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3c0ef626 1/*
2 * Copyright 1995, 1996 by David Mazieres <dm@lcs.mit.edu>.
3 *
4 * Modification and redistribution in source and binary forms is
5 * permitted provided that due credit is given to the author and the
6 * OpenBSD project by leaving this copyright notice intact.
7 */
8
9#include "includes.h"
10RCSID("$OpenBSD: ssh-keyscan.c,v 1.30 2001/10/08 19:05:05 markus Exp $");
11
12#if defined(HAVE_SYS_QUEUE_H) && !defined(HAVE_BOGUS_SYS_QUEUE_H)
13#include <sys/queue.h>
14#else
15#include "openbsd-compat/fake-queue.h"
16#endif
17#include <errno.h>
18
19#include <openssl/bn.h>
20
21#include <setjmp.h>
22#include "xmalloc.h"
23#include "ssh.h"
24#include "ssh1.h"
25#include "key.h"
26#include "kex.h"
27#include "compat.h"
28#include "myproposal.h"
29#include "packet.h"
30#include "dispatch.h"
31#include "buffer.h"
32#include "bufaux.h"
33#include "log.h"
34#include "atomicio.h"
35#include "misc.h"
36
37/* Flag indicating whether IPv4 or IPv6. This can be set on the command line.
38 Default value is AF_UNSPEC means both IPv4 and IPv6. */
39#ifdef IPV4_DEFAULT
40int IPv4or6 = AF_INET;
41#else
42int IPv4or6 = AF_UNSPEC;
43#endif
44
45int ssh_port = SSH_DEFAULT_PORT;
46
47#define KT_RSA1 1
48#define KT_DSA 2
49#define KT_RSA 4
50
51int get_keytypes = KT_RSA1; /* Get only RSA1 keys by default */
52
53#define MAXMAXFD 256
54
55/* The number of seconds after which to give up on a TCP connection */
56int timeout = 5;
57
58int maxfd;
59#define MAXCON (maxfd - 10)
60
61#ifdef HAVE___PROGNAME
62extern char *__progname;
63#else
64char *__progname;
65#endif
66fd_set *read_wait;
67size_t read_wait_size;
68int ncon;
69int nonfatal_fatal = 0;
70jmp_buf kexjmp;
71Key *kexjmp_key;
72
73/*
74 * Keep a connection structure for each file descriptor. The state
75 * associated with file descriptor n is held in fdcon[n].
76 */
77typedef struct Connection {
78 u_char c_status; /* State of connection on this file desc. */
79#define CS_UNUSED 0 /* File descriptor unused */
80#define CS_CON 1 /* Waiting to connect/read greeting */
81#define CS_SIZE 2 /* Waiting to read initial packet size */
82#define CS_KEYS 3 /* Waiting to read public key packet */
83 int c_fd; /* Quick lookup: c->c_fd == c - fdcon */
84 int c_plen; /* Packet length field for ssh packet */
85 int c_len; /* Total bytes which must be read. */
86 int c_off; /* Length of data read so far. */
87 int c_keytype; /* Only one of KT_RSA1, KT_DSA, or KT_RSA */
88 char *c_namebase; /* Address to free for c_name and c_namelist */
89 char *c_name; /* Hostname of connection for errors */
90 char *c_namelist; /* Pointer to other possible addresses */
91 char *c_output_name; /* Hostname of connection for output */
92 char *c_data; /* Data read from this fd */
93 Kex *c_kex; /* The key-exchange struct for ssh2 */
94 struct timeval c_tv; /* Time at which connection gets aborted */
95 TAILQ_ENTRY(Connection) c_link; /* List of connections in timeout order. */
96} con;
97
98TAILQ_HEAD(conlist, Connection) tq; /* Timeout Queue */
99con *fdcon;
100
101/*
102 * This is just a wrapper around fgets() to make it usable.
103 */
104
105/* Stress-test. Increase this later. */
106#define LINEBUF_SIZE 16
107
108typedef struct {
109 char *buf;
110 u_int size;
111 int lineno;
112 const char *filename;
113 FILE *stream;
114 void (*errfun) (const char *,...);
115} Linebuf;
116
117static Linebuf *
118Linebuf_alloc(const char *filename, void (*errfun) (const char *,...))
