]> CyberLeo.Net >> Repos - FreeBSD/FreeBSD.git/blob - sys/netpfil/pf/pf_lb.c
pf: Change pf_krule counters to use counter_u64
[FreeBSD/FreeBSD.git] / sys / netpfil / pf / pf_lb.c
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (c) 2001 Daniel Hartmeier
5  * Copyright (c) 2002 - 2008 Henning Brauer
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted provided that the following conditions
10  * are met:
11  *
12  *    - Redistributions of source code must retain the above copyright
13  *      notice, this list of conditions and the following disclaimer.
14  *    - Redistributions in binary form must reproduce the above
15  *      copyright notice, this list of conditions and the following
16  *      disclaimer in the documentation and/or other materials provided
17  *      with the distribution.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
20  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
21  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
22  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
23  * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
24  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
25  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
26  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
27  * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
29  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30  * POSSIBILITY OF SUCH DAMAGE.
31  *
32  * Effort sponsored in part by the Defense Advanced Research Projects
33  * Agency (DARPA) and Air Force Research Laboratory, Air Force
34  * Materiel Command, USAF, under agreement number F30602-01-2-0537.
35  *
36  *      $OpenBSD: pf_lb.c,v 1.2 2009/02/12 02:13:15 sthen Exp $
37  */
38
39 #include <sys/cdefs.h>
40 __FBSDID("$FreeBSD$");
41
42 #include "opt_pf.h"
43 #include "opt_inet.h"
44 #include "opt_inet6.h"
45
46 #include <sys/param.h>
47 #include <sys/lock.h>
48 #include <sys/mbuf.h>
49 #include <sys/socket.h>
50 #include <sys/sysctl.h>
51
52 #include <net/if.h>
53 #include <net/vnet.h>
54 #include <net/pfvar.h>
55 #include <net/if_pflog.h>
56
57 #define DPFPRINTF(n, x) if (V_pf_status.debug >= (n)) printf x
58
59 static void              pf_hash(struct pf_addr *, struct pf_addr *,
60                             struct pf_poolhashkey *, sa_family_t);
61 static struct pf_krule  *pf_match_translation(struct pf_pdesc *, struct mbuf *,
62                             int, int, struct pfi_kif *,
63                             struct pf_addr *, u_int16_t, struct pf_addr *,
64                             uint16_t, int, struct pf_kanchor_stackframe *);
65 static int pf_get_sport(sa_family_t, uint8_t, struct pf_krule *,
66     struct pf_addr *, uint16_t, struct pf_addr *, uint16_t, struct pf_addr *,
67     uint16_t *, uint16_t, uint16_t, struct pf_ksrc_node **);
68
69 #define mix(a,b,c) \
70         do {                                    \
71                 a -= b; a -= c; a ^= (c >> 13); \
72                 b -= c; b -= a; b ^= (a << 8);  \
73                 c -= a; c -= b; c ^= (b >> 13); \
74                 a -= b; a -= c; a ^= (c >> 12); \
75                 b -= c; b -= a; b ^= (a << 16); \
76                 c -= a; c -= b; c ^= (b >> 5);  \
77                 a -= b; a -= c; a ^= (c >> 3);  \
78                 b -= c; b -= a; b ^= (a << 10); \
79                 c -= a; c -= b; c ^= (b >> 15); \
80         } while (0)
81
82 /*
83  * hash function based on bridge_hash in if_bridge.c
84  */
85 static void
86 pf_hash(struct pf_addr *inaddr, struct pf_addr *hash,
87     struct pf_poolhashkey *key, sa_family_t af)
88 {
89         u_int32_t       a = 0x9e3779b9, b = 0x9e3779b9, c = key->key32[0];
90
91         switch (af) {
92 #ifdef INET
93         case AF_INET:
94                 a += inaddr->addr32[0];
95                 b += key->key32[1];
96                 mix(a, b, c);
97                 hash->addr32[0] = c + key->key32[2];
98                 break;
99 #endif /* INET */
100 #ifdef INET6
101         case AF_INET6:
102                 a += inaddr->addr32[0];
103                 b += inaddr->addr32[2];
104                 mix(a, b, c);
105                 hash->addr32[0] = c;
106                 a += inaddr->addr32[1];
107                 b += inaddr->addr32[3];
108                 c += key->key32[1];
109                 mix(a, b, c);
110                 hash->addr32[1] = c;
111                 a += inaddr->addr32[2];
112                 b += inaddr->addr32[1];
113                 c += key->key32[2];
114                 mix(a, b, c);
