569 lines
28 KiB
C#
569 lines
28 KiB
C#
// This code is derived from jcifs smb client library <jcifs at samba dot org>
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// Ported by J. Arturo <webmaster at komodosoft dot net>
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2.1 of the License, or (at your option) any later version.
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//
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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using System;
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namespace SharpCifs.Util
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{
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/// <summary>
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/// This code is derived from the above source
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/// JCIFS API
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/// Norbert Hranitzky
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/// <p>and modified again by Michael B.
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/// </summary>
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/// <remarks>
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/// This code is derived from the above source
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/// JCIFS API
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/// Norbert Hranitzky
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/// <p>and modified again by Michael B. Allen
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/// </remarks>
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public class DES
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{
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private int[] _encryptKeys = new int[32];
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private int[] _decryptKeys = new int[32];
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private int[] _tempInts = new int[2];
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public DES()
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{
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}
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public DES(byte[] key)
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{
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// DesCipher - the DES encryption method
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//
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// The meat of this code is by Dave Zimmerman <dzimm@widget.com>, and is:
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//
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// Copyright (c) 1996 Widget Workshop, Inc. All Rights Reserved.
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//
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// Permission to use, copy, modify, and distribute this software
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// and its documentation for NON-COMMERCIAL or COMMERCIAL purposes and
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// without fee is hereby granted, provided that this copyright notice is kept
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// intact.
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//
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// WIDGET WORKSHOP MAKES NO REPRESENTATIONS OR WARRANTIES ABOUT THE SUITABILITY
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// OF THE SOFTWARE, EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED
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// TO THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A
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// PARTICULAR PURPOSE, OR NON-INFRINGEMENT. WIDGET WORKSHOP SHALL NOT BE LIABLE
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// FOR ANY DAMAGES SUFFERED BY LICENSEE AS A RESULT OF USING, MODIFYING OR
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// DISTRIBUTING THIS SOFTWARE OR ITS DERIVATIVES.
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//
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// THIS SOFTWARE IS NOT DESIGNED OR INTENDED FOR USE OR RESALE AS ON-LINE
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// CONTROL EQUIPMENT IN HAZARDOUS ENVIRONMENTS REQUIRING FAIL-SAFE
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// PERFORMANCE, SUCH AS IN THE OPERATION OF NUCLEAR FACILITIES, AIRCRAFT
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// NAVIGATION OR COMMUNICATION SYSTEMS, AIR TRAFFIC CONTROL, DIRECT LIFE
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// SUPPORT MACHINES, OR WEAPONS SYSTEMS, IN WHICH THE FAILURE OF THE
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// SOFTWARE COULD LEAD DIRECTLY TO DEATH, PERSONAL INJURY, OR SEVERE
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// PHYSICAL OR ENVIRONMENTAL DAMAGE ("HIGH RISK ACTIVITIES"). WIDGET WORKSHOP
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// SPECIFICALLY DISCLAIMS ANY EXPRESS OR IMPLIED WARRANTY OF FITNESS FOR
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// HIGH RISK ACTIVITIES.
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//
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//
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// The rest is:
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//
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// Copyright (C) 1996 by Jef Poskanzer <jef@acme.com>. All rights reserved.
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//
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// Copyright (C) 1996 by Wolfgang Platzer
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// email: wplatzer@iaik.tu-graz.ac.at
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions
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// are met:
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// 1. Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// 2. Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in the
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// documentation and/or other materials provided with the distribution.
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//
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// THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
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// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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// IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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// ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
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// FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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// DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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// OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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// HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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// LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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// OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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// SUCH DAMAGE.
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//
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// Constructor, byte-array key.
