nat.c revision 187770
1/*
2 * Copyright (c) 2002-2003 Luigi Rizzo
3 * Copyright (c) 1996 Alex Nash, Paul Traina, Poul-Henning Kamp
4 * Copyright (c) 1994 Ugen J.S.Antsilevich
5 *
6 * Idea and grammar partially left from:
7 * Copyright (c) 1993 Daniel Boulet
8 *
9 * Redistribution and use in source forms, with and without modification,
10 * are permitted provided that this entire comment appears intact.
11 *
12 * Redistribution in binary form may occur without any restrictions.
13 * Obviously, it would be nice if you gave credit where credit is due
14 * but requiring it would be too onerous.
15 *
16 * This software is provided ``AS IS'' without any warranties of any kind.
17 *
18 * NEW command line interface for IP firewall facility
19 *
20 * $FreeBSD: head/sbin/ipfw/nat.c 187770 2009-01-27 12:01:30Z luigi $
21 *
22 * In-kernel nat support
23 */
24
25#include <sys/types.h>
26#include <sys/socket.h>
27#include <sys/sockio.h>
28#include <sys/sysctl.h>
29
30#include "ipfw2.h"
31
32#include <ctype.h>
33#include <err.h>
34#include <netdb.h>
35#include <stdio.h>
36#include <stdlib.h>
37#include <string.h>
38#include <sysexits.h>
39
40#define IPFW_INTERNAL	/* Access to protected structures in ip_fw.h. */
41
42#include <net/if.h>
43#include <net/if_dl.h>
44#include <net/route.h> /* def. of struct route */
45#include <netinet/in.h>
46#include <netinet/in_systm.h>
47#include <netinet/ip_fw.h>
48#include <arpa/inet.h>
49#include <alias.h>
50
51static struct _s_x nat_params[] = {
52	{ "ip",	                TOK_IP },
53	{ "if",	                TOK_IF },
54 	{ "log",                TOK_ALOG },
55 	{ "deny_in",	        TOK_DENY_INC },
56 	{ "same_ports",	        TOK_SAME_PORTS },
57 	{ "unreg_only",	        TOK_UNREG_ONLY },
58 	{ "reset",	        TOK_RESET_ADDR },
59 	{ "reverse",	        TOK_ALIAS_REV },
60 	{ "proxy_only",	        TOK_PROXY_ONLY },
61	{ "redirect_addr",	TOK_REDIR_ADDR },
62	{ "redirect_port",	TOK_REDIR_PORT },
63	{ "redirect_proto",	TOK_REDIR_PROTO },
64 	{ NULL, 0 }	/* terminator */
65};
66
67
68/*
69 * Search for interface with name "ifn", and fill n accordingly:
70 *
71 * n->ip        ip address of interface "ifn"
72 * n->if_name   copy of interface name "ifn"
73 */
74static void
75set_addr_dynamic(const char *ifn, struct cfg_nat *n)
76{
77	size_t needed;
78	int mib[6];
79	char *buf, *lim, *next;
80	struct if_msghdr *ifm;
81	struct ifa_msghdr *ifam;
82	struct sockaddr_dl *sdl;
83	struct sockaddr_in *sin;
84	int ifIndex, ifMTU;
85
86	mib[0] = CTL_NET;
87	mib[1] = PF_ROUTE;
88	mib[2] = 0;
89	mib[3] = AF_INET;
90	mib[4] = NET_RT_IFLIST;
91	mib[5] = 0;
92/*
93 * Get interface data.
94 */
95	if (sysctl(mib, 6, NULL, &needed, NULL, 0) == -1)
96		err(1, "iflist-sysctl-estimate");
97	buf = safe_calloc(1, needed);
98	if (sysctl(mib, 6, buf, &needed, NULL, 0) == -1)
99		err(1, "iflist-sysctl-get");
100	lim = buf + needed;
101/*
102 * Loop through interfaces until one with
103 * given name is found. This is done to
104 * find correct interface index for routing
105 * message processing.