115                 hash->addr32[2] = c;
116                 a += inaddr->addr32[3];
117                 b += inaddr->addr32[0];
118                 c += key->key32[3];
119                 mix(a, b, c);
120                 hash->addr32[3] = c;
121                 break;
122 #endif /* INET6 */
123         }
124 }
125
126 static struct pf_krule *
127 pf_match_translation(struct pf_pdesc *pd, struct mbuf *m, int off,
128     int direction, struct pfi_kif *kif, struct pf_addr *saddr, u_int16_t sport,
129     struct pf_addr *daddr, uint16_t dport, int rs_num,
130     struct pf_kanchor_stackframe *anchor_stack)
131 {
132         struct pf_krule         *r, *rm = NULL;
133         struct pf_kruleset      *ruleset = NULL;
134         int                      tag = -1;
135         int                      rtableid = -1;
136         int                      asd = 0;
137
138         r = TAILQ_FIRST(pf_main_ruleset.rules[rs_num].active.ptr);
139         while (r && rm == NULL) {
140                 struct pf_rule_addr     *src = NULL, *dst = NULL;
141                 struct pf_addr_wrap     *xdst = NULL;
142
143                 if (r->action == PF_BINAT && direction == PF_IN) {
144                         src = &r->dst;
145                         if (r->rpool.cur != NULL)
146                                 xdst = &r->rpool.cur->addr;
147                 } else {
148                         src = &r->src;
149                         dst = &r->dst;
150                 }
151
152                 counter_u64_add(r->evaluations, 1);
153                 if (pfi_kif_match(r->kif, kif) == r->ifnot)
154                         r = r->skip[PF_SKIP_IFP].ptr;
155                 else if (r->direction && r->direction != direction)
156                         r = r->skip[PF_SKIP_DIR].ptr;
157                 else if (r->af && r->af != pd->af)
158                         r = r->skip[PF_SKIP_AF].ptr;
159                 else if (r->proto && r->proto != pd->proto)
160                         r = r->skip[PF_SKIP_PROTO].ptr;
161                 else if (PF_MISMATCHAW(&src->addr, saddr, pd->af,
162                     src->neg, kif, M_GETFIB(m)))
163                         r = r->skip[src == &r->src ? PF_SKIP_SRC_ADDR :
164                             PF_SKIP_DST_ADDR].ptr;
165                 else if (src->port_op && !pf_match_port(src->port_op,
166                     src->port[0], src->port[1], sport))
167                         r = r->skip[src == &r->src ? PF_SKIP_SRC_PORT :
168                             PF_SKIP_DST_PORT].ptr;
169                 else if (dst != NULL &&
170                     PF_MISMATCHAW(&dst->addr, daddr, pd->af, dst->neg, NULL,
171                     M_GETFIB(m)))
172                         r = r->skip[PF_SKIP_DST_ADDR].ptr;
173                 else if (xdst != NULL && PF_MISMATCHAW(xdst, daddr, pd->af,
174                     0, NULL, M_GETFIB(m)))
175                         r = TAILQ_NEXT(r, entries);
176                 else if (dst != NULL && dst->port_op &&
177                     !pf_match_port(dst->port_op, dst->port[0],
178                     dst->port[1], dport))
179                         r = r->skip[PF_SKIP_DST_PORT].ptr;
180                 else if (r->match_tag && !pf_match_tag(m, r, &tag,
181                     pd->pf_mtag ? pd->pf_mtag->tag : 0))
182                         r = TAILQ_NEXT(r, entries);
183                 else if (r->os_fingerprint != PF_OSFP_ANY && (pd->proto !=
184                     IPPROTO_TCP || !pf_osfp_match(pf_osfp_fingerprint(pd, m,
185                     off, pd->hdr.tcp), r->os_fingerprint)))
186                         r = TAILQ_NEXT(r, entries);
187                 else {
188                         if (r->tag)
189                                 tag = r->tag;
190                         if (r->rtableid >= 0)
191                                 rtableid = r->rtableid;
192                         if (r->anchor == NULL) {
193                                 rm = r;
194                         } else
195                                 pf_step_into_anchor(anchor_stack, &asd,
196                                     &ruleset, rs_num, &r, NULL, NULL);
197                 }
198                 if (r == NULL)
199                         pf_step_out_of_anchor(anchor_stack, &asd, &ruleset,
200                             rs_num, &r, NULL, NULL);
201         }
202
203         if (tag > 0 && pf_tag_packet(m, pd, tag))
204                 return (NULL);
205         if (rtableid >= 0)
206                 M_SETFIB(m, rtableid);
207
