ipfw2.c revision 169424
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/ipfw2.c 169424 2007-05-09 18:31:49Z maxim $
21 */
22
23#include <sys/param.h>
24#include <sys/mbuf.h>
25#include <sys/socket.h>
26#include <sys/sockio.h>
27#include <sys/sysctl.h>
28#include <sys/time.h>
29#include <sys/wait.h>
30#include <sys/queue.h>
31
32#include <ctype.h>
33#include <err.h>
34#include <errno.h>
35#include <grp.h>
36#include <limits.h>
37#include <netdb.h>
38#include <pwd.h>
39#include <signal.h>
40#include <stdio.h>
41#include <stdlib.h>
42#include <stdarg.h>
43#include <string.h>
44#include <timeconv.h>	/* XXX do we need this ? */
45#include <unistd.h>
46#include <sysexits.h>
47#include <unistd.h>
48#include <fcntl.h>
49
50#include <net/ethernet.h>
51#include <net/if.h>
52#include <net/if_dl.h>
53#include <net/pfvar.h>
54#include <net/route.h> /* def. of struct route */
55#include <netinet/in.h>
56#include <netinet/in_systm.h>
57#include <netinet/ip.h>
58#include <netinet/ip_icmp.h>
59#include <netinet/icmp6.h>
60#include <netinet/ip_fw.h>
61#include <netinet/ip_dummynet.h>
62#include <netinet/tcp.h>
63#include <arpa/inet.h>
64#include <alias.h>
65
66int
67		do_resolv,		/* Would try to resolve all */
68		do_time,		/* Show time stamps */
69		do_quiet,		/* Be quiet in add and flush */
70		do_pipe,		/* this cmd refers to a pipe */
71	        do_nat, 		/* Nat configuration. */
72		do_sort,		/* field to sort results (0 = no) */
73		do_dynamic,		/* display dynamic rules */
74		do_expired,		/* display expired dynamic rules */
75		do_compact,		/* show rules in compact mode */
76		do_force,		/* do not ask for confirmation */
77		show_sets,		/* display rule sets */
78		test_only,		/* only check syntax */
79		comment_only,		/* only print action and comment */
80		verbose;
81
82#define	IP_MASK_ALL	0xffffffff
83/*
84 * the following macro returns an error message if we run out of
85 * arguments.
86 */
87#define NEED1(msg)      {if (!ac) errx(EX_USAGE, msg);}
88
89#define GET_UINT_ARG(arg, min, max, tok, s_x) do {			\
90	if (!ac)							\
91		errx(EX_USAGE, "%s: missing argument", match_value(s_x, tok)); \
92	if (_substrcmp(*av, "tablearg") == 0) {				\
93		arg = IP_FW_TABLEARG;					\
94		break;							\
95	}								\
96									\
97	{								\
98	long val;							\
99	char *end;							\
100									\
101	val = strtol(*av, &end, 10);					\
102									\
103	if (!isdigit(**av) || *end != '\0' || (val == 0 && errno == EINVAL)) \
104		errx(EX_DATAERR, "%s: invalid argument: %s",		\
105		    match_value(s_x, tok), *av);			\
106									\
107	if (errno == ERANGE || val < min || val > max)			\
108		errx(EX_DATAERR, "%s: argument is out of range (%u..%u): %s", \
109		    match_value(s_x, tok), min, max, *av);		\
110									\
111	if (val == IP_FW_TABLEARG)					\
112		errx(EX_DATAERR, "%s: illegal argument value: %s",	\
113		    match_value(s_x, tok), *av);			\
114	arg = val;							\
115	}								\
116} while (0)
117
118#define PRINT_UINT_ARG(str, arg) do {					\
119	if (str != NULL)						\
120		printf("%s",str);					\
121	if (arg == IP_FW_TABLEARG)					\
122		printf("tablearg");					\
123	else								\
124		printf("%u", (uint32_t)arg);				\
125} while (0)
126
127/*
128 * _s_x is a structure that stores a string <-> token pairs, used in
129 * various places in the parser. Entries are stored in arrays,
130 * with an entry with s=NULL as terminator.
131 * The search routines are match_token() and match_value().
132 * Often, an element with x=0 contains an error string.
133 *
134 */
135struct _s_x {
136	char const *s;
137	int x;
138};
139
140static struct _s_x f_tcpflags[] = {
141	{ "syn", TH_SYN },
142	{ "fin", TH_FIN },
143	{ "ack", TH_ACK },
144	{ "psh", TH_PUSH },
145	{ "rst", TH_RST },
146	{ "urg", TH_URG },
147	{ "tcp flag", 0 },
148	{ NULL,	0 }
149};
150
151static struct _s_x f_tcpopts[] = {
152	{ "mss",	IP_FW_TCPOPT_MSS },
153	{ "maxseg",	IP_FW_TCPOPT_MSS },
154	{ "window",	IP_FW_TCPOPT_WINDOW },
155	{ "sack",	IP_FW_TCPOPT_SACK },
156	{ "ts",		IP_FW_TCPOPT_TS },
157	{ "timestamp",	IP_FW_TCPOPT_TS },
158	{ "cc",		IP_FW_TCPOPT_CC },
159	{ "tcp option",	0 },
160	{ NULL,	0 }
161};
162
163/*
164 * IP options span the range 0 to 255 so we need to remap them
165 * (though in fact only the low 5 bits are significant).
166 */
167static struct _s_x f_ipopts[] = {
168	{ "ssrr",	IP_FW_IPOPT_SSRR},
169	{ "lsrr",	IP_FW_IPOPT_LSRR},
170	{ "rr",		IP_FW_IPOPT_RR},
171	{ "ts",		IP_FW_IPOPT_TS},
172	{ "ip option",	0 },
173	{ NULL,	0 }
174};
175
176static struct _s_x f_iptos[] = {
177	{ "lowdelay",	IPTOS_LOWDELAY},
178	{ "throughput",	IPTOS_THROUGHPUT},
179	{ "reliability", IPTOS_RELIABILITY},
180	{ "mincost",	IPTOS_MINCOST},
181	{ "congestion",	IPTOS_CE},
182	{ "ecntransport", IPTOS_ECT},
183	{ "ip tos option", 0},
184	{ NULL,	0 }
185};
186
187static struct _s_x limit_masks[] = {
188	{"all",		DYN_SRC_ADDR|DYN_SRC_PORT|DYN_DST_ADDR|DYN_DST_PORT},
189	{"src-addr",	DYN_SRC_ADDR},
190	{"src-port",	DYN_SRC_PORT},
191	{"dst-addr",	DYN_DST_ADDR},
192	{"dst-port",	DYN_DST_PORT},
193	{NULL,		0}
194};
195
196/*
197 * we use IPPROTO_ETHERTYPE as a fake protocol id to call the print routines
198 * This is only used in this code.
199 */
200#define IPPROTO_ETHERTYPE	0x1000
201static struct _s_x ether_types[] = {
202    /*
203     * Note, we cannot use "-:&/" in the names because they are field
204     * separators in the type specifications. Also, we use s = NULL as
205     * end-delimiter, because a type of 0 can be legal.
206     */
207	{ "ip",		0x0800 },
208	{ "ipv4",	0x0800 },
209	{ "ipv6",	0x86dd },
210	{ "arp",	0x0806 },
211	{ "rarp",	0x8035 },
212	{ "vlan",	0x8100 },
213	{ "loop",	0x9000 },
214	{ "trail",	0x1000 },
215	{ "at",		0x809b },
216	{ "atalk",	0x809b },
217	{ "aarp",	0x80f3 },
218	{ "pppoe_disc",	0x8863 },
219	{ "pppoe_sess",	0x8864 },
220	{ "ipx_8022",	0x00E0 },
221	{ "ipx_8023",	0x0000 },
222	{ "ipx_ii",	0x8137 },
223	{ "ipx_snap",	0x8137 },
224	{ "ipx",	0x8137 },
225	{ "ns",		0x0600 },
226	{ NULL,		0 }
227};
228
229static void show_usage(void);
230
231enum tokens {
232	TOK_NULL=0,
233
234	TOK_OR,
235	TOK_NOT,
236	TOK_STARTBRACE,
237	TOK_ENDBRACE,
238
239	TOK_ACCEPT,
240	TOK_COUNT,
241	TOK_PIPE,
242	TOK_QUEUE,
243	TOK_DIVERT,
244	TOK_TEE,
245	TOK_NETGRAPH,
246	TOK_NGTEE,
247	TOK_FORWARD,
248	TOK_SKIPTO,
249	TOK_DENY,
250	TOK_REJECT,
251	TOK_RESET,
252	TOK_UNREACH,
253	TOK_CHECKSTATE,
254	TOK_NAT,
255
256	TOK_ALTQ,
257	TOK_LOG,
258	TOK_TAG,
259	TOK_UNTAG,
260
261	TOK_TAGGED,
262	TOK_UID,
263	TOK_GID,
264	TOK_JAIL,
265	TOK_IN,
266	TOK_LIMIT,
267	TOK_KEEPSTATE,
268	TOK_LAYER2,
269	TOK_OUT,
270	TOK_DIVERTED,
271	TOK_DIVERTEDLOOPBACK,
272	TOK_DIVERTEDOUTPUT,
273	TOK_XMIT,
274	TOK_RECV,
275	TOK_VIA,
276	TOK_FRAG,
277	TOK_IPOPTS,
278	TOK_IPLEN,
279	TOK_IPID,
280	TOK_IPPRECEDENCE,
281	TOK_IPTOS,
282	TOK_IPTTL,
283	TOK_IPVER,
284	TOK_ESTAB,
285	TOK_SETUP,
286	TOK_TCPDATALEN,
287	TOK_TCPFLAGS,
288	TOK_TCPOPTS,
289	TOK_TCPSEQ,
290	TOK_TCPACK,
291	TOK_TCPWIN,
292	TOK_ICMPTYPES,
293	TOK_MAC,
294	TOK_MACTYPE,
295	TOK_VERREVPATH,
296	TOK_VERSRCREACH,
297	TOK_ANTISPOOF,
298	TOK_IPSEC,
299	TOK_COMMENT,
300
301	TOK_PLR,
302	TOK_NOERROR,
303	TOK_BUCKETS,
304	TOK_DSTIP,
305	TOK_SRCIP,
306	TOK_DSTPORT,
307	TOK_SRCPORT,
308	TOK_ALL,
309	TOK_MASK,
310	TOK_BW,
311	TOK_DELAY,
312	TOK_RED,
313	TOK_GRED,
314	TOK_DROPTAIL,
315	TOK_PROTO,
316	TOK_WEIGHT,
317	TOK_IP,
318	TOK_IF,
319 	TOK_ALOG,
320 	TOK_DENY_INC,
321 	TOK_SAME_PORTS,
322 	TOK_UNREG_ONLY,
323 	TOK_RESET_ADDR,
324 	TOK_ALIAS_REV,
325 	TOK_PROXY_ONLY,
326	TOK_REDIR_ADDR,
327	TOK_REDIR_PORT,
328	TOK_REDIR_PROTO,
329
330	TOK_IPV6,
331	TOK_FLOWID,
332	TOK_ICMP6TYPES,
333	TOK_EXT6HDR,
334	TOK_DSTIP6,
335	TOK_SRCIP6,
336
337	TOK_IPV4,
338	TOK_UNREACH6,
339	TOK_RESET6,
340};
341
342struct _s_x dummynet_params[] = {
343	{ "plr",		TOK_PLR },
344	{ "noerror",		TOK_NOERROR },
345	{ "buckets",		TOK_BUCKETS },
346	{ "dst-ip",		TOK_DSTIP },
347	{ "src-ip",		TOK_SRCIP },
348	{ "dst-port",		TOK_DSTPORT },
349	{ "src-port",		TOK_SRCPORT },
350	{ "proto",		TOK_PROTO },
351	{ "weight",		TOK_WEIGHT },
352	{ "all",		TOK_ALL },
353	{ "mask",		TOK_MASK },
354	{ "droptail",		TOK_DROPTAIL },
355	{ "red",		TOK_RED },
356	{ "gred",		TOK_GRED },
357	{ "bw",			TOK_BW },
358	{ "bandwidth",		TOK_BW },
359	{ "delay",		TOK_DELAY },
360	{ "pipe",		TOK_PIPE },
361	{ "queue",		TOK_QUEUE },
362	{ "flow-id",		TOK_FLOWID},
363	{ "dst-ipv6",		TOK_DSTIP6},
364	{ "dst-ip6",		TOK_DSTIP6},
365	{ "src-ipv6",		TOK_SRCIP6},
366	{ "src-ip6",		TOK_SRCIP6},
367	{ "dummynet-params",	TOK_NULL },
368	{ NULL, 0 }	/* terminator */
369};
370
371struct _s_x nat_params[] = {
372	{ "ip",	                TOK_IP },
373	{ "if",	                TOK_IF },
374 	{ "log",                TOK_ALOG },
375 	{ "deny_in",	        TOK_DENY_INC },
376 	{ "same_ports",	        TOK_SAME_PORTS },
377 	{ "unreg_only",	        TOK_UNREG_ONLY },
378 	{ "reset",	        TOK_RESET_ADDR },
379 	{ "reverse",	        TOK_ALIAS_REV },
380 	{ "proxy_only",	        TOK_PROXY_ONLY },
381	{ "redirect_addr",	TOK_REDIR_ADDR },
382	{ "redirect_port",	TOK_REDIR_PORT },
383	{ "redirect_proto",	TOK_REDIR_PROTO },
384 	{ NULL, 0 }	/* terminator */
385};
386
387struct _s_x rule_actions[] = {
388	{ "accept",		TOK_ACCEPT },
389	{ "pass",		TOK_ACCEPT },
390	{ "allow",		TOK_ACCEPT },
391	{ "permit",		TOK_ACCEPT },
392	{ "count",		TOK_COUNT },
393	{ "pipe",		TOK_PIPE },
394	{ "queue",		TOK_QUEUE },
395	{ "divert",		TOK_DIVERT },
396	{ "tee",		TOK_TEE },
397	{ "netgraph",		TOK_NETGRAPH },
398	{ "ngtee",		TOK_NGTEE },
399	{ "fwd",		TOK_FORWARD },
400	{ "forward",		TOK_FORWARD },
401	{ "skipto",		TOK_SKIPTO },
402	{ "deny",		TOK_DENY },
403	{ "drop",		TOK_DENY },
404	{ "reject",		TOK_REJECT },
405	{ "reset6",		TOK_RESET6 },
406	{ "reset",		TOK_RESET },
407	{ "unreach6",		TOK_UNREACH6 },
408	{ "unreach",		TOK_UNREACH },
409	{ "check-state",	TOK_CHECKSTATE },
410	{ "//",			TOK_COMMENT },
411	{ "nat",                TOK_NAT },
412	{ NULL, 0 }	/* terminator */
413};
414
415struct _s_x rule_action_params[] = {
416	{ "altq",		TOK_ALTQ },
417	{ "log",		TOK_LOG },
418	{ "tag",		TOK_TAG },
419	{ "untag",		TOK_UNTAG },
420	{ NULL, 0 }	/* terminator */
421};
422
423struct _s_x rule_options[] = {
424	{ "tagged",		TOK_TAGGED },
425	{ "uid",		TOK_UID },
426	{ "gid",		TOK_GID },
427	{ "jail",		TOK_JAIL },
428	{ "in",			TOK_IN },
429	{ "limit",		TOK_LIMIT },
430	{ "keep-state",		TOK_KEEPSTATE },
431	{ "bridged",		TOK_LAYER2 },
432	{ "layer2",		TOK_LAYER2 },
433	{ "out",		TOK_OUT },
434	{ "diverted",		TOK_DIVERTED },
435	{ "diverted-loopback",	TOK_DIVERTEDLOOPBACK },
436	{ "diverted-output",	TOK_DIVERTEDOUTPUT },
437	{ "xmit",		TOK_XMIT },
438	{ "recv",		TOK_RECV },
439	{ "via",		TOK_VIA },
440	{ "fragment",		TOK_FRAG },
441	{ "frag",		TOK_FRAG },
442	{ "ipoptions",		TOK_IPOPTS },
443	{ "ipopts",		TOK_IPOPTS },
444	{ "iplen",		TOK_IPLEN },
445	{ "ipid",		TOK_IPID },
446	{ "ipprecedence",	TOK_IPPRECEDENCE },
447	{ "iptos",		TOK_IPTOS },
448	{ "ipttl",		TOK_IPTTL },
449	{ "ipversion",		TOK_IPVER },
450	{ "ipver",		TOK_IPVER },
451	{ "estab",		TOK_ESTAB },
452	{ "established",	TOK_ESTAB },
453	{ "setup",		TOK_SETUP },
454	{ "tcpdatalen",		TOK_TCPDATALEN },
455	{ "tcpflags",		TOK_TCPFLAGS },
456	{ "tcpflgs",		TOK_TCPFLAGS },
457	{ "tcpoptions",		TOK_TCPOPTS },
458	{ "tcpopts",		TOK_TCPOPTS },
459	{ "tcpseq",		TOK_TCPSEQ },
460	{ "tcpack",		TOK_TCPACK },
461	{ "tcpwin",		TOK_TCPWIN },
462	{ "icmptype",		TOK_ICMPTYPES },
463	{ "icmptypes",		TOK_ICMPTYPES },
464	{ "dst-ip",		TOK_DSTIP },
465	{ "src-ip",		TOK_SRCIP },
466	{ "dst-port",		TOK_DSTPORT },
467	{ "src-port",		TOK_SRCPORT },
468	{ "proto",		TOK_PROTO },
469	{ "MAC",		TOK_MAC },
470	{ "mac",		TOK_MAC },
471	{ "mac-type",		TOK_MACTYPE },
472	{ "verrevpath",		TOK_VERREVPATH },
473	{ "versrcreach",	TOK_VERSRCREACH },
474	{ "antispoof",		TOK_ANTISPOOF },
475	{ "ipsec",		TOK_IPSEC },
476	{ "icmp6type",		TOK_ICMP6TYPES },
477	{ "icmp6types",		TOK_ICMP6TYPES },
478	{ "ext6hdr",		TOK_EXT6HDR},
479	{ "flow-id",		TOK_FLOWID},
480	{ "ipv6",		TOK_IPV6},
481	{ "ip6",		TOK_IPV6},
482	{ "ipv4",		TOK_IPV4},
483	{ "ip4",		TOK_IPV4},
484	{ "dst-ipv6",		TOK_DSTIP6},
485	{ "dst-ip6",		TOK_DSTIP6},
486	{ "src-ipv6",		TOK_SRCIP6},
487	{ "src-ip6",		TOK_SRCIP6},
488	{ "//",			TOK_COMMENT },
489
490	{ "not",		TOK_NOT },		/* pseudo option */
491	{ "!", /* escape ? */	TOK_NOT },		/* pseudo option */
492	{ "or",			TOK_OR },		/* pseudo option */
493	{ "|", /* escape */	TOK_OR },		/* pseudo option */
494	{ "{",			TOK_STARTBRACE },	/* pseudo option */
495	{ "(",			TOK_STARTBRACE },	/* pseudo option */
496	{ "}",			TOK_ENDBRACE },		/* pseudo option */
497	{ ")",			TOK_ENDBRACE },		/* pseudo option */
498	{ NULL, 0 }	/* terminator */
499};
500
501#define	TABLEARG	"tablearg"
502
503static __inline uint64_t
504align_uint64(uint64_t *pll) {
505	uint64_t ret;
506
507	bcopy (pll, &ret, sizeof(ret));
508	return ret;
509}
510
511/*
512 * conditionally runs the command.
513 */
514static int
515do_cmd(int optname, void *optval, uintptr_t optlen)
516{
517	static int s = -1;	/* the socket */
518	int i;
519
520	if (test_only)
521		return 0;
522
523	if (s == -1)
524		s = socket(AF_INET, SOCK_RAW, IPPROTO_RAW);
525	if (s < 0)
526		err(EX_UNAVAILABLE, "socket");
527
528	if (optname == IP_FW_GET || optname == IP_DUMMYNET_GET ||
529	    optname == IP_FW_ADD || optname == IP_FW_TABLE_LIST ||
530	    optname == IP_FW_TABLE_GETSIZE ||
531	    optname == IP_FW_NAT_GET_CONFIG ||
532	    optname == IP_FW_NAT_GET_LOG)
533		i = getsockopt(s, IPPROTO_IP, optname, optval,
534			(socklen_t *)optlen);
535	else
536		i = setsockopt(s, IPPROTO_IP, optname, optval, optlen);
537	return i;
538}
539
540/**
541 * match_token takes a table and a string, returns the value associated
542 * with the string (-1 in case of failure).
543 */
544static int
545match_token(struct _s_x *table, char *string)
546{
547	struct _s_x *pt;
548	uint i = strlen(string);
549
550	for (pt = table ; i && pt->s != NULL ; pt++)
551		if (strlen(pt->s) == i && !bcmp(string, pt->s, i))
552			return pt->x;
553	return -1;
554}
555
556/**
557 * match_value takes a table and a value, returns the string associated
558 * with the value (NULL in case of failure).
559 */
560static char const *
561match_value(struct _s_x *p, int value)
562{
563	for (; p->s != NULL; p++)
564		if (p->x == value)
565			return p->s;
566	return NULL;
567}
568
569/*
570 * _substrcmp takes two strings and returns 1 if they do not match,
571 * and 0 if they match exactly or the first string is a sub-string
572 * of the second.  A warning is printed to stderr in the case that the
573 * first string is a sub-string of the second.
574 *
575 * This function will be removed in the future through the usual
576 * deprecation process.
577 */
578static int
579_substrcmp(const char *str1, const char* str2)
580{
581
582	if (strncmp(str1, str2, strlen(str1)) != 0)
583		return 1;
584
585	if (strlen(str1) != strlen(str2))
586		warnx("DEPRECATED: '%s' matched '%s' as a sub-string",
587		    str1, str2);
588	return 0;
589}
590
591/*
592 * _substrcmp2 takes three strings and returns 1 if the first two do not match,
593 * and 0 if they match exactly or the second string is a sub-string
594 * of the first.  A warning is printed to stderr in the case that the
595 * first string does not match the third.
596 *
597 * This function exists to warn about the bizzare construction
598 * strncmp(str, "by", 2) which is used to allow people to use a shotcut
599 * for "bytes".  The problem is that in addition to accepting "by",
600 * "byt", "byte", and "bytes", it also excepts "by_rabid_dogs" and any
601 * other string beginning with "by".
602 *
603 * This function will be removed in the future through the usual
604 * deprecation process.
605 */
606static int
607_substrcmp2(const char *str1, const char* str2, const char* str3)
608{
609
610	if (strncmp(str1, str2, strlen(str2)) != 0)
611		return 1;
612
613	if (strcmp(str1, str3) != 0)
614		warnx("DEPRECATED: '%s' matched '%s'",
615		    str1, str3);
616	return 0;
617}
618
619/*
620 * prints one port, symbolic or numeric
621 */
622static void
623print_port(int proto, uint16_t port)
624{
625
626	if (proto == IPPROTO_ETHERTYPE) {
627		char const *s;
628
629		if (do_resolv && (s = match_value(ether_types, port)) )
630			printf("%s", s);
631		else
632			printf("0x%04x", port);
633	} else {
634		struct servent *se = NULL;
635		if (do_resolv) {
636			struct protoent *pe = getprotobynumber(proto);
637
638			se = getservbyport(htons(port), pe ? pe->p_name : NULL);
639		}
640		if (se)
641			printf("%s", se->s_name);
642		else
643			printf("%d", port);
644	}
645}
646
647struct _s_x _port_name[] = {
648	{"dst-port",	O_IP_DSTPORT},
649	{"src-port",	O_IP_SRCPORT},
650	{"ipid",	O_IPID},
651	{"iplen",	O_IPLEN},
652	{"ipttl",	O_IPTTL},
653	{"mac-type",	O_MAC_TYPE},
654	{"tcpdatalen",	O_TCPDATALEN},
655	{"tagged",	O_TAGGED},
656	{NULL,		0}
657};
658
659/*
660 * Print the values in a list 16-bit items of the types above.
661 * XXX todo: add support for mask.
662 */
663static void
664print_newports(ipfw_insn_u16 *cmd, int proto, int opcode)
665{
666	uint16_t *p = cmd->ports;
667	int i;
668	char const *sep;
669
670	if (cmd->o.len & F_NOT)
671		printf(" not");
672	if (opcode != 0) {
673		sep = match_value(_port_name, opcode);
674		if (sep == NULL)
675			sep = "???";
676		printf (" %s", sep);
677	}
678	sep = " ";
679	for (i = F_LEN((ipfw_insn *)cmd) - 1; i > 0; i--, p += 2) {
680		printf(sep);
681		print_port(proto, p[0]);
682		if (p[0] != p[1]) {
683			printf("-");
684			print_port(proto, p[1]);
685		}
686		sep = ",";
687	}
688}
689
690/*
691 * Like strtol, but also translates service names into port numbers
692 * for some protocols.
693 * In particular:
694 *	proto == -1 disables the protocol check;
695 *	proto == IPPROTO_ETHERTYPE looks up an internal table
696 *	proto == <some value in /etc/protocols> matches the values there.
697 * Returns *end == s in case the parameter is not found.
698 */
699static int
700strtoport(char *s, char **end, int base, int proto)
701{
702	char *p, *buf;
703	char *s1;
704	int i;
705
706	*end = s;		/* default - not found */
707	if (*s == '\0')
708		return 0;	/* not found */
709
710	if (isdigit(*s))
711		return strtol(s, end, base);
712
713	/*
714	 * find separator. '\\' escapes the next char.
715	 */
716	for (s1 = s; *s1 && (isalnum(*s1) || *s1 == '\\') ; s1++)
717		if (*s1 == '\\' && s1[1] != '\0')
718			s1++;
719
720	buf = malloc(s1 - s + 1);
721	if (buf == NULL)
722		return 0;
723
724	/*
725	 * copy into a buffer skipping backslashes
726	 */
727	for (p = s, i = 0; p != s1 ; p++)
728		if (*p != '\\')
729			buf[i++] = *p;
730	buf[i++] = '\0';
731
732	if (proto == IPPROTO_ETHERTYPE) {
733		i = match_token(ether_types, buf);
734		free(buf);
735		if (i != -1) {	/* found */
736			*end = s1;
737			return i;
738		}
739	} else {
740		struct protoent *pe = NULL;
741		struct servent *se;
742
743		if (proto != 0)
744			pe = getprotobynumber(proto);
745		setservent(1);
746		se = getservbyname(buf, pe ? pe->p_name : NULL);
747		free(buf);
748		if (se != NULL) {
749			*end = s1;
750			return ntohs(se->s_port);
751		}
752	}
753	return 0;	/* not found */
754}
755
756/*
757 * Map between current altq queue id numbers and names.
758 */
759static int altq_fetched = 0;
760static TAILQ_HEAD(, pf_altq) altq_entries =
761	TAILQ_HEAD_INITIALIZER(altq_entries);
762
763static void
764altq_set_enabled(int enabled)
765{
766	int pffd;
767
768	pffd = open("/dev/pf", O_RDWR);
769	if (pffd == -1)
770		err(EX_UNAVAILABLE,
771		    "altq support opening pf(4) control device");
772	if (enabled) {
773		if (ioctl(pffd, DIOCSTARTALTQ) != 0 && errno != EEXIST)
774			err(EX_UNAVAILABLE, "enabling altq");
775	} else {
776		if (ioctl(pffd, DIOCSTOPALTQ) != 0 && errno != ENOENT)
777			err(EX_UNAVAILABLE, "disabling altq");
778	}
779	close(pffd);
780}
781
782static void
783altq_fetch()
784{
785	struct pfioc_altq pfioc;
786	struct pf_altq *altq;
787	int pffd, mnr;
788
789	if (altq_fetched)
790		return;
791	altq_fetched = 1;
792	pffd = open("/dev/pf", O_RDONLY);
793	if (pffd == -1) {
794		warn("altq support opening pf(4) control device");
795		return;
796	}
797	bzero(&pfioc, sizeof(pfioc));
798	if (ioctl(pffd, DIOCGETALTQS, &pfioc) != 0) {
799		warn("altq support getting queue list");
800		close(pffd);
801		return;
802	}
803	mnr = pfioc.nr;
804	for (pfioc.nr = 0; pfioc.nr < mnr; pfioc.nr++) {
805		if (ioctl(pffd, DIOCGETALTQ, &pfioc) != 0) {
806			if (errno == EBUSY)
807				break;
808			warn("altq support getting queue list");
809			close(pffd);
810			return;
811		}
812		if (pfioc.altq.qid == 0)
813			continue;
814		altq = malloc(sizeof(*altq));
815		if (altq == NULL)
816			err(EX_OSERR, "malloc");
817		*altq = pfioc.altq;
818		TAILQ_INSERT_TAIL(&altq_entries, altq, entries);
819	}
820	close(pffd);
821}
822
823static u_int32_t
824altq_name_to_qid(const char *name)
825{
826	struct pf_altq *altq;
827
828	altq_fetch();
829	TAILQ_FOREACH(altq, &altq_entries, entries)
830		if (strcmp(name, altq->qname) == 0)
831			break;
832	if (altq == NULL)
833		errx(EX_DATAERR, "altq has no queue named `%s'", name);
834	return altq->qid;
835}
836
837static const char *
838altq_qid_to_name(u_int32_t qid)
839{
840	struct pf_altq *altq;
841
842	altq_fetch();
843	TAILQ_FOREACH(altq, &altq_entries, entries)
844		if (qid == altq->qid)
845			break;
846	if (altq == NULL)
847		return NULL;
848	return altq->qname;
849}
850
851static void
852fill_altq_qid(u_int32_t *qid, const char *av)
853{
854	*qid = altq_name_to_qid(av);
855}
856
857/*
858 * Fill the body of the command with the list of port ranges.
