1 1.1 christos /* crypto/des/des_enc.c */ 2 1.1 christos /* Copyright (C) 1995-1998 Eric Young (eay (at) cryptsoft.com) 3 1.1 christos * All rights reserved. 4 1.1 christos * 5 1.1 christos * This package is an SSL implementation written 6 1.1 christos * by Eric Young (eay (at) cryptsoft.com). 7 1.1 christos * The implementation was written so as to conform with Netscapes SSL. 8 1.1 christos * 9 1.1 christos * This library is free for commercial and non-commercial use as long as 10 1.1 christos * the following conditions are aheared to. The following conditions 11 1.1 christos * apply to all code found in this distribution, be it the RC4, RSA, 12 1.1 christos * lhash, DES, etc., code; not just the SSL code. The SSL documentation 13 1.1 christos * included with this distribution is covered by the same copyright terms 14 1.1 christos * except that the holder is Tim Hudson (tjh (at) cryptsoft.com). 15 1.1 christos * 16 1.1 christos * Copyright remains Eric Young's, and as such any Copyright notices in 17 1.1 christos * the code are not to be removed. 18 1.1 christos * If this package is used in a product, Eric Young should be given attribution 19 1.1 christos * as the author of the parts of the library used. 20 1.1 christos * This can be in the form of a textual message at program startup or 21 1.1 christos * in documentation (online or textual) provided with the package. 22 1.1 christos * 23 1.1 christos * Redistribution and use in source and binary forms, with or without 24 1.1 christos * modification, are permitted provided that the following conditions 25 1.1 christos * are met: 26 1.1 christos * 1. Redistributions of source code must retain the copyright 27 1.1 christos * notice, this list of conditions and the following disclaimer. 28 1.1 christos * 2. Redistributions in binary form must reproduce the above copyright 29 1.1 christos * notice, this list of conditions and the following disclaimer in the 30 1.1 christos * documentation and/or other materials provided with the distribution. 31 1.1 christos * 3. All advertising materials mentioning features or use of this software 32 1.1 christos * must display the following acknowledgement: 33 1.1 christos * "This product includes cryptographic software written by 34 1.1 christos * Eric Young (eay (at) cryptsoft.com)" 35 1.1 christos * The word 'cryptographic' can be left out if the rouines from the library 36 1.1 christos * being used are not cryptographic related :-). 37 1.1 christos * 4. If you include any Windows specific code (or a derivative thereof) from 38 1.1 christos * the apps directory (application code) you must include an acknowledgement: 39 1.1 christos * "This product includes software written by Tim Hudson (tjh (at) cryptsoft.com)" 40 1.1 christos * 41 1.1 christos * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND 42 1.1 christos * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 43 1.1 christos * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 44 1.1 christos * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 45 1.1 christos * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 46 1.1 christos * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 47 1.1 christos * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 48 1.1 christos * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 49 1.1 christos * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 50 1.1 christos * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 51 1.1 christos * SUCH DAMAGE. 