119{
120 Linebuf *lb;
121
122 if (!(lb = malloc(sizeof(*lb)))) {
123 if (errfun)
124 (*errfun) ("linebuf (%s): malloc failed\n", lb->filename);
125 return (NULL);
126 }
127 if (filename) {
128 lb->filename = filename;
129 if (!(lb->stream = fopen(filename, "r"))) {
130 xfree(lb);
131 if (errfun)
132 (*errfun) ("%s: %s\n", filename, strerror(errno));
133 return (NULL);
134 }
135 } else {
136 lb->filename = "(stdin)";
137 lb->stream = stdin;
138 }
139
140 if (!(lb->buf = malloc(lb->size = LINEBUF_SIZE))) {
141 if (errfun)
142 (*errfun) ("linebuf (%s): malloc failed\n", lb->filename);
143 xfree(lb);
144 return (NULL);
145 }
146 lb->errfun = errfun;
147 lb->lineno = 0;
148 return (lb);
149}
150
151static void
152Linebuf_free(Linebuf * lb)
153{
154 fclose(lb->stream);
155 xfree(lb->buf);
156 xfree(lb);
157}
158
159#if 0
160static void
161Linebuf_restart(Linebuf * lb)
162{
163 clearerr(lb->stream);
164 rewind(lb->stream);
165 lb->lineno = 0;
166}
167
168static int
169Linebuf_lineno(Linebuf * lb)
170{
171 return (lb->lineno);
172}
173#endif
174
175static char *
176Linebuf_getline(Linebuf * lb)
177{
178 int n = 0;
179
180 lb->lineno++;
181 for (;;) {
182 /* Read a line */
183 if (!fgets(&lb->buf[n], lb->size - n, lb->stream)) {
184 if (ferror(lb->stream) && lb->errfun)
185 (*lb->errfun) ("%s: %s\n", lb->filename,
186 strerror(errno));
187 return (NULL);
188 }
189 n = strlen(lb->buf);
190
191 /* Return it or an error if it fits */
192 if (n > 0 && lb->buf[n - 1] == '\n') {
193 lb->buf[n - 1] = '\0';
194 return (lb->buf);
195 }
196 if (n != lb->size - 1) {
197 if (lb->errfun)
198 (*lb->errfun) ("%s: skipping incomplete last line\n",
199 lb->filename);
200 return (NULL);
201 }
202 /* Double the buffer if we need more space */
203 if (!(lb->buf = realloc(lb->buf, (lb->size *= 2)))) {
204 if (lb->errfun)
205 (*lb->errfun) ("linebuf (%s): realloc failed\n",
206 lb->filename);
207 return (NULL);
208 }
209 }
210}
211
212static int
213fdlim_get(int hard)
214{
215#if defined(HAVE_GETRLIMIT) && defined(RLIMIT_NOFILE)
216 struct rlimit rlfd;
217
218 if (getrlimit(RLIMIT_NOFILE, &rlfd) < 0)
219 return (-1);
220 if ((hard ? rlfd.rlim_max : rlfd.rlim_cur) == RLIM_INFINITY)
221 return 10000;
222 else
223 return hard ? rlfd.rlim_max : rlfd.rlim_cur;
224#elif defined (HAVE_SYSCONF)
225 return sysconf (_SC_OPEN_MAX);
226#else
227 return 10000;
228#endif
229}
230
231static int
232fdlim_set(int lim)
233{
234#if defined(HAVE_SETRLIMIT) && defined(RLIMIT_NOFILE)
235 struct rlimit rlfd;
236#endif
237 if (lim <= 0)
238 return (-1);
239#if defined(HAVE_SETRLIMIT) && defined(RLIMIT_NOFILE)
240 if (getrlimit(RLIMIT_NOFILE, &rlfd) < 0)
241 return (-1);
242 rlfd.rlim_cur = lim;
243 if (setrlimit(RLIMIT_NOFILE, &rlfd) < 0)
244 return (-1);
245#elif defined (HAVE_SETDTABLESIZE)
246 setdtablesize(lim);
247#endif
248 return (0);
249}
250
251/*
252 * This is an strsep function that returns a null field for adjacent
253 * separators. This is the same as the 4.4BSD strsep, but different from the
254 * one in the GNU libc.
