ipsec.c revision 1.26.2.3 1 1.26.2.3 yamt /* $NetBSD: ipsec.c,v 1.26.2.3 2007/05/07 10:56:07 yamt Exp $ */
2 1.1 jonathan /* $FreeBSD: /usr/local/www/cvsroot/FreeBSD/src/sys/netipsec/ipsec.c,v 1.2.2.2 2003/07/01 01:38:13 sam Exp $ */
3 1.1 jonathan /* $KAME: ipsec.c,v 1.103 2001/05/24 07:14:18 sakane Exp $ */
4 1.1 jonathan
5 1.1 jonathan /*
6 1.1 jonathan * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
7 1.1 jonathan * All rights reserved.
8 1.1 jonathan *
9 1.1 jonathan * Redistribution and use in source and binary forms, with or without
10 1.1 jonathan * modification, are permitted provided that the following conditions
11 1.1 jonathan * are met:
12 1.1 jonathan * 1. Redistributions of source code must retain the above copyright
13 1.26 degroote * notice, this list of conditions and the following disclaimer.
14 1.1 jonathan * 2. Redistributions in binary form must reproduce the above copyright
15 1.26 degroote * notice, this list of conditions and the following disclaimer in the
16 1.26 degroote * documentation and/or other materials provided with the distribution.
17 1.1 jonathan * 3. Neither the name of the project nor the names of its contributors
18 1.26 degroote * may be used to endorse or promote products derived from this software
19 1.26 degroote * without specific prior written permission.
20 1.1 jonathan *
21 1.1 jonathan * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
22 1.1 jonathan * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 1.1 jonathan * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 1.1 jonathan * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
25 1.1 jonathan * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 1.1 jonathan * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 1.1 jonathan * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 1.1 jonathan * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 1.1 jonathan * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 1.1 jonathan * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 1.1 jonathan * SUCH DAMAGE.
32 1.1 jonathan */
33 1.1 jonathan
34 1.1 jonathan #include <sys/cdefs.h>
35 1.26.2.3 yamt __KERNEL_RCSID(0, "$NetBSD: ipsec.c,v 1.26.2.3 2007/05/07 10:56:07 yamt Exp $");
36 1.1 jonathan
37 1.1 jonathan /*
38 1.1 jonathan * IPsec controller part.
39 1.1 jonathan */
40 1.1 jonathan
41 1.1 jonathan #include "opt_inet.h"
42 1.2 jonathan #ifdef __FreeBSD__
43 1.1 jonathan #include "opt_inet6.h"
44 1.2 jonathan #endif
45 1.1 jonathan #include "opt_ipsec.h"
46 1.1 jonathan
47 1.1 jonathan #include <sys/param.h>
48 1.1 jonathan #include <sys/systm.h>
49 1.1 jonathan #include <sys/malloc.h>
50 1.1 jonathan #include <sys/mbuf.h>
51 1.1 jonathan #include <sys/domain.h>
52 1.1 jonathan #include <sys/protosw.h>
53 1.1 jonathan #include <sys/socket.h>
54 1.1 jonathan #include <sys/socketvar.h>
55 1.1 jonathan #include <sys/errno.h>
56 1.1 jonathan #include <sys/time.h>
57 1.1 jonathan #include <sys/kernel.h>
58 1.1 jonathan #include <sys/syslog.h>
59 1.1 jonathan #include <sys/sysctl.h>
60 1.1 jonathan #include <sys/proc.h>
61 1.1 jonathan
62 1.1 jonathan #include <net/if.h>
63 1.1 jonathan #include <net/route.h>
64 1.1 jonathan
65 1.1 jonathan #include <netinet/in.h>
66 1.1 jonathan #include <netinet/in_systm.h>
67 1.1 jonathan #include <netinet/ip.h>
68 1.1 jonathan #include <netinet/ip_var.h>
69 1.1 jonathan #include <netinet/in_var.h>
70 1.1 jonathan #include <netinet/udp.h>
71 1.1 jonathan #include <netinet/udp_var.h>
72 1.1 jonathan #include <netinet/tcp.h>
73 1.1 jonathan #include <netinet/udp.h>
74 1.1 jonathan
75 1.1 jonathan #include <netinet/ip6.h>
76 1.1 jonathan #ifdef INET6
77 1.1 jonathan #include <netinet6/ip6_var.h>
78 1.1 jonathan #endif
79 1.1 jonathan #include <netinet/in_pcb.h>
80 1.1 jonathan #ifdef INET6
81 1.5 jonathan #include <netinet6/in6_pcb.h>
82 1.1 jonathan #include <netinet/icmp6.h>
83 1.1 jonathan #endif
84 1.1 jonathan
85 1.1 jonathan #include <netipsec/ipsec.h>
86 1.13 jonathan #include <netipsec/ipsec_var.h>
87 1.1 jonathan #ifdef INET6
88 1.1 jonathan #include <netipsec/ipsec6.h>
89 1.1 jonathan #endif
90 1.1 jonathan #include <netipsec/ah_var.h>
91 1.1 jonathan #include <netipsec/esp_var.h>
92 1.1 jonathan #include <netipsec/ipcomp.h> /*XXX*/
93 1.1 jonathan #include <netipsec/ipcomp_var.h>
94 1.1 jonathan
95 1.4 tls #include <netipsec/key.h>
96 1.4 tls #include <netipsec/keydb.h>
97 1.4 tls #include <netipsec/key_debug.h>
98 1.1 jonathan
99 1.1 jonathan #include <netipsec/xform.h>
100 1.1 jonathan
101 1.1 jonathan #include <netipsec/ipsec_osdep.h>
102 1.1 jonathan
103 1.1 jonathan #include <net/net_osdep.h>
104 1.1 jonathan
105 1.1 jonathan #ifdef IPSEC_DEBUG
106 1.1 jonathan int ipsec_debug = 1;
107 1.21 rpaulo
108 1.26 degroote /*
109 1.21 rpaulo * When set to 1, IPsec will send packets with the same sequence number.
110 1.21 rpaulo * This allows to verify if the other side has proper replay attacks detection.
111 1.21 rpaulo */
112 1.21 rpaulo int ipsec_replay = 0;
113 1.21 rpaulo
114 1.21 rpaulo /*
115 1.21 rpaulo * When set 1, IPsec will send packets with corrupted HMAC.
116 1.21 rpaulo * This allows to verify if the other side properly detects modified packets.
117 1.21 rpaulo */
118 1.21 rpaulo int ipsec_integrity = 0;
119 1.1 jonathan #else
120 1.1 jonathan int ipsec_debug = 0;
121 1.1 jonathan #endif
122 1.1 jonathan
123 1.1 jonathan /* NB: name changed so netstat doesn't use it */
124 1.1 jonathan struct newipsecstat newipsecstat;
125 1.1 jonathan int ip4_ah_offsetmask = 0; /* maybe IP_DF? */
126 1.18 christos int ip4_ipsec_dfbit = 2; /* DF bit on encap. 0: clear 1: set 2: copy */
127 1.1 jonathan int ip4_esp_trans_deflev = IPSEC_LEVEL_USE;
128 1.1 jonathan int ip4_esp_net_deflev = IPSEC_LEVEL_USE;
129 1.1 jonathan int ip4_ah_trans_deflev = IPSEC_LEVEL_USE;
130 1.1 jonathan int ip4_ah_net_deflev = IPSEC_LEVEL_USE;
131 1.1 jonathan struct secpolicy ip4_def_policy;
132 1.1 jonathan int ip4_ipsec_ecn = 0; /* ECN ignore(-1)/forbidden(0)/allowed(1) */
133 1.1 jonathan int ip4_esp_randpad = -1;
134 1.9 thorpej
135 1.9 thorpej #ifdef __NetBSD__
136 1.9 thorpej u_int ipsec_spdgen = 1; /* SPD generation # */
137 1.9 thorpej
138 1.9 thorpej static struct secpolicy *ipsec_checkpcbcache __P((struct mbuf *,
139 1.9 thorpej struct inpcbpolicy *, int));
140 1.9 thorpej static int ipsec_fillpcbcache __P((struct inpcbpolicy *, struct mbuf *,
141 1.9 thorpej struct secpolicy *, int));
142 1.9 thorpej static int ipsec_invalpcbcache __P((struct inpcbpolicy *, int));
143 1.9 thorpej #endif /* __NetBSD__ */
144 1.9 thorpej
145 1.1 jonathan /*
146 1.1 jonathan * Crypto support requirements:
147 1.1 jonathan *
148 1.1 jonathan * 1 require hardware support
149 1.1 jonathan * -1 require software support
150 1.1 jonathan * 0 take anything
151 1.1 jonathan */
152 1.1 jonathan int crypto_support = 0;
153 1.1 jonathan
154 1.5 jonathan static struct secpolicy *ipsec_getpolicybysock(struct mbuf *, u_int,
155 1.5 jonathan PCB_T *, int *);
156 1.5 jonathan
157 1.1 jonathan #ifdef __FreeBSD__
158 1.1 jonathan SYSCTL_DECL(_net_inet_ipsec);
159 1.1 jonathan
160 1.1 jonathan /* net.inet.ipsec */
161 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_DEF_POLICY,
162 1.1 jonathan def_policy, CTLFLAG_RW, &ip4_def_policy.policy, 0, "");
163 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_DEF_ESP_TRANSLEV, esp_trans_deflev,
164 1.1 jonathan CTLFLAG_RW, &ip4_esp_trans_deflev, 0, "");
165 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_DEF_ESP_NETLEV, esp_net_deflev,
166 1.1 jonathan CTLFLAG_RW, &ip4_esp_net_deflev, 0, "");
167 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_DEF_AH_TRANSLEV, ah_trans_deflev,
168 1.1 jonathan CTLFLAG_RW, &ip4_ah_trans_deflev, 0, "");
169 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_DEF_AH_NETLEV, ah_net_deflev,
170 1.1 jonathan CTLFLAG_RW, &ip4_ah_net_deflev, 0, "");
171 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_AH_CLEARTOS,
172 1.26.2.2 yamt ah_cleartos, CTLFLAG_RW, &ip4_ah_cleartos, 0, "");
173 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_AH_OFFSETMASK,
174 1.1 jonathan ah_offsetmask, CTLFLAG_RW, &ip4_ah_offsetmask, 0, "");
175 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_DFBIT,
176 1.1 jonathan dfbit, CTLFLAG_RW, &ip4_ipsec_dfbit, 0, "");
177 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_ECN,
178 1.1 jonathan ecn, CTLFLAG_RW, &ip4_ipsec_ecn, 0, "");
179 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_DEBUG,
180 1.1 jonathan debug, CTLFLAG_RW, &ipsec_debug, 0, "");
181 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, IPSECCTL_ESP_RANDPAD,
182 1.1 jonathan esp_randpad, CTLFLAG_RW, &ip4_esp_randpad, 0, "");
183 1.1 jonathan SYSCTL_INT(_net_inet_ipsec, OID_AUTO,
184 1.1 jonathan crypto_support, CTLFLAG_RW, &crypto_support,0, "");
185 1.1 jonathan SYSCTL_STRUCT(_net_inet_ipsec, OID_AUTO,
186 1.1 jonathan ipsecstats, CTLFLAG_RD, &newipsecstat, newipsecstat, "");
187 1.21 rpaulo SYSCTL_INT(_net_inet_ipsec, OID_AUTO, test_replay, CTLFLAG_RW, &ipsec_replay, 0,
188 1.26 degroote "Emulate replay attack");
189 1.21 rpaulo SYSCTL_INT(_net_inet_ipsec, OID_AUTO, test_integrity, CTLFLAG_RW,
190 1.26 degroote &ipsec_integrity, 0, "Emulate man-in-the-middle attack");
191 1.4 tls #endif /* __FreeBSD__ */
192 1.1 jonathan
193 1.1 jonathan #ifdef INET6
194 1.1 jonathan int ip6_esp_trans_deflev = IPSEC_LEVEL_USE;
195 1.1 jonathan int ip6_esp_net_deflev = IPSEC_LEVEL_USE;
196 1.1 jonathan int ip6_ah_trans_deflev = IPSEC_LEVEL_USE;
197 1.1 jonathan int ip6_ah_net_deflev = IPSEC_LEVEL_USE;
198 1.5 jonathan struct secpolicy ip6_def_policy;
199 1.1 jonathan int ip6_ipsec_ecn = 0; /* ECN ignore(-1)/forbidden(0)/allowed(1) */
200 1.1 jonathan int ip6_esp_randpad = -1;
201 1.1 jonathan
202 1.5 jonathan
203 1.5 jonathan #ifdef __FreeBSD__
204 1.1 jonathan SYSCTL_DECL(_net_inet6_ipsec6);
205 1.1 jonathan
206 1.1 jonathan /* net.inet6.ipsec6 */
207 1.1 jonathan #ifdef COMPAT_KAME
208 1.1 jonathan SYSCTL_OID(_net_inet6_ipsec6, IPSECCTL_STATS, stats, CTLFLAG_RD,
209 1.1 jonathan 0,0, compat_ipsecstats_sysctl, "S", "");
210 1.1 jonathan #endif /* COMPAT_KAME */
211 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_DEF_POLICY,
212 1.1 jonathan def_policy, CTLFLAG_RW, &ip4_def_policy.policy, 0, "");
213 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_DEF_ESP_TRANSLEV, esp_trans_deflev,
214 1.1 jonathan CTLFLAG_RW, &ip6_esp_trans_deflev, 0, "");
215 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_DEF_ESP_NETLEV, esp_net_deflev,
216 1.1 jonathan CTLFLAG_RW, &ip6_esp_net_deflev, 0, "");
217 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_DEF_AH_TRANSLEV, ah_trans_deflev,
218 1.1 jonathan CTLFLAG_RW, &ip6_ah_trans_deflev, 0, "");
219 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_DEF_AH_NETLEV, ah_net_deflev,
220 1.1 jonathan CTLFLAG_RW, &ip6_ah_net_deflev, 0, "");
221 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_ECN,
222 1.1 jonathan ecn, CTLFLAG_RW, &ip6_ipsec_ecn, 0, "");
223 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_DEBUG,
224 1.1 jonathan debug, CTLFLAG_RW, &ipsec_debug, 0, "");
225 1.1 jonathan SYSCTL_INT(_net_inet6_ipsec6, IPSECCTL_ESP_RANDPAD,
226 1.1 jonathan esp_randpad, CTLFLAG_RW, &ip6_esp_randpad, 0, "");
227 1.1 jonathan #endif /* INET6 */
228 1.6 jonathan #endif /* __FreeBSD__ */
229 1.1 jonathan
230 1.1 jonathan static int ipsec4_setspidx_inpcb __P((struct mbuf *, struct inpcb *pcb));
231 1.1 jonathan #ifdef INET6
232 1.1 jonathan static int ipsec6_setspidx_in6pcb __P((struct mbuf *, struct in6pcb *pcb));
233 1.1 jonathan #endif
234 1.1 jonathan static int ipsec_setspidx __P((struct mbuf *, struct secpolicyindex *, int));
235 1.1 jonathan static void ipsec4_get_ulp __P((struct mbuf *m, struct secpolicyindex *, int));
236 1.1 jonathan static int ipsec4_setspidx_ipaddr __P((struct mbuf *, struct secpolicyindex *));
237 1.1 jonathan #ifdef INET6
238 1.1 jonathan static void ipsec6_get_ulp __P((struct mbuf *m, struct secpolicyindex *, int));
239 1.1 jonathan static int ipsec6_setspidx_ipaddr __P((struct mbuf *, struct secpolicyindex *));
240 1.1 jonathan #endif
241 1.1 jonathan static void ipsec_delpcbpolicy __P((struct inpcbpolicy *));
242 1.1 jonathan static struct secpolicy *ipsec_deepcopy_policy __P((struct secpolicy *src));
243 1.1 jonathan static int ipsec_set_policy __P((struct secpolicy **pcb_sp,
244 1.26.2.1 rmind int optname, void *request, size_t len, int priv));
245 1.1 jonathan static int ipsec_get_policy __P((struct secpolicy *pcb_sp, struct mbuf **mp));
246 1.1 jonathan static void vshiftl __P((unsigned char *, int, int));
247 1.1 jonathan static size_t ipsec_hdrsiz __P((struct secpolicy *));
248 1.1 jonathan
249 1.9 thorpej #ifdef __NetBSD__
250 1.9 thorpej /*
251 1.9 thorpej * Try to validate and use cached policy on a PCB.
