xref: /freebsd/sbin/pfctl/pfctl.c (revision 9c125336727b48c576bf3598d7d2c52daa5909d7)
1 /*	$OpenBSD: pfctl.c,v 1.278 2008/08/31 20:18:17 jmc Exp $ */
2 
3 /*-
4  * SPDX-License-Identifier: BSD-2-Clause
5  *
6  * Copyright (c) 2001 Daniel Hartmeier
7  * Copyright (c) 2002,2003 Henning Brauer
8  * All rights reserved.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  *
14  *    - Redistributions of source code must retain the above copyright
15  *      notice, this list of conditions and the following disclaimer.
16  *    - Redistributions in binary form must reproduce the above
17  *      copyright notice, this list of conditions and the following
18  *      disclaimer in the documentation and/or other materials provided
19  *      with the distribution.
20  *
21  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
24  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
25  * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
26  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
27  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
28  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
29  * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
31  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
32  * POSSIBILITY OF SUCH DAMAGE.
33  *
34  */
35 
36 #include <sys/cdefs.h>
37 #define PFIOC_USE_LATEST
38 
39 #include <sys/types.h>
40 #include <sys/ioctl.h>
41 #include <sys/socket.h>
42 #include <sys/stat.h>
43 #include <sys/endian.h>
44 
45 #include <net/if.h>
46 #include <netinet/in.h>
47 #include <net/pfvar.h>
48 #include <arpa/inet.h>
49 #include <net/altq/altq.h>
50 
51 #include <err.h>
52 #include <errno.h>
53 #include <fcntl.h>
54 #include <libpfctl.h>
55 #include <limits.h>
56 #include <netdb.h>
57 #include <stdint.h>
58 #include <stdio.h>
59 #include <stdlib.h>
60 #include <string.h>
61 #include <unistd.h>
62 
63 #include "pfctl_parser.h"
64 #include "pfctl.h"
65 
66 void	 usage(void);
67 int	 pfctl_enable(int, int);
68 int	 pfctl_disable(int, int);
69 int	 pfctl_clear_stats(struct pfctl_handle *, int);
70 int	 pfctl_get_skip_ifaces(void);
71 int	 pfctl_check_skip_ifaces(char *);
72 int	 pfctl_adjust_skip_ifaces(struct pfctl *);
73 int	 pfctl_clear_interface_flags(int, int);
74 int	 pfctl_flush_eth_rules(int, int, char *);
75 int	 pfctl_flush_rules(int, int, char *);
76 int	 pfctl_flush_nat(int, int, char *);
77 int	 pfctl_clear_altq(int, int);
78 int	 pfctl_clear_src_nodes(int, int);
79 int	 pfctl_clear_iface_states(int, const char *, int);
80 void	 pfctl_addrprefix(char *, struct pf_addr *);
81 int	 pfctl_kill_src_nodes(int, const char *, int);
82 int	 pfctl_net_kill_states(int, const char *, int);
83 int	 pfctl_gateway_kill_states(int, const char *, int);
84 int	 pfctl_label_kill_states(int, const char *, int);
85 int	 pfctl_id_kill_states(int, const char *, int);
86 void	 pfctl_init_options(struct pfctl *);
87 int	 pfctl_load_options(struct pfctl *);
88 int	 pfctl_load_limit(struct pfctl *, unsigned int, unsigned int);
89 int	 pfctl_load_timeout(struct pfctl *, unsigned int, unsigned int);
90 int	 pfctl_load_debug(struct pfctl *, unsigned int);
91 int	 pfctl_load_logif(struct pfctl *, char *);
92 int	 pfctl_load_hostid(struct pfctl *, u_int32_t);
93 int	 pfctl_load_reassembly(struct pfctl *, u_int32_t);
94 int	 pfctl_load_syncookies(struct pfctl *, u_int8_t);
95 int	 pfctl_get_pool(int, struct pfctl_pool *, u_int32_t, u_int32_t, int,
96 	    char *);
97 void	 pfctl_print_eth_rule_counters(struct pfctl_eth_rule *, int);
98 void	 pfctl_print_rule_counters(struct pfctl_rule *, int);
99 int	 pfctl_show_eth_rules(int, char *, int, enum pfctl_show, char *, int, int);
100 int	 pfctl_show_rules(int, char *, int, enum pfctl_show, char *, int, int);
101 int	 pfctl_show_nat(int, char *, int, char *, int, int);
102 int	 pfctl_show_src_nodes(int, int);
103 int	 pfctl_show_states(int, const char *, int);
104 int	 pfctl_show_status(int, int);
105 int	 pfctl_show_running(int);
106 int	 pfctl_show_timeouts(int, int);
107 int	 pfctl_show_limits(int, int);
108 void	 pfctl_debug(int, u_int32_t, int);
109 int	 pfctl_test_altqsupport(int, int);
110 int	 pfctl_show_anchors(int, int, char *);
111 int	 pfctl_show_eth_anchors(int, int, char *);
112 int	 pfctl_ruleset_trans(struct pfctl *, char *, struct pfctl_anchor *, bool);
113 int	 pfctl_eth_ruleset_trans(struct pfctl *, char *,
114 	    struct pfctl_eth_anchor *);
115 int	 pfctl_load_eth_ruleset(struct pfctl *, char *,
116 	    struct pfctl_eth_ruleset *, int);
117 int	 pfctl_load_eth_rule(struct pfctl *, char *, struct pfctl_eth_rule *,
118 	    int);
119 int	 pfctl_load_ruleset(struct pfctl *, char *,
120 		struct pfctl_ruleset *, int, int);
121 int	 pfctl_load_rule(struct pfctl *, char *, struct pfctl_rule *, int);
122 const char	*pfctl_lookup_option(char *, const char * const *);
123 
124 static struct pfctl_anchor_global	 pf_anchors;
125 struct pfctl_anchor	 pf_main_anchor;
126 struct pfctl_eth_anchor	 pf_eth_main_anchor;
127 static struct pfr_buffer skip_b;
128 
129 static const char	*clearopt;
130 static char		*rulesopt;
131 static const char	*showopt;
132 static const char	*debugopt;
133 static char		*anchoropt;
134 static const char	*optiopt = NULL;
135 static const char	*pf_device = PF_DEVICE;
136 static char		*ifaceopt;
137 static char		*tableopt;
138 static const char	*tblcmdopt;
139 static int		 src_node_killers;
140 static char		*src_node_kill[2];
141 static int		 state_killers;
142 static char		*state_kill[2];
143 int			 loadopt;
144 int			 altqsupport;
145 
146 int			 dev = -1;
147 struct pfctl_handle	*pfh = NULL;
148 static int		 first_title = 1;
149 static int		 labels = 0;
150 
151 #define INDENT(d, o)	do {						\
152 				if (o) {				\
153 					int i;				\
154 					for (i=0; i < d; i++)		\
155 						printf("  ");		\
156 				}					\
157 			} while (0);					\
158 
159 
160 static const struct {
161 	const char	*name;
162 	int		index;
163 } pf_limits[] = {
164 	{ "states",		PF_LIMIT_STATES },
165 	{ "src-nodes",		PF_LIMIT_SRC_NODES },
166 	{ "frags",		PF_LIMIT_FRAGS },
167 	{ "table-entries",	PF_LIMIT_TABLE_ENTRIES },
168 	{ NULL,			0 }
169 };
170 
171 struct pf_hint {
172 	const char	*name;
173 	int		timeout;
174 };
175 static const struct pf_hint pf_hint_normal[] = {
176 	{ "tcp.first",		2 * 60 },
177 	{ "tcp.opening",	30 },
178 	{ "tcp.established",	24 * 60 * 60 },
179 	{ "tcp.closing",	15 * 60 },
180 	{ "tcp.finwait",	45 },
181 	{ "tcp.closed",		90 },
182 	{ "tcp.tsdiff",		30 },
183 	{ NULL,			0 }
184 };
185 static const struct pf_hint pf_hint_satellite[] = {
186 	{ "tcp.first",		3 * 60 },
187 	{ "tcp.opening",	30 + 5 },
188 	{ "tcp.established",	24 * 60 * 60 },
189 	{ "tcp.closing",	15 * 60 + 5 },
190 	{ "tcp.finwait",	45 + 5 },
191 	{ "tcp.closed",		90 + 5 },
192 	{ "tcp.tsdiff",		60 },
193 	{ NULL,			0 }
194 };
195 static const struct pf_hint pf_hint_conservative[] = {
196 	{ "tcp.first",		60 * 60 },
197 	{ "tcp.opening",	15 * 60 },
198 	{ "tcp.established",	5 * 24 * 60 * 60 },
199 	{ "tcp.closing",	60 * 60 },
200 	{ "tcp.finwait",	10 * 60 },
201 	{ "tcp.closed",		3 * 60 },
202 	{ "tcp.tsdiff",		60 },
203 	{ NULL,			0 }
204 };
205 static const struct pf_hint pf_hint_aggressive[] = {
206 	{ "tcp.first",		30 },
207 	{ "tcp.opening",	5 },
208 	{ "tcp.established",	5 * 60 * 60 },
209 	{ "tcp.closing",	60 },
210 	{ "tcp.finwait",	30 },
211 	{ "tcp.closed",		30 },
212 	{ "tcp.tsdiff",		10 },
213 	{ NULL,			0 }
214 };
215 
216 static const struct {
217 	const char *name;
218 	const struct pf_hint *hint;
219 } pf_hints[] = {
220 	{ "normal",		pf_hint_normal },
221 	{ "satellite",		pf_hint_satellite },
222 	{ "high-latency",	pf_hint_satellite },
223 	{ "conservative",	pf_hint_conservative },
224 	{ "aggressive",		pf_hint_aggressive },
225 	{ NULL,			NULL }
226 };
227 
228 static const char * const clearopt_list[] = {
229 	"nat", "queue", "rules", "Sources",
230 	"states", "info", "Tables", "osfp", "all",
231 	"ethernet", NULL
232 };
233 
234 static const char * const showopt_list[] = {
235 	"ether", "nat", "queue", "rules", "Anchors", "Sources", "states",
236 	"info", "Interfaces", "labels", "timeouts", "memory", "Tables",
237 	"osfp", "Running", "all", "creatorids", NULL
238 };
239 
240 static const char * const tblcmdopt_list[] = {
241 	"kill", "flush", "add", "delete", "load", "replace", "show",
242 	"test", "zero", "expire", NULL
243 };
244 
245 static const char * const debugopt_list[] = {
246 	"none", "urgent", "misc", "loud", NULL
247 };
248 
249 static const char * const optiopt_list[] = {
250 	"none", "basic", "profile", NULL
251 };
252 
253 void
usage(void)254 usage(void)
255 {
256 	extern char *__progname;
257 
258 	fprintf(stderr,
259 "usage: %s [-AdeghMmNnOPqRrvz] [-a anchor] [-D macro=value] [-F modifier]\n"
260 	"\t[-f file] [-i interface] [-K host | network]\n"
261 	"\t[-k host | network | gateway | label | id] [-o level] [-p device]\n"
262 	"\t[-s modifier] [-t table -T command [address ...]] [-x level]\n",
263 	    __progname);
264 
265 	exit(1);
266 }
267 
268 /*
269  * Cache protocol number to name translations.
270  *
271  * Translation is performed a lot e.g., when dumping states and
272  * getprotobynumber is incredibly expensive.
273  *
274  * Note from the getprotobynumber(3) manpage:
275  * <quote>
276  * These functions use a thread-specific data space; if the data is needed
277  * for future use, it should be copied before any subsequent calls overwrite
278  * it.  Only the Internet protocols are currently understood.
279  * </quote>
280  *
281  * Consequently we only cache the name and strdup it for safety.
282  *
283  * At the time of writing this comment the last entry in /etc/protocols is:
284  * divert  258     DIVERT          # Divert pseudo-protocol [non IANA]
285  */
286 const char *
pfctl_proto2name(int proto)287 pfctl_proto2name(int proto)
288 {
289 	static const char *pfctl_proto_cache[259];
290 	struct protoent *p;
291 
292 	if (proto >= nitems(pfctl_proto_cache)) {
293 		p = getprotobynumber(proto);
294 		if (p == NULL) {
295 			return (NULL);
296 		}
297 		return (p->p_name);
298 	}
299 
300 	if (pfctl_proto_cache[proto] == NULL) {
301 		p = getprotobynumber(proto);
302 		if (p == NULL) {
303 			return (NULL);
304 		}
305 		pfctl_proto_cache[proto] = strdup(p->p_name);
306 	}
307 
308 	return (pfctl_proto_cache[proto]);
309 }
310 
311 int
pfctl_enable(int dev,int opts)312 pfctl_enable(int dev, int opts)
313 {
314 	int ret;
315 
316 	if ((ret = pfctl_startstop(pfh, 1)) != 0) {
317 		if (ret == EEXIST)
318 			errx(1, "pf already enabled");
319 		else if (ret == ESRCH)
320 			errx(1, "pfil registeration failed");
321 		else
322 			errc(1, ret, "DIOCSTART");
323 	}
324 	if ((opts & PF_OPT_QUIET) == 0)
325 		fprintf(stderr, "pf enabled\n");
326 
327 	if (altqsupport && ioctl(dev, DIOCSTARTALTQ))
328 		if (errno != EEXIST)
329 			err(1, "DIOCSTARTALTQ");
330 
331 	return (0);
332 }
333 
334 int
pfctl_disable(int dev,int opts)335 pfctl_disable(int dev, int opts)
336 {
337 	int ret;
338 
339 	if ((ret = pfctl_startstop(pfh, 0)) != 0) {
340 		if (ret == ENOENT)
341 			errx(1, "pf not enabled");
342 		else
343 			errc(1, ret, "DIOCSTOP");
344 	}
345 	if ((opts & PF_OPT_QUIET) == 0)
346 		fprintf(stderr, "pf disabled\n");
347 
348 	if (altqsupport && ioctl(dev, DIOCSTOPALTQ))
349 			if (errno != ENOENT)
350 				err(1, "DIOCSTOPALTQ");
351 
352 	return (0);
353 }
354 
355 int
pfctl_clear_stats(struct pfctl_handle * h,int opts)356 pfctl_clear_stats(struct pfctl_handle *h, int opts)
357 {
358 	int ret;
359 	if ((ret = pfctl_clear_status(h)) != 0)
360 		errc(1, ret, "DIOCCLRSTATUS");
361 	if ((opts & PF_OPT_QUIET) == 0)
362 		fprintf(stderr, "pf: statistics cleared\n");
363 	return (0);
364 }
365 
366 int
pfctl_get_skip_ifaces(void)367 pfctl_get_skip_ifaces(void)
368 {
369 	bzero(&skip_b, sizeof(skip_b));
370 	skip_b.pfrb_type = PFRB_IFACES;
371 	for (;;) {
372 		pfr_buf_grow(&skip_b, skip_b.pfrb_size);
373 		skip_b.pfrb_size = skip_b.pfrb_msize;
374 		if (pfi_get_ifaces(NULL, skip_b.pfrb_caddr, &skip_b.pfrb_size))
375 			err(1, "pfi_get_ifaces");
376 		if (skip_b.pfrb_size <= skip_b.pfrb_msize)
377 			break;
378 	}
379 	return (0);
380 }
381 
382 int
pfctl_check_skip_ifaces(char * ifname)383 pfctl_check_skip_ifaces(char *ifname)
384 {
385 	struct pfi_kif		*p;
386 	struct node_host	*h = NULL, *n = NULL;
387 
388 	PFRB_FOREACH(p, &skip_b) {
389 		if (!strcmp(ifname, p->pfik_name) &&
390 		    (p->pfik_flags & PFI_IFLAG_SKIP))
391 			p->pfik_flags &= ~PFI_IFLAG_SKIP;
392 		if (!strcmp(ifname, p->pfik_name) && p->pfik_group != NULL) {
393 			if ((h = ifa_grouplookup(p->pfik_name, 0)) == NULL)
394 				continue;
395 
396 			for (n = h; n != NULL; n = n->next) {
397 				if (strncmp(p->pfik_name, ifname, IFNAMSIZ))
398 					continue;
399 
400 				p->pfik_flags &= ~PFI_IFLAG_SKIP;
401 			}
402 		}
403 	}
404 	return (0);
405 }
406 
407 int
pfctl_adjust_skip_ifaces(struct pfctl * pf)408 pfctl_adjust_skip_ifaces(struct pfctl *pf)
409 {
410 	struct pfi_kif		*p, *pp;
411 	struct node_host	*h = NULL, *n = NULL;
412 
413 	PFRB_FOREACH(p, &skip_b) {