859 */
860static int
861fill_newports(ipfw_insn_u16 *cmd, char *av, int proto)
862{
863	uint16_t a, b, *p = cmd->ports;
864	int i = 0;
865	char *s = av;
866
867	while (*s) {
868		a = strtoport(av, &s, 0, proto);
869		if (s == av) 			/* empty or invalid argument */
870			return (0);
871
872		switch (*s) {
873		case '-':			/* a range */
874			av = s + 1;
875			b = strtoport(av, &s, 0, proto);
876			/* Reject expressions like '1-abc' or '1-2-3'. */
877			if (s == av || (*s != ',' && *s != '\0'))
878				return (0);
879			p[0] = a;
880			p[1] = b;
881			break;
882		case ',':			/* comma separated list */
883		case '\0':
884			p[0] = p[1] = a;
885			break;
886		default:
887			warnx("port list: invalid separator <%c> in <%s>",
888				*s, av);
889			return (0);
890		}
891
892		i++;
893		p += 2;
894		av = s + 1;
895	}
896	if (i > 0) {
897		if (i + 1 > F_LEN_MASK)
898			errx(EX_DATAERR, "too many ports/ranges\n");
899		cmd->o.len |= i + 1;	/* leave F_NOT and F_OR untouched */
900	}
901	return (i);
902}
903
904static struct _s_x icmpcodes[] = {
905      { "net",			ICMP_UNREACH_NET },
906      { "host",			ICMP_UNREACH_HOST },
907      { "protocol",		ICMP_UNREACH_PROTOCOL },
908      { "port",			ICMP_UNREACH_PORT },
909      { "needfrag",		ICMP_UNREACH_NEEDFRAG },
910      { "srcfail",		ICMP_UNREACH_SRCFAIL },
911      { "net-unknown",		ICMP_UNREACH_NET_UNKNOWN },
912      { "host-unknown",		ICMP_UNREACH_HOST_UNKNOWN },
913      { "isolated",		ICMP_UNREACH_ISOLATED },
914      { "net-prohib",		ICMP_UNREACH_NET_PROHIB },
915      { "host-prohib",		ICMP_UNREACH_HOST_PROHIB },
916      { "tosnet",		ICMP_UNREACH_TOSNET },
917      { "toshost",		ICMP_UNREACH_TOSHOST },
918      { "filter-prohib",	ICMP_UNREACH_FILTER_PROHIB },
919      { "host-precedence",	ICMP_UNREACH_HOST_PRECEDENCE },
920      { "precedence-cutoff",	ICMP_UNREACH_PRECEDENCE_CUTOFF },
921      { NULL, 0 }
922};
923
924static void
925fill_reject_code(u_short *codep, char *str)
926{
927	int val;
928	char *s;
929
930	val = strtoul(str, &s, 0);
931	if (s == str || *s != '\0' || val >= 0x100)
932		val = match_token(icmpcodes, str);
933	if (val < 0)
934		errx(EX_DATAERR, "unknown ICMP unreachable code ``%s''", str);
935	*codep = val;
936	return;
937}
938
939static void
940print_reject_code(uint16_t code)
941{
942	char const *s = match_value(icmpcodes, code);
943
944	if (s != NULL)
945		printf("unreach %s", s);
946	else
947		printf("unreach %u", code);
948}
949
950static struct _s_x icmp6codes[] = {
951      { "no-route",		ICMP6_DST_UNREACH_NOROUTE },
952      { "admin-prohib",		ICMP6_DST_UNREACH_ADMIN },
953      { "address",		ICMP6_DST_UNREACH_ADDR },
954      { "port",			ICMP6_DST_UNREACH_NOPORT },
955      { NULL, 0 }
956};
957
958static void
959fill_unreach6_code(u_short *codep, char *str)
960{
961	int val;
962	char *s;
963
964	val = strtoul(str, &s, 0);
965	if (s == str || *s != '\0' || val >= 0x100)
966		val = match_token(icmp6codes, str);
967	if (val < 0)
968		errx(EX_DATAERR, "unknown ICMPv6 unreachable code ``%s''", str);
969	*codep = val;
970	return;
971}
972
973static void
974print_unreach6_code(uint16_t code)
975{
976	char const *s = match_value(icmp6codes, code);
977
978	if (s != NULL)
979		printf("unreach6 %s", s);
980	else
981		printf("unreach6 %u", code);
982}
983
984/*
985 * Returns the number of bits set (from left) in a contiguous bitmask,
986 * or -1 if the mask is not contiguous.
987 * XXX this needs a proper fix.
988 * This effectively works on masks in big-endian (network) format.
989 * when compiled on little endian architectures.
990 *
991 * First bit is bit 7 of the first byte -- note, for MAC addresses,
992 * the first bit on the wire is bit 0 of the first byte.
993 * len is the max length in bits.
994 */
995static int
996contigmask(uint8_t *p, int len)
997{
998	int i, n;
999
1000	for (i=0; i<len ; i++)
1001		if ( (p[i/8] & (1 << (7 - (i%8)))) == 0) /* first bit unset */
1002			break;
1003	for (n=i+1; n < len; n++)
1004		if ( (p[n/8] & (1 << (7 - (n%8)))) != 0)
1005			return -1; /* mask not contiguous */
1006	return i;
1007}
1008
1009/*
1010 * print flags set/clear in the two bitmasks passed as parameters.
1011 * There is a specialized check for f_tcpflags.
1012 */
1013static void
1014print_flags(char const *name, ipfw_insn *cmd, struct _s_x *list)
1015{
1016	char const *comma = "";
1017	int i;
1018	uint8_t set = cmd->arg1 & 0xff;
1019	uint8_t clear = (cmd->arg1 >> 8) & 0xff;
1020
1021	if (list == f_tcpflags && set == TH_SYN && clear == TH_ACK) {
1022		printf(" setup");
1023		return;
1024	}
1025
1026	printf(" %s ", name);
1027	for (i=0; list[i].x != 0; i++) {
1028		if (set & list[i].x) {
1029			set &= ~list[i].x;
1030			printf("%s%s", comma, list[i].s);
1031			comma = ",";
1032		}
1033		if (clear & list[i].x) {
1034			clear &= ~list[i].x;
1035			printf("%s!%s", comma, list[i].s);
1036			comma = ",";
1037		}
1038	}
1039}
1040
1041/*
1042 * Print the ip address contained in a command.
1043 */
1044static void
1045print_ip(ipfw_insn_ip *cmd, char const *s)
1046{
1047	struct hostent *he = NULL;
1048	int len = F_LEN((ipfw_insn *)cmd);
1049	uint32_t *a = ((ipfw_insn_u32 *)cmd)->d;
1050
1051	printf("%s%s ", cmd->o.len & F_NOT ? " not": "", s);
1052
1053	if (cmd->o.opcode == O_IP_SRC_ME || cmd->o.opcode == O_IP_DST_ME) {
1054		printf("me");
1055		return;
1056	}
1057	if (cmd->o.opcode == O_IP_SRC_LOOKUP ||
1058	    cmd->o.opcode == O_IP_DST_LOOKUP) {
1059		printf("table(%u", ((ipfw_insn *)cmd)->arg1);
1060		if (len == F_INSN_SIZE(ipfw_insn_u32))
1061			printf(",%u", *a);
1062		printf(")");
1063		return;
1064	}
1065	if (cmd->o.opcode == O_IP_SRC_SET || cmd->o.opcode == O_IP_DST_SET) {
1066		uint32_t x, *map = (uint32_t *)&(cmd->mask);
1067		int i, j;
1068		char comma = '{';
1069
1070		x = cmd->o.arg1 - 1;
1071		x = htonl( ~x );
1072		cmd->addr.s_addr = htonl(cmd->addr.s_addr);
1073		printf("%s/%d", inet_ntoa(cmd->addr),
1074			contigmask((uint8_t *)&x, 32));
1075		x = cmd->addr.s_addr = htonl(cmd->addr.s_addr);
1076		x &= 0xff; /* base */
1077		/*
1078		 * Print bits and ranges.
1079		 * Locate first bit set (i), then locate first bit unset (j).
1080		 * If we have 3+ consecutive bits set, then print them as a
1081		 * range, otherwise only print the initial bit and rescan.
1082		 */
1083		for (i=0; i < cmd->o.arg1; i++)
1084			if (map[i/32] & (1<<(i & 31))) {
1085				for (j=i+1; j < cmd->o.arg1; j++)
1086					if (!(map[ j/32] & (1<<(j & 31))))
1087						break;
1088				printf("%c%d", comma, i+x);
1089				if (j>i+2) { /* range has at least 3 elements */
1090					printf("-%d", j-1+x);
1091					i = j-1;
1092				}
1093				comma = ',';
1094			}
1095		printf("}");
1096		return;
1097	}
1098	/*
1099	 * len == 2 indicates a single IP, whereas lists of 1 or more
1100	 * addr/mask pairs have len = (2n+1). We convert len to n so we
1101	 * use that to count the number of entries.
1102	 */
1103    for (len = len / 2; len > 0; len--, a += 2) {
1104	int mb =	/* mask length */
1105	    (cmd->o.opcode == O_IP_SRC || cmd->o.opcode == O_IP_DST) ?
1106		32 : contigmask((uint8_t *)&(a[1]), 32);
1107	if (mb == 32 && do_resolv)
1108		he = gethostbyaddr((char *)&(a[0]), sizeof(u_long), AF_INET);
1109	if (he != NULL)		/* resolved to name */
1110		printf("%s", he->h_name);
1111	else if (mb == 0)	/* any */
1112		printf("any");
1113	else {		/* numeric IP followed by some kind of mask */
1114		printf("%s", inet_ntoa( *((struct in_addr *)&a[0]) ) );
1115		if (mb < 0)
1116			printf(":%s", inet_ntoa( *((struct in_addr *)&a[1]) ) );
1117		else if (mb < 32)
1118			printf("/%d", mb);
1119	}
1120	if (len > 1)
1121		printf(",");
1122    }
1123}
1124
1125/*
1126 * prints a MAC address/mask pair
1127 */
1128static void
1129print_mac(uint8_t *addr, uint8_t *mask)
1130{
1131	int l = contigmask(mask, 48);
1132
1133	if (l == 0)
1134		printf(" any");
1135	else {
1136		printf(" %02x:%02x:%02x:%02x:%02x:%02x",
1137		    addr[0], addr[1], addr[2], addr[3], addr[4], addr[5]);
1138		if (l == -1)
1139			printf("&%02x:%02x:%02x:%02x:%02x:%02x",
1140			    mask[0], mask[1], mask[2],
1141			    mask[3], mask[4], mask[5]);
1142		else if (l < 48)
1143			printf("/%d", l);
1144	}
1145}
1146
1147static void
1148fill_icmptypes(ipfw_insn_u32 *cmd, char *av)
1149{
1150	uint8_t type;
1151
1152	cmd->d[0] = 0;
1153	while (*av) {
1154		if (*av == ',')
1155			av++;
1156
1157		type = strtoul(av, &av, 0);
1158
1159		if (*av != ',' && *av != '\0')
1160			errx(EX_DATAERR, "invalid ICMP type");
1161
1162		if (type > 31)
1163			errx(EX_DATAERR, "ICMP type out of range");
1164
1165		cmd->d[0] |= 1 << type;
1166	}
1167	cmd->o.opcode = O_ICMPTYPE;
1168	cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32);
1169}
1170
1171static void
1172print_icmptypes(ipfw_insn_u32 *cmd)
1173{
1174	int i;
1175	char sep= ' ';
1176
1177	printf(" icmptypes");
1178	for (i = 0; i < 32; i++) {
1179		if ( (cmd->d[0] & (1 << (i))) == 0)
1180			continue;
1181		printf("%c%d", sep, i);
1182		sep = ',';
1183	}
1184}
1185
1186/*
1187 * Print the ip address contained in a command.
1188 */
1189static void
1190print_ip6(ipfw_insn_ip6 *cmd, char const *s)
1191{
1192       struct hostent *he = NULL;
1193       int len = F_LEN((ipfw_insn *) cmd) - 1;
1194       struct in6_addr *a = &(cmd->addr6);
1195       char trad[255];
1196
1197       printf("%s%s ", cmd->o.len & F_NOT ? " not": "", s);
1198
1199       if (cmd->o.opcode == O_IP6_SRC_ME || cmd->o.opcode == O_IP6_DST_ME) {
1200               printf("me6");
1201               return;
1202       }
1203       if (cmd->o.opcode == O_IP6) {
1204               printf(" ip6");
1205               return;
1206       }
1207
1208       /*
1209        * len == 4 indicates a single IP, whereas lists of 1 or more
1210        * addr/mask pairs have len = (2n+1). We convert len to n so we
1211        * use that to count the number of entries.
1212        */
1213
1214       for (len = len / 4; len > 0; len -= 2, a += 2) {
1215           int mb =        /* mask length */
1216               (cmd->o.opcode == O_IP6_SRC || cmd->o.opcode == O_IP6_DST) ?
1217               128 : contigmask((uint8_t *)&(a[1]), 128);
1218
1219           if (mb == 128 && do_resolv)
1220               he = gethostbyaddr((char *)a, sizeof(*a), AF_INET6);
1221           if (he != NULL)             /* resolved to name */
1222               printf("%s", he->h_name);
1223           else if (mb == 0)           /* any */
1224               printf("any");
1225           else {          /* numeric IP followed by some kind of mask */
1226               if (inet_ntop(AF_INET6,  a, trad, sizeof( trad ) ) == NULL)
1227                   printf("Error ntop in print_ip6\n");
1228               printf("%s",  trad );
1229               if (mb < 0)     /* XXX not really legal... */
1230                   printf(":%s",
1231                       inet_ntop(AF_INET6, &a[1], trad, sizeof(trad)));
1232               else if (mb < 128)
1233                   printf("/%d", mb);
1234           }
1235           if (len > 2)
1236               printf(",");
1237       }
1238}
1239
1240static void
1241fill_icmp6types(ipfw_insn_icmp6 *cmd, char *av)
1242{
1243       uint8_t type;
1244
1245       bzero(cmd, sizeof(*cmd));
1246       while (*av) {
1247           if (*av == ',')
1248               av++;
1249           type = strtoul(av, &av, 0);
1250           if (*av != ',' && *av != '\0')
1251               errx(EX_DATAERR, "invalid ICMP6 type");
1252	   /*
1253	    * XXX: shouldn't this be 0xFF?  I can't see any reason why
1254	    * we shouldn't be able to filter all possiable values
1255	    * regardless of the ability of the rest of the kernel to do
1256	    * anything useful with them.
1257	    */
1258           if (type > ICMP6_MAXTYPE)
1259               errx(EX_DATAERR, "ICMP6 type out of range");
1260           cmd->d[type / 32] |= ( 1 << (type % 32));
1261       }
1262       cmd->o.opcode = O_ICMP6TYPE;
1263       cmd->o.len |= F_INSN_SIZE(ipfw_insn_icmp6);
1264}
1265
1266
1267static void
1268print_icmp6types(ipfw_insn_u32 *cmd)
1269{
1270       int i, j;
1271       char sep= ' ';
1272
1273       printf(" ip6 icmp6types");
1274       for (i = 0; i < 7; i++)
1275               for (j=0; j < 32; ++j) {
1276                       if ( (cmd->d[i] & (1 << (j))) == 0)
1277                               continue;
1278                       printf("%c%d", sep, (i*32 + j));
1279                       sep = ',';
1280               }
1281}
1282
1283static void
1284print_flow6id( ipfw_insn_u32 *cmd)
1285{
1286       uint16_t i, limit = cmd->o.arg1;
1287       char sep = ',';
1288
1289       printf(" flow-id ");
1290       for( i=0; i < limit; ++i) {
1291               if (i == limit - 1)
1292                       sep = ' ';
1293               printf("%d%c", cmd->d[i], sep);
1294       }
1295}
1296
1297/* structure and define for the extension header in ipv6 */
1298static struct _s_x ext6hdrcodes[] = {
1299       { "frag",       EXT_FRAGMENT },
1300       { "hopopt",     EXT_HOPOPTS },
1301       { "route",      EXT_ROUTING },
1302       { "dstopt",     EXT_DSTOPTS },
1303       { "ah",         EXT_AH },
1304       { "esp",        EXT_ESP },
1305       { "rthdr0",     EXT_RTHDR0 },
1306       { "rthdr2",     EXT_RTHDR2 },
1307       { NULL,         0 }
1308};
1309
1310/* fills command for the extension header filtering */
1311int
1312fill_ext6hdr( ipfw_insn *cmd, char *av)
1313{
1314       int tok;
1315       char *s = av;
1316
1317       cmd->arg1 = 0;
1318
1319       while(s) {
1320           av = strsep( &s, ",") ;
1321           tok = match_token(ext6hdrcodes, av);
1322           switch (tok) {
1323           case EXT_FRAGMENT:
1324               cmd->arg1 |= EXT_FRAGMENT;
1325               break;
1326
1327           case EXT_HOPOPTS:
1328               cmd->arg1 |= EXT_HOPOPTS;
1329               break;
1330
1331           case EXT_ROUTING:
1332               cmd->arg1 |= EXT_ROUTING;
1333               break;
1334
1335           case EXT_DSTOPTS:
1336               cmd->arg1 |= EXT_DSTOPTS;
1337               break;
1338
1339           case EXT_AH:
1340               cmd->arg1 |= EXT_AH;
1341               break;
1342
1343           case EXT_ESP:
1344               cmd->arg1 |= EXT_ESP;
1345               break;
1346
1347           case EXT_RTHDR0:
1348               cmd->arg1 |= EXT_RTHDR0;
1349               break;
1350
1351           case EXT_RTHDR2:
1352               cmd->arg1 |= EXT_RTHDR2;
1353               break;
1354
1355           default:
1356               errx( EX_DATAERR, "invalid option for ipv6 exten header" );
1357               break;
1358           }
1359       }
1360       if (cmd->arg1 == 0 )
1361           return 0;
1362       cmd->opcode = O_EXT_HDR;
1363       cmd->len |= F_INSN_SIZE( ipfw_insn );
1364       return 1;
1365}
1366
1367void
1368print_ext6hdr( ipfw_insn *cmd )
1369{
1370       char sep = ' ';
1371
1372       printf(" extension header:");
1373       if (cmd->arg1 & EXT_FRAGMENT ) {
1374           printf("%cfragmentation", sep);
1375           sep = ',';
1376       }
1377       if (cmd->arg1 & EXT_HOPOPTS ) {
1378           printf("%chop options", sep);
1379           sep = ',';
1380       }
1381       if (cmd->arg1 & EXT_ROUTING ) {
1382           printf("%crouting options", sep);
1383           sep = ',';
1384       }
1385       if (cmd->arg1 & EXT_RTHDR0 ) {
1386           printf("%crthdr0", sep);
1387           sep = ',';
1388       }
1389       if (cmd->arg1 & EXT_RTHDR2 ) {
1390           printf("%crthdr2", sep);
1391           sep = ',';
1392       }
1393       if (cmd->arg1 & EXT_DSTOPTS ) {
1394           printf("%cdestination options", sep);
1395           sep = ',';
1396       }
1397       if (cmd->arg1 & EXT_AH ) {
1398           printf("%cauthentication header", sep);
1399           sep = ',';
1400       }
1401       if (cmd->arg1 & EXT_ESP ) {
1402           printf("%cencapsulated security payload", sep);
1403       }
1404}
1405
1406/*
1407 * show_ipfw() prints the body of an ipfw rule.
1408 * Because the standard rule has at least proto src_ip dst_ip, we use
1409 * a helper function to produce these entries if not provided explicitly.
1410 * The first argument is the list of fields we have, the second is
1411 * the list of fields we want to be printed.
1412 *
1413 * Special cases if we have provided a MAC header:
1414 *   + if the rule does not contain IP addresses/ports, do not print them;
1415 *   + if the rule does not contain an IP proto, print "all" instead of "ip";
1416 *
1417 * Once we have 'have_options', IP header fields are printed as options.
1418 */
1419#define	HAVE_PROTO	0x0001
1420#define	HAVE_SRCIP	0x0002
1421#define	HAVE_DSTIP	0x0004
1422#define	HAVE_PROTO4	0x0008
1423#define	HAVE_PROTO6	0x0010
1424#define	HAVE_OPTIONS	0x8000
1425
1426#define	HAVE_IP		(HAVE_PROTO | HAVE_SRCIP | HAVE_DSTIP)
1427static void
1428show_prerequisites(int *flags, int want, int cmd)
1429{
1430	if (comment_only)
1431		return;
1432	if ( (*flags & HAVE_IP) == HAVE_IP)
1433		*flags |= HAVE_OPTIONS;
1434
1435	if ( !(*flags & HAVE_OPTIONS)) {
1436		if ( !(*flags & HAVE_PROTO) && (want & HAVE_PROTO))
1437			if ( (*flags & HAVE_PROTO4))
1438				printf(" ip4");
1439			else if ( (*flags & HAVE_PROTO6))
1440				printf(" ip6");
1441			else
1442				printf(" ip");
1443
1444		if ( !(*flags & HAVE_SRCIP) && (want & HAVE_SRCIP))
1445			printf(" from any");
1446		if ( !(*flags & HAVE_DSTIP) && (want & HAVE_DSTIP))
1447			printf(" to any");
1448	}
1449	*flags |= want;
1450}
1451
1452static void
1453show_ipfw(struct ip_fw *rule, int pcwidth, int bcwidth)
1454{
1455	static int twidth = 0;
1456	int l;
1457	ipfw_insn *cmd, *tagptr = NULL;
1458	char *comment = NULL;	/* ptr to comment if we have one */
1459	int proto = 0;		/* default */
1460	int flags = 0;	/* prerequisites */
1461	ipfw_insn_log *logptr = NULL; /* set if we find an O_LOG */
1462	ipfw_insn_altq *altqptr = NULL; /* set if we find an O_ALTQ */
1463	int or_block = 0;	/* we are in an or block */
1464	uint32_t set_disable;
1465
1466	bcopy(&rule->next_rule, &set_disable, sizeof(set_disable));
1467
1468	if (set_disable & (1 << rule->set)) { /* disabled */
1469		if (!show_sets)
1470			return;
1471		else
1472			printf("# DISABLED ");
1473	}
1474	printf("%05u ", rule->rulenum);
1475
1476	if (pcwidth>0 || bcwidth>0)
1477		printf("%*llu %*llu ", pcwidth, align_uint64(&rule->pcnt),
1478		    bcwidth, align_uint64(&rule->bcnt));
1479
1480	if (do_time == 2)
1481		printf("%10u ", rule->timestamp);
1482	else if (do_time == 1) {
1483		char timestr[30];
1484		time_t t = (time_t)0;
1485
1486		if (twidth == 0) {
1487			strcpy(timestr, ctime(&t));
1488			*strchr(timestr, '\n') = '\0';
1489			twidth = strlen(timestr);
1490		}
1491		if (rule->timestamp) {
1492			t = _long_to_time(rule->timestamp);
1493
1494			strcpy(timestr, ctime(&t));
1495			*strchr(timestr, '\n') = '\0';
1496			printf("%s ", timestr);
1497		} else {
1498			printf("%*s", twidth, " ");
1499		}
1500	}
1501
1502	if (show_sets)
1503		printf("set %d ", rule->set);
1504
1505	/*
1506	 * print the optional "match probability"
1507	 */
1508	if (rule->cmd_len > 0) {
1509		cmd = rule->cmd ;
1510		if (cmd->opcode == O_PROB) {
1511			ipfw_insn_u32 *p = (ipfw_insn_u32 *)cmd;
1512			double d = 1.0 * p->d[0];
1513
1514			d = (d / 0x7fffffff);
1515			printf("prob %f ", d);
1516		}
1517	}
1518
1519	/*
1520	 * first print actions
1521	 */
1522        for (l = rule->cmd_len - rule->act_ofs, cmd = ACTION_PTR(rule);
1523			l > 0 ; l -= F_LEN(cmd), cmd += F_LEN(cmd)) {
1524		switch(cmd->opcode) {
1525		case O_CHECK_STATE:
1526			printf("check-state");
1527			flags = HAVE_IP; /* avoid printing anything else */
1528			break;
1529
1530		case O_ACCEPT:
1531			printf("allow");
1532			break;
1533
1534		case O_COUNT:
1535			printf("count");
1536			break;
1537
1538		case O_DENY:
1539			printf("deny");
1540			break;
1541
1542		case O_REJECT:
1543			if (cmd->arg1 == ICMP_REJECT_RST)
1544				printf("reset");
1545			else if (cmd->arg1 == ICMP_UNREACH_HOST)
1546				printf("reject");
1547			else
1548				print_reject_code(cmd->arg1);
1549			break;
1550
1551		case O_UNREACH6:
1552			if (cmd->arg1 == ICMP6_UNREACH_RST)
1553				printf("reset6");
1554			else
1555				print_unreach6_code(cmd->arg1);
1556			break;
1557
1558		case O_SKIPTO:
1559			PRINT_UINT_ARG("skipto ", cmd->arg1);
1560			break;
1561
1562		case O_PIPE:
1563			PRINT_UINT_ARG("pipe ", cmd->arg1);
1564			break;
1565
1566		case O_QUEUE:
1567			PRINT_UINT_ARG("queue ", cmd->arg1);
1568			break;
1569
1570		case O_DIVERT:
1571			PRINT_UINT_ARG("divert ", cmd->arg1);
1572			break;
1573
1574		case O_TEE:
1575			PRINT_UINT_ARG("tee ", cmd->arg1);
1576			break;
1577
1578		case O_NETGRAPH:
1579			PRINT_UINT_ARG("netgraph ", cmd->arg1);
1580			break;
1581
1582		case O_NGTEE:
1583			PRINT_UINT_ARG("ngtee ", cmd->arg1);
1584			break;
1585
1586		case O_FORWARD_IP:
1587		    {
1588			ipfw_insn_sa *s = (ipfw_insn_sa *)cmd;
1589
1590			if (s->sa.sin_addr.s_addr == INADDR_ANY) {
1591				printf("fwd tablearg");
1592			} else {
1593				printf("fwd %s", inet_ntoa(s->sa.sin_addr));
1594			}
1595			if (s->sa.sin_port)
1596				printf(",%d", s->sa.sin_port);
1597		    }
1598			break;
1599
1600		case O_LOG: /* O_LOG is printed last */
1601			logptr = (ipfw_insn_log *)cmd;
1602			break;
1603
1604		case O_ALTQ: /* O_ALTQ is printed after O_LOG */
1605			altqptr = (ipfw_insn_altq *)cmd;
1606			break;
1607
1608		case O_TAG:
1609			tagptr = cmd;
1610			break;
1611
1612		case O_NAT:
1613 			printf("nat %u", cmd->arg1);
1614 			break;
1615
1616		default:
1617			printf("** unrecognized action %d len %d ",
1618				cmd->opcode, cmd->len);
1619		}
1620	}
1621	if (logptr) {
1622		if (logptr->max_log > 0)
1623			printf(" log logamount %d", logptr->max_log);
1624		else
1625			printf(" log");
1626	}
1627	if (altqptr) {
1628		const char *qname;
1629
1630		qname = altq_qid_to_name(altqptr->qid);
1631		if (qname == NULL)
1632			printf(" altq ?<%u>", altqptr->qid);
1633		else
1634			printf(" altq %s", qname);
1635	}
1636	if (tagptr) {
1637		if (tagptr->len & F_NOT)
1638			PRINT_UINT_ARG(" untag ", tagptr->arg1);
1639		else
1640			PRINT_UINT_ARG(" tag ", tagptr->arg1);
1641	}
1642
1643	/*
1644	 * then print the body.
