pf_norm.c revision 1.27 1 1.27 christos /* $NetBSD: pf_norm.c,v 1.27 2013/10/20 21:05:47 christos Exp $ */
2 1.19 yamt /* $OpenBSD: pf_norm.c,v 1.109 2007/05/28 17:16:39 henning Exp $ */
3 1.1 itojun
4 1.1 itojun /*
5 1.1 itojun * Copyright 2001 Niels Provos <provos (at) citi.umich.edu>
6 1.1 itojun * All rights reserved.
7 1.1 itojun *
8 1.1 itojun * Redistribution and use in source and binary forms, with or without
9 1.1 itojun * modification, are permitted provided that the following conditions
10 1.1 itojun * are met:
11 1.1 itojun * 1. Redistributions of source code must retain the above copyright
12 1.1 itojun * notice, this list of conditions and the following disclaimer.
13 1.1 itojun * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 itojun * notice, this list of conditions and the following disclaimer in the
15 1.1 itojun * documentation and/or other materials provided with the distribution.
16 1.1 itojun *
17 1.1 itojun * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 1.1 itojun * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 1.1 itojun * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 1.1 itojun * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 1.1 itojun * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 1.1 itojun * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 1.1 itojun * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 1.1 itojun * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 1.1 itojun * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 1.1 itojun * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 1.1 itojun */
28 1.1 itojun
29 1.17 lukem #include <sys/cdefs.h>
30 1.27 christos __KERNEL_RCSID(0, "$NetBSD: pf_norm.c,v 1.27 2013/10/20 21:05:47 christos Exp $");
31 1.17 lukem
32 1.2 itojun #ifdef _KERNEL_OPT
33 1.2 itojun #include "opt_inet.h"
34 1.2 itojun #endif
35 1.2 itojun
36 1.1 itojun #include "pflog.h"
37 1.1 itojun
38 1.1 itojun #include <sys/param.h>
39 1.1 itojun #include <sys/systm.h>
40 1.1 itojun #include <sys/mbuf.h>
41 1.1 itojun #include <sys/filio.h>
42 1.1 itojun #include <sys/fcntl.h>
43 1.1 itojun #include <sys/socket.h>
44 1.1 itojun #include <sys/kernel.h>
45 1.1 itojun #include <sys/time.h>
46 1.1 itojun #include <sys/pool.h>
47 1.1 itojun
48 1.19 yamt #ifdef __NetBSD__
49 1.19 yamt #include <sys/rnd.h>
50 1.26 tls #include <sys/cprng.h>
51 1.19 yamt #else
52 1.1 itojun #include <dev/rndvar.h>
53 1.19 yamt #endif /* !__NetBSD__ */
54 1.1 itojun #include <net/if.h>
55 1.1 itojun #include <net/if_types.h>
56 1.1 itojun #include <net/bpf.h>
57 1.1 itojun #include <net/route.h>
58 1.1 itojun #include <net/if_pflog.h>
59 1.1 itojun
60 1.1 itojun #include <netinet/in.h>
61 1.1 itojun #include <netinet/in_var.h>
62 1.1 itojun #include <netinet/in_systm.h>
63 1.1 itojun #include <netinet/ip.h>
64 1.1 itojun #include <netinet/ip_var.h>
65 1.1 itojun #include <netinet/tcp.h>
66 1.1 itojun #include <netinet/tcp_seq.h>
67 1.1 itojun #include <netinet/udp.h>
68 1.1 itojun #include <netinet/ip_icmp.h>
69 1.1 itojun
70 1.1 itojun #ifdef INET6
71 1.1 itojun #include <netinet/ip6.h>
72 1.1 itojun #endif /* INET6 */
73 1.1 itojun
74 1.1 itojun #include <net/pfvar.h>
75 1.1 itojun
76 1.1 itojun struct pf_frent {
77 1.1 itojun LIST_ENTRY(pf_frent) fr_next;
78 1.1 itojun struct ip *fr_ip;
79 1.1 itojun struct mbuf *fr_m;
80 1.1 itojun };
81 1.1 itojun
82 1.1 itojun struct pf_frcache {
83 1.1 itojun LIST_ENTRY(pf_frcache) fr_next;
84 1.1 itojun uint16_t fr_off;
85 1.1 itojun uint16_t fr_end;
86 1.1 itojun };
87 1.1 itojun
88 1.1 itojun #define PFFRAG_SEENLAST 0x0001 /* Seen the last fragment for this */
89 1.1 itojun #define PFFRAG_NOBUFFER 0x0002 /* Non-buffering fragment cache */
90 1.1 itojun #define PFFRAG_DROP 0x0004 /* Drop all fragments */
91 1.1 itojun #define BUFFER_FRAGMENTS(fr) (!((fr)->fr_flags & PFFRAG_NOBUFFER))
92 1.1 itojun
93 1.1 itojun struct pf_fragment {
94 1.1 itojun RB_ENTRY(pf_fragment) fr_entry;
95 1.1 itojun TAILQ_ENTRY(pf_fragment) frag_next;
96 1.1 itojun struct in_addr fr_src;
97 1.1 itojun struct in_addr fr_dst;
98 1.1 itojun u_int8_t fr_p; /* protocol of this fragment */
99 1.1 itojun u_int8_t fr_flags; /* status flags */
100 1.1 itojun u_int16_t fr_id; /* fragment id for reassemble */
101 1.1 itojun u_int16_t fr_max; /* fragment data max */
102 1.1 itojun u_int32_t fr_timeout;
103 1.1 itojun #define fr_queue fr_u.fru_queue
104 1.1 itojun #define fr_cache fr_u.fru_cache
105 1.1 itojun union {
106 1.1 itojun LIST_HEAD(pf_fragq, pf_frent) fru_queue; /* buffering */
107 1.1 itojun LIST_HEAD(pf_cacheq, pf_frcache) fru_cache; /* non-buf */
108 1.1 itojun } fr_u;
109 1.1 itojun };
110 1.1 itojun
111 1.1 itojun TAILQ_HEAD(pf_fragqueue, pf_fragment) pf_fragqueue;
112 1.1 itojun TAILQ_HEAD(pf_cachequeue, pf_fragment) pf_cachequeue;
113 1.1 itojun
114 1.1 itojun static __inline int pf_frag_compare(struct pf_fragment *,
115 1.1 itojun struct pf_fragment *);
116 1.1 itojun RB_HEAD(pf_frag_tree, pf_fragment) pf_frag_tree, pf_cache_tree;
117 1.1 itojun RB_PROTOTYPE(pf_frag_tree, pf_fragment, fr_entry, pf_frag_compare);
118 1.1 itojun RB_GENERATE(pf_frag_tree, pf_fragment, fr_entry, pf_frag_compare);
119 1.1 itojun
120 1.1 itojun /* Private prototypes */
121 1.1 itojun void pf_ip2key(struct pf_fragment *, struct ip *);
122 1.1 itojun void pf_remove_fragment(struct pf_fragment *);
123 1.1 itojun void pf_flush_fragments(void);
124 1.1 itojun void pf_free_fragment(struct pf_fragment *);
125 1.1 itojun struct pf_fragment *pf_find_fragment(struct ip *, struct pf_frag_tree *);
126 1.1 itojun struct mbuf *pf_reassemble(struct mbuf **, struct pf_fragment **,
127 1.1 itojun struct pf_frent *, int);
128 1.1 itojun struct mbuf *pf_fragcache(struct mbuf **, struct ip*,
129 1.1 itojun struct pf_fragment **, int, int, int *);
130 1.1 itojun int pf_normalize_tcpopt(struct pf_rule *, struct mbuf *,
131 1.1 itojun struct tcphdr *, int);
132 1.1 itojun
133 1.6 yamt #define DPFPRINTF(x) do { \
134 1.6 yamt if (pf_status.debug >= PF_DEBUG_MISC) { \
135 1.6 yamt printf("%s: ", __func__); \
136 1.6 yamt printf x ; \
137 1.6 yamt } \
138 1.6 yamt } while(0)
139 1.1 itojun
140 1.1 itojun /* Globals */
141 1.1 itojun struct pool pf_frent_pl, pf_frag_pl, pf_cache_pl, pf_cent_pl;
142 1.1 itojun struct pool pf_state_scrub_pl;
143 1.1 itojun int pf_nfrents, pf_ncache;
144 1.1 itojun
145 1.1 itojun void
146 1.1 itojun pf_normalize_init(void)
147 1.1 itojun {
148 1.16 ad #ifdef __NetBSD__
149 1.16 ad pool_init(&pf_frent_pl, sizeof(struct pf_frent), 0, 0, 0, "pffrent",
150 1.16 ad NULL, IPL_SOFTNET);
151 1.16 ad pool_init(&pf_frag_pl, sizeof(struct pf_fragment), 0, 0, 0, "pffrag",
152 1.16 ad NULL, IPL_SOFTNET);
153 1.16 ad pool_init(&pf_cache_pl, sizeof(struct pf_fragment), 0, 0, 0,
154 1.16 ad "pffrcache", NULL, IPL_SOFTNET);
155 1.16 ad pool_init(&pf_cent_pl, sizeof(struct pf_frcache), 0, 0, 0, "pffrcent",
156 1.16 ad NULL, IPL_SOFTNET);
157 1.16 ad pool_init(&pf_state_scrub_pl, sizeof(struct pf_state_scrub), 0, 0, 0,
158 1.16 ad "pfstscr", NULL, IPL_SOFTNET);
159 1.16 ad #else
160 1.1 itojun pool_init(&pf_frent_pl, sizeof(struct pf_frent), 0, 0, 0, "pffrent",
161 1.1 itojun NULL);
162 1.1 itojun pool_init(&pf_frag_pl, sizeof(struct pf_fragment), 0, 0, 0, "pffrag",
163 1.1 itojun NULL);
164 1.1 itojun pool_init(&pf_cache_pl, sizeof(struct pf_fragment), 0, 0, 0,
165 1.1 itojun "pffrcache", NULL);
166 1.1 itojun pool_init(&pf_cent_pl, sizeof(struct pf_frcache), 0, 0, 0, "pffrcent",
167 1.1 itojun NULL);
168 1.1 itojun pool_init(&pf_state_scrub_pl, sizeof(struct pf_state_scrub), 0, 0, 0,
169 1.1 itojun "pfstscr", NULL);
170 1.19 yamt #endif /* !__NetBSD__ */
171 1.1 itojun
172 1.1 itojun pool_sethiwat(&pf_frag_pl, PFFRAG_FRAG_HIWAT);
173 1.1 itojun pool_sethardlimit(&pf_frent_pl, PFFRAG_FRENT_HIWAT, NULL, 0);
174 1.1 itojun pool_sethardlimit(&pf_cache_pl, PFFRAG_FRCACHE_HIWAT, NULL, 0);
175 1.1 itojun pool_sethardlimit(&pf_cent_pl, PFFRAG_FRCENT_HIWAT, NULL, 0);
176 1.1 itojun
177 1.1 itojun TAILQ_INIT(&pf_fragqueue);
178 1.1 itojun TAILQ_INIT(&pf_cachequeue);
179 1.1 itojun }
180 1.1 itojun
181 1.22 ahoka #ifdef _MODULE
182 1.22 ahoka void
183 1.22 ahoka pf_normalize_destroy(void)
184 1.22 ahoka {
185 1.22 ahoka pool_destroy(&pf_state_scrub_pl);
186 1.22 ahoka pool_destroy(&pf_cent_pl);
187 1.22 ahoka pool_destroy(&pf_cache_pl);
188 1.22 ahoka pool_destroy(&pf_frag_pl);
189 1.22 ahoka pool_destroy(&pf_frent_pl);
190 1.22 ahoka }
191 1.22 ahoka #endif /* _MODULE */
192 1.22 ahoka
193 1.1 itojun static __inline int
194 1.1 itojun pf_frag_compare(struct pf_fragment *a, struct pf_fragment *b)
195 1.1 itojun {
196 1.1 itojun int diff;
197 1.1 itojun
198 1.1 itojun if ((diff = a->fr_id - b->fr_id))
199 1.1 itojun return (diff);
200 1.1 itojun else if ((diff = a->fr_p - b->fr_p))
201 1.1 itojun return (diff);
202 1.1 itojun else if (a->fr_src.s_addr < b->fr_src.s_addr)
203 1.1 itojun return (-1);
204 1.1 itojun else if (a->fr_src.s_addr > b->fr_src.s_addr)
205 1.1 itojun return (1);
206 1.1 itojun else if (a->fr_dst.s_addr < b->fr_dst.s_addr)
207 1.1 itojun return (-1);
208 1.1 itojun else if (a->fr_dst.s_addr > b->fr_dst.s_addr)
209 1.1 itojun return (1);
210 1.1 itojun return (0);
211 1.1 itojun }
212 1.1 itojun
213 1.1 itojun void
214 1.1 itojun pf_purge_expired_fragments(void)
215 1.1 itojun {
216 1.1 itojun struct pf_fragment *frag;
217 1.6 yamt u_int32_t expire = time_second -
218 1.1 itojun pf_default_rule.timeout[PFTM_FRAG];
219 1.1 itojun
220 1.1 itojun while ((frag = TAILQ_LAST(&pf_fragqueue, pf_fragqueue)) != NULL) {
221 1.1 itojun KASSERT(BUFFER_FRAGMENTS(frag));
222 1.1 itojun if (frag->fr_timeout > expire)
223 1.1 itojun break;
224 1.1 itojun
225 1.1 itojun DPFPRINTF(("expiring %d(%p)\n", frag->fr_id, frag));
226 1.1 itojun pf_free_fragment(frag);
227 1.1 itojun }
228 1.1 itojun
229 1.1 itojun while ((frag = TAILQ_LAST(&pf_cachequeue, pf_cachequeue)) != NULL) {
230 1.1 itojun KASSERT(!BUFFER_FRAGMENTS(frag));
231 1.1 itojun if (frag->fr_timeout > expire)
232 1.1 itojun break;
233 1.1 itojun
234 1.1 itojun DPFPRINTF(("expiring %d(%p)\n", frag->fr_id, frag));
235 1.1 itojun pf_free_fragment(frag);
236 1.1 itojun KASSERT(TAILQ_EMPTY(&pf_cachequeue) ||
237 1.1 itojun TAILQ_LAST(&pf_cachequeue, pf_cachequeue) != frag);
238 1.1 itojun }
239 1.1 itojun }
240 1.1 itojun
241 1.1 itojun /*
242 1.1 itojun * Try to flush old fragments to make space for new ones
243 1.1 itojun */
244 1.1 itojun
245 1.1 itojun void
246 1.1 itojun pf_flush_fragments(void)
247 1.1 itojun {