52 1.1 christos * 53 1.1 christos * The licence and distribution terms for any publically available version or 54 1.1 christos * derivative of this code cannot be changed. i.e. this code cannot simply be 55 1.1 christos * copied and put under another distribution licence 56 1.1 christos * [including the GNU Public Licence.] 57 1.1 christos */ 58 1.1 christos 59 1.1 christos #include "des_locl.h" 60 1.1 christos 61 1.1 christos void des_encrypt1(DES_LONG *data, des_key_schedule ks, int enc) 62 1.1 christos { 63 1.1 christos register DES_LONG l,r,t,u; 64 1.1 christos #ifdef DES_PTR 65 1.1 christos register const unsigned char *des_SP=(const unsigned char *)des_SPtrans; 66 1.1 christos #endif 67 1.1 christos #ifndef DES_UNROLL 68 1.1 christos register int i; 69 1.1 christos #endif 70 1.1 christos register DES_LONG *s; 71 1.1 christos 72 1.1 christos r=data[0]; 73 1.1 christos l=data[1]; 74 1.1 christos 75 1.1 christos IP(r,l); 76 1.1 christos /* Things have been modified so that the initial rotate is 77 1.1 christos * done outside the loop. This required the 78 1.1 christos * des_SPtrans values in sp.h to be rotated 1 bit to the right. 79 1.1 christos * One perl script later and things have a 5% speed up on a sparc2. 80 1.1 christos * Thanks to Richard Outerbridge <71755.204 (at) CompuServe.COM> 81 1.1 christos * for pointing this out. */ 82 1.1 christos /* clear the top bits on machines with 8byte longs */ 83 1.1 christos /* shift left by 2 */ 84 1.1 christos r=ROTATE(r,29)&0xffffffffL; 85 1.1 christos l=ROTATE(l,29)&0xffffffffL; 86 1.1 christos 87 1.1 christos s=ks; 88 1.1 christos /* I don't know if it is worth the effort of loop unrolling the 89 1.1 christos * inner loop */ 90 1.1 christos if (enc) 91 1.1 christos { 92 1.1 christos #ifdef DES_UNROLL 93 1.1 christos D_ENCRYPT(l,r, 0); /* 1 */ 94 1.1 christos D_ENCRYPT(r,l, 2); /* 2 */ 95 1.1 christos D_ENCRYPT(l,r, 4); /* 3 */ 96 1.1 christos D_ENCRYPT(r,l, 6); /* 4 */ 97 1.1 christos D_ENCRYPT(l,r, 8); /* 5 */ 98 1.1 christos D_ENCRYPT(r,l,10); /* 6 */ 99 1.1 christos D_ENCRYPT(l,r,12); /* 7 */ 100 1.1 christos D_ENCRYPT(r,l,14); /* 8 */ 101 1.1 christos D_ENCRYPT(l,r,16); /* 9 */ 102 1.1 christos D_ENCRYPT(r,l,18); /* 10 */ 103 1.1 christos D_ENCRYPT(l,r,20); /* 11 */ 104 1.1 christos D_ENCRYPT(r,l,22); /* 12 */ 105 1.1 christos D_ENCRYPT(l,r,24); /* 13 */ 106 1.1 christos D_ENCRYPT(r,l,26); /* 14 */ 107 1.1 christos D_ENCRYPT(l,r,28); /* 15 */ 108 1.1 christos D_ENCRYPT(r,l,30); /* 16 */ 109 1.1 christos #else 110 1.1 christos for (i=0; i<32; i+=8) 111 1.1 christos { 112 1.1 christos D_ENCRYPT(l,r,i+0); /* 1 */ 113 1.1 christos D_ENCRYPT(r,l,i+2); /* 2 */ 114 1.1 christos D_ENCRYPT(l,r,i+4); /* 3 */ 115 1.1 christos D_ENCRYPT(r,l,i+6); /* 4 */ 116 1.1 christos } 117 1.1 christos #endif 118 1.1 christos } 119 1.1 christos else 120 1.1 christos { 121 1.1 christos #ifdef DES_UNROLL 122 1.1 christos D_ENCRYPT(l,r,30); /* 16 */ 123 1.1 christos D_ENCRYPT(r,l,28); /* 15 */ 124 1.1 christos D_ENCRYPT(l,r,26); /* 14 */ 125 1.1 christos D_ENCRYPT(r,l,24); /* 13 */ 126 1.1 christos D_ENCRYPT(l,r,22); /* 12 */ 127 1.1 christos D_ENCRYPT(r,l,20); /* 