208         if (rm != NULL && (rm->action == PF_NONAT ||
209             rm->action == PF_NORDR || rm->action == PF_NOBINAT))
210                 return (NULL);
211         return (rm);
212 }
213
214 static int
215 pf_get_sport(sa_family_t af, u_int8_t proto, struct pf_krule *r,
216     struct pf_addr *saddr, uint16_t sport, struct pf_addr *daddr,
217     uint16_t dport, struct pf_addr *naddr, uint16_t *nport, uint16_t low,
218     uint16_t high, struct pf_ksrc_node **sn)
219 {
220         struct pf_state_key_cmp key;
221         struct pf_addr          init_addr;
222
223         bzero(&init_addr, sizeof(init_addr));
224         if (pf_map_addr(af, r, saddr, naddr, &init_addr, sn))
225                 return (1);
226
227         if (proto == IPPROTO_ICMP) {
228                 low = 1;
229                 high = 65535;
230         }
231
232         bzero(&key, sizeof(key));
233         key.af = af;
234         key.proto = proto;
235         key.port[0] = dport;
236         PF_ACPY(&key.addr[0], daddr, key.af);
237
238         do {
239                 PF_ACPY(&key.addr[1], naddr, key.af);
240
241                 /*
242                  * port search; start random, step;
243                  * similar 2 portloop in in_pcbbind
244                  */
245                 if (!(proto == IPPROTO_TCP || proto == IPPROTO_UDP ||
246                     proto == IPPROTO_ICMP) || (low == 0 && high == 0)) {
247                         /*
248                          * XXX bug: icmp states don't use the id on both sides.
249                          * (traceroute -I through nat)
250                          */
251                         key.port[1] = sport;
252                         if (pf_find_state_all(&key, PF_IN, NULL) == NULL) {
253                                 *nport = sport;
254                                 return (0);
255                         }
256                 } else if (low == high) {
257                         key.port[1] = htons(low);
258                         if (pf_find_state_all(&key, PF_IN, NULL) == NULL) {
259                                 *nport = htons(low);
260                                 return (0);
261                         }
262                 } else {
263                         uint32_t tmp;
264                         uint16_t cut;
265
266                         if (low > high) {
267                                 tmp = low;
268                                 low = high;
269                                 high = tmp;
270                         }
271                         /* low < high */
272                         cut = arc4random() % (1 + high - low) + low;
273                         /* low <= cut <= high */
274                         for (tmp = cut; tmp <= high && tmp <= 0xffff; ++tmp) {
275                                 key.port[1] = htons(tmp);
276                                 if (pf_find_state_all(&key, PF_IN, NULL) ==
277                                     NULL) {
278                                         *nport = htons(tmp);
279                                         return (0);
280                                 }
281                         }
282                         tmp = cut;
283                         for (tmp -= 1; tmp >= low && tmp <= 0xffff; --tmp) {
284                                 key.port[1] = htons(tmp);
285                                 if (pf_find_state_all(&key, PF_IN, NULL) ==
286                                     NULL) {
287                                         *nport = htons(tmp);
288                                         return (0);
289                                 }
290                         }
291                 }
292
293                 switch (r->rpool.opts & PF_POOL_TYPEMASK) {
294                 case PF_POOL_RANDOM:
295                 case PF_POOL_ROUNDROBIN:
296                         if (pf_map_addr(af, r, saddr, naddr, &init_addr, sn))
297                                 return (1);
298                         break;
299                 case PF_POOL_NONE:
300                 case PF_POOL_SRCHASH:
301                 case PF_POOL_BITMASK:
302                 default:
303                         return (1);
304                 }
305         } while (! PF_AEQ(&init_addr, naddr, af) );
306         return (1);                                     /* none available */
307 }
308
309 int
310 pf_map_addr(sa_family_t af, struct pf_krule *r, struct pf_addr *saddr,
311     struct pf_addr *naddr, struct pf_addr *init_addr, struct pf_ksrc_node **sn)
312 {
