352 lines
7.6 KiB
C
352 lines
7.6 KiB
C
/********************************************************************\
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* *
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* C specification of the threeway block cipher *
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* *
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* found in ftp://ftp.funet.fi/pub/crypt/ *
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\********************************************************************/
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/* modified in order to use the libmcrypt API by Nikos Mavroyanopoulos
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* All modifications are placed under the license of libmcrypt.
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*/
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/* $Id: 3-way.c,v 1.1 2007/07/19 06:11:48 pizon Exp $ */
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#include <libdefs.h>
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#include <mcrypt_modules.h>
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#include "3-way.h"
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#define STRT_E 0x0b0b /* round constant of first encryption round */
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#define STRT_D 0xb1b1 /* round constant of first decryption round */
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#define NMBR 11 /* number of rounds is 11 */
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#define _mcrypt_set_key threeway_LTX__mcrypt_set_key
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#define _mcrypt_encrypt threeway_LTX__mcrypt_encrypt
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#define _mcrypt_decrypt threeway_LTX__mcrypt_decrypt
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#define _mcrypt_get_size threeway_LTX__mcrypt_get_size
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#define _mcrypt_get_block_size threeway_LTX__mcrypt_get_block_size
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#define _is_block_algorithm threeway_LTX__is_block_algorithm
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#define _mcrypt_get_key_size threeway_LTX__mcrypt_get_key_size
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#define _mcrypt_get_supported_key_sizes threeway_LTX__mcrypt_get_supported_key_sizes
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#define _mcrypt_get_algorithms_name threeway_LTX__mcrypt_get_algorithms_name
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#define _mcrypt_self_test threeway_LTX__mcrypt_self_test
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#define _mcrypt_algorithm_version threeway_LTX__mcrypt_algorithm_version
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WIN32DLL_DEFINE
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int _mcrypt_set_key(word32 * k, word32 * input_key, int len)
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{
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k[0] = 0;
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k[2] = 0;
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k[1] = 0;
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memmove(k, input_key, len);
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return 0;
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}
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void mu(word32 * a)
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{ /* inverts the order of the bits of a */
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int i;
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word32 b[3];
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b[0] = b[1] = b[2] = 0;
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for (i = 0; i < 32; i++) {
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b[0] <<= 1;
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b[1] <<= 1;
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b[2] <<= 1;
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if (a[0] & 1)
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b[2] |= 1;
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if (a[1] & 1)
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b[1] |= 1;
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if (a[2] & 1)
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b[0] |= 1;
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a[0] >>= 1;
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a[1] >>= 1;
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a[2] >>= 1;
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}
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a[0] = b[0];
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a[1] = b[1];
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a[2] = b[2];
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}
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void gamma(word32 * a)
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{ /* the nonlinear step */
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word32 b[3];
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b[0] = a[0] ^ (a[1] | (~a[2]));
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b[1] = a[1] ^ (a[2] | (~a[0]));
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b[2] = a[2] ^ (a[0] | (~a[1]));
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a[0] = b[0];
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a[1] = b[1];
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a[2] = b[2];
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}
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void theta(word32 * a)
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{ /* the linear step */
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word32 b[3];
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b[0] =
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a[0] ^ (a[0] >> 16) ^ (a[1] << 16) ^ (a[1] >> 16) ^ (a[2] <<
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16) ^
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(a[1] >> 24) ^ (a[2] << 8) ^ (a[2] >> 8) ^ (a[0] << 24) ^ (a[2]
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>>
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16)
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^ (a[0] << 16) ^ (a[2] >> 24) ^ (a[0] << 8);
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b[1] =
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a[1] ^ (a[1] >> 16) ^ (a[2] << 16) ^ (a[2] >> 16) ^ (a[0] <<
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16) ^
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(a[2] >> 24) ^ (a[0] << 8) ^ (a[0] >> 8) ^ (a[1] << 24) ^ (a[0]
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>>
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16)
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^ (a[1] << 16) ^ (a[0] >> 24) ^ (a[1] << 8);
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b[2] =
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a[2] ^ (a[2] >> 16) ^ (a[0] << 16) ^ (a[0] >> 16) ^ (a[1] <<
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16) ^
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(a[0] >> 24) ^ (a[1] << 8) ^ (a[1] >> 8) ^ (a[2] << 24) ^ (a[1]
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>>
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16)
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^ (a[2] << 16) ^ (a[1] >> 24) ^ (a[2] << 8);
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a[0] = b[0];
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a[1] = b[1];
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a[2] = b[2];
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}
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void pi_1(word32 * a)
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{
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a[0] = (a[0] >> 10) ^ (a[0] << 22);
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a[2] = (a[2] << 1) ^ (a[2] >> 31);
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}
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void pi_2(word32 * a)
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{
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a[0] = (a[0] << 1) ^ (a[0] >> 31);
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a[2] = (a[2] >> 10) ^ (a[2] << 22);
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}
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void rho(word32 * a)
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{ /* the round function */
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theta(a);
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pi_1(a);
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gamma(a);
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pi_2(a);
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}
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void rndcon_gen(word32 strt, word32 * rtab)
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{ /* generates the round constants */
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int i;
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for (i = 0; i <= NMBR; i++) {
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rtab[i] = strt;
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strt <<= 1;
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if (strt & 0x10000)
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strt ^= 0x11011;
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}
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}
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WIN32DLL_DEFINE void _mcrypt_encrypt(word32 * tk, word32 * ta)
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{
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int i;
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word32 rcon[NMBR + 1];
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word32 a[3], k[3];
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/* Added to make it compatible with bigendian machines
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* --nikos
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*/
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#ifndef WORDS_BIGENDIAN
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a[0] = byteswap32(ta[0]);
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a[1] = byteswap32(ta[1]);
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a[2] = byteswap32(ta[2]);
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k[0] = byteswap32(tk[0]);
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k[1] = byteswap32(tk[1]);
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k[2] = byteswap32(tk[2]);
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#else
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a[0] = ta[0];
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a[1] = ta[1];
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a[2] = ta[2];
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k[0] = (tk[0]);
