[21326] | 1 | /*
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| 2 | * Copyright (C) 2001 Nikos Mavroyanopoulos
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| 3 | * Copyright (C) 2004 Hans Leidekker
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| 4 | *
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| 5 | * This library is free software; you can redistribute it and/or
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| 6 | * modify it under the terms of the GNU Lesser General Public
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| 7 | * License as published by the Free Software Foundation; either
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| 8 | * version 2.1 of the License, or (at your option) any later version.
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| 9 | *
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| 10 | * This library is distributed in the hope that it will be useful,
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| 11 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 12 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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| 13 | * Lesser General Public License for more details.
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| 14 | *
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| 15 | * You should have received a copy of the GNU Lesser General Public
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| 16 | * License along with this library; if not, write to the Free Software
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| 17 | * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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| 18 | */
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| 19 |
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| 20 | /*
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| 21 | * This code implements the MD5 message-digest algorithm.
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| 22 | * It is based on code in the public domain written by Colin
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| 23 | * Plumb in 1993. The algorithm is due to Ron Rivest.
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| 24 | *
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| 25 | * Equivalent code is available from RSA Data Security, Inc.
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| 26 | * This code has been tested against that, and is equivalent,
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| 27 | * except that you don't need to include two pages of legalese
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| 28 | * with every copy.
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| 29 | *
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| 30 | * To compute the message digest of a chunk of bytes, declare an
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| 31 | * MD5_CTX structure, pass it to MD5Init, call MD5Update as
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| 32 | * needed on buffers full of bytes, and then call MD5Final, which
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| 33 | * will fill a supplied 16-byte array with the digest.
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| 34 | */
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| 35 |
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| 36 | #include <stdarg.h>
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| 37 | #include <string.h>
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| 38 |
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| 39 | #include "windef.h"
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| 40 |
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| 41 | typedef struct
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| 42 | {
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| 43 | unsigned int i[2];
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| 44 | unsigned int buf[4];
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| 45 | unsigned char in[64];
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| 46 | unsigned char digest[16];
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| 47 | } MD5_CTX;
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| 48 |
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| 49 | static void MD5Transform( unsigned int buf[4], const unsigned int in[16] );
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| 50 |
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| 51 | /*
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| 52 | * Note: this code is harmless on little-endian machines.
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| 53 | */
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| 54 | static void byteReverse( unsigned char *buf, unsigned longs )
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| 55 | {
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| 56 | unsigned int t;
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| 57 |
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| 58 | do {
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| 59 | t = ((unsigned)buf[3] << 8 | buf[2]) << 16 |
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| 60 | ((unsigned)buf[1] << 8 | buf[0]);
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| 61 | *(unsigned int *)buf = t;
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| 62 | buf += 4;
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| 63 | } while (--longs);
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| 64 | }
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| 65 |
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| 66 | /*
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| 67 | * Start MD5 accumulation. Set bit count to 0 and buffer to mysterious
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| 68 | * initialization constants.
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| 69 | */
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| 70 | VOID WINAPI MD5Init( MD5_CTX *ctx )
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| 71 | {
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| 72 | ctx->buf[0] = 0x67452301;
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| 73 | ctx->buf[1] = 0xefcdab89;
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| 74 | ctx->buf[2] = 0x98badcfe;
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| 75 | ctx->buf[3] = 0x10325476;
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| 76 |
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| 77 | ctx->i[0] = ctx->i[1] = 0;
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| 78 | }
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| 79 |
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| 80 | /*
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| 81 | * Update context to reflect the concatenation of another buffer full
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| 82 | * of bytes.
