1 /* 2 * Copyright 2004 Sun Microsystems, Inc. All rights reserved. 3 * Use is subject to license terms. 4 */ 5 /* 6 * Copyright 1995, 1996 by David Mazieres <dm@lcs.mit.edu>. 7 * 8 * Modification and redistribution in source and binary forms is 9 * permitted provided that due credit is given to the author and the 10 * OpenBSD project by leaving this copyright notice intact. 11 */ 12 13 #include "includes.h" 14 RCSID("$OpenBSD: ssh-keyscan.c,v 1.40 2002/07/06 17:47:58 stevesk Exp $"); 15 16 #pragma ident "%Z%%M% %I% %E% SMI" 17 18 #include "sys-queue.h" 19 20 #include <openssl/bn.h> 21 22 #include <setjmp.h> 23 #include "xmalloc.h" 24 #include "ssh.h" 25 #include "ssh1.h" 26 #include "key.h" 27 #include "kex.h" 28 #include "compat.h" 29 #include "myproposal.h" 30 #include "packet.h" 31 #include "dispatch.h" 32 #include "buffer.h" 33 #include "bufaux.h" 34 #include "log.h" 35 #include "atomicio.h" 36 #include "misc.h" 37 38 /* Flag indicating whether IPv4 or IPv6. This can be set on the command line. 39 Default value is AF_UNSPEC means both IPv4 and IPv6. */ 40 #ifdef IPV4_DEFAULT 41 int IPv4or6 = AF_INET; 42 #else 43 int IPv4or6 = AF_UNSPEC; 44 #endif 45 46 int ssh_port = SSH_DEFAULT_PORT; 47 48 #define KT_RSA1 1 49 #define KT_DSA 2 50 #define KT_RSA 4 51 52 int get_keytypes = KT_RSA1; /* Get only RSA1 keys by default */ 53 54 #define MAXMAXFD 256 55 56 /* The number of seconds after which to give up on a TCP connection */ 57 int timeout = 5; 58 59 int maxfd; 60 #define MAXCON (maxfd - 10) 61 62 #ifdef HAVE___PROGNAME 63 extern char *__progname; 64 #else 65 char *__progname; 66 #endif 67 fd_set *read_wait; 68 size_t read_wait_size; 69 int ncon; 70 int nonfatal_fatal = 0; 71 jmp_buf kexjmp; 72 Key *kexjmp_key; 73 74 /* 75 * Keep a connection structure for each file descriptor. The state 76 * associated with file descriptor n is held in fdcon[n]. 77 */ 78 typedef struct Connection { 79 u_char c_status; /* State of connection on this file desc. */ 80 #define CS_UNUSED 0 /* File descriptor unused */ 81 #define CS_CON 1 /* Waiting to connect/read greeting */ 82 #define CS_SIZE 2 /* Waiting to read initial packet size */ 83 #define CS_KEYS 3 /* Waiting to read public key packet */ 84 int c_fd; /* Quick lookup: c->c_fd == c - fdcon */ 85 int c_plen; /* Packet length field for ssh packet */ 86 int c_len; /* Total bytes which must be read. */ 87 int c_off; /* Length of data read so far. */ 88 int c_keytype; /* Only one of KT_RSA1, KT_DSA, or KT_RSA */ 89 char *c_namebase; /* Address to free for c_name and c_namelist */ 90 char *c_name; /* Hostname of connection for errors */ 91 char *c_namelist; /* Pointer to other possible addresses */ 92 char *c_output_name; /* Hostname of connection for output */ 93 char *c_data; /* Data read from this fd */ 94 Kex *c_kex; /* The key-exchange struct for ssh2 */ 95 struct timeval c_tv; /* Time at which connection gets aborted */ 96 TAILQ_ENTRY(Connection) c_link; /* List of connections in timeout order. */ 97 } con; 98 99 TAILQ_HEAD(conlist, Connection) tq; /* Timeout Queue */ 100 con *fdcon; 101 102 /* 103 * This is just a wrapper around fgets() to make it usable. 