xref: /freebsd/lib/libpfctl/libpfctl.c (revision 9c125336727b48c576bf3598d7d2c52daa5909d7)
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 
32 #include <sys/cdefs.h>
33 
34 #include <sys/ioctl.h>
35 #include <sys/nv.h>
36 #include <sys/queue.h>
37 #include <sys/types.h>
38 
39 #include <net/if.h>
40 #include <net/pfvar.h>
41 #include <netinet/in.h>
42 
43 #include <netpfil/pf/pf_nl.h>
44 #include <netlink/netlink.h>
45 #include <netlink/netlink_generic.h>
46 #include <netlink/netlink_snl.h>
47 #include <netlink/netlink_snl_generic.h>
48 #include <netlink/netlink_snl_route.h>
49 
50 #include <assert.h>
51 #include <err.h>
52 #include <errno.h>
53 #include <fcntl.h>
54 #include <stdlib.h>
55 #include <string.h>
56 
57 #include "libpfctl.h"
58 
59 struct pfctl_handle {
60 	int fd;
61 	struct snl_state ss;
62 };
63 
64 const char* PFCTL_SYNCOOKIES_MODE_NAMES[] = {
65 	"never",
66 	"always",
67 	"adaptive"
68 };
69 
70 static int	_pfctl_clear_states(int , const struct pfctl_kill *,
71 		    unsigned int *, uint64_t);
72 
73 struct pfctl_handle *
pfctl_open(const char * pf_device)74 pfctl_open(const char *pf_device)
75 {
76 	struct pfctl_handle *h;
77 
78 	h = calloc(1, sizeof(struct pfctl_handle));
79 	h->fd = -1;
80 
81 	h->fd = open(pf_device, O_RDWR);
82 	if (h->fd < 0)
83 		goto error;
84 
85 	if (!snl_init(&h->ss, NETLINK_GENERIC))
86 		goto error;
87 
88 	return (h);
89 error:
90 	close(h->fd);
91 	snl_free(&h->ss);
92 	free(h);
93 
94 	return (NULL);
95 }
96 
97 void
pfctl_close(struct pfctl_handle * h)98 pfctl_close(struct pfctl_handle *h)
99 {
100 	close(h->fd);
101 	snl_free(&h->ss);
102 	free(h);
103 }
104 
105 int
pfctl_fd(struct pfctl_handle * h)106 pfctl_fd(struct pfctl_handle *h)
107 {
108 	return (h->fd);
109 }
110 
111 static int
pfctl_do_netlink_cmd(struct pfctl_handle * h,uint cmd)112 pfctl_do_netlink_cmd(struct pfctl_handle *h, uint cmd)
113 {
114 	struct snl_errmsg_data e = {};
115 	struct snl_writer nw;
116 	struct nlmsghdr *hdr;
117 	uint32_t seq_id;
118 	int family_id;
119 
120 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
121 	if (family_id == 0)
122 		return (ENOTSUP);
123 
124 	snl_init_writer(&h->ss, &nw);
125 	hdr = snl_create_genl_msg_request(&nw, family_id, cmd);
126 
127 	hdr = snl_finalize_msg(&nw);
128 	if (hdr == NULL)
129 		return (ENOMEM);
130 	seq_id = hdr->nlmsg_seq;
131 
132 	snl_send_message(&h->ss, hdr);
133 
134 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
135 	}
136 
137 	return (e.error);
138 }
139 
140 static int
pfctl_do_ioctl(int dev,uint cmd,size_t size,nvlist_t ** nvl)141 pfctl_do_ioctl(int dev, uint cmd, size_t size, nvlist_t **nvl)
142 {
143 	struct pfioc_nv nv;
144 	void *data;
145 	size_t nvlen;
146 	int ret;
147 
148 	data = nvlist_pack(*nvl, &nvlen);
149 	if (nvlen > size)
150 		size = nvlen;
151 
152 retry:
153 	nv.data = malloc(size);
154 	if (nv.data == NULL) {
155 		ret = ENOMEM;
156 		goto out;
157 	}
158 
159 	memcpy(nv.data, data, nvlen);
160 
161 	nv.len = nvlen;
162 	nv.size = size;
163 
164 	ret = ioctl(dev, cmd, &nv);
165 	if (ret == -1 && errno == ENOSPC) {
166 		size *= 2;
167 		free(nv.data);
168 		goto retry;
169 	}
170 
171 	nvlist_destroy(*nvl);
172 	*nvl = NULL;
173 
174 	if (ret == 0) {
175 		*nvl = nvlist_unpack(nv.data, nv.len, 0);
176 		if (*nvl == NULL) {
177 			ret = EIO;
178 			goto out;
179 		}
180 	} else {
181 		ret = errno;
182 	}
183 
184 out:
185 	free(data);
186 	free(nv.data);
187 
188 	return (ret);
189 }
190 
191 static void
pf_nvuint_8_array(const nvlist_t * nvl,const char * name,size_t maxelems,uint8_t * numbers,size_t * nelems)192 pf_nvuint_8_array(const nvlist_t *nvl, const char *name, size_t maxelems,
193     uint8_t *numbers, size_t *nelems)
194 {
195 	const uint64_t *tmp;
196 	size_t elems;
197 
198 	tmp = nvlist_get_number_array(nvl, name, &elems);
199 	assert(elems <= maxelems);
200 
201 	for (size_t i = 0; i < elems; i++)
202 		numbers[i] = tmp[i];
203 
204 	if (nelems)
205 		*nelems = elems;
206 }
207 
208 static void
pf_nvuint_16_array(const nvlist_t * nvl,const char * name,size_t maxelems,uint16_t * numbers,size_t * nelems)209 pf_nvuint_16_array(const nvlist_t *nvl, const char *name, size_t maxelems,
210     uint16_t *numbers, size_t *nelems)
211 {
212 	const uint64_t *tmp;
213 	size_t elems;
214 
215 	tmp = nvlist_get_number_array(nvl, name, &elems);
216 	assert(elems <= maxelems);
217 
218 	for (size_t i = 0; i < elems; i++)
219 		numbers[i] = tmp[i];
220 
221 	if (nelems)
222 		*nelems = elems;
223 }
224 
225 static void
pf_nvuint_32_array(const nvlist_t * nvl,const char * name,size_t maxelems,uint32_t * numbers,size_t * nelems)226 pf_nvuint_32_array(const nvlist_t *nvl, const char *name, size_t maxelems,
227     uint32_t *numbers, size_t *nelems)
228 {
229 	const uint64_t *tmp;
230 	size_t elems;
231 
232 	tmp = nvlist_get_number_array(nvl, name, &elems);
233 
234 	for (size_t i = 0; i < elems && i < maxelems; i++)
235 		numbers[i] = tmp[i];
236 
237 	if (nelems)
238 		*nelems = elems;
239 }
240 
241 static void
pf_nvuint_64_array(const nvlist_t * nvl,const char * name,size_t maxelems,uint64_t * numbers,size_t * nelems)242 pf_nvuint_64_array(const nvlist_t *nvl, const char *name, size_t maxelems,
243     uint64_t *numbers, size_t *nelems)
244 {
245 	const uint64_t *tmp;
246 	size_t elems;
247 
248 	tmp = nvlist_get_number_array(nvl, name, &elems);
249 	assert(elems <= maxelems);
250 
251 	for (size_t i = 0; i < elems; i++)
252 		numbers[i] = tmp[i];
253 
254 	if (nelems)
255 		*nelems = elems;
256 }
257 
258 int
pfctl_startstop(struct pfctl_handle * h,int start)259 pfctl_startstop(struct pfctl_handle *h, int start)
260 {
261 	return (pfctl_do_netlink_cmd(h, start ? PFNL_CMD_START : PFNL_CMD_STOP));
262 }
263 
264 static void
_pfctl_get_status_counters(const nvlist_t * nvl,struct pfctl_status_counters * counters)265 _pfctl_get_status_counters(const nvlist_t *nvl,
266     struct pfctl_status_counters *counters)
267 {
268 	const uint64_t		*ids, *counts;
269 	const char *const	*names;
270 	size_t id_len, counter_len, names_len;
271 
272 	ids = nvlist_get_number_array(nvl, "ids", &id_len);
273 	counts = nvlist_get_number_array(nvl, "counters", &counter_len);
274 	names = nvlist_get_string_array(nvl, "names", &names_len);
275 	assert(id_len == counter_len);
276 	assert(counter_len == names_len);
277 
278 	TAILQ_INIT(counters);
279 
280 	for (size_t i = 0; i < id_len; i++) {
281 		struct pfctl_status_counter *c;
282 
283 		c = malloc(sizeof(*c));
284 		if (c == NULL)
285 			continue;
286 
287 		c->id = ids[i];
288 		c->counter = counts[i];
289 		c->name = strdup(names[i]);
290 
291 		TAILQ_INSERT_TAIL(counters, c, entry);
292 	}
293 }
294 
295 #define	_OUT(_field)	offsetof(struct pfctl_status_counter, _field)
296 static const struct snl_attr_parser ap_counter[] = {
297 	{ .type = PF_C_COUNTER, .off = _OUT(counter), .cb = snl_attr_get_uint64 },
298 	{ .type = PF_C_NAME, .off = _OUT(name), .cb = snl_attr_get_string },
299 	{ .type = PF_C_ID, .off = _OUT(id), .cb = snl_attr_get_uint32 },
300 };
301 SNL_DECLARE_ATTR_PARSER(counter_parser, ap_counter);
302 #undef _OUT
303 
304 static bool
snl_attr_get_counters(struct snl_state * ss,struct nlattr * nla,const void * arg __unused,void * target)305 snl_attr_get_counters(struct snl_state *ss, struct nlattr *nla,
306     const void *arg __unused, void *target)
307 {
308 	struct pfctl_status_counter counter = {};
309 	struct pfctl_status_counter *c;
310 	bool error;
311 
312 	error = snl_parse_header(ss, NLA_DATA(nla), NLA_DATA_LEN(nla), &counter_parser, &counter);
313 	if (! error)
314 		return (error);
315 
316 	c = malloc(sizeof(*c));
317 	if (c == NULL)
318 		return (false);
319 
320 	c->id = counter.id;
321 	c->counter = counter.counter;
322 	c->name = strdup(counter.name);
323 
324 	TAILQ_INSERT_TAIL((struct pfctl_status_counters *)target, c, entry);
325 
326 	return (error);
327 }
328 
329 struct snl_uint64_array {
330 	uint64_t *array;
331 	size_t count;
332 	size_t max;
333 };
334 static bool
snl_attr_get_uint64_element(struct snl_state * ss,struct nlattr * nla,const void * arg,void * target)335 snl_attr_get_uint64_element(struct snl_state *ss, struct nlattr *nla,
336     const void *arg, void *target)
337 {
338 	bool error;
339 	uint64_t value;
340 	struct snl_uint64_array *t = (struct snl_uint64_array *)target;
341 
342 	if (t->count >= t->max)
343 		return (false);
344 
345 	error = snl_attr_get_uint64(ss, nla, arg, &value);
346 	if (! error)
347 		return (error);
348 
349 	t->array[t->count++] = value;
350 
351 	return (true);
352 }
353 
354 static const struct snl_attr_parser ap_array[] = {
355 	{ .cb = snl_attr_get_uint64_element },
356 };
357 SNL_DECLARE_ATTR_PARSER(array_parser, ap_array);
358 static bool
snl_attr_get_uint64_array(struct snl_state * ss,struct nlattr * nla,const void * arg,void * target)359 snl_attr_get_uint64_array(struct snl_state *ss, struct nlattr *nla,
360     const void *arg, void *target)
361 {
362 	struct snl_uint64_array a = {
363 		.array = target,
364 		.count = 0,
365 		.max = (size_t)arg,
366 	};
367 	bool error;
368 
369 	error = snl_parse_header(ss, NLA_DATA(nla), NLA_DATA_LEN(nla), &array_parser, &a);
370 	if (! error)
371 		return (error);
372 
373 	return (true);
374 }
375 
376 #define	_OUT(_field)	offsetof(struct pfctl_status, _field)
377 static const struct snl_attr_parser ap_getstatus[] = {
378 	{ .type = PF_GS_IFNAME, .off = _OUT(ifname), .arg_u32 = IFNAMSIZ, .cb = snl_attr_copy_string },
379 	{ .type = PF_GS_RUNNING, .off = _OUT(running), .cb = snl_attr_get_bool },
380 	{ .type = PF_GS_SINCE, .off = _OUT(since), .cb = snl_attr_get_uint32 },
381 	{ .type = PF_GS_DEBUG, .off = _OUT(debug), .cb = snl_attr_get_uint32 },
382 	{ .type = PF_GS_HOSTID, .off = _OUT(hostid), .cb = snl_attr_get_uint32 },
383 	{ .type = PF_GS_STATES, .off = _OUT(states), .cb = snl_attr_get_uint32 },
384 	{ .type = PF_GS_SRC_NODES, .off = _OUT(src_nodes), .cb = snl_attr_get_uint32 },
385 	{ .type = PF_GS_REASSEMBLE, .off = _OUT(reass), .cb = snl_attr_get_uint32 },
386 	{ .type = PF_GS_SYNCOOKIES_ACTIVE, .off = _OUT(syncookies_active), .cb = snl_attr_get_uint32 },
387 	{ .type = PF_GS_COUNTERS, .off = _OUT(counters), .cb = snl_attr_get_counters },
388 	{ .type = PF_GS_LCOUNTERS, .off = _OUT(lcounters), .cb = snl_attr_get_counters },
389 	{ .type = PF_GS_FCOUNTERS, .off = _OUT(fcounters), .cb = snl_attr_get_counters },
390 	{ .type = PF_GS_SCOUNTERS, .off = _OUT(scounters), .cb = snl_attr_get_counters },
391 	{ .type = PF_GS_CHKSUM, .off = _OUT(pf_chksum), .arg_u32 = PF_MD5_DIGEST_LENGTH, .cb = snl_attr_get_bytes },
392 	{ .type = PF_GS_BCOUNTERS, .off = _OUT(bcounters), .arg_u32 = 2 * 2, .cb = snl_attr_get_uint64_array },
393 	{ .type = PF_GS_PCOUNTERS, .off = _OUT(pcounters), .arg_u32 = 2 * 2 * 2, .cb = snl_attr_get_uint64_array },
394 };
395 static struct snl_field_parser fp_getstatus[] = {};
396 SNL_DECLARE_PARSER(getstatus_parser, struct genlmsghdr, fp_getstatus, ap_getstatus);
397 #undef _OUT
398 
399 struct pfctl_status *
pfctl_get_status_h(struct pfctl_handle * h __unused)400 pfctl_get_status_h(struct pfctl_handle *h __unused)
401 {
402 	struct pfctl_status	*status;
403 	struct snl_errmsg_data e = {};
404 	struct nlmsghdr *hdr;
405 	struct snl_writer nw;
406 	uint32_t seq_id;
407 	int family_id;
408 
409 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
410 	if (family_id == 0)
411 		return (NULL);
412 
413 	snl_init_writer(&h->ss, &nw);
414 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_STATUS);
415 	hdr->nlmsg_flags |= NLM_F_DUMP;
416 
417 	hdr = snl_finalize_msg(&nw);
418 	if (hdr == NULL) {
419 		return (NULL);
420 	}
421 
422 	seq_id = hdr->nlmsg_seq;
423 	if (! snl_send_message(&h->ss, hdr))
424 		return (NULL);
425 
426 	status = calloc(1, sizeof(*status));
427 	if (status == NULL)
428 		return (NULL);
429 	TAILQ_INIT(&status->counters);
430 	TAILQ_INIT(&status->lcounters);
431 	TAILQ_INIT(&status->fcounters);
432 	TAILQ_INIT(&status->scounters);
433 
434 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
435 		if (! snl_parse_nlmsg(&h->ss, hdr, &getstatus_parser, status))
436 			continue;
437 	}
438 
439 	return (status);
440 }
441 
442 struct pfctl_status *
pfctl_get_status(int dev)443 pfctl_get_status(int dev)
444 {
445 	struct pfctl_status	*status;
446 	nvlist_t	*nvl;
447 	size_t		 len;
448 	const void	*chksum;
449 
450 	status = calloc(1, sizeof(*status));
451 	if (status == NULL)
452 		return (NULL);
453 
454 	nvl = nvlist_create(0);
455 
456 	if (pfctl_do_ioctl(dev, DIOCGETSTATUSNV, 4096, &nvl)) {
457 		nvlist_destroy(nvl);
458 		free(status);
459 		return (NULL);
460 	}
461 
462 	status->running = nvlist_get_bool(nvl, "running");
463 	status->since = nvlist_get_number(nvl, "since");
464 	status->debug = nvlist_get_number(nvl, "debug");
465 	status->hostid = ntohl(nvlist_get_number(nvl, "hostid"));
466 	status->states = nvlist_get_number(nvl, "states");
467 	status->src_nodes = nvlist_get_number(nvl, "src_nodes");
468 	status->syncookies_active = nvlist_get_bool(nvl, "syncookies_active");
469 	status->reass = nvlist_get_number(nvl, "reass");
470 
471 	strlcpy(status->ifname, nvlist_get_string(nvl, "ifname"),
472 	    IFNAMSIZ);
473 	chksum = nvlist_get_binary(nvl, "chksum", &len);
474 	assert(len == PF_MD5_DIGEST_LENGTH);
475 	memcpy(status->pf_chksum, chksum, len);
476 
477 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "counters"),
478 	    &status->counters);
479 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "lcounters"),
480 	    &status->lcounters);
481 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "fcounters"),
482 	    &status->fcounters);
483 	_pfctl_get_status_counters(nvlist_get_nvlist(nvl, "scounters"),
484 	    &status->scounters);
485 
486 	pf_nvuint_64_array(nvl, "pcounters", 2 * 2 * 2,
487 	    (uint64_t *)status->pcounters, NULL);
488 	pf_nvuint_64_array(nvl, "bcounters", 2 * 2,
489 	    (uint64_t *)status->bcounters, NULL);
490 
491 	nvlist_destroy(nvl);
492 
493 	return (status);