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| 83 | */
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| 84 | VOID WINAPI MD5Update( MD5_CTX *ctx, const unsigned char *buf, unsigned int len )
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| 85 | {
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| 86 | register unsigned int t;
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| 87 |
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| 88 | /* Update bitcount */
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| 89 | t = ctx->i[0];
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| 90 |
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| 91 | if ((ctx->i[0] = t + (len << 3)) < t)
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| 92 | ctx->i[1]++; /* Carry from low to high */
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| 93 |
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| 94 | ctx->i[1] += len >> 29;
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| 95 | t = (t >> 3) & 0x3f;
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| 96 |
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| 97 | /* Handle any leading odd-sized chunks */
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| 98 | if (t)
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| 99 | {
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| 100 | unsigned char *p = (unsigned char *)ctx->in + t;
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| 101 | t = 64 - t;
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| 102 |
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| 103 | if (len < t)
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| 104 | {
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| 105 | memcpy( p, buf, len );
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| 106 | return;
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| 107 | }
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| 108 |
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| 109 | memcpy( p, buf, t );
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| 110 | byteReverse( ctx->in, 16 );
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| 111 |
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| 112 | MD5Transform( ctx->buf, (unsigned int *)ctx->in );
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| 113 |
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| 114 | buf += t;
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| 115 | len -= t;
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| 116 | }
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| 117 |
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| 118 | /* Process data in 64-byte chunks */
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| 119 | while (len >= 64)
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| 120 | {
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| 121 | memcpy( ctx->in, buf, 64 );
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| 122 | byteReverse( ctx->in, 16 );
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| 123 |
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| 124 | MD5Transform( ctx->buf, (unsigned int *)ctx->in );
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| 125 |
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| 126 | buf += 64;
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| 127 | len -= 64;
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| 128 | }
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| 129 |
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| 130 | /* Handle any remaining bytes of data. */
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| 131 | memcpy( ctx->in, buf, len );
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| 132 | }
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| 133 |
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| 134 | /*
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| 135 | * Final wrapup - pad to 64-byte boundary with the bit pattern
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| 136 | * 1 0* (64-bit count of bits processed, MSB-first)
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| 137 | */
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| 138 | VOID WINAPI MD5Final( MD5_CTX *ctx )
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| 139 | {
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| 140 | unsigned int count;
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| 141 | unsigned char *p;
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| 142 |
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| 143 | /* Compute number of bytes mod 64 */
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| 144 | count = (ctx->i[0] >> 3) & 0x3F;
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| 145 |
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| 146 | /* Set the first char of padding to 0x80. This is safe since there is
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| 147 | always at least one byte free */
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| 148 | p = ctx->in + count;
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| 149 | *p++ = 0x80;
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| 150 |
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| 151 | /* Bytes of padding needed to make 64 bytes */
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| 152 | count = 64 - 1 - count;
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| 153 |
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| 154 | /* Pad out to 56 mod 64 */
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| 155 | if (count < 8)
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| 156 | {
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| 157 | /* Two lots of padding: Pad the first block to 64 bytes */
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| 158 | memset( p, 0, count );
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| 159 | byteReverse( ctx->in, 16 );
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| 160 | MD5Transform( ctx->buf, (unsigned int *)ctx->in );
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| 161 |
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| 162 | /* Now fill the next block with 56 bytes */
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| 163 | memset( ctx->in, 0, 56 );
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| 164 | }
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| 165 | else
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| 166 | {
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| 167 | /* Pad block to 56 bytes */
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| 168 | memset( p, 0, count - 8 );
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| 169 | }
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| 170 |
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| 171 | byteReverse( ctx->in, 14 );
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| 172 |
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| 173 | /* Append length in bits and transform */
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| 174 | ((unsigned int *)ctx->in)[14] = ctx->i[0];
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| 175 | ((unsigned int *)ctx->in)[15] = ctx->i[1];
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| 176 |
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| 177 | MD5Transform( ctx->buf, (unsigned int *)ctx->in );
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| 178 | byteReverse( (unsigned char *)ctx->buf, 4 );
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| 179 | memcpy( ctx->digest, ctx->buf, 16 );
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| 180 | }
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| 181 |
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| 182 | /* The four core functions - F1 is optimized somewhat */
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| 183 |
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| 184 | /* #define F1( x, y, z ) (x & y | ~x & z) */
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| 185 | #define F1( x, y, z ) (z ^ (x & (y ^ z)))
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| 186 | #define F2( x, y, z ) F1( z, x, y )
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| 187 | #define F3( x, y, z ) (x ^ y ^ z)
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| 188 | #define F4( x, y, z ) (y ^ (x | ~z))
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| 189 |
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| 190 | /* This is the central step in the MD5 algorithm. */
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| 191 | #define MD5STEP( f, w, x, y, z, data, s ) \
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| 192 | ( w += f( x, y, z ) + data, w = w << s | w >> (32 - s), w += x )
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| 193 |
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| 194 | /*
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| 195 | * The core of the MD5 algorithm, this alters an existing MD5 hash to
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| 196 | * reflect the addition of 16 longwords of new data. MD5Update blocks
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| 197 | * the data and converts bytes into longwords for this routine.
