1 1.20 kre /* $NetBSD: encrypt.c,v 1.20 2024/10/29 13:10:06 kre Exp $ */ 2 1.6 christos 3 1.1 cgd /*- 4 1.3 cgd * Copyright (c) 1991, 1993 5 1.3 cgd * The Regents of the University of California. All rights reserved. 6 1.1 cgd * 7 1.1 cgd * Redistribution and use in source and binary forms, with or without 8 1.1 cgd * modification, are permitted provided that the following conditions 9 1.1 cgd * are met: 10 1.1 cgd * 1. Redistributions of source code must retain the above copyright 11 1.1 cgd * notice, this list of conditions and the following disclaimer. 12 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright 13 1.1 cgd * notice, this list of conditions and the following disclaimer in the 14 1.1 cgd * documentation and/or other materials provided with the distribution. 15 1.12 agc * 3. Neither the name of the University nor the names of its contributors 16 1.1 cgd * may be used to endorse or promote products derived from this software 17 1.1 cgd * without specific prior written permission. 18 1.1 cgd * 19 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 20 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 23 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 24 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 25 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 26 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 27 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 1.1 cgd * SUCH DAMAGE. 30 1.1 cgd */ 31 1.1 cgd 32 1.5 lukem #include <sys/cdefs.h> 33 1.5 lukem #if 0 34 1.5 lukem static char sccsid[] = "@(#)encrypt.c 8.2 (Berkeley) 5/30/95"; 35 1.5 lukem #else 36 1.20 kre __RCSID("$NetBSD: encrypt.c,v 1.20 2024/10/29 13:10:06 kre Exp $"); 37 1.1 cgd #endif /* not lint */ 38 1.1 cgd 39 1.1 cgd /* 40 1.1 cgd * Copyright (C) 1990 by the Massachusetts Institute of Technology 41 1.1 cgd * 42 1.1 cgd * Export of this software from the United States of America is assumed 43 1.1 cgd * to require a specific license from the United States Government. 44 1.1 cgd * It is the responsibility of any person or organization contemplating 45 1.1 cgd * export to obtain such a license before exporting. 46 1.1 cgd * 47 1.1 cgd * WITHIN THAT CONSTRAINT, permission to use, copy, modify, and 48 1.1 cgd * distribute this software and its documentation for any purpose and 49 1.1 cgd * without fee is hereby granted, provided that the above copyright 50 1.1 cgd * notice appear in all copies and that both that copyright notice and 51 1.1 cgd * this permission notice appear in supporting documentation, and that 52 1.1 cgd * the name of M.I.T. not be used in advertising or publicity pertaining 53 1.1 cgd * to distribution of the software without specific, written prior 54 1.1 cgd * permission. M.I.T. makes no representations about the suitability of 55 1.1 cgd * this software for any purpose. It is provided "as is" without express 56 1.1 cgd * or implied warranty. 57 1.1 cgd */ 58 1.1 cgd 59 1.7 thorpej #ifdef ENCRYPTION 60 1.7 thorpej 61 1.7 thorpej #include <stdio.h> 62 1.7 thorpej #define ENCRYPT_NAMES 63 1.7 thorpej #include <arpa/telnet.h> 64 1.7 thorpej 65 1.7 thorpej #include "encrypt.h" 66 1.7 thorpej #include "misc.h" 67 1.7 thorpej 68 1.7 thorpej #include <stdlib.h> 69 1.7 thorpej #ifdef NO_STRING_H 70 1.7 thorpej #include <strings.h> 71 1.7 thorpej #else 72 1.7 thorpej #include <string.h> 73 1.7 thorpej #endif 74 1.7 thorpej 75 1.7 thorpej /* 76 1.7 thorpej * These functions pointers point to the current routines 77 1.7 thorpej * for encrypting and decrypting data. 78 1.7 thorpej */ 79 1.13 perry void (*encrypt_output)(unsigned char *, int); 80 1.13 perry int (*decrypt_input)(int); 81 1.7 thorpej 82 1.20 kre static int encrypt_debug_mode = 0; 83 1.7 thorpej static int decrypt_mode = 0; 84 1.7 thorpej static int encrypt_mode = 0; 85 1.7 thorpej static int encrypt_verbose = 0; 86 1.7 thorpej static int autoencrypt = 0; 87 1.7 thorpej static int autodecrypt = 0; 88 1.7 thorpej static int havesessionkey = 0; 89 1.7 thorpej static int Server = 0; 90 1.7 thorpej static const char *Name = "Noname"; 91 1.7 thorpej 92 1.7 thorpej #define typemask(x) ((x) > 0 ? 