414 		if (p->pfik_group == NULL || !(p->pfik_flags & PFI_IFLAG_SKIP))
415 			continue;
416 
417 		pfctl_set_interface_flags(pf, p->pfik_name, PFI_IFLAG_SKIP, 0);
418 		if ((h = ifa_grouplookup(p->pfik_name, 0)) == NULL)
419 			continue;
420 
421 		for (n = h; n != NULL; n = n->next)
422 			PFRB_FOREACH(pp, &skip_b) {
423 				if (strncmp(pp->pfik_name, n->ifname, IFNAMSIZ))
424 					continue;
425 
426 				if (!(pp->pfik_flags & PFI_IFLAG_SKIP))
427 					pfctl_set_interface_flags(pf,
428 					    pp->pfik_name, PFI_IFLAG_SKIP, 1);
429 				if (pp->pfik_flags & PFI_IFLAG_SKIP)
430 					pp->pfik_flags &= ~PFI_IFLAG_SKIP;
431 			}
432 	}
433 
434 	PFRB_FOREACH(p, &skip_b) {
435 		if (! (p->pfik_flags & PFI_IFLAG_SKIP))
436 			continue;
437 
438 		pfctl_set_interface_flags(pf, p->pfik_name, PFI_IFLAG_SKIP, 0);
439 	}
440 
441 	return (0);
442 }
443 
444 int
pfctl_clear_interface_flags(int dev,int opts)445 pfctl_clear_interface_flags(int dev, int opts)
446 {
447 	struct pfioc_iface	pi;
448 
449 	if ((opts & PF_OPT_NOACTION) == 0) {
450 		bzero(&pi, sizeof(pi));
451 		pi.pfiio_flags = PFI_IFLAG_SKIP;
452 
453 		if (ioctl(dev, DIOCCLRIFFLAG, &pi))
454 			err(1, "DIOCCLRIFFLAG");
455 		if ((opts & PF_OPT_QUIET) == 0)
456 			fprintf(stderr, "pf: interface flags reset\n");
457 	}
458 	return (0);
459 }
460 
461 int
pfctl_flush_eth_rules(int dev,int opts,char * anchorname)462 pfctl_flush_eth_rules(int dev, int opts, char *anchorname)
463 {
464 	int ret;
465 
466 	ret = pfctl_clear_eth_rules(dev, anchorname);
467 	if (ret != 0)
468 		err(1, "pfctl_clear_eth_rules");
469 
470 	if ((opts & PF_OPT_QUIET) == 0)
471 		fprintf(stderr, "Ethernet rules cleared\n");
472 
473 	return (ret);
474 }
475 
476 int
pfctl_flush_rules(int dev,int opts,char * anchorname)477 pfctl_flush_rules(int dev, int opts, char *anchorname)
478 {
479 	int ret;
480 
481 	ret = pfctl_clear_rules(dev, anchorname);
482 	if (ret != 0)
483 		err(1, "pfctl_clear_rules");
484 	if ((opts & PF_OPT_QUIET) == 0)
485 		fprintf(stderr, "rules cleared\n");
486 	return (0);
487 }
488 
489 int
pfctl_flush_nat(int dev,int opts,char * anchorname)490 pfctl_flush_nat(int dev, int opts, char *anchorname)
491 {
492 	int ret;
493 
494 	ret = pfctl_clear_nat(dev, anchorname);
495 	if (ret != 0)
496 		err(1, "pfctl_clear_nat");
497 	if ((opts & PF_OPT_QUIET) == 0)
498 		fprintf(stderr, "nat cleared\n");
499 	return (0);
500 }
501 
502 int
pfctl_clear_altq(int dev,int opts)503 pfctl_clear_altq(int dev, int opts)
504 {
505 	struct pfr_buffer t;
506 
507 	if (!altqsupport)
508 		return (-1);
509 	memset(&t, 0, sizeof(t));
510 	t.pfrb_type = PFRB_TRANS;
511 	if (pfctl_add_trans(&t, PF_RULESET_ALTQ, "") ||
512 	    pfctl_trans(dev, &t, DIOCXBEGIN, 0) ||
513 	    pfctl_trans(dev, &t, DIOCXCOMMIT, 0))
514 		err(1, "pfctl_clear_altq");
515 	if ((opts & PF_OPT_QUIET) == 0)
516 		fprintf(stderr, "altq cleared\n");
517 	return (0);
518 }
519 
520 int
pfctl_clear_src_nodes(int dev,int opts)521 pfctl_clear_src_nodes(int dev, int opts)
522 {
523 	if (ioctl(dev, DIOCCLRSRCNODES))
524 		err(1, "DIOCCLRSRCNODES");
525 	if ((opts & PF_OPT_QUIET) == 0)
526 		fprintf(stderr, "source tracking entries cleared\n");
527 	return (0);
528 }
529 
530 int
pfctl_clear_iface_states(int dev,const char * iface,int opts)531 pfctl_clear_iface_states(int dev, const char *iface, int opts)
532 {
533 	struct pfctl_kill kill;
534 	unsigned int killed;
535 	int ret;
536 
537 	memset(&kill, 0, sizeof(kill));
538 	if (iface != NULL && strlcpy(kill.ifname, iface,
539 	    sizeof(kill.ifname)) >= sizeof(kill.ifname))
540 		errx(1, "invalid interface: %s", iface);
541 
542 	if (opts & PF_OPT_KILLMATCH)
543 		kill.kill_match = true;
544 
545 	if ((ret = pfctl_clear_states_h(pfh, &kill, &killed)) != 0)
546 		errc(1, ret, "DIOCCLRSTATES");
547 	if ((opts & PF_OPT_QUIET) == 0)
548 		fprintf(stderr, "%d states cleared\n", killed);
549 	return (0);
550 }
551 
552 void
pfctl_addrprefix(char * addr,struct pf_addr * mask)553 pfctl_addrprefix(char *addr, struct pf_addr *mask)
554 {
555 	char *p;
556 	const char *errstr;
557 	int prefix, ret_ga, q, r;
558 	struct addrinfo hints, *res;
559 
560 	if ((p = strchr(addr, '/')) == NULL)
561 		return;
562 
563 	*p++ = '\0';
564 	prefix = strtonum(p, 0, 128, &errstr);
565 	if (errstr)
566 		errx(1, "prefix is %s: %s", errstr, p);
567 
568 	bzero(&hints, sizeof(hints));
569 	/* prefix only with numeric addresses */
570 	hints.ai_flags |= AI_NUMERICHOST;
571 
572 	if ((ret_ga = getaddrinfo(addr, NULL, &hints, &res))) {
573 		errx(1, "getaddrinfo: %s", gai_strerror(ret_ga));
574 		/* NOTREACHED */
575 	}
576 
577 	if (res->ai_family == AF_INET && prefix > 32)
578 		errx(1, "prefix too long for AF_INET");
579 	else if (res->ai_family == AF_INET6 && prefix > 128)
580 		errx(1, "prefix too long for AF_INET6");
581 
582 	q = prefix >> 3;
583 	r = prefix & 7;
584 	switch (res->ai_family) {
585 	case AF_INET:
586 		bzero(&mask->v4, sizeof(mask->v4));
587 		mask->v4.s_addr = htonl((u_int32_t)
588 		    (0xffffffffffULL << (32 - prefix)));
589 		break;
590 	case AF_INET6:
591 		bzero(&mask->v6, sizeof(mask->v6));
592 		if (q > 0)
593 			memset((void *)&mask->v6, 0xff, q);
594 		if (r > 0)
595 			*((u_char *)&mask->v6 + q) =
596 			    (0xff00 >> r) & 0xff;
597 		break;
598 	}
599 	freeaddrinfo(res);
600 }
601 
602 int
pfctl_kill_src_nodes(int dev,const char * iface,int opts)603 pfctl_kill_src_nodes(int dev, const char *iface, int opts)
604 {
605 	struct pfioc_src_node_kill psnk;
606 	struct addrinfo *res[2], *resp[2];
607 	struct sockaddr last_src, last_dst;
608 	int killed, sources, dests;
609 	int ret_ga;
610 
611 	killed = sources = dests = 0;
612 
613 	memset(&psnk, 0, sizeof(psnk));
614 	memset(&psnk.psnk_src.addr.v.a.mask, 0xff,
615 	    sizeof(psnk.psnk_src.addr.v.a.mask));
616 	memset(&last_src, 0xff, sizeof(last_src));
617 	memset(&last_dst, 0xff, sizeof(last_dst));
618 
619 	pfctl_addrprefix(src_node_kill[0], &psnk.psnk_src.addr.v.a.mask);
620 
621 	if ((ret_ga = getaddrinfo(src_node_kill[0], NULL, NULL, &res[0]))) {
622 		errx(1, "getaddrinfo: %s", gai_strerror(ret_ga));
623 		/* NOTREACHED */
624 	}
625 	for (resp[0] = res[0]; resp[0]; resp[0] = resp[0]->ai_next) {
626 		if (resp[0]->ai_addr == NULL)
627 			continue;
628 		/* We get lots of duplicates.  Catch the easy ones */
629 		if (memcmp(&last_src, resp[0]->ai_addr, sizeof(last_src)) == 0)
630 			continue;
631 		last_src = *(struct sockaddr *)resp[0]->ai_addr;
632 
633 		psnk.psnk_af = resp[0]->ai_family;
634 		sources++;
635 
636 		if (psnk.psnk_af == AF_INET)
637 			psnk.psnk_src.addr.v.a.addr.v4 =
638 			    ((struct sockaddr_in *)resp[0]->ai_addr)->sin_addr;
639 		else if (psnk.psnk_af == AF_INET6)
640 			psnk.psnk_src.addr.v.a.addr.v6 =
641 			    ((struct sockaddr_in6 *)resp[0]->ai_addr)->
642 			    sin6_addr;
643 		else
644 			errx(1, "Unknown address family %d", psnk.psnk_af);
645 
646 		if (src_node_killers > 1) {
647 			dests = 0;
648 			memset(&psnk.psnk_dst.addr.v.a.mask, 0xff,
649 			    sizeof(psnk.psnk_dst.addr.v.a.mask));
650 			memset(&last_dst, 0xff, sizeof(last_dst));
651 			pfctl_addrprefix(src_node_kill[1],
652 			    &psnk.psnk_dst.addr.v.a.mask);
653 			if ((ret_ga = getaddrinfo(src_node_kill[1], NULL, NULL,
654 			    &res[1]))) {
655 				errx(1, "getaddrinfo: %s",
656 				    gai_strerror(ret_ga));
657 				/* NOTREACHED */
658 			}
659 			for (resp[1] = res[1]; resp[1];
660 			    resp[1] = resp[1]->ai_next) {
661 				if (resp[1]->ai_addr == NULL)
662 					continue;
663 				if (psnk.psnk_af != resp[1]->ai_family)
664 					continue;
665 
666 				if (memcmp(&last_dst, resp[1]->ai_addr,
667 				    sizeof(last_dst)) == 0)
668 					continue;
669 				last_dst = *(struct sockaddr *)resp[1]->ai_addr;
670 
671 				dests++;
672 
673 				if (psnk.psnk_af == AF_INET)
674 					psnk.psnk_dst.addr.v.a.addr.v4 =
675 					    ((struct sockaddr_in *)resp[1]->
676 					    ai_addr)->sin_addr;
677 				else if (psnk.psnk_af == AF_INET6)
678 					psnk.psnk_dst.addr.v.a.addr.v6 =
679 					    ((struct sockaddr_in6 *)resp[1]->
680 					    ai_addr)->sin6_addr;
681 				else
682 					errx(1, "Unknown address family %d",
683 					    psnk.psnk_af);
684 
685 				if (ioctl(dev, DIOCKILLSRCNODES, &psnk))
686 					err(1, "DIOCKILLSRCNODES");
687 				killed += psnk.psnk_killed;
688 			}
689 			freeaddrinfo(res[1]);
690 		} else {
691 			if (ioctl(dev, DIOCKILLSRCNODES, &psnk))
692 				err(1, "DIOCKILLSRCNODES");
693 			killed += psnk.psnk_killed;
694 		}
695 	}
696 
697 	freeaddrinfo(res[0]);
698 
699 	if ((opts & PF_OPT_QUIET) == 0)
700 		fprintf(stderr, "killed %d src nodes from %d sources and %d "
701 		    "destinations\n", killed, sources, dests);
702 	return (0);
703 }
704 
705 int
pfctl_net_kill_states(int dev,const char * iface,int opts)706 pfctl_net_kill_states(int dev, const char *iface, int opts)
707 {
708 	struct pfctl_kill kill;
709 	struct addrinfo *res[2], *resp[2];
710 	struct sockaddr last_src, last_dst;
711 	unsigned int newkilled;
712 	int killed, sources, dests;
713 	int ret_ga, ret;
714 
715 	killed = sources = dests = 0;
716 
717 	memset(&kill, 0, sizeof(kill));
718 	memset(&kill.src.addr.v.a.mask, 0xff,
719 	    sizeof(kill.src.addr.v.a.mask));
720 	memset(&last_src, 0xff, sizeof(last_src));
721 	memset(&last_dst, 0xff, sizeof(last_dst));
722 	if (iface != NULL && strlcpy(kill.ifname, iface,
723 	    sizeof(kill.ifname)) >= sizeof(kill.ifname))
724 		errx(1, "invalid interface: %s", iface);
725 
726 	if (state_killers == 2 && (strcmp(state_kill[0], "nat") == 0)) {
727 		kill.nat = true;
728 		state_kill[0] = state_kill[1];
729 		state_killers = 1;
730 	}
731 
732 	pfctl_addrprefix(state_kill[0], &kill.src.addr.v.a.mask);
733 
734 	if (opts & PF_OPT_KILLMATCH)
735 		kill.kill_match = true;
736 
737 	if ((ret_ga = getaddrinfo(state_kill[0], NULL, NULL, &res[0]))) {
738 		errx(1, "getaddrinfo: %s", gai_strerror(ret_ga));
739 		/* NOTREACHED */
740 	}
741 	for (resp[0] = res[0]; resp[0]; resp[0] = resp[0]->ai_next) {
742 		if (resp[0]->ai_addr == NULL)
743 			continue;
744 		/* We get lots of duplicates.  Catch the easy ones */
745 		if (memcmp(&last_src, resp[0]->ai_addr, sizeof(last_src)) == 0)
746 			continue;
747 		last_src = *(struct sockaddr *)resp[0]->ai_addr;
748 
749 		kill.af = resp[0]->ai_family;
750 		sources++;
751 
752 		if (kill.af == AF_INET)
753 			kill.src.addr.v.a.addr.v4 =
754 			    ((struct sockaddr_in *)resp[0]->ai_addr)->sin_addr;
755 		else if (kill.af == AF_INET6)
756 			kill.src.addr.v.a.addr.v6 =
757 			    ((struct sockaddr_in6 *)resp[0]->ai_addr)->
758 			    sin6_addr;
759 		else
760 			errx(1, "Unknown address family %d", kill.af);
761 
762 		if (state_killers > 1) {
763 			dests = 0;
764 			memset(&kill.dst.addr.v.a.mask, 0xff,
765 			    sizeof(kill.dst.addr.v.a.mask));
766 			memset(&last_dst, 0xff, sizeof(last_dst));
767 			pfctl_addrprefix(state_kill[1],
768 			    &kill.dst.addr.v.a.mask);
769 			if ((ret_ga = getaddrinfo(state_kill[1], NULL, NULL,
770 			    &res[1]))) {
771 				errx(1, "getaddrinfo: %s",
772 				    gai_strerror(ret_ga));
773 				/* NOTREACHED */
774 			}
775 			for (resp[1] = res[1]; resp[1];
776 			    resp[1] = resp[1]->ai_next) {
777 				if (resp[1]->ai_addr == NULL)
778 					continue;
779 				if (kill.af != resp[1]->ai_family)
780 					continue;
781 
782 				if (memcmp(&last_dst, resp[1]->ai_addr,
783 				    sizeof(last_dst)) == 0)
784 					continue;
785 				last_dst = *(struct sockaddr *)resp[1]->ai_addr;
786 
787 				dests++;
788 
789 				if (kill.af == AF_INET)
790 					kill.dst.addr.v.a.addr.v4 =
791 					    ((struct sockaddr_in *)resp[1]->
792 					    ai_addr)->sin_addr;
793 				else if (kill.af == AF_INET6)
794 					kill.dst.addr.v.a.addr.v6 =
795 					    ((struct sockaddr_in6 *)resp[1]->
796 					    ai_addr)->sin6_addr;
797 				else
798 					errx(1, "Unknown address family %d",
799 					    kill.af);
800 
801 				if ((ret = pfctl_kill_states_h(pfh, &kill, &newkilled)) != 0)
802 					errc(1, ret, "DIOCKILLSTATES");
803 				killed += newkilled;
804 			}
805 			freeaddrinfo(res[1]);
806 		} else {
807 			if ((ret = pfctl_kill_states_h(pfh, &kill, &newkilled)) != 0)
808 				errc(1, ret, "DIOCKILLSTATES");
809 			killed += newkilled;
810 		}
811 	}
812 
813 	freeaddrinfo(res[0]);
814 
815 	if ((opts & PF_OPT_QUIET) == 0)
816 		fprintf(stderr, "killed %d states from %d sources and %d "
817 		    "destinations\n", killed, sources, dests);
818 	return (0);
819 }
820 
821 int
pfctl_gateway_kill_states(int dev,const char * iface,int opts)822 pfctl_gateway_kill_states(int dev, const char *iface, int opts)
823 {
824 	struct pfctl_kill kill;
825 	struct addrinfo *res, *resp;
826 	struct sockaddr last_src;
827 	unsigned int newkilled;
828 	int killed = 0;
829 	int ret_ga;
830 
831 	if (state_killers != 2 || (strlen(state_kill[1]) == 0)) {
832 		warnx("no gateway specified");
833 		usage();
834 	}
835 
836 	memset(&kill, 0, sizeof(kill));
837 	memset(&kill.rt_addr.addr.v.a.mask, 0xff,
838 	    sizeof(kill.rt_addr.addr.v.a.mask));
839 	memset(&last_src, 0xff, sizeof(last_src));
840 	if (iface != NULL && strlcpy(kill.ifname, iface,