248 1.1 itojun struct pf_fragment *frag;
249 1.1 itojun int goal;
250 1.1 itojun
251 1.1 itojun goal = pf_nfrents * 9 / 10;
252 1.1 itojun DPFPRINTF(("trying to free > %d frents\n",
253 1.1 itojun pf_nfrents - goal));
254 1.1 itojun while (goal < pf_nfrents) {
255 1.1 itojun frag = TAILQ_LAST(&pf_fragqueue, pf_fragqueue);
256 1.1 itojun if (frag == NULL)
257 1.1 itojun break;
258 1.1 itojun pf_free_fragment(frag);
259 1.1 itojun }
260 1.1 itojun
261 1.1 itojun
262 1.1 itojun goal = pf_ncache * 9 / 10;
263 1.1 itojun DPFPRINTF(("trying to free > %d cache entries\n",
264 1.1 itojun pf_ncache - goal));
265 1.1 itojun while (goal < pf_ncache) {
266 1.1 itojun frag = TAILQ_LAST(&pf_cachequeue, pf_cachequeue);
267 1.1 itojun if (frag == NULL)
268 1.1 itojun break;
269 1.1 itojun pf_free_fragment(frag);
270 1.1 itojun }
271 1.1 itojun }
272 1.1 itojun
273 1.1 itojun /* Frees the fragments and all associated entries */
274 1.1 itojun
275 1.1 itojun void
276 1.1 itojun pf_free_fragment(struct pf_fragment *frag)
277 1.1 itojun {
278 1.1 itojun struct pf_frent *frent;
279 1.1 itojun struct pf_frcache *frcache;
280 1.1 itojun
281 1.1 itojun /* Free all fragments */
282 1.1 itojun if (BUFFER_FRAGMENTS(frag)) {
283 1.1 itojun for (frent = LIST_FIRST(&frag->fr_queue); frent;
284 1.1 itojun frent = LIST_FIRST(&frag->fr_queue)) {
285 1.1 itojun LIST_REMOVE(frent, fr_next);
286 1.1 itojun
287 1.1 itojun m_freem(frent->fr_m);
288 1.1 itojun pool_put(&pf_frent_pl, frent);
289 1.1 itojun pf_nfrents--;
290 1.1 itojun }
291 1.1 itojun } else {
292 1.1 itojun for (frcache = LIST_FIRST(&frag->fr_cache); frcache;
293 1.1 itojun frcache = LIST_FIRST(&frag->fr_cache)) {
294 1.1 itojun LIST_REMOVE(frcache, fr_next);
295 1.1 itojun
296 1.1 itojun KASSERT(LIST_EMPTY(&frag->fr_cache) ||
297 1.1 itojun LIST_FIRST(&frag->fr_cache)->fr_off >
298 1.1 itojun frcache->fr_end);
299 1.1 itojun
300 1.1 itojun pool_put(&pf_cent_pl, frcache);
301 1.1 itojun pf_ncache--;
302 1.1 itojun }
303 1.1 itojun }
304 1.1 itojun
305 1.1 itojun pf_remove_fragment(frag);
306 1.1 itojun }
307 1.1 itojun
308 1.1 itojun void
309 1.1 itojun pf_ip2key(struct pf_fragment *key, struct ip *ip)
310 1.1 itojun {
311 1.1 itojun key->fr_p = ip->ip_p;
312 1.1 itojun key->fr_id = ip->ip_id;
313 1.1 itojun key->fr_src.s_addr = ip->ip_src.s_addr;
314 1.1 itojun key->fr_dst.s_addr = ip->ip_dst.s_addr;
315 1.1 itojun }
316 1.1 itojun
317 1.1 itojun struct pf_fragment *
318 1.1 itojun pf_find_fragment(struct ip *ip, struct pf_frag_tree *tree)
319 1.1 itojun {
320 1.1 itojun struct pf_fragment key;
321 1.1 itojun struct pf_fragment *frag;
322 1.1 itojun
323 1.1 itojun pf_ip2key(&key, ip);
324 1.1 itojun
325 1.1 itojun frag = RB_FIND(pf_frag_tree, tree, &key);
326 1.1 itojun if (frag != NULL) {
327 1.1 itojun /* XXX Are we sure we want to update the timeout? */
328 1.6 yamt frag->fr_timeout = time_second;
329 1.1 itojun if (BUFFER_FRAGMENTS(frag)) {
330 1.1 itojun TAILQ_REMOVE(&pf_fragqueue, frag, frag_next);
331 1.1 itojun TAILQ_INSERT_HEAD(&pf_fragqueue, frag, frag_next);
332 1.1 itojun } else {
333 1.1 itojun TAILQ_REMOVE(&pf_cachequeue, frag, frag_next);
334 1.1 itojun TAILQ_INSERT_HEAD(&pf_cachequeue, frag, frag_next);
335 1.1 itojun }
336 1.1 itojun }
337 1.1 itojun
338 1.1 itojun return (frag);
339 1.1 itojun }
340 1.1 itojun
341 1.1 itojun /* Removes a fragment from the fragment queue and frees the fragment */
342 1.1 itojun
343 1.1 itojun void
344 1.1 itojun pf_remove_fragment(struct pf_fragment *frag)
345 1.1 itojun {
346 1.1 itojun if (BUFFER_FRAGMENTS(frag)) {
347 1.1 itojun RB_REMOVE(pf_frag_tree, &pf_frag_tree, frag);
348 1.1 itojun TAILQ_REMOVE(&pf_fragqueue, frag, frag_next);
349 1.1 itojun pool_put(&pf_frag_pl, frag);
350 1.1 itojun } else {
351 1.1 itojun RB_REMOVE(pf_frag_tree, &pf_cache_tree, frag);
352 1.1 itojun TAILQ_REMOVE(&pf_cachequeue, frag, frag_next);
353 1.1 itojun pool_put(&pf_cache_pl, frag);
354 1.1 itojun }
355 1.1 itojun }
356 1.1 itojun
357 1.1 itojun #define FR_IP_OFF(fr) ((ntohs((fr)->fr_ip->ip_off) & IP_OFFMASK) << 3)
358 1.1 itojun struct mbuf *
359 1.1 itojun pf_reassemble(struct mbuf **m0, struct pf_fragment **frag,
360 1.1 itojun struct pf_frent *frent, int mff)
361 1.1 itojun {
362 1.1 itojun struct mbuf *m = *m0, *m2;
363 1.1 itojun struct pf_frent *frea, *next;
364 1.1 itojun struct pf_frent *frep = NULL;
365 1.1 itojun struct ip *ip = frent->fr_ip;
366 1.1 itojun int hlen = ip->ip_hl << 2;
367 1.1 itojun u_int16_t off = (ntohs(ip->ip_off) & IP_OFFMASK) << 3;
368 1.1 itojun u_int16_t ip_len = ntohs(ip->ip_len) - ip->ip_hl * 4;
369 1.25 jmcneill u_int16_t frmax = ip_len + off;
370 1.1 itojun
371 1.1 itojun KASSERT(*frag == NULL || BUFFER_FRAGMENTS(*frag));
372 1.1 itojun
373 1.1 itojun /* Strip off ip header */
374 1.1 itojun m->m_data += hlen;
375 1.1 itojun m->m_len -= hlen;
376 1.1 itojun
377 1.1 itojun /* Create a new reassembly queue for this packet */
378 1.1 itojun if (*frag == NULL) {
379 1.1 itojun *frag = pool_get(&pf_frag_pl, PR_NOWAIT);
380 1.1 itojun if (*frag == NULL) {
381 1.1 itojun pf_flush_fragments();
382 1.1 itojun *frag = pool_get(&pf_frag_pl, PR_NOWAIT);
383 1.1 itojun if (*frag == NULL)
384 1.1 itojun goto drop_fragment;
385 1.1 itojun }
386 1.1 itojun
387 1.1 itojun (*frag)->fr_flags = 0;
388 1.1 itojun (*frag)->fr_max = 0;
389 1.1 itojun (*frag)->fr_src = frent->fr_ip->ip_src;
390 1.1 itojun (*frag)->fr_dst = frent->fr_ip->ip_dst;
391 1.1 itojun (*frag)->fr_p = frent->fr_ip->ip_p;
392 1.1 itojun (*frag)->fr_id = frent->fr_ip->ip_id;
393 1.6 yamt (*frag)->fr_timeout = time_second;
394 1.1 itojun LIST_INIT(&(*frag)->fr_queue);
395 1.1 itojun
396 1.1 itojun RB_INSERT(pf_frag_tree, &pf_frag_tree, *frag);
397 1.1 itojun TAILQ_INSERT_HEAD(&pf_fragqueue, *frag, frag_next);
398 1.1 itojun
399 1.1 itojun /* We do not have a previous fragment */
400 1.1 itojun frep = NULL;
401 1.1 itojun goto insert;
402 1.1 itojun }
403 1.1 itojun
404 1.1 itojun /*
405 1.1 itojun * Find a fragment after the current one:
406 1.1 itojun * - off contains the real shifted offset.
407 1.1 itojun */
408 1.1 itojun LIST_FOREACH(frea, &(*frag)->fr_queue, fr_next) {
409 1.1 itojun if (FR_IP_OFF(frea) > off)
410 1.1 itojun break;
411 1.1 itojun frep = frea;
412 1.1 itojun }
413 1.1 itojun
414 1.1 itojun KASSERT(frep != NULL || frea != NULL);
415 1.1 itojun
416 1.1 itojun if (frep != NULL &&
417 1.1 itojun FR_IP_OFF(frep) + ntohs(frep->fr_ip->ip_len) - frep->fr_ip->ip_hl *
418 1.1 itojun 4 > off)
419 1.1 itojun {
420 1.1 itojun u_int16_t precut;
421 1.1 itojun
422 1.1 itojun precut = FR_IP_OFF(frep) + ntohs(frep->fr_ip->ip_len) -
423 1.1 itojun frep->fr_ip->ip_hl * 4 - off;
424 1.1 itojun if (precut >= ip_len)
425 1.1 itojun goto drop_fragment;
426 1.1 itojun m_adj(frent->fr_m, precut);
427 1.1 itojun DPFPRINTF(("overlap -%d\n", precut));
428 1.1 itojun /* Enforce 8 byte boundaries */
429 1.1 itojun ip->ip_off = htons(ntohs(ip->ip_off) + (precut >> 3));
430 1.1 itojun off = (ntohs(ip->ip_off) & IP_OFFMASK) << 3;
431 1.1 itojun ip_len -= precut;
432 1.1 itojun ip->ip_len = htons(ip_len);
433 1.1 itojun }
434 1.1 itojun
435 1.1 itojun for (; frea != NULL && ip_len + off > FR_IP_OFF(frea);
436 1.1 itojun frea = next)
437 1.1 itojun {
438 1.1 itojun u_int16_t aftercut;
439 1.1 itojun
440 1.1 itojun aftercut = ip_len + off - FR_IP_OFF(frea);
441 1.1 itojun DPFPRINTF(("adjust overlap %d\n", aftercut));
442 1.1 itojun if (aftercut < ntohs(frea->fr_ip->ip_len) - frea->fr_ip->ip_hl
443 1.1 itojun * 4)
444 1.1 itojun {
445 1.1 itojun frea->fr_ip->ip_len =
446 1.1 itojun htons(ntohs(frea->fr_ip->ip_len) - aftercut);
447 1.1 itojun frea->fr_ip->ip_off = htons(ntohs(frea->fr_ip->ip_off) +
448 1.1 itojun (aftercut >> 3));
449 1.1 itojun m_adj(frea->fr_m, aftercut);
450 1.1 itojun break;
451 1.1 itojun }
452 1.1 itojun
453 1.19 yamt /* This fragment is completely overlapped, lose it */
454 1.1 itojun next = LIST_NEXT(frea, fr_next);
455 1.1 itojun m_freem(frea->fr_m);
456 1.1 itojun LIST_REMOVE(frea, fr_next);
457 1.1 itojun pool_put(&pf_frent_pl, frea);
458 1.1 itojun pf_nfrents--;
459 1.1 itojun }
460 1.1 itojun
461 1.1 itojun insert:
462 1.1 itojun /* Update maximum data size */
463 1.25 jmcneill if ((*frag)->fr_max < frmax)
464 1.25 jmcneill (*frag)->fr_max = frmax;
465 1.1 itojun /* This is the last segment */
466 1.1 itojun if (!mff)
467 1.1 itojun (*frag)->fr_flags |= PFFRAG_SEENLAST;
468 1.1 itojun
469 1.1 itojun if (frep == NULL)
470 1.1 itojun LIST_INSERT_HEAD(&(*frag)->fr_queue, frent, fr_next);
471 1.1 itojun else
472 1.1 itojun LIST_INSERT_AFTER(frep, frent, fr_next);
473 1.1 itojun
474 1.1 itojun /* Check if we are completely reassembled */
475 1.1 itojun if (!((*frag)->fr_flags & PFFRAG_SEENLAST))
476 1.1 itojun return (NULL);
477 1.1 itojun
478 1.1 itojun /* Check if we have all the data */
479 1.1 itojun off = 0;
480 1.1 itojun for (frep = LIST_FIRST(&(*frag)->fr_queue); frep; frep = next) {
481 1.1 itojun next = LIST_NEXT(frep, fr_next);
482 1.1 itojun
483 1.1 itojun off += ntohs(frep->fr_ip->ip_len) - frep->fr_ip->ip_hl * 4;
484 1.1 itojun if (off < (*frag)->fr_max &&
485 1.1 itojun (next == NULL || FR_IP_OFF(next) != off))
486 1.1 itojun {
487 1.1 itojun DPFPRINTF(("missing fragment at %d, next %d, max %d\n",
488 1.1 itojun off, next == NULL ? -1 : FR_IP_OFF(next),
489 1.1 itojun (*frag)->fr_max));
490 1.1 itojun return (NULL);
491 1.1 itojun }
492 1.1 itojun }
493 1.1 itojun DPFPRINTF(("%d < %d?\n", off, (*frag)->fr_max));
494 1.1 itojun if (off < (*frag)->fr_max)
495 1.1 itojun return (NULL);
496 1.1 itojun
497 1.1 itojun /* We have all the data */
498 1.1 itojun frent = LIST_FIRST(&(*frag)->fr_queue);
499 1.1 itojun KASSERT(frent != NULL);
500 1.1 itojun if ((frent->fr_ip->ip_hl << 2) + off > IP_MAXPACKET) {
501 1.1 itojun DPFPRINTF(("drop: too big: %d\n", off));
502 1.1 itojun pf_free_fragment(*frag);
503 1.1 itojun *frag = NULL;
504 1.1 itojun return (NULL);
505 1.1 itojun }
506 1.1 itojun next = LIST_NEXT(frent, fr_next);
507 1.1 itojun
508 1.1 itojun /* Magic from ip_input */
509 1.1 itojun ip = frent->fr_ip;
510 1.1 itojun m = frent->fr_m;
511 1.1 itojun m2 = m->m_next;
512 1.1 itojun m->m_next = NULL;
513 1.1 itojun m_cat(m, m2);
514 1.1 itojun pool_put(&pf_frent_pl, frent);
515 1.1 itojun pf_nfrents--;
516 1.1 itojun for (frent = next; frent != NULL; frent = next) {
517 1.1 itojun next = LIST_NEXT(frent, fr_next);
518 1.1 itojun
519 1.1 itojun m2 = frent->fr_m;
520 1.1 itojun pool_put(&pf_frent_pl, frent);
521 1.1 itojun pf_nfrents--;
522 1.1 itojun m_cat(m, m2);
523 1.1 itojun }
