1 /* $OpenBSD: pf_table.c,v 1.52 2004/04/28 15:12:20 pb Exp $ */
2
3 /*
4 * Copyright (c) 2002 Cedric Berger
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
33 #include <sys/param.h>
34 #include <sys/systm.h>
35 #include <sys/socket.h>
36 #include <sys/mbuf.h>
37 #include <sys/kernel.h>
38
39 #include <net/if.h>
40 #include <net/route.h>
41 #include <netinet/in.h>
42 #include <netinet/ip_ipsp.h>
43 #include <net/pfvar.h>
44
45 #define ACCEPT_FLAGS(oklist) \
46 do { \
47 if ((flags & ~(oklist)) & \
48 PFR_FLAG_ALLMASK) \
49 return (EINVAL); \
50 } while (0)
51
52 #define COPYIN(from, to, size) \
53 ((flags & PFR_FLAG_USERIOCTL) ? \
54 copyin((from), (to), (size)) : \
55 (bcopy((from), (to), (size)), 0))
56
57 #define COPYOUT(from, to, size) \
58 ((flags & PFR_FLAG_USERIOCTL) ? \
59 copyout((from), (to), (size)) : \
60 (bcopy((from), (to), (size)), 0))
61
62 #define FILLIN_SIN(sin, addr) \
63 do { \
64 (sin).sin_len = sizeof(sin); \
65 (sin).sin_family = AF_INET; \
66 (sin).sin_addr = (addr); \
67 } while (0)
68
69 #define FILLIN_SIN6(sin6, addr) \
70 do { \
71 (sin6).sin6_len = sizeof(sin6); \
72 (sin6).sin6_family = AF_INET6; \
73 (sin6).sin6_addr = (addr); \
74 } while (0)
75
76 #define SWAP(type, a1, a2) \
77 do { \
78 type tmp = a1; \
79 a1 = a2; \
80 a2 = tmp; \
81 } while (0)
82
83 #define SUNION2PF(su, af) (((af)==AF_INET) ? \
84 (struct pf_addr *)&(su)->sin.sin_addr : \
85 (struct pf_addr *)&(su)->sin6.sin6_addr)
86
87 #define AF_BITS(af) (((af)==AF_INET)?32:128)
88 #define ADDR_NETWORK(ad) ((ad)->pfra_net < AF_BITS((ad)->pfra_af))
89 #define KENTRY_NETWORK(ke) ((ke)->pfrke_net < AF_BITS((ke)->pfrke_af))
90 #define KENTRY_RNF_ROOT(ke) \
91 ((((struct radix_node *)(ke))->rn_flags & RNF_ROOT) != 0)
92
93 #define NO_ADDRESSES (-1)
94 #define ENQUEUE_UNMARKED_ONLY (1)
95 #define INVERT_NEG_FLAG (1)
96
97 struct pfr_walktree {
98 enum pfrw_op {
99 PFRW_MARK,
100 PFRW_SWEEP,
101 PFRW_ENQUEUE,
102 PFRW_GET_ADDRS,
103 PFRW_GET_ASTATS,
104 PFRW_POOL_GET,
105 PFRW_DYNADDR_UPDATE
106 } pfrw_op;
107 union {
108 struct pfr_addr *pfrw1_addr;
109 struct pfr_astats *pfrw1_astats;
110 struct pfr_kentryworkq *pfrw1_workq;
111 struct pfr_kentry *pfrw1_kentry;
112 struct pfi_dynaddr *pfrw1_dyn;
113 } pfrw_1;
114 int pfrw_free;
115 int pfrw_flags;
116 };
117 #define pfrw_addr pfrw_1.pfrw1_addr
118 #define pfrw_astats pfrw_1.pfrw1_astats
119 #define pfrw_workq pfrw_1.pfrw1_workq
120 #define pfrw_kentry pfrw_1.pfrw1_kentry
121 #define pfrw_dyn pfrw_1.pfrw1_dyn
122 #define pfrw_cnt pfrw_free
123
124 #define senderr(e) do { rv = (e); goto _bad; } while (0)
125
126 struct pool pfr_ktable_pl;
127 struct pool pfr_kentry_pl;
128 struct sockaddr_in pfr_sin;
129 struct sockaddr_in6 pfr_sin6;
130 union sockaddr_union pfr_mask;
131 struct pf_addr pfr_ffaddr;
132
133 void pfr_copyout_addr(struct pfr_addr *,
134 struct pfr_kentry *ke);
135 int pfr_validate_addr(struct pfr_addr *);
136 void pfr_enqueue_addrs(struct pfr_ktable *,
137 struct pfr_kentryworkq *, int *, int);
138 void pfr_mark_addrs(struct pfr_ktable *);
139 struct pfr_kentry *pfr_lookup_addr(struct pfr_ktable *,
140 struct pfr_addr *, int);
141 struct pfr_kentry *pfr_create_kentry(struct pfr_addr *);
142 void pfr_destroy_kentries(struct pfr_kentryworkq *);
143 void pfr_destroy_kentry(struct pfr_kentry *);
144 void pfr_insert_kentries(struct pfr_ktable *,
145 struct pfr_kentryworkq *, long);
146 void pfr_remove_kentries(struct pfr_ktable *,
147 struct pfr_kentryworkq *);
148 void pfr_clstats_kentries(struct pfr_kentryworkq *, long,
149 int);
150 void pfr_reset_feedback(struct pfr_addr *, int, int);
151 void pfr_prepare_network(union sockaddr_union *, int, int);
152 int pfr_route_kentry(struct pfr_ktable *,
153 struct pfr_kentry *);
154 int pfr_unroute_kentry(struct pfr_ktable *,
155 struct pfr_kentry *);
156 int pfr_walktree(struct radix_node *, void *);
157 int pfr_validate_table(struct pfr_table *, int, int);
158 void pfr_commit_ktable(struct pfr_ktable *, long);
159 void pfr_insert_ktables(struct pfr_ktableworkq *);
160 void pfr_insert_ktable(struct pfr_ktable *);
161 void pfr_setflags_ktables(struct pfr_ktableworkq *);
162 void pfr_setflags_ktable(struct pfr_ktable *, int);
163 void pfr_clstats_ktables(struct pfr_ktableworkq *, long,
164 int);
165 void pfr_clstats_ktable(struct pfr_ktable *, long, int);
166 struct pfr_ktable *pfr_create_ktable(struct pfr_table *, long, int);
167 void pfr_destroy_ktables(struct pfr_ktableworkq *, int);
168 void pfr_destroy_ktable(struct pfr_ktable *, int);
169 int pfr_ktable_compare(struct pfr_ktable *,
170 struct pfr_ktable *);
171 struct pfr_ktable *pfr_lookup_table(struct pfr_table *);
172 void pfr_clean_node_mask(struct pfr_ktable *,
173 struct pfr_kentryworkq *);
174 int pfr_table_count(struct pfr_table *, int);
175 int pfr_skip_table(struct pfr_table *,
176 struct pfr_ktable *, int);
177 struct pfr_kentry *pfr_kentry_byidx(struct pfr_ktable *, int, int);
178
179 RB_PROTOTYPE(pfr_ktablehead, pfr_ktable, pfrkt_tree, pfr_ktable_compare);
180 RB_GENERATE(pfr_ktablehead, pfr_ktable, pfrkt_tree, pfr_ktable_compare);
181
182 struct pfr_ktablehead pfr_ktables;
183 struct pfr_table pfr_nulltable;
184 int pfr_ktable_cnt;
185
186 void
pfr_initialize(void)187 pfr_initialize(void)
188 {
189 pool_init(&pfr_ktable_pl, sizeof(struct pfr_ktable), 0, 0, 0,
190 "pfrktable", &pool_allocator_nointr);
191 pool_init(&pfr_kentry_pl, sizeof(struct pfr_kentry), 0, 0, 0,
192 "pfrkentry", &pool_allocator_nointr);
193
194 pfr_sin.sin_len = sizeof(pfr_sin);
195 pfr_sin.sin_family = AF_INET;
196 pfr_sin6.sin6_len = sizeof(pfr_sin6);
197 pfr_sin6.sin6_family = AF_INET6;
198
199 memset(&pfr_ffaddr, 0xff, sizeof(pfr_ffaddr));
200 }
201
202 int
pfr_clr_addrs(struct pfr_table * tbl,int * ndel,int flags)203 pfr_clr_addrs(struct pfr_table *tbl, int *ndel, int flags)
204 {
205 struct pfr_ktable *kt;
206 struct pfr_kentryworkq workq;
207 int s;
208
209 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY);
210 if (pfr_validate_table(tbl, 0, flags & PFR_FLAG_USERIOCTL))
211 return (EINVAL);
212 kt = pfr_lookup_table(tbl);
213 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
214 return (ESRCH);
215 if (kt->pfrkt_flags & PFR_TFLAG_CONST)
216 return (EPERM);
217 pfr_enqueue_addrs(kt, &workq, ndel, 0);
218
219 if (!(flags & PFR_FLAG_DUMMY)) {
220 if (flags & PFR_FLAG_ATOMIC)
221 s = splsoftnet();
222 pfr_remove_kentries(kt, &workq);
223 if (flags & PFR_FLAG_ATOMIC)
224 splx(s);
225 if (kt->pfrkt_cnt) {
226 printf("pfr_clr_addrs: corruption detected (%d).\n",
227 kt->pfrkt_cnt);
228 kt->pfrkt_cnt = 0;
229 }
230 }
231 return (0);
232 }
233
234 int
pfr_add_addrs(struct pfr_table * tbl,struct pfr_addr * addr,int size,int * nadd,int flags)235 pfr_add_addrs(struct pfr_table *tbl, struct pfr_addr *addr, int size,
236 int *nadd, int flags)
237 {
238 struct pfr_ktable *kt, *tmpkt;
239 struct pfr_kentryworkq workq;
240 struct pfr_kentry *p, *q;
241 struct pfr_addr ad;
242 int i, rv, s, xadd = 0;
243 time_t tzero = time.tv_sec;
244
245 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY+PFR_FLAG_FEEDBACK);
246 if (pfr_validate_table(tbl, 0, flags & PFR_FLAG_USERIOCTL))
247 return (EINVAL);
248 kt = pfr_lookup_table(tbl);
249 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
250 return (ESRCH);
251 if (kt->pfrkt_flags & PFR_TFLAG_CONST)
252 return (EPERM);
253 tmpkt = pfr_create_ktable(&pfr_nulltable, 0, 0);
254 if (tmpkt == NULL)
255 return (ENOMEM);
256 SLIST_INIT(&workq);
257 for (i = 0; i < size; i++) {
258 if (COPYIN(addr+i, &ad, sizeof(ad)))
259 senderr(EFAULT);
260 if (pfr_validate_addr(&ad))
261 senderr(EINVAL);
262 p = pfr_lookup_addr(kt, &ad, 1);
263 q = pfr_lookup_addr(tmpkt, &ad, 1);
264 if (flags & PFR_FLAG_FEEDBACK) {
265 if (q != NULL)
266 ad.pfra_fback = PFR_FB_DUPLICATE;
267 else if (p == NULL)
268 ad.pfra_fback = PFR_FB_ADDED;
269 else if (p->pfrke_not != ad.pfra_not)
270 ad.pfra_fback = PFR_FB_CONFLICT;
271 else
272 ad.pfra_fback = PFR_FB_NONE;
273 }
274 if (p == NULL && q == NULL) {
275 p = pfr_create_kentry(&ad);
276 if (p == NULL)
277 senderr(ENOMEM);
278 if (pfr_route_kentry(tmpkt, p)) {
279 pfr_destroy_kentry(p);
280 ad.pfra_fback = PFR_FB_NONE;
281 } else {
282 SLIST_INSERT_HEAD(&workq, p, pfrke_workq);
283 xadd++;
284 }
285 }
286 if (flags & PFR_FLAG_FEEDBACK)
287 if (COPYOUT(&ad, addr+i, sizeof(ad)))
288 senderr(EFAULT);
289 }
290 pfr_clean_node_mask(tmpkt, &workq);
291 if (!(flags & PFR_FLAG_DUMMY)) {
292 if (flags & PFR_FLAG_ATOMIC)
293 s = splsoftnet();
294 pfr_insert_kentries(kt, &workq, tzero);
295 if (flags & PFR_FLAG_ATOMIC)
296 splx(s);
297 } else
298 pfr_destroy_kentries(&workq);
299 if (nadd != NULL)
300 *nadd = xadd;
301 pfr_destroy_ktable(tmpkt, 0);
302 return (0);
303 _bad:
304 pfr_clean_node_mask(tmpkt, &workq);
305 pfr_destroy_kentries(&workq);
306 if (flags & PFR_FLAG_FEEDBACK)
307 pfr_reset_feedback(addr, size, flags);
308 pfr_destroy_ktable(tmpkt, 0);
309 return (rv);
310 }
311
312 int
pfr_del_addrs(struct pfr_table * tbl,struct pfr_addr * addr,int size,int * ndel,int flags)313 pfr_del_addrs(struct pfr_table *tbl, struct pfr_addr *addr, int size,
314 int *ndel, int flags)
315 {
316 struct pfr_ktable *kt;
317 struct pfr_kentryworkq workq;
318 struct pfr_kentry *p;