11 */ 128 1.1 christos D_ENCRYPT(l,r,18); /* 10 */ 129 1.1 christos D_ENCRYPT(r,l,16); /* 9 */ 130 1.1 christos D_ENCRYPT(l,r,14); /* 8 */ 131 1.1 christos D_ENCRYPT(r,l,12); /* 7 */ 132 1.1 christos D_ENCRYPT(l,r,10); /* 6 */ 133 1.1 christos D_ENCRYPT(r,l, 8); /* 5 */ 134 1.1 christos D_ENCRYPT(l,r, 6); /* 4 */ 135 1.1 christos D_ENCRYPT(r,l, 4); /* 3 */ 136 1.1 christos D_ENCRYPT(l,r, 2); /* 2 */ 137 1.1 christos D_ENCRYPT(r,l, 0); /* 1 */ 138 1.1 christos #else 139 1.1 christos for (i=30; i>0; i-=8) 140 1.1 christos { 141 1.1 christos D_ENCRYPT(l,r,i-0); /* 16 */ 142 1.1 christos D_ENCRYPT(r,l,i-2); /* 15 */ 143 1.1 christos D_ENCRYPT(l,r,i-4); /* 14 */ 144 1.1 christos D_ENCRYPT(r,l,i-6); /* 13 */ 145 1.1 christos } 146 1.1 christos #endif 147 1.1 christos } 148 1.1 christos 149 1.1 christos /* rotate and clear the top bits on machines with 8byte longs */ 150 1.1 christos l=ROTATE(l,3)&0xffffffffL; 151 1.1 christos r=ROTATE(r,3)&0xffffffffL; 152 1.1 christos 153 1.1 christos FP(r,l); 154 1.1 christos data[0]=l; 155 1.1 christos data[1]=r; 156 1.1 christos l=r=t=u=0; 157 1.1 christos } 158 1.1 christos 159 1.1 christos void des_encrypt2(DES_LONG *data, des_key_schedule ks, int enc) 160 1.1 christos { 161 1.1 christos register DES_LONG l,r,t,u; 162 1.1 christos #ifdef DES_PTR 163 1.1 christos register const unsigned char *des_SP=(const unsigned char *)des_SPtrans; 164 1.1 christos #endif 165 1.1 christos #ifndef DES_UNROLL 166 1.1 christos register int i; 167 1.1 christos #endif 168 1.1 christos register DES_LONG *s; 169 1.1 christos 170 1.1 christos r=data[0]; 171 1.1 christos l=data[1]; 172 1.1 christos 173 1.1 christos /* Things have been modified so that the initial rotate is 174 1.1 christos * done outside the loop. This required the 175 1.1 christos * des_SPtrans values in sp.h to be rotated 1 bit to the right. 176 1.1 christos * One perl script later and things have a 5% speed up on a sparc2. 177 1.1 christos * Thanks to Richard Outerbridge <71755.204 (at) CompuServe.COM> 178 1.1 christos * for pointing this out. */ 179 1.1 christos /* clear the top bits on machines with 8byte longs */ 180 1.1 christos r=ROTATE(r,29)&0xffffffffL; 181 1.1 christos l=ROTATE(l,29)&0xffffffffL; 182 1.1 christos 183 1.1 christos s=ks; 184 1.1 christos /* I don't know if it is worth the effort of loop unrolling the 185 1.1 christos * inner loop */ 186 1.1 christos if (enc) 187 1.1 christos { 188 1.1 christos #ifdef DES_UNROLL 189 1.1 christos D_ENCRYPT(l,r, 0); /* 1 */ 190 1.1 christos D_ENCRYPT(r,l, 2); /* 2 */ 191 1.1 christos D_ENCRYPT(l,r, 4); /* 3 */ 192 1.1 christos D_ENCRYPT(r,l, 6); /* 4 */ 193 1.1 christos D_ENCRYPT(l,r, 8); /* 5 */ 194 1.1 christos D_ENCRYPT(r,l,10); /* 6 */ 195 1.1 christos D_ENCRYPT(l,r,12); /* 7 */ 196 1.1 christos D_ENCRYPT(r,l,14); /* 8 */ 197 1.1 christos D_ENCRYPT(l,r,16); /* 9 */ 198 1.1 christos D_ENCRYPT(r,l,18); /* 10 */ 199 1.1 christos D_ENCRYPT(l,r,20); /* 11 */ 200 1.1 christos D_ENCRYPT(r,l,22); /* 12 */ 201 1.1 christos D_ENCRYPT(l,r,24); /* 13 */ 202 1.1 christos D_ENCRYPT(r,l,26); /* 14 */ 203 1.1 christos D_ENCRYPT(l,r,28); /* 15 */ 204 1.1 christos D_ENCRYPT(r,l,30); /* 16 */ 205 1.1 christos #else 206 1.1 christos for (i=0; i<32; i+=8) 207 1.1 christos { 208 1.1 christos D_ENCRYPT(l,r,i+0); /* 1 */ 209 1.1 christos