494 }
495 int
pfctl_clear_status(struct pfctl_handle * h)496 pfctl_clear_status(struct pfctl_handle *h)
497 {
498 	return (pfctl_do_netlink_cmd(h, PFNL_CMD_CLEAR_STATUS));
499 }
500 
501 static uint64_t
_pfctl_status_counter(struct pfctl_status_counters * counters,uint64_t id)502 _pfctl_status_counter(struct pfctl_status_counters *counters, uint64_t id)
503 {
504 	struct pfctl_status_counter *c;
505 
506 	TAILQ_FOREACH(c, counters, entry) {
507 		if (c->id == id)
508 			return (c->counter);
509 	}
510 
511 	return (0);
512 }
513 
514 uint64_t
pfctl_status_counter(struct pfctl_status * status,int id)515 pfctl_status_counter(struct pfctl_status *status, int id)
516 {
517 	return (_pfctl_status_counter(&status->counters, id));
518 }
519 
520 uint64_t
pfctl_status_lcounter(struct pfctl_status * status,int id)521 pfctl_status_lcounter(struct pfctl_status *status, int id)
522 {
523 	return (_pfctl_status_counter(&status->lcounters, id));
524 }
525 
526 uint64_t
pfctl_status_fcounter(struct pfctl_status * status,int id)527 pfctl_status_fcounter(struct pfctl_status *status, int id)
528 {
529 	return (_pfctl_status_counter(&status->fcounters, id));
530 }
531 
532 uint64_t
pfctl_status_scounter(struct pfctl_status * status,int id)533 pfctl_status_scounter(struct pfctl_status *status, int id)
534 {
535 	return (_pfctl_status_counter(&status->scounters, id));
536 }
537 
538 void
pfctl_free_status(struct pfctl_status * status)539 pfctl_free_status(struct pfctl_status *status)
540 {
541 	struct pfctl_status_counter *c, *tmp;
542 
543 	if (status == NULL)
544 		return;
545 
546 	TAILQ_FOREACH_SAFE(c, &status->counters, entry, tmp) {
547 		free(c->name);
548 		free(c);
549 	}
550 	TAILQ_FOREACH_SAFE(c, &status->lcounters, entry, tmp) {
551 		free(c->name);
552 		free(c);
553 	}
554 	TAILQ_FOREACH_SAFE(c, &status->fcounters, entry, tmp) {
555 		free(c->name);
556 		free(c);
557 	}
558 	TAILQ_FOREACH_SAFE(c, &status->scounters, entry, tmp) {
559 		free(c->name);
560 		free(c);
561 	}
562 
563 	free(status);
564 }
565 
566 static void
pfctl_nv_add_addr(nvlist_t * nvparent,const char * name,const struct pf_addr * addr)567 pfctl_nv_add_addr(nvlist_t *nvparent, const char *name,
568     const struct pf_addr *addr)
569 {
570 	nvlist_t *nvl = nvlist_create(0);
571 
572 	nvlist_add_binary(nvl, "addr", addr, sizeof(*addr));
573 
574 	nvlist_add_nvlist(nvparent, name, nvl);
575 	nvlist_destroy(nvl);
576 }
577 
578 static void
pf_nvaddr_to_addr(const nvlist_t * nvl,struct pf_addr * addr)579 pf_nvaddr_to_addr(const nvlist_t *nvl, struct pf_addr *addr)
580 {
581 	size_t len;
582 	const void *data;
583 
584 	data = nvlist_get_binary(nvl, "addr", &len);
585 	assert(len == sizeof(struct pf_addr));
586 	memcpy(addr, data, len);
587 }
588 
589 static void
pfctl_nv_add_addr_wrap(nvlist_t * nvparent,const char * name,const struct pf_addr_wrap * addr)590 pfctl_nv_add_addr_wrap(nvlist_t *nvparent, const char *name,
591     const struct pf_addr_wrap *addr)
592 {
593 	nvlist_t *nvl = nvlist_create(0);
594 
595 	nvlist_add_number(nvl, "type", addr->type);
596 	nvlist_add_number(nvl, "iflags", addr->iflags);
597 	if (addr->type == PF_ADDR_DYNIFTL)
598 		nvlist_add_string(nvl, "ifname", addr->v.ifname);
599 	if (addr->type == PF_ADDR_TABLE)
600 		nvlist_add_string(nvl, "tblname", addr->v.tblname);
601 	pfctl_nv_add_addr(nvl, "addr", &addr->v.a.addr);
602 	pfctl_nv_add_addr(nvl, "mask", &addr->v.a.mask);
603 
604 	nvlist_add_nvlist(nvparent, name, nvl);
605 	nvlist_destroy(nvl);
606 }
607 
608 static void
pf_nvaddr_wrap_to_addr_wrap(const nvlist_t * nvl,struct pf_addr_wrap * addr)609 pf_nvaddr_wrap_to_addr_wrap(const nvlist_t *nvl, struct pf_addr_wrap *addr)
610 {
611 	bzero(addr, sizeof(*addr));
612 
613 	addr->type = nvlist_get_number(nvl, "type");
614 	addr->iflags = nvlist_get_number(nvl, "iflags");
615 	if (addr->type == PF_ADDR_DYNIFTL) {
616 		strlcpy(addr->v.ifname, nvlist_get_string(nvl, "ifname"),
617 		    IFNAMSIZ);
618 		addr->p.dyncnt = nvlist_get_number(nvl, "dyncnt");
619 	}
620 	if (addr->type == PF_ADDR_TABLE) {
621 		strlcpy(addr->v.tblname, nvlist_get_string(nvl, "tblname"),
622 		    PF_TABLE_NAME_SIZE);
623 		addr->p.tblcnt = nvlist_get_number(nvl, "tblcnt");
624 	}
625 
626 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "addr"), &addr->v.a.addr);
627 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "mask"), &addr->v.a.mask);
628 }
629 
630 static void
pfctl_nv_add_rule_addr(nvlist_t * nvparent,const char * name,const struct pf_rule_addr * addr)631 pfctl_nv_add_rule_addr(nvlist_t *nvparent, const char *name,
632     const struct pf_rule_addr *addr)
633 {
634 	uint64_t ports[2];
635 	nvlist_t *nvl = nvlist_create(0);
636 
637 	pfctl_nv_add_addr_wrap(nvl, "addr", &addr->addr);
638 	ports[0] = addr->port[0];
639 	ports[1] = addr->port[1];
640 	nvlist_add_number_array(nvl, "port", ports, 2);
641 	nvlist_add_number(nvl, "neg", addr->neg);
642 	nvlist_add_number(nvl, "port_op", addr->port_op);
643 
644 	nvlist_add_nvlist(nvparent, name, nvl);
645 	nvlist_destroy(nvl);
646 }
647 
648 static void
pf_nvrule_addr_to_rule_addr(const nvlist_t * nvl,struct pf_rule_addr * addr)649 pf_nvrule_addr_to_rule_addr(const nvlist_t *nvl, struct pf_rule_addr *addr)
650 {
651 	pf_nvaddr_wrap_to_addr_wrap(nvlist_get_nvlist(nvl, "addr"), &addr->addr);
652 
653 	pf_nvuint_16_array(nvl, "port", 2, addr->port, NULL);
654 	addr->neg = nvlist_get_number(nvl, "neg");
655 	addr->port_op = nvlist_get_number(nvl, "port_op");
656 }
657 
658 static void
pf_nvmape_to_mape(const nvlist_t * nvl,struct pf_mape_portset * mape)659 pf_nvmape_to_mape(const nvlist_t *nvl, struct pf_mape_portset *mape)
660 {
661 	mape->offset = nvlist_get_number(nvl, "offset");
662 	mape->psidlen = nvlist_get_number(nvl, "psidlen");
663 	mape->psid = nvlist_get_number(nvl, "psid");
664 }
665 
666 static void
pf_nvpool_to_pool(const nvlist_t * nvl,struct pfctl_pool * pool)667 pf_nvpool_to_pool(const nvlist_t *nvl, struct pfctl_pool *pool)
668 {
669 	size_t len;
670 	const void *data;
671 
672 	data = nvlist_get_binary(nvl, "key", &len);
673 	assert(len == sizeof(pool->key));
674 	memcpy(&pool->key, data, len);
675 
676 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "counter"), &pool->counter);
677 
678 	pool->tblidx = nvlist_get_number(nvl, "tblidx");
679 	pf_nvuint_16_array(nvl, "proxy_port", 2, pool->proxy_port, NULL);
680 	pool->opts = nvlist_get_number(nvl, "opts");
681 
682 	if (nvlist_exists_nvlist(nvl, "mape"))
683 		pf_nvmape_to_mape(nvlist_get_nvlist(nvl, "mape"), &pool->mape);
684 }
685 
686 static void
pf_nvrule_uid_to_rule_uid(const nvlist_t * nvl,struct pf_rule_uid * uid)687 pf_nvrule_uid_to_rule_uid(const nvlist_t *nvl, struct pf_rule_uid *uid)
688 {
689 	pf_nvuint_32_array(nvl, "uid", 2, uid->uid, NULL);
690 	uid->op = nvlist_get_number(nvl, "op");
691 }
692 
693 static void
pf_nvdivert_to_divert(const nvlist_t * nvl,struct pfctl_rule * rule)694 pf_nvdivert_to_divert(const nvlist_t *nvl, struct pfctl_rule *rule)
695 {
696 	pf_nvaddr_to_addr(nvlist_get_nvlist(nvl, "addr"), &rule->divert.addr);
697 	rule->divert.port = nvlist_get_number(nvl, "port");
698 }
699 
700 static void
pf_nvrule_to_rule(const nvlist_t * nvl,struct pfctl_rule * rule)701 pf_nvrule_to_rule(const nvlist_t *nvl, struct pfctl_rule *rule)
702 {
703 	const uint64_t *skip;
704 	const char *const *labels;
705 	size_t skipcount, labelcount;
706 
707 	rule->nr = nvlist_get_number(nvl, "nr");
708 
709 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "src"), &rule->src);
710 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "dst"), &rule->dst);
711 
712 	skip = nvlist_get_number_array(nvl, "skip", &skipcount);
713 	assert(skip);
714 	assert(skipcount == PF_SKIP_COUNT);
715 	for (int i = 0; i < PF_SKIP_COUNT; i++)
716 		rule->skip[i].nr = skip[i];
717 
718 	labels = nvlist_get_string_array(nvl, "labels", &labelcount);
719 	assert(labelcount <= PF_RULE_MAX_LABEL_COUNT);
720 	for (size_t i = 0; i < labelcount; i++)
721 		strlcpy(rule->label[i], labels[i], PF_RULE_LABEL_SIZE);
722 	rule->ridentifier = nvlist_get_number(nvl, "ridentifier");
723 	strlcpy(rule->ifname, nvlist_get_string(nvl, "ifname"), IFNAMSIZ);
724 	strlcpy(rule->qname, nvlist_get_string(nvl, "qname"), PF_QNAME_SIZE);
725 	strlcpy(rule->pqname, nvlist_get_string(nvl, "pqname"), PF_QNAME_SIZE);
726 	strlcpy(rule->tagname, nvlist_get_string(nvl, "tagname"),
727 	    PF_TAG_NAME_SIZE);
728 	strlcpy(rule->match_tagname, nvlist_get_string(nvl, "match_tagname"),
729 	    PF_TAG_NAME_SIZE);
730 
731 	strlcpy(rule->overload_tblname, nvlist_get_string(nvl, "overload_tblname"),
732 	    PF_TABLE_NAME_SIZE);
733 
734 	pf_nvpool_to_pool(nvlist_get_nvlist(nvl, "rpool"), &rule->rpool);
735 
736 	rule->evaluations = nvlist_get_number(nvl, "evaluations");
737 	pf_nvuint_64_array(nvl, "packets", 2, rule->packets, NULL);
738 	pf_nvuint_64_array(nvl, "bytes", 2, rule->bytes, NULL);
739 
740 	if (nvlist_exists_number(nvl, "timestamp")) {
741 		rule->last_active_timestamp = nvlist_get_number(nvl, "timestamp");
742 	}
743 
744 	rule->os_fingerprint = nvlist_get_number(nvl, "os_fingerprint");
745 
746 	rule->rtableid = nvlist_get_number(nvl, "rtableid");
747 	pf_nvuint_32_array(nvl, "timeout", PFTM_MAX, rule->timeout, NULL);
748 	rule->max_states = nvlist_get_number(nvl, "max_states");
749 	rule->max_src_nodes = nvlist_get_number(nvl, "max_src_nodes");
750 	rule->max_src_states = nvlist_get_number(nvl, "max_src_states");
751 	rule->max_src_conn = nvlist_get_number(nvl, "max_src_conn");
752 	rule->max_src_conn_rate.limit =
753 	    nvlist_get_number(nvl, "max_src_conn_rate.limit");
754 	rule->max_src_conn_rate.seconds =
755 	    nvlist_get_number(nvl, "max_src_conn_rate.seconds");
756 	rule->qid = nvlist_get_number(nvl, "qid");
757 	rule->pqid = nvlist_get_number(nvl, "pqid");
758 	rule->dnpipe = nvlist_get_number(nvl, "dnpipe");
759 	rule->dnrpipe = nvlist_get_number(nvl, "dnrpipe");
760 	rule->free_flags = nvlist_get_number(nvl, "dnflags");
761 	rule->prob = nvlist_get_number(nvl, "prob");
762 	rule->cuid = nvlist_get_number(nvl, "cuid");
763 	rule->cpid = nvlist_get_number(nvl, "cpid");
764 
765 	rule->return_icmp = nvlist_get_number(nvl, "return_icmp");
766 	rule->return_icmp6 = nvlist_get_number(nvl, "return_icmp6");
767 	rule->max_mss = nvlist_get_number(nvl, "max_mss");
768 	rule->scrub_flags = nvlist_get_number(nvl, "scrub_flags");
769 
770 	pf_nvrule_uid_to_rule_uid(nvlist_get_nvlist(nvl, "uid"), &rule->uid);
771 	pf_nvrule_uid_to_rule_uid(nvlist_get_nvlist(nvl, "gid"),
772 	    (struct pf_rule_uid *)&rule->gid);
773 
774 	rule->rule_flag = nvlist_get_number(nvl, "rule_flag");
775 	rule->action = nvlist_get_number(nvl, "action");
776 	rule->direction = nvlist_get_number(nvl, "direction");
777 	rule->log = nvlist_get_number(nvl, "log");
778 	rule->logif = nvlist_get_number(nvl, "logif");
779 	rule->quick = nvlist_get_number(nvl, "quick");
780 	rule->ifnot = nvlist_get_number(nvl, "ifnot");
781 	rule->match_tag_not = nvlist_get_number(nvl, "match_tag_not");
782 	rule->natpass = nvlist_get_number(nvl, "natpass");
783 
784 	rule->keep_state = nvlist_get_number(nvl, "keep_state");
785 	rule->af = nvlist_get_number(nvl, "af");
786 	rule->proto = nvlist_get_number(nvl, "proto");
787 	rule->type = nvlist_get_number(nvl, "type");
788 	rule->code = nvlist_get_number(nvl, "code");
789 	rule->flags = nvlist_get_number(nvl, "flags");
790 	rule->flagset = nvlist_get_number(nvl, "flagset");
791 	rule->min_ttl = nvlist_get_number(nvl, "min_ttl");
792 	rule->allow_opts = nvlist_get_number(nvl, "allow_opts");
793 	rule->rt = nvlist_get_number(nvl, "rt");
794 	rule->return_ttl  = nvlist_get_number(nvl, "return_ttl");
795 	rule->tos = nvlist_get_number(nvl, "tos");
796 	rule->set_tos = nvlist_get_number(nvl, "set_tos");
797 	rule->anchor_relative = nvlist_get_number(nvl, "anchor_relative");
798 	rule->anchor_wildcard = nvlist_get_number(nvl, "anchor_wildcard");
799 
800 	rule->flush = nvlist_get_number(nvl, "flush");
801 	rule->prio = nvlist_get_number(nvl, "prio");
802 	pf_nvuint_8_array(nvl, "set_prio", 2, rule->set_prio, NULL);
803 
804 	pf_nvdivert_to_divert(nvlist_get_nvlist(nvl, "divert"), rule);
805 
806 	rule->states_cur = nvlist_get_number(nvl, "states_cur");
807 	rule->states_tot = nvlist_get_number(nvl, "states_tot");
808 	rule->src_nodes = nvlist_get_number(nvl, "src_nodes");
809 }
810 
811 static void
pfctl_nveth_addr_to_eth_addr(const nvlist_t * nvl,struct pfctl_eth_addr * addr)812 pfctl_nveth_addr_to_eth_addr(const nvlist_t *nvl, struct pfctl_eth_addr *addr)
813 {
814 	static const u_int8_t EMPTY_MAC[ETHER_ADDR_LEN] = { 0 };
815 	size_t len;
816 	const void *data;
817 
818 	data = nvlist_get_binary(nvl, "addr", &len);
819 	assert(len == sizeof(addr->addr));
820 	memcpy(addr->addr, data, sizeof(addr->addr));
821 
822 	data = nvlist_get_binary(nvl, "mask", &len);
823 	assert(len == sizeof(addr->mask));
824 	memcpy(addr->mask, data, sizeof(addr->mask));
825 
826 	addr->neg = nvlist_get_bool(nvl, "neg");
827 
828 	/* To make checks for 'is this address set?' easier. */
829 	addr->isset = memcmp(addr->addr, EMPTY_MAC, ETHER_ADDR_LEN) != 0;
830 }
831 
832 static nvlist_t *
pfctl_eth_addr_to_nveth_addr(const struct pfctl_eth_addr * addr)833 pfctl_eth_addr_to_nveth_addr(const struct pfctl_eth_addr *addr)
834 {
835 	nvlist_t *nvl;
836 
837 	nvl = nvlist_create(0);
838 	if (nvl == NULL)
839 		return (NULL);
840 
841 	nvlist_add_bool(nvl, "neg", addr->neg);
842 	nvlist_add_binary(nvl, "addr", &addr->addr, ETHER_ADDR_LEN);
843 	nvlist_add_binary(nvl, "mask", &addr->mask, ETHER_ADDR_LEN);
844 
845 	return (nvl);
846 }
847 
848 static void
pfctl_nveth_rule_to_eth_rule(const nvlist_t * nvl,struct pfctl_eth_rule * rule)849 pfctl_nveth_rule_to_eth_rule(const nvlist_t *nvl, struct pfctl_eth_rule *rule)
850 {
851 	const char *const *labels;
852 	size_t labelcount, i;
853 
854 	rule->nr = nvlist_get_number(nvl, "nr");
855 	rule->quick = nvlist_get_bool(nvl, "quick");