106 */
107	ifIndex	= 0;
108	next = buf;
109	while (next < lim) {
110		ifm = (struct if_msghdr *)next;
111		next += ifm->ifm_msglen;
112		if (ifm->ifm_version != RTM_VERSION) {
113			if (co.verbose)
114				warnx("routing message version %d "
115				    "not understood", ifm->ifm_version);
116			continue;
117		}
118		if (ifm->ifm_type == RTM_IFINFO) {
119			sdl = (struct sockaddr_dl *)(ifm + 1);
120			if (strlen(ifn) == sdl->sdl_nlen &&
121			    strncmp(ifn, sdl->sdl_data, sdl->sdl_nlen) == 0) {
122				ifIndex = ifm->ifm_index;
123				ifMTU = ifm->ifm_data.ifi_mtu;
124				break;
125			}
126		}
127	}
128	if (!ifIndex)
129		errx(1, "unknown interface name %s", ifn);
130/*
131 * Get interface address.
132 */
133	sin = NULL;
134	while (next < lim) {
135		ifam = (struct ifa_msghdr *)next;
136		next += ifam->ifam_msglen;
137		if (ifam->ifam_version != RTM_VERSION) {
138			if (co.verbose)
139				warnx("routing message version %d "
140				    "not understood", ifam->ifam_version);
141			continue;
142		}
143		if (ifam->ifam_type != RTM_NEWADDR)
144			break;
145		if (ifam->ifam_addrs & RTA_IFA) {
146			int i;
147			char *cp = (char *)(ifam + 1);
148
149			for (i = 1; i < RTA_IFA; i <<= 1) {
150				if (ifam->ifam_addrs & i)
151					cp += SA_SIZE((struct sockaddr *)cp);
152			}
153			if (((struct sockaddr *)cp)->sa_family == AF_INET) {
154				sin = (struct sockaddr_in *)cp;
155				break;
156			}
157		}
158	}
159	if (sin == NULL)
160		errx(1, "%s: cannot get interface address", ifn);
161
162	n->ip = sin->sin_addr;
163	strncpy(n->if_name, ifn, IF_NAMESIZE);
164
165	free(buf);
166}
167
168/*
169 * XXX - The following functions, macros and definitions come from natd.c:
170 * it would be better to move them outside natd.c, in a file
171 * (redirect_support.[ch]?) shared by ipfw and natd, but for now i can live
172 * with it.
173 */
174
175/*
176 * Definition of a port range, and macros to deal with values.
177 * FORMAT:  HI 16-bits == first port in range, 0 == all ports.
178 *          LO 16-bits == number of ports in range
179 * NOTES:   - Port values are not stored in network byte order.
180 */
181
182#define port_range u_long
183
184#define GETLOPORT(x)     ((x) >> 0x10)
185#define GETNUMPORTS(x)   ((x) & 0x0000ffff)
186#define GETHIPORT(x)     (GETLOPORT((x)) + GETNUMPORTS((x)))
187
188/* Set y to be the low-port value in port_range variable x. */
189#define SETLOPORT(x,y)   ((x) = ((x) & 0x0000ffff) | ((y) << 0x10))
190
191/* Set y to be the number of ports in port_range variable x. */
192#define SETNUMPORTS(x,y) ((x) = ((x) & 0xffff0000) | (y))
193
194static void
195StrToAddr (const char* str, struct in_addr* addr)
196{
197	struct hostent* hp;
198
199	if (inet_aton (str, addr))
200		return;
201
202	hp = gethostbyname (str);
203	if (!hp)
204		errx (1, "unknown host %s", str);
205
206	memcpy (addr, hp->h_addr, sizeof (struct in_addr));
207}
208
209static int
210StrToPortRange (const char* str, const char* proto, port_range *portRange)
211{
212	char*           sep;
213	struct servent*	sp;
214	char*		end;
215	u_short         loPort;
216	u_short         hiPort;