255 */
256static char *
257xstrsep(char **str, const char *delim)
258{
259 char *s, *e;
260
261 if (!**str)
262 return (NULL);
263
264 s = *str;
265 e = s + strcspn(s, delim);
266
267 if (*e != '\0')
268 *e++ = '\0';
269 *str = e;
270
271 return (s);
272}
273
274/*
275 * Get the next non-null token (like GNU strsep). Strsep() will return a
276 * null token for two adjacent separators, so we may have to loop.
277 */
278static char *
279strnnsep(char **stringp, char *delim)
280{
281 char *tok;
282
283 do {
284 tok = xstrsep(stringp, delim);
285 } while (tok && *tok == '\0');
286 return (tok);
287}
288
289static Key *
290keygrab_ssh1(con *c)
291{
292 static Key *rsa;
293 static Buffer msg;
294
295 if (rsa == NULL) {
296 buffer_init(&msg);
297 rsa = key_new(KEY_RSA1);
298 }
299 buffer_append(&msg, c->c_data, c->c_plen);
300 buffer_consume(&msg, 8 - (c->c_plen & 7)); /* padding */
301 if (buffer_get_char(&msg) != (int) SSH_SMSG_PUBLIC_KEY) {
302 error("%s: invalid packet type", c->c_name);
303 buffer_clear(&msg);
304 return NULL;
305 }
306 buffer_consume(&msg, 8); /* cookie */
307
308 /* server key */
309 (void) buffer_get_int(&msg);
310 buffer_get_bignum(&msg, rsa->rsa->e);
311 buffer_get_bignum(&msg, rsa->rsa->n);
312
313 /* host key */
314 (void) buffer_get_int(&msg);
315 buffer_get_bignum(&msg, rsa->rsa->e);
316 buffer_get_bignum(&msg, rsa->rsa->n);
317
318 buffer_clear(&msg);
319
320 return (rsa);
321}
322
323static int
324hostjump(Key *hostkey)
325{
326 kexjmp_key = hostkey;
327 longjmp(kexjmp, 1);
328}
329
330static int
331ssh2_capable(int remote_major, int remote_minor)
332{
333 switch (remote_major) {
334 case 1:
335 if (remote_minor == 99)
336 return 1;
337 break;
338 case 2:
339 return 1;
340 default:
341 break;
342 }
343 return 0;
344}
345
346static Key *
347keygrab_ssh2(con *c)
348{
349 int j;
350
351 packet_set_connection(c->c_fd, c->c_fd);
352 enable_compat20();
353 myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = c->c_keytype == KT_DSA?
354 "ssh-dss": "ssh-rsa";
355 c->c_kex = kex_setup(myproposal);
356 c->c_kex->verify_host_key = hostjump;
357
358 if (!(j = setjmp(kexjmp))) {
359 nonfatal_fatal = 1;
360 dispatch_run(DISPATCH_BLOCK, &c->c_kex->done, c->c_kex);
361 fprintf(stderr, "Impossible! dispatch_run() returned!\n");
362 exit(1);
363 }
364 nonfatal_fatal = 0;
365 xfree(c->c_kex);
366 c->c_kex = NULL;
367 packet_close();
368
369 return j < 0? NULL : kexjmp_key;
370}
371
372static void
373keyprint(con *c, Key *key)
374{
375 if (!key)
376 return;
377
378 fprintf(stdout, "%s ", c->c_output_name ? c->c_output_name : c->c_name);
379 key_write(key, stdout);
380 fputs("\n", stdout);
381}
382
383static int
384tcpconnect(char *host)
385{
386 struct addrinfo hints, *ai, *aitop;
387 char strport[NI_MAXSERV];
388 int gaierr, s = -1;
389
390 snprintf(strport, sizeof strport, "%d", ssh_port);
391 memset(&hints, 0, sizeof(hints));
392 hints.ai_family = IPv4or6;
393 hints.ai_socktype = SOCK_STREAM;
394 if ((gaierr = getaddrinfo(host, strport, &hints, &aitop)) != 0)
395 fatal("getaddrinfo %s: %s", host, gai_strerror(gaierr));
396 for (ai = aitop; ai; ai = ai->ai_next) {
397 s = socket(ai->ai_family, SOCK_STREAM, 0);