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| 198 | */
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| 199 | static void MD5Transform( unsigned int buf[4], const unsigned int in[16] )
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| 200 | {
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| 201 | register unsigned int a, b, c, d;
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| 202 |
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| 203 | a = buf[0];
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| 204 | b = buf[1];
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| 205 | c = buf[2];
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| 206 | d = buf[3];
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| 207 |
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| 208 | MD5STEP( F1, a, b, c, d, in[0] + 0xd76aa478, 7 );
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| 209 | MD5STEP( F1, d, a, b, c, in[1] + 0xe8c7b756, 12 );
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| 210 | MD5STEP( F1, c, d, a, b, in[2] + 0x242070db, 17 );
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| 211 | MD5STEP( F1, b, c, d, a, in[3] + 0xc1bdceee, 22 );
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| 212 | MD5STEP( F1, a, b, c, d, in[4] + 0xf57c0faf, 7 );
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| 213 | MD5STEP( F1, d, a, b, c, in[5] + 0x4787c62a, 12 );
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| 214 | MD5STEP( F1, c, d, a, b, in[6] + 0xa8304613, 17 );
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| 215 | MD5STEP( F1, b, c, d, a, in[7] + 0xfd469501, 22 );
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| 216 | MD5STEP( F1, a, b, c, d, in[8] + 0x698098d8, 7 );
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| 217 | MD5STEP( F1, d, a, b, c, in[9] + 0x8b44f7af, 12 );
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| 218 | MD5STEP( F1, c, d, a, b, in[10] + 0xffff5bb1, 17 );
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| 219 | MD5STEP( F1, b, c, d, a, in[11] + 0x895cd7be, 22 );
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| 220 | MD5STEP( F1, a, b, c, d, in[12] + 0x6b901122, 7 );
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| 221 | MD5STEP( F1, d, a, b, c, in[13] + 0xfd987193, 12 );
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| 222 | MD5STEP( F1, c, d, a, b, in[14] + 0xa679438e, 17 );
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| 223 | MD5STEP( F1, b, c, d, a, in[15] + 0x49b40821, 22 );
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| 224 |
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| 225 | MD5STEP( F2, a, b, c, d, in[1] + 0xf61e2562, 5 );
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| 226 | MD5STEP( F2, d, a, b, c, in[6] + 0xc040b340, 9 );
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| 227 | MD5STEP( F2, c, d, a, b, in[11] + 0x265e5a51, 14 );
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| 228 | MD5STEP( F2, b, c, d, a, in[0] + 0xe9b6c7aa, 20 );
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| 229 | MD5STEP( F2, a, b, c, d, in[5] + 0xd62f105d, 5 );
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| 230 | MD5STEP( F2, d, a, b, c, in[10] + 0x02441453, 9 );
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| 231 | MD5STEP( F2, c, d, a, b, in[15] + 0xd8a1e681, 14 );
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| 232 | MD5STEP( F2, b, c, d, a, in[4] + 0xe7d3fbc8, 20 );
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| 233 | MD5STEP( F2, a, b, c, d, in[9] + 0x21e1cde6, 5 );
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| 234 | MD5STEP( F2, d, a, b, c, in[14] + 0xc33707d6, 9 );
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| 235 | MD5STEP( F2, c, d, a, b, in[3] + 0xf4d50d87, 14 );
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| 236 | MD5STEP( F2, b, c, d, a, in[8] + 0x455a14ed, 20 );
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| 237 | MD5STEP( F2, a, b, c, d, in[13] + 0xa9e3e905, 5 );
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| 238 | MD5STEP( F2, d, a, b, c, in[2] + 0xfcefa3f8, 9 );
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| 239 | MD5STEP( F2, c, d, a, b, in[7] + 0x676f02d9, 14 );