217
218	/* First see if this is a service, return corresponding port if so. */
219	sp = getservbyname (str,proto);
220	if (sp) {
221	        SETLOPORT(*portRange, ntohs(sp->s_port));
222		SETNUMPORTS(*portRange, 1);
223		return 0;
224	}
225
226	/* Not a service, see if it's a single port or port range. */
227	sep = strchr (str, '-');
228	if (sep == NULL) {
229	        SETLOPORT(*portRange, strtol(str, &end, 10));
230		if (end != str) {
231		        /* Single port. */
232		        SETNUMPORTS(*portRange, 1);
233			return 0;
234		}
235
236		/* Error in port range field. */
237		errx (EX_DATAERR, "%s/%s: unknown service", str, proto);
238	}
239
240	/* Port range, get the values and sanity check. */
241	sscanf (str, "%hu-%hu", &loPort, &hiPort);
242	SETLOPORT(*portRange, loPort);
243	SETNUMPORTS(*portRange, 0);	/* Error by default */
244	if (loPort <= hiPort)
245	        SETNUMPORTS(*portRange, hiPort - loPort + 1);
246
247	if (GETNUMPORTS(*portRange) == 0)
248	        errx (EX_DATAERR, "invalid port range %s", str);
249
250	return 0;
251}
252
253static int
254StrToProto (const char* str)
255{
256	if (!strcmp (str, "tcp"))
257		return IPPROTO_TCP;
258
259	if (!strcmp (str, "udp"))
260		return IPPROTO_UDP;
261
262	errx (EX_DATAERR, "unknown protocol %s. Expected tcp or udp", str);
263}
264
265static int
266StrToAddrAndPortRange (const char* str, struct in_addr* addr, char* proto,
267		       port_range *portRange)
268{
269	char*	ptr;
270
271	ptr = strchr (str, ':');
272	if (!ptr)
273		errx (EX_DATAERR, "%s is missing port number", str);
274
275	*ptr = '\0';
276	++ptr;
277
278	StrToAddr (str, addr);
279	return StrToPortRange (ptr, proto, portRange);
280}
281
282/* End of stuff taken from natd.c. */
283
284#define INC_ARGCV() do {        \
285	(*_av)++;               \
286	(*_ac)--;               \
287	av = *_av;              \
288	ac = *_ac;              \
289} while(0)
290
291/*
292 * The next 3 functions add support for the addr, port and proto redirect and
293 * their logic is loosely based on SetupAddressRedirect(), SetupPortRedirect()
294 * and SetupProtoRedirect() from natd.c.
295 *
296 * Every setup_* function fills at least one redirect entry
297 * (struct cfg_redir) and zero or more server pool entry (struct cfg_spool)
298 * in buf.
299 *
300 * The format of data in buf is:
301 *
302 *
303 *     cfg_nat    cfg_redir    cfg_spool    ......  cfg_spool
304 *
305 *    -------------------------------------        ------------
306 *   |          | .....X ... |          |         |           |  .....
307 *    ------------------------------------- ...... ------------
308 *                     ^
309 *                spool_cnt       n=0       ......   n=(X-1)
310 *
311 * len points to the amount of available space in buf
312 * space counts the memory consumed by every function
313 *
314 * XXX - Every function get all the argv params so it
315 * has to check, in optional parameters, that the next
316 * args is a valid option for the redir entry and not
317 * another token. Only redir_port and redir_proto are
318 * affected by this.