856 	strlcpy(rule->ifname, nvlist_get_string(nvl, "ifname"), IFNAMSIZ);
857 	rule->ifnot = nvlist_get_bool(nvl, "ifnot");
858 	rule->direction = nvlist_get_number(nvl, "direction");
859 	rule->proto = nvlist_get_number(nvl, "proto");
860 	strlcpy(rule->match_tagname, nvlist_get_string(nvl, "match_tagname"),
861 	    PF_TAG_NAME_SIZE);
862 	rule->match_tag = nvlist_get_number(nvl, "match_tag");
863 	rule->match_tag_not = nvlist_get_bool(nvl, "match_tag_not");
864 
865 	labels = nvlist_get_string_array(nvl, "labels", &labelcount);
866 	assert(labelcount <= PF_RULE_MAX_LABEL_COUNT);
867 	for (i = 0; i < labelcount; i++)
868 		strlcpy(rule->label[i], labels[i], PF_RULE_LABEL_SIZE);
869 	rule->ridentifier = nvlist_get_number(nvl, "ridentifier");
870 
871 	pfctl_nveth_addr_to_eth_addr(nvlist_get_nvlist(nvl, "src"),
872 	    &rule->src);
873 	pfctl_nveth_addr_to_eth_addr(nvlist_get_nvlist(nvl, "dst"),
874 	    &rule->dst);
875 
876 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "ipsrc"),
877 	    &rule->ipsrc);
878 	pf_nvrule_addr_to_rule_addr(nvlist_get_nvlist(nvl, "ipdst"),
879 	    &rule->ipdst);
880 
881 	rule->evaluations = nvlist_get_number(nvl, "evaluations");
882 	rule->packets[0] = nvlist_get_number(nvl, "packets-in");
883 	rule->packets[1] = nvlist_get_number(nvl, "packets-out");
884 	rule->bytes[0] = nvlist_get_number(nvl, "bytes-in");
885 	rule->bytes[1] = nvlist_get_number(nvl, "bytes-out");
886 
887 	if (nvlist_exists_number(nvl, "timestamp")) {
888 		rule->last_active_timestamp = nvlist_get_number(nvl, "timestamp");
889 	}
890 
891 	strlcpy(rule->qname, nvlist_get_string(nvl, "qname"), PF_QNAME_SIZE);
892 	strlcpy(rule->tagname, nvlist_get_string(nvl, "tagname"),
893 	    PF_TAG_NAME_SIZE);
894 
895 	rule->dnpipe = nvlist_get_number(nvl, "dnpipe");
896 	rule->dnflags = nvlist_get_number(nvl, "dnflags");
897 
898 	rule->anchor_relative = nvlist_get_number(nvl, "anchor_relative");
899 	rule->anchor_wildcard = nvlist_get_number(nvl, "anchor_wildcard");
900 
901 	strlcpy(rule->bridge_to, nvlist_get_string(nvl, "bridge_to"),
902 	    IFNAMSIZ);
903 
904 	rule->action = nvlist_get_number(nvl, "action");
905 }
906 
907 int
pfctl_get_eth_rulesets_info(int dev,struct pfctl_eth_rulesets_info * ri,const char * path)908 pfctl_get_eth_rulesets_info(int dev, struct pfctl_eth_rulesets_info *ri,
909     const char *path)
910 {
911 	nvlist_t *nvl;
912 	int ret;
913 
914 	bzero(ri, sizeof(*ri));
915 
916 	nvl = nvlist_create(0);
917 	nvlist_add_string(nvl, "path", path);
918 
919 	if ((ret = pfctl_do_ioctl(dev, DIOCGETETHRULESETS, 256, &nvl)) != 0)
920 		goto out;
921 
922 	ri->nr = nvlist_get_number(nvl, "nr");
923 
924 out:
925 	nvlist_destroy(nvl);
926 	return (ret);
927 }
928 
929 int
pfctl_get_eth_ruleset(int dev,const char * path,int nr,struct pfctl_eth_ruleset_info * ri)930 pfctl_get_eth_ruleset(int dev, const char *path, int nr,
931     struct pfctl_eth_ruleset_info *ri)
932 {
933 	nvlist_t *nvl;
934 	int ret;
935 
936 	bzero(ri, sizeof(*ri));
937 
938 	nvl = nvlist_create(0);
939 	nvlist_add_string(nvl, "path", path);
940 	nvlist_add_number(nvl, "nr", nr);
941 
942 	if ((ret = pfctl_do_ioctl(dev, DIOCGETETHRULESET, 1024, &nvl)) != 0)
943 		goto out;
944 
945 	ri->nr = nvlist_get_number(nvl, "nr");
946 	strlcpy(ri->path, nvlist_get_string(nvl, "path"), MAXPATHLEN);
947 	strlcpy(ri->name, nvlist_get_string(nvl, "name"),
948 	    PF_ANCHOR_NAME_SIZE);
949 
950 out:
951 	nvlist_destroy(nvl);
952 	return (ret);
953 }
954 
955 int
pfctl_get_eth_rules_info(int dev,struct pfctl_eth_rules_info * rules,const char * path)956 pfctl_get_eth_rules_info(int dev, struct pfctl_eth_rules_info *rules,
957     const char *path)
958 {
959 	nvlist_t *nvl;
960 	int ret;
961 
962 	bzero(rules, sizeof(*rules));
963 
964 	nvl = nvlist_create(0);
965 	nvlist_add_string(nvl, "anchor", path);
966 
967 	if ((ret = pfctl_do_ioctl(dev, DIOCGETETHRULES, 1024, &nvl)) != 0)
968 		goto out;
969 
970 	rules->nr = nvlist_get_number(nvl, "nr");
971 	rules->ticket = nvlist_get_number(nvl, "ticket");
972 
973 out:
974 	nvlist_destroy(nvl);
975 	return (ret);
976 }
977 
978 int
pfctl_get_eth_rule(int dev,uint32_t nr,uint32_t ticket,const char * path,struct pfctl_eth_rule * rule,bool clear,char * anchor_call)979 pfctl_get_eth_rule(int dev, uint32_t nr, uint32_t ticket,
980     const char *path, struct pfctl_eth_rule *rule, bool clear,
981     char *anchor_call)
982 {
983 	nvlist_t *nvl;
984 	int ret;
985 
986 	nvl = nvlist_create(0);
987 
988 	nvlist_add_string(nvl, "anchor", path);
989 	nvlist_add_number(nvl, "ticket", ticket);
990 	nvlist_add_number(nvl, "nr", nr);
991 	nvlist_add_bool(nvl, "clear", clear);
992 
993 	if ((ret = pfctl_do_ioctl(dev, DIOCGETETHRULE, 4096, &nvl)) != 0)
994 		goto out;
995 
996 	pfctl_nveth_rule_to_eth_rule(nvl, rule);
997 
998 	if (anchor_call)
999 		strlcpy(anchor_call, nvlist_get_string(nvl, "anchor_call"),
1000 		    MAXPATHLEN);
1001 
1002 out:
1003 	nvlist_destroy(nvl);
1004 	return (ret);
1005 }
1006 
1007 int
pfctl_add_eth_rule(int dev,const struct pfctl_eth_rule * r,const char * anchor,const char * anchor_call,uint32_t ticket)1008 pfctl_add_eth_rule(int dev, const struct pfctl_eth_rule *r, const char *anchor,
1009     const char *anchor_call, uint32_t ticket)
1010 {
1011 	struct pfioc_nv nv;
1012 	nvlist_t *nvl, *addr;
1013 	void *packed;
1014 	int error = 0;
1015 	size_t labelcount, size;
1016 
1017 	nvl = nvlist_create(0);
1018 
1019 	nvlist_add_number(nvl, "ticket", ticket);
1020 	nvlist_add_string(nvl, "anchor", anchor);
1021 	nvlist_add_string(nvl, "anchor_call", anchor_call);
1022 
1023 	nvlist_add_number(nvl, "nr", r->nr);
1024 	nvlist_add_bool(nvl, "quick", r->quick);
1025 	nvlist_add_string(nvl, "ifname", r->ifname);
1026 	nvlist_add_bool(nvl, "ifnot", r->ifnot);
1027 	nvlist_add_number(nvl, "direction", r->direction);
1028 	nvlist_add_number(nvl, "proto", r->proto);
1029 	nvlist_add_string(nvl, "match_tagname", r->match_tagname);
1030 	nvlist_add_bool(nvl, "match_tag_not", r->match_tag_not);
1031 
1032 	addr = pfctl_eth_addr_to_nveth_addr(&r->src);
1033 	if (addr == NULL) {
1034 		nvlist_destroy(nvl);
1035 		return (ENOMEM);
1036 	}
1037 	nvlist_add_nvlist(nvl, "src", addr);
1038 	nvlist_destroy(addr);
1039 
1040 	addr = pfctl_eth_addr_to_nveth_addr(&r->dst);
1041 	if (addr == NULL) {
1042 		nvlist_destroy(nvl);
1043 		return (ENOMEM);
1044 	}
1045 	nvlist_add_nvlist(nvl, "dst", addr);
1046 	nvlist_destroy(addr);
1047 
1048 	pfctl_nv_add_rule_addr(nvl, "ipsrc", &r->ipsrc);
1049 	pfctl_nv_add_rule_addr(nvl, "ipdst", &r->ipdst);
1050 
1051 	labelcount = 0;
1052 	while (labelcount < PF_RULE_MAX_LABEL_COUNT &&
1053 	    r->label[labelcount][0] != 0) {
1054 		nvlist_append_string_array(nvl, "labels",
1055 		    r->label[labelcount]);
1056 		labelcount++;
1057 	}
1058 	nvlist_add_number(nvl, "ridentifier", r->ridentifier);
1059 
1060 	nvlist_add_string(nvl, "qname", r->qname);
1061 	nvlist_add_string(nvl, "tagname", r->tagname);
1062 	nvlist_add_number(nvl, "dnpipe", r->dnpipe);
1063 	nvlist_add_number(nvl, "dnflags", r->dnflags);
1064 
1065 	nvlist_add_string(nvl, "bridge_to", r->bridge_to);
1066 
1067 	nvlist_add_number(nvl, "action", r->action);
1068 
1069 	packed = nvlist_pack(nvl, &size);
1070 	if (packed == NULL) {
1071 		nvlist_destroy(nvl);
1072 		return (ENOMEM);
1073 	}
1074 
1075 	nv.len = size;
1076 	nv.size = size;
1077 	nv.data = packed;
1078 
1079 	if (ioctl(dev, DIOCADDETHRULE, &nv) != 0)
1080 		error = errno;
1081 
1082 	free(packed);
1083 	nvlist_destroy(nvl);
1084 
1085 	return (error);
1086 }
1087 
1088 static void
snl_add_msg_attr_addr_wrap(struct snl_writer * nw,uint32_t type,const struct pf_addr_wrap * addr)1089 snl_add_msg_attr_addr_wrap(struct snl_writer *nw, uint32_t type, const struct pf_addr_wrap *addr)
1090 {
1091 	int off;
1092 
1093 	off = snl_add_msg_attr_nested(nw, type);
1094 
1095 	snl_add_msg_attr_ip6(nw, PF_AT_ADDR, &addr->v.a.addr.v6);
1096 	snl_add_msg_attr_ip6(nw, PF_AT_MASK, &addr->v.a.mask.v6);
1097 
1098 	if (addr->type == PF_ADDR_DYNIFTL)
1099 		snl_add_msg_attr_string(nw, PF_AT_IFNAME, addr->v.ifname);
1100 	if (addr->type == PF_ADDR_TABLE)
1101 		snl_add_msg_attr_string(nw, PF_AT_TABLENAME, addr->v.tblname);
1102 	snl_add_msg_attr_u8(nw, PF_AT_TYPE, addr->type);
1103 	snl_add_msg_attr_u8(nw, PF_AT_IFLAGS, addr->iflags);
1104 
1105 	snl_end_attr_nested(nw, off);
1106 }
1107 
1108 static void
snl_add_msg_attr_pool_addr(struct snl_writer * nw,uint32_t type,const struct pf_pooladdr * pa)1109 snl_add_msg_attr_pool_addr(struct snl_writer *nw, uint32_t type, const struct pf_pooladdr *pa)
1110 {
1111 	int off;
1112 
1113 	off = snl_add_msg_attr_nested(nw, type);
1114 
1115 	snl_add_msg_attr_string(nw, PF_PA_IFNAME, pa->ifname);
1116 	snl_add_msg_attr_addr_wrap(nw, PF_PA_ADDR, &pa->addr);
1117 
1118 	snl_end_attr_nested(nw, off);
1119 }
1120 
1121 static void
snl_add_msg_attr_rule_addr(struct snl_writer * nw,uint32_t type,const struct pf_rule_addr * addr)1122 snl_add_msg_attr_rule_addr(struct snl_writer *nw, uint32_t type, const struct pf_rule_addr *addr)
1123 {
1124 	int off;
1125 
1126 	off = snl_add_msg_attr_nested(nw, type);
1127 
1128 	snl_add_msg_attr_addr_wrap(nw, PF_RAT_ADDR, &addr->addr);
1129 	snl_add_msg_attr_u16(nw, PF_RAT_SRC_PORT, addr->port[0]);
1130 	snl_add_msg_attr_u16(nw, PF_RAT_DST_PORT, addr->port[1]);
1131 	snl_add_msg_attr_u8(nw, PF_RAT_NEG, addr->neg);
1132 	snl_add_msg_attr_u8(nw, PF_RAT_OP, addr->port_op);
1133 
1134 	snl_end_attr_nested(nw, off);
1135 }
1136 
1137 static void
snl_add_msg_attr_rule_labels(struct snl_writer * nw,uint32_t type,const char labels[PF_RULE_MAX_LABEL_COUNT][PF_RULE_LABEL_SIZE])1138 snl_add_msg_attr_rule_labels(struct snl_writer *nw, uint32_t type, const char labels[PF_RULE_MAX_LABEL_COUNT][PF_RULE_LABEL_SIZE])
1139 {
1140 	int off, i = 0;
1141 
1142 	off = snl_add_msg_attr_nested(nw, type);
1143 
1144 	while (i < PF_RULE_MAX_LABEL_COUNT &&
1145 	    labels[i][0] != 0) {
1146 		snl_add_msg_attr_string(nw, PF_LT_LABEL, labels[i]);
1147 		i++;
1148 	}
1149 
1150 	snl_end_attr_nested(nw, off);
1151 }
1152 
1153 static void
snl_add_msg_attr_mape(struct snl_writer * nw,uint32_t type,const struct pf_mape_portset * me)1154 snl_add_msg_attr_mape(struct snl_writer *nw, uint32_t type, const struct pf_mape_portset *me)
1155 {
1156 	int off;
1157 
1158 	off = snl_add_msg_attr_nested(nw, type);
1159 
1160 	snl_add_msg_attr_u8(nw, PF_MET_OFFSET, me->offset);
1161 	snl_add_msg_attr_u8(nw, PF_MET_PSID_LEN, me->psidlen);
1162 	snl_add_msg_attr_u16(nw, PF_MET_PSID, me->psid);
1163 
1164 	snl_end_attr_nested(nw, off);
1165 }
1166 
1167 static void
snl_add_msg_attr_rpool(struct snl_writer * nw,uint32_t type,const struct pfctl_pool * pool)1168 snl_add_msg_attr_rpool(struct snl_writer *nw, uint32_t type, const struct pfctl_pool *pool)
1169 {
1170 	int off;
1171 
1172 	off = snl_add_msg_attr_nested(nw, type);
1173 
1174 	snl_add_msg_attr(nw, PF_PT_KEY, sizeof(pool->key), &pool->key);
1175 	snl_add_msg_attr_ip6(nw, PF_PT_COUNTER, &pool->counter.v6);
1176 	snl_add_msg_attr_u32(nw, PF_PT_TBLIDX, pool->tblidx);
1177 	snl_add_msg_attr_u16(nw, PF_PT_PROXY_SRC_PORT, pool->proxy_port[0]);
1178 	snl_add_msg_attr_u16(nw, PF_PT_PROXY_DST_PORT, pool->proxy_port[1]);
1179 	snl_add_msg_attr_u8(nw, PF_PT_OPTS, pool->opts);
1180 	snl_add_msg_attr_mape(nw, PF_PT_MAPE, &pool->mape);
1181 
1182 	snl_end_attr_nested(nw, off);
1183 }
1184 
1185 static void
snl_add_msg_attr_timeouts(struct snl_writer * nw,uint32_t type,const uint32_t * timeouts)1186 snl_add_msg_attr_timeouts(struct snl_writer *nw, uint32_t type, const uint32_t *timeouts)
1187 {
1188 	int off;
1189 
1190 	off = snl_add_msg_attr_nested(nw, type);
1191 
1192 	for (int i = 0; i < PFTM_MAX; i++)
1193 		snl_add_msg_attr_u32(nw, PF_TT_TIMEOUT, timeouts[i]);
1194 
1195 	snl_end_attr_nested(nw, off);
1196 }
1197 
1198 static void
snl_add_msg_attr_uid(struct snl_writer * nw,uint32_t type,const struct pf_rule_uid * uid)1199 snl_add_msg_attr_uid(struct snl_writer *nw, uint32_t type, const struct pf_rule_uid *uid)
1200 {
1201 	int off;
1202 
1203 	off = snl_add_msg_attr_nested(nw, type);
1204 
1205 	snl_add_msg_attr_u32(nw, PF_RUT_UID_LOW, uid->uid[0]);
1206 	snl_add_msg_attr_u32(nw, PF_RUT_UID_HIGH, uid->uid[1]);
1207 	snl_add_msg_attr_u8(nw, PF_RUT_OP, uid->op);
1208 
1209 	snl_end_attr_nested(nw, off);
1210 }
1211 
1212 static void
snl_add_msg_attr_pf_rule(struct snl_writer * nw,uint32_t type,const struct pfctl_rule * r)1213 snl_add_msg_attr_pf_rule(struct snl_writer *nw, uint32_t type, const struct pfctl_rule *r)
1214 {
1215 	int off;
1216 
1217 	off = snl_add_msg_attr_nested(nw, type);
1218 
1219 	snl_add_msg_attr_rule_addr(nw, PF_RT_SRC, &r->src);
1220 	snl_add_msg_attr_rule_addr(nw, PF_RT_DST, &r->dst);
1221 	snl_add_msg_attr_rule_labels(nw, PF_RT_LABELS, r->label);
1222 	snl_add_msg_attr_u32(nw, PF_RT_RIDENTIFIER, r->ridentifier);
1223 	snl_add_msg_attr_string(nw, PF_RT_IFNAME, r->ifname);
1224 	snl_add_msg_attr_string(nw, PF_RT_QNAME, r->qname);
1225 	snl_add_msg_attr_string(nw, PF_RT_PQNAME, r->pqname);
1226 	snl_add_msg_attr_string(nw, PF_RT_TAGNAME, r->tagname);
1227 	snl_add_msg_attr_string(nw, PF_RT_MATCH_TAGNAME, r->match_tagname);
1228 	snl_add_msg_attr_string(nw, PF_RT_OVERLOAD_TBLNAME, r->overload_tblname);
1229 	snl_add_msg_attr_rpool(nw, PF_RT_RPOOL, &r->rpool);
1230 	snl_add_msg_attr_u32(nw, PF_RT_OS_FINGERPRINT, r->os_fingerprint);
1231 	snl_add_msg_attr_u32(nw, PF_RT_RTABLEID, r->rtableid);
1232 	snl_add_msg_attr_timeouts(nw, PF_RT_TIMEOUT, r->timeout);
1233 	snl_add_msg_attr_u32(nw, PF_RT_MAX_STATES, r->max_states);
1234 	snl_add_msg_attr_u32(nw, PF_RT_MAX_SRC_NODES, r->max_src_nodes);
1235 	snl_add_msg_attr_u32(nw, PF_RT_MAX_SRC_STATES, r->max_src_states);
1236 	snl_add_msg_attr_u32(nw, PF_RT_MAX_SRC_CONN, r->max_src_conn);
1237 	snl_add_msg_attr_u32(nw, PF_RT_MAX_SRC_CONN_RATE_LIMIT, r->max_src_conn_rate.limit);
1238 	snl_add_msg_attr_u32(nw, PF_RT_MAX_SRC_CONN_RATE_SECS, r->max_src_conn_rate.seconds);
1239 