D_ENCRYPT(r,l,i+2); /* 2 */ 210 1.1 christos D_ENCRYPT(l,r,i+4); /* 3 */ 211 1.1 christos D_ENCRYPT(r,l,i+6); /* 4 */ 212 1.1 christos } 213 1.1 christos #endif 214 1.1 christos } 215 1.1 christos else 216 1.1 christos { 217 1.1 christos #ifdef DES_UNROLL 218 1.1 christos D_ENCRYPT(l,r,30); /* 16 */ 219 1.1 christos D_ENCRYPT(r,l,28); /* 15 */ 220 1.1 christos D_ENCRYPT(l,r,26); /* 14 */ 221 1.1 christos D_ENCRYPT(r,l,24); /* 13 */ 222 1.1 christos D_ENCRYPT(l,r,22); /* 12 */ 223 1.1 christos D_ENCRYPT(r,l,20); /* 11 */ 224 1.1 christos D_ENCRYPT(l,r,18); /* 10 */ 225 1.1 christos D_ENCRYPT(r,l,16); /* 9 */ 226 1.1 christos D_ENCRYPT(l,r,14); /* 8 */ 227 1.1 christos D_ENCRYPT(r,l,12); /* 7 */ 228 1.1 christos D_ENCRYPT(l,r,10); /* 6 */ 229 1.1 christos D_ENCRYPT(r,l, 8); /* 5 */ 230 1.1 christos D_ENCRYPT(l,r, 6); /* 4 */ 231 1.1 christos D_ENCRYPT(r,l, 4); /* 3 */ 232 1.1 christos D_ENCRYPT(l,r, 2); /* 2 */ 233 1.1 christos D_ENCRYPT(r,l, 0); /* 1 */ 234 1.1 christos #else 235 1.1 christos for (i=30; i>0; i-=8) 236 1.1 christos { 237 1.1 christos D_ENCRYPT(l,r,i-0); /* 16 */ 238 1.1 christos D_ENCRYPT(r,l,i-2); /* 15 */ 239 1.1 christos D_ENCRYPT(l,r,i-4); /* 14 */ 240 1.1 christos D_ENCRYPT(r,l,i-6); /* 13 */ 241 1.1 christos } 242 1.1 christos #endif 243 1.1 christos } 244 1.1 christos /* rotate and clear the top bits on machines with 8byte longs */ 245 1.1 christos data[0]=ROTATE(l,3)&0xffffffffL; 246 1.1 christos data[1]=ROTATE(r,3)&0xffffffffL; 247 1.1 christos l=r=t=u=0; 248 1.1 christos } 249 1.1 christos 250 1.1 christos void des_encrypt3(DES_LONG *data, des_key_schedule ks1, des_key_schedule ks2, 251 1.1 christos des_key_schedule ks3) 252 1.1 christos { 253 1.1 christos register DES_LONG l,r; 254 1.1 christos 255 1.1 christos l=data[0]; 256 1.1 christos r=data[1]; 257 1.1 christos IP(l,r); 258 1.1 christos data[0]=l; 259 1.1 christos data[1]=r; 260 1.1 christos des_encrypt2((DES_LONG *)data,ks1,DES_ENCRYPT); 261 1.1 christos des_encrypt2((DES_LONG *)data,ks2,DES_DECRYPT); 262 1.1 christos des_encrypt2((DES_LONG *)data,ks3,DES_ENCRYPT); 263 1.1 christos l=data[0]; 264 1.1 christos r=data[1]; 265 1.1 christos FP(r,l); 266 1.1 christos data[0]=l; 267 1.1 christos data[1]=r; 268 1.1 christos } 269 1.1 christos 270 1.1 christos void des_decrypt3(DES_LONG *data, des_key_schedule ks1, des_key_schedule ks2, 271 1.1 christos des_key_schedule ks3) 272 1.1 christos { 273 1.1 christos register DES_LONG l,r; 274 1.1 christos 275 1.1 christos l=data[0]; 276 1.1 christos r=data[1]; 277 1.1 christos IP(l,r); 278 1.1 christos data[0]=l; 279 1.1 christos data[1]=r; 280 1.1 christos des_encrypt2((DES_LONG *)data,ks3,DES_DECRYPT); 281 1.1 christos des_encrypt2((DES_LONG *)data,ks2,DES_ENCRYPT); 282 1.1 christos des_encrypt2((DES_LONG *)data,ks1,DES_DECRYPT); 283 1.1 christos l=data[0]; 284 1.1 christos r=data[1]; 285 1.1 christos FP(r,l); 286 1.1 christos data[0]=l; 287 1.1 christos data[1]=r; 288 1.1 christos } 289 1.1 christos 290 1.1 christos #ifndef DES_DEFAULT_OPTIONS 291 1.1 christos 292 1.1 christos #undef CBC_ENC_C__DONT_UPDATE_IV 293 1.1 christos #include "oncbc_enc.c" /* des_ncbc_encrypt */ 294 1.1 christos 295 1.1 christos void des_ede3_cbc_encrypt(const unsigned char *input, unsigned char *output, 296 1.1 christos long length, des_key_schedule ks1, des_key_schedule