252 1.9 thorpej */
253 1.9 thorpej static struct secpolicy *
254 1.9 thorpej ipsec_checkpcbcache(struct mbuf *m, struct inpcbpolicy *pcbsp, int dir)
255 1.9 thorpej {
256 1.9 thorpej struct secpolicyindex spidx;
257 1.9 thorpej
258 1.9 thorpej switch (dir) {
259 1.9 thorpej case IPSEC_DIR_INBOUND:
260 1.9 thorpej case IPSEC_DIR_OUTBOUND:
261 1.9 thorpej case IPSEC_DIR_ANY:
262 1.9 thorpej break;
263 1.9 thorpej default:
264 1.9 thorpej return NULL;
265 1.9 thorpej }
266 1.9 thorpej #ifdef DIAGNOSTIC
267 1.13 jonathan if (pcbsp == NULL) {
268 1.13 jonathan printf("ipsec_checkpcbcache: NULL pcbsp\n");
269 1.13 jonathan /* XXX panic? */
270 1.13 jonathan return NULL;
271 1.13 jonathan }
272 1.13 jonathan #endif
273 1.13 jonathan
274 1.13 jonathan #ifdef DIAGNOSTIC
275 1.9 thorpej if (dir >= sizeof(pcbsp->sp_cache)/sizeof(pcbsp->sp_cache[0]))
276 1.9 thorpej panic("dir too big in ipsec_checkpcbcache");
277 1.9 thorpej #endif
278 1.9 thorpej /* SPD table change invalidate all the caches. */
279 1.9 thorpej if (ipsec_spdgen != pcbsp->sp_cache[dir].cachegen) {
280 1.9 thorpej ipsec_invalpcbcache(pcbsp, dir);
281 1.9 thorpej return NULL;
282 1.9 thorpej }
283 1.9 thorpej if (!pcbsp->sp_cache[dir].cachesp)
284 1.9 thorpej return NULL;
285 1.9 thorpej if (pcbsp->sp_cache[dir].cachesp->state != IPSEC_SPSTATE_ALIVE) {
286 1.9 thorpej ipsec_invalpcbcache(pcbsp, dir);
287 1.9 thorpej return NULL;
288 1.9 thorpej }
289 1.9 thorpej if ((pcbsp->sp_cacheflags & IPSEC_PCBSP_CONNECTED) == 0) {
290 1.9 thorpej if (!pcbsp->sp_cache[dir].cachesp)
291 1.9 thorpej return NULL;
292 1.9 thorpej if (ipsec_setspidx(m, &spidx, 1) != 0)
293 1.9 thorpej return NULL;
294 1.26.2.2 yamt
295 1.26.2.2 yamt /*
296 1.26.2.2 yamt * We have to make an exact match here since the cached rule
297 1.26.2.2 yamt * might have lower priority than a rule that would otherwise
298 1.26.2.2 yamt * have matched the packet.
299 1.26.2.2 yamt */
300 1.26.2.2 yamt
301 1.26.2.2 yamt if (bcmp(&pcbsp->sp_cache[dir].cacheidx, &spidx, sizeof(spidx)))
302 1.26.2.2 yamt return NULL;
303 1.26.2.2 yamt
304 1.9 thorpej } else {
305 1.9 thorpej /*
306 1.9 thorpej * The pcb is connected, and the L4 code is sure that:
307 1.9 thorpej * - outgoing side uses inp_[lf]addr
308 1.9 thorpej * - incoming side looks up policy after inpcb lookup
309 1.9 thorpej * and address pair is know to be stable. We do not need
310 1.9 thorpej * to generate spidx again, nor check the address match again.
311 1.9 thorpej *
312 1.9 thorpej * For IPv4/v6 SOCK_STREAM sockets, this assumptions holds
313 1.9 thorpej * and there are calls to ipsec_pcbconn() from in_pcbconnect().
314 1.9 thorpej */
315 1.9 thorpej }
316 1.9 thorpej
317 1.23 kardel pcbsp->sp_cache[dir].cachesp->lastused = time_second;
318 1.9 thorpej pcbsp->sp_cache[dir].cachesp->refcnt++;
319 1.9 thorpej KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
320 1.9 thorpej printf("DP ipsec_checkpcbcache cause refcnt++:%d SP:%p\n",
321 1.9 thorpej pcbsp->sp_cache[dir].cachesp->refcnt,
322 1.9 thorpej pcbsp->sp_cache[dir].cachesp));
323 1.9 thorpej return pcbsp->sp_cache[dir].cachesp;
324 1.9 thorpej }
325 1.9 thorpej
326 1.9 thorpej static int
327 1.9 thorpej ipsec_fillpcbcache(struct inpcbpolicy *pcbsp, struct mbuf *m,
328 1.26 degroote struct secpolicy *sp, int dir)
329 1.9 thorpej {
330 1.9 thorpej
331 1.9 thorpej switch (dir) {
332 1.9 thorpej case IPSEC_DIR_INBOUND:
333 1.9 thorpej case IPSEC_DIR_OUTBOUND:
334 1.9 thorpej break;
335 1.9 thorpej default:
336 1.9 thorpej return EINVAL;
337 1.9 thorpej }
338 1.9 thorpej #ifdef DIAGNOSTIC
339 1.9 thorpej if (dir >= sizeof(pcbsp->sp_cache)/sizeof(pcbsp->sp_cache[0]))
340 1.9 thorpej panic("dir too big in ipsec_fillpcbcache");
341 1.9 thorpej #endif
342 1.9 thorpej
343 1.9 thorpej if (pcbsp->sp_cache[dir].cachesp)
344 1.9 thorpej KEY_FREESP(&pcbsp->sp_cache[dir].cachesp);
345 1.9 thorpej pcbsp->sp_cache[dir].cachesp = NULL;
346 1.9 thorpej pcbsp->sp_cache[dir].cachehint = IPSEC_PCBHINT_MAYBE;
347 1.9 thorpej if (ipsec_setspidx(m, &pcbsp->sp_cache[dir].cacheidx, 1) != 0) {
348 1.9 thorpej return EINVAL;
349 1.9 thorpej }
350 1.9 thorpej pcbsp->sp_cache[dir].cachesp = sp;
351 1.9 thorpej if (pcbsp->sp_cache[dir].cachesp) {
352 1.9 thorpej pcbsp->sp_cache[dir].cachesp->refcnt++;
353 1.9 thorpej KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
354 1.9 thorpej printf("DP ipsec_fillpcbcache cause refcnt++:%d SP:%p\n",
355 1.9 thorpej pcbsp->sp_cache[dir].cachesp->refcnt,
356 1.9 thorpej pcbsp->sp_cache[dir].cachesp));
357 1.9 thorpej
358 1.9 thorpej /*
359 1.9 thorpej * If the PCB is connected, we can remember a hint to
360 1.9 thorpej * possibly short-circuit IPsec processing in other places.
361 1.9 thorpej */
362 1.9 thorpej if (pcbsp->sp_cacheflags & IPSEC_PCBSP_CONNECTED) {
363 1.9 thorpej switch (pcbsp->sp_cache[dir].cachesp->policy) {
364 1.9 thorpej case IPSEC_POLICY_NONE:
365 1.9 thorpej case IPSEC_POLICY_BYPASS:
366 1.9 thorpej pcbsp->sp_cache[dir].cachehint =
367 1.26 degroote IPSEC_PCBHINT_NO;
368 1.9 thorpej break;
369 1.9 thorpej default:
370 1.9 thorpej pcbsp->sp_cache[dir].cachehint =
371 1.26 degroote IPSEC_PCBHINT_YES;
372 1.9 thorpej }
373 1.9 thorpej }
374 1.9 thorpej }
375 1.9 thorpej pcbsp->sp_cache[dir].cachegen = ipsec_spdgen;
376 1.9 thorpej
377 1.9 thorpej return 0;
378 1.9 thorpej }
379 1.9 thorpej
380 1.9 thorpej static int
381 1.9 thorpej ipsec_invalpcbcache(struct inpcbpolicy *pcbsp, int dir)
382 1.9 thorpej {
383 1.9 thorpej int i;
384 1.9 thorpej
385 1.9 thorpej for (i = IPSEC_DIR_INBOUND; i <= IPSEC_DIR_OUTBOUND; i++) {
386 1.9 thorpej if (dir != IPSEC_DIR_ANY && i != dir)
387 1.9 thorpej continue;
388 1.9 thorpej if (pcbsp->sp_cache[i].cachesp)
389 1.9 thorpej KEY_FREESP(&pcbsp->sp_cache[i].cachesp);
390 1.9 thorpej pcbsp->sp_cache[i].cachesp = NULL;
391 1.9 thorpej pcbsp->sp_cache[i].cachehint = IPSEC_PCBHINT_MAYBE;
392 1.9 thorpej pcbsp->sp_cache[i].cachegen = 0;
393 1.9 thorpej bzero(&pcbsp->sp_cache[i].cacheidx,
394 1.26 degroote sizeof(pcbsp->sp_cache[i].cacheidx));
395 1.9 thorpej }
396 1.9 thorpej return 0;
397 1.9 thorpej }
398 1.9 thorpej
399 1.9 thorpej void
400 1.9 thorpej ipsec_pcbconn(struct inpcbpolicy *pcbsp)
401 1.9 thorpej {
402 1.9 thorpej
403 1.9 thorpej pcbsp->sp_cacheflags |= IPSEC_PCBSP_CONNECTED;
404 1.9 thorpej ipsec_invalpcbcache(pcbsp, IPSEC_DIR_ANY);
405 1.9 thorpej }
406 1.9 thorpej
407 1.9 thorpej void
408 1.9 thorpej ipsec_pcbdisconn(struct inpcbpolicy *pcbsp)
409 1.9 thorpej {
410 1.9 thorpej
411 1.9 thorpej pcbsp->sp_cacheflags &= ~IPSEC_PCBSP_CONNECTED;
412 1.9 thorpej ipsec_invalpcbcache(pcbsp, IPSEC_DIR_ANY);
413 1.9 thorpej }
414 1.9 thorpej
415 1.9 thorpej void
416 1.9 thorpej ipsec_invalpcbcacheall(void)
417 1.9 thorpej {
418 1.9 thorpej
419 1.9 thorpej if (ipsec_spdgen == UINT_MAX)
420 1.9 thorpej ipsec_spdgen = 1;
421 1.9 thorpej else
422 1.9 thorpej ipsec_spdgen++;
423 1.9 thorpej }
424 1.9 thorpej #endif /* __NetBSD__ */
425 1.9 thorpej
426 1.1 jonathan /*
427 1.1 jonathan * Return a held reference to the default SP.
428 1.1 jonathan */
429 1.1 jonathan static struct secpolicy *
430 1.26.2.3 yamt key_allocsp_default(int af, const char* where, int tag)
431 1.1 jonathan {
432 1.1 jonathan struct secpolicy *sp;
433 1.1 jonathan
434 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
435 1.1 jonathan printf("DP key_allocsp_default from %s:%u\n", where, tag));
436 1.1 jonathan
437 1.26.2.3 yamt switch(af) {
438 1.26.2.3 yamt case AF_INET:
439 1.26.2.3 yamt sp = &ip4_def_policy;
440 1.26.2.3 yamt break;
441 1.26.2.3 yamt #ifdef INET6
442 1.26.2.3 yamt case AF_INET6:
443 1.26.2.3 yamt sp = &ip6_def_policy;
444 1.26.2.3 yamt break;
445 1.26.2.3 yamt #endif
446 1.26.2.3 yamt default:
447 1.26.2.3 yamt KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
448 1.26.2.3 yamt printf("key_allocsp_default called with a bad family : %d\n",
449 1.26.2.3 yamt af));
450 1.26.2.3 yamt return NULL;
451 1.26.2.3 yamt }
452 1.26.2.3 yamt
453 1.1 jonathan if (sp->policy != IPSEC_POLICY_DISCARD &&
454 1.26 degroote sp->policy != IPSEC_POLICY_NONE) {
455 1.1 jonathan ipseclog((LOG_INFO, "fixed system default policy: %d->%d\n",
456 1.26 degroote sp->policy, IPSEC_POLICY_NONE));
457 1.1 jonathan sp->policy = IPSEC_POLICY_NONE;
458 1.1 jonathan }
459 1.1 jonathan sp->refcnt++;
460 1.1 jonathan
461 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
462 1.1 jonathan printf("DP key_allocsp_default returns SP:%p (%u)\n",
463 1.1 jonathan sp, sp->refcnt));
464 1.1 jonathan return sp;
465 1.1 jonathan }
466 1.26.2.3 yamt #define KEY_ALLOCSP_DEFAULT(af) \
467 1.26.2.3 yamt key_allocsp_default((af),__FILE__, __LINE__)
468 1.1 jonathan
469 1.1 jonathan /*
470 1.1 jonathan * For OUTBOUND packet having a socket. Searching SPD for packet,
471 1.1 jonathan * and return a pointer to SP.
472 1.1 jonathan * OUT: NULL: no apropreate SP found, the following value is set to error.
473 1.1 jonathan * 0 : bypass
474 1.1 jonathan * EACCES : discard packet.
475 1.1 jonathan * ENOENT : ipsec_acquire() in progress, maybe.
476 1.7 wiz * others : error occurred.
477 1.1 jonathan * others: a pointer to SP
478 1.1 jonathan *
479 1.20 wiz * NOTE: IPv6 mapped address concern is implemented here.
480 1.1 jonathan */
481 1.1 jonathan struct secpolicy *
482 1.1 jonathan ipsec_getpolicy(struct tdb_ident *tdbi, u_int dir)
483 1.1 jonathan {
484 1.1 jonathan struct secpolicy *sp;
485 1.1 jonathan
486 1.1 jonathan IPSEC_ASSERT(tdbi != NULL, ("ipsec_getpolicy: null tdbi"));
487 1.1 jonathan IPSEC_ASSERT(dir == IPSEC_DIR_INBOUND || dir == IPSEC_DIR_OUTBOUND,
488 1.1 jonathan ("ipsec_getpolicy: invalid direction %u", dir));
489 1.1 jonathan
490 1.1 jonathan sp = KEY_ALLOCSP2(tdbi->spi, &tdbi->dst, tdbi->proto, dir);
491 1.1 jonathan if (sp == NULL) /*XXX????*/
492 1.26.2.3 yamt sp = KEY_ALLOCSP_DEFAULT(tdbi->dst.sa.sa_family);
493 1.1 jonathan IPSEC_ASSERT(sp != NULL, ("ipsec_getpolicy: null SP"));
494 1.1 jonathan return sp;
495 1.1 jonathan }
496 1.1 jonathan
497 1.1 jonathan /*
498 1.1 jonathan * For OUTBOUND packet having a socket. Searching SPD for packet,
499 1.1 jonathan * and return a pointer to SP.
500 1.1 jonathan * OUT: NULL: no apropreate SP found, the following value is set to error.
501 1.1 jonathan * 0 : bypass
502 1.1 jonathan * EACCES : discard packet.
503 1.1 jonathan * ENOENT : ipsec_acquire() in progress, maybe.
504 1.7 wiz * others : error occurred.
505 1.1 jonathan * others: a pointer to SP
506 1.1 jonathan *
507 1.20 wiz * NOTE: IPv6 mapped address concern is implemented here.