313         struct pf_pool          *rpool = &r->rpool;
314         struct pf_addr          *raddr = NULL, *rmask = NULL;
315
316         /* Try to find a src_node if none was given and this
317            is a sticky-address rule. */
318         if (*sn == NULL && r->rpool.opts & PF_POOL_STICKYADDR &&
319             (r->rpool.opts & PF_POOL_TYPEMASK) != PF_POOL_NONE)
320                 *sn = pf_find_src_node(saddr, r, af, 0);
321
322         /* If a src_node was found or explicitly given and it has a non-zero
323            route address, use this address. A zeroed address is found if the
324            src node was created just a moment ago in pf_create_state and it
325            needs to be filled in with routing decision calculated here. */
326         if (*sn != NULL && !PF_AZERO(&(*sn)->raddr, af)) {
327                 /* If the supplied address is the same as the current one we've
328                  * been asked before, so tell the caller that there's no other
329                  * address to be had. */
330                 if (PF_AEQ(naddr, &(*sn)->raddr, af))
331                         return (1);
332
333                 PF_ACPY(naddr, &(*sn)->raddr, af);
334                 if (V_pf_status.debug >= PF_DEBUG_MISC) {
335                         printf("pf_map_addr: src tracking maps ");
336                         pf_print_host(saddr, 0, af);
337                         printf(" to ");
338                         pf_print_host(naddr, 0, af);
339                         printf("\n");
340                 }
341                 return (0);
342         }
343
344         /* Find the route using chosen algorithm. Store the found route
345            in src_node if it was given or found. */
346         if (rpool->cur->addr.type == PF_ADDR_NOROUTE)
347                 return (1);
348         if (rpool->cur->addr.type == PF_ADDR_DYNIFTL) {
349                 switch (af) {
350 #ifdef INET
351                 case AF_INET:
352                         if (rpool->cur->addr.p.dyn->pfid_acnt4 < 1 &&
353                             (rpool->opts & PF_POOL_TYPEMASK) !=
354                             PF_POOL_ROUNDROBIN)
355                                 return (1);
356                          raddr = &rpool->cur->addr.p.dyn->pfid_addr4;
357                          rmask = &rpool->cur->addr.p.dyn->pfid_mask4;
358                         break;
359 #endif /* INET */
360 #ifdef INET6
361                 case AF_INET6:
362                         if (rpool->cur->addr.p.dyn->pfid_acnt6 < 1 &&
363                             (rpool->opts & PF_POOL_TYPEMASK) !=
364                             PF_POOL_ROUNDROBIN)
365                                 return (1);
366                         raddr = &rpool->cur->addr.p.dyn->pfid_addr6;
367                         rmask = &rpool->cur->addr.p.dyn->pfid_mask6;
368                         break;
369 #endif /* INET6 */
370                 }
371         } else if (rpool->cur->addr.type == PF_ADDR_TABLE) {
372                 if ((rpool->opts & PF_POOL_TYPEMASK) != PF_POOL_ROUNDROBIN)
373                         return (1); /* unsupported */
374         } else {
375                 raddr = &rpool->cur->addr.v.a.addr;
376                 rmask = &rpool->cur->addr.v.a.mask;
377         }
378
379         switch (rpool->opts & PF_POOL_TYPEMASK) {
380         case PF_POOL_NONE:
381                 PF_ACPY(naddr, raddr, af);
382                 break;
383         case PF_POOL_BITMASK:
384                 PF_POOLMASK(naddr, raddr, rmask, saddr, af);
385                 break;
386         case PF_POOL_RANDOM:
387                 if (init_addr != NULL && PF_AZERO(init_addr, af)) {
388                         switch (af) {
389 #ifdef INET
390                         case AF_INET:
391                                 rpool->counter.addr32[0] = htonl(arc4random());
392                                 break;
393 #endif /* INET */
394 #ifdef INET6
395                         case AF_INET6:
396                                 if (rmask->addr32[3] != 0xffffffff)
397                                         rpool->counter.addr32[3] =
398                                             htonl(arc4random());
399                                 else
400                                         break;
401                                 if (rmask->addr32[2] != 0xffffffff)
402                                         rpool->counter.addr32[2] =
403                                             htonl(arc4random());
404                                 else
