xref: /freebsd/lib/libpfctl/libpfctl.c (revision b1c5f60ce87cc2f179dfb81de507d9b7bf59564c)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (c) 2021 Rubicon Communications, LLC (Netgate)
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  *
11  *    - Redistributions of source code must retain the above copyright
12  *      notice, this list of conditions and the following disclaimer.
13  *    - Redistributions in binary form must reproduce the above
14  *      copyright notice, this list of conditions and the following
15  *      disclaimer in the documentation and/or other materials provided
16  *      with the distribution.
17  *
18  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
19  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
20  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
21  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
22  * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
23  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
24  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
25  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
26  * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
28  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29  * POSSIBILITY OF SUCH DAMAGE.
30  *
31  * $FreeBSD$
32  */
33 
34 #include <sys/cdefs.h>
35 
36 #include <sys/ioctl.h>
37 #include <sys/nv.h>
38 #include <sys/queue.h>
39 #include <sys/types.h>
40 
41 #include <net/if.h>
42 #include <net/pfvar.h>
43 #include <netinet/in.h>
44 
45 #include <assert.h>
46 #include <err.h>
47 #include <errno.h>
48 #include <stdlib.h>
49 #include <string.h>
50 
51 #include "libpfctl.h"
52 
53 const char* PFCTL_SYNCOOKIES_MODE_NAMES[] = {
54 	"never",
55 	"always",
56 	"adaptive"
57 };
58 
59 static int	_pfctl_clear_states(int , const struct pfctl_kill *,
60 		    unsigned int *, uint64_t);
61 
62 static void
63 pf_nvuint_8_array(const nvlist_t *nvl, const char *name, size_t maxelems,
64     uint8_t *numbers, size_t *nelems)
65 {
66 	const uint64_t *tmp;
67 	size_t elems;
68 
69 	tmp = nvlist_get_number_array(nvl, name, &elems);
70 	assert(elems <= maxelems);
71 
72 	for (size_t i = 0; i < elems; i++)
73 		numbers[i] = tmp[i];
74 
75 	if (nelems)
76 		*nelems = elems;
77 }
78 
79 static void
80 pf_nvuint_16_array(const nvlist_t *nvl, const char *name, size_t maxelems,
81     uint16_t *numbers, size_t *nelems)
82 {
83 	const uint64_t *tmp;
84 	size_t elems;
85 
86 	tmp = nvlist_get_number_array(nvl, name, &elems);
87 	assert(elems <= maxelems);
88 
89 	for (size_t i = 0; i < elems; i++)
90 		numbers[i] = tmp[i];
91 
92 	if (nelems)
93 		*nelems = elems;
94 }
95 
96 static void
97 pf_nvuint_32_array(const nvlist_t *nvl, const char *name, size_t maxelems,
98     uint32_t *numbers, size_t *nelems)
99 {
100 	const uint64_t *tmp;
101 	size_t elems;
102 
103 	tmp = nvlist_get_number_array(nvl, name, &elems);
104 	assert(elems <= maxelems);
105 
106 	for (size_t i = 0; i < elems; i++)
107 		numbers[i] = tmp[i];
108 
109 	if (nelems)
110 		*nelems = elems;
111 }
112 
113 static void
114 pf_nvuint_64_array(const nvlist_t *nvl, const char *name, size_t maxelems,
115     uint64_t *numbers, size_t *nelems)
116 {
117 	const uint64_t *tmp;
118 	size_t elems;
119 
120 	tmp = nvlist_get_number_array(nvl, name, &elems);
121 	assert(elems <= maxelems);
122 
123 	for (size_t i = 0; i < elems; i++)
124 		numbers[i] = tmp[i];
125 
126 	if (nelems)
127 		*nelems = elems;
128 }
129 
130 static void
131 _pfctl_get_status_counters(const nvlist_t *nvl,
132     struct pfctl_status_counters *counters)
133 {
134 	const uint64_t		*ids, *counts;
135 	const char *const	*names;
136 	size_t id_len, counter_len, names_len;
137 
138 	ids = nvlist_get_number_array(nvl, "ids", &id_len);
139 	counts = nvlist_get_number_array(nvl, "counters", &counter_len);
140 	names = nvlist_get_string_array(nvl, "names", &names_len);
141 	assert(id_len == counter_len);
142 	assert(counter_len == names_len);
143 
144 	TAILQ_INIT(counters);
145 
146 	for (size_t i = 0; i < id_len; i++) {
147 		struct pfctl_status_counter *c;
148 
149 		c = malloc(sizeof(*c));
150 
151 		c->id = ids[i];
152 		c->counter = counts[i];
153 		c->name = strdup(names[i]);
154 
155 		TAILQ_INSERT_TAIL(counters, c, entry);
156 	}
157 }
158 
159 struct pfctl_status *
160 pfctl_get_status(int dev)
161 {
162 	struct pfioc_nv	 nv;
163 	struct pfctl_status	*status;
164 	nvlist_t	*nvl;
165 	size_t		 len;
166 	const void	*chksum;
167 
168 	status = calloc(1, sizeof(*status));
169 	if (status == NULL)
170 		return (NULL);
171 
172 	nv.data = malloc(4096);
173 	nv.len = nv.size = 4096;
174 
175 	if (ioctl(dev, DIOCGETSTATUSNV, &nv)) {
176 		free(nv.data);
177 		free(status);
178 		return (NULL);
179 	}
180 
181 	nvl = nvlist_unpack(nv.data, nv.len, 0);
182 	free(nv.data);
183 	if (nvl == NULL) {
184 		free(status);
185 		return (NULL);
186 	}
187 
188 	status->running = nvlist_get_bool(nvl, "running");
189 	status->since = nvlist_get_number(nvl, "since");
190 	status->debug = nvlist_get_number(nvl, "debug");
191 	status->hostid = ntohl(nvlist_get_number(nvl, "hostid"));
192 	status->states = nvlist_get_number(nvl, "states");
193 	status->src_nodes = nvlist_get_number(nvl, "src_nodes");
194 
195 	strlcpy(status->ifname, nvlist_get_string(nvl, "ifname"),