ks2, 297 1.1 christos des_key_schedule ks3, des_cblock *ivec, int enc) 298 1.1 christos { 299 1.1 christos register DES_LONG tin0,tin1; 300 1.1 christos register DES_LONG tout0,tout1,xor0,xor1; 301 1.1 christos register const unsigned char *in; 302 1.1 christos unsigned char *out; 303 1.1 christos register long l=length; 304 1.1 christos DES_LONG tin[2]; 305 1.1 christos unsigned char *iv; 306 1.1 christos 307 1.1 christos in=input; 308 1.1 christos out=output; 309 1.1 christos iv = &(*ivec)[0]; 310 1.1 christos 311 1.1 christos if (enc) 312 1.1 christos { 313 1.1 christos c2l(iv,tout0); 314 1.1 christos c2l(iv,tout1); 315 1.1 christos for (l-=8; l>=0; l-=8) 316 1.1 christos { 317 1.1 christos c2l(in,tin0); 318 1.1 christos c2l(in,tin1); 319 1.1 christos tin0^=tout0; 320 1.1 christos tin1^=tout1; 321 1.1 christos 322 1.1 christos tin[0]=tin0; 323 1.1 christos tin[1]=tin1; 324 1.1 christos des_encrypt3((DES_LONG *)tin,ks1,ks2,ks3); 325 1.1 christos tout0=tin[0]; 326 1.1 christos tout1=tin[1]; 327 1.1 christos 328 1.1 christos l2c(tout0,out); 329 1.1 christos l2c(tout1,out); 330 1.1 christos } 331 1.1 christos if (l != -8) 332 1.1 christos { 333 1.1 christos c2ln(in,tin0,tin1,l+8); 334 1.1 christos tin0^=tout0; 335 1.1 christos tin1^=tout1; 336 1.1 christos 337 1.1 christos tin[0]=tin0; 338 1.1 christos tin[1]=tin1; 339 1.1 christos des_encrypt3((DES_LONG *)tin,ks1,ks2,ks3); 340 1.1 christos tout0=tin[0]; 341 1.1 christos tout1=tin[1]; 342 1.1 christos 343 1.1 christos l2c(tout0,out); 344 1.1 christos l2c(tout1,out); 345 1.1 christos } 346 1.1 christos iv = &(*ivec)[0]; 347 1.1 christos l2c(tout0,iv); 348 1.1 christos l2c(tout1,iv); 349 1.1 christos } 350 1.1 christos else 351 1.1 christos { 352 1.1 christos register DES_LONG t0,t1; 353 1.1 christos 354 1.1 christos c2l(iv,xor0); 355 1.1 christos c2l(iv,xor1); 356 1.1 christos for (l-=8; l>=0; l-=8) 357 1.1 christos { 358 1.1 christos c2l(in,tin0); 359 1.1 christos c2l(in,tin1); 360 1.1 christos 361 1.1 christos t0=tin0; 362 1.1 christos t1=tin1; 363 1.1 christos 364 1.1 christos tin[0]=tin0; 365 1.1 christos tin[1]=tin1; 366 1.1 christos des_decrypt3((DES_LONG *)tin,ks1,ks2,ks3); 367 1.1 christos tout0=tin[0]; 368 1.1 christos tout1=tin[1]; 369 1.1 christos 370 1.1 christos tout0^=xor0; 371 1.1 christos tout1^=xor1; 372 1.1 christos l2c(tout0,out); 373 1.1 christos l2c(tout1,out); 374 1.1 christos xor0=t0; 375 1.1 christos xor1=t1; 376 1.1 christos } 377 1.1 christos if (l != -8) 378 1.1 christos { 379 1.1 christos c2l(in,tin0); 380 1.1 christos c2l(in,tin1); 381 1.1 christos 382 1.1 christos t0=tin0; 383 1.1 christos t1=tin1; 384 1.1 christos 385 1.1 christos tin[0]=tin0; 386 1.1 christos tin[1]=tin1; 387 1.1 christos des_decrypt3((DES_LONG *)tin,ks1,ks2,ks3); 388 1.1 christos tout0=tin[0]; 389 1.1 christos tout1=tin[1]; 390 1.1 christos 391 1.1 christos tout0^=xor0; 392 1.1 christos tout1^=xor1; 393 1.1 christos l2cn(tout0,tout1,out,l+8); 394 1.1 christos xor0=t0; 395 1.1 christos xor1=t1; 396 1.1 christos } 397 1.1 christos 398 1.1 christos iv = &(*ivec)[0]; 399 1.1 christos l2c(xor0,iv); 400 1.1 christos l2c(xor1,iv); 401 1.1 christos } 402 1.1 christos tin0=tin1=tout0=tout1=xor0=xor1=0; 403 1.1 christos tin[0]=tin[1]=0; 404 1.1 christos } 405 1.1 christos 406 1.1 christos #endif /* DES_DEFAULT_OPTIONS */ 407