841 	    sizeof(kill.ifname)) >= sizeof(kill.ifname))
842 		errx(1, "invalid interface: %s", iface);
843 
844 	if (opts & PF_OPT_KILLMATCH)
845 		kill.kill_match = true;
846 
847 	pfctl_addrprefix(state_kill[1], &kill.rt_addr.addr.v.a.mask);
848 
849 	if ((ret_ga = getaddrinfo(state_kill[1], NULL, NULL, &res))) {
850 		errx(1, "getaddrinfo: %s", gai_strerror(ret_ga));
851 		/* NOTREACHED */
852 	}
853 	for (resp = res; resp; resp = resp->ai_next) {
854 		if (resp->ai_addr == NULL)
855 			continue;
856 		/* We get lots of duplicates.  Catch the easy ones */
857 		if (memcmp(&last_src, resp->ai_addr, sizeof(last_src)) == 0)
858 			continue;
859 		last_src = *(struct sockaddr *)resp->ai_addr;
860 
861 		kill.af = resp->ai_family;
862 
863 		if (kill.af == AF_INET)
864 			kill.rt_addr.addr.v.a.addr.v4 =
865 			    ((struct sockaddr_in *)resp->ai_addr)->sin_addr;
866 		else if (kill.af == AF_INET6)
867 			kill.rt_addr.addr.v.a.addr.v6 =
868 			    ((struct sockaddr_in6 *)resp->ai_addr)->
869 			    sin6_addr;
870 		else
871 			errx(1, "Unknown address family %d", kill.af);
872 
873 		if (pfctl_kill_states_h(pfh, &kill, &newkilled))
874 			err(1, "DIOCKILLSTATES");
875 		killed += newkilled;
876 	}
877 
878 	freeaddrinfo(res);
879 
880 	if ((opts & PF_OPT_QUIET) == 0)
881 		fprintf(stderr, "killed %d states\n", killed);
882 	return (0);
883 }
884 
885 int
pfctl_label_kill_states(int dev,const char * iface,int opts)886 pfctl_label_kill_states(int dev, const char *iface, int opts)
887 {
888 	struct pfctl_kill kill;
889 	unsigned int killed;
890 	int ret;
891 
892 	if (state_killers != 2 || (strlen(state_kill[1]) == 0)) {
893 		warnx("no label specified");
894 		usage();
895 	}
896 	memset(&kill, 0, sizeof(kill));
897 	if (iface != NULL && strlcpy(kill.ifname, iface,
898 	    sizeof(kill.ifname)) >= sizeof(kill.ifname))
899 		errx(1, "invalid interface: %s", iface);
900 
901 	if (opts & PF_OPT_KILLMATCH)
902 		kill.kill_match = true;
903 
904 	if (strlcpy(kill.label, state_kill[1], sizeof(kill.label)) >=
905 	    sizeof(kill.label))
906 		errx(1, "label too long: %s", state_kill[1]);
907 
908 	if ((ret = pfctl_kill_states_h(pfh, &kill, &killed)) != 0)
909 		errc(1, ret, "DIOCKILLSTATES");
910 
911 	if ((opts & PF_OPT_QUIET) == 0)
912 		fprintf(stderr, "killed %d states\n", killed);
913 
914 	return (0);
915 }
916 
917 int
pfctl_id_kill_states(int dev,const char * iface,int opts)918 pfctl_id_kill_states(int dev, const char *iface, int opts)
919 {
920 	struct pfctl_kill kill;
921 	unsigned int killed;
922 	int ret;
923 
924 	if (state_killers != 2 || (strlen(state_kill[1]) == 0)) {
925 		warnx("no id specified");
926 		usage();
927 	}
928 
929 	memset(&kill, 0, sizeof(kill));
930 
931 	if (opts & PF_OPT_KILLMATCH)
932 		kill.kill_match = true;
933 
934 	if ((sscanf(state_kill[1], "%jx/%x",
935 	    &kill.cmp.id, &kill.cmp.creatorid)) == 2) {
936 	}
937 	else if ((sscanf(state_kill[1], "%jx", &kill.cmp.id)) == 1) {
938 		kill.cmp.creatorid = 0;
939 	} else {
940 		warnx("wrong id format specified");
941 		usage();
942 	}
943 	if (kill.cmp.id == 0) {
944 		warnx("cannot kill id 0");
945 		usage();
946 	}
947 
948 	if ((ret = pfctl_kill_states_h(pfh, &kill, &killed)) != 0)
949 		errc(1, ret, "DIOCKILLSTATES");
950 
951 	if ((opts & PF_OPT_QUIET) == 0)
952 		fprintf(stderr, "killed %d states\n", killed);
953 
954 	return (0);
955 }
956 
957 int
pfctl_get_pool(int dev,struct pfctl_pool * pool,u_int32_t nr,u_int32_t ticket,int r_action,char * anchorname)958 pfctl_get_pool(int dev, struct pfctl_pool *pool, u_int32_t nr,
959     u_int32_t ticket, int r_action, char *anchorname)
960 {
961 	struct pfioc_pooladdr pp;
962 	struct pf_pooladdr *pa;
963 	u_int32_t pnr, mpnr;
964 	int ret;
965 
966 	memset(&pp, 0, sizeof(pp));
967 	if ((ret = pfctl_get_addrs(pfh, ticket, nr, r_action, anchorname, &mpnr)) != 0) {
968 		warnc(ret, "DIOCGETADDRS");
969 		return (-1);
970 	}
971 
972 	TAILQ_INIT(&pool->list);
973 	for (pnr = 0; pnr < mpnr; ++pnr) {
974 		if ((ret = pfctl_get_addr(pfh, ticket, nr, r_action, anchorname, pnr, &pp)) != 0) {
975 			warnc(ret, "DIOCGETADDR");
976 			return (-1);
977 		}
978 		pa = calloc(1, sizeof(struct pf_pooladdr));
979 		if (pa == NULL)
980 			err(1, "calloc");
981 		bcopy(&pp.addr, pa, sizeof(struct pf_pooladdr));
982 		TAILQ_INSERT_TAIL(&pool->list, pa, entries);
983 	}
984 
985 	return (0);
986 }
987 
988 void
pfctl_move_pool(struct pfctl_pool * src,struct pfctl_pool * dst)989 pfctl_move_pool(struct pfctl_pool *src, struct pfctl_pool *dst)
990 {
991 	struct pf_pooladdr *pa;
992 
993 	while ((pa = TAILQ_FIRST(&src->list)) != NULL) {
994 		TAILQ_REMOVE(&src->list, pa, entries);
995 		TAILQ_INSERT_TAIL(&dst->list, pa, entries);
996 	}
997 }
998 
999 void
pfctl_clear_pool(struct pfctl_pool * pool)1000 pfctl_clear_pool(struct pfctl_pool *pool)
1001 {
1002 	struct pf_pooladdr *pa;
1003 
1004 	while ((pa = TAILQ_FIRST(&pool->list)) != NULL) {
1005 		TAILQ_REMOVE(&pool->list, pa, entries);
1006 		free(pa);
1007 	}
1008 }
1009 
1010 void
pfctl_print_eth_rule_counters(struct pfctl_eth_rule * rule,int opts)1011 pfctl_print_eth_rule_counters(struct pfctl_eth_rule *rule, int opts)
1012 {
1013 	if (opts & PF_OPT_VERBOSE) {
1014 		printf("  [ Evaluations: %-8llu  Packets: %-8llu  "
1015 			    "Bytes: %-10llu]\n",
1016 			    (unsigned long long)rule->evaluations,
1017 			    (unsigned long long)(rule->packets[0] +
1018 			    rule->packets[1]),
1019 			    (unsigned long long)(rule->bytes[0] +
1020 			    rule->bytes[1]));
1021 	}
1022 	if (opts & PF_OPT_VERBOSE2) {
1023 		char timestr[30];
1024 
1025 		if (rule->last_active_timestamp != 0) {
1026 			bcopy(ctime(&rule->last_active_timestamp), timestr,
1027 			    sizeof(timestr));
1028 			*strchr(timestr, '\n') = '\0';
1029 		} else {
1030 			snprintf(timestr, sizeof(timestr), "N/A");
1031 		}
1032 		printf("  [ Last Active Time: %s ]\n", timestr);
1033 	}
1034 }
1035 
1036 void
pfctl_print_rule_counters(struct pfctl_rule * rule,int opts)1037 pfctl_print_rule_counters(struct pfctl_rule *rule, int opts)
1038 {
1039 	if (opts & PF_OPT_DEBUG) {
1040 		const char *t[PF_SKIP_COUNT] = { "i", "d", "f",
1041 		    "p", "sa", "da", "sp", "dp" };
1042 		int i;
1043 
1044 		printf("  [ Skip steps: ");
1045 		for (i = 0; i < PF_SKIP_COUNT; ++i) {
1046 			if (rule->skip[i].nr == rule->nr + 1)
1047 				continue;
1048 			printf("%s=", t[i]);
1049 			if (rule->skip[i].nr == -1)
1050 				printf("end ");
1051 			else
1052 				printf("%u ", rule->skip[i].nr);
1053 		}
1054 		printf("]\n");
1055 
1056 		printf("  [ queue: qname=%s qid=%u pqname=%s pqid=%u ]\n",
1057 		    rule->qname, rule->qid, rule->pqname, rule->pqid);
1058 	}
1059 	if (opts & PF_OPT_VERBOSE) {
1060 		printf("  [ Evaluations: %-8llu  Packets: %-8llu  "
1061 			    "Bytes: %-10llu  States: %-6ju]\n",
1062 			    (unsigned long long)rule->evaluations,
1063 			    (unsigned long long)(rule->packets[0] +
1064 			    rule->packets[1]),
1065 			    (unsigned long long)(rule->bytes[0] +
1066 			    rule->bytes[1]), (uintmax_t)rule->states_cur);
1067 		if (!(opts & PF_OPT_DEBUG))
1068 			printf("  [ Inserted: uid %u pid %u "
1069 			    "State Creations: %-6ju]\n",
1070 			    (unsigned)rule->cuid, (unsigned)rule->cpid,
1071 			    (uintmax_t)rule->states_tot);
1072 	}
1073 	if (opts & PF_OPT_VERBOSE2) {
1074 		char timestr[30];
1075 		if (rule->last_active_timestamp != 0) {
1076 			bcopy(ctime(&rule->last_active_timestamp), timestr,
1077 			    sizeof(timestr));
1078 			*strchr(timestr, '\n') = '\0';
1079 		} else {
1080 			snprintf(timestr, sizeof(timestr), "N/A");
1081 		}
1082 		printf("  [ Last Active Time: %s ]\n", timestr);
1083 	}
1084 }
1085 
1086 void
pfctl_print_title(char * title)1087 pfctl_print_title(char *title)
1088 {
1089 	if (!first_title)
1090 		printf("\n");
1091 	first_title = 0;
1092 	printf("%s\n", title);
1093 }
1094 
1095 int
pfctl_show_eth_rules(int dev,char * path,int opts,enum pfctl_show format,char * anchorname,int depth,int wildcard)1096 pfctl_show_eth_rules(int dev, char *path, int opts, enum pfctl_show format,
1097     char *anchorname, int depth, int wildcard)
1098 {
1099 	char anchor_call[MAXPATHLEN];
1100 	struct pfctl_eth_rules_info info;
1101 	struct pfctl_eth_rule rule;
1102 	int brace;
1103 	int dotitle = opts & PF_OPT_SHOWALL;
1104 	int len = strlen(path);
1105 	int ret;
1106 	char *npath, *p;
1107 
1108 	/*
1109 	 * Truncate a trailing / and * on an anchorname before searching for
1110 	 * the ruleset, this is syntactic sugar that doesn't actually make it
1111 	 * to the kernel.
1112 	 */
1113 	if ((p = strrchr(anchorname, '/')) != NULL &&
1114 			p[1] == '*' && p[2] == '\0') {
1115 		p[0] = '\0';
1116 	}
1117 
1118 	if (anchorname[0] == '/') {
1119 		if ((npath = calloc(1, MAXPATHLEN)) == NULL)
1120 			errx(1, "pfctl_rules: calloc");
1121 		snprintf(npath, MAXPATHLEN, "%s", anchorname);
1122 	} else {
1123 		if (path[0])
1124 			snprintf(&path[len], MAXPATHLEN - len, "/%s", anchorname);
1125 		else
1126 			snprintf(&path[len], MAXPATHLEN - len, "%s", anchorname);
1127 		npath = path;
1128 	}
1129 
1130 	/*
1131 	 * If this anchor was called with a wildcard path, go through
1132 	 * the rulesets in the anchor rather than the rules.
1133 	 */
1134 	if (wildcard && (opts & PF_OPT_RECURSE)) {
1135 		struct pfctl_eth_rulesets_info	ri;
1136 		u_int32_t                mnr, nr;
1137 
1138 		if ((ret = pfctl_get_eth_rulesets_info(dev, &ri, npath)) != 0) {
1139 			if (ret == EINVAL) {
1140 				fprintf(stderr, "Anchor '%s' "
1141 						"not found.\n", anchorname);
1142 			} else {
1143 				warnc(ret, "DIOCGETETHRULESETS");
1144 				return (-1);
1145 			}
1146 		}
1147 		mnr = ri.nr;
1148 
1149 		pfctl_print_eth_rule_counters(&rule, opts);
1150 		for (nr = 0; nr < mnr; ++nr) {
1151 			struct pfctl_eth_ruleset_info	rs;
1152 
1153 			if ((ret = pfctl_get_eth_ruleset(dev, npath, nr, &rs)) != 0)
1154 				errc(1, ret, "DIOCGETETHRULESET");
1155 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1156 			printf("anchor \"%s\" all {\n", rs.name);
1157 			pfctl_show_eth_rules(dev, npath, opts,
1158 					format, rs.name, depth + 1, 0);
1159 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1160 			printf("}\n");
1161 		}
1162 		path[len] = '\0';
1163 		return (0);
1164 	}
1165 
1166 	if ((ret = pfctl_get_eth_rules_info(dev, &info, path)) != 0) {
1167 		warnc(ret, "DIOCGETETHRULES");
1168 		return (-1);
1169 	}
1170 	for (int nr = 0; nr < info.nr; nr++) {
1171 		brace = 0;
1172 		INDENT(depth, !(opts & PF_OPT_VERBOSE));
1173 		if ((ret = pfctl_get_eth_rule(dev, nr, info.ticket, path, &rule,
1174 		    opts & PF_OPT_CLRRULECTRS, anchor_call)) != 0) {
1175 			warnc(ret, "DIOCGETETHRULE");
1176 			return (-1);
1177 		}
1178 		if (anchor_call[0] &&
1179 		   ((((p = strrchr(anchor_call, '_')) != NULL) &&
1180 		   (p == anchor_call ||
1181 		   *(--p) == '/')) || (opts & PF_OPT_RECURSE))) {
1182 			brace++;
1183 			int aclen = strlen(anchor_call);
1184 			if (anchor_call[aclen - 1] == '*')
1185 				anchor_call[aclen - 2] = '\0';
1186 		}
1187 		p = &anchor_call[0];
1188 		if (dotitle) {
1189 			pfctl_print_title("ETH RULES:");
1190 			dotitle = 0;
1191 		}
1192 		print_eth_rule(&rule, anchor_call,
1193 		    opts & (PF_OPT_VERBOSE2 | PF_OPT_DEBUG));
1194 		if (brace)
1195 			printf(" {\n");
1196 		else
1197 			printf("\n");
1198 		pfctl_print_eth_rule_counters(&rule, opts);
1199 		if (brace) {
1200 			pfctl_show_eth_rules(dev, path, opts, format,
1201 			    p, depth + 1, rule.anchor_wildcard);
1202 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1203 			printf("}\n");
1204 		}
1205 	}
1206 
1207 	path[len] = '\0';
1208 	return (0);
1209 }
1210 
1211 int
pfctl_show_rules(int dev,char * path,int opts,enum pfctl_show format,char * anchorname,int depth,int wildcard)1212 pfctl_show_rules(int dev, char *path, int opts, enum pfctl_show format,
1213     char *anchorname, int depth, int wildcard)
1214 {
1215 	struct pfctl_rules_info ri;
1216 	struct pfctl_rule rule;
1217 	char anchor_call[MAXPATHLEN];
1218 	u_int32_t nr, header = 0;
1219 	int rule_numbers = opts & (PF_OPT_VERBOSE2 | PF_OPT_DEBUG);
1220 	int numeric = opts & PF_OPT_NUMERIC;
1221 	int len = strlen(path), ret = 0;
1222 	char *npath, *p;
1223 
1224 	/*
1225 	 * Truncate a trailing / and * on an anchorname before searching for
1226 	 * the ruleset, this is syntactic sugar that doesn't actually make it
1227 	 * to the kernel.
1228 	 */
1229 	if ((p = strrchr(anchorname, '/')) != NULL &&
1230 	    p[1] == '*' && p[2] == '\0') {
1231 		p[0] = '\0';
1232 	}
1233 
1234 	if (anchorname[0] == '/') {
1235 		if ((npath = calloc(1, MAXPATHLEN)) == NULL)
1236 			errx(1, "pfctl_rules: calloc");
1237 		snprintf(npath, MAXPATHLEN, "%s", anchorname);
1238 	} else {
1239 		if (path[0])
1240 			snprintf(&path[len], MAXPATHLEN - len, "/%s", anchorname);
1241 		else
1242 			snprintf(&path[len], MAXPATHLEN - len, "%s", anchorname);
1243 		npath = path;
1244 	}
1245 
1246 	/*
1247 	 * If this anchor was called with a wildcard path, go through
1248 	 * the rulesets in the anchor rather than the rules.