1 << ((x)-1) : 0) 93 1.7 thorpej 94 1.7 thorpej static long i_support_encrypt = typemask(ENCTYPE_DES_CFB64) 95 1.7 thorpej | typemask(ENCTYPE_DES_OFB64); 96 1.7 thorpej static long i_support_decrypt = typemask(ENCTYPE_DES_CFB64) 97 1.7 thorpej | typemask(ENCTYPE_DES_OFB64); 98 1.7 thorpej static long i_wont_support_encrypt = 0; 99 1.7 thorpej static long i_wont_support_decrypt = 0; 100 1.7 thorpej #define I_SUPPORT_ENCRYPT (i_support_encrypt & ~i_wont_support_encrypt) 101 1.7 thorpej #define I_SUPPORT_DECRYPT (i_support_decrypt & ~i_wont_support_decrypt) 102 1.7 thorpej 103 1.7 thorpej static long remote_supports_encrypt = 0; 104 1.7 thorpej static long remote_supports_decrypt = 0; 105 1.7 thorpej 106 1.7 thorpej static Encryptions encryptions[] = { 107 1.7 thorpej #ifdef DES_ENCRYPTION 108 1.7 thorpej { "DES_CFB64", ENCTYPE_DES_CFB64, 109 1.7 thorpej cfb64_encrypt, 110 1.7 thorpej cfb64_decrypt, 111 1.7 thorpej cfb64_init, 112 1.7 thorpej cfb64_start, 113 1.7 thorpej cfb64_is, 114 1.7 thorpej cfb64_reply, 115 1.7 thorpej cfb64_session, 116 1.7 thorpej cfb64_keyid, 117 1.7 thorpej cfb64_printsub }, 118 1.7 thorpej { "DES_OFB64", ENCTYPE_DES_OFB64, 119 1.7 thorpej ofb64_encrypt, 120 1.7 thorpej ofb64_decrypt, 121 1.7 thorpej ofb64_init, 122 1.7 thorpej ofb64_start, 123 1.7 thorpej ofb64_is, 124 1.7 thorpej ofb64_reply, 125 1.7 thorpej ofb64_session, 126 1.7 thorpej ofb64_keyid, 127 1.7 thorpej ofb64_printsub }, 128 1.7 thorpej #endif /* DES_ENCRYPTION */ 129 1.16 christos { .name = 0 }, 130 1.7 thorpej }; 131 1.7 thorpej 132 1.7 thorpej static unsigned char str_send[64] = { IAC, SB, TELOPT_ENCRYPT, 133 1.7 thorpej ENCRYPT_SUPPORT }; 134 1.7 thorpej static unsigned char str_suplen = 0; 135 1.7 thorpej static unsigned char str_start[72] = { IAC, SB, TELOPT_ENCRYPT }; 136 1.7 thorpej static unsigned char str_end[] = { IAC, SB, TELOPT_ENCRYPT, 0, IAC, SE }; 137 1.7 thorpej 138 1.17 matt Encryptions * 139 1.17 matt findencryption(int type) 140 1.7 thorpej { 141 1.7 thorpej Encryptions *ep = encryptions; 142 1.7 thorpej 143 1.7 thorpej if (!(I_SUPPORT_ENCRYPT & remote_supports_decrypt & typemask(type))) 144 1.7 thorpej return(0); 145 1.7 thorpej while (ep->type && ep->type != type) 146 1.7 thorpej ++ep; 147 1.7 thorpej return(ep->type ? ep : 0); 148 1.7 thorpej } 149 1.7 thorpej 150 1.17 matt Encryptions * 151 1.17 matt finddecryption(int type) 152 1.7 thorpej { 153 1.7 thorpej Encryptions *ep = encryptions; 154 1.7 thorpej 155 1.7 thorpej if (!(I_SUPPORT_DECRYPT & remote_supports_encrypt & typemask(type))) 156 1.7 thorpej return(0); 157 1.7 thorpej while (ep->type && ep->type != type) 158 1.7 thorpej ++ep; 159 1.7 thorpej return(ep->type ? ep : 0); 160 1.7 thorpej } 161 1.7 thorpej 162 1.7 thorpej #define MAXKEYLEN 64 163 1.7 thorpej 164 1.7 thorpej static struct key_info { 165 1.7 thorpej unsigned char keyid[MAXKEYLEN]; 166 1.7 thorpej int keylen; 167 1.7 thorpej int dir; 168 1.7 thorpej int *modep; 169 1.13 perry Encryptions *(*getcrypt)(int); 170 1.7 thorpej } ki[2] = { 171 1.7 thorpej { { 0 }, 0, DIR_ENCRYPT, &encrypt_mode, findencryption }, 172 1.7 thorpej { { 0 }, 0, DIR_DECRYPT, &decrypt_mode, finddecryption }, 173 1.7 thorpej }; 174 1.7 thorpej 175 1.17 matt void 176 1.17 matt encrypt_init(const char *name, int server) 177 1.7 thorpej { 178 1.7 thorpej Encryptions *ep = encryptions; 179 1.7 thorpej 180 1.7 thorpej Name = name; 181 1.7 thorpej Server = server; 182 1.7 thorpej i_support_encrypt = i_support_decrypt = 0; 183 1.7 thorpej remote_supports_encrypt = remote_supports_decrypt = 0; 184 1.7 thorpej encrypt_mode = 0; 185 1.7 thorpej decrypt_mode = 0; 186 1.7 thorpej encrypt_output = 0; 187 1.7 thorpej decrypt_input = 0; 188 1.7 thorpej #ifdef notdef 189 1.7 thorpej encrypt_verbose = !server; 190 1.7 thorpej #endif 191 1.7 thorpej 192 1.7 thorpej str_suplen = 4; 193 1.7 thorpej 194 1.7 thorpej while (ep->type) { 195 1.20 kre if (encrypt_debug()) 196 1.7 thorpej printf(">>>%s: I will support %s\r\n", 197 1.7 thorpej Name, ENCTYPE_NAME(ep->type)); 198 1.7 thorpej i_support_encrypt |= typemask(ep->type); 199 1.7 thorpej i_support_decrypt |= typemask(ep->type); 200 1.7 thorpej if ((i_wont_support_decrypt & typemask(ep->type)) == 0) 201 1.7 thorpej if ((str_send[str_suplen++] = ep->type) == IAC) 202 1.7 thorpej str_send[str_suplen++] = IAC; 203 1.7 thorpej if (ep->init) 204 1.7 thorpej (*ep->init)(Server); 205 1.7 thorpej ++ep; 206 1.7 thorpej } 207 1.7 thorpej str_send[str_suplen++] = IAC; 208 1.7 thorpej str_send[str_suplen++] = SE; 209 1.7 thorpej } 210 1.7 thorpej 211 1.17 matt void 212 1.17 matt encrypt_list_types(void) 213 1.7 thorpej { 214 1.7 thorpej Encryptions *ep = encryptions; 215 1.7 thorpej 216 1.7 thorpej printf("Valid encryption types:\n"); 217 1.7 thorpej while (ep->type) { 218 1.7 thorpej printf("\t%s (%d)\r\n", ENCTYPE_NAME(ep->type), ep->type); 219 1.7 thorpej ++ep; 220 1.7 thorpej } 221 1.7 thorpej } 222 1.7 thorpej 223 1.17 matt int 224 1.17 matt EncryptEnable(char *type, char *mode) 225 1.7 thorpej { 226 1.7 thorpej if (isprefix(type, "help") || isprefix(type, "?")) { 227 1.7 thorpej printf("Usage: encrypt enable <type> [input|output]\n"); 228 1.7 thorpej encrypt_list_types(); 229 1.18 maya return 0; 230 1.7 thorpej } 231 1.7 thorpej if (EncryptType(type, mode)) 232 1.18 maya return EncryptStart(mode, NULL); 233 1.18 maya return 0; 234 1.7 thorpej } 235 1.7 thorpej 236 1.17 matt int 237 1.17 matt EncryptDisable(char *type, char *mode) 238 1.7 thorpej { 239 1.7 thorpej register Encryptions *ep; 240 1.7 thorpej int ret = 0; 241 1.7 thorpej 242 1.7 thorpej if (isprefix(type, "help") || isprefix(type, "?")) { 243 1.7 thorpej printf("Usage: encrypt disable <type> [input|output]\n"); 244 1.7 thorpej encrypt_list_types(); 245 1.7 thorpej } else if ((ep = (Encryptions *)genget(type, (char **)encryptions, 246 1.7 thorpej sizeof(Encryptions))) == 0) { 247 1.7 thorpej printf("%s: invalid encryption type\n", type); 248 1.7 thorpej } else if (Ambiguous(ep)) { 249 1.7 thorpej printf("Ambiguous type '%s'\n", type); 250 1.7 thorpej } else { 251 1.7 thorpej if ((mode == 0) || (isprefix(mode, "input") ? 1 : 0)) { 252 1.7 thorpej if (decrypt_mode == ep->type) 253 1.18 maya EncryptStopInput(NULL, NULL); 254 1.7 thorpej i_wont_support_decrypt |= typemask(ep->type); 255 1.7 thorpej ret = 1; 256 1.7 thorpej } 257 1.7 thorpej if ((mode == 0) || (isprefix(mode, "output"))) { 258 1.7 thorpej if (encrypt_mode == ep->type) 259 1.18 maya EncryptStopOutput(NULL, NULL); 260 1.7 thorpej i_wont_support_encrypt |= typemask(ep->type); 261 1.7 thorpej ret = 1; 262 1.7 thorpej } 263 1.7 thorpej if (ret == 0) 264 1.7 thorpej printf("%s: invalid encryption mode\n", mode); 265 1.7 thorpej } 266 1.7 thorpej return(ret); 267 1.7 thorpej } 268 1.7 thorpej 269 1.17 matt int 270 1.17 matt EncryptType(char *type, char *mode) 271 1.7 thorpej { 272 1.7 thorpej register Encryptions *ep; 273 1.7 thorpej int ret = 0; 274 1.7 thorpej 275 1.7 thorpej if (isprefix(type, "help") || isprefix(type, "?")) { 276 1.7 thorpej printf("Usage: encrypt type <type> [input|output]\n"); 277 1.7 thorpej encrypt_list_types(); 278 1.7 thorpej } else if ((ep = (Encryptions *)genget(type, (char **)encryptions, 279 1.7 thorpej sizeof(Encryptions))) == 0) { 280 1.7 thorpej printf("%s: invalid encryption type\n", type); 281 1.7 thorpej } else if (Ambiguous(ep)) { 282 1.7 thorpej printf("Ambiguous type '%s'\n", type); 283 1.7 thorpej } else { 284 1.7 thorpej if ((mode == 0) || isprefix(mode, "input")) { 285 1.7 thorpej decrypt_mode = ep->type; 286 1.7 thorpej i_wont_support_decrypt &= ~typemask(ep->type); 287 1.7 thorpej ret = 1; 288 1.7 thorpej } 289 1.7 thorpej if ((mode == 0) || isprefix(mode, "output")) { 290 1.7 thorpej encrypt_mode = ep->type; 291 1.7 thorpej i_wont_support_encrypt &= ~typemask(ep->type); 292 1.7 thorpej ret = 1; 293 1.7 thorpej } 294 1.7 thorpej if (ret == 0) 295 1.7 thorpej printf("%s: invalid encryption mode\n", mode); 296 1.7 thorpej } 297 1.7 thorpej return(ret); 298 1.7 thorpej } 299 1.7 thorpej 300 1.17 matt int 301 1.18 maya EncryptStart(char *mode, char *unused __unused) 302 1.7 thorpej { 303 1.7 thorpej register int ret = 0; 304 1.7 thorpej if (mode) { 305 1.7 thorpej if (isprefix(mode, "input")) 306 1.18 maya return EncryptStartInput(NULL, NULL); 307 1.7 thorpej if (isprefix(mode, "output")) 308 1.18 maya return EncryptStartOutput(NULL, NULL); 309 1.7 thorpej if (isprefix(mode, "help") || isprefix(mode, "?")) { 310 1.7 thorpej printf("Usage: encrypt start [input|output]\n"); 311 1.18 maya return 0; 312 1.7 thorpej } 313 1.7 thorpej printf("%s: invalid encryption mode 'encrypt start ?' for help\n", mode); 314 1.18 maya return 0; 315 1.7 thorpej } 316 1.18 maya ret += EncryptStartInput(NULL, NULL); 317 1.18 maya ret += EncryptStartOutput(NULL, NULL); 318 1.18 maya return ret; 319 1.7 thorpej } 320 1.7 thorpej 321 1.17 matt int 322 1.18 maya EncryptStartInput(char *unused1 __unused, char *unused2 __unused) 323 1.7 thorpej { 324 1.7 thorpej if (decrypt_mode) { 325 1.7 thorpej encrypt_send_request_start(); 326 1.7 thorpej return(1); 327 1.7 thorpej } 328 1.7 thorpej printf("No previous decryption mode, decryption not enabled\r\n"); 329 1.7 thorpej return(0); 330 1.7 thorpej } 331 1.7 thorpej 332 1.17 matt int 333 1.18 maya EncryptStartOutput(char *unused1 __unused, char *unused2 __unused) 334 1.7 thorpej { 335 1.7 thorpej if (encrypt_mode) { 336 1.7 thorpej encrypt_start_output(encrypt_mode); 337 1.7 thorpej return(1); 338 1.7 thorpej } 339 1.7 thorpej printf("No previous encryption mode, encryption not enabled\r\n"); 340 1.7 thorpej return(0); 341 1.7 thorpej } 342 1.7 thorpej 343 1.17 matt int 344 1.18 maya EncryptStop(char *mode, char *unused __unused) 345 1.7 thorpej { 346 1.7 thorpej int ret = 0; 347 1.7 thorpej if (mode) { 348 1.7 thorpej if (isprefix(mode, "input")) 349 1.18 maya return EncryptStopInput(NULL, NULL); 350 1.7 thorpej if (isprefix(mode, "output")) 351 1.18 maya return EncryptStopOutput(NULL, NULL); 352 1.7 thorpej if (isprefix(mode, "help") || isprefix(mode, "?")) { 353 1.7 thorpej printf("Usage: encrypt stop [input|output]\n"); 354 1.18 maya return 0; 355 1.7 thorpej } 356 1.7 thorpej printf("%s: invalid encryption mode 'encrypt stop ?' for help\n", mode); 357 1.18 maya return 0; 358 1.7 thorpej } 359 1.18 maya ret += EncryptStopInput(NULL, NULL); 360 1.18 maya ret += EncryptStopOutput(NULL, NULL); 361 1.18 maya return ret; 362 1.7 thorpej } 363 1.7 thorpej 364 1.17 matt int 365 1.18 maya EncryptStopInput(char *unused1 __unused, char *unused2 __unused) 366 1.7 thorpej { 367 1.7 thorpej encrypt_send_request_end(); 368 1.18 maya return 1; 369 1.7 thorpej } 370 1.7 thorpej 371 1.17 matt int 372 1.18 maya EncryptStopOutput(char *unused1 __unused, char *unused2 __unused) 373 1.7 thorpej { 374 1.7 thorpej encrypt_send_end(); 375 1.18 maya return 1; 376 1.7 thorpej } 377 1.7 thorpej 378 1.17 matt void 379 1.17 matt encrypt_display(void) 380 1.7 thorpej { 381 1.7 thorpej if (encrypt_output) 382 1.7 thorpej printf("Currently encrypting output with %s\r\n", 383 1.7 thorpej ENCTYPE_NAME(encrypt_mode)); 384 1.7 thorpej if (decrypt_input) 385 1.7 thorpej printf("Currently decrypting input with %s\r\n", 386 1.7 thorpej ENCTYPE_NAME(decrypt_mode)); 387 1.7 thorpej } 388 1.7 thorpej 389 1.17 matt int 390 1.18 maya EncryptStatus(char *unused1 __unused, char *unused2 __unused) 391 1.7 thorpej { 392 1.7 thorpej if (encrypt_output) 393 1.7 thorpej printf("Currently encrypting output with %s\r\n", 394 1.7 thorpej ENCTYPE_NAME(encrypt_mode)); 395 1.7 thorpej else if (encrypt_mode) { 396 1.7 thorpej printf("Currently output is clear text.\r\n"); 397 1.7 thorpej printf("Last encryption mode was %s\r\n", 398 1.7 thorpej ENCTYPE_NAME(encrypt_mode)); 399 1.7 thorpej } 400 1.7 thorpej if (decrypt_input) { 401 1.7 thorpej printf("Currently decrypting input with %s\r\n", 402 1.7 thorpej ENCTYPE_NAME(decrypt_mode)); 403 1.7 thorpej } else if (decrypt_mode) { 404 1.7 thorpej printf("Currently input is clear text.\r\n"); 405 1.7 thorpej printf("Last decryption mode was %s\r\n", 406 1.7 thorpej ENCTYPE_NAME(decrypt_mode)); 407 1.7 thorpej } 408 1.7 thorpej return 1; 409 1.7 thorpej } 410 1.7 thorpej 411 1.17 matt void 412 1.17 matt encrypt_send_support(void) 413 1.7 thorpej { 414 1.7 thorpej if (str_suplen) { 415 1.7 thorpej /* 416 1.7 thorpej * If the user has requested that decryption start 417 1.19 andvar * immediately, then send a "REQUEST START" before 418 1.7 thorpej * we negotiate the type. 419 1.7 thorpej */ 420 1.7 thorpej if (!Server && autodecrypt) 421 1.7 thorpej encrypt_send_request_start(); 422 1.7 thorpej telnet_net_write(str_send, str_suplen); 423 1.7 thorpej printsub('>', &str_send[2], str_suplen - 2); 424 1.7 thorpej str_suplen = 0; 425 1.7 thorpej } 426 1.7 thorpej } 427 1.7 thorpej 428 1.17 matt int 429 1.17 matt EncryptDebug(int on) 430 1.7 thorpej { 431 1.7 thorpej if (on < 0) 432 1.7 thorpej encrypt_debug_mode ^= 1; 433 1.7 thorpej else 434 1.7 thorpej encrypt_debug_mode = on; 435 1.7 thorpej printf("Encryption debugging %s\r\n", 436 1.7 thorpej encrypt_debug_mode ? "enabled" : "disabled"); 437 1.7 thorpej return(1); 438 1.7 thorpej } 439 1.7 thorpej 440 1.17 matt int 441 1.17 matt EncryptVerbose(int on) 442 1.7 thorpej { 443 1.7 thorpej if (on < 0) 444 1.7 thorpej encrypt_verbose ^= 1; 445 1.7 thorpej else 446 1.7 thorpej encrypt_verbose = on; 447 1.7 thorpej printf("Encryption %s verbose\r\n", 448 1.7 thorpej encrypt_verbose ? "is" : "is not"); 449 1.7 thorpej return(1); 450 1.7 thorpej } 451 1.7 thorpej 452 1.17 matt int 453 1.17 matt EncryptAutoEnc(int on) 454 1.7 thorpej { 455 1.7 thorpej encrypt_auto(on); 456 1.7 thorpej printf("Automatic encryption of output is %s\r\n", 457 1.7 thorpej autoencrypt ? "enabled" : "disabled"); 458 1.7 thorpej return(1); 459 1.7 thorpej } 460 1.7 thorpej 461 1.17 matt int 462 1.17 matt EncryptAutoDec(int on) 463 1.7 thorpej { 464 1.7 thorpej decrypt_auto(on); 465 1.7 thorpej printf("Automatic decryption of input is %s\r\n", 466 1.7 thorpej autodecrypt ? "enabled" : "disabled"); 467 1.7 thorpej return(1); 468 1.7 thorpej } 469 1.7 thorpej 470 1.7 thorpej /* 471 1.7 thorpej * Called when ENCRYPT SUPPORT is received. 