196 	    IFNAMSIZ);
197 	chksum = nvlist_get_binary(nvl, "chksum", &len);
198 	assert(len == PF_MD5_DIGEST_LENGTH);
199 	memcpy(status->pf_chksum, chksum, len);
200 
201 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "counters"),
202 	    &status->counters);
203 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "lcounters"),
204 	    &status->lcounters);
205 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "fcounters"),
206 	    &status->fcounters);
207 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "scounters"),
208 	    &status->scounters);
209 
210 	pf_nvuint_64_array(nvl, "pcounters", 2 * 2 * 3,
211 	    (uint64_t *)status->pcounters, NULL);
212 	pf_nvuint_64_array(nvl, "bcounters", 2 * 2,
213 	    (uint64_t *)status->bcounters, NULL);
214 
215 	nvlist_destroy(nvl);
216 
217 	return (status);
218 }
219 
220 void
221 pfctl_free_status(struct pfctl_status *status)
222 {
223 	struct pfctl_status_counter *c, *tmp;
224 
225 	TAILQ_FOREACH_SAFE(c, &status->counters, entry, tmp) {
226 		free(c->name);
227 		free(c);
228 	}
229 	TAILQ_FOREACH_SAFE(c, &status->lcounters, entry, tmp) {
230 		free(c->name);
231 		free(c);
232 	}
233 	TAILQ_FOREACH_SAFE(c, &status->fcounters, entry, tmp) {
234 		free(c->name);
235 		free(c);
236 	}
237 	TAILQ_FOREACH_SAFE(c, &status->scounters, entry, tmp) {
238 		free(c->name);
239 		free(c);
240 	}
241 
242 	free(status);
243 }
244 
245 static void
246 pfctl_nv_add_addr(nvlist_t *nvparent, const char *name,
247     const struct pf_addr *addr)
248 {
249 	nvlist_t *nvl = nvlist_create(0);
250 
251 	nvlist_add_binary(nvl, "addr", addr, sizeof(*addr));
252 
253 	nvlist_add_nvlist(nvparent, name, nvl);
254 	nvlist_destroy(nvl);
255 }
256 
257 static void
258 pf_nvaddr_to_addr(const nvlist_t *nvl, struct pf_addr *addr)
259 {
260 	size_t len;
261 	const void *data;
262 
263 	data = nvlist_get_binary(nvl, "addr", &len);
264 	assert(len == sizeof(struct pf_addr));
265 	memcpy(addr, data, len);
266 }
267 
268 static void
269 pfctl_nv_add_addr_wrap(nvlist_t *nvparent, const char *name,
270     const struct pf_addr_wrap *addr)
271 {
272 	nvlist_t *nvl = nvlist_create(0);
273 
274 	nvlist_add_number(nvl, "type", addr->type);
275 	nvlist_add_number(nvl, "iflags", addr->iflags);
276 	if (addr->type == PF_ADDR_DYNIFTL)
277 		nvlist_add_string(nvl, "ifname", addr->v.ifname);
278 	if (addr->type == PF_ADDR_TABLE)
279 		nvlist_add_string(nvl, "tblname", addr->v.tblname);
280 	pfctl_nv_add_addr(nvl, "addr", &addr->v.a.addr);
281 	pfctl_nv_add_addr(nvl, "mask", &addr->v.a.mask);
282 
283 	nvlist_add_nvlist(nvparent, name, nvl);
284 	nvlist_destroy(nvl);
285 }
286 
287 static void
288 pf_nvaddr_wrap_to_addr_wrap(const nvlist_t *nvl, struct pf_addr_wrap *addr)
289 {
290 	bzero(addr, sizeof(*addr));
291 
292 	addr->type = nvlist_get_number(nvl, "type");
293 	addr->iflags = nvlist_get_number(nvl, "iflags");
294 	if (addr->type == PF_ADDR_DYNIFTL) {
295 		strlcpy(addr->v.ifname, nvlist_get_string(nvl, "ifname"),
296 		    IFNAMSIZ);
297 		addr->p.dyncnt = nvlist_get_number(nvl, "dyncnt");
298 	}
299 	if (addr->type == PF_ADDR_TABLE) {
300 		strlcpy(addr->v.tblname, nvlist_get_string(nvl, "tblname"),
301 		    PF_TABLE_NAME_SIZE);
302 		addr->p.tblcnt = nvlist_get_number(nvl, "tblcnt");
303 	}
304 
305 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "addr"), &addr->v.a.addr);
306 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "mask"), &addr->v.a.mask);
307 }
308 
309 static void
310 pfctl_nv_add_rule_addr(nvlist_t *nvparent, const char *name,
311     const struct pf_rule_addr *addr)
312 {
313 	uint64_t ports[2];
314 	nvlist_t *nvl = nvlist_create(0);
315 
316 	pfctl_nv_add_addr_wrap(nvl, "addr", &addr->addr);
317 	ports[0] = addr->port[0];
318 	ports[1] = addr->port[1];
319 	nvlist_add_number_array(nvl, "port", ports, 2);
320 	nvlist_add_number(nvl, "neg", addr->neg);
321 	nvlist_add_number(nvl, "port_op", addr->port_op);
322 
323 	nvlist_add_nvlist(nvparent, name, nvl);
324 	nvlist_destroy(nvl);
325 }
326 
327 static void
328 pf_nvrule_addr_to_rule_addr(const nvlist_t *nvl, struct pf_rule_addr *addr)
329 {
330 	pf_nvaddr_wrap_to_addr_wrap(nvlist_get_nvlist(nvl, "addr"), &addr->addr);
331 
332 	pf_nvuint_16_array(nvl, "port", 2, addr->port, NULL);
333 	addr->neg = nvlist_get_number(nvl, "neg");
334 	addr->port_op = nvlist_get_number(nvl, "port_op");
335 }
336 
337 static void
338 pfctl_nv_add_mape(nvlist_t *nvparent, const char *name,
339     const struct pf_mape_portset *mape)
340 {
341 	nvlist_t *nvl = nvlist_create(0);
342 
343 	nvlist_add_number(nvl, "offset", mape->offset);
344 	nvlist_add_number(nvl, "psidlen", mape->psidlen);
345 	nvlist_add_number(nvl, "psid", mape->psid);
346 	nvlist_add_nvlist(nvparent, name, nvl);
347 	nvlist_destroy(nvl);
348 }
349 
350 static void
351 pfctl_nv_add_pool(nvlist_t *nvparent, const char *name,
352     const struct pfctl_pool *pool)
353 {
354 	uint64_t ports[2];
355 	nvlist_t *nvl = nvlist_create(0);
356 
357 	nvlist_add_binary(nvl, "key", &pool->key, sizeof(pool->key));
358 	pfctl_nv_add_addr(nvl, "counter", &pool->counter);
359 	nvlist_add_number(nvl, "tblidx", pool->tblidx);
360 
361 	ports[0] = pool->proxy_port[0];
362 	ports[1] = pool->proxy_port[1];
363 	nvlist_add_number_array(nvl, "proxy_port", ports, 2);
