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 */  | 
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/*      Copyright (c) 1988 AT&T */  | 
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/*        All Rights Reserved   */  | 
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/**  | 
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 * Implements the UNIX crypt(3) function, based on a direct port of the  | 
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 * libc crypt function.  | 
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 *  | 
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 * <p>  | 
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 * From the crypt man page:  | 
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 * <p>  | 
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 * crypt() is the password encryption routine, based on the NBS  | 
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 * Data  Encryption  Standard,  with variations intended (among  | 
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 * other things) to frustrate use of  hardware  implementations  | 
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 * of the DES for key search.  | 
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 * <p>  | 
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 * The first argument to crypt() is  normally  a  user's  typed  | 
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 * password.   The  second  is a 2-character string chosen from  | 
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 * the set [a-zA-Z0-9./].  the  salt string is used to perturb  | 
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 * the DES algorithm in one  | 
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 * of 4096 different ways, after which the password is used  as  | 
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 * the  key  to  encrypt  repeatedly  a  constant  string.  The  | 
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 * returned value points to the encrypted password, in the same  | 
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 * alphabet as the salt.  The first two characters are the salt  | 
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 * itself.  | 
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 *  | 
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 * @author Roland Schemers  | 
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 */  | 
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package com.sun.security.auth.module;  | 
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class Crypt { | 
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/* EXPORT DELETE START */  | 
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    private static final byte[] IP = { | 
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        58, 50, 42, 34, 26, 18, 10, 2,  | 
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        60, 52, 44, 36, 28, 20, 12, 4,  | 
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        62, 54, 46, 38, 30, 22, 14, 6,  | 
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        64, 56, 48, 40, 32, 24, 16, 8,  | 
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        57, 49, 41, 33, 25, 17, 9, 1,  | 
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        59, 51, 43, 35, 27, 19, 11, 3,  | 
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        61, 53, 45, 37, 29, 21, 13, 5,  | 
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        63, 55, 47, 39, 31, 23, 15, 7,  | 
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    };  | 
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    private static final byte[] FP = { | 
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        40, 8, 48, 16, 56, 24, 64, 32,  | 
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        39, 7, 47, 15,  55, 23, 63, 31,  | 
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        38, 6, 46, 14, 54, 22, 62, 30,  | 
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        37, 5, 45, 13, 53, 21, 61, 29,  | 
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        36, 4, 44, 12, 52, 20, 60, 28,  | 
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        35, 3, 43, 11, 51, 19, 59, 27,  | 
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        34, 2, 42, 10, 50, 18, 58, 26,  | 
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        33, 1, 41, 9, 49, 17, 57, 25,  | 
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    };  | 
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    private static final byte[] PC1_C = { | 
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        57, 49, 41, 33, 25, 17, 9,  | 
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        1, 58, 50, 42, 34, 26, 18,  | 
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        10, 2, 59, 51, 43, 35, 27,  | 
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        19, 11, 3, 60, 52, 44, 36,  | 
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    };  | 
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    private static final byte[] PC1_D = { | 
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        63, 55, 47, 39, 31, 23, 15,  | 
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        7, 62, 54, 46, 38, 30, 22,  | 
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        14, 6, 61, 53, 45, 37, 29,  | 
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        21, 13, 5, 28, 20, 12, 4,  | 
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    };  | 
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    private static final byte[] shifts = { 1,1,2,2,2,2,2,2,1,2,2,2,2,2,2,1, }; | 
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    private static final byte[] PC2_C = { | 
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        14, 17, 11, 24, 1, 5,  | 
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        3, 28, 15, 6, 21, 10,  | 
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        23, 19, 12, 4, 26, 8,  | 
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        16, 7, 27, 20, 13, 2,  | 
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    };  | 
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    private static final byte[] PC2_D = { | 
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        41,52,31,37,47,55,  | 
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        30,40,51,45,33,48,  | 
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        44,49,39,56,34,53,  | 
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        46,42,50,36,29,32,  | 
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    };  | 
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    private byte[] C = new byte[28];  | 
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    private byte[] D = new byte[28];  | 
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    private byte[] KS;  | 
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    private byte[] E = new byte[48];  | 