1645	 */
1646        for (l = rule->act_ofs, cmd = rule->cmd ;
1647			l > 0 ; l -= F_LEN(cmd) , cmd += F_LEN(cmd)) {
1648		if ((cmd->len & F_OR) || (cmd->len & F_NOT))
1649			continue;
1650		if (cmd->opcode == O_IP4) {
1651			flags |= HAVE_PROTO4;
1652			break;
1653		} else if (cmd->opcode == O_IP6) {
1654			flags |= HAVE_PROTO6;
1655			break;
1656		}
1657	}
1658	if (rule->_pad & 1) {	/* empty rules before options */
1659		if (!do_compact) {
1660			show_prerequisites(&flags, HAVE_PROTO, 0);
1661			printf(" from any to any");
1662		}
1663		flags |= HAVE_IP | HAVE_OPTIONS;
1664	}
1665
1666	if (comment_only)
1667		comment = "...";
1668
1669        for (l = rule->act_ofs, cmd = rule->cmd ;
1670			l > 0 ; l -= F_LEN(cmd) , cmd += F_LEN(cmd)) {
1671		/* useful alias */
1672		ipfw_insn_u32 *cmd32 = (ipfw_insn_u32 *)cmd;
1673
1674		if (comment_only) {
1675			if (cmd->opcode != O_NOP)
1676				continue;
1677			printf(" // %s\n", (char *)(cmd + 1));
1678			return;
1679		}
1680
1681		show_prerequisites(&flags, 0, cmd->opcode);
1682
1683		switch(cmd->opcode) {
1684		case O_PROB:
1685			break;	/* done already */
1686
1687		case O_PROBE_STATE:
1688			break; /* no need to print anything here */
1689
1690		case O_IP_SRC:
1691		case O_IP_SRC_LOOKUP:
1692		case O_IP_SRC_MASK:
1693		case O_IP_SRC_ME:
1694		case O_IP_SRC_SET:
1695			show_prerequisites(&flags, HAVE_PROTO, 0);
1696			if (!(flags & HAVE_SRCIP))
1697				printf(" from");
1698			if ((cmd->len & F_OR) && !or_block)
1699				printf(" {");
1700			print_ip((ipfw_insn_ip *)cmd,
1701				(flags & HAVE_OPTIONS) ? " src-ip" : "");
1702			flags |= HAVE_SRCIP;
1703			break;
1704
1705		case O_IP_DST:
1706		case O_IP_DST_LOOKUP:
1707		case O_IP_DST_MASK:
1708		case O_IP_DST_ME:
1709		case O_IP_DST_SET:
1710			show_prerequisites(&flags, HAVE_PROTO|HAVE_SRCIP, 0);
1711			if (!(flags & HAVE_DSTIP))
1712				printf(" to");
1713			if ((cmd->len & F_OR) && !or_block)
1714				printf(" {");
1715			print_ip((ipfw_insn_ip *)cmd,
1716				(flags & HAVE_OPTIONS) ? " dst-ip" : "");
1717			flags |= HAVE_DSTIP;
1718			break;
1719
1720		case O_IP6_SRC:
1721		case O_IP6_SRC_MASK:
1722		case O_IP6_SRC_ME:
1723			show_prerequisites(&flags, HAVE_PROTO, 0);
1724			if (!(flags & HAVE_SRCIP))
1725				printf(" from");
1726			if ((cmd->len & F_OR) && !or_block)
1727				printf(" {");
1728			print_ip6((ipfw_insn_ip6 *)cmd,
1729			    (flags & HAVE_OPTIONS) ? " src-ip6" : "");
1730			flags |= HAVE_SRCIP | HAVE_PROTO;
1731			break;
1732
1733		case O_IP6_DST:
1734		case O_IP6_DST_MASK:
1735		case O_IP6_DST_ME:
1736			show_prerequisites(&flags, HAVE_PROTO|HAVE_SRCIP, 0);
1737			if (!(flags & HAVE_DSTIP))
1738				printf(" to");
1739			if ((cmd->len & F_OR) && !or_block)
1740				printf(" {");
1741			print_ip6((ipfw_insn_ip6 *)cmd,
1742			    (flags & HAVE_OPTIONS) ? " dst-ip6" : "");
1743			flags |= HAVE_DSTIP;
1744			break;
1745
1746		case O_FLOW6ID:
1747		print_flow6id( (ipfw_insn_u32 *) cmd );
1748		flags |= HAVE_OPTIONS;
1749		break;
1750
1751		case O_IP_DSTPORT:
1752			show_prerequisites(&flags, HAVE_IP, 0);
1753		case O_IP_SRCPORT:
1754			show_prerequisites(&flags, HAVE_PROTO|HAVE_SRCIP, 0);
1755			if ((cmd->len & F_OR) && !or_block)
1756				printf(" {");
1757			print_newports((ipfw_insn_u16 *)cmd, proto,
1758				(flags & HAVE_OPTIONS) ? cmd->opcode : 0);
1759			break;
1760
1761		case O_PROTO: {
1762			struct protoent *pe = NULL;
1763
1764			if ((cmd->len & F_OR) && !or_block)
1765				printf(" {");
1766			if (cmd->len & F_NOT)
1767				printf(" not");
1768			proto = cmd->arg1;
1769			pe = getprotobynumber(cmd->arg1);
1770			if ((flags & (HAVE_PROTO4 | HAVE_PROTO6)) &&
1771			    !(flags & HAVE_PROTO))
1772				show_prerequisites(&flags,
1773				    HAVE_IP | HAVE_OPTIONS, 0);
1774			if (flags & HAVE_OPTIONS)
1775				printf(" proto");
1776			if (pe)
1777				printf(" %s", pe->p_name);
1778			else
1779				printf(" %u", cmd->arg1);
1780			}
1781			flags |= HAVE_PROTO;
1782			break;
1783
1784		default: /*options ... */
1785			if (!(cmd->len & (F_OR|F_NOT)))
1786				if (((cmd->opcode == O_IP6) &&
1787				    (flags & HAVE_PROTO6)) ||
1788				    ((cmd->opcode == O_IP4) &&
1789				    (flags & HAVE_PROTO4)))
1790					break;
1791			show_prerequisites(&flags, HAVE_IP | HAVE_OPTIONS, 0);
1792			if ((cmd->len & F_OR) && !or_block)
1793				printf(" {");
1794			if (cmd->len & F_NOT && cmd->opcode != O_IN)
1795				printf(" not");
1796			switch(cmd->opcode) {
1797			case O_MACADDR2: {
1798				ipfw_insn_mac *m = (ipfw_insn_mac *)cmd;
1799
1800				printf(" MAC");
1801				print_mac(m->addr, m->mask);
1802				print_mac(m->addr + 6, m->mask + 6);
1803				}
1804				break;
1805
1806			case O_MAC_TYPE:
1807				print_newports((ipfw_insn_u16 *)cmd,
1808						IPPROTO_ETHERTYPE, cmd->opcode);
1809				break;
1810
1811
1812			case O_FRAG:
1813				printf(" frag");
1814				break;
1815
1816			case O_IN:
1817				printf(cmd->len & F_NOT ? " out" : " in");
1818				break;
1819
1820			case O_DIVERTED:
1821				switch (cmd->arg1) {
1822				case 3:
1823					printf(" diverted");
1824					break;
1825				case 1:
1826					printf(" diverted-loopback");
1827					break;
1828				case 2:
1829					printf(" diverted-output");
1830					break;
1831				default:
1832					printf(" diverted-?<%u>", cmd->arg1);
1833					break;
1834				}
1835				break;
1836
1837			case O_LAYER2:
1838				printf(" layer2");
1839				break;
1840			case O_XMIT:
1841			case O_RECV:
1842			case O_VIA:
1843			    {
1844				char const *s;
1845				ipfw_insn_if *cmdif = (ipfw_insn_if *)cmd;
1846
1847				if (cmd->opcode == O_XMIT)
1848					s = "xmit";
1849				else if (cmd->opcode == O_RECV)
1850					s = "recv";
1851				else /* if (cmd->opcode == O_VIA) */
1852					s = "via";
1853				if (cmdif->name[0] == '\0')
1854					printf(" %s %s", s,
1855					    inet_ntoa(cmdif->p.ip));
1856				else
1857					printf(" %s %s", s, cmdif->name);
1858
1859				break;
1860			    }
1861			case O_IPID:
1862				if (F_LEN(cmd) == 1)
1863				    printf(" ipid %u", cmd->arg1 );
1864				else
1865				    print_newports((ipfw_insn_u16 *)cmd, 0,
1866					O_IPID);
1867				break;
1868
1869			case O_IPTTL:
1870				if (F_LEN(cmd) == 1)
1871				    printf(" ipttl %u", cmd->arg1 );
1872				else
1873				    print_newports((ipfw_insn_u16 *)cmd, 0,
1874					O_IPTTL);
1875				break;
1876
1877			case O_IPVER:
1878				printf(" ipver %u", cmd->arg1 );
1879				break;
1880
1881			case O_IPPRECEDENCE:
1882				printf(" ipprecedence %u", (cmd->arg1) >> 5 );
1883				break;
1884
1885			case O_IPLEN:
1886				if (F_LEN(cmd) == 1)
1887				    printf(" iplen %u", cmd->arg1 );
1888				else
1889				    print_newports((ipfw_insn_u16 *)cmd, 0,
1890					O_IPLEN);
1891				break;
1892
1893			case O_IPOPT:
1894				print_flags("ipoptions", cmd, f_ipopts);
1895				break;
1896
1897			case O_IPTOS:
1898				print_flags("iptos", cmd, f_iptos);
1899				break;
1900
1901			case O_ICMPTYPE:
1902				print_icmptypes((ipfw_insn_u32 *)cmd);
1903				break;
1904
1905			case O_ESTAB:
1906				printf(" established");
1907				break;
1908
1909			case O_TCPDATALEN:
1910				if (F_LEN(cmd) == 1)
1911				    printf(" tcpdatalen %u", cmd->arg1 );
1912				else
1913				    print_newports((ipfw_insn_u16 *)cmd, 0,
1914					O_TCPDATALEN);
1915				break;
1916
1917			case O_TCPFLAGS:
1918				print_flags("tcpflags", cmd, f_tcpflags);
1919				break;
1920
1921			case O_TCPOPTS:
1922				print_flags("tcpoptions", cmd, f_tcpopts);
1923				break;
1924
1925			case O_TCPWIN:
1926				printf(" tcpwin %d", ntohs(cmd->arg1));
1927				break;
1928
1929			case O_TCPACK:
1930				printf(" tcpack %d", ntohl(cmd32->d[0]));
1931				break;
1932
1933			case O_TCPSEQ:
1934				printf(" tcpseq %d", ntohl(cmd32->d[0]));
1935				break;
1936
1937			case O_UID:
1938			    {
1939				struct passwd *pwd = getpwuid(cmd32->d[0]);
1940
1941				if (pwd)
1942					printf(" uid %s", pwd->pw_name);
1943				else
1944					printf(" uid %u", cmd32->d[0]);
1945			    }
1946				break;
1947
1948			case O_GID:
1949			    {
1950				struct group *grp = getgrgid(cmd32->d[0]);
1951
1952				if (grp)
1953					printf(" gid %s", grp->gr_name);
1954				else
1955					printf(" gid %u", cmd32->d[0]);
1956			    }
1957				break;
1958
1959			case O_JAIL:
1960				printf(" jail %d", cmd32->d[0]);
1961				break;
1962
1963			case O_VERREVPATH:
1964				printf(" verrevpath");
1965				break;
1966
1967			case O_VERSRCREACH:
1968				printf(" versrcreach");
1969				break;
1970
1971			case O_ANTISPOOF:
1972				printf(" antispoof");
1973				break;
1974
1975			case O_IPSEC:
1976				printf(" ipsec");
1977				break;
1978
1979			case O_NOP:
1980				comment = (char *)(cmd + 1);
1981				break;
1982
1983			case O_KEEP_STATE:
1984				printf(" keep-state");
1985				break;
1986
1987			case O_LIMIT: {
1988				struct _s_x *p = limit_masks;
1989				ipfw_insn_limit *c = (ipfw_insn_limit *)cmd;
1990				uint8_t x = c->limit_mask;
1991				char const *comma = " ";
1992
1993				printf(" limit");
1994				for (; p->x != 0 ; p++)
1995					if ((x & p->x) == p->x) {
1996						x &= ~p->x;
1997						printf("%s%s", comma, p->s);
1998						comma = ",";
1999					}
2000				PRINT_UINT_ARG(" ", c->conn_limit);
2001				break;
2002			}
2003
2004			case O_IP6:
2005				printf(" ip6");
2006				break;
2007
2008			case O_IP4:
2009				printf(" ip4");
2010				break;
2011
2012			case O_ICMP6TYPE:
2013				print_icmp6types((ipfw_insn_u32 *)cmd);
2014				break;
2015
2016			case O_EXT_HDR:
2017				print_ext6hdr( (ipfw_insn *) cmd );
2018				break;
2019
2020			case O_TAGGED:
2021				if (F_LEN(cmd) == 1)
2022					PRINT_UINT_ARG(" tagged ", cmd->arg1);
2023				else
2024					print_newports((ipfw_insn_u16 *)cmd, 0,
2025					    O_TAGGED);
2026				break;
2027
2028			default:
2029				printf(" [opcode %d len %d]",
2030				    cmd->opcode, cmd->len);
2031			}
2032		}
2033		if (cmd->len & F_OR) {
2034			printf(" or");
2035			or_block = 1;
2036		} else if (or_block) {
2037			printf(" }");
2038			or_block = 0;
2039		}
2040	}
2041	show_prerequisites(&flags, HAVE_IP, 0);
2042	if (comment)
2043		printf(" // %s", comment);
2044	printf("\n");
2045}
2046
2047static void
2048show_dyn_ipfw(ipfw_dyn_rule *d, int pcwidth, int bcwidth)
2049{
2050	struct protoent *pe;
2051	struct in_addr a;
2052	uint16_t rulenum;
2053	char buf[INET6_ADDRSTRLEN];
2054
2055	if (!do_expired) {
2056		if (!d->expire && !(d->dyn_type == O_LIMIT_PARENT))
2057			return;
2058	}
2059	bcopy(&d->rule, &rulenum, sizeof(rulenum));
2060	printf("%05d", rulenum);
2061	if (pcwidth>0 || bcwidth>0)
2062	    printf(" %*llu %*llu (%ds)", pcwidth,
2063		align_uint64(&d->pcnt), bcwidth,
2064		align_uint64(&d->bcnt), d->expire);
2065	switch (d->dyn_type) {
2066	case O_LIMIT_PARENT:
2067		printf(" PARENT %d", d->count);
2068		break;
2069	case O_LIMIT:
2070		printf(" LIMIT");
2071		break;
2072	case O_KEEP_STATE: /* bidir, no mask */
2073		printf(" STATE");
2074		break;
2075	}
2076
2077	if ((pe = getprotobynumber(d->id.proto)) != NULL)
2078		printf(" %s", pe->p_name);
2079	else
2080		printf(" proto %u", d->id.proto);
2081
2082	if (d->id.addr_type == 4) {
2083		a.s_addr = htonl(d->id.src_ip);
2084		printf(" %s %d", inet_ntoa(a), d->id.src_port);
2085
2086		a.s_addr = htonl(d->id.dst_ip);
2087		printf(" <-> %s %d", inet_ntoa(a), d->id.dst_port);
2088	} else if (d->id.addr_type == 6) {
2089		printf(" %s %d", inet_ntop(AF_INET6, &d->id.src_ip6, buf,
2090		    sizeof(buf)), d->id.src_port);
2091		printf(" <-> %s %d", inet_ntop(AF_INET6, &d->id.dst_ip6, buf,
2092		    sizeof(buf)), d->id.dst_port);
2093	} else
2094		printf(" UNKNOWN <-> UNKNOWN\n");
2095
2096	printf("\n");
2097}
2098
2099static int
2100sort_q(const void *pa, const void *pb)
2101{
2102	int rev = (do_sort < 0);
2103	int field = rev ? -do_sort : do_sort;
2104	long long res = 0;
2105	const struct dn_flow_queue *a = pa;
2106	const struct dn_flow_queue *b = pb;
2107
2108	switch (field) {
2109	case 1: /* pkts */
2110		res = a->len - b->len;
2111		break;
2112	case 2: /* bytes */
2113		res = a->len_bytes - b->len_bytes;
2114		break;
2115
2116	case 3: /* tot pkts */
2117		res = a->tot_pkts - b->tot_pkts;
2118		break;
2119
2120	case 4: /* tot bytes */
2121		res = a->tot_bytes - b->tot_bytes;
2122		break;
2123	}
2124	if (res < 0)
2125		res = -1;
2126	if (res > 0)
2127		res = 1;
2128	return (int)(rev ? res : -res);
2129}
2130
2131static void
2132list_queues(struct dn_flow_set *fs, struct dn_flow_queue *q)
2133{
2134	int l;
2135	int index_printed, indexes = 0;
2136	char buff[255];
2137	struct protoent *pe;
2138
2139	if (fs->rq_elements == 0)
2140		return;
2141
2142	if (do_sort != 0)
2143		heapsort(q, fs->rq_elements, sizeof *q, sort_q);
2144
2145	/* Print IPv4 flows */
2146	index_printed = 0;
2147	for (l = 0; l < fs->rq_elements; l++) {
2148		struct in_addr ina;
2149
2150		/* XXX: Should check for IPv4 flows */
2151		if (IS_IP6_FLOW_ID(&(q[l].id)))
2152			continue;
2153
2154		if (!index_printed) {
2155			index_printed = 1;
2156			if (indexes > 0)	/* currently a no-op */
2157				printf("\n");
2158			indexes++;
2159			printf("    "
2160			    "mask: 0x%02x 0x%08x/0x%04x -> 0x%08x/0x%04x\n",
2161			    fs->flow_mask.proto,
2162			    fs->flow_mask.src_ip, fs->flow_mask.src_port,
2163			    fs->flow_mask.dst_ip, fs->flow_mask.dst_port);
2164
2165			printf("BKT Prot ___Source IP/port____ "
2166			    "____Dest. IP/port____ "
2167			    "Tot_pkt/bytes Pkt/Byte Drp\n");
2168		}
2169
2170		printf("%3d ", q[l].hash_slot);
2171		pe = getprotobynumber(q[l].id.proto);
2172		if (pe)
2173			printf("%-4s ", pe->p_name);
2174		else
2175			printf("%4u ", q[l].id.proto);
2176		ina.s_addr = htonl(q[l].id.src_ip);
2177		printf("%15s/%-5d ",
2178		    inet_ntoa(ina), q[l].id.src_port);
2179		ina.s_addr = htonl(q[l].id.dst_ip);
2180		printf("%15s/%-5d ",
2181		    inet_ntoa(ina), q[l].id.dst_port);
2182		printf("%4qu %8qu %2u %4u %3u\n",
2183		    q[l].tot_pkts, q[l].tot_bytes,
2184		    q[l].len, q[l].len_bytes, q[l].drops);
2185		if (verbose)
2186			printf("   S %20qd  F %20qd\n",
2187			    q[l].S, q[l].F);
2188	}
2189
2190	/* Print IPv6 flows */
2191	index_printed = 0;
2192	for (l = 0; l < fs->rq_elements; l++) {
2193		if (!IS_IP6_FLOW_ID(&(q[l].id)))
2194			continue;
2195
2196		if (!index_printed) {
2197			index_printed = 1;
2198			if (indexes > 0)
2199				printf("\n");
2200			indexes++;
2201			printf("\n        mask: proto: 0x%02x, flow_id: 0x%08x,  ",
2202			    fs->flow_mask.proto, fs->flow_mask.flow_id6);
2203			inet_ntop(AF_INET6, &(fs->flow_mask.src_ip6),
2204			    buff, sizeof(buff));
2205			printf("%s/0x%04x -> ", buff, fs->flow_mask.src_port);
2206			inet_ntop( AF_INET6, &(fs->flow_mask.dst_ip6),
2207			    buff, sizeof(buff) );
2208			printf("%s/0x%04x\n", buff, fs->flow_mask.dst_port);
2209
2210			printf("BKT ___Prot___ _flow-id_ "
2211			    "______________Source IPv6/port_______________ "
2212			    "_______________Dest. IPv6/port_______________ "
2213			    "Tot_pkt/bytes Pkt/Byte Drp\n");
2214		}
2215		printf("%3d ", q[l].hash_slot);
2216		pe = getprotobynumber(q[l].id.proto);
2217		if (pe != NULL)
2218			printf("%9s ", pe->p_name);
2219		else
2220			printf("%9u ", q[l].id.proto);
2221		printf("%7d  %39s/%-5d ", q[l].id.flow_id6,
2222		    inet_ntop(AF_INET6, &(q[l].id.src_ip6), buff, sizeof(buff)),
2223		    q[l].id.src_port);
2224		printf(" %39s/%-5d ",
2225		    inet_ntop(AF_INET6, &(q[l].id.dst_ip6), buff, sizeof(buff)),
2226		    q[l].id.dst_port);
2227		printf(" %4qu %8qu %2u %4u %3u\n",
2228		    q[l].tot_pkts, q[l].tot_bytes,
2229		    q[l].len, q[l].len_bytes, q[l].drops);
2230		if (verbose)
2231			printf("   S %20qd  F %20qd\n", q[l].S, q[l].F);
2232	}
2233}
2234
2235static void
2236print_flowset_parms(struct dn_flow_set *fs, char *prefix)
2237{
2238	int l;
2239	char qs[30];
2240	char plr[30];
2241	char red[90];	/* Display RED parameters */
2242
2243	l = fs->qsize;
2244	if (fs->flags_fs & DN_QSIZE_IS_BYTES) {
2245		if (l >= 8192)
2246			sprintf(qs, "%d KB", l / 1024);
2247		else
2248			sprintf(qs, "%d B", l);
2249	} else
2250		sprintf(qs, "%3d sl.", l);
2251	if (fs->plr)
2252		sprintf(plr, "plr %f", 1.0 * fs->plr / (double)(0x7fffffff));
2253	else
2254		plr[0] = '\0';
2255	if (fs->flags_fs & DN_IS_RED)	/* RED parameters */
2256		sprintf(red,
2257		    "\n\t  %cRED w_q %f min_th %d max_th %d max_p %f",
2258		    (fs->flags_fs & DN_IS_GENTLE_RED) ? 'G' : ' ',
2259		    1.0 * fs->w_q / (double)(1 << SCALE_RED),
2260		    SCALE_VAL(fs->min_th),
2261		    SCALE_VAL(fs->max_th),
2262		    1.0 * fs->max_p / (double)(1 << SCALE_RED));
2263	else
2264		sprintf(red, "droptail");
2265
2266	printf("%s %s%s %d queues (%d buckets) %s\n",
2267	    prefix, qs, plr, fs->rq_elements, fs->rq_size, red);
2268}
2269
2270static void
2271list_pipes(void *data, uint nbytes, int ac, char *av[])
2272{
2273	int rulenum;
2274	void *next = data;
2275	struct dn_pipe *p = (struct dn_pipe *) data;
2276	struct dn_flow_set *fs;
2277	struct dn_flow_queue *q;
2278	int l;
2279
2280	if (ac > 0)
2281		rulenum = strtoul(*av++, NULL, 10);
2282	else
2283		rulenum = 0;
2284	for (; nbytes >= sizeof *p; p = (struct dn_pipe *)next) {
2285		double b = p->bandwidth;
2286		char buf[30];
2287		char prefix[80];
2288
2289		if (SLIST_NEXT(p, next) != (struct dn_pipe *)DN_IS_PIPE)
2290			break;	/* done with pipes, now queues */
2291
2292		/*
2293		 * compute length, as pipe have variable size
2294		 */
2295		l = sizeof(*p) + p->fs.rq_elements * sizeof(*q);
2296		next = (char *)p + l;
2297		nbytes -= l;
2298
2299		if ((rulenum != 0 && rulenum != p->pipe_nr) || do_pipe == 2)
2300			continue;
2301
2302		/*
2303		 * Print rate (or clocking interface)
2304		 */
2305		if (p->if_name[0] != '\0')
2306			sprintf(buf, "%s", p->if_name);
2307		else if (b == 0)
2308			sprintf(buf, "unlimited");
2309		else if (b >= 1000000)
2310			sprintf(buf, "%7.3f Mbit/s", b/1000000);
2311		else if (b >= 1000)
2312			sprintf(buf, "%7.3f Kbit/s", b/1000);
2313		else
2314			sprintf(buf, "%7.3f bit/s ", b);
2315
2316		sprintf(prefix, "%05d: %s %4d ms ",
2317		    p->pipe_nr, buf, p->delay);
2318		print_flowset_parms(&(p->fs), prefix);
2319		if (verbose)
2320			printf("   V %20qd\n", p->V >> MY_M);
2321
2322		q = (struct dn_flow_queue *)(p+1);
2323		list_queues(&(p->fs), q);
2324	}
2325	for (fs = next; nbytes >= sizeof *fs; fs = next) {
2326		char prefix[80];
2327
2328		if (SLIST_NEXT(fs, next) != (struct dn_flow_set *)DN_IS_QUEUE)
2329			break;
2330		l = sizeof(*fs) + fs->rq_elements * sizeof(*q);
2331		next = (char *)fs + l;
2332		nbytes -= l;
2333
2334		if (rulenum != 0 && ((rulenum != fs->fs_nr && do_pipe == 2) ||
2335		    (rulenum != fs->parent_nr && do_pipe == 1))) {
2336			continue;
2337		}
2338
2339		q = (struct dn_flow_queue *)(fs+1);
2340		sprintf(prefix, "q%05d: weight %d pipe %d ",
2341		    fs->fs_nr, fs->weight, fs->parent_nr);
2342		print_flowset_parms(fs, prefix);
2343		list_queues(fs, q);
2344	}
2345}
2346
2347/*
2348 * This one handles all set-related commands
2349 * 	ipfw set { show | enable | disable }
2350 * 	ipfw set swap X Y
2351 * 	ipfw set move X to Y
2352 * 	ipfw set move rule X to Y
2353 */
2354static void
2355sets_handler(int ac, char *av[])
2356{
2357	uint32_t set_disable, masks[2];
2358	int i, nbytes;
2359	uint16_t rulenum;
2360	uint8_t cmd, new_set;
2361
2362	ac--;
2363	av++;
2364
2365	if (!ac)
2366		errx(EX_USAGE, "set needs command");
2367	if (_substrcmp(*av, "show") == 0) {
2368		void *data;
2369		char const *msg;
2370
2371		nbytes = sizeof(struct ip_fw);
2372		if ((data = calloc(1, nbytes)) == NULL)
2373			err(EX_OSERR, "calloc");
2374		if (do_cmd(IP_FW_GET, data, (uintptr_t)&nbytes) < 0)
2375			err(EX_OSERR, "getsockopt(IP_FW_GET)");
2376		bcopy(&((struct ip_fw *)data)->next_rule,
2377			&set_disable, sizeof(set_disable));
2378
2379		for (i = 0, msg = "disable" ; i < RESVD_SET; i++)
2380			if ((set_disable & (1<<i))) {
2381				printf("%s %d", msg, i);
2382				msg = "";
2383			}
2384		msg = (set_disable) ? " enable" : "enable";
2385		for (i = 0; i < RESVD_SET; i++)
2386			if (!(set_disable & (1<<i))) {
2387				printf("%s %d", msg, i);
2388				msg = "";
2389			}
2390		printf("\n");
2391	} else if (_substrcmp(*av, "swap") == 0) {
2392		ac--; av++;
2393		if (ac != 2)
2394			errx(EX_USAGE, "set swap needs 2 set numbers\n");
2395		rulenum = atoi(av[0]);
2396		new_set = atoi(av[1]);
2397		if (!isdigit(*(av[0])) || rulenum > RESVD_SET)
2398			errx(EX_DATAERR, "invalid set number %s\n", av[0]);
2399		if (!isdigit(*(av[1])) || new_set > RESVD_SET)
2400			errx(EX_DATAERR, "invalid set number %s\n", av[1]);
2401		masks[0] = (4 << 24) | (new_set << 16) | (rulenum);
2402		i = do_cmd(IP_FW_DEL, masks, sizeof(uint32_t));
2403	} else if (_substrcmp(*av, "move") == 0) {
2404		ac--; av++;
2405		if (ac && _substrcmp(*av, "rule") == 0) {
2406			cmd = 2;
2407			ac--; av++;
2408		} else
2409			cmd = 3;
2410		if (ac != 3 || _substrcmp(av[1], "to") != 0)
2411			errx(EX_USAGE, "syntax: set move [rule] X to Y\n");
2412		rulenum = atoi(av[0]);
2413		new_set = atoi(av[2]);
2414		if (!isdigit(*(av[0])) || (cmd == 3 && rulenum > RESVD_SET) ||
2415			(cmd == 2 && rulenum == 65535) )
2416			errx(EX_DATAERR, "invalid source number %s\n", av[0]);
2417		if (!isdigit(*(av[2])) || new_set > RESVD_SET)
2418			errx(EX_DATAERR, "invalid dest. set %s\n", av[1]);
2419		masks[0] = (cmd << 24) | (new_set << 16) | (rulenum);
2420		i = do_cmd(IP_FW_DEL, masks, sizeof(uint32_t));
2421	} else if (_substrcmp(*av, "disable") == 0 ||
2422		   _substrcmp(*av, "enable") == 0 ) {
2423		int which = _substrcmp(*av, "enable") == 0 ? 1 : 0;
2424
2425		ac--; av++;
2426		masks[0] = masks[1] = 0;
2427
2428		while (ac) {
2429			if (isdigit(**av)) {
2430				i = atoi(*av);
2431				if (i < 0 || i > RESVD_SET)
2432					errx(EX_DATAERR,
2433					    "invalid set number %d\n", i);
2434				masks[which] |= (1<<i);
2435			} else if (_substrcmp(*av, "disable") == 0)
2436				which = 0;
2437			else if (_substrcmp(*av, "enable") == 0)
2438				which = 1;
2439			else
2440				errx(EX_DATAERR,
2441					"invalid set command %s\n", *av);
2442			av++; ac--;
2443		}
2444		if ( (masks[0] & masks[1]) != 0 )
2445			errx(EX_DATAERR,
2446			    "cannot enable and disable the same set\n");
2447
2448		i = do_cmd(IP_FW_DEL, masks, sizeof(masks));
2449		if (i)
2450			warn("set enable/disable: setsockopt(IP_FW_DEL)");
2451	} else
2452		errx(EX_USAGE, "invalid set command %s\n", *av);
2453}
2454
2455static void
2456sysctl_handler(int ac, char *av[], int which)
2457{
2458	ac--;
2459	av++;
2460
2461	if (ac == 0) {
2462		warnx("missing keyword to enable/disable\n");
2463	} else if (_substrcmp(*av, "firewall") == 0) {
2464		sysctlbyname("net.inet.ip.fw.enable", NULL, 0,
2465		    &which, sizeof(which));
2466	} else if (_substrcmp(*av, "one_pass") == 0) {
2467		sysctlbyname("net.inet.ip.fw.one_pass", NULL, 0,
2468		    &which, sizeof(which));
2469	} else if (_substrcmp(*av, "debug") == 0) {
2470		sysctlbyname("net.inet.ip.fw.debug", NULL, 0,
2471		    &which, sizeof(which));
2472	} else if (_substrcmp(*av, "verbose") == 0) {
2473		sysctlbyname("net.inet.ip.fw.verbose", NULL, 0,
2474		    &which, sizeof(which));
2475	} else if (_substrcmp(*av, "dyn_keepalive") == 0) {
2476		sysctlbyname("net.inet.ip.fw.dyn_keepalive", NULL, 0,
2477		    &which, sizeof(which));
2478	} else if (_substrcmp(*av, "altq") == 0) {
2479		altq_set_enabled(which);
2480	} else {
2481		warnx("unrecognize enable/disable keyword: %s\n", *av);
2482	}
2483}
2484
2485static void
2486list(int ac, char *av[], int show_counters)
2487{
2488	struct ip_fw *r;
2489	ipfw_dyn_rule *dynrules, *d;
2490
2491#define NEXT(r)	((struct ip_fw *)((char *)r + RULESIZE(r)))
2492	char *lim;
2493	void *data = NULL;
2494	int bcwidth, n, nbytes, nstat, ndyn, pcwidth, width;
2495	int exitval = EX_OK;
2496	int lac;
2497	char **lav;
2498	u_long rnum, last;
2499	char *endptr;
2500	int seen = 0;
2501
2502	const int ocmd = do_pipe ? IP_DUMMYNET_GET : IP_FW_GET;
2503	int nalloc = 1024;	/* start somewhere... */
2504
2505	last = 0;
2506
2507	if (test_only) {
2508		fprintf(stderr, "Testing only, list disabled\n");
2509		return;
2510	}
2511
2512	ac--;
2513	av++;
2514
2515	/* get rules or pipes from kernel, resizing array as necessary */
2516	nbytes = nalloc;
2517
2518	while (nbytes >= nalloc) {
2519		nalloc = nalloc * 2 + 200;
2520		nbytes = nalloc;
2521		if ((data = realloc(data, nbytes)) == NULL)
2522			err(EX_OSERR, "realloc");
2523		if (do_cmd(ocmd, data, (uintptr_t)&nbytes) < 0)
2524			err(EX_OSERR, "getsockopt(IP_%s_GET)",
2525				do_pipe ? "DUMMYNET" : "FW");
2526	}
2527
2528	if (do_pipe) {
2529		list_pipes(data, nbytes, ac, av);
2530		goto done;
2531	}
2532
2533	/*
2534	 * Count static rules. They have variable size so we
2535	 * need to scan the list to count them.