364 	nvlist_add_number(nvl, "opts", pool->opts);
365 	pfctl_nv_add_mape(nvl, "mape", &pool->mape);
366 
367 	nvlist_add_nvlist(nvparent, name, nvl);
368 	nvlist_destroy(nvl);
369 }
370 
371 static void
372 pf_nvmape_to_mape(const nvlist_t *nvl, struct pf_mape_portset *mape)
373 {
374 	mape->offset = nvlist_get_number(nvl, "offset");
375 	mape->psidlen = nvlist_get_number(nvl, "psidlen");
376 	mape->psid = nvlist_get_number(nvl, "psid");
377 }
378 
379 static void
380 pf_nvpool_to_pool(const nvlist_t *nvl, struct pfctl_pool *pool)
381 {
382 	size_t len;
383 	const void *data;
384 
385 	data = nvlist_get_binary(nvl, "key", &len);
386 	assert(len == sizeof(pool->key));
387 	memcpy(&pool->key, data, len);
388 
389 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "counter"), &pool->counter);
390 
391 	pool->tblidx = nvlist_get_number(nvl, "tblidx");
392 	pf_nvuint_16_array(nvl, "proxy_port", 2, pool->proxy_port, NULL);
393 	pool->opts = nvlist_get_number(nvl, "opts");
394 
395 	if (nvlist_exists_nvlist(nvl, "mape"))
396 		pf_nvmape_to_mape(nvlist_get_nvlist(nvl, "mape"), &pool->mape);
397 }
398 
399 static void
400 pfctl_nv_add_uid(nvlist_t *nvparent, const char *name,
401     const struct pf_rule_uid *uid)
402 {
403 	uint64_t uids[2];
404 	nvlist_t *nvl = nvlist_create(0);
405 
406 	uids[0] = uid->uid[0];
407 	uids[1] = uid->uid[1];
408 	nvlist_add_number_array(nvl, "uid", uids, 2);
409 	nvlist_add_number(nvl, "op", uid->op);
410 
411 	nvlist_add_nvlist(nvparent, name, nvl);
412 	nvlist_destroy(nvl);
413 }
414 
415 static void
416 pf_nvrule_uid_to_rule_uid(const nvlist_t *nvl, struct pf_rule_uid *uid)
417 {
418 	pf_nvuint_32_array(nvl, "uid", 2, uid->uid, NULL);
419 	uid->op = nvlist_get_number(nvl, "op");
420 }
421 
422 static void
423 pfctl_nv_add_divert(nvlist_t *nvparent, const char *name,
424     const struct pfctl_rule *r)
425 {
426 	nvlist_t *nvl = nvlist_create(0);
427 
428 	pfctl_nv_add_addr(nvl, "addr", &r->divert.addr);
429 	nvlist_add_number(nvl, "port", r->divert.port);
430 
431 	nvlist_add_nvlist(nvparent, name, nvl);
432 	nvlist_destroy(nvl);
433 }
434 
435 static void
436 pf_nvdivert_to_divert(const nvlist_t *nvl, struct pfctl_rule *rule)
437 {
438 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "addr"), &rule->divert.addr);
439 	rule->divert.port = nvlist_get_number(nvl, "port");
440 }
441 
442 static void
443 pf_nvrule_to_rule(const nvlist_t *nvl, struct pfctl_rule *rule)
444 {
445 	const uint64_t *skip;
446 	const char *const *labels;
447 	size_t skipcount, labelcount;
448 
449 	rule->nr = nvlist_get_number(nvl, "nr");
450 
451 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "src"), &rule->src);
452 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "dst"), &rule->dst);
453 
454 	skip = nvlist_get_number_array(nvl, "skip", &skipcount);
455 	assert(skip);
456 	assert(skipcount == PF_SKIP_COUNT);
457 	for (int i = 0; i < PF_SKIP_COUNT; i++)
458 		rule->skip[i].nr = skip[i];
459 
460 	labels = nvlist_get_string_array(nvl, "labels", &labelcount);
461 	assert(labelcount <= PF_RULE_MAX_LABEL_COUNT);
462 	for (size_t i = 0; i < labelcount; i++)
463 		strlcpy(rule->label[i], labels[i], PF_RULE_LABEL_SIZE);
464 	rule->ridentifier = nvlist_get_number(nvl, "ridentifier");
465 	strlcpy(rule->ifname, nvlist_get_string(nvl, "ifname"), IFNAMSIZ);
466 	strlcpy(rule->qname, nvlist_get_string(nvl, "qname"), PF_QNAME_SIZE);
467 	strlcpy(rule->pqname, nvlist_get_string(nvl, "pqname"), PF_QNAME_SIZE);
468 	strlcpy(rule->tagname, nvlist_get_string(nvl, "tagname"),
469 	    PF_TAG_NAME_SIZE);
470 	strlcpy(rule->match_tagname, nvlist_get_string(nvl, "match_tagname"),
471 	    PF_TAG_NAME_SIZE);
472 
473 	strlcpy(rule->overload_tblname, nvlist_get_string(nvl, "overload_tblname"),
474 	    PF_TABLE_NAME_SIZE);
475 
476 	pf_nvpool_to_pool(nvlist_get_nvlist(nvl, "rpool"), &rule->rpool);
477 
478 	rule->evaluations = nvlist_get_number(nvl, "evaluations");
479 	pf_nvuint_64_array(nvl, "packets", 2, rule->packets, NULL);
480 	pf_nvuint_64_array(nvl, "bytes", 2, rule->bytes, NULL);
481 
482 	rule->os_fingerprint = nvlist_get_number(nvl, "os_fingerprint");
483 
484 	rule->rtableid = nvlist_get_number(nvl, "rtableid");
485 	pf_nvuint_32_array(nvl, "timeout", PFTM_MAX, rule->timeout, NULL);
486 	rule->max_states = nvlist_get_number(nvl, "max_states");
487 	rule->max_src_nodes = nvlist_get_number(nvl, "max_src_nodes");
488 	rule->max_src_states = nvlist_get_number(nvl, "max_src_states");
489 	rule->max_src_conn = nvlist_get_number(nvl, "max_src_conn");
490 	rule->max_src_conn_rate.limit =
491 	    nvlist_get_number(nvl, "max_src_conn_rate.limit");
492 	rule->max_src_conn_rate.seconds =
493 	    nvlist_get_number(nvl, "max_src_conn_rate.seconds");
494 	rule->qid = nvlist_get_number(nvl, "qid");
495 	rule->pqid = nvlist_get_number(nvl, "pqid");
496 	rule->dnpipe = nvlist_get_number(nvl, "dnpipe");
497 	rule->dnrpipe = nvlist_get_number(nvl, "dnrpipe");
498 	rule->free_flags = nvlist_get_number(nvl, "dnflags");
499 	rule->prob = nvlist_get_number(nvl, "prob");
500 	rule->cuid = nvlist_get_number(nvl, "cuid");
501 	rule->cpid = nvlist_get_number(nvl, "cpid");
502 
503 	rule->return_icmp = nvlist_get_number(nvl, "return_icmp");
504 	rule->return_icmp6 = nvlist_get_number(nvl, "return_icmp6");
505 	rule->max_mss = nvlist_get_number(nvl, "max_mss");