1240 	snl_add_msg_attr_u16(nw, PF_RT_DNPIPE, r->dnpipe);
1241 	snl_add_msg_attr_u16(nw, PF_RT_DNRPIPE, r->dnrpipe);
1242 	snl_add_msg_attr_u32(nw, PF_RT_DNFLAGS, r->free_flags);
1243 
1244 	snl_add_msg_attr_u32(nw, PF_RT_NR, r->nr);
1245 	snl_add_msg_attr_u32(nw, PF_RT_PROB, r->prob);
1246 	snl_add_msg_attr_u32(nw, PF_RT_CUID, r->cuid);
1247 	snl_add_msg_attr_u32(nw, PF_RT_CPID, r->cpid);
1248 
1249 	snl_add_msg_attr_u16(nw, PF_RT_RETURN_ICMP, r->return_icmp);
1250 	snl_add_msg_attr_u16(nw, PF_RT_RETURN_ICMP6, r->return_icmp6);
1251 	snl_add_msg_attr_u16(nw, PF_RT_MAX_MSS, r->max_mss);
1252 	snl_add_msg_attr_u16(nw, PF_RT_SCRUB_FLAGS, r->scrub_flags);
1253 
1254 	snl_add_msg_attr_uid(nw, PF_RT_UID, &r->uid);
1255 	snl_add_msg_attr_uid(nw, PF_RT_GID, (const struct pf_rule_uid *)&r->gid);
1256 	snl_add_msg_attr_string(nw, PF_RT_RCV_IFNAME, r->rcv_ifname);
1257 
1258 	snl_add_msg_attr_u32(nw, PF_RT_RULE_FLAG, r->rule_flag);
1259 	snl_add_msg_attr_u8(nw, PF_RT_ACTION, r->action);
1260 	snl_add_msg_attr_u8(nw, PF_RT_DIRECTION, r->direction);
1261 	snl_add_msg_attr_u8(nw, PF_RT_LOG, r->log);
1262 	snl_add_msg_attr_u8(nw, PF_RT_LOGIF, r->logif);
1263 	snl_add_msg_attr_u8(nw, PF_RT_QUICK, r->quick);
1264 	snl_add_msg_attr_u8(nw, PF_RT_IF_NOT, r->ifnot);
1265 	snl_add_msg_attr_u8(nw, PF_RT_MATCH_TAG_NOT, r->match_tag_not);
1266 	snl_add_msg_attr_u8(nw, PF_RT_NATPASS, r->natpass);
1267 	snl_add_msg_attr_u8(nw, PF_RT_KEEP_STATE, r->keep_state);
1268 	snl_add_msg_attr_u8(nw, PF_RT_AF, r->af);
1269 	snl_add_msg_attr_u8(nw, PF_RT_PROTO, r->proto);
1270 	snl_add_msg_attr_u8(nw, PF_RT_TYPE, r->type);
1271 	snl_add_msg_attr_u8(nw, PF_RT_CODE, r->code);
1272 	snl_add_msg_attr_u8(nw, PF_RT_FLAGS, r->flags);
1273 	snl_add_msg_attr_u8(nw, PF_RT_FLAGSET, r->flagset);
1274 	snl_add_msg_attr_u8(nw, PF_RT_MIN_TTL, r->min_ttl);
1275 	snl_add_msg_attr_u8(nw, PF_RT_ALLOW_OPTS, r->allow_opts);
1276 	snl_add_msg_attr_u8(nw, PF_RT_RT, r->rt);
1277 	snl_add_msg_attr_u8(nw, PF_RT_RETURN_TTL, r->return_ttl);
1278 	snl_add_msg_attr_u8(nw, PF_RT_TOS, r->tos);
1279 	snl_add_msg_attr_u8(nw, PF_RT_SET_TOS, r->set_tos);
1280 
1281 	snl_add_msg_attr_u8(nw, PF_RT_ANCHOR_RELATIVE, r->anchor_relative);
1282 	snl_add_msg_attr_u8(nw, PF_RT_ANCHOR_WILDCARD, r->anchor_wildcard);
1283 	snl_add_msg_attr_u8(nw, PF_RT_FLUSH, r->flush);
1284 	snl_add_msg_attr_u8(nw, PF_RT_PRIO, r->prio);
1285 	snl_add_msg_attr_u8(nw, PF_RT_SET_PRIO, r->set_prio[0]);
1286 	snl_add_msg_attr_u8(nw, PF_RT_SET_PRIO_REPLY, r->set_prio[1]);
1287 
1288 	snl_add_msg_attr_ip6(nw, PF_RT_DIVERT_ADDRESS, &r->divert.addr.v6);
1289 	snl_add_msg_attr_u16(nw, PF_RT_DIVERT_PORT, r->divert.port);
1290 
1291 	snl_end_attr_nested(nw, off);
1292 }
1293 
1294 int
pfctl_add_rule(int dev __unused,const struct pfctl_rule * r,const char * anchor,const char * anchor_call,uint32_t ticket,uint32_t pool_ticket)1295 pfctl_add_rule(int dev __unused, const struct pfctl_rule *r, const char *anchor,
1296     const char *anchor_call, uint32_t ticket, uint32_t pool_ticket)
1297 {
1298 	struct pfctl_handle *h;
1299 	int ret;
1300 
1301 	h = pfctl_open(PF_DEVICE);
1302 	if (h == NULL)
1303 		return (ENODEV);
1304 
1305 	ret = pfctl_add_rule_h(h, r, anchor, anchor_call, ticket, pool_ticket);
1306 
1307 	pfctl_close(h);
1308 
1309 	return (ret);
1310 }
1311 
1312 int
pfctl_add_rule_h(struct pfctl_handle * h,const struct pfctl_rule * r,const char * anchor,const char * anchor_call,uint32_t ticket,uint32_t pool_ticket)1313 pfctl_add_rule_h(struct pfctl_handle *h, const struct pfctl_rule *r,
1314 	    const char *anchor, const char *anchor_call, uint32_t ticket,
1315 	    uint32_t pool_ticket)
1316 {
1317 	struct snl_writer nw;
1318 	struct snl_errmsg_data e = {};
1319 	struct nlmsghdr *hdr;
1320 	uint32_t seq_id;
1321 	int family_id;
1322 
1323 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
1324 	if (family_id == 0)
1325 		return (ENOTSUP);
1326 
1327 	snl_init_writer(&h->ss, &nw);
1328 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_ADDRULE);
1329 	hdr->nlmsg_flags |= NLM_F_DUMP;
1330 	snl_add_msg_attr_u32(&nw, PF_ART_TICKET, ticket);
1331 	snl_add_msg_attr_u32(&nw, PF_ART_POOL_TICKET, pool_ticket);
1332 	snl_add_msg_attr_string(&nw, PF_ART_ANCHOR, anchor);
1333 	snl_add_msg_attr_string(&nw, PF_ART_ANCHOR_CALL, anchor_call);
1334 
1335 	snl_add_msg_attr_pf_rule(&nw, PF_ART_RULE, r);
1336 
1337 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
1338 		return (ENXIO);
1339 
1340 	seq_id = hdr->nlmsg_seq;
1341 
1342 	if (! snl_send_message(&h->ss, hdr))
1343 		return (ENXIO);
1344 
1345 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
1346 	}
1347 
1348 	return (e.error);
1349 }
1350 
1351 #define	_IN(_field)	offsetof(struct genlmsghdr, _field)
1352 #define	_OUT(_field)	offsetof(struct pfctl_rules_info, _field)
1353 static struct snl_attr_parser ap_getrules[] = {
1354 	{ .type = PF_GR_NR, .off = _OUT(nr), .cb = snl_attr_get_uint32 },
1355 	{ .type = PF_GR_TICKET, .off = _OUT(ticket), .cb = snl_attr_get_uint32 },
1356 };
1357 static struct snl_field_parser fp_getrules[] = {
1358 };
1359 #undef _IN
1360 #undef _OUT
1361 SNL_DECLARE_PARSER(getrules_parser, struct genlmsghdr, fp_getrules, ap_getrules);
1362 
1363 int
pfctl_get_rules_info_h(struct pfctl_handle * h,struct pfctl_rules_info * rules,uint32_t ruleset,const char * path)1364 pfctl_get_rules_info_h(struct pfctl_handle *h, struct pfctl_rules_info *rules, uint32_t ruleset,
1365     const char *path)
1366 {
1367 	struct snl_errmsg_data e = {};
1368 	struct nlmsghdr *hdr;
1369 	struct snl_writer nw;
1370 	uint32_t seq_id;
1371 	int family_id;
1372 
1373 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
1374 	if (family_id == 0)
1375 		return (ENOTSUP);
1376 
1377 	snl_init_writer(&h->ss, &nw);
1378 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GETRULES);
1379 	hdr->nlmsg_flags |= NLM_F_DUMP;
1380 
1381 	snl_add_msg_attr_string(&nw, PF_GR_ANCHOR, path);
1382 	snl_add_msg_attr_u8(&nw, PF_GR_ACTION, ruleset);
1383 
1384 	hdr = snl_finalize_msg(&nw);
1385 	if (hdr == NULL)
1386 		return (ENOMEM);
1387 
1388 	seq_id = hdr->nlmsg_seq;
1389 	if (! snl_send_message(&h->ss, hdr))
1390 		return (ENXIO);
1391 
1392 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
1393 		if (! snl_parse_nlmsg(&h->ss, hdr, &getrules_parser, rules))
1394 			continue;
1395 	}
1396 
1397 	return (e.error);
1398 }
1399 
1400 int
pfctl_get_rules_info(int dev __unused,struct pfctl_rules_info * rules,uint32_t ruleset,const char * path)1401 pfctl_get_rules_info(int dev __unused, struct pfctl_rules_info *rules, uint32_t ruleset,
1402     const char *path)
1403 {
1404 	struct pfctl_handle *h;
1405 	int error;
1406 
1407 	h = pfctl_open(PF_DEVICE);
1408 	if (h == NULL)
1409 		return (ENOTSUP);
1410 	error = pfctl_get_rules_info_h(h, rules, ruleset, path);
1411 	pfctl_close(h);
1412 
1413 	return (error);
1414 }
1415 
1416 int
pfctl_get_rule_h(struct pfctl_handle * h,uint32_t nr,uint32_t ticket,const char * anchor,uint32_t ruleset,struct pfctl_rule * rule,char * anchor_call)1417 pfctl_get_rule_h(struct pfctl_handle *h, uint32_t nr, uint32_t ticket, const char *anchor,
1418     uint32_t ruleset, struct pfctl_rule *rule, char *anchor_call)
1419 {
1420 	return (pfctl_get_clear_rule_h(h, nr, ticket, anchor, ruleset, rule,
1421 	    anchor_call, false));
1422 }
1423 
1424 int
pfctl_get_rule(int dev,uint32_t nr,uint32_t ticket,const char * anchor,uint32_t ruleset,struct pfctl_rule * rule,char * anchor_call)1425 pfctl_get_rule(int dev, uint32_t nr, uint32_t ticket, const char *anchor,
1426     uint32_t ruleset, struct pfctl_rule *rule, char *anchor_call)
1427 {
1428 	return (pfctl_get_clear_rule(dev, nr, ticket, anchor, ruleset, rule,
1429 	    anchor_call, false));
1430 }
1431 
1432 #define _OUT(_field)	offsetof(struct pf_addr_wrap, _field)
1433 static const struct snl_attr_parser ap_addr_wrap[] = {
1434 	{ .type = PF_AT_ADDR, .off = _OUT(v.a.addr), .cb = snl_attr_get_in6_addr },
1435 	{ .type = PF_AT_MASK, .off = _OUT(v.a.mask), .cb = snl_attr_get_in6_addr },
1436 	{ .type = PF_AT_IFNAME, .off = _OUT(v.ifname), .arg = (void *)IFNAMSIZ,.cb = snl_attr_copy_string },
1437 	{ .type = PF_AT_TABLENAME, .off = _OUT(v.tblname), .arg = (void *)PF_TABLE_NAME_SIZE, .cb = snl_attr_copy_string },
1438 	{ .type = PF_AT_TYPE, .off = _OUT(type), .cb = snl_attr_get_uint8 },
1439 	{ .type = PF_AT_IFLAGS, .off = _OUT(iflags), .cb = snl_attr_get_uint8 },
1440 	{ .type = PF_AT_TBLCNT, .off = _OUT(p.tblcnt), .cb = snl_attr_get_uint32 },
1441 	{ .type = PF_AT_DYNCNT, .off = _OUT(p.dyncnt), .cb = snl_attr_get_uint32 },
1442 };
1443 SNL_DECLARE_ATTR_PARSER(addr_wrap_parser, ap_addr_wrap);
1444 #undef _OUT
1445 
1446 #define _OUT(_field)	offsetof(struct pf_rule_addr, _field)
1447 static struct snl_attr_parser ap_rule_addr[] = {
1448 	{ .type = PF_RAT_ADDR, .off = _OUT(addr), .arg = &addr_wrap_parser, .cb = snl_attr_get_nested },
1449 	{ .type = PF_RAT_SRC_PORT, .off = _OUT(port[0]), .cb = snl_attr_get_uint16 },
1450 	{ .type = PF_RAT_DST_PORT, .off = _OUT(port[1]), .cb = snl_attr_get_uint16 },
1451 	{ .type = PF_RAT_NEG, .off = _OUT(neg), .cb = snl_attr_get_uint8 },
1452 	{ .type = PF_RAT_OP, .off = _OUT(port_op), .cb = snl_attr_get_uint8 },
1453 };
1454 #undef _OUT
1455 SNL_DECLARE_ATTR_PARSER(rule_addr_parser, ap_rule_addr);
1456 
1457 struct snl_parsed_labels
1458 {
1459 	char		labels[PF_RULE_MAX_LABEL_COUNT][PF_RULE_LABEL_SIZE];
1460 	uint32_t	i;
1461 };
1462 
1463 static bool
snl_attr_get_pf_rule_labels(struct snl_state * ss,struct nlattr * nla,const void * arg __unused,void * target)1464 snl_attr_get_pf_rule_labels(struct snl_state *ss, struct nlattr *nla,
1465     const void *arg __unused, void *target)
1466 {
1467 	struct snl_parsed_labels *l = (struct snl_parsed_labels *)target;
1468 	bool ret;
1469 
1470 	if (l->i >= PF_RULE_MAX_LABEL_COUNT)
1471 		return (E2BIG);
1472 
1473 	ret = snl_attr_copy_string(ss, nla, (void *)PF_RULE_LABEL_SIZE,
1474 	    l->labels[l->i]);
1475 	if (ret)
1476 		l->i++;
1477 
1478 	return (ret);
1479 }
1480 
1481 #define _OUT(_field)	offsetof(struct nl_parsed_labels, _field)
1482 static const struct snl_attr_parser ap_labels[] = {
1483 	{ .type = PF_LT_LABEL, .off = 0, .cb = snl_attr_get_pf_rule_labels },
1484 };
1485 SNL_DECLARE_ATTR_PARSER(rule_labels_parser, ap_labels);
1486 #undef _OUT
1487 
1488 static bool
snl_attr_get_nested_pf_rule_labels(struct snl_state * ss,struct nlattr * nla,const void * arg __unused,void * target)1489 snl_attr_get_nested_pf_rule_labels(struct snl_state *ss, struct nlattr *nla,
1490     const void *arg __unused, void *target)
1491 {
1492 	struct snl_parsed_labels parsed_labels = { };
1493 	bool error;
1494 
1495 	/* Assumes target points to the beginning of the structure */
1496 	error = snl_parse_header(ss, NLA_DATA(nla), NLA_DATA_LEN(nla), &rule_labels_parser, &parsed_labels);
1497 	if (! error)
1498 		return (error);
1499 
1500 	memcpy(target, parsed_labels.labels, sizeof(parsed_labels.labels));
1501 
1502 	return (true);
1503 }
1504 
1505 #define _OUT(_field)	offsetof(struct pf_mape_portset, _field)
1506 static const struct snl_attr_parser ap_mape_portset[] = {
1507 	{ .type = PF_MET_OFFSET, .off = _OUT(offset), .cb = snl_attr_get_uint8 },
1508 	{ .type = PF_MET_PSID_LEN, .off = _OUT(psidlen), .cb = snl_attr_get_uint8 },
1509 	{. type = PF_MET_PSID, .off = _OUT(psid), .cb = snl_attr_get_uint16 },
1510 };
1511 SNL_DECLARE_ATTR_PARSER(mape_portset_parser, ap_mape_portset);
1512 #undef _OUT
1513 
1514 #define _OUT(_field)	offsetof(struct pfctl_pool, _field)
1515 static const struct snl_attr_parser ap_pool[] = {
1516 	{ .type = PF_PT_KEY, .off = _OUT(key), .arg = (void *)sizeof(struct pf_poolhashkey), .cb = snl_attr_get_bytes },
1517 	{ .type = PF_PT_COUNTER, .off = _OUT(counter), .cb = snl_attr_get_in6_addr },
1518 	{ .type = PF_PT_TBLIDX, .off = _OUT(tblidx), .cb = snl_attr_get_uint32 },
1519 	{ .type = PF_PT_PROXY_SRC_PORT, .off = _OUT(proxy_port[0]), .cb = snl_attr_get_uint16 },
1520 	{ .type = PF_PT_PROXY_DST_PORT, .off = _OUT(proxy_port[1]), .cb = snl_attr_get_uint16 },
1521 	{ .type = PF_PT_OPTS, .off = _OUT(opts), .cb = snl_attr_get_uint8 },
1522 	{ .type = PF_PT_MAPE, .off = _OUT(mape), .arg = &mape_portset_parser, .cb = snl_attr_get_nested },
1523 };
1524 SNL_DECLARE_ATTR_PARSER(pool_parser, ap_pool);
1525 #undef _OUT
1526 
1527 struct nl_parsed_timeouts
1528 {
1529 	uint32_t	timeouts[PFTM_MAX];
1530 	uint32_t	i;
1531 };
1532 
1533 static bool
snl_attr_get_pf_timeout(struct snl_state * ss,struct nlattr * nla,const void * arg __unused,void * target)1534 snl_attr_get_pf_timeout(struct snl_state *ss, struct nlattr *nla,
1535     const void *arg __unused, void *target)
1536 {
1537 	struct nl_parsed_timeouts *t = (struct nl_parsed_timeouts *)target;
1538 	bool ret;
1539 
1540 	if (t->i >= PFTM_MAX)
1541 		return (E2BIG);
1542 
1543 	ret = snl_attr_get_uint32(ss, nla, NULL, &t->timeouts[t->i]);
1544 	if (ret)
1545 		t->i++;
1546 
1547 	return (ret);
1548 }
1549 
1550 #define _OUT(_field)	offsetof(struct nl_parsed_timeout, _field)
1551 static const struct snl_attr_parser ap_timeouts[] = {
1552 	{ .type = PF_TT_TIMEOUT, .off = 0, .cb = snl_attr_get_pf_timeout },
1553 };
1554 SNL_DECLARE_ATTR_PARSER(timeout_parser, ap_timeouts);
1555 #undef _OUT
1556 
1557 static bool
snl_attr_get_nested_timeouts(struct snl_state * ss,struct nlattr * nla,const void * arg __unused,void * target)1558 snl_attr_get_nested_timeouts(struct snl_state *ss, struct nlattr *nla,
1559     const void *arg __unused, void *target)
1560 {
1561 	struct nl_parsed_timeouts parsed_timeouts = { };
1562 	bool error;
1563 
1564 	/* Assumes target points to the beginning of the structure */
1565 	error = snl_parse_header(ss, NLA_DATA(nla), NLA_DATA_LEN(nla), &timeout_parser, &parsed_timeouts);
1566 	if (! error)
1567 		return (error);
1568 
1569 	memcpy(target, parsed_timeouts.timeouts, sizeof(parsed_timeouts.timeouts));
1570 
1571 	return (true);
1572 }
1573 
1574 #define _OUT(_field)	offsetof(struct pf_rule_uid, _field)
