTOPP_NO_VTABLE Dec : public Base
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{
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protected:
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void ProcessAndXorBlock(const byte *inBlock, const byte *xorBlock, byte *outBlock) const;
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};
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typedef BlockCipherFinal<ENCRYPTION, Enc> Encryption;
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typedef BlockCipherFinal<DECRYPTION, Dec> Decryption;
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};
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//! \class SPECK128
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//! \brief SPECK 128-bit block cipher
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//! \details SPECK128 provides 128-bit block size. The valid key sizes are 128-bit, 192-bit and 256-bit.
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//! \note Crypto++ provides a byte oriented implementation
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//! \sa SPECK32, SPECK64, and SPECK128, <a href="http://www.cryptopp.com/wiki/SPECK">SPECK</a>
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//! \since Crypto++ 6.0
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class CRYPTOPP_NO_VTABLE SPECK128 : public SPECK_Info<16, 16, 16, 32>, public BlockCipherDocumentation
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{
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public:
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//! \brief SPECK block cipher transformation functions
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//! \details Provides implementation common to encryption and decryption
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//! \since Crypto++ 6.0
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class CRYPTOPP_NO_VTABLE Base : protected SPECK_Base<word64>, public BlockCipherImpl<SPECK_Info<16, 16, 16, 32> >
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{
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public:
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std::string AlgorithmName() const {
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return StaticAlgorithmName() + "(" + IntToString(sizeof(word64)*8) + ")";
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}
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protected:
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void UncheckedSetKey(const byte *userKey, unsigned int keyLength, const NameValuePairs ¶ms);
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};
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class CRYPTOPP_NO_VTABLE Enc : public Base
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{
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protected:
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void ProcessAndXorBlock(const byte *inBlock, const byte *xorBlock, byte *outBlock) const;
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};
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class CRYPTOPP_NO_VTABLE Dec : public Base
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{
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protected:
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void ProcessAndXorBlock(const byte *inBlock, const byte *xorBlock, byte *outBlock) const;
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};
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typedef BlockCipherFinal<ENCRYPTION, Enc> Encryption;
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typedef BlockCipherFinal<DECRYPTION, Dec> Decryption;
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};
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NAMESPACE_END
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#endif // CRYPTOPP_SPECK_H
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