524 1.1 itojun
525 1.1 itojun ip->ip_src = (*frag)->fr_src;
526 1.1 itojun ip->ip_dst = (*frag)->fr_dst;
527 1.1 itojun
528 1.1 itojun /* Remove from fragment queue */
529 1.1 itojun pf_remove_fragment(*frag);
530 1.1 itojun *frag = NULL;
531 1.1 itojun
532 1.1 itojun hlen = ip->ip_hl << 2;
533 1.1 itojun ip->ip_len = htons(off + hlen);
534 1.1 itojun m->m_len += hlen;
535 1.1 itojun m->m_data -= hlen;
536 1.1 itojun
537 1.1 itojun /* some debugging cruft by sklower, below, will go away soon */
538 1.1 itojun /* XXX this should be done elsewhere */
539 1.1 itojun if (m->m_flags & M_PKTHDR) {
540 1.1 itojun int plen = 0;
541 1.1 itojun for (m2 = m; m2; m2 = m2->m_next)
542 1.1 itojun plen += m2->m_len;
543 1.1 itojun m->m_pkthdr.len = plen;
544 1.19 yamt #ifdef __NetBSD__
545 1.8 yamt m->m_pkthdr.csum_flags = 0;
546 1.19 yamt #endif /* __NetBSD__ */
547 1.1 itojun }
548 1.1 itojun
549 1.1 itojun DPFPRINTF(("complete: %p(%d)\n", m, ntohs(ip->ip_len)));
550 1.1 itojun return (m);
551 1.1 itojun
552 1.1 itojun drop_fragment:
553 1.1 itojun /* Oops - fail safe - drop packet */
554 1.1 itojun pool_put(&pf_frent_pl, frent);
555 1.1 itojun pf_nfrents--;
556 1.1 itojun m_freem(m);
557 1.1 itojun return (NULL);
558 1.1 itojun }
559 1.1 itojun
560 1.1 itojun struct mbuf *
561 1.1 itojun pf_fragcache(struct mbuf **m0, struct ip *h, struct pf_fragment **frag, int mff,
562 1.1 itojun int drop, int *nomem)
563 1.1 itojun {
564 1.1 itojun struct mbuf *m = *m0;
565 1.1 itojun struct pf_frcache *frp, *fra, *cur = NULL;
566 1.1 itojun int ip_len = ntohs(h->ip_len) - (h->ip_hl << 2);
567 1.1 itojun u_int16_t off = ntohs(h->ip_off) << 3;
568 1.25 jmcneill u_int16_t frmax = ip_len + off;
569 1.1 itojun int hosed = 0;
570 1.1 itojun
571 1.1 itojun KASSERT(*frag == NULL || !BUFFER_FRAGMENTS(*frag));
572 1.1 itojun
573 1.1 itojun /* Create a new range queue for this packet */
574 1.1 itojun if (*frag == NULL) {
575 1.1 itojun *frag = pool_get(&pf_cache_pl, PR_NOWAIT);
576 1.1 itojun if (*frag == NULL) {
577 1.1 itojun pf_flush_fragments();
578 1.1 itojun *frag = pool_get(&pf_cache_pl, PR_NOWAIT);
579 1.1 itojun if (*frag == NULL)
580 1.1 itojun goto no_mem;
581 1.1 itojun }
582 1.1 itojun
583 1.1 itojun /* Get an entry for the queue */
584 1.1 itojun cur = pool_get(&pf_cent_pl, PR_NOWAIT);
585 1.1 itojun if (cur == NULL) {
586 1.1 itojun pool_put(&pf_cache_pl, *frag);
587 1.1 itojun *frag = NULL;
588 1.1 itojun goto no_mem;
589 1.1 itojun }
590 1.1 itojun pf_ncache++;
591 1.1 itojun
592 1.1 itojun (*frag)->fr_flags = PFFRAG_NOBUFFER;
593 1.1 itojun (*frag)->fr_max = 0;
594 1.1 itojun (*frag)->fr_src = h->ip_src;
595 1.1 itojun (*frag)->fr_dst = h->ip_dst;
596 1.1 itojun (*frag)->fr_p = h->ip_p;
597 1.1 itojun (*frag)->fr_id = h->ip_id;
598 1.6 yamt (*frag)->fr_timeout = time_second;
599 1.1 itojun
600 1.1 itojun cur->fr_off = off;
601 1.25 jmcneill cur->fr_end = frmax;
602 1.1 itojun LIST_INIT(&(*frag)->fr_cache);
603 1.1 itojun LIST_INSERT_HEAD(&(*frag)->fr_cache, cur, fr_next);
604 1.1 itojun
605 1.1 itojun RB_INSERT(pf_frag_tree, &pf_cache_tree, *frag);
606 1.1 itojun TAILQ_INSERT_HEAD(&pf_cachequeue, *frag, frag_next);
607 1.1 itojun
608 1.25 jmcneill DPFPRINTF(("fragcache[%d]: new %d-%d\n", h->ip_id, off, frmax));
609 1.1 itojun
610 1.1 itojun goto pass;
611 1.1 itojun }
612 1.1 itojun
613 1.1 itojun /*
614 1.1 itojun * Find a fragment after the current one:
615 1.1 itojun * - off contains the real shifted offset.
616 1.1 itojun */
617 1.1 itojun frp = NULL;
618 1.1 itojun LIST_FOREACH(fra, &(*frag)->fr_cache, fr_next) {
619 1.1 itojun if (fra->fr_off > off)
620 1.1 itojun break;
621 1.1 itojun frp = fra;
622 1.1 itojun }
623 1.1 itojun
624 1.1 itojun KASSERT(frp != NULL || fra != NULL);
625 1.1 itojun
626 1.1 itojun if (frp != NULL) {
627 1.1 itojun int precut;
628 1.1 itojun
629 1.1 itojun precut = frp->fr_end - off;
630 1.1 itojun if (precut >= ip_len) {
631 1.1 itojun /* Fragment is entirely a duplicate */
632 1.1 itojun DPFPRINTF(("fragcache[%d]: dead (%d-%d) %d-%d\n",
633 1.25 jmcneill h->ip_id, frp->fr_off, frp->fr_end, off, frmax));
634 1.1 itojun goto drop_fragment;
635 1.1 itojun }
636 1.1 itojun if (precut == 0) {
637 1.1 itojun /* They are adjacent. Fixup cache entry */
638 1.1 itojun DPFPRINTF(("fragcache[%d]: adjacent (%d-%d) %d-%d\n",
639 1.25 jmcneill h->ip_id, frp->fr_off, frp->fr_end, off, frmax));
640 1.25 jmcneill frp->fr_end = frmax;
641 1.1 itojun } else if (precut > 0) {
642 1.1 itojun /* The first part of this payload overlaps with a
643 1.1 itojun * fragment that has already been passed.
644 1.1 itojun * Need to trim off the first part of the payload.
645 1.1 itojun * But to do so easily, we need to create another
646 1.1 itojun * mbuf to throw the original header into.
647 1.1 itojun */
648 1.1 itojun
649 1.1 itojun DPFPRINTF(("fragcache[%d]: chop %d (%d-%d) %d-%d\n",
650 1.1 itojun h->ip_id, precut, frp->fr_off, frp->fr_end, off,
651 1.25 jmcneill frmax));
652 1.1 itojun
653 1.1 itojun off += precut;
654 1.25 jmcneill frmax -= precut;
655 1.1 itojun /* Update the previous frag to encompass this one */
656 1.25 jmcneill frp->fr_end = frmax;
657 1.1 itojun
658 1.1 itojun if (!drop) {
659 1.1 itojun /* XXX Optimization opportunity
660 1.1 itojun * This is a very heavy way to trim the payload.
661 1.1 itojun * we could do it much faster by diddling mbuf
662 1.1 itojun * internals but that would be even less legible
663 1.1 itojun * than this mbuf magic. For my next trick,
664 1.1 itojun * I'll pull a rabbit out of my laptop.
665 1.1 itojun */
666 1.19 yamt *m0 = m_dup(m, 0, h->ip_hl << 2, M_NOWAIT);
667 1.1 itojun if (*m0 == NULL)
668 1.1 itojun goto no_mem;
669 1.1 itojun KASSERT((*m0)->m_next == NULL);
670 1.1 itojun m_adj(m, precut + (h->ip_hl << 2));
671 1.1 itojun m_cat(*m0, m);
672 1.1 itojun m = *m0;
673 1.1 itojun if (m->m_flags & M_PKTHDR) {
674 1.1 itojun int plen = 0;
675 1.1 itojun struct mbuf *t;
676 1.1 itojun for (t = m; t; t = t->m_next)
677 1.1 itojun plen += t->m_len;
678 1.1 itojun m->m_pkthdr.len = plen;
679 1.1 itojun }
680 1.1 itojun
681 1.1 itojun
682 1.1 itojun h = mtod(m, struct ip *);
683 1.1 itojun
684 1.1 itojun
685 1.1 itojun KASSERT((int)m->m_len ==
686 1.1 itojun ntohs(h->ip_len) - precut);
687 1.1 itojun h->ip_off = htons(ntohs(h->ip_off) +
688 1.1 itojun (precut >> 3));
689 1.1 itojun h->ip_len = htons(ntohs(h->ip_len) - precut);
690 1.1 itojun } else {
691 1.1 itojun hosed++;
692 1.1 itojun }
693 1.1 itojun } else {
694 1.1 itojun /* There is a gap between fragments */
695 1.1 itojun
696 1.1 itojun DPFPRINTF(("fragcache[%d]: gap %d (%d-%d) %d-%d\n",
697 1.1 itojun h->ip_id, -precut, frp->fr_off, frp->fr_end, off,
698 1.25 jmcneill frmax));
699 1.1 itojun
700 1.1 itojun cur = pool_get(&pf_cent_pl, PR_NOWAIT);
701 1.1 itojun if (cur == NULL)
702 1.1 itojun goto no_mem;
703 1.1 itojun pf_ncache++;
704 1.1 itojun
705 1.1 itojun cur->fr_off = off;
706 1.25 jmcneill cur->fr_end = frmax;
707 1.1 itojun LIST_INSERT_AFTER(frp, cur, fr_next);
708 1.1 itojun }
709 1.1 itojun }
710 1.1 itojun
711 1.1 itojun if (fra != NULL) {
712 1.1 itojun int aftercut;
713 1.1 itojun int merge = 0;
714 1.1 itojun
715 1.25 jmcneill aftercut = frmax - fra->fr_off;
716 1.1 itojun if (aftercut == 0) {
717 1.1 itojun /* Adjacent fragments */
718 1.1 itojun DPFPRINTF(("fragcache[%d]: adjacent %d-%d (%d-%d)\n",
719 1.25 jmcneill h->ip_id, off, frmax, fra->fr_off, fra->fr_end));
720 1.1 itojun fra->fr_off = off;
721 1.1 itojun merge = 1;
722 1.1 itojun } else if (aftercut > 0) {
723 1.1 itojun /* Need to chop off the tail of this fragment */
724 1.1 itojun DPFPRINTF(("fragcache[%d]: chop %d %d-%d (%d-%d)\n",
725 1.25 jmcneill h->ip_id, aftercut, off, frmax, fra->fr_off,
726 1.1 itojun fra->fr_end));
727 1.1 itojun fra->fr_off = off;
728 1.25 jmcneill frmax -= aftercut;
729 1.1 itojun
730 1.1 itojun merge = 1;
731 1.1 itojun
732 1.1 itojun if (!drop) {
733 1.1 itojun m_adj(m, -aftercut);
734 1.1 itojun if (m->m_flags & M_PKTHDR) {
735 1.1 itojun int plen = 0;
736 1.1 itojun struct mbuf *t;
737 1.1 itojun for (t = m; t; t = t->m_next)
738 1.1 itojun plen += t->m_len;
739 1.1 itojun m->m_pkthdr.len = plen;
740 1.1 itojun }
741 1.1 itojun h = mtod(m, struct ip *);
742 1.1 itojun KASSERT((int)m->m_len ==
743 1.1 itojun ntohs(h->ip_len) - aftercut);
744 1.1 itojun h->ip_len = htons(ntohs(h->ip_len) - aftercut);
745 1.1 itojun } else {
746 1.1 itojun hosed++;
747 1.1 itojun }
748 1.11 peter } else if (frp == NULL) {
749 1.1 itojun /* There is a gap between fragments */
750 1.1 itojun DPFPRINTF(("fragcache[%d]: gap %d %d-%d (%d-%d)\n",
751 1.25 jmcneill h->ip_id, -aftercut, off, frmax, fra->fr_off,
752 1.1 itojun fra->fr_end));
753 1.1 itojun
754 1.1 itojun cur = pool_get(&pf_cent_pl, PR_NOWAIT);
755 1.1 itojun if (cur == NULL)
756 1.1 itojun goto no_mem;
757 1.1 itojun pf_ncache++;
758 1.1 itojun
759 1.1 itojun cur->fr_off = off;
760 1.25 jmcneill cur->fr_end = frmax;
761 1.1 itojun LIST_INSERT_BEFORE(fra, cur, fr_next);
762 1.1 itojun }
763 1.1 itojun
764 1.1 itojun
765 1.1 itojun /* Need to glue together two separate fragment descriptors */
766 1.1 itojun if (merge) {
767 1.1 itojun if (cur && fra->fr_off <= cur->fr_end) {
768 1.1 itojun /* Need to merge in a previous 'cur' */
769 1.1 itojun DPFPRINTF(("fragcache[%d]: adjacent(merge "
770 1.1 itojun "%d-%d) %d-%d (%d-%d)\n",
771 1.1 itojun h->ip_id, cur->fr_off, cur->fr_end, off,
772 1.25 jmcneill frmax, fra->fr_off, fra->fr_end));
773 1.1 itojun fra->fr_off = cur->fr_off;
774 1.1 itojun LIST_REMOVE(cur, fr_next);
775 1.1 itojun pool_put(&pf_cent_pl, cur);
776 1.1 itojun pf_ncache--;
777 1.1 itojun cur = NULL;
778 1.1 itojun
779 1.1 itojun } else if (frp && fra->fr_off <= frp->fr_end) {
780 1.1 itojun /* Need to merge in a modified 'frp' */
781 1.1 itojun KASSERT(cur == NULL);
782 1.1 itojun DPFPRINTF(("fragcache[%d]: adjacent(merge "
783 1.1 itojun "%d-%d) %d-%d (%d-%d)\n",
784 1.1 itojun h->ip_id, frp->fr_off, frp->fr_end, off,
785 1.25 jmcneill frmax, fra->fr_off, fra->fr_end));
786 1.1 itojun fra->fr_off = frp->fr_off;
787 1.1 itojun LIST_REMOVE(frp, fr_next);
788 1.1 itojun pool_put(&pf_cent_pl, frp);
789 1.1 itojun pf_ncache--;
790 1.1 itojun frp = NULL;
791 1.1 itojun
792 1.1 itojun }
793 1.1 itojun }
794 1.1 itojun }
795 1.1 itojun
796 1.1 itojun if (hosed) {
797 1.1 itojun /*
798 1.1 itojun * We must keep tracking the overall fragment even when
799 1.1 itojun * we're going to drop it anyway so that we know when to
800 1.1 itojun * free the overall descriptor. Thus we drop the frag late.