1575 static const struct snl_attr_parser ap_rule_uid[] = {
1576 	{ .type = PF_RUT_UID_LOW, .off = _OUT(uid[0]), .cb = snl_attr_get_uint32 },
1577 	{ .type = PF_RUT_UID_HIGH, .off = _OUT(uid[1]), .cb = snl_attr_get_uint32 },
1578 	{ .type = PF_RUT_OP, .off = _OUT(op), .cb = snl_attr_get_uint8 },
1579 };
1580 SNL_DECLARE_ATTR_PARSER(rule_uid_parser, ap_rule_uid);
1581 #undef _OUT
1582 
1583 struct pfctl_nl_get_rule {
1584 	struct pfctl_rule r;
1585 	char anchor_call[MAXPATHLEN];
1586 };
1587 #define	_OUT(_field)	offsetof(struct pfctl_nl_get_rule, _field)
1588 static struct snl_attr_parser ap_getrule[] = {
1589 	{ .type = PF_RT_SRC, .off = _OUT(r.src), .arg = &rule_addr_parser,.cb = snl_attr_get_nested },
1590 	{ .type = PF_RT_DST, .off = _OUT(r.dst), .arg = &rule_addr_parser,.cb = snl_attr_get_nested },
1591 	{ .type = PF_RT_RIDENTIFIER, .off = _OUT(r.ridentifier), .cb = snl_attr_get_uint32 },
1592 	{ .type = PF_RT_LABELS, .off = _OUT(r.label), .arg = &rule_labels_parser,.cb = snl_attr_get_nested_pf_rule_labels },
1593 	{ .type = PF_RT_IFNAME, .off = _OUT(r.ifname), .arg = (void *)IFNAMSIZ, .cb = snl_attr_copy_string },
1594 	{ .type = PF_RT_QNAME, .off = _OUT(r.qname), .arg = (void *)PF_QNAME_SIZE, .cb = snl_attr_copy_string },
1595 	{ .type = PF_RT_PQNAME, .off = _OUT(r.pqname), .arg = (void *)PF_QNAME_SIZE, .cb = snl_attr_copy_string },
1596 	{ .type = PF_RT_TAGNAME, .off = _OUT(r.tagname), .arg = (void *)PF_TAG_NAME_SIZE, .cb = snl_attr_copy_string },
1597 	{ .type = PF_RT_MATCH_TAGNAME, .off = _OUT(r.match_tagname), .arg = (void *)PF_TAG_NAME_SIZE, .cb = snl_attr_copy_string },
1598 	{ .type = PF_RT_OVERLOAD_TBLNAME, .off = _OUT(r.overload_tblname), .arg = (void *)PF_TABLE_NAME_SIZE, .cb = snl_attr_copy_string },
1599 	{ .type = PF_RT_RPOOL, .off = _OUT(r.rpool), .arg = &pool_parser, .cb = snl_attr_get_nested },
1600 	{ .type = PF_RT_OS_FINGERPRINT, .off = _OUT(r.os_fingerprint), .cb = snl_attr_get_uint32 },
1601 	{ .type = PF_RT_RTABLEID, .off = _OUT(r.rtableid), .cb = snl_attr_get_uint32 },
1602 	{ .type = PF_RT_TIMEOUT, .off = _OUT(r.timeout), .arg = &timeout_parser, .cb = snl_attr_get_nested_timeouts },
1603 	{ .type = PF_RT_MAX_STATES, .off = _OUT(r.max_states), .cb = snl_attr_get_uint32 },
1604 	{ .type = PF_RT_MAX_SRC_NODES, .off = _OUT(r.max_src_nodes), .cb = snl_attr_get_uint32 },
1605 	{ .type = PF_RT_MAX_SRC_STATES, .off = _OUT(r.max_src_states), .cb = snl_attr_get_uint32 },
1606 	{ .type = PF_RT_MAX_SRC_CONN_RATE_LIMIT, .off = _OUT(r.max_src_conn_rate.limit), .cb = snl_attr_get_uint32 },
1607 	{ .type = PF_RT_MAX_SRC_CONN_RATE_SECS, .off = _OUT(r.max_src_conn_rate.seconds), .cb = snl_attr_get_uint32 },
1608 	{ .type = PF_RT_DNPIPE, .off = _OUT(r.dnpipe), .cb = snl_attr_get_uint16 },
1609 	{ .type = PF_RT_DNRPIPE, .off = _OUT(r.dnrpipe), .cb = snl_attr_get_uint16 },
1610 	{ .type = PF_RT_DNFLAGS, .off = _OUT(r.free_flags), .cb = snl_attr_get_uint32 },
1611 	{ .type = PF_RT_NR, .off = _OUT(r.nr), .cb = snl_attr_get_uint32 },
1612 	{ .type = PF_RT_PROB, .off = _OUT(r.prob), .cb = snl_attr_get_uint32 },
1613 	{ .type = PF_RT_CUID, .off = _OUT(r.cuid), .cb = snl_attr_get_uint32 },
1614 	{. type = PF_RT_CPID, .off = _OUT(r.cpid), .cb = snl_attr_get_uint32 },
1615 	{ .type = PF_RT_RETURN_ICMP, .off = _OUT(r.return_icmp), .cb = snl_attr_get_uint16 },
1616 	{ .type = PF_RT_RETURN_ICMP6, .off = _OUT(r.return_icmp6), .cb = snl_attr_get_uint16 },
1617 	{ .type = PF_RT_MAX_MSS, .off = _OUT(r.max_mss), .cb = snl_attr_get_uint16 },
1618 	{ .type = PF_RT_SCRUB_FLAGS, .off = _OUT(r.scrub_flags), .cb = snl_attr_get_uint16 },
1619 	{ .type = PF_RT_UID, .off = _OUT(r.uid), .arg = &rule_uid_parser, .cb = snl_attr_get_nested },
1620 	{ .type = PF_RT_GID, .off = _OUT(r.gid), .arg = &rule_uid_parser, .cb = snl_attr_get_nested },
1621 	{ .type = PF_RT_RULE_FLAG, .off = _OUT(r.rule_flag), .cb = snl_attr_get_uint32 },
1622 	{ .type = PF_RT_ACTION, .off = _OUT(r.action), .cb = snl_attr_get_uint8 },
1623 	{ .type = PF_RT_DIRECTION, .off = _OUT(r.direction), .cb = snl_attr_get_uint8 },
1624 	{ .type = PF_RT_LOG, .off = _OUT(r.log), .cb = snl_attr_get_uint8 },
1625 	{ .type = PF_RT_LOGIF, .off = _OUT(r.logif), .cb = snl_attr_get_uint8 },
1626 	{ .type = PF_RT_QUICK, .off = _OUT(r.quick), .cb = snl_attr_get_uint8 },
1627 	{ .type = PF_RT_IF_NOT, .off = _OUT(r.ifnot), .cb = snl_attr_get_uint8 },
1628 	{ .type = PF_RT_MATCH_TAG_NOT, .off = _OUT(r.match_tag_not), .cb = snl_attr_get_uint8 },
1629 	{ .type = PF_RT_NATPASS, .off = _OUT(r.natpass), .cb = snl_attr_get_uint8 },
1630 	{ .type = PF_RT_KEEP_STATE, .off = _OUT(r.keep_state), .cb = snl_attr_get_uint8 },
1631 	{ .type = PF_RT_AF, .off = _OUT(r.af), .cb = snl_attr_get_uint8 },
1632 	{ .type = PF_RT_PROTO, .off = _OUT(r.proto), .cb = snl_attr_get_uint8 },
1633 	{ .type = PF_RT_TYPE, .off = _OUT(r.type), .cb = snl_attr_get_uint8 },
1634 	{ .type = PF_RT_CODE, .off = _OUT(r.code), .cb = snl_attr_get_uint8 },
1635 	{ .type = PF_RT_FLAGS, .off = _OUT(r.flags), .cb = snl_attr_get_uint8 },
1636 	{ .type = PF_RT_FLAGSET, .off = _OUT(r.flagset), .cb = snl_attr_get_uint8 },
1637 	{ .type = PF_RT_MIN_TTL, .off = _OUT(r.min_ttl), .cb = snl_attr_get_uint8 },
1638 	{ .type = PF_RT_ALLOW_OPTS, .off = _OUT(r.allow_opts), .cb = snl_attr_get_uint8 },
1639 	{ .type = PF_RT_RT, .off = _OUT(r.rt), .cb = snl_attr_get_uint8 },
1640 	{ .type = PF_RT_RETURN_TTL, .off = _OUT(r.return_ttl), .cb = snl_attr_get_uint8 },
1641 	{ .type = PF_RT_TOS, .off = _OUT(r.tos), .cb = snl_attr_get_uint8 },
1642 	{ .type = PF_RT_SET_TOS, .off = _OUT(r.set_tos), .cb = snl_attr_get_uint8 },
1643 	{ .type = PF_RT_ANCHOR_RELATIVE, .off = _OUT(r.anchor_relative), .cb = snl_attr_get_uint8 },
1644 	{ .type = PF_RT_ANCHOR_WILDCARD, .off = _OUT(r.anchor_wildcard), .cb = snl_attr_get_uint8 },
1645 	{ .type = PF_RT_FLUSH, .off = _OUT(r.flush), .cb = snl_attr_get_uint8 },
1646 	{ .type = PF_RT_PRIO, .off = _OUT(r.prio), .cb = snl_attr_get_uint8 },
1647 	{ .type = PF_RT_SET_PRIO, .off = _OUT(r.set_prio[0]), .cb = snl_attr_get_uint8 },
1648 	{ .type = PF_RT_SET_PRIO_REPLY, .off = _OUT(r.set_prio[1]), .cb = snl_attr_get_uint8 },
1649 	{ .type = PF_RT_DIVERT_ADDRESS, .off = _OUT(r.divert.addr), .cb = snl_attr_get_in6_addr },
1650 	{ .type = PF_RT_DIVERT_PORT, .off = _OUT(r.divert.port), .cb = snl_attr_get_uint16 },
1651 	{ .type = PF_RT_PACKETS_IN, .off = _OUT(r.packets[0]), .cb = snl_attr_get_uint64 },
1652 	{ .type = PF_RT_PACKETS_OUT, .off = _OUT(r.packets[1]), .cb = snl_attr_get_uint64 },
1653 	{ .type = PF_RT_BYTES_IN, .off = _OUT(r.bytes[0]), .cb = snl_attr_get_uint64 },
1654 	{ .type = PF_RT_BYTES_OUT, .off = _OUT(r.bytes[1]), .cb = snl_attr_get_uint64 },
1655 	{ .type = PF_RT_EVALUATIONS, .off = _OUT(r.evaluations), .cb = snl_attr_get_uint64 },
1656 	{ .type = PF_RT_TIMESTAMP, .off = _OUT(r.last_active_timestamp), .cb = snl_attr_get_uint64 },
1657 	{ .type = PF_RT_STATES_CUR, .off = _OUT(r.states_cur), .cb = snl_attr_get_uint64 },
1658 	{ .type = PF_RT_STATES_TOTAL, .off = _OUT(r.states_tot), .cb = snl_attr_get_uint64 },
1659 	{ .type = PF_RT_SRC_NODES, .off = _OUT(r.src_nodes), .cb = snl_attr_get_uint64 },
1660 	{ .type = PF_RT_ANCHOR_CALL, .off = _OUT(anchor_call), .arg = (void*)MAXPATHLEN, .cb = snl_attr_copy_string },
1661 	{ .type = PF_RT_RCV_IFNAME, .off = _OUT(r.rcv_ifname), .arg = (void*)IFNAMSIZ, .cb = snl_attr_copy_string },
1662 	{ .type = PF_RT_MAX_SRC_CONN, .off = _OUT(r.max_src_conn), .cb = snl_attr_get_uint32 },
1663 };
1664 static struct snl_field_parser fp_getrule[] = {};
1665 #undef _OUT
1666 SNL_DECLARE_PARSER(getrule_parser, struct genlmsghdr, fp_getrule, ap_getrule);
1667 
1668 int
pfctl_get_clear_rule_h(struct pfctl_handle * h,uint32_t nr,uint32_t ticket,const char * anchor,uint32_t ruleset,struct pfctl_rule * rule,char * anchor_call,bool clear)1669 pfctl_get_clear_rule_h(struct pfctl_handle *h, uint32_t nr, uint32_t ticket,
1670     const char *anchor, uint32_t ruleset, struct pfctl_rule *rule,
1671     char *anchor_call, bool clear)
1672 {
1673 	struct pfctl_nl_get_rule attrs = {};
1674 	struct snl_errmsg_data e = {};
1675 	struct nlmsghdr *hdr;
1676 	struct snl_writer nw;
1677 	uint32_t seq_id;
1678 	int family_id;
1679 
1680 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
1681 	if (family_id == 0)
1682 		return (ENOTSUP);
1683 
1684 	snl_init_writer(&h->ss, &nw);
1685 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GETRULE);
1686 	hdr->nlmsg_flags |= NLM_F_DUMP;
1687 
1688 	snl_add_msg_attr_string(&nw, PF_GR_ANCHOR, anchor);
1689 	snl_add_msg_attr_u8(&nw, PF_GR_ACTION, ruleset);
1690 	snl_add_msg_attr_u32(&nw, PF_GR_NR, nr);
1691 	snl_add_msg_attr_u32(&nw, PF_GR_TICKET, ticket);
1692 	snl_add_msg_attr_u8(&nw, PF_GR_CLEAR, clear);
1693 
1694 	hdr = snl_finalize_msg(&nw);
1695 	if (hdr == NULL)
1696 		return (ENOMEM);
1697 
1698 	seq_id = hdr->nlmsg_seq;
1699 	if (! snl_send_message(&h->ss, hdr))
1700 		return (ENXIO);
1701 
1702 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
1703 		if (! snl_parse_nlmsg(&h->ss, hdr, &getrule_parser, &attrs))
1704 			continue;
1705 	}
1706 
1707 	memcpy(rule, &attrs.r, sizeof(attrs.r));
1708 	strlcpy(anchor_call, attrs.anchor_call, MAXPATHLEN);
1709 
1710 	return (e.error);
1711 }
1712 
1713 int
pfctl_get_clear_rule(int dev,uint32_t nr,uint32_t ticket,const char * anchor,uint32_t ruleset,struct pfctl_rule * rule,char * anchor_call,bool clear)1714 pfctl_get_clear_rule(int dev, uint32_t nr, uint32_t ticket,
1715 	    const char *anchor, uint32_t ruleset, struct pfctl_rule *rule,
1716 	    char *anchor_call, bool clear)
1717 {
1718 	nvlist_t *nvl;
1719 	int ret;
1720 
1721 	nvl = nvlist_create(0);
1722 	if (nvl == 0)
1723 		return (ENOMEM);
1724 
1725 	nvlist_add_number(nvl, "nr", nr);
1726 	nvlist_add_number(nvl, "ticket", ticket);
1727 	nvlist_add_string(nvl, "anchor", anchor);
1728 	nvlist_add_number(nvl, "ruleset", ruleset);
1729 
1730 	if (clear)
1731 		nvlist_add_bool(nvl, "clear_counter", true);
1732 
1733 	if ((ret = pfctl_do_ioctl(dev, DIOCGETRULENV, 8192, &nvl)) != 0)
1734 		goto out;
1735 
1736 	pf_nvrule_to_rule(nvlist_get_nvlist(nvl, "rule"), rule);
1737 
1738 	if (anchor_call)
1739 		strlcpy(anchor_call, nvlist_get_string(nvl, "anchor_call"),
1740 		    MAXPATHLEN);
1741 
1742 out:
1743 	nvlist_destroy(nvl);
1744 	return (ret);
1745 }
1746 
1747 int
pfctl_set_keepcounters(int dev,bool keep)1748 pfctl_set_keepcounters(int dev, bool keep)
1749 {
1750 	struct pfioc_nv	 nv;
1751 	nvlist_t	*nvl;
1752 	int		 ret;
1753 
1754 	nvl = nvlist_create(0);
1755 
1756 	nvlist_add_bool(nvl, "keep_counters", keep);
1757 
1758 	nv.data = nvlist_pack(nvl, &nv.len);
1759 	nv.size = nv.len;
1760 
1761 	nvlist_destroy(nvl);
1762 
1763 	ret = ioctl(dev, DIOCKEEPCOUNTERS, &nv);
1764 
1765 	free(nv.data);
1766 	return (ret);
1767 }
1768 
1769 struct pfctl_creator {
1770 	uint32_t id;
1771 };
1772 #define	_IN(_field)	offsetof(struct genlmsghdr, _field)
1773 #define	_OUT(_field)	offsetof(struct pfctl_creator, _field)
1774 static struct snl_attr_parser ap_creators[] = {
1775 	{ .type = PF_ST_CREATORID, .off = _OUT(id), .cb = snl_attr_get_uint32 },
1776 };
1777 static struct snl_field_parser fp_creators[] = {
1778 };
1779 #undef _IN
1780 #undef _OUT
1781 SNL_DECLARE_PARSER(creator_parser, struct genlmsghdr, fp_creators, ap_creators);
1782 
1783 static int
pfctl_get_creators_nl(struct snl_state * ss,uint32_t * creators,size_t * len)1784 pfctl_get_creators_nl(struct snl_state *ss, uint32_t *creators, size_t *len)
1785 {
1786 
1787 	int family_id = snl_get_genl_family(ss, PFNL_FAMILY_NAME);
1788 	size_t i = 0;
1789 
1790 	struct nlmsghdr *hdr;
1791 	struct snl_writer nw;
1792 
1793 	if (family_id == 0)
1794 		return (ENOTSUP);
1795 
1796 	snl_init_writer(ss, &nw);
1797 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GETCREATORS);
1798 	hdr->nlmsg_flags |= NLM_F_DUMP;
1799 	hdr = snl_finalize_msg(&nw);
1800 	if (hdr == NULL)
1801 		return (ENOMEM);
1802 	uint32_t seq_id = hdr->nlmsg_seq;
1803 
1804 	snl_send_message(ss, hdr);
1805 
1806 	struct snl_errmsg_data e = {};
1807 	while ((hdr = snl_read_reply_multi(ss, seq_id, &e)) != NULL) {
1808 		struct pfctl_creator c;
1809 		bzero(&c, sizeof(c));
1810 
1811 		if (!snl_parse_nlmsg(ss, hdr, &creator_parser, &c))
1812 			continue;
1813 
1814 		creators[i] = c.id;
1815 		i++;
1816 		if (i > *len)
1817 			return (E2BIG);
1818 	}
1819 
1820 	*len = i;
1821 
1822 	return (0);
1823 }
1824 
1825 int
pfctl_get_creatorids(struct pfctl_handle * h,uint32_t * creators,size_t * len)1826 pfctl_get_creatorids(struct pfctl_handle *h, uint32_t *creators, size_t *len)
1827 {
1828 	int error;
1829 
1830 	error = pfctl_get_creators_nl(&h->ss, creators, len);
1831 
1832 	return (error);
1833 }
1834 
1835 static inline bool
snl_attr_get_pfaddr(struct snl_state * ss __unused,struct nlattr * nla,const void * arg __unused,void * target)1836 snl_attr_get_pfaddr(struct snl_state *ss __unused, struct nlattr *nla,
1837     const void *arg __unused, void *target)
1838 {
1839 	memcpy(target, NLA_DATA(nla), NLA_DATA_LEN(nla));
1840 	return (true);
1841 }
1842 
1843 static inline bool
snl_attr_store_ifname(struct snl_state * ss __unused,struct nlattr * nla,const void * arg __unused,void * target)1844 snl_attr_store_ifname(struct snl_state *ss __unused, struct nlattr *nla,
1845     const void *arg __unused, void *target)
1846 {
1847 	size_t maxlen = NLA_DATA_LEN(nla);
1848 
1849 	if (strnlen((char *)NLA_DATA(nla), maxlen) < maxlen) {
1850 		strlcpy(target, (char *)NLA_DATA(nla), maxlen);
1851 		return (true);
1852 	}
1853 	return (false);
1854 }
1855 
1856 #define	_OUT(_field)	offsetof(struct pfctl_state_peer, _field)
1857 static const struct snl_attr_parser nla_p_speer[] = {
1858 	{ .type = PF_STP_SEQLO, .off = _OUT(seqlo), .cb = snl_attr_get_uint32 },
1859 	{ .type = PF_STP_SEQHI, .off = _OUT(seqhi), .cb = snl_attr_get_uint32 },
1860 	{ .type = PF_STP_SEQDIFF, .off = _OUT(seqdiff), .cb = snl_attr_get_uint32 },
1861 	{ .type = PF_STP_STATE, .off = _OUT(state), .cb = snl_attr_get_uint8 },