104 */ 105 106 /* Stress-test. Increase this later. */ 107 #define LINEBUF_SIZE 16 108 109 typedef struct { 110 char *buf; 111 u_int size; 112 int lineno; 113 const char *filename; 114 FILE *stream; 115 void (*errfun) (const char *,...); 116 } Linebuf; 117 118 static Linebuf * 119 Linebuf_alloc(const char *filename, void (*errfun) (const char *,...)) 120 { 121 Linebuf *lb; 122 123 if (!(lb = malloc(sizeof(*lb)))) { 124 if (errfun) 125 (*errfun) ("linebuf (%s): malloc failed\n", 126 filename ? filename : "(stdin)"); 127 return (NULL); 128 } 129 if (filename) { 130 lb->filename = filename; 131 if (!(lb->stream = fopen(filename, "r"))) { 132 xfree(lb); 133 if (errfun) 134 (*errfun) ("%s: %s\n", filename, strerror(errno)); 135 return (NULL); 136 } 137 } else { 138 lb->filename = "(stdin)"; 139 lb->stream = stdin; 140 } 141 142 if (!(lb->buf = malloc(lb->size = LINEBUF_SIZE))) { 143 if (errfun) 144 (*errfun) ("linebuf (%s): malloc failed\n", lb->filename); 145 xfree(lb); 146 return (NULL); 147 } 148 lb->errfun = errfun; 149 lb->lineno = 0; 150 return (lb); 151 } 152 153 static void 154 Linebuf_free(Linebuf * lb) 155 { 156 fclose(lb->stream); 157 xfree(lb->buf); 158 xfree(lb); 159 } 160 161 #if 0 162 static void 163 Linebuf_restart(Linebuf * lb) 164 { 165 clearerr(lb->stream); 166 rewind(lb->stream); 167 lb->lineno = 0; 168 } 169 170 static int 171 Linebuf_lineno(Linebuf * lb) 172 { 173 return (lb->lineno); 174 } 175 #endif 176 177 static char * 178 Linebuf_getline(Linebuf * lb) 179 { 180 int n = 0; 181 void *p; 182 183 lb->lineno++; 184 for (;;) { 185 /* Read a line */ 186 if (!fgets(&lb->buf[n], lb->size - n, lb->stream)) { 187 if (ferror(lb->stream) && lb->errfun) 188 (*lb->errfun)("%s: %s\n", lb->filename, 189 strerror(errno)); 190 return (NULL); 191 } 192 n = strlen(lb->buf); 193 194 /* Return it or an error if it fits */ 195 if (n > 0 && lb->buf[n - 1] == '\n') { 196 lb->buf[n - 1] = '\0'; 197 return (lb->buf); 198 } 199 if (n != lb->size - 1) { 200 if (lb->errfun) 201 (*lb->errfun)("%s: skipping incomplete last line\n", 202 lb->filename); 203 return (NULL); 204 } 205 /* Double the buffer if we need more space */ 206 lb->size *= 2; 207 if ((p = realloc(lb->buf, lb->size)) == NULL) { 208 lb->size /= 2; 209 if (lb->errfun) 210 (*lb->errfun)("linebuf (%s): realloc failed\n", 211 lb->filename); 212 return (NULL); 213 } 214 lb->buf = p; 215 } 216 } 217 218 static int 219 fdlim_get(int hard) 220 { 221 #if