801 1.1 itojun */
802 1.1 itojun goto drop_fragment;
803 1.1 itojun }
804 1.1 itojun
805 1.1 itojun
806 1.1 itojun pass:
807 1.1 itojun /* Update maximum data size */
808 1.25 jmcneill if ((*frag)->fr_max < frmax)
809 1.25 jmcneill (*frag)->fr_max = frmax;
810 1.1 itojun
811 1.1 itojun /* This is the last segment */
812 1.1 itojun if (!mff)
813 1.1 itojun (*frag)->fr_flags |= PFFRAG_SEENLAST;
814 1.1 itojun
815 1.1 itojun /* Check if we are completely reassembled */
816 1.1 itojun if (((*frag)->fr_flags & PFFRAG_SEENLAST) &&
817 1.1 itojun LIST_FIRST(&(*frag)->fr_cache)->fr_off == 0 &&
818 1.1 itojun LIST_FIRST(&(*frag)->fr_cache)->fr_end == (*frag)->fr_max) {
819 1.1 itojun /* Remove from fragment queue */
820 1.1 itojun DPFPRINTF(("fragcache[%d]: done 0-%d\n", h->ip_id,
821 1.1 itojun (*frag)->fr_max));
822 1.1 itojun pf_free_fragment(*frag);
823 1.1 itojun *frag = NULL;
824 1.1 itojun }
825 1.1 itojun
826 1.1 itojun return (m);
827 1.1 itojun
828 1.1 itojun no_mem:
829 1.1 itojun *nomem = 1;
830 1.1 itojun
831 1.1 itojun /* Still need to pay attention to !IP_MF */
832 1.1 itojun if (!mff && *frag != NULL)
833 1.1 itojun (*frag)->fr_flags |= PFFRAG_SEENLAST;
834 1.1 itojun
835 1.1 itojun m_freem(m);
836 1.1 itojun return (NULL);
837 1.1 itojun
838 1.1 itojun drop_fragment:
839 1.1 itojun
840 1.1 itojun /* Still need to pay attention to !IP_MF */
841 1.1 itojun if (!mff && *frag != NULL)
842 1.1 itojun (*frag)->fr_flags |= PFFRAG_SEENLAST;
843 1.1 itojun
844 1.1 itojun if (drop) {
845 1.1 itojun /* This fragment has been deemed bad. Don't reass */
846 1.1 itojun if (((*frag)->fr_flags & PFFRAG_DROP) == 0)
847 1.1 itojun DPFPRINTF(("fragcache[%d]: dropping overall fragment\n",
848 1.1 itojun h->ip_id));
849 1.1 itojun (*frag)->fr_flags |= PFFRAG_DROP;
850 1.1 itojun }
851 1.1 itojun
852 1.1 itojun m_freem(m);
853 1.1 itojun return (NULL);
854 1.1 itojun }
855 1.1 itojun
856 1.1 itojun int
857 1.6 yamt pf_normalize_ip(struct mbuf **m0, int dir, struct pfi_kif *kif, u_short *reason,
858 1.6 yamt struct pf_pdesc *pd)
859 1.1 itojun {
860 1.1 itojun struct mbuf *m = *m0;
861 1.1 itojun struct pf_rule *r;
862 1.1 itojun struct pf_frent *frent;
863 1.1 itojun struct pf_fragment *frag = NULL;
864 1.1 itojun struct ip *h = mtod(m, struct ip *);
865 1.1 itojun int mff = (ntohs(h->ip_off) & IP_MF);
866 1.1 itojun int hlen = h->ip_hl << 2;
867 1.1 itojun u_int16_t fragoff = (ntohs(h->ip_off) & IP_OFFMASK) << 3;
868 1.25 jmcneill u_int16_t frmax;
869 1.1 itojun int ip_len;
870 1.1 itojun
871 1.1 itojun r = TAILQ_FIRST(pf_main_ruleset.rules[PF_RULESET_SCRUB].active.ptr);
872 1.1 itojun while (r != NULL) {
873 1.1 itojun r->evaluations++;
874 1.19 yamt if (pfi_kif_match(r->kif, kif) == r->ifnot)
875 1.1 itojun r = r->skip[PF_SKIP_IFP].ptr;
876 1.1 itojun else if (r->direction && r->direction != dir)
877 1.1 itojun r = r->skip[PF_SKIP_DIR].ptr;
878 1.1 itojun else if (r->af && r->af != AF_INET)
879 1.1 itojun r = r->skip[PF_SKIP_AF].ptr;
880 1.1 itojun else if (r->proto && r->proto != h->ip_p)
881 1.1 itojun r = r->skip[PF_SKIP_PROTO].ptr;
882 1.1 itojun else if (PF_MISMATCHAW(&r->src.addr,
883 1.19 yamt (struct pf_addr *)&h->ip_src.s_addr, AF_INET,
884 1.19 yamt r->src.neg, kif))
885 1.1 itojun r = r->skip[PF_SKIP_SRC_ADDR].ptr;
886 1.1 itojun else if (PF_MISMATCHAW(&r->dst.addr,
887 1.19 yamt (struct pf_addr *)&h->ip_dst.s_addr, AF_INET,
888 1.19 yamt r->dst.neg, NULL))
889 1.1 itojun r = r->skip[PF_SKIP_DST_ADDR].ptr;
890 1.1 itojun else
891 1.1 itojun break;
892 1.1 itojun }
893 1.1 itojun
894 1.19 yamt if (r == NULL || r->action == PF_NOSCRUB)
895 1.1 itojun return (PF_PASS);
896 1.19 yamt else {
897 1.19 yamt r->packets[dir == PF_OUT]++;
898 1.19 yamt r->bytes[dir == PF_OUT] += pd->tot_len;
899 1.19 yamt }
900 1.1 itojun
901 1.1 itojun /* Check for illegal packets */
902 1.1 itojun if (hlen < (int)sizeof(struct ip))
903 1.1 itojun goto drop;
904 1.1 itojun
905 1.1 itojun if (hlen > ntohs(h->ip_len))
906 1.1 itojun goto drop;
907 1.1 itojun
908 1.1 itojun /* Clear IP_DF if the rule uses the no-df option */
909 1.19 yamt if (r->rule_flag & PFRULE_NODF && h->ip_off & htons(IP_DF)) {
910 1.25 jmcneill u_int16_t off = h->ip_off;
911 1.19 yamt
912 1.1 itojun h->ip_off &= htons(~IP_DF);
913 1.25 jmcneill h->ip_sum = pf_cksum_fixup(h->ip_sum, off, h->ip_off, 0);
914 1.19 yamt }
915 1.1 itojun
916 1.1 itojun /* We will need other tests here */
917 1.1 itojun if (!fragoff && !mff)
918 1.1 itojun goto no_fragment;
919 1.1 itojun
920 1.1 itojun /* We're dealing with a fragment now. Don't allow fragments
921 1.1 itojun * with IP_DF to enter the cache. If the flag was cleared by
922 1.1 itojun * no-df above, fine. Otherwise drop it.
923 1.1 itojun */
924 1.1 itojun if (h->ip_off & htons(IP_DF)) {
925 1.1 itojun DPFPRINTF(("IP_DF\n"));
926 1.1 itojun goto bad;
927 1.1 itojun }
928 1.1 itojun
929 1.1 itojun ip_len = ntohs(h->ip_len) - hlen;
930 1.1 itojun
931 1.1 itojun /* All fragments are 8 byte aligned */
932 1.1 itojun if (mff && (ip_len & 0x7)) {
933 1.1 itojun DPFPRINTF(("mff and %d\n", ip_len));
934 1.1 itojun goto bad;
935 1.1 itojun }
936 1.1 itojun
937 1.1 itojun /* Respect maximum length */
938 1.1 itojun if (fragoff + ip_len > IP_MAXPACKET) {
939 1.1 itojun DPFPRINTF(("max packet %d\n", fragoff + ip_len));
940 1.1 itojun goto bad;
941 1.1 itojun }
942 1.25 jmcneill frmax = fragoff + ip_len;
943 1.1 itojun
944 1.1 itojun if ((r->rule_flag & (PFRULE_FRAGCROP|PFRULE_FRAGDROP)) == 0) {
945 1.1 itojun /* Fully buffer all of the fragments */
946 1.1 itojun
947 1.1 itojun frag = pf_find_fragment(h, &pf_frag_tree);
948 1.1 itojun
949 1.1 itojun /* Check if we saw the last fragment already */
950 1.1 itojun if (frag != NULL && (frag->fr_flags & PFFRAG_SEENLAST) &&
951 1.25 jmcneill frmax > frag->fr_max)
952 1.1 itojun goto bad;
953 1.1 itojun
954 1.1 itojun /* Get an entry for the fragment queue */
955 1.1 itojun frent = pool_get(&pf_frent_pl, PR_NOWAIT);
956 1.1 itojun if (frent == NULL) {
957 1.1 itojun REASON_SET(reason, PFRES_MEMORY);
958 1.1 itojun return (PF_DROP);
959 1.1 itojun }
960 1.1 itojun pf_nfrents++;
961 1.1 itojun frent->fr_ip = h;
962 1.1 itojun frent->fr_m = m;
963 1.1 itojun
964 1.1 itojun /* Might return a completely reassembled mbuf, or NULL */
965 1.25 jmcneill DPFPRINTF(("reass frag %d @ %d-%d\n", h->ip_id, fragoff, frmax));
966 1.1 itojun *m0 = m = pf_reassemble(m0, &frag, frent, mff);
967 1.1 itojun
968 1.1 itojun if (m == NULL)
969 1.1 itojun return (PF_DROP);
970 1.1 itojun
971 1.1 itojun if (frag != NULL && (frag->fr_flags & PFFRAG_DROP))
972 1.1 itojun goto drop;
973 1.1 itojun
974 1.1 itojun h = mtod(m, struct ip *);
975 1.1 itojun } else {
976 1.1 itojun /* non-buffering fragment cache (drops or masks overlaps) */
977 1.1 itojun int nomem = 0;
978 1.1 itojun
979 1.19 yamt #ifdef __NetBSD__
980 1.19 yamt struct pf_mtag *pf_mtag = pf_find_mtag(m);
981 1.19 yamt KASSERT(pf_mtag != NULL);
982 1.19 yamt
983 1.19 yamt if (dir == PF_OUT && pf_mtag->flags & PF_TAG_FRAGCACHE) {
984 1.19 yamt #else
985 1.19 yamt if (dir == PF_OUT && m->m_pkthdr.pf.flags & PF_TAG_FRAGCACHE) {
986 1.19 yamt #endif /* !__NetBSD__ */
987 1.19 yamt /*
988 1.19 yamt * Already passed the fragment cache in the
989 1.19 yamt * input direction. If we continued, it would
990 1.19 yamt * appear to be a dup and would be dropped.