472 1.7 thorpej */ 473 1.17 matt void 474 1.17 matt encrypt_support(unsigned char *typelist, int cnt) 475 1.7 thorpej { 476 1.7 thorpej register int type, use_type = 0; 477 1.7 thorpej Encryptions *ep; 478 1.7 thorpej 479 1.7 thorpej /* 480 1.7 thorpej * Forget anything the other side has previously told us. 481 1.7 thorpej */ 482 1.7 thorpej remote_supports_decrypt = 0; 483 1.7 thorpej 484 1.7 thorpej while (cnt-- > 0) { 485 1.7 thorpej type = *typelist++; 486 1.20 kre if (encrypt_debug()) 487 1.7 thorpej printf(">>>%s: He is supporting %s (%d)\r\n", 488 1.7 thorpej Name, 489 1.7 thorpej ENCTYPE_NAME(type), type); 490 1.7 thorpej if ((type < ENCTYPE_CNT) && 491 1.7 thorpej (I_SUPPORT_ENCRYPT & typemask(type))) { 492 1.7 thorpej remote_supports_decrypt |= typemask(type); 493 1.7 thorpej if (use_type == 0) 494 1.7 thorpej use_type = type; 495 1.7 thorpej } 496 1.7 thorpej } 497 1.7 thorpej if (use_type) { 498 1.7 thorpej ep = findencryption(use_type); 499 1.7 thorpej if (!ep) 500 1.7 thorpej return; 501 1.7 thorpej type = ep->start ? (*ep->start)(DIR_ENCRYPT, Server) : 0; 502 1.20 kre if (encrypt_debug()) 503 1.7 thorpej printf(">>>%s: (*ep->start)() returned %d\r\n", 504 1.7 thorpej Name, type); 505 1.7 thorpej if (type < 0) 506 1.7 thorpej return; 507 1.7 thorpej encrypt_mode = use_type; 508 1.7 thorpej if (type == 0) 509 1.7 thorpej encrypt_start_output(use_type); 510 1.7 thorpej } 511 1.7 thorpej } 512 1.7 thorpej 513 1.17 matt void 514 1.17 matt encrypt_is(unsigned char *data, int cnt) 515 1.7 thorpej { 516 1.7 thorpej Encryptions *ep; 517 1.7 thorpej register int type, ret; 518 1.7 thorpej 519 1.7 thorpej if (--cnt < 0) 520 1.7 thorpej return; 521 1.7 thorpej type = *data++; 522 1.7 thorpej if (type < ENCTYPE_CNT) 523 1.7 thorpej remote_supports_encrypt |= typemask(type); 524 1.7 thorpej if (!(ep = finddecryption(type))) { 525 1.20 kre if (encrypt_debug()) 526 1.7 thorpej printf(">>>%s: Can't find type %s (%d) for initial negotiation\r\n", 527 1.7 thorpej Name, 528 1.7 thorpej ENCTYPE_NAME_OK(type) 529 1.7 thorpej ? ENCTYPE_NAME(type) : "(unknown)", 530 1.7 thorpej type); 531 1.7 thorpej return; 532 1.7 thorpej } 533 1.7 thorpej if (!ep->is) { 534 1.20 kre if (encrypt_debug()) 535 1.7 thorpej printf(">>>%s: No initial negotiation needed for type %s (%d)\r\n", 536 1.7 thorpej Name, 537 1.7 thorpej ENCTYPE_NAME_OK(type) 538 1.7 thorpej ? ENCTYPE_NAME(type) : "(unknown)", 539 1.7 thorpej type); 540 1.7 thorpej ret = 0; 541 1.7 thorpej } else { 542 1.7 thorpej ret = (*ep->is)(data, cnt); 543 1.20 kre if (encrypt_debug()) 544 1.7 thorpej printf("(*ep->is)(%p, %d) returned %s(%d)\n", data, cnt, 545 1.7 thorpej (ret < 0) ? "FAIL " : 546 1.7 thorpej (ret == 0) ? "SUCCESS " : "MORE_TO_DO ", ret); 547 1.7 thorpej } 548 1.7 thorpej if (ret < 0) { 549 1.7 thorpej autodecrypt = 0; 550 1.7 thorpej } else { 551 1.7 thorpej decrypt_mode = type; 552 1.7 thorpej if (ret == 0 && autodecrypt) 553 1.7 thorpej encrypt_send_request_start(); 554 1.7 thorpej } 555 1.7 thorpej } 556 1.7 thorpej 557 1.17 matt void 558 1.17 matt encrypt_reply(unsigned char *data, int cnt) 559 1.7 thorpej { 560 1.7 thorpej Encryptions *ep; 561 1.7 thorpej register int ret, type; 562 1.7 thorpej 563 1.7 thorpej if (--cnt < 0) 564 1.7 thorpej return; 565 1.7 thorpej type = *data++; 566 1.7 thorpej if (!(ep = findencryption(type))) { 567 1.20 kre if (encrypt_debug()) 568 1.7 thorpej printf(">>>%s: Can't find type %s (%d) for initial negotiation\r\n", 569 1.7 thorpej Name, 570 1.7 thorpej ENCTYPE_NAME_OK(type) 571 1.7 thorpej ? ENCTYPE_NAME(type) : "(unknown)", 572 1.7 thorpej type); 573 1.7 thorpej return; 574 1.7 thorpej } 575 1.7 thorpej if (!ep->reply) { 576 1.20 kre if (encrypt_debug()) 577 1.7 thorpej printf(">>>%s: No initial negotiation needed for type %s (%d)\r\n", 578 1.7 thorpej Name, 579 1.7 thorpej ENCTYPE_NAME_OK(type) 580 1.7 thorpej ? ENCTYPE_NAME(type) : "(unknown)", 581 1.7 thorpej type); 582 1.7 thorpej ret = 0; 583 1.7 thorpej } else { 584 1.7 thorpej ret = (*ep->reply)(data, cnt); 