ip_encap.c revision 1.61 1 1.61 knakahar /* $NetBSD: ip_encap.c,v 1.61 2016/07/04 04:40:13 knakahara Exp $ */
2 1.7 itojun /* $KAME: ip_encap.c,v 1.73 2001/10/02 08:30:58 itojun Exp $ */
3 1.1 itojun
4 1.1 itojun /*
5 1.1 itojun * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
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 * 3. Neither the name of the project nor the names of its contributors
17 1.1 itojun * may be used to endorse or promote products derived from this software
18 1.1 itojun * without specific prior written permission.
19 1.1 itojun *
20 1.1 itojun * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
21 1.1 itojun * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 1.1 itojun * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 1.1 itojun * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
24 1.1 itojun * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25 1.1 itojun * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26 1.1 itojun * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 1.1 itojun * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28 1.1 itojun * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29 1.1 itojun * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 1.1 itojun * SUCH DAMAGE.
31 1.1 itojun */
32 1.1 itojun /*
33 1.1 itojun * My grandfather said that there's a devil inside tunnelling technology...
34 1.1 itojun *
35 1.1 itojun * We have surprisingly many protocols that want packets with IP protocol
36 1.1 itojun * #4 or #41. Here's a list of protocols that want protocol #41:
37 1.1 itojun * RFC1933 configured tunnel
38 1.1 itojun * RFC1933 automatic tunnel
39 1.1 itojun * RFC2401 IPsec tunnel
40 1.1 itojun * RFC2473 IPv6 generic packet tunnelling
41 1.1 itojun * RFC2529 6over4 tunnel
42 1.7 itojun * RFC3056 6to4 tunnel
43 1.7 itojun * isatap tunnel
44 1.1 itojun * mobile-ip6 (uses RFC2473)
45 1.1 itojun * Here's a list of protocol that want protocol #4:
46 1.1 itojun * RFC1853 IPv4-in-IPv4 tunnelling
47 1.1 itojun * RFC2003 IPv4 encapsulation within IPv4
48 1.1 itojun * RFC2344 reverse tunnelling for mobile-ip4
49 1.1 itojun * RFC2401 IPsec tunnel
50 1.1 itojun * Well, what can I say. They impose different en/decapsulation mechanism
51 1.1 itojun * from each other, so they need separate protocol handler. The only one
52 1.1 itojun * we can easily determine by protocol # is IPsec, which always has
53 1.1 itojun * AH/ESP/IPComp header right after outer IP header.
54 1.1 itojun *
55 1.1 itojun * So, clearly good old protosw does not work for protocol #4 and #41.
56 1.1 itojun * The code will let you match protocol via src/dst address pair.
57 1.1 itojun */
58 1.1 itojun /* XXX is M_NETADDR correct? */
59 1.6 lukem
60 1.7 itojun /*
61 1.55 knakahar * With USE_RADIX the code will use radix table for tunnel lookup, for
62 1.7 itojun * tunnels registered with encap_attach() with a addr/mask pair.
63 1.7 itojun * Faster on machines with thousands of tunnel registerations (= interfaces).
64 1.7 itojun *
65 1.7 itojun * The code assumes that radix table code can handle non-continuous netmask,
66 1.7 itojun * as it will pass radix table memory region with (src + dst) sockaddr pair.
67 1.7 itojun */
68 1.55 knakahar #define USE_RADIX
69 1.7 itojun
70 1.6 lukem #include <sys/cdefs.h>
71 1.61 knakahar __KERNEL_RCSID(0, "$NetBSD: ip_encap.c,v 1.61 2016/07/04 04:40:13 knakahara Exp $");
72 1.1 itojun
73 1.46 pooka #ifdef _KERNEL_OPT
74 1.4 itojun #include "opt_mrouting.h"
75 1.4 itojun #include "opt_inet.h"
76 1.61 knakahar #include "opt_net_mpsafe.h"
77 1.46 pooka #endif
78 1.1 itojun
79 1.1 itojun #include <sys/param.h>
80 1.1 itojun #include <sys/systm.h>
81 1.1 itojun #include <sys/socket.h>
82 1.1 itojun #include <sys/sockio.h>
83 1.1 itojun #include <sys/mbuf.h>
84 1.1 itojun #include <sys/errno.h>
85 1.4 itojun #include <sys/queue.h>
86 1.47 knakahar #include <sys/kmem.h>
87 1.56 knakahar #include <sys/mutex.h>
88 1.59 knakahar #include <sys/condvar.h>
89 1.56 knakahar #include <sys/psref.h>
90 1.56 knakahar #include <sys/pslist.h>
91 1.1 itojun
92 1.1 itojun #include <net/if.h>
93 1.1 itojun
94 1.1 itojun #include <netinet/in.h>
95 1.1 itojun #include <netinet/in_systm.h>
96 1.1 itojun #include <netinet/ip.h>
97 1.1 itojun #include <netinet/ip_var.h>
98 1.1 itojun #include <netinet/ip_encap.h>
99 1.1 itojun #ifdef MROUTING
100 1.1 itojun #include <netinet/ip_mroute.h>
101 1.1 itojun #endif /* MROUTING */
102 1.1 itojun
103 1.1 itojun #ifdef INET6
104 1.1 itojun #include <netinet/ip6.h>
105 1.1 itojun #include <netinet6/ip6_var.h>
106 1.51 knakahar #include <netinet6/ip6protosw.h> /* for struct ip6ctlparam */
107 1.7 itojun #include <netinet6/in6_var.h>
108 1.7 itojun #include <netinet6/in6_pcb.h>
109 1.7 itojun #include <netinet/icmp6.h>
110 1.1 itojun #endif
111 1.1 itojun
112 1.1 itojun #include <net/net_osdep.h>
113 1.1 itojun
114 1.61 knakahar #ifdef NET_MPSAFE
115 1.61 knakahar #define ENCAP_MPSAFE 1
116 1.61 knakahar #endif
117 1.61 knakahar
118 1.7 itojun enum direction { INBOUND, OUTBOUND };
119 1.7 itojun
120 1.7 itojun #ifdef INET
121 1.56 knakahar static struct encaptab *encap4_lookup(struct mbuf *, int, int, enum direction,
122 1.56 knakahar struct psref *);
123 1.7 itojun #endif
124 1.7 itojun #ifdef INET6
125 1.56 knakahar static struct encaptab *encap6_lookup(struct mbuf *, int, int, enum direction,
126 1.56 knakahar struct psref *);
127 1.7 itojun #endif
128 1.22 perry static int encap_add(struct encaptab *);
129 1.22 perry static int encap_remove(struct encaptab *);
130 1.22 perry static int encap_afcheck(int, const struct sockaddr *, const struct sockaddr *);
131 1.55 knakahar #ifdef USE_RADIX
132 1.22 perry static struct radix_node_head *encap_rnh(int);
133 1.22 perry static int mask_matchlen(const struct sockaddr *);
134 1.55 knakahar #else
135 1.55 knakahar static int mask_match(const struct encaptab *, const struct sockaddr *,
136 1.55 knakahar const struct sockaddr *);
137 1.55 knakahar #endif
138 1.22 perry static void encap_fillarg(struct mbuf *, const struct encaptab *);
139 1.1 itojun
140 1.56 knakahar /*
141 1.56 knakahar * In encap[46]_lookup(), ep->func can sleep(e.g. rtalloc1) while walking
142 1.56 knakahar * encap_table. So, it cannot use pserialize_read_enter()
143 1.56 knakahar */
144 1.56 knakahar static struct {
145 1.56 knakahar struct pslist_head list;
146 1.56 knakahar pserialize_t psz;
147 1.56 knakahar struct psref_class *elem_class; /* for the element of et_list */
148 1.56 knakahar } encaptab __cacheline_aligned = {
149 1.56 knakahar .list = PSLIST_INITIALIZER,
150 1.56 knakahar };
151 1.56 knakahar #define encap_table encaptab.list
152 1.1 itojun
153 1.59 knakahar static struct {
154 1.59 knakahar kmutex_t lock;
155 1.59 knakahar kcondvar_t cv;
156 1.59 knakahar struct lwp *busy;
157 1.59 knakahar } encap_whole __cacheline_aligned;
158 1.59 knakahar
159 1.55 knakahar #ifdef USE_RADIX
160 1.7 itojun struct radix_node_head *encap_head[2]; /* 0 for AF_INET, 1 for AF_INET6 */
161 1.57 knakahar static bool encap_head_updating = false;
162 1.55 knakahar #endif
163 1.7 itojun
164 1.59 knakahar /*
165 1.59 knakahar * must be done before other encap interfaces initialization.