1862 	{ .type = PF_STP_WSCALE, .off = _OUT(wscale), .cb = snl_attr_get_uint8 },
1863 };
1864 SNL_DECLARE_ATTR_PARSER(speer_parser, nla_p_speer);
1865 #undef _OUT
1866 
1867 #define	_OUT(_field)	offsetof(struct pf_state_key_export, _field)
1868 static const struct snl_attr_parser nla_p_skey[] = {
1869 	{ .type = PF_STK_ADDR0, .off = _OUT(addr[0]), .cb = snl_attr_get_pfaddr },
1870 	{ .type = PF_STK_ADDR1, .off = _OUT(addr[1]), .cb = snl_attr_get_pfaddr },
1871 	{ .type = PF_STK_PORT0, .off = _OUT(port[0]), .cb = snl_attr_get_uint16 },
1872 	{ .type = PF_STK_PORT1, .off = _OUT(port[1]), .cb = snl_attr_get_uint16 },
1873 };
1874 SNL_DECLARE_ATTR_PARSER(skey_parser, nla_p_skey);
1875 #undef _OUT
1876 
1877 #define	_IN(_field)	offsetof(struct genlmsghdr, _field)
1878 #define	_OUT(_field)	offsetof(struct pfctl_state, _field)
1879 static struct snl_attr_parser ap_state[] = {
1880 	{ .type = PF_ST_ID, .off = _OUT(id), .cb = snl_attr_get_uint64 },
1881 	{ .type = PF_ST_CREATORID, .off = _OUT(creatorid), .cb = snl_attr_get_uint32 },
1882 	{ .type = PF_ST_IFNAME, .off = _OUT(ifname), .cb = snl_attr_store_ifname },
1883 	{ .type = PF_ST_ORIG_IFNAME, .off = _OUT(orig_ifname), .cb = snl_attr_store_ifname },
1884 	{ .type = PF_ST_KEY_WIRE, .off = _OUT(key[0]), .arg = &skey_parser, .cb = snl_attr_get_nested },
1885 	{ .type = PF_ST_KEY_STACK, .off = _OUT(key[1]), .arg = &skey_parser, .cb = snl_attr_get_nested },
1886 	{ .type = PF_ST_PEER_SRC, .off = _OUT(src), .arg = &speer_parser, .cb = snl_attr_get_nested },
1887 	{ .type = PF_ST_PEER_DST, .off = _OUT(dst), .arg = &speer_parser, .cb = snl_attr_get_nested },
1888 	{ .type = PF_ST_RT_ADDR, .off = _OUT(rt_addr), .cb = snl_attr_get_pfaddr },
1889 	{ .type = PF_ST_RULE, .off = _OUT(rule), .cb = snl_attr_get_uint32 },
1890 	{ .type = PF_ST_ANCHOR, .off = _OUT(anchor), .cb = snl_attr_get_uint32 },
1891 	{ .type = PF_ST_NAT_RULE, .off = _OUT(nat_rule), .cb = snl_attr_get_uint32 },
1892 	{ .type = PF_ST_CREATION, .off = _OUT(creation), .cb = snl_attr_get_uint32 },
1893 	{ .type = PF_ST_EXPIRE, .off = _OUT(expire), .cb = snl_attr_get_uint32 },
1894 	{ .type = PF_ST_PACKETS0, .off = _OUT(packets[0]), .cb = snl_attr_get_uint64 },
1895 	{ .type = PF_ST_PACKETS1, .off = _OUT(packets[1]), .cb = snl_attr_get_uint64 },
1896 	{ .type = PF_ST_BYTES0, .off = _OUT(bytes[0]), .cb = snl_attr_get_uint64 },
1897 	{ .type = PF_ST_BYTES1, .off = _OUT(bytes[1]), .cb = snl_attr_get_uint64 },
1898 	{ .type = PF_ST_AF, .off = _OUT(key[0].af), .cb = snl_attr_get_uint8 },
1899 	{ .type = PF_ST_PROTO, .off = _OUT(key[0].proto), .cb = snl_attr_get_uint8 },
1900 	{ .type = PF_ST_DIRECTION, .off = _OUT(direction), .cb = snl_attr_get_uint8 },
1901 	{ .type = PF_ST_LOG, .off = _OUT(log), .cb = snl_attr_get_uint8 },
1902 	{ .type = PF_ST_STATE_FLAGS, .off = _OUT(state_flags), .cb = snl_attr_get_uint16 },
1903 	{ .type = PF_ST_SYNC_FLAGS, .off = _OUT(sync_flags), .cb = snl_attr_get_uint8 },
1904 	{ .type = PF_ST_RTABLEID, .off = _OUT(rtableid), .cb = snl_attr_get_int32 },
1905 	{ .type = PF_ST_MIN_TTL, .off = _OUT(min_ttl), .cb = snl_attr_get_uint8 },
1906 	{ .type = PF_ST_MAX_MSS, .off = _OUT(max_mss), .cb = snl_attr_get_uint16 },
1907 	{ .type = PF_ST_DNPIPE, .off = _OUT(dnpipe), .cb = snl_attr_get_uint16 },
1908 	{ .type = PF_ST_DNRPIPE, .off = _OUT(dnrpipe), .cb = snl_attr_get_uint16 },
1909 	{ .type = PF_ST_RT, .off = _OUT(rt), .cb = snl_attr_get_uint8 },
1910 	{ .type = PF_ST_RT_IFNAME, .off = _OUT(rt_ifname), .cb = snl_attr_store_ifname },
1911 };
1912 static struct snl_field_parser fp_state[] = {
1913 };
1914 #undef _IN
1915 #undef _OUT
1916 SNL_DECLARE_PARSER(state_parser, struct genlmsghdr, fp_state, ap_state);
1917 
1918 static const struct snl_hdr_parser *all_parsers[] = {
1919 	&state_parser, &skey_parser, &speer_parser,
1920 	&creator_parser, &getrules_parser
1921 };
1922 
1923 static int
pfctl_get_states_nl(struct pfctl_state_filter * filter,struct snl_state * ss,pfctl_get_state_fn f,void * arg)1924 pfctl_get_states_nl(struct pfctl_state_filter *filter, struct snl_state *ss, pfctl_get_state_fn f, void *arg)
1925 {
1926 	SNL_VERIFY_PARSERS(all_parsers);
1927 	int family_id = snl_get_genl_family(ss, PFNL_FAMILY_NAME);
1928 	int ret;
1929 
1930 	struct nlmsghdr *hdr;
1931 	struct snl_writer nw;
1932 
1933 	if (family_id == 0)
1934 		return (ENOTSUP);
1935 
1936 	snl_init_writer(ss, &nw);
1937 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GETSTATES);
1938 	hdr->nlmsg_flags |= NLM_F_DUMP;
1939 	snl_add_msg_attr_string(&nw, PF_ST_IFNAME, filter->ifname);
1940 	snl_add_msg_attr_u16(&nw, PF_ST_PROTO, filter->proto);
1941 	snl_add_msg_attr_u8(&nw, PF_ST_AF, filter->af);
1942 	snl_add_msg_attr_ip6(&nw, PF_ST_FILTER_ADDR, &filter->addr.v6);
1943 	snl_add_msg_attr_ip6(&nw, PF_ST_FILTER_MASK, &filter->mask.v6);
1944 
1945 	hdr = snl_finalize_msg(&nw);
1946 	if (hdr == NULL)
1947 		return (ENOMEM);
1948 
1949 	uint32_t seq_id = hdr->nlmsg_seq;
1950 
1951 	snl_send_message(ss, hdr);
1952 
1953 	struct snl_errmsg_data e = {};
1954 	while ((hdr = snl_read_reply_multi(ss, seq_id, &e)) != NULL) {
1955 		struct pfctl_state s;
1956 		bzero(&s, sizeof(s));
1957 		if (!snl_parse_nlmsg(ss, hdr, &state_parser, &s))
1958 			continue;
1959 
1960 		s.key[1].af = s.key[0].af;
1961 		s.key[1].proto = s.key[0].proto;
1962 
1963 		ret = f(&s, arg);
1964 		if (ret != 0)
1965 			return (ret);
1966 	}
1967 
1968 	return (0);
1969 }
1970 
1971 int
pfctl_get_states_iter(pfctl_get_state_fn f,void * arg)1972 pfctl_get_states_iter(pfctl_get_state_fn f, void *arg)
1973 {
1974 	struct pfctl_state_filter filter = {};
1975 	return (pfctl_get_filtered_states_iter(&filter, f, arg));
1976 }
1977 
1978 int
pfctl_get_filtered_states_iter(struct pfctl_state_filter * filter,pfctl_get_state_fn f,void * arg)1979 pfctl_get_filtered_states_iter(struct pfctl_state_filter *filter, pfctl_get_state_fn f, void *arg)
1980 {
1981 	struct snl_state ss = {};
1982 	int error;
1983 
1984 	snl_init(&ss, NETLINK_GENERIC);
1985 	error = pfctl_get_states_nl(filter, &ss, f, arg);
1986 	snl_free(&ss);
1987 
1988 	return (error);
1989 }
1990 
1991 static int
pfctl_append_states(struct pfctl_state * s,void * arg)1992 pfctl_append_states(struct pfctl_state *s, void *arg)
1993 {
1994 	struct pfctl_state *new;
1995 	struct pfctl_states *states = (struct pfctl_states *)arg;
1996 
1997 	new = malloc(sizeof(*s));
1998 	if (new == NULL)
1999 		return (ENOMEM);
2000 
2001 	memcpy(new, s, sizeof(*s));
2002 
2003 	TAILQ_INSERT_TAIL(&states->states, new, entry);
2004 
2005 	return (0);
2006 }
2007 
2008 int
pfctl_get_states(int dev __unused,struct pfctl_states * states)2009 pfctl_get_states(int dev __unused, struct pfctl_states *states)
2010 {
2011 	int ret;
2012 
2013 	bzero(states, sizeof(*states));
2014 	TAILQ_INIT(&states->states);
2015 
2016 	ret = pfctl_get_states_iter(pfctl_append_states, states);
2017 	if (ret != 0) {
2018 		pfctl_free_states(states);
2019 		return (ret);
2020 	}
2021 
2022 	return (0);
2023 }
2024 
2025 void
pfctl_free_states(struct pfctl_states * states)2026 pfctl_free_states(struct pfctl_states *states)
2027 {
2028 	struct pfctl_state *s, *tmp;
2029 
2030 	TAILQ_FOREACH_SAFE(s, &states->states, entry, tmp) {
2031 		free(s);
2032 	}
2033 
2034 	bzero(states, sizeof(*states));
2035 }
2036 
2037 struct pfctl_nl_clear_states {
2038 	uint32_t killed;
2039 };
2040 #define	_OUT(_field)	offsetof(struct pfctl_nl_clear_states, _field)
2041 static struct snl_attr_parser ap_clear_states[] = {
2042 	{ .type = PF_CS_KILLED, .off = _OUT(killed), .cb = snl_attr_get_uint32 },
2043 };
2044 static struct snl_field_parser fp_clear_states[] = {};
2045 #undef _OUT
2046 SNL_DECLARE_PARSER(clear_states_parser, struct genlmsghdr, fp_clear_states, ap_clear_states);
2047 
2048 static int
_pfctl_clear_states_h(struct pfctl_handle * h,const struct pfctl_kill * kill,unsigned int * killed,int cmd)2049 _pfctl_clear_states_h(struct pfctl_handle *h, const struct pfctl_kill *kill,
2050     unsigned int *killed, int cmd)
2051 {
2052 	struct snl_writer nw;
2053 	struct snl_errmsg_data e = {};
2054 	struct pfctl_nl_clear_states attrs = {};
2055 	struct nlmsghdr *hdr;
2056 	uint32_t seq_id;
2057 	int family_id;
2058 
2059 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2060 	if (family_id == 0)
2061 		return (ENOTSUP);
2062 
2063 	snl_init_writer(&h->ss, &nw);
2064 	hdr = snl_create_genl_msg_request(&nw, family_id, cmd);
2065 	hdr->nlmsg_flags |= NLM_F_DUMP;
2066 
2067 	snl_add_msg_attr_u64(&nw, PF_CS_CMP_ID, kill->cmp.id);
2068 	snl_add_msg_attr_u32(&nw, PF_CS_CMP_CREATORID, htonl(kill->cmp.creatorid));
2069 	snl_add_msg_attr_u8(&nw, PF_CS_CMP_DIR, kill->cmp.direction);
2070 	snl_add_msg_attr_u8(&nw, PF_CS_AF, kill->af);
2071 	snl_add_msg_attr_u8(&nw, PF_CS_PROTO, kill->proto);
2072 	snl_add_msg_attr_rule_addr(&nw, PF_CS_SRC, &kill->src);
2073 	snl_add_msg_attr_rule_addr(&nw, PF_CS_DST, &kill->dst);
2074 	snl_add_msg_attr_rule_addr(&nw, PF_CS_RT_ADDR, &kill->rt_addr);
2075 	snl_add_msg_attr_string(&nw, PF_CS_IFNAME, kill->ifname);
2076 	snl_add_msg_attr_string(&nw, PF_CS_LABEL, kill->label);
2077 	snl_add_msg_attr_bool(&nw, PF_CS_KILL_MATCH, kill->kill_match);
2078 	snl_add_msg_attr_bool(&nw, PF_CS_NAT, kill->nat);
2079 
2080 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2081 		return (ENXIO);
2082 
2083 	seq_id = hdr->nlmsg_seq;
2084 
2085 	if (! snl_send_message(&h->ss, hdr))
2086 		return (ENXIO);
2087 
2088 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2089 		if (! snl_parse_nlmsg(&h->ss, hdr, &clear_states_parser, &attrs))
2090 			continue;
2091 	}
2092 
2093 	if (killed)
2094 		*killed = attrs.killed;
2095 
2096 	return (e.error);
2097 }
2098 
2099 int
pfctl_clear_states_h(struct pfctl_handle * h,const struct pfctl_kill * kill,unsigned int * killed)2100 pfctl_clear_states_h(struct pfctl_handle *h, const struct pfctl_kill *kill,
2101     unsigned int *killed)
2102 {
2103 	return(_pfctl_clear_states_h(h, kill, killed, PFNL_CMD_CLRSTATES));
2104 }
2105 
2106 int
pfctl_kill_states_h(struct pfctl_handle * h,const struct pfctl_kill * kill,unsigned int * killed)2107 pfctl_kill_states_h(struct pfctl_handle *h, const struct pfctl_kill *kill,
2108     unsigned int *killed)
2109 {
2110 	return(_pfctl_clear_states_h(h, kill, killed, PFNL_CMD_KILLSTATES));
2111 }
2112 
2113 static int
_pfctl_clear_states(int dev __unused,const struct pfctl_kill * kill,unsigned int * killed,uint64_t cmd)2114 _pfctl_clear_states(int dev __unused, const struct pfctl_kill *kill,
2115     unsigned int *killed, uint64_t cmd)
2116 {
2117 	struct pfctl_handle *h;
2118 	int ret;
2119 
2120 	h = pfctl_open(PF_DEVICE);
2121 	if (h == NULL)
2122 		return (ENODEV);
2123 
2124 	ret = _pfctl_clear_states_h(h, kill, killed, cmd);
2125 	pfctl_close(h);
2126 
2127 	return (ret);
2128 }
2129 
2130 int
pfctl_clear_states(int dev __unused,const struct pfctl_kill * kill,unsigned int * killed)2131 pfctl_clear_states(int dev __unused, const struct pfctl_kill *kill,
2132     unsigned int *killed)
2133 {
2134 	return (_pfctl_clear_states(dev, kill, killed, PFNL_CMD_CLRSTATES));
2135 }
2136 
2137 int
pfctl_kill_states(int dev __unused,const struct pfctl_kill * kill,unsigned int * killed)2138 pfctl_kill_states(int dev __unused, const struct pfctl_kill *kill, unsigned int *killed)
2139 {
2140 	return (_pfctl_clear_states(dev, kill, killed, PFNL_CMD_KILLSTATES));
2141 }
2142 
2143 int
pfctl_clear_rules(int dev,const char * anchorname)2144 pfctl_clear_rules(int dev, const char *anchorname)
2145 {
2146 	struct pfioc_trans trans;
2147 	struct pfioc_trans_e transe[2];
2148 	int ret;
2149 
2150 	bzero(&trans, sizeof(trans));
2151 	bzero(&transe, sizeof(transe));
2152 
2153 	transe[0].rs_num = PF_RULESET_SCRUB;
2154 	if (strlcpy(transe[0].anchor, anchorname, sizeof(transe[0].anchor))
2155 	    >= sizeof(transe[0].anchor))
2156 		return (E2BIG);
2157 
2158 	transe[1].rs_num = PF_RULESET_FILTER;
2159 	if (strlcpy(transe[1].anchor, anchorname, sizeof(transe[1].anchor))
2160 	    >= sizeof(transe[1].anchor))
2161 		return (E2BIG);
2162 
2163 	trans.size = 2;
2164 	trans.esize = sizeof(transe[0]);
2165 	trans.array = transe;
2166 
2167 	ret = ioctl(dev, DIOCXBEGIN, &trans);
2168 	if (ret != 0)
2169 		return (errno);
2170 	ret = ioctl(dev, DIOCXCOMMIT, &trans);
2171 	if (ret != 0)
2172 		return (errno);
2173 
2174 	return (0);
2175 }
2176 
2177 int
pfctl_clear_nat(int dev,const char * anchorname)2178 pfctl_clear_nat(int dev, const char *anchorname)
2179 {
2180 	struct pfioc_trans trans;
2181 	struct pfioc_trans_e transe[3];
2182 	int ret;
2183 
2184 	bzero(&trans, sizeof(trans));
2185 	bzero(&transe, sizeof(transe));
2186 
2187 	transe[0].rs_num = PF_RULESET_NAT;
2188 	if (strlcpy(transe[0].anchor, anchorname, sizeof(transe[0].anchor))
2189 	    >= sizeof(transe[0].anchor))
2190 		return (E2BIG);
2191 
2192 	transe[1].rs_num = PF_RULESET_BINAT;
2193 	if (strlcpy(transe[1].anchor, anchorname, sizeof(transe[1].anchor))
2194 	    >= sizeof(transe[0].anchor))
2195 		return (E2BIG);
2196 
2197 	transe[2].rs_num = PF_RULESET_RDR;
2198 	if (strlcpy(transe[2].anchor, anchorname, sizeof(transe[2].anchor))
2199 	    >= sizeof(transe[2].anchor))
2200 		return (E2BIG);
2201 
2202 	trans.size = 3;
2203 	trans.esize = sizeof(transe[0]);
2204 	trans.array = transe;
2205 
2206 	ret = ioctl(dev, DIOCXBEGIN, &trans);
2207 	if (ret != 0)
2208 		return (errno);
2209 	ret = ioctl(dev, DIOCXCOMMIT, &trans);
2210 	if (ret != 0)
2211 		return (errno);
2212 
2213 	return (0);
2214 }
2215 
2216 int
pfctl_clear_eth_rules(int dev,const char * anchorname)2217 pfctl_clear_eth_rules(int dev, const char *anchorname)
2218 {
2219 	struct pfioc_trans trans;
2220 	struct pfioc_trans_e transe;
2221 	int ret;
2222 
2223 	bzero(&trans, sizeof(trans));
2224 	bzero(&transe, sizeof(transe));
2225 
2226 	transe.rs_num = PF_RULESET_ETH;
2227 	if (strlcpy(transe.anchor, anchorname, sizeof(transe.anchor))
2228 	    >= sizeof(transe.anchor))
2229 		return (E2BIG);
2230 
2231 	trans.size = 1;