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    private static final byte[] e2 = { | 
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        32, 1, 2, 3, 4, 5,  | 
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        4, 5, 6, 7, 8, 9,  | 
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        8, 9,10,11,12,13,  | 
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        12,13,14,15,16,17,  | 
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        16,17,18,19,20,21,  | 
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        20,21,22,23,24,25,  | 
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        24,25,26,27,28,29,  | 
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        28,29,30,31,32, 1,  | 
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    };  | 
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    private void setkey(byte[] key) { | 
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        int i, j, k;  | 
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        byte t;  | 
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        if (KS == null) { | 
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            KS = new byte[16*48];  | 
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        }  | 
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        for (i = 0; i < 28; i++) { | 
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                C[i] = key[PC1_C[i]-1];  | 
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                D[i] = key[PC1_D[i]-1];  | 
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        }  | 
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        for (i = 0; i < 16; i++) { | 
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                for (k = 0; k < shifts[i]; k++) { | 
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                        t = C[0];  | 
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                        for (j = 0; j < 28-1; j++)  | 
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                                C[j] = C[j+1];  | 
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                        C[27] = t;  | 
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                        t = D[0];  | 
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                        for (j = 0; j < 28-1; j++)  | 
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                                D[j] = D[j+1];  | 
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                        D[27] = t;  | 
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                }  | 
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                for (j = 0; j < 24; j++) { | 
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                        int index = i * 48;  | 
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                        KS[index+j] = C[PC2_C[j]-1];  | 
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                        KS[index+j+24] = D[PC2_D[j]-28-1];  | 
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                }  | 
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        }  | 
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        for (i = 0; i < 48; i++)  | 
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                E[i] = e2[i];  | 
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    }  | 
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    private static final byte[][] S = { | 
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        {14, 4,13, 1, 2,15,11, 8, 3,10, 6,12, 5, 9, 0, 7, | 
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        0,15, 7, 4,14, 2,13, 1,10, 6,12,11, 9, 5, 3, 8,  | 
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        4, 1,14, 8,13, 6, 2,11,15,12, 9, 7, 3,10, 5, 0,  | 
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        15,12, 8, 2, 4, 9, 1, 7, 5,11, 3,14,10, 0, 6,13},  | 
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        {15, 1, 8,14, 6,11, 3, 4, 9, 7, 2,13,12, 0, 5,10, | 
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        3,13, 4, 7,15, 2, 8,14,12, 0, 1,10, 6, 9,11, 5,  | 
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        0,14, 7,11,10, 4,13, 1, 5, 8,12, 6, 9, 3, 2,15,  | 
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        13, 8,10, 1, 3,15, 4, 2,11, 6, 7,12, 0, 5,14, 9},  | 
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        {10, 0, 9,14, 6, 3,15, 5, 1,13,12, 7,11, 4, 2, 8, | 
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        13, 7, 0, 9, 3, 4, 6,10, 2, 8, 5,14,12,11,15, 1,  | 
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        13, 6, 4, 9, 8,15, 3, 0,11, 1, 2,12, 5,10,14, 7,  | 
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         1,10,13, 0, 6, 9, 8, 7, 4,15,14, 3,11, 5, 2,12},  | 
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        {7,13,14, 3, 0, 6, 9,10, 1, 2, 8, 5,11,12, 4,15, | 
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        13, 8,11, 5, 6,15, 0, 3, 4, 7, 2,12, 1,10,14, 9,  | 
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        10, 6, 9, 0,12,11, 7,13,15, 1, 3,14, 5, 2, 8, 4,  | 
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         3,15, 0, 6,10, 1,13, 8, 9, 4, 5,11,12, 7, 2,14},  | 
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        {2,12, 4, 1, 7,10,11, 6, 8, 5, 3,15,13, 0,14, 9, | 
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        14,11, 2,12, 4, 7,13, 1, 5, 0,15,10, 3, 9, 8, 6,  | 
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         4, 2, 1,11,10,13, 7, 8,15, 9,12, 5, 6, 3, 0,14,  | 
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        11, 8,12, 7, 1,14, 2,13, 6,15, 0, 9,10, 4, 5, 3},  | 
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        {12, 1,10,15, 9, 2, 6, 8, 0,13, 3, 4,14, 7, 5,11, | 
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        10,15, 4, 2, 7,12, 9, 5, 6, 1,13,14, 0,11, 3, 8,  | 
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         9,14,15, 5, 2, 8,12, 3, 7, 0, 4,10, 1,13,11, 6,  | 
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         4, 3, 2,12, 9, 5,15,10,11,14, 1, 7, 6, 0, 8,13},  | 
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        {4,11, 2,14,15, 0, 8,13, 3,12, 9, 7, 5,10, 6, 1, | 
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        13, 0,11, 7, 4, 9, 1,10,14, 3, 5,12, 2,15, 8, 6,  | 
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         1, 4,11,13,12, 3, 7,14,10,15, 6, 8, 0, 5, 9, 2,  | 
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         6,11,13, 8, 1, 4,10, 7, 9, 5, 0,15,14, 2, 3,12},  | 
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        {13, 2, 8, 4, 6,15,11, 1,10, 9, 3,14, 5, 0,12, 7, | 
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         1,15,13, 8,10, 3, 7, 4,12, 5, 6,11, 0,14, 9, 2,  | 
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         7,11, 4, 1, 9,12,14, 2, 0, 6,10,13,15, 3, 5, 8,  | 