319 struct pfr_addr ad;
320 int i, rv, s, xdel = 0;
321
322 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY+PFR_FLAG_FEEDBACK);
323 if (pfr_validate_table(tbl, 0, flags & PFR_FLAG_USERIOCTL))
324 return (EINVAL);
325 kt = pfr_lookup_table(tbl);
326 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
327 return (ESRCH);
328 if (kt->pfrkt_flags & PFR_TFLAG_CONST)
329 return (EPERM);
330 pfr_mark_addrs(kt);
331 SLIST_INIT(&workq);
332 for (i = 0; i < size; i++) {
333 if (COPYIN(addr+i, &ad, sizeof(ad)))
334 senderr(EFAULT);
335 if (pfr_validate_addr(&ad))
336 senderr(EINVAL);
337 p = pfr_lookup_addr(kt, &ad, 1);
338 if (flags & PFR_FLAG_FEEDBACK) {
339 if (p == NULL)
340 ad.pfra_fback = PFR_FB_NONE;
341 else if (p->pfrke_not != ad.pfra_not)
342 ad.pfra_fback = PFR_FB_CONFLICT;
343 else if (p->pfrke_mark)
344 ad.pfra_fback = PFR_FB_DUPLICATE;
345 else
346 ad.pfra_fback = PFR_FB_DELETED;
347 }
348 if (p != NULL && p->pfrke_not == ad.pfra_not &&
349 !p->pfrke_mark) {
350 p->pfrke_mark = 1;
351 SLIST_INSERT_HEAD(&workq, p, pfrke_workq);
352 xdel++;
353 }
354 if (flags & PFR_FLAG_FEEDBACK)
355 if (COPYOUT(&ad, addr+i, sizeof(ad)))
356 senderr(EFAULT);
357 }
358 if (!(flags & PFR_FLAG_DUMMY)) {
359 if (flags & PFR_FLAG_ATOMIC)
360 s = splsoftnet();
361 pfr_remove_kentries(kt, &workq);
362 if (flags & PFR_FLAG_ATOMIC)
363 splx(s);
364 }
365 if (ndel != NULL)
366 *ndel = xdel;
367 return (0);
368 _bad:
369 if (flags & PFR_FLAG_FEEDBACK)
370 pfr_reset_feedback(addr, size, flags);
371 return (rv);
372 }
373
374 int
pfr_set_addrs(struct pfr_table * tbl,struct pfr_addr * addr,int size,int * size2,int * nadd,int * ndel,int * nchange,int flags)375 pfr_set_addrs(struct pfr_table *tbl, struct pfr_addr *addr, int size,
376 int *size2, int *nadd, int *ndel, int *nchange, int flags)
377 {
378 struct pfr_ktable *kt, *tmpkt;
379 struct pfr_kentryworkq addq, delq, changeq;
380 struct pfr_kentry *p, *q;
381 struct pfr_addr ad;
382 int i, rv, s, xadd = 0, xdel = 0, xchange = 0;
383 time_t tzero = time.tv_sec;
384
385 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY+PFR_FLAG_FEEDBACK);
386 if (pfr_validate_table(tbl, 0, flags & PFR_FLAG_USERIOCTL))
387 return (EINVAL);
388 kt = pfr_lookup_table(tbl);
389 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
390 return (ESRCH);
391 if (kt->pfrkt_flags & PFR_TFLAG_CONST)
392 return (EPERM);
393 tmpkt = pfr_create_ktable(&pfr_nulltable, 0, 0);
394 if (tmpkt == NULL)
395 return (ENOMEM);
396 pfr_mark_addrs(kt);
397 SLIST_INIT(&addq);
398 SLIST_INIT(&delq);
399 SLIST_INIT(&changeq);
400 for (i = 0; i < size; i++) {
401 if (COPYIN(addr+i, &ad, sizeof(ad)))
402 senderr(EFAULT);
403 if (pfr_validate_addr(&ad))
404 senderr(EINVAL);
405 ad.pfra_fback = PFR_FB_NONE;
406 p = pfr_lookup_addr(kt, &ad, 1);
407 if (p != NULL) {
408 if (p->pfrke_mark) {
409 ad.pfra_fback = PFR_FB_DUPLICATE;
410 goto _skip;
411 }
412 p->pfrke_mark = 1;
413 if (p->pfrke_not != ad.pfra_not) {
414 SLIST_INSERT_HEAD(&changeq, p, pfrke_workq);
415 ad.pfra_fback = PFR_FB_CHANGED;
416 xchange++;
417 }
418 } else {
419 q = pfr_lookup_addr(tmpkt, &ad, 1);
420 if (q != NULL) {
421 ad.pfra_fback = PFR_FB_DUPLICATE;
422 goto _skip;
423 }
424 p = pfr_create_kentry(&ad);
425 if (p == NULL)
426 senderr(ENOMEM);
427 if (pfr_route_kentry(tmpkt, p)) {
428 pfr_destroy_kentry(p);
429 ad.pfra_fback = PFR_FB_NONE;
430 } else {
431 SLIST_INSERT_HEAD(&addq, p, pfrke_workq);
432 ad.pfra_fback = PFR_FB_ADDED;
433 xadd++;
434 }
435 }
436 _skip:
437 if (flags & PFR_FLAG_FEEDBACK)
438 if (COPYOUT(&ad, addr+i, sizeof(ad)))
439 senderr(EFAULT);
440 }
441 pfr_enqueue_addrs(kt, &delq, &xdel, ENQUEUE_UNMARKED_ONLY);
442 if ((flags & PFR_FLAG_FEEDBACK) && *size2) {
443 if (*size2 < size+xdel) {
444 *size2 = size+xdel;
445 senderr(0);
446 }
447 i = 0;
448 SLIST_FOREACH(p, &delq, pfrke_workq) {
449 pfr_copyout_addr(&ad, p);
450 ad.pfra_fback = PFR_FB_DELETED;
451 if (COPYOUT(&ad, addr+size+i, sizeof(ad)))
452 senderr(EFAULT);
453 i++;
454 }
455 }
456 pfr_clean_node_mask(tmpkt, &addq);
457 if (!(flags & PFR_FLAG_DUMMY)) {
458 if (flags & PFR_FLAG_ATOMIC)
459 s = splsoftnet();
460 pfr_insert_kentries(kt, &addq, tzero);
461 pfr_remove_kentries(kt, &delq);
462 pfr_clstats_kentries(&changeq, tzero, INVERT_NEG_FLAG);
463 if (flags & PFR_FLAG_ATOMIC)
464 splx(s);
465 } else
466 pfr_destroy_kentries(&addq);
467 if (nadd != NULL)
468 *nadd = xadd;
469 if (ndel != NULL)
470 *ndel = xdel;
471 if (nchange != NULL)
472 *nchange = xchange;
473 if ((flags & PFR_FLAG_FEEDBACK) && size2)
474 *size2 = size+xdel;
475 pfr_destroy_ktable(tmpkt, 0);
476 return (0);
477 _bad:
478 pfr_clean_node_mask(tmpkt, &addq);
479 pfr_destroy_kentries(&addq);
480 if (flags & PFR_FLAG_FEEDBACK)
481 pfr_reset_feedback(addr, size, flags);
482 pfr_destroy_ktable(tmpkt, 0);
483 return (rv);
484 }
485
486 int
pfr_tst_addrs(struct pfr_table * tbl,struct pfr_addr * addr,int size,int * nmatch,int flags)487 pfr_tst_addrs(struct pfr_table *tbl, struct pfr_addr *addr, int size,
488 int *nmatch, int flags)
489 {
490 struct pfr_ktable *kt;
491 struct pfr_kentry *p;
492 struct pfr_addr ad;
493 int i, xmatch = 0;
494
495 ACCEPT_FLAGS(PFR_FLAG_REPLACE);
496 if (pfr_validate_table(tbl, 0, 0))
497 return (EINVAL);
498 kt = pfr_lookup_table(tbl);
499 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
500 return (ESRCH);
501
502 for (i = 0; i < size; i++) {
503 if (COPYIN(addr+i, &ad, sizeof(ad)))
504 return (EFAULT);
505 if (pfr_validate_addr(&ad))
506 return (EINVAL);
507 if (ADDR_NETWORK(&ad))
508 return (EINVAL);
509 p = pfr_lookup_addr(kt, &ad, 0);
510 if (flags & PFR_FLAG_REPLACE)
511 pfr_copyout_addr(&ad, p);
512 ad.pfra_fback = (p == NULL) ? PFR_FB_NONE :
513 (p->pfrke_not ? PFR_FB_NOTMATCH : PFR_FB_MATCH);
514 if (p != NULL && !p->pfrke_not)
515 xmatch++;
516 if (COPYOUT(&ad, addr+i, sizeof(ad)))
517 return (EFAULT);
518 }
519 if (nmatch != NULL)
520 *nmatch = xmatch;
521 return (0);
522 }
523
524 int
pfr_get_addrs(struct pfr_table * tbl,struct pfr_addr * addr,int * size,int flags)525 pfr_get_addrs(struct pfr_table *tbl, struct pfr_addr *addr, int *size,
526 int flags)
527 {
528 struct pfr_ktable *kt;
529 struct pfr_walktree w;
530 int rv;
531
532 ACCEPT_FLAGS(0);
533 if (pfr_validate_table(tbl, 0, 0))
534 return (EINVAL);
535 kt = pfr_lookup_table(tbl);
536 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
537 return (ESRCH);
538 if (kt->pfrkt_cnt > *size) {
539 *size = kt->pfrkt_cnt;
540 return (0);
541 }
542
543 bzero(&w, sizeof(w));
544 w.pfrw_op = PFRW_GET_ADDRS;
545 w.pfrw_addr = addr;
546 w.pfrw_free = kt->pfrkt_cnt;
547 w.pfrw_flags = flags;
548 rv = rn_walktree(kt->pfrkt_ip4, pfr_walktree, &w);
549 if (!rv)
550 rv = rn_walktree(kt->pfrkt_ip6, pfr_walktree, &w);
551 if (rv)
552 return (rv);
553
554 if (w.pfrw_free) {
555 printf("pfr_get_addrs: corruption detected (%d).\n",
556 w.pfrw_free);
557 return (ENOTTY);
558 }
559 *size = kt->pfrkt_cnt;
560 return (0);
561 }
562
563 int
pfr_get_astats(struct pfr_table * tbl,struct pfr_astats * addr,int * size,int flags)564 pfr_get_astats(struct pfr_table *tbl, struct pfr_astats *addr, int *size,
565 int flags)
566 {
567 struct pfr_ktable *kt;
568 struct pfr_walktree w;
569 struct pfr_kentryworkq workq;
570 int rv, s;
571 time_t tzero = time.tv_sec;
572
573 ACCEPT_FLAGS(PFR_FLAG_ATOMIC); /* XXX PFR_FLAG_CLSTATS disabled */
574 if (pfr_validate_table(tbl, 0, 0))
575 return (EINVAL);
576 kt = pfr_lookup_table(tbl);
577 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
578 return (ESRCH);
579 if (kt->pfrkt_cnt > *size) {
580 *size = kt->pfrkt_cnt;
581 return (0);
582 }
583
584 bzero(&w, sizeof(w));
585 w.pfrw_op = PFRW_GET_ASTATS;
586 w.pfrw_astats = addr;
587 w.pfrw_free = kt->pfrkt_cnt;
588 w.pfrw_flags = flags;
589 if (flags & PFR_FLAG_ATOMIC)
590 s = splsoftnet();
591 rv = rn_walktree(kt->pfrkt_ip4, pfr_walktree, &w);
592 if (!rv)
593 rv = rn_walktree(kt->pfrkt_ip6, pfr_walktree, &w);
594 if (!rv && (flags & PFR_FLAG_CLSTATS)) {
595 pfr_enqueue_addrs(kt, &workq, NULL, 0);
596 pfr_clstats_kentries(&workq, tzero, 0);
597 }
598 if (flags & PFR_FLAG_ATOMIC)
599 splx(s);
600 if (rv)
601 return (rv);
602
603 if (w.pfrw_free) {
604 printf("pfr_get_astats: corruption detected (%d).\n",
605 w.pfrw_free);
606 return (ENOTTY);
607 }
608 *size = kt->pfrkt_cnt;
609 return (0);
610 }
611
612 int
pfr_clr_astats(struct pfr_table * tbl,struct pfr_addr * addr,int size,int * nzero,int flags)613 pfr_clr_astats(struct pfr_table *tbl, struct pfr_addr *addr, int size,
614 int *nzero, int flags)
615 {
616 struct pfr_ktable *kt;
617 struct pfr_kentryworkq workq;
618 struct pfr_kentry *p;
619 struct pfr_addr ad;
620 int i, rv, s, xzero = 0;
621
622 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY+PFR_FLAG_FEEDBACK);
623 if (pfr_validate_table(tbl, 0, 0))
624 return (EINVAL);
625 kt = pfr_lookup_table(tbl);
626 if (kt == NULL || !(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
627 return (ESRCH);
628 SLIST_INIT(&workq);
629 for (i = 0; i < size; i++) {
630 if (COPYIN(addr+i, &ad, sizeof(ad)))
631 senderr(EFAULT);
632 if (pfr_validate_addr(&ad))
633 senderr(EINVAL);
634 p = pfr_lookup_addr(kt, &ad, 1);
635 if (flags & PFR_FLAG_FEEDBACK) {
636 ad.pfra_fback = (p != NULL) ?
