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md5.h

/////////////////////////////////////////////////////////////////////////
// MD5.cpp
// Implementation file for MD5 class
//
// This C++ Class implementation of the original RSA Data Security, Inc.
// MD5 Message-Digest Algorithm is copyright (c) 2002, Gary McNickle.
// All rights reserved.  This software is a derivative of the "RSA Data
//  Security, Inc. MD5 Message-Digest Algorithm"
//
// You may use this software free of any charge, but without any
// warranty or implied warranty, provided that you follow the terms
// of the original RSA copyright, listed below.
//
// Original RSA Data Security, Inc. Copyright notice
/////////////////////////////////////////////////////////////////////////
//
// Copyright (C) 1991-2, RSA Data Security, Inc. Created 1991. All
// rights reserved.
//
// License to copy and use this software is granted provided that it
// is identified as the "RSA Data Security, Inc. MD5 Message-Digest
// Algorithm" in all material mentioning or referencing this software
// or this function.
// License is also granted to make and use derivative works provided
// that such works are identified as "derived from the RSA Data
// Security, Inc. MD5 Message-Digest Algorithm" in all material
// mentioning or referencing the derived work.
// RSA Data Security, Inc. makes no representations concerning either
// the merchantability of this software or the suitability of this
// software for any particular purpose. It is provided "as is"
// without express or implied warranty of any kind.
// These notices must be retained in any copies of any part of this
// documentation and/or software.
/////////////////////////////////////////////////////////////////////////

typedef unsigned       int uint4;
typedef unsigned short int uint2;
typedef unsigned      char uchar;

char* PrintMD5(uchar md5Digest[16]);
char* MD5String(char* szString);

class md5
{
// Methods
public:
      md5() { Init(); }
      void  Init();
      void  Update(uchar* chInput, uint4 nInputLen);
      void  Finalize();
      uchar*      Digest() { return m_Digest; }

private:

      void  Transform(uchar* block);
      void  Encode(uchar* dest, uint4* src, uint4 nLength);
      void  Decode(uint4* dest, uchar* src, uint4 nLength);


      inline      uint4 rotate_left(uint4 x, uint4 n)
                       { return ((x << n) | (x >> (32-n))); }

      inline      uint4 F(uint4 x, uint4 y, uint4 z)
                       { return ((x & y) | (~x & z)); }

      inline  uint4     G(uint4 x, uint4 y, uint4 z)
                       { return ((x & z) | (y & ~z)); }

      inline  uint4     H(uint4 x, uint4 y, uint4 z)
                       { return (x ^ y ^ z); }

      inline  uint4     I(uint4 x, uint4 y, uint4 z)
                       { return (y ^ (x | ~z)); }

      inline      void  FF(uint4& a, uint4 b, uint4 c, uint4 d, uint4 x, uint4 s, uint4 ac)
                       { a += F(b, c, d) + x + ac; a = rotate_left(a, s); a += b; }

      inline      void  GG(uint4& a, uint4 b, uint4 c, uint4 d, uint4 x, uint4 s, uint4 ac)
                     { a += G(b, c, d) + x + ac; a = rotate_left(a, s); a += b; }

      inline      void  HH(uint4& a, uint4 b, uint4 c, uint4 d, uint4 x, uint4 s, uint4 ac)
                     { a += H(b, c, d) + x + ac; a = rotate_left(a, s); a += b; }

      inline      void  II(uint4& a, uint4 b, uint4 c, uint4 d, uint4 x, uint4 s, uint4 ac)
                     { a += I(b, c, d) + x + ac; a = rotate_left(a, s); a += b; }

// Data
private:
      uint4       m_State[4];
      uint4       m_Count[2];
      uchar       m_Buffer[64];
      uchar       m_Digest[16];
      uchar       m_Finalized;

};

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