506 	rule->scrub_flags = nvlist_get_number(nvl, "scrub_flags");
507 
508 	pf_nvrule_uid_to_rule_uid(nvlist_get_nvlist(nvl, "uid"), &rule->uid);
509 	pf_nvrule_uid_to_rule_uid(nvlist_get_nvlist(nvl, "gid"),
510 	    (struct pf_rule_uid *)&rule->gid);
511 
512 	rule->rule_flag = nvlist_get_number(nvl, "rule_flag");
513 	rule->action = nvlist_get_number(nvl, "action");
514 	rule->direction = nvlist_get_number(nvl, "direction");
515 	rule->log = nvlist_get_number(nvl, "log");
516 	rule->logif = nvlist_get_number(nvl, "logif");
517 	rule->quick = nvlist_get_number(nvl, "quick");
518 	rule->ifnot = nvlist_get_number(nvl, "ifnot");
519 	rule->match_tag_not = nvlist_get_number(nvl, "match_tag_not");
520 	rule->natpass = nvlist_get_number(nvl, "natpass");
521 
522 	rule->keep_state = nvlist_get_number(nvl, "keep_state");
523 	rule->af = nvlist_get_number(nvl, "af");
524 	rule->proto = nvlist_get_number(nvl, "proto");
525 	rule->type = nvlist_get_number(nvl, "type");
526 	rule->code = nvlist_get_number(nvl, "code");
527 	rule->flags = nvlist_get_number(nvl, "flags");
528 	rule->flagset = nvlist_get_number(nvl, "flagset");
529 	rule->min_ttl = nvlist_get_number(nvl, "min_ttl");
530 	rule->allow_opts = nvlist_get_number(nvl, "allow_opts");
531 	rule->rt = nvlist_get_number(nvl, "rt");
532 	rule->return_ttl  = nvlist_get_number(nvl, "return_ttl");
533 	rule->tos = nvlist_get_number(nvl, "tos");
534 	rule->set_tos = nvlist_get_number(nvl, "set_tos");
535 	rule->anchor_relative = nvlist_get_number(nvl, "anchor_relative");
536 	rule->anchor_wildcard = nvlist_get_number(nvl, "anchor_wildcard");
537 
538 	rule->flush = nvlist_get_number(nvl, "flush");
539 	rule->prio = nvlist_get_number(nvl, "prio");
540 	pf_nvuint_8_array(nvl, "set_prio", 2, rule->set_prio, NULL);
541 
542 	pf_nvdivert_to_divert(nvlist_get_nvlist(nvl, "divert"), rule);
543 
544 	rule->states_cur = nvlist_get_number(nvl, "states_cur");
545 	rule->states_tot = nvlist_get_number(nvl, "states_tot");
546 	rule->src_nodes = nvlist_get_number(nvl, "src_nodes");
547 }
548 
549 static void
550 pfctl_nveth_addr_to_eth_addr(const nvlist_t *nvl, struct pfctl_eth_addr *addr)
551 {
552 	static const u_int8_t EMPTY_MAC[ETHER_ADDR_LEN] = { 0 };
553 	size_t len;
554 	const void *data;
555 
556 	data = nvlist_get_binary(nvl, "addr", &len);
557 	assert(len == sizeof(addr->addr));
558 	memcpy(addr->addr, data, sizeof(addr->addr));
559 
560 	data = nvlist_get_binary(nvl, "mask", &len);
561 	assert(len == sizeof(addr->mask));
562 	memcpy(addr->mask, data, sizeof(addr->mask));
563 
564 	addr->neg = nvlist_get_bool(nvl, "neg");
565 
566 	/* To make checks for 'is this address set?' easier. */
567 	addr->isset = memcmp(addr->addr, EMPTY_MAC, ETHER_ADDR_LEN) != 0;
568 }
569 
570 static nvlist_t *
571 pfctl_eth_addr_to_nveth_addr(const struct pfctl_eth_addr *addr)
572 {
573 	nvlist_t *nvl;
574 
575 	nvl = nvlist_create(0);
576 	if (nvl == NULL)
577 		return (NULL);
578 
579 	nvlist_add_bool(nvl, "neg", addr->neg);
580 	nvlist_add_binary(nvl, "addr", &addr->addr, ETHER_ADDR_LEN);
581 	nvlist_add_binary(nvl, "mask", &addr->mask, ETHER_ADDR_LEN);
582 
583 	return (nvl);
584 }
585 
586 static void
587 pfctl_nveth_rule_to_eth_rule(const nvlist_t *nvl, struct pfctl_eth_rule *rule)
588 {
589 	rule->nr = nvlist_get_number(nvl, "nr");
590 	rule->quick = nvlist_get_bool(nvl, "quick");
591 	strlcpy(rule->ifname, nvlist_get_string(nvl, "ifname"), IFNAMSIZ);
592 	rule->ifnot = nvlist_get_bool(nvl, "ifnot");
593 	rule->direction = nvlist_get_number(nvl, "direction");
594 	rule->proto = nvlist_get_number(nvl, "proto");
595 
596 	pfctl_nveth_addr_to_eth_addr(nvlist_get_nvlist(nvl, "src"),
597 	    &rule->src);
598 	pfctl_nveth_addr_to_eth_addr(nvlist_get_nvlist(nvl, "dst"),
599 	    &rule->dst);
600 
601 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "ipsrc"),
602 	    &rule->ipsrc);
603 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "ipdst"),
604 	    &rule->ipdst);
605 
606 	rule->evaluations = nvlist_get_number(nvl, "evaluations");
607 	rule->packets[0] = nvlist_get_number(nvl, "packets-in");
608 	rule->packets[1] = nvlist_get_number(nvl, "packets-out");
609 	rule->bytes[0] = nvlist_get_number(nvl, "bytes-in");
610 	rule->bytes[1] = nvlist_get_number(nvl, "bytes-out");
611 
612 	strlcpy(rule->qname, nvlist_get_string(nvl, "qname"), PF_QNAME_SIZE);
613 	strlcpy(rule->tagname, nvlist_get_string(nvl, "tagname"),
614 	    PF_TAG_NAME_SIZE);
615 
616 	rule->dnpipe = nvlist_get_number(nvl, "dnpipe");
617 	rule->dnflags = nvlist_get_number(nvl, "dnflags");
618 
619 	rule->anchor_relative = nvlist_get_number(nvl, "anchor_relative");
620 	rule->anchor_wildcard = nvlist_get_number(nvl, "anchor_wildcard");
621 
622 	rule->action = nvlist_get_number(nvl, "action");
623 }
624 
625 int
626 pfctl_get_eth_rules_info(int dev, struct pfctl_eth_rules_info *rules,
627     const char *path)
628 {
629 	uint8_t buf[1024];
630 	struct pfioc_nv nv;
631 	nvlist_t *nvl;
632 	void *packed;
633 	size_t len;
634 
635 	bzero(rules, sizeof(*rules));
636 
637 	nvl = nvlist_create(0);
638 	nvlist_add_string(nvl, "anchor", path);
639 	packed = nvlist_pack(nvl, &len);
640 	memcpy(buf, packed, len);
641 	free(packed);
642 	nvlist_destroy(nvl);
643 
644 	nv.data = buf;
645 	nv.len = len;