319 */
320
321static int
322setup_redir_addr(char *spool_buf, int len,
323		 int *_ac, char ***_av)
324{
325	char **av, *sep; /* Token separator. */
326	/* Temporary buffer used to hold server pool ip's. */
327	char tmp_spool_buf[NAT_BUF_LEN];
328	int ac, space, lsnat;
329	struct cfg_redir *r;
330	struct cfg_spool *tmp;
331
332	av = *_av;
333	ac = *_ac;
334	space = 0;
335	lsnat = 0;
336	if (len >= SOF_REDIR) {
337		r = (struct cfg_redir *)spool_buf;
338		/* Skip cfg_redir at beginning of buf. */
339		spool_buf = &spool_buf[SOF_REDIR];
340		space = SOF_REDIR;
341		len -= SOF_REDIR;
342	} else
343		goto nospace;
344	r->mode = REDIR_ADDR;
345	/* Extract local address. */
346	if (ac == 0)
347		errx(EX_DATAERR, "redirect_addr: missing local address");
348	sep = strchr(*av, ',');
349	if (sep) {		/* LSNAT redirection syntax. */
350		r->laddr.s_addr = INADDR_NONE;
351		/* Preserve av, copy spool servers to tmp_spool_buf. */
352		strncpy(tmp_spool_buf, *av, strlen(*av)+1);
353		lsnat = 1;
354	} else
355		StrToAddr(*av, &r->laddr);
356	INC_ARGCV();
357
358	/* Extract public address. */
359	if (ac == 0)
360		errx(EX_DATAERR, "redirect_addr: missing public address");
361	StrToAddr(*av, &r->paddr);
362	INC_ARGCV();
363
364	/* Setup LSNAT server pool. */
365	if (sep) {
366		sep = strtok(tmp_spool_buf, ",");
367		while (sep != NULL) {
368			tmp = (struct cfg_spool *)spool_buf;
369			if (len < SOF_SPOOL)
370				goto nospace;
371			len -= SOF_SPOOL;
372			space += SOF_SPOOL;
373			StrToAddr(sep, &tmp->addr);
374			tmp->port = ~0;
375			r->spool_cnt++;
376			/* Point to the next possible cfg_spool. */
377			spool_buf = &spool_buf[SOF_SPOOL];
378			sep = strtok(NULL, ",");
379		}
380	}
381	return(space);
382nospace:
383	errx(EX_DATAERR, "redirect_addr: buf is too small\n");
384}
385
386static int
387setup_redir_port(char *spool_buf, int len,
388		 int *_ac, char ***_av)
389{
390	char **av, *sep, *protoName;
391	char tmp_spool_buf[NAT_BUF_LEN];
392	int ac, space, lsnat;
393	struct cfg_redir *r;
394	struct cfg_spool *tmp;
395	u_short numLocalPorts;
396	port_range portRange;
397
398	av = *_av;
399	ac = *_ac;
400	space = 0;
401	lsnat = 0;
402	numLocalPorts = 0;
403
404	if (len >= SOF_REDIR) {
405		r = (struct cfg_redir *)spool_buf;
406		/* Skip cfg_redir at beginning of buf. */
407		spool_buf = &spool_buf[SOF_REDIR];
408		space = SOF_REDIR;
409		len -= SOF_REDIR;
410	} else
411		goto nospace;
412	r->mode = REDIR_PORT;
413	/*
414	 * Extract protocol.
415	 */
416	if (ac == 0)
417		errx (EX_DATAERR, "redirect_port: missing protocol");
418	r->proto = StrToProto(*av);
419	protoName = *av;
420	INC_ARGCV();
421
422	/*
423	 * Extract local address.
424	 */
425	if (ac == 0)
426		errx (EX_DATAERR, "redirect_port: missing local address");
427
428	sep = strchr(*av, ',');
429	/* LSNAT redirection syntax. */
430	if (sep) {
431		r->laddr.s_addr = INADDR_NONE;
432		r->lport = ~0;
433		numLocalPorts = 1;
434		/* Preserve av, copy spool servers to tmp_spool_buf. */
435		strncpy(tmp_spool_buf, *av, strlen(*av)+1);
436		lsnat = 1;
437	} else {
438		if (StrToAddrAndPortRange (*av, &r->laddr, protoName,
439		    &portRange) != 0)
440			errx(EX_DATAERR, "redirect_port:"
441			    "invalid local port range");
442
443		r->lport = GETLOPORT(portRange);
444		numLocalPorts = GETNUMPORTS(portRange);
445	}
446	INC_ARGCV();
447
448	/*
449	 * Extract public port and optionally address.
450	 */
451	if (ac == 0)
452		errx (EX_DATAERR, "redirect_port: missing public port");
453
454	sep = strchr (*av, ':');
455	if (sep) {
456	        if (StrToAddrAndPortRange (*av, &r->paddr, protoName,
457		    &portRange) != 0)
458		        errx(EX_DATAERR, "redirect_port:"
459			    "invalid public port range");
460	} else {
461		r->paddr.s_addr = INADDR_ANY;
462		if (StrToPortRange (*av, protoName, &portRange) != 0)
463		        errx(EX_DATAERR, "redirect_port:"
464			    "invalid public port range");
465	}
466
467	r->pport = GETLOPORT(portRange);
468	r->pport_cnt = GETNUMPORTS(portRange);
469	INC_ARGCV();
470
471	/*
472	 * Extract remote address and optionally port.