1249 	 */
1250 	if (wildcard && (opts & PF_OPT_RECURSE)) {
1251 		struct pfioc_ruleset     prs;
1252 		u_int32_t                mnr, nr;
1253 
1254 		memset(&prs, 0, sizeof(prs));
1255 		if ((ret = pfctl_get_rulesets(pfh, npath, &mnr)) != 0) {
1256 			if (ret == EINVAL)
1257 				fprintf(stderr, "Anchor '%s' "
1258 				    "not found.\n", anchorname);
1259 			else
1260 				errc(1, ret, "DIOCGETRULESETS");
1261 		}
1262 
1263 		pfctl_print_rule_counters(&rule, opts);
1264 		for (nr = 0; nr < mnr; ++nr) {
1265 			if ((ret = pfctl_get_ruleset(pfh, npath, nr, &prs)) != 0)
1266 				errc(1, ret, "DIOCGETRULESET");
1267 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1268 			printf("anchor \"%s\" all {\n", prs.name);
1269 			pfctl_show_rules(dev, npath, opts,
1270 			    format, prs.name, depth + 1, 0);
1271 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1272 			printf("}\n");
1273 		}
1274 		path[len] = '\0';
1275 		return (0);
1276 	}
1277 
1278 	if (opts & PF_OPT_SHOWALL) {
1279 		ret = pfctl_get_rules_info_h(pfh, &ri, PF_PASS, path);
1280 		if (ret != 0) {
1281 			warnc(ret, "DIOCGETRULES");
1282 			goto error;
1283 		}
1284 		header++;
1285 	}
1286 	ret = pfctl_get_rules_info_h(pfh, &ri, PF_SCRUB, path);
1287 	if (ret != 0) {
1288 		warnc(ret, "DIOCGETRULES");
1289 		goto error;
1290 	}
1291 	if (opts & PF_OPT_SHOWALL) {
1292 		if (format == PFCTL_SHOW_RULES && (ri.nr > 0 || header))
1293 			pfctl_print_title("FILTER RULES:");
1294 		else if (format == PFCTL_SHOW_LABELS && labels)
1295 			pfctl_print_title("LABEL COUNTERS:");
1296 	}
1297 
1298 	for (nr = 0; nr < ri.nr; ++nr) {
1299 		if ((ret = pfctl_get_clear_rule_h(pfh, nr, ri.ticket, path, PF_SCRUB,
1300 		    &rule, anchor_call, opts & PF_OPT_CLRRULECTRS)) != 0) {
1301 			warnc(ret, "DIOCGETRULENV");
1302 			goto error;
1303 		}
1304 
1305 		if (pfctl_get_pool(dev, &rule.rpool,
1306 		    nr, ri.ticket, PF_SCRUB, path) != 0)
1307 			goto error;
1308 
1309 		switch (format) {
1310 		case PFCTL_SHOW_LABELS:
1311 			break;
1312 		case PFCTL_SHOW_RULES:
1313 			if (rule.label[0][0] && (opts & PF_OPT_SHOWALL))
1314 				labels = 1;
1315 			print_rule(&rule, anchor_call, rule_numbers, numeric);
1316 			printf("\n");
1317 			pfctl_print_rule_counters(&rule, opts);
1318 			break;
1319 		case PFCTL_SHOW_NOTHING:
1320 			break;
1321 		}
1322 		pfctl_clear_pool(&rule.rpool);
1323 	}
1324 	ret = pfctl_get_rules_info_h(pfh, &ri, PF_PASS, path);
1325 	if (ret != 0) {
1326 		warnc(ret, "DIOCGETRULES");
1327 		goto error;
1328 	}
1329 	for (nr = 0; nr < ri.nr; ++nr) {
1330 		if ((ret = pfctl_get_clear_rule_h(pfh, nr, ri.ticket, path, PF_PASS,
1331 		    &rule, anchor_call, opts & PF_OPT_CLRRULECTRS)) != 0) {
1332 			warnc(ret, "DIOCGETRULE");
1333 			goto error;
1334 		}
1335 
1336 		if (pfctl_get_pool(dev, &rule.rpool,
1337 		    nr, ri.ticket, PF_PASS, path) != 0)
1338 			goto error;
1339 
1340 		switch (format) {
1341 		case PFCTL_SHOW_LABELS: {
1342 			bool show = false;
1343 			int i = 0;
1344 
1345 			while (rule.label[i][0]) {
1346 				printf("%s ", rule.label[i++]);
1347 				show = true;
1348 			}
1349 
1350 			if (show) {
1351 				printf("%llu %llu %llu %llu"
1352 				    " %llu %llu %llu %ju\n",
1353 				    (unsigned long long)rule.evaluations,
1354 				    (unsigned long long)(rule.packets[0] +
1355 				    rule.packets[1]),
1356 				    (unsigned long long)(rule.bytes[0] +
1357 				    rule.bytes[1]),
1358 				    (unsigned long long)rule.packets[0],
1359 				    (unsigned long long)rule.bytes[0],
1360 				    (unsigned long long)rule.packets[1],
1361 				    (unsigned long long)rule.bytes[1],
1362 				    (uintmax_t)rule.states_tot);
1363 			}
1364 
1365 			if (anchor_call[0] &&
1366 			    (((p = strrchr(anchor_call, '/')) ?
1367 			      p[1] == '_' : anchor_call[0] == '_') ||
1368 			     opts & PF_OPT_RECURSE)) {
1369 				pfctl_show_rules(dev, npath, opts, format,
1370 				    anchor_call, depth, rule.anchor_wildcard);
1371 			}
1372 			break;
1373 		}
1374 		case PFCTL_SHOW_RULES:
1375 			if (rule.label[0][0] && (opts & PF_OPT_SHOWALL))
1376 				labels = 1;
1377 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1378 			print_rule(&rule, anchor_call, rule_numbers, numeric);
1379 
1380 			/*
1381 			 * If this is a 'unnamed' brace notation
1382 			 * anchor, OR the user has explicitly requested
1383 			 * recursion, print it recursively.
1384 			 */
1385 			if (anchor_call[0] &&
1386 			    (((p = strrchr(anchor_call, '/')) ?
1387 			      p[1] == '_' : anchor_call[0] == '_') ||
1388 			     opts & PF_OPT_RECURSE)) {
1389 				printf(" {\n");
1390 				pfctl_print_rule_counters(&rule, opts);
1391 				pfctl_show_rules(dev, npath, opts, format,
1392 				    anchor_call, depth + 1,
1393 				    rule.anchor_wildcard);
1394 				INDENT(depth, !(opts & PF_OPT_VERBOSE));
1395 				printf("}\n");
1396 			} else {
1397 				printf("\n");
1398 				pfctl_print_rule_counters(&rule, opts);
1399 			}
1400 			break;
1401 		case PFCTL_SHOW_NOTHING:
1402 			break;
1403 		}
1404 		pfctl_clear_pool(&rule.rpool);
1405 	}
1406 
1407  error:
1408 	path[len] = '\0';
1409 	return (ret);
1410 }
1411 
1412 int
pfctl_show_nat(int dev,char * path,int opts,char * anchorname,int depth,int wildcard)1413 pfctl_show_nat(int dev, char *path, int opts, char *anchorname, int depth,
1414     int wildcard)
1415 {
1416 	struct pfctl_rules_info ri;
1417 	struct pfctl_rule rule;
1418 	char anchor_call[MAXPATHLEN];
1419 	u_int32_t nr;
1420 	static int nattype[3] = { PF_NAT, PF_RDR, PF_BINAT };
1421 	int i, dotitle = opts & PF_OPT_SHOWALL;
1422 	int ret;
1423 	int len = strlen(path);
1424 	char *npath, *p;
1425 
1426 	/*
1427 	 * Truncate a trailing / and * on an anchorname before searching for
1428 	 * the ruleset, this is syntactic sugar that doesn't actually make it
1429 	 * to the kernel.
1430 	 */
1431 	if ((p = strrchr(anchorname, '/')) != NULL &&
1432 	    p[1] == '*' && p[2] == '\0') {
1433 		p[0] = '\0';
1434 	}
1435 
1436 	if (anchorname[0] == '/') {
1437 		if ((npath = calloc(1, MAXPATHLEN)) == NULL)
1438 			errx(1, "pfctl_rules: calloc");
1439 		snprintf(npath, MAXPATHLEN, "%s", anchorname);
1440 	} else {
1441 		if (path[0])
1442 			snprintf(&path[len], MAXPATHLEN - len, "/%s", anchorname);
1443 		else
1444 			snprintf(&path[len], MAXPATHLEN - len, "%s", anchorname);
1445 		npath = path;
1446 	}
1447 
1448 	/*
1449 	 * If this anchor was called with a wildcard path, go through
1450 	 * the rulesets in the anchor rather than the rules.
1451 	 */
1452 	if (wildcard && (opts & PF_OPT_RECURSE)) {
1453 		struct pfioc_ruleset     prs;
1454 		u_int32_t                mnr, nr;
1455 		memset(&prs, 0, sizeof(prs));
1456 		if ((ret = pfctl_get_rulesets(pfh, npath, &mnr)) != 0) {
1457 			if (ret == EINVAL)
1458 				fprintf(stderr, "NAT anchor '%s' "
1459 				    "not found.\n", anchorname);
1460 			else
1461 				errc(1, ret, "DIOCGETRULESETS");
1462 		}
1463 
1464 		pfctl_print_rule_counters(&rule, opts);
1465 		for (nr = 0; nr < mnr; ++nr) {
1466 			if ((ret = pfctl_get_ruleset(pfh, npath, nr, &prs)) != 0)
1467 				errc(1, ret, "DIOCGETRULESET");
1468 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1469 			printf("nat-anchor \"%s\" all {\n", prs.name);
1470 			pfctl_show_nat(dev, npath, opts,
1471 			    prs.name, depth + 1, 0);
1472 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1473 			printf("}\n");
1474 		}
1475 		path[len] = '\0';
1476 		return (0);
1477 	}
1478 
1479 	for (i = 0; i < 3; i++) {
1480 		ret = pfctl_get_rules_info_h(pfh, &ri, nattype[i], path);
1481 		if (ret != 0) {
1482 			warnc(ret, "DIOCGETRULES");
1483 			return (-1);
1484 		}
1485 		for (nr = 0; nr < ri.nr; ++nr) {
1486 			INDENT(depth, !(opts & PF_OPT_VERBOSE));
1487 
1488 			if ((ret = pfctl_get_rule_h(pfh, nr, ri.ticket, path,
1489 			    nattype[i], &rule, anchor_call)) != 0) {
1490 				warnc(ret, "DIOCGETRULE");
1491 				return (-1);
1492 			}
1493 			if (pfctl_get_pool(dev, &rule.rpool, nr,
1494 			    ri.ticket, nattype[i], path) != 0)
1495 				return (-1);
1496 
1497 			if (dotitle) {
1498 				pfctl_print_title("TRANSLATION RULES:");
1499 				dotitle = 0;
1500 			}
1501 			print_rule(&rule, anchor_call,
1502 			    opts & PF_OPT_VERBOSE2, opts & PF_OPT_NUMERIC);
1503 			if (anchor_call[0] &&
1504 			    (((p = strrchr(anchor_call, '/')) ?
1505 			      p[1] == '_' : anchor_call[0] == '_') ||
1506 			     opts & PF_OPT_RECURSE)) {
1507 				printf(" {\n");
1508 				pfctl_print_rule_counters(&rule, opts);
1509 				pfctl_show_nat(dev, npath, opts, anchor_call,
1510 				    depth + 1, rule.anchor_wildcard);
1511 				INDENT(depth, !(opts & PF_OPT_VERBOSE));
1512 				printf("}\n");
1513 			} else {
1514 				printf("\n");
1515 				pfctl_print_rule_counters(&rule, opts);
1516 			}
1517 		}
1518 	}
1519 	return (0);
1520 }
1521 
1522 static int
pfctl_print_src_node(struct pfctl_src_node * sn,void * arg)1523 pfctl_print_src_node(struct pfctl_src_node *sn, void *arg)
1524 {
1525 	int *opts = (int *)arg;
1526 
1527 	if (*opts & PF_OPT_SHOWALL) {
1528 		pfctl_print_title("SOURCE TRACKING NODES:");
1529 		*opts &= ~PF_OPT_SHOWALL;
1530 	}
1531 
1532 	print_src_node(sn, *opts);
1533 
1534 	return (0);
1535 }
1536 
1537 int
pfctl_show_src_nodes(int dev,int opts)1538 pfctl_show_src_nodes(int dev, int opts)
1539 {
1540 	int error;
1541 
1542 	error = pfctl_get_srcnodes(pfh, pfctl_print_src_node, &opts);
1543 
1544 	return (error);
1545 }
1546 
1547 struct pfctl_show_state_arg {
1548 	int opts;
1549 	int dotitle;
1550 	const char *iface;
1551 };
1552 
1553 static int
pfctl_show_state(struct pfctl_state * s,void * arg)1554 pfctl_show_state(struct pfctl_state *s, void *arg)
1555 {
1556 	struct pfctl_show_state_arg *a = (struct pfctl_show_state_arg *)arg;
1557 
1558 	if (a->dotitle) {
1559 		pfctl_print_title("STATES:");
1560 		a->dotitle = 0;
1561 	}
1562 	print_state(s, a->opts);
1563 
1564 	return (0);
1565 }
1566 
1567 int
pfctl_show_states(int dev,const char * iface,int opts)1568 pfctl_show_states(int dev, const char *iface, int opts)
1569 {
1570 	struct pfctl_show_state_arg arg;
1571 	struct pfctl_state_filter filter = {};
1572 
1573 	if (iface != NULL)
1574 		strncpy(filter.ifname, iface, IFNAMSIZ);
1575 
1576 	arg.opts = opts;
1577 	arg.dotitle = opts & PF_OPT_SHOWALL;
1578 	arg.iface = iface;
1579 
1580 	if (pfctl_get_filtered_states_iter(&filter, pfctl_show_state, &arg))
1581 		return (-1);
1582 
1583 	return (0);
1584 }
1585 
1586 int
pfctl_show_status(int dev,int opts)1587 pfctl_show_status(int dev, int opts)
1588 {
1589 	struct pfctl_status	*status;
1590 	struct pfctl_syncookies	cookies;
1591 	int ret;
1592 
1593 	if ((status = pfctl_get_status_h(pfh)) == NULL) {
1594 		warn("DIOCGETSTATUS");
1595 		return (-1);
1596 	}
1597 	if ((ret = pfctl_get_syncookies(dev, &cookies)) != 0) {
1598 		pfctl_free_status(status);
1599 		warnc(ret, "DIOCGETSYNCOOKIES");
1600 		return (-1);
1601 	}
1602 	if (opts & PF_OPT_SHOWALL)
1603 		pfctl_print_title("INFO:");
1604 	print_status(status, &cookies, opts);
1605 	pfctl_free_status(status);
1606 	return (0);
1607 }
1608 
1609 int
pfctl_show_running(int dev)1610 pfctl_show_running(int dev)
1611 {
1612 	struct pfctl_status *status;
1613 	int running;
1614 
1615 	if ((status = pfctl_get_status_h(pfh)) == NULL) {
1616 		warn("DIOCGETSTATUS");
1617 		return (-1);
1618 	}
1619 
1620 	running = status->running;
1621 
1622 	print_running(status);
1623 	pfctl_free_status(status);
1624 	return (!running);
1625 }
1626 
1627 int
pfctl_show_timeouts(int dev,int opts)1628 pfctl_show_timeouts(int dev, int opts)
1629 {
1630 	uint32_t seconds;
1631 	int i;
1632 	int ret;
1633 
1634 	if (opts & PF_OPT_SHOWALL)
1635 		pfctl_print_title("TIMEOUTS:");
1636 	for (i = 0; pf_timeouts[i].name; i++) {
1637 		if ((ret = pfctl_get_timeout(pfh, pf_timeouts[i].timeout, &seconds)) != 0)
1638 			errc(1, ret, "DIOCGETTIMEOUT");
1639 		printf("%-20s %10d", pf_timeouts[i].name, seconds);
1640 		if (pf_timeouts[i].timeout >= PFTM_ADAPTIVE_START &&
1641 		    pf_timeouts[i].timeout <= PFTM_ADAPTIVE_END)
1642 			printf(" states");
1643 		else
1644 			printf("s");
1645 		printf("\n");
1646 	}
1647 	return (0);
1648 
1649 }
1650 
1651 int
pfctl_show_limits(int dev,int opts)1652 pfctl_show_limits(int dev, int opts)
1653 {
1654 	unsigned int limit;
1655 	int i;
1656 	int ret;
1657 
1658 	if (opts & PF_OPT_SHOWALL)
1659 		pfctl_print_title("LIMITS:");
1660 	for (i = 0; pf_limits[i].name; i++) {
1661 		if ((ret = pfctl_get_limit(pfh, pf_limits[i].index, &limit)) != 0)
1662 			errc(1, ret, "DIOCGETLIMIT");
1663 		printf("%-13s ", pf_limits[i].name);
1664 		if (limit == UINT_MAX)
1665 			printf("unlimited\n");
1666 		else
1667 			printf("hard limit %8u\n", limit);
1668 	}
1669 	return (0);
1670 }
1671 
1672 void
pfctl_show_creators(int opts)1673 pfctl_show_creators(int opts)
1674 {
1675 	int ret;
1676 	uint32_t creators[16];
1677 	size_t count = nitems(creators);
1678 
1679 	ret = pfctl_get_creatorids(pfh, creators, &count);
1680 	if (ret != 0)
1681 		errx(ret, "Failed to retrieve creators");
1682 
1683 	printf("Creator IDs:\n");
1684 	for (size_t i = 0; i < count; i++)
1685 		printf("%08x\n", creators[i]);
1686 }
1687 
1688 /* callbacks for rule/nat/rdr/addr */
1689 int
pfctl_add_pool(struct pfctl * pf,struct pfctl_pool * p,sa_family_t af)1690 pfctl_add_pool(struct pfctl *pf, struct pfctl_pool *p, sa_family_t af)
1691 {
1692 	struct pf_pooladdr *pa;
1693 	int ret;
1694 
1695 	if ((pf->opts & PF_OPT_NOACTION) == 0) {
1696 		if ((ret = pfctl_begin_addrs(pf->h, &pf->paddr.ticket)) != 0)
1697 			errc(1, ret, "DIOCBEGINADDRS");
1698 	}
1699 
1700 	pf->paddr.af = af;
1701 	TAILQ_FOREACH(pa, &p->list, entries) {
1702 		memcpy(&pf->paddr.addr, pa, sizeof(struct pf_pooladdr));
1703 		if ((pf->opts & PF_OPT_NOACTION) == 0) {
1704 			if ((ret = pfctl_add_addr(pf->h, &pf->paddr)) != 0)
1705 				errc(1, ret, "DIOCADDADDR");
1706 		}
1707 	}
1708 	return (0);
1709 }
1710 
1711 int
pfctl_append_rule(struct pfctl * pf,struct pfctl_rule * r,const char * anchor_call)1712 pfctl_append_rule(struct pfctl *pf, struct pfctl_rule *r,
1713     const char *anchor_call)
1714 {
1715 	u_int8_t		rs_num;
1716 	struct pfctl_rule	*rule;
1717 	struct pfctl_ruleset	*rs;
1718 	char 			*p;
1719 
1720 	rs_num = pf_get_ruleset_number(r->action);
1721 	if (rs_num == PF_RULESET_MAX)
1722 		errx(1, "Invalid rule type %d", r->action);
1723 
1724 	rs = &pf->anchor->ruleset;
1725 
1726 	if (anchor_call[0] && r->anchor == NULL) {
1727 		/*
1728 		 * Don't make non-brace anchors part of the main anchor pool.