defined(HAVE_GETRLIMIT) && defined(RLIMIT_NOFILE) 222 struct rlimit rlfd; 223 224 if (getrlimit(RLIMIT_NOFILE, &rlfd) < 0) 225 return (-1); 226 if ((hard ? rlfd.rlim_max : rlfd.rlim_cur) == RLIM_INFINITY) 227 return 10000; 228 else 229 return hard ? rlfd.rlim_max : rlfd.rlim_cur; 230 #elif defined (HAVE_SYSCONF) 231 return sysconf (_SC_OPEN_MAX); 232 #else 233 return 10000; 234 #endif 235 } 236 237 static int 238 fdlim_set(int lim) 239 { 240 #if defined(HAVE_SETRLIMIT) && defined(RLIMIT_NOFILE) 241 struct rlimit rlfd; 242 #endif 243 244 if (lim <= 0) 245 return (-1); 246 #if defined(HAVE_SETRLIMIT) && defined(RLIMIT_NOFILE) 247 if (getrlimit(RLIMIT_NOFILE, &rlfd) < 0) 248 return (-1); 249 rlfd.rlim_cur = lim; 250 if (setrlimit(RLIMIT_NOFILE, &rlfd) < 0) 251 return (-1); 252 #elif defined (HAVE_SETDTABLESIZE) 253 setdtablesize(lim); 254 #endif 255 return (0); 256 } 257 258 /* 259 * This is an strsep function that returns a null field for adjacent 260 * separators. This is the same as the 4.4BSD strsep, but different from the 261 * one in the GNU libc. 262 */ 263 static char * 264 xstrsep(char **str, const char *delim) 265 { 266 char *s, *e; 267 268 if (!**str) 269 return (NULL); 270 271 s = *str; 272 e = s + strcspn(s, delim); 273 274 if (*e != '\0') 275 *e++ = '\0'; 276 *str = e; 277 278 return (s); 279 } 280 281 /* 282 * Get the next non-null token (like GNU strsep). Strsep() will return a 283 * null token for two adjacent separators, so we may have to loop. 284 */ 285 static char * 286 strnnsep(char **stringp, char *delim) 287 { 288 char *tok; 289 290 do { 291 tok = xstrsep(stringp, delim); 292 } while (tok && *tok == '\0'); 293 return (tok); 294 } 295 296 static Key * 297 keygrab_ssh1(con *c) 298 { 299 static Key *rsa; 300 static Buffer msg; 301 302 if (rsa == NULL) { 303 buffer_init(&msg); 304 rsa = key_new(KEY_RSA1); 305 } 306 buffer_append(&msg, c->c_data, c->c_plen); 307 buffer_consume(&msg, 8 - (c->c_plen & 7)); /* padding */ 308 if (buffer_get_char(&msg) != (int) SSH_SMSG_PUBLIC_KEY) { 309 error("%s: invalid packet type", c->c_name); 310 buffer_clear(&msg); 311 return NULL; 312 } 313 buffer_consume(&msg, 8); /* cookie */ 314 315 /* server key */ 316 (void) buffer_get_int(&msg); 317 buffer_get_bignum(&msg, rsa->rsa->e); 318 buffer_get_bignum(&msg, rsa->rsa->n); 319 320 /* host key */ 321 (void) buffer_get_int(&msg); 322 buffer_get_bignum(&msg, rsa->rsa->e); 323 buffer_get_bignum(&msg, rsa->rsa->n); 324 325 buffer_clear(&msg); 326 327 return (rsa); 328 } 329 330 static int 331 hostjump(Key *hostkey) 332 { 333 kexjmp_key = hostkey; 334 longjmp(kexjmp, 1); 335 /* NOTREACHED */ 336 return (0); 337 } 338 339 static int 340 ssh2_capable(int remote_major, int remote_minor) 341 { 342 switch (remote_major) { 343 case 1: 344 if (remote_minor == 99) 345 return 1; 346 