473	 */
474	/*
475	 * NB: isalpha(**av) => we've to check that next parameter is really an
476	 * option for this redirect entry, else stop here processing arg[cv].
477	 */
478	if (ac != 0 && !isalpha(**av)) {
479		sep = strchr (*av, ':');
480		if (sep) {
481		        if (StrToAddrAndPortRange (*av, &r->raddr, protoName,
482			    &portRange) != 0)
483				errx(EX_DATAERR, "redirect_port:"
484				    "invalid remote port range");
485		} else {
486		        SETLOPORT(portRange, 0);
487			SETNUMPORTS(portRange, 1);
488			StrToAddr (*av, &r->raddr);
489		}
490		INC_ARGCV();
491	} else {
492		SETLOPORT(portRange, 0);
493		SETNUMPORTS(portRange, 1);
494		r->raddr.s_addr = INADDR_ANY;
495	}
496	r->rport = GETLOPORT(portRange);
497	r->rport_cnt = GETNUMPORTS(portRange);
498
499	/*
500	 * Make sure port ranges match up, then add the redirect ports.
501	 */
502	if (numLocalPorts != r->pport_cnt)
503	        errx(EX_DATAERR, "redirect_port:"
504		    "port ranges must be equal in size");
505
506	/* Remote port range is allowed to be '0' which means all ports. */
507	if (r->rport_cnt != numLocalPorts &&
508	    (r->rport_cnt != 1 || r->rport != 0))
509	        errx(EX_DATAERR, "redirect_port: remote port must"
510		    "be 0 or equal to local port range in size");
511
512	/*
513	 * Setup LSNAT server pool.
514	 */
515	if (lsnat) {
516		sep = strtok(tmp_spool_buf, ",");
517		while (sep != NULL) {
518			tmp = (struct cfg_spool *)spool_buf;
519			if (len < SOF_SPOOL)
520				goto nospace;
521			len -= SOF_SPOOL;
522			space += SOF_SPOOL;
523			if (StrToAddrAndPortRange(sep, &tmp->addr, protoName,
524			    &portRange) != 0)
525				errx(EX_DATAERR, "redirect_port:"
526				    "invalid local port range");
527			if (GETNUMPORTS(portRange) != 1)
528				errx(EX_DATAERR, "redirect_port: local port"
529				    "must be single in this context");
530			tmp->port = GETLOPORT(portRange);
531			r->spool_cnt++;
532			/* Point to the next possible cfg_spool. */
533			spool_buf = &spool_buf[SOF_SPOOL];
534			sep = strtok(NULL, ",");
535		}
536	}
537	return (space);
538nospace:
539	errx(EX_DATAERR, "redirect_port: buf is too small\n");
540}
541
542static int
543setup_redir_proto(char *spool_buf, int len,
544		 int *_ac, char ***_av)
545{
546	char **av;
547	int ac, space;
548	struct protoent *protoent;
549	struct cfg_redir *r;
550
551	av = *_av;
552	ac = *_ac;
553	if (len >= SOF_REDIR) {
554		r = (struct cfg_redir *)spool_buf;
555		/* Skip cfg_redir at beginning of buf. */
556		spool_buf = &spool_buf[SOF_REDIR];
557		space = SOF_REDIR;
558		len -= SOF_REDIR;
559	} else
560		goto nospace;
561	r->mode = REDIR_PROTO;
562	/*
563	 * Extract protocol.
564	 */
565	if (ac == 0)
566		errx(EX_DATAERR, "redirect_proto: missing protocol");
567
568	protoent = getprotobyname(*av);
569	if (protoent == NULL)
570		errx(EX_DATAERR, "redirect_proto: unknown protocol %s", *av);
571	else
572		r->proto = protoent->p_proto;
573
574	INC_ARGCV();
575
576	/*
577	 * Extract local address.
