xref: /netbsd-src/lib/libnpf/npf.c (revision 82ad575716605df31379cf04a2f3efbc97b8a6f5)
1 /*	$NetBSD: npf.c,v 1.14 2012/10/28 16:27:20 rmind Exp $	*/
2 
3 /*-
4  * Copyright (c) 2010-2012 The NetBSD Foundation, Inc.
5  * All rights reserved.
6  *
7  * This material is based upon work partially supported by The
8  * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions and the following disclaimer.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28  * ARISING IN 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 __KERNEL_RCSID(0, "$NetBSD: npf.c,v 1.14 2012/10/28 16:27:20 rmind Exp $");
34 
35 #include <sys/types.h>
36 #include <netinet/in_systm.h>
37 #include <netinet/in.h>
38 #include <net/if.h>
39 #include <prop/proplib.h>
40 
41 #include <stdlib.h>
42 #include <string.h>
43 #include <assert.h>
44 #include <errno.h>
45 #include <err.h>
46 
47 #define	_NPF_PRIVATE
48 #include "npf.h"
49 
50 struct nl_config {
51 	/* Rules, translations, tables, procedures. */
52 	prop_dictionary_t	ncf_dict;
53 	prop_array_t		ncf_rules_list;
54 	prop_array_t		ncf_rproc_list;
55 	prop_array_t		ncf_table_list;
56 	prop_array_t		ncf_nat_list;
57 	/* Priority counters. */
58 	pri_t			ncf_rule_pri;
59 	pri_t			ncf_nat_pri;
60 	/* Debug information. */
61 	prop_dictionary_t	ncf_debug;
62 	/* Error report. */
63 	prop_dictionary_t	ncf_err;
64 	/* Custom file to externalise property-list. */
65 	const char *		ncf_plist;
66 	bool			ncf_flush;
67 };
68 
69 struct nl_rule {
70 	prop_dictionary_t	nrl_dict;
71 };
72 
73 struct nl_rproc {
74 	prop_dictionary_t	nrp_dict;
75 };
76 
77 struct nl_table {
78 	prop_dictionary_t	ntl_dict;
79 };
80 
81 struct nl_ext {
82 	const char *		nxt_name;
83 	prop_dictionary_t	nxt_dict;
84 };
85 
86 /*
87  * CONFIGURATION INTERFACE.
88  */
89 
90 nl_config_t *
91 npf_config_create(void)
92 {
93 	nl_config_t *ncf;
94 
95 	ncf = calloc(1, sizeof(*ncf));
96 	if (ncf == NULL) {
97 		return NULL;
98 	}
99 	ncf->ncf_rules_list = prop_array_create();
100 	ncf->ncf_rproc_list = prop_array_create();
101 	ncf->ncf_table_list = prop_array_create();
102 	ncf->ncf_nat_list = prop_array_create();
103 
104 	ncf->ncf_rule_pri = 1;
105 	ncf->ncf_nat_pri = 1;
106 
107 	ncf->ncf_plist = NULL;
108 	ncf->ncf_flush = false;
109 
110 	return ncf;
111 }
112 
113 int
114 npf_config_submit(nl_config_t *ncf, int fd)
115 {
116 	const char *plist = ncf->ncf_plist;
117 	prop_dictionary_t npf_dict;
118 	int error = 0;
119 
120 	npf_dict = prop_dictionary_create();
121 	if (npf_dict == NULL) {
122 		return ENOMEM;
123 	}
124 	if (ncf->ncf_debug) {
125 		prop_dictionary_set(npf_dict, "debug", ncf->ncf_debug);
126 	}
127 	prop_dictionary_set(npf_dict, "rules", ncf->ncf_rules_list);
128 	prop_dictionary_set(npf_dict, "rprocs", ncf->ncf_rproc_list);
129 	prop_dictionary_set(npf_dict, "tables", ncf->ncf_table_list);
130 	prop_dictionary_set(npf_dict, "translation", ncf->ncf_nat_list);
131 	prop_dictionary_set_bool(npf_dict, "flush", ncf->ncf_flush);
132 
133 	if (plist) {
134 		if (!prop_dictionary_externalize_to_file(npf_dict, plist)) {
135 			error = errno;
136 		}
137 		prop_object_release(npf_dict);
138 		return error;
139 	}
140 