2232 	trans.esize = sizeof(transe);
2233 	trans.array = &transe;
2234 
2235 	ret = ioctl(dev, DIOCXBEGIN, &trans);
2236 	if (ret != 0)
2237 		return (errno);
2238 	ret = ioctl(dev, DIOCXCOMMIT, &trans);
2239 	if (ret != 0)
2240 		return (errno);
2241 
2242 	return (0);
2243 }
2244 
2245 static int
_pfctl_get_limit(int dev,const int index,uint * limit)2246 _pfctl_get_limit(int dev, const int index, uint *limit)
2247 {
2248 	struct pfioc_limit pl;
2249 
2250 	bzero(&pl, sizeof(pl));
2251 	pl.index = index;
2252 
2253 	if (ioctl(dev, DIOCGETLIMIT, &pl) == -1)
2254 		return (errno);
2255 
2256 	*limit = pl.limit;
2257 
2258 	return (0);
2259 }
2260 
2261 int
pfctl_set_syncookies(int dev,const struct pfctl_syncookies * s)2262 pfctl_set_syncookies(int dev, const struct pfctl_syncookies *s)
2263 {
2264 	struct pfioc_nv	 nv;
2265 	nvlist_t	*nvl;
2266 	int		 ret;
2267 	uint		 state_limit;
2268 	uint64_t	 lim, hi, lo;
2269 
2270 	ret = _pfctl_get_limit(dev, PF_LIMIT_STATES, &state_limit);
2271 	if (ret != 0)
2272 		return (ret);
2273 
2274 	lim = state_limit;
2275 	hi = lim * s->highwater / 100;
2276 	lo = lim * s->lowwater / 100;
2277 
2278 	if (lo == hi)
2279 		hi++;
2280 
2281 	nvl = nvlist_create(0);
2282 
2283 	nvlist_add_bool(nvl, "enabled", s->mode != PFCTL_SYNCOOKIES_NEVER);
2284 	nvlist_add_bool(nvl, "adaptive", s->mode == PFCTL_SYNCOOKIES_ADAPTIVE);
2285 	nvlist_add_number(nvl, "highwater", hi);
2286 	nvlist_add_number(nvl, "lowwater", lo);
2287 
2288 	nv.data = nvlist_pack(nvl, &nv.len);
2289 	nv.size = nv.len;
2290 	nvlist_destroy(nvl);
2291 	nvl = NULL;
2292 
2293 	ret = ioctl(dev, DIOCSETSYNCOOKIES, &nv);
2294 
2295 	free(nv.data);
2296 	if (ret != 0)
2297 		return (errno);
2298 
2299 	return (0);
2300 }
2301 
2302 int
pfctl_get_syncookies(int dev,struct pfctl_syncookies * s)2303 pfctl_get_syncookies(int dev, struct pfctl_syncookies *s)
2304 {
2305 	nvlist_t	*nvl;
2306 	int		 ret;
2307 	uint		 state_limit;
2308 	bool		 enabled, adaptive;
2309 
2310 	ret = _pfctl_get_limit(dev, PF_LIMIT_STATES, &state_limit);
2311 	if (ret != 0)
2312 		return (ret);
2313 
2314 	bzero(s, sizeof(*s));
2315 
2316 	nvl = nvlist_create(0);
2317 
2318 	if ((ret = pfctl_do_ioctl(dev, DIOCGETSYNCOOKIES, 256, &nvl)) != 0) {
2319 		ret = errno;
2320 		goto out;
2321 	}
2322 
2323 	enabled = nvlist_get_bool(nvl, "enabled");
2324 	adaptive = nvlist_get_bool(nvl, "adaptive");
2325 
2326 	if (enabled) {
2327 		if (adaptive)
2328 			s->mode = PFCTL_SYNCOOKIES_ADAPTIVE;
2329 		else
2330 			s->mode = PFCTL_SYNCOOKIES_ALWAYS;
2331 	} else {
2332 		s->mode = PFCTL_SYNCOOKIES_NEVER;
2333 	}
2334 
2335 	s->highwater = nvlist_get_number(nvl, "highwater") * 100 / state_limit;
2336 	s->lowwater = nvlist_get_number(nvl, "lowwater") * 100 / state_limit;
2337 	s->halfopen_states = nvlist_get_number(nvl, "halfopen_states");
2338 
2339 out:
2340 	nvlist_destroy(nvl);
2341 	return (ret);
2342 }
2343 
2344 int
pfctl_table_add_addrs(int dev,struct pfr_table * tbl,struct pfr_addr * addr,int size,int * nadd,int flags)2345 pfctl_table_add_addrs(int dev, struct pfr_table *tbl, struct pfr_addr
2346     *addr, int size, int *nadd, int flags)
2347 {
2348 	struct pfioc_table io;
2349 
2350 	if (tbl == NULL || size < 0 || (size && addr == NULL)) {
2351 		return (EINVAL);
2352 	}
2353 	bzero(&io, sizeof io);
2354 	io.pfrio_flags = flags;
2355 	io.pfrio_table = *tbl;
2356 	io.pfrio_buffer = addr;
2357 	io.pfrio_esize = sizeof(*addr);
2358 	io.pfrio_size = size;
2359 
2360 	if (ioctl(dev, DIOCRADDADDRS, &io))
2361 		return (errno);
2362 	if (nadd != NULL)
2363 		*nadd = io.pfrio_nadd;
2364 	return (0);
2365 }
2366 
2367 int
pfctl_table_del_addrs(int dev,struct pfr_table * tbl,struct pfr_addr * addr,int size,int * ndel,int flags)2368 pfctl_table_del_addrs(int dev, struct pfr_table *tbl, struct pfr_addr
2369     *addr, int size, int *ndel, int flags)
2370 {
2371 	struct pfioc_table io;
2372 
2373 	if (tbl == NULL || size < 0 || (size && addr == NULL)) {
2374 		return (EINVAL);
2375 	}
2376 	bzero(&io, sizeof io);
2377 	io.pfrio_flags = flags;
2378 	io.pfrio_table = *tbl;
2379 	io.pfrio_buffer = addr;
2380 	io.pfrio_esize = sizeof(*addr);
2381 	io.pfrio_size = size;
2382 
2383 	if (ioctl(dev, DIOCRDELADDRS, &io))
2384 		return (errno);
2385 	if (ndel != NULL)
2386 		*ndel = io.pfrio_ndel;
2387 	return (0);
2388 }
2389 
2390 int
pfctl_table_set_addrs(int dev,struct pfr_table * tbl,struct pfr_addr * addr,int size,int * size2,int * nadd,int * ndel,int * nchange,int flags)2391 pfctl_table_set_addrs(int dev, struct pfr_table *tbl, struct pfr_addr
2392     *addr, int size, int *size2, int *nadd, int *ndel, int *nchange, int flags)
2393 {
2394 	struct pfioc_table io;
2395 
2396 	if (tbl == NULL || size < 0 || (size && addr == NULL)) {
2397 		return (EINVAL);
2398 	}
2399 	bzero(&io, sizeof io);
2400 	io.pfrio_flags = flags;
2401 	io.pfrio_table = *tbl;
2402 	io.pfrio_buffer = addr;
2403 	io.pfrio_esize = sizeof(*addr);
2404 	io.pfrio_size = size;
2405 	io.pfrio_size2 = (size2 != NULL) ? *size2 : 0;
2406 	if (ioctl(dev, DIOCRSETADDRS, &io))
2407 		return (errno);
2408 	if (nadd != NULL)
2409 		*nadd = io.pfrio_nadd;
2410 	if (ndel != NULL)
2411 		*ndel = io.pfrio_ndel;
2412 	if (nchange != NULL)
2413 		*nchange = io.pfrio_nchange;
2414 	if (size2 != NULL)
2415 		*size2 = io.pfrio_size2;
2416 	return (0);
2417 }
2418 
pfctl_table_get_addrs(int dev,struct pfr_table * tbl,struct pfr_addr * addr,int * size,int flags)2419 int pfctl_table_get_addrs(int dev, struct pfr_table *tbl, struct pfr_addr *addr,
2420     int *size, int flags)
2421 {
2422 	struct pfioc_table io;
2423 
2424 	if (tbl == NULL || size == NULL || *size < 0 ||
2425 	    (*size && addr == NULL)) {
2426 		return (EINVAL);
2427 	}
2428 	bzero(&io, sizeof io);
2429 	io.pfrio_flags = flags;
2430 	io.pfrio_table = *tbl;
2431 	io.pfrio_buffer = addr;
2432 	io.pfrio_esize = sizeof(*addr);
2433 	io.pfrio_size = *size;
2434 	if (ioctl(dev, DIOCRGETADDRS, &io))
2435 		return (errno);
2436 	*size = io.pfrio_size;
2437 	return (0);
2438 }
2439 
2440 int
pfctl_set_statusif(struct pfctl_handle * h,const char * ifname)2441 pfctl_set_statusif(struct pfctl_handle *h, const char *ifname)
2442 {
2443 	struct snl_writer nw;
2444 	struct snl_errmsg_data e = {};
2445 	struct nlmsghdr *hdr;
2446 	uint32_t seq_id;
2447 	int family_id;
2448 
2449 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2450 	if (family_id == 0)
2451 		return (ENOTSUP);
2452 
2453 	snl_init_writer(&h->ss, &nw);
2454 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_SET_STATUSIF);
2455 
2456 	snl_add_msg_attr_string(&nw, PF_SS_IFNAME, ifname);
2457 
2458 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2459 		return (ENXIO);
2460 
2461 	seq_id = hdr->nlmsg_seq;
2462 
2463 	if (! snl_send_message(&h->ss, hdr))
2464 		return (ENXIO);
2465 
2466 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2467 	}
2468 
2469 	return (e.error);
2470 }
2471 
2472 #define	_IN(_field)	offsetof(struct genlmsghdr, _field)
2473 #define	_OUT(_field)	offsetof(struct pfctl_natlook, _field)
2474 static struct snl_attr_parser ap_natlook[] = {
2475 	{ .type = PF_NL_SRC_ADDR, .off = _OUT(saddr), .cb = snl_attr_get_in6_addr },
2476 	{ .type = PF_NL_DST_ADDR, .off = _OUT(daddr), .cb = snl_attr_get_in6_addr },
2477 	{ .type = PF_NL_SRC_PORT, .off = _OUT(sport), .cb = snl_attr_get_uint16 },
2478 	{ .type = PF_NL_DST_PORT, .off = _OUT(dport), .cb = snl_attr_get_uint16 },
2479 };
2480 static struct snl_field_parser fp_natlook[] = {};
2481 #undef _IN
2482 #undef _OUT
2483 SNL_DECLARE_PARSER(natlook_parser, struct genlmsghdr, fp_natlook, ap_natlook);
2484 
2485 int
pfctl_natlook(struct pfctl_handle * h,const struct pfctl_natlook_key * k,struct pfctl_natlook * r)2486 pfctl_natlook(struct pfctl_handle *h, const struct pfctl_natlook_key *k,
2487     struct pfctl_natlook *r)
2488 {
2489 	struct snl_writer nw;
2490 	struct snl_errmsg_data e = {};
2491 	struct nlmsghdr *hdr;
2492 	uint32_t seq_id;
2493 	int family_id;
2494 
2495 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2496 	if (family_id == 0)
2497 		return (ENOTSUP);
2498 
2499 	snl_init_writer(&h->ss, &nw);
2500 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_NATLOOK);
2501 	hdr->nlmsg_flags |= NLM_F_DUMP;
2502 
2503 	snl_add_msg_attr_u8(&nw, PF_NL_AF, k->af);
2504 	snl_add_msg_attr_u8(&nw, PF_NL_DIRECTION, k->direction);
2505 	snl_add_msg_attr_u8(&nw, PF_NL_PROTO, k->proto);
2506 	snl_add_msg_attr_ip6(&nw, PF_NL_SRC_ADDR, &k->saddr.v6);
2507 	snl_add_msg_attr_ip6(&nw, PF_NL_DST_ADDR, &k->daddr.v6);
2508 	snl_add_msg_attr_u16(&nw, PF_NL_SRC_PORT, k->sport);
2509 	snl_add_msg_attr_u16(&nw, PF_NL_DST_PORT, k->dport);
2510 
2511 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2512 		return (ENXIO);
2513 
2514 	seq_id = hdr->nlmsg_seq;
2515 
2516 	if (! snl_send_message(&h->ss, hdr))
2517 		return (ENXIO);
2518 
2519 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2520 		if (! snl_parse_nlmsg(&h->ss, hdr, &natlook_parser, r))
2521 			continue;
2522 	}
2523 
2524 	return (e.error);
2525 }
2526 
2527 int
pfctl_set_debug(struct pfctl_handle * h,uint32_t level)2528 pfctl_set_debug(struct pfctl_handle *h, uint32_t level)
2529 {
2530 	struct snl_writer nw;
2531 	struct snl_errmsg_data e = {};
2532 	struct nlmsghdr *hdr;
2533 	uint32_t seq_id;
2534 	int family_id;
2535 
2536 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2537 	if (family_id == 0)
2538 		return (ENOTSUP);
2539 
2540 	snl_init_writer(&h->ss, &nw);
2541 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_SET_DEBUG);
2542 
2543 	snl_add_msg_attr_u32(&nw, PF_SD_LEVEL, level);
2544 
2545 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2546 		return (ENXIO);
2547 
2548 	seq_id = hdr->nlmsg_seq;
2549 
2550 	if (! snl_send_message(&h->ss, hdr))
2551 		return (ENXIO);
2552 
2553 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2554 	}
2555 
2556 	return (e.error);
2557 }
2558 
2559 int
pfctl_set_timeout(struct pfctl_handle * h,uint32_t timeout,uint32_t seconds)2560 pfctl_set_timeout(struct pfctl_handle *h, uint32_t timeout, uint32_t seconds)
2561 {
2562 	struct snl_writer nw;
2563 	struct snl_errmsg_data e = {};
2564 	struct nlmsghdr *hdr;
2565 	uint32_t seq_id;
2566 	int family_id;
2567 
2568 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2569 	if (family_id == 0)
2570 		return (ENOTSUP);
2571 
2572 	snl_init_writer(&h->ss, &nw);
2573 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_SET_TIMEOUT);
2574 
2575 	snl_add_msg_attr_u32(&nw, PF_TO_TIMEOUT, timeout);
2576 	snl_add_msg_attr_u32(&nw, PF_TO_SECONDS, seconds);
2577 
2578 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2579 		return (ENXIO);
2580 
2581 	seq_id = hdr->nlmsg_seq;
2582 
2583 	if (! snl_send_message(&h->ss, hdr))
2584 		return (ENXIO);
2585 
2586 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2587 	}
2588 
2589 	return (e.error);
2590 }
2591 
2592 struct pfctl_nl_timeout {
2593 	uint32_t seconds;
2594 };
2595 #define	_OUT(_field)	offsetof(struct pfctl_nl_timeout, _field)
2596 static struct snl_attr_parser ap_get_timeout[] = {
2597 	{ .type = PF_TO_SECONDS, .off = _OUT(seconds), .cb = snl_attr_get_uint32 },
2598 };
2599 static struct snl_field_parser fp_get_timeout[] = {};
2600 #undef _OUT
2601 SNL_DECLARE_PARSER(get_timeout_parser, struct genlmsghdr, fp_get_timeout, ap_get_timeout);
2602 
2603 int
pfctl_get_timeout(struct pfctl_handle * h,uint32_t timeout,uint32_t * seconds)2604 pfctl_get_timeout(struct pfctl_handle *h, uint32_t timeout, uint32_t *seconds)
2605 {
2606 	struct snl_writer nw;
2607 	struct pfctl_nl_timeout to = {};
2608 	struct snl_errmsg_data e = {};
2609 	struct nlmsghdr *hdr;
2610 	uint32_t seq_id;
2611 	int family_id;
2612 
2613 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2614 	if (family_id == 0)
2615 		return (ENOTSUP);
2616 
2617 	snl_init_writer(&h->ss, &nw);
2618 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_TIMEOUT);
2619 	hdr->nlmsg_flags |= NLM_F_DUMP;
2620 
2621 	snl_add_msg_attr_u32(&nw, PF_TO_TIMEOUT, timeout);
2622 
2623 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2624 		return (ENXIO);
2625 
2626 	seq_id = hdr->nlmsg_seq;
2627 
2628 	if (! snl_send_message(&h->ss, hdr))
2629 		return (ENXIO);
2630 
2631 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2632 		if (! snl_parse_nlmsg(&h->ss, hdr, &get_timeout_parser, &to))
2633 			continue;
2634 	}
2635 
2636 	if (seconds != NULL)
2637 		*seconds = to.seconds;
2638 
2639 	return (e.error);
2640 }
2641 
2642 int
pfctl_set_limit(struct pfctl_handle * h,const int index,const uint limit)2643 pfctl_set_limit(struct pfctl_handle *h, const int index, const uint limit)
2644 {
2645 	struct snl_writer nw;
2646 	struct snl_errmsg_data e = {};
2647 	struct nlmsghdr *hdr;
2648 	uint32_t seq_id;
2649 	int family_id;
2650 
2651 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2652 	if (family_id == 0)
2653 		return (ENOTSUP);
2654 
2655 	snl_init_writer(&h->ss, &nw);
2656 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_SET_LIMIT);
2657 
2658 	snl_add_msg_attr_u32(&nw, PF_LI_INDEX, index);
2659 	snl_add_msg_attr_u32(&nw, PF_LI_LIMIT, limit);
2660 
2661 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2662 		return (ENXIO);
2663 
2664 	seq_id = hdr->nlmsg_seq;
2665 
2666 	if (! snl_send_message(&h->ss, hdr))
2667 		return (ENXIO);
2668 
2669 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2670 	}
2671 
2672 	return (e.error);
2673 }
2674 
2675 struct pfctl_nl_limit {
2676 	unsigned int limit;
2677 };
2678 #define	_OUT(_field)	offsetof(struct pfctl_nl_limit, _field)
2679 static struct snl_attr_parser ap_get_limit[] = {
2680 	{ .type = PF_LI_LIMIT, .off = _OUT(limit), .cb = snl_attr_get_uint32 },
2681 };
2682 static struct snl_field_parser fp_get_limit[] = {};
2683 #undef _OUT
2684 SNL_DECLARE_PARSER(get_limit_parser, struct genlmsghdr, fp_get_limit, ap_get_limit);
2685 
2686 int
pfctl_get_limit(struct pfctl_handle * h,const int index,uint * limit)2687 pfctl_get_limit(struct pfctl_handle *h, const int index, uint *limit)