405                                         break;
406                                 if (rmask->addr32[1] != 0xffffffff)
407                                         rpool->counter.addr32[1] =
408                                             htonl(arc4random());
409                                 else
410                                         break;
411                                 if (rmask->addr32[0] != 0xffffffff)
412                                         rpool->counter.addr32[0] =
413                                             htonl(arc4random());
414                                 break;
415 #endif /* INET6 */
416                         }
417                         PF_POOLMASK(naddr, raddr, rmask, &rpool->counter, af);
418                         PF_ACPY(init_addr, naddr, af);
419
420                 } else {
421                         PF_AINC(&rpool->counter, af);
422                         PF_POOLMASK(naddr, raddr, rmask, &rpool->counter, af);
423                 }
424                 break;
425         case PF_POOL_SRCHASH:
426             {
427                 unsigned char hash[16];
428
429                 pf_hash(saddr, (struct pf_addr *)&hash, &rpool->key, af);
430                 PF_POOLMASK(naddr, raddr, rmask, (struct pf_addr *)&hash, af);
431                 break;
432             }
433         case PF_POOL_ROUNDROBIN:
434             {
435                 struct pf_pooladdr *acur = rpool->cur;
436
437                 /*
438                  * XXXGL: in the round-robin case we need to store
439                  * the round-robin machine state in the rule, thus
440                  * forwarding thread needs to modify rule.
441                  *
442                  * This is done w/o locking, because performance is assumed
443                  * more important than round-robin precision.
444                  *
445                  * In the simpliest case we just update the "rpool->cur"
446                  * pointer. However, if pool contains tables or dynamic
447                  * addresses, then "tblidx" is also used to store machine
448                  * state. Since "tblidx" is int, concurrent access to it can't
449                  * lead to inconsistence, only to lost of precision.
450                  *
451                  * Things get worse, if table contains not hosts, but
452                  * prefixes. In this case counter also stores machine state,
453                  * and for IPv6 address, counter can't be updated atomically.
454                  * Probably, using round-robin on a table containing IPv6
455                  * prefixes (or even IPv4) would cause a panic.
456                  */
457
458                 if (rpool->cur->addr.type == PF_ADDR_TABLE) {
459                         if (!pfr_pool_get(rpool->cur->addr.p.tbl,
460                             &rpool->tblidx, &rpool->counter, af))
461                                 goto get_addr;
462                 } else if (rpool->cur->addr.type == PF_ADDR_DYNIFTL) {
463                         if (!pfr_pool_get(rpool->cur->addr.p.dyn->pfid_kt,
464                             &rpool->tblidx, &rpool->counter, af))
465                                 goto get_addr;
466                 } else if (pf_match_addr(0, raddr, rmask, &rpool->counter, af))
467                         goto get_addr;
468
469         try_next:
470                 if (TAILQ_NEXT(rpool->cur, entries) == NULL)
471                         rpool->cur = TAILQ_FIRST(&rpool->list);
472                 else
473                         rpool->cur = TAILQ_NEXT(rpool->cur, entries);
474                 if (rpool->cur->addr.type == PF_ADDR_TABLE) {
475                         rpool->tblidx = -1;
476                         if (pfr_pool_get(rpool->cur->addr.p.tbl,
477                             &rpool->tblidx, &rpool->counter, af)) {
478                                 /* table contains no address of type 'af' */
479                                 if (rpool->cur != acur)
480                                         goto try_next;
481                                 return (1);
482                         }
483                 } else if (rpool->cur->addr.type == PF_ADDR_DYNIFTL) {
484                         rpool->tblidx = -1;
485                         if (pfr_pool_get(rpool->cur->addr.p.dyn->pfid_kt,
486                             &rpool->tblidx, &rpool->counter, af)) {
487                                 /* table contains no address of type 'af' */
488                                 if (rpool->cur != acur)