646 	nv.size = sizeof(buf);
647 
648 	if (ioctl(dev, DIOCGETETHRULES, &nv) != 0)
649 		return (errno);
650 
651 	nvl = nvlist_unpack(buf, nv.len, 0);
652 	if (nvl == NULL)
653 		return (EIO);
654 
655 	rules->nr = nvlist_get_number(nvl, "nr");
656 	rules->ticket = nvlist_get_number(nvl, "ticket");
657 
658 	nvlist_destroy(nvl);
659 	return (0);
660 }
661 
662 int
663 pfctl_get_eth_rule(int dev, uint32_t nr, uint32_t ticket,
664     const char *path, struct pfctl_eth_rule *rule, bool clear,
665     char *anchor_call)
666 {
667 	uint8_t buf[2048];
668 	struct pfioc_nv nv;
669 	nvlist_t *nvl;
670 	void *data;
671 	size_t len;
672 
673 	nvl = nvlist_create(0);
674 
675 	nvlist_add_string(nvl, "anchor", path);
676 	nvlist_add_number(nvl, "ticket", ticket);
677 	nvlist_add_number(nvl, "nr", nr);
678 	nvlist_add_bool(nvl, "clear", clear);
679 
680 	data = nvlist_pack(nvl, &len);
681 	nv.data = buf;
682 	memcpy(buf, data, len);
683 	free(data);
684 	nv.len = len;
685 	nv.size = sizeof(buf);
686 	if (ioctl(dev, DIOCGETETHRULE, &nv)) {
687 		nvlist_destroy(nvl);
688 		return (errno);
689 	}
690 	nvlist_destroy(nvl);
691 
692 	nvl = nvlist_unpack(buf, nv.len, 0);
693 	if (nvl == NULL) {
694 		return (EIO);
695 	}
696 
697 	pfctl_nveth_rule_to_eth_rule(nvl, rule);
698 
699 	if (anchor_call)
700 		strlcpy(anchor_call, nvlist_get_string(nvl, "anchor_call"),
701 		    MAXPATHLEN);
702 
703 	nvlist_destroy(nvl);
704 	return (0);
705 }
706 
707 int
708 pfctl_add_eth_rule(int dev, const struct pfctl_eth_rule *r, const char *anchor,
709     const char *anchor_call, uint32_t ticket)
710 {
711 	struct pfioc_nv nv;
712 	nvlist_t *nvl, *addr;
713 	void *packed;
714 	int error;
715 	size_t size;
716 
717 	nvl = nvlist_create(0);
718 
719 	nvlist_add_number(nvl, "ticket", ticket);
720 	nvlist_add_string(nvl, "anchor", anchor);
721 	nvlist_add_string(nvl, "anchor_call", anchor_call);
722 
723 	nvlist_add_number(nvl, "nr", r->nr);
724 	nvlist_add_bool(nvl, "quick", r->quick);
725 	nvlist_add_string(nvl, "ifname", r->ifname);
726 	nvlist_add_bool(nvl, "ifnot", r->ifnot);
727 	nvlist_add_number(nvl, "direction", r->direction);
728 	nvlist_add_number(nvl, "proto", r->proto);
729 
730 	addr = pfctl_eth_addr_to_nveth_addr(&r->src);
731 	if (addr == NULL) {
732 		nvlist_destroy(nvl);
733 		return (ENOMEM);
734 	}
735 	nvlist_add_nvlist(nvl, "src", addr);
736 	nvlist_destroy(addr);
737 
738 	addr = pfctl_eth_addr_to_nveth_addr(&r->dst);
739 	if (addr == NULL) {
740 		nvlist_destroy(nvl);
741 		return (ENOMEM);
742 	}
743 	nvlist_add_nvlist(nvl, "dst", addr);
744 	nvlist_destroy(addr);
745 
746 	pfctl_nv_add_rule_addr(nvl, "ipsrc", &r->ipsrc);
747 	pfctl_nv_add_rule_addr(nvl, "ipdst", &r->ipdst);
748 
749 	nvlist_add_string(nvl, "qname", r->qname);
750 	nvlist_add_string(nvl, "tagname", r->tagname);
751 	nvlist_add_number(nvl, "dnpipe", r->dnpipe);
752 	nvlist_add_number(nvl, "dnflags", r->dnflags);
753 
754 	nvlist_add_number(nvl, "action", r->action);
755 
756 	packed = nvlist_pack(nvl, &size);
757 	if (packed == NULL) {
758 		nvlist_destroy(nvl);
759 		return (ENOMEM);
760 	}
761 
762 	nv.len = size;
763 	nv.size = size;
764 	nv.data = packed;
765 
766 	error = ioctl(dev, DIOCADDETHRULE, &nv);
767 
768 	free(packed);
769 	nvlist_destroy(nvl);
770 
771 	return (error);
772 }
773 
774 int
775 pfctl_add_rule(int dev, const struct pfctl_rule *r, const char *anchor,
776     const char *anchor_call, uint32_t ticket, uint32_t pool_ticket)
777 {
778 	struct pfioc_nv nv;
779 	uint64_t timeouts[PFTM_MAX];
780 	uint64_t set_prio[2];
781 	nvlist_t *nvl, *nvlr;
782 	size_t labelcount;
783 	int ret;
784 
785 	nvl = nvlist_create(0);
786 	nvlr = nvlist_create(0);
787 
788 	nvlist_add_number(nvl, "ticket", ticket);
789 	nvlist_add_number(nvl, "pool_ticket", pool_ticket);
790 	nvlist_add_string(nvl, "anchor", anchor);
791 	nvlist_add_string(nvl, "anchor_call", anchor_call);
792 
793 	nvlist_add_number(nvlr, "nr", r->nr);
794 	pfctl_nv_add_rule_addr(nvlr, "src", &r->src);
795 	pfctl_nv_add_rule_addr(nvlr, "dst", &r->dst);
796 
797 	labelcount = 0;
798 	while (r->label[labelcount][0] != 0 &&
799 	    labelcount < PF_RULE_MAX_LABEL_COUNT) {
800 		nvlist_append_string_array(nvlr, "labels",
801 		    r->label[labelcount]);
802 		labelcount++;
803 	}
804 	nvlist_add_number(nvlr, "ridentifier", r->ridentifier);
805 
806 	nvlist_add_string(nvlr, "ifname", r->ifname);
807 	nvlist_add_string(nvlr, "qname", r->qname);
808 	nvlist_add_string(nvlr, "pqname", r->pqname);
809 	nvlist_add_string(nvlr, "tagname", r->tagname);
810 	nvlist_add_string(nvlr, "match_tagname", r->match_tagname);
811 	nvlist_add_string(nvlr, "overload_tblname", r->overload_tblname);
812 
813 	pfctl_nv_add_pool(nvlr, "rpool", &r->rpool);
814 
815 	nvlist_add_number(nvlr, "os_fingerprint", r->os_fingerprint);
816 
817 	nvlist_add_number(nvlr, "rtableid", r->rtableid);
818 	for (int i = 0; i < PFTM_MAX; i++)
819 		timeouts[i] = r->timeout[i];
820 	nvlist_add_number_array(nvlr, "timeout", timeouts, PFTM_MAX);
821 	nvlist_add_number(nvlr, "max_states", r->max_states);
822 	nvlist_add_number(nvlr, "max_src_nodes", r->max_src_nodes);
823 	nvlist_add_number(nvlr, "max_src_states", r->max_src_states);
824 	nvlist_add_number(nvlr, "max_src_conn", r->max_src_conn);
825 	nvlist_add_number(nvlr, "max_src_conn_rate.limit",