166 1.59 knakahar */
167 1.59 knakahar void
168 1.59 knakahar encapinit(void)
169 1.59 knakahar {
170 1.59 knakahar
171 1.60 knakahar encaptab.psz = pserialize_create();
172 1.60 knakahar encaptab.elem_class = psref_class_create("encapelem", IPL_SOFTNET);
173 1.60 knakahar if (encaptab.elem_class == NULL)
174 1.60 knakahar panic("encaptab.elem_class cannot be allocated.\n");
175 1.60 knakahar
176 1.59 knakahar mutex_init(&encap_whole.lock, MUTEX_DEFAULT, IPL_NONE);
177 1.59 knakahar cv_init(&encap_whole.cv, "ip_encap cv");
178 1.59 knakahar encap_whole.busy = NULL;
179 1.59 knakahar }
180 1.59 knakahar
181 1.1 itojun void
182 1.23 perry encap_init(void)
183 1.1 itojun {
184 1.7 itojun static int initialized = 0;
185 1.7 itojun
186 1.7 itojun if (initialized)
187 1.7 itojun return;
188 1.7 itojun initialized++;
189 1.1 itojun #if 0
190 1.1 itojun /*
191 1.1 itojun * we cannot use LIST_INIT() here, since drivers may want to call
192 1.4 itojun * encap_attach(), on driver attach. encap_init() will be called
193 1.1 itojun * on AF_INET{,6} initialization, which happens after driver
194 1.1 itojun * initialization - using LIST_INIT() here can nuke encap_attach()
195 1.1 itojun * from drivers.
196 1.1 itojun */
197 1.56 knakahar PSLIST_INIT(&encap_table);
198 1.1 itojun #endif
199 1.7 itojun
200 1.55 knakahar #ifdef USE_RADIX
201 1.7 itojun /*
202 1.38 pooka * initialize radix lookup table when the radix subsystem is inited.
203 1.7 itojun */
204 1.38 pooka rn_delayedinit((void *)&encap_head[0],
205 1.38 pooka sizeof(struct sockaddr_pack) << 3);
206 1.7 itojun #ifdef INET6
207 1.38 pooka rn_delayedinit((void *)&encap_head[1],
208 1.38 pooka sizeof(struct sockaddr_pack) << 3);
209 1.7 itojun #endif
210 1.55 knakahar #endif
211 1.1 itojun }
212 1.1 itojun
213 1.4 itojun #ifdef INET
214 1.7 itojun static struct encaptab *
215 1.56 knakahar encap4_lookup(struct mbuf *m, int off, int proto, enum direction dir,
216 1.56 knakahar struct psref *match_psref)
217 1.1 itojun {
218 1.1 itojun struct ip *ip;
219 1.33 pooka struct ip_pack4 pack;
220 1.1 itojun struct encaptab *ep, *match;
221 1.1 itojun int prio, matchprio;
222 1.56 knakahar int s;
223 1.55 knakahar #ifdef USE_RADIX
224 1.7 itojun struct radix_node_head *rnh = encap_rnh(AF_INET);
225 1.7 itojun struct radix_node *rn;
226 1.55 knakahar #endif
227 1.1 itojun
228 1.41 ozaki KASSERT(m->m_len >= sizeof(*ip));
229 1.41 ozaki
230 1.1 itojun ip = mtod(m, struct ip *);
231 1.1 itojun
232 1.35 cegger memset(&pack, 0, sizeof(pack));
233 1.7 itojun pack.p.sp_len = sizeof(pack);
234 1.7 itojun pack.mine.sin_family = pack.yours.sin_family = AF_INET;
235 1.7 itojun pack.mine.sin_len = pack.yours.sin_len = sizeof(struct sockaddr_in);
236 1.7 itojun if (dir == INBOUND) {
237 1.7 itojun pack.mine.sin_addr = ip->ip_dst;
238 1.7 itojun pack.yours.sin_addr = ip->ip_src;
239 1.7 itojun } else {
240 1.7 itojun pack.mine.sin_addr = ip->ip_src;
241 1.7 itojun pack.yours.sin_addr = ip->ip_dst;
242 1.7 itojun }
243 1.1 itojun
244 1.1 itojun match = NULL;
245 1.1 itojun matchprio = 0;
246 1.7 itojun
247 1.56 knakahar s = pserialize_read_enter();
248 1.55 knakahar #ifdef USE_RADIX
249 1.57 knakahar if (encap_head_updating) {
250 1.57 knakahar /*
251 1.57 knakahar * Update in progress. Do nothing.
252 1.57 knakahar */
253 1.57 knakahar pserialize_read_exit(s);
254 1.57 knakahar return NULL;
255 1.57 knakahar }
256 1.57 knakahar
257 1.30 christos rn = rnh->rnh_matchaddr((void *)&pack, rnh);
258 1.7 itojun if (rn && (rn->rn_flags & RNF_ROOT) == 0) {
259 1.56 knakahar struct encaptab *encapp = (struct encaptab *)rn;
260 1.56 knakahar
261 1.56 knakahar psref_acquire(match_psref, &encapp->psref,
262 1.56 knakahar encaptab.elem_class);
263 1.56 knakahar match = encapp;
264 1.7 itojun matchprio = mask_matchlen(match->srcmask) +
265 1.7 itojun mask_matchlen(match->dstmask);
266 1.7 itojun }
267 1.55 knakahar #endif
268 1.56 knakahar PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
269 1.56 knakahar struct psref elem_psref;
270 1.56 knakahar
271 1.56 knakahar membar_datadep_consumer();
272 1.7 itojun
273 1.1 itojun if (ep->af != AF_INET)
274 1.1 itojun continue;
275 1.1 itojun if (ep->proto >= 0 && ep->proto != proto)
276 1.1 itojun continue;
277 1.56 knakahar
278 1.56 knakahar psref_acquire(&elem_psref, &ep->psref,
279 1.56 knakahar encaptab.elem_class);
280 1.56 knakahar if (ep->func) {
281 1.56 knakahar pserialize_read_exit(s);
282 1.56 knakahar /* ep->func is sleepable. e.g. rtalloc1 */
283 1.1 itojun prio = (*ep->func)(m, off, proto, ep->arg);
284 1.56 knakahar s = pserialize_read_enter();
285 1.56 knakahar } else {
286 1.55 knakahar #ifdef USE_RADIX
287 1.56 knakahar psref_release(&elem_psref, &ep->psref,
288 1.56 knakahar encaptab.elem_class);
289 1.7 itojun continue;
290 1.55 knakahar #else
291 1.55 knakahar prio = mask_match(ep, (struct sockaddr *)&pack.mine,
292 1.55 knakahar (struct sockaddr *)&pack.yours);
293 1.55 knakahar #endif
294 1.55 knakahar }
295 1.1 itojun
296 1.1 itojun /*
297 1.1 itojun * We prioritize the matches by using bit length of the
298 1.1 itojun * matches. mask_match() and user-supplied matching function
299 1.1 itojun * should return the bit length of the matches (for example,
300 1.1 itojun * if both src/dst are matched for IPv4, 64 should be returned).