637 PFR_FB_CLEARED : PFR_FB_NONE;
638 if (COPYOUT(&ad, addr+i, sizeof(ad)))
639 senderr(EFAULT);
640 }
641 if (p != NULL) {
642 SLIST_INSERT_HEAD(&workq, p, pfrke_workq);
643 xzero++;
644 }
645 }
646
647 if (!(flags & PFR_FLAG_DUMMY)) {
648 if (flags & PFR_FLAG_ATOMIC)
649 s = splsoftnet();
650 pfr_clstats_kentries(&workq, 0, 0);
651 if (flags & PFR_FLAG_ATOMIC)
652 splx(s);
653 }
654 if (nzero != NULL)
655 *nzero = xzero;
656 return (0);
657 _bad:
658 if (flags & PFR_FLAG_FEEDBACK)
659 pfr_reset_feedback(addr, size, flags);
660 return (rv);
661 }
662
663 int
pfr_validate_addr(struct pfr_addr * ad)664 pfr_validate_addr(struct pfr_addr *ad)
665 {
666 int i;
667
668 switch (ad->pfra_af) {
669 #ifdef INET
670 case AF_INET:
671 if (ad->pfra_net > 32)
672 return (-1);
673 break;
674 #endif /* INET */
675 #ifdef INET6
676 case AF_INET6:
677 if (ad->pfra_net > 128)
678 return (-1);
679 break;
680 #endif /* INET6 */
681 default:
682 return (-1);
683 }
684 if (ad->pfra_net < 128 &&
685 (((caddr_t)ad)[ad->pfra_net/8] & (0xFF >> (ad->pfra_net%8))))
686 return (-1);
687 for (i = (ad->pfra_net+7)/8; i < sizeof(ad->pfra_u); i++)
688 if (((caddr_t)ad)[i])
689 return (-1);
690 if (ad->pfra_not && ad->pfra_not != 1)
691 return (-1);
692 if (ad->pfra_fback)
693 return (-1);
694 return (0);
695 }
696
697 void
pfr_enqueue_addrs(struct pfr_ktable * kt,struct pfr_kentryworkq * workq,int * naddr,int sweep)698 pfr_enqueue_addrs(struct pfr_ktable *kt, struct pfr_kentryworkq *workq,
699 int *naddr, int sweep)
700 {
701 struct pfr_walktree w;
702
703 SLIST_INIT(workq);
704 bzero(&w, sizeof(w));
705 w.pfrw_op = sweep ? PFRW_SWEEP : PFRW_ENQUEUE;
706 w.pfrw_workq = workq;
707 if (kt->pfrkt_ip4 != NULL)
708 if (rn_walktree(kt->pfrkt_ip4, pfr_walktree, &w))
709 printf("pfr_enqueue_addrs: IPv4 walktree failed.\n");
710 if (kt->pfrkt_ip6 != NULL)
711 if (rn_walktree(kt->pfrkt_ip6, pfr_walktree, &w))
712 printf("pfr_enqueue_addrs: IPv6 walktree failed.\n");
713 if (naddr != NULL)
714 *naddr = w.pfrw_cnt;
715 }
716
717 void
pfr_mark_addrs(struct pfr_ktable * kt)718 pfr_mark_addrs(struct pfr_ktable *kt)
719 {
720 struct pfr_walktree w;
721
722 bzero(&w, sizeof(w));
723 w.pfrw_op = PFRW_MARK;
724 if (rn_walktree(kt->pfrkt_ip4, pfr_walktree, &w))
725 printf("pfr_mark_addrs: IPv4 walktree failed.\n");
726 if (rn_walktree(kt->pfrkt_ip6, pfr_walktree, &w))
727 printf("pfr_mark_addrs: IPv6 walktree failed.\n");
728 }
729
730
731 struct pfr_kentry *
pfr_lookup_addr(struct pfr_ktable * kt,struct pfr_addr * ad,int exact)732 pfr_lookup_addr(struct pfr_ktable *kt, struct pfr_addr *ad, int exact)
733 {
734 union sockaddr_union sa, mask;
735 struct radix_node_head *head;
736 struct pfr_kentry *ke;
737 int s;
738
739 bzero(&sa, sizeof(sa));
740 if (ad->pfra_af == AF_INET) {
741 FILLIN_SIN(sa.sin, ad->pfra_ip4addr);
742 head = kt->pfrkt_ip4;
743 } else if ( ad->pfra_af == AF_INET6 ) {
744 FILLIN_SIN6(sa.sin6, ad->pfra_ip6addr);
745 head = kt->pfrkt_ip6;
746 }
747 if (ADDR_NETWORK(ad)) {
748 pfr_prepare_network(&mask, ad->pfra_af, ad->pfra_net);
749 s = splsoftnet(); /* rn_lookup makes use of globals */
750 ke = (struct pfr_kentry *)rn_lookup(&sa, &mask, head);
751 splx(s);
752 if (ke && KENTRY_RNF_ROOT(ke))
753 ke = NULL;
754 } else {
755 ke = (struct pfr_kentry *)rn_match(&sa, head);
756 if (ke && KENTRY_RNF_ROOT(ke))
757 ke = NULL;
758 if (exact && ke && KENTRY_NETWORK(ke))
759 ke = NULL;
760 }
761 return (ke);
762 }
763
764 struct pfr_kentry *
pfr_create_kentry(struct pfr_addr * ad)765 pfr_create_kentry(struct pfr_addr *ad)
766 {
767 struct pfr_kentry *ke;
768
769 ke = pool_get(&pfr_kentry_pl, PR_NOWAIT);
770 if (ke == NULL)
771 return (NULL);
772 bzero(ke, sizeof(*ke));
773
774 if (ad->pfra_af == AF_INET)
775 FILLIN_SIN(ke->pfrke_sa.sin, ad->pfra_ip4addr);
776 else if (ad->pfra_af == AF_INET6)
777 FILLIN_SIN6(ke->pfrke_sa.sin6, ad->pfra_ip6addr);
778 ke->pfrke_af = ad->pfra_af;
779 ke->pfrke_net = ad->pfra_net;
780 ke->pfrke_not = ad->pfra_not;
781 return (ke);
782 }
783
784 void
pfr_destroy_kentries(struct pfr_kentryworkq * workq)785 pfr_destroy_kentries(struct pfr_kentryworkq *workq)
786 {
787 struct pfr_kentry *p, *q;
788
789 for (p = SLIST_FIRST(workq); p != NULL; p = q) {
790 q = SLIST_NEXT(p, pfrke_workq);
791 pfr_destroy_kentry(p);
792 }
793 }
794
795 void
pfr_destroy_kentry(struct pfr_kentry * ke)796 pfr_destroy_kentry(struct pfr_kentry *ke)
797 {
798 pool_put(&pfr_kentry_pl, ke);
799 }
800
801 void
pfr_insert_kentries(struct pfr_ktable * kt,struct pfr_kentryworkq * workq,long tzero)802 pfr_insert_kentries(struct pfr_ktable *kt,
803 struct pfr_kentryworkq *workq, long tzero)
804 {
805 struct pfr_kentry *p;
806 int rv, n = 0;
807
808 SLIST_FOREACH(p, workq, pfrke_workq) {
809 rv = pfr_route_kentry(kt, p);
810 if (rv) {
811 printf("pfr_insert_kentries: cannot route entry "
812 "(code=%d).\n", rv);
813 break;
814 }
815 p->pfrke_tzero = tzero;
816 n++;
817 }
818 kt->pfrkt_cnt += n;
819 }
820
821 void
pfr_remove_kentries(struct pfr_ktable * kt,struct pfr_kentryworkq * workq)822 pfr_remove_kentries(struct pfr_ktable *kt,
823 struct pfr_kentryworkq *workq)
824 {
825 struct pfr_kentry *p;
826 int n = 0;
827
828 SLIST_FOREACH(p, workq, pfrke_workq) {
829 pfr_unroute_kentry(kt, p);
830 n++;
831 }
832 kt->pfrkt_cnt -= n;
833 pfr_destroy_kentries(workq);
834 }
835
836 void
pfr_clean_node_mask(struct pfr_ktable * kt,struct pfr_kentryworkq * workq)837 pfr_clean_node_mask(struct pfr_ktable *kt,
838 struct pfr_kentryworkq *workq)
839 {
840 struct pfr_kentry *p;
841
842 SLIST_FOREACH(p, workq, pfrke_workq)
843 pfr_unroute_kentry(kt, p);
844 }
845
846 void
pfr_clstats_kentries(struct pfr_kentryworkq * workq,long tzero,int negchange)847 pfr_clstats_kentries(struct pfr_kentryworkq *workq, long tzero, int negchange)
848 {
849 struct pfr_kentry *p;
850 int s;
851
852 SLIST_FOREACH(p, workq, pfrke_workq) {
853 s = splsoftnet();
854 if (negchange)
855 p->pfrke_not = !p->pfrke_not;
856 bzero(p->pfrke_packets, sizeof(p->pfrke_packets));
857 bzero(p->pfrke_bytes, sizeof(p->pfrke_bytes));
858 splx(s);
859 p->pfrke_tzero = tzero;
860 }
861 }
862
863 void
pfr_reset_feedback(struct pfr_addr * addr,int size,int flags)864 pfr_reset_feedback(struct pfr_addr *addr, int size, int flags)
865 {
866 struct pfr_addr ad;
867 int i;
868
869 for (i = 0; i < size; i++) {
870 if (COPYIN(addr+i, &ad, sizeof(ad)))
871 break;
872 ad.pfra_fback = PFR_FB_NONE;
873 if (COPYOUT(&ad, addr+i, sizeof(ad)))
874 break;
875 }
876 }
877
878 void
pfr_prepare_network(union sockaddr_union * sa,int af,int net)879 pfr_prepare_network(union sockaddr_union *sa, int af, int net)
880 {
881 int i;
882
883 bzero(sa, sizeof(*sa));
884 if (af == AF_INET) {
885 sa->sin.sin_len = sizeof(sa->sin);
886 sa->sin.sin_family = AF_INET;
887 sa->sin.sin_addr.s_addr = htonl(-1 << (32-net));
888 } else if (af == AF_INET6) {
889 sa->sin6.sin6_len = sizeof(sa->sin6);
890 sa->sin6.sin6_family = AF_INET6;
891 for (i = 0; i < 4; i++) {
892 if (net <= 32) {
893 sa->sin6.sin6_addr.s6_addr32[i] =
894 htonl(-1 << (32-net));
895 break;
896 }
897 sa->sin6.sin6_addr.s6_addr32[i] = 0xFFFFFFFF;
898 net -= 32;
899 }
900 }
901 }
902
903 int
pfr_route_kentry(struct pfr_ktable * kt,struct pfr_kentry * ke)904 pfr_route_kentry(struct pfr_ktable *kt, struct pfr_kentry *ke)
905 {
906 union sockaddr_union mask;
907 struct radix_node *rn;
908 struct radix_node_head *head;
909 int s;
910
911 bzero(ke->pfrke_node, sizeof(ke->pfrke_node));