826 	    r->max_src_conn_rate.limit);
827 	nvlist_add_number(nvlr, "max_src_conn_rate.seconds",
828 	    r->max_src_conn_rate.seconds);
829 	nvlist_add_number(nvlr, "dnpipe", r->dnpipe);
830 	nvlist_add_number(nvlr, "dnrpipe", r->dnrpipe);
831 	nvlist_add_number(nvlr, "dnflags", r->free_flags);
832 	nvlist_add_number(nvlr, "prob", r->prob);
833 	nvlist_add_number(nvlr, "cuid", r->cuid);
834 	nvlist_add_number(nvlr, "cpid", r->cpid);
835 
836 	nvlist_add_number(nvlr, "return_icmp", r->return_icmp);
837 	nvlist_add_number(nvlr, "return_icmp6", r->return_icmp6);
838 
839 	nvlist_add_number(nvlr, "max_mss", r->max_mss);
840 	nvlist_add_number(nvlr, "scrub_flags", r->scrub_flags);
841 
842 	pfctl_nv_add_uid(nvlr, "uid", &r->uid);
843 	pfctl_nv_add_uid(nvlr, "gid", (const struct pf_rule_uid *)&r->gid);
844 
845 	nvlist_add_number(nvlr, "rule_flag", r->rule_flag);
846 	nvlist_add_number(nvlr, "action", r->action);
847 	nvlist_add_number(nvlr, "direction", r->direction);
848 	nvlist_add_number(nvlr, "log", r->log);
849 	nvlist_add_number(nvlr, "logif", r->logif);
850 	nvlist_add_number(nvlr, "quick", r->quick);
851 	nvlist_add_number(nvlr, "ifnot", r->ifnot);
852 	nvlist_add_number(nvlr, "match_tag_not", r->match_tag_not);
853 	nvlist_add_number(nvlr, "natpass", r->natpass);
854 
855 	nvlist_add_number(nvlr, "keep_state", r->keep_state);
856 	nvlist_add_number(nvlr, "af", r->af);
857 	nvlist_add_number(nvlr, "proto", r->proto);
858 	nvlist_add_number(nvlr, "type", r->type);
859 	nvlist_add_number(nvlr, "code", r->code);
860 	nvlist_add_number(nvlr, "flags", r->flags);
861 	nvlist_add_number(nvlr, "flagset", r->flagset);
862 	nvlist_add_number(nvlr, "min_ttl", r->min_ttl);
863 	nvlist_add_number(nvlr, "allow_opts", r->allow_opts);
864 	nvlist_add_number(nvlr, "rt", r->rt);
865 	nvlist_add_number(nvlr, "return_ttl", r->return_ttl);
866 	nvlist_add_number(nvlr, "tos", r->tos);
867 	nvlist_add_number(nvlr, "set_tos", r->set_tos);
868 	nvlist_add_number(nvlr, "anchor_relative", r->anchor_relative);
869 	nvlist_add_number(nvlr, "anchor_wildcard", r->anchor_wildcard);
870 
871 	nvlist_add_number(nvlr, "flush", r->flush);
872 
873 	nvlist_add_number(nvlr, "prio", r->prio);
874 	set_prio[0] = r->set_prio[0];
875 	set_prio[1] = r->set_prio[1];
876 	nvlist_add_number_array(nvlr, "set_prio", set_prio, 2);
877 
878 	pfctl_nv_add_divert(nvlr, "divert", r);
879 
880 	nvlist_add_nvlist(nvl, "rule", nvlr);
881 	nvlist_destroy(nvlr);
882 
883 	/* Now do the call. */
884 	nv.data = nvlist_pack(nvl, &nv.len);
885 	nv.size = nv.len;
886 
887 	ret = ioctl(dev, DIOCADDRULENV, &nv);
888 
889 	free(nv.data);
890 	nvlist_destroy(nvl);
891 
892 	return (ret);
893 }
894 
895 int
896 pfctl_get_rules_info(int dev, struct pfctl_rules_info *rules, uint32_t ruleset,
897     const char *path)
898 {
899 	struct pfioc_rule pr;
900 	int ret;
901 
902 	bzero(&pr, sizeof(pr));
903 	if (strlcpy(pr.anchor, path, sizeof(pr.anchor)) >= sizeof(pr.anchor))
904 		return (E2BIG);
905 
906 	pr.rule.action = ruleset;
907 	ret = ioctl(dev, DIOCGETRULES, &pr);
908 	if (ret != 0)
909 		return (ret);
910 
911 	rules->nr = pr.nr;
912 	rules->ticket = pr.ticket;
913 
914 	return (0);
915 }
916 
917 int
918 pfctl_get_rule(int dev, uint32_t nr, uint32_t ticket, const char *anchor,
919     uint32_t ruleset, struct pfctl_rule *rule, char *anchor_call)
920 {
921 	return (pfctl_get_clear_rule(dev, nr, ticket, anchor, ruleset, rule,
922 	    anchor_call, false));
923 }
924 
925 int	pfctl_get_clear_rule(int dev, uint32_t nr, uint32_t ticket,
926 	    const char *anchor, uint32_t ruleset, struct pfctl_rule *rule,
927 	    char *anchor_call, bool clear)
928 {
929 	struct pfioc_nv nv;
930 	nvlist_t *nvl;
931 	void *nvlpacked;
932 	int ret;
933 
934 	nvl = nvlist_create(0);
935 	if (nvl == 0)
936 		return (ENOMEM);
937 
938 	nvlist_add_number(nvl, "nr", nr);
939 	nvlist_add_number(nvl, "ticket", ticket);
940 	nvlist_add_string(nvl, "anchor", anchor);
941 	nvlist_add_number(nvl, "ruleset", ruleset);
942 
943 	if (clear)
944 		nvlist_add_bool(nvl, "clear_counter", true);
945 
946 	nvlpacked = nvlist_pack(nvl, &nv.len);
947 	if (nvlpacked == NULL) {
948 		nvlist_destroy(nvl);
949 		return (ENOMEM);
950 	}
951 	nv.data = malloc(8182);
952 	nv.size = 8192;
953 	assert(nv.len <= nv.size);
954 	memcpy(nv.data, nvlpacked, nv.len);
955 	nvlist_destroy(nvl);
956 	nvl = NULL;
957 	free(nvlpacked);
958 
959 	ret = ioctl(dev, DIOCGETRULENV, &nv);
960 	if (ret != 0) {
961 		free(nv.data);
962 		return (ret);
963 	}
964 
965 	nvl = nvlist_unpack(nv.data, nv.len, 0);
966 	if (nvl == NULL) {
967 		free(nv.data);
968 		return (EIO);
969 	}
970 
971 	pf_nvrule_to_rule(nvlist_get_nvlist(nvl, "rule"), rule);
972 
973 	if (anchor_call)
974 		strlcpy(anchor_call, nvlist_get_string(nvl, "anchor_call"),
975 		    MAXPATHLEN);
976 
977 	free(nv.data);
978 	nvlist_destroy(nvl);
979 
980 	return (0);
981 }
982 
983 int
984 pfctl_set_keepcounters(int dev, bool keep)
985 {
986 	struct pfioc_nv	 nv;
987 	nvlist_t	*nvl;
988 	int		 ret;
989 
990 	nvl = nvlist_create(0);
991 
992 	nvlist_add_bool(nvl, "keep_counters", keep);
993 
994 	nv.data = nvlist_pack(nvl, &nv.len);
995 	nv.size = nv.len;
996 
997 	nvlist_destroy(nvl);
998 
999 	ret = ioctl(dev, DIOCKEEPCOUNTERS, &nv);
1000 
1001 	free(nv.data);