break; 347 case 2: 348 return 1; 349 default: 350 break; 351 } 352 return 0; 353 } 354 355 static Key * 356 keygrab_ssh2(con *c) 357 { 358 int j; 359 360 packet_set_connection(c->c_fd, c->c_fd); 361 enable_compat20(); 362 myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = c->c_keytype == KT_DSA? 363 "ssh-dss": "ssh-rsa"; 364 c->c_kex = kex_setup(c->c_name, myproposal, NULL); 365 c->c_kex->kex[KEX_DH_GRP1_SHA1] = kexdh_client; 366 c->c_kex->kex[KEX_DH_GEX_SHA1] = kexgex_client; 367 c->c_kex->verify_host_key = hostjump; 368 369 if (!(j = setjmp(kexjmp))) { 370 nonfatal_fatal = 1; 371 dispatch_run(DISPATCH_BLOCK, &c->c_kex->done, c->c_kex); 372 fprintf(stderr, "Impossible! dispatch_run() returned!\n"); 373 exit(1); 374 } 375 nonfatal_fatal = 0; 376 xfree(c->c_kex); 377 c->c_kex = NULL; 378 packet_close(); 379 380 return j < 0? NULL : kexjmp_key; 381 } 382 383 static void 384 keyprint(con *c, Key *key) 385 { 386 if (!key) 387 return; 388 389 fprintf(stdout, "%s ", c->c_output_name ? c->c_output_name : c->c_name); 390 key_write(key, stdout); 391 fputs("\n", stdout); 392 } 393 394 static int 395 tcpconnect(char *host) 396 { 397 struct addrinfo hints, *ai, *aitop; 398 char strport[NI_MAXSERV]; 399 int gaierr, s = -1; 400 401 snprintf(strport, sizeof strport, "%d", ssh_port); 402 memset(&hints, 0, sizeof(hints)); 403 hints.ai_family = IPv4or6; 404 hints.ai_socktype = SOCK_STREAM; 405 if ((gaierr = getaddrinfo(host, strport, &hints, &aitop)) != 0) 406 fatal("getaddrinfo %s: %s", host, gai_strerror(gaierr)); 407 for (ai = aitop; ai; ai = ai->ai_next) { 408 s = socket(ai->ai_family, SOCK_STREAM, 0); 409 if (s < 0) { 410 error("socket: %s", strerror(errno)); 411 continue; 412 } 413 if (fcntl(s, F_SETFL, O_NONBLOCK) < 0) 414 fatal("F_SETFL: %s", strerror(errno)); 415 if (connect(s, ai->ai_addr, ai->ai_addrlen) < 0 && 416 errno != EINPROGRESS) 417 error("connect (`%s'): %s", host, strerror(errno)); 418 else 419 break; 420 close(s); 421 s = -1; 422 } 423 freeaddrinfo(aitop); 424 return s; 425 } 426 427 static int 428 conalloc(char *iname, char *oname, int keytype) 429 { 430 char *namebase, *name, *namelist; 431 int s; 432 433 namebase = namelist = xstrdup(iname); 434 435 do { 436 name = xstrsep(&namelist, ","); 437 if (!name) { 438 xfree(namebase); 439 return (-1); 440 } 441 } while ((s = tcpconnect(name)) < 0); 442 443 if (s >= maxfd) 444 fatal("conalloc: fdno %d too high", s); 445 if (fdcon[s].c_status) 446 fatal("conalloc: attempt to reuse fdno %d", s); 447 448 fdcon[s].c_fd = s; 449 fdcon[s].c_status = CS_CON; 450 fdcon[s].c_namebase = namebase; 451 fdcon[s].c_name = name; 452 fdcon[s].c_namelist = namelist; 453 fdcon[s].c_output_name = xstrdup(oname); 454 fdcon[s].c_data = (char *) &fdcon[s].c_plen; 455 fdcon[s].c_len = 4; 456 fdcon[s].c_off = 0; 457 