301 1.1 itojun * 0 or negative return value means "it did not match".
302 1.1 itojun *
303 1.1 itojun * The question is, since we have two "mask" portion, we
304 1.1 itojun * cannot really define total order between entries.
305 1.1 itojun * For example, which of these should be preferred?
306 1.1 itojun * mask_match() returns 48 (32 + 16) for both of them.
307 1.1 itojun * src=3ffe::/16, dst=3ffe:501::/32
308 1.1 itojun * src=3ffe:501::/32, dst=3ffe::/16
309 1.1 itojun *
310 1.1 itojun * We need to loop through all the possible candidates
311 1.1 itojun * to get the best match - the search takes O(n) for
312 1.1 itojun * n attachments (i.e. interfaces).
313 1.7 itojun *
314 1.7 itojun * For radix-based lookup, I guess source takes precedence.
315 1.7 itojun * See rn_{refines,lexobetter} for the correct answer.
316 1.1 itojun */
317 1.56 knakahar if (prio <= 0) {
318 1.56 knakahar psref_release(&elem_psref, &ep->psref,
319 1.56 knakahar encaptab.elem_class);
320 1.1 itojun continue;
321 1.56 knakahar }
322 1.1 itojun if (prio > matchprio) {
323 1.56 knakahar /* release last matched ep */
324 1.56 knakahar if (match != NULL)
325 1.56 knakahar psref_release(match_psref, &match->psref,
326 1.56 knakahar encaptab.elem_class);
327 1.56 knakahar
328 1.56 knakahar psref_copy(match_psref, &elem_psref,
329 1.56 knakahar encaptab.elem_class);
330 1.1 itojun matchprio = prio;
331 1.1 itojun match = ep;
332 1.1 itojun }
333 1.56 knakahar KASSERTMSG((match == NULL) || psref_held(&match->psref,
334 1.56 knakahar encaptab.elem_class),
335 1.56 knakahar "current match = %p, but not hold its psref", match);
336 1.56 knakahar
337 1.56 knakahar psref_release(&elem_psref, &ep->psref,
338 1.56 knakahar encaptab.elem_class);
339 1.1 itojun }
340 1.56 knakahar pserialize_read_exit(s);
341 1.1 itojun
342 1.7 itojun return match;
343 1.7 itojun }
344 1.7 itojun
345 1.7 itojun void
346 1.7 itojun encap4_input(struct mbuf *m, ...)
347 1.7 itojun {
348 1.7 itojun int off, proto;
349 1.7 itojun va_list ap;
350 1.51 knakahar const struct encapsw *esw;
351 1.7 itojun struct encaptab *match;
352 1.56 knakahar struct psref match_psref;
353 1.7 itojun
354 1.7 itojun va_start(ap, m);
355 1.7 itojun off = va_arg(ap, int);
356 1.7 itojun proto = va_arg(ap, int);
357 1.7 itojun va_end(ap);
358 1.7 itojun
359 1.56 knakahar match = encap4_lookup(m, off, proto, INBOUND, &match_psref);
360 1.1 itojun if (match) {
361 1.1 itojun /* found a match, "match" has the best one */
362 1.51 knakahar esw = match->esw;
363 1.51 knakahar if (esw && esw->encapsw4.pr_input) {
364 1.1 itojun encap_fillarg(m, match);
365 1.51 knakahar (*esw->encapsw4.pr_input)(m, off, proto);
366 1.56 knakahar psref_release(&match_psref, &match->psref,
367 1.56 knakahar encaptab.elem_class);
368 1.54 knakahar } else {
369 1.56 knakahar psref_release(&match_psref, &match->psref,
370 1.56 knakahar encaptab.elem_class);
371 1.1 itojun m_freem(m);
372 1.54 knakahar }
373 1.1 itojun return;
374 1.1 itojun }
375 1.1 itojun
376 1.1 itojun /* last resort: inject to raw socket */
377 1.1 itojun rip_input(m, off, proto);
378 1.1 itojun }
379 1.1 itojun #endif
380 1.1 itojun
381 1.1 itojun #ifdef INET6
382 1.7 itojun static struct encaptab *
383 1.56 knakahar encap6_lookup(struct mbuf *m, int off, int proto, enum direction dir,
384 1.56 knakahar struct psref *match_psref)
385 1.1 itojun {
386 1.1 itojun struct ip6_hdr *ip6;
387 1.33 pooka struct ip_pack6 pack;
388 1.7 itojun int prio, matchprio;
389 1.56 knakahar int s;
390 1.1 itojun struct encaptab *ep, *match;
391 1.55 knakahar #ifdef USE_RADIX
392 1.7 itojun struct radix_node_head *rnh = encap_rnh(AF_INET6);
393 1.7 itojun struct radix_node *rn;
394 1.55 knakahar #endif
395 1.1 itojun
396 1.41 ozaki KASSERT(m->m_len >= sizeof(*ip6));
397 1.41 ozaki
398 1.1 itojun ip6 = mtod(m, struct ip6_hdr *);
399 1.1 itojun
400 1.35 cegger memset(&pack, 0, sizeof(pack));
401 1.7 itojun pack.p.sp_len = sizeof(pack);
402 1.7 itojun pack.mine.sin6_family = pack.yours.sin6_family = AF_INET6;
403 1.7 itojun pack.mine.sin6_len = pack.yours.sin6_len = sizeof(struct sockaddr_in6);
404 1.7 itojun if (dir == INBOUND) {
405 1.7 itojun pack.mine.sin6_addr = ip6->ip6_dst;
406 1.7 itojun pack.yours.sin6_addr = ip6->ip6_src;
407 1.7 itojun } else {
408 1.7 itojun pack.mine.sin6_addr = ip6->ip6_src;
409 1.7 itojun pack.yours.sin6_addr = ip6->ip6_dst;
410 1.7 itojun }
411 1.1 itojun
412 1.1 itojun match = NULL;
413 1.1 itojun matchprio = 0;
414 1.7 itojun
415 1.56 knakahar s = pserialize_read_enter();
416 1.55 knakahar #ifdef USE_RADIX
417 1.57 knakahar if (encap_head_updating) {
418 1.57 knakahar /*
419 1.57 knakahar * Update in progress. Do nothing.