398 if (s < 0) {
399 error("socket: %s", strerror(errno));
400 continue;
401 }
402 if (fcntl(s, F_SETFL, O_NONBLOCK) < 0)
403 fatal("F_SETFL: %s", strerror(errno));
404 if (connect(s, ai->ai_addr, ai->ai_addrlen) < 0 &&
405 errno != EINPROGRESS)
406 error("connect (`%s'): %s", host, strerror(errno));
407 else
408 break;
409 close(s);
410 s = -1;
411 }
412 freeaddrinfo(aitop);
413 return s;
414}
415
416static int
417conalloc(char *iname, char *oname, int keytype)
418{
419 int s;
420 char *namebase, *name, *namelist;
421
422 namebase = namelist = xstrdup(iname);
423
424 do {
425 name = xstrsep(&namelist, ",");
426 if (!name) {
427 xfree(namebase);
428 return (-1);
429 }
430 } while ((s = tcpconnect(name)) < 0);
431
432 if (s >= maxfd)
433 fatal("conalloc: fdno %d too high", s);
434 if (fdcon[s].c_status)
435 fatal("conalloc: attempt to reuse fdno %d", s);
436
437 fdcon[s].c_fd = s;
438 fdcon[s].c_status = CS_CON;
439 fdcon[s].c_namebase = namebase;
440 fdcon[s].c_name = name;
441 fdcon[s].c_namelist = namelist;
442 fdcon[s].c_output_name = xstrdup(oname);
443 fdcon[s].c_data = (char *) &fdcon[s].c_plen;
444 fdcon[s].c_len = 4;
445 fdcon[s].c_off = 0;
446 fdcon[s].c_keytype = keytype;
447 gettimeofday(&fdcon[s].c_tv, NULL);
448 fdcon[s].c_tv.tv_sec += timeout;
449 TAILQ_INSERT_TAIL(&tq, &fdcon[s], c_link);
450 FD_SET(s, read_wait);
451 ncon++;
452 return (s);
453}
454
455static void
456confree(int s)
457{
458 if (s >= maxfd || fdcon[s].c_status == CS_UNUSED)
459 fatal("confree: attempt to free bad fdno %d", s);
460 close(s);
461 xfree(fdcon[s].c_namebase);
462 xfree(fdcon[s].c_output_name);
463 if (fdcon[s].c_status == CS_KEYS)
464 xfree(fdcon[s].c_data);
465 fdcon[s].c_status = CS_UNUSED;
466 fdcon[s].c_keytype = 0;
467 TAILQ_REMOVE(&tq, &fdcon[s], c_link);
468 FD_CLR(s, read_wait);
469 ncon--;
470}
471
472static void
473contouch(int s)
474{
475 TAILQ_REMOVE(&tq, &fdcon[s], c_link);
476 gettimeofday(&fdcon[s].c_tv, NULL);
477 fdcon[s].c_tv.tv_sec += timeout;
478 TAILQ_INSERT_TAIL(&tq, &fdcon[s], c_link);
479}
480
481static int
482conrecycle(int s)
483{
484 int ret;
485 con *c = &fdcon[s];
486
487 ret = conalloc(c->c_namelist, c->c_output_name, c->c_keytype);
488 confree(s);
489 return (ret);
490}
491
492static void
493congreet(int s)
494{
495 char buf[256], *cp;
496 size_t bufsiz;
497 int n = 0;
498 con *c = &fdcon[s];
499
500 bufsiz = sizeof(buf);
501 cp = buf;
502 while (bufsiz-- && (n = read(s, cp, 1)) == 1 && *cp != '\n') {
503 if (*cp == '\r')
504 *cp = '\n';
505 cp++;
506 }
507 if (n < 0) {
508 if (errno != ECONNREFUSED)
509 error("read (%s): %s", c->c_name, strerror(errno));
510 conrecycle(s);
511 return;
512 }
513 if (*cp != '\n' && *cp != '\r') {
514 error("%s: bad greeting", c->c_name);
515 confree(s);
516 return;
517 }
518 *cp = '\0';
519 if (c->c_keytype != KT_RSA1) {
520 int remote_major, remote_minor;
521 char remote_version[sizeof buf];
522
523 if (sscanf(buf, "SSH-%d.%d-%[^\n]\n",
524 &remote_major, &remote_minor, remote_version) == 3)
525 compat_datafellows(remote_version);
526 else
527 datafellows = 0;
528 if (!ssh2_capable(remote_major, remote_minor)) {