fdcon[s].c_keytype = keytype; 458 gettimeofday(&fdcon[s].c_tv, NULL); 459 fdcon[s].c_tv.tv_sec += timeout; 460 TAILQ_INSERT_TAIL(&tq, &fdcon[s], c_link); 461 FD_SET(s, read_wait); 462 ncon++; 463 return (s); 464 } 465 466 static void 467 confree(int s) 468 { 469 if (s >= maxfd || fdcon[s].c_status == CS_UNUSED) 470 fatal("confree: attempt to free bad fdno %d", s); 471 close(s); 472 xfree(fdcon[s].c_namebase); 473 xfree(fdcon[s].c_output_name); 474 if (fdcon[s].c_status == CS_KEYS) 475 xfree(fdcon[s].c_data); 476 fdcon[s].c_status = CS_UNUSED; 477 fdcon[s].c_keytype = 0; 478 TAILQ_REMOVE(&tq, &fdcon[s], c_link); 479 FD_CLR(s, read_wait); 480 ncon--; 481 } 482 483 static void 484 contouch(int s) 485 { 486 TAILQ_REMOVE(&tq, &fdcon[s], c_link); 487 gettimeofday(&fdcon[s].c_tv, NULL); 488 fdcon[s].c_tv.tv_sec += timeout; 489 TAILQ_INSERT_TAIL(&tq, &fdcon[s], c_link); 490 } 491 492 static int 493 conrecycle(int s) 494 { 495 con *c = &fdcon[s]; 496 int ret; 497 498 ret = conalloc(c->c_namelist, c->c_output_name, c->c_keytype); 499 confree(s); 500 return (ret); 501 } 502 503 static void 504 congreet(int s) 505 { 506 int remote_major, remote_minor, n = 0; 507 char buf[256], *cp; 508 char remote_version[sizeof buf]; 509 size_t bufsiz; 510 con *c = &fdcon[s]; 511 512 bufsiz = sizeof(buf); 513 cp = buf; 514 while (bufsiz-- && (n = read(s, cp, 1)) == 1 && *cp != '\n') { 515 if (*cp == '\r') 516 *cp = '\n'; 517 cp++; 518 } 519 if (n < 0) { 520 if (errno != ECONNREFUSED) 521 error("read (%s): %s", c->c_name, strerror(errno)); 522 conrecycle(s); 523 return; 524 } 525 if (n == 0) { 526 error("%s: Connection closed by remote host", c->c_name); 527 conrecycle(s); 528 return; 529 } 530 if (*cp != '\n' && *cp != '\r') { 531 error("%s: bad greeting", c->c_name); 532 confree(s); 533 return; 534 } 535 *cp = '\0'; 536 if (sscanf(buf, "SSH-%d.%d-%[^\n]\n", 537 &remote_major, &remote_minor, remote_version) == 3) 538 compat_datafellows(remote_version); 539 else 540 datafellows = 0; 541 if (c->c_keytype != KT_RSA1) { 542 if (!ssh2_capable(remote_major, remote_minor)) { 543 debug("%s doesn't support ssh2", c->c_name); 544 confree(s); 545 return; 546 } 547 } else if (remote_major != 1) { 548 debug("%s doesn't support ssh1", c->c_name); 549 confree(s); 550 return; 551 } 552 fprintf(stderr, "# %s %s\n", c->c_name, chop(buf)); 553 n = snprintf(buf, sizeof buf, "SSH-%d.%d-OpenSSH-keyscan\r\n", 554 c->c_keytype == KT_RSA1? PROTOCOL_MAJOR_1 : PROTOCOL_MAJOR_2, 555 c->c_keytype == KT_RSA1? PROTOCOL_MINOR_1 : PROTOCOL_MINOR_2); 556 if (atomicio(write, s, buf, n) != n) { 557 error("write (%s): %s", c->c_name, strerror(errno)); 558 confree(s); 559 return; 560 } 561 if (c->c_keytype != KT_RSA1) { 562 keyprint(c, keygrab_ssh2(c)); 563 confree(s); 564 return; 565 } 566 c->c_status = CS_SIZE; 567 