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k[1] = (tk[1]);
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k[2] = (tk[2]);
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#endif
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rndcon_gen(STRT_E, rcon);
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for (i = 0; i < NMBR; i++) {
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a[0] ^= k[0] ^ (rcon[i] << 16);
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a[1] ^= k[1];
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a[2] ^= k[2] ^ rcon[i];
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rho(a);
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}
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a[0] ^= k[0] ^ (rcon[NMBR] << 16);
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a[1] ^= k[1];
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a[2] ^= k[2] ^ rcon[NMBR];
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theta(a);
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#ifndef WORDS_BIGENDIAN
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ta[0] = byteswap32(a[0]);
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ta[1] = byteswap32(a[1]);
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ta[2] = byteswap32(a[2]);
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#else
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ta[0] = a[0];
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ta[1] = a[1];
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ta[2] = a[2];
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#endif
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}
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WIN32DLL_DEFINE void _mcrypt_decrypt(word32 * k, word32 * ta)
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{
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int i;
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word32 ki[3]; /* the `inverse' key */
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word32 rcon[NMBR + 1]; /* the `inverse' round constants */
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word32 a[3];
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#ifndef WORDS_BIGENDIAN
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a[0] = byteswap32(ta[0]);
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a[1] = byteswap32(ta[1]);
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a[2] = byteswap32(ta[2]);
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ki[0] = byteswap32(k[0]);
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ki[1] = byteswap32(k[1]);
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ki[2] = byteswap32(k[2]);
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#else
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a[0] = ta[0];
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a[1] = ta[1];
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a[2] = ta[2];
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ki[0] = k[0];
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ki[1] = k[1];
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ki[2] = k[2];
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#endif
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theta(ki);
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mu(ki);
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rndcon_gen(STRT_D, rcon);
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mu(a);
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for (i = 0; i < NMBR; i++) {
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a[0] ^= ki[0] ^ (rcon[i] << 16);
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a[1] ^= ki[1];
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a[2] ^= ki[2] ^ rcon[i];
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rho(a);
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}
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a[0] ^= ki[0] ^ (rcon[NMBR] << 16);
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a[1] ^= ki[1];
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a[2] ^= ki[2] ^ rcon[NMBR];
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theta(a);
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mu(a);
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#ifndef WORDS_BIGENDIAN
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ta[0] = byteswap32(a[0]);
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ta[1] = byteswap32(a[1]);
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ta[2] = byteswap32(a[2]);
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#else
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ta[0] = a[0];
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ta[1] = a[1];
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ta[2] = a[2];
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#endif
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}
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WIN32DLL_DEFINE int _mcrypt_get_size()
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{
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return 3 * sizeof(word32);
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}
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WIN32DLL_DEFINE int _mcrypt_get_block_size()
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{
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return 12;
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}
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WIN32DLL_DEFINE int _is_block_algorithm()
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{
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return 1;
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}
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WIN32DLL_DEFINE int _mcrypt_get_key_size()
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{
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return 12;
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}
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static const int key_sizes[] = { 12 };
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WIN32DLL_DEFINE const int *_mcrypt_get_supported_key_sizes(int *len)
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{
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*len = sizeof(key_sizes)/sizeof(int);
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return key_sizes;
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}
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WIN32DLL_DEFINE const char *_mcrypt_get_algorithms_name()
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{
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return "3-WAY";
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}
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#define CIPHER "46823287358d68f6e034ca62"
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WIN32DLL_DEFINE int _mcrypt_self_test()
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{
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char *keyword;
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unsigned char plaintext[16];
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unsigned char ciphertext[16];
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int blocksize = _mcrypt_get_block_size(), j;
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void *key;
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unsigned char cipher_tmp[200];
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keyword = calloc(1, _mcrypt_get_key_size());
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if (keyword == NULL)
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return -1;
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for (j = 0; j < _mcrypt_get_key_size(); j++) {
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keyword[j] = ((j * 2 + 10) % 256);
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}
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for (j = 0; j < blocksize; j++) {
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plaintext[j] = j % 256;
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}
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key = malloc(_mcrypt_get_size());
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if (key == NULL)
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return -1;
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memcpy(ciphertext, plaintext, blocksize);
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_mcrypt_set_key(key, (void *) keyword, _mcrypt_get_key_size());
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free(keyword);
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_mcrypt_encrypt(key, (void *) ciphertext);
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for (j = 0; j < blocksize; j++) {
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sprintf(&((char *) cipher_tmp)[2 * j], "%.2x",
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ciphertext[j]);
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}
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if (strcmp((char *) cipher_tmp, CIPHER) != 0) {
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printf("failed compatibility\n");
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printf("Expected: %s\nGot: %s\n", CIPHER,
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(char *) cipher_tmp);
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free(key);
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return -1;
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}
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_mcrypt_decrypt(key, (void *) ciphertext);
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free(key);
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if (strcmp(ciphertext, plaintext) != 0) {
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printf("failed internally\n");
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return -1;
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}
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return 0;
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}
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WIN32DLL_DEFINE word32 _mcrypt_algorithm_version()
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{
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return 20010801;
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}
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#ifdef WIN32
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# ifdef USE_LTDL
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WIN32DLL_DEFINE int main (void)
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{
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/* empty main function to avoid linker error (see cygwin FAQ) */
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}
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# endif
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#endif
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