578	 */
579	if (ac == 0)
580		errx(EX_DATAERR, "redirect_proto: missing local address");
581	else
582		StrToAddr(*av, &r->laddr);
583
584	INC_ARGCV();
585
586	/*
587	 * Extract optional public address.
588	 */
589	if (ac == 0) {
590		r->paddr.s_addr = INADDR_ANY;
591		r->raddr.s_addr = INADDR_ANY;
592	} else {
593		/* see above in setup_redir_port() */
594		if (!isalpha(**av)) {
595			StrToAddr(*av, &r->paddr);
596			INC_ARGCV();
597
598			/*
599			 * Extract optional remote address.
600			 */
601			/* see above in setup_redir_port() */
602			if (ac!=0 && !isalpha(**av)) {
603				StrToAddr(*av, &r->raddr);
604				INC_ARGCV();
605			}
606		}
607	}
608	return (space);
609nospace:
610	errx(EX_DATAERR, "redirect_proto: buf is too small\n");
611}
612
613static void
614print_nat_config(unsigned char *buf)
615{
616	struct cfg_nat *n;
617	int i, cnt, flag, off;
618	struct cfg_redir *t;
619	struct cfg_spool *s;
620	struct protoent *p;
621
622	n = (struct cfg_nat *)buf;
623	flag = 1;
624	off  = sizeof(*n);
625	printf("ipfw nat %u config", n->id);
626	if (strlen(n->if_name) != 0)
627		printf(" if %s", n->if_name);
628	else if (n->ip.s_addr != 0)
629		printf(" ip %s", inet_ntoa(n->ip));
630	while (n->mode != 0) {
631		if (n->mode & PKT_ALIAS_LOG) {
632			printf(" log");
633			n->mode &= ~PKT_ALIAS_LOG;
634		} else if (n->mode & PKT_ALIAS_DENY_INCOMING) {
635			printf(" deny_in");
636			n->mode &= ~PKT_ALIAS_DENY_INCOMING;
637		} else if (n->mode & PKT_ALIAS_SAME_PORTS) {
638			printf(" same_ports");
639			n->mode &= ~PKT_ALIAS_SAME_PORTS;
640		} else if (n->mode & PKT_ALIAS_UNREGISTERED_ONLY) {
641			printf(" unreg_only");
642			n->mode &= ~PKT_ALIAS_UNREGISTERED_ONLY;
643		} else if (n->mode & PKT_ALIAS_RESET_ON_ADDR_CHANGE) {
644			printf(" reset");
645			n->mode &= ~PKT_ALIAS_RESET_ON_ADDR_CHANGE;
646		} else if (n->mode & PKT_ALIAS_REVERSE) {
647			printf(" reverse");
648			n->mode &= ~PKT_ALIAS_REVERSE;
649		} else if (n->mode & PKT_ALIAS_PROXY_ONLY) {
650			printf(" proxy_only");
651			n->mode &= ~PKT_ALIAS_PROXY_ONLY;
652		}
653	}
654	/* Print all the redirect's data configuration. */
655	for (cnt = 0; cnt < n->redir_cnt; cnt++) {
656		t = (struct cfg_redir *)&buf[off];
657		off += SOF_REDIR;
658		switch (t->mode) {
659		case REDIR_ADDR:
660			printf(" redirect_addr");
661			if (t->spool_cnt == 0)
662				printf(" %s", inet_ntoa(t->laddr));
663			else
664				for (i = 0; i < t->spool_cnt; i++) {
665					s = (struct cfg_spool *)&buf[off];
666					if (i)
667						printf(",");
668					else
669						printf(" ");
670					printf("%s", inet_ntoa(s->addr));
671					off += SOF_SPOOL;
672				}
673			printf(" %s", inet_ntoa(t->paddr));
674			break;
675		case REDIR_PORT:
676			p = getprotobynumber(t->proto);
677			printf(" redirect_port %s ", p->p_name);
678			if (!t->spool_cnt) {
679				printf("%s:%u", inet_ntoa(t->laddr), t->lport);
680				if (t->pport_cnt > 1)
681					printf("-%u", t->lport +