contouch(s); 568 } 569 570 static void 571 conread(int s) 572 { 573 con *c = &fdcon[s]; 574 int n; 575 576 if (c->c_status == CS_CON) { 577 congreet(s); 578 return; 579 } 580 n = read(s, c->c_data + c->c_off, c->c_len - c->c_off); 581 if (n < 0) { 582 error("read (%s): %s", c->c_name, strerror(errno)); 583 confree(s); 584 return; 585 } 586 c->c_off += n; 587 588 if (c->c_off == c->c_len) 589 switch (c->c_status) { 590 case CS_SIZE: 591 c->c_plen = htonl(c->c_plen); 592 c->c_len = c->c_plen + 8 - (c->c_plen & 7); 593 c->c_off = 0; 594 c->c_data = xmalloc(c->c_len); 595 c->c_status = CS_KEYS; 596 break; 597 case CS_KEYS: 598 keyprint(c, keygrab_ssh1(c)); 599 confree(s); 600 return; 601 break; 602 default: 603 fatal("conread: invalid status %d", c->c_status); 604 break; 605 } 606 607 contouch(s); 608 } 609 610 static void 611 conloop(void) 612 { 613 struct timeval seltime, now; 614 fd_set *r, *e; 615 con *c; 616 int i; 617 618 gettimeofday(&now, NULL); 619 c = TAILQ_FIRST(&tq); 620 621 if (c && (c->c_tv.tv_sec > now.tv_sec || 622 (c->c_tv.tv_sec == now.tv_sec && c->c_tv.tv_usec > now.tv_usec))) { 623 seltime = c->c_tv; 624 seltime.tv_sec -= now.tv_sec; 625 seltime.tv_usec -= now.tv_usec; 626 if (seltime.tv_usec < 0) { 627 seltime.tv_usec += 1000000; 628 seltime.tv_sec--; 629 } 630 } else 631 seltime.tv_sec = seltime.tv_usec = 0; 632 633 r = xmalloc(read_wait_size); 634 memcpy(r, read_wait, read_wait_size); 635 e = xmalloc(read_wait_size); 636 memcpy(e, read_wait, read_wait_size); 637 638 while (select(maxfd, r, NULL, e, &seltime) == -1 && 639 (errno == EAGAIN || errno == EINTR)) 640 ; 641 642 for (i = 0; i < maxfd; i++) { 643 if (FD_ISSET(i, e)) { 644 error("%s: exception!", fdcon[i].c_name); 645 confree(i); 646 } else if (FD_ISSET(i, r)) 647 conread(i); 648 } 649 xfree(r); 650 xfree(e); 651 652 c = TAILQ_FIRST(&tq); 653 while (c && (c->c_tv.tv_sec < now.tv_sec || 654 (c->c_tv.tv_sec == now.tv_sec && c->c_tv.tv_usec < now.tv_usec))) { 655 int s = c->c_fd; 656 657 c = TAILQ_NEXT(c, c_link); 658 conrecycle(s); 659 } 660 } 661 662 static void 663 do_host(char *host) 664 { 665 char *name = strnnsep(&host, " \t\n"); 666 int j; 667 668 if (name == NULL) 669 return; 670 for (j = KT_RSA1; j <= KT_RSA; j *= 2) { 671 if (get_keytypes & j) { 672 while (ncon >= MAXCON) 673 conloop(); 674 conalloc(name, *host ? host : name, j); 675 } 676 } 677 } 678 679 void 680 fatal(const char *fmt,...) 681 { 682 va_list args; 683 684 va_start(args, fmt); 685 do_log(SYSLOG_LEVEL_FATAL, fmt, args); 686 va_end(args); 687 if (nonfatal_fatal) 688 longjmp(kexjmp, -1); 689 else 690 fatal_cleanup(); 691 } 692 693 static void 694 usage(void) 695 { 696 fprintf(stderr, 697 gettext("Usage: %s [-v46] [-p port] [-T timeout] [-f file]\n" 698 "\t\t [host | addrlist namelist] [...]