141 	error = prop_dictionary_sendrecv_ioctl(npf_dict, fd,
142 	    IOC_NPF_RELOAD, &ncf->ncf_err);
143 	if (error) {
144 		prop_object_release(npf_dict);
145 		assert(ncf->ncf_err == NULL);
146 		return error;
147 	}
148 
149 	prop_dictionary_get_int32(ncf->ncf_err, "errno", &error);
150 	prop_object_release(npf_dict);
151 	return error;
152 }
153 
154 nl_config_t *
155 npf_config_retrieve(int fd, bool *active, bool *loaded)
156 {
157 	prop_dictionary_t npf_dict;
158 	nl_config_t *ncf;
159 	int error;
160 
161 	error = prop_dictionary_recv_ioctl(fd, IOC_NPF_GETCONF, &npf_dict);
162 	if (error) {
163 		return NULL;
164 	}
165 	ncf = calloc(1, sizeof(*ncf));
166 	if (ncf == NULL) {
167 		prop_object_release(npf_dict);
168 		return NULL;
169 	}
170 	ncf->ncf_dict = npf_dict;
171 	ncf->ncf_rules_list = prop_dictionary_get(npf_dict, "rules");
172 	ncf->ncf_rproc_list = prop_dictionary_get(npf_dict, "rprocs");
173 	ncf->ncf_table_list = prop_dictionary_get(npf_dict, "tables");
174 	ncf->ncf_nat_list = prop_dictionary_get(npf_dict, "translation");
175 
176 	prop_dictionary_get_bool(npf_dict, "active", active);
177 	*loaded = (ncf->ncf_rules_list != NULL);
178 	return ncf;
179 }
180 
181 int
182 npf_config_flush(int fd)
183 {
184 	nl_config_t *ncf;
185 	int error;
186 
187 	ncf = npf_config_create();
188 	if (ncf == NULL) {
189 		return ENOMEM;
190 	}
191 	ncf->ncf_flush = true;
192 	error = npf_config_submit(ncf, fd);
193 	npf_config_destroy(ncf);
194 	return error;
195 }
196 
197 void
198 _npf_config_error(nl_config_t *ncf, nl_error_t *ne)
199 {
200 	memset(ne, 0, sizeof(*ne));
201 	prop_dictionary_get_int32(ncf->ncf_err, "id", &ne->ne_id);
202 	prop_dictionary_get_cstring(ncf->ncf_err,
203 	    "source-file", &ne->ne_source_file);
204 	prop_dictionary_get_uint32(ncf->ncf_err,
205 	    "source-line", &ne->ne_source_line);
206 	prop_dictionary_get_int32(ncf->ncf_err,
207 	    "ncode-error", &ne->ne_ncode_error);
208 	prop_dictionary_get_int32(ncf->ncf_err,
209 	    "ncode-errat", &ne->ne_ncode_errat);
210 }
211 
212 void
213 npf_config_destroy(nl_config_t *ncf)
214 {
215 
216 	if (!ncf->ncf_dict) {
217 		prop_object_release(ncf->ncf_rules_list);
218 		prop_object_release(ncf->ncf_rproc_list);
219 		prop_object_release(ncf->ncf_table_list);
220 		prop_object_release(ncf->ncf_nat_list);
221 	}
222 	if (ncf->ncf_err) {
223 		prop_object_release(ncf->ncf_err);
224 	}
225 	if (ncf->ncf_debug) {
226 		prop_object_release(ncf->ncf_debug);
227 	}
228 	free(ncf);
229 }
230 
231 void
232 _npf_config_setsubmit(nl_config_t *ncf, const char *plist_file)
233 {
234 
235 	ncf->ncf_plist = plist_file;
236 }
237 
238 static bool
239 _npf_prop_array_lookup(prop_array_t array, const char *key, const char *name)
240 {
241 	prop_dictionary_t dict;
242 	prop_object_iterator_t it;
243 
244 	it = prop_array_iterator(array);
245 	while ((dict = prop_object_iterator_next(it)) != NULL) {
246 		const char *lname;
247 		prop_dictionary_get_cstring_nocopy(dict, key, &lname);
248 		if (strcmp(name, lname) == 0)
249 			break;
250 	}
251 	prop_object_iterator_release(it);
252 	return dict ? true : false;
253 }
254 
255 /*
256  * NPF EXTENSION INTERFACE.