912 if (ke->pfrke_af == AF_INET)
913 head = kt->pfrkt_ip4;
914 else if (ke->pfrke_af == AF_INET6)
915 head = kt->pfrkt_ip6;
916
917 s = splsoftnet();
918 if (KENTRY_NETWORK(ke)) {
919 pfr_prepare_network(&mask, ke->pfrke_af, ke->pfrke_net);
920 rn = rn_addroute(&ke->pfrke_sa, &mask, head, ke->pfrke_node);
921 } else
922 rn = rn_addroute(&ke->pfrke_sa, NULL, head, ke->pfrke_node);
923 splx(s);
924
925 return (rn == NULL ? -1 : 0);
926 }
927
928 int
pfr_unroute_kentry(struct pfr_ktable * kt,struct pfr_kentry * ke)929 pfr_unroute_kentry(struct pfr_ktable *kt, struct pfr_kentry *ke)
930 {
931 union sockaddr_union mask;
932 struct radix_node *rn;
933 struct radix_node_head *head;
934 int s;
935
936 if (ke->pfrke_af == AF_INET)
937 head = kt->pfrkt_ip4;
938 else if (ke->pfrke_af == AF_INET6)
939 head = kt->pfrkt_ip6;
940
941 s = splsoftnet();
942 if (KENTRY_NETWORK(ke)) {
943 pfr_prepare_network(&mask, ke->pfrke_af, ke->pfrke_net);
944 rn = rn_delete(&ke->pfrke_sa, &mask, head, NULL);
945 } else
946 rn = rn_delete(&ke->pfrke_sa, NULL, head, NULL);
947 splx(s);
948
949 if (rn == NULL) {
950 printf("pfr_unroute_kentry: delete failed.\n");
951 return (-1);
952 }
953 return (0);
954 }
955
956 void
pfr_copyout_addr(struct pfr_addr * ad,struct pfr_kentry * ke)957 pfr_copyout_addr(struct pfr_addr *ad, struct pfr_kentry *ke)
958 {
959 bzero(ad, sizeof(*ad));
960 if (ke == NULL)
961 return;
962 ad->pfra_af = ke->pfrke_af;
963 ad->pfra_net = ke->pfrke_net;
964 ad->pfra_not = ke->pfrke_not;
965 if (ad->pfra_af == AF_INET)
966 ad->pfra_ip4addr = ke->pfrke_sa.sin.sin_addr;
967 else if (ad->pfra_af == AF_INET6)
968 ad->pfra_ip6addr = ke->pfrke_sa.sin6.sin6_addr;
969 }
970
971 int
pfr_walktree(struct radix_node * rn,void * arg)972 pfr_walktree(struct radix_node *rn, void *arg)
973 {
974 struct pfr_kentry *ke = (struct pfr_kentry *)rn;
975 struct pfr_walktree *w = arg;
976 int s, flags = w->pfrw_flags;
977
978 switch (w->pfrw_op) {
979 case PFRW_MARK:
980 ke->pfrke_mark = 0;
981 break;
982 case PFRW_SWEEP:
983 if (ke->pfrke_mark)
984 break;
985 /* FALLTHROUGH */
986 case PFRW_ENQUEUE:
987 SLIST_INSERT_HEAD(w->pfrw_workq, ke, pfrke_workq);
988 w->pfrw_cnt++;
989 break;
990 case PFRW_GET_ADDRS:
991 if (w->pfrw_free-- > 0) {
992 struct pfr_addr ad;
993
994 pfr_copyout_addr(&ad, ke);
995 if (copyout(&ad, w->pfrw_addr, sizeof(ad)))
996 return (EFAULT);
997 w->pfrw_addr++;
998 }
999 break;
1000 case PFRW_GET_ASTATS:
1001 if (w->pfrw_free-- > 0) {
1002 struct pfr_astats as;
1003
1004 pfr_copyout_addr(&as.pfras_a, ke);
1005
1006 s = splsoftnet();
1007 bcopy(ke->pfrke_packets, as.pfras_packets,
1008 sizeof(as.pfras_packets));
1009 bcopy(ke->pfrke_bytes, as.pfras_bytes,
1010 sizeof(as.pfras_bytes));
1011 splx(s);
1012 as.pfras_tzero = ke->pfrke_tzero;
1013
1014 if (COPYOUT(&as, w->pfrw_astats, sizeof(as)))
1015 return (EFAULT);
1016 w->pfrw_astats++;
1017 }
1018 break;
1019 case PFRW_POOL_GET:
1020 if (ke->pfrke_not)
1021 break; /* negative entries are ignored */
1022 if (!w->pfrw_cnt--) {
1023 w->pfrw_kentry = ke;
1024 return (1); /* finish search */
1025 }
1026 break;
1027 case PFRW_DYNADDR_UPDATE:
1028 if (ke->pfrke_af == AF_INET) {
1029 if (w->pfrw_dyn->pfid_acnt4++ > 0)
1030 break;
1031 pfr_prepare_network(&pfr_mask, AF_INET, ke->pfrke_net);
1032 w->pfrw_dyn->pfid_addr4 = *SUNION2PF(
1033 &ke->pfrke_sa, AF_INET);
1034 w->pfrw_dyn->pfid_mask4 = *SUNION2PF(
1035 &pfr_mask, AF_INET);
1036 } else if (ke->pfrke_af == AF_INET6){
1037 if (w->pfrw_dyn->pfid_acnt6++ > 0)
1038 break;
1039 pfr_prepare_network(&pfr_mask, AF_INET6, ke->pfrke_net);
1040 w->pfrw_dyn->pfid_addr6 = *SUNION2PF(
1041 &ke->pfrke_sa, AF_INET6);
1042 w->pfrw_dyn->pfid_mask6 = *SUNION2PF(
1043 &pfr_mask, AF_INET6);
1044 }
1045 break;
1046 }
1047 return (0);
1048 }
1049
1050 int
pfr_clr_tables(struct pfr_table * filter,int * ndel,int flags)1051 pfr_clr_tables(struct pfr_table *filter, int *ndel, int flags)
1052 {
1053 struct pfr_ktableworkq workq;
1054 struct pfr_ktable *p;
1055 int s, xdel = 0;
1056
1057 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY+PFR_FLAG_ALLRSETS);
1058 if (pfr_table_count(filter, flags) < 0)
1059 return (ENOENT);
1060
1061 SLIST_INIT(&workq);
1062 RB_FOREACH(p, pfr_ktablehead, &pfr_ktables) {
1063 if (pfr_skip_table(filter, p, flags))
1064 continue;
1065 if (!strcmp(p->pfrkt_anchor, PF_RESERVED_ANCHOR))
1066 continue;
1067 if (!(p->pfrkt_flags & PFR_TFLAG_ACTIVE))
1068 continue;
1069 p->pfrkt_nflags = p->pfrkt_flags & ~PFR_TFLAG_ACTIVE;
1070 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1071 xdel++;
1072 }
1073 if (!(flags & PFR_FLAG_DUMMY)) {
1074 if (flags & PFR_FLAG_ATOMIC)
1075 s = splsoftnet();
1076 pfr_setflags_ktables(&workq);
1077 if (flags & PFR_FLAG_ATOMIC)
1078 splx(s);
1079 }
1080 if (ndel != NULL)
1081 *ndel = xdel;
1082 return (0);
1083 }
1084
1085 int
pfr_add_tables(struct pfr_table * tbl,int size,int * nadd,int flags)1086 pfr_add_tables(struct pfr_table *tbl, int size, int *nadd, int flags)
1087 {
1088 struct pfr_ktableworkq addq, changeq;
1089 struct pfr_ktable *p, *q, *r, key;
1090 int i, rv, s, xadd = 0;
1091 time_t tzero = time.tv_sec;
1092
1093 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY);
1094 SLIST_INIT(&addq);
1095 SLIST_INIT(&changeq);
1096 for (i = 0; i < size; i++) {
1097 if (COPYIN(tbl+i, &key.pfrkt_t, sizeof(key.pfrkt_t)))
1098 senderr(EFAULT);
1099 if (pfr_validate_table(&key.pfrkt_t, PFR_TFLAG_USRMASK,
1100 flags & PFR_FLAG_USERIOCTL))
1101 senderr(EINVAL);
1102 key.pfrkt_flags |= PFR_TFLAG_ACTIVE;
1103 p = RB_FIND(pfr_ktablehead, &pfr_ktables, &key);
1104 if (p == NULL) {
1105 p = pfr_create_ktable(&key.pfrkt_t, tzero, 1);
1106 if (p == NULL)
1107 senderr(ENOMEM);
1108 SLIST_FOREACH(q, &addq, pfrkt_workq) {
1109 if (!pfr_ktable_compare(p, q))
1110 goto _skip;
1111 }
1112 SLIST_INSERT_HEAD(&addq, p, pfrkt_workq);
1113 xadd++;
1114 if (!key.pfrkt_anchor[0])
1115 goto _skip;
1116
1117 /* find or create root table */
1118 bzero(key.pfrkt_anchor, sizeof(key.pfrkt_anchor));
1119 bzero(key.pfrkt_ruleset, sizeof(key.pfrkt_ruleset));
1120 r = RB_FIND(pfr_ktablehead, &pfr_ktables, &key);
1121 if (r != NULL) {
1122 p->pfrkt_root = r;
1123 goto _skip;
1124 }
1125 SLIST_FOREACH(q, &addq, pfrkt_workq) {
1126 if (!pfr_ktable_compare(&key, q)) {
1127 p->pfrkt_root = q;
1128 goto _skip;
1129 }
1130 }
1131 key.pfrkt_flags = 0;
1132 r = pfr_create_ktable(&key.pfrkt_t, 0, 1);
1133 if (r == NULL)
1134 senderr(ENOMEM);
1135 SLIST_INSERT_HEAD(&addq, r, pfrkt_workq);
1136 p->pfrkt_root = r;
1137 } else if (!(p->pfrkt_flags & PFR_TFLAG_ACTIVE)) {
1138 SLIST_FOREACH(q, &changeq, pfrkt_workq)
1139 if (!pfr_ktable_compare(&key, q))
1140 goto _skip;
1141 p->pfrkt_nflags = (p->pfrkt_flags &
1142 ~PFR_TFLAG_USRMASK) | key.pfrkt_flags;
1143 SLIST_INSERT_HEAD(&changeq, p, pfrkt_workq);
1144 xadd++;
1145 }
1146 _skip:
1147 ;
1148 }
1149 if (!(flags & PFR_FLAG_DUMMY)) {
1150 if (flags & PFR_FLAG_ATOMIC)
1151 s = splsoftnet();
1152 pfr_insert_ktables(&addq);
1153 pfr_setflags_ktables(&changeq);
1154 if (flags & PFR_FLAG_ATOMIC)
1155 splx(s);
1156 } else
1157 pfr_destroy_ktables(&addq, 0);
1158 if (nadd != NULL)
1159 *nadd = xadd;
1160 return (0);
1161 _bad:
1162 pfr_destroy_ktables(&addq, 0);
1163 return (rv);
1164 }
1165
1166 int
pfr_del_tables(struct pfr_table * tbl,int size,int * ndel,int flags)1167 pfr_del_tables(struct pfr_table *tbl, int size, int *ndel, int flags)
1168 {
1169 struct pfr_ktableworkq workq;