\n"), 699 __progname); 700 exit(1); 701 } 702 703 int 704 main(int argc, char **argv) 705 { 706 int debug_flag = 0, log_level = SYSLOG_LEVEL_INFO; 707 int opt, fopt_count = 0; 708 char *tname; 709 710 extern int optind; 711 extern char *optarg; 712 713 __progname = get_progname(argv[0]); 714 715 (void) g11n_setlocale(LC_ALL, ""); 716 717 init_rng(); 718 seed_rng(); 719 TAILQ_INIT(&tq); 720 721 if (argc <= 1) 722 usage(); 723 724 while ((opt = getopt(argc, argv, "v46p:T:t:f:")) != -1) { 725 switch (opt) { 726 case 'p': 727 ssh_port = a2port(optarg); 728 if (ssh_port == 0) { 729 fprintf(stderr, gettext("Bad port '%s'\n"), 730 optarg); 731 exit(1); 732 } 733 break; 734 case 'T': 735 timeout = convtime(optarg); 736 if (timeout == -1 || timeout == 0) { 737 fprintf(stderr, gettext("Bad timeout '%s'\n"), 738 optarg); 739 usage(); 740 } 741 break; 742 case 'v': 743 if (!debug_flag) { 744 debug_flag = 1; 745 log_level = SYSLOG_LEVEL_DEBUG1; 746 } 747 else if (log_level < SYSLOG_LEVEL_DEBUG3) 748 log_level++; 749 else 750 fatal("Too high debugging level."); 751 break; 752 case 'f': 753 if (strcmp(optarg, "-") == 0) 754 optarg = NULL; 755 argv[fopt_count++] = optarg; 756 break; 757 case 't': 758 get_keytypes = 0; 759 tname = strtok(optarg, ","); 760 while (tname) { 761 int type = key_type_from_name(tname); 762 switch (type) { 763 case KEY_RSA1: 764 get_keytypes |= KT_RSA1; 765 break; 766 case KEY_DSA: 767 get_keytypes |= KT_DSA; 768 break; 769 case KEY_RSA: 770 get_keytypes |= KT_RSA; 771 break; 772 case KEY_UNSPEC: 773 fatal("unknown key type %s", tname); 774 } 775 tname = strtok(NULL, ","); 776 } 777 break; 778 case '4': 779 IPv4or6 = AF_INET; 780 break; 781 case '6': 782 IPv4or6 = AF_INET6; 783 break; 784 case '?': 785 default: 786 usage(); 787 } 788 } 789 if (optind == argc && !fopt_count) 790 usage(); 791 792 log_init("ssh-keyscan", log_level, SYSLOG_FACILITY_USER, 1); 793 794 maxfd = fdlim_get(1); 795 if (maxfd < 0) 796 fatal("%s: fdlim_get: bad value", __progname); 797 if (maxfd > MAXMAXFD) 798 maxfd = MAXMAXFD; 799 if (MAXCON <= 0) 800 fatal("%s: not enough file descriptors", __progname); 801 if (maxfd > fdlim_get(0)) 802 fdlim_set(maxfd); 803 fdcon = xmalloc(maxfd * sizeof(con)); 804 memset(fdcon, 0, maxfd * sizeof(con)); 805 806 read_wait_size = howmany(maxfd, NFDBITS) * sizeof(fd_mask); 807 read_wait = xmalloc(read_wait_size); 808 memset(read_wait, 0, read_wait_size); 809 810 if (fopt_count) { 811 Linebuf *lb; 812 char *line; 813 int j; 814 815 for (j = 0; j < fopt_count; j++) { 816 lb = Linebuf_alloc(argv[j], error); 817 if (!lb) 818 continue; 819 while ((line = Linebuf_getline(lb)) != NULL) 820 do_host(line); 821 Linebuf_free(lb); 822 } 823 } 824 825 while (optind < argc) 826 do_host(argv[optind++]); 827 828 while (ncon > 0) 829 conloop(); 830 831 return (0); 832 } 833