257  */
258 
259 nl_ext_t *
260 npf_ext_construct(const char *name)
261 {
262 	nl_ext_t *ext;
263 
264 	ext = malloc(sizeof(*ext));
265 	if (ext == NULL) {
266 		return NULL;
267 	}
268 	ext->nxt_name = strdup(name);
269 	if (ext->nxt_name == NULL) {
270 		free(ext);
271 		return NULL;
272 	}
273 	ext->nxt_dict = prop_dictionary_create();
274 
275 	return ext;
276 }
277 
278 void
279 npf_ext_param_u32(nl_ext_t *ext, const char *key, uint32_t val)
280 {
281 	prop_dictionary_t extdict = ext->nxt_dict;
282 	prop_dictionary_set_uint32(extdict, key, val);
283 }
284 
285 void
286 npf_ext_param_bool(nl_ext_t *ext, const char *key, bool val)
287 {
288 	prop_dictionary_t extdict = ext->nxt_dict;
289 	prop_dictionary_set_bool(extdict, key, val);
290 }
291 
292 /*
293  * RULE INTERFACE.
294  */
295 
296 nl_rule_t *
297 npf_rule_create(const char *name, uint32_t attr, u_int if_idx)
298 {
299 	prop_dictionary_t rldict;
300 	nl_rule_t *rl;
301 
302 	rl = malloc(sizeof(*rl));
303 	if (rl == NULL) {
304 		return NULL;
305 	}
306 	rldict = prop_dictionary_create();
307 	if (rldict == NULL) {
308 		free(rl);
309 		return NULL;
310 	}
311 	if (name) {
312 		prop_dictionary_set_cstring(rldict, "name", name);
313 	}
314 	prop_dictionary_set_uint32(rldict, "attributes", attr);
315 
316 	if (if_idx) {
317 		prop_dictionary_set_uint32(rldict, "interface", if_idx);
318 	}
319 	rl->nrl_dict = rldict;
320 	return rl;
321 }
322 
323 int
324 npf_rule_setcode(nl_rule_t *rl, int type, const void *code, size_t sz)
325 {
326 	prop_dictionary_t rldict = rl->nrl_dict;
327 	prop_data_t cdata;
328 
329 	if (type != NPF_CODE_NCODE) {
330 		return ENOTSUP;
331 	}
332 	cdata = prop_data_create_data(code, sz);
333 	if (cdata == NULL) {
334 		return ENOMEM;
335 	}
336 	prop_dictionary_set(rldict, "ncode", cdata);
337 	prop_object_release(cdata);
338 	return 0;
339 }
340 
341 int
342 npf_rule_setproc(nl_config_t *ncf, nl_rule_t *rl, const char *name)
343 {
344 	prop_dictionary_t rldict = rl->nrl_dict;
345 
346 	if (!npf_rproc_exists_p(ncf, name)) {
347 		return ENOENT;
348 	}
349 	prop_dictionary_set_cstring(rldict, "rproc", name);
350 	return 0;
351 }
352 
353 bool
354 npf_rule_exists_p(nl_config_t *ncf, const char *name)
355 {
356 
357 	return _npf_prop_array_lookup(ncf->ncf_rules_list, "name", name);
358 }
359 
360 int
361 npf_rule_insert(nl_config_t *ncf, nl_rule_t *parent, nl_rule_t *rl, pri_t pri)
362 {
363 	prop_dictionary_t rldict = rl->nrl_dict;
364 	prop_array_t rlset;
365 
366 	if (pri == NPF_PRI_NEXT) {
367 		pri = ncf->ncf_rule_pri++;
368 	} else if (ncf) {