420 1.57 knakahar */
421 1.57 knakahar pserialize_read_exit(s);
422 1.57 knakahar return NULL;
423 1.57 knakahar }
424 1.57 knakahar
425 1.30 christos rn = rnh->rnh_matchaddr((void *)&pack, rnh);
426 1.7 itojun if (rn && (rn->rn_flags & RNF_ROOT) == 0) {
427 1.56 knakahar struct encaptab *encapp = (struct encaptab *)rn;
428 1.56 knakahar
429 1.56 knakahar psref_acquire(match_psref, &encapp->psref,
430 1.56 knakahar encaptab.elem_class);
431 1.56 knakahar match = encapp;
432 1.7 itojun matchprio = mask_matchlen(match->srcmask) +
433 1.7 itojun mask_matchlen(match->dstmask);
434 1.7 itojun }
435 1.55 knakahar #endif
436 1.56 knakahar PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
437 1.56 knakahar struct psref elem_psref;
438 1.56 knakahar
439 1.56 knakahar membar_datadep_consumer();
440 1.7 itojun
441 1.1 itojun if (ep->af != AF_INET6)
442 1.1 itojun continue;
443 1.1 itojun if (ep->proto >= 0 && ep->proto != proto)
444 1.1 itojun continue;
445 1.56 knakahar
446 1.56 knakahar psref_acquire(&elem_psref, &ep->psref,
447 1.56 knakahar encaptab.elem_class);
448 1.56 knakahar
449 1.56 knakahar if (ep->func) {
450 1.56 knakahar pserialize_read_exit(s);
451 1.56 knakahar /* ep->func is sleepable. e.g. rtalloc1 */
452 1.7 itojun prio = (*ep->func)(m, off, proto, ep->arg);
453 1.56 knakahar s = pserialize_read_enter();
454 1.56 knakahar } else {
455 1.55 knakahar #ifdef USE_RADIX
456 1.56 knakahar psref_release(&elem_psref, &ep->psref,
457 1.56 knakahar encaptab.elem_class);
458 1.7 itojun continue;
459 1.55 knakahar #else
460 1.55 knakahar prio = mask_match(ep, (struct sockaddr *)&pack.mine,
461 1.55 knakahar (struct sockaddr *)&pack.yours);
462 1.55 knakahar #endif
463 1.55 knakahar }
464 1.1 itojun
465 1.7 itojun /* see encap4_lookup() for issues here */
466 1.56 knakahar if (prio <= 0) {
467 1.56 knakahar psref_release(&elem_psref, &ep->psref,
468 1.56 knakahar encaptab.elem_class);
469 1.1 itojun continue;
470 1.56 knakahar }
471 1.1 itojun if (prio > matchprio) {
472 1.56 knakahar /* release last matched ep */
473 1.56 knakahar if (match != NULL)
474 1.56 knakahar psref_release(match_psref, &match->psref,
475 1.56 knakahar encaptab.elem_class);
476 1.56 knakahar
477 1.56 knakahar psref_copy(match_psref, &elem_psref,
478 1.56 knakahar encaptab.elem_class);
479 1.1 itojun matchprio = prio;
480 1.1 itojun match = ep;
481 1.1 itojun }
482 1.56 knakahar KASSERTMSG((match == NULL) || psref_held(&match->psref,
483 1.56 knakahar encaptab.elem_class),
484 1.56 knakahar "current match = %p, but not hold its psref", match);
485 1.56 knakahar
486 1.56 knakahar psref_release(&elem_psref, &ep->psref,
487 1.56 knakahar encaptab.elem_class);
488 1.1 itojun }
489 1.56 knakahar pserialize_read_exit(s);
490 1.1 itojun
491 1.7 itojun return match;
492 1.7 itojun }
493 1.7 itojun
494 1.7 itojun int
495 1.23 perry encap6_input(struct mbuf **mp, int *offp, int proto)
496 1.7 itojun {
497 1.7 itojun struct mbuf *m = *mp;
498 1.51 knakahar const struct encapsw *esw;
499 1.7 itojun struct encaptab *match;
500 1.56 knakahar struct psref match_psref;
501 1.7 itojun
502 1.56 knakahar match = encap6_lookup(m, *offp, proto, INBOUND, &match_psref);
503 1.7 itojun
504 1.1 itojun if (match) {
505 1.1 itojun /* found a match */
506 1.51 knakahar esw = match->esw;
507 1.51 knakahar if (esw && esw->encapsw6.pr_input) {
508 1.56 knakahar int ret;
509 1.1 itojun encap_fillarg(m, match);
510 1.56 knakahar ret = (*esw->encapsw6.pr_input)(mp, offp, proto);
511 1.56 knakahar psref_release(&match_psref, &match->psref,
512 1.56 knakahar encaptab.elem_class);
513 1.56 knakahar return ret;
514 1.1 itojun } else {
515 1.56 knakahar psref_release(&match_psref, &match->psref,
516 1.56 knakahar encaptab.elem_class);
517 1.1 itojun m_freem(m);
518 1.1 itojun return IPPROTO_DONE;
519 1.1 itojun }
520 1.1 itojun }
521 1.1 itojun
522 1.1 itojun /* last resort: inject to raw socket */
523 1.1 itojun return rip6_input(mp, offp, proto);
524 1.1 itojun }
525 1.1 itojun #endif
526 1.1 itojun
527 1.54 knakahar /*
528 1.54 knakahar * XXX
529 1.54 knakahar * The encaptab list and the rnh radix tree must be manipulated atomically.
530 1.54 knakahar */
531 1.7 itojun static int
532 1.23 perry encap_add(struct encaptab *ep)
533 1.1 itojun {
534 1.55 knakahar #ifdef USE_RADIX
535 1.7 itojun struct radix_node_head *rnh = encap_rnh(ep->af);
536 1.55 knakahar #endif
537 1.1 itojun
538 1.56 knakahar KASSERT(encap_lock_held());
539 1.54 knakahar
540 1.55 knakahar #ifdef USE_RADIX
541 1.7 itojun if (!ep->func && rnh) {
542 1.57 knakahar /* Disable access to the radix tree for reader. */
543 1.57 knakahar encap_head_updating = true;
544 1.56 knakahar /* Wait for all readers to drain. */
545 1.56 knakahar pserialize_perform(encaptab.psz);
546 1.56 knakahar
547 1.30 christos if (!rnh->rnh_addaddr((void *)ep->addrpack,
548 1.30 christos (void *)ep->maskpack, rnh, ep->nodes)) {
549 1.57 knakahar encap_head_updating = false;
550 1.56 knakahar return EEXIST;
551 1.7 itojun }
552 1.57 knakahar
553 1.57 knakahar /*
554 1.57 knakahar * The ep added to the radix tree must be skipped while
555 1.57 knakahar * encap[46]_lookup walks encaptab list. In other words,
556 1.57 knakahar * encap_add() does not need to care whether the ep has
557 1.57 knakahar * been added encaptab list or not yet.
558 1.57 knakahar * So, we can re-enable access to the radix tree for now.