991 1.19 yamt */
992 1.19 yamt goto fragment_pass;
993 1.1 itojun }
994 1.1 itojun
995 1.1 itojun frag = pf_find_fragment(h, &pf_cache_tree);
996 1.1 itojun
997 1.1 itojun /* Check if we saw the last fragment already */
998 1.1 itojun if (frag != NULL && (frag->fr_flags & PFFRAG_SEENLAST) &&
999 1.25 jmcneill frmax > frag->fr_max) {
1000 1.1 itojun if (r->rule_flag & PFRULE_FRAGDROP)
1001 1.1 itojun frag->fr_flags |= PFFRAG_DROP;
1002 1.1 itojun goto bad;
1003 1.1 itojun }
1004 1.1 itojun
1005 1.1 itojun *m0 = m = pf_fragcache(m0, h, &frag, mff,
1006 1.1 itojun (r->rule_flag & PFRULE_FRAGDROP) ? 1 : 0, &nomem);
1007 1.1 itojun if (m == NULL) {
1008 1.1 itojun if (nomem)
1009 1.1 itojun goto no_mem;
1010 1.1 itojun goto drop;
1011 1.1 itojun }
1012 1.1 itojun
1013 1.19 yamt if (dir == PF_IN)
1014 1.19 yamt #ifdef __NetBSD__
1015 1.19 yamt pf_mtag = pf_find_mtag(m);
1016 1.19 yamt KASSERT(pf_mtag != NULL);
1017 1.19 yamt
1018 1.19 yamt pf_mtag->flags |= PF_TAG_FRAGCACHE;
1019 1.19 yamt #else
1020 1.19 yamt m->m_pkthdr.pf.flags |= PF_TAG_FRAGCACHE;
1021 1.19 yamt #endif /* !__NetBSD__ */
1022 1.1 itojun
1023 1.1 itojun if (frag != NULL && (frag->fr_flags & PFFRAG_DROP))
1024 1.1 itojun goto drop;
1025 1.1 itojun goto fragment_pass;
1026 1.1 itojun }
1027 1.1 itojun
1028 1.1 itojun no_fragment:
1029 1.1 itojun /* At this point, only IP_DF is allowed in ip_off */
1030 1.19 yamt if (h->ip_off & ~htons(IP_DF)) {
1031 1.25 jmcneill u_int16_t off = h->ip_off;
1032 1.19 yamt
1033 1.19 yamt h->ip_off &= htons(IP_DF);
1034 1.25 jmcneill h->ip_sum = pf_cksum_fixup(h->ip_sum, off, h->ip_off, 0);
1035 1.19 yamt }
1036 1.1 itojun
1037 1.1 itojun /* Enforce a minimum ttl, may cause endless packet loops */
1038 1.19 yamt if (r->min_ttl && h->ip_ttl < r->min_ttl) {
1039 1.19 yamt u_int16_t ip_ttl = h->ip_ttl;
1040 1.19 yamt
1041 1.1 itojun h->ip_ttl = r->min_ttl;
1042 1.19 yamt h->ip_sum = pf_cksum_fixup(h->ip_sum, ip_ttl, h->ip_ttl, 0);
1043 1.19 yamt }
1044 1.1 itojun
1045 1.6 yamt if (r->rule_flag & PFRULE_RANDOMID) {
1046 1.25 jmcneill u_int16_t id = h->ip_id;
1047 1.6 yamt
1048 1.23 rmind h->ip_id = ip_randomid(ip_ids, 0);
1049 1.25 jmcneill h->ip_sum = pf_cksum_fixup(h->ip_sum, id, h->ip_id, 0);
1050 1.6 yamt }
1051 1.6 yamt if ((r->rule_flag & (PFRULE_FRAGCROP|PFRULE_FRAGDROP)) == 0)
1052 1.6 yamt pd->flags |= PFDESC_IP_REAS;
1053 1.1 itojun
1054 1.1 itojun return (PF_PASS);
1055 1.1 itojun
1056 1.1 itojun fragment_pass:
1057 1.1 itojun /* Enforce a minimum ttl, may cause endless packet loops */
1058 1.19 yamt if (r->min_ttl && h->ip_ttl < r->min_ttl) {
1059 1.19 yamt u_int16_t ip_ttl = h->ip_ttl;
1060 1.19 yamt
1061 1.1 itojun h->ip_ttl = r->min_ttl;
1062 1.19 yamt h->ip_sum = pf_cksum_fixup(h->ip_sum, ip_ttl, h->ip_ttl, 0);
1063 1.19 yamt }
1064 1.6 yamt if ((r->rule_flag & (PFRULE_FRAGCROP|PFRULE_FRAGDROP)) == 0)
1065 1.6 yamt pd->flags |= PFDESC_IP_REAS;
1066 1.1 itojun return (PF_PASS);
1067 1.1 itojun
1068 1.1 itojun no_mem:
1069 1.1 itojun REASON_SET(reason, PFRES_MEMORY);
1070 1.1 itojun if (r != NULL && r->log)
1071 1.19 yamt PFLOG_PACKET(kif, h, m, AF_INET, dir, *reason, r, NULL, NULL, pd);
1072 1.1 itojun return (PF_DROP);
1073 1.1 itojun
1074 1.1 itojun drop:
1075 1.1 itojun REASON_SET(reason, PFRES_NORM);
1076 1.1 itojun if (r != NULL && r->log)
1077 1.19 yamt PFLOG_PACKET(kif, h, m, AF_INET, dir, *reason, r, NULL, NULL, pd);
1078 1.1 itojun return (PF_DROP);
1079 1.1 itojun
1080 1.1 itojun bad:
1081 1.1 itojun DPFPRINTF(("dropping bad fragment\n"));
1082 1.1 itojun
1083 1.1 itojun /* Free associated fragments */
1084 1.1 itojun if (frag != NULL)
1085 1.1 itojun pf_free_fragment(frag);
1086 1.1 itojun
1087 1.1 itojun REASON_SET(reason, PFRES_FRAG);
1088 1.1 itojun if (r != NULL && r->log)
1089 1.19 yamt PFLOG_PACKET(kif, h, m, AF_INET, dir, *reason, r, NULL, NULL, pd);
1090 1.1 itojun
1091 1.1 itojun return (PF_DROP);
1092 1.1 itojun }
1093 1.1 itojun
1094 1.1 itojun #ifdef INET6
1095 1.1 itojun int
1096 1.1 itojun pf_normalize_ip6(struct mbuf **m0, int dir, struct pfi_kif *kif,
1097 1.15 christos u_short *reason, struct pf_pdesc *pd)
1098 1.1 itojun {
1099 1.1 itojun struct mbuf *m = *m0;
1100 1.1 itojun struct pf_rule *r;
1101 1.1 itojun struct ip6_hdr *h = mtod(m, struct ip6_hdr *);
1102 1.1 itojun int off;
1103 1.1 itojun struct ip6_ext ext;
1104 1.1 itojun struct ip6_opt opt;
1105 1.1 itojun struct ip6_opt_jumbo jumbo;
1106 1.1 itojun struct ip6_frag frag;
1107 1.1 itojun u_int32_t jumbolen = 0, plen;
1108 1.1 itojun u_int16_t fragoff = 0;
1109 1.1 itojun int optend;
1110 1.1 itojun int ooff;
1111 1.1 itojun u_int8_t proto;
1112 1.1 itojun int terminal;
1113 1.1 itojun
1114 1.1 itojun r = TAILQ_FIRST(pf_main_ruleset.rules[PF_RULESET_SCRUB].active.ptr);
1115 1.1 itojun while (r != NULL) {
1116 1.1 itojun r->evaluations++;
1117 1.19 yamt if (pfi_kif_match(r->kif, kif) == r->ifnot)
1118 1.1 itojun r = r->skip[PF_SKIP_IFP].ptr;
1119 1.1 itojun else if (r->direction && r->direction != dir)
1120 1.1 itojun r = r->skip[PF_SKIP_DIR].ptr;
1121 1.1 itojun else if (r->af && r->af != AF_INET6)
1122 1.1 itojun r = r->skip[PF_SKIP_AF].ptr;
1123 1.1 itojun #if 0 /* header chain! */
1124 1.1 itojun else if (r->proto && r->proto != h->ip6_nxt)
1125 1.1 itojun r = r->skip[PF_SKIP_PROTO].ptr;
1126 1.1 itojun #endif
1127 1.1 itojun else if (PF_MISMATCHAW(&r->src.addr,
1128 1.19 yamt (struct pf_addr *)&h->ip6_src, AF_INET6,
1129 1.19 yamt r->src.neg, kif))
1130 1.1 itojun r = r->skip[PF_SKIP_SRC_ADDR].ptr;
1131 1.1 itojun else if (PF_MISMATCHAW(&r->dst.addr,
1132 1.19 yamt (struct pf_addr *)&h->ip6_dst, AF_INET6,
1133 1.19 yamt r->dst.neg, NULL))
1134 1.1 itojun r = r->skip[PF_SKIP_DST_ADDR].ptr;
1135 1.1 itojun else
1136 1.1 itojun break;
1137 1.1 itojun }
1138 1.1 itojun
1139 1.19 yamt if (r == NULL || r->action == PF_NOSCRUB)
1140 1.1 itojun return (PF_PASS);
1141 1.19 yamt else {
1142 1.19 yamt r->packets[dir == PF_OUT]++;
1143 1.19 yamt r->bytes[dir == PF_OUT] += pd->tot_len;
1144 1.19 yamt }
1145 1.1 itojun
1146 1.1 itojun /* Check for illegal packets */
1147 1.1 itojun if (sizeof(struct ip6_hdr) + IPV6_MAXPACKET < m->m_pkthdr.len)
1148 1.1 itojun goto drop;
1149 1.1 itojun
1150 1.1 itojun off = sizeof(struct ip6_hdr);
1151 1.1 itojun proto = h->ip6_nxt;
1152 1.1 itojun terminal = 0;
1153 1.1 itojun do {
1154 1.1 itojun switch (proto) {
1155 1.1 itojun case IPPROTO_FRAGMENT:
1156 1.1 itojun goto fragment;
1157 1.1 itojun break;
1158 1.1 itojun case IPPROTO_AH:
1159 1.1 itojun case IPPROTO_ROUTING:
1160 1.1 itojun case IPPROTO_DSTOPTS:
1161 1.1 itojun if (!pf_pull_hdr(m, off, &ext, sizeof(ext), NULL,
1162 1.1 itojun NULL, AF_INET6))
1163 1.1 itojun goto shortpkt;
1164 1.1 itojun if (proto == IPPROTO_AH)
1165 1.1 itojun off += (ext.ip6e_len + 2) * 4;
1166 1.1 itojun else
1167 1.1 itojun off += (ext.ip6e_len + 1) * 8;
1168 1.1 itojun proto = ext.ip6e_nxt;
1169 1.1 itojun break;
1170 1.1 itojun case IPPROTO_HOPOPTS:
1171 1.1 itojun if (!pf_pull_hdr(m, off, &ext, sizeof(ext), NULL,
1172 1.1 itojun NULL, AF_INET6))
1173 1.1 itojun goto shortpkt;
1174 1.1 itojun optend = off + (ext.ip6e_len + 1) * 8;
1175 1.1 itojun ooff = off + sizeof(ext);
1176 1.1 itojun do {
1177 1.1 itojun if (!pf_pull_hdr(m, ooff, &opt.ip6o_type,
1178 1.1 itojun sizeof(opt.ip6o_type), NULL, NULL,
1179 1.1 itojun AF_INET6))
1180 1.1 itojun goto shortpkt;
1181 1.1 itojun if (opt.ip6o_type == IP6OPT_PAD1) {
1182 1.1 itojun ooff++;
1183 1.1 itojun continue;
1184 1.1 itojun }
1185 1.1 itojun if (!pf_pull_hdr(m, ooff, &opt, sizeof(opt),
1186 1.1 itojun NULL, NULL, AF_INET6))
1187 1.1 itojun goto shortpkt;
1188 1.1 itojun if (ooff + sizeof(opt) + opt.ip6o_len > optend)
1189 1.1 itojun goto drop;
1190 1.1 itojun switch (opt.ip6o_type) {
1191 1.1 itojun case IP6OPT_JUMBO:
1192 1.1 itojun if (h->ip6_plen != 0)
1193 1.1 itojun goto drop;
1194 1.1 itojun if (!pf_pull_hdr(m, ooff, &jumbo,
1195 1.1 itojun sizeof(jumbo), NULL, NULL,
1196 1.1 itojun AF_INET6))
1197 1.1 itojun goto shortpkt;
1198 1.1 itojun memcpy(&jumbolen, jumbo.ip6oj_jumbo_len,
1199 1.1 itojun sizeof(jumbolen));
1200 1.1 itojun jumbolen = ntohl(jumbolen);
1201 1.1 itojun if (jumbolen <= IPV6_MAXPACKET)
1202 1.1 itojun goto drop;
1203 1.1 itojun if (sizeof(struct ip6_hdr) + jumbolen !=
1204 1.1 itojun m->m_pkthdr.len)
1205 1.1 itojun goto drop;
1206 1.1 itojun break;
1207 1.1 itojun default:
1208 1.1 itojun break;
1209 1.1 itojun }
1210 1.1 itojun ooff += sizeof(opt) + opt.ip6o_len;
1211 1.1 itojun } while (ooff < optend);
1212 1.1 itojun
1213 1.1 itojun off = optend;
1214 1.1 itojun proto = ext.ip6e_nxt;
1215 1.1 itojun break;
1216 1.1 itojun default:
1217 1.1 itojun terminal = 1;
1218 1.1 itojun break;
1219 1.1 itojun }
1220 1.1 itojun } while (!terminal);
1221 1.1 itojun
1222 1.1 itojun /* jumbo payload option must be present, or plen > 0 */
1223 1.1 itojun if (ntohs(h->ip6_plen) == 0)
1224 1.1 itojun plen = jumbolen;
1225 1.1 itojun else
1226 1.1 itojun plen = ntohs(h->ip6_plen);
1227 1.1 itojun if (plen == 0)
1228 1.1 itojun goto drop;
1229 1.1 itojun if (sizeof(struct ip6_hdr) + plen > m->m_pkthdr.len)
1230 1.1 itojun goto shortpkt;
1231 1.1 itojun
1232 1.1 itojun /* Enforce a minimum ttl, may cause endless packet loops */
1233 1.1 itojun if (r->min_ttl && h->ip6_hlim < r->min_ttl)
1234 1.1 itojun h->ip6_hlim = r->min_ttl;
1235 1.1 itojun
1236 1.1 itojun return (PF_PASS);
1237 1.1 itojun
1238 1.1 itojun fragment:
1239 1.1 itojun if (ntohs(h->ip6_plen) == 0 || jumbolen)
1240 1.1 itojun goto drop;
1241 1.1 itojun plen = ntohs(h->ip6_plen);
1242 1.1 itojun
1243 1.1 itojun if (!pf_pull_hdr(m, off, &frag, sizeof(frag), NULL, NULL, AF_INET6))
1244 1.1 itojun goto shortpkt;
1245 1.1 itojun fragoff = ntohs(frag.ip6f_offlg & IP6F_OFF_MASK);
1246 1.1 itojun if (fragoff + (plen - off - sizeof(frag)) > IPV6_MAXPACKET)
1247 1.1 itojun goto badfrag;
1248 1.1 itojun
1249 1.1 itojun /* do something about it */