489                                         goto try_next;
490                                 return (1);
491                         }
492                 } else {
493                         raddr = &rpool->cur->addr.v.a.addr;
494                         rmask = &rpool->cur->addr.v.a.mask;
495                         PF_ACPY(&rpool->counter, raddr, af);
496                 }
497
498         get_addr:
499                 PF_ACPY(naddr, &rpool->counter, af);
500                 if (init_addr != NULL && PF_AZERO(init_addr, af))
501                         PF_ACPY(init_addr, naddr, af);
502                 PF_AINC(&rpool->counter, af);
503                 break;
504             }
505         }
506         if (*sn != NULL)
507                 PF_ACPY(&(*sn)->raddr, naddr, af);
508
509         if (V_pf_status.debug >= PF_DEBUG_MISC &&
510             (rpool->opts & PF_POOL_TYPEMASK) != PF_POOL_NONE) {
511                 printf("pf_map_addr: selected address ");
512                 pf_print_host(naddr, 0, af);
513                 printf("\n");
514         }
515
516         return (0);
517 }
518
519 struct pf_krule *
520 pf_get_translation(struct pf_pdesc *pd, struct mbuf *m, int off, int direction,
521     struct pfi_kif *kif, struct pf_ksrc_node **sn,
522     struct pf_state_key **skp, struct pf_state_key **nkp,
523     struct pf_addr *saddr, struct pf_addr *daddr,
524     uint16_t sport, uint16_t dport, struct pf_kanchor_stackframe *anchor_stack)
525 {
526         struct pf_krule *r = NULL;
527         struct pf_addr  *naddr;
528         uint16_t        *nport;
529
530         PF_RULES_RASSERT();
531         KASSERT(*skp == NULL, ("*skp not NULL"));
532         KASSERT(*nkp == NULL, ("*nkp not NULL"));
533
534         if (direction == PF_OUT) {
535                 r = pf_match_translation(pd, m, off, direction, kif, saddr,
536                     sport, daddr, dport, PF_RULESET_BINAT, anchor_stack);
537                 if (r == NULL)
538                         r = pf_match_translation(pd, m, off, direction, kif,
539                             saddr, sport, daddr, dport, PF_RULESET_NAT,
540                             anchor_stack);
541         } else {
542                 r = pf_match_translation(pd, m, off, direction, kif, saddr,
543                     sport, daddr, dport, PF_RULESET_RDR, anchor_stack);
544                 if (r == NULL)
545                         r = pf_match_translation(pd, m, off, direction, kif,
546                             saddr, sport, daddr, dport, PF_RULESET_BINAT,
547                             anchor_stack);
548         }
549
550         if (r == NULL)
551                 return (NULL);
552
553         switch (r->action) {
554         case PF_NONAT:
555         case PF_NOBINAT:
556         case PF_NORDR:
557                 return (NULL);
558         }
559
560         *skp = pf_state_key_setup(pd, saddr, daddr, sport, dport);
561         if (*skp == NULL)
562                 return (NULL);
563         *nkp = pf_state_key_clone(*skp);
564         if (*nkp == NULL) {
565                 uma_zfree(V_pf_state_key_z, *skp);
566                 *skp = NULL;
567                 return (NULL);
568         }
569
570         /* XXX We only modify one side for now. */
571         naddr = &(*nkp)->addr[1];
572         nport = &(*nkp)->port[1];
573
574         switch (r->action) {
575         case PF_NAT:
576                 if (pf_get_sport(pd->af, pd->proto, r, saddr, sport, daddr,
577                     dport, naddr, nport, r->rpool.proxy_port[0],
578                     r->rpool.proxy_port[1], sn)) {
579                         DPFPRINTF(PF_DEBUG_MISC,
580                             ("pf: NAT proxy port allocation (%u-%u) failed\n",
581                             r->rpool.proxy_port[0], r->rpool.proxy_port[1]));
582                         goto notrans;
583                 }
584                 break;
585         case PF_BINAT:
586                 switch (direction) {
587                 case PF_OUT:
588                         if (r->rpool.cur->addr.type == PF_ADDR_DYNIFTL){
589                                 switch (pd->af) {
590 #ifdef INET
591                                 case AF_INET:
592                                         if (r->rpool.cur->addr.p.dyn->
593                                             pfid_acnt4 < 1)
594                                                 goto notrans;
595                                         PF_POOLMASK(naddr,
596                                             &r->rpool.cur->addr.p.dyn->