559 1.57 knakahar */
560 1.57 knakahar encap_head_updating = false;
561 1.7 itojun }
562 1.55 knakahar #endif
563 1.56 knakahar PSLIST_WRITER_INSERT_HEAD(&encap_table, ep, chain);
564 1.7 itojun
565 1.56 knakahar return 0;
566 1.7 itojun }
567 1.7 itojun
568 1.54 knakahar /*
569 1.54 knakahar * XXX
570 1.54 knakahar * The encaptab list and the rnh radix tree must be manipulated atomically.
571 1.54 knakahar */
572 1.7 itojun static int
573 1.23 perry encap_remove(struct encaptab *ep)
574 1.7 itojun {
575 1.55 knakahar #ifdef USE_RADIX
576 1.7 itojun struct radix_node_head *rnh = encap_rnh(ep->af);
577 1.55 knakahar #endif
578 1.7 itojun int error = 0;
579 1.7 itojun
580 1.56 knakahar KASSERT(encap_lock_held());
581 1.54 knakahar
582 1.55 knakahar #ifdef USE_RADIX
583 1.7 itojun if (!ep->func && rnh) {
584 1.57 knakahar /* Disable access to the radix tree for reader. */
585 1.57 knakahar encap_head_updating = true;
586 1.56 knakahar /* Wait for all readers to drain. */
587 1.56 knakahar pserialize_perform(encaptab.psz);
588 1.56 knakahar
589 1.30 christos if (!rnh->rnh_deladdr((void *)ep->addrpack,
590 1.30 christos (void *)ep->maskpack, rnh))
591 1.7 itojun error = ESRCH;
592 1.57 knakahar
593 1.57 knakahar /*
594 1.57 knakahar * The ep added to the radix tree must be skipped while
595 1.57 knakahar * encap[46]_lookup walks encaptab list. In other words,
596 1.57 knakahar * encap_add() does not need to care whether the ep has
597 1.57 knakahar * been added encaptab list or not yet.
598 1.57 knakahar * So, we can re-enable access to the radix tree for now.
599 1.57 knakahar */
600 1.57 knakahar encap_head_updating = false;
601 1.7 itojun }
602 1.55 knakahar #endif
603 1.56 knakahar PSLIST_WRITER_REMOVE(ep, chain);
604 1.56 knakahar
605 1.7 itojun return error;
606 1.7 itojun }
607 1.7 itojun
608 1.7 itojun static int
609 1.23 perry encap_afcheck(int af, const struct sockaddr *sp, const struct sockaddr *dp)
610 1.7 itojun {
611 1.7 itojun if (sp && dp) {
612 1.7 itojun if (sp->sa_len != dp->sa_len)
613 1.7 itojun return EINVAL;
614 1.7 itojun if (af != sp->sa_family || af != dp->sa_family)
615 1.7 itojun return EINVAL;
616 1.7 itojun } else if (!sp && !dp)
617 1.7 itojun ;
618 1.7 itojun else
619 1.7 itojun return EINVAL;
620 1.7 itojun
621 1.7 itojun switch (af) {
622 1.7 itojun case AF_INET:
623 1.7 itojun if (sp && sp->sa_len != sizeof(struct sockaddr_in))
624 1.7 itojun return EINVAL;
625 1.7 itojun if (dp && dp->sa_len != sizeof(struct sockaddr_in))
626 1.7 itojun return EINVAL;
627 1.7 itojun break;
628 1.7 itojun #ifdef INET6
629 1.7 itojun case AF_INET6:
630 1.7 itojun if (sp && sp->sa_len != sizeof(struct sockaddr_in6))
631 1.7 itojun return EINVAL;
632 1.7 itojun if (dp && dp->sa_len != sizeof(struct sockaddr_in6))
633 1.7 itojun return EINVAL;
634 1.7 itojun break;
635 1.7 itojun #endif
636 1.7 itojun default:
637 1.7 itojun return EAFNOSUPPORT;
638 1.7 itojun }
639 1.7 itojun
640 1.7 itojun return 0;
641 1.1 itojun }
642 1.1 itojun
643 1.1 itojun /*
644 1.1 itojun * sp (src ptr) is always my side, and dp (dst ptr) is always remote side.
645 1.1 itojun * length of mask (sm and dm) is assumed to be same as sp/dp.
646 1.1 itojun * Return value will be necessary as input (cookie) for encap_detach().
647 1.1 itojun */
648 1.1 itojun const struct encaptab *
649 1.23 perry encap_attach(int af, int proto,
650 1.23 perry const struct sockaddr *sp, const struct sockaddr *sm,
651 1.23 perry const struct sockaddr *dp, const struct sockaddr *dm,
652 1.51 knakahar const struct encapsw *esw, void *arg)
653 1.1 itojun {
654 1.1 itojun struct encaptab *ep;
655 1.1 itojun int error;
656 1.61 knakahar int pss;
657 1.7 itojun size_t l;
658 1.33 pooka struct ip_pack4 *pack4;
659 1.7 itojun #ifdef INET6
660 1.33 pooka struct ip_pack6 *pack6;
661 1.7 itojun #endif
662 1.61 knakahar #ifndef ENCAP_MPSAFE
663 1.61 knakahar int s;
664 1.1 itojun
665 1.1 itojun s = splsoftnet();
666 1.61 knakahar #endif
667 1.1 itojun /* sanity check on args */
668 1.7 itojun error = encap_afcheck(af, sp, dp);
669 1.7 itojun if (error)
670 1.1 itojun goto fail;
671 1.1 itojun
672 1.1 itojun /* check if anyone have already attached with exactly same config */
673 1.56 knakahar pss = pserialize_read_enter();
674 1.56 knakahar PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
675 1.56 knakahar membar_datadep_consumer();
676 1.56 knakahar
677 1.1 itojun if (ep->af != af)
678 1.1 itojun continue;
679 1.1 itojun if (ep->proto != proto)
680 1.1 itojun continue;
681 1.7 itojun if (ep->func)
682 1.7 itojun continue;
683 1.41 ozaki
684 1.43 riastrad KASSERT(ep->src != NULL);
685 1.43 riastrad KASSERT(ep->dst != NULL);
686 1.43 riastrad KASSERT(ep->srcmask != NULL);
687 1.43 riastrad KASSERT(ep->dstmask != NULL);
688 1.41 ozaki
689 1.7 itojun if (ep->src->sa_len != sp->sa_len ||
690 1.34 cegger memcmp(ep->src, sp, sp->sa_len) != 0 ||
691 1.34 cegger memcmp(ep->srcmask, sm, sp->sa_len) != 0)
692 1.7 itojun continue;
693 1.7 itojun if (ep->dst->sa_len != dp->sa_len ||
694 1.34 cegger memcmp(ep->dst, dp, dp->sa_len) != 0 ||
695 1.34 cegger memcmp(ep->dstmask, dm, dp->sa_len) != 0)
696 1.1 itojun continue;
697 1.1 itojun
698 1.1 itojun error = EEXIST;
699 1.56 knakahar pserialize_read_exit(pss);
700 1.1 itojun goto fail;
701 1.1 itojun }
702 1.56 knakahar pserialize_read_exit(pss);
703 1.3 thorpej
704 1.7 itojun switch (af) {
705 1.7 itojun case AF_INET:
706 1.7 itojun l = sizeof(*pack4);
707 1.7 itojun break;
708 1.7 itojun #ifdef INET6
709 1.7 itojun case AF_INET6:
710 1.7 itojun l = sizeof(*pack6);
711 1.7 itojun break;
712 1.7 itojun #endif
713 1.7 itojun default:
714 1.7 itojun goto fail;
715 1.7 itojun }
716 1.7 itojun
717 1.20 itojun /* M_NETADDR ok? */
718 1.47 knakahar ep = kmem_zalloc(sizeof(*ep), KM_NOSLEEP);