2688 {
2689 	struct snl_writer nw;
2690 	struct pfctl_nl_limit li = {};
2691 	struct snl_errmsg_data e = {};
2692 	struct nlmsghdr *hdr;
2693 	uint32_t seq_id;
2694 	int family_id;
2695 
2696 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2697 	if (family_id == 0)
2698 		return (ENOTSUP);
2699 
2700 	snl_init_writer(&h->ss, &nw);
2701 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_LIMIT);
2702 	hdr->nlmsg_flags |= NLM_F_DUMP;
2703 
2704 	snl_add_msg_attr_u32(&nw, PF_LI_INDEX, index);
2705 
2706 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2707 		return (ENXIO);
2708 
2709 	seq_id = hdr->nlmsg_seq;
2710 
2711 	if (! snl_send_message(&h->ss, hdr))
2712 		return (ENXIO);
2713 
2714 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2715 		if (! snl_parse_nlmsg(&h->ss, hdr, &get_limit_parser, &li))
2716 			continue;
2717 	}
2718 
2719 	if (limit != NULL)
2720 		*limit = li.limit;
2721 
2722 	return (e.error);
2723 }
2724 
2725 struct pfctl_nl_begin_addrs {
2726 	uint32_t ticket;
2727 };
2728 #define	_OUT(_field)	offsetof(struct pfctl_nl_begin_addrs, _field)
2729 static struct snl_attr_parser ap_begin_addrs[] = {
2730 	{ .type = PF_BA_TICKET, .off = _OUT(ticket), .cb = snl_attr_get_uint32 },
2731 };
2732 static struct snl_field_parser fp_begin_addrs[] = {};
2733 #undef _OUT
2734 SNL_DECLARE_PARSER(begin_addrs_parser, struct genlmsghdr, fp_begin_addrs, ap_begin_addrs);
2735 
2736 int
pfctl_begin_addrs(struct pfctl_handle * h,uint32_t * ticket)2737 pfctl_begin_addrs(struct pfctl_handle *h, uint32_t *ticket)
2738 {
2739 	struct snl_writer nw;
2740 	struct pfctl_nl_begin_addrs attrs = {};
2741 	struct snl_errmsg_data e = {};
2742 	struct nlmsghdr *hdr;
2743 	uint32_t seq_id;
2744 	int family_id;
2745 
2746 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2747 	if (family_id == 0)
2748 		return (ENOTSUP);
2749 
2750 	snl_init_writer(&h->ss, &nw);
2751 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_BEGIN_ADDRS);
2752 	hdr->nlmsg_flags |= NLM_F_DUMP;
2753 
2754 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2755 		return (ENXIO);
2756 
2757 	seq_id = hdr->nlmsg_seq;
2758 
2759 	if (! snl_send_message(&h->ss, hdr))
2760 		return (ENXIO);
2761 
2762 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2763 		if (! snl_parse_nlmsg(&h->ss, hdr, &begin_addrs_parser, &attrs))
2764 			continue;
2765 	}
2766 
2767 	if (ticket != NULL)
2768 		*ticket = attrs.ticket;
2769 
2770 	return (e.error);
2771 }
2772 
2773 int
pfctl_add_addr(struct pfctl_handle * h,const struct pfioc_pooladdr * pa)2774 pfctl_add_addr(struct pfctl_handle *h, const struct pfioc_pooladdr *pa)
2775 {
2776 	struct snl_writer nw;
2777 	struct snl_errmsg_data e = {};
2778 	struct nlmsghdr *hdr;
2779 	uint32_t seq_id;
2780 	int family_id;
2781 
2782 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2783 	if (family_id == 0)
2784 		return (ENOTSUP);
2785 
2786 	snl_init_writer(&h->ss, &nw);
2787 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_ADD_ADDR);
2788 
2789 	snl_add_msg_attr_u32(&nw, PF_AA_ACTION, pa->action);
2790 	snl_add_msg_attr_u32(&nw, PF_AA_TICKET, pa->ticket);
2791 	snl_add_msg_attr_u32(&nw, PF_AA_NR, pa->nr);
2792 	snl_add_msg_attr_u32(&nw, PF_AA_R_NUM, pa->r_num);
2793 	snl_add_msg_attr_u8(&nw, PF_AA_R_ACTION, pa->r_action);
2794 	snl_add_msg_attr_u8(&nw, PF_AA_R_LAST, pa->r_last);
2795 	snl_add_msg_attr_u8(&nw, PF_AA_AF, pa->af);
2796 	snl_add_msg_attr_string(&nw, PF_AA_ANCHOR, pa->anchor);
2797 	snl_add_msg_attr_pool_addr(&nw, PF_AA_ADDR, &pa->addr);
2798 
2799 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2800 		return (ENXIO);
2801 
2802 	seq_id = hdr->nlmsg_seq;
2803 
2804 	if (! snl_send_message(&h->ss, hdr))
2805 		return (ENXIO);
2806 
2807 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2808 	}
2809 
2810 	return (e.error);
2811 }
2812 
2813 static const struct snl_attr_parser ap_get_addrs[] = {
2814 	{ .type = PF_AA_NR, .off = 0, .cb = snl_attr_get_uint32 },
2815 };
2816 static struct snl_field_parser fp_get_addrs[] = {};
2817 SNL_DECLARE_PARSER(get_addrs_parser, struct genlmsghdr, fp_get_addrs, ap_get_addrs);
2818 
2819 int
pfctl_get_addrs(struct pfctl_handle * h,uint32_t ticket,uint32_t r_num,uint8_t r_action,const char * anchor,uint32_t * nr)2820 pfctl_get_addrs(struct pfctl_handle *h, uint32_t ticket, uint32_t r_num,
2821     uint8_t r_action, const char *anchor, uint32_t *nr)
2822 {
2823 	struct snl_writer nw;
2824 	struct snl_errmsg_data e = {};
2825 	struct nlmsghdr *hdr;
2826 	uint32_t seq_id;
2827 	int family_id;
2828 
2829 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2830 	if (family_id == 0)
2831 		return (ENOTSUP);
2832 
2833 	snl_init_writer(&h->ss, &nw);
2834 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_ADDRS);
2835 
2836 	snl_add_msg_attr_u32(&nw, PF_AA_TICKET, ticket);
2837 	snl_add_msg_attr_u32(&nw, PF_AA_R_NUM, r_num);
2838 	snl_add_msg_attr_u8(&nw, PF_AA_R_ACTION, r_action);
2839 	snl_add_msg_attr_string(&nw, PF_AA_ANCHOR, anchor);
2840 
2841 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2842 		return (ENXIO);
2843 
2844 	seq_id = hdr->nlmsg_seq;
2845 
2846 	if (! snl_send_message(&h->ss, hdr))
2847 		return (ENXIO);
2848 
2849 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2850 		if (! snl_parse_nlmsg(&h->ss, hdr, &get_addrs_parser, nr))
2851 			continue;
2852 	}
2853 
2854 	return (e.error);
2855 }
2856 
2857 #define _OUT(_field)	offsetof(struct pf_pooladdr, _field)
2858 static const struct snl_attr_parser ap_pool_addr[] = {
2859 	{ .type = PF_PA_ADDR, .off = _OUT(addr), .arg = &addr_wrap_parser, .cb = snl_attr_get_nested },
2860 	{ .type = PF_PA_IFNAME, .off = _OUT(ifname), .arg_u32 = IFNAMSIZ, .cb = snl_attr_copy_string },
2861 };
2862 SNL_DECLARE_ATTR_PARSER(pool_addr_parser, ap_pool_addr);
2863 #undef _OUT
2864 
2865 #define _OUT(_field)	offsetof(struct pfioc_pooladdr, _field)
2866 static const struct snl_attr_parser ap_get_addr[] = {
2867 	{ .type = PF_AA_ACTION, .off = _OUT(action), .cb = snl_attr_get_uint32 },
2868 	{ .type = PF_AA_TICKET, .off = _OUT(ticket), .cb = snl_attr_get_uint32 },
2869 	{ .type = PF_AA_NR, .off = _OUT(nr), .cb = snl_attr_get_uint32 },
2870 	{ .type = PF_AA_R_NUM, .off = _OUT(r_num), .cb = snl_attr_get_uint32 },
2871 	{ .type = PF_AA_R_ACTION, .off = _OUT(r_action), .cb = snl_attr_get_uint8 },
2872 	{ .type = PF_AA_R_LAST, .off = _OUT(r_last), .cb = snl_attr_get_uint8 },
2873 	{ .type = PF_AA_AF, .off = _OUT(af), .cb = snl_attr_get_uint8 },
2874 	{ .type = PF_AA_ANCHOR, .off = _OUT(anchor), .arg_u32 = MAXPATHLEN, .cb = snl_attr_copy_string },
2875 	{ .type = PF_AA_ADDR, .off = _OUT(addr), .arg = &pool_addr_parser, .cb = snl_attr_get_nested },
2876 };
2877 static struct snl_field_parser fp_get_addr[] = {};
2878 SNL_DECLARE_PARSER(get_addr_parser, struct genlmsghdr, fp_get_addr, ap_get_addr);
2879 #undef _OUT
2880 
2881 int
pfctl_get_addr(struct pfctl_handle * h,uint32_t ticket,uint32_t r_num,uint8_t r_action,const char * anchor,uint32_t nr,struct pfioc_pooladdr * pa)2882 pfctl_get_addr(struct pfctl_handle *h, uint32_t ticket, uint32_t r_num,
2883     uint8_t r_action, const char *anchor, uint32_t nr, struct pfioc_pooladdr *pa)
2884 {
2885 	struct snl_writer nw;
2886 	struct snl_errmsg_data e = {};
2887 	struct nlmsghdr *hdr;
2888 	uint32_t seq_id;
2889 	int family_id;
2890 
2891 	family_id =snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2892 	if (family_id == 0)
2893 		return (ENOTSUP);
2894 
2895 	snl_init_writer(&h->ss, &nw);
2896 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_ADDR);
2897 
2898 	snl_add_msg_attr_u32(&nw, PF_AA_TICKET, ticket);
2899 	snl_add_msg_attr_u32(&nw, PF_AA_R_NUM, r_num);
2900 	snl_add_msg_attr_u8(&nw, PF_AA_R_ACTION, r_action);
2901 	snl_add_msg_attr_string(&nw, PF_AA_ANCHOR, anchor);
2902 	snl_add_msg_attr_u32(&nw, PF_AA_NR, nr);
2903 
2904 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2905 		return (ENXIO);
2906 
2907 	seq_id = hdr->nlmsg_seq;
2908 
2909 	if (! snl_send_message(&h->ss, hdr))
2910 		return (ENXIO);
2911 
2912 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2913 		if (! snl_parse_nlmsg(&h->ss, hdr, &get_addr_parser, pa))
2914 			continue;
2915 	}
2916 
2917 	return (e.error);
2918 }
2919 
2920 #define _OUT(_field)	offsetof(struct pfioc_ruleset, _field)
2921 static const struct snl_attr_parser ap_ruleset[] = {
2922 	{ .type = PF_RS_NR, .off = _OUT(nr), .cb = snl_attr_get_uint32 },
2923 	{ .type = PF_RS_NAME, .off = _OUT(name), .arg = (void *)PF_ANCHOR_NAME_SIZE, .cb = snl_attr_copy_string },
2924 };
2925 static struct snl_field_parser fp_ruleset[] = {};
2926 SNL_DECLARE_PARSER(ruleset_parser, struct genlmsghdr, fp_ruleset, ap_ruleset);
2927 #undef _OUT
2928 
2929 int
pfctl_get_rulesets(struct pfctl_handle * h,const char * path,uint32_t * nr)2930 pfctl_get_rulesets(struct pfctl_handle *h, const char *path, uint32_t *nr)
2931 {
2932 	struct snl_writer nw;
2933 	struct snl_errmsg_data e = {};
2934 	struct nlmsghdr *hdr;
2935 	struct pfioc_ruleset rs = {};
2936 	uint32_t seq_id;
2937 	int family_id;
2938 
2939 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2940 	if (family_id == 0)
2941 		return (ENOTSUP);
2942 
2943 	snl_init_writer(&h->ss, &nw);
2944 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_RULESETS);
2945 
2946 	snl_add_msg_attr_string(&nw, PF_RS_PATH, path);
2947 
2948 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2949 		return (ENXIO);
2950 
2951 	seq_id = hdr->nlmsg_seq;
2952 
2953 	if (! snl_send_message(&h->ss, hdr))
2954 		return (ENXIO);
2955 
2956 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2957 		if (! snl_parse_nlmsg(&h->ss, hdr, &ruleset_parser, &rs))
2958 			continue;
2959 	}
2960 
2961 	*nr = rs.nr;
2962 
2963 	return (e.error);
2964 }
2965 
2966 int
pfctl_get_ruleset(struct pfctl_handle * h,const char * path,uint32_t nr,struct pfioc_ruleset * rs)2967 pfctl_get_ruleset(struct pfctl_handle *h, const char *path, uint32_t nr, struct pfioc_ruleset *rs)
2968 {
2969 	struct snl_writer nw;
2970 	struct snl_errmsg_data e = {};
2971 	struct nlmsghdr *hdr;
2972 	uint32_t seq_id;
2973 	int family_id;
2974 
2975 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
2976 	if (family_id == 0)
2977 		return (ENOTSUP);
2978 
2979 	snl_init_writer(&h->ss, &nw);
2980 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_RULESET);
2981 
2982 	snl_add_msg_attr_string(&nw, PF_RS_PATH, path);
2983 	snl_add_msg_attr_u32(&nw, PF_RS_NR, nr);
2984 
2985 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
2986 		return (ENXIO);
2987 
2988 	seq_id = hdr->nlmsg_seq;
2989 
2990 	if (! snl_send_message(&h->ss, hdr))
2991 		return (ENXIO);
2992 
2993 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
2994 		if (! snl_parse_nlmsg(&h->ss, hdr, &ruleset_parser, rs))
2995 			continue;
2996 	}
2997 
2998 	return (e.error);
2999 }
3000 
3001 #define	_OUT(_field)	offsetof(struct pfctl_threshold, _field)
3002 static const struct snl_attr_parser ap_pfctl_threshold[] = {
3003 	{ .type = PF_TH_LIMIT, .off = _OUT(limit), .cb = snl_attr_get_uint32 },
3004 	{ .type = PF_TH_SECONDS, .off = _OUT(seconds), .cb = snl_attr_get_uint32 },
3005 	{ .type = PF_TH_COUNT, .off = _OUT(count), .cb = snl_attr_get_uint32 },
3006 	{ .type = PF_TH_LAST, .off = _OUT(last), .cb = snl_attr_get_uint32 },
3007 };
3008 SNL_DECLARE_ATTR_PARSER(pfctl_threshold_parser, ap_pfctl_threshold);
3009 #undef _OUT
3010 
3011 #define	_OUT(_field)	offsetof(struct pfctl_src_node, _field)
3012 static struct snl_attr_parser ap_srcnode[] = {
3013 	{ .type = PF_SN_ADDR, .off = _OUT(addr), .cb = snl_attr_get_in6_addr },
3014 	{ .type = PF_SN_RADDR, .off = _OUT(raddr), .cb = snl_attr_get_in6_addr },
3015 	{ .type = PF_SN_RULE_NR, .off = _OUT(rule), .cb = snl_attr_get_uint32 },
3016 	{ .type = PF_SN_BYTES_IN, .off = _OUT(bytes[0]), .cb = snl_attr_get_uint64 },
3017 	{ .type = PF_SN_BYTES_OUT, .off = _OUT(bytes[1]), .cb = snl_attr_get_uint64 },
3018 	{ .type = PF_SN_PACKETS_IN, .off = _OUT(packets[0]), .cb = snl_attr_get_uint64 },
3019 	{ .type = PF_SN_PACKETS_OUT, .off = _OUT(packets[1]), .cb = snl_attr_get_uint64 },
3020 	{ .type = PF_SN_STATES, .off = _OUT(states), .cb = snl_attr_get_uint32 },
3021 	{ .type = PF_SN_CONNECTIONS, .off = _OUT(conn), .cb = snl_attr_get_uint32 },
3022 	{ .type = PF_SN_AF, .off = _OUT(af), .cb = snl_attr_get_uint8 },
3023 	{ .type = PF_SN_RULE_TYPE, .off = _OUT(ruletype), .cb = snl_attr_get_uint8 },
3024 	{ .type = PF_SN_CREATION, .off = _OUT(creation), .cb = snl_attr_get_uint64 },
3025 	{ .type = PF_SN_EXPIRE, .off = _OUT(expire), .cb = snl_attr_get_uint64 },
3026 	{ .type = PF_SN_CONNECTION_RATE, .off = _OUT(conn_rate), .arg = &pfctl_threshold_parser, .cb = snl_attr_get_nested },
3027 };
3028 static struct snl_field_parser fp_srcnode[] = {};
3029 #undef _OUT
3030 SNL_DECLARE_PARSER(srcnode_parser, struct genlmsghdr, fp_srcnode, ap_srcnode);
3031 
3032 int
pfctl_get_srcnodes(struct pfctl_handle * h,pfctl_get_srcnode_fn fn,void * arg)3033 pfctl_get_srcnodes(struct pfctl_handle *h, pfctl_get_srcnode_fn fn, void *arg)
3034 {
3035 	struct snl_writer nw;
3036 	struct pfctl_src_node sn;
3037 	struct snl_errmsg_data e = {};
3038 	struct nlmsghdr *hdr;
3039 	uint32_t seq_id;
3040 	int family_id;
3041 	int ret;
3042 
3043 	family_id = snl_get_genl_family(&h->ss, PFNL_FAMILY_NAME);
3044 	if (family_id == 0)
3045 		return (ENOTSUP);
3046 
3047 	snl_init_writer(&h->ss, &nw);
3048 	hdr = snl_create_genl_msg_request(&nw, family_id, PFNL_CMD_GET_SRCNODES);
3049 
3050 	if ((hdr = snl_finalize_msg(&nw)) == NULL)
3051 		return (ENXIO);
3052 
3053 	seq_id = hdr->nlmsg_seq;
3054 
3055 	if (!snl_send_message(&h->ss, hdr))
3056 		return (ENXIO);
3057 
3058 	while ((hdr = snl_read_reply_multi(&h->ss, seq_id, &e)) != NULL) {
3059 		if (!snl_parse_nlmsg(&h->ss, hdr, &srcnode_parser, &sn))
3060 			continue;
3061 
3062 		ret = fn(&sn, arg);
3063 		if (ret != 0)
3064 			return (ret);
3065 	}
3066 
3067 	return (e.error);
3068 }
3069