1250 1.6 yamt /* remember to set pd->flags |= PFDESC_IP_REAS */
1251 1.1 itojun return (PF_PASS);
1252 1.1 itojun
1253 1.1 itojun shortpkt:
1254 1.1 itojun REASON_SET(reason, PFRES_SHORT);
1255 1.1 itojun if (r != NULL && r->log)
1256 1.19 yamt PFLOG_PACKET(kif, h, m, AF_INET6, dir, *reason, r, NULL, NULL, pd);
1257 1.1 itojun return (PF_DROP);
1258 1.1 itojun
1259 1.1 itojun drop:
1260 1.1 itojun REASON_SET(reason, PFRES_NORM);
1261 1.1 itojun if (r != NULL && r->log)
1262 1.19 yamt PFLOG_PACKET(kif, h, m, AF_INET6, dir, *reason, r, NULL, NULL, pd);
1263 1.1 itojun return (PF_DROP);
1264 1.1 itojun
1265 1.1 itojun badfrag:
1266 1.1 itojun REASON_SET(reason, PFRES_FRAG);
1267 1.1 itojun if (r != NULL && r->log)
1268 1.19 yamt PFLOG_PACKET(kif, h, m, AF_INET6, dir, *reason, r, NULL, NULL, pd);
1269 1.1 itojun return (PF_DROP);
1270 1.1 itojun }
1271 1.6 yamt #endif /* INET6 */
1272 1.1 itojun
1273 1.1 itojun int
1274 1.14 christos pf_normalize_tcp(int dir, struct pfi_kif *kif, struct mbuf *m,
1275 1.15 christos int ipoff, int off, void *h, struct pf_pdesc *pd)
1276 1.1 itojun {
1277 1.1 itojun struct pf_rule *r, *rm = NULL;
1278 1.1 itojun struct tcphdr *th = pd->hdr.tcp;
1279 1.1 itojun int rewrite = 0;
1280 1.1 itojun u_short reason;
1281 1.1 itojun u_int8_t flags;
1282 1.1 itojun sa_family_t af = pd->af;
1283 1.1 itojun
1284 1.1 itojun r = TAILQ_FIRST(pf_main_ruleset.rules[PF_RULESET_SCRUB].active.ptr);
1285 1.1 itojun while (r != NULL) {
1286 1.1 itojun r->evaluations++;
1287 1.19 yamt if (pfi_kif_match(r->kif, kif) == r->ifnot)
1288 1.1 itojun r = r->skip[PF_SKIP_IFP].ptr;
1289 1.1 itojun else if (r->direction && r->direction != dir)
1290 1.1 itojun r = r->skip[PF_SKIP_DIR].ptr;
1291 1.1 itojun else if (r->af && r->af != af)
1292 1.1 itojun r = r->skip[PF_SKIP_AF].ptr;
1293 1.1 itojun else if (r->proto && r->proto != pd->proto)
1294 1.1 itojun r = r->skip[PF_SKIP_PROTO].ptr;
1295 1.19 yamt else if (PF_MISMATCHAW(&r->src.addr, pd->src, af,
1296 1.19 yamt r->src.neg, kif))
1297 1.1 itojun r = r->skip[PF_SKIP_SRC_ADDR].ptr;
1298 1.1 itojun else if (r->src.port_op && !pf_match_port(r->src.port_op,
1299 1.1 itojun r->src.port[0], r->src.port[1], th->th_sport))
1300 1.1 itojun r = r->skip[PF_SKIP_SRC_PORT].ptr;
1301 1.19 yamt else if (PF_MISMATCHAW(&r->dst.addr, pd->dst, af,
1302 1.19 yamt r->dst.neg, NULL))
1303 1.1 itojun r = r->skip[PF_SKIP_DST_ADDR].ptr;
1304 1.1 itojun else if (r->dst.port_op && !pf_match_port(r->dst.port_op,
1305 1.1 itojun r->dst.port[0], r->dst.port[1], th->th_dport))
1306 1.1 itojun r = r->skip[PF_SKIP_DST_PORT].ptr;
1307 1.1 itojun else if (r->os_fingerprint != PF_OSFP_ANY && !pf_osfp_match(
1308 1.1 itojun pf_osfp_fingerprint(pd, m, off, th),
1309 1.1 itojun r->os_fingerprint))
1310 1.1 itojun r = TAILQ_NEXT(r, entries);
1311 1.1 itojun else {
1312 1.1 itojun rm = r;
1313 1.1 itojun break;
1314 1.1 itojun }
1315 1.1 itojun }
1316 1.1 itojun
1317 1.9 peter if (rm == NULL || rm->action == PF_NOSCRUB)
1318 1.1 itojun return (PF_PASS);
1319 1.19 yamt else {
1320 1.19 yamt r->packets[dir == PF_OUT]++;
1321 1.19 yamt r->bytes[dir == PF_OUT] += pd->tot_len;
1322 1.19 yamt }
1323 1.1 itojun
1324 1.1 itojun if (rm->rule_flag & PFRULE_REASSEMBLE_TCP)
1325 1.1 itojun pd->flags |= PFDESC_TCP_NORM;
1326 1.1 itojun
1327 1.1 itojun flags = th->th_flags;
1328 1.1 itojun if (flags & TH_SYN) {
1329 1.1 itojun /* Illegal packet */
1330 1.1 itojun if (flags & TH_RST)
1331 1.1 itojun goto tcp_drop;
1332 1.1 itojun
1333 1.1 itojun if (flags & TH_FIN)
1334 1.1 itojun flags &= ~TH_FIN;
1335 1.1 itojun } else {
1336 1.1 itojun /* Illegal packet */
1337 1.1 itojun if (!(flags & (TH_ACK|TH_RST)))
1338 1.1 itojun goto tcp_drop;
1339 1.1 itojun }
1340 1.1 itojun
1341 1.1 itojun if (!(flags & TH_ACK)) {
1342 1.1 itojun /* These flags are only valid if ACK is set */
1343 1.1 itojun if ((flags & TH_FIN) || (flags & TH_PUSH) || (flags & TH_URG))
1344 1.1 itojun goto tcp_drop;
1345 1.1 itojun }
1346 1.1 itojun
1347 1.1 itojun /* Check for illegal header length */
1348 1.1 itojun if (th->th_off < (sizeof(struct tcphdr) >> 2))
1349 1.1 itojun goto tcp_drop;
1350 1.1 itojun
1351 1.1 itojun /* If flags changed, or reserved data set, then adjust */
1352 1.1 itojun if (flags != th->th_flags || th->th_x2 != 0) {
1353 1.1 itojun u_int16_t ov, nv;
1354 1.1 itojun
1355 1.1 itojun ov = *(u_int16_t *)(&th->th_ack + 1);
1356 1.1 itojun th->th_flags = flags;
1357 1.1 itojun th->th_x2 = 0;
1358 1.1 itojun nv = *(u_int16_t *)(&th->th_ack + 1);
1359 1.1 itojun
1360 1.6 yamt th->th_sum = pf_cksum_fixup(th->th_sum, ov, nv, 0);
1361 1.1 itojun rewrite = 1;
1362 1.1 itojun }
1363 1.1 itojun
1364 1.1 itojun /* Remove urgent pointer, if TH_URG is not set */
1365 1.1 itojun if (!(flags & TH_URG) && th->th_urp) {
1366 1.6 yamt th->th_sum = pf_cksum_fixup(th->th_sum, th->th_urp, 0, 0);
1367 1.1 itojun th->th_urp = 0;
1368 1.1 itojun rewrite = 1;
1369 1.1 itojun }
1370 1.1 itojun
1371 1.1 itojun /* Process options */
1372 1.1 itojun if (r->max_mss && pf_normalize_tcpopt(r, m, th, off))
1373 1.1 itojun rewrite = 1;
1374 1.1 itojun
1375 1.1 itojun /* copy back packet headers if we sanitized */
1376 1.1 itojun if (rewrite)
1377 1.4 yamt m_copyback(m, off, sizeof(*th), th);
1378 1.1 itojun
1379 1.1 itojun return (PF_PASS);
1380 1.1 itojun
1381 1.1 itojun tcp_drop:
1382 1.27 christos REASON_SET_NOPTR(&reason, PFRES_NORM);
1383 1.1 itojun if (rm != NULL && r->log)
1384 1.19 yamt PFLOG_PACKET(kif, h, m, AF_INET, dir, reason, r, NULL, NULL, pd);
1385 1.1 itojun return (PF_DROP);
1386 1.1 itojun }
1387 1.1 itojun
1388 1.1 itojun int
1389 1.1 itojun pf_normalize_tcp_init(struct mbuf *m, int off, struct pf_pdesc *pd,
1390 1.14 christos struct tcphdr *th, struct pf_state_peer *src,
1391 1.15 christos struct pf_state_peer *dst)
1392 1.1 itojun {
1393 1.6 yamt u_int32_t tsval, tsecr;
1394 1.1 itojun u_int8_t hdr[60];
1395 1.1 itojun u_int8_t *opt;
1396 1.1 itojun
1397 1.1 itojun KASSERT(src->scrub == NULL);
1398 1.1 itojun
1399 1.1 itojun src->scrub = pool_get(&pf_state_scrub_pl, PR_NOWAIT);
1400 1.1 itojun if (src->scrub == NULL)
1401 1.1 itojun return (1);
1402 1.1 itojun bzero(src->scrub, sizeof(*src->scrub));
1403 1.1 itojun
1404 1.1 itojun switch (pd->af) {
1405 1.1 itojun #ifdef INET
1406 1.1 itojun case AF_INET: {
1407 1.1 itojun struct ip *h = mtod(m, struct ip *);
1408 1.1 itojun src->scrub->pfss_ttl = h->ip_ttl;
1409 1.1 itojun break;
1410 1.1 itojun }
1411 1.1 itojun #endif /* INET */
1412 1.1 itojun #ifdef INET6
1413 1.1 itojun case AF_INET6: {
1414 1.1 itojun struct ip6_hdr *h = mtod(m, struct ip6_hdr *);
1415 1.1 itojun src->scrub->pfss_ttl = h->ip6_hlim;
1416 1.1 itojun break;
1417 1.1 itojun }
1418 1.1 itojun #endif /* INET6 */
1419 1.1 itojun }
1420 1.1 itojun
1421 1.1 itojun
1422 1.1 itojun /*
1423 1.1 itojun * All normalizations below are only begun if we see the start of
1424 1.1 itojun * the connections. They must all set an enabled bit in pfss_flags
1425 1.1 itojun */
1426 1.1 itojun if ((th->th_flags & TH_SYN) == 0)
1427 1.1 itojun return (0);
1428 1.1 itojun
1429 1.1 itojun
1430 1.1 itojun if (th->th_off > (sizeof(struct tcphdr) >> 2) && src->scrub &&
1431 1.1 itojun pf_pull_hdr(m, off, hdr, th->th_off << 2, NULL, NULL, pd->af)) {
1432 1.1 itojun /* Diddle with TCP options */
1433 1.1 itojun int hlen;
1434 1.1 itojun opt = hdr + sizeof(struct tcphdr);
1435 1.1 itojun hlen = (th->th_off << 2) - sizeof(struct tcphdr);
1436 1.1 itojun while (hlen >= TCPOLEN_TIMESTAMP) {
1437 1.1 itojun switch (*opt) {
1438 1.1 itojun case TCPOPT_EOL: /* FALLTHROUGH */
1439 1.1 itojun case TCPOPT_NOP:
1440 1.1 itojun opt++;
1441 1.1 itojun hlen--;
1442 1.1 itojun break;
1443 1.1 itojun case TCPOPT_TIMESTAMP:
1444 1.1 itojun if (opt[1] >= TCPOLEN_TIMESTAMP) {
1445 1.1 itojun src->scrub->pfss_flags |=
1446 1.1 itojun PFSS_TIMESTAMP;
1447 1.6 yamt src->scrub->pfss_ts_mod =
1448 1.26 tls htonl(cprng_fast32());
1449 1.6 yamt
1450 1.6 yamt /* note PFSS_PAWS not set yet */
1451 1.6 yamt memcpy(&tsval, &opt[2],
1452 1.6 yamt sizeof(u_int32_t));
1453 1.6 yamt memcpy(&tsecr, &opt[6],
1454 1.6 yamt sizeof(u_int32_t));
1455 1.6 yamt src->scrub->pfss_tsval0 = ntohl(tsval);
1456 1.6 yamt src->scrub->pfss_tsval = ntohl(tsval);
1457 1.6 yamt src->scrub->pfss_tsecr = ntohl(tsecr);
1458 1.6 yamt getmicrouptime(&src->scrub->pfss_last);
1459 1.1 itojun }
1460 1.1 itojun /* FALLTHROUGH */
1461 1.1 itojun default:
1462 1.6 yamt hlen -= MAX(opt[1], 2);
1463 1.6 yamt opt += MAX(opt[1], 2);
1464 1.1 itojun break;
1465 1.1 itojun }
1466 1.1 itojun }
1467 1.1 itojun }
1468 1.1 itojun
1469 1.1 itojun return (0);
1470 1.1 itojun }
1471 1.1 itojun
1472 1.1 itojun void
1473 1.1 itojun pf_normalize_tcp_cleanup(struct pf_state *state)
1474 1.1 itojun {
1475 1.1 itojun if (state->src.scrub)
1476 1.1 itojun pool_put(&pf_state_scrub_pl, state->src.scrub);
1477 1.1 itojun if (state->dst.scrub)
1478 1.1 itojun pool_put(&pf_state_scrub_pl, state->dst.scrub);
1479 1.1 itojun
1480 1.1 itojun /* Someday... flush the TCP segment reassembly descriptors. */
1481 1.1 itojun }
1482 1.1 itojun
1483 1.1 itojun int
1484 1.1 itojun pf_normalize_tcp_stateful(struct mbuf *m, int off, struct pf_pdesc *pd,
1485 1.6 yamt u_short *reason, struct tcphdr *th, struct pf_state *state,
1486 1.6 yamt struct pf_state_peer *src, struct pf_state_peer *dst, int *writeback)
1487 1.1 itojun {
1488 1.6 yamt struct timeval uptime;
1489 1.24 mrg u_int32_t tsval = 0, tsecr = 0;
1490 1.6 yamt u_int tsval_from_last;
1491 1.1 itojun u_int8_t hdr[60];
1492 1.1 itojun u_int8_t *opt;
1493 1.1 itojun int copyback = 0;
1494 1.6 yamt int got_ts = 0;
1495 1.1 itojun
1496 1.1 itojun KASSERT(src->scrub || dst->scrub);
1497 1.1 itojun
1498 1.1 itojun /*
1499 1.1 itojun * Enforce the minimum TTL seen for this connection. Negate a common
1500 1.1 itojun * technique to evade an intrusion detection system and confuse
1501 1.1 itojun * firewall state code.