585 1.20 kre if (encrypt_debug()) 586 1.7 thorpej printf("(*ep->reply)(%p, %d) returned %s(%d)\n", 587 1.7 thorpej data, cnt, 588 1.7 thorpej (ret < 0) ? "FAIL " : 589 1.7 thorpej (ret == 0) ? "SUCCESS " : "MORE_TO_DO ", ret); 590 1.7 thorpej } 591 1.20 kre if (encrypt_debug()) 592 1.7 thorpej printf(">>>%s: encrypt_reply returned %d\n", Name, ret); 593 1.7 thorpej if (ret < 0) { 594 1.7 thorpej autoencrypt = 0; 595 1.7 thorpej } else { 596 1.7 thorpej encrypt_mode = type; 597 1.7 thorpej if (ret == 0 && autoencrypt) 598 1.7 thorpej encrypt_start_output(type); 599 1.7 thorpej } 600 1.7 thorpej } 601 1.7 thorpej 602 1.7 thorpej /* 603 1.7 thorpej * Called when a ENCRYPT START command is received. 604 1.7 thorpej */ 605 1.17 matt void 606 1.17 matt encrypt_start(unsigned char *data, int cnt) 607 1.7 thorpej { 608 1.7 thorpej Encryptions *ep; 609 1.7 thorpej 610 1.7 thorpej if (!decrypt_mode) { 611 1.7 thorpej /* 612 1.7 thorpej * Something is wrong. We should not get a START 613 1.7 thorpej * command without having already picked our 614 1.7 thorpej * decryption scheme. Send a REQUEST-END to 615 1.7 thorpej * attempt to clear the channel... 616 1.7 thorpej */ 617 1.7 thorpej printf("%s: Warning, Cannot decrypt input stream!!!\r\n", Name); 618 1.7 thorpej encrypt_send_request_end(); 619 1.7 thorpej return; 620 1.7 thorpej } 621 1.7 thorpej 622 1.7 thorpej if ((ep = finddecryption(decrypt_mode)) != NULL) { 623 1.7 thorpej decrypt_input = ep->input; 624 1.7 thorpej if (encrypt_verbose) 625 1.7 thorpej printf("[ Input is now decrypted with type %s ]\r\n", 626 1.7 thorpej ENCTYPE_NAME(decrypt_mode)); 627 1.20 kre if (encrypt_debug()) 628 1.7 thorpej printf(">>>%s: Start to decrypt input with type %s\r\n", 629 1.7 thorpej Name, ENCTYPE_NAME(decrypt_mode)); 630 1.7 thorpej } else { 631 1.7 thorpej printf("%s: Warning, Cannot decrypt type %s (%d)!!!\r\n", 632 1.7 thorpej Name, 633 1.7 thorpej ENCTYPE_NAME_OK(decrypt_mode) 634 1.7 thorpej ? ENCTYPE_NAME(decrypt_mode) 635 1.7 thorpej : "(unknown)", 636 1.7 thorpej decrypt_mode); 637 1.7 thorpej encrypt_send_request_end(); 638 1.7 thorpej } 639 1.7 thorpej } 640 1.7 thorpej 641 1.17 matt void 642 1.17 matt encrypt_session_key(Session_Key *key, int server) 643 1.7 thorpej { 644 1.7 thorpej Encryptions *ep = encryptions; 645 1.7 thorpej 646 1.7 thorpej havesessionkey = 1; 647 1.7 thorpej 648 1.7 thorpej while (ep->type) { 649 1.7 thorpej if (ep->session) 650 1.7 thorpej (*ep->session)(key, server); 651 1.7 thorpej #ifdef notdef 652 1.7 thorpej if (!encrypt_output && autoencrypt && !server) 653 1.7 thorpej encrypt_start_output(ep->type); 654 1.7 thorpej if (!decrypt_input && autodecrypt && !server) 655 1.7 thorpej encrypt_send_request_start(); 656 1.7 thorpej #endif 657 1.7 thorpej ++ep; 658 1.7 thorpej } 659 1.7 thorpej } 660 1.7 thorpej 661 1.7 thorpej /* 662 1.7 thorpej * Called when ENCRYPT END is received. 663 1.7 thorpej */ 664 1.17 matt void 665 1.17 matt encrypt_end(void) 666 1.7 thorpej { 667 1.7 thorpej decrypt_input = 0; 668 1.20 kre if (encrypt_debug()) 669 1.7 thorpej printf(">>>%s: Input is back to clear text\r\n", Name); 670 1.7 thorpej if (encrypt_verbose) 671 1.7 thorpej printf("[ Input is now clear text ]\r\n"); 672 1.7 thorpej } 673 1.7 thorpej 674 1.7 thorpej /* 675 1.7 thorpej * Called when ENCRYPT REQUEST-END is received. 676 1.7 thorpej */ 677 1.17 matt void 678 1.17 matt encrypt_request_end(void) 679 1.7 thorpej { 680 1.7 thorpej encrypt_send_end(); 681 1.7 thorpej } 682 1.7 thorpej 683 1.7 thorpej /* 684 1.7 thorpej * Called when ENCRYPT REQUEST-START is received. If we receive 685 1.7 thorpej * this before a type is picked, then that indicates that the 686 1.7 thorpej * other side wants us to start encrypting data as soon as we 687 1.7 thorpej * can. 688 1.7 thorpej */ 689 1.17 matt void 690 1.17 matt encrypt_request_start(unsigned char *data, int cnt) 691 1.7 thorpej { 692 1.7 thorpej if (encrypt_mode == 0) { 693 1.7 thorpej if (Server) 694 1.7 thorpej autoencrypt = 1; 695 1.7 thorpej return; 696 1.7 thorpej } 697 1.7 thorpej encrypt_start_output(encrypt_mode); 698 1.7 thorpej } 699 1.7 thorpej 700 1.7 thorpej static unsigned char str_keyid[(MAXKEYLEN*2)+5] = { IAC, SB, TELOPT_ENCRYPT }; 701 1.7 thorpej 702 1.17 matt void 703 1.17 matt encrypt_enc_keyid(unsigned char *keyid, int len) 704 1.7 thorpej { 705 1.7 thorpej encrypt_keyid(&ki[1], keyid, len); 706 1.7 thorpej } 707 1.7 thorpej 708 1.17 matt void 709 1.17 matt encrypt_dec_keyid(unsigned char *keyid, int len) 710 1.7 thorpej { 711 1.7 thorpej encrypt_keyid(&ki[0], keyid, len); 712 1.7 thorpej } 713 1.7 thorpej 714 1.7 thorpej void 715 1.17 matt encrypt_keyid(struct key_info *kp, unsigned char *keyid, int len) 716 1.7 thorpej { 717 1.7 thorpej Encryptions *ep; 718 1.7 thorpej int dir = kp->dir; 719 1.7 thorpej register int ret = 0; 720 1.7 thorpej 721 1.7 thorpej if (!