508 1.1 jonathan */
509 1.5 jonathan static struct secpolicy *
510 1.1 jonathan ipsec_getpolicybysock(m, dir, inp, error)
511 1.1 jonathan struct mbuf *m;
512 1.1 jonathan u_int dir;
513 1.5 jonathan PCB_T *inp;
514 1.1 jonathan int *error;
515 1.1 jonathan {
516 1.1 jonathan struct inpcbpolicy *pcbsp = NULL;
517 1.1 jonathan struct secpolicy *currsp = NULL; /* policy on socket */
518 1.1 jonathan struct secpolicy *sp;
519 1.1 jonathan int af;
520 1.1 jonathan
521 1.1 jonathan IPSEC_ASSERT(m != NULL, ("ipsec_getpolicybysock: null mbuf"));
522 1.1 jonathan IPSEC_ASSERT(inp != NULL, ("ipsec_getpolicybysock: null inpcb"));
523 1.1 jonathan IPSEC_ASSERT(error != NULL, ("ipsec_getpolicybysock: null error"));
524 1.1 jonathan IPSEC_ASSERT(dir == IPSEC_DIR_INBOUND || dir == IPSEC_DIR_OUTBOUND,
525 1.1 jonathan ("ipsec_getpolicybysock: invalid direction %u", dir));
526 1.1 jonathan
527 1.9 thorpej IPSEC_ASSERT(PCB_SOCKET(inp) != NULL,
528 1.26 degroote ("ipsec_getppolicybysock: null socket\n"));
529 1.5 jonathan
530 1.5 jonathan /* XXX FIXME inpcb/in6pcb vs socket*/
531 1.5 jonathan af = PCB_FAMILY(inp);
532 1.1 jonathan IPSEC_ASSERT(af == AF_INET || af == AF_INET6,
533 1.1 jonathan ("ipsec_getpolicybysock: unexpected protocol family %u", af));
534 1.1 jonathan
535 1.9 thorpej #ifdef __NetBSD__
536 1.13 jonathan IPSEC_ASSERT(inp->inph_sp != NULL, ("null PCB policy cache"));
537 1.9 thorpej /* If we have a cached entry, and if it is still valid, use it. */
538 1.9 thorpej ipsecstat.ips_spdcache_lookup++;
539 1.9 thorpej currsp = ipsec_checkpcbcache(m, /*inpcb_hdr*/inp->inph_sp, dir);
540 1.9 thorpej if (currsp) {
541 1.9 thorpej *error = 0;
542 1.9 thorpej return currsp;
543 1.9 thorpej }
544 1.9 thorpej ipsecstat.ips_spdcache_miss++;
545 1.9 thorpej #endif /* __NetBSD__ */
546 1.9 thorpej
547 1.1 jonathan switch (af) {
548 1.5 jonathan case AF_INET: {
549 1.5 jonathan struct inpcb *in4p = PCB_TO_IN4PCB(inp);
550 1.1 jonathan /* set spidx in pcb */
551 1.5 jonathan *error = ipsec4_setspidx_inpcb(m, in4p);
552 1.5 jonathan pcbsp = in4p->inp_sp;
553 1.1 jonathan break;
554 1.5 jonathan }
555 1.5 jonathan
556 1.5 jonathan #if defined(INET6)
557 1.5 jonathan case AF_INET6: {
558 1.5 jonathan struct in6pcb *in6p = PCB_TO_IN6PCB(inp);
559 1.1 jonathan /* set spidx in pcb */
560 1.5 jonathan *error = ipsec6_setspidx_in6pcb(m, in6p);
561 1.5 jonathan pcbsp = in6p->in6p_sp;
562 1.1 jonathan break;
563 1.5 jonathan }
564 1.1 jonathan #endif
565 1.1 jonathan default:
566 1.1 jonathan *error = EPFNOSUPPORT;
567 1.1 jonathan break;
568 1.1 jonathan }
569 1.1 jonathan if (*error)
570 1.1 jonathan return NULL;
571 1.1 jonathan
572 1.1 jonathan IPSEC_ASSERT(pcbsp != NULL, ("ipsec_getpolicybysock: null pcbsp"));
573 1.1 jonathan switch (dir) {
574 1.1 jonathan case IPSEC_DIR_INBOUND:
575 1.1 jonathan currsp = pcbsp->sp_in;
576 1.1 jonathan break;
577 1.1 jonathan case IPSEC_DIR_OUTBOUND:
578 1.1 jonathan currsp = pcbsp->sp_out;
579 1.1 jonathan break;
580 1.1 jonathan }
581 1.1 jonathan IPSEC_ASSERT(currsp != NULL, ("ipsec_getpolicybysock: null currsp"));
582 1.1 jonathan
583 1.1 jonathan if (pcbsp->priv) { /* when privilieged socket */
584 1.1 jonathan switch (currsp->policy) {
585 1.1 jonathan case IPSEC_POLICY_BYPASS:
586 1.1 jonathan case IPSEC_POLICY_IPSEC:
587 1.1 jonathan currsp->refcnt++;
588 1.1 jonathan sp = currsp;
589 1.1 jonathan break;
590 1.1 jonathan
591 1.1 jonathan case IPSEC_POLICY_ENTRUST:
592 1.1 jonathan /* look for a policy in SPD */
593 1.1 jonathan sp = KEY_ALLOCSP(&currsp->spidx, dir);
594 1.1 jonathan if (sp == NULL) /* no SP found */
595 1.26.2.3 yamt sp = KEY_ALLOCSP_DEFAULT(af);
596 1.1 jonathan break;
597 1.1 jonathan
598 1.1 jonathan default:
599 1.1 jonathan ipseclog((LOG_ERR, "ipsec_getpolicybysock: "
600 1.26 degroote "Invalid policy for PCB %d\n", currsp->policy));
601 1.1 jonathan *error = EINVAL;
602 1.1 jonathan return NULL;
603 1.1 jonathan }
604 1.1 jonathan } else { /* unpriv, SPD has policy */
605 1.1 jonathan sp = KEY_ALLOCSP(&currsp->spidx, dir);
606 1.1 jonathan if (sp == NULL) { /* no SP found */
607 1.1 jonathan switch (currsp->policy) {
608 1.1 jonathan case IPSEC_POLICY_BYPASS:
609 1.1 jonathan ipseclog((LOG_ERR, "ipsec_getpolicybysock: "
610 1.26 degroote "Illegal policy for non-priviliged defined %d\n",
611 1.1 jonathan currsp->policy));
612 1.1 jonathan *error = EINVAL;
613 1.1 jonathan return NULL;
614 1.1 jonathan
615 1.1 jonathan case IPSEC_POLICY_ENTRUST:
616 1.26.2.3 yamt sp = KEY_ALLOCSP_DEFAULT(af);
617 1.1 jonathan break;
618 1.1 jonathan
619 1.1 jonathan case IPSEC_POLICY_IPSEC:
620 1.1 jonathan currsp->refcnt++;
621 1.1 jonathan sp = currsp;
622 1.1 jonathan break;
623 1.1 jonathan
624 1.1 jonathan default:
625 1.1 jonathan ipseclog((LOG_ERR, "ipsec_getpolicybysock: "
626 1.1 jonathan "Invalid policy for PCB %d\n", currsp->policy));
627 1.1 jonathan *error = EINVAL;
628 1.1 jonathan return NULL;
629 1.1 jonathan }
630 1.1 jonathan }
631 1.1 jonathan }
632 1.1 jonathan IPSEC_ASSERT(sp != NULL,
633 1.1 jonathan ("ipsec_getpolicybysock: null SP (priv %u policy %u",
634 1.1 jonathan pcbsp->priv, currsp->policy));
635 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
636 1.1 jonathan printf("DP ipsec_getpolicybysock (priv %u policy %u) allocates "
637 1.26 degroote "SP:%p (refcnt %u)\n", pcbsp->priv, currsp->policy,
638 1.26 degroote sp, sp->refcnt));
639 1.9 thorpej #ifdef __NetBSD__
640 1.9 thorpej ipsec_fillpcbcache(pcbsp, m, sp, dir);
641 1.9 thorpej #endif /* __NetBSD__ */
642 1.1 jonathan return sp;
643 1.1 jonathan }
644 1.1 jonathan
645 1.1 jonathan /*
646 1.1 jonathan * For FORWADING packet or OUTBOUND without a socket. Searching SPD for packet,
647 1.1 jonathan * and return a pointer to SP.
648 1.1 jonathan * OUT: positive: a pointer to the entry for security policy leaf matched.
649 1.1 jonathan * NULL: no apropreate SP found, the following value is set to error.
650 1.1 jonathan * 0 : bypass
651 1.1 jonathan * EACCES : discard packet.
652 1.1 jonathan * ENOENT : ipsec_acquire() in progress, maybe.
653 1.7 wiz * others : error occurred.
654 1.1 jonathan */
655 1.1 jonathan struct secpolicy *
656 1.1 jonathan ipsec_getpolicybyaddr(m, dir, flag, error)
657 1.1 jonathan struct mbuf *m;
658 1.1 jonathan u_int dir;
659 1.1 jonathan int flag;
660 1.1 jonathan int *error;
661 1.1 jonathan {
662 1.1 jonathan struct secpolicyindex spidx;
663 1.1 jonathan struct secpolicy *sp;
664 1.1 jonathan
665 1.1 jonathan IPSEC_ASSERT(m != NULL, ("ipsec_getpolicybyaddr: null mbuf"));
666 1.1 jonathan IPSEC_ASSERT(error != NULL, ("ipsec_getpolicybyaddr: null error"));
667 1.1 jonathan IPSEC_ASSERT(dir == IPSEC_DIR_INBOUND || dir == IPSEC_DIR_OUTBOUND,
668 1.1 jonathan ("ipsec4_getpolicybaddr: invalid direction %u", dir));
669 1.1 jonathan
670 1.1 jonathan sp = NULL;
671 1.1 jonathan if (key_havesp(dir)) {
672 1.1 jonathan /* Make an index to look for a policy. */
673 1.1 jonathan *error = ipsec_setspidx(m, &spidx,
674 1.1 jonathan (flag & IP_FORWARDING) ? 0 : 1);
675 1.1 jonathan if (*error != 0) {
676 1.1 jonathan DPRINTF(("ipsec_getpolicybyaddr: setpidx failed,"
677 1.1 jonathan " dir %u flag %u\n", dir, flag));
678 1.1 jonathan bzero(&spidx, sizeof (spidx));
679 1.1 jonathan return NULL;
680 1.1 jonathan }
681 1.1 jonathan spidx.dir = dir;
682 1.1 jonathan
683 1.1 jonathan sp = KEY_ALLOCSP(&spidx, dir);
684 1.1 jonathan }
685 1.1 jonathan if (sp == NULL) /* no SP found, use system default */
686 1.26.2.3 yamt sp = KEY_ALLOCSP_DEFAULT(spidx.dst.sa.sa_family);
687 1.1 jonathan IPSEC_ASSERT(sp != NULL, ("ipsec_getpolicybyaddr: null SP"));
688 1.1 jonathan return sp;
689 1.1 jonathan }
690 1.1 jonathan
691 1.1 jonathan struct secpolicy *
692 1.1 jonathan ipsec4_checkpolicy(m, dir, flag, error, inp)
693 1.1 jonathan struct mbuf *m;
694 1.1 jonathan u_int dir, flag;
695 1.1 jonathan int *error;
696 1.1 jonathan struct inpcb *inp;
697 1.1 jonathan {
698 1.1 jonathan struct secpolicy *sp;
699 1.1 jonathan
700 1.1 jonathan *error = 0;
701 1.5 jonathan
702 1.5 jonathan
703 1.5 jonathan /* XXX KAME IPv6 calls us with non-null inp but bogus inp_socket? */
704 1.5 jonathan if (inp == NULL || inp->inp_socket == NULL) {
705 1.1 jonathan sp = ipsec_getpolicybyaddr(m, dir, flag, error);
706 1.5 jonathan } else
707 1.5 jonathan sp = ipsec_getpolicybysock(m, dir, IN4PCB_TO_PCB(inp), error);
708 1.1 jonathan if (sp == NULL) {
709 1.1 jonathan IPSEC_ASSERT(*error != 0,
710 1.1 jonathan ("ipsec4_checkpolicy: getpolicy failed w/o error"));
711 1.1 jonathan newipsecstat.ips_out_inval++;
712 1.1 jonathan return NULL;
713 1.1 jonathan }
714 1.1 jonathan IPSEC_ASSERT(*error == 0,
715 1.1 jonathan ("ipsec4_checkpolicy: sp w/ error set to %u", *error));
716 1.1 jonathan switch (sp->policy) {
717 1.1 jonathan case IPSEC_POLICY_ENTRUST:
718 1.1 jonathan default:
719 1.1 jonathan printf("ipsec4_checkpolicy: invalid policy %u\n", sp->policy);
720 1.1 jonathan /* fall thru... */
721 1.1 jonathan case IPSEC_POLICY_DISCARD:
722 1.1 jonathan newipsecstat.ips_out_polvio++;
723 1.1 jonathan *error = -EINVAL; /* packet is discarded by caller */
724 1.1 jonathan break;
725 1.1 jonathan case IPSEC_POLICY_BYPASS:
726 1.1 jonathan case IPSEC_POLICY_NONE:
727 1.1 jonathan KEY_FREESP(&sp);
728 1.1 jonathan sp = NULL; /* NB: force NULL result */
729 1.1 jonathan break;
730 1.1 jonathan case IPSEC_POLICY_IPSEC:
731 1.1 jonathan if (sp->req == NULL) /* acquire an SA */
732 1.1 jonathan *error = key_spdacquire(sp);
733 1.1 jonathan break;
734 1.1 jonathan }
735 1.1 jonathan if (*error != 0) {
736 1.1 jonathan KEY_FREESP(&sp);
737 1.1 jonathan sp = NULL;
738 1.1 jonathan }
739 1.5 jonathan DPRINTF(("ipsecpol: done, sp %p error %d, \n", sp, *error));
740 1.1 jonathan return sp;
741 1.1 jonathan }
742 1.1 jonathan
743 1.26 degroote #ifdef INET6
744 1.26 degroote struct secpolicy *
745 1.26 degroote ipsec6_checkpolicy(m, dir, flag, error, in6p)
746 1.26 degroote struct mbuf *m;
747 1.26 degroote u_int dir, flag;
748 1.26 degroote int *error;
749 1.26 degroote struct in6pcb *in6p;
750 1.26 degroote {
751 1.26 degroote struct secpolicy *sp;
752 1.26 degroote
753 1.26 degroote *error = 0;
754 1.26 degroote
755 1.26 degroote
756 1.26 degroote /* XXX KAME IPv6 calls us with non-null inp but bogus inp_socket? */
757 1.26 degroote if (in6p == NULL || in6p->in6p_socket == NULL) {
758 1.26 degroote sp = ipsec_getpolicybyaddr(m, dir, flag, error);
759 1.26 degroote } else
760 1.26 degroote sp = ipsec_getpolicybysock(m, dir, IN6PCB_TO_PCB(in6p), error);
761 1.26 degroote if (sp == NULL) {
762 1.26 degroote IPSEC_ASSERT(*error != 0,
763 1.26 degroote ("ipsec6_checkpolicy: getpolicy failed w/o error"));
764 1.26 degroote newipsecstat.ips_out_inval++;
765 1.26 degroote return NULL;
766 1.26 degroote }
767 1.26 degroote IPSEC_ASSERT(*error == 0,
768 1.26 degroote ("ipsec6_checkpolicy: sp w/ error set to %u", *error));
769 1.26 degroote switch (sp->policy) {
770 1.26 degroote case IPSEC_POLICY_ENTRUST:
771 1.26 degroote default:
772 1.26 degroote printf("ipsec6_checkpolicy: invalid policy %u\n", sp->policy);
773 1.26 degroote /* fall thru... */
774 1.26 degroote case IPSEC_POLICY_DISCARD:
775 1.26 degroote newipsecstat.ips_out_polvio++;
776 1.26 degroote *error = -EINVAL; /* packet is discarded by caller */
777 1.26 degroote break;
778 1.26 degroote case IPSEC_POLICY_BYPASS:
779 1.26 degroote case IPSEC_POLICY_NONE:
780 1.26 degroote KEY_FREESP(&sp);
781 1.26 degroote sp = NULL; /* NB: force NULL result */
782 1.26 degroote break;
783 1.26 degroote case IPSEC_POLICY_IPSEC:
784 1.26 degroote if (sp->req == NULL) /* acquire an SA */
785 1.26 degroote *error = key_spdacquire(sp);
786 1.26 degroote break;
787 1.26 degroote }
788 1.26 degroote if (*error != 0) {
789 1.26 degroote KEY_FREESP(&sp);
790 1.26 degroote sp = NULL;
791 1.26 degroote }
792 1.26 degroote DPRINTF(("ipsecpol: done, sp %p error %d, \n", sp, *error));
793 1.26 degroote return sp;
794 1.26 degroote }
795 1.26 degroote #endif /* INET6 */
796 1.26 degroote
797 1.1 jonathan static int
798 1.1 jonathan ipsec4_setspidx_inpcb(m, pcb)
799 1.1 jonathan struct mbuf *m;
800 1.1 jonathan struct inpcb *pcb;
801 1.1 jonathan {
802 1.1 jonathan int error;
803 1.1 jonathan
804 1.1 jonathan IPSEC_ASSERT(pcb != NULL, ("ipsec4_setspidx_inpcb: null pcb"));
805 1.1 jonathan IPSEC_ASSERT(pcb->inp_sp != NULL, ("ipsec4_setspidx_inpcb: null inp_sp"));
806 1.1 jonathan IPSEC_ASSERT(pcb->inp_sp->sp_out != NULL && pcb->inp_sp->sp_in != NULL,
807 1.1 jonathan ("ipsec4_setspidx_inpcb: null sp_in || sp_out"));
808 1.1 jonathan
809 1.1 jonathan error = ipsec_setspidx(m, &pcb->inp_sp->sp_in->spidx, 1);
810 1.1 jonathan if (error == 0) {
811 1.1 jonathan pcb->inp_sp->sp_in->spidx.dir = IPSEC_DIR_INBOUND;
812 1.1 jonathan pcb->inp_sp->sp_out->spidx = pcb->inp_sp->sp_in->spidx;
813 1.1 jonathan pcb->inp_sp->sp_out->spidx.dir = IPSEC_DIR_OUTBOUND;
814 1.1 jonathan } else {
815 1.1 jonathan bzero(&pcb->inp_sp->sp_in->spidx,
816 1.1 jonathan sizeof (pcb->inp_sp->sp_in->spidx));
817 1.1 jonathan bzero(&pcb->inp_sp->sp_out->spidx,
818 1.1 jonathan sizeof (pcb->inp_sp->sp_in->spidx));
819 1.1 jonathan }
820 1.1 jonathan return error;
821 1.1 jonathan }
822 1.1 jonathan
823 1.1 jonathan #ifdef INET6
824 1.1 jonathan static int
825 1.1 jonathan ipsec6_setspidx_in6pcb(m, pcb)
826 1.1 jonathan struct mbuf *m;
827 1.1 jonathan struct in6pcb *pcb;
828 1.1 jonathan {
829 1.1 jonathan struct secpolicyindex *spidx;
830 1.1 jonathan int error;
831 1.1 jonathan
832 1.1 jonathan IPSEC_ASSERT(pcb != NULL, ("ipsec6_setspidx_in6pcb: null pcb"));
833 1.1 jonathan IPSEC_ASSERT(pcb->in6p_sp != NULL, ("ipsec6_setspidx_in6pcb: null inp_sp"));
834 1.1 jonathan IPSEC_ASSERT(pcb->in6p_sp->sp_out != NULL && pcb->in6p_sp->sp_in != NULL,
835 1.1 jonathan ("ipsec6_setspidx_in6pcb: null sp_in || sp_out"));
836 1.1 jonathan
837 1.1 jonathan bzero(&pcb->in6p_sp->sp_in->spidx, sizeof(*spidx));
838 1.1 jonathan bzero(&pcb->in6p_sp->sp_out->spidx, sizeof(*spidx));
839 1.1 jonathan
840 1.1 jonathan spidx = &pcb->in6p_sp->sp_in->spidx;
841 1.1 jonathan error = ipsec_setspidx(m, spidx, 1);
842 1.1 jonathan if (error)
843 1.1 jonathan goto bad;
844 1.1 jonathan spidx->dir = IPSEC_DIR_INBOUND;
845 1.1 jonathan
846 1.1 jonathan spidx = &pcb->in6p_sp->sp_out->spidx;
847 1.1 jonathan error = ipsec_setspidx(m, spidx, 1);
848 1.1 jonathan if (error)
849 1.1 jonathan goto bad;
850 1.1 jonathan spidx->dir = IPSEC_DIR_OUTBOUND;
851 1.1 jonathan
852 1.1 jonathan return 0;
853 1.1 jonathan
854 1.1 jonathan bad:
855 1.1 jonathan bzero(&pcb->in6p_sp->sp_in->spidx, sizeof(*spidx));
856 1.1 jonathan bzero(&pcb->in6p_sp->sp_out->spidx, sizeof(*spidx));
857 1.1 jonathan return error;
858 1.1 jonathan }
859 1.1 jonathan #endif
860 1.1 jonathan
861 1.1 jonathan /*
862 1.1 jonathan * configure security policy index (src/dst/proto/sport/dport)
863 1.1 jonathan * by looking at the content of mbuf.