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if (key.Length == 7)
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{
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byte[] key8 = new byte[8];
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MakeSmbKey(key, key8);
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SetKey(key8);
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}
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else
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{
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SetKey(key);
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}
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}
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public static void MakeSmbKey(byte[] key7, byte[] key8)
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{
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int i;
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key8[0] = unchecked((byte)((key7[0] >> 1) & unchecked(0xff)));
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key8[1] = unchecked((byte)((((key7[0] & unchecked(0x01)) << 6) | (((key7[1
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] & unchecked(0xff)) >> 2) & unchecked(0xff))) & unchecked(0xff)));
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key8[2] = unchecked((byte)((((key7[1] & unchecked(0x03)) << 5) | (((key7[2
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] & unchecked(0xff)) >> 3) & unchecked(0xff))) & unchecked(0xff)));
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key8[3] = unchecked((byte)((((key7[2] & unchecked(0x07)) << 4) | (((key7[3
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] & unchecked(0xff)) >> 4) & unchecked(0xff))) & unchecked(0xff)));
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key8[4] = unchecked((byte)((((key7[3] & unchecked(0x0F)) << 3) | (((key7[4
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] & unchecked(0xff)) >> 5) & unchecked(0xff))) & unchecked(0xff)));
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key8[5] = unchecked((byte)((((key7[4] & unchecked(0x1F)) << 2) | (((key7[5
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] & unchecked(0xff)) >> 6) & unchecked(0xff))) & unchecked(0xff)));
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key8[6] = unchecked((byte)((((key7[5] & unchecked(0x3F)) << 1) | (((key7[6
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] & unchecked(0xff)) >> 7) & unchecked(0xff))) & unchecked(0xff)));
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key8[7] = unchecked((byte)(key7[6] & unchecked(0x7F)));
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for (i = 0; i < 8; i++)
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{
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key8[i] = unchecked((byte)(key8[i] << 1));
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}
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}
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/// Set the key.
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public virtual void SetKey(byte[] key)
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{
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// CHECK PAROTY TBD
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Deskey(key, true, _encryptKeys);
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Deskey(key, false, _decryptKeys);
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}
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// Turn an 8-byte key into internal keys.
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private void Deskey(byte[] keyBlock, bool encrypting, int[] knL)
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{
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int i;
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int j;
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int l;
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int m;
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int n;
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int[] pc1M = new int[56];
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int[] pcr = new int[56];
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int[] kn = new int[32];
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for (j = 0; j < 56; ++j)
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{
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l = _pc1[j];
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m = l & 0x7;
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pc1M[j] = ((keyBlock[(int)(((uint)l) >> 3)] & _bytebit[m]) != 0) ? 1 : 0;
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}
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for (i = 0; i < 16; ++i)
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{
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if (encrypting)
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{
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m = i << 1;
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}
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else
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{
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m = (15 - i) << 1;
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}
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n = m + 1;
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kn[m] = kn[n] = 0;
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for (j = 0; j < 28; ++j)
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{
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l = j + _totrot[i];
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if (l < 28)
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{
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pcr[j] = pc1M[l];
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}
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else
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{
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pcr[j] = pc1M[l - 28];
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}
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}
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for (j = 28; j < 56; ++j)
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{
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l = j + _totrot[i];
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if (l < 56)
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{
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pcr[j] = pc1M[l];
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}
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else
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{
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pcr[j] = pc1M[l - 28];
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}
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}
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for (j = 0; j < 24; ++j)
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{
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if (pcr[_pc2[j]] != 0)
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{
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kn[m] |= _bigbyte[j];
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}
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if (pcr[_pc2[j + 24]] != 0)
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{
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kn[n] |= _bigbyte[j];
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}
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}
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}
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Cookey(kn, knL);
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}
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private void Cookey(int[] raw, int[] knL)
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{
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int raw0;
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int raw1;
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int rawi;
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int knLi;
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int i;
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for (i = 0, rawi = 0, knLi = 0; i < 16; ++i)
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{
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raw0 = raw[rawi++];
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raw1 = raw[rawi++];
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knL[knLi] = (raw0 & unchecked(0x00fc0000)) << 6;
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knL[knLi] |= (raw0 & unchecked(0x00000fc0)) << 10;
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knL[knLi] |= (int)(((uint)(raw1 & unchecked(0x00fc0000))) >> 10);
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knL[knLi] |= (int)(((uint)(raw1 & unchecked(0x00000fc0))) >> 6);
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++knLi;
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knL[knLi] = (raw0 & unchecked(0x0003f000)) << 12;
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knL[knLi] |= (raw0 & unchecked(0x0000003f)) << 16;
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knL[knLi] |= (int)(((uint)(raw1 & unchecked(0x0003f000))) >> 4);
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knL[knLi] |= (raw1 & unchecked(0x0000003f));
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++knLi;
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}
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}
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/// Encrypt a block of eight bytes.
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private void Encrypt(byte[] clearText, int clearOff, byte[] cipherText, int cipherOff
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)
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{
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SquashBytesToInts(clearText, clearOff, _tempInts, 0, 2);
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Des(_tempInts, _tempInts, _encryptKeys);
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SpreadIntsToBytes(_tempInts, 0, cipherText, cipherOff, 2);
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}
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/// Decrypt a block of eight bytes.