(ep = (*kp->getcrypt)(*kp->modep))) { 722 1.7 thorpej if (len == 0) 723 1.7 thorpej return; 724 1.7 thorpej kp->keylen = 0; 725 1.7 thorpej } else if (len == 0) { 726 1.7 thorpej /* 727 1.7 thorpej * Empty option, indicates a failure. 728 1.7 thorpej */ 729 1.7 thorpej if (kp->keylen == 0) 730 1.7 thorpej return; 731 1.7 thorpej kp->keylen = 0; 732 1.7 thorpej if (ep->keyid) 733 1.7 thorpej (void)(*ep->keyid)(dir, kp->keyid, &kp->keylen); 734 1.7 thorpej 735 1.16 christos } else if ((size_t)len > sizeof(kp->keyid)) { 736 1.15 christos return; 737 1.7 thorpej } else if ((len != kp->keylen) || 738 1.7 thorpej (memcmp(keyid, kp->keyid, len) != 0)) { 739 1.7 thorpej /* 740 1.7 thorpej * Length or contents are different 741 1.7 thorpej */ 742 1.7 thorpej kp->keylen = len; 743 1.7 thorpej memmove(kp->keyid, keyid, len); 744 1.7 thorpej if (ep->keyid) 745 1.7 thorpej (void)(*ep->keyid)(dir, kp->keyid, &kp->keylen); 746 1.7 thorpej } else { 747 1.7 thorpej if (ep->keyid) 748 1.7 thorpej ret = (*ep->keyid)(dir, kp->keyid, &kp->keylen); 749 1.7 thorpej if ((ret == 0) && (dir == DIR_ENCRYPT) && autoencrypt) 750 1.7 thorpej encrypt_start_output(*kp->modep); 751 1.7 thorpej return; 752 1.7 thorpej } 753 1.7 thorpej 754 1.7 thorpej encrypt_send_keyid(dir, kp->keyid, kp->keylen, 0); 755 1.7 thorpej } 756 1.7 thorpej 757 1.17 matt void 758 1.16 christos encrypt_send_keyid(int dir, const unsigned char *keyid, int keylen, int saveit) 759 1.7 thorpej { 760 1.7 thorpej unsigned char *strp; 761 1.7 thorpej 762 1.7 thorpej str_keyid[3] = (dir == DIR_ENCRYPT) 763 1.7 thorpej ? ENCRYPT_ENC_KEYID : ENCRYPT_DEC_KEYID; 764 1.7 thorpej if (saveit) { 765 1.7 thorpej struct key_info *kp = &ki[(dir == DIR_ENCRYPT) ? 0 : 1]; 766 1.7 thorpej memmove(kp->keyid, keyid, keylen); 767 1.7 thorpej kp->keylen = keylen; 768 1.7 thorpej } 769 1.7 thorpej 770 1.7 thorpej for (strp = &str_keyid[4]; keylen > 0; --keylen) { 771 1.7 thorpej if ((*strp++ = *keyid++) == IAC) 772 1.7 thorpej *strp++ = IAC; 773 1.7 thorpej } 774 1.7 thorpej *strp++ = IAC; 775 1.7 thorpej *strp++ = SE; 776 1.7 thorpej telnet_net_write(str_keyid, strp - str_keyid); 777 1.7 thorpej printsub('>', &str_keyid[2], strp - str_keyid - 2); 778 1.7 thorpej } 779 1.7 thorpej 780 1.17 matt void 781 1.17 matt encrypt_auto(int on) 782 1.7 thorpej { 783 1.7 thorpej if (on < 0) 784 1.7 thorpej autoencrypt ^= 1; 785 1.7 thorpej else 786 1.7 thorpej autoencrypt = on ? 1 : 0; 787 1.7 thorpej } 788 1.7 thorpej 789 1.17 matt void 790 1.17 matt decrypt_auto(int on) 791 1.7 thorpej { 792 1.7 thorpej if (on < 0) 793 1.7 thorpej autodecrypt ^= 1; 794 1.7 thorpej else 795 1.7 thorpej autodecrypt = on ? 1 : 0; 796 1.7 thorpej } 797 1.7 thorpej 798 1.17 matt void 799 1.17 matt encrypt_start_output(int type) 800 1.7 thorpej { 801 1.7 thorpej Encryptions *ep; 802 1.7 thorpej register unsigned char *p; 803 1.7 thorpej register int i; 804 1.7 thorpej 805 1.7 thorpej if (!(ep = findencryption(type))) { 806 1.20 kre if (encrypt_debug()) { 807 1.7 thorpej printf(">>>%s: Can't encrypt with type %s (%d)\r\n", 808 1.7 thorpej Name, 809 1.7 thorpej ENCTYPE_NAME_OK(type) 810 1.7 thorpej ? ENCTYPE_NAME(type) : "(unknown)", 811 1.7 thorpej type); 812 1.7 thorpej } 813 1.7 thorpej return; 814 1.7 thorpej } 815 1.7 thorpej if (ep->start) { 816 1.7 thorpej i = (*ep->start)(DIR_ENCRYPT, Server); 817 1.20 kre if (encrypt_debug()) { 818 1.7 thorpej printf(">>>%s: Encrypt start: %s (%d) %s\r\n", 819 1.7 thorpej Name, 820 1.7 thorpej (i < 0) ? "failed" : 821 1.7 thorpej "initial negotiation in progress", 822 1.7 thorpej i, ENCTYPE_NAME(type)); 823 1.7 thorpej } 824 1.7 thorpej if (i) 825 1.7 thorpej return; 826 1.7 thorpej } 827 1.7 thorpej p = str_start + 3; 828 1.7 thorpej *p++ = ENCRYPT_START; 829 1.7 thorpej for (i = 0; i < ki[0].keylen; ++i) { 830 1.7 thorpej if ((*p++ = ki[0].keyid[i]) == IAC) 831 1.7 thorpej *p++ = IAC; 832 1.7 thorpej } 833 1.7 thorpej *p++ = IAC; 834 1.7 thorpej *p++ = SE; 835 1.7 thorpej telnet_net_write(str_start, p - str_start); 836 1.7 thorpej net_encrypt(); 837 1.7 thorpej printsub('>', &str_start[2], p - &str_start[2]); 838 1.7 thorpej /* 839 1.7 thorpej * If we are already encrypting in some mode, then 840 1.7 thorpej * encrypt the ring (which includes our request) in 841 1.7 thorpej * the old mode, mark it all as "clear text" and then 842 1.7 thorpej * switch to the new mode. 843 1.7 thorpej */ 844 1.7 thorpej encrypt_output = ep->output; 845 1.7 thorpej encrypt_mode = type; 846 1.20 kre if (encrypt_debug()) 847 1.7 thorpej printf(">>>%s: Started to encrypt output with type %s\r\n", 848 1.7 thorpej Name, ENCTYPE_NAME(type)); 849 1.7 thorpej if (encrypt_verbose) 850 1.7 thorpej printf("[ Output is now encrypted with type %s ]\r\n", 851 1.7 thorpej ENCTYPE_NAME(type)); 852 1.7 thorpej } 853 1.7 thorpej 854 1.17 matt void 855 1.17 matt encrypt_send_end(void) 856 1.7 thorpej { 857 1.7 thorpej if (!encrypt_output) 858 1.7 thorpej return; 859 1.7 thorpej 860 1.7 thorpej str_end[3] = ENCRYPT_END; 861 1.7 thorpej telnet_net_write(str_end, sizeof(str_end)); 862 1.7 thorpej net_encrypt(); 863 1.7 thorpej printsub('>', &str_end[2], sizeof(str_end) - 2); 864 1.7 thorpej /* 865 1.7 thorpej * Encrypt the output buffer now because it will not be done by 866 1.7 thorpej * netflush... 867 1.7 thorpej */ 868 1.7 thorpej encrypt_output = 0; 869 1.20 kre if (encrypt_debug()) 870 1.7 thorpej printf(">>>%s: Output is back to clear text\r\n", Name); 871 1.7 thorpej if (encrypt_verbose) 872 1.7 thorpej printf("[ Output is now clear text ]\r\n"); 873 1.7 thorpej } 874 1.7 thorpej 875 1.17 matt void 876 1.17 matt encrypt_send_request_start(void) 877 1.7 thorpej { 878 1.7 thorpej register unsigned char *p; 879 1.7 thorpej register int i; 880 1.7 thorpej 881 1.7 thorpej p = &str_start[3]; 882 1.7 thorpej *p++ = ENCRYPT_REQSTART; 883 1.7 thorpej for (i = 0; i < ki[1].keylen; ++i) { 884 1.7 thorpej if ((*p++ = ki[1].keyid[i]) == IAC) 885 1.7 thorpej *p++ = IAC; 886 1.7 thorpej } 887 1.7 thorpej *p++ = IAC; 888 1.7 thorpej *p++ = SE; 889 1.7 thorpej telnet_net_write(str_start, p - str_start); 890 1.7 thorpej printsub('>', &str_start[2], p - &str_start[2]); 891 1.20 kre if (encrypt_debug()) 892 1.7 thorpej printf(">>>%s: Request input to be encrypted\r\n", Name); 893 1.7 thorpej } 894 1.7 thorpej 895 1.17 matt void 896 1.17 matt encrypt_send_request_end(void) 897 1.7 thorpej { 898 1.7 thorpej str_end[3] = ENCRYPT_REQEND; 899 1.7 thorpej telnet_net_write(str_end, sizeof(str_end)); 900 1.7 thorpej printsub('>', &str_end[2], sizeof(str_end) - 2); 901 1.7 thorpej 902 1.20 kre if (encrypt_debug()) 903 1.7 thorpej printf(">>>%s: Request input to be clear text\r\n", Name); 904 1.7 thorpej } 905 1.7 thorpej 906 1.17 matt void 907 1.17 matt encrypt_wait(void) 908 1.7 thorpej { 909 1.20 kre if (encrypt_debug()) 910 1.7 thorpej printf(">>>%s: in encrypt_wait\r\n", Name); 911 1.7 thorpej if (!havesessionkey || !(I_SUPPORT_ENCRYPT & remote_supports_decrypt)) 912 1.7 thorpej return; 913 1.7 thorpej while (autoencrypt && !encrypt_output) 914 1.7 thorpej if (telnet_spin()) 915 1.7 thorpej return; 916 1.7 thorpej } 917 1.7 thorpej 918 1.20 kre int 919 1.20 kre encrypt_debug(void) 920 1.7 thorpej { 921 1.20 kre return encrypt_debug_mode; 922 1.7 thorpej } 923 1.7 thorpej 924 1.17 matt void 925 1.17 matt encrypt_gen_printsub(unsigned char *data, int cnt, 926 1.17 matt unsigned char *buf, int buflen) 927 1.7 thorpej { 928 1.7 thorpej char tbuf[16], *cp; 929 1.7 thorpej 930 1.7 thorpej cnt -= 2; 931 1.7 thorpej data += 2; 932 1.7 thorpej buf[buflen-1] = '\0'; 933 1.7 thorpej buf[buflen-2] = '*'; 934 1.10 simonb buflen -= 2; 935 1.7 thorpej for (; cnt > 0; cnt--, data++) { 936 1.11 itojun snprintf(tbuf, sizeof(tbuf), " %d", *data); 937 1.7 thorpej for (cp = tbuf; *cp && buflen > 0; --buflen) 938 1.7 thorpej *buf++ = *cp++; 939 1.7 thorpej if (buflen <= 0) 940 1.7 thorpej return; 941 1.7 thorpej } 942 1.7 thorpej *buf = '\0'; 943 1.7 thorpej } 944 1.7 thorpej 945 1.17 matt void 946 1.17 matt encrypt_printsub(unsigned char *data, int cnt, 947 1.17 matt unsigned char *buf, int buflen) 948 1.7 thorpej { 949 1.7 thorpej Encryptions *ep; 950 1.7 thorpej register int type = data[1]; 951 1.7 thorpej 952 1.7 thorpej for (ep = encryptions; ep->type && ep->type != type; ep++) 953 1.7 thorpej ; 954 1.7 thorpej 955 1.7 thorpej if (ep->printsub) 956 1.7 thorpej (*ep->printsub)(data, cnt, buf, buflen); 957 1.7 thorpej else 958 1.7 thorpej encrypt_gen_printsub(data, cnt, buf, buflen); 959 1.7 thorpej } 960 1.7 thorpej #endif /* ENCRYPTION */ 961