529 debug("%s doesn't support ssh2", c->c_name);
530 confree(s);
531 return;
532 }
533 }
534 fprintf(stderr, "# %s %s\n", c->c_name, chop(buf));
535 n = snprintf(buf, sizeof buf, "SSH-%d.%d-OpenSSH-keyscan\r\n",
536 c->c_keytype == KT_RSA1? PROTOCOL_MAJOR_1 : PROTOCOL_MAJOR_2,
537 c->c_keytype == KT_RSA1? PROTOCOL_MINOR_1 : PROTOCOL_MINOR_2);
538 if (atomicio(write, s, buf, n) != n) {
539 error("write (%s): %s", c->c_name, strerror(errno));
540 confree(s);
541 return;
542 }
543 if (c->c_keytype != KT_RSA1) {
544 keyprint(c, keygrab_ssh2(c));
545 confree(s);
546 return;
547 }
548 c->c_status = CS_SIZE;
549 contouch(s);
550}
551
552static void
553conread(int s)
554{
555 int n;
556 con *c = &fdcon[s];
557
558 if (c->c_status == CS_CON) {
559 congreet(s);
560 return;
561 }
562 n = read(s, c->c_data + c->c_off, c->c_len - c->c_off);
563 if (n < 0) {
564 error("read (%s): %s", c->c_name, strerror(errno));
565 confree(s);
566 return;
567 }
568 c->c_off += n;
569
570 if (c->c_off == c->c_len)
571 switch (c->c_status) {
572 case CS_SIZE:
573 c->c_plen = htonl(c->c_plen);
574 c->c_len = c->c_plen + 8 - (c->c_plen & 7);
575 c->c_off = 0;
576 c->c_data = xmalloc(c->c_len);
577 c->c_status = CS_KEYS;
578 break;
579 case CS_KEYS:
580 keyprint(c, keygrab_ssh1(c));
581 confree(s);
582 return;
583 break;
584 default:
585 fatal("conread: invalid status %d", c->c_status);
586 break;
587 }
588
589 contouch(s);
590}
591
592static void
593conloop(void)
594{
595 fd_set *r, *e;
596 struct timeval seltime, now;
597 int i;
598 con *c;
599
600 gettimeofday(&now, NULL);
601 c = tq.tqh_first;
602
603 if (c && (c->c_tv.tv_sec > now.tv_sec ||
604 (c->c_tv.tv_sec == now.tv_sec && c->c_tv.tv_usec > now.tv_usec))) {
605 seltime = c->c_tv;
606 seltime.tv_sec -= now.tv_sec;
607 seltime.tv_usec -= now.tv_usec;
608 if (seltime.tv_usec < 0) {
609 seltime.tv_usec += 1000000;
610 seltime.tv_sec--;
611 }
612 } else
613 seltime.tv_sec = seltime.tv_usec = 0;
614
615 r = xmalloc(read_wait_size);
616 memcpy(r, read_wait, read_wait_size);
617 e = xmalloc(read_wait_size);
618 memcpy(e, read_wait, read_wait_size);
619
620 while (select(maxfd, r, NULL, e, &seltime) == -1 &&
621 (errno == EAGAIN || errno == EINTR))
622 ;
623
624 for (i = 0; i < maxfd; i++) {
625 if (FD_ISSET(i, e)) {
626 error("%s: exception!", fdcon[i].c_name);
627 confree(i);
628 } else if (FD_ISSET(i, r))
629 conread(i);
630 }
631 xfree(r);
632 xfree(e);
633
634 c = tq.tqh_first;
635 while (c && (c->c_tv.tv_sec < now.tv_sec ||
636 (c->c_tv.tv_sec == now.tv_sec && c->c_tv.tv_usec < now.tv_usec))) {
637 int s = c->c_fd;
638
639 c = c->c_link.tqe_next;
640 conrecycle(s);
641 }
642}
643
644static void
645do_host(char *host)
646{
647 char *name = strnnsep(&host, " \t\n");
648 int j;
649
650 for (j = KT_RSA1; j <= KT_RSA; j *= 2) {
651 if (get_keytypes & j) {
652 while (ncon >= MAXCON)
653 conloop();
654 conalloc(name, *host ? host : name, j);
655 }
656 }
657}
658
659static void
660fatal_callback(void *arg)
661{
662 if (nonfatal_fatal)
663 longjmp(kexjmp, -1);
664}
665
666static void
667usage(void)
668{
669 fprintf(stderr, "Usage: %s [options] host ...\n",
670 __progname);
671 fprintf(stderr, "Options:\n");