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private void Decrypt(byte[] cipherText, int cipherOff, byte[] clearText, int clearOff
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)
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{
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SquashBytesToInts(cipherText, cipherOff, _tempInts, 0, 2);
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Des(_tempInts, _tempInts, _decryptKeys);
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SpreadIntsToBytes(_tempInts, 0, clearText, clearOff, 2);
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}
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// The DES function.
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private void Des(int[] inInts, int[] outInts, int[] keys)
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{
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int fval;
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int work;
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int right;
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int leftt;
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int round;
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int keysi = 0;
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leftt = inInts[0];
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right = inInts[1];
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work = (((int)(((uint)leftt) >> 4)) ^ right) & unchecked(0x0f0f0f0f);
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right ^= work;
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leftt ^= (work << 4);
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work = (((int)(((uint)leftt) >> 16)) ^ right) & unchecked(0x0000ffff);
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right ^= work;
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leftt ^= (work << 16);
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work = (((int)(((uint)right) >> 2)) ^ leftt) & unchecked(0x33333333);
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leftt ^= work;
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right ^= (work << 2);
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work = (((int)(((uint)right) >> 8)) ^ leftt) & unchecked(0x00ff00ff);
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leftt ^= work;
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right ^= (work << 8);
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right = (right << 1) | (((int)(((uint)right) >> 31)) & 1);
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work = (leftt ^ right) & unchecked((int)(0xaaaaaaaa));
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leftt ^= work;
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right ^= work;
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leftt = (leftt << 1) | (((int)(((uint)leftt) >> 31)) & 1);
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for (round = 0; round < 8; ++round)
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{
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work = (right << 28) | ((int)(((uint)right) >> 4));
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work ^= keys[keysi++];
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fval = _sp7[work & unchecked(0x0000003f)];
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fval |= _sp5[((int)(((uint)work) >> 8)) & unchecked(0x0000003f)];
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fval |= _sp3[((int)(((uint)work) >> 16)) & unchecked(0x0000003f)];
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fval |= _sp1[((int)(((uint)work) >> 24)) & unchecked(0x0000003f)];
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work = right ^ keys[keysi++];
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fval |= _sp8[work & unchecked(0x0000003f)];
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fval |= _sp6[((int)(((uint)work) >> 8)) & unchecked(0x0000003f)];
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fval |= _sp4[((int)(((uint)work) >> 16)) & unchecked(0x0000003f)];
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fval |= _sp2[((int)(((uint)work) >> 24)) & unchecked(0x0000003f)];
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leftt ^= fval;
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work = (leftt << 28) | ((int)(((uint)leftt) >> 4));
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work ^= keys[keysi++];
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fval = _sp7[work & unchecked(0x0000003f)];
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fval |= _sp5[((int)(((uint)work) >> 8)) & unchecked(0x0000003f)];
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fval |= _sp3[((int)(((uint)work) >> 16)) & unchecked(0x0000003f)];
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fval |= _sp1[((int)(((uint)work) >> 24)) & unchecked(0x0000003f)];
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work = leftt ^ keys[keysi++];
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fval |= _sp8[work & unchecked(0x0000003f)];
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fval |= _sp6[((int)(((uint)work) >> 8)) & unchecked(0x0000003f)];
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fval |= _sp4[((int)(((uint)work) >> 16)) & unchecked(0x0000003f)];
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fval |= _sp2[((int)(((uint)work) >> 24)) & unchecked(0x0000003f)];
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right ^= fval;
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}
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right = (right << 31) | ((int)(((uint)right) >> 1));
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work = (leftt ^ right) & unchecked((int)(0xaaaaaaaa));
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leftt ^= work;
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right ^= work;
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leftt = (leftt << 31) | ((int)(((uint)leftt) >> 1));
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work = (((int)(((uint)leftt) >> 8)) ^ right) & unchecked(0x00ff00ff);
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right ^= work;
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leftt ^= (work << 8);
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work = (((int)(((uint)leftt) >> 2)) ^ right) & unchecked(0x33333333);
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right ^= work;
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leftt ^= (work << 2);
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work = (((int)(((uint)right) >> 16)) ^ leftt) & unchecked(0x0000ffff);
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leftt ^= work;
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right ^= (work << 16);
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work = (((int)(((uint)right) >> 4)) ^ leftt) & unchecked(0x0f0f0f0f);
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leftt ^= work;
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right ^= (work << 4);
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outInts[0] = right;
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outInts[1] = leftt;
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}
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/// Encrypt a block of bytes.