864 1.1 jonathan * the caller is responsible for error recovery (like clearing up spidx).
865 1.1 jonathan */
866 1.1 jonathan static int
867 1.1 jonathan ipsec_setspidx(m, spidx, needport)
868 1.1 jonathan struct mbuf *m;
869 1.1 jonathan struct secpolicyindex *spidx;
870 1.1 jonathan int needport;
871 1.1 jonathan {
872 1.1 jonathan struct ip *ip = NULL;
873 1.1 jonathan struct ip ipbuf;
874 1.1 jonathan u_int v;
875 1.1 jonathan struct mbuf *n;
876 1.1 jonathan int len;
877 1.1 jonathan int error;
878 1.1 jonathan
879 1.1 jonathan IPSEC_ASSERT(m != NULL, ("ipsec_setspidx: null mbuf"));
880 1.1 jonathan
881 1.1 jonathan /*
882 1.1 jonathan * validate m->m_pkthdr.len. we see incorrect length if we
883 1.1 jonathan * mistakenly call this function with inconsistent mbuf chain
884 1.1 jonathan * (like 4.4BSD tcp/udp processing). XXX should we panic here?
885 1.1 jonathan */
886 1.1 jonathan len = 0;
887 1.1 jonathan for (n = m; n; n = n->m_next)
888 1.1 jonathan len += n->m_len;
889 1.1 jonathan if (m->m_pkthdr.len != len) {
890 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
891 1.1 jonathan printf("ipsec_setspidx: "
892 1.26 degroote "total of m_len(%d) != pkthdr.len(%d), "
893 1.26 degroote "ignored.\n",
894 1.1 jonathan len, m->m_pkthdr.len));
895 1.1 jonathan return EINVAL;
896 1.1 jonathan }
897 1.1 jonathan
898 1.1 jonathan if (m->m_pkthdr.len < sizeof(struct ip)) {
899 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
900 1.1 jonathan printf("ipsec_setspidx: "
901 1.26 degroote "pkthdr.len(%d) < sizeof(struct ip), ignored.\n",
902 1.26 degroote m->m_pkthdr.len));
903 1.1 jonathan return EINVAL;
904 1.1 jonathan }
905 1.1 jonathan
906 1.1 jonathan if (m->m_len >= sizeof(*ip))
907 1.1 jonathan ip = mtod(m, struct ip *);
908 1.1 jonathan else {
909 1.26.2.1 rmind m_copydata(m, 0, sizeof(ipbuf), &ipbuf);
910 1.1 jonathan ip = &ipbuf;
911 1.1 jonathan }
912 1.1 jonathan #ifdef _IP_VHL
913 1.1 jonathan v = _IP_VHL_V(ip->ip_vhl);
914 1.1 jonathan #else
915 1.1 jonathan v = ip->ip_v;
916 1.1 jonathan #endif
917 1.1 jonathan switch (v) {
918 1.1 jonathan case 4:
919 1.1 jonathan error = ipsec4_setspidx_ipaddr(m, spidx);
920 1.1 jonathan if (error)
921 1.1 jonathan return error;
922 1.1 jonathan ipsec4_get_ulp(m, spidx, needport);
923 1.1 jonathan return 0;
924 1.1 jonathan #ifdef INET6
925 1.1 jonathan case 6:
926 1.1 jonathan if (m->m_pkthdr.len < sizeof(struct ip6_hdr)) {
927 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
928 1.1 jonathan printf("ipsec_setspidx: "
929 1.26 degroote "pkthdr.len(%d) < sizeof(struct ip6_hdr), "
930 1.26 degroote "ignored.\n", m->m_pkthdr.len));
931 1.1 jonathan return EINVAL;
932 1.1 jonathan }
933 1.1 jonathan error = ipsec6_setspidx_ipaddr(m, spidx);
934 1.1 jonathan if (error)
935 1.1 jonathan return error;
936 1.1 jonathan ipsec6_get_ulp(m, spidx, needport);
937 1.1 jonathan return 0;
938 1.1 jonathan #endif
939 1.1 jonathan default:
940 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
941 1.1 jonathan printf("ipsec_setspidx: "
942 1.26 degroote "unknown IP version %u, ignored.\n", v));
943 1.1 jonathan return EINVAL;
944 1.1 jonathan }
945 1.1 jonathan }
946 1.1 jonathan
947 1.1 jonathan static void
948 1.1 jonathan ipsec4_get_ulp(struct mbuf *m, struct secpolicyindex *spidx, int needport)
949 1.1 jonathan {
950 1.1 jonathan u_int8_t nxt;
951 1.1 jonathan int off;
952 1.1 jonathan
953 1.1 jonathan /* sanity check */
954 1.1 jonathan IPSEC_ASSERT(m != NULL, ("ipsec4_get_ulp: null mbuf"));
955 1.1 jonathan IPSEC_ASSERT(m->m_pkthdr.len >= sizeof(struct ip),
956 1.1 jonathan ("ipsec4_get_ulp: packet too short"));
957 1.1 jonathan
958 1.1 jonathan /* NB: ip_input() flips it into host endian XXX need more checking */
959 1.8 thorpej if (m->m_len >= sizeof(struct ip)) {
960 1.1 jonathan struct ip *ip = mtod(m, struct ip *);
961 1.1 jonathan if (ip->ip_off & (IP_MF | IP_OFFMASK))
962 1.1 jonathan goto done;
963 1.1 jonathan #ifdef _IP_VHL
964 1.1 jonathan off = _IP_VHL_HL(ip->ip_vhl) << 2;
965 1.1 jonathan #else
966 1.1 jonathan off = ip->ip_hl << 2;
967 1.1 jonathan #endif
968 1.1 jonathan nxt = ip->ip_p;
969 1.1 jonathan } else {
970 1.1 jonathan struct ip ih;
971 1.1 jonathan
972 1.26.2.1 rmind m_copydata(m, 0, sizeof (struct ip), &ih);
973 1.1 jonathan if (ih.ip_off & (IP_MF | IP_OFFMASK))
974 1.1 jonathan goto done;
975 1.1 jonathan #ifdef _IP_VHL
976 1.1 jonathan off = _IP_VHL_HL(ih.ip_vhl) << 2;
977 1.1 jonathan #else
978 1.1 jonathan off = ih.ip_hl << 2;
979 1.1 jonathan #endif
980 1.1 jonathan nxt = ih.ip_p;
981 1.1 jonathan }
982 1.1 jonathan
983 1.1 jonathan while (off < m->m_pkthdr.len) {
984 1.1 jonathan struct ip6_ext ip6e;
985 1.1 jonathan struct tcphdr th;
986 1.1 jonathan struct udphdr uh;
987 1.1 jonathan
988 1.1 jonathan switch (nxt) {
989 1.1 jonathan case IPPROTO_TCP:
990 1.1 jonathan spidx->ul_proto = nxt;
991 1.1 jonathan if (!needport)
992 1.1 jonathan goto done_proto;
993 1.1 jonathan if (off + sizeof(struct tcphdr) > m->m_pkthdr.len)
994 1.1 jonathan goto done;
995 1.26.2.1 rmind m_copydata(m, off, sizeof (th), &th);
996 1.1 jonathan spidx->src.sin.sin_port = th.th_sport;
997 1.1 jonathan spidx->dst.sin.sin_port = th.th_dport;
998 1.1 jonathan return;
999 1.1 jonathan case IPPROTO_UDP:
1000 1.1 jonathan spidx->ul_proto = nxt;
1001 1.1 jonathan if (!needport)
1002 1.1 jonathan goto done_proto;
1003 1.1 jonathan if (off + sizeof(struct udphdr) > m->m_pkthdr.len)
1004 1.1 jonathan goto done;
1005 1.26.2.1 rmind m_copydata(m, off, sizeof (uh), &uh);
1006 1.1 jonathan spidx->src.sin.sin_port = uh.uh_sport;
1007 1.1 jonathan spidx->dst.sin.sin_port = uh.uh_dport;
1008 1.1 jonathan return;
1009 1.1 jonathan case IPPROTO_AH:
1010 1.1 jonathan if (m->m_pkthdr.len > off + sizeof(ip6e))
1011 1.1 jonathan goto done;
1012 1.1 jonathan /* XXX sigh, this works but is totally bogus */
1013 1.26.2.1 rmind m_copydata(m, off, sizeof(ip6e), &ip6e);
1014 1.1 jonathan off += (ip6e.ip6e_len + 2) << 2;
1015 1.1 jonathan nxt = ip6e.ip6e_nxt;
1016 1.1 jonathan break;
1017 1.1 jonathan case IPPROTO_ICMP:
1018 1.1 jonathan default:
1019 1.1 jonathan /* XXX intermediate headers??? */
1020 1.1 jonathan spidx->ul_proto = nxt;
1021 1.1 jonathan goto done_proto;
1022 1.1 jonathan }
1023 1.1 jonathan }
1024 1.1 jonathan done:
1025 1.1 jonathan spidx->ul_proto = IPSEC_ULPROTO_ANY;
1026 1.1 jonathan done_proto:
1027 1.1 jonathan spidx->src.sin.sin_port = IPSEC_PORT_ANY;
1028 1.1 jonathan spidx->dst.sin.sin_port = IPSEC_PORT_ANY;
1029 1.1 jonathan }
1030 1.1 jonathan
1031 1.1 jonathan /* assumes that m is sane */
1032 1.1 jonathan static int
1033 1.1 jonathan ipsec4_setspidx_ipaddr(struct mbuf *m, struct secpolicyindex *spidx)
1034 1.1 jonathan {
1035 1.1 jonathan static const struct sockaddr_in template = {
1036 1.1 jonathan sizeof (struct sockaddr_in),
1037 1.1 jonathan AF_INET,
1038 1.1 jonathan 0, { 0 }, { 0, 0, 0, 0, 0, 0, 0, 0 }
1039 1.1 jonathan };
1040 1.1 jonathan
1041 1.1 jonathan spidx->src.sin = template;
1042 1.1 jonathan spidx->dst.sin = template;
1043 1.1 jonathan
1044 1.1 jonathan if (m->m_len < sizeof (struct ip)) {
1045 1.1 jonathan m_copydata(m, offsetof(struct ip, ip_src),
1046 1.1 jonathan sizeof (struct in_addr),
1047 1.26.2.1 rmind &spidx->src.sin.sin_addr);
1048 1.1 jonathan m_copydata(m, offsetof(struct ip, ip_dst),
1049 1.1 jonathan sizeof (struct in_addr),
1050 1.26.2.1 rmind &spidx->dst.sin.sin_addr);
1051 1.1 jonathan } else {
1052 1.1 jonathan struct ip *ip = mtod(m, struct ip *);
1053 1.1 jonathan spidx->src.sin.sin_addr = ip->ip_src;
1054 1.1 jonathan spidx->dst.sin.sin_addr = ip->ip_dst;
1055 1.1 jonathan }
1056 1.1 jonathan
1057 1.1 jonathan spidx->prefs = sizeof(struct in_addr) << 3;
1058 1.1 jonathan spidx->prefd = sizeof(struct in_addr) << 3;
1059 1.1 jonathan
1060 1.1 jonathan return 0;
1061 1.1 jonathan }
1062 1.1 jonathan
1063 1.1 jonathan #ifdef INET6
1064 1.1 jonathan static void
1065 1.1 jonathan ipsec6_get_ulp(m, spidx, needport)
1066 1.1 jonathan struct mbuf *m;
1067 1.1 jonathan struct secpolicyindex *spidx;
1068 1.1 jonathan int needport;
1069 1.1 jonathan {
1070 1.1 jonathan int off, nxt;
1071 1.1 jonathan struct tcphdr th;
1072 1.1 jonathan struct udphdr uh;
1073 1.1 jonathan
1074 1.1 jonathan /* sanity check */
1075 1.1 jonathan if (m == NULL)
1076 1.16 christos panic("ipsec6_get_ulp: NULL pointer was passed");
1077 1.1 jonathan
1078 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
1079 1.1 jonathan printf("ipsec6_get_ulp:\n"); kdebug_mbuf(m));
1080 1.1 jonathan
1081 1.1 jonathan /* set default */
1082 1.1 jonathan spidx->ul_proto = IPSEC_ULPROTO_ANY;
1083 1.1 jonathan ((struct sockaddr_in6 *)&spidx->src)->sin6_port = IPSEC_PORT_ANY;
1084 1.1 jonathan ((struct sockaddr_in6 *)&spidx->dst)->sin6_port = IPSEC_PORT_ANY;
1085 1.1 jonathan
1086 1.1 jonathan nxt = -1;
1087 1.1 jonathan off = ip6_lasthdr(m, 0, IPPROTO_IPV6, &nxt);
1088 1.1 jonathan if (off < 0 || m->m_pkthdr.len < off)
1089 1.1 jonathan return;
1090 1.1 jonathan
1091 1.1 jonathan switch (nxt) {
1092 1.1 jonathan case IPPROTO_TCP:
1093 1.1 jonathan spidx->ul_proto = nxt;
1094 1.1 jonathan if (!needport)
1095 1.1 jonathan break;
1096 1.1 jonathan if (off + sizeof(struct tcphdr) > m->m_pkthdr.len)
1097 1.1 jonathan break;
1098 1.26.2.1 rmind m_copydata(m, off, sizeof(th), &th);
1099 1.1 jonathan ((struct sockaddr_in6 *)&spidx->src)->sin6_port = th.th_sport;
1100 1.1 jonathan ((struct sockaddr_in6 *)&spidx->dst)->sin6_port = th.th_dport;
1101 1.1 jonathan break;
1102 1.1 jonathan case IPPROTO_UDP:
1103 1.1 jonathan spidx->ul_proto = nxt;
1104 1.1 jonathan if (!needport)
1105 1.1 jonathan break;
1106 1.1 jonathan if (off + sizeof(struct udphdr) > m->m_pkthdr.len)
1107 1.1 jonathan break;
1108 1.26.2.1 rmind m_copydata(m, off, sizeof(uh), &uh);
1109 1.1 jonathan ((struct sockaddr_in6 *)&spidx->src)->sin6_port = uh.uh_sport;
1110 1.1 jonathan ((struct sockaddr_in6 *)&spidx->dst)->sin6_port = uh.uh_dport;
1111 1.1 jonathan break;
1112 1.1 jonathan case IPPROTO_ICMPV6:
1113 1.1 jonathan default:
1114 1.1 jonathan /* XXX intermediate headers??? */
1115 1.1 jonathan spidx->ul_proto = nxt;
1116 1.1 jonathan break;
1117 1.1 jonathan }
1118 1.1 jonathan }
1119 1.1 jonathan
1120 1.1 jonathan /* assumes that m is sane */
1121 1.1 jonathan static int
1122 1.1 jonathan ipsec6_setspidx_ipaddr(m, spidx)
1123 1.1 jonathan struct mbuf *m;
1124 1.1 jonathan struct secpolicyindex *spidx;
1125 1.1 jonathan {
1126 1.1 jonathan struct ip6_hdr *ip6 = NULL;
1127 1.1 jonathan struct ip6_hdr ip6buf;
1128 1.1 jonathan struct sockaddr_in6 *sin6;
1129 1.1 jonathan