2536	 */
2537	for (nstat = 1, r = data, lim = (char *)data + nbytes;
2538		    r->rulenum < 65535 && (char *)r < lim;
2539		    ++nstat, r = NEXT(r) )
2540		; /* nothing */
2541
2542	/*
2543	 * Count dynamic rules. This is easier as they have
2544	 * fixed size.
2545	 */
2546	r = NEXT(r);
2547	dynrules = (ipfw_dyn_rule *)r ;
2548	n = (char *)r - (char *)data;
2549	ndyn = (nbytes - n) / sizeof *dynrules;
2550
2551	/* if showing stats, figure out column widths ahead of time */
2552	bcwidth = pcwidth = 0;
2553	if (show_counters) {
2554		for (n = 0, r = data; n < nstat; n++, r = NEXT(r)) {
2555			/* packet counter */
2556			width = snprintf(NULL, 0, "%llu",
2557			    align_uint64(&r->pcnt));
2558			if (width > pcwidth)
2559				pcwidth = width;
2560
2561			/* byte counter */
2562			width = snprintf(NULL, 0, "%llu",
2563			    align_uint64(&r->bcnt));
2564			if (width > bcwidth)
2565				bcwidth = width;
2566		}
2567	}
2568	if (do_dynamic && ndyn) {
2569		for (n = 0, d = dynrules; n < ndyn; n++, d++) {
2570			width = snprintf(NULL, 0, "%llu",
2571			    align_uint64(&d->pcnt));
2572			if (width > pcwidth)
2573				pcwidth = width;
2574
2575			width = snprintf(NULL, 0, "%llu",
2576			    align_uint64(&d->bcnt));
2577			if (width > bcwidth)
2578				bcwidth = width;
2579		}
2580	}
2581	/* if no rule numbers were specified, list all rules */
2582	if (ac == 0) {
2583		for (n = 0, r = data; n < nstat; n++, r = NEXT(r) )
2584			show_ipfw(r, pcwidth, bcwidth);
2585
2586		if (do_dynamic && ndyn) {
2587			printf("## Dynamic rules (%d):\n", ndyn);
2588			for (n = 0, d = dynrules; n < ndyn; n++, d++)
2589				show_dyn_ipfw(d, pcwidth, bcwidth);
2590		}
2591		goto done;
2592	}
2593
2594	/* display specific rules requested on command line */
2595
2596	for (lac = ac, lav = av; lac != 0; lac--) {
2597		/* convert command line rule # */
2598		last = rnum = strtoul(*lav++, &endptr, 10);
2599		if (*endptr == '-')
2600			last = strtoul(endptr+1, &endptr, 10);
2601		if (*endptr) {
2602			exitval = EX_USAGE;
2603			warnx("invalid rule number: %s", *(lav - 1));
2604			continue;
2605		}
2606		for (n = seen = 0, r = data; n < nstat; n++, r = NEXT(r) ) {
2607			if (r->rulenum > last)
2608				break;
2609			if (r->rulenum >= rnum && r->rulenum <= last) {
2610				show_ipfw(r, pcwidth, bcwidth);
2611				seen = 1;
2612			}
2613		}
2614		if (!seen) {
2615			/* give precedence to other error(s) */
2616			if (exitval == EX_OK)
2617				exitval = EX_UNAVAILABLE;
2618			warnx("rule %lu does not exist", rnum);
2619		}
2620	}
2621
2622	if (do_dynamic && ndyn) {
2623		printf("## Dynamic rules:\n");
2624		for (lac = ac, lav = av; lac != 0; lac--) {
2625			last = rnum = strtoul(*lav++, &endptr, 10);
2626			if (*endptr == '-')
2627				last = strtoul(endptr+1, &endptr, 10);
2628			if (*endptr)
2629				/* already warned */
2630				continue;
2631			for (n = 0, d = dynrules; n < ndyn; n++, d++) {
2632				uint16_t rulenum;
2633
2634				bcopy(&d->rule, &rulenum, sizeof(rulenum));
2635				if (rulenum > rnum)
2636					break;
2637				if (r->rulenum >= rnum && r->rulenum <= last)
2638					show_dyn_ipfw(d, pcwidth, bcwidth);
2639			}
2640		}
2641	}
2642
2643	ac = 0;
2644
2645done:
2646	free(data);
2647
2648	if (exitval != EX_OK)
2649		exit(exitval);
2650#undef NEXT
2651}
2652
2653static void
2654show_usage(void)
2655{
2656	fprintf(stderr, "usage: ipfw [options]\n"
2657"do \"ipfw -h\" or see ipfw manpage for details\n"
2658);
2659	exit(EX_USAGE);
2660}
2661
2662static void
2663help(void)
2664{
2665	fprintf(stderr,
2666"ipfw syntax summary (but please do read the ipfw(8) manpage):\n"
2667"ipfw [-abcdefhnNqStTv] <command> where <command> is one of:\n"
2668"add [num] [set N] [prob x] RULE-BODY\n"
2669"{pipe|queue} N config PIPE-BODY\n"
2670"[pipe|queue] {zero|delete|show} [N{,N}]\n"
2671"nat N config {ip IPADDR|if IFNAME|log|deny_in|same_ports|unreg_only|reset|\n"
2672"		reverse|proxy_only|redirect_addr linkspec|\n"
2673"		redirect_port linkspec|redirect_proto linkspec}\n"
2674"set [disable N... enable N...] | move [rule] X to Y | swap X Y | show\n"
2675"table N {add ip[/bits] [value] | delete ip[/bits] | flush | list}\n"
2676"\n"
2677"RULE-BODY:	check-state [PARAMS] | ACTION [PARAMS] ADDR [OPTION_LIST]\n"
2678"ACTION:	check-state | allow | count | deny | unreach{,6} CODE |\n"
2679"               skipto N | {divert|tee} PORT | forward ADDR |\n"
2680"               pipe N | queue N | nat N\n"
2681"PARAMS: 	[log [logamount LOGLIMIT]] [altq QUEUE_NAME]\n"
2682"ADDR:		[ MAC dst src ether_type ] \n"
2683"		[ ip from IPADDR [ PORT ] to IPADDR [ PORTLIST ] ]\n"
2684"		[ ipv6|ip6 from IP6ADDR [ PORT ] to IP6ADDR [ PORTLIST ] ]\n"
2685"IPADDR:	[not] { any | me | ip/bits{x,y,z} | table(t[,v]) | IPLIST }\n"
2686"IP6ADDR:	[not] { any | me | me6 | ip6/bits | IP6LIST }\n"
2687"IP6LIST:	{ ip6 | ip6/bits }[,IP6LIST]\n"
2688"IPLIST:	{ ip | ip/bits | ip:mask }[,IPLIST]\n"
2689"OPTION_LIST:	OPTION [OPTION_LIST]\n"
2690"OPTION:	bridged | diverted | diverted-loopback | diverted-output |\n"
2691"	{dst-ip|src-ip} IPADDR | {dst-ip6|src-ip6|dst-ipv6|src-ipv6} IP6ADDR |\n"
2692"	{dst-port|src-port} LIST |\n"
2693"	estab | frag | {gid|uid} N | icmptypes LIST | in | out | ipid LIST |\n"
2694"	iplen LIST | ipoptions SPEC | ipprecedence | ipsec | iptos SPEC |\n"
2695"	ipttl LIST | ipversion VER | keep-state | layer2 | limit ... |\n"
2696"	icmp6types LIST | ext6hdr LIST | flow-id N[,N] |\n"
2697"	mac ... | mac-type LIST | proto LIST | {recv|xmit|via} {IF|IPADDR} |\n"
2698"	setup | {tcpack|tcpseq|tcpwin} NN | tcpflags SPEC | tcpoptions SPEC |\n"
2699"	tcpdatalen LIST | verrevpath | versrcreach | antispoof\n"
2700);
2701exit(0);
2702}
2703
2704
2705static int
2706lookup_host (char *host, struct in_addr *ipaddr)
2707{
2708	struct hostent *he;
2709
2710	if (!inet_aton(host, ipaddr)) {
2711		if ((he = gethostbyname(host)) == NULL)
2712			return(-1);
2713		*ipaddr = *(struct in_addr *)he->h_addr_list[0];
2714	}
2715	return(0);
2716}
2717
2718/*
2719 * fills the addr and mask fields in the instruction as appropriate from av.
2720 * Update length as appropriate.
2721 * The following formats are allowed:
2722 *	me	returns O_IP_*_ME
2723 *	1.2.3.4		single IP address
2724 *	1.2.3.4:5.6.7.8	address:mask
2725 *	1.2.3.4/24	address/mask
2726 *	1.2.3.4/26{1,6,5,4,23}	set of addresses in a subnet
2727 * We can have multiple comma-separated address/mask entries.
2728 */
2729static void
2730fill_ip(ipfw_insn_ip *cmd, char *av)
2731{
2732	int len = 0;
2733	uint32_t *d = ((ipfw_insn_u32 *)cmd)->d;
2734
2735	cmd->o.len &= ~F_LEN_MASK;	/* zero len */
2736
2737	if (_substrcmp(av, "any") == 0)
2738		return;
2739
2740	if (_substrcmp(av, "me") == 0) {
2741		cmd->o.len |= F_INSN_SIZE(ipfw_insn);
2742		return;
2743	}
2744
2745	if (strncmp(av, "table(", 6) == 0) {
2746		char *p = strchr(av + 6, ',');
2747
2748		if (p)
2749			*p++ = '\0';
2750		cmd->o.opcode = O_IP_DST_LOOKUP;
2751		cmd->o.arg1 = strtoul(av + 6, NULL, 0);
2752		if (p) {
2753			cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32);
2754			d[0] = strtoul(p, NULL, 0);
2755		} else
2756			cmd->o.len |= F_INSN_SIZE(ipfw_insn);
2757		return;
2758	}
2759
2760    while (av) {
2761	/*
2762	 * After the address we can have '/' or ':' indicating a mask,
2763	 * ',' indicating another address follows, '{' indicating a
2764	 * set of addresses of unspecified size.
2765	 */
2766	char *t = NULL, *p = strpbrk(av, "/:,{");
2767	int masklen;
2768	char md, nd;
2769
2770	if (p) {
2771		md = *p;
2772		*p++ = '\0';
2773		if ((t = strpbrk(p, ",{")) != NULL) {
2774			nd = *t;
2775			*t = '\0';
2776		}
2777	} else
2778		md = '\0';
2779
2780	if (lookup_host(av, (struct in_addr *)&d[0]) != 0)
2781		errx(EX_NOHOST, "hostname ``%s'' unknown", av);
2782	switch (md) {
2783	case ':':
2784		if (!inet_aton(p, (struct in_addr *)&d[1]))
2785			errx(EX_DATAERR, "bad netmask ``%s''", p);
2786		break;
2787	case '/':
2788		masklen = atoi(p);
2789		if (masklen == 0)
2790			d[1] = htonl(0);	/* mask */
2791		else if (masklen > 32)
2792			errx(EX_DATAERR, "bad width ``%s''", p);
2793		else
2794			d[1] = htonl(~0 << (32 - masklen));
2795		break;
2796	case '{':	/* no mask, assume /24 and put back the '{' */
2797		d[1] = htonl(~0 << (32 - 24));
2798		*(--p) = md;
2799		break;
2800
2801	case ',':	/* single address plus continuation */
2802		*(--p) = md;
2803		/* FALLTHROUGH */
2804	case 0:		/* initialization value */
2805	default:
2806		d[1] = htonl(~0);	/* force /32 */
2807		break;
2808	}
2809	d[0] &= d[1];		/* mask base address with mask */
2810	if (t)
2811		*t = nd;
2812	/* find next separator */
2813	if (p)
2814		p = strpbrk(p, ",{");
2815	if (p && *p == '{') {
2816		/*
2817		 * We have a set of addresses. They are stored as follows:
2818		 *   arg1	is the set size (powers of 2, 2..256)
2819		 *   addr	is the base address IN HOST FORMAT
2820		 *   mask..	is an array of arg1 bits (rounded up to
2821		 *		the next multiple of 32) with bits set
2822		 *		for each host in the map.
2823		 */
2824		uint32_t *map = (uint32_t *)&cmd->mask;
2825		int low, high;
2826		int i = contigmask((uint8_t *)&(d[1]), 32);
2827
2828		if (len > 0)
2829			errx(EX_DATAERR, "address set cannot be in a list");
2830		if (i < 24 || i > 31)
2831			errx(EX_DATAERR, "invalid set with mask %d\n", i);
2832		cmd->o.arg1 = 1<<(32-i);	/* map length		*/
2833		d[0] = ntohl(d[0]);		/* base addr in host format */
2834		cmd->o.opcode = O_IP_DST_SET;	/* default */
2835		cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32) + (cmd->o.arg1+31)/32;
2836		for (i = 0; i < (cmd->o.arg1+31)/32 ; i++)
2837			map[i] = 0;	/* clear map */
2838
2839		av = p + 1;
2840		low = d[0] & 0xff;
2841		high = low + cmd->o.arg1 - 1;
2842		/*
2843		 * Here, i stores the previous value when we specify a range
2844		 * of addresses within a mask, e.g. 45-63. i = -1 means we
2845		 * have no previous value.
2846		 */
2847		i = -1;	/* previous value in a range */
2848		while (isdigit(*av)) {
2849			char *s;
2850			int a = strtol(av, &s, 0);
2851
2852			if (s == av) { /* no parameter */
2853			    if (*av != '}')
2854				errx(EX_DATAERR, "set not closed\n");
2855			    if (i != -1)
2856				errx(EX_DATAERR, "incomplete range %d-", i);
2857			    break;
2858			}
2859			if (a < low || a > high)
2860			    errx(EX_DATAERR, "addr %d out of range [%d-%d]\n",
2861				a, low, high);
2862			a -= low;
2863			if (i == -1)	/* no previous in range */
2864			    i = a;
2865			else {		/* check that range is valid */
2866			    if (i > a)
2867				errx(EX_DATAERR, "invalid range %d-%d",
2868					i+low, a+low);
2869			    if (*s == '-')
2870				errx(EX_DATAERR, "double '-' in range");
2871			}
2872			for (; i <= a; i++)
2873			    map[i/32] |= 1<<(i & 31);
2874			i = -1;
2875			if (*s == '-')
2876			    i = a;
2877			else if (*s == '}')
2878			    break;
2879			av = s+1;
2880		}
2881		return;
2882	}
2883	av = p;
2884	if (av)			/* then *av must be a ',' */
2885		av++;
2886
2887	/* Check this entry */
2888	if (d[1] == 0) { /* "any", specified as x.x.x.x/0 */
2889		/*
2890		 * 'any' turns the entire list into a NOP.
2891		 * 'not any' never matches, so it is removed from the
2892		 * list unless it is the only item, in which case we
2893		 * report an error.
2894		 */
2895		if (cmd->o.len & F_NOT) {	/* "not any" never matches */
2896			if (av == NULL && len == 0) /* only this entry */
2897				errx(EX_DATAERR, "not any never matches");
2898		}
2899		/* else do nothing and skip this entry */
2900		return;
2901	}
2902	/* A single IP can be stored in an optimized format */
2903	if (d[1] == IP_MASK_ALL && av == NULL && len == 0) {
2904		cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32);
2905		return;
2906	}
2907	len += 2;	/* two words... */
2908	d += 2;
2909    } /* end while */
2910    if (len + 1 > F_LEN_MASK)
2911	errx(EX_DATAERR, "address list too long");
2912    cmd->o.len |= len+1;
2913}
2914
2915
2916/* Try to find ipv6 address by hostname */
2917static int
2918lookup_host6 (char *host, struct in6_addr *ip6addr)
2919{
2920	struct hostent *he;
2921
2922	if (!inet_pton(AF_INET6, host, ip6addr)) {
2923		if ((he = gethostbyname2(host, AF_INET6)) == NULL)
2924			return(-1);
2925		memcpy(ip6addr, he->h_addr_list[0], sizeof( struct in6_addr));
2926	}
2927	return(0);
2928}
2929
2930
2931/* n2mask sets n bits of the mask */
2932static void
2933n2mask(struct in6_addr *mask, int n)
2934{
2935	static int	minimask[9] =
2936	    { 0x00, 0x80, 0xc0, 0xe0, 0xf0, 0xf8, 0xfc, 0xfe, 0xff };
2937	u_char		*p;
2938
2939	memset(mask, 0, sizeof(struct in6_addr));
2940	p = (u_char *) mask;
2941	for (; n > 0; p++, n -= 8) {
2942		if (n >= 8)
2943			*p = 0xff;
2944		else
2945			*p = minimask[n];
2946	}
2947	return;
2948}
2949
2950
2951/*
2952 * fill the addr and mask fields in the instruction as appropriate from av.
2953 * Update length as appropriate.
2954 * The following formats are allowed:
2955 *     any     matches any IP6. Actually returns an empty instruction.
2956 *     me      returns O_IP6_*_ME
2957 *
2958 *     03f1::234:123:0342                single IP6 addres
2959 *     03f1::234:123:0342/24            address/mask
2960 *     03f1::234:123:0342/24,03f1::234:123:0343/               List of address
2961 *
2962 * Set of address (as in ipv6) not supported because ipv6 address
2963 * are typically random past the initial prefix.
2964 * Return 1 on success, 0 on failure.
2965 */
2966static int
2967fill_ip6(ipfw_insn_ip6 *cmd, char *av)
2968{
2969	int len = 0;
2970	struct in6_addr *d = &(cmd->addr6);
2971	/*
2972	 * Needed for multiple address.
2973	 * Note d[1] points to struct in6_add r mask6 of cmd
2974	 */
2975
2976       cmd->o.len &= ~F_LEN_MASK;	/* zero len */
2977
2978       if (strcmp(av, "any") == 0)
2979	       return (1);
2980
2981
2982       if (strcmp(av, "me") == 0) {	/* Set the data for "me" opt*/
2983	       cmd->o.len |= F_INSN_SIZE(ipfw_insn);
2984	       return (1);
2985       }
2986
2987       if (strcmp(av, "me6") == 0) {	/* Set the data for "me" opt*/
2988	       cmd->o.len |= F_INSN_SIZE(ipfw_insn);
2989	       return (1);
2990       }
2991
2992       av = strdup(av);
2993       while (av) {
2994		/*
2995		 * After the address we can have '/' indicating a mask,
2996		 * or ',' indicating another address follows.
2997		 */
2998
2999		char *p;
3000		int masklen;
3001		char md = '\0';
3002
3003		if ((p = strpbrk(av, "/,")) ) {
3004			md = *p;	/* save the separator */
3005			*p = '\0';	/* terminate address string */
3006			p++;		/* and skip past it */
3007		}
3008		/* now p points to NULL, mask or next entry */
3009
3010		/* lookup stores address in *d as a side effect */
3011		if (lookup_host6(av, d) != 0) {
3012			/* XXX: failed. Free memory and go */
3013			errx(EX_DATAERR, "bad address \"%s\"", av);
3014		}
3015		/* next, look at the mask, if any */
3016		masklen = (md == '/') ? atoi(p) : 128;
3017		if (masklen > 128 || masklen < 0)
3018			errx(EX_DATAERR, "bad width \"%s\''", p);
3019		else
3020			n2mask(&d[1], masklen);
3021
3022		APPLY_MASK(d, &d[1])   /* mask base address with mask */
3023
3024		/* find next separator */
3025
3026		if (md == '/') {	/* find separator past the mask */
3027			p = strpbrk(p, ",");
3028			if (p != NULL)
3029				p++;
3030		}
3031		av = p;
3032
3033		/* Check this entry */
3034		if (masklen == 0) {
3035			/*
3036			 * 'any' turns the entire list into a NOP.
3037			 * 'not any' never matches, so it is removed from the
3038			 * list unless it is the only item, in which case we
3039			 * report an error.
3040			 */
3041			if (cmd->o.len & F_NOT && av == NULL && len == 0)
3042				errx(EX_DATAERR, "not any never matches");
3043			continue;
3044		}
3045
3046		/*
3047		 * A single IP can be stored alone
3048		 */
3049		if (masklen == 128 && av == NULL && len == 0) {
3050			len = F_INSN_SIZE(struct in6_addr);
3051			break;
3052		}
3053
3054		/* Update length and pointer to arguments */
3055		len += F_INSN_SIZE(struct in6_addr)*2;
3056		d += 2;
3057	} /* end while */
3058
3059	/*
3060	 * Total length of the command, remember that 1 is the size of
3061	 * the base command.
3062	 */
3063	if (len + 1 > F_LEN_MASK)
3064		errx(EX_DATAERR, "address list too long");
3065	cmd->o.len |= len+1;
3066	free(av);
3067	return (1);
3068}
3069
3070/*
3071 * fills command for ipv6 flow-id filtering
3072 * note that the 20 bit flow number is stored in a array of u_int32_t
3073 * it's supported lists of flow-id, so in the o.arg1 we store how many
3074 * additional flow-id we want to filter, the basic is 1
3075 */
3076void
3077fill_flow6( ipfw_insn_u32 *cmd, char *av )
3078{
3079	u_int32_t type;	 /* Current flow number */
3080	u_int16_t nflow = 0;    /* Current flow index */
3081	char *s = av;
3082	cmd->d[0] = 0;	  /* Initializing the base number*/
3083
3084	while (s) {
3085		av = strsep( &s, ",") ;
3086		type = strtoul(av, &av, 0);
3087		if (*av != ',' && *av != '\0')
3088			errx(EX_DATAERR, "invalid ipv6 flow number %s", av);
3089		if (type > 0xfffff)
3090			errx(EX_DATAERR, "flow number out of range %s", av);
3091		cmd->d[nflow] |= type;
3092		nflow++;
3093	}
3094	if( nflow > 0 ) {
3095		cmd->o.opcode = O_FLOW6ID;
3096		cmd->o.len |= F_INSN_SIZE(ipfw_insn_u32) + nflow;
3097		cmd->o.arg1 = nflow;
3098	}
3099	else {
3100		errx(EX_DATAERR, "invalid ipv6 flow number %s", av);
3101	}
3102}
3103
3104static ipfw_insn *
3105add_srcip6(ipfw_insn *cmd, char *av)
3106{
3107
3108	fill_ip6((ipfw_insn_ip6 *)cmd, av);
3109	if (F_LEN(cmd) == 0)				/* any */
3110		;
3111	if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn)) {	/* "me" */
3112		cmd->opcode = O_IP6_SRC_ME;
3113	} else if (F_LEN(cmd) ==
3114	    (F_INSN_SIZE(struct in6_addr) + F_INSN_SIZE(ipfw_insn))) {
3115		/* single IP, no mask*/
3116		cmd->opcode = O_IP6_SRC;
3117	} else {					/* addr/mask opt */
3118		cmd->opcode = O_IP6_SRC_MASK;
3119	}
3120	return cmd;
3121}
3122
3123static ipfw_insn *
3124add_dstip6(ipfw_insn *cmd, char *av)
3125{
3126
3127	fill_ip6((ipfw_insn_ip6 *)cmd, av);
3128	if (F_LEN(cmd) == 0)				/* any */
3129		;
3130	if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn)) {	/* "me" */
3131		cmd->opcode = O_IP6_DST_ME;
3132	} else if (F_LEN(cmd) ==
3133	    (F_INSN_SIZE(struct in6_addr) + F_INSN_SIZE(ipfw_insn))) {
3134		/* single IP, no mask*/
3135		cmd->opcode = O_IP6_DST;
3136	} else {					/* addr/mask opt */
3137		cmd->opcode = O_IP6_DST_MASK;
3138	}
3139	return cmd;
3140}
3141
3142
3143/*
3144 * helper function to process a set of flags and set bits in the
3145 * appropriate masks.
3146 */
3147static void
3148fill_flags(ipfw_insn *cmd, enum ipfw_opcodes opcode,
3149	struct _s_x *flags, char *p)
3150{
3151	uint8_t set=0, clear=0;
3152
3153	while (p && *p) {
3154		char *q;	/* points to the separator */
3155		int val;
3156		uint8_t *which;	/* mask we are working on */
3157
3158		if (*p == '!') {
3159			p++;
3160			which = &clear;
3161		} else
3162			which = &set;
3163		q = strchr(p, ',');
3164		if (q)
3165			*q++ = '\0';
3166		val = match_token(flags, p);
3167		if (val <= 0)
3168			errx(EX_DATAERR, "invalid flag %s", p);
3169		*which |= (uint8_t)val;
3170		p = q;
3171	}
3172        cmd->opcode = opcode;
3173        cmd->len =  (cmd->len & (F_NOT | F_OR)) | 1;
3174        cmd->arg1 = (set & 0xff) | ( (clear & 0xff) << 8);
3175}
3176
3177
3178static void
3179delete(int ac, char *av[])
3180{
3181	uint32_t rulenum;
3182	struct dn_pipe p;
3183	int i;
3184	int exitval = EX_OK;
3185	int do_set = 0;
3186
3187	memset(&p, 0, sizeof p);
3188
3189	av++; ac--;
3190	NEED1("missing rule specification");
3191	if (ac > 0 && _substrcmp(*av, "set") == 0) {
3192		do_set = 1;	/* delete set */
3193		ac--; av++;
3194	}
3195
3196	/* Rule number */
3197	while (ac && isdigit(**av)) {
3198		i = atoi(*av); av++; ac--;
3199		if (do_nat) {
3200			exitval = do_cmd(IP_FW_NAT_DEL, &i, sizeof i);
3201			if (exitval) {
3202				exitval = EX_UNAVAILABLE;
3203				warn("rule %u not available", i);
3204			}
3205 		} else if (do_pipe) {
3206			if (do_pipe == 1)
3207				p.pipe_nr = i;
3208			else
3209				p.fs.fs_nr = i;
3210			i = do_cmd(IP_DUMMYNET_DEL, &p, sizeof p);
3211			if (i) {
3212				exitval = 1;
3213				warn("rule %u: setsockopt(IP_DUMMYNET_DEL)",
3214				    do_pipe == 1 ? p.pipe_nr : p.fs.fs_nr);
3215			}
3216		} else {
3217			rulenum =  (i & 0xffff) | (do_set << 24);
3218			i = do_cmd(IP_FW_DEL, &rulenum, sizeof rulenum);
3219			if (i) {
3220				exitval = EX_UNAVAILABLE;
3221				warn("rule %u: setsockopt(IP_FW_DEL)",
3222				    rulenum);
3223			}
3224		}
3225	}
3226	if (exitval != EX_OK)
3227		exit(exitval);
3228}
3229
3230
3231/*
3232 * fill the interface structure. We do not check the name as we can
3233 * create interfaces dynamically, so checking them at insert time
3234 * makes relatively little sense.