369 		ncf->ncf_rule_pri = pri + 1;
370 	}
371 	prop_dictionary_set_int32(rldict, "priority", pri);
372 
373 	if (parent) {
374 		prop_dictionary_t pdict = parent->nrl_dict;
375 		rlset = prop_dictionary_get(pdict, "subrules");
376 		if (rlset == NULL) {
377 			rlset = prop_array_create();
378 			prop_dictionary_set(pdict, "subrules", rlset);
379 			prop_object_release(rlset);
380 		}
381 	} else {
382 		rlset = ncf->ncf_rules_list;
383 	}
384 	prop_array_add(rlset, rldict);
385 	return 0;
386 }
387 
388 static int
389 _npf_rule_foreach1(prop_array_t rules, unsigned nlevel, nl_rule_callback_t func)
390 {
391 	prop_dictionary_t rldict;
392 	prop_object_iterator_t it;
393 
394 	if (!rules || prop_object_type(rules) != PROP_TYPE_ARRAY) {
395 		return ENOENT;
396 	}
397 	it = prop_array_iterator(rules);
398 	if (it == NULL) {
399 		return ENOMEM;
400 	}
401 	while ((rldict = prop_object_iterator_next(it)) != NULL) {
402 		prop_array_t subrules;
403 		nl_rule_t nrl;
404 
405 		nrl.nrl_dict = rldict;
406 		(*func)(&nrl, nlevel);
407 
408 		subrules = prop_dictionary_get(rldict, "subrules");
409 		if (!subrules) {
410 			continue;
411 		}
412 		(void)_npf_rule_foreach1(subrules, nlevel + 1, func);
413 		prop_object_release(subrules);
414 	}
415 	prop_object_iterator_release(it);
416 	return 0;
417 }
418 
419 int
420 _npf_rule_foreach(nl_config_t *ncf, nl_rule_callback_t func)
421 {
422 
423 	return _npf_rule_foreach1(ncf->ncf_rules_list, 0, func);
424 }
425 
426 pri_t
427 _npf_rule_getinfo(nl_rule_t *nrl, const char **rname, uint32_t *attr,
428     u_int *if_idx)
429 {
430 	prop_dictionary_t rldict = nrl->nrl_dict;
431 	pri_t prio;
432 
433 	prop_dictionary_get_cstring_nocopy(rldict, "name", rname);
434 	prop_dictionary_get_uint32(rldict, "attributes", attr);
435 	prop_dictionary_get_int32(rldict, "priority", &prio);
436 	prop_dictionary_get_uint32(rldict, "interface", if_idx);
437 	return prio;
438 }
439 
440 const void *
441 _npf_rule_ncode(nl_rule_t *nrl, size_t *size)
442 {
443 	prop_dictionary_t rldict = nrl->nrl_dict;
444 	prop_object_t obj = prop_dictionary_get(rldict, "ncode");
445 	*size = prop_data_size(obj);
446 	return prop_data_data_nocopy(obj);
447 }
448 
449 const char *
450 _npf_rule_rproc(nl_rule_t *nrl)
451 {
452 	prop_dictionary_t rldict = nrl->nrl_dict;
453 	const char *rpname = NULL;
454 
455 	prop_dictionary_get_cstring_nocopy(rldict, "rproc", &rpname);
456 	return rpname;
457 }
458 
459 void
460 npf_rule_destroy(nl_rule_t *rl)
461 {
462 
463 	prop_object_release(rl->nrl_dict);
464 	free(rl);
465 }
466 
467 /*
468  * RULE PROCEDURE INTERFACE.