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public virtual void Encrypt(byte[] clearText, byte[] cipherText)
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{
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Encrypt(clearText, 0, cipherText, 0);
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}
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/// Decrypt a block of bytes.
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public virtual void Decrypt(byte[] cipherText, byte[] clearText)
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{
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Decrypt(cipherText, 0, clearText, 0);
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}
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/// <summary>encrypts an array where the length must be a multiple of 8</summary>
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public virtual byte[] Encrypt(byte[] clearText)
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{
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int length = clearText.Length;
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if (length % 8 != 0)
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{
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Console.Out.WriteLine("Array must be a multiple of 8");
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return null;
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}
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byte[] cipherText = new byte[length];
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int count = length / 8;
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for (int i = 0; i < count; i++)
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{
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Encrypt(clearText, i * 8, cipherText, i * 8);
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}
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return cipherText;
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}
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/// <summary>decrypts an array where the length must be a multiple of 8</summary>
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public virtual byte[] Decrypt(byte[] cipherText)
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{
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int length = cipherText.Length;
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if (length % 8 != 0)
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{
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Console.Out.WriteLine("Array must be a multiple of 8");
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return null;
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}
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byte[] clearText = new byte[length];
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int count = length / 8;
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for (int i = 0; i < count; i++)
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{
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Encrypt(cipherText, i * 8, clearText, i * 8);
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}
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return clearText;
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}
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private static byte[] _bytebit = { unchecked(unchecked(0x80)), unchecked(unchecked(0x40)), unchecked(unchecked(0x20)), unchecked(unchecked(0x10)), unchecked(unchecked(0x08)), unchecked(unchecked(0x04)), unchecked(unchecked(0x02)), unchecked(unchecked(0x01)) };
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private static int[] _bigbyte = { unchecked(0x800000), unchecked(
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0x400000), unchecked(0x200000), unchecked(0x100000), unchecked(
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0x080000), unchecked(0x040000), unchecked(0x020000), unchecked(
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0x010000), unchecked(0x008000), unchecked(0x004000), unchecked(
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0x002000), unchecked(0x001000), unchecked(0x000800), unchecked(