1729 		 */
1730 		if ((r->anchor = calloc(1, sizeof(*r->anchor))) == NULL)
1731 			err(1, "pfctl_append_rule: calloc");
1732 
1733 		pf_init_ruleset(&r->anchor->ruleset);
1734 		r->anchor->ruleset.anchor = r->anchor;
1735 		if (strlcpy(r->anchor->path, anchor_call,
1736 		    sizeof(rule->anchor->path)) >= sizeof(rule->anchor->path))
1737 			errx(1, "pfctl_append_rule: strlcpy");
1738 		if ((p = strrchr(anchor_call, '/')) != NULL) {
1739 			if (!strlen(p))
1740 				err(1, "pfctl_append_rule: bad anchor name %s",
1741 				    anchor_call);
1742 		} else
1743 			p = (char *)anchor_call;
1744 		if (strlcpy(r->anchor->name, p,
1745 		    sizeof(rule->anchor->name)) >= sizeof(rule->anchor->name))
1746 			errx(1, "pfctl_append_rule: strlcpy");
1747 	}
1748 
1749 	if ((rule = calloc(1, sizeof(*rule))) == NULL)
1750 		err(1, "calloc");
1751 	bcopy(r, rule, sizeof(*rule));
1752 	TAILQ_INIT(&rule->rpool.list);
1753 	pfctl_move_pool(&r->rpool, &rule->rpool);
1754 
1755 	TAILQ_INSERT_TAIL(rs->rules[rs_num].active.ptr, rule, entries);
1756 	return (0);
1757 }
1758 
1759 int
pfctl_append_eth_rule(struct pfctl * pf,struct pfctl_eth_rule * r,const char * anchor_call)1760 pfctl_append_eth_rule(struct pfctl *pf, struct pfctl_eth_rule *r,
1761     const char *anchor_call)
1762 {
1763 	struct pfctl_eth_rule		*rule;
1764 	struct pfctl_eth_ruleset	*rs;
1765 	char 				*p;
1766 
1767 	rs = &pf->eanchor->ruleset;
1768 
1769 	if (anchor_call[0] && r->anchor == NULL) {
1770 		/*
1771 		 * Don't make non-brace anchors part of the main anchor pool.
1772 		 */
1773 		if ((r->anchor = calloc(1, sizeof(*r->anchor))) == NULL)
1774 			err(1, "pfctl_append_rule: calloc");
1775 
1776 		pf_init_eth_ruleset(&r->anchor->ruleset);
1777 		r->anchor->ruleset.anchor = r->anchor;
1778 		if (strlcpy(r->anchor->path, anchor_call,
1779 		    sizeof(rule->anchor->path)) >= sizeof(rule->anchor->path))
1780 			errx(1, "pfctl_append_rule: strlcpy");
1781 		if ((p = strrchr(anchor_call, '/')) != NULL) {
1782 			if (!strlen(p))
1783 				err(1, "pfctl_append_eth_rule: bad anchor name %s",
1784 				    anchor_call);
1785 		} else
1786 			p = (char *)anchor_call;
1787 		if (strlcpy(r->anchor->name, p,
1788 		    sizeof(rule->anchor->name)) >= sizeof(rule->anchor->name))
1789 			errx(1, "pfctl_append_eth_rule: strlcpy");
1790 	}
1791 
1792 	if ((rule = calloc(1, sizeof(*rule))) == NULL)
1793 		err(1, "calloc");
1794 	bcopy(r, rule, sizeof(*rule));
1795 
1796 	TAILQ_INSERT_TAIL(&rs->rules, rule, entries);
1797 	return (0);
1798 }
1799 
1800 int
pfctl_eth_ruleset_trans(struct pfctl * pf,char * path,struct pfctl_eth_anchor * a)1801 pfctl_eth_ruleset_trans(struct pfctl *pf, char *path,
1802     struct pfctl_eth_anchor *a)
1803 {
1804 	int osize = pf->trans->pfrb_size;
1805 
1806 	if ((pf->loadopt & PFCTL_FLAG_ETH) != 0) {
1807 		if (pfctl_add_trans(pf->trans, PF_RULESET_ETH, path))
1808 			return (1);
1809 	}
1810 	if (pfctl_trans(pf->dev, pf->trans, DIOCXBEGIN, osize))
1811 		return (5);
1812 
1813 	return (0);
1814 }
1815 
1816 int
pfctl_ruleset_trans(struct pfctl * pf,char * path,struct pfctl_anchor * a,bool do_eth)1817 pfctl_ruleset_trans(struct pfctl *pf, char *path, struct pfctl_anchor *a, bool do_eth)
1818 {
1819 	int osize = pf->trans->pfrb_size;
1820 
1821 	if ((pf->loadopt & PFCTL_FLAG_ETH) != 0 && do_eth) {
1822 		if (pfctl_add_trans(pf->trans, PF_RULESET_ETH, path))
1823 			return (1);
1824 	}
1825 	if ((pf->loadopt & PFCTL_FLAG_NAT) != 0) {
1826 		if (pfctl_add_trans(pf->trans, PF_RULESET_NAT, path) ||
1827 		    pfctl_add_trans(pf->trans, PF_RULESET_BINAT, path) ||
1828 		    pfctl_add_trans(pf->trans, PF_RULESET_RDR, path))
1829 			return (1);
1830 	}
1831 	if (a == pf->astack[0] && ((altqsupport &&
1832 	    (pf->loadopt & PFCTL_FLAG_ALTQ) != 0))) {
1833 		if (pfctl_add_trans(pf->trans, PF_RULESET_ALTQ, path))
1834 			return (2);
1835 	}
1836 	if ((pf->loadopt & PFCTL_FLAG_FILTER) != 0) {
1837 		if (pfctl_add_trans(pf->trans, PF_RULESET_SCRUB, path) ||
1838 		    pfctl_add_trans(pf->trans, PF_RULESET_FILTER, path))
1839 			return (3);
1840 	}
1841 	if (pf->loadopt & PFCTL_FLAG_TABLE)
1842 		if (pfctl_add_trans(pf->trans, PF_RULESET_TABLE, path))
1843 			return (4);
1844 	if (pfctl_trans(pf->dev, pf->trans, DIOCXBEGIN, osize))
1845 		return (5);
1846 
1847 	return (0);
1848 }
1849 
1850 int
pfctl_load_eth_ruleset(struct pfctl * pf,char * path,struct pfctl_eth_ruleset * rs,int depth)1851 pfctl_load_eth_ruleset(struct pfctl *pf, char *path,
1852     struct pfctl_eth_ruleset *rs, int depth)
1853 {
1854 	struct pfctl_eth_rule	*r;
1855 	int	error, len = strlen(path);
1856 	int	brace = 0;
1857 
1858 	pf->eanchor = rs->anchor;
1859 	if (path[0])
1860 		snprintf(&path[len], MAXPATHLEN - len, "/%s", pf->eanchor->name);
1861 	else
1862 		snprintf(&path[len], MAXPATHLEN - len, "%s", pf->eanchor->name);
1863 
1864 	if (depth) {
1865 		if (TAILQ_FIRST(&rs->rules) != NULL) {
1866 			brace++;
1867 			if (pf->opts & PF_OPT_VERBOSE)
1868 				printf(" {\n");
1869 			if ((pf->opts & PF_OPT_NOACTION) == 0 &&
1870 			    (error = pfctl_eth_ruleset_trans(pf,
1871 			    path, rs->anchor))) {
1872 				printf("pfctl_load_eth_rulesets: "
1873 				    "pfctl_eth_ruleset_trans %d\n", error);
1874 				goto error;
1875 			}
1876 		} else if (pf->opts & PF_OPT_VERBOSE)
1877 			printf("\n");
1878 	}
1879 
1880 	while ((r = TAILQ_FIRST(&rs->rules)) != NULL) {
1881 		TAILQ_REMOVE(&rs->rules, r, entries);
1882 
1883 		error = pfctl_load_eth_rule(pf, path, r, depth);
1884 		if (error)
1885 			return (error);
1886 
1887 		if (r->anchor) {
1888 			if ((error = pfctl_load_eth_ruleset(pf, path,
1889 			    &r->anchor->ruleset, depth + 1)))
1890 				return (error);
1891 		} else if (pf->opts & PF_OPT_VERBOSE)
1892 			printf("\n");
1893 		free(r);
1894 	}
1895 	if (brace && pf->opts & PF_OPT_VERBOSE) {
1896 		INDENT(depth - 1, (pf->opts & PF_OPT_VERBOSE));
1897 		printf("}\n");
1898 	}
1899 	path[len] = '\0';
1900 
1901 	return (0);
1902 error:
1903 	path[len] = '\0';
1904 	return (error);
1905 }
1906 
1907 int
pfctl_load_eth_rule(struct pfctl * pf,char * path,struct pfctl_eth_rule * r,int depth)1908 pfctl_load_eth_rule(struct pfctl *pf, char *path, struct pfctl_eth_rule *r,
1909     int depth)
1910 {
1911 	char			*name;
1912 	char			anchor[PF_ANCHOR_NAME_SIZE];
1913 	int			len = strlen(path);
1914 	int			ret;
1915 
1916 	if (strlcpy(anchor, path, sizeof(anchor)) >= sizeof(anchor))
1917 		errx(1, "pfctl_load_eth_rule: strlcpy");
1918 
1919 	if (r->anchor) {
1920 		if (r->anchor->match) {
1921 			if (path[0])
1922 				snprintf(&path[len], MAXPATHLEN - len,
1923 				    "/%s", r->anchor->name);
1924 			else
1925 				snprintf(&path[len], MAXPATHLEN - len,
1926 				    "%s", r->anchor->name);
1927 			name = r->anchor->name;
1928 		} else
1929 			name = r->anchor->path;
1930 	} else
1931 		name = "";
1932 
1933 	if ((pf->opts & PF_OPT_NOACTION) == 0)
1934 		if ((ret = pfctl_add_eth_rule(pf->dev, r, anchor, name,
1935 		    pf->eth_ticket)) != 0)
1936 			errc(1, ret, "DIOCADDETHRULENV");
1937 
1938 	if (pf->opts & PF_OPT_VERBOSE) {
1939 		INDENT(depth, !(pf->opts & PF_OPT_VERBOSE2));
1940 		print_eth_rule(r, r->anchor ? r->anchor->name : "",
1941 		    pf->opts & (PF_OPT_VERBOSE2 | PF_OPT_DEBUG));
1942 	}
1943 
1944 	path[len] = '\0';
1945 
1946 	return (0);
1947 }
1948 
1949 int
pfctl_load_ruleset(struct pfctl * pf,char * path,struct pfctl_ruleset * rs,int rs_num,int depth)1950 pfctl_load_ruleset(struct pfctl *pf, char *path, struct pfctl_ruleset *rs,
1951     int rs_num, int depth)
1952 {
1953 	struct pfctl_rule *r;
1954 	int		error, len = strlen(path);
1955 	int		brace = 0;
1956 
1957 	pf->anchor = rs->anchor;
1958 
1959 	if (path[0])
1960 		snprintf(&path[len], MAXPATHLEN - len, "/%s", pf->anchor->name);
1961 	else
1962 		snprintf(&path[len], MAXPATHLEN - len, "%s", pf->anchor->name);
1963 
1964 	if (depth) {
1965 		if (TAILQ_FIRST(rs->rules[rs_num].active.ptr) != NULL) {
1966 			brace++;
1967 			if (pf->opts & PF_OPT_VERBOSE)
1968 				printf(" {\n");
1969 			if ((pf->opts & PF_OPT_NOACTION) == 0 &&
1970 			    (error = pfctl_ruleset_trans(pf,
1971 			    path, rs->anchor, false))) {
1972 				printf("pfctl_load_rulesets: "
1973 				    "pfctl_ruleset_trans %d\n", error);
1974 				goto error;
1975 			}
1976 		} else if (pf->opts & PF_OPT_VERBOSE)
1977 			printf("\n");
1978 
1979 	}
1980 
1981 	if (pf->optimize && rs_num == PF_RULESET_FILTER)
1982 		pfctl_optimize_ruleset(pf, rs);
1983 
1984 	while ((r = TAILQ_FIRST(rs->rules[rs_num].active.ptr)) != NULL) {
1985 		TAILQ_REMOVE(rs->rules[rs_num].active.ptr, r, entries);
1986 
1987 		for (int i = 0; i < PF_RULE_MAX_LABEL_COUNT; i++)
1988 			expand_label(r->label[i], PF_RULE_LABEL_SIZE, r);
1989 		expand_label(r->tagname, PF_TAG_NAME_SIZE, r);
1990 		expand_label(r->match_tagname, PF_TAG_NAME_SIZE, r);
1991 
1992 		if ((error = pfctl_load_rule(pf, path, r, depth)))
1993 			goto error;
1994 		if (r->anchor) {
1995 			if ((error = pfctl_load_ruleset(pf, path,
1996 			    &r->anchor->ruleset, rs_num, depth + 1)))
1997 				goto error;
1998 		} else if (pf->opts & PF_OPT_VERBOSE)
1999 			printf("\n");
2000 		free(r);
2001 	}
2002 	if (brace && pf->opts & PF_OPT_VERBOSE) {
2003 		INDENT(depth - 1, (pf->opts & PF_OPT_VERBOSE));
2004 		printf("}\n");
2005 	}
2006 	path[len] = '\0';
2007 	return (0);
2008 
2009  error:
2010 	path[len] = '\0';
2011 	return (error);
2012 
2013 }
2014 
2015 int
pfctl_load_rule(struct pfctl * pf,char * path,struct pfctl_rule * r,int depth)2016 pfctl_load_rule(struct pfctl *pf, char *path, struct pfctl_rule *r, int depth)
2017 {
2018 	u_int8_t		rs_num = pf_get_ruleset_number(r->action);
2019 	char			*name;
2020 	u_int32_t		ticket;
2021 	char			anchor[PF_ANCHOR_NAME_SIZE];
2022 	int			len = strlen(path);
2023 	int			error;
2024 	bool			was_present;
2025 
2026 	/* set up anchor before adding to path for anchor_call */
2027 	if ((pf->opts & PF_OPT_NOACTION) == 0)
2028 		ticket = pfctl_get_ticket(pf->trans, rs_num, path);
2029 	if (strlcpy(anchor, path, sizeof(anchor)) >= sizeof(anchor))
2030 		errx(1, "pfctl_load_rule: strlcpy");
2031 
2032 	if (r->anchor) {
2033 		if (r->anchor->match) {
2034 			if (path[0])
2035 				snprintf(&path[len], MAXPATHLEN - len,
2036 				    "/%s", r->anchor->name);
2037 			else
2038 				snprintf(&path[len], MAXPATHLEN - len,
2039 				    "%s", r->anchor->name);
2040 			name = r->anchor->name;
2041 		} else
2042 			name = r->anchor->path;
2043 	} else