682					    t->pport_cnt - 1);
683			} else
684				for (i=0; i < t->spool_cnt; i++) {
685					s = (struct cfg_spool *)&buf[off];
686					if (i)
687						printf(",");
688					printf("%s:%u", inet_ntoa(s->addr),
689					    s->port);
690					off += SOF_SPOOL;
691				}
692
693			printf(" ");
694			if (t->paddr.s_addr)
695				printf("%s:", inet_ntoa(t->paddr));
696			printf("%u", t->pport);
697			if (!t->spool_cnt && t->pport_cnt > 1)
698				printf("-%u", t->pport + t->pport_cnt - 1);
699
700			if (t->raddr.s_addr) {
701				printf(" %s", inet_ntoa(t->raddr));
702				if (t->rport) {
703					printf(":%u", t->rport);
704					if (!t->spool_cnt && t->rport_cnt > 1)
705						printf("-%u", t->rport +
706						    t->rport_cnt - 1);
707				}
708			}
709			break;
710		case REDIR_PROTO:
711			p = getprotobynumber(t->proto);
712			printf(" redirect_proto %s %s", p->p_name,
713			    inet_ntoa(t->laddr));
714			if (t->paddr.s_addr != 0) {
715				printf(" %s", inet_ntoa(t->paddr));
716				if (t->raddr.s_addr)
717					printf(" %s", inet_ntoa(t->raddr));
718			}
719			break;
720		default:
721			errx(EX_DATAERR, "unknown redir mode");
722			break;
723		}
724	}
725	printf("\n");
726}
727
728void
729ipfw_config_nat(int ac, char **av)
730{
731	struct cfg_nat *n;              /* Nat instance configuration. */
732	int i, len, off, tok;
733	char *id, buf[NAT_BUF_LEN]; 	/* Buffer for serialized data. */
734
735	len = NAT_BUF_LEN;
736	/* Offset in buf: save space for n at the beginning. */
737	off = sizeof(*n);
738	memset(buf, 0, sizeof(buf));
739	n = (struct cfg_nat *)buf;
740
741	av++; ac--;
742	/* Nat id. */
743	if (ac && isdigit(**av)) {
744		id = *av;
745		i = atoi(*av);
746		ac--; av++;
747		n->id = i;
748	} else
749		errx(EX_DATAERR, "missing nat id");
750	if (ac == 0)
751		errx(EX_DATAERR, "missing option");
752
753	while (ac > 0) {
754		tok = match_token(nat_params, *av);
755		ac--; av++;
756		switch (tok) {
757		case TOK_IP:
758			if (ac == 0)
759				errx(EX_DATAERR, "missing option");
760			if (!inet_aton(av[0], &(n->ip)))
761				errx(EX_DATAERR, "bad ip address ``%s''",
762				    av[0]);
763			ac--; av++;
764			break;
765		case TOK_IF:
766			if (ac == 0)
767				errx(EX_DATAERR, "missing option");
768			set_addr_dynamic(av[0], n);
769			ac--; av++;
770			break;
771		case TOK_ALOG:
772			n->mode |= PKT_ALIAS_LOG;
773			break;
774		case TOK_DENY_INC:
775			n->mode |= PKT_ALIAS_DENY_INCOMING;
776			break;
777		case TOK_SAME_PORTS:
778			n->mode |= PKT_ALIAS_SAME_PORTS;
779			break;
780		case TOK_UNREG_ONLY:
781			n->mode |= PKT_ALIAS_UNREGISTERED_ONLY;
782			break;
783		case TOK_RESET_ADDR:
784			n->mode |= PKT_ALIAS_RESET_ON_ADDR_CHANGE;
785			break;
786		case TOK_ALIAS_REV:
787			n->mode |= PKT_ALIAS_REVERSE;
788			break;
789		case TOK_PROXY_ONLY:
790			n->mode |= PKT_ALIAS_PROXY_ONLY;
791			break;
792			/*
793			 * All the setup_redir_* functions work directly in the final
794			 * buffer, see above for details.