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0x000400), unchecked(0x000200), unchecked(0x000100), unchecked(
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0x000080), unchecked(0x000040), unchecked(0x000020), unchecked(
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0x000010), unchecked(0x000008), unchecked(0x000004), unchecked(
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0x000002), unchecked(0x000001) };
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private static byte[] _pc1 = { unchecked(56), unchecked(48)
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, unchecked(40), unchecked(32), unchecked(24), unchecked(16), unchecked(8), unchecked(0), unchecked(57), unchecked(49), unchecked(41), unchecked(33), unchecked(25), unchecked(17), unchecked(9), unchecked(1), unchecked(58), unchecked(
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50), unchecked(42), unchecked(34), unchecked(26), unchecked(
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18), unchecked(10), unchecked(2), unchecked(59), unchecked(
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51), unchecked(43), unchecked(35), unchecked(62), unchecked(
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54), unchecked(46), unchecked(38), unchecked(30), unchecked(
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22), unchecked(14), unchecked(6), unchecked(61), unchecked(
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53), unchecked(45), unchecked(37), unchecked(29), unchecked(
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21), unchecked(13), unchecked(5), unchecked(60), unchecked(
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52), unchecked(44), unchecked(36), unchecked(28), unchecked(
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20), unchecked(12), unchecked(4), unchecked(27), unchecked(
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19), unchecked(11), unchecked(3) };
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private static int[] _totrot = { 1, 2, 4, 6, 8, 10, 12, 14, 15, 17, 19,
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21, 23, 25, 27, 28 };
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private static byte[] _pc2 = { unchecked(13), unchecked(16)
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, unchecked(10), unchecked(23), unchecked(0), unchecked(4), unchecked(2), unchecked(27), unchecked(14), unchecked(5), unchecked(20), unchecked(9), unchecked(22), unchecked(18), unchecked(11), unchecked(3), unchecked(25), unchecked(7), unchecked(15), unchecked(6), unchecked(26), unchecked(19), unchecked(12), unchecked(1), unchecked(40), unchecked(51), unchecked(30), unchecked(36), unchecked(46), unchecked(54), unchecked(29), unchecked(39), unchecked(50), unchecked(
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44), unchecked(32), unchecked(47), unchecked(43), unchecked(
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48), unchecked(38), unchecked(55), unchecked(33), unchecked(
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52), unchecked(45), unchecked(41), unchecked(49), unchecked(
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35), unchecked(28), unchecked(31) };
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private static int[] _sp1 = { unchecked(0x01010400), unchecked(0x00000000), unchecked(0x00010000), unchecked(0x01010404), unchecked(
|
|
0x01010004), unchecked(0x00010404), unchecked(0x00000004),
|
|
unchecked(0x00010000), unchecked(0x00000400), unchecked(0x01010400), unchecked(0x01010404), unchecked(0x00000400), unchecked(0x01000404), unchecked(0x01010004), unchecked(0x01000000), unchecked(
|
|
0x00000004), unchecked(0x00000404), unchecked(0x01000400),
|
|
unchecked(0x01000400), unchecked(0x00010400), unchecked(0x00010400), unchecked(0x01010000), unchecked(0x01010000), unchecked(0x01000404), unchecked(0x00010004), unchecked(0x01000004), unchecked(
|
|
0x01000004), unchecked(0x00010004), unchecked(0x00000000),
|
|
unchecked(0x00000404), unchecked(0x00010404), unchecked(0x01000000), unchecked(0x00010000), unchecked(0x01010404), unchecked(0x00000004), unchecked(0x01010000), unchecked(0x01010400), unchecked(
|
|
0x01000000), unchecked(0x01000000), unchecked(0x00000400),
|
|