3235 * Interface names containing '*', '?', or '[' are assumed to be shell
3236 * patterns which match interfaces.
3237 */
3238static void
3239fill_iface(ipfw_insn_if *cmd, char *arg)
3240{
3241	cmd->name[0] = '\0';
3242	cmd->o.len |= F_INSN_SIZE(ipfw_insn_if);
3243
3244	/* Parse the interface or address */
3245	if (strcmp(arg, "any") == 0)
3246		cmd->o.len = 0;		/* effectively ignore this command */
3247	else if (!isdigit(*arg)) {
3248		strlcpy(cmd->name, arg, sizeof(cmd->name));
3249		cmd->p.glob = strpbrk(arg, "*?[") != NULL ? 1 : 0;
3250	} else if (!inet_aton(arg, &cmd->p.ip))
3251		errx(EX_DATAERR, "bad ip address ``%s''", arg);
3252}
3253
3254/*
3255 * Search for interface with name "ifn", and fill n accordingly:
3256 *
3257 * n->ip        ip address of interface "ifn"
3258 * n->if_name   copy of interface name "ifn"
3259 */
3260static void
3261set_addr_dynamic(const char *ifn, struct cfg_nat *n)
3262{
3263	size_t needed;
3264	int mib[6];
3265	char *buf, *lim, *next;
3266	struct if_msghdr *ifm;
3267	struct ifa_msghdr *ifam;
3268	struct sockaddr_dl *sdl;
3269	struct sockaddr_in *sin;
3270	int ifIndex, ifMTU;
3271
3272	mib[0] = CTL_NET;
3273	mib[1] = PF_ROUTE;
3274	mib[2] = 0;
3275	mib[3] = AF_INET;
3276	mib[4] = NET_RT_IFLIST;
3277	mib[5] = 0;
3278/*
3279 * Get interface data.
3280 */
3281	if (sysctl(mib, 6, NULL, &needed, NULL, 0) == -1)
3282		err(1, "iflist-sysctl-estimate");
3283	if ((buf = malloc(needed)) == NULL)
3284		errx(1, "malloc failed");
3285	if (sysctl(mib, 6, buf, &needed, NULL, 0) == -1)
3286		err(1, "iflist-sysctl-get");
3287	lim = buf + needed;
3288/*
3289 * Loop through interfaces until one with
3290 * given name is found. This is done to
3291 * find correct interface index for routing
3292 * message processing.
3293 */
3294	ifIndex	= 0;
3295	next = buf;
3296	while (next < lim) {
3297		ifm = (struct if_msghdr *)next;
3298		next += ifm->ifm_msglen;
3299		if (ifm->ifm_version != RTM_VERSION) {
3300			if (verbose)
3301				warnx("routing message version %d "
3302				    "not understood", ifm->ifm_version);
3303			continue;
3304		}
3305		if (ifm->ifm_type == RTM_IFINFO) {
3306			sdl = (struct sockaddr_dl *)(ifm + 1);
3307			if (strlen(ifn) == sdl->sdl_nlen &&
3308			    strncmp(ifn, sdl->sdl_data, sdl->sdl_nlen) == 0) {
3309				ifIndex = ifm->ifm_index;
3310				ifMTU = ifm->ifm_data.ifi_mtu;
3311				break;
3312			}
3313		}
3314	}
3315	if (!ifIndex)
3316		errx(1, "unknown interface name %s", ifn);
3317/*
3318 * Get interface address.
3319 */
3320	sin = NULL;
3321	while (next < lim) {
3322		ifam = (struct ifa_msghdr *)next;
3323		next += ifam->ifam_msglen;
3324		if (ifam->ifam_version != RTM_VERSION) {
3325			if (verbose)
3326				warnx("routing message version %d "
3327				    "not understood", ifam->ifam_version);
3328			continue;
3329		}
3330		if (ifam->ifam_type != RTM_NEWADDR)
3331			break;
3332		if (ifam->ifam_addrs & RTA_IFA) {
3333			int i;
3334			char *cp = (char *)(ifam + 1);
3335
3336			for (i = 1; i < RTA_IFA; i <<= 1) {
3337				if (ifam->ifam_addrs & i)
3338					cp += SA_SIZE((struct sockaddr *)cp);
3339			}
3340			if (((struct sockaddr *)cp)->sa_family == AF_INET) {
3341				sin = (struct sockaddr_in *)cp;
3342				break;
3343			}
3344		}
3345	}
3346	if (sin == NULL)
3347		errx(1, "%s: cannot get interface address", ifn);
3348
3349	n->ip = sin->sin_addr;
3350	strncpy(n->if_name, ifn, IF_NAMESIZE);
3351
3352	free(buf);
3353}
3354
3355/*
3356 * XXX - The following functions, macros and definitions come from natd.c:
3357 * it would be better to move them outside natd.c, in a file
3358 * (redirect_support.[ch]?) shared by ipfw and natd, but for now i can live
3359 * with it.
3360 */
3361
3362/*
3363 * Definition of a port range, and macros to deal with values.
3364 * FORMAT:  HI 16-bits == first port in range, 0 == all ports.
3365 *          LO 16-bits == number of ports in range
3366 * NOTES:   - Port values are not stored in network byte order.
3367 */
3368
3369#define port_range u_long
3370
3371#define GETLOPORT(x)     ((x) >> 0x10)
3372#define GETNUMPORTS(x)   ((x) & 0x0000ffff)
3373#define GETHIPORT(x)     (GETLOPORT((x)) + GETNUMPORTS((x)))
3374
3375/* Set y to be the low-port value in port_range variable x. */
3376#define SETLOPORT(x,y)   ((x) = ((x) & 0x0000ffff) | ((y) << 0x10))
3377
3378/* Set y to be the number of ports in port_range variable x. */
3379#define SETNUMPORTS(x,y) ((x) = ((x) & 0xffff0000) | (y))
3380
3381static void
3382StrToAddr (const char* str, struct in_addr* addr)
3383{
3384	struct hostent* hp;
3385
3386	if (inet_aton (str, addr))
3387		return;
3388
3389	hp = gethostbyname (str);
3390	if (!hp)
3391		errx (1, "unknown host %s", str);
3392
3393	memcpy (addr, hp->h_addr, sizeof (struct in_addr));
3394}
3395
3396static int
3397StrToPortRange (const char* str, const char* proto, port_range *portRange)
3398{
3399	char*           sep;
3400	struct servent*	sp;
3401	char*		end;
3402	u_short         loPort;
3403	u_short         hiPort;
3404
3405	/* First see if this is a service, return corresponding port if so. */
3406	sp = getservbyname (str,proto);
3407	if (sp) {
3408	        SETLOPORT(*portRange, ntohs(sp->s_port));
3409		SETNUMPORTS(*portRange, 1);
3410		return 0;
3411	}
3412
3413	/* Not a service, see if it's a single port or port range. */
3414	sep = strchr (str, '-');
3415	if (sep == NULL) {
3416	        SETLOPORT(*portRange, strtol(str, &end, 10));
3417		if (end != str) {
3418		        /* Single port. */
3419		        SETNUMPORTS(*portRange, 1);
3420			return 0;
3421		}
3422
3423		/* Error in port range field. */
3424		errx (EX_DATAERR, "%s/%s: unknown service", str, proto);
3425	}
3426
3427	/* Port range, get the values and sanity check. */
3428	sscanf (str, "%hu-%hu", &loPort, &hiPort);
3429	SETLOPORT(*portRange, loPort);
3430	SETNUMPORTS(*portRange, 0);	/* Error by default */
3431	if (loPort <= hiPort)
3432	        SETNUMPORTS(*portRange, hiPort - loPort + 1);
3433
3434	if (GETNUMPORTS(*portRange) == 0)
3435	        errx (EX_DATAERR, "invalid port range %s", str);
3436
3437	return 0;
3438}
3439
3440static int
3441StrToProto (const char* str)
3442{
3443	if (!strcmp (str, "tcp"))
3444		return IPPROTO_TCP;
3445
3446	if (!strcmp (str, "udp"))
3447		return IPPROTO_UDP;
3448
3449	errx (EX_DATAERR, "unknown protocol %s. Expected tcp or udp", str);
3450}
3451
3452static int
3453StrToAddrAndPortRange (const char* str, struct in_addr* addr, char* proto,
3454		       port_range *portRange)
3455{
3456	char*	ptr;
3457
3458	ptr = strchr (str, ':');
3459	if (!ptr)
3460		errx (EX_DATAERR, "%s is missing port number", str);
3461
3462	*ptr = '\0';
3463	++ptr;
3464
3465	StrToAddr (str, addr);
3466	return StrToPortRange (ptr, proto, portRange);
3467}
3468
3469/* End of stuff taken from natd.c. */
3470
3471#define INC_ARGCV() do {        \
3472	(*_av)++;               \
3473	(*_ac)--;               \
3474	av = *_av;              \
3475	ac = *_ac;              \
3476} while(0)
3477
3478/*
3479 * The next 3 functions add support for the addr, port and proto redirect and
3480 * their logic is loosely based on SetupAddressRedirect(), SetupPortRedirect()
3481 * and SetupProtoRedirect() from natd.c.
3482 *
3483 * Every setup_* function fills at least one redirect entry
3484 * (struct cfg_redir) and zero or more server pool entry (struct cfg_spool)
3485 * in buf.
3486 *
3487 * The format of data in buf is:
3488 *
3489 *
3490 *     cfg_nat    cfg_redir    cfg_spool    ......  cfg_spool
3491 *
3492 *    -------------------------------------        ------------
3493 *   |          | .....X ... |          |         |           |  .....
3494 *    ------------------------------------- ...... ------------
3495 *                     ^
3496 *                spool_cnt       n=0       ......   n=(X-1)
3497 *
3498 * len points to the amount of available space in buf
3499 * space counts the memory consumed by every function
3500 *
3501 * XXX - Every function get all the argv params so it
3502 * has to check, in optional parameters, that the next
3503 * args is a valid option for the redir entry and not
3504 * another token. Only redir_port and redir_proto are
3505 * affected by this.
3506 */
3507
3508static int
3509setup_redir_addr(char *spool_buf, int len,
3510		 int *_ac, char ***_av)
3511{
3512	char **av, *sep; /* Token separator. */
3513	/* Temporary buffer used to hold server pool ip's. */
3514	char tmp_spool_buf[NAT_BUF_LEN];
3515	int ac, i, space, lsnat;
3516	struct cfg_redir *r;
3517	struct cfg_spool *tmp;
3518
3519	av = *_av;
3520	ac = *_ac;
3521	space = 0;
3522	lsnat = 0;
3523	if (len >= SOF_REDIR) {
3524		r = (struct cfg_redir *)spool_buf;
3525		/* Skip cfg_redir at beginning of buf. */
3526		spool_buf = &spool_buf[SOF_REDIR];
3527		space = SOF_REDIR;
3528		len -= SOF_REDIR;
3529	} else
3530		goto nospace;
3531	r->mode = REDIR_ADDR;
3532	/* Extract local address. */
3533	if (ac == 0)
3534		errx(EX_DATAERR, "redirect_addr: missing local address");
3535	sep = strchr(*av, ',');
3536	if (sep) {		/* LSNAT redirection syntax. */
3537		r->laddr.s_addr = INADDR_NONE;
3538		/* Preserve av, copy spool servers to tmp_spool_buf. */
3539		strncpy(tmp_spool_buf, *av, strlen(*av)+1);
3540		lsnat = 1;
3541	} else
3542		StrToAddr(*av, &r->laddr);
3543	INC_ARGCV();
3544
3545	/* Extract public address. */
3546	if (ac == 0)
3547		errx(EX_DATAERR, "redirect_addr: missing public address");
3548	StrToAddr(*av, &r->paddr);
3549	INC_ARGCV();
3550
3551	/* Setup LSNAT server pool. */
3552	if (sep) {
3553		sep = strtok(tmp_spool_buf, ",");
3554		while (sep != NULL) {
3555			tmp = (struct cfg_spool *)spool_buf;
3556			if (len < SOF_SPOOL)
3557				goto nospace;
3558			len -= SOF_SPOOL;
3559			space += SOF_SPOOL;
3560			StrToAddr(sep, &tmp->addr);
3561			tmp->port = ~0;
3562			r->spool_cnt++;
3563			/* Point to the next possible cfg_spool. */
3564			spool_buf = &spool_buf[SOF_SPOOL];
3565			sep = strtok(NULL, ",");
3566		}
3567	}
3568	return(space);
3569nospace:
3570	errx(EX_DATAERR, "redirect_addr: buf is too small\n");
3571}
3572
3573static int
3574setup_redir_port(char *spool_buf, int len,
3575		 int *_ac, char ***_av)
3576{
3577	char **av, *sep, *protoName;
3578	char tmp_spool_buf[NAT_BUF_LEN];
3579	int ac, space, lsnat;
3580	struct cfg_redir *r;
3581	struct cfg_spool *tmp;
3582	u_short numLocalPorts;
3583	port_range portRange;
3584
3585	av = *_av;
3586	ac = *_ac;
3587	space = 0;
3588	lsnat = 0;
3589	numLocalPorts = 0;
3590
3591	if (len >= SOF_REDIR) {
3592		r = (struct cfg_redir *)spool_buf;
3593		/* Skip cfg_redir at beginning of buf. */
3594		spool_buf = &spool_buf[SOF_REDIR];
3595		space = SOF_REDIR;
3596		len -= SOF_REDIR;
3597	} else
3598		goto nospace;
3599	r->mode = REDIR_PORT;
3600	/*
3601	 * Extract protocol.
3602	 */
3603	if (ac == 0)
3604		errx (EX_DATAERR, "redirect_port: missing protocol");
3605	r->proto = StrToProto(*av);
3606	protoName = *av;
3607	INC_ARGCV();
3608
3609	/*
3610	 * Extract local address.
3611	 */
3612	if (ac == 0)
3613		errx (EX_DATAERR, "redirect_port: missing local address");
3614
3615	sep = strchr(*av, ',');
3616	/* LSNAT redirection syntax. */
3617	if (sep) {
3618		r->laddr.s_addr = INADDR_NONE;
3619		r->lport = ~0;
3620		numLocalPorts = 1;
3621		/* Preserve av, copy spool servers to tmp_spool_buf. */
3622		strncpy(tmp_spool_buf, *av, strlen(*av)+1);
3623		lsnat = 1;
3624	} else {
3625		if (StrToAddrAndPortRange (*av, &r->laddr, protoName,
3626		    &portRange) != 0)
3627			errx(EX_DATAERR, "redirect_port:"
3628			    "invalid local port range");
3629
3630		r->lport = GETLOPORT(portRange);
3631		numLocalPorts = GETNUMPORTS(portRange);
3632	}
3633	INC_ARGCV();
3634
3635	/*
3636	 * Extract public port and optionally address.
3637	 */
3638	if (ac == 0)
3639		errx (EX_DATAERR, "redirect_port: missing public port");
3640
3641	sep = strchr (*av, ':');
3642	if (sep) {
3643	        if (StrToAddrAndPortRange (*av, &r->paddr, protoName,
3644		    &portRange) != 0)
3645		        errx(EX_DATAERR, "redirect_port:"
3646			    "invalid public port range");
3647	} else {
3648		r->paddr.s_addr = INADDR_ANY;
3649		if (StrToPortRange (*av, protoName, &portRange) != 0)
3650		        errx(EX_DATAERR, "redirect_port:"
3651			    "invalid public port range");
3652	}
3653
3654	r->pport = GETLOPORT(portRange);
3655	r->pport_cnt = GETNUMPORTS(portRange);
3656	INC_ARGCV();
3657
3658	/*
3659	 * Extract remote address and optionally port.
3660	 */
3661	/*
3662	 * NB: isalpha(**av) => we've to check that next parameter is really an
3663	 * option for this redirect entry, else stop here processing arg[cv].
3664	 */
3665	if (ac != 0 && !isalpha(**av)) {
3666		sep = strchr (*av, ':');
3667		if (sep) {
3668		        if (StrToAddrAndPortRange (*av, &r->raddr, protoName,
3669			    &portRange) != 0)
3670				errx(EX_DATAERR, "redirect_port:"
3671				    "invalid remote port range");
3672		} else {
3673		        SETLOPORT(portRange, 0);
3674			SETNUMPORTS(portRange, 1);
3675			StrToAddr (*av, &r->raddr);
3676		}
3677		INC_ARGCV();
3678	} else {
3679		SETLOPORT(portRange, 0);
3680		SETNUMPORTS(portRange, 1);
3681		r->raddr.s_addr = INADDR_ANY;
3682	}
3683	r->rport = GETLOPORT(portRange);
3684	r->rport_cnt = GETNUMPORTS(portRange);
3685
3686	/*
3687	 * Make sure port ranges match up, then add the redirect ports.
3688	 */
3689	if (numLocalPorts != r->pport_cnt)
3690	        errx(EX_DATAERR, "redirect_port:"
3691		    "port ranges must be equal in size");
3692
3693	/* Remote port range is allowed to be '0' which means all ports. */
3694	if (r->rport_cnt != numLocalPorts &&
3695	    (r->rport_cnt != 1 || r->rport != 0))
3696	        errx(EX_DATAERR, "redirect_port: remote port must"
3697		    "be 0 or equal to local port range in size");
3698
3699	/*
3700	 * Setup LSNAT server pool.
3701	 */
3702	if (lsnat) {
3703		sep = strtok(tmp_spool_buf, ",");
3704		while (sep != NULL) {
3705			tmp = (struct cfg_spool *)spool_buf;
3706			if (len < SOF_SPOOL)
3707				goto nospace;
3708			len -= SOF_SPOOL;
3709			space += SOF_SPOOL;
3710			if (StrToAddrAndPortRange(sep, &tmp->addr, protoName,
3711			    &portRange) != 0)
3712				errx(EX_DATAERR, "redirect_port:"
3713				    "invalid local port range");
3714			if (GETNUMPORTS(portRange) != 1)
3715				errx(EX_DATAERR, "redirect_port: local port"
3716				    "must be single in this context");
3717			tmp->port = GETLOPORT(portRange);
3718			r->spool_cnt++;
3719			/* Point to the next possible cfg_spool. */
3720			spool_buf = &spool_buf[SOF_SPOOL];
3721			sep = strtok(NULL, ",");
3722		}
3723	}
3724	return (space);
3725nospace:
3726	errx(EX_DATAERR, "redirect_port: buf is too small\n");
3727}
3728
3729static int
3730setup_redir_proto(char *spool_buf, int len,
3731		 int *_ac, char ***_av)
3732{
3733	char **av;
3734	int ac, i, space;
3735	struct protoent *protoent;
3736	struct cfg_redir *r;
3737
3738	av = *_av;
3739	ac = *_ac;
3740	if (len >= SOF_REDIR) {
3741		r = (struct cfg_redir *)spool_buf;
3742		/* Skip cfg_redir at beginning of buf. */
3743		spool_buf = &spool_buf[SOF_REDIR];
3744		space = SOF_REDIR;
3745		len -= SOF_REDIR;
3746	} else
3747		goto nospace;
3748	r->mode = REDIR_PROTO;
3749	/*
3750	 * Extract protocol.
3751	 */
3752	if (ac == 0)
3753		errx(EX_DATAERR, "redirect_proto: missing protocol");
3754
3755	protoent = getprotobyname(*av);
3756	if (protoent == NULL)
3757		errx(EX_DATAERR, "redirect_proto: unknown protocol %s", *av);
3758	else
3759		r->proto = protoent->p_proto;
3760
3761	INC_ARGCV();
3762
3763	/*
3764	 * Extract local address.
3765	 */
3766	if (ac == 0)
3767		errx(EX_DATAERR, "redirect_proto: missing local address");
3768	else
3769		StrToAddr(*av, &r->laddr);
3770
3771	INC_ARGCV();
3772
3773	/*
3774	 * Extract optional public address.
3775	 */
3776	if (ac == 0) {
3777		r->paddr.s_addr = INADDR_ANY;
3778		r->raddr.s_addr = INADDR_ANY;
3779	} else {
3780		/* see above in setup_redir_port() */
3781		if (!isalpha(**av)) {
3782			StrToAddr(*av, &r->paddr);
3783			INC_ARGCV();
3784
3785			/*
3786			 * Extract optional remote address.
3787			 */
3788			/* see above in setup_redir_port() */
3789			if (ac!=0 && !isalpha(**av)) {
3790				StrToAddr(*av, &r->raddr);
3791				INC_ARGCV();
3792			}
3793		}
3794	}
3795	return (space);
3796nospace:
3797	errx(EX_DATAERR, "redirect_proto: buf is too small\n");
3798}
3799
3800static void
3801show_nat(int ac, char **av);
3802
3803static void
3804print_nat_config(char *buf) {
3805	struct cfg_nat *n;
3806	int i, cnt, flag, off;
3807	struct cfg_redir *t;
3808	struct cfg_spool *s;
3809	struct protoent *p;
3810
3811	n = (struct cfg_nat *)buf;
3812	flag = 1;
3813	off  = sizeof(*n);
3814	printf("ipfw nat %u config", n->id);
3815	if (strlen(n->if_name) != 0)
3816		printf(" if %s", n->if_name);
3817	else if (n->ip.s_addr != 0)
3818		printf(" ip %s", inet_ntoa(n->ip));
3819	while (n->mode != 0) {
3820		if (n->mode & PKT_ALIAS_LOG) {
3821			printf(" log");
3822			n->mode &= ~PKT_ALIAS_LOG;
3823		} else if (n->mode & PKT_ALIAS_DENY_INCOMING) {
3824			printf(" deny_in");
3825			n->mode &= ~PKT_ALIAS_DENY_INCOMING;
3826		} else if (n->mode & PKT_ALIAS_SAME_PORTS) {
3827			printf(" same_ports");
3828			n->mode &= ~PKT_ALIAS_SAME_PORTS;
3829		} else if (n->mode & PKT_ALIAS_UNREGISTERED_ONLY) {
3830			printf(" unreg_only");
3831			n->mode &= ~PKT_ALIAS_UNREGISTERED_ONLY;
3832		} else if (n->mode & PKT_ALIAS_RESET_ON_ADDR_CHANGE) {
3833			printf(" reset");
3834			n->mode &= ~PKT_ALIAS_RESET_ON_ADDR_CHANGE;
3835		} else if (n->mode & PKT_ALIAS_REVERSE) {
3836			printf(" reverse");
3837			n->mode &= ~PKT_ALIAS_REVERSE;
3838		} else if (n->mode & PKT_ALIAS_PROXY_ONLY) {
3839			printf(" proxy_only");
3840			n->mode &= ~PKT_ALIAS_PROXY_ONLY;
3841		}
3842	}
3843	/* Print all the redirect's data configuration. */
3844	for (cnt = 0; cnt < n->redir_cnt; cnt++) {
3845		t = (struct cfg_redir *)&buf[off];
3846		off += SOF_REDIR;
3847		switch (t->mode) {
3848		case REDIR_ADDR:
3849			printf(" redirect_addr");
3850			if (t->spool_cnt == 0)
3851				printf(" %s", inet_ntoa(t->laddr));
3852			else
3853				for (i = 0; i < t->spool_cnt; i++) {
3854					s = (struct cfg_spool *)&buf[off];
3855					if (i)
3856						printf(",");
3857					else
3858						printf(" ");
3859					printf("%s", inet_ntoa(s->addr));
3860					off += SOF_SPOOL;
3861				}
3862			printf(" %s", inet_ntoa(t->paddr));
3863			break;
3864		case REDIR_PORT:
3865			p = getprotobynumber(t->proto);
3866			printf(" redirect_port %s ", p->p_name);
3867			if (!t->spool_cnt) {
3868				printf("%s:%u", inet_ntoa(t->laddr), t->lport);
3869				if (t->pport_cnt > 1)
3870					printf("-%u", t->lport +
3871					    t->pport_cnt - 1);
3872			} else
3873				for (i=0; i < t->spool_cnt; i++) {
3874					s = (struct cfg_spool *)&buf[off];
3875					if (i)
3876						printf(",");
3877					printf("%s:%u", inet_ntoa(s->addr),
3878					    s->port);
3879					off += SOF_SPOOL;
3880				}
3881
3882			printf(" ");
3883			if (t->paddr.s_addr)
3884				printf("%s:", inet_ntoa(t->paddr));
3885			printf("%u", t->pport);
3886			if (!t->spool_cnt && t->pport_cnt > 1)
3887				printf("-%u", t->pport + t->pport_cnt - 1);
3888
3889			if (t->raddr.s_addr) {
3890				printf(" %s", inet_ntoa(t->raddr));
3891				if (t->rport) {
3892					printf(":%u", t->rport);
3893					if (!t->spool_cnt && t->rport_cnt > 1)
3894						printf("-%u", t->rport +
3895						    t->rport_cnt - 1);
3896				}
3897			}
3898			break;
3899		case REDIR_PROTO:
3900			p = getprotobynumber(t->proto);
3901			printf(" redirect_proto %s %s", p->p_name,
3902			    inet_ntoa(t->laddr));
3903			if (t->paddr.s_addr != 0) {
3904				printf(" %s", inet_ntoa(t->paddr));
3905				if (t->raddr.s_addr)
3906					printf(" %s", inet_ntoa(t->raddr));
3907			}
3908			break;
3909		default:
3910			errx(EX_DATAERR, "unknown redir mode");
3911			break;
3912		}
3913	}
3914	printf("\n");
3915}
3916
3917static void
3918config_nat(int ac, char **av)
3919{
3920	struct cfg_nat *n;              /* Nat instance configuration. */
3921	struct in_addr ip;
3922	int i, len, off, tok;
3923	char *id, buf[NAT_BUF_LEN]; 	/* Buffer for serialized data. */
3924
3925	len = NAT_BUF_LEN;
3926	/* Offset in buf: save space for n at the beginning. */
3927	off = sizeof(*n);
3928	memset(buf, 0, sizeof(buf));
3929	n = (struct cfg_nat *)buf;
3930
3931	av++; ac--;
3932	/* Nat id. */
3933	if (ac && isdigit(**av)) {
3934		id = *av;
3935		i = atoi(*av);
3936		ac--; av++;
3937		n->id = i;
3938	} else
3939		errx(EX_DATAERR, "missing nat id");
3940	if (ac == 0)
3941		errx(EX_DATAERR, "missing option");
3942
3943	while (ac > 0) {
3944		tok = match_token(nat_params, *av);
3945		ac--; av++;
3946		switch (tok) {
3947		case TOK_IP:
3948			if (ac == 0)
3949				errx(EX_DATAERR, "missing option");
3950			if (!inet_aton(av[0], &(n->ip)))
3951				errx(EX_DATAERR, "bad ip address ``%s''",
3952				    av[0]);
3953			ac--; av++;
3954			break;
3955		case TOK_IF:
3956			set_addr_dynamic(av[0], n);
3957			ac--; av++;
3958			break;
3959		case TOK_ALOG:
3960			n->mode |= PKT_ALIAS_LOG;
3961			break;
3962		case TOK_DENY_INC:
3963			n->mode |= PKT_ALIAS_DENY_INCOMING;
3964			break;
3965		case TOK_SAME_PORTS:
3966			n->mode |= PKT_ALIAS_SAME_PORTS;
3967			break;
3968		case TOK_UNREG_ONLY:
3969			n->mode |= PKT_ALIAS_UNREGISTERED_ONLY;
3970			break;
3971		case TOK_RESET_ADDR:
3972			n->mode |= PKT_ALIAS_RESET_ON_ADDR_CHANGE;
3973			break;
3974		case TOK_ALIAS_REV:
3975			n->mode |= PKT_ALIAS_REVERSE;
3976			break;
3977		case TOK_PROXY_ONLY:
3978			n->mode |= PKT_ALIAS_PROXY_ONLY;
3979			break;
3980			/*
3981			 * All the setup_redir_* functions work directly in the final
3982			 * buffer, see above for details.