795			 */
796		case TOK_REDIR_ADDR:
797		case TOK_REDIR_PORT:
798		case TOK_REDIR_PROTO:
799			switch (tok) {
800			case TOK_REDIR_ADDR:
801				i = setup_redir_addr(&buf[off], len, &ac, &av);
802				break;
803			case TOK_REDIR_PORT:
804				i = setup_redir_port(&buf[off], len, &ac, &av);
805				break;
806			case TOK_REDIR_PROTO:
807				i = setup_redir_proto(&buf[off], len, &ac, &av);
808				break;
809			}
810			n->redir_cnt++;
811			off += i;
812			len -= i;
813			break;
814		default:
815			errx(EX_DATAERR, "unrecognised option ``%s''", av[-1]);
816		}
817	}
818
819	i = do_cmd(IP_FW_NAT_CFG, buf, off);
820	if (i)
821		err(1, "setsockopt(%s)", "IP_FW_NAT_CFG");
822
823	if (!co.do_quiet) {
824		/* After every modification, we show the resultant rule. */
825		int _ac = 3;
826		char *_av[] = {"show", "config", id};
827		ipfw_show_nat(_ac, _av);
828	}
829}
830
831
832void
833ipfw_show_nat(int ac, char **av)
834{
835	struct cfg_nat *n;
836	struct cfg_redir *e;
837	int cmd, i, nbytes, do_cfg, do_rule, frule, lrule, nalloc, size;
838	int nat_cnt, redir_cnt, r;
839	uint8_t *data, *p;
840	char *endptr;
841
842	do_rule = 0;
843	nalloc = 1024;
844	size = 0;
845	data = NULL;
846	frule = 0;
847	lrule = IPFW_DEFAULT_RULE; /* max ipfw rule number */
848	ac--; av++;
849
850	if (co.test_only)
851		return;
852
853	/* Parse parameters. */
854	for (cmd = IP_FW_NAT_GET_LOG, do_cfg = 0; ac != 0; ac--, av++) {
855		if (!strncmp(av[0], "config", strlen(av[0]))) {
856			cmd = IP_FW_NAT_GET_CONFIG, do_cfg = 1;
857			continue;
858		}
859		/* Convert command line rule #. */
860		frule = lrule = strtoul(av[0], &endptr, 10);
861		if (*endptr == '-')
862			lrule = strtoul(endptr+1, &endptr, 10);
863		if (lrule == 0)
864			err(EX_USAGE, "invalid rule number: %s", av[0]);
865		do_rule = 1;
866	}
867
868	nbytes = nalloc;
869	while (nbytes >= nalloc) {
870		nalloc = nalloc * 2;
871		nbytes = nalloc;
872		data = safe_realloc(data, nbytes);
873		if (do_cmd(cmd, data, (uintptr_t)&nbytes) < 0)
874			err(EX_OSERR, "getsockopt(IP_FW_GET_%s)",
875			    (cmd == IP_FW_NAT_GET_LOG) ? "LOG" : "CONFIG");
876	}
877	if (nbytes == 0)
878		exit(0);
879	if (do_cfg) {
880		nat_cnt = *((int *)data);
881		for (i = sizeof(nat_cnt); nat_cnt; nat_cnt--) {
882			n = (struct cfg_nat *)&data[i];
883			if (frule <= n->id && lrule >= n->id)
884				print_nat_config(&data[i]);
885			i += sizeof(struct cfg_nat);
886			for (redir_cnt = 0; redir_cnt < n->redir_cnt; redir_cnt++) {
887				e = (struct cfg_redir *)&data[i];
888				i += sizeof(struct cfg_redir) + e->spool_cnt *
889				    sizeof(struct cfg_spool);
890			}
891		}
892	} else {
893		for (i = 0; 1; i += LIBALIAS_BUF_SIZE + sizeof(int)) {
894			p = &data[i];
895			if (p == data + nbytes)
896				break;
897			bcopy(p, &r, sizeof(int));
898			if (do_rule) {
899				if (!(frule <= r && lrule >= r))
900					continue;
901			}
902			printf("nat %u: %s\n", r, p+sizeof(int));
903		}
904	}
905}
906