1002 	return (ret);
1003 }
1004 
1005 static void
1006 pfctl_nv_add_state_cmp(nvlist_t *nvl, const char *name,
1007     const struct pfctl_state_cmp *cmp)
1008 {
1009 	nvlist_t	*nv;
1010 
1011 	nv = nvlist_create(0);
1012 
1013 	nvlist_add_number(nv, "id", cmp->id);
1014 	nvlist_add_number(nv, "creatorid", htonl(cmp->creatorid));
1015 	nvlist_add_number(nv, "direction", cmp->direction);
1016 
1017 	nvlist_add_nvlist(nvl, name, nv);
1018 	nvlist_destroy(nv);
1019 }
1020 
1021 static void
1022 pf_state_key_export_to_state_key(struct pfctl_state_key *ps,
1023     const struct pf_state_key_export *s)
1024 {
1025 	bcopy(s->addr, ps->addr, sizeof(ps->addr[0]) * 2);
1026 	ps->port[0] = s->port[0];
1027 	ps->port[1] = s->port[1];
1028 }
1029 
1030 static void
1031 pf_state_peer_export_to_state_peer(struct pfctl_state_peer *ps,
1032     const struct pf_state_peer_export *s)
1033 {
1034 	/* Ignore scrub. */
1035 	ps->seqlo = s->seqlo;
1036 	ps->seqhi = s->seqhi;
1037 	ps->seqdiff = s->seqdiff;
1038 	/* Ignore max_win & mss */
1039 	ps->state = s->state;
1040 	ps->wscale = s->wscale;
1041 }
1042 
1043 static void
1044 pf_state_export_to_state(struct pfctl_state *ps, const struct pf_state_export *s)
1045 {
1046 	assert(s->version >= PF_STATE_VERSION);
1047 
1048 	ps->id = s->id;
1049 	strlcpy(ps->ifname, s->ifname, sizeof(ps->ifname));
1050 	strlcpy(ps->orig_ifname, s->orig_ifname, sizeof(ps->orig_ifname));
1051 	pf_state_key_export_to_state_key(&ps->key[0], &s->key[0]);
1052 	pf_state_key_export_to_state_key(&ps->key[1], &s->key[1]);
1053 	pf_state_peer_export_to_state_peer(&ps->src, &s->src);
1054 	pf_state_peer_export_to_state_peer(&ps->dst, &s->dst);
1055 	bcopy(&s->rt_addr, &ps->rt_addr, sizeof(ps->rt_addr));
1056 	ps->rule = ntohl(s->rule);
1057 	ps->anchor = ntohl(s->anchor);
1058 	ps->nat_rule = ntohl(s->nat_rule);
1059 	ps->creation = ntohl(s->creation);
1060 	ps->expire = ntohl(s->expire);
1061 	ps->packets[0] = s->packets[0];
1062 	ps->packets[1] = s->packets[1];
1063 	ps->bytes[0] = s->bytes[0];
1064 	ps->bytes[1] = s->bytes[1];
1065 	ps->creatorid = ntohl(s->creatorid);
1066 	ps->key[0].proto = s->proto;
1067 	ps->key[1].proto = s->proto;
1068 	ps->key[0].af = s->af;
1069 	ps->key[1].af = s->af;
1070 	ps->direction = s->direction;
1071 	ps->state_flags = s->state_flags;
1072 	ps->sync_flags = s->sync_flags;
1073 }
1074 
1075 int
1076 pfctl_get_states(int dev, struct pfctl_states *states)
1077 {
1078 	struct pfioc_states_v2 ps;
1079 	struct pf_state_export *p;
1080 	char *inbuf = NULL, *newinbuf = NULL;
1081 	unsigned int len = 0;
1082 	int i, error;
1083 
1084 	bzero(&ps, sizeof(ps));
1085 	ps.ps_req_version = PF_STATE_VERSION;
1086 
1087 	bzero(states, sizeof(*states));
1088 	TAILQ_INIT(&states->states);
1089 
1090 	for (;;) {
1091 		ps.ps_len = len;
1092 		if (len) {
1093 			newinbuf = realloc(inbuf, len);
1094 			if (newinbuf == NULL)
1095 				return (ENOMEM);
1096 			ps.ps_buf = inbuf = newinbuf;
1097 		}
1098 		if ((error = ioctl(dev, DIOCGETSTATESV2, &ps)) < 0) {
1099 			free(inbuf);
1100 			return (error);
1101 		}
1102 		if (ps.ps_len + sizeof(struct pfioc_states_v2) < len)
1103 			break;
1104 		if (len == 0 && ps.ps_len == 0)
1105 			goto out;
1106 		if (len == 0 && ps.ps_len != 0)
1107 			len = ps.ps_len;
1108 		if (ps.ps_len == 0)
1109 			goto out;      /* no states */
1110 		len *= 2;
1111 	}
1112 	p = ps.ps_states;
1113 
1114 	for (i = 0; i < ps.ps_len; i += sizeof(*p), p++) {
1115 		struct pfctl_state *s = malloc(sizeof(*s));
1116 		if (s == NULL) {
1117 			pfctl_free_states(states);
1118 			error = ENOMEM;
1119 			goto out;
1120 		}
1121 
1122 		pf_state_export_to_state(s, p);
1123 		TAILQ_INSERT_TAIL(&states->states, s, entry);
1124 	}
1125 
1126 out:
1127 	free(inbuf);
1128 	return (error);
1129 }
1130 
1131 void
1132 pfctl_free_states(struct pfctl_states *states)
1133 {
1134 	struct pfctl_state *s, *tmp;
1135 
1136 	TAILQ_FOREACH_SAFE(s, &states->states, entry, tmp) {
1137 		free(s);
1138 	}
1139 
1140 	bzero(states, sizeof(*states));
1141 }
1142 
1143 static int
1144 _pfctl_clear_states(int dev, const struct pfctl_kill *kill,
1145     unsigned int *killed, uint64_t ioctlval)
1146 {
1147 	struct pfioc_nv	 nv;
1148 	nvlist_t	*nvl;
1149 	int		 ret;
1150 
1151 	nvl = nvlist_create(0);
1152 
1153 	pfctl_nv_add_state_cmp(nvl, "cmp", &kill->cmp);
1154 	nvlist_add_number(nvl, "af", kill->af);
1155 	nvlist_add_number(nvl, "proto", kill->proto);
1156 	pfctl_nv_add_rule_addr(nvl, "src", &kill->src);
1157 	pfctl_nv_add_rule_addr(nvl, "dst", &kill->dst);
1158 	pfctl_nv_add_rule_addr(nvl, "rt_addr", &kill->rt_addr);
1159 	nvlist_add_string(nvl, "ifname", kill->ifname);
1160 	nvlist_add_string(nvl, "label", kill->label);
1161 	nvlist_add_bool(nvl, "kill_match", kill->kill_match);
1162 
1163 	nv.data = nvlist_pack(nvl, &nv.len);
1164 	nv.size = nv.len;
1165 	nvlist_destroy(nvl);
1166 	nvl = NULL;
1167 
1168 	ret = ioctl(dev, ioctlval, &nv);
1169 	if (ret != 0) {
1170 		free(nv.data);
1171 		return (ret);
1172 	}
1173 
1174 	nvl = nvlist_unpack(nv.data, nv.len, 0);
1175 	if (nvl == NULL) {
1176 		free(nv.data);
1177 		return (EIO);
1178 	}
1179 
1180 	if (killed)
1181 		*killed = nvlist_get_number(nvl, "killed");
1182 
1183 	nvlist_destroy(nvl);
1184 	free(nv.data);
1185 
1186 	return (ret);