1130 1.1 jonathan if (m->m_len >= sizeof(*ip6))
1131 1.1 jonathan ip6 = mtod(m, struct ip6_hdr *);
1132 1.1 jonathan else {
1133 1.26.2.1 rmind m_copydata(m, 0, sizeof(ip6buf), &ip6buf);
1134 1.1 jonathan ip6 = &ip6buf;
1135 1.1 jonathan }
1136 1.1 jonathan
1137 1.1 jonathan sin6 = (struct sockaddr_in6 *)&spidx->src;
1138 1.1 jonathan bzero(sin6, sizeof(*sin6));
1139 1.1 jonathan sin6->sin6_family = AF_INET6;
1140 1.1 jonathan sin6->sin6_len = sizeof(struct sockaddr_in6);
1141 1.1 jonathan bcopy(&ip6->ip6_src, &sin6->sin6_addr, sizeof(ip6->ip6_src));
1142 1.1 jonathan if (IN6_IS_SCOPE_LINKLOCAL(&ip6->ip6_src)) {
1143 1.1 jonathan sin6->sin6_addr.s6_addr16[1] = 0;
1144 1.1 jonathan sin6->sin6_scope_id = ntohs(ip6->ip6_src.s6_addr16[1]);
1145 1.1 jonathan }
1146 1.1 jonathan spidx->prefs = sizeof(struct in6_addr) << 3;
1147 1.1 jonathan
1148 1.1 jonathan sin6 = (struct sockaddr_in6 *)&spidx->dst;
1149 1.1 jonathan bzero(sin6, sizeof(*sin6));
1150 1.1 jonathan sin6->sin6_family = AF_INET6;
1151 1.1 jonathan sin6->sin6_len = sizeof(struct sockaddr_in6);
1152 1.1 jonathan bcopy(&ip6->ip6_dst, &sin6->sin6_addr, sizeof(ip6->ip6_dst));
1153 1.1 jonathan if (IN6_IS_SCOPE_LINKLOCAL(&ip6->ip6_dst)) {
1154 1.1 jonathan sin6->sin6_addr.s6_addr16[1] = 0;
1155 1.1 jonathan sin6->sin6_scope_id = ntohs(ip6->ip6_dst.s6_addr16[1]);
1156 1.1 jonathan }
1157 1.1 jonathan spidx->prefd = sizeof(struct in6_addr) << 3;
1158 1.1 jonathan
1159 1.1 jonathan return 0;
1160 1.1 jonathan }
1161 1.1 jonathan #endif
1162 1.1 jonathan
1163 1.1 jonathan static void
1164 1.1 jonathan ipsec_delpcbpolicy(p)
1165 1.1 jonathan struct inpcbpolicy *p;
1166 1.1 jonathan {
1167 1.1 jonathan free(p, M_SECA);
1168 1.1 jonathan }
1169 1.1 jonathan
1170 1.1 jonathan /* initialize policy in PCB */
1171 1.1 jonathan int
1172 1.1 jonathan ipsec_init_policy(so, pcb_sp)
1173 1.1 jonathan struct socket *so;
1174 1.1 jonathan struct inpcbpolicy **pcb_sp;
1175 1.1 jonathan {
1176 1.1 jonathan struct inpcbpolicy *new;
1177 1.1 jonathan
1178 1.1 jonathan /* sanity check. */
1179 1.1 jonathan if (so == NULL || pcb_sp == NULL)
1180 1.16 christos panic("ipsec_init_policy: NULL pointer was passed");
1181 1.1 jonathan
1182 1.1 jonathan new = (struct inpcbpolicy *) malloc(sizeof(struct inpcbpolicy),
1183 1.26 degroote M_SECA, M_NOWAIT|M_ZERO);
1184 1.1 jonathan if (new == NULL) {
1185 1.1 jonathan ipseclog((LOG_DEBUG, "ipsec_init_policy: No more memory.\n"));
1186 1.1 jonathan return ENOBUFS;
1187 1.1 jonathan }
1188 1.1 jonathan
1189 1.1 jonathan if (IPSEC_PRIVILEGED_SO(so))
1190 1.1 jonathan new->priv = 1;
1191 1.1 jonathan else
1192 1.1 jonathan new->priv = 0;
1193 1.1 jonathan
1194 1.1 jonathan if ((new->sp_in = KEY_NEWSP()) == NULL) {
1195 1.1 jonathan ipsec_delpcbpolicy(new);
1196 1.1 jonathan return ENOBUFS;
1197 1.1 jonathan }
1198 1.1 jonathan new->sp_in->state = IPSEC_SPSTATE_ALIVE;
1199 1.1 jonathan new->sp_in->policy = IPSEC_POLICY_ENTRUST;
1200 1.1 jonathan
1201 1.1 jonathan if ((new->sp_out = KEY_NEWSP()) == NULL) {
1202 1.1 jonathan KEY_FREESP(&new->sp_in);
1203 1.1 jonathan ipsec_delpcbpolicy(new);
1204 1.1 jonathan return ENOBUFS;
1205 1.1 jonathan }
1206 1.1 jonathan new->sp_out->state = IPSEC_SPSTATE_ALIVE;
1207 1.1 jonathan new->sp_out->policy = IPSEC_POLICY_ENTRUST;
1208 1.1 jonathan
1209 1.1 jonathan *pcb_sp = new;
1210 1.1 jonathan
1211 1.1 jonathan return 0;
1212 1.1 jonathan }
1213 1.1 jonathan
1214 1.1 jonathan /* copy old ipsec policy into new */
1215 1.1 jonathan int
1216 1.1 jonathan ipsec_copy_policy(old, new)
1217 1.1 jonathan struct inpcbpolicy *old, *new;
1218 1.1 jonathan {
1219 1.1 jonathan struct secpolicy *sp;
1220 1.1 jonathan
1221 1.1 jonathan sp = ipsec_deepcopy_policy(old->sp_in);
1222 1.1 jonathan if (sp) {
1223 1.1 jonathan KEY_FREESP(&new->sp_in);
1224 1.1 jonathan new->sp_in = sp;
1225 1.1 jonathan } else
1226 1.1 jonathan return ENOBUFS;
1227 1.1 jonathan
1228 1.1 jonathan sp = ipsec_deepcopy_policy(old->sp_out);
1229 1.1 jonathan if (sp) {
1230 1.1 jonathan KEY_FREESP(&new->sp_out);
1231 1.1 jonathan new->sp_out = sp;
1232 1.1 jonathan } else
1233 1.1 jonathan return ENOBUFS;
1234 1.1 jonathan
1235 1.1 jonathan new->priv = old->priv;
1236 1.1 jonathan
1237 1.1 jonathan return 0;
1238 1.1 jonathan }
1239 1.1 jonathan
1240 1.1 jonathan /* deep-copy a policy in PCB */
1241 1.1 jonathan static struct secpolicy *
1242 1.1 jonathan ipsec_deepcopy_policy(src)
1243 1.1 jonathan struct secpolicy *src;
1244 1.1 jonathan {
1245 1.1 jonathan struct ipsecrequest *newchain = NULL;
1246 1.1 jonathan struct ipsecrequest *p;
1247 1.1 jonathan struct ipsecrequest **q;
1248 1.1 jonathan struct ipsecrequest *r;
1249 1.1 jonathan struct secpolicy *dst;
1250 1.1 jonathan
1251 1.1 jonathan if (src == NULL)
1252 1.1 jonathan return NULL;
1253 1.1 jonathan dst = KEY_NEWSP();
1254 1.1 jonathan if (dst == NULL)
1255 1.1 jonathan return NULL;
1256 1.1 jonathan
1257 1.1 jonathan /*
1258 1.1 jonathan * deep-copy IPsec request chain. This is required since struct
1259 1.1 jonathan * ipsecrequest is not reference counted.
1260 1.1 jonathan */
1261 1.1 jonathan q = &newchain;
1262 1.1 jonathan for (p = src->req; p; p = p->next) {
1263 1.1 jonathan *q = (struct ipsecrequest *)malloc(sizeof(struct ipsecrequest),
1264 1.1 jonathan M_SECA, M_NOWAIT);
1265 1.1 jonathan if (*q == NULL)
1266 1.1 jonathan goto fail;
1267 1.1 jonathan bzero(*q, sizeof(**q));
1268 1.1 jonathan (*q)->next = NULL;
1269 1.1 jonathan
1270 1.1 jonathan (*q)->saidx.proto = p->saidx.proto;
1271 1.1 jonathan (*q)->saidx.mode = p->saidx.mode;
1272 1.1 jonathan (*q)->level = p->level;
1273 1.1 jonathan (*q)->saidx.reqid = p->saidx.reqid;
1274 1.1 jonathan
1275 1.1 jonathan bcopy(&p->saidx.src, &(*q)->saidx.src, sizeof((*q)->saidx.src));
1276 1.1 jonathan bcopy(&p->saidx.dst, &(*q)->saidx.dst, sizeof((*q)->saidx.dst));
1277 1.1 jonathan
1278 1.1 jonathan (*q)->sav = NULL;
1279 1.1 jonathan (*q)->sp = dst;
1280 1.1 jonathan
1281 1.1 jonathan q = &((*q)->next);
1282 1.1 jonathan }
1283 1.1 jonathan
1284 1.1 jonathan dst->req = newchain;
1285 1.1 jonathan dst->state = src->state;
1286 1.1 jonathan dst->policy = src->policy;
1287 1.1 jonathan /* do not touch the refcnt fields */
1288 1.1 jonathan
1289 1.1 jonathan return dst;
1290 1.1 jonathan
1291 1.1 jonathan fail:
1292 1.1 jonathan for (p = newchain; p; p = r) {
1293 1.1 jonathan r = p->next;
1294 1.1 jonathan free(p, M_SECA);
1295 1.1 jonathan p = NULL;
1296 1.1 jonathan }
1297 1.1 jonathan return NULL;
1298 1.1 jonathan }
1299 1.1 jonathan
1300 1.1 jonathan /* set policy and ipsec request if present. */
1301 1.1 jonathan static int
1302 1.24 christos ipsec_set_policy(
1303 1.26 degroote struct secpolicy **pcb_sp,
1304 1.26 degroote int optname,
1305 1.26.2.1 rmind void *request,
1306 1.26 degroote size_t len,
1307 1.26 degroote int priv
1308 1.24 christos )
1309 1.1 jonathan {
1310 1.1 jonathan struct sadb_x_policy *xpl;
1311 1.1 jonathan struct secpolicy *newsp = NULL;
1312 1.1 jonathan int error;
1313 1.1 jonathan
1314 1.1 jonathan /* sanity check. */
1315 1.1 jonathan if (pcb_sp == NULL || *pcb_sp == NULL || request == NULL)
1316 1.1 jonathan return EINVAL;
1317 1.1 jonathan if (len < sizeof(*xpl))
1318 1.1 jonathan return EINVAL;
1319 1.1 jonathan xpl = (struct sadb_x_policy *)request;
1320 1.1 jonathan
1321 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
1322 1.1 jonathan printf("ipsec_set_policy: passed policy\n");
1323 1.1 jonathan kdebug_sadb_x_policy((struct sadb_ext *)xpl));
1324 1.1 jonathan
1325 1.1 jonathan /* check policy type */
1326 1.1 jonathan /* ipsec_set_policy() accepts IPSEC, ENTRUST and BYPASS. */
1327 1.1 jonathan if (xpl->sadb_x_policy_type == IPSEC_POLICY_DISCARD
1328 1.1 jonathan || xpl->sadb_x_policy_type == IPSEC_POLICY_NONE)
1329 1.1 jonathan return EINVAL;
1330 1.1 jonathan
1331 1.1 jonathan /* check privileged socket */
1332 1.1 jonathan if (priv == 0 && xpl->sadb_x_policy_type == IPSEC_POLICY_BYPASS)
1333 1.1 jonathan return EACCES;
1334 1.1 jonathan
1335 1.1 jonathan /* allocation new SP entry */
1336 1.1 jonathan if ((newsp = key_msg2sp(xpl, len, &error)) == NULL)
1337 1.1 jonathan return error;
1338 1.1 jonathan
1339 1.1 jonathan newsp->state = IPSEC_SPSTATE_ALIVE;
1340 1.1 jonathan
1341 1.1 jonathan /* clear old SP and set new SP */
1342 1.1 jonathan KEY_FREESP(pcb_sp);
1343 1.1 jonathan *pcb_sp = newsp;
1344 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
1345 1.1 jonathan printf("ipsec_set_policy: new policy\n");
1346 1.1 jonathan kdebug_secpolicy(newsp));
1347 1.1 jonathan
1348 1.1 jonathan return 0;
1349 1.1 jonathan }
1350 1.1 jonathan
1351 1.1 jonathan static int
1352 1.1 jonathan ipsec_get_policy(pcb_sp, mp)
1353 1.1 jonathan struct secpolicy *pcb_sp;
1354 1.1 jonathan struct mbuf **mp;
1355 1.1 jonathan {
1356 1.1 jonathan
1357 1.1 jonathan /* sanity check. */
1358 1.1 jonathan if (pcb_sp == NULL || mp == NULL)
1359 1.1 jonathan return EINVAL;
1360 1.1 jonathan
1361 1.1 jonathan *mp = key_sp2msg(pcb_sp);
1362 1.1 jonathan if (!*mp) {
1363 1.1 jonathan ipseclog((LOG_DEBUG, "ipsec_get_policy: No more memory.\n"));
1364 1.1 jonathan return ENOBUFS;
1365 1.1 jonathan }
1366 1.1 jonathan
1367 1.1 jonathan (*mp)->m_type = MT_DATA;
1368 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
1369 1.1 jonathan printf("ipsec_get_policy:\n");
1370 1.1 jonathan kdebug_mbuf(*mp));
1371 1.1 jonathan
1372 1.1 jonathan return 0;
1373 1.1 jonathan }
1374 1.1 jonathan
1375 1.1 jonathan int
1376 1.1 jonathan ipsec4_set_policy(inp, optname, request, len, priv)
1377 1.1 jonathan struct inpcb *inp;
1378 1.1 jonathan int optname;
1379 1.26.2.1 rmind void *request;
1380 1.1 jonathan size_t len;
1381 1.1 jonathan int priv;
1382 1.1 jonathan {
1383 1.1 jonathan struct sadb_x_policy *xpl;
1384 1.1 jonathan struct secpolicy **pcb_sp;
1385 1.1 jonathan
1386 1.1 jonathan /* sanity check. */
1387 1.1 jonathan if (inp == NULL || request == NULL)
1388 1.1 jonathan return EINVAL;
1389 1.1 jonathan if (len < sizeof(*xpl))
1390 1.1 jonathan return EINVAL;
1391 1.1 jonathan xpl = (struct sadb_x_policy *)request;
1392 1.1 jonathan
1393 1.1 jonathan IPSEC_ASSERT(inp->inp_sp != NULL,
1394 1.26 degroote ("ipsec4_set_policy(): null inp->in_sp"));
1395 1.1 jonathan
1396 1.1 jonathan /* select direction */
1397 1.1 jonathan switch (xpl->sadb_x_policy_dir) {
1398 1.1 jonathan case IPSEC_DIR_INBOUND:
1399 1.1 jonathan pcb_sp = &inp->inp_sp->sp_in;
1400 1.1 jonathan break;
1401 1.1 jonathan case IPSEC_DIR_OUTBOUND:
1402 1.1 jonathan pcb_sp = &inp->inp_sp->sp_out;
1403 1.1 jonathan break;
1404 1.1 jonathan default:
1405 1.1 jonathan ipseclog((LOG_ERR, "ipsec4_set_policy: invalid direction=%u\n",
1406 1.1 jonathan xpl->sadb_x_policy_dir));
1407 1.1 jonathan return EINVAL;
1408 1.1 jonathan }
1409 1.1 jonathan
1410 1.1 jonathan return ipsec_set_policy(pcb_sp, optname, request, len, priv);
1411 1.1 jonathan }
1412 1.1 jonathan
1413 1.1 jonathan int
1414 1.1 jonathan ipsec4_get_policy(inp, request, len, mp)
1415 1.1 jonathan struct inpcb *inp;
1416 1.26.2.1 rmind void *request;
1417 1.1 jonathan size_t len;
1418 1.1 jonathan struct mbuf **mp;
1419 1.1 jonathan {
1420 1.1 jonathan struct sadb_x_policy *xpl;
1421 1.1 jonathan struct secpolicy *pcb_sp;
1422 1.1 jonathan
1423 1.1 jonathan /* sanity check. */
1424 1.1 jonathan if (inp == NULL || request == NULL || mp == NULL)
1425 1.1 jonathan return EINVAL;
1426 1.1 jonathan IPSEC_ASSERT(inp->inp_sp != NULL, ("ipsec4_get_policy: null inp_sp"));
1427 1.1 jonathan if (len < sizeof(*xpl))
1428 1.1 jonathan return EINVAL;
1429 1.1 jonathan xpl = (struct sadb_x_policy *)request;
1430 1.1 jonathan
1431 1.1 jonathan /* select direction */
1432 1.1 jonathan switch (xpl->sadb_x_policy_dir) {
1433 1.1 jonathan case IPSEC_DIR_INBOUND:
1434 1.1 jonathan pcb_sp = inp->inp_sp->sp_in;
1435 1.1 jonathan break;
1436 1.1 jonathan case IPSEC_DIR_OUTBOUND:
1437 1.1 jonathan pcb_sp = inp->inp_sp->sp_out;
1438 1.1 jonathan break;
1439 1.1 jonathan default:
1440 1.1 jonathan ipseclog((LOG_ERR, "ipsec4_set_policy: invalid direction=%u\n",
1441 1.1 jonathan xpl->sadb_x_policy_dir));
1442 1.1 jonathan return EINVAL;
1443 1.1 jonathan }
1444 1.1 jonathan
1445 1.1 jonathan return ipsec_get_policy(pcb_sp, mp);
1446 1.1 jonathan }
1447 1.1 jonathan
1448 1.1 jonathan /* delete policy in PCB */
1449 1.1 jonathan int
1450 1.1 jonathan ipsec4_delete_pcbpolicy(inp)
1451 1.1 jonathan struct inpcb *inp;
1452 1.1 jonathan {
1453 1.1 jonathan IPSEC_ASSERT(inp != NULL, ("ipsec4_delete_pcbpolicy: null inp"));
1454 1.1 jonathan
1455 1.1 jonathan if (inp->inp_sp == NULL)
1456 1.1 jonathan return 0;
1457 1.1 jonathan
1458 1.1 jonathan if (inp->inp_sp->sp_in != NULL)
1459 1.1 jonathan KEY_FREESP(&inp->inp_sp->sp_in);
1460 1.1 jonathan
1461 1.1 jonathan if (inp->inp_sp->sp_out != NULL)
1462 1.1 jonathan KEY_FREESP(&inp->inp_sp->sp_out);
1463 1.1 jonathan
1464 1.1 jonathan ipsec_delpcbpolicy(inp->inp_sp);
1465 1.1 jonathan inp->inp_sp = NULL;
1466 1.1 jonathan
1467 1.1 jonathan return 0;
1468 1.1 jonathan }
1469 1.1 jonathan
1470 1.1 jonathan #ifdef INET6
1471 1.1 jonathan int
1472 1.1 jonathan ipsec6_set_policy(in6p, optname, request, len, priv)
1473 1.1 jonathan struct in6pcb *in6p;
1474 1.1 jonathan int optname;
1475 1.26.2.1 rmind void *request;
1476 1.1 jonathan size_t len;
1477 1.1 jonathan int priv;
1478 1.1 jonathan {
1479 1.1 jonathan struct sadb_x_policy *xpl;
1480 1.1 jonathan struct secpolicy **pcb_sp;
1481 1.1 jonathan
1482 1.1 jonathan /* sanity check. */
1483 1.1 jonathan if (in6p == NULL || request == NULL)
1484 1.1 jonathan return EINVAL;
1485 1.1 jonathan if (len < sizeof(*xpl))
1486 1.1 jonathan return EINVAL;
1487 1.1 jonathan xpl = (struct sadb_x_policy *)request;
1488 1.1 jonathan
1489 1.1 jonathan /* select direction */
1490 1.1 jonathan switch (xpl->sadb_x_policy_dir) {
1491 1.1 jonathan case IPSEC_DIR_INBOUND:
1492 1.1 jonathan pcb_sp = &in6p->in6p_sp->sp_in;
1493 1.1 jonathan break;
1494 1.1 jonathan case IPSEC_DIR_OUTBOUND:
1495 1.1 jonathan pcb_sp = &in6p->in6p_sp->sp_out;
1496 1.1 jonathan break;
1497 1.1 jonathan default:
1498 1.1 jonathan ipseclog((LOG_ERR, "ipsec6_set_policy: invalid direction=%u\n",
1499 1.1 jonathan xpl->sadb_x_policy_dir));
1500 1.1 jonathan return EINVAL;
1501 1.1 jonathan }
1502 1.1 jonathan
1503 1.1 jonathan return ipsec_set_policy(pcb_sp, optname, request, len, priv);
1504 1.1 jonathan }
1505 1.1 jonathan
1506 1.1 jonathan int
1507 1.1 jonathan ipsec6_get_policy(in6p, request, len, mp)
1508 1.1 jonathan struct in6pcb *in6p;
1509 1.26.2.1 rmind void *request;
1510 1.1 jonathan size_t len;
1511 1.1 jonathan struct mbuf **mp;
1512 1.1 jonathan {
1513 1.1 jonathan struct sadb_x_policy *xpl;
1514 1.1 jonathan struct secpolicy *pcb_sp;
1515 1.1 jonathan
1516 1.1 jonathan /* sanity check. */
1517 1.1 jonathan if (in6p == NULL || request == NULL || mp == NULL)
1518 1.1 jonathan return EINVAL;
1519 1.1 jonathan IPSEC_ASSERT(in6p->in6p_sp != NULL, ("ipsec6_get_policy: null in6p_sp"));
1520 1.1 jonathan if (len < sizeof(*xpl))
1521 1.1 jonathan return EINVAL;
1522 1.1 jonathan xpl = (struct sadb_x_policy *)request;
1523 1.1 jonathan
1524 1.1 jonathan /* select direction */
1525 1.1 jonathan switch (xpl->sadb_x_policy_dir) {
1526 1.1 jonathan case IPSEC_DIR_INBOUND:
1527 1.1 jonathan pcb_sp = in6p->in6p_sp->sp_in;
1528 1.1 jonathan break;
1529 1.1 jonathan case IPSEC_DIR_OUTBOUND:
1530 1.1 jonathan pcb_sp = in6p->in6p_sp->sp_out;
1531 1.1 jonathan break;
1532 1.1 jonathan default:
1533 1.1 jonathan ipseclog((LOG_ERR, "ipsec6_set_policy: invalid direction=%u\n",
1534 1.1 jonathan xpl->sadb_x_policy_dir));
1535 1.1 jonathan return EINVAL;
1536 1.1 jonathan }
1537 1.1 jonathan
1538 1.1 jonathan return ipsec_get_policy(pcb_sp, mp);
1539 1.1 jonathan }
1540 1.1 jonathan
1541 1.1 jonathan int
1542 1.1 jonathan ipsec6_delete_pcbpolicy(in6p)
1543 1.1 jonathan struct in6pcb *in6p;
1544 1.1 jonathan {
1545 1.1 jonathan IPSEC_ASSERT(in6p != NULL, ("ipsec6_delete_pcbpolicy: null in6p"));
1546 1.1 jonathan
1547 1.1 jonathan if (in6p->in6p_sp == NULL)
1548 1.1 jonathan return 0;
1549 1.1 jonathan
1550 1.1 jonathan if (in6p->in6p_sp->sp_in != NULL)
1551 1.1 jonathan KEY_FREESP(&in6p->in6p_sp->sp_in);
1552 1.1 jonathan
1553 1.1 jonathan if (in6p->in6p_sp->sp_out != NULL)
1554 1.1 jonathan KEY_FREESP(&in6p->in6p_sp->sp_out);
1555 1.1 jonathan
1556 1.1 jonathan ipsec_delpcbpolicy(in6p->in6p_sp);
1557 1.1 jonathan in6p->in6p_sp = NULL;
1558 1.1 jonathan
1559 1.1 jonathan return 0;
1560 1.1 jonathan }
1561 1.1 jonathan #endif
1562 1.1 jonathan
1563 1.1 jonathan /*
1564 1.1 jonathan * return current level.
1565 1.1 jonathan * Either IPSEC_LEVEL_USE or IPSEC_LEVEL_REQUIRE are always returned.
1566 1.1 jonathan */
1567 1.1 jonathan u_int
1568 1.1 jonathan ipsec_get_reqlevel(isr)
1569 1.1 jonathan struct ipsecrequest *isr;
1570 1.1 jonathan {
1571 1.1 jonathan u_int level = 0;
1572 1.1 jonathan u_int esp_trans_deflev, esp_net_deflev;
1573 1.1 jonathan u_int ah_trans_deflev, ah_net_deflev;
1574 1.1 jonathan
1575 1.1 jonathan IPSEC_ASSERT(isr != NULL && isr->sp != NULL,
1576 1.1 jonathan ("ipsec_get_reqlevel: null argument"));
1577 1.1 jonathan IPSEC_ASSERT(isr->sp->spidx.src.sa.sa_family == isr->sp->spidx.dst.sa.sa_family,
1578 1.1 jonathan ("ipsec_get_reqlevel: af family mismatch, src %u, dst %u",
1579 1.1 jonathan isr->sp->spidx.src.sa.sa_family,
1580 1.1 jonathan isr->sp->spidx.dst.sa.sa_family));
1581 1.1 jonathan
1582 1.1 jonathan /* XXX note that we have ipseclog() expanded here - code sync issue */
1583 1.1 jonathan #define IPSEC_CHECK_DEFAULT(lev) \
1584 1.26 degroote (((lev) != IPSEC_LEVEL_USE && (lev) != IPSEC_LEVEL_REQUIRE \
1585 1.26 degroote && (lev) != IPSEC_LEVEL_UNIQUE) \
1586 1.26 degroote ? (ipsec_debug \
1587 1.1 jonathan ? log(LOG_INFO, "fixed system default level " #lev ":%d->%d\n",\
1588 1.26 degroote (lev), IPSEC_LEVEL_REQUIRE) \
1589 1.26 degroote : 0), \
1590 1.26 degroote (lev) = IPSEC_LEVEL_REQUIRE, \
1591 1.26 degroote (lev) \
1592 1.1 jonathan : (lev))
1593 1.1 jonathan
1594 1.1 jonathan /* set default level */
1595 1.1 jonathan switch (((struct sockaddr *)&isr->sp->spidx.src)->sa_family) {
1596 1.1 jonathan #ifdef INET
1597 1.1 jonathan case AF_INET:
1598 1.1 jonathan esp_trans_deflev = IPSEC_CHECK_DEFAULT(ip4_esp_trans_deflev);
1599 1.1 jonathan esp_net_deflev = IPSEC_CHECK_DEFAULT(ip4_esp_net_deflev);
1600 1.1 jonathan ah_trans_deflev = IPSEC_CHECK_DEFAULT(ip4_ah_trans_deflev);
1601 1.1 jonathan ah_net_deflev = IPSEC_CHECK_DEFAULT(ip4_ah_net_deflev);
1602 1.1 jonathan break;
1603 1.1 jonathan #endif
1604 1.1 jonathan #ifdef INET6
1605 1.1 jonathan case AF_INET6:
1606 1.1 jonathan esp_trans_deflev = IPSEC_CHECK_DEFAULT(ip6_esp_trans_deflev);
1607 1.1 jonathan esp_net_deflev = IPSEC_CHECK_DEFAULT(ip6_esp_net_deflev);
1608 1.1 jonathan ah_trans_deflev = IPSEC_CHECK_DEFAULT(ip6_ah_trans_deflev);
1609 1.1 jonathan ah_net_deflev = IPSEC_CHECK_DEFAULT(ip6_ah_net_deflev);
1610 1.1 jonathan break;
1611 1.1 jonathan #endif /* INET6 */
1612 1.1 jonathan default:
1613 1.1 jonathan panic("key_get_reqlevel: unknown af %u",
1614 1.26 degroote isr->sp->spidx.src.sa.sa_family);
1615 1.1 jonathan }
1616 1.1 jonathan
1617 1.1 jonathan #undef IPSEC_CHECK_DEFAULT
1618 1.1 jonathan
1619 1.1 jonathan /* set level */
1620 1.1 jonathan switch (isr->level) {
1621 1.1 jonathan case IPSEC_LEVEL_DEFAULT:
1622 1.1 jonathan switch (isr->saidx.proto) {
1623 1.1 jonathan case IPPROTO_ESP:
1624 1.1 jonathan if (isr->saidx.mode == IPSEC_MODE_TUNNEL)
1625 1.1 jonathan level = esp_net_deflev;
1626 1.1 jonathan else
1627 1.1 jonathan level = esp_trans_deflev;
1628 1.1 jonathan break;
1629 1.1 jonathan case IPPROTO_AH:
1630 1.1 jonathan if (isr->saidx.mode == IPSEC_MODE_TUNNEL)
1631 1.1 jonathan level = ah_net_deflev;
1632 1.1 jonathan else
1633 1.1 jonathan level = ah_trans_deflev;
1634 1.14 jonathan break;
1635 1.1 jonathan case IPPROTO_IPCOMP:
1636 1.1 jonathan /*
1637 1.1 jonathan * we don't really care, as IPcomp document says that
1638 1.1 jonathan * we shouldn't compress small packets
1639 1.1 jonathan */
1640 1.1 jonathan level = IPSEC_LEVEL_USE;
1641 1.1 jonathan break;
1642 1.1 jonathan default:
1643 1.16 christos panic("ipsec_get_reqlevel: Illegal protocol defined %u",
1644 1.26 degroote isr->saidx.proto);
1645 1.1 jonathan }
1646 1.1 jonathan break;
1647 1.1 jonathan
1648 1.1 jonathan case IPSEC_LEVEL_USE:
1649 1.1 jonathan case IPSEC_LEVEL_REQUIRE:
1650 1.1 jonathan level = isr->level;
1651 1.1 jonathan break;
1652 1.1 jonathan case IPSEC_LEVEL_UNIQUE:
1653 1.1 jonathan level = IPSEC_LEVEL_REQUIRE;
1654 1.1 jonathan break;
1655 1.1 jonathan
1656 1.1 jonathan default:
1657 1.16 christos panic("ipsec_get_reqlevel: Illegal IPsec level %u",
1658 1.1 jonathan isr->level);
1659 1.1 jonathan }
1660 1.1 jonathan
1661 1.1 jonathan return level;
1662 1.1 jonathan }
1663 1.1 jonathan
1664 1.1 jonathan /*
1665 1.1 jonathan * Check security policy requirements against the actual
1666 1.1 jonathan * packet contents. Return one if the packet should be
1667 1.1 jonathan * reject as "invalid"; otherwiser return zero to have the
1668 1.1 jonathan * packet treated as "valid".