1502 1.1 itojun */
1503 1.1 itojun switch (pd->af) {
1504 1.1 itojun #ifdef INET
1505 1.1 itojun case AF_INET: {
1506 1.1 itojun if (src->scrub) {
1507 1.1 itojun struct ip *h = mtod(m, struct ip *);
1508 1.1 itojun if (h->ip_ttl > src->scrub->pfss_ttl)
1509 1.1 itojun src->scrub->pfss_ttl = h->ip_ttl;
1510 1.1 itojun h->ip_ttl = src->scrub->pfss_ttl;
1511 1.1 itojun }
1512 1.1 itojun break;
1513 1.1 itojun }
1514 1.1 itojun #endif /* INET */
1515 1.1 itojun #ifdef INET6
1516 1.1 itojun case AF_INET6: {
1517 1.1 itojun if (src->scrub) {
1518 1.1 itojun struct ip6_hdr *h = mtod(m, struct ip6_hdr *);
1519 1.1 itojun if (h->ip6_hlim > src->scrub->pfss_ttl)
1520 1.1 itojun src->scrub->pfss_ttl = h->ip6_hlim;
1521 1.1 itojun h->ip6_hlim = src->scrub->pfss_ttl;
1522 1.1 itojun }
1523 1.1 itojun break;
1524 1.1 itojun }
1525 1.1 itojun #endif /* INET6 */
1526 1.1 itojun }
1527 1.1 itojun
1528 1.1 itojun if (th->th_off > (sizeof(struct tcphdr) >> 2) &&
1529 1.1 itojun ((src->scrub && (src->scrub->pfss_flags & PFSS_TIMESTAMP)) ||
1530 1.1 itojun (dst->scrub && (dst->scrub->pfss_flags & PFSS_TIMESTAMP))) &&
1531 1.1 itojun pf_pull_hdr(m, off, hdr, th->th_off << 2, NULL, NULL, pd->af)) {
1532 1.1 itojun /* Diddle with TCP options */
1533 1.1 itojun int hlen;
1534 1.1 itojun opt = hdr + sizeof(struct tcphdr);
1535 1.1 itojun hlen = (th->th_off << 2) - sizeof(struct tcphdr);
1536 1.1 itojun while (hlen >= TCPOLEN_TIMESTAMP) {
1537 1.1 itojun switch (*opt) {
1538 1.1 itojun case TCPOPT_EOL: /* FALLTHROUGH */
1539 1.1 itojun case TCPOPT_NOP:
1540 1.1 itojun opt++;
1541 1.1 itojun hlen--;
1542 1.1 itojun break;
1543 1.1 itojun case TCPOPT_TIMESTAMP:
1544 1.1 itojun /* Modulate the timestamps. Can be used for
1545 1.1 itojun * NAT detection, OS uptime determination or
1546 1.1 itojun * reboot detection.
1547 1.1 itojun */
1548 1.6 yamt
1549 1.6 yamt if (got_ts) {
1550 1.6 yamt /* Huh? Multiple timestamps!? */
1551 1.6 yamt if (pf_status.debug >= PF_DEBUG_MISC) {
1552 1.6 yamt DPFPRINTF(("multiple TS??"));
1553 1.6 yamt pf_print_state(state);
1554 1.6 yamt printf("\n");
1555 1.6 yamt }
1556 1.6 yamt REASON_SET(reason, PFRES_TS);
1557 1.6 yamt return (PF_DROP);
1558 1.6 yamt }
1559 1.1 itojun if (opt[1] >= TCPOLEN_TIMESTAMP) {
1560 1.6 yamt memcpy(&tsval, &opt[2],
1561 1.6 yamt sizeof(u_int32_t));
1562 1.6 yamt if (tsval && src->scrub &&
1563 1.1 itojun (src->scrub->pfss_flags &
1564 1.1 itojun PFSS_TIMESTAMP)) {
1565 1.6 yamt tsval = ntohl(tsval);
1566 1.1 itojun pf_change_a(&opt[2],
1567 1.6 yamt &th->th_sum,
1568 1.6 yamt htonl(tsval +
1569 1.6 yamt src->scrub->pfss_ts_mod),
1570 1.6 yamt 0);
1571 1.1 itojun copyback = 1;
1572 1.1 itojun }
1573 1.1 itojun
1574 1.1 itojun /* Modulate TS reply iff valid (!0) */
1575 1.6 yamt memcpy(&tsecr, &opt[6],
1576 1.1 itojun sizeof(u_int32_t));
1577 1.6 yamt if (tsecr && dst->scrub &&
1578 1.1 itojun (dst->scrub->pfss_flags &
1579 1.1 itojun PFSS_TIMESTAMP)) {
1580 1.6 yamt tsecr = ntohl(tsecr)
1581 1.6 yamt - dst->scrub->pfss_ts_mod;
1582 1.1 itojun pf_change_a(&opt[6],
1583 1.6 yamt &th->th_sum, htonl(tsecr),
1584 1.6 yamt 0);
1585 1.1 itojun copyback = 1;
1586 1.1 itojun }
1587 1.6 yamt got_ts = 1;
1588 1.1 itojun }
1589 1.1 itojun /* FALLTHROUGH */
1590 1.1 itojun default:
1591 1.6 yamt hlen -= MAX(opt[1], 2);
1592 1.6 yamt opt += MAX(opt[1], 2);
1593 1.1 itojun break;
1594 1.1 itojun }
1595 1.1 itojun }
1596 1.1 itojun if (copyback) {
1597 1.1 itojun /* Copyback the options, caller copys back header */
1598 1.1 itojun *writeback = 1;
1599 1.1 itojun m_copyback(m, off + sizeof(struct tcphdr),
1600 1.4 yamt (th->th_off << 2) - sizeof(struct tcphdr), hdr +
1601 1.4 yamt sizeof(struct tcphdr));
1602 1.1 itojun }
1603 1.1 itojun }
1604 1.1 itojun
1605 1.1 itojun
1606 1.6 yamt /*
1607 1.6 yamt * Must invalidate PAWS checks on connections idle for too long.
1608 1.6 yamt * The fastest allowed timestamp clock is 1ms. That turns out to
1609 1.6 yamt * be about 24 days before it wraps. XXX Right now our lowerbound
1610 1.6 yamt * TS echo check only works for the first 12 days of a connection
1611 1.6 yamt * when the TS has exhausted half its 32bit space
1612 1.6 yamt */
1613 1.6 yamt #define TS_MAX_IDLE (24*24*60*60)
1614 1.6 yamt #define TS_MAX_CONN (12*24*60*60) /* XXX remove when better tsecr check */
1615 1.6 yamt
1616 1.6 yamt getmicrouptime(&uptime);
1617 1.6 yamt if (src->scrub && (src->scrub->pfss_flags & PFSS_PAWS) &&
1618 1.6 yamt (uptime.tv_sec - src->scrub->pfss_last.tv_sec > TS_MAX_IDLE ||
1619 1.6 yamt time_second - state->creation > TS_MAX_CONN)) {
1620 1.6 yamt if (pf_status.debug >= PF_DEBUG_MISC) {
1621 1.6 yamt DPFPRINTF(("src idled out of PAWS\n"));
1622 1.6 yamt pf_print_state(state);
1623 1.6 yamt printf("\n");
1624 1.6 yamt }
1625 1.6 yamt src->scrub->pfss_flags = (src->scrub->pfss_flags & ~PFSS_PAWS)
1626 1.6 yamt | PFSS_PAWS_IDLED;
1627 1.6 yamt }
1628 1.6 yamt if (dst->scrub && (dst->scrub->pfss_flags & PFSS_PAWS) &&
1629 1.6 yamt uptime.tv_sec - dst->scrub->pfss_last.tv_sec > TS_MAX_IDLE) {
1630 1.6 yamt if (pf_status.debug >= PF_DEBUG_MISC) {
1631 1.6 yamt DPFPRINTF(("dst idled out of PAWS\n"));
1632 1.6 yamt pf_print_state(state);
1633 1.6 yamt printf("\n");
1634 1.6 yamt }
1635 1.6 yamt dst->scrub->pfss_flags = (dst->scrub->pfss_flags & ~PFSS_PAWS)
1636 1.6 yamt | PFSS_PAWS_IDLED;
1637 1.6 yamt }
1638 1.6 yamt
1639 1.6 yamt if (got_ts && src->scrub && dst->scrub &&
1640 1.6 yamt (src->scrub->pfss_flags & PFSS_PAWS) &&
1641 1.6 yamt (dst->scrub->pfss_flags & PFSS_PAWS)) {
1642 1.6 yamt /* Validate that the timestamps are "in-window".
1643 1.6 yamt * RFC1323 describes TCP Timestamp options that allow
1644 1.6 yamt * measurement of RTT (round trip time) and PAWS
1645 1.6 yamt * (protection against wrapped sequence numbers). PAWS
1646 1.6 yamt * gives us a set of rules for rejecting packets on
1647 1.6 yamt * long fat pipes (packets that were somehow delayed
1648 1.6 yamt * in transit longer than the time it took to send the
1649 1.6 yamt * full TCP sequence space of 4Gb). We can use these
1650 1.6 yamt * rules and infer a few others that will let us treat
1651 1.6 yamt * the 32bit timestamp and the 32bit echoed timestamp
1652 1.6 yamt * as sequence numbers to prevent a blind attacker from
1653 1.6 yamt * inserting packets into a connection.
1654 1.6 yamt *
1655 1.6 yamt * RFC1323 tells us:
1656 1.6 yamt * - The timestamp on this packet must be greater than
1657 1.6 yamt * or equal to the last value echoed by the other
1658 1.6 yamt * endpoint. The RFC says those will be discarded
1659 1.6 yamt * since it is a dup that has already been acked.
1660 1.6 yamt * This gives us a lowerbound on the timestamp.
1661 1.6 yamt * timestamp >= other last echoed timestamp
1662 1.6 yamt * - The timestamp will be less than or equal to
1663 1.6 yamt * the last timestamp plus the time between the
1664 1.6 yamt * last packet and now. The RFC defines the max
1665 1.6 yamt * clock rate as 1ms. We will allow clocks to be
1666 1.6 yamt * up to 10% fast and will allow a total difference
1667 1.6 yamt * or 30 seconds due to a route change. And this
1668 1.6 yamt * gives us an upperbound on the timestamp.
1669 1.6 yamt * timestamp <= last timestamp + max ticks
1670 1.6 yamt * We have to be careful here. Windows will send an
1671 1.6 yamt * initial timestamp of zero and then initialize it
1672 1.6 yamt * to a random value after the 3whs; presumably to
1673 1.6 yamt * avoid a DoS by having to call an expensive RNG
1674 1.6 yamt * during a SYN flood. Proof MS has at least one
1675 1.6 yamt * good security geek.
1676 1.6 yamt *
1677 1.6 yamt * - The TCP timestamp option must also echo the other
1678 1.6 yamt * endpoints timestamp. The timestamp echoed is the
1679 1.6 yamt * one carried on the earliest unacknowledged segment
1680 1.6 yamt * on the left edge of the sequence window. The RFC
1681 1.6 yamt * states that the host will reject any echoed
1682 1.6 yamt * timestamps that were larger than any ever sent.
1683 1.6 yamt * This gives us an upperbound on the TS echo.
1684 1.6 yamt * tescr <= largest_tsval
1685 1.6 yamt * - The lowerbound on the TS echo is a little more
1686 1.6 yamt * tricky to determine. The other endpoint's echoed
1687 1.6 yamt * values will not decrease. But there may be
1688 1.6 yamt * network conditions that re-order packets and
1689 1.6 yamt * cause our view of them to decrease. For now the
1690 1.6 yamt * only lowerbound we can safely determine is that
1691 1.19 yamt * the TS echo will never be less than the original
1692 1.6 yamt * TS. XXX There is probably a better lowerbound.
1693 1.6 yamt * Remove TS_MAX_CONN with better lowerbound check.
1694 1.6 yamt * tescr >= other original TS
1695 1.6 yamt *
1696 1.6 yamt * It is also important to note that the fastest
1697 1.6 yamt * timestamp clock of 1ms will wrap its 32bit space in
1698 1.6 yamt * 24 days. So we just disable TS checking after 24
1699 1.6 yamt * days of idle time. We actually must use a 12d
1700 1.6 yamt * connection limit until we can come up with a better
1701 1.6 yamt * lowerbound to the TS echo check.