1170 struct pfr_ktable *p, *q, key;
1171 int i, s, xdel = 0;
1172
1173 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY);
1174 SLIST_INIT(&workq);
1175 for (i = 0; i < size; i++) {
1176 if (COPYIN(tbl+i, &key.pfrkt_t, sizeof(key.pfrkt_t)))
1177 return (EFAULT);
1178 if (pfr_validate_table(&key.pfrkt_t, 0,
1179 flags & PFR_FLAG_USERIOCTL))
1180 return (EINVAL);
1181 p = RB_FIND(pfr_ktablehead, &pfr_ktables, &key);
1182 if (p != NULL && (p->pfrkt_flags & PFR_TFLAG_ACTIVE)) {
1183 SLIST_FOREACH(q, &workq, pfrkt_workq)
1184 if (!pfr_ktable_compare(p, q))
1185 goto _skip;
1186 p->pfrkt_nflags = p->pfrkt_flags & ~PFR_TFLAG_ACTIVE;
1187 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1188 xdel++;
1189 }
1190 _skip:
1191 ;
1192 }
1193
1194 if (!(flags & PFR_FLAG_DUMMY)) {
1195 if (flags & PFR_FLAG_ATOMIC)
1196 s = splsoftnet();
1197 pfr_setflags_ktables(&workq);
1198 if (flags & PFR_FLAG_ATOMIC)
1199 splx(s);
1200 }
1201 if (ndel != NULL)
1202 *ndel = xdel;
1203 return (0);
1204 }
1205
1206 int
pfr_get_tables(struct pfr_table * filter,struct pfr_table * tbl,int * size,int flags)1207 pfr_get_tables(struct pfr_table *filter, struct pfr_table *tbl, int *size,
1208 int flags)
1209 {
1210 struct pfr_ktable *p;
1211 int n, nn;
1212
1213 ACCEPT_FLAGS(PFR_FLAG_ALLRSETS);
1214 n = nn = pfr_table_count(filter, flags);
1215 if (n < 0)
1216 return (ENOENT);
1217 if (n > *size) {
1218 *size = n;
1219 return (0);
1220 }
1221 RB_FOREACH(p, pfr_ktablehead, &pfr_ktables) {
1222 if (pfr_skip_table(filter, p, flags))
1223 continue;
1224 if (n-- <= 0)
1225 continue;
1226 if (COPYOUT(&p->pfrkt_t, tbl++, sizeof(*tbl)))
1227 return (EFAULT);
1228 }
1229 if (n) {
1230 printf("pfr_get_tables: corruption detected (%d).\n", n);
1231 return (ENOTTY);
1232 }
1233 *size = nn;
1234 return (0);
1235 }
1236
1237 int
pfr_get_tstats(struct pfr_table * filter,struct pfr_tstats * tbl,int * size,int flags)1238 pfr_get_tstats(struct pfr_table *filter, struct pfr_tstats *tbl, int *size,
1239 int flags)
1240 {
1241 struct pfr_ktable *p;
1242 struct pfr_ktableworkq workq;
1243 int s, n, nn;
1244 time_t tzero = time.tv_sec;
1245
1246 ACCEPT_FLAGS(PFR_FLAG_ATOMIC|PFR_FLAG_ALLRSETS);
1247 /* XXX PFR_FLAG_CLSTATS disabled */
1248 n = nn = pfr_table_count(filter, flags);
1249 if (n < 0)
1250 return (ENOENT);
1251 if (n > *size) {
1252 *size = n;
1253 return (0);
1254 }
1255 SLIST_INIT(&workq);
1256 if (flags & PFR_FLAG_ATOMIC)
1257 s = splsoftnet();
1258 RB_FOREACH(p, pfr_ktablehead, &pfr_ktables) {
1259 if (pfr_skip_table(filter, p, flags))
1260 continue;
1261 if (n-- <= 0)
1262 continue;
1263 if (!(flags & PFR_FLAG_ATOMIC))
1264 s = splsoftnet();
1265 if (COPYOUT(&p->pfrkt_ts, tbl++, sizeof(*tbl))) {
1266 splx(s);
1267 return (EFAULT);
1268 }
1269 if (!(flags & PFR_FLAG_ATOMIC))
1270 splx(s);
1271 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1272 }
1273 if (flags & PFR_FLAG_CLSTATS)
1274 pfr_clstats_ktables(&workq, tzero,
1275 flags & PFR_FLAG_ADDRSTOO);
1276 if (flags & PFR_FLAG_ATOMIC)
1277 splx(s);
1278 if (n) {
1279 printf("pfr_get_tstats: corruption detected (%d).\n", n);
1280 return (ENOTTY);
1281 }
1282 *size = nn;
1283 return (0);
1284 }
1285
1286 int
pfr_clr_tstats(struct pfr_table * tbl,int size,int * nzero,int flags)1287 pfr_clr_tstats(struct pfr_table *tbl, int size, int *nzero, int flags)
1288 {
1289 struct pfr_ktableworkq workq;
1290 struct pfr_ktable *p, key;
1291 int i, s, xzero = 0;
1292 time_t tzero = time.tv_sec;
1293
1294 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY+PFR_FLAG_ADDRSTOO);
1295 SLIST_INIT(&workq);
1296 for (i = 0; i < size; i++) {
1297 if (COPYIN(tbl+i, &key.pfrkt_t, sizeof(key.pfrkt_t)))
1298 return (EFAULT);
1299 if (pfr_validate_table(&key.pfrkt_t, 0, 0))
1300 return (EINVAL);
1301 p = RB_FIND(pfr_ktablehead, &pfr_ktables, &key);
1302 if (p != NULL) {
1303 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1304 xzero++;
1305 }
1306 }
1307 if (!(flags & PFR_FLAG_DUMMY)) {
1308 if (flags & PFR_FLAG_ATOMIC)
1309 s = splsoftnet();
1310 pfr_clstats_ktables(&workq, tzero, flags & PFR_FLAG_ADDRSTOO);
1311 if (flags & PFR_FLAG_ATOMIC)
1312 splx(s);
1313 }
1314 if (nzero != NULL)
1315 *nzero = xzero;
1316 return (0);
1317 }
1318
1319 int
pfr_set_tflags(struct pfr_table * tbl,int size,int setflag,int clrflag,int * nchange,int * ndel,int flags)1320 pfr_set_tflags(struct pfr_table *tbl, int size, int setflag, int clrflag,
1321 int *nchange, int *ndel, int flags)
1322 {
1323 struct pfr_ktableworkq workq;
1324 struct pfr_ktable *p, *q, key;
1325 int i, s, xchange = 0, xdel = 0;
1326
1327 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY);
1328 if ((setflag & ~PFR_TFLAG_USRMASK) ||
1329 (clrflag & ~PFR_TFLAG_USRMASK) ||
1330 (setflag & clrflag))
1331 return (EINVAL);
1332 SLIST_INIT(&workq);
1333 for (i = 0; i < size; i++) {
1334 if (COPYIN(tbl+i, &key.pfrkt_t, sizeof(key.pfrkt_t)))
1335 return (EFAULT);
1336 if (pfr_validate_table(&key.pfrkt_t, 0,
1337 flags & PFR_FLAG_USERIOCTL))
1338 return (EINVAL);
1339 p = RB_FIND(pfr_ktablehead, &pfr_ktables, &key);
1340 if (p != NULL && (p->pfrkt_flags & PFR_TFLAG_ACTIVE)) {
1341 p->pfrkt_nflags = (p->pfrkt_flags | setflag) &
1342 ~clrflag;
1343 if (p->pfrkt_nflags == p->pfrkt_flags)
1344 goto _skip;
1345 SLIST_FOREACH(q, &workq, pfrkt_workq)
1346 if (!pfr_ktable_compare(p, q))
1347 goto _skip;
1348 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1349 if ((p->pfrkt_flags & PFR_TFLAG_PERSIST) &&
1350 (clrflag & PFR_TFLAG_PERSIST) &&
1351 !(p->pfrkt_flags & PFR_TFLAG_REFERENCED))
1352 xdel++;
1353 else
1354 xchange++;
1355 }
1356 _skip:
1357 ;
1358 }
1359 if (!(flags & PFR_FLAG_DUMMY)) {
1360 if (flags & PFR_FLAG_ATOMIC)
1361 s = splsoftnet();
1362 pfr_setflags_ktables(&workq);
1363 if (flags & PFR_FLAG_ATOMIC)
1364 splx(s);
1365 }
1366 if (nchange != NULL)
1367 *nchange = xchange;
1368 if (ndel != NULL)
1369 *ndel = xdel;
1370 return (0);
1371 }
1372
1373 int
pfr_ina_begin(struct pfr_table * trs,u_int32_t * ticket,int * ndel,int flags)1374 pfr_ina_begin(struct pfr_table *trs, u_int32_t *ticket, int *ndel, int flags)
1375 {
1376 struct pfr_ktableworkq workq;
1377 struct pfr_ktable *p;
1378 struct pf_ruleset *rs;
1379 int xdel = 0;
1380
1381 ACCEPT_FLAGS(PFR_FLAG_DUMMY);
1382 rs = pf_find_or_create_ruleset(trs->pfrt_anchor, trs->pfrt_ruleset);
1383 if (rs == NULL)
1384 return (ENOMEM);
1385 SLIST_INIT(&workq);
1386 RB_FOREACH(p, pfr_ktablehead, &pfr_ktables) {
1387 if (!(p->pfrkt_flags & PFR_TFLAG_INACTIVE) ||
1388 pfr_skip_table(trs, p, 0))
1389 continue;
1390 p->pfrkt_nflags = p->pfrkt_flags & ~PFR_TFLAG_INACTIVE;
1391 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1392 xdel++;
1393 }
1394 if (!(flags & PFR_FLAG_DUMMY)) {
1395 pfr_setflags_ktables(&workq);
1396 if (ticket != NULL)
1397 *ticket = ++rs->tticket;
1398 rs->topen = 1;
1399 } else
1400 pf_remove_if_empty_ruleset(rs);
1401 if (ndel != NULL)
1402 *ndel = xdel;
1403 return (0);
1404 }
1405
1406 int
pfr_ina_define(struct pfr_table * tbl,struct pfr_addr * addr,int size,int * nadd,int * naddr,u_int32_t ticket,int flags)1407 pfr_ina_define(struct pfr_table *tbl, struct pfr_addr *addr, int size,
1408 int *nadd, int *naddr, u_int32_t ticket, int flags)
1409 {
1410 struct pfr_ktableworkq tableq;
1411 struct pfr_kentryworkq addrq;
1412 struct pfr_ktable *kt, *rt, *shadow, key;
1413 struct pfr_kentry *p;
1414 struct pfr_addr ad;
1415 struct pf_ruleset *rs;
1416 int i, rv, xadd = 0, xaddr = 0;