719 1.1 itojun if (ep == NULL) {
720 1.1 itojun error = ENOBUFS;
721 1.1 itojun goto fail;
722 1.1 itojun }
723 1.47 knakahar ep->addrpack = kmem_zalloc(l, KM_NOSLEEP);
724 1.7 itojun if (ep->addrpack == NULL) {
725 1.7 itojun error = ENOBUFS;
726 1.7 itojun goto gc;
727 1.7 itojun }
728 1.47 knakahar ep->maskpack = kmem_zalloc(l, KM_NOSLEEP);
729 1.7 itojun if (ep->maskpack == NULL) {
730 1.7 itojun error = ENOBUFS;
731 1.7 itojun goto gc;
732 1.7 itojun }
733 1.1 itojun
734 1.1 itojun ep->af = af;
735 1.1 itojun ep->proto = proto;
736 1.7 itojun ep->addrpack->sa_len = l & 0xff;
737 1.7 itojun ep->maskpack->sa_len = l & 0xff;
738 1.7 itojun switch (af) {
739 1.7 itojun case AF_INET:
740 1.33 pooka pack4 = (struct ip_pack4 *)ep->addrpack;
741 1.7 itojun ep->src = (struct sockaddr *)&pack4->mine;
742 1.7 itojun ep->dst = (struct sockaddr *)&pack4->yours;
743 1.33 pooka pack4 = (struct ip_pack4 *)ep->maskpack;
744 1.7 itojun ep->srcmask = (struct sockaddr *)&pack4->mine;
745 1.7 itojun ep->dstmask = (struct sockaddr *)&pack4->yours;
746 1.7 itojun break;
747 1.7 itojun #ifdef INET6
748 1.7 itojun case AF_INET6:
749 1.33 pooka pack6 = (struct ip_pack6 *)ep->addrpack;
750 1.7 itojun ep->src = (struct sockaddr *)&pack6->mine;
751 1.7 itojun ep->dst = (struct sockaddr *)&pack6->yours;
752 1.33 pooka pack6 = (struct ip_pack6 *)ep->maskpack;
753 1.7 itojun ep->srcmask = (struct sockaddr *)&pack6->mine;
754 1.7 itojun ep->dstmask = (struct sockaddr *)&pack6->yours;
755 1.7 itojun break;
756 1.7 itojun #endif
757 1.7 itojun }
758 1.7 itojun
759 1.37 tsutsui memcpy(ep->src, sp, sp->sa_len);
760 1.37 tsutsui memcpy(ep->srcmask, sm, sp->sa_len);
761 1.37 tsutsui memcpy(ep->dst, dp, dp->sa_len);
762 1.37 tsutsui memcpy(ep->dstmask, dm, dp->sa_len);
763 1.51 knakahar ep->esw = esw;
764 1.1 itojun ep->arg = arg;
765 1.56 knakahar psref_target_init(&ep->psref, encaptab.elem_class);
766 1.1 itojun
767 1.7 itojun error = encap_add(ep);
768 1.7 itojun if (error)
769 1.7 itojun goto gc;
770 1.1 itojun
771 1.1 itojun error = 0;
772 1.61 knakahar #ifndef ENCAP_MPSAFE
773 1.1 itojun splx(s);
774 1.61 knakahar #endif
775 1.1 itojun return ep;
776 1.1 itojun
777 1.7 itojun gc:
778 1.7 itojun if (ep->addrpack)
779 1.47 knakahar kmem_free(ep->addrpack, l);
780 1.7 itojun if (ep->maskpack)
781 1.47 knakahar kmem_free(ep->maskpack, l);
782 1.7 itojun if (ep)
783 1.47 knakahar kmem_free(ep, sizeof(*ep));
784 1.1 itojun fail:
785 1.61 knakahar #ifndef ENCAP_MPSAFE
786 1.1 itojun splx(s);
787 1.61 knakahar #endif
788 1.1 itojun return NULL;
789 1.1 itojun }
790 1.1 itojun
791 1.1 itojun const struct encaptab *
792 1.23 perry encap_attach_func(int af, int proto,
793 1.26 martin int (*func)(struct mbuf *, int, int, void *),
794 1.51 knakahar const struct encapsw *esw, void *arg)
795 1.1 itojun {
796 1.1 itojun struct encaptab *ep;
797 1.1 itojun int error;
798 1.61 knakahar #ifndef ENCAP_MPSAFE
799 1.1 itojun int s;
800 1.1 itojun
801 1.1 itojun s = splsoftnet();
802 1.61 knakahar #endif
803 1.1 itojun /* sanity check on args */
804 1.1 itojun if (!func) {
805 1.1 itojun error = EINVAL;
806 1.1 itojun goto fail;
807 1.1 itojun }
808 1.1 itojun
809 1.7 itojun error = encap_afcheck(af, NULL, NULL);
810 1.7 itojun if (error)
811 1.7 itojun goto fail;
812 1.7 itojun
813 1.47 knakahar ep = kmem_alloc(sizeof(*ep), KM_NOSLEEP); /*XXX*/
814 1.1 itojun if (ep == NULL) {
815 1.1 itojun error = ENOBUFS;
816 1.1 itojun goto fail;
817 1.1 itojun }
818 1.35 cegger memset(ep, 0, sizeof(*ep));
819 1.1 itojun
820 1.1 itojun ep->af = af;
821 1.1 itojun ep->proto = proto;
822 1.1 itojun ep->func = func;
823 1.51 knakahar ep->esw = esw;
824 1.1 itojun ep->arg = arg;
825 1.56 knakahar psref_target_init(&ep->psref, encaptab.elem_class);
826 1.1 itojun
827 1.7 itojun error = encap_add(ep);
828 1.7 itojun if (error)
829 1.7 itojun goto fail;
830 1.1 itojun
831 1.1 itojun error = 0;
832 1.61 knakahar #ifndef ENCAP_MPSAFE
833 1.1 itojun splx(s);
834 1.61 knakahar #endif
835 1.1 itojun return ep;
836 1.1 itojun
837 1.1 itojun fail:
838 1.61 knakahar #ifndef ENCAP_MPSAFE
839 1.1 itojun splx(s);
840 1.61 knakahar #endif
841 1.1 itojun return NULL;
842 1.1 itojun }
843 1.1 itojun
844 1.7 itojun /* XXX encap4_ctlinput() is necessary if we set DF=1 on outer IPv4 header */
845 1.7 itojun
846 1.7 itojun #ifdef INET6
847 1.32 ad void *
848 1.29 dyoung encap6_ctlinput(int cmd, const struct sockaddr *sa, void *d0)
849 1.7 itojun {
850 1.7 itojun void *d = d0;
851 1.7 itojun struct ip6_hdr *ip6;
852 1.7 itojun struct mbuf *m;
853 1.7 itojun int off;
854 1.7 itojun struct ip6ctlparam *ip6cp = NULL;
855 1.7 itojun int nxt;
856 1.56 knakahar int s;
857 1.7 itojun struct encaptab *ep;
858 1.51 knakahar const struct encapsw *esw;
859 1.7 itojun
860 1.7 itojun if (sa->sa_family != AF_INET6 ||
861 1.7 itojun sa->sa_len != sizeof(struct sockaddr_in6))
862 1.32 ad return NULL;
863 1.7 itojun
864 1.7 itojun if ((unsigned)cmd >= PRC_NCMDS)
865 1.32 ad return NULL;
866 1.7 itojun if (cmd == PRC_HOSTDEAD)
867 1.7 itojun d = NULL;
868 1.7 itojun else if (cmd == PRC_MSGSIZE)
869 1.7 itojun ; /* special code is present, see below */
870 1.7 itojun else if (inet6ctlerrmap[cmd] == 0)
871 1.32 ad return NULL;
872 1.7 itojun
873 1.7 itojun /* if the parameter is from icmp6, decode it. */
874 1.7 itojun if (d != NULL) {
875 1.7 itojun ip6cp = (struct ip6ctlparam *)d;
876 1.7 itojun m = ip6cp->ip6c_m;
877 1.7 itojun ip6 = ip6cp->ip6c_ip6;
878 1.7 itojun off = ip6cp->ip6c_off;
879 1.7 itojun nxt = ip6cp->ip6c_nxt;
880 1.15 mycroft
881 1.15 mycroft if (ip6 && cmd == PRC_MSGSIZE) {
882 1.15 mycroft int valid = 0;
883 1.15 mycroft struct encaptab *match;
884 1.56 knakahar struct psref elem_psref;
885 1.15 mycroft
886 1.15 mycroft /*
887 1.15 mycroft * Check to see if we have a valid encap configuration.