1702 1.6 yamt */
1703 1.6 yamt struct timeval delta_ts;
1704 1.6 yamt int ts_fudge;
1705 1.6 yamt
1706 1.6 yamt
1707 1.6 yamt /*
1708 1.6 yamt * PFTM_TS_DIFF is how many seconds of leeway to allow
1709 1.6 yamt * a host's timestamp. This can happen if the previous
1710 1.6 yamt * packet got delayed in transit for much longer than
1711 1.6 yamt * this packet.
1712 1.6 yamt */
1713 1.6 yamt if ((ts_fudge = state->rule.ptr->timeout[PFTM_TS_DIFF]) == 0)
1714 1.6 yamt ts_fudge = pf_default_rule.timeout[PFTM_TS_DIFF];
1715 1.6 yamt
1716 1.6 yamt
1717 1.6 yamt /* Calculate max ticks since the last timestamp */
1718 1.12 lukem #define TS_MAXFREQ 1100 /* RFC max TS freq of 1 kHz + 10% skew */
1719 1.6 yamt #define TS_MICROSECS 1000000 /* microseconds per second */
1720 1.6 yamt timersub(&uptime, &src->scrub->pfss_last, &delta_ts);
1721 1.6 yamt tsval_from_last = (delta_ts.tv_sec + ts_fudge) * TS_MAXFREQ;
1722 1.6 yamt tsval_from_last += delta_ts.tv_usec / (TS_MICROSECS/TS_MAXFREQ);
1723 1.6 yamt
1724 1.6 yamt
1725 1.6 yamt if ((src->state >= TCPS_ESTABLISHED &&
1726 1.6 yamt dst->state >= TCPS_ESTABLISHED) &&
1727 1.6 yamt (SEQ_LT(tsval, dst->scrub->pfss_tsecr) ||
1728 1.6 yamt SEQ_GT(tsval, src->scrub->pfss_tsval + tsval_from_last) ||
1729 1.6 yamt (tsecr && (SEQ_GT(tsecr, dst->scrub->pfss_tsval) ||
1730 1.6 yamt SEQ_LT(tsecr, dst->scrub->pfss_tsval0))))) {
1731 1.6 yamt /* Bad RFC1323 implementation or an insertion attack.
1732 1.6 yamt *
1733 1.6 yamt * - Solaris 2.6 and 2.7 are known to send another ACK
1734 1.6 yamt * after the FIN,FIN|ACK,ACK closing that carries
1735 1.6 yamt * an old timestamp.
1736 1.6 yamt */
1737 1.6 yamt
1738 1.6 yamt DPFPRINTF(("Timestamp failed %c%c%c%c\n",
1739 1.6 yamt SEQ_LT(tsval, dst->scrub->pfss_tsecr) ? '0' : ' ',
1740 1.6 yamt SEQ_GT(tsval, src->scrub->pfss_tsval +
1741 1.6 yamt tsval_from_last) ? '1' : ' ',
1742 1.6 yamt SEQ_GT(tsecr, dst->scrub->pfss_tsval) ? '2' : ' ',
1743 1.6 yamt SEQ_LT(tsecr, dst->scrub->pfss_tsval0)? '3' : ' '));
1744 1.6 yamt DPFPRINTF((" tsval: %" PRIu32 " tsecr: %" PRIu32
1745 1.20 cegger " +ticks: %" PRIu32 " idle: %"PRIx64"s %ums\n",
1746 1.6 yamt tsval, tsecr, tsval_from_last, delta_ts.tv_sec,
1747 1.20 cegger delta_ts.tv_usec / 1000U));
1748 1.6 yamt DPFPRINTF((" src->tsval: %" PRIu32 " tsecr: %" PRIu32
1749 1.6 yamt "\n",
1750 1.6 yamt src->scrub->pfss_tsval, src->scrub->pfss_tsecr));
1751 1.6 yamt DPFPRINTF((" dst->tsval: %" PRIu32 " tsecr: %" PRIu32
1752 1.6 yamt " tsval0: %" PRIu32 "\n",
1753 1.6 yamt dst->scrub->pfss_tsval,
1754 1.6 yamt dst->scrub->pfss_tsecr, dst->scrub->pfss_tsval0));
1755 1.6 yamt if (pf_status.debug >= PF_DEBUG_MISC) {
1756 1.6 yamt pf_print_state(state);
1757 1.6 yamt pf_print_flags(th->th_flags);
1758 1.6 yamt printf("\n");
1759 1.6 yamt }
1760 1.6 yamt REASON_SET(reason, PFRES_TS);
1761 1.6 yamt return (PF_DROP);
1762 1.6 yamt }
1763 1.6 yamt
1764 1.6 yamt /* XXX I'd really like to require tsecr but it's optional */
1765 1.6 yamt
1766 1.6 yamt } else if (!got_ts && (th->th_flags & TH_RST) == 0 &&
1767 1.6 yamt ((src->state == TCPS_ESTABLISHED && dst->state == TCPS_ESTABLISHED)
1768 1.6 yamt || pd->p_len > 0 || (th->th_flags & TH_SYN)) &&
1769 1.6 yamt src->scrub && dst->scrub &&
1770 1.6 yamt (src->scrub->pfss_flags & PFSS_PAWS) &&
1771 1.6 yamt (dst->scrub->pfss_flags & PFSS_PAWS)) {
1772 1.6 yamt /* Didn't send a timestamp. Timestamps aren't really useful
1773 1.6 yamt * when:
1774 1.6 yamt * - connection opening or closing (often not even sent).
1775 1.6 yamt * but we must not let an attacker to put a FIN on a
1776 1.6 yamt * data packet to sneak it through our ESTABLISHED check.
1777 1.6 yamt * - on a TCP reset. RFC suggests not even looking at TS.
1778 1.6 yamt * - on an empty ACK. The TS will not be echoed so it will
1779 1.6 yamt * probably not help keep the RTT calculation in sync and
1780 1.6 yamt * there isn't as much danger when the sequence numbers
1781 1.6 yamt * got wrapped. So some stacks don't include TS on empty
1782 1.6 yamt * ACKs :-(
1783 1.6 yamt *
1784 1.6 yamt * To minimize the disruption to mostly RFC1323 conformant
1785 1.6 yamt * stacks, we will only require timestamps on data packets.
1786 1.6 yamt *
1787 1.6 yamt * And what do ya know, we cannot require timestamps on data
1788 1.6 yamt * packets. There appear to be devices that do legitimate
1789 1.6 yamt * TCP connection hijacking. There are HTTP devices that allow
1790 1.6 yamt * a 3whs (with timestamps) and then buffer the HTTP request.
1791 1.6 yamt * If the intermediate device has the HTTP response cache, it
1792 1.6 yamt * will spoof the response but not bother timestamping its
1793 1.6 yamt * packets. So we can look for the presence of a timestamp in
1794 1.6 yamt * the first data packet and if there, require it in all future
1795 1.6 yamt * packets.
1796 1.6 yamt */
1797 1.6 yamt
1798 1.6 yamt if (pd->p_len > 0 && (src->scrub->pfss_flags & PFSS_DATA_TS)) {
1799 1.6 yamt /*
1800 1.6 yamt * Hey! Someone tried to sneak a packet in. Or the
1801 1.6 yamt * stack changed its RFC1323 behavior?!?!
1802 1.6 yamt */
1803 1.6 yamt if (pf_status.debug >= PF_DEBUG_MISC) {
1804 1.6 yamt DPFPRINTF(("Did not receive expected RFC1323 "
1805 1.6 yamt "timestamp\n"));
1806 1.6 yamt pf_print_state(state);
1807 1.6 yamt pf_print_flags(th->th_flags);
1808 1.6 yamt printf("\n");
1809 1.6 yamt }
1810 1.6 yamt REASON_SET(reason, PFRES_TS);
1811 1.6 yamt return (PF_DROP);
1812 1.6 yamt }
1813 1.6 yamt }
1814 1.6 yamt
1815 1.6 yamt
1816 1.6 yamt /*
1817 1.6 yamt * We will note if a host sends his data packets with or without
1818 1.6 yamt * timestamps. And require all data packets to contain a timestamp
1819 1.6 yamt * if the first does. PAWS implicitly requires that all data packets be
1820 1.6 yamt * timestamped. But I think there are middle-man devices that hijack
1821 1.19 yamt * TCP streams immediately after the 3whs and don't timestamp their
1822 1.6 yamt * packets (seen in a WWW accelerator or cache).
1823 1.6 yamt */
1824 1.6 yamt if (pd->p_len > 0 && src->scrub && (src->scrub->pfss_flags &
1825 1.6 yamt (PFSS_TIMESTAMP|PFSS_DATA_TS|PFSS_DATA_NOTS)) == PFSS_TIMESTAMP) {
1826 1.6 yamt if (got_ts)
1827 1.6 yamt src->scrub->pfss_flags |= PFSS_DATA_TS;
1828 1.6 yamt else {
1829 1.6 yamt src->scrub->pfss_flags |= PFSS_DATA_NOTS;
1830 1.6 yamt if (pf_status.debug >= PF_DEBUG_MISC && dst->scrub &&
1831 1.6 yamt (dst->scrub->pfss_flags & PFSS_TIMESTAMP)) {
1832 1.6 yamt /* Don't warn if other host rejected RFC1323 */
1833 1.6 yamt DPFPRINTF(("Broken RFC1323 stack did not "
1834 1.6 yamt "timestamp data packet. Disabled PAWS "
1835 1.6 yamt "security.\n"));
1836 1.6 yamt pf_print_state(state);
1837 1.6 yamt pf_print_flags(th->th_flags);
1838 1.6 yamt printf("\n");
1839 1.6 yamt }
1840 1.6 yamt }
1841 1.6 yamt }
1842 1.6 yamt
1843 1.6 yamt
1844 1.6 yamt /*
1845 1.6 yamt * Update PAWS values
1846 1.6 yamt */
1847 1.6 yamt if (got_ts && src->scrub && PFSS_TIMESTAMP == (src->scrub->pfss_flags &
1848 1.6 yamt (PFSS_PAWS_IDLED|PFSS_TIMESTAMP))) {
1849 1.6 yamt getmicrouptime(&src->scrub->pfss_last);
1850 1.6 yamt if (SEQ_GEQ(tsval, src->scrub->pfss_tsval) ||
1851 1.6 yamt (src->scrub->pfss_flags & PFSS_PAWS) == 0)
1852 1.6 yamt src->scrub->pfss_tsval = tsval;
1853 1.6 yamt
1854 1.6 yamt if (tsecr) {
1855 1.6 yamt if (SEQ_GEQ(tsecr, src->scrub->pfss_tsecr) ||
1856 1.6 yamt (src->scrub->pfss_flags & PFSS_PAWS) == 0)
1857 1.6 yamt src->scrub->pfss_tsecr = tsecr;
1858 1.6 yamt
1859 1.6 yamt if ((src->scrub->pfss_flags & PFSS_PAWS) == 0 &&
1860 1.6 yamt (SEQ_LT(tsval, src->scrub->pfss_tsval0) ||
1861 1.6 yamt src->scrub->pfss_tsval0 == 0)) {
1862 1.6 yamt /* tsval0 MUST be the lowest timestamp */
1863 1.6 yamt src->scrub->pfss_tsval0 = tsval;
1864 1.6 yamt }
1865 1.6 yamt
1866 1.6 yamt /* Only fully initialized after a TS gets echoed */
1867 1.6 yamt if ((src->scrub->pfss_flags & PFSS_PAWS) == 0)
1868 1.6 yamt src->scrub->pfss_flags |= PFSS_PAWS;
1869 1.6 yamt }
1870 1.6 yamt }
1871 1.6 yamt
1872 1.1 itojun /* I have a dream.... TCP segment reassembly.... */
1873 1.1 itojun return (0);
1874 1.1 itojun }
1875 1.6 yamt
1876 1.1 itojun int
1877 1.1 itojun pf_normalize_tcpopt(struct pf_rule *r, struct mbuf *m, struct tcphdr *th,
1878 1.1 itojun int off)
1879 1.1 itojun {
1880 1.1 itojun u_int16_t *mss;
1881 1.1 itojun int thoff;
1882 1.1 itojun int opt, cnt, optlen = 0;
1883 1.1 itojun int rewrite = 0;
1884 1.1 itojun u_char *optp;
1885 1.1 itojun
1886 1.1 itojun thoff = th->th_off << 2;
1887 1.1 itojun cnt = thoff - sizeof(struct tcphdr);
1888 1.13 mrg optp = mtod(m, u_char *) + off + sizeof(struct tcphdr);
1889 1.1 itojun
1890 1.1 itojun for (; cnt > 0; cnt -= optlen, optp += optlen) {
1891 1.1 itojun opt = optp[0];
1892 1.1 itojun if (opt == TCPOPT_EOL)
1893 1.1 itojun break;
1894 1.1 itojun if (opt == TCPOPT_NOP)
1895 1.1 itojun optlen = 1;
1896 1.1 itojun else {
1897 1.1 itojun if (cnt < 2)
1898 1.1 itojun break;
1899 1.1 itojun optlen = optp[1];
1900 1.1 itojun if (optlen < 2 || optlen > cnt)
1901 1.1 itojun break;
1902 1.1 itojun }
1903 1.1 itojun switch (opt) {
1904 1.1 itojun case TCPOPT_MAXSEG:
1905 1.1 itojun mss = (u_int16_t *)(optp + 2);
1906 1.1 itojun if ((ntohs(*mss)) > r->max_mss) {
1907 1.1 itojun th->th_sum = pf_cksum_fixup(th->th_sum,
1908 1.6 yamt *mss, htons(r->max_mss), 0);
1909 1.1 itojun *mss = htons(r->max_mss);
1910 1.1 itojun rewrite = 1;
1911 1.1 itojun }
1912 1.1 itojun break;
1913 1.1 itojun default:
1914 1.1 itojun break;
1915 1.1 itojun }
1916 1.1 itojun }
1917 1.1 itojun
1918 1.1 itojun return (rewrite);
1919 1.1 itojun }
1920