105 lines
3.1 KiB
C
105 lines
3.1 KiB
C
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/*********************************************************************
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* Filename: md2.c
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* Author: Brad Conte (brad AT bradconte.com)
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* Copyright:
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* Disclaimer: This code is presented "as is" without any guarantees.
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* Details: Implementation of the MD2 hashing algorithm.
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Algorithm specification can be found here:
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* http://tools.ietf.org/html/rfc1319 .
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Input is little endian byte order.
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*********************************************************************/
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/*************************** HEADER FILES ***************************/
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#include <stdlib.h>
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#include <memory.h>
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#include <cryptal/md2.h>
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/**************************** VARIABLES *****************************/
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static const BYTE s[256] = {
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41, 46, 67, 201, 162, 216, 124, 1, 61, 54, 84, 161, 236, 240, 6,
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19, 98, 167, 5, 243, 192, 199, 115, 140, 152, 147, 43, 217, 188,
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76, 130, 202, 30, 155, 87, 60, 253, 212, 224, 22, 103, 66, 111, 24,
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138, 23, 229, 18, 190, 78, 196, 214, 218, 158, 222, 73, 160, 251,
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245, 142, 187, 47, 238, 122, 169, 104, 121, 145, 21, 178, 7, 63,
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148, 194, 16, 137, 11, 34, 95, 33, 128, 127, 93, 154, 90, 144, 50,
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39, 53, 62, 204, 231, 191, 247, 151, 3, 255, 25, 48, 179, 72, 165,
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181, 209, 215, 94, 146, 42, 172, 86, 170, 198, 79, 184, 56, 210,
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150, 164, 125, 182, 118, 252, 107, 226, 156, 116, 4, 241, 69, 157,
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112, 89, 100, 113, 135, 32, 134, 91, 207, 101, 230, 45, 168, 2, 27,
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96, 37, 173, 174, 176, 185, 246, 28, 70, 97, 105, 52, 64, 126, 15,
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85, 71, 163, 35, 221, 81, 175, 58, 195, 92, 249, 206, 186, 197,
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234, 38, 44, 83, 13, 110, 133, 40, 132, 9, 211, 223, 205, 244, 65,
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129, 77, 82, 106, 220, 55, 200, 108, 193, 171, 250, 36, 225, 123,
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8, 12, 189, 177, 74, 120, 136, 149, 139, 227, 99, 232, 109, 233,
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203, 213, 254, 59, 0, 29, 57, 242, 239, 183, 14, 102, 88, 208, 228,
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166, 119, 114, 248, 235, 117, 75, 10, 49, 68, 80, 180, 143, 237,
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31, 26, 219, 153, 141, 51, 159, 17, 131, 20
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};
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/*********************** FUNCTION DEFINITIONS ***********************/
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void md2_transform(MD2_CTX *ctx, BYTE data[])
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{
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int j,k,t;
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//memcpy(&ctx->state[16], data);
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for (j=0; j < 16; ++j) {
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ctx->state[j + 16] = data[j];
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ctx->state[j + 32] = (ctx->state[j+16] ^ ctx->state[j]);
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}
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t = 0;
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for (j = 0; j < 18; ++j) {
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for (k = 0; k < 48; ++k) {
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ctx->state[k] ^= s[t];
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t = ctx->state[k];
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}
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t = (t+j) & 0xFF;
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}
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t = ctx->checksum[15];
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for (j=0; j < 16; ++j) {
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ctx->checksum[j] ^= s[data[j] ^ t];
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t = ctx->checksum[j];
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}
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}
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void md2_init(MD2_CTX *ctx)
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{
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int i;
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for (i=0; i < 48; ++i)
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ctx->state[i] = 0;
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for (i=0; i < 16; ++i)
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ctx->checksum[i] = 0;
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ctx->len = 0;
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}
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void md2_update(MD2_CTX *ctx, const BYTE data[], size_t len)
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{
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size_t i;
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for (i = 0; i < len; ++i) {
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ctx->data[ctx->len] = data[i];
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ctx->len++;
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if (ctx->len == MD2_BLOCK_SIZE) {
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md2_transform(ctx, ctx->data);
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ctx->len = 0;
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}
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}
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}
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void md2_final(MD2_CTX *ctx, BYTE hash[])
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{
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int to_pad;
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to_pad = MD2_BLOCK_SIZE - ctx->len;
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while (ctx->len < MD2_BLOCK_SIZE)
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ctx->data[ctx->len++] = to_pad;
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md2_transform(ctx, ctx->data);
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md2_transform(ctx, ctx->checksum);
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memcpy(hash, ctx->state, MD2_BLOCK_SIZE);
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}
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