888 1.15 mycroft */
889 1.56 knakahar match = encap6_lookup(m, off, nxt, OUTBOUND,
890 1.56 knakahar &elem_psref);
891 1.15 mycroft if (match)
892 1.15 mycroft valid++;
893 1.56 knakahar psref_release(&elem_psref, &match->psref,
894 1.56 knakahar encaptab.elem_class);
895 1.15 mycroft
896 1.15 mycroft /*
897 1.15 mycroft * Depending on the value of "valid" and routing table
898 1.15 mycroft * size (mtudisc_{hi,lo}wat), we will:
899 1.15 mycroft * - recalcurate the new MTU and create the
900 1.15 mycroft * corresponding routing entry, or
901 1.15 mycroft * - ignore the MTU change notification.
902 1.15 mycroft */
903 1.15 mycroft icmp6_mtudisc_update((struct ip6ctlparam *)d, valid);
904 1.15 mycroft }
905 1.7 itojun } else {
906 1.7 itojun m = NULL;
907 1.7 itojun ip6 = NULL;
908 1.7 itojun nxt = -1;
909 1.7 itojun }
910 1.7 itojun
911 1.7 itojun /* inform all listeners */
912 1.56 knakahar
913 1.56 knakahar s = pserialize_read_enter();
914 1.56 knakahar PSLIST_READER_FOREACH(ep, &encap_table, struct encaptab, chain) {
915 1.56 knakahar struct psref elem_psref;
916 1.56 knakahar
917 1.56 knakahar membar_datadep_consumer();
918 1.56 knakahar
919 1.7 itojun if (ep->af != AF_INET6)
920 1.7 itojun continue;
921 1.7 itojun if (ep->proto >= 0 && ep->proto != nxt)
922 1.7 itojun continue;
923 1.7 itojun
924 1.7 itojun /* should optimize by looking at address pairs */
925 1.7 itojun
926 1.7 itojun /* XXX need to pass ep->arg or ep itself to listeners */
927 1.56 knakahar psref_acquire(&elem_psref, &ep->psref,
928 1.56 knakahar encaptab.elem_class);
929 1.51 knakahar esw = ep->esw;
930 1.51 knakahar if (esw && esw->encapsw6.pr_ctlinput) {
931 1.56 knakahar pserialize_read_exit(s);
932 1.56 knakahar /* pr_ctlinput is sleepable. e.g. rtcache_free */
933 1.52 knakahar (*esw->encapsw6.pr_ctlinput)(cmd, sa, d, ep->arg);
934 1.56 knakahar s = pserialize_read_enter();
935 1.51 knakahar }
936 1.56 knakahar psref_release(&elem_psref, &ep->psref,
937 1.56 knakahar encaptab.elem_class);
938 1.7 itojun }
939 1.56 knakahar pserialize_read_exit(s);
940 1.7 itojun
941 1.7 itojun rip6_ctlinput(cmd, sa, d0);
942 1.32 ad return NULL;
943 1.7 itojun }
944 1.7 itojun #endif
945 1.7 itojun
946 1.1 itojun int
947 1.23 perry encap_detach(const struct encaptab *cookie)
948 1.1 itojun {
949 1.1 itojun const struct encaptab *ep = cookie;
950 1.56 knakahar struct encaptab *p;
951 1.7 itojun int error;
952 1.1 itojun
953 1.56 knakahar KASSERT(encap_lock_held());
954 1.56 knakahar
955 1.56 knakahar PSLIST_WRITER_FOREACH(p, &encap_table, struct encaptab, chain) {
956 1.56 knakahar membar_datadep_consumer();
957 1.56 knakahar
958 1.1 itojun if (p == ep) {
959 1.7 itojun error = encap_remove(p);
960 1.7 itojun if (error)
961 1.7 itojun return error;
962 1.56 knakahar else
963 1.56 knakahar break;
964 1.56 knakahar }
965 1.56 knakahar }
966 1.56 knakahar if (p == NULL)
967 1.56 knakahar return ENOENT;
968 1.56 knakahar
969 1.58 knakahar #ifndef USE_RADIX
970 1.58 knakahar /*
971 1.58 knakahar * pserialize_perform(encaptab.psz) is already done in encap_remove().