1669 1.1 jonathan *
1670 1.1 jonathan * OUT:
1671 1.1 jonathan * 0: valid
1672 1.1 jonathan * 1: invalid
1673 1.1 jonathan */
1674 1.1 jonathan int
1675 1.1 jonathan ipsec_in_reject(struct secpolicy *sp, struct mbuf *m)
1676 1.1 jonathan {
1677 1.1 jonathan struct ipsecrequest *isr;
1678 1.1 jonathan int need_auth;
1679 1.1 jonathan
1680 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
1681 1.1 jonathan printf("ipsec_in_reject: using SP\n");
1682 1.1 jonathan kdebug_secpolicy(sp));
1683 1.1 jonathan
1684 1.1 jonathan /* check policy */
1685 1.1 jonathan switch (sp->policy) {
1686 1.1 jonathan case IPSEC_POLICY_DISCARD:
1687 1.1 jonathan return 1;
1688 1.1 jonathan case IPSEC_POLICY_BYPASS:
1689 1.1 jonathan case IPSEC_POLICY_NONE:
1690 1.1 jonathan return 0;
1691 1.1 jonathan }
1692 1.1 jonathan
1693 1.1 jonathan IPSEC_ASSERT(sp->policy == IPSEC_POLICY_IPSEC,
1694 1.1 jonathan ("ipsec_in_reject: invalid policy %u", sp->policy));
1695 1.1 jonathan
1696 1.1 jonathan /* XXX should compare policy against ipsec header history */
1697 1.1 jonathan
1698 1.1 jonathan need_auth = 0;
1699 1.1 jonathan for (isr = sp->req; isr != NULL; isr = isr->next) {
1700 1.1 jonathan if (ipsec_get_reqlevel(isr) != IPSEC_LEVEL_REQUIRE)
1701 1.1 jonathan continue;
1702 1.1 jonathan switch (isr->saidx.proto) {
1703 1.1 jonathan case IPPROTO_ESP:
1704 1.1 jonathan if ((m->m_flags & M_DECRYPTED) == 0) {
1705 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
1706 1.26 degroote printf("ipsec_in_reject: ESP m_flags:%x\n",
1707 1.26 degroote m->m_flags));
1708 1.1 jonathan return 1;
1709 1.1 jonathan }
1710 1.1 jonathan
1711 1.1 jonathan if (!need_auth &&
1712 1.26 degroote isr->sav != NULL &&
1713 1.26 degroote isr->sav->tdb_authalgxform != NULL &&
1714 1.26 degroote (m->m_flags & M_AUTHIPDGM) == 0) {
1715 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
1716 1.26 degroote printf("ipsec_in_reject: ESP/AH m_flags:%x\n",
1717 1.26 degroote m->m_flags));
1718 1.1 jonathan return 1;
1719 1.1 jonathan }
1720 1.1 jonathan break;
1721 1.1 jonathan case IPPROTO_AH:
1722 1.1 jonathan need_auth = 1;
1723 1.1 jonathan if ((m->m_flags & M_AUTHIPHDR) == 0) {
1724 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DUMP,
1725 1.26 degroote printf("ipsec_in_reject: AH m_flags:%x\n",
1726 1.26 degroote m->m_flags));
1727 1.1 jonathan return 1;
1728 1.1 jonathan }
1729 1.1 jonathan break;
1730 1.1 jonathan case IPPROTO_IPCOMP:
1731 1.1 jonathan /*
1732 1.1 jonathan * we don't really care, as IPcomp document
1733 1.1 jonathan * says that we shouldn't compress small
1734 1.1 jonathan * packets, IPComp policy should always be
1735 1.1 jonathan * treated as being in "use" level.
1736 1.1 jonathan */
1737 1.1 jonathan break;
1738 1.1 jonathan }
1739 1.1 jonathan }
1740 1.1 jonathan return 0; /* valid */
1741 1.1 jonathan }
1742 1.1 jonathan
1743 1.1 jonathan /*
1744 1.1 jonathan * Check AH/ESP integrity.
1745 1.1 jonathan * This function is called from tcp_input(), udp_input(),
1746 1.1 jonathan * and {ah,esp}4_input for tunnel mode
1747 1.1 jonathan */
1748 1.1 jonathan int
1749 1.1 jonathan ipsec4_in_reject(m, inp)
1750 1.1 jonathan struct mbuf *m;
1751 1.1 jonathan struct inpcb *inp;
1752 1.1 jonathan {
1753 1.1 jonathan struct secpolicy *sp;
1754 1.1 jonathan int error;
1755 1.1 jonathan int result;
1756 1.1 jonathan
1757 1.1 jonathan IPSEC_ASSERT(m != NULL, ("ipsec4_in_reject_so: null mbuf"));
1758 1.1 jonathan
1759 1.1 jonathan /* get SP for this packet.
1760 1.1 jonathan * When we are called from ip_forward(), we call
1761 1.1 jonathan * ipsec_getpolicybyaddr() with IP_FORWARDING flag.
1762 1.1 jonathan */
1763 1.1 jonathan if (inp == NULL)
1764 1.1 jonathan sp = ipsec_getpolicybyaddr(m, IPSEC_DIR_INBOUND, IP_FORWARDING, &error);
1765 1.1 jonathan else
1766 1.5 jonathan sp = ipsec_getpolicybysock(m, IPSEC_DIR_INBOUND,
1767 1.5 jonathan IN4PCB_TO_PCB(inp), &error);
1768 1.1 jonathan
1769 1.1 jonathan if (sp != NULL) {
1770 1.1 jonathan result = ipsec_in_reject(sp, m);
1771 1.1 jonathan if (result)
1772 1.1 jonathan newipsecstat.ips_in_polvio++;
1773 1.1 jonathan KEY_FREESP(&sp);
1774 1.1 jonathan } else {
1775 1.1 jonathan result = 0; /* XXX should be panic ?
1776 1.1 jonathan * -> No, there may be error. */
1777 1.1 jonathan }
1778 1.1 jonathan return result;
1779 1.1 jonathan }
1780 1.1 jonathan
1781 1.1 jonathan
1782 1.1 jonathan #ifdef INET6
1783 1.1 jonathan /*
1784 1.1 jonathan * Check AH/ESP integrity.
1785 1.1 jonathan * This function is called from tcp6_input(), udp6_input(),
1786 1.1 jonathan * and {ah,esp}6_input for tunnel mode
1787 1.1 jonathan */
1788 1.1 jonathan int
1789 1.5 jonathan ipsec6_in_reject(m, in6p)
1790 1.1 jonathan struct mbuf *m;
1791 1.5 jonathan struct in6pcb *in6p;
1792 1.1 jonathan {
1793 1.1 jonathan struct secpolicy *sp = NULL;
1794 1.1 jonathan int error;
1795 1.1 jonathan int result;
1796 1.1 jonathan
1797 1.1 jonathan /* sanity check */
1798 1.1 jonathan if (m == NULL)
1799 1.1 jonathan return 0; /* XXX should be panic ? */
1800 1.1 jonathan
1801 1.1 jonathan /* get SP for this packet.
1802 1.1 jonathan * When we are called from ip_forward(), we call
1803 1.1 jonathan * ipsec_getpolicybyaddr() with IP_FORWARDING flag.
1804 1.1 jonathan */
1805 1.5 jonathan if (in6p == NULL)
1806 1.1 jonathan sp = ipsec_getpolicybyaddr(m, IPSEC_DIR_INBOUND, IP_FORWARDING, &error);
1807 1.1 jonathan else
1808 1.5 jonathan sp = ipsec_getpolicybysock(m, IPSEC_DIR_INBOUND,
1809 1.5 jonathan IN6PCB_TO_PCB(in6p),
1810 1.5 jonathan &error);
1811 1.1 jonathan
1812 1.1 jonathan if (sp != NULL) {
1813 1.1 jonathan result = ipsec_in_reject(sp, m);
1814 1.1 jonathan if (result)
1815 1.1 jonathan newipsecstat.ips_in_polvio++;
1816 1.1 jonathan KEY_FREESP(&sp);
1817 1.1 jonathan } else {
1818 1.1 jonathan result = 0;
1819 1.1 jonathan }
1820 1.1 jonathan return result;
1821 1.1 jonathan }
1822 1.1 jonathan #endif
1823 1.1 jonathan
1824 1.1 jonathan /*
1825 1.1 jonathan * compute the byte size to be occupied by IPsec header.
1826 1.1 jonathan * in case it is tunneled, it includes the size of outer IP header.
1827 1.1 jonathan * NOTE: SP passed is free in this function.
1828 1.1 jonathan */
1829 1.1 jonathan static size_t
1830 1.1 jonathan ipsec_hdrsiz(struct secpolicy *sp)
1831 1.1 jonathan {
1832 1.1 jonathan struct ipsecrequest *isr;
1833 1.1 jonathan size_t siz;
1834 1.1 jonathan
1835 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
1836 1.1 jonathan printf("ipsec_hdrsiz: using SP\n");
1837 1.1 jonathan kdebug_secpolicy(sp));
1838 1.1 jonathan
1839 1.1 jonathan switch (sp->policy) {
1840 1.1 jonathan case IPSEC_POLICY_DISCARD:
1841 1.1 jonathan case IPSEC_POLICY_BYPASS:
1842 1.1 jonathan case IPSEC_POLICY_NONE:
1843 1.1 jonathan return 0;
1844 1.1 jonathan }
1845 1.1 jonathan
1846 1.1 jonathan IPSEC_ASSERT(sp->policy == IPSEC_POLICY_IPSEC,
1847 1.1 jonathan ("ipsec_hdrsiz: invalid policy %u", sp->policy));
1848 1.1 jonathan
1849 1.1 jonathan siz = 0;
1850 1.1 jonathan for (isr = sp->req; isr != NULL; isr = isr->next) {
1851 1.1 jonathan size_t clen = 0;
1852 1.1 jonathan
1853 1.1 jonathan switch (isr->saidx.proto) {
1854 1.1 jonathan case IPPROTO_ESP:
1855 1.1 jonathan clen = esp_hdrsiz(isr->sav);
1856 1.1 jonathan break;
1857 1.1 jonathan case IPPROTO_AH:
1858 1.1 jonathan clen = ah_hdrsiz(isr->sav);
1859 1.1 jonathan break;
1860 1.1 jonathan case IPPROTO_IPCOMP:
1861 1.1 jonathan clen = sizeof(struct ipcomp);
1862 1.1 jonathan break;
1863 1.1 jonathan }
1864 1.1 jonathan
1865 1.1 jonathan if (isr->saidx.mode == IPSEC_MODE_TUNNEL) {
1866 1.1 jonathan switch (isr->saidx.dst.sa.sa_family) {
1867 1.1 jonathan case AF_INET:
1868 1.1 jonathan clen += sizeof(struct ip);
1869 1.1 jonathan break;
1870 1.1 jonathan #ifdef INET6
1871 1.1 jonathan case AF_INET6:
1872 1.1 jonathan clen += sizeof(struct ip6_hdr);
1873 1.1 jonathan break;
1874 1.1 jonathan #endif
1875 1.1 jonathan default:
1876 1.1 jonathan ipseclog((LOG_ERR, "ipsec_hdrsiz: "
1877 1.26 degroote "unknown AF %d in IPsec tunnel SA\n",
1878 1.26 degroote ((struct sockaddr *)&isr->saidx.dst)->sa_family));
1879 1.1 jonathan break;
1880 1.1 jonathan }
1881 1.1 jonathan }
1882 1.1 jonathan siz += clen;
1883 1.1 jonathan }
1884 1.1 jonathan
1885 1.1 jonathan return siz;
1886 1.1 jonathan }
1887 1.1 jonathan
1888 1.1 jonathan /* This function is called from ip_forward() and ipsec4_hdrsize_tcp(). */
1889 1.1 jonathan size_t
1890 1.1 jonathan ipsec4_hdrsiz(m, dir, inp)
1891 1.1 jonathan struct mbuf *m;
1892 1.1 jonathan u_int dir;
1893 1.1 jonathan struct inpcb *inp;
1894 1.1 jonathan {
1895 1.1 jonathan struct secpolicy *sp;
1896 1.1 jonathan int error;
1897 1.1 jonathan size_t size;
1898 1.1 jonathan
1899 1.1 jonathan IPSEC_ASSERT(m != NULL, ("ipsec4_hdrsiz: null mbuf"));
1900 1.1 jonathan IPSEC_ASSERT(inp == NULL || inp->inp_socket != NULL,
1901 1.1 jonathan ("ipsec4_hdrsize: socket w/o inpcb"));
1902 1.1 jonathan
1903 1.1 jonathan /* get SP for this packet.
1904 1.1 jonathan * When we are called from ip_forward(), we call
1905 1.1 jonathan * ipsec_getpolicybyaddr() with IP_FORWARDING flag.
1906 1.1 jonathan */
1907 1.1 jonathan if (inp == NULL)
1908 1.1 jonathan sp = ipsec_getpolicybyaddr(m, dir, IP_FORWARDING, &error);
1909 1.1 jonathan else
1910 1.5 jonathan sp = ipsec_getpolicybysock(m, dir,
1911 1.5 jonathan IN4PCB_TO_PCB(inp), &error);
1912 1.1 jonathan
1913 1.1 jonathan if (sp != NULL) {
1914 1.1 jonathan size = ipsec_hdrsiz(sp);
1915 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
1916 1.1 jonathan printf("ipsec4_hdrsiz: size:%lu.\n",
1917 1.1 jonathan (unsigned long)size));
1918 1.1 jonathan
1919 1.1 jonathan KEY_FREESP(&sp);
1920 1.1 jonathan } else {
1921 1.1 jonathan size = 0; /* XXX should be panic ? */
1922 1.1 jonathan }
1923 1.1 jonathan return size;
1924 1.1 jonathan }
1925 1.1 jonathan
1926 1.1 jonathan #ifdef INET6
1927 1.1 jonathan /* This function is called from ipsec6_hdrsize_tcp(),
1928 1.1 jonathan * and maybe from ip6_forward.()
1929 1.1 jonathan */
1930 1.1 jonathan size_t
1931 1.1 jonathan ipsec6_hdrsiz(m, dir, in6p)
1932 1.1 jonathan struct mbuf *m;
1933 1.1 jonathan u_int dir;
1934 1.1 jonathan struct in6pcb *in6p;
1935 1.1 jonathan {
1936 1.1 jonathan struct secpolicy *sp;
1937 1.1 jonathan int error;
1938 1.1 jonathan size_t size;
1939 1.1 jonathan
1940 1.1 jonathan IPSEC_ASSERT(m != NULL, ("ipsec6_hdrsiz: null mbuf"));
1941 1.1 jonathan IPSEC_ASSERT(in6p == NULL || in6p->in6p_socket != NULL,
1942 1.1 jonathan ("ipsec6_hdrsize: socket w/o inpcb"));
1943 1.1 jonathan
1944 1.1 jonathan /* get SP for this packet */
1945 1.1 jonathan /* XXX Is it right to call with IP_FORWARDING. */
1946 1.1 jonathan if (in6p == NULL)
1947 1.1 jonathan sp = ipsec_getpolicybyaddr(m, dir, IP_FORWARDING, &error);
1948 1.1 jonathan else
1949 1.15 perry sp = ipsec_getpolicybysock(m, dir,
1950 1.5 jonathan IN6PCB_TO_PCB(in6p),
1951 1.5 jonathan &error);
1952 1.1 jonathan
1953 1.1 jonathan if (sp == NULL)
1954 1.1 jonathan return 0;
1955 1.1 jonathan size = ipsec_hdrsiz(sp);
1956 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
1957 1.1 jonathan printf("ipsec6_hdrsiz: size:%lu.\n", (unsigned long)size));
1958 1.1 jonathan KEY_FREESP(&sp);
1959 1.1 jonathan
1960 1.1 jonathan return size;
1961 1.1 jonathan }
1962 1.1 jonathan #endif /*INET6*/
1963 1.1 jonathan
1964 1.1 jonathan /*
1965 1.1 jonathan * Check the variable replay window.
1966 1.1 jonathan * ipsec_chkreplay() performs replay check before ICV verification.
1967 1.1 jonathan * ipsec_updatereplay() updates replay bitmap. This must be called after
1968 1.1 jonathan * ICV verification (it also performs replay check, which is usually done
1969 1.1 jonathan * beforehand).
1970 1.1 jonathan * 0 (zero) is returned if packet disallowed, 1 if packet permitted.
1971 1.1 jonathan *
1972 1.1 jonathan * based on RFC 2401.
1973 1.1 jonathan */
1974 1.1 jonathan int
1975 1.1 jonathan ipsec_chkreplay(seq, sav)
1976 1.1 jonathan u_int32_t seq;
1977 1.1 jonathan struct secasvar *sav;
1978 1.1 jonathan {
1979 1.1 jonathan const struct secreplay *replay;
1980 1.1 jonathan u_int32_t diff;
1981 1.1 jonathan int fr;
1982 1.1 jonathan u_int32_t wsizeb; /* constant: bits of window size */
1983 1.1 jonathan int frlast; /* constant: last frame */
1984 1.1 jonathan
1985 1.1 jonathan IPSEC_SPLASSERT_SOFTNET("ipsec_chkreplay");
1986 1.1 jonathan
1987 1.1 jonathan IPSEC_ASSERT(sav != NULL, ("ipsec_chkreplay: Null SA"));
1988 1.1 jonathan IPSEC_ASSERT(sav->replay != NULL, ("ipsec_chkreplay: Null replay state"));
1989 1.1 jonathan
1990 1.1 jonathan replay = sav->replay;
1991 1.1 jonathan
1992 1.1 jonathan if (replay->wsize == 0)
1993 1.1 jonathan return 1; /* no need to check replay. */
1994 1.1 jonathan
1995 1.1 jonathan /* constant */
1996 1.1 jonathan frlast = replay->wsize - 1;
1997 1.1 jonathan wsizeb = replay->wsize << 3;
1998 1.1 jonathan
1999 1.1 jonathan /* sequence number of 0 is invalid */
2000 1.1 jonathan if (seq == 0)
2001 1.1 jonathan return 0;
2002 1.1 jonathan
2003 1.1 jonathan /* first time is always okay */
2004 1.1 jonathan if (replay->count == 0)
2005 1.1 jonathan return 1;
2006 1.1 jonathan
2007 1.1 jonathan if (seq > replay->lastseq) {
2008 1.1 jonathan /* larger sequences are okay */
2009 1.1 jonathan return 1;
2010 1.1 jonathan } else {
2011 1.1 jonathan /* seq is equal or less than lastseq. */
2012 1.1 jonathan diff = replay->lastseq - seq;
2013 1.1 jonathan
2014 1.1 jonathan /* over range to check, i.e. too old or wrapped */
2015 1.1 jonathan if (diff >= wsizeb)
2016 1.1 jonathan return 0;
2017 1.1 jonathan
2018 1.1 jonathan fr = frlast - diff / 8;
2019 1.1 jonathan
2020 1.1 jonathan /* this packet already seen ? */
2021 1.1 jonathan if ((replay->bitmap)[fr] & (1 << (diff % 8)))
2022 1.1 jonathan return 0;
2023 1.1 jonathan
2024 1.1 jonathan /* out of order but good */
2025 1.1 jonathan return 1;
2026 1.1 jonathan }
2027 1.1 jonathan }
2028 1.1 jonathan
2029 1.1 jonathan /*
2030 1.1 jonathan * check replay counter whether to update or not.
2031 1.1 jonathan * OUT: 0: OK
2032 1.1 jonathan * 1: NG
2033 1.1 jonathan */
2034 1.1 jonathan int
2035 1.1 jonathan ipsec_updatereplay(seq, sav)
2036 1.1 jonathan u_int32_t seq;
2037 1.1 jonathan struct secasvar *sav;
2038 1.1 jonathan {
2039 1.1 jonathan struct secreplay *replay;
2040 1.1 jonathan u_int32_t diff;
2041 1.1 jonathan int fr;
2042 1.1 jonathan u_int32_t wsizeb; /* constant: bits of window size */
2043 1.1 jonathan int frlast; /* constant: last frame */
2044 1.1 jonathan
2045 1.1 jonathan IPSEC_SPLASSERT_SOFTNET("ipsec_updatereplay");
2046 1.1 jonathan
2047 1.1 jonathan IPSEC_ASSERT(sav != NULL, ("ipsec_updatereplay: Null SA"));
2048 1.1 jonathan IPSEC_ASSERT(sav->replay != NULL, ("ipsec_updatereplay: Null replay state"));
2049 1.1 jonathan
2050 1.1 jonathan replay = sav->replay;
2051 1.1 jonathan
2052 1.1 jonathan if (replay->wsize == 0)
2053 1.1 jonathan goto ok; /* no need to check replay. */
2054 1.1 jonathan
2055 1.1 jonathan /* constant */
2056 1.1 jonathan frlast = replay->wsize - 1;
2057 1.1 jonathan wsizeb = replay->wsize << 3;
2058 1.1 jonathan
2059 1.1 jonathan /* sequence number of 0 is invalid */
2060 1.1 jonathan if (seq == 0)
2061 1.1 jonathan return 1;
2062 1.1 jonathan
2063 1.1 jonathan /* first time */
2064 1.1 jonathan if (replay->count == 0) {
2065 1.1 jonathan replay->lastseq = seq;
2066 1.1 jonathan bzero(replay->bitmap, replay->wsize);
2067 1.1 jonathan (replay->bitmap)[frlast] = 1;
2068 1.1 jonathan goto ok;
2069 1.1 jonathan }
2070 1.1 jonathan
2071 1.1 jonathan if (seq > replay->lastseq) {
2072 1.1 jonathan /* seq is larger than lastseq. */
2073 1.1 jonathan diff = seq - replay->lastseq;
2074 1.1 jonathan
2075 1.1 jonathan /* new larger sequence number */
2076 1.1 jonathan if (diff < wsizeb) {
2077 1.1 jonathan /* In window */
2078 1.1 jonathan /* set bit for this packet */
2079 1.1 jonathan vshiftl(replay->bitmap, diff, replay->wsize);
2080 1.1 jonathan (replay->bitmap)[frlast] |= 1;
2081 1.1 jonathan } else {
2082 1.1 jonathan /* this packet has a "way larger" */
2083 1.1 jonathan bzero(replay->bitmap, replay->wsize);
2084 1.1 jonathan (replay->bitmap)[frlast] = 1;
2085 1.1 jonathan }
2086 1.1 jonathan replay->lastseq = seq;
2087 1.1 jonathan
2088 1.1 jonathan /* larger is good */
2089 1.1 jonathan } else {
2090 1.1 jonathan /* seq is equal or less than lastseq. */
2091 1.1 jonathan diff = replay->lastseq - seq;
2092 1.1 jonathan
2093 1.1 jonathan /* over range to check, i.e. too old or wrapped */
2094 1.1 jonathan if (diff >= wsizeb)
2095 1.1 jonathan return 1;
2096 1.1 jonathan
2097 1.1 jonathan fr = frlast - diff / 8;
2098 1.1 jonathan
2099 1.1 jonathan /* this packet already seen ? */
2100 1.1 jonathan if ((replay->bitmap)[fr] & (1 << (diff % 8)))
2101 1.1 jonathan return 1;
2102 1.1 jonathan
2103 1.1 jonathan /* mark as seen */
2104 1.1 jonathan (replay->bitmap)[fr] |= (1 << (diff % 8));
2105 1.1 jonathan
2106 1.1 jonathan /* out of order but good */
2107 1.1 jonathan }
2108 1.1 jonathan
2109 1.1 jonathan ok:
2110 1.1 jonathan if (replay->count == ~0) {
2111 1.1 jonathan
2112 1.1 jonathan /* set overflow flag */
2113 1.1 jonathan replay->overflow++;
2114 1.1 jonathan
2115 1.1 jonathan /* don't increment, no more packets accepted */
2116 1.1 jonathan if ((sav->flags & SADB_X_EXT_CYCSEQ) == 0)
2117 1.1 jonathan return 1;
2118 1.1 jonathan
2119 1.1 jonathan ipseclog((LOG_WARNING, "replay counter made %d cycle. %s\n",
2120 1.26 degroote replay->overflow, ipsec_logsastr(sav)));
2121 1.1 jonathan }
2122 1.1 jonathan
2123 1.1 jonathan replay->count++;
2124 1.1 jonathan
2125 1.1 jonathan return 0;
2126 1.1 jonathan }
2127 1.1 jonathan
2128 1.1 jonathan /*
2129 1.1 jonathan * shift variable length bunffer to left.
2130 1.1 jonathan * IN: bitmap: pointer to the buffer
2131 1.1 jonathan * nbit: the number of to shift.
2132 1.1 jonathan * wsize: buffer size (bytes).
2133 1.1 jonathan */
2134 1.1 jonathan static void
2135 1.1 jonathan vshiftl(bitmap, nbit, wsize)
2136 1.1 jonathan unsigned char *bitmap;
2137 1.1 jonathan int nbit, wsize;
2138 1.1 jonathan {
2139 1.1 jonathan int s, j, i;
2140 1.1 jonathan unsigned char over;
2141 1.1 jonathan
2142 1.1 jonathan for (j = 0; j < nbit; j += 8) {
2143 1.1 jonathan s = (nbit - j < 8) ? (nbit - j): 8;
2144 1.1 jonathan bitmap[0] <<= s;
2145 1.1 jonathan for (i = 1; i < wsize; i++) {
2146 1.1 jonathan over = (bitmap[i] >> (8 - s));
2147 1.1 jonathan bitmap[i] <<= s;
2148 1.1 jonathan bitmap[i-1] |= over;
2149 1.1 jonathan }
2150 1.1 jonathan }
2151 1.1 jonathan
2152 1.1 jonathan return;
2153 1.1 jonathan }
2154 1.1 jonathan
2155 1.1 jonathan /* Return a printable string for the IPv4 address. */
2156 1.1 jonathan static char *
2157 1.1 jonathan inet_ntoa4(struct in_addr ina)
2158 1.1 jonathan {
2159 1.1 jonathan static char buf[4][4 * sizeof "123" + 4];
2160 1.1 jonathan unsigned char *ucp = (unsigned char *) &ina;
2161 1.1 jonathan static int i = 3;
2162 1.1 jonathan
2163 1.1 jonathan i = (i + 1) % 4;
2164 1.11 itojun snprintf(buf[i], sizeof(buf[i]), "%d.%d.%d.%d",
2165 1.26 degroote ucp[0] & 0xff, ucp[1] & 0xff, ucp[2] & 0xff, ucp[3] & 0xff);
2166 1.1 jonathan return (buf[i]);
2167 1.1 jonathan }
2168 1.1 jonathan
2169 1.1 jonathan /* Return a printable string for the address. */
2170 1.17 christos const char *
2171 1.1 jonathan ipsec_address(union sockaddr_union* sa)
2172 1.1 jonathan {
2173 1.1 jonathan switch (sa->sa.sa_family) {
2174 1.1 jonathan #if INET
2175 1.1 jonathan case AF_INET:
2176 1.1 jonathan return inet_ntoa4(sa->sin.sin_addr);
2177 1.1 jonathan #endif /* INET */
2178 1.1 jonathan
2179 1.1 jonathan #if INET6
2180 1.1 jonathan case AF_INET6:
2181 1.1 jonathan return ip6_sprintf(&sa->sin6.sin6_addr);
2182 1.1 jonathan #endif /* INET6 */
2183 1.1 jonathan
2184 1.1 jonathan default:
2185 1.1 jonathan return "(unknown address family)";
2186 1.1 jonathan }
2187 1.1 jonathan }
2188 1.1 jonathan
2189 1.1 jonathan const char *
2190 1.1 jonathan ipsec_logsastr(sav)
2191 1.1 jonathan struct secasvar *sav;
2192 1.1 jonathan {
2193 1.1 jonathan static char buf[256];
2194 1.1 jonathan char *p;
2195 1.1 jonathan struct secasindex *saidx = &sav->sah->saidx;
2196 1.1 jonathan
2197 1.1 jonathan IPSEC_ASSERT(saidx->src.sa.sa_family == saidx->dst.sa.sa_family,
2198 1.1 jonathan ("ipsec_logsastr: address family mismatch"));
2199 1.1 jonathan
2200 1.1 jonathan p = buf;
2201 1.1 jonathan snprintf(buf, sizeof(buf), "SA(SPI=%u ", (u_int32_t)ntohl(sav->spi));
2202 1.1 jonathan while (p && *p)
2203 1.1 jonathan p++;
2204 1.1 jonathan /* NB: only use ipsec_address on one address at a time */
2205 1.1 jonathan snprintf(p, sizeof (buf) - (p - buf), "src=%s ",
2206 1.1 jonathan ipsec_address(&saidx->src));
2207 1.1 jonathan while (p && *p)
2208 1.1 jonathan p++;
2209 1.1 jonathan snprintf(p, sizeof (buf) - (p - buf), "dst=%s)",
2210 1.1 jonathan ipsec_address(&saidx->dst));
2211 1.1 jonathan
2212 1.1 jonathan return buf;
2213 1.1 jonathan }
2214 1.1 jonathan
2215 1.1 jonathan void
2216 1.1 jonathan ipsec_dumpmbuf(m)
2217 1.1 jonathan struct mbuf *m;
2218 1.1 jonathan {
2219 1.1 jonathan int totlen;
2220 1.1 jonathan int i;
2221 1.1 jonathan u_char *p;
2222 1.1 jonathan
2223 1.1 jonathan totlen = 0;
2224 1.1 jonathan printf("---\n");
2225 1.1 jonathan while (m) {
2226 1.1 jonathan p = mtod(m, u_char *);
2227 1.1 jonathan for (i = 0; i < m->m_len; i++) {
2228 1.1 jonathan printf("%02x ", p[i]);
2229 1.1 jonathan totlen++;
2230 1.1 jonathan if (totlen % 16 == 0)
2231 1.1 jonathan printf("\n");
2232 1.1 jonathan }
2233 1.1 jonathan m = m->m_next;
2234 1.1 jonathan }
2235 1.1 jonathan if (totlen % 16 != 0)
2236 1.1 jonathan printf("\n");
2237 1.1 jonathan printf("---\n");
2238 1.1 jonathan }
2239 1.1 jonathan
2240 1.26 degroote #ifdef INET6
2241 1.26 degroote struct secpolicy *
2242 1.26 degroote ipsec6_check_policy(m,so,flags,needipsecp,errorp)
2243 1.26 degroote struct mbuf * m;
2244 1.26 degroote const struct socket * so;
2245 1.26 degroote int flags;
2246 1.26 degroote int * needipsecp;
2247 1.26 degroote int * errorp;
2248 1.26 degroote {
2249 1.26 degroote struct in6pcb *in6p = NULL;
2250 1.26 degroote struct m_tag *mtag;
2251 1.26 degroote struct secpolicy *sp = NULL;
2252 1.26 degroote struct tdb_ident *tdbi;
2253 1.26 degroote int s;
2254 1.26 degroote int error = 0;
2255 1.26 degroote int needipsec = 0;
2256 1.26 degroote
2257 1.26 degroote if (so != NULL && so->so_proto->pr_domain->dom_family == AF_INET6)
2258 1.26 degroote in6p = sotoin6pcb(so);
2259 1.26 degroote
2260 1.26 degroote mtag = m_tag_find(m, PACKET_TAG_IPSEC_PENDING_TDB, NULL);
2261 1.26 degroote s = splsoftnet();
2262 1.26 degroote if (mtag != NULL) {
2263 1.26 degroote tdbi = (struct tdb_ident *)(mtag + 1);
2264 1.26 degroote sp = ipsec_getpolicy(tdbi, IPSEC_DIR_OUTBOUND);
2265 1.26 degroote if (sp == NULL)
2266 1.26 degroote error = -EINVAL; /* force silent drop */
2267 1.26 degroote m_tag_delete(m, mtag);
2268 1.26 degroote } else {
2269 1.26 degroote if (in6p != NULL &&
2270 1.26 degroote IPSEC_PCB_SKIP_IPSEC(in6p->in6p_sp, IPSEC_DIR_OUTBOUND))
2271 1.26 degroote goto skippolicycheck;
2272 1.26 degroote sp = ipsec6_checkpolicy(m, IPSEC_DIR_OUTBOUND, flags, &error,in6p);
2273 1.26 degroote }
2274 1.26 degroote
2275 1.26 degroote /*
2276 1.26 degroote * There are four return cases:
2277 1.26 degroote * sp != NULL apply IPsec policy
2278 1.26 degroote * sp == NULL, error == 0 no IPsec handling needed
2279 1.26 degroote * sp == NULL, error == -EINVAL