2044 		name = "";
2045 
2046 	was_present = false;
2047 	if ((pf->opts & PF_OPT_NOACTION) == 0) {
2048 		if (pfctl_add_pool(pf, &r->rpool, r->af))
2049 			return (1);
2050 		error = pfctl_add_rule_h(pf->h, r, anchor, name, ticket,
2051 		    pf->paddr.ticket);
2052 		switch (error) {
2053 		case 0:
2054 			/* things worked, do nothing */
2055 			break;
2056 		case EEXIST:
2057 			/* an identical rule is already present */
2058 			was_present = true;
2059 			break;
2060 		default:
2061 			errc(1, error, "DIOCADDRULE");
2062 		}
2063 	}
2064 
2065 	if (pf->opts & PF_OPT_VERBOSE) {
2066 		INDENT(depth, !(pf->opts & PF_OPT_VERBOSE2));
2067 		print_rule(r, name,
2068 		    pf->opts & PF_OPT_VERBOSE2,
2069 		    pf->opts & PF_OPT_NUMERIC);
2070 		if (was_present)
2071 			printf(" -- rule was already present");
2072 	}
2073 	path[len] = '\0';
2074 	pfctl_clear_pool(&r->rpool);
2075 	return (0);
2076 }
2077 
2078 int
pfctl_add_altq(struct pfctl * pf,struct pf_altq * a)2079 pfctl_add_altq(struct pfctl *pf, struct pf_altq *a)
2080 {
2081 	if (altqsupport &&
2082 	    (loadopt & PFCTL_FLAG_ALTQ) != 0) {
2083 		memcpy(&pf->paltq->altq, a, sizeof(struct pf_altq));
2084 		if ((pf->opts & PF_OPT_NOACTION) == 0) {
2085 			if (ioctl(pf->dev, DIOCADDALTQ, pf->paltq)) {
2086 				if (errno == ENXIO)
2087 					errx(1, "qtype not configured");
2088 				else if (errno == ENODEV)
2089 					errx(1, "%s: driver does not support "
2090 					    "altq", a->ifname);
2091 				else
2092 					err(1, "DIOCADDALTQ");
2093 			}
2094 		}
2095 		pfaltq_store(&pf->paltq->altq);
2096 	}
2097 	return (0);
2098 }
2099 
2100 int
pfctl_rules(int dev,char * filename,int opts,int optimize,char * anchorname,struct pfr_buffer * trans)2101 pfctl_rules(int dev, char *filename, int opts, int optimize,
2102     char *anchorname, struct pfr_buffer *trans)
2103 {
2104 #define ERR(x) do { warn(x); goto _error; } while(0)
2105 #define ERRX(x) do { warnx(x); goto _error; } while(0)
2106 
2107 	struct pfr_buffer	*t, buf;
2108 	struct pfioc_altq	 pa;
2109 	struct pfctl		 pf;
2110 	struct pfctl_ruleset	*rs;
2111 	struct pfctl_eth_ruleset	*ethrs;
2112 	struct pfr_table	 trs;
2113 	char			*path;
2114 	int			 osize;
2115 
2116 	RB_INIT(&pf_anchors);
2117 	memset(&pf_main_anchor, 0, sizeof(pf_main_anchor));
2118 	pf_init_ruleset(&pf_main_anchor.ruleset);
2119 	pf_main_anchor.ruleset.anchor = &pf_main_anchor;
2120 
2121 	memset(&pf_eth_main_anchor, 0, sizeof(pf_eth_main_anchor));
2122 	pf_init_eth_ruleset(&pf_eth_main_anchor.ruleset);
2123 	pf_eth_main_anchor.ruleset.anchor = &pf_eth_main_anchor;
2124 
2125 	if (trans == NULL) {
2126 		bzero(&buf, sizeof(buf));
2127 		buf.pfrb_type = PFRB_TRANS;
2128 		t = &buf;
2129 		osize = 0;
2130 	} else {
2131 		t = trans;
2132 		osize = t->pfrb_size;
2133 	}
2134 
2135 	memset(&pa, 0, sizeof(pa));
2136 	pa.version = PFIOC_ALTQ_VERSION;
2137 	memset(&pf, 0, sizeof(pf));
2138 	memset(&trs, 0, sizeof(trs));
2139 	if ((path = calloc(1, MAXPATHLEN)) == NULL)
2140 		ERRX("pfctl_rules: calloc");
2141 	if (strlcpy(trs.pfrt_anchor, anchorname,
2142 	    sizeof(trs.pfrt_anchor)) >= sizeof(trs.pfrt_anchor))
2143 		ERRX("pfctl_rules: strlcpy");
2144 	pf.dev = dev;
2145 	pf.h = pfh;
2146 	pf.opts = opts;
2147 	pf.optimize = optimize;
2148 	pf.loadopt = loadopt;
2149 
2150 	/* non-brace anchor, create without resolving the path */
2151 	if ((pf.anchor = calloc(1, sizeof(*pf.anchor))) == NULL)
2152 		ERRX("pfctl_rules: calloc");
2153 	rs = &pf.anchor->ruleset;
2154 	pf_init_ruleset(rs);
2155 	rs->anchor = pf.anchor;
2156 	if (strlcpy(pf.anchor->path, anchorname,
2157 	    sizeof(pf.anchor->path)) >= sizeof(pf.anchor->path))
2158 		errx(1, "pfctl_rules: strlcpy");
2159 	if (strlcpy(pf.anchor->name, anchorname,
2160 	    sizeof(pf.anchor->name)) >= sizeof(pf.anchor->name))
2161 		errx(1, "pfctl_rules: strlcpy");
2162 
2163 
2164 	pf.astack[0] = pf.anchor;
2165 	pf.asd = 0;
2166 	if (anchorname[0])
2167 		pf.loadopt &= ~PFCTL_FLAG_ALTQ;
2168 	pf.paltq = &pa;
2169 	pf.trans = t;
2170 	pfctl_init_options(&pf);
2171 
2172 	/* Set up ethernet anchor */
2173 	if ((pf.eanchor = calloc(1, sizeof(*pf.eanchor))) == NULL)
2174 		ERRX("pfctl_rules: calloc");
2175 
2176 	if (strlcpy(pf.eanchor->path, anchorname,
2177 	    sizeof(pf.eanchor->path)) >= sizeof(pf.eanchor->path))
2178 		errx(1, "pfctl_rules: strlcpy");
2179 	if (strlcpy(pf.eanchor->name, anchorname,
2180 	    sizeof(pf.eanchor->name)) >= sizeof(pf.eanchor->name))
2181 		errx(1, "pfctl_rules: strlcpy");
2182 
2183 	ethrs = &pf.eanchor->ruleset;
2184 	pf_init_eth_ruleset(ethrs);
2185 	ethrs->anchor = pf.eanchor;
2186 	pf.eastack[0] = pf.eanchor;
2187 
2188 	if ((opts & PF_OPT_NOACTION) == 0) {
2189 		/*
2190 		 * XXX For the time being we need to open transactions for
2191 		 * the main ruleset before parsing, because tables are still
2192 		 * loaded at parse time.
2193 		 */
2194 		if (pfctl_ruleset_trans(&pf, anchorname, pf.anchor, true))
2195 			ERRX("pfctl_rules");
2196 		if (pf.loadopt & PFCTL_FLAG_ETH)
2197 			pf.eth_ticket = pfctl_get_ticket(t, PF_RULESET_ETH, anchorname);
2198 		if (altqsupport && (pf.loadopt & PFCTL_FLAG_ALTQ))
2199 			pa.ticket =
2200 			    pfctl_get_ticket(t, PF_RULESET_ALTQ, anchorname);
2201 		if (pf.loadopt & PFCTL_FLAG_TABLE)
2202 			pf.astack[0]->ruleset.tticket =
2203 			    pfctl_get_ticket(t, PF_RULESET_TABLE, anchorname);
2204 	}
2205 
2206 	if (parse_config(filename, &pf) < 0) {
2207 		if ((opts & PF_OPT_NOACTION) == 0)
2208 			ERRX("Syntax error in config file: "
2209 			    "pf rules not loaded");
2210 		else
2211 			goto _error;
2212 	}
2213 	if (loadopt & PFCTL_FLAG_OPTION)
2214 		pfctl_adjust_skip_ifaces(&pf);
2215 
2216 	if ((pf.loadopt & PFCTL_FLAG_FILTER &&
2217 	    (pfctl_load_ruleset(&pf, path, rs, PF_RULESET_SCRUB, 0))) ||
2218 	    (pf.loadopt & PFCTL_FLAG_ETH &&
2219 	    (pfctl_load_eth_ruleset(&pf, path, ethrs, 0))) ||
2220 	    (pf.loadopt & PFCTL_FLAG_NAT &&
2221 	    (pfctl_load_ruleset(&pf, path, rs, PF_RULESET_NAT, 0) ||
2222 	    pfctl_load_ruleset(&pf, path, rs, PF_RULESET_RDR, 0) ||
2223 	    pfctl_load_ruleset(&pf, path, rs, PF_RULESET_BINAT, 0))) ||
2224 	    (pf.loadopt & PFCTL_FLAG_FILTER &&
2225 	    pfctl_load_ruleset(&pf, path, rs, PF_RULESET_FILTER, 0))) {
2226 		if ((opts & PF_OPT_NOACTION) == 0)
2227 			ERRX("Unable to load rules into kernel");
2228 		else
2229 			goto _error;
2230 	}
2231 
2232 	if ((altqsupport && (pf.loadopt & PFCTL_FLAG_ALTQ) != 0))
2233 		if (check_commit_altq(dev, opts) != 0)
2234 			ERRX("errors in altq config");
2235 
2236 	/* process "load anchor" directives */
2237 	if (!anchorname[0])
2238 		if (pfctl_load_anchors(dev, &pf, t) == -1)
2239 			ERRX("load anchors");
2240 
2241 	if (trans == NULL && (opts & PF_OPT_NOACTION) == 0) {
2242 		if (!anchorname[0])
2243 			if (pfctl_load_options(&pf))
2244 				goto _error;
2245 		if (pfctl_trans(dev, t, DIOCXCOMMIT, osize))
2246 			ERR("DIOCXCOMMIT");
2247 	}
2248 	free(path);
2249 	return (0);
2250 
2251 _error:
2252 	if (trans == NULL) {	/* main ruleset */
2253 		if ((opts & PF_OPT_NOACTION) == 0)
2254 			if (pfctl_trans(dev, t, DIOCXROLLBACK, osize))
2255 				err(1, "DIOCXROLLBACK");
2256 		exit(1);
2257 	} else {		/* sub ruleset */
2258 		free(path);
2259 		return (-1);
2260 	}
2261 
2262 #undef ERR
2263 #undef ERRX
2264 }
2265 
2266 FILE *
pfctl_fopen(const char * name,const char * mode)2267 pfctl_fopen(const char *name, const char *mode)
2268 {
2269 	struct stat	 st;
2270 	FILE		*fp;
2271 
2272 	fp = fopen(name, mode);
2273 	if (fp == NULL)
2274 		return (NULL);
2275 	if (fstat(fileno(fp), &st)) {
2276 		fclose(fp);
2277 		return (NULL);
2278 	}
2279 	if (S_ISDIR(st.st_mode)) {
2280 		fclose(fp);
2281 		errno = EISDIR;
2282 		return (NULL);
2283 	}
2284 	return (fp);
2285 }
2286 
2287 void
pfctl_init_options(struct pfctl * pf)2288 pfctl_init_options(struct pfctl *pf)
2289 {
2290 
2291 	pf->timeout[PFTM_TCP_FIRST_PACKET] = PFTM_TCP_FIRST_PACKET_VAL;
2292 	pf->timeout[PFTM_TCP_OPENING] = PFTM_TCP_OPENING_VAL;
2293 	pf->timeout[PFTM_TCP_ESTABLISHED] = PFTM_TCP_ESTABLISHED_VAL;
2294 	pf->timeout[PFTM_TCP_CLOSING] = PFTM_TCP_CLOSING_VAL;
2295 	pf->timeout[PFTM_TCP_FIN_WAIT] = PFTM_TCP_FIN_WAIT_VAL;
2296 	pf->timeout[PFTM_TCP_CLOSED] = PFTM_TCP_CLOSED_VAL;
2297 	pf->timeout[PFTM_SCTP_FIRST_PACKET] = PFTM_TCP_FIRST_PACKET_VAL;
2298 	pf->timeout[PFTM_SCTP_OPENING] = PFTM_TCP_OPENING_VAL;
2299 	pf->timeout[PFTM_SCTP_ESTABLISHED] = PFTM_TCP_ESTABLISHED_VAL;
2300 	pf->timeout[PFTM_SCTP_CLOSING] = PFTM_TCP_CLOSING_VAL;
2301 	pf->timeout[PFTM_SCTP_CLOSED] = PFTM_TCP_CLOSED_VAL;
2302 	pf->timeout[PFTM_UDP_FIRST_PACKET] = PFTM_UDP_FIRST_PACKET_VAL;
2303 	pf->timeout[PFTM_UDP_SINGLE] = PFTM_UDP_SINGLE_VAL;
2304 	pf->timeout[PFTM_UDP_MULTIPLE] = PFTM_UDP_MULTIPLE_VAL;
2305 	pf->timeout[PFTM_ICMP_FIRST_PACKET] = PFTM_ICMP_FIRST_PACKET_VAL;
2306 	pf->timeout[PFTM_ICMP_ERROR_REPLY] = PFTM_ICMP_ERROR_REPLY_VAL;
2307 	pf->timeout[PFTM_OTHER_FIRST_PACKET] = PFTM_OTHER_FIRST_PACKET_VAL;
2308 	pf->timeout[PFTM_OTHER_SINGLE] = PFTM_OTHER_SINGLE_VAL;
2309 	pf->timeout[PFTM_OTHER_MULTIPLE] = PFTM_OTHER_MULTIPLE_VAL;
2310 	pf->timeout[PFTM_FRAG] = PFTM_FRAG_VAL;
2311 	pf->timeout[PFTM_INTERVAL] = PFTM_INTERVAL_VAL;
2312 	pf->timeout[PFTM_SRC_NODE] = PFTM_SRC_NODE_VAL;
2313 	pf->timeout[PFTM_TS_DIFF] = PFTM_TS_DIFF_VAL;
2314 	pf->timeout[PFTM_ADAPTIVE_START] = PFSTATE_ADAPT_START;
2315 	pf->timeout[PFTM_ADAPTIVE_END] = PFSTATE_ADAPT_END;
2316 
2317 	pf->limit[PF_LIMIT_STATES] = PFSTATE_HIWAT;
2318 	pf->limit[PF_LIMIT_FRAGS] = PFFRAG_FRENT_HIWAT;
2319 	pf->limit[PF_LIMIT_SRC_NODES] = PFSNODE_HIWAT;
2320 	pf->limit[PF_LIMIT_TABLE_ENTRIES] = PFR_KENTRY_HIWAT;
2321 
2322 	pf->debug = PF_DEBUG_URGENT;
2323 	pf->reassemble = 0;
2324 
2325 	pf->syncookies = false;
2326 	pf->syncookieswat[0] = PF_SYNCOOKIES_LOWATPCT;
2327 	pf->syncookieswat[1] = PF_SYNCOOKIES_HIWATPCT;
2328 }
2329 
2330 int
pfctl_load_options(struct pfctl * pf)2331 pfctl_load_options(struct pfctl *pf)
2332 {
2333 	int i, error = 0;
2334 
2335 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2336 		return (0);
2337 
2338 	/* load limits */
2339 	for (i = 0; i < PF_LIMIT_MAX; i++) {
2340 		if ((pf->opts & PF_OPT_MERGE) && !pf->limit_set[i])
2341 			continue;
2342 		if (pfctl_load_limit(pf, i, pf->limit[i]))
2343 			error = 1;
2344 	}
2345 
2346 	/*
2347 	 * If we've set the limit, but haven't explicitly set adaptive
2348 	 * timeouts, do it now with a start of 60% and end of 120%.