3983			 */
3984		case TOK_REDIR_ADDR:
3985		case TOK_REDIR_PORT:
3986		case TOK_REDIR_PROTO:
3987			switch (tok) {
3988			case TOK_REDIR_ADDR:
3989				i = setup_redir_addr(&buf[off], len, &ac, &av);
3990				break;
3991			case TOK_REDIR_PORT:
3992				i = setup_redir_port(&buf[off], len, &ac, &av);
3993				break;
3994			case TOK_REDIR_PROTO:
3995				i = setup_redir_proto(&buf[off], len, &ac, &av);
3996				break;
3997			}
3998			n->redir_cnt++;
3999			off += i;
4000			len -= i;
4001			break;
4002		default:
4003			errx(EX_DATAERR, "unrecognised option ``%s''", av[-1]);
4004		}
4005	}
4006
4007	i = do_cmd(IP_FW_NAT_CFG, buf, off);
4008	if (i)
4009		err(1, "setsockopt(%s)", "IP_FW_NAT_CFG");
4010
4011	/* After every modification, we show the resultant rule. */
4012	int _ac = 3;
4013	char *_av[] = {"show", "config", id};
4014	show_nat(_ac, _av);
4015}
4016
4017static void
4018config_pipe(int ac, char **av)
4019{
4020	struct dn_pipe p;
4021	int i;
4022	char *end;
4023	void *par = NULL;
4024
4025	memset(&p, 0, sizeof p);
4026
4027	av++; ac--;
4028	/* Pipe number */
4029	if (ac && isdigit(**av)) {
4030		i = atoi(*av); av++; ac--;
4031		if (do_pipe == 1)
4032			p.pipe_nr = i;
4033		else
4034			p.fs.fs_nr = i;
4035	}
4036	while (ac > 0) {
4037		double d;
4038		int tok = match_token(dummynet_params, *av);
4039		ac--; av++;
4040
4041		switch(tok) {
4042		case TOK_NOERROR:
4043			p.fs.flags_fs |= DN_NOERROR;
4044			break;
4045
4046		case TOK_PLR:
4047			NEED1("plr needs argument 0..1\n");
4048			d = strtod(av[0], NULL);
4049			if (d > 1)
4050				d = 1;
4051			else if (d < 0)
4052				d = 0;
4053			p.fs.plr = (int)(d*0x7fffffff);
4054			ac--; av++;
4055			break;
4056
4057		case TOK_QUEUE:
4058			NEED1("queue needs queue size\n");
4059			end = NULL;
4060			p.fs.qsize = strtoul(av[0], &end, 0);
4061			if (*end == 'K' || *end == 'k') {
4062				p.fs.flags_fs |= DN_QSIZE_IS_BYTES;
4063				p.fs.qsize *= 1024;
4064			} else if (*end == 'B' ||
4065			    _substrcmp2(end, "by", "bytes") == 0) {
4066				p.fs.flags_fs |= DN_QSIZE_IS_BYTES;
4067			}
4068			ac--; av++;
4069			break;
4070
4071		case TOK_BUCKETS:
4072			NEED1("buckets needs argument\n");
4073			p.fs.rq_size = strtoul(av[0], NULL, 0);
4074			ac--; av++;
4075			break;
4076
4077		case TOK_MASK:
4078			NEED1("mask needs mask specifier\n");
4079			/*
4080			 * per-flow queue, mask is dst_ip, dst_port,
4081			 * src_ip, src_port, proto measured in bits
4082			 */
4083			par = NULL;
4084
4085			bzero(&p.fs.flow_mask, sizeof(p.fs.flow_mask));
4086			end = NULL;
4087
4088			while (ac >= 1) {
4089			    uint32_t *p32 = NULL;
4090			    uint16_t *p16 = NULL;
4091			    uint32_t *p20 = NULL;
4092			    struct in6_addr *pa6 = NULL;
4093			    uint32_t a;
4094
4095			    tok = match_token(dummynet_params, *av);
4096			    ac--; av++;
4097			    switch(tok) {
4098			    case TOK_ALL:
4099				    /*
4100				     * special case, all bits significant
4101				     */
4102				    p.fs.flow_mask.dst_ip = ~0;
4103				    p.fs.flow_mask.src_ip = ~0;
4104				    p.fs.flow_mask.dst_port = ~0;
4105				    p.fs.flow_mask.src_port = ~0;
4106				    p.fs.flow_mask.proto = ~0;
4107				    n2mask(&(p.fs.flow_mask.dst_ip6), 128);
4108				    n2mask(&(p.fs.flow_mask.src_ip6), 128);
4109				    p.fs.flow_mask.flow_id6 = ~0;
4110				    p.fs.flags_fs |= DN_HAVE_FLOW_MASK;
4111				    goto end_mask;
4112
4113			    case TOK_DSTIP:
4114				    p32 = &p.fs.flow_mask.dst_ip;
4115				    break;
4116
4117			    case TOK_SRCIP:
4118				    p32 = &p.fs.flow_mask.src_ip;
4119				    break;
4120
4121			    case TOK_DSTIP6:
4122				    pa6 = &(p.fs.flow_mask.dst_ip6);
4123				    break;
4124
4125			    case TOK_SRCIP6:
4126				    pa6 = &(p.fs.flow_mask.src_ip6);
4127				    break;
4128
4129			    case TOK_FLOWID:
4130				    p20 = &p.fs.flow_mask.flow_id6;
4131				    break;
4132
4133			    case TOK_DSTPORT:
4134				    p16 = &p.fs.flow_mask.dst_port;
4135				    break;
4136
4137			    case TOK_SRCPORT:
4138				    p16 = &p.fs.flow_mask.src_port;
4139				    break;
4140
4141			    case TOK_PROTO:
4142				    break;
4143
4144			    default:
4145				    ac++; av--; /* backtrack */
4146				    goto end_mask;
4147			    }
4148			    if (ac < 1)
4149				    errx(EX_USAGE, "mask: value missing");
4150			    if (*av[0] == '/') {
4151				    a = strtoul(av[0]+1, &end, 0);
4152				    if (pa6 == NULL)
4153					    a = (a == 32) ? ~0 : (1 << a) - 1;
4154			    } else
4155				    a = strtoul(av[0], &end, 0);
4156			    if (p32 != NULL)
4157				    *p32 = a;
4158			    else if (p16 != NULL) {
4159				    if (a > 0xFFFF)
4160					    errx(EX_DATAERR,
4161						"port mask must be 16 bit");
4162				    *p16 = (uint16_t)a;
4163			    } else if (p20 != NULL) {
4164				    if (a > 0xfffff)
4165					errx(EX_DATAERR,
4166					    "flow_id mask must be 20 bit");
4167				    *p20 = (uint32_t)a;
4168			    } else if (pa6 != NULL) {
4169				    if (a < 0 || a > 128)
4170					errx(EX_DATAERR,
4171					    "in6addr invalid mask len");
4172				    else
4173					n2mask(pa6, a);
4174			    } else {
4175				    if (a > 0xFF)
4176					    errx(EX_DATAERR,
4177						"proto mask must be 8 bit");
4178				    p.fs.flow_mask.proto = (uint8_t)a;
4179			    }
4180			    if (a != 0)
4181				    p.fs.flags_fs |= DN_HAVE_FLOW_MASK;
4182			    ac--; av++;
4183			} /* end while, config masks */
4184end_mask:
4185			break;
4186
4187		case TOK_RED:
4188		case TOK_GRED:
4189			NEED1("red/gred needs w_q/min_th/max_th/max_p\n");
4190			p.fs.flags_fs |= DN_IS_RED;
4191			if (tok == TOK_GRED)
4192				p.fs.flags_fs |= DN_IS_GENTLE_RED;
4193			/*
4194			 * the format for parameters is w_q/min_th/max_th/max_p
4195			 */
4196			if ((end = strsep(&av[0], "/"))) {
4197			    double w_q = strtod(end, NULL);
4198			    if (w_q > 1 || w_q <= 0)
4199				errx(EX_DATAERR, "0 < w_q <= 1");
4200			    p.fs.w_q = (int) (w_q * (1 << SCALE_RED));
4201			}
4202			if ((end = strsep(&av[0], "/"))) {
4203			    p.fs.min_th = strtoul(end, &end, 0);
4204			    if (*end == 'K' || *end == 'k')
4205				p.fs.min_th *= 1024;
4206			}
4207			if ((end = strsep(&av[0], "/"))) {
4208			    p.fs.max_th = strtoul(end, &end, 0);
4209			    if (*end == 'K' || *end == 'k')
4210				p.fs.max_th *= 1024;
4211			}
4212			if ((end = strsep(&av[0], "/"))) {
4213			    double max_p = strtod(end, NULL);
4214			    if (max_p > 1 || max_p <= 0)
4215				errx(EX_DATAERR, "0 < max_p <= 1");
4216			    p.fs.max_p = (int)(max_p * (1 << SCALE_RED));
4217			}
4218			ac--; av++;
4219			break;
4220
4221		case TOK_DROPTAIL:
4222			p.fs.flags_fs &= ~(DN_IS_RED|DN_IS_GENTLE_RED);
4223			break;
4224
4225		case TOK_BW:
4226			NEED1("bw needs bandwidth or interface\n");
4227			if (do_pipe != 1)
4228			    errx(EX_DATAERR, "bandwidth only valid for pipes");
4229			/*
4230			 * set clocking interface or bandwidth value
4231			 */
4232			if (av[0][0] >= 'a' && av[0][0] <= 'z') {
4233			    int l = sizeof(p.if_name)-1;
4234			    /* interface name */
4235			    strncpy(p.if_name, av[0], l);
4236			    p.if_name[l] = '\0';
4237			    p.bandwidth = 0;
4238			} else {
4239			    p.if_name[0] = '\0';
4240			    p.bandwidth = strtoul(av[0], &end, 0);
4241			    if (*end == 'K' || *end == 'k') {
4242				end++;
4243				p.bandwidth *= 1000;
4244			    } else if (*end == 'M') {
4245				end++;
4246				p.bandwidth *= 1000000;
4247			    }
4248			    if ((*end == 'B' &&
4249				  _substrcmp2(end, "Bi", "Bit/s") != 0) ||
4250			        _substrcmp2(end, "by", "bytes") == 0)
4251				p.bandwidth *= 8;
4252			    if (p.bandwidth < 0)
4253				errx(EX_DATAERR, "bandwidth too large");
4254			}
4255			ac--; av++;
4256			break;
4257
4258		case TOK_DELAY:
4259			if (do_pipe != 1)
4260				errx(EX_DATAERR, "delay only valid for pipes");
4261			NEED1("delay needs argument 0..10000ms\n");
4262			p.delay = strtoul(av[0], NULL, 0);
4263			ac--; av++;
4264			break;
4265
4266		case TOK_WEIGHT:
4267			if (do_pipe == 1)
4268				errx(EX_DATAERR,"weight only valid for queues");
4269			NEED1("weight needs argument 0..100\n");
4270			p.fs.weight = strtoul(av[0], &end, 0);
4271			ac--; av++;
4272			break;
4273
4274		case TOK_PIPE:
4275			if (do_pipe == 1)
4276				errx(EX_DATAERR,"pipe only valid for queues");
4277			NEED1("pipe needs pipe_number\n");
4278			p.fs.parent_nr = strtoul(av[0], &end, 0);
4279			ac--; av++;
4280			break;
4281
4282		default:
4283			errx(EX_DATAERR, "unrecognised option ``%s''", av[-1]);
4284		}
4285	}
4286	if (do_pipe == 1) {
4287		if (p.pipe_nr == 0)
4288			errx(EX_DATAERR, "pipe_nr must be > 0");
4289		if (p.delay > 10000)
4290			errx(EX_DATAERR, "delay must be < 10000");
4291	} else { /* do_pipe == 2, queue */
4292		if (p.fs.parent_nr == 0)
4293			errx(EX_DATAERR, "pipe must be > 0");
4294		if (p.fs.weight >100)
4295			errx(EX_DATAERR, "weight must be <= 100");
4296	}
4297	if (p.fs.flags_fs & DN_QSIZE_IS_BYTES) {
4298		if (p.fs.qsize > 1024*1024)
4299			errx(EX_DATAERR, "queue size must be < 1MB");
4300	} else {
4301		if (p.fs.qsize > 100)
4302			errx(EX_DATAERR, "2 <= queue size <= 100");
4303	}
4304	if (p.fs.flags_fs & DN_IS_RED) {
4305		size_t len;
4306		int lookup_depth, avg_pkt_size;
4307		double s, idle, weight, w_q;
4308		struct clockinfo ck;
4309		int t;
4310
4311		if (p.fs.min_th >= p.fs.max_th)
4312		    errx(EX_DATAERR, "min_th %d must be < than max_th %d",
4313			p.fs.min_th, p.fs.max_th);
4314		if (p.fs.max_th == 0)
4315		    errx(EX_DATAERR, "max_th must be > 0");
4316
4317		len = sizeof(int);
4318		if (sysctlbyname("net.inet.ip.dummynet.red_lookup_depth",
4319			&lookup_depth, &len, NULL, 0) == -1)
4320
4321		    errx(1, "sysctlbyname(\"%s\")",
4322			"net.inet.ip.dummynet.red_lookup_depth");
4323		if (lookup_depth == 0)
4324		    errx(EX_DATAERR, "net.inet.ip.dummynet.red_lookup_depth"
4325			" must be greater than zero");
4326
4327		len = sizeof(int);
4328		if (sysctlbyname("net.inet.ip.dummynet.red_avg_pkt_size",
4329			&avg_pkt_size, &len, NULL, 0) == -1)
4330
4331		    errx(1, "sysctlbyname(\"%s\")",
4332			"net.inet.ip.dummynet.red_avg_pkt_size");
4333		if (avg_pkt_size == 0)
4334			errx(EX_DATAERR,
4335			    "net.inet.ip.dummynet.red_avg_pkt_size must"
4336			    " be greater than zero");
4337
4338		len = sizeof(struct clockinfo);
4339		if (sysctlbyname("kern.clockrate", &ck, &len, NULL, 0) == -1)
4340			errx(1, "sysctlbyname(\"%s\")", "kern.clockrate");
4341
4342		/*
4343		 * Ticks needed for sending a medium-sized packet.
4344		 * Unfortunately, when we are configuring a WF2Q+ queue, we
4345		 * do not have bandwidth information, because that is stored
4346		 * in the parent pipe, and also we have multiple queues
4347		 * competing for it. So we set s=0, which is not very
4348		 * correct. But on the other hand, why do we want RED with
4349		 * WF2Q+ ?
4350		 */
4351		if (p.bandwidth==0) /* this is a WF2Q+ queue */
4352			s = 0;
4353		else
4354			s = ck.hz * avg_pkt_size * 8 / p.bandwidth;
4355
4356		/*
4357		 * max idle time (in ticks) before avg queue size becomes 0.
4358		 * NOTA:  (3/w_q) is approx the value x so that
4359		 * (1-w_q)^x < 10^-3.
4360		 */
4361		w_q = ((double)p.fs.w_q) / (1 << SCALE_RED);
4362		idle = s * 3. / w_q;
4363		p.fs.lookup_step = (int)idle / lookup_depth;
4364		if (!p.fs.lookup_step)
4365			p.fs.lookup_step = 1;
4366		weight = 1 - w_q;
4367		for (t = p.fs.lookup_step; t > 0; --t)
4368			weight *= weight;
4369		p.fs.lookup_weight = (int)(weight * (1 << SCALE_RED));
4370	}
4371	i = do_cmd(IP_DUMMYNET_CONFIGURE, &p, sizeof p);
4372	if (i)
4373		err(1, "setsockopt(%s)", "IP_DUMMYNET_CONFIGURE");
4374}
4375
4376static void
4377get_mac_addr_mask(const char *p, uint8_t *addr, uint8_t *mask)
4378{
4379	int i, l;
4380	char *ap, *ptr, *optr;
4381	struct ether_addr *mac;
4382	const char *macset = "0123456789abcdefABCDEF:";
4383
4384	if (strcmp(p, "any") == 0) {
4385		for (i = 0; i < ETHER_ADDR_LEN; i++)
4386			addr[i] = mask[i] = 0;
4387		return;
4388	}
4389
4390	optr = ptr = strdup(p);
4391	if ((ap = strsep(&ptr, "&/")) != NULL && *ap != 0) {
4392		l = strlen(ap);
4393		if (strspn(ap, macset) != l || (mac = ether_aton(ap)) == NULL)
4394			errx(EX_DATAERR, "Incorrect MAC address");
4395		bcopy(mac, addr, ETHER_ADDR_LEN);
4396	} else
4397		errx(EX_DATAERR, "Incorrect MAC address");
4398
4399	if (ptr != NULL) { /* we have mask? */
4400		if (p[ptr - optr - 1] == '/') { /* mask len */
4401			l = strtol(ptr, &ap, 10);
4402			if (*ap != 0 || l > ETHER_ADDR_LEN * 8 || l < 0)
4403				errx(EX_DATAERR, "Incorrect mask length");
4404			for (i = 0; l > 0 && i < ETHER_ADDR_LEN; l -= 8, i++)
4405				mask[i] = (l >= 8) ? 0xff: (~0) << (8 - l);
4406		} else { /* mask */
4407			l = strlen(ptr);
4408			if (strspn(ptr, macset) != l ||
4409			    (mac = ether_aton(ptr)) == NULL)
4410				errx(EX_DATAERR, "Incorrect mask");
4411			bcopy(mac, mask, ETHER_ADDR_LEN);
4412		}
4413	} else { /* default mask: ff:ff:ff:ff:ff:ff */
4414		for (i = 0; i < ETHER_ADDR_LEN; i++)
4415			mask[i] = 0xff;
4416	}
4417	for (i = 0; i < ETHER_ADDR_LEN; i++)
4418		addr[i] &= mask[i];
4419
4420	free(optr);
4421}
4422
4423/*
4424 * helper function, updates the pointer to cmd with the length
4425 * of the current command, and also cleans up the first word of
4426 * the new command in case it has been clobbered before.
4427 */
4428static ipfw_insn *
4429next_cmd(ipfw_insn *cmd)
4430{
4431	cmd += F_LEN(cmd);
4432	bzero(cmd, sizeof(*cmd));
4433	return cmd;
4434}
4435
4436/*
4437 * Takes arguments and copies them into a comment
4438 */
4439static void
4440fill_comment(ipfw_insn *cmd, int ac, char **av)
4441{
4442	int i, l;
4443	char *p = (char *)(cmd + 1);
4444
4445	cmd->opcode = O_NOP;
4446	cmd->len =  (cmd->len & (F_NOT | F_OR));
4447
4448	/* Compute length of comment string. */
4449	for (i = 0, l = 0; i < ac; i++)
4450		l += strlen(av[i]) + 1;
4451	if (l == 0)
4452		return;
4453	if (l > 84)
4454		errx(EX_DATAERR,
4455		    "comment too long (max 80 chars)");
4456	l = 1 + (l+3)/4;
4457	cmd->len =  (cmd->len & (F_NOT | F_OR)) | l;
4458	for (i = 0; i < ac; i++) {
4459		strcpy(p, av[i]);
4460		p += strlen(av[i]);
4461		*p++ = ' ';
4462	}
4463	*(--p) = '\0';
4464}
4465
4466/*
4467 * A function to fill simple commands of size 1.
4468 * Existing flags are preserved.
4469 */
4470static void
4471fill_cmd(ipfw_insn *cmd, enum ipfw_opcodes opcode, int flags, uint16_t arg)
4472{
4473	cmd->opcode = opcode;
4474	cmd->len =  ((cmd->len | flags) & (F_NOT | F_OR)) | 1;
4475	cmd->arg1 = arg;
4476}
4477
4478/*
4479 * Fetch and add the MAC address and type, with masks. This generates one or
4480 * two microinstructions, and returns the pointer to the last one.
4481 */
4482static ipfw_insn *
4483add_mac(ipfw_insn *cmd, int ac, char *av[])
4484{
4485	ipfw_insn_mac *mac;
4486
4487	if (ac < 2)
4488		errx(EX_DATAERR, "MAC dst src");
4489
4490	cmd->opcode = O_MACADDR2;
4491	cmd->len = (cmd->len & (F_NOT | F_OR)) | F_INSN_SIZE(ipfw_insn_mac);
4492
4493	mac = (ipfw_insn_mac *)cmd;
4494	get_mac_addr_mask(av[0], mac->addr, mac->mask);	/* dst */
4495	get_mac_addr_mask(av[1], &(mac->addr[ETHER_ADDR_LEN]),
4496	    &(mac->mask[ETHER_ADDR_LEN])); /* src */
4497	return cmd;
4498}
4499
4500static ipfw_insn *
4501add_mactype(ipfw_insn *cmd, int ac, char *av)
4502{
4503	if (ac < 1)
4504		errx(EX_DATAERR, "missing MAC type");
4505	if (strcmp(av, "any") != 0) { /* we have a non-null type */
4506		fill_newports((ipfw_insn_u16 *)cmd, av, IPPROTO_ETHERTYPE);
4507		cmd->opcode = O_MAC_TYPE;
4508		return cmd;
4509	} else
4510		return NULL;
4511}
4512
4513static ipfw_insn *
4514add_proto0(ipfw_insn *cmd, char *av, u_char *protop)
4515{
4516	struct protoent *pe;
4517	char *ep;
4518	int proto;
4519
4520	proto = strtol(av, &ep, 10);
4521	if (*ep != '\0' || proto <= 0) {
4522		if ((pe = getprotobyname(av)) == NULL)
4523			return NULL;
4524		proto = pe->p_proto;
4525	}
4526
4527	fill_cmd(cmd, O_PROTO, 0, proto);
4528	*protop = proto;
4529	return cmd;
4530}
4531
4532static ipfw_insn *
4533add_proto(ipfw_insn *cmd, char *av, u_char *protop)
4534{
4535	u_char proto = IPPROTO_IP;
4536
4537	if (_substrcmp(av, "all") == 0 || strcmp(av, "ip") == 0)
4538		; /* do not set O_IP4 nor O_IP6 */
4539	else if (strcmp(av, "ip4") == 0)
4540		/* explicit "just IPv4" rule */
4541		fill_cmd(cmd, O_IP4, 0, 0);
4542	else if (strcmp(av, "ip6") == 0) {
4543		/* explicit "just IPv6" rule */
4544		proto = IPPROTO_IPV6;
4545		fill_cmd(cmd, O_IP6, 0, 0);
4546	} else
4547		return add_proto0(cmd, av, protop);
4548
4549	*protop = proto;
4550	return cmd;
4551}
4552
4553static ipfw_insn *
4554add_proto_compat(ipfw_insn *cmd, char *av, u_char *protop)
4555{
4556	u_char proto = IPPROTO_IP;
4557
4558	if (_substrcmp(av, "all") == 0 || strcmp(av, "ip") == 0)
4559		; /* do not set O_IP4 nor O_IP6 */
4560	else if (strcmp(av, "ipv4") == 0 || strcmp(av, "ip4") == 0)
4561		/* explicit "just IPv4" rule */
4562		fill_cmd(cmd, O_IP4, 0, 0);
4563	else if (strcmp(av, "ipv6") == 0 || strcmp(av, "ip6") == 0) {
4564		/* explicit "just IPv6" rule */
4565		proto = IPPROTO_IPV6;
4566		fill_cmd(cmd, O_IP6, 0, 0);
4567	} else
4568		return add_proto0(cmd, av, protop);
4569
4570	*protop = proto;
4571	return cmd;
4572}
4573
4574static ipfw_insn *
4575add_srcip(ipfw_insn *cmd, char *av)
4576{
4577	fill_ip((ipfw_insn_ip *)cmd, av);
4578	if (cmd->opcode == O_IP_DST_SET)			/* set */
4579		cmd->opcode = O_IP_SRC_SET;
4580	else if (cmd->opcode == O_IP_DST_LOOKUP)		/* table */
4581		cmd->opcode = O_IP_SRC_LOOKUP;
4582	else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn))		/* me */
4583		cmd->opcode = O_IP_SRC_ME;
4584	else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn_u32))	/* one IP */
4585		cmd->opcode = O_IP_SRC;
4586	else							/* addr/mask */
4587		cmd->opcode = O_IP_SRC_MASK;
4588	return cmd;
4589}
4590
4591static ipfw_insn *
4592add_dstip(ipfw_insn *cmd, char *av)
4593{
4594	fill_ip((ipfw_insn_ip *)cmd, av);
4595	if (cmd->opcode == O_IP_DST_SET)			/* set */
4596		;
4597	else if (cmd->opcode == O_IP_DST_LOOKUP)		/* table */
4598		;
4599	else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn))		/* me */
4600		cmd->opcode = O_IP_DST_ME;
4601	else if (F_LEN(cmd) == F_INSN_SIZE(ipfw_insn_u32))	/* one IP */
4602		cmd->opcode = O_IP_DST;
4603	else							/* addr/mask */
4604		cmd->opcode = O_IP_DST_MASK;
4605	return cmd;
4606}
4607
4608static ipfw_insn *
4609add_ports(ipfw_insn *cmd, char *av, u_char proto, int opcode)
4610{
4611	if (_substrcmp(av, "any") == 0) {
4612		return NULL;
4613	} else if (fill_newports((ipfw_insn_u16 *)cmd, av, proto)) {
4614		/* XXX todo: check that we have a protocol with ports */
4615		cmd->opcode = opcode;
4616		return cmd;
4617	}
4618	return NULL;
4619}
4620
4621static ipfw_insn *
4622add_src(ipfw_insn *cmd, char *av, u_char proto)
4623{
4624	struct in6_addr a;
4625	char *host, *ch;
4626	ipfw_insn *ret = NULL;
4627
4628	if ((host = strdup(av)) == NULL)
4629		return NULL;
4630	if ((ch = strrchr(host, '/')) != NULL)
4631		*ch = '\0';
4632
4633	if (proto == IPPROTO_IPV6  || strcmp(av, "me6") == 0 ||
4634	    inet_pton(AF_INET6, host, &a))
4635		ret = add_srcip6(cmd, av);
4636	/* XXX: should check for IPv4, not !IPv6 */
4637	if (ret == NULL && (proto == IPPROTO_IP || strcmp(av, "me") == 0 ||
4638	    !inet_pton(AF_INET6, host, &a)))
4639		ret = add_srcip(cmd, av);
4640	if (ret == NULL && strcmp(av, "any") != 0)
4641		ret = cmd;
4642
4643	free(host);
4644	return ret;
4645}
4646
4647static ipfw_insn *
4648add_dst(ipfw_insn *cmd, char *av, u_char proto)
4649{
4650	struct in6_addr a;
4651	char *host, *ch;
4652	ipfw_insn *ret = NULL;
4653
4654	if ((host = strdup(av)) == NULL)
4655		return NULL;
4656	if ((ch = strrchr(host, '/')) != NULL)
4657		*ch = '\0';
4658
4659	if (proto == IPPROTO_IPV6  || strcmp(av, "me6") == 0 ||
4660	    inet_pton(AF_INET6, host, &a))
4661		ret = add_dstip6(cmd, av);
4662	/* XXX: should check for IPv4, not !IPv6 */
4663	if (ret == NULL && (proto == IPPROTO_IP || strcmp(av, "me") == 0 ||
4664	    !inet_pton(AF_INET6, host, &a)))
4665		ret = add_dstip(cmd, av);
4666	if (ret == NULL && strcmp(av, "any") != 0)
4667		ret = cmd;
4668
4669	free(host);
4670	return ret;
4671}
4672
4673/*
4674 * Parse arguments and assemble the microinstructions which make up a rule.
4675 * Rules are added into the 'rulebuf' and then copied in the correct order
4676 * into the actual rule.
4677 *
4678 * The syntax for a rule starts with the action, followed by
4679 * optional action parameters, and the various match patterns.
4680 * In the assembled microcode, the first opcode must be an O_PROBE_STATE
4681 * (generated if the rule includes a keep-state option), then the
4682 * various match patterns, log/altq actions, and the actual action.
4683 *
4684 */
4685static void
4686add(int ac, char *av[])
4687{
4688	/*
4689	 * rules are added into the 'rulebuf' and then copied in
4690	 * the correct order into the actual rule.
4691	 * Some things that need to go out of order (prob, action etc.)
4692	 * go into actbuf[].
4693	 */
4694	static uint32_t rulebuf[255], actbuf[255], cmdbuf[255];
4695
4696	ipfw_insn *src, *dst, *cmd, *action, *prev=NULL;
4697	ipfw_insn *first_cmd;	/* first match pattern */
4698
4699	struct ip_fw *rule;
4700
4701	/*
4702	 * various flags used to record that we entered some fields.