469  */
470 
471 nl_rproc_t *
472 npf_rproc_create(const char *name)
473 {
474 	prop_dictionary_t rpdict;
475 	prop_array_t extcalls;
476 	nl_rproc_t *nrp;
477 
478 	nrp = malloc(sizeof(nl_rproc_t));
479 	if (nrp == NULL) {
480 		return NULL;
481 	}
482 	rpdict = prop_dictionary_create();
483 	if (rpdict == NULL) {
484 		free(nrp);
485 		return NULL;
486 	}
487 	prop_dictionary_set_cstring(rpdict, "name", name);
488 
489 	extcalls = prop_array_create();
490 	if (extcalls == NULL) {
491 		prop_object_release(rpdict);
492 		free(nrp);
493 		return NULL;
494 	}
495 	prop_dictionary_set(rpdict, "extcalls", extcalls);
496 	prop_object_release(extcalls);
497 
498 	nrp->nrp_dict = rpdict;
499 	return nrp;
500 }
501 
502 int
503 npf_rproc_extcall(nl_rproc_t *rp, nl_ext_t *ext)
504 {
505 	prop_dictionary_t rpdict = rp->nrp_dict;
506 	prop_dictionary_t extdict = ext->nxt_dict;
507 	prop_array_t extcalls;
508 
509 	extcalls = prop_dictionary_get(rpdict, "extcalls");
510 	if (_npf_prop_array_lookup(extcalls, "name", ext->nxt_name)) {
511 		return EEXIST;
512 	}
513 	prop_dictionary_set_cstring(extdict, "name", ext->nxt_name);
514 	prop_array_add(extcalls, extdict);
515 	return 0;
516 }
517 
518 bool
519 npf_rproc_exists_p(nl_config_t *ncf, const char *name)
520 {
521 
522 	return _npf_prop_array_lookup(ncf->ncf_rproc_list, "name", name);
523 }
524 
525 int
526 npf_rproc_insert(nl_config_t *ncf, nl_rproc_t *rp)
527 {
528 	prop_dictionary_t rpdict = rp->nrp_dict;
529 	const char *name;
530 
531 	if (!prop_dictionary_get_cstring_nocopy(rpdict, "name", &name)) {
532 		return EINVAL;
533 	}
534 	if (npf_rproc_exists_p(ncf, name)) {
535 		return EEXIST;
536 	}
537 	prop_array_add(ncf->ncf_rproc_list, rpdict);
538 	return 0;
539 }
540 
541 /*
542  * TRANSLATION INTERFACE.
543  */
544 
545 nl_nat_t *
546 npf_nat_create(int type, u_int flags, u_int if_idx,
547     npf_addr_t *addr, int af, in_port_t port)
548 {
549 	nl_rule_t *rl;
550 	prop_dictionary_t rldict;
551 	prop_data_t addrdat;
552 	uint32_t attr;
553 	size_t sz;
554 
555 	if (af == AF_INET) {
556 		sz = sizeof(struct in_addr);
557 	} else if (af == AF_INET6) {
558 		sz = sizeof(struct in6_addr);
559 	} else {
560 		return NULL;
561 	}
562 
563 	attr = NPF_RULE_PASS | NPF_RULE_FINAL |
564 	    (type == NPF_NATOUT ? NPF_RULE_OUT : NPF_RULE_IN);
565 
566 	/* Create a rule for NAT policy.  Next, will add translation data. */
567 	rl = npf_rule_create(NULL, attr, if_idx);
568 	if (rl == NULL) {
569 		return NULL;
570 	}
571 	rldict = rl->nrl_dict;
572 
573 	/* Translation type and flags. */
574 	prop_dictionary_set_int32(rldict, "type", type);
575 	prop_dictionary_set_uint32(rldict, "flags", flags);
576 
577 	/* Translation IP. */
578 	addrdat = prop_data_create_data(addr, sz);
579 	if (addrdat == NULL) {
580 		npf_rule_destroy(rl);
581 		return NULL;
582 	}
583 	prop_dictionary_set(rldict, "translation-ip", addrdat);
584 	prop_object_release(addrdat);
585 
586 	/* Translation port (for redirect case). */
587 	prop_dictionary_set_uint16(rldict, "translation-port", port);
588 
589 	return (nl_nat_t *)rl;
590 }
591 
592 int
593 npf_nat_insert(nl_config_t *ncf, nl_nat_t *nt, pri_t pri)
594 {
595 	prop_dictionary_t rldict = nt->nrl_dict;
596 
597 	if (pri == NPF_PRI_NEXT) {
598 		pri = ncf->ncf_nat_pri++;
599 	} else {
600 		ncf->ncf_nat_pri = pri + 1;
601 	}
602 	prop_dictionary_set_int32(rldict, "priority", pri);
603 	prop_array_add(ncf->ncf_nat_list, rldict);
604 	return 0;
605 }
606 
607 int
608 _npf_nat_foreach(nl_config_t *ncf, nl_rule_callback_t func)
609 {
610 
611 	return _npf_rule_foreach1(ncf->ncf_nat_list, 0, func);
612 }
613 
614 void
615 _npf_nat_getinfo(nl_nat_t *nt, int *type, u_int *flags, npf_addr_t *addr,
616     size_t *alen, in_port_t *port)
617 {
618 	prop_dictionary_t rldict = nt->nrl_dict;
619 
620 	prop_dictionary_get_int32(rldict, "type", type);
621 	prop_dictionary_get_uint32(rldict, "flags", flags);
622 
623 	prop_object_t obj = prop_dictionary_get(rldict, "translation-ip");
624 	*alen = prop_data_size(obj);
625 	memcpy(addr, prop_data_data_nocopy(obj), *alen);
626 
627 	prop_dictionary_get_uint16(rldict, "translation-port", port);
628 }
629 
630 /*
631  * TABLE INTERFACE.