unchecked(0x01010004), unchecked(0x00010000), unchecked(0x00010400), unchecked(0x01000004), unchecked(0x00000400), unchecked(0x00000004), unchecked(0x01000404), unchecked(0x00010404), unchecked(
|
|
0x01010404), unchecked(0x00010004), unchecked(0x01010000),
|
|
unchecked(0x01000404), unchecked(0x01000004), unchecked(0x00000404), unchecked(0x00010404), unchecked(0x01010400), unchecked(0x00000404), unchecked(0x01000400), unchecked(0x01000400), unchecked(
|
|
0x00000000), unchecked(0x00010004), unchecked(0x00010400),
|
|
unchecked(0x00000000), unchecked(0x01010004) };
|
|
|
|
private static int[] _sp2 = { unchecked((int)(0x80108020)), unchecked((int
|
|
)(0x80008000)), unchecked(0x00008000), unchecked(0x00108020), unchecked(
|
|
0x00100000), unchecked(0x00000020), unchecked((int)(0x80100020)),
|
|
unchecked((int)(0x80008020)), unchecked((int)(0x80000020)), unchecked((int)(0x80108020
|
|
)), unchecked((int)(0x80108000)), unchecked((int)(0x80000000)), unchecked((int)(
|
|
0x80008000)), unchecked(0x00100000), unchecked(0x00000020), unchecked(
|
|
(int)(0x80100020)), unchecked(0x00108000), unchecked(0x00100020),
|
|
unchecked((int)(0x80008020)), unchecked(0x00000000), unchecked((int)(0x80000000
|
|
)), unchecked(0x00008000), unchecked(0x00108020), unchecked((int)(
|
|
0x80100000)), unchecked(0x00100020), unchecked((int)(0x80000020)), unchecked(
|
|
0x00000000), unchecked(0x00108000), unchecked(0x00008020),
|
|
unchecked((int)(0x80108000)), unchecked((int)(0x80100000)), unchecked(0x00008020), unchecked(0x00000000), unchecked(0x00108020), unchecked((int)(
|
|
0x80100020)), unchecked(0x00100000), unchecked((int)(0x80008020)), unchecked(
|
|
(int)(0x80100000)), unchecked((int)(0x80108000)), unchecked(0x00008000),
|
|
unchecked((int)(0x80100000)), unchecked((int)(0x80008000)), unchecked(0x00000020), unchecked((int)(0x80108020)), unchecked(0x00108020), unchecked(0x00000020), unchecked(0x00008000), unchecked((int)(0x80000000)), unchecked(
|
|
0x00008020), unchecked((int)(0x80108000)), unchecked(0x00100000),
|
|
unchecked((int)(0x80000020)), unchecked(0x00100020), unchecked((int)(0x80008020
|
|
)), unchecked((int)(0x80000020)), unchecked(0x00100020), unchecked(0x00108000), unchecked(0x00000000), unchecked((int)(0x80008000)), unchecked(
|
|
0x00008020), unchecked((int)(0x80000000)), unchecked((int)(0x80100020)),
|
|
unchecked((int)(0x80108020)), unchecked(0x00108000) };
|
|
|
|
private static int[] _sp3 = { unchecked(0x00000208), unchecked(0x08020200), unchecked(0x00000000), unchecked(0x08020008), unchecked(
|
|
0x08000200), unchecked(0x00000000), unchecked(0x00020208),
|
|
unchecked(0x08000200), unchecked(0x00020008), unchecked(0x08000008), unchecked(0x08000008), unchecked(0x00020000), unchecked(0x08020208), unchecked(0x00020008), unchecked(0x08020000), unchecked(
|
|
0x00000208), unchecked(0x08000000), unchecked(0x00000008),
|
|
unchecked(0x08020200), unchecked(0x00000200), unchecked(0x00020200), unchecked(0x08020000), unchecked(0x08020008), unchecked(0x00020208), unchecked(0x08000208), unchecked(0x00020200), unchecked(
|
|
0x00020000), unchecked(0x08000208), unchecked(0x00000008),
|
|
unchecked(0x08020208), unchecked(0x00000200), unchecked(0x08000000), unchecked(0x08020200), unchecked(0x08000000), unchecked(0x00020008), unchecked(0x00000208), unchecked(0x00020000), unchecked(
|
|
0x08020200), unchecked(0x08000200), unchecked(0x00000000),
|
|
unchecked(0x00000200), unchecked(0x00020008), unchecked(0x08020208), unchecked(0x08000200), unchecked(0x08000008), unchecked(0x00000200), unchecked(0x00000000), unchecked(0x08020008), unchecked(
|
|
0x08000208), unchecked(0x00020000), unchecked(0x08000000),
|
|
unchecked(0x08020208), unchecked(0x00000008), unchecked(0x00020208), unchecked(0x00020200), unchecked(0x08000008), unchecked(0x08020000), unchecked(0x08000208), unchecked(0x00000208), unchecked(
|
|
0x08020000), unchecked(0x00020208), unchecked(0x00000008),
|
|
unchecked(0x08020008), unchecked(0x00020200) };
|
|
|
|
private static int[] _sp4 = { unchecked(0x00802001), unchecked(0x00002081), unchecked(0x00002081), unchecked(0x00000080), unchecked(
|
|
0x00802080), unchecked(0x00800081), unchecked(0x00800001),
|
|
unchecked(0x00002001), unchecked(0x00000000), unchecked(0x00802000), unchecked(0x00802000), unchecked(0x00802081), unchecked(0x00000081), unchecked(0x00000000), unchecked(0x00800080), unchecked(