4703	 */
4704	ipfw_insn *have_state = NULL;	/* check-state or keep-state */
4705	ipfw_insn *have_log = NULL, *have_altq = NULL, *have_tag = NULL;
4706	size_t len;
4707
4708	int i;
4709
4710	int open_par = 0;	/* open parenthesis ( */
4711
4712	/* proto is here because it is used to fetch ports */
4713	u_char proto = IPPROTO_IP;	/* default protocol */
4714
4715	double match_prob = 1; /* match probability, default is always match */
4716
4717	bzero(actbuf, sizeof(actbuf));		/* actions go here */
4718	bzero(cmdbuf, sizeof(cmdbuf));
4719	bzero(rulebuf, sizeof(rulebuf));
4720
4721	rule = (struct ip_fw *)rulebuf;
4722	cmd = (ipfw_insn *)cmdbuf;
4723	action = (ipfw_insn *)actbuf;
4724
4725	av++; ac--;
4726
4727	/* [rule N]	-- Rule number optional */
4728	if (ac && isdigit(**av)) {
4729		rule->rulenum = atoi(*av);
4730		av++;
4731		ac--;
4732	}
4733
4734	/* [set N]	-- set number (0..RESVD_SET), optional */
4735	if (ac > 1 && _substrcmp(*av, "set") == 0) {
4736		int set = strtoul(av[1], NULL, 10);
4737		if (set < 0 || set > RESVD_SET)
4738			errx(EX_DATAERR, "illegal set %s", av[1]);
4739		rule->set = set;
4740		av += 2; ac -= 2;
4741	}
4742
4743	/* [prob D]	-- match probability, optional */
4744	if (ac > 1 && _substrcmp(*av, "prob") == 0) {
4745		match_prob = strtod(av[1], NULL);
4746
4747		if (match_prob <= 0 || match_prob > 1)
4748			errx(EX_DATAERR, "illegal match prob. %s", av[1]);
4749		av += 2; ac -= 2;
4750	}
4751
4752	/* action	-- mandatory */
4753	NEED1("missing action");
4754	i = match_token(rule_actions, *av);
4755	ac--; av++;
4756	action->len = 1;	/* default */
4757	switch(i) {
4758	case TOK_CHECKSTATE:
4759		have_state = action;
4760		action->opcode = O_CHECK_STATE;
4761		break;
4762
4763	case TOK_ACCEPT:
4764		action->opcode = O_ACCEPT;
4765		break;
4766
4767	case TOK_DENY:
4768		action->opcode = O_DENY;
4769		action->arg1 = 0;
4770		break;
4771
4772	case TOK_REJECT:
4773		action->opcode = O_REJECT;
4774		action->arg1 = ICMP_UNREACH_HOST;
4775		break;
4776
4777	case TOK_RESET:
4778		action->opcode = O_REJECT;
4779		action->arg1 = ICMP_REJECT_RST;
4780		break;
4781
4782	case TOK_RESET6:
4783		action->opcode = O_UNREACH6;
4784		action->arg1 = ICMP6_UNREACH_RST;
4785		break;
4786
4787	case TOK_UNREACH:
4788		action->opcode = O_REJECT;
4789		NEED1("missing reject code");
4790		fill_reject_code(&action->arg1, *av);
4791		ac--; av++;
4792		break;
4793
4794	case TOK_UNREACH6:
4795		action->opcode = O_UNREACH6;
4796		NEED1("missing unreach code");
4797		fill_unreach6_code(&action->arg1, *av);
4798		ac--; av++;
4799		break;
4800
4801	case TOK_COUNT:
4802		action->opcode = O_COUNT;
4803		break;
4804
4805	case TOK_QUEUE:
4806		action->opcode = O_QUEUE;
4807		goto chkarg;
4808	case TOK_PIPE:
4809		action->opcode = O_PIPE;
4810		goto chkarg;
4811	case TOK_SKIPTO:
4812		action->opcode = O_SKIPTO;
4813		goto chkarg;
4814	case TOK_NETGRAPH:
4815		action->opcode = O_NETGRAPH;
4816		goto chkarg;
4817	case TOK_NGTEE:
4818		action->opcode = O_NGTEE;
4819		goto chkarg;
4820	case TOK_DIVERT:
4821		action->opcode = O_DIVERT;
4822		goto chkarg;
4823	case TOK_TEE:
4824		action->opcode = O_TEE;
4825chkarg:
4826		if (!ac)
4827			errx(EX_USAGE, "missing argument for %s", *(av - 1));
4828		if (isdigit(**av)) {
4829			action->arg1 = strtoul(*av, NULL, 10);
4830			if (action->arg1 <= 0 || action->arg1 >= IP_FW_TABLEARG)
4831				errx(EX_DATAERR, "illegal argument for %s",
4832				    *(av - 1));
4833		} else if (_substrcmp(*av, TABLEARG) == 0) {
4834			action->arg1 = IP_FW_TABLEARG;
4835		} else if (i == TOK_DIVERT || i == TOK_TEE) {
4836			struct servent *s;
4837			setservent(1);
4838			s = getservbyname(av[0], "divert");
4839			if (s != NULL)
4840				action->arg1 = ntohs(s->s_port);
4841			else
4842				errx(EX_DATAERR, "illegal divert/tee port");
4843		} else
4844			errx(EX_DATAERR, "illegal argument for %s", *(av - 1));
4845		ac--; av++;
4846		break;
4847
4848	case TOK_FORWARD: {
4849		ipfw_insn_sa *p = (ipfw_insn_sa *)action;
4850		char *s, *end;
4851
4852		NEED1("missing forward address[:port]");
4853
4854		action->opcode = O_FORWARD_IP;
4855		action->len = F_INSN_SIZE(ipfw_insn_sa);
4856
4857		p->sa.sin_len = sizeof(struct sockaddr_in);
4858		p->sa.sin_family = AF_INET;
4859		p->sa.sin_port = 0;
4860		/*
4861		 * locate the address-port separator (':' or ',')
4862		 */
4863		s = strchr(*av, ':');
4864		if (s == NULL)
4865			s = strchr(*av, ',');
4866		if (s != NULL) {
4867			*(s++) = '\0';
4868			i = strtoport(s, &end, 0 /* base */, 0 /* proto */);
4869			if (s == end)
4870				errx(EX_DATAERR,
4871				    "illegal forwarding port ``%s''", s);
4872			p->sa.sin_port = (u_short)i;
4873		}
4874		if (_substrcmp(*av, "tablearg") == 0)
4875			p->sa.sin_addr.s_addr = INADDR_ANY;
4876		else
4877			lookup_host(*av, &(p->sa.sin_addr));
4878		ac--; av++;
4879		break;
4880	    }
4881	case TOK_COMMENT:
4882		/* pretend it is a 'count' rule followed by the comment */
4883		action->opcode = O_COUNT;
4884		ac++; av--;	/* go back... */
4885		break;
4886
4887	case TOK_NAT:
4888 		action->opcode = O_NAT;
4889 		action->len = F_INSN_SIZE(ipfw_insn_nat);
4890 		NEED1("missing nat number");
4891 	        action->arg1 = strtoul(*av, NULL, 10);
4892 		ac--; av++;
4893 		break;
4894
4895	default:
4896		errx(EX_DATAERR, "invalid action %s\n", av[-1]);
4897	}
4898	action = next_cmd(action);
4899
4900	/*
4901	 * [altq queuename] -- altq tag, optional
4902	 * [log [logamount N]]	-- log, optional
4903	 *
4904	 * If they exist, it go first in the cmdbuf, but then it is
4905	 * skipped in the copy section to the end of the buffer.
4906	 */
4907	while (ac != 0 && (i = match_token(rule_action_params, *av)) != -1) {
4908		ac--; av++;
4909		switch (i) {
4910		case TOK_LOG:
4911		    {
4912			ipfw_insn_log *c = (ipfw_insn_log *)cmd;
4913			int l;
4914
4915			if (have_log)
4916				errx(EX_DATAERR,
4917				    "log cannot be specified more than once");
4918			have_log = (ipfw_insn *)c;
4919			cmd->len = F_INSN_SIZE(ipfw_insn_log);
4920			cmd->opcode = O_LOG;
4921			if (ac && _substrcmp(*av, "logamount") == 0) {
4922				ac--; av++;
4923				NEED1("logamount requires argument");
4924				l = atoi(*av);
4925				if (l < 0)
4926					errx(EX_DATAERR,
4927					    "logamount must be positive");
4928				c->max_log = l;
4929				ac--; av++;
4930			} else {
4931				len = sizeof(c->max_log);
4932				if (sysctlbyname("net.inet.ip.fw.verbose_limit",
4933				    &c->max_log, &len, NULL, 0) == -1)
4934					errx(1, "sysctlbyname(\"%s\")",
4935					    "net.inet.ip.fw.verbose_limit");
4936			}
4937		    }
4938			break;
4939
4940		case TOK_ALTQ:
4941		    {
4942			ipfw_insn_altq *a = (ipfw_insn_altq *)cmd;
4943
4944			NEED1("missing altq queue name");
4945			if (have_altq)
4946				errx(EX_DATAERR,
4947				    "altq cannot be specified more than once");
4948			have_altq = (ipfw_insn *)a;
4949			cmd->len = F_INSN_SIZE(ipfw_insn_altq);
4950			cmd->opcode = O_ALTQ;
4951			fill_altq_qid(&a->qid, *av);
4952			ac--; av++;
4953		    }
4954			break;
4955
4956		case TOK_TAG:
4957		case TOK_UNTAG: {
4958			uint16_t tag;
4959
4960			if (have_tag)
4961				errx(EX_USAGE, "tag and untag cannot be "
4962				    "specified more than once");
4963			GET_UINT_ARG(tag, 1, 65534, i, rule_action_params);
4964			have_tag = cmd;
4965			fill_cmd(cmd, O_TAG, (i == TOK_TAG) ? 0: F_NOT, tag);
4966			ac--; av++;
4967			break;
4968		}
4969
4970		default:
4971			abort();
4972		}
4973		cmd = next_cmd(cmd);
4974	}
4975
4976	if (have_state)	/* must be a check-state, we are done */
4977		goto done;
4978
4979#define OR_START(target)					\
4980	if (ac && (*av[0] == '(' || *av[0] == '{')) {		\
4981		if (open_par)					\
4982			errx(EX_USAGE, "nested \"(\" not allowed\n"); \
4983		prev = NULL;					\
4984		open_par = 1;					\
4985		if ( (av[0])[1] == '\0') {			\
4986			ac--; av++;				\
4987		} else						\
4988			(*av)++;				\
4989	}							\
4990	target:							\
4991
4992
4993#define	CLOSE_PAR						\
4994	if (open_par) {						\
4995		if (ac && (					\
4996		    strcmp(*av, ")") == 0 ||			\
4997		    strcmp(*av, "}") == 0)) {			\
4998			prev = NULL;				\
4999			open_par = 0;				\
5000			ac--; av++;				\
5001		} else						\
5002			errx(EX_USAGE, "missing \")\"\n");	\
5003	}
5004
5005#define NOT_BLOCK						\
5006	if (ac && _substrcmp(*av, "not") == 0) {		\
5007		if (cmd->len & F_NOT)				\
5008			errx(EX_USAGE, "double \"not\" not allowed\n"); \
5009		cmd->len |= F_NOT;				\
5010		ac--; av++;					\
5011	}
5012
5013#define OR_BLOCK(target)					\
5014	if (ac && _substrcmp(*av, "or") == 0) {		\
5015		if (prev == NULL || open_par == 0)		\
5016			errx(EX_DATAERR, "invalid OR block");	\
5017		prev->len |= F_OR;				\
5018		ac--; av++;					\
5019		goto target;					\
5020	}							\
5021	CLOSE_PAR;
5022
5023	first_cmd = cmd;
5024
5025#if 0
5026	/*
5027	 * MAC addresses, optional.
5028	 * If we have this, we skip the part "proto from src to dst"
5029	 * and jump straight to the option parsing.
5030	 */
5031	NOT_BLOCK;
5032	NEED1("missing protocol");
5033	if (_substrcmp(*av, "MAC") == 0 ||
5034	    _substrcmp(*av, "mac") == 0) {
5035		ac--; av++;	/* the "MAC" keyword */
5036		add_mac(cmd, ac, av); /* exits in case of errors */
5037		cmd = next_cmd(cmd);
5038		ac -= 2; av += 2;	/* dst-mac and src-mac */
5039		NOT_BLOCK;
5040		NEED1("missing mac type");
5041		if (add_mactype(cmd, ac, av[0]))
5042			cmd = next_cmd(cmd);
5043		ac--; av++;	/* any or mac-type */
5044		goto read_options;
5045	}
5046#endif
5047
5048	/*
5049	 * protocol, mandatory
5050	 */
5051    OR_START(get_proto);
5052	NOT_BLOCK;
5053	NEED1("missing protocol");
5054	if (add_proto_compat(cmd, *av, &proto)) {
5055		av++; ac--;
5056		if (F_LEN(cmd) != 0) {
5057			prev = cmd;
5058			cmd = next_cmd(cmd);
5059		}
5060	} else if (first_cmd != cmd) {
5061		errx(EX_DATAERR, "invalid protocol ``%s''", *av);
5062	} else
5063		goto read_options;
5064    OR_BLOCK(get_proto);
5065
5066	/*
5067	 * "from", mandatory
5068	 */
5069	if (!ac || _substrcmp(*av, "from") != 0)
5070		errx(EX_USAGE, "missing ``from''");
5071	ac--; av++;
5072
5073	/*
5074	 * source IP, mandatory
5075	 */
5076    OR_START(source_ip);
5077	NOT_BLOCK;	/* optional "not" */
5078	NEED1("missing source address");
5079	if (add_src(cmd, *av, proto)) {
5080		ac--; av++;
5081		if (F_LEN(cmd) != 0) {	/* ! any */
5082			prev = cmd;
5083			cmd = next_cmd(cmd);
5084		}
5085	} else
5086		errx(EX_USAGE, "bad source address %s", *av);
5087    OR_BLOCK(source_ip);
5088
5089	/*
5090	 * source ports, optional
5091	 */
5092	NOT_BLOCK;	/* optional "not" */
5093	if (ac) {
5094		if (_substrcmp(*av, "any") == 0 ||
5095		    add_ports(cmd, *av, proto, O_IP_SRCPORT)) {
5096			ac--; av++;
5097			if (F_LEN(cmd) != 0)
5098				cmd = next_cmd(cmd);
5099		}
5100	}
5101
5102	/*
5103	 * "to", mandatory
5104	 */
5105	if (!ac || _substrcmp(*av, "to") != 0)
5106		errx(EX_USAGE, "missing ``to''");
5107	av++; ac--;
5108
5109	/*
5110	 * destination, mandatory
5111	 */
5112    OR_START(dest_ip);
5113	NOT_BLOCK;	/* optional "not" */
5114	NEED1("missing dst address");
5115	if (add_dst(cmd, *av, proto)) {
5116		ac--; av++;
5117		if (F_LEN(cmd) != 0) {	/* ! any */
5118			prev = cmd;
5119			cmd = next_cmd(cmd);
5120		}
5121	} else
5122		errx( EX_USAGE, "bad destination address %s", *av);
5123    OR_BLOCK(dest_ip);
5124
5125	/*
5126	 * dest. ports, optional
5127	 */
5128	NOT_BLOCK;	/* optional "not" */
5129	if (ac) {
5130		if (_substrcmp(*av, "any") == 0 ||
5131		    add_ports(cmd, *av, proto, O_IP_DSTPORT)) {
5132			ac--; av++;
5133			if (F_LEN(cmd) != 0)
5134				cmd = next_cmd(cmd);
5135		}
5136	}
5137
5138read_options:
5139	if (ac && first_cmd == cmd) {
5140		/*
5141		 * nothing specified so far, store in the rule to ease
5142		 * printout later.
5143		 */
5144		 rule->_pad = 1;
5145	}
5146	prev = NULL;
5147	while (ac) {
5148		char *s;
5149		ipfw_insn_u32 *cmd32;	/* alias for cmd */
5150
5151		s = *av;
5152		cmd32 = (ipfw_insn_u32 *)cmd;
5153
5154		if (*s == '!') {	/* alternate syntax for NOT */
5155			if (cmd->len & F_NOT)
5156				errx(EX_USAGE, "double \"not\" not allowed\n");
5157			cmd->len = F_NOT;
5158			s++;
5159		}
5160		i = match_token(rule_options, s);
5161		ac--; av++;
5162		switch(i) {
5163		case TOK_NOT:
5164			if (cmd->len & F_NOT)
5165				errx(EX_USAGE, "double \"not\" not allowed\n");
5166			cmd->len = F_NOT;
5167			break;
5168
5169		case TOK_OR:
5170			if (open_par == 0 || prev == NULL)
5171				errx(EX_USAGE, "invalid \"or\" block\n");
5172			prev->len |= F_OR;
5173			break;
5174
5175		case TOK_STARTBRACE:
5176			if (open_par)
5177				errx(EX_USAGE, "+nested \"(\" not allowed\n");
5178			open_par = 1;
5179			break;
5180
5181		case TOK_ENDBRACE:
5182			if (!open_par)
5183				errx(EX_USAGE, "+missing \")\"\n");
5184			open_par = 0;
5185			prev = NULL;
5186        		break;
5187
5188		case TOK_IN:
5189			fill_cmd(cmd, O_IN, 0, 0);
5190			break;
5191
5192		case TOK_OUT:
5193			cmd->len ^= F_NOT; /* toggle F_NOT */
5194			fill_cmd(cmd, O_IN, 0, 0);
5195			break;
5196
5197		case TOK_DIVERTED:
5198			fill_cmd(cmd, O_DIVERTED, 0, 3);
5199			break;
5200
5201		case TOK_DIVERTEDLOOPBACK:
5202			fill_cmd(cmd, O_DIVERTED, 0, 1);
5203			break;
5204
5205		case TOK_DIVERTEDOUTPUT:
5206			fill_cmd(cmd, O_DIVERTED, 0, 2);
5207			break;
5208
5209		case TOK_FRAG:
5210			fill_cmd(cmd, O_FRAG, 0, 0);
5211			break;
5212
5213		case TOK_LAYER2:
5214			fill_cmd(cmd, O_LAYER2, 0, 0);
5215			break;
5216
5217		case TOK_XMIT:
5218		case TOK_RECV:
5219		case TOK_VIA:
5220			NEED1("recv, xmit, via require interface name"
5221				" or address");
5222			fill_iface((ipfw_insn_if *)cmd, av[0]);
5223			ac--; av++;
5224			if (F_LEN(cmd) == 0)	/* not a valid address */
5225				break;
5226			if (i == TOK_XMIT)
5227				cmd->opcode = O_XMIT;
5228			else if (i == TOK_RECV)
5229				cmd->opcode = O_RECV;
5230			else if (i == TOK_VIA)
5231				cmd->opcode = O_VIA;
5232			break;
5233
5234		case TOK_ICMPTYPES:
5235			NEED1("icmptypes requires list of types");
5236			fill_icmptypes((ipfw_insn_u32 *)cmd, *av);
5237			av++; ac--;
5238			break;
5239
5240		case TOK_ICMP6TYPES:
5241			NEED1("icmptypes requires list of types");
5242			fill_icmp6types((ipfw_insn_icmp6 *)cmd, *av);
5243			av++; ac--;
5244			break;
5245
5246		case TOK_IPTTL:
5247			NEED1("ipttl requires TTL");
5248			if (strpbrk(*av, "-,")) {
5249			    if (!add_ports(cmd, *av, 0, O_IPTTL))
5250				errx(EX_DATAERR, "invalid ipttl %s", *av);
5251			} else
5252			    fill_cmd(cmd, O_IPTTL, 0, strtoul(*av, NULL, 0));
5253			ac--; av++;
5254			break;
5255
5256		case TOK_IPID:
5257			NEED1("ipid requires id");
5258			if (strpbrk(*av, "-,")) {
5259			    if (!add_ports(cmd, *av, 0, O_IPID))
5260				errx(EX_DATAERR, "invalid ipid %s", *av);
5261			} else
5262			    fill_cmd(cmd, O_IPID, 0, strtoul(*av, NULL, 0));
5263			ac--; av++;
5264			break;
5265
5266		case TOK_IPLEN:
5267			NEED1("iplen requires length");
5268			if (strpbrk(*av, "-,")) {
5269			    if (!add_ports(cmd, *av, 0, O_IPLEN))
5270				errx(EX_DATAERR, "invalid ip len %s", *av);
5271			} else
5272			    fill_cmd(cmd, O_IPLEN, 0, strtoul(*av, NULL, 0));
5273			ac--; av++;
5274			break;
5275
5276		case TOK_IPVER:
5277			NEED1("ipver requires version");
5278			fill_cmd(cmd, O_IPVER, 0, strtoul(*av, NULL, 0));
5279			ac--; av++;
5280			break;
5281
5282		case TOK_IPPRECEDENCE:
5283			NEED1("ipprecedence requires value");
5284			fill_cmd(cmd, O_IPPRECEDENCE, 0,
5285			    (strtoul(*av, NULL, 0) & 7) << 5);
5286			ac--; av++;
5287			break;
5288
5289		case TOK_IPOPTS:
5290			NEED1("missing argument for ipoptions");
5291			fill_flags(cmd, O_IPOPT, f_ipopts, *av);
5292			ac--; av++;
5293			break;
5294
5295		case TOK_IPTOS:
5296			NEED1("missing argument for iptos");
5297			fill_flags(cmd, O_IPTOS, f_iptos, *av);
5298			ac--; av++;
5299			break;
5300
5301		case TOK_UID:
5302			NEED1("uid requires argument");
5303		    {
5304			char *end;
5305			uid_t uid;
5306			struct passwd *pwd;
5307
5308			cmd->opcode = O_UID;
5309			uid = strtoul(*av, &end, 0);
5310			pwd = (*end == '\0') ? getpwuid(uid) : getpwnam(*av);
5311			if (pwd == NULL)
5312				errx(EX_DATAERR, "uid \"%s\" nonexistent", *av);
5313			cmd32->d[0] = pwd->pw_uid;
5314			cmd->len |= F_INSN_SIZE(ipfw_insn_u32);
5315			ac--; av++;
5316		    }
5317			break;
5318
5319		case TOK_GID:
5320			NEED1("gid requires argument");
5321		    {
5322			char *end;
5323			gid_t gid;
5324			struct group *grp;
5325
5326			cmd->opcode = O_GID;
5327			gid = strtoul(*av, &end, 0);
5328			grp = (*end == '\0') ? getgrgid(gid) : getgrnam(*av);
5329			if (grp == NULL)
5330				errx(EX_DATAERR, "gid \"%s\" nonexistent", *av);
5331			cmd32->d[0] = grp->gr_gid;
5332			cmd->len |= F_INSN_SIZE(ipfw_insn_u32);
5333			ac--; av++;
5334		    }
5335			break;
5336
5337		case TOK_JAIL:
5338			NEED1("jail requires argument");
5339		    {
5340			char *end;
5341			int jid;
5342
5343			cmd->opcode = O_JAIL;
5344			jid = (int)strtol(*av, &end, 0);
5345			if (jid < 0 || *end != '\0')
5346				errx(EX_DATAERR, "jail requires prison ID");
5347			cmd32->d[0] = (uint32_t)jid;
5348			cmd->len |= F_INSN_SIZE(ipfw_insn_u32);
5349			ac--; av++;
5350		    }
5351			break;
5352
5353		case TOK_ESTAB:
5354			fill_cmd(cmd, O_ESTAB, 0, 0);
5355			break;
5356
5357		case TOK_SETUP:
5358			fill_cmd(cmd, O_TCPFLAGS, 0,
5359				(TH_SYN) | ( (TH_ACK) & 0xff) <<8 );
5360			break;
5361
5362		case TOK_TCPDATALEN:
5363			NEED1("tcpdatalen requires length");
5364			if (strpbrk(*av, "-,")) {
5365			    if (!add_ports(cmd, *av, 0, O_TCPDATALEN))
5366				errx(EX_DATAERR, "invalid tcpdata len %s", *av);
5367			} else
5368			    fill_cmd(cmd, O_TCPDATALEN, 0,
5369				    strtoul(*av, NULL, 0));
5370			ac--; av++;
5371			break;
5372
5373		case TOK_TCPOPTS:
5374			NEED1("missing argument for tcpoptions");
5375			fill_flags(cmd, O_TCPOPTS, f_tcpopts, *av);
5376			ac--; av++;
5377			break;
5378
5379		case TOK_TCPSEQ:
5380		case TOK_TCPACK:
5381			NEED1("tcpseq/tcpack requires argument");
5382			cmd->len = F_INSN_SIZE(ipfw_insn_u32);
5383			cmd->opcode = (i == TOK_TCPSEQ) ? O_TCPSEQ : O_TCPACK;
5384			cmd32->d[0] = htonl(strtoul(*av, NULL, 0));
5385			ac--; av++;
5386			break;
5387
5388		case TOK_TCPWIN:
5389			NEED1("tcpwin requires length");
5390			fill_cmd(cmd, O_TCPWIN, 0,
5391			    htons(strtoul(*av, NULL, 0)));
5392			ac--; av++;
5393			break;
5394
5395		case TOK_TCPFLAGS:
5396			NEED1("missing argument for tcpflags");
5397			cmd->opcode = O_TCPFLAGS;
5398			fill_flags(cmd, O_TCPFLAGS, f_tcpflags, *av);
5399			ac--; av++;
5400			break;
5401
5402		case TOK_KEEPSTATE:
5403			if (open_par)
5404				errx(EX_USAGE, "keep-state cannot be part "
5405				    "of an or block");
5406			if (have_state)
5407				errx(EX_USAGE, "only one of keep-state "
5408					"and limit is allowed");
5409			have_state = cmd;
5410			fill_cmd(cmd, O_KEEP_STATE, 0, 0);
5411			break;
5412
5413		case TOK_LIMIT: {
5414			ipfw_insn_limit *c = (ipfw_insn_limit *)cmd;
5415			int val;
5416
5417			if (open_par)
5418				errx(EX_USAGE,
5419				    "limit cannot be part of an or block");
5420			if (have_state)
5421				errx(EX_USAGE, "only one of keep-state and "
5422				    "limit is allowed");
5423			have_state = cmd;
5424
5425			cmd->len = F_INSN_SIZE(ipfw_insn_limit);
5426			cmd->opcode = O_LIMIT;
5427			c->limit_mask = c->conn_limit = 0;
5428
5429			while (ac > 0) {
5430				if ((val = match_token(limit_masks, *av)) <= 0)
5431					break;
5432				c->limit_mask |= val;
5433				ac--; av++;
5434			}
5435
5436			if (c->limit_mask == 0)
5437				errx(EX_USAGE, "limit: missing limit mask");
5438
5439			GET_UINT_ARG(c->conn_limit, 1, 65534, TOK_LIMIT,
5440			    rule_options);
5441
5442			ac--; av++;
5443			break;
5444		}
5445
5446		case TOK_PROTO:
5447			NEED1("missing protocol");
5448			if (add_proto(cmd, *av, &proto)) {
5449				ac--; av++;
5450			} else
5451				errx(EX_DATAERR, "invalid protocol ``%s''",
5452				    *av);
5453			break;
5454
5455		case TOK_SRCIP:
5456			NEED1("missing source IP");
5457			if (add_srcip(cmd, *av)) {
5458				ac--; av++;
5459			}
5460			break;
5461
5462		case TOK_DSTIP:
5463			NEED1("missing destination IP");
5464			if (add_dstip(cmd, *av)) {
5465				ac--; av++;
5466			}
5467			break;
5468
5469		case TOK_SRCIP6:
5470			NEED1("missing source IP6");
5471			if (add_srcip6(cmd, *av)) {
5472				ac--; av++;
5473			}
5474			break;
5475
5476		case TOK_DSTIP6:
5477			NEED1("missing destination IP6");
5478			if (add_dstip6(cmd, *av)) {
5479				ac--; av++;
5480			}
5481			break;
5482
5483		case TOK_SRCPORT:
5484			NEED1("missing source port");
5485			if (_substrcmp(*av, "any") == 0 ||
5486			    add_ports(cmd, *av, proto, O_IP_SRCPORT)) {
5487				ac--; av++;
5488			} else
5489				errx(EX_DATAERR, "invalid source port %s", *av);
5490			break;
5491
5492		case TOK_DSTPORT:
5493			NEED1("missing destination port");
5494			if (_substrcmp(*av, "any") == 0 ||
5495			    add_ports(cmd, *av, proto, O_IP_DSTPORT)) {
5496				ac--; av++;
5497			} else
5498				errx(EX_DATAERR, "invalid destination port %s",
5499				    *av);
5500			break;
5501
5502		case TOK_MAC:
5503			if (add_mac(cmd, ac, av)) {
5504				ac -= 2; av += 2;
5505			}
5506			break;
5507
5508		case TOK_MACTYPE:
5509			NEED1("missing mac type");
5510			if (!add_mactype(cmd, ac, *av))
5511				errx(EX_DATAERR, "invalid mac type %s", *av);
5512			ac--; av++;
5513			break;
5514
5515		case TOK_VERREVPATH:
5516			fill_cmd(cmd, O_VERREVPATH, 0, 0);
5517			break;
5518
5519		case TOK_VERSRCREACH:
5520			fill_cmd(cmd, O_VERSRCREACH, 0, 0);
5521			break;
5522
5523		case TOK_ANTISPOOF:
5524			fill_cmd(cmd, O_ANTISPOOF, 0, 0);
5525			break;
5526
5527		case TOK_IPSEC:
5528			fill_cmd(cmd, O_IPSEC, 0, 0);
5529			break;
5530
5531		case TOK_IPV6:
5532			fill_cmd(cmd, O_IP6, 0, 0);
5533			break;
5534
5535		case TOK_IPV4:
5536			fill_cmd(cmd, O_IP4, 0, 0);
5537			break;
5538
5539		case TOK_EXT6HDR:
5540			fill_ext6hdr( cmd, *av );
5541			ac--; av++;
5542			break;
5543
5544		case TOK_FLOWID:
5545			if (proto != IPPROTO_IPV6 )
5546				errx( EX_USAGE, "flow-id filter is active "
5547				    "only for ipv6 protocol\n");
5548			fill_flow6( (ipfw_insn_u32 *) cmd, *av );
5549			ac--; av++;
5550			break;
5551
5552		case TOK_COMMENT:
5553			fill_comment(cmd, ac, av);
5554			av += ac;
5555			ac = 0;
5556			break;
5557
5558		case TOK_TAGGED:
5559			if (ac > 0 && strpbrk(*av, "-,")) {
5560				if (!add_ports(cmd, *av, 0, O_TAGGED))
5561					errx(EX_DATAERR, "tagged: invalid tag"
5562					    " list: %s", *av);
5563			}
5564			else {
5565				uint16_t tag;
5566
5567				GET_UINT_ARG(tag, 1, 65534, TOK_TAGGED,
5568				    rule_options);
5569				fill_cmd(cmd, O_TAGGED, 0, tag);
5570			}
5571			ac--; av++;
5572			break;
5573
5574		default:
5575			errx(EX_USAGE, "unrecognised option [%d] %s\n", i, s);
5576		}
5577		if (F_LEN(cmd) > 0) {	/* prepare to advance */
5578			prev = cmd;
5579			cmd = next_cmd(cmd);
5580		}
5581	}
5582
5583done:
5584	/*
5585	 * Now copy stuff into the rule.