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         2, 1,14, 7, 4,10, 8,13,15,12, 9, 0, 3, 5, 6,11},  | 
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    };  | 
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    private static final byte[] P = { | 
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        16, 7,20,21,  | 
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        29,12,28,17,  | 
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         1,15,23,26,  | 
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         5,18,31,10,  | 
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         2, 8,24,14,  | 
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        32,27, 3, 9,  | 
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        19,13,30, 6,  | 
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        22,11, 4,25,  | 
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    };  | 
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    private byte[]  L = new byte[64];  | 
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    private byte[] tempL = new byte[32];  | 
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    private byte[] f = new byte[32];  | 
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    private byte[] preS = new byte[48];  | 
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    private void encrypt(byte[] block,int fake) { | 
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        int     i;  | 
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        int t, j, k;  | 
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        int R = 32;   | 
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        if (KS == null) { | 
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            KS = new byte[16*48];  | 
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        }  | 
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        for(j=0; j < 64; j++) { | 
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            L[j] = block[IP[j]-1];  | 
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        }  | 
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        for(i=0; i < 16; i++) { | 
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            int index = i * 48;  | 
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            for(j=0; j < 32; j++) { | 
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                tempL[j] = L[R+j];  | 
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            }  | 
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            for(j=0; j < 48; j++) { | 
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                preS[j] = (byte) (L[R+E[j]-1] ^ KS[index+j]);  | 
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            }  | 
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            for(j=0; j < 8; j++) { | 
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                t = 6*j;  | 
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                k = S[j][(preS[t+0]<<5)+  | 
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                         (preS[t+1]<<3)+  | 
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                         (preS[t+2]<<2)+  | 
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                         (preS[t+3]<<1)+  | 
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                         (preS[t+4]<<0)+  | 
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                         (preS[t+5]<<4)];  | 
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                t = 4*j;  | 
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                f[t+0] = (byte) ((k>>3)&01);  | 
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                f[t+1] = (byte) ((k>>2)&01);  | 
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                f[t+2] = (byte) ((k>>1)&01);  | 
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                f[t+3] = (byte) ((k>>0)&01);  | 
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            }  | 
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            for(j=0; j < 32; j++) { | 
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                        L[R+j] = (byte) (L[j] ^ f[P[j]-1]);  | 
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            }  | 
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            for(j=0; j < 32; j++) { | 
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                        L[j] = tempL[j];  | 
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            }  | 
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        }  | 
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        for(j=0; j < 32; j++) { | 
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            t = L[j];  | 
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            L[j] = L[R+j];  | 
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            L[R+j] = (byte)t;  | 
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        }  | 
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        for(j=0; j < 64; j++) { | 
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                block[j] = L[FP[j]-1];  | 
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        }  | 
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    }  | 
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/* EXPORT DELETE END */  | 
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    /**  | 
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     * Creates a new Crypt object for use with the crypt method.  | 
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     *  | 
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     */  | 
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    public Crypt()  | 
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    { | 
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          | 
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        super();  | 
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    }  | 
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    /**  | 
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     * Implements the libc crypt(3) function.  | 
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     *  | 
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     * @param pw the password to "encrypt".  | 
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     *  | 
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     * @param salt the salt to use.  | 
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     *  | 
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     * @return A new byte[13] array that contains the encrypted  | 
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     * password. The first two characters are the salt.  | 
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     *  | 
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     */  | 