|
|
0x00800001), unchecked(0x00000001), unchecked(0x00002000),
|
|
unchecked(0x00800000), unchecked(0x00802001), unchecked(0x00000080), unchecked(0x00800000), unchecked(0x00002001), unchecked(0x00002080), unchecked(0x00800081), unchecked(0x00000001), unchecked(
|
|
0x00002080), unchecked(0x00800080), unchecked(0x00002000),
|
|
unchecked(0x00802080), unchecked(0x00802081), unchecked(0x00000081), unchecked(0x00800080), unchecked(0x00800001), unchecked(0x00802000), unchecked(0x00802081), unchecked(0x00000081), unchecked(
|
|
0x00000000), unchecked(0x00000000), unchecked(0x00802000),
|
|
unchecked(0x00002080), unchecked(0x00800080), unchecked(0x00800081), unchecked(0x00000001), unchecked(0x00802001), unchecked(0x00002081), unchecked(0x00002081), unchecked(0x00000080), unchecked(
|
|
0x00802081), unchecked(0x00000081), unchecked(0x00000001),
|
|
unchecked(0x00002000), unchecked(0x00800001), unchecked(0x00002001), unchecked(0x00802080), unchecked(0x00800081), unchecked(0x00002001), unchecked(0x00002080), unchecked(0x00800000), unchecked(
|
|
0x00802001), unchecked(0x00000080), unchecked(0x00800000),
|
|
unchecked(0x00002000), unchecked(0x00802080) };
|
|
|
|
private static int[] _sp5 = { unchecked(0x00000100), unchecked(0x02080100), unchecked(0x02080000), unchecked(0x42000100), unchecked(
|
|
0x00080000), unchecked(0x00000100), unchecked(0x40000000),
|
|
unchecked(0x02080000), unchecked(0x40080100), unchecked(0x00080000), unchecked(0x02000100), unchecked(0x40080100), unchecked(0x42000100), unchecked(0x42080000), unchecked(0x00080100), unchecked(
|
|
0x40000000), unchecked(0x02000000), unchecked(0x40080000),
|
|
unchecked(0x40080000), unchecked(0x00000000), unchecked(0x40000100), unchecked(0x42080100), unchecked(0x42080100), unchecked(0x02000100), unchecked(0x42080000), unchecked(0x40000100), unchecked(
|
|
0x00000000), unchecked(0x42000000), unchecked(0x02080100),
|
|
unchecked(0x02000000), unchecked(0x42000000), unchecked(0x00080100), unchecked(0x00080000), unchecked(0x42000100), unchecked(0x00000100), unchecked(0x02000000), unchecked(0x40000000), unchecked(
|
|
0x02080000), unchecked(0x42000100), unchecked(0x40080100),
|
|
unchecked(0x02000100), unchecked(0x40000000), unchecked(0x42080000), unchecked(0x02080100), unchecked(0x40080100), unchecked(0x00000100), unchecked(0x02000000), unchecked(0x42080000), unchecked(
|
|
0x42080100), unchecked(0x00080100), unchecked(0x42000000),
|
|
unchecked(0x42080100), unchecked(0x02080000), unchecked(0x00000000), unchecked(0x40080000), unchecked(0x42000000), unchecked(0x00080100), unchecked(0x02000100), unchecked(0x40000100), unchecked(
|
|
0x00080000), unchecked(0x00000000), unchecked(0x40080000),
|
|
unchecked(0x02080100), unchecked(0x40000100) };
|
|
|
|
private static int[] _sp6 = { unchecked(0x20000010), unchecked(0x20400000), unchecked(0x00004000), unchecked(0x20404010), unchecked(
|
|
0x20400000), unchecked(0x00000010), unchecked(0x20404010),
|
|
unchecked(0x00400000), unchecked(0x20004000), unchecked(0x00404010), unchecked(0x00400000), unchecked(0x20000010), unchecked(0x00400010), unchecked(0x20004000), unchecked(0x20000000), unchecked(
|
|
0x00004010), unchecked(0x00000000), unchecked(0x00400010),
|
|
unchecked(0x20004010), unchecked(0x00004000), unchecked(0x00404000), unchecked(0x20004010), unchecked(0x00000010), unchecked(0x20400010), unchecked(0x20400010), unchecked(0x00000000), unchecked(
|
|
0x00404010), unchecked(0x20404000), unchecked(0x00004010),
|
|
unchecked(0x00404000), unchecked(0x20404000), unchecked(0x20000000), unchecked(0x20004000), unchecked(0x00000010), unchecked(0x20400010), unchecked(0x00404000), unchecked(0x20404010), unchecked(
|
|
0x00400000), unchecked(0x00004010), unchecked(0x20000010),
|
|
unchecked(0x00400000), unchecked(0x20004000), unchecked(0x20000000), unchecked(0x00004010), unchecked(0x20000010), unchecked(0x20404010), unchecked(0x00404000), unchecked(0x20400000), unchecked(
|
|
0x00404010), unchecked(0x20404000), unchecked(0x00000000),
|
|
unchecked(0x20400010), unchecked(0x00000010), unchecked(0x00004000), unchecked(0x20400000), unchecked(0x00404010), unchecked(0x00004000), unchecked(0x00400010), unchecked(0x20004010), unchecked(
|
|
0x00000000), unchecked(0x20404000), unchecked(0x20000000),