5586	 * If we have a keep-state option, the first instruction
5587	 * must be a PROBE_STATE (which is generated here).
5588	 * If we have a LOG option, it was stored as the first command,
5589	 * and now must be moved to the top of the action part.
5590	 */
5591	dst = (ipfw_insn *)rule->cmd;
5592
5593	/*
5594	 * First thing to write into the command stream is the match probability.
5595	 */
5596	if (match_prob != 1) { /* 1 means always match */
5597		dst->opcode = O_PROB;
5598		dst->len = 2;
5599		*((int32_t *)(dst+1)) = (int32_t)(match_prob * 0x7fffffff);
5600		dst += dst->len;
5601	}
5602
5603	/*
5604	 * generate O_PROBE_STATE if necessary
5605	 */
5606	if (have_state && have_state->opcode != O_CHECK_STATE) {
5607		fill_cmd(dst, O_PROBE_STATE, 0, 0);
5608		dst = next_cmd(dst);
5609	}
5610
5611	/* copy all commands but O_LOG, O_KEEP_STATE, O_LIMIT, O_ALTQ, O_TAG */
5612	for (src = (ipfw_insn *)cmdbuf; src != cmd; src += i) {
5613		i = F_LEN(src);
5614
5615		switch (src->opcode) {
5616		case O_LOG:
5617		case O_KEEP_STATE:
5618		case O_LIMIT:
5619		case O_ALTQ:
5620		case O_TAG:
5621			break;
5622		default:
5623			bcopy(src, dst, i * sizeof(uint32_t));
5624			dst += i;
5625		}
5626	}
5627
5628	/*
5629	 * put back the have_state command as last opcode
5630	 */
5631	if (have_state && have_state->opcode != O_CHECK_STATE) {
5632		i = F_LEN(have_state);
5633		bcopy(have_state, dst, i * sizeof(uint32_t));
5634		dst += i;
5635	}
5636	/*
5637	 * start action section
5638	 */
5639	rule->act_ofs = dst - rule->cmd;
5640
5641	/* put back O_LOG, O_ALTQ, O_TAG if necessary */
5642	if (have_log) {
5643		i = F_LEN(have_log);
5644		bcopy(have_log, dst, i * sizeof(uint32_t));
5645		dst += i;
5646	}
5647	if (have_altq) {
5648		i = F_LEN(have_altq);
5649		bcopy(have_altq, dst, i * sizeof(uint32_t));
5650		dst += i;
5651	}
5652	if (have_tag) {
5653		i = F_LEN(have_tag);
5654		bcopy(have_tag, dst, i * sizeof(uint32_t));
5655		dst += i;
5656	}
5657	/*
5658	 * copy all other actions
5659	 */
5660	for (src = (ipfw_insn *)actbuf; src != action; src += i) {
5661		i = F_LEN(src);
5662		bcopy(src, dst, i * sizeof(uint32_t));
5663		dst += i;
5664	}
5665
5666	rule->cmd_len = (uint32_t *)dst - (uint32_t *)(rule->cmd);
5667	i = (char *)dst - (char *)rule;
5668	if (do_cmd(IP_FW_ADD, rule, (uintptr_t)&i) == -1)
5669		err(EX_UNAVAILABLE, "getsockopt(%s)", "IP_FW_ADD");
5670	if (!do_quiet)
5671		show_ipfw(rule, 0, 0);
5672}
5673
5674static void
5675zero(int ac, char *av[], int optname /* IP_FW_ZERO or IP_FW_RESETLOG */)
5676{
5677	int rulenum;
5678	int failed = EX_OK;
5679	char const *name = optname == IP_FW_ZERO ?  "ZERO" : "RESETLOG";
5680
5681	av++; ac--;
5682
5683	if (!ac) {
5684		/* clear all entries */
5685		if (do_cmd(optname, NULL, 0) < 0)
5686			err(EX_UNAVAILABLE, "setsockopt(IP_FW_%s)", name);
5687		if (!do_quiet)
5688			printf("%s.\n", optname == IP_FW_ZERO ?
5689			    "Accounting cleared":"Logging counts reset");
5690
5691		return;
5692	}
5693
5694	while (ac) {
5695		/* Rule number */
5696		if (isdigit(**av)) {
5697			rulenum = atoi(*av);
5698			av++;
5699			ac--;
5700			if (do_cmd(optname, &rulenum, sizeof rulenum)) {
5701				warn("rule %u: setsockopt(IP_FW_%s)",
5702				    rulenum, name);
5703				failed = EX_UNAVAILABLE;
5704			} else if (!do_quiet)
5705				printf("Entry %d %s.\n", rulenum,
5706				    optname == IP_FW_ZERO ?
5707					"cleared" : "logging count reset");
5708		} else {
5709			errx(EX_USAGE, "invalid rule number ``%s''", *av);
5710		}
5711	}
5712	if (failed != EX_OK)
5713		exit(failed);
5714}
5715
5716static void
5717flush(int force)
5718{
5719	int cmd = do_pipe ? IP_DUMMYNET_FLUSH : IP_FW_FLUSH;
5720
5721	if (!force && !do_quiet) { /* need to ask user */
5722		int c;
5723
5724		printf("Are you sure? [yn] ");
5725		fflush(stdout);
5726		do {
5727			c = toupper(getc(stdin));
5728			while (c != '\n' && getc(stdin) != '\n')
5729				if (feof(stdin))
5730					return; /* and do not flush */
5731		} while (c != 'Y' && c != 'N');
5732		printf("\n");
5733		if (c == 'N')	/* user said no */
5734			return;
5735	}
5736	if (do_cmd(cmd, NULL, 0) < 0)
5737		err(EX_UNAVAILABLE, "setsockopt(IP_%s_FLUSH)",
5738		    do_pipe ? "DUMMYNET" : "FW");
5739	if (!do_quiet)
5740		printf("Flushed all %s.\n", do_pipe ? "pipes" : "rules");
5741}
5742
5743/*
5744 * Free a the (locally allocated) copy of command line arguments.
5745 */
5746static void
5747free_args(int ac, char **av)
5748{
5749	int i;
5750
5751	for (i=0; i < ac; i++)
5752		free(av[i]);
5753	free(av);
5754}
5755
5756/*
5757 * This one handles all table-related commands
5758 * 	ipfw table N add addr[/masklen] [value]
5759 * 	ipfw table N delete addr[/masklen]
5760 * 	ipfw table N flush
5761 * 	ipfw table N list
5762 */
5763static void
5764table_handler(int ac, char *av[])
5765{
5766	ipfw_table_entry ent;
5767	ipfw_table *tbl;
5768	int do_add;
5769	char *p;
5770	socklen_t l;
5771	uint32_t a;
5772
5773	ac--; av++;
5774	if (ac && isdigit(**av)) {
5775		ent.tbl = atoi(*av);
5776		ac--; av++;
5777	} else
5778		errx(EX_USAGE, "table number required");
5779	NEED1("table needs command");
5780	if (_substrcmp(*av, "add") == 0 ||
5781	    _substrcmp(*av, "delete") == 0) {
5782		do_add = **av == 'a';
5783		ac--; av++;
5784		if (!ac)
5785			errx(EX_USAGE, "IP address required");
5786		p = strchr(*av, '/');
5787		if (p) {
5788			*p++ = '\0';
5789			ent.masklen = atoi(p);
5790			if (ent.masklen > 32)
5791				errx(EX_DATAERR, "bad width ``%s''", p);
5792		} else
5793			ent.masklen = 32;
5794		if (lookup_host(*av, (struct in_addr *)&ent.addr) != 0)
5795			errx(EX_NOHOST, "hostname ``%s'' unknown", *av);
5796		ac--; av++;
5797		if (do_add && ac) {
5798			unsigned int tval;
5799			/* isdigit is a bit of a hack here.. */
5800			if (strchr(*av, (int)'.') == NULL && isdigit(**av))  {
5801				ent.value = strtoul(*av, NULL, 0);
5802			} else {
5803		        	if (lookup_host(*av, (struct in_addr *)&tval) == 0) {
5804					/* The value must be stored in host order	 *
5805					 * so that the values < 65k can be distinguished */
5806		       			ent.value = ntohl(tval);
5807				} else {
5808					errx(EX_NOHOST, "hostname ``%s'' unknown", *av);
5809				}
5810			}
5811		} else
5812			ent.value = 0;
5813		if (do_cmd(do_add ? IP_FW_TABLE_ADD : IP_FW_TABLE_DEL,
5814		    &ent, sizeof(ent)) < 0) {
5815			/* If running silent, don't bomb out on these errors. */
5816			if (!(do_quiet && (errno == (do_add ? EEXIST : ESRCH))))
5817				err(EX_OSERR, "setsockopt(IP_FW_TABLE_%s)",
5818				    do_add ? "ADD" : "DEL");
5819			/* In silent mode, react to a failed add by deleting */
5820			if (do_add) {
5821				do_cmd(IP_FW_TABLE_DEL, &ent, sizeof(ent));
5822				if (do_cmd(IP_FW_TABLE_ADD,
5823				    &ent, sizeof(ent)) < 0)
5824					err(EX_OSERR,
5825				            "setsockopt(IP_FW_TABLE_ADD)");
5826			}
5827		}
5828	} else if (_substrcmp(*av, "flush") == 0) {
5829		if (do_cmd(IP_FW_TABLE_FLUSH, &ent.tbl, sizeof(ent.tbl)) < 0)
5830			err(EX_OSERR, "setsockopt(IP_FW_TABLE_FLUSH)");
5831	} else if (_substrcmp(*av, "list") == 0) {
5832		a = ent.tbl;
5833		l = sizeof(a);
5834		if (do_cmd(IP_FW_TABLE_GETSIZE, &a, (uintptr_t)&l) < 0)
5835			err(EX_OSERR, "getsockopt(IP_FW_TABLE_GETSIZE)");
5836		l = sizeof(*tbl) + a * sizeof(ipfw_table_entry);
5837		tbl = malloc(l);
5838		if (tbl == NULL)
5839			err(EX_OSERR, "malloc");
5840		tbl->tbl = ent.tbl;
5841		if (do_cmd(IP_FW_TABLE_LIST, tbl, (uintptr_t)&l) < 0)
5842			err(EX_OSERR, "getsockopt(IP_FW_TABLE_LIST)");
5843		for (a = 0; a < tbl->cnt; a++) {
5844			/* Heuristic to print it the right way */
5845			/* values < 64k are printed as numbers */
5846			unsigned int tval;
5847			tval = tbl->ent[a].value;
5848			if (tval > 0xffff) {
5849			    char tbuf[128];
5850			    strncpy(tbuf, inet_ntoa(*(struct in_addr *)
5851				&tbl->ent[a].addr), 127);
5852			    /* inet_ntoa expects host order */
5853			    tval = htonl(tval);
5854			    printf("%s/%u %s\n", tbuf, tbl->ent[a].masklen,
5855			        inet_ntoa(*(struct in_addr *)&tval));
5856			} else {
5857			    printf("%s/%u %u\n",
5858			        inet_ntoa(*(struct in_addr *)&tbl->ent[a].addr),
5859			        tbl->ent[a].masklen, tbl->ent[a].value);
5860			}
5861		}
5862	} else
5863		errx(EX_USAGE, "invalid table command %s", *av);
5864}
5865
5866static void
5867show_nat(int ac, char **av) {
5868	struct cfg_nat *n;
5869	struct cfg_redir *e;
5870	int cmd, i, nbytes, do_cfg, do_rule, frule, lrule, nalloc, size;
5871	int nat_cnt, r;
5872	uint8_t *data, *p;
5873	char **lav, *endptr;
5874
5875	do_rule = 0;
5876	nalloc = 1024;
5877	size = 0;
5878	data = NULL;
5879	ac--; av++;
5880
5881	/* Parse parameters. */
5882	for (cmd = IP_FW_NAT_GET_LOG, do_cfg = 0; ac != 0; ac--, av++) {
5883		if (!strncmp(av[0], "config", strlen(av[0]))) {
5884			cmd = IP_FW_NAT_GET_CONFIG, do_cfg = 1;
5885			continue;
5886		}
5887		/* Convert command line rule #. */
5888		frule = lrule = strtoul(av[0], &endptr, 10);
5889		if (*endptr == '-')
5890			lrule = strtoul(endptr+1, &endptr, 10);
5891		if (lrule == 0)
5892			err(EX_USAGE, "invalid rule number: %s", av[0]);
5893		do_rule = 1;
5894	}
5895
5896	nbytes = nalloc;
5897	while (nbytes >= nalloc) {
5898		nalloc = nalloc * 2;
5899		nbytes = nalloc;
5900		if ((data = realloc(data, nbytes)) == NULL)
5901			err(EX_OSERR, "realloc");
5902		if (do_cmd(cmd, data, (uintptr_t)&nbytes) < 0)
5903			err(EX_OSERR, "getsockopt(IP_FW_GET_%s)",
5904			    (cmd == IP_FW_NAT_GET_LOG) ? "LOG" : "CONFIG");
5905	}
5906	if (nbytes == 0)
5907		exit(0);
5908	if (do_cfg) {
5909		nat_cnt = *((int *)data);
5910		for (i = sizeof(nat_cnt); nat_cnt; nat_cnt--) {
5911			n = (struct cfg_nat *)&data[i];
5912			if (do_rule) {
5913				if (!(frule <= n->id && lrule >= n->id))
5914					continue;
5915			}
5916			print_nat_config(&data[i]);
5917			i += sizeof(struct cfg_nat);
5918			e = (struct cfg_redir *)&data[i];
5919			if (e->mode == REDIR_ADDR || e->mode == REDIR_PORT ||
5920			    e->mode == REDIR_PROTO)
5921				i += sizeof(struct cfg_redir) + e->spool_cnt *
5922				    sizeof(struct cfg_spool);
5923		}
5924	} else {
5925		for (i = 0; 1; i += LIBALIAS_BUF_SIZE + sizeof(int)) {
5926			p = &data[i];
5927			if (p == data + nbytes)
5928				break;
5929			bcopy(p, &r, sizeof(int));
5930			if (do_rule) {
5931				if (!(frule <= r && lrule >= r))
5932					continue;
5933			}
5934			printf("nat %u: %s\n", r, p+sizeof(int));
5935		}
5936	}
5937}
5938
5939/*
5940 * Called with the arguments (excluding program name).
5941 * Returns 0 if successful, 1 if empty command, errx() in case of errors.
5942 */
5943static int
5944ipfw_main(int oldac, char **oldav)
5945{
5946	int ch, ac, save_ac;
5947	char **av, **save_av;
5948	int do_acct = 0;		/* Show packet/byte count */
5949
5950#define WHITESP		" \t\f\v\n\r"
5951	if (oldac == 0)
5952		return 1;
5953	else if (oldac == 1) {
5954		/*
5955		 * If we are called with a single string, try to split it into
5956		 * arguments for subsequent parsing.
5957		 * But first, remove spaces after a ',', by copying the string
5958		 * in-place.
5959		 */
5960		char *arg = oldav[0];	/* The string... */
5961		int l = strlen(arg);
5962		int copy = 0;		/* 1 if we need to copy, 0 otherwise */
5963		int i, j;
5964		for (i = j = 0; i < l; i++) {
5965			if (arg[i] == '#')	/* comment marker */
5966				break;
5967			if (copy) {
5968				arg[j++] = arg[i];
5969				copy = !index("," WHITESP, arg[i]);
5970			} else {
5971				copy = !index(WHITESP, arg[i]);
5972				if (copy)
5973					arg[j++] = arg[i];
5974			}
5975		}
5976		if (!copy && j > 0)	/* last char was a 'blank', remove it */
5977			j--;
5978		l = j;			/* the new argument length */
5979		arg[j++] = '\0';
5980		if (l == 0)		/* empty string! */
5981			return 1;
5982
5983		/*
5984		 * First, count number of arguments. Because of the previous
5985		 * processing, this is just the number of blanks plus 1.
5986		 */
5987		for (i = 0, ac = 1; i < l; i++)
5988			if (index(WHITESP, arg[i]) != NULL)
5989				ac++;
5990
5991		av = calloc(ac, sizeof(char *));
5992
5993		/*
5994		 * Second, copy arguments from cmd[] to av[]. For each one,
5995		 * j is the initial character, i is the one past the end.
5996		 */
5997		for (ac = 0, i = j = 0; i < l; i++)
5998			if (index(WHITESP, arg[i]) != NULL || i == l-1) {
5999				if (i == l-1)
6000					i++;
6001				av[ac] = calloc(i-j+1, 1);
6002				bcopy(arg+j, av[ac], i-j);
6003				ac++;
6004				j = i + 1;
6005			}
6006	} else {
6007		/*
6008		 * If an argument ends with ',' join with the next one.
6009		 */
6010		int first, i, l;
6011
6012		av = calloc(oldac, sizeof(char *));
6013		for (first = i = ac = 0, l = 0; i < oldac; i++) {
6014			char *arg = oldav[i];
6015			int k = strlen(arg);
6016
6017			l += k;
6018			if (arg[k-1] != ',' || i == oldac-1) {
6019				/* Time to copy. */
6020				av[ac] = calloc(l+1, 1);
6021				for (l=0; first <= i; first++) {
6022					strcat(av[ac]+l, oldav[first]);
6023					l += strlen(oldav[first]);
6024				}
6025				ac++;
6026				l = 0;
6027				first = i+1;
6028			}
6029		}
6030	}
6031
6032	/* Set the force flag for non-interactive processes */
6033	if (!do_force)
6034		do_force = !isatty(STDIN_FILENO);
6035
6036	/* Save arguments for final freeing of memory. */
6037	save_ac = ac;
6038	save_av = av;
6039
6040	optind = optreset = 0;
6041	while ((ch = getopt(ac, av, "abcdefhnNqs:STtv")) != -1)
6042		switch (ch) {
6043		case 'a':
6044			do_acct = 1;
6045			break;
6046
6047		case 'b':
6048			comment_only = 1;
6049			do_compact = 1;
6050			break;
6051
6052		case 'c':
6053			do_compact = 1;
6054			break;
6055
6056		case 'd':
6057			do_dynamic = 1;
6058			break;
6059
6060		case 'e':
6061			do_expired = 1;
6062			break;
6063
6064		case 'f':
6065			do_force = 1;
6066			break;
6067
6068		case 'h': /* help */
6069			free_args(save_ac, save_av);
6070			help();
6071			break;	/* NOTREACHED */
6072
6073		case 'n':
6074			test_only = 1;
6075			break;
6076
6077		case 'N':
6078			do_resolv = 1;
6079			break;
6080
6081		case 'q':
6082			do_quiet = 1;
6083			break;
6084
6085		case 's': /* sort */
6086			do_sort = atoi(optarg);
6087			break;
6088
6089		case 'S':
6090			show_sets = 1;
6091			break;
6092
6093		case 't':
6094			do_time = 1;
6095			break;
6096
6097		case 'T':
6098			do_time = 2;	/* numeric timestamp */
6099			break;
6100
6101		case 'v': /* verbose */
6102			verbose = 1;
6103			break;
6104
6105		default:
6106			free_args(save_ac, save_av);
6107			return 1;
6108		}
6109
6110	ac -= optind;
6111	av += optind;
6112	NEED1("bad arguments, for usage summary ``ipfw''");
6113
6114	/*
6115	 * An undocumented behaviour of ipfw1 was to allow rule numbers first,
6116	 * e.g. "100 add allow ..." instead of "add 100 allow ...".
6117	 * In case, swap first and second argument to get the normal form.
6118	 */
6119	if (ac > 1 && isdigit(*av[0])) {
6120		char *p = av[0];
6121
6122		av[0] = av[1];
6123		av[1] = p;
6124	}
6125
6126	/*
6127	 * Optional: pipe, queue or nat.
6128	 */
6129	do_nat = 0;
6130	do_pipe = 0;
6131	if (!strncmp(*av, "nat", strlen(*av)))
6132 	        do_nat = 1;
6133 	else if (!strncmp(*av, "pipe", strlen(*av)))
6134		do_pipe = 1;
6135	else if (_substrcmp(*av, "queue") == 0)
6136		do_pipe = 2;
6137	if (do_pipe || do_nat) {
6138		ac--;
6139		av++;
6140	}
6141	NEED1("missing command");
6142
6143	/*
6144	 * For pipes, queues and nats we normally say 'nat|pipe NN config'
6145	 * but the code is easier to parse as 'nat|pipe config NN'
6146	 * so we swap the two arguments.
6147	 */
6148	if ((do_pipe || do_nat) && ac > 1 && isdigit(*av[0])) {
6149		char *p = av[0];
6150
6151		av[0] = av[1];
6152		av[1] = p;
6153	}
6154
6155	if (_substrcmp(*av, "add") == 0)
6156		add(ac, av);
6157	else if (do_nat && _substrcmp(*av, "show") == 0)
6158 		show_nat(ac, av);
6159	else if (do_pipe && _substrcmp(*av, "config") == 0)
6160		config_pipe(ac, av);
6161	else if (do_nat && _substrcmp(*av, "config") == 0)
6162 		config_nat(ac, av);
6163	else if (_substrcmp(*av, "delete") == 0)
6164		delete(ac, av);
6165	else if (_substrcmp(*av, "flush") == 0)
6166		flush(do_force);
6167	else if (_substrcmp(*av, "zero") == 0)
6168		zero(ac, av, IP_FW_ZERO);
6169	else if (_substrcmp(*av, "resetlog") == 0)
6170		zero(ac, av, IP_FW_RESETLOG);
6171	else if (_substrcmp(*av, "print") == 0 ||
6172	         _substrcmp(*av, "list") == 0)
6173		list(ac, av, do_acct);
6174	else if (_substrcmp(*av, "set") == 0)
6175		sets_handler(ac, av);
6176	else if (_substrcmp(*av, "table") == 0)
6177		table_handler(ac, av);
6178	else if (_substrcmp(*av, "enable") == 0)
6179		sysctl_handler(ac, av, 1);
6180	else if (_substrcmp(*av, "disable") == 0)
6181		sysctl_handler(ac, av, 0);
6182	else if (_substrcmp(*av, "show") == 0)
6183		list(ac, av, 1 /* show counters */);
6184	else
6185		errx(EX_USAGE, "bad command `%s'", *av);
6186
6187	/* Free memory allocated in the argument parsing. */
6188	free_args(save_ac, save_av);
6189	return 0;
6190}
6191
6192
6193static void
6194ipfw_readfile(int ac, char *av[])
6195{
6196#define MAX_ARGS	32
6197	char	buf[BUFSIZ];
6198	char	*cmd = NULL, *filename = av[ac-1];
6199	int	c, lineno=0;
6200	FILE	*f = NULL;
6201	pid_t	preproc = 0;
6202
6203	filename = av[ac-1];
6204
6205	while ((c = getopt(ac, av, "cfNnp:qS")) != -1) {
6206		switch(c) {
6207		case 'c':
6208			do_compact = 1;
6209			break;
6210
6211		case 'f':
6212			do_force = 1;
6213			break;
6214
6215		case 'N':
6216			do_resolv = 1;
6217			break;
6218
6219		case 'n':
6220			test_only = 1;
6221			break;
6222
6223		case 'p':
6224			cmd = optarg;
6225			/*
6226			 * Skip previous args and delete last one, so we
6227			 * pass all but the last argument to the preprocessor
6228			 * via av[optind-1]
6229			 */
6230			av += optind - 1;
6231			ac -= optind - 1;
6232			if (ac < 2)
6233				errx(EX_USAGE, "no filename argument");
6234			av[ac-1] = NULL;
6235			fprintf(stderr, "command is %s\n", av[0]);
6236			break;
6237
6238		case 'q':
6239			do_quiet = 1;
6240			break;
6241
6242		case 'S':
6243			show_sets = 1;
6244			break;
6245
6246		default:
6247			errx(EX_USAGE, "bad arguments, for usage"
6248			     " summary ``ipfw''");
6249		}
6250
6251		if (cmd != NULL)
6252			break;
6253	}
6254
6255	if (cmd == NULL && ac != optind + 1) {
6256		fprintf(stderr, "ac %d, optind %d\n", ac, optind);
6257		errx(EX_USAGE, "extraneous filename arguments");
6258	}
6259
6260	if ((f = fopen(filename, "r")) == NULL)
6261		err(EX_UNAVAILABLE, "fopen: %s", filename);
6262
6263	if (cmd != NULL) {			/* pipe through preprocessor */
6264		int pipedes[2];
6265
6266		if (pipe(pipedes) == -1)
6267			err(EX_OSERR, "cannot create pipe");
6268
6269		preproc = fork();
6270		if (preproc == -1)
6271			err(EX_OSERR, "cannot fork");
6272
6273		if (preproc == 0) {
6274			/*
6275			 * Child, will run the preprocessor with the
6276			 * file on stdin and the pipe on stdout.
6277			 */
6278			if (dup2(fileno(f), 0) == -1
6279			    || dup2(pipedes[1], 1) == -1)
6280				err(EX_OSERR, "dup2()");
6281			fclose(f);
6282			close(pipedes[1]);
6283			close(pipedes[0]);
6284			execvp(cmd, av);
6285			err(EX_OSERR, "execvp(%s) failed", cmd);
6286		} else { /* parent, will reopen f as the pipe */
6287			fclose(f);
6288			close(pipedes[1]);
6289			if ((f = fdopen(pipedes[0], "r")) == NULL) {
6290				int savederrno = errno;
6291
6292				(void)kill(preproc, SIGTERM);
6293				errno = savederrno;
6294				err(EX_OSERR, "fdopen()");
6295			}
6296		}
6297	}
6298
6299	while (fgets(buf, BUFSIZ, f)) {		/* read commands */
6300		char linename[10];
6301		char *args[1];
6302
6303		lineno++;
6304		sprintf(linename, "Line %d", lineno);
6305		setprogname(linename); /* XXX */
6306		args[0] = buf;
6307		ipfw_main(1, args);
6308	}
6309	fclose(f);
6310	if (cmd != NULL) {
6311		int status;
6312
6313		if (waitpid(preproc, &status, 0) == -1)
6314			errx(EX_OSERR, "waitpid()");
6315		if (WIFEXITED(status) && WEXITSTATUS(status) != EX_OK)
6316			errx(EX_UNAVAILABLE,
6317			    "preprocessor exited with status %d",
6318			    WEXITSTATUS(status));
6319		else if (WIFSIGNALED(status))
6320			errx(EX_UNAVAILABLE,
6321			    "preprocessor exited with signal %d",
6322			    WTERMSIG(status));
6323	}
6324}
6325
6326int
6327main(int ac, char *av[])
6328{
6329	/*
6330	 * If the last argument is an absolute pathname, interpret it
6331	 * as a file to be preprocessed.
6332	 */
6333
6334	if (ac > 1 && av[ac - 1][0] == '/' && access(av[ac - 1], R_OK) == 0)
6335		ipfw_readfile(ac, av);
6336	else {
6337		if (ipfw_main(ac-1, av+1))
6338			show_usage();
6339	}
6340	return EX_OK;
6341}
6342