597                                             pfid_addr4,
598                                             &r->rpool.cur->addr.p.dyn->
599                                             pfid_mask4, saddr, AF_INET);
600                                         break;
601 #endif /* INET */
602 #ifdef INET6
603                                 case AF_INET6:
604                                         if (r->rpool.cur->addr.p.dyn->
605                                             pfid_acnt6 < 1)
606                                                 goto notrans;
607                                         PF_POOLMASK(naddr,
608                                             &r->rpool.cur->addr.p.dyn->
609                                             pfid_addr6,
610                                             &r->rpool.cur->addr.p.dyn->
611                                             pfid_mask6, saddr, AF_INET6);
612                                         break;
613 #endif /* INET6 */
614                                 }
615                         } else
616                                 PF_POOLMASK(naddr,
617                                     &r->rpool.cur->addr.v.a.addr,
618                                     &r->rpool.cur->addr.v.a.mask, saddr,
619                                     pd->af);
620                         break;
621                 case PF_IN:
622                         if (r->src.addr.type == PF_ADDR_DYNIFTL) {
623                                 switch (pd->af) {
624 #ifdef INET
625                                 case AF_INET:
626                                         if (r->src.addr.p.dyn-> pfid_acnt4 < 1)
627                                                 goto notrans;
628                                         PF_POOLMASK(naddr,
629                                             &r->src.addr.p.dyn->pfid_addr4,
630                                             &r->src.addr.p.dyn->pfid_mask4,
631                                             daddr, AF_INET);
632                                         break;
633 #endif /* INET */
634 #ifdef INET6
635                                 case AF_INET6:
636                                         if (r->src.addr.p.dyn->pfid_acnt6 < 1)
637                                                 goto notrans;
638                                         PF_POOLMASK(naddr,
639                                             &r->src.addr.p.dyn->pfid_addr6,
640                                             &r->src.addr.p.dyn->pfid_mask6,
641                                             daddr, AF_INET6);
642                                         break;
643 #endif /* INET6 */
644                                 }
645                         } else
646                                 PF_POOLMASK(naddr, &r->src.addr.v.a.addr,
647                                     &r->src.addr.v.a.mask, daddr, pd->af);
648                         break;
649                 }
650                 break;
651         case PF_RDR: {
652                 if (pf_map_addr(pd->af, r, saddr, naddr, NULL, sn))
653                         goto notrans;
654                 if ((r->rpool.opts & PF_POOL_TYPEMASK) == PF_POOL_BITMASK)
655                         PF_POOLMASK(naddr, naddr, &r->rpool.cur->addr.v.a.mask,
656                             daddr, pd->af);
657
658                 if (r->rpool.proxy_port[1]) {
659                         uint32_t        tmp_nport;
660
661                         tmp_nport = ((ntohs(dport) - ntohs(r->dst.port[0])) %
662                             (r->rpool.proxy_port[1] - r->rpool.proxy_port[0] +
663                             1)) + r->rpool.proxy_port[0];
664
665                         /* Wrap around if necessary. */
666                         if (tmp_nport > 65535)
667                                 tmp_nport -= 65535;
668                         *nport = htons((uint16_t)tmp_nport);
669                 } else if (r->rpool.proxy_port[0])
670                         *nport = htons(r->rpool.proxy_port[0]);
671                 break;
672         }
673         default:
674                 panic("%s: unknown action %u", __func__, r->action);
675         }
676
677         /* Return success only if translation really happened. */
678         if (bcmp(*skp, *nkp, sizeof(struct pf_state_key_cmp)))
679                 return (r);
680
681 notrans:
682         uma_zfree(V_pf_state_key_z, *nkp);
683         uma_zfree(V_pf_state_key_z, *skp);
684         *skp = *nkp = NULL;
685         *sn = NULL;
686
687         return (NULL);
688 }