1187 }
1188 
1189 int
1190 pfctl_clear_states(int dev, const struct pfctl_kill *kill,
1191     unsigned int *killed)
1192 {
1193 	return (_pfctl_clear_states(dev, kill, killed, DIOCCLRSTATESNV));
1194 }
1195 
1196 int
1197 pfctl_kill_states(int dev, const struct pfctl_kill *kill, unsigned int *killed)
1198 {
1199 	return (_pfctl_clear_states(dev, kill, killed, DIOCKILLSTATESNV));
1200 }
1201 
1202 int
1203 pfctl_clear_rules(int dev, const char *anchorname)
1204 {
1205 	struct pfioc_trans trans;
1206 	struct pfioc_trans_e transe[2];
1207 	int ret;
1208 
1209 	bzero(&trans, sizeof(trans));
1210 	bzero(&transe, sizeof(transe));
1211 
1212 	transe[0].rs_num = PF_RULESET_SCRUB;
1213 	if (strlcpy(transe[0].anchor, anchorname, sizeof(transe[0].anchor))
1214 	    >= sizeof(transe[0].anchor))
1215 		return (E2BIG);
1216 
1217 	transe[1].rs_num = PF_RULESET_FILTER;
1218 	if (strlcpy(transe[1].anchor, anchorname, sizeof(transe[1].anchor))
1219 	    >= sizeof(transe[1].anchor))
1220 		return (E2BIG);
1221 
1222 	trans.size = 2;
1223 	trans.esize = sizeof(transe[0]);
1224 	trans.array = transe;
1225 
1226 	ret = ioctl(dev, DIOCXBEGIN, &trans);
1227 	if (ret != 0)
1228 		return (ret);
1229 	return ioctl(dev, DIOCXCOMMIT, &trans);
1230 }
1231 
1232 int
1233 pfctl_clear_nat(int dev, const char *anchorname)
1234 {
1235 	struct pfioc_trans trans;
1236 	struct pfioc_trans_e transe[3];
1237 	int ret;
1238 
1239 	bzero(&trans, sizeof(trans));
1240 	bzero(&transe, sizeof(transe));
1241 
1242 	transe[0].rs_num = PF_RULESET_NAT;
1243 	if (strlcpy(transe[0].anchor, anchorname, sizeof(transe[0].anchor))
1244 	    >= sizeof(transe[0].anchor))
1245 		return (E2BIG);
1246 
1247 	transe[1].rs_num = PF_RULESET_BINAT;
1248 	if (strlcpy(transe[1].anchor, anchorname, sizeof(transe[1].anchor))
1249 	    >= sizeof(transe[0].anchor))
1250 		return (E2BIG);
1251 
1252 	transe[2].rs_num = PF_RULESET_RDR;
1253 	if (strlcpy(transe[2].anchor, anchorname, sizeof(transe[2].anchor))
1254 	    >= sizeof(transe[2].anchor))
1255 		return (E2BIG);
1256 
1257 	trans.size = 3;
1258 	trans.esize = sizeof(transe[0]);
1259 	trans.array = transe;
1260 
1261 	ret = ioctl(dev, DIOCXBEGIN, &trans);
1262 	if (ret != 0)
1263 		return (ret);
1264 	return ioctl(dev, DIOCXCOMMIT, &trans);
1265 }
1266 int
1267 pfctl_clear_eth_rules(int dev, const char *anchorname)
1268 {
1269 	struct pfioc_trans trans;
1270 	struct pfioc_trans_e transe;
1271 	int ret;
1272 
1273 	bzero(&trans, sizeof(trans));
1274 	bzero(&transe, sizeof(transe));
1275 
1276 	transe.rs_num = PF_RULESET_ETH;
1277 	if (strlcpy(transe.anchor, anchorname, sizeof(transe.anchor))
1278 	    >= sizeof(transe.anchor))
1279 		return (E2BIG);
1280 
1281 	trans.size = 1;
1282 	trans.esize = sizeof(transe);
1283 	trans.array = &transe;
1284 
1285 	ret = ioctl(dev, DIOCXBEGIN, &trans);
1286 	if (ret != 0)
1287 		return (ret);
1288 	return ioctl(dev, DIOCXCOMMIT, &trans);
1289 }
1290 
1291 static int
1292 pfctl_get_limit(int dev, const int index, uint *limit)
1293 {
1294 	struct pfioc_limit pl;
1295 
1296 	bzero(&pl, sizeof(pl));
1297 	pl.index = index;
1298 
1299 	if (ioctl(dev, DIOCGETLIMIT, &pl) == -1)
1300 		return (errno);
1301 
1302 	*limit = pl.limit;
1303 
1304 	return (0);
1305 }
1306 
1307 int
1308 pfctl_set_syncookies(int dev, const struct pfctl_syncookies *s)
1309 {
1310 	struct pfioc_nv	 nv;
1311 	nvlist_t	*nvl;
1312 	int		 ret;
1313 	uint		 state_limit;
1314 
1315 	ret = pfctl_get_limit(dev, PF_LIMIT_STATES, &state_limit);
1316 	if (ret != 0)
1317 		return (ret);
1318 
1319 	nvl = nvlist_create(0);
1320 
1321 	nvlist_add_bool(nvl, "enabled", s->mode != PFCTL_SYNCOOKIES_NEVER);
1322 	nvlist_add_bool(nvl, "adaptive", s->mode == PFCTL_SYNCOOKIES_ADAPTIVE);
1323 	nvlist_add_number(nvl, "highwater", state_limit * s->highwater / 100);
1324 	nvlist_add_number(nvl, "lowwater", state_limit * s->lowwater / 100);
1325 
1326 	nv.data = nvlist_pack(nvl, &nv.len);
1327 	nv.size = nv.len;
1328 	nvlist_destroy(nvl);
1329 	nvl = NULL;
1330 
1331 	ret = ioctl(dev, DIOCSETSYNCOOKIES, &nv);
1332 
1333 	free(nv.data);
1334 	return (ret);
1335 }
1336 
1337 int
1338 pfctl_get_syncookies(int dev, struct pfctl_syncookies *s)
1339 {
1340 	struct pfioc_nv	 nv;
1341 	nvlist_t	*nvl;
1342 	int		 ret;
1343 	uint		 state_limit;
1344 	bool		 enabled, adaptive;
1345 
1346 	ret = pfctl_get_limit(dev, PF_LIMIT_STATES, &state_limit);
1347 	if (ret != 0)
1348 		return (ret);
1349 
1350 	bzero(s, sizeof(*s));
1351 
1352 	nv.data = malloc(256);
1353 	nv.len = nv.size = 256;
1354 
1355 	if (ioctl(dev, DIOCGETSYNCOOKIES, &nv)) {
1356 		free(nv.data);
1357 		return (errno);
1358 	}
1359 
1360 	nvl = nvlist_unpack(nv.data, nv.len, 0);
1361 	free(nv.data);
1362 	if (nvl == NULL) {
1363 		return (EIO);
1364 	}
1365 
1366 	enabled = nvlist_get_bool(nvl, "enabled");
1367 	adaptive = nvlist_get_bool(nvl, "adaptive");
1368 
1369 	if (enabled) {
1370 		if (adaptive)
1371 			s->mode = PFCTL_SYNCOOKIES_ADAPTIVE;
1372 		else
1373 			s->mode = PFCTL_SYNCOOKIES_ALWAYS;
1374 	} else {
1375 		s->mode = PFCTL_SYNCOOKIES_NEVER;
1376 	}
1377 
1378 	s->highwater = nvlist_get_number(nvl, "highwater") * 100 / state_limit;
1379 	s->lowwater = nvlist_get_number(nvl, "lowwater") * 100 / state_limit;
1380 
1381 	nvlist_destroy(nvl);
1382 
1383 	return (0);
1384 }
1385