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    public synchronized byte[] crypt(byte[] pw, byte[] salt) { | 
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        int c, i, j, pwi;  | 
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        byte temp;  | 
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        byte[] block = new byte[66];  | 
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        byte[] iobuf = new byte[13];  | 
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/* EXPORT DELETE START */  | 
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        pwi = 0;  | 
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        for(i=0; pwi < pw.length && i < 64; pwi++) { | 
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            c = pw[pwi];  | 
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            for(j=0; j < 7; j++, i++) { | 
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                block[i] = (byte) ((c>>(6-j)) & 01);  | 
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            }  | 
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            i++;  | 
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        }  | 
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        setkey(block);  | 
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        for(i=0; i < 66; i++) { | 
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            block[i] = 0;  | 
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        }  | 
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        for(i=0; i < 2; i++) { | 
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            c = salt[i];  | 
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            iobuf[i] = (byte)c;  | 
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            if(c > 'Z')  | 
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                c -= 6;  | 
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            if(c > '9')  | 
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                c -= 7;  | 
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            c -= '.';  | 
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            for(j=0; j < 6; j++) { | 
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                if( ((c>>j) & 01) != 0) { | 
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                    temp = E[6*i+j];  | 
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                    E[6*i+j] = E[6*i+j+24];  | 
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                    E[6*i+j+24] = temp;  | 
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                }  | 
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            }  | 
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        }  | 
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        for(i=0; i < 25; i++) { | 
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                encrypt(block,0);  | 
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        }  | 
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        for(i=0; i < 11; i++) { | 
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            c = 0;  | 
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            for(j=0; j < 6; j++) { | 
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                c <<= 1;  | 
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                c |= block[6*i+j];  | 
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            }  | 
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            c += '.';  | 
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            if(c > '9') { | 
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                c += 7;  | 
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            }  | 
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            if(c > 'Z') { | 
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                c += 6;  | 
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            }  | 
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            iobuf[i+2] = (byte)c;  | 
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        }  | 
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          | 
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        if(iobuf[1] == 0) { | 
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            iobuf[1] = iobuf[0];  | 
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        }  | 
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        return(iobuf);  | 
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    }  | 
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    /**  | 
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     * program to test the crypt routine.  | 
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     *  | 
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     * The first parameter is the cleartext password, the second is  | 
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     * the salt to use. The salt should be two characters from the  | 
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     * set [a-zA-Z0-9./]. Outputs the crypt result.  | 
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     *  | 
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     * @param arg command line arguments.  | 
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     *  | 
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     */  | 
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    public static void main(String arg[]) { | 
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        if (arg.length!=2) { | 
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            System.err.println("usage: Crypt password salt"); | 
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            System.exit(1);  | 
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        }  | 
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        Crypt c = new Crypt();  | 
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        try { | 
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            byte result[] = c.crypt  | 
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                (arg[0].getBytes("ISO-8859-1"), arg[1].getBytes("ISO-8859-1")); | 
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            for (int i=0; i<result.length; i++) { | 
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                System.out.println(" "+i+" "+(char)result[i]); | 
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            }  | 
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        } catch (java.io.UnsupportedEncodingException uee) { | 
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            // cannot happen  | 
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        }  | 
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    }  | 
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}  |