632  */
633 
634 nl_table_t *
635 npf_table_create(u_int id, int type)
636 {
637 	prop_dictionary_t tldict;
638 	prop_array_t tblents;
639 	nl_table_t *tl;
640 
641 	tl = malloc(sizeof(*tl));
642 	if (tl == NULL) {
643 		return NULL;
644 	}
645 	tldict = prop_dictionary_create();
646 	if (tldict == NULL) {
647 		free(tl);
648 		return NULL;
649 	}
650 	prop_dictionary_set_uint32(tldict, "id", id);
651 	prop_dictionary_set_int32(tldict, "type", type);
652 
653 	tblents = prop_array_create();
654 	if (tblents == NULL) {
655 		prop_object_release(tldict);
656 		free(tl);
657 		return NULL;
658 	}
659 	prop_dictionary_set(tldict, "entries", tblents);
660 	prop_object_release(tblents);
661 
662 	tl->ntl_dict = tldict;
663 	return tl;
664 }
665 
666 int
667 npf_table_add_entry(nl_table_t *tl, const int alen,
668     const npf_addr_t *addr, const npf_netmask_t mask)
669 {
670 	prop_dictionary_t tldict = tl->ntl_dict, entdict;
671 	prop_array_t tblents;
672 	prop_data_t addrdata;
673 
674 	/* Create the table entry. */
675 	entdict = prop_dictionary_create();
676 	if (entdict == NULL) {
677 		return ENOMEM;
678 	}
679 	addrdata = prop_data_create_data(addr, alen);
680 	prop_dictionary_set(entdict, "addr", addrdata);
681 	prop_dictionary_set_uint8(entdict, "mask", mask);
682 	prop_object_release(addrdata);
683 
684 	/* Insert the entry. */
685 	tblents = prop_dictionary_get(tldict, "entries");
686 	prop_array_add(tblents, entdict);
687 	prop_object_release(entdict);
688 	return 0;
689 }
690 
691 bool
692 npf_table_exists_p(nl_config_t *ncf, u_int tid)
693 {
694 	prop_dictionary_t tldict;
695 	prop_object_iterator_t it;
696 
697 	it = prop_array_iterator(ncf->ncf_table_list);
698 	while ((tldict = prop_object_iterator_next(it)) != NULL) {
699 		u_int i;
700 		if (prop_dictionary_get_uint32(tldict, "id", &i) && tid == i)
701 			break;
702 	}
703 	prop_object_iterator_release(it);
704 	return tldict ? true : false;
705 }
706 
707 int
708 npf_table_insert(nl_config_t *ncf, nl_table_t *tl)
709 {
710 	prop_dictionary_t tldict = tl->ntl_dict;
711 	u_int tid;
712 
713 	if (!prop_dictionary_get_uint32(tldict, "id", &tid)) {
714 		return EINVAL;
715 	}
716 	if (npf_table_exists_p(ncf, tid)) {
717 		return EEXIST;
718 	}
719 	prop_array_add(ncf->ncf_table_list, tldict);
720 	return 0;
721 }
722 
723 void
724 npf_table_destroy(nl_table_t *tl)
725 {
726 
727 	prop_object_release(tl->ntl_dict);
728 	free(tl);
729 }
730 
731 void
732 _npf_table_foreach(nl_config_t *ncf, nl_table_callback_t func)
733 {
734 	prop_dictionary_t tldict;
735 	prop_object_iterator_t it;
736 
737 	it = prop_array_iterator(ncf->ncf_table_list);
738 	while ((tldict = prop_object_iterator_next(it)) != NULL) {
739 		u_int id;
740 		int type;
741 
742 		prop_dictionary_get_uint32(tldict, "id", &id);
743 		prop_dictionary_get_int32(tldict, "type", &type);
744 		(*func)(id, type);
745 	}
746 	prop_object_iterator_release(it);
747 }
748 
749 /*
750  * MISC.