|
|
unchecked(0x00400010), unchecked(0x20004010) };
|
|
|
|
private static int[] _sp7 = { unchecked(0x00200000), unchecked(0x04200002), unchecked(0x04000802), unchecked(0x00000000), unchecked(
|
|
0x00000800), unchecked(0x04000802), unchecked(0x00200802),
|
|
unchecked(0x04200800), unchecked(0x04200802), unchecked(0x00200000), unchecked(0x00000000), unchecked(0x04000002), unchecked(0x00000002), unchecked(0x04000000), unchecked(0x04200002), unchecked(
|
|
0x00000802), unchecked(0x04000800), unchecked(0x00200802),
|
|
unchecked(0x00200002), unchecked(0x04000800), unchecked(0x04000002), unchecked(0x04200000), unchecked(0x04200800), unchecked(0x00200002), unchecked(0x04200000), unchecked(0x00000800), unchecked(
|
|
0x00000802), unchecked(0x04200802), unchecked(0x00200800),
|
|
unchecked(0x00000002), unchecked(0x04000000), unchecked(0x00200800), unchecked(0x04000000), unchecked(0x00200800), unchecked(0x00200000), unchecked(0x04000802), unchecked(0x04000802), unchecked(
|
|
0x04200002), unchecked(0x04200002), unchecked(0x00000002),
|
|
unchecked(0x00200002), unchecked(0x04000000), unchecked(0x04000800), unchecked(0x00200000), unchecked(0x04200800), unchecked(0x00000802), unchecked(0x00200802), unchecked(0x04200800), unchecked(
|
|
0x00000802), unchecked(0x04000002), unchecked(0x04200802),
|
|
unchecked(0x04200000), unchecked(0x00200800), unchecked(0x00000000), unchecked(0x00000002), unchecked(0x04200802), unchecked(0x00000000), unchecked(0x00200802), unchecked(0x04200000), unchecked(
|
|
0x00000800), unchecked(0x04000002), unchecked(0x04000800),
|
|
unchecked(0x00000800), unchecked(0x00200002) };
|
|
|
|
private static int[] _sp8 = { unchecked(0x10001040), unchecked(0x00001000), unchecked(0x00040000), unchecked(0x10041040), unchecked(
|
|
0x10000000), unchecked(0x10001040), unchecked(0x00000040),
|
|
unchecked(0x10000000), unchecked(0x00040040), unchecked(0x10040000), unchecked(0x10041040), unchecked(0x00041000), unchecked(0x10041000), unchecked(0x00041040), unchecked(0x00001000), unchecked(
|
|
0x00000040), unchecked(0x10040000), unchecked(0x10000040),
|
|
unchecked(0x10001000), unchecked(0x00001040), unchecked(0x00041000), unchecked(0x00040040), unchecked(0x10040040), unchecked(0x10041000), unchecked(0x00001040), unchecked(0x00000000), unchecked(
|
|
0x00000000), unchecked(0x10040040), unchecked(0x10000040),
|
|
unchecked(0x10001000), unchecked(0x00041040), unchecked(0x00040000), unchecked(0x00041040), unchecked(0x00040000), unchecked(0x10041000), unchecked(0x00001000), unchecked(0x00000040), unchecked(
|
|
0x10040040), unchecked(0x00001000), unchecked(0x00041040),
|
|
unchecked(0x10001000), unchecked(0x00000040), unchecked(0x10000040), unchecked(0x10040000), unchecked(0x10040040), unchecked(0x10000000), unchecked(0x00040000), unchecked(0x10001040), unchecked(
|
|
0x00000000), unchecked(0x10041040), unchecked(0x00040040),
|
|
unchecked(0x10000040), unchecked(0x10040000), unchecked(0x10001000), unchecked(0x10001040), unchecked(0x00000000), unchecked(0x10041040), unchecked(0x00041000), unchecked(0x00041000), unchecked(
|
|
0x00001040), unchecked(0x00001040), unchecked(0x00040040),
|
|
unchecked(0x10000000), unchecked(0x10041000) };
|
|
|
|
// Tables, permutations, S-boxes, etc.
|
|
/// Squash bytes down to ints.
|
|
public static void SquashBytesToInts(byte[] inBytes, int inOff, int[] outInts, int
|
|
outOff, int intLen)
|
|
{
|
|
for (int i = 0; i < intLen; ++i)
|
|
{
|
|
outInts[outOff + i] = ((inBytes[inOff + i * 4] & unchecked(0xff)) << 24) |
|
|
((inBytes[inOff + i * 4 + 1] & unchecked(0xff)) << 16) | ((inBytes[inOff
|
|
+ i * 4 + 2] & unchecked(0xff)) << 8) | (inBytes[inOff + i * 4 + 3] & unchecked(
|
|
0xff));
|
|
}
|
|
}
|
|
|
|
/// Spread ints into bytes.
|
|
public static void SpreadIntsToBytes(int[] inInts, int inOff, byte[] outBytes, int
|
|
outOff, int intLen)
|
|
{
|
|
for (int i = 0; i < intLen; ++i)
|
|
{
|
|
outBytes[outOff + i * 4] = unchecked((byte)((int)(((uint)inInts[inOff + i]) >> 24
|
|
)));
|
|
outBytes[outOff + i * 4 + 1] = unchecked((byte)((int)(((uint)inInts[inOff + i]) >>
|
|
16)));
|
|
outBytes[outOff + i * 4 + 2] = unchecked((byte)((int)(((uint)inInts[inOff + i]) >>
|
|
8)));
|
|
outBytes[outOff + i * 4 + 3] = unchecked((byte)inInts[inOff + i]);
|
|
}
|
|
}
|
|
}
|
|
}
|