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| 240 | MD5STEP( F2, b, c, d, a, in[12] + 0x8d2a4c8a, 20 );
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| 241 |
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| 242 | MD5STEP( F3, a, b, c, d, in[5] + 0xfffa3942, 4 );
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| 243 | MD5STEP( F3, d, a, b, c, in[8] + 0x8771f681, 11 );
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| 244 | MD5STEP( F3, c, d, a, b, in[11] + 0x6d9d6122, 16 );
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| 245 | MD5STEP( F3, b, c, d, a, in[14] + 0xfde5380c, 23 );
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| 246 | MD5STEP( F3, a, b, c, d, in[1] + 0xa4beea44, 4 );
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| 247 | MD5STEP( F3, d, a, b, c, in[4] + 0x4bdecfa9, 11 );
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| 248 | MD5STEP( F3, c, d, a, b, in[7] + 0xf6bb4b60, 16 );
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| 249 | MD5STEP( F3, b, c, d, a, in[10] + 0xbebfbc70, 23 );
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| 250 | MD5STEP( F3, a, b, c, d, in[13] + 0x289b7ec6, 4 );
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| 251 | MD5STEP( F3, d, a, b, c, in[0] + 0xeaa127fa, 11 );
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| 252 | MD5STEP( F3, c, d, a, b, in[3] + 0xd4ef3085, 16 );
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| 253 | MD5STEP( F3, b, c, d, a, in[6] + 0x04881d05, 23 );
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| 254 | MD5STEP( F3, a, b, c, d, in[9] + 0xd9d4d039, 4 );
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| 255 | MD5STEP( F3, d, a, b, c, in[12] + 0xe6db99e5, 11 );
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| 256 | MD5STEP( F3, c, d, a, b, in[15] + 0x1fa27cf8, 16 );
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| 257 | MD5STEP( F3, b, c, d, a, in[2] + 0xc4ac5665, 23 );
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| 258 |
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| 259 | MD5STEP( F4, a, b, c, d, in[0] + 0xf4292244, 6 );
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| 260 | MD5STEP( F4, d, a, b, c, in[7] + 0x432aff97, 10 );
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| 261 | MD5STEP( F4, c, d, a, b, in[14] + 0xab9423a7, 15 );
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| 262 | MD5STEP( F4, b, c, d, a, in[5] + 0xfc93a039, 21 );
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| 263 | MD5STEP( F4, a, b, c, d, in[12] + 0x655b59c3, 6 );
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| 264 | MD5STEP( F4, d, a, b, c, in[3] + 0x8f0ccc92, 10 );
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| 265 | MD5STEP( F4, c, d, a, b, in[10] + 0xffeff47d, 15 );
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| 266 | MD5STEP( F4, b, c, d, a, in[1] + 0x85845dd1, 21 );
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| 267 | MD5STEP( F4, a, b, c, d, in[8] + 0x6fa87e4f, 6 );
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| 268 | MD5STEP( F4, d, a, b, c, in[15] + 0xfe2ce6e0, 10 );
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| 269 | MD5STEP( F4, c, d, a, b, in[6] + 0xa3014314, 15 );
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| 270 | MD5STEP( F4, b, c, d, a, in[13] + 0x4e0811a1, 21 );
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| 271 | MD5STEP( F4, a, b, c, d, in[4] + 0xf7537e82, 6 );
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| 272 | MD5STEP( F4, d, a, b, c, in[11] + 0xbd3af235, 10 );
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| 273 | MD5STEP( F4, c, d, a, b, in[2] + 0x2ad7d2bb, 15 );
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| 274 | MD5STEP( F4, b, c, d, a, in[9] + 0xeb86d391, 21 );
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| 275 |
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| 276 | buf[0] += a;
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| 277 | buf[1] += b;
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| 278 | buf[2] += c;
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| 279 | buf[3] += d;
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| 280 | }
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