751  */
752 
753 int
754 npf_update_rule(int fd, const char *rname __unused, nl_rule_t *rl)
755 {
756 	prop_dictionary_t rldict = rl->nrl_dict, errdict = NULL;
757 	int error;
758 
759 	error = prop_dictionary_sendrecv_ioctl(rldict, fd,
760 	    IOC_NPF_UPDATE_RULE, &errdict);
761 	if (errdict) {
762 		prop_object_release(errdict);
763 	}
764 	return error;
765 }
766 
767 int
768 npf_sessions_recv(int fd, const char *fpath)
769 {
770 	prop_dictionary_t sdict;
771 	int error;
772 
773 	error = prop_dictionary_recv_ioctl(fd, IOC_NPF_SESSIONS_SAVE, &sdict);
774 	if (error) {
775 		return error;
776 	}
777 	if (!prop_dictionary_externalize_to_file(sdict, fpath)) {
778 		error = errno;
779 	}
780 	prop_object_release(sdict);
781 	return error;
782 }
783 
784 int
785 npf_sessions_send(int fd, const char *fpath)
786 {
787 	prop_dictionary_t sdict;
788 	int error;
789 
790 	if (fpath) {
791 		sdict = prop_dictionary_internalize_from_file(fpath);
792 		if (sdict == NULL) {
793 			return errno;
794 		}
795 	} else {
796 		/* Empty: will flush the sessions. */
797 		prop_array_t selist = prop_array_create();
798 		sdict = prop_dictionary_create();
799 		prop_dictionary_set(sdict, "session-list", selist);
800 		prop_object_release(selist);
801 	}
802 	error = prop_dictionary_send_ioctl(sdict, fd, IOC_NPF_SESSIONS_LOAD);
803 	prop_object_release(sdict);
804 	return error;
805 }
806 
807 static prop_dictionary_t
808 _npf_debug_initonce(nl_config_t *ncf)
809 {
810 	if (!ncf->ncf_debug) {
811 		prop_array_t iflist = prop_array_create();
812 		ncf->ncf_debug = prop_dictionary_create();
813 		prop_dictionary_set(ncf->ncf_debug, "interfaces", iflist);
814 		prop_object_release(iflist);
815 	}
816 	return ncf->ncf_debug;
817 }
818 
819 void
820 _npf_debug_addif(nl_config_t *ncf, struct ifaddrs *ifa, u_int if_idx)
821 {
822 	prop_dictionary_t ifdict, dbg = _npf_debug_initonce(ncf);
823 	prop_array_t iflist = prop_dictionary_get(dbg, "interfaces");
824 
825 	if (_npf_prop_array_lookup(iflist, "name", ifa->ifa_name)) {
826 		return;
827 	}
828 
829 	ifdict = prop_dictionary_create();
830 	prop_dictionary_set_cstring(ifdict, "name", ifa->ifa_name);
831 	prop_dictionary_set_uint32(ifdict, "flags", ifa->ifa_flags);
832 	if (!if_idx) {
833 		if_idx = if_nametoindex(ifa->ifa_name);
834 	}
835 	prop_dictionary_set_uint32(ifdict, "idx", if_idx);
836 
837 	const struct sockaddr *sa = ifa->ifa_addr;
838 	npf_addr_t addr;
839 	size_t alen = 0;
840 
841 	switch (sa ? sa->sa_family : -1) {
842 	case AF_INET: {
843 		const struct sockaddr_in *sin = (const void *)sa;
844 		alen = sizeof(sin->sin_addr);
845 		memcpy(&addr, &sin->sin_addr, alen);
846 		break;
847 	}
848 	case AF_INET6: {
849 		const struct sockaddr_in6 *sin6 = (const void *)sa;
850 		alen = sizeof(sin6->sin6_addr);
851 		memcpy(&addr, &sin6->sin6_addr, alen);
852 		break;
853 	}
854 	default:
855 		break;
856 	}
857 
858 	if (alen) {
859 		prop_data_t addrdata = prop_data_create_data(&addr, alen);
860 		prop_dictionary_set(ifdict, "addr", addrdata);
861 		prop_object_release(addrdata);
862 	}
863 	prop_array_add(iflist, ifdict);
864 	prop_object_release(ifdict);
865 }
866