2349 	 */
2350 	if (pf->limit_set[PF_LIMIT_STATES] &&
2351 	    !pf->timeout_set[PFTM_ADAPTIVE_START] &&
2352 	    !pf->timeout_set[PFTM_ADAPTIVE_END]) {
2353 		pf->timeout[PFTM_ADAPTIVE_START] =
2354 			(pf->limit[PF_LIMIT_STATES] / 10) * 6;
2355 		pf->timeout_set[PFTM_ADAPTIVE_START] = 1;
2356 		pf->timeout[PFTM_ADAPTIVE_END] =
2357 			(pf->limit[PF_LIMIT_STATES] / 10) * 12;
2358 		pf->timeout_set[PFTM_ADAPTIVE_END] = 1;
2359 	}
2360 
2361 	/* load timeouts */
2362 	for (i = 0; i < PFTM_MAX; i++) {
2363 		if ((pf->opts & PF_OPT_MERGE) && !pf->timeout_set[i])
2364 			continue;
2365 		if (pfctl_load_timeout(pf, i, pf->timeout[i]))
2366 			error = 1;
2367 	}
2368 
2369 	/* load debug */
2370 	if (!(pf->opts & PF_OPT_MERGE) || pf->debug_set)
2371 		if (pfctl_load_debug(pf, pf->debug))
2372 			error = 1;
2373 
2374 	/* load logif */
2375 	if (!(pf->opts & PF_OPT_MERGE) || pf->ifname_set)
2376 		if (pfctl_load_logif(pf, pf->ifname))
2377 			error = 1;
2378 
2379 	/* load hostid */
2380 	if (!(pf->opts & PF_OPT_MERGE) || pf->hostid_set)
2381 		if (pfctl_load_hostid(pf, pf->hostid))
2382 			error = 1;
2383 
2384 	/* load reassembly settings */
2385 	if (!(pf->opts & PF_OPT_MERGE) || pf->reass_set)
2386 		if (pfctl_load_reassembly(pf, pf->reassemble))
2387 			error = 1;
2388 
2389 	/* load keepcounters */
2390 	if (pfctl_set_keepcounters(pf->dev, pf->keep_counters))
2391 		error = 1;
2392 
2393 	/* load syncookies settings */
2394 	if (pfctl_load_syncookies(pf, pf->syncookies))
2395 		error = 1;
2396 
2397 	return (error);
2398 }
2399 
2400 int
pfctl_apply_limit(struct pfctl * pf,const char * opt,unsigned int limit)2401 pfctl_apply_limit(struct pfctl *pf, const char *opt, unsigned int limit)
2402 {
2403 	int i;
2404 
2405 
2406 	for (i = 0; pf_limits[i].name; i++) {
2407 		if (strcasecmp(opt, pf_limits[i].name) == 0) {
2408 			pf->limit[pf_limits[i].index] = limit;
2409 			pf->limit_set[pf_limits[i].index] = 1;
2410 			break;
2411 		}
2412 	}
2413 	if (pf_limits[i].name == NULL) {
2414 		warnx("Bad pool name.");
2415 		return (1);
2416 	}
2417 
2418 	if (pf->opts & PF_OPT_VERBOSE)
2419 		printf("set limit %s %d\n", opt, limit);
2420 
2421 	return (0);
2422 }
2423 
2424 int
pfctl_load_limit(struct pfctl * pf,unsigned int index,unsigned int limit)2425 pfctl_load_limit(struct pfctl *pf, unsigned int index, unsigned int limit)
2426 {
2427 	if (pfctl_set_limit(pf->h, index, limit)) {
2428 		if (errno == EBUSY)
2429 			warnx("Current pool size exceeds requested hard limit");
2430 		else
2431 			warnx("DIOCSETLIMIT");
2432 		return (1);
2433 	}
2434 	return (0);
2435 }
2436 
2437 int
pfctl_apply_timeout(struct pfctl * pf,const char * opt,int seconds,int quiet)2438 pfctl_apply_timeout(struct pfctl *pf, const char *opt, int seconds, int quiet)
2439 {
2440 	int i;
2441 
2442 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2443 		return (0);
2444 
2445 	for (i = 0; pf_timeouts[i].name; i++) {
2446 		if (strcasecmp(opt, pf_timeouts[i].name) == 0) {
2447 			pf->timeout[pf_timeouts[i].timeout] = seconds;
2448 			pf->timeout_set[pf_timeouts[i].timeout] = 1;
2449 			break;
2450 		}
2451 	}
2452 
2453 	if (pf_timeouts[i].name == NULL) {
2454 		warnx("Bad timeout name.");
2455 		return (1);
2456 	}
2457 
2458 
2459 	if (pf->opts & PF_OPT_VERBOSE && ! quiet)
2460 		printf("set timeout %s %d\n", opt, seconds);
2461 
2462 	return (0);
2463 }
2464 
2465 int
pfctl_load_timeout(struct pfctl * pf,unsigned int timeout,unsigned int seconds)2466 pfctl_load_timeout(struct pfctl *pf, unsigned int timeout, unsigned int seconds)
2467 {
2468 	if (pfctl_set_timeout(pf->h, timeout, seconds)) {
2469 		warnx("DIOCSETTIMEOUT");
2470 		return (1);
2471 	}
2472 	return (0);
2473 }
2474 
2475 int
pfctl_set_reassembly(struct pfctl * pf,int on,int nodf)2476 pfctl_set_reassembly(struct pfctl *pf, int on, int nodf)
2477 {
2478 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2479 		return (0);
2480 
2481 	pf->reass_set = 1;
2482 	if (on) {
2483 		pf->reassemble = PF_REASS_ENABLED;
2484 		if (nodf)
2485 			pf->reassemble |= PF_REASS_NODF;
2486 	} else {
2487 		pf->reassemble = 0;
2488 	}
2489 
2490 	if (pf->opts & PF_OPT_VERBOSE)
2491 		printf("set reassemble %s %s\n", on ? "yes" : "no",
2492 		    nodf ? "no-df" : "");
2493 
2494 	return (0);
2495 }
2496 
2497 int
pfctl_set_optimization(struct pfctl * pf,const char * opt)2498 pfctl_set_optimization(struct pfctl *pf, const char *opt)
2499 {
2500 	const struct pf_hint *hint;
2501 	int i, r;
2502 
2503 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2504 		return (0);
2505 
2506 	for (i = 0; pf_hints[i].name; i++)
2507 		if (strcasecmp(opt, pf_hints[i].name) == 0)
2508 			break;
2509 
2510 	hint = pf_hints[i].hint;
2511 	if (hint == NULL) {
2512 		warnx("invalid state timeouts optimization");
2513 		return (1);
2514 	}
2515 
2516 	for (i = 0; hint[i].name; i++)
2517 		if ((r = pfctl_apply_timeout(pf, hint[i].name,
2518 		    hint[i].timeout, 1)))
2519 			return (r);
2520 
2521 	if (pf->opts & PF_OPT_VERBOSE)
2522 		printf("set optimization %s\n", opt);
2523 
2524 	return (0);
2525 }
2526 
2527 int
pfctl_set_logif(struct pfctl * pf,char * ifname)2528 pfctl_set_logif(struct pfctl *pf, char *ifname)
2529 {
2530 
2531 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2532 		return (0);
2533 
2534 	if (!strcmp(ifname, "none")) {
2535 		free(pf->ifname);
2536 		pf->ifname = NULL;
2537 	} else {
2538 		pf->ifname = strdup(ifname);
2539 		if (!pf->ifname)
2540 			errx(1, "pfctl_set_logif: strdup");
2541 	}
2542 	pf->ifname_set = 1;
2543 
2544 	if (pf->opts & PF_OPT_VERBOSE)
2545 		printf("set loginterface %s\n", ifname);
2546 
2547 	return (0);
2548 }
2549 
2550 int
pfctl_load_logif(struct pfctl * pf,char * ifname)2551 pfctl_load_logif(struct pfctl *pf, char *ifname)
2552 {
2553 	if (ifname != NULL && strlen(ifname) >= IFNAMSIZ) {
2554 		warnx("pfctl_load_logif: strlcpy");
2555 		return (1);
2556 	}
2557 	return (pfctl_set_statusif(pfh, ifname ? ifname : ""));
2558 }
2559 
2560 int
pfctl_set_hostid(struct pfctl * pf,u_int32_t hostid)2561 pfctl_set_hostid(struct pfctl *pf, u_int32_t hostid)
2562 {
2563 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2564 		return (0);
2565 
2566 	HTONL(hostid);
2567 
2568 	pf->hostid = hostid;
2569 	pf->hostid_set = 1;
2570 
2571 	if (pf->opts & PF_OPT_VERBOSE)
2572 		printf("set hostid 0x%08x\n", ntohl(hostid));
2573 
2574 	return (0);
2575 }
2576 
2577 int
pfctl_load_hostid(struct pfctl * pf,u_int32_t hostid)2578 pfctl_load_hostid(struct pfctl *pf, u_int32_t hostid)
2579 {
2580 	if (ioctl(dev, DIOCSETHOSTID, &hostid)) {
2581 		warnx("DIOCSETHOSTID");
2582 		return (1);
2583 	}
2584 	return (0);
2585 }
2586 
2587 int
pfctl_load_reassembly(struct pfctl * pf,u_int32_t reassembly)2588 pfctl_load_reassembly(struct pfctl *pf, u_int32_t reassembly)
2589 {
2590 	if (ioctl(dev, DIOCSETREASS, &reassembly)) {
2591 		warnx("DIOCSETREASS");
2592 		return (1);
2593 	}
2594 	return (0);
2595 }
2596 
2597 int
pfctl_load_syncookies(struct pfctl * pf,u_int8_t val)2598 pfctl_load_syncookies(struct pfctl *pf, u_int8_t val)
2599 {
2600 	struct pfctl_syncookies	cookies;
2601 
2602 	bzero(&cookies, sizeof(cookies));
2603 
2604 	cookies.mode = val;
2605 	cookies.lowwater = pf->syncookieswat[0];
2606 	cookies.highwater = pf->syncookieswat[1];
2607 
2608 	if (pfctl_set_syncookies(dev, &cookies)) {
2609 		warnx("DIOCSETSYNCOOKIES");
2610 		return (1);
2611 	}
2612 	return (0);
2613 }
2614 
2615 int
pfctl_cfg_syncookies(struct pfctl * pf,uint8_t val,struct pfctl_watermarks * w)2616 pfctl_cfg_syncookies(struct pfctl *pf, uint8_t val, struct pfctl_watermarks *w)
2617 {
2618 	if (val != PF_SYNCOOKIES_ADAPTIVE && w != NULL) {
2619 		warnx("syncookies start/end only apply to adaptive");
2620 		return (1);
2621 	}
2622 	if (val == PF_SYNCOOKIES_ADAPTIVE && w != NULL) {
2623 		if (!w->hi)
2624 			w->hi = PF_SYNCOOKIES_HIWATPCT;
2625 		if (!w->lo)
2626 			w->lo = w->hi / 2;
2627 		if (w->lo >= w->hi) {
2628 			warnx("start must be higher than end");
2629 			return (1);
2630 		}
2631 		pf->syncookieswat[0] = w->lo;
2632 		pf->syncookieswat[1] = w->hi;
2633 		pf->syncookieswat_set = 1;
2634 	}
2635 
2636 	if (pf->opts & PF_OPT_VERBOSE) {
2637 		if (val == PF_SYNCOOKIES_NEVER)
2638 			printf("set syncookies never\n");
2639 		else if (val == PF_SYNCOOKIES_ALWAYS)
2640 			printf("set syncookies always\n");
2641 		else if (val == PF_SYNCOOKIES_ADAPTIVE) {
2642 			if (pf->syncookieswat_set)
2643 				printf("set syncookies adaptive (start %u%%, "
2644 				    "end %u%%)\n", pf->syncookieswat[1],
2645 				    pf->syncookieswat[0]);
2646 			else
2647 				printf("set syncookies adaptive\n");
2648 		} else {        /* cannot happen */
2649 			warnx("king bula ate all syncookies");
2650 			return (1);
2651 		}
2652 	}
2653 
2654 	pf->syncookies = val;
2655 	return (0);
2656 }
2657 
2658 int
pfctl_do_set_debug(struct pfctl * pf,char * d)2659 pfctl_do_set_debug(struct pfctl *pf, char *d)
2660 {
2661 	u_int32_t	level;
2662 	int		ret;
2663 
2664 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2665 		return (0);
2666 
2667 	if (!strcmp(d, "none"))
2668 		pf->debug = PF_DEBUG_NONE;
2669 	else if (!strcmp(d, "urgent"))
2670 		pf->debug = PF_DEBUG_URGENT;
2671 	else if (!strcmp(d, "misc"))
2672 		pf->debug = PF_DEBUG_MISC;
2673 	else if (!strcmp(d, "loud"))
2674 		pf->debug = PF_DEBUG_NOISY;
2675 	else {
2676 		warnx("unknown debug level \"%s\"", d);
2677 		return (-1);
2678 	}
2679 
2680 	pf->debug_set = 1;
2681 	level = pf->debug;
2682 
2683 	if ((pf->opts & PF_OPT_NOACTION) == 0)
2684 		if ((ret = pfctl_set_debug(pfh, level)) != 0)
2685 			errc(1, ret, "DIOCSETDEBUG");
2686 
2687 	if (pf->opts & PF_OPT_VERBOSE)
2688 		printf("set debug %s\n", d);
2689 
2690 	return (0);
2691 }
2692 
2693 int
pfctl_load_debug(struct pfctl * pf,unsigned int level)2694 pfctl_load_debug(struct pfctl *pf, unsigned int level)
2695 {
2696 	if (pfctl_set_debug(pf->h, level)) {
2697 		warnx("DIOCSETDEBUG");
2698 		return (1);
2699 	}
2700 	return (0);
2701 }
2702 
2703 int
pfctl_set_interface_flags(struct pfctl * pf,char * ifname,int flags,int how)2704 pfctl_set_interface_flags(struct pfctl *pf, char *ifname, int flags, int how)
2705 {
2706 	struct pfioc_iface	pi;
2707 	struct node_host	*h = NULL, *n = NULL;
2708 
2709 	if ((loadopt & PFCTL_FLAG_OPTION) == 0)
2710 		return (0);
2711 
2712 	bzero(&pi, sizeof(pi));
2713 
2714 	pi.pfiio_flags = flags;
2715 
2716 	/* Make sure our cache matches the kernel. If we set or clear the flag
2717 	 * for a group this applies to all members. */
2718 	h = ifa_grouplookup(ifname, 0);
2719 	for (n = h; n != NULL; n = n->next)
2720 		pfctl_set_interface_flags(pf, n->ifname, flags, how);
2721 
2722 	if (strlcpy(pi.pfiio_name, ifname, sizeof(pi.pfiio_name)) >=
2723 	    sizeof(pi.pfiio_name))
2724 		errx(1, "pfctl_set_interface_flags: strlcpy");
2725 
2726 	if ((pf->opts & PF_OPT_NOACTION) == 0) {
2727 		if (how == 0) {
2728 			if (ioctl(pf->dev, DIOCCLRIFFLAG, &pi))
2729 				err(1, "DIOCCLRIFFLAG");
2730 		} else {
2731 			if (ioctl(pf->dev, DIOCSETIFFLAG, &pi))
2732 				err(1, "DIOCSETIFFLAG");
2733 			pfctl_check_skip_ifaces(ifname);
2734 		}
2735 	}
2736 	return (0);
2737 }
2738 
2739 void
pfctl_debug(int dev,u_int32_t level,int opts)2740 pfctl_debug(int dev, u_int32_t level, int opts)
2741 {
2742 	int ret;
2743 
2744 	if ((ret = pfctl_set_debug(pfh, level)) != 0)
2745 		errc(1, ret, "DIOCSETDEBUG");
2746 	if ((opts & PF_OPT_QUIET) == 0) {
2747 		fprintf(stderr, "debug level set to '");
2748 		switch (level) {
2749 		case PF_DEBUG_NONE:
2750 			fprintf(stderr, "none");
2751 			break;
2752 		case PF_DEBUG_URGENT:
2753 			fprintf(stderr, "urgent");
2754 			break;
2755 		case PF_DEBUG_MISC:
2756 			fprintf(stderr, "misc");
2757 			break;
2758 		case PF_DEBUG_NOISY:
2759 			fprintf(stderr, "loud");
2760 			break;
2761 		default:
2762 			fprintf(stderr, "<invalid>");
2763 			break;
2764 		}
2765 		fprintf(stderr, "'\n");
2766 	}
2767 }
2768 
2769 int
pfctl_test_altqsupport(int dev,int opts)2770 pfctl_test_altqsupport(int dev, int opts)
2771 {
2772 	struct pfioc_altq pa;
2773 
2774 	pa.version = PFIOC_ALTQ_VERSION;
2775 	if (ioctl(dev, DIOCGETALTQS, &pa)) {
2776 		if (errno == ENODEV) {
2777 			if (opts & PF_OPT_VERBOSE)
2778 				fprintf(stderr, "No ALTQ support in kernel\n"
2779 				    "ALTQ related functions disabled\n");
2780 			return (0);
2781 		} else
2782 			err(1, "DIOCGETALTQS");
2783 	}
2784 	return (1);
2785 }
2786 
2787 int
pfctl_show_anchors(int dev,int opts,char * anchorname)2788 pfctl_show_anchors(int dev, int opts, char *anchorname)
2789 {
2790 	struct pfioc_ruleset	 pr;
2791 	u_int32_t		 mnr, nr;
2792 	int			 ret;
2793 
2794 	memset(&pr, 0, sizeof(pr));
2795 	if ((ret = pfctl_get_rulesets(pfh, anchorname, &mnr)) != 0) {
2796 		if (ret == EINVAL)
2797 			fprintf(stderr, "Anchor '%s' not found.\n",
2798 			    anchorname);
2799 		else
2800 			errc(1, ret, "DIOCGETRULESETS");
2801 		return (-1);
2802 	}
2803 	for (nr = 0; nr < mnr; ++nr) {
2804 		char sub[MAXPATHLEN];
2805 
2806 		if ((ret = pfctl_get_ruleset(pfh, anchorname, nr, &pr)) != 0)
2807 			errc(1, ret, "DIOCGETRULESET");
2808 		if (!strcmp(pr.name, PF_RESERVED_ANCHOR))
2809 			continue;
2810 		sub[0] = 0;
2811 		if (pr.path[0]) {
2812 			strlcat(sub, pr.path, sizeof(sub));
2813 			strlcat(sub, "/", sizeof(sub));
2814 		}
2815 		strlcat(sub, pr.name, sizeof(sub));
2816 		if (sub[0] != '_' || (opts & PF_OPT_VERBOSE))
2817 			printf("  %s\n", sub);
2818 		if ((opts & PF_OPT_VERBOSE) && pfctl_show_anchors(dev, opts, sub))
2819 			return (-1);
2820 	}
2821 	return (0);
2822 }
2823 
2824 int