672 fprintf(stderr, " -f file Read hosts or addresses from file.\n");
673 fprintf(stderr, " -p port Connect to the specified port.\n");
674 fprintf(stderr, " -t keytype Specify the host key type.\n");
675 fprintf(stderr, " -T timeout Set connection timeout.\n");
676 fprintf(stderr, " -v Verbose; display verbose debugging messages.\n");
677 fprintf(stderr, " -4 Use IPv4 only.\n");
678 fprintf(stderr, " -6 Use IPv6 only.\n");
679 exit(1);
680}
681
682int
683main(int argc, char **argv)
684{
685 int debug_flag = 0, log_level = SYSLOG_LEVEL_INFO;
686 int opt, fopt_count = 0;
687 char *tname;
688
689 extern int optind;
690 extern char *optarg;
691
692 __progname = get_progname(argv[0]);
693 init_rng();
694 seed_rng();
695 TAILQ_INIT(&tq);
696
697 if (argc <= 1)
698 usage();
699
700 while ((opt = getopt(argc, argv, "v46p:T:t:f:")) != -1) {
701 switch (opt) {
702 case 'p':
703 ssh_port = a2port(optarg);
704 if (ssh_port == 0) {
705 fprintf(stderr, "Bad port '%s'\n", optarg);
706 exit(1);
707 }
708 break;
709 case 'T':
710 timeout = atoi(optarg);
711 if (timeout <= 0)
712 usage();
713 break;
714 case 'v':
715 if (!debug_flag) {
716 debug_flag = 1;
717 log_level = SYSLOG_LEVEL_DEBUG1;
718 }
719 else if (log_level < SYSLOG_LEVEL_DEBUG3)
720 log_level++;
721 else
722 fatal("Too high debugging level.");
723 break;
724 case 'f':
725 if (strcmp(optarg, "-") == 0)
726 optarg = NULL;
727 argv[fopt_count++] = optarg;
728 break;
729 case 't':
730 get_keytypes = 0;
731 tname = strtok(optarg, ",");
732 while (tname) {
733 int type = key_type_from_name(tname);
734 switch (type) {
735 case KEY_RSA1:
736 get_keytypes |= KT_RSA1;
737 break;
738 case KEY_DSA:
739 get_keytypes |= KT_DSA;
740 break;
741 case KEY_RSA:
742 get_keytypes |= KT_RSA;
743 break;
744 case KEY_UNSPEC:
745 fatal("unknown key type %s\n", tname);
746 }
747 tname = strtok(NULL, ",");
748 }
749 break;
750 case '4':
751 IPv4or6 = AF_INET;
752 break;
753 case '6':
754 IPv4or6 = AF_INET6;
755 break;
756 case '?':
757 default:
758 usage();
759 }
760 }
761 if (optind == argc && !fopt_count)
762 usage();
763
764 log_init("ssh-keyscan", log_level, SYSLOG_FACILITY_USER, 1);
765 fatal_add_cleanup(fatal_callback, NULL);
766
767 maxfd = fdlim_get(1);
768 if (maxfd < 0)
769 fatal("%s: fdlim_get: bad value", __progname);
770 if (maxfd > MAXMAXFD)
771 maxfd = MAXMAXFD;
772 if (MAXCON <= 0)
773 fatal("%s: not enough file descriptors", __progname);
774 if (maxfd > fdlim_get(0))
775 fdlim_set(maxfd);
776 fdcon = xmalloc(maxfd * sizeof(con));
777 memset(fdcon, 0, maxfd * sizeof(con));
778
779 read_wait_size = howmany(maxfd, NFDBITS) * sizeof(fd_mask);
780 read_wait = xmalloc(read_wait_size);
781 memset(read_wait, 0, read_wait_size);
782
783 if (fopt_count) {
784 Linebuf *lb;
785 char *line;
786 int j;
787
788 for (j = 0; j < fopt_count; j++) {
789 lb = Linebuf_alloc(argv[j], error);
790 if (!lb)
791 continue;
792 while ((line = Linebuf_getline(lb)) != NULL)
793 do_host(line);
794 Linebuf_free(lb);
795 }
796 }
797
798 while (optind < argc)
799 do_host(argv[optind++]);
800
801 while (ncon > 0)
802 conloop();
803
804 return (0);
805}
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