972 1.58 knakahar */
973 1.56 knakahar pserialize_perform(encaptab.psz);
974 1.58 knakahar #endif
975 1.56 knakahar psref_target_destroy(&p->psref,
976 1.56 knakahar encaptab.elem_class);
977 1.56 knakahar if (!ep->func) {
978 1.56 knakahar kmem_free(p->addrpack, ep->addrpack->sa_len);
979 1.56 knakahar kmem_free(p->maskpack, ep->maskpack->sa_len);
980 1.1 itojun }
981 1.56 knakahar kmem_free(p, sizeof(*p));
982 1.1 itojun
983 1.56 knakahar return 0;
984 1.7 itojun }
985 1.7 itojun
986 1.55 knakahar #ifdef USE_RADIX
987 1.7 itojun static struct radix_node_head *
988 1.23 perry encap_rnh(int af)
989 1.7 itojun {
990 1.7 itojun
991 1.7 itojun switch (af) {
992 1.7 itojun case AF_INET:
993 1.7 itojun return encap_head[0];
994 1.7 itojun #ifdef INET6
995 1.7 itojun case AF_INET6:
996 1.7 itojun return encap_head[1];
997 1.7 itojun #endif
998 1.7 itojun default:
999 1.7 itojun return NULL;
1000 1.7 itojun }
1001 1.7 itojun }
1002 1.7 itojun
1003 1.7 itojun static int
1004 1.23 perry mask_matchlen(const struct sockaddr *sa)
1005 1.7 itojun {
1006 1.7 itojun const char *p, *ep;
1007 1.7 itojun int l;
1008 1.7 itojun
1009 1.7 itojun p = (const char *)sa;
1010 1.7 itojun ep = p + sa->sa_len;
1011 1.7 itojun p += 2; /* sa_len + sa_family */
1012 1.7 itojun
1013 1.7 itojun l = 0;
1014 1.7 itojun while (p < ep) {
1015 1.7 itojun l += (*p ? 8 : 0); /* estimate */
1016 1.7 itojun p++;
1017 1.7 itojun }
1018 1.7 itojun return l;
1019 1.1 itojun }
1020 1.55 knakahar #endif
1021 1.55 knakahar
1022 1.55 knakahar #ifndef USE_RADIX
1023 1.55 knakahar static int
1024 1.55 knakahar mask_match(const struct encaptab *ep,
1025 1.55 knakahar const struct sockaddr *sp,
1026 1.55 knakahar const struct sockaddr *dp)
1027 1.55 knakahar {
1028 1.55 knakahar struct sockaddr_storage s;
1029 1.55 knakahar struct sockaddr_storage d;
1030 1.55 knakahar int i;
1031 1.55 knakahar const u_int8_t *p, *q;
1032 1.55 knakahar u_int8_t *r;
1033 1.55 knakahar int matchlen;
1034 1.55 knakahar
1035 1.55 knakahar KASSERTMSG(ep->func == NULL, "wrong encaptab passed to mask_match");
1036 1.55 knakahar
1037 1.55 knakahar if (sp->sa_len > sizeof(s) || dp->sa_len > sizeof(d))
1038 1.55 knakahar return 0;
1039 1.55 knakahar if (sp->sa_family != ep->af || dp->sa_family != ep->af)
1040 1.55 knakahar return 0;
1041 1.55 knakahar if (sp->sa_len != ep->src->sa_len || dp->sa_len != ep->dst->sa_len)
1042 1.55 knakahar return 0;
1043 1.55 knakahar
1044 1.55 knakahar matchlen = 0;
1045 1.55 knakahar
1046 1.55 knakahar p = (const u_int8_t *)sp;
1047 1.55 knakahar q = (const u_int8_t *)ep->srcmask;
1048 1.55 knakahar r = (u_int8_t *)&s;
1049 1.55 knakahar for (i = 0 ; i < sp->sa_len; i++) {
1050 1.55 knakahar r[i] = p[i] & q[i];
1051 1.55 knakahar /* XXX estimate */
1052 1.55 knakahar matchlen += (q[i] ? 8 : 0);
1053 1.55 knakahar }
1054 1.55 knakahar
1055 1.55 knakahar p = (const u_int8_t *)dp;
1056 1.55 knakahar q = (const u_int8_t *)ep->dstmask;
1057 1.55 knakahar r = (u_int8_t *)&d;
1058 1.55 knakahar for (i = 0 ; i < dp->sa_len; i++) {
1059 1.55 knakahar r[i] = p[i] & q[i];
1060 1.55 knakahar /* XXX rough estimate */
1061 1.55 knakahar matchlen += (q[i] ? 8 : 0);
1062 1.55 knakahar }
1063 1.55 knakahar
1064 1.55 knakahar /* need to overwrite len/family portion as we don't compare them */
1065 1.55 knakahar s.ss_len = sp->sa_len;
1066 1.55 knakahar s.ss_family = sp->sa_family;
1067 1.55 knakahar d.ss_len = dp->sa_len;
1068 1.55 knakahar d.ss_family = dp->sa_family;
1069 1.55 knakahar
1070 1.55 knakahar if (memcmp(&s, ep->src, ep->src->sa_len) == 0 &&
1071 1.55 knakahar memcmp(&d, ep->dst, ep->dst->sa_len) == 0) {
1072 1.55 knakahar return matchlen;
1073 1.55 knakahar } else
1074 1.55 knakahar return 0;
1075 1.55 knakahar }
1076 1.55 knakahar #endif
1077 1.1 itojun
1078 1.1 itojun static void
1079 1.23 perry encap_fillarg(struct mbuf *m, const struct encaptab *ep)
1080 1.1 itojun {
1081 1.12 itojun struct m_tag *mtag;
1082 1.1 itojun
1083 1.12 itojun mtag = m_tag_get(PACKET_TAG_ENCAP, sizeof(void *), M_NOWAIT);
1084 1.12 itojun if (mtag) {
1085 1.12 itojun *(void **)(mtag + 1) = ep->arg;
1086 1.12 itojun m_tag_prepend(m, mtag);
1087 1.1 itojun }
1088 1.1 itojun }
1089 1.1 itojun
1090 1.1 itojun void *
1091 1.23 perry encap_getarg(struct mbuf *m)
1092 1.1 itojun {
1093 1.1 itojun void *p;
1094 1.12 itojun struct m_tag *mtag;
1095 1.1 itojun
1096 1.1 itojun p = NULL;
1097 1.12 itojun mtag = m_tag_find(m, PACKET_TAG_ENCAP, NULL);
1098 1.12 itojun if (mtag != NULL) {
1099 1.13 itojun p = *(void **)(mtag + 1);
1100 1.12 itojun m_tag_delete(m, mtag);
1101 1.1 itojun }
1102 1.1 itojun return p;
1103 1.1 itojun }
1104 1.54 knakahar
1105 1.59 knakahar int
1106 1.54 knakahar encap_lock_enter(void)
1107 1.54 knakahar {
1108 1.59 knakahar int error;
1109 1.59 knakahar
1110 1.59 knakahar mutex_enter(&encap_whole.lock);
1111 1.59 knakahar while (encap_whole.busy != NULL) {
1112 1.59 knakahar error = cv_wait_sig(&encap_whole.cv, &encap_whole.lock);
1113 1.59 knakahar if (error) {
1114 1.59 knakahar mutex_exit(&encap_whole.lock);
1115 1.59 knakahar return error;
1116 1.59 knakahar }
1117 1.59 knakahar }
1118 1.59 knakahar KASSERT(encap_whole.busy == NULL);
1119 1.59 knakahar encap_whole.busy = curlwp;
1120 1.59 knakahar mutex_exit(&encap_whole.lock);
1121 1.54 knakahar
1122 1.59 knakahar return 0;
1123 1.54 knakahar }
1124 1.54 knakahar
1125 1.54 knakahar void
1126 1.54 knakahar encap_lock_exit(void)
1127 1.54 knakahar {
1128 1.54 knakahar
1129 1.59 knakahar mutex_enter(&encap_whole.lock);
1130 1.59 knakahar KASSERT(encap_whole.busy == curlwp);
1131 1.59 knakahar encap_whole.busy = NULL;
1132 1.59 knakahar cv_broadcast(&encap_whole.cv);
1133 1.59 knakahar mutex_exit(&encap_whole.lock);
1134 1.54 knakahar }
1135 1.56 knakahar
1136 1.56 knakahar bool
1137 1.56 knakahar encap_lock_held(void)
1138 1.56 knakahar {
1139 1.56 knakahar
1140 1.59 knakahar return (encap_whole.busy == curlwp);
1141 1.56 knakahar }
1142