pfctl_show_eth_anchors(int dev,int opts,char * anchorname)2825 pfctl_show_eth_anchors(int dev, int opts, char *anchorname)
2826 {
2827 	struct pfctl_eth_rulesets_info ri;
2828 	struct pfctl_eth_ruleset_info rs;
2829 	int ret;
2830 
2831 	if ((ret = pfctl_get_eth_rulesets_info(dev, &ri, anchorname)) != 0) {
2832 		if (ret == ENOENT)
2833 			fprintf(stderr, "Anchor '%s' not found.\n",
2834 			    anchorname);
2835 		else
2836 			errc(1, ret, "DIOCGETETHRULESETS");
2837 		return (-1);
2838 	}
2839 
2840 	for (int nr = 0; nr < ri.nr; nr++) {
2841 		char sub[MAXPATHLEN];
2842 
2843 		if ((ret = pfctl_get_eth_ruleset(dev, anchorname, nr, &rs)) != 0)
2844 			errc(1, ret, "DIOCGETETHRULESET");
2845 
2846 		if (!strcmp(rs.name, PF_RESERVED_ANCHOR))
2847 			continue;
2848 		sub[0] = 0;
2849 		if (rs.path[0]) {
2850 			strlcat(sub, rs.path, sizeof(sub));
2851 			strlcat(sub, "/", sizeof(sub));
2852 		}
2853 		strlcat(sub, rs.name, sizeof(sub));
2854 		if (sub[0] != '_' || (opts & PF_OPT_VERBOSE))
2855 			printf("  %s\n", sub);
2856 		if ((opts & PF_OPT_VERBOSE) && pfctl_show_eth_anchors(dev, opts, sub))
2857 			return (-1);
2858 	}
2859 	return (0);
2860 }
2861 
2862 const char *
pfctl_lookup_option(char * cmd,const char * const * list)2863 pfctl_lookup_option(char *cmd, const char * const *list)
2864 {
2865 	if (cmd != NULL && *cmd)
2866 		for (; *list; list++)
2867 			if (!strncmp(cmd, *list, strlen(cmd)))
2868 				return (*list);
2869 	return (NULL);
2870 }
2871 
2872 int
main(int argc,char * argv[])2873 main(int argc, char *argv[])
2874 {
2875 	int	 error = 0;
2876 	int	 ch;
2877 	int	 mode = O_RDONLY;
2878 	int	 opts = 0;
2879 	int	 optimize = PF_OPTIMIZE_BASIC;
2880 	char	 anchorname[MAXPATHLEN];
2881 	char	*path;
2882 
2883 	if (argc < 2)
2884 		usage();
2885 
2886 	while ((ch = getopt(argc, argv,
2887 	    "a:AdD:eqf:F:ghi:k:K:mMnNOo:Pp:rRs:t:T:vx:z")) != -1) {
2888 		switch (ch) {
2889 		case 'a':
2890 			anchoropt = optarg;
2891 			break;
2892 		case 'd':
2893 			opts |= PF_OPT_DISABLE;
2894 			mode = O_RDWR;
2895 			break;
2896 		case 'D':
2897 			if (pfctl_cmdline_symset(optarg) < 0)
2898 				warnx("could not parse macro definition %s",
2899 				    optarg);
2900 			break;
2901 		case 'e':
2902 			opts |= PF_OPT_ENABLE;
2903 			mode = O_RDWR;
2904 			break;
2905 		case 'q':
2906 			opts |= PF_OPT_QUIET;
2907 			break;
2908 		case 'F':
2909 			clearopt = pfctl_lookup_option(optarg, clearopt_list);
2910 			if (clearopt == NULL) {
2911 				warnx("Unknown flush modifier '%s'", optarg);
2912 				usage();
2913 			}
2914 			mode = O_RDWR;
2915 			break;
2916 		case 'i':
2917 			ifaceopt = optarg;
2918 			break;
2919 		case 'k':
2920 			if (state_killers >= 2) {
2921 				warnx("can only specify -k twice");
2922 				usage();
2923 				/* NOTREACHED */
2924 			}
2925 			state_kill[state_killers++] = optarg;
2926 			mode = O_RDWR;
2927 			break;
2928 		case 'K':
2929 			if (src_node_killers >= 2) {
2930 				warnx("can only specify -K twice");
2931 				usage();
2932 				/* NOTREACHED */
2933 			}
2934 			src_node_kill[src_node_killers++] = optarg;
2935 			mode = O_RDWR;
2936 			break;
2937 		case 'm':
2938 			opts |= PF_OPT_MERGE;
2939 			break;
2940 		case 'M':
2941 			opts |= PF_OPT_KILLMATCH;
2942 			break;
2943 		case 'n':
2944 			opts |= PF_OPT_NOACTION;
2945 			break;
2946 		case 'N':
2947 			loadopt |= PFCTL_FLAG_NAT;
2948 			break;
2949 		case 'r':
2950 			opts |= PF_OPT_USEDNS;
2951 			break;
2952 		case 'f':
2953 			rulesopt = optarg;
2954 			mode = O_RDWR;
2955 			break;
2956 		case 'g':
2957 			opts |= PF_OPT_DEBUG;
2958 			break;
2959 		case 'A':
2960 			loadopt |= PFCTL_FLAG_ALTQ;
2961 			break;
2962 		case 'R':
2963 			loadopt |= PFCTL_FLAG_FILTER;
2964 			break;
2965 		case 'o':
2966 			optiopt = pfctl_lookup_option(optarg, optiopt_list);
2967 			if (optiopt == NULL) {
2968 				warnx("Unknown optimization '%s'", optarg);
2969 				usage();
2970 			}
2971 			opts |= PF_OPT_OPTIMIZE;
2972 			break;
2973 		case 'O':
2974 			loadopt |= PFCTL_FLAG_OPTION;
2975 			break;
2976 		case 'p':
2977 			pf_device = optarg;
2978 			break;
2979 		case 'P':
2980 			opts |= PF_OPT_NUMERIC;
2981 			break;
2982 		case 's':
2983 			showopt = pfctl_lookup_option(optarg, showopt_list);
2984 			if (showopt == NULL) {
2985 				warnx("Unknown show modifier '%s'", optarg);
2986 				usage();
2987 			}
2988 			break;
2989 		case 't':
2990 			tableopt = optarg;
2991 			break;
2992 		case 'T':
2993 			tblcmdopt = pfctl_lookup_option(optarg, tblcmdopt_list);
2994 			if (tblcmdopt == NULL) {
2995 				warnx("Unknown table command '%s'", optarg);
2996 				usage();
2997 			}
2998 			break;
2999 		case 'v':
3000 			if (opts & PF_OPT_VERBOSE)
3001 				opts |= PF_OPT_VERBOSE2;
3002 			opts |= PF_OPT_VERBOSE;
3003 			break;
3004 		case 'x':
3005 			debugopt = pfctl_lookup_option(optarg, debugopt_list);
3006 			if (debugopt == NULL) {
3007 				warnx("Unknown debug level '%s'", optarg);
3008 				usage();
3009 			}
3010 			mode = O_RDWR;
3011 			break;
3012 		case 'z':
3013 			opts |= PF_OPT_CLRRULECTRS;
3014 			mode = O_RDWR;
3015 			break;
3016 		case 'h':
3017 			/* FALLTHROUGH */
3018 		default:
3019 			usage();
3020 			/* NOTREACHED */
3021 		}
3022 	}
3023 
3024 	if (tblcmdopt != NULL) {
3025 		argc -= optind;
3026 		argv += optind;
3027 		ch = *tblcmdopt;
3028 		if (ch == 'l') {
3029 			loadopt |= PFCTL_FLAG_TABLE;
3030 			tblcmdopt = NULL;
3031 		} else
3032 			mode = strchr("acdefkrz", ch) ? O_RDWR : O_RDONLY;
3033 	} else if (argc != optind) {
3034 		warnx("unknown command line argument: %s ...", argv[optind]);
3035 		usage();
3036 		/* NOTREACHED */
3037 	}
3038 	if (loadopt == 0)
3039 		loadopt = ~0;
3040 
3041 	if ((path = calloc(1, MAXPATHLEN)) == NULL)
3042 		errx(1, "pfctl: calloc");
3043 	memset(anchorname, 0, sizeof(anchorname));
3044 	if (anchoropt != NULL) {
3045 		int len = strlen(anchoropt);
3046 
3047 		if (len >= 1 && anchoropt[len - 1] == '*') {
3048 			if (len >= 2 && anchoropt[len - 2] == '/')
3049 				anchoropt[len - 2] = '\0';
3050 			else
3051 				anchoropt[len - 1] = '\0';
3052 			opts |= PF_OPT_RECURSE;
3053 		}
3054 		if (strlcpy(anchorname, anchoropt,
3055 		    sizeof(anchorname)) >= sizeof(anchorname))
3056 			errx(1, "anchor name '%s' too long",
3057 			    anchoropt);
3058 		loadopt &= PFCTL_FLAG_FILTER|PFCTL_FLAG_NAT|PFCTL_FLAG_TABLE|PFCTL_FLAG_ETH;
3059 	}
3060 
3061 	if ((opts & PF_OPT_NOACTION) == 0) {
3062 		dev = open(pf_device, mode);
3063 		if (dev == -1)
3064 			err(1, "%s", pf_device);
3065 		altqsupport = pfctl_test_altqsupport(dev, opts);
3066 	} else {
3067 		dev = open(pf_device, O_RDONLY);
3068 		if (dev >= 0)
3069 			opts |= PF_OPT_DUMMYACTION;
3070 		/* turn off options */
3071 		opts &= ~ (PF_OPT_DISABLE | PF_OPT_ENABLE);
3072 		clearopt = showopt = debugopt = NULL;
3073 #if !defined(ENABLE_ALTQ)
3074 		altqsupport = 0;
3075 #else
3076 		altqsupport = 1;
3077 #endif
3078 	}
3079 	pfh = pfctl_open(pf_device);
3080 	if (pfh == NULL)
3081 		err(1, "Failed to open netlink");
3082 
3083 	if (opts & PF_OPT_DISABLE)
3084 		if (pfctl_disable(dev, opts))
3085 			error = 1;
3086 
3087 	if (showopt != NULL) {
3088 		switch (*showopt) {
3089 		case 'A':
3090 			pfctl_show_anchors(dev, opts, anchorname);
3091 			if (opts & PF_OPT_VERBOSE2)
3092 				printf("Ethernet:\n");
3093 			pfctl_show_eth_anchors(dev, opts, anchorname);
3094 			break;
3095 		case 'r':
3096 			pfctl_load_fingerprints(dev, opts);
3097 			pfctl_show_rules(dev, path, opts, PFCTL_SHOW_RULES,
3098 			    anchorname, 0, 0);
3099 			break;
3100 		case 'l':
3101 			pfctl_load_fingerprints(dev, opts);
3102 			pfctl_show_rules(dev, path, opts, PFCTL_SHOW_LABELS,
3103 			    anchorname, 0, 0);
3104 			break;
3105 		case 'n':
3106 			pfctl_load_fingerprints(dev, opts);
3107 			pfctl_show_nat(dev, path, opts, anchorname, 0, 0);
3108 			break;
3109 		case 'q':
3110 			pfctl_show_altq(dev, ifaceopt, opts,
3111 			    opts & PF_OPT_VERBOSE2);
3112 			break;
3113 		case 's':
3114 			pfctl_show_states(dev, ifaceopt, opts);
3115 			break;
3116 		case 'S':
3117 			pfctl_show_src_nodes(dev, opts);
3118 			break;
3119 		case 'i':
3120 			pfctl_show_status(dev, opts);
3121 			break;
3122 		case 'R':
3123 			error = pfctl_show_running(dev);
3124 			break;
3125 		case 't':
3126 			pfctl_show_timeouts(dev, opts);
3127 			break;
3128 		case 'm':
3129 			pfctl_show_limits(dev, opts);
3130 			break;
3131 		case 'e':
3132 			pfctl_show_eth_rules(dev, path, opts, 0, anchorname, 0,
3133 			    0);
3134 			break;
3135 		case 'a':
3136 			opts |= PF_OPT_SHOWALL;
3137 			pfctl_load_fingerprints(dev, opts);
3138 
3139 			pfctl_show_eth_rules(dev, path, opts, 0, anchorname, 0,
3140 			    0);
3141 
3142 			pfctl_show_nat(dev, path, opts, anchorname, 0, 0);
3143 			pfctl_show_rules(dev, path, opts, 0, anchorname, 0, 0);
3144 			pfctl_show_altq(dev, ifaceopt, opts, 0);
3145 			pfctl_show_states(dev, ifaceopt, opts);
3146 			pfctl_show_src_nodes(dev, opts);
3147 			pfctl_show_status(dev, opts);
3148 			pfctl_show_rules(dev, path, opts, 1, anchorname, 0, 0);
3149 			pfctl_show_timeouts(dev, opts);
3150 			pfctl_show_limits(dev, opts);
3151 			pfctl_show_tables(anchorname, opts);
3152 			pfctl_show_fingerprints(opts);
3153 			break;
3154 		case 'T':
3155 			pfctl_show_tables(anchorname, opts);
3156 			break;
3157 		case 'o':
3158 			pfctl_load_fingerprints(dev, opts);
3159 			pfctl_show_fingerprints(opts);
3160 			break;
3161 		case 'I':
3162 			pfctl_show_ifaces(ifaceopt, opts);
3163 			break;
3164 		case 'c':
3165 			pfctl_show_creators(opts);
3166 			break;
3167 		}
3168 	}
3169 
3170 	if ((opts & PF_OPT_CLRRULECTRS) && showopt == NULL) {
3171 		pfctl_show_eth_rules(dev, path, opts, PFCTL_SHOW_NOTHING,
3172 		    anchorname, 0, 0);
3173 		pfctl_show_rules(dev, path, opts, PFCTL_SHOW_NOTHING,
3174 		    anchorname, 0, 0);
3175 	}
3176 
3177 	if (clearopt != NULL) {
3178 		if (anchorname[0] == '_' || strstr(anchorname, "/_") != NULL)
3179 			errx(1, "anchor names beginning with '_' cannot "
3180 			    "be modified from the command line");
3181 
3182 		switch (*clearopt) {
3183 		case 'e':
3184 			pfctl_flush_eth_rules(dev, opts, anchorname);
3185 			break;
3186 		case 'r':
3187 			pfctl_flush_rules(dev, opts, anchorname);
3188 			break;
3189 		case 'n':
3190 			pfctl_flush_nat(dev, opts, anchorname);
3191 			break;
3192 		case 'q':
3193 			pfctl_clear_altq(dev, opts);
3194 			break;
3195 		case 's':
3196 			pfctl_clear_iface_states(dev, ifaceopt, opts);
3197 			break;
3198 		case 'S':
3199 			pfctl_clear_src_nodes(dev, opts);
3200 			break;
3201 		case 'i':
3202 			pfctl_clear_stats(pfh, opts);
3203 			break;
3204 		case 'a':
3205 			pfctl_flush_eth_rules(dev, opts, anchorname);
3206 			pfctl_flush_rules(dev, opts, anchorname);
3207 			pfctl_flush_nat(dev, opts, anchorname);
3208 			pfctl_clear_tables(anchorname, opts);
3209 			if (!*anchorname) {
3210 				pfctl_clear_altq(dev, opts);
3211 				pfctl_clear_iface_states(dev, ifaceopt, opts);
3212 				pfctl_clear_src_nodes(dev, opts);
3213 				pfctl_clear_stats(pfh, opts);
3214 				pfctl_clear_fingerprints(dev, opts);
3215 				pfctl_clear_interface_flags(dev, opts);
3216 			}
3217 			break;
3218 		case 'o':
3219 			pfctl_clear_fingerprints(dev, opts);
3220 			break;
3221 		case 'T':
3222 			pfctl_clear_tables(anchorname, opts);
3223 			break;
3224 		}
3225 	}
3226 	if (state_killers) {
3227 		if (!strcmp(state_kill[0], "label"))
3228 			pfctl_label_kill_states(dev, ifaceopt, opts);
3229 		else if (!strcmp(state_kill[0], "id"))
3230 			pfctl_id_kill_states(dev, ifaceopt, opts);
3231 		else if (!strcmp(state_kill[0], "gateway"))
3232 			pfctl_gateway_kill_states(dev, ifaceopt, opts);
3233 		else
3234 			pfctl_net_kill_states(dev, ifaceopt, opts);
3235 	}
3236 
3237 	if (src_node_killers)
3238 		pfctl_kill_src_nodes(dev, ifaceopt, opts);
3239 
3240 	if (tblcmdopt != NULL) {
3241 		error = pfctl_command_tables(argc, argv, tableopt,
3242 		    tblcmdopt, rulesopt, anchorname, opts);
3243 		rulesopt = NULL;
3244 	}
3245 	if (optiopt != NULL) {
3246 		switch (*optiopt) {
3247 		case 'n':
3248 			optimize = 0;
3249 			break;
3250 		case 'b':
3251 			optimize |= PF_OPTIMIZE_BASIC;
3252 			break;
3253 		case 'o':
3254 		case 'p':
3255 			optimize |= PF_OPTIMIZE_PROFILE;
3256 			break;
3257 		}
3258 	}
3259 
3260 	if ((rulesopt != NULL) && (loadopt & PFCTL_FLAG_OPTION) &&
3261 	    !anchorname[0] && !(opts & PF_OPT_NOACTION))
3262 		if (pfctl_get_skip_ifaces())
3263 			error = 1;
3264 
3265 	if (rulesopt != NULL && !(opts & (PF_OPT_MERGE|PF_OPT_NOACTION)) &&
3266 	    !anchorname[0] && (loadopt & PFCTL_FLAG_OPTION))
3267 		if (pfctl_file_fingerprints(dev, opts, PF_OSFP_FILE))
3268 			error = 1;
3269 
3270 	if (rulesopt != NULL) {
3271 		if (anchorname[0] == '_' || strstr(anchorname, "/_") != NULL)
3272 			errx(1, "anchor names beginning with '_' cannot "
3273 			    "be modified from the command line");
3274 		if (pfctl_rules(dev, rulesopt, opts, optimize,
3275 		    anchorname, NULL))
3276 			error = 1;
3277 		else if (!(opts & PF_OPT_NOACTION) &&
3278 		    (loadopt & PFCTL_FLAG_TABLE))
3279 			warn_namespace_collision(NULL);
3280 	}
3281 
3282 	if (opts & PF_OPT_ENABLE)
3283 		if (pfctl_enable(dev, opts))
3284 			error = 1;
3285 
3286 	if (debugopt != NULL) {
3287 		switch (*debugopt) {
3288 		case 'n':
3289 			pfctl_debug(dev, PF_DEBUG_NONE, opts);
3290 			break;
3291 		case 'u':
3292 			pfctl_debug(dev, PF_DEBUG_URGENT, opts);
3293 			break;
3294 		case 'm':
3295 			pfctl_debug(dev, PF_DEBUG_MISC, opts);
3296 			break;
3297 		case 'l':
3298 			pfctl_debug(dev, PF_DEBUG_NOISY, opts);
3299 			break;
3300 		}
3301 	}
3302 
3303 	exit(error);
3304 }
3305