1417
1418 ACCEPT_FLAGS(PFR_FLAG_DUMMY|PFR_FLAG_ADDRSTOO);
1419 if (size && !(flags & PFR_FLAG_ADDRSTOO))
1420 return (EINVAL);
1421 if (pfr_validate_table(tbl, PFR_TFLAG_USRMASK,
1422 flags & PFR_FLAG_USERIOCTL))
1423 return (EINVAL);
1424 rs = pf_find_ruleset(tbl->pfrt_anchor, tbl->pfrt_ruleset);
1425 if (rs == NULL || !rs->topen || ticket != rs->tticket)
1426 return (EBUSY);
1427 tbl->pfrt_flags |= PFR_TFLAG_INACTIVE;
1428 SLIST_INIT(&tableq);
1429 kt = RB_FIND(pfr_ktablehead, &pfr_ktables, (struct pfr_ktable *)tbl);
1430 if (kt == NULL) {
1431 kt = pfr_create_ktable(tbl, 0, 1);
1432 if (kt == NULL)
1433 return (ENOMEM);
1434 SLIST_INSERT_HEAD(&tableq, kt, pfrkt_workq);
1435 xadd++;
1436 if (!tbl->pfrt_anchor[0])
1437 goto _skip;
1438
1439 /* find or create root table */
1440 bzero(&key, sizeof(key));
1441 strlcpy(key.pfrkt_name, tbl->pfrt_name, sizeof(key.pfrkt_name));
1442 rt = RB_FIND(pfr_ktablehead, &pfr_ktables, &key);
1443 if (rt != NULL) {
1444 kt->pfrkt_root = rt;
1445 goto _skip;
1446 }
1447 rt = pfr_create_ktable(&key.pfrkt_t, 0, 1);
1448 if (rt == NULL) {
1449 pfr_destroy_ktables(&tableq, 0);
1450 return (ENOMEM);
1451 }
1452 SLIST_INSERT_HEAD(&tableq, rt, pfrkt_workq);
1453 kt->pfrkt_root = rt;
1454 } else if (!(kt->pfrkt_flags & PFR_TFLAG_INACTIVE))
1455 xadd++;
1456 _skip:
1457 shadow = pfr_create_ktable(tbl, 0, 0);
1458 if (shadow == NULL) {
1459 pfr_destroy_ktables(&tableq, 0);
1460 return (ENOMEM);
1461 }
1462 SLIST_INIT(&addrq);
1463 for (i = 0; i < size; i++) {
1464 if (COPYIN(addr+i, &ad, sizeof(ad)))
1465 senderr(EFAULT);
1466 if (pfr_validate_addr(&ad))
1467 senderr(EINVAL);
1468 if (pfr_lookup_addr(shadow, &ad, 1) != NULL)
1469 continue;
1470 p = pfr_create_kentry(&ad);
1471 if (p == NULL)
1472 senderr(ENOMEM);
1473 if (pfr_route_kentry(shadow, p)) {
1474 pfr_destroy_kentry(p);
1475 continue;
1476 }
1477 SLIST_INSERT_HEAD(&addrq, p, pfrke_workq);
1478 xaddr++;
1479 }
1480 if (!(flags & PFR_FLAG_DUMMY)) {
1481 if (kt->pfrkt_shadow != NULL)
1482 pfr_destroy_ktable(kt->pfrkt_shadow, 1);
1483 kt->pfrkt_flags |= PFR_TFLAG_INACTIVE;
1484 pfr_insert_ktables(&tableq);
1485 shadow->pfrkt_cnt = (flags & PFR_FLAG_ADDRSTOO) ?
1486 xaddr : NO_ADDRESSES;
1487 kt->pfrkt_shadow = shadow;
1488 } else {
1489 pfr_clean_node_mask(shadow, &addrq);
1490 pfr_destroy_ktable(shadow, 0);
1491 pfr_destroy_ktables(&tableq, 0);
1492 pfr_destroy_kentries(&addrq);
1493 }
1494 if (nadd != NULL)
1495 *nadd = xadd;
1496 if (naddr != NULL)
1497 *naddr = xaddr;
1498 return (0);
1499 _bad:
1500 pfr_destroy_ktable(shadow, 0);
1501 pfr_destroy_ktables(&tableq, 0);
1502 pfr_destroy_kentries(&addrq);
1503 return (rv);
1504 }
1505
1506 int
pfr_ina_rollback(struct pfr_table * trs,u_int32_t ticket,int * ndel,int flags)1507 pfr_ina_rollback(struct pfr_table *trs, u_int32_t ticket, int *ndel, int flags)
1508 {
1509 struct pfr_ktableworkq workq;
1510 struct pfr_ktable *p;
1511 struct pf_ruleset *rs;
1512 int xdel = 0;
1513
1514 ACCEPT_FLAGS(PFR_FLAG_DUMMY);
1515 rs = pf_find_ruleset(trs->pfrt_anchor, trs->pfrt_ruleset);
1516 if (rs == NULL || !rs->topen || ticket != rs->tticket)
1517 return (0);
1518 SLIST_INIT(&workq);
1519 RB_FOREACH(p, pfr_ktablehead, &pfr_ktables) {
1520 if (!(p->pfrkt_flags & PFR_TFLAG_INACTIVE) ||
1521 pfr_skip_table(trs, p, 0))
1522 continue;
1523 p->pfrkt_nflags = p->pfrkt_flags & ~PFR_TFLAG_INACTIVE;
1524 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1525 xdel++;
1526 }
1527 if (!(flags & PFR_FLAG_DUMMY)) {
1528 pfr_setflags_ktables(&workq);
1529 rs->topen = 0;
1530 pf_remove_if_empty_ruleset(rs);
1531 }
1532 if (ndel != NULL)
1533 *ndel = xdel;
1534 return (0);
1535 }
1536
1537 int
pfr_ina_commit(struct pfr_table * trs,u_int32_t ticket,int * nadd,int * nchange,int flags)1538 pfr_ina_commit(struct pfr_table *trs, u_int32_t ticket, int *nadd,
1539 int *nchange, int flags)
1540 {
1541 struct pfr_ktable *p;
1542 struct pfr_ktableworkq workq;
1543 struct pf_ruleset *rs;
1544 int s, xadd = 0, xchange = 0;
1545 time_t tzero = time.tv_sec;
1546
1547 ACCEPT_FLAGS(PFR_FLAG_ATOMIC+PFR_FLAG_DUMMY);
1548 rs = pf_find_ruleset(trs->pfrt_anchor, trs->pfrt_ruleset);
1549 if (rs == NULL || !rs->topen || ticket != rs->tticket)
1550 return (EBUSY);
1551
1552 SLIST_INIT(&workq);
1553 RB_FOREACH(p, pfr_ktablehead, &pfr_ktables) {
1554 if (!(p->pfrkt_flags & PFR_TFLAG_INACTIVE) ||
1555 pfr_skip_table(trs, p, 0))
1556 continue;
1557 SLIST_INSERT_HEAD(&workq, p, pfrkt_workq);
1558 if (p->pfrkt_flags & PFR_TFLAG_ACTIVE)
1559 xchange++;
1560 else
1561 xadd++;
1562 }
1563
1564 if (!(flags & PFR_FLAG_DUMMY)) {
1565 if (flags & PFR_FLAG_ATOMIC)
1566 s = splsoftnet();
1567 SLIST_FOREACH(p, &workq, pfrkt_workq)
1568 pfr_commit_ktable(p, tzero);
1569 if (flags & PFR_FLAG_ATOMIC)
1570 splx(s);
1571 rs->topen = 0;
1572 pf_remove_if_empty_ruleset(rs);
1573 }
1574 if (nadd != NULL)
1575 *nadd = xadd;
1576 if (nchange != NULL)
1577 *nchange = xchange;
1578
1579 return (0);
1580 }
1581
1582 void
pfr_commit_ktable(struct pfr_ktable * kt,long tzero)1583 pfr_commit_ktable(struct pfr_ktable *kt, long tzero)
1584 {
1585 struct pfr_ktable *shadow = kt->pfrkt_shadow;
1586 int nflags;
1587
1588 if (shadow->pfrkt_cnt == NO_ADDRESSES) {
1589 if (!(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
1590 pfr_clstats_ktable(kt, tzero, 1);
1591 } else if (kt->pfrkt_flags & PFR_TFLAG_ACTIVE) {
1592 /* kt might contain addresses */
1593 struct pfr_kentryworkq addrq, addq, changeq, delq, garbageq;
1594 struct pfr_kentry *p, *q, *next;
1595 struct pfr_addr ad;
1596
1597 pfr_enqueue_addrs(shadow, &addrq, NULL, 0);
1598 pfr_mark_addrs(kt);
1599 SLIST_INIT(&addq);
1600 SLIST_INIT(&changeq);
1601 SLIST_INIT(&delq);
1602 SLIST_INIT(&garbageq);
1603 pfr_clean_node_mask(shadow, &addrq);
1604 for (p = SLIST_FIRST(&addrq); p != NULL; p = next) {
1605 next = SLIST_NEXT(p, pfrke_workq); /* XXX */
1606 pfr_copyout_addr(&ad, p);
1607 q = pfr_lookup_addr(kt, &ad, 1);
1608 if (q != NULL) {
1609 if (q->pfrke_not != p->pfrke_not)
1610 SLIST_INSERT_HEAD(&changeq, q,
1611 pfrke_workq);
1612 q->pfrke_mark = 1;
1613 SLIST_INSERT_HEAD(&garbageq, p, pfrke_workq);
1614 } else {
1615 p->pfrke_tzero = tzero;
1616 SLIST_INSERT_HEAD(&addq, p, pfrke_workq);
1617 }
1618 }
1619 pfr_enqueue_addrs(kt, &delq, NULL, ENQUEUE_UNMARKED_ONLY);
1620 pfr_insert_kentries(kt, &addq, tzero);
1621 pfr_remove_kentries(kt, &delq);
1622 pfr_clstats_kentries(&changeq, tzero, INVERT_NEG_FLAG);
1623 pfr_destroy_kentries(&garbageq);
1624 } else {
1625 /* kt cannot contain addresses */
1626 SWAP(struct radix_node_head *, kt->pfrkt_ip4,
1627 shadow->pfrkt_ip4);
1628 SWAP(struct radix_node_head *, kt->pfrkt_ip6,
1629 shadow->pfrkt_ip6);
1630 SWAP(int, kt->pfrkt_cnt, shadow->pfrkt_cnt);
1631 pfr_clstats_ktable(kt, tzero, 1);
1632 }
1633 nflags = ((shadow->pfrkt_flags & PFR_TFLAG_USRMASK) |
1634 (kt->pfrkt_flags & PFR_TFLAG_SETMASK) | PFR_TFLAG_ACTIVE)
1635 & ~PFR_TFLAG_INACTIVE;
1636 pfr_destroy_ktable(shadow, 0);
1637 kt->pfrkt_shadow = NULL;
1638 pfr_setflags_ktable(kt, nflags);
1639 }
1640
1641 int
pfr_validate_table(struct pfr_table * tbl,int allowedflags,int no_reserved)1642 pfr_validate_table(struct pfr_table *tbl, int allowedflags, int no_reserved)
1643 {
1644 int i;
1645
1646 if (!tbl->pfrt_name[0])
1647 return (-1);
1648 if (no_reserved && !strcmp(tbl->pfrt_anchor, PF_RESERVED_ANCHOR))
1649 return (-1);
1650 if (tbl->pfrt_name[PF_TABLE_NAME_SIZE-1])
1651 return (-1);
1652 for (i = strlen(tbl->pfrt_name); i < PF_TABLE_NAME_SIZE; i++)
1653 if (tbl->pfrt_name[i])
1654 return (-1);
1655 if (tbl->pfrt_flags & ~allowedflags)
1656 return (-1);
1657 return (0);
1658 }
1659
1660 int
pfr_table_count(struct pfr_table * filter,int flags)1661 pfr_table_count(struct pfr_table *filter, int flags)
1662 {
1663 struct pf_ruleset *rs;
1664 struct pf_anchor *ac;
1665
1666 if (flags & PFR_FLAG_ALLRSETS)
1667 return (pfr_ktable_cnt);
1668 if (filter->pfrt_ruleset[0]) {
1669 rs = pf_find_ruleset(filter->pfrt_anchor,
1670 filter->pfrt_ruleset);
1671 return ((rs != NULL) ? rs->tables : -1);
1672 }
1673 if (filter->pfrt_anchor[0]) {
1674 ac = pf_find_anchor(filter->pfrt_anchor);
1675 return ((ac != NULL) ? ac->tables : -1);
1676 }
1677 return (pf_main_ruleset.tables);
1678 }
1679
1680 int
pfr_skip_table(struct pfr_table * filter,struct pfr_ktable * kt,int flags)1681 pfr_skip_table(struct pfr_table *filter, struct pfr_ktable *kt, int flags)
1682 {
1683 if (flags & PFR_FLAG_ALLRSETS)
1684 return (0);
1685 if (strncmp(filter->pfrt_anchor, kt->pfrkt_anchor,
1686 PF_ANCHOR_NAME_SIZE))
1687 return (1);
1688 if (!filter->pfrt_ruleset[0])
1689 return (0);
1690 if (strncmp(filter->pfrt_ruleset, kt->pfrkt_ruleset,
1691 PF_RULESET_NAME_SIZE))
1692 return (1);
1693 return (0);
1694 }
1695
1696 void
pfr_insert_ktables(struct pfr_ktableworkq * workq)1697 pfr_insert_ktables(struct pfr_ktableworkq *workq)
1698 {
1699 struct pfr_ktable *p;
1700
1701 SLIST_FOREACH(p, workq, pfrkt_workq)
1702 pfr_insert_ktable(p);
1703 }
1704
1705 void
pfr_insert_ktable(struct pfr_ktable * kt)1706 pfr_insert_ktable(struct pfr_ktable *kt)
1707 {
1708 RB_INSERT(pfr_ktablehead, &pfr_ktables, kt);
1709 pfr_ktable_cnt++;
1710 if (kt->pfrkt_root != NULL)
1711 if (!kt->pfrkt_root->pfrkt_refcnt[PFR_REFCNT_ANCHOR]++)
1712 pfr_setflags_ktable(kt->pfrkt_root,
1713 kt->pfrkt_root->pfrkt_flags|PFR_TFLAG_REFDANCHOR);
1714 }
1715
1716 void
pfr_setflags_ktables(struct pfr_ktableworkq * workq)1717 pfr_setflags_ktables(struct pfr_ktableworkq *workq)
1718 {
1719 struct pfr_ktable *p;
1720
1721 SLIST_FOREACH(p, workq, pfrkt_workq)
1722 pfr_setflags_ktable(p, p->pfrkt_nflags);
1723 }
1724
1725 void
pfr_setflags_ktable(struct pfr_ktable * kt,int newf)1726 pfr_setflags_ktable(struct pfr_ktable *kt, int newf)
1727 {
1728 struct pfr_kentryworkq addrq;
1729
1730 if (!(newf & PFR_TFLAG_REFERENCED) &&
1731 !(newf & PFR_TFLAG_PERSIST))
1732 newf &= ~PFR_TFLAG_ACTIVE;
1733 if (!(newf & PFR_TFLAG_ACTIVE))
1734 newf &= ~PFR_TFLAG_USRMASK;
1735 if (!(newf & PFR_TFLAG_SETMASK)) {
1736 RB_REMOVE(pfr_ktablehead, &pfr_ktables, kt);
1737 if (kt->pfrkt_root != NULL)
1738 if (!--kt->pfrkt_root->pfrkt_refcnt[PFR_REFCNT_ANCHOR])
1739 pfr_setflags_ktable(kt->pfrkt_root,
1740 kt->pfrkt_root->pfrkt_flags &
1741 ~PFR_TFLAG_REFDANCHOR);
1742 pfr_destroy_ktable(kt, 1);
1743 pfr_ktable_cnt--;
1744 return;
1745 }
1746 if (!(newf & PFR_TFLAG_ACTIVE) && kt->pfrkt_cnt) {
1747 pfr_enqueue_addrs(kt, &addrq, NULL, 0);
1748 pfr_remove_kentries(kt, &addrq);
1749 }
1750 if (!(newf & PFR_TFLAG_INACTIVE) && kt->pfrkt_shadow != NULL) {
1751 pfr_destroy_ktable(kt->pfrkt_shadow, 1);
1752 kt->pfrkt_shadow = NULL;
1753 }
1754 kt->pfrkt_flags = newf;
1755 }
1756
1757 void
pfr_clstats_ktables(struct pfr_ktableworkq * workq,long tzero,int recurse)1758 pfr_clstats_ktables(struct pfr_ktableworkq *workq, long tzero, int recurse)
1759 {
1760 struct pfr_ktable *p;
1761
1762 SLIST_FOREACH(p, workq, pfrkt_workq)
1763 pfr_clstats_ktable(p, tzero, recurse);
1764 }
1765
1766 void
pfr_clstats_ktable(struct pfr_ktable * kt,long tzero,int recurse)1767 pfr_clstats_ktable(struct pfr_ktable *kt, long tzero, int recurse)
1768 {
1769 struct pfr_kentryworkq addrq;
1770 int s;
1771
1772 if (recurse) {
1773 pfr_enqueue_addrs(kt, &addrq, NULL, 0);
1774 pfr_clstats_kentries(&addrq, tzero, 0);
1775 }
1776 s = splsoftnet();
1777 bzero(kt->pfrkt_packets, sizeof(kt->pfrkt_packets));
1778 bzero(kt->pfrkt_bytes, sizeof(kt->pfrkt_bytes));
1779 kt->pfrkt_match = kt->pfrkt_nomatch = 0;
1780 splx(s);
1781 kt->pfrkt_tzero = tzero;
1782 }
1783
1784 struct pfr_ktable *
pfr_create_ktable(struct pfr_table * tbl,long tzero,int attachruleset)1785 pfr_create_ktable(struct pfr_table *tbl, long tzero, int attachruleset)
1786 {
1787 struct pfr_ktable *kt;
1788 struct pf_ruleset *rs;
1789
1790 kt = pool_get(&pfr_ktable_pl, PR_NOWAIT);
1791 if (kt == NULL)
1792 return (NULL);
1793 bzero(kt, sizeof(*kt));
1794 kt->pfrkt_t = *tbl;
1795
1796 if (attachruleset) {
1797 rs = pf_find_or_create_ruleset(tbl->pfrt_anchor,
1798 tbl->pfrt_ruleset);
1799 if (!rs) {
1800 pfr_destroy_ktable(kt, 0);
1801 return (NULL);
1802 }
1803 kt->pfrkt_rs = rs;
1804 rs->tables++;
1805 if (rs->anchor != NULL)
1806 rs->anchor->tables++;
1807 }
1808
1809 if (!rn_inithead((void **)&kt->pfrkt_ip4,
1810 offsetof(struct sockaddr_in, sin_addr) * 8) ||
1811 !rn_inithead((void **)&kt->pfrkt_ip6,
1812 offsetof(struct sockaddr_in6, sin6_addr) * 8)) {
1813 pfr_destroy_ktable(kt, 0);
1814 return (NULL);
1815 }
1816 kt->pfrkt_tzero = tzero;
1817
1818 return (kt);
1819 }
1820
1821 void
pfr_destroy_ktables(struct pfr_ktableworkq * workq,int flushaddr)1822 pfr_destroy_ktables(struct pfr_ktableworkq *workq, int flushaddr)
1823 {
1824 struct pfr_ktable *p, *q;
1825
1826 for (p = SLIST_FIRST(workq); p; p = q) {
1827 q = SLIST_NEXT(p, pfrkt_workq);
1828 pfr_destroy_ktable(p, flushaddr);
1829 }
1830 }
1831
1832 void
pfr_destroy_ktable(struct pfr_ktable * kt,int flushaddr)1833 pfr_destroy_ktable(struct pfr_ktable *kt, int flushaddr)
1834 {
1835 struct pfr_kentryworkq addrq;
1836
1837 if (flushaddr) {
1838 pfr_enqueue_addrs(kt, &addrq, NULL, 0);
1839 pfr_clean_node_mask(kt, &addrq);
1840 pfr_destroy_kentries(&addrq);
1841 }
1842 if (kt->pfrkt_ip4 != NULL)
1843 free((caddr_t)kt->pfrkt_ip4, M_RTABLE);
1844 if (kt->pfrkt_ip6 != NULL)
1845 free((caddr_t)kt->pfrkt_ip6, M_RTABLE);
1846 if (kt->pfrkt_shadow != NULL)
1847 pfr_destroy_ktable(kt->pfrkt_shadow, flushaddr);
1848 if (kt->pfrkt_rs != NULL) {
1849 kt->pfrkt_rs->tables--;
1850 if (kt->pfrkt_rs->anchor != NULL)
1851 kt->pfrkt_rs->anchor->tables--;
1852 pf_remove_if_empty_ruleset(kt->pfrkt_rs);
1853 }
1854 pool_put(&pfr_ktable_pl, kt);
1855 }
1856
1857 int
pfr_ktable_compare(struct pfr_ktable * p,struct pfr_ktable * q)1858 pfr_ktable_compare(struct pfr_ktable *p, struct pfr_ktable *q)
1859 {
1860 int d;
1861
1862 if ((d = strncmp(p->pfrkt_name, q->pfrkt_name, PF_TABLE_NAME_SIZE)))
1863 return (d);
1864 if ((d = strncmp(p->pfrkt_anchor, q->pfrkt_anchor,
1865 PF_ANCHOR_NAME_SIZE)))
1866 return (d);
1867 return (strncmp(p->pfrkt_ruleset, q->pfrkt_ruleset,
1868 PF_RULESET_NAME_SIZE));
1869 }
1870
1871 struct pfr_ktable *
pfr_lookup_table(struct pfr_table * tbl)1872 pfr_lookup_table(struct pfr_table *tbl)
1873 {
1874 /* struct pfr_ktable start like a struct pfr_table */
1875 return (RB_FIND(pfr_ktablehead, &pfr_ktables,
1876 (struct pfr_ktable *)tbl));
1877 }
1878
1879 int
pfr_match_addr(struct pfr_ktable * kt,struct pf_addr * a,sa_family_t af)1880 pfr_match_addr(struct pfr_ktable *kt, struct pf_addr *a, sa_family_t af)
1881 {
1882 struct pfr_kentry *ke = NULL;
1883 int match;
1884
1885 if (!(kt->pfrkt_flags & PFR_TFLAG_ACTIVE) && kt->pfrkt_root != NULL)
1886 kt = kt->pfrkt_root;
1887 if (!(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
1888 return (0);
1889
1890 switch (af) {
1891 #ifdef INET
1892 case AF_INET:
1893 pfr_sin.sin_addr.s_addr = a->addr32[0];
1894 ke = (struct pfr_kentry *)rn_match(&pfr_sin, kt->pfrkt_ip4);
1895 if (ke && KENTRY_RNF_ROOT(ke))
1896 ke = NULL;
1897 break;
1898 #endif /* INET */
1899 #ifdef INET6
1900 case AF_INET6:
1901 bcopy(a, &pfr_sin6.sin6_addr, sizeof(pfr_sin6.sin6_addr));
1902 ke = (struct pfr_kentry *)rn_match(&pfr_sin6, kt->pfrkt_ip6);
1903 if (ke && KENTRY_RNF_ROOT(ke))
1904 ke = NULL;
1905 break;
1906 #endif /* INET6 */
1907 }
1908 match = (ke && !ke->pfrke_not);
1909 if (match)
1910 kt->pfrkt_match++;
1911 else
1912 kt->pfrkt_nomatch++;
1913 return (match);
1914 }
1915
1916 void
pfr_update_stats(struct pfr_ktable * kt,struct pf_addr * a,sa_family_t af,u_int64_t len,int dir_out,int op_pass,int notrule)1917 pfr_update_stats(struct pfr_ktable *kt, struct pf_addr *a, sa_family_t af,
1918 u_int64_t len, int dir_out, int op_pass, int notrule)
1919 {
1920 struct pfr_kentry *ke = NULL;
1921
1922 if (!(kt->pfrkt_flags & PFR_TFLAG_ACTIVE) && kt->pfrkt_root != NULL)
1923 kt = kt->pfrkt_root;
1924 if (!(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
1925 return;
1926
1927 switch (af) {
1928 #ifdef INET
1929 case AF_INET:
1930 pfr_sin.sin_addr.s_addr = a->addr32[0];
1931 ke = (struct pfr_kentry *)rn_match(&pfr_sin, kt->pfrkt_ip4);
1932 if (ke && KENTRY_RNF_ROOT(ke))
1933 ke = NULL;
1934 break;
1935 #endif /* INET */
1936 #ifdef INET6
1937 case AF_INET6:
1938 bcopy(a, &pfr_sin6.sin6_addr, sizeof(pfr_sin6.sin6_addr));
1939 ke = (struct pfr_kentry *)rn_match(&pfr_sin6, kt->pfrkt_ip6);
1940 if (ke && KENTRY_RNF_ROOT(ke))
1941 ke = NULL;
1942 break;
1943 #endif /* INET6 */
1944 default:
1945 ;
1946 }
1947 if ((ke == NULL || ke->pfrke_not) != notrule) {
1948 if (op_pass != PFR_OP_PASS)
1949 printf("pfr_update_stats: assertion failed.\n");
1950 op_pass = PFR_OP_XPASS;
1951 }
1952 kt->pfrkt_packets[dir_out][op_pass]++;
1953 kt->pfrkt_bytes[dir_out][op_pass] += len;
1954 if (ke != NULL && op_pass != PFR_OP_XPASS) {
1955 ke->pfrke_packets[dir_out][op_pass]++;
1956 ke->pfrke_bytes[dir_out][op_pass] += len;
1957 }
1958 }
1959
1960 struct pfr_ktable *
pfr_attach_table(struct pf_ruleset * rs,char * name)1961 pfr_attach_table(struct pf_ruleset *rs, char *name)
1962 {
1963 struct pfr_ktable *kt, *rt;
1964 struct pfr_table tbl;
1965 struct pf_anchor *ac = rs->anchor;
1966
1967 bzero(&tbl, sizeof(tbl));
1968 strlcpy(tbl.pfrt_name, name, sizeof(tbl.pfrt_name));
1969 if (ac != NULL) {
1970 strlcpy(tbl.pfrt_anchor, ac->name, sizeof(tbl.pfrt_anchor));
1971 strlcpy(tbl.pfrt_ruleset, rs->name, sizeof(tbl.pfrt_ruleset));
1972 }
1973 kt = pfr_lookup_table(&tbl);
1974 if (kt == NULL) {
1975 kt = pfr_create_ktable(&tbl, time.tv_sec, 1);
1976 if (kt == NULL)
1977 return (NULL);
1978 if (ac != NULL) {
1979 bzero(tbl.pfrt_anchor, sizeof(tbl.pfrt_anchor));
1980 bzero(tbl.pfrt_ruleset, sizeof(tbl.pfrt_ruleset));
1981 rt = pfr_lookup_table(&tbl);
1982 if (rt == NULL) {
1983 rt = pfr_create_ktable(&tbl, 0, 1);
1984 if (rt == NULL) {
1985 pfr_destroy_ktable(kt, 0);
1986 return (NULL);
1987 }
1988 pfr_insert_ktable(rt);
1989 }
1990 kt->pfrkt_root = rt;
1991 }
1992 pfr_insert_ktable(kt);
1993 }
1994 if (!kt->pfrkt_refcnt[PFR_REFCNT_RULE]++)
1995 pfr_setflags_ktable(kt, kt->pfrkt_flags|PFR_TFLAG_REFERENCED);
1996 return (kt);
1997 }
1998
1999 void
pfr_detach_table(struct pfr_ktable * kt)2000 pfr_detach_table(struct pfr_ktable *kt)
2001 {
2002 if (kt->pfrkt_refcnt[PFR_REFCNT_RULE] <= 0)
2003 printf("pfr_detach_table: refcount = %d.\n",
2004 kt->pfrkt_refcnt[PFR_REFCNT_RULE]);
2005 else if (!--kt->pfrkt_refcnt[PFR_REFCNT_RULE])
2006 pfr_setflags_ktable(kt, kt->pfrkt_flags&~PFR_TFLAG_REFERENCED);
2007 }
2008
2009 int
pfr_pool_get(struct pfr_ktable * kt,int * pidx,struct pf_addr * counter,struct pf_addr ** raddr,struct pf_addr ** rmask,sa_family_t af)2010 pfr_pool_get(struct pfr_ktable *kt, int *pidx, struct pf_addr *counter,
2011 struct pf_addr **raddr, struct pf_addr **rmask, sa_family_t af)
2012 {
2013 struct pfr_kentry *ke, *ke2;
2014 struct pf_addr *addr;
2015 union sockaddr_union mask;
2016 int idx = -1, use_counter = 0;
2017
2018 if (af == AF_INET)
2019 addr = (struct pf_addr *)&pfr_sin.sin_addr;
2020 else if (af == AF_INET6)
2021 addr = (struct pf_addr *)&pfr_sin6.sin6_addr;
2022 if (!(kt->pfrkt_flags & PFR_TFLAG_ACTIVE) && kt->pfrkt_root != NULL)
2023 kt = kt->pfrkt_root;
2024 if (!(kt->pfrkt_flags & PFR_TFLAG_ACTIVE))
2025 return (-1);
2026
2027 if (pidx != NULL)
2028 idx = *pidx;
2029 if (counter != NULL && idx >= 0)
2030 use_counter = 1;
2031 if (idx < 0)
2032 idx = 0;
2033
2034 _next_block:
2035 ke = pfr_kentry_byidx(kt, idx, af);
2036 if (ke == NULL)
2037 return (1);
2038 pfr_prepare_network(&pfr_mask, af, ke->pfrke_net);
2039 *raddr = SUNION2PF(&ke->pfrke_sa, af);
2040 *rmask = SUNION2PF(&pfr_mask, af);
2041
2042 if (use_counter) {
2043 /* is supplied address within block? */
2044 if (!PF_MATCHA(0, *raddr, *rmask, counter, af)) {
2045 /* no, go to next block in table */
2046 idx++;
2047 use_counter = 0;
2048 goto _next_block;
2049 }
2050 PF_ACPY(addr, counter, af);
2051 } else {
2052 /* use first address of block */
2053 PF_ACPY(addr, *raddr, af);
2054 }
2055
2056 if (!KENTRY_NETWORK(ke)) {
2057 /* this is a single IP address - no possible nested block */
2058 PF_ACPY(counter, addr, af);
2059 *pidx = idx;
2060 return (0);
2061 }
2062 for (;;) {
2063 /* we don't want to use a nested block */
2064 if (af == AF_INET)
2065 ke2 = (struct pfr_kentry *)rn_match(&pfr_sin,
2066 kt->pfrkt_ip4);
2067 else if (af == AF_INET6)
2068 ke2 = (struct pfr_kentry *)rn_match(&pfr_sin6,
2069 kt->pfrkt_ip6);
2070 /* no need to check KENTRY_RNF_ROOT() here */
2071 if (ke2 == ke) {
2072 /* lookup return the same block - perfect */
2073 PF_ACPY(counter, addr, af);
2074 *pidx = idx;
2075 return (0);
2076 }
2077
2078 /* we need to increase the counter past the nested block */
2079 pfr_prepare_network(&mask, AF_INET, ke2->pfrke_net);
2080 PF_POOLMASK(addr, addr, SUNION2PF(&mask, af), &pfr_ffaddr, af);
2081 PF_AINC(addr, af);
2082 if (!PF_MATCHA(0, *raddr, *rmask, addr, af)) {
2083 /* ok, we reached the end of our main block */
2084 /* go to next block in table */
2085 idx++;
2086 use_counter = 0;
2087 goto _next_block;
2088 }
2089 }
2090 }
2091
2092 struct pfr_kentry *
pfr_kentry_byidx(struct pfr_ktable * kt,int idx,int af)2093 pfr_kentry_byidx(struct pfr_ktable *kt, int idx, int af)
2094 {
2095 struct pfr_walktree w;
2096
2097 bzero(&w, sizeof(w));
2098 w.pfrw_op = PFRW_POOL_GET;
2099 w.pfrw_cnt = idx;
2100
2101 switch (af) {
2102 #ifdef INET
2103 case AF_INET:
2104 rn_walktree(kt->pfrkt_ip4, pfr_walktree, &w);
2105 return (w.pfrw_kentry);
2106 #endif /* INET */
2107 #ifdef INET6
2108 case AF_INET6:
2109 rn_walktree(kt->pfrkt_ip6, pfr_walktree, &w);
2110 return (w.pfrw_kentry);
2111 #endif /* INET6 */
2112 default:
2113 return (NULL);
2114 }
2115 }
2116
2117 void
pfr_dynaddr_update(struct pfr_ktable * kt,struct pfi_dynaddr * dyn)2118 pfr_dynaddr_update(struct pfr_ktable *kt, struct pfi_dynaddr *dyn)
2119 {
2120 struct pfr_walktree w;
2121 int s;
2122
2123 bzero(&w, sizeof(w));
2124 w.pfrw_op = PFRW_DYNADDR_UPDATE;
2125 w.pfrw_dyn = dyn;
2126
2127 s = splsoftnet();
2128 dyn->pfid_acnt4 = 0;
2129 dyn->pfid_acnt6 = 0;
2130 if (!dyn->pfid_af || dyn->pfid_af == AF_INET)
2131 rn_walktree(kt->pfrkt_ip4, pfr_walktree, &w);
2132 if (!dyn->pfid_af || dyn->pfid_af == AF_INET6)
2133 rn_walktree(kt->pfrkt_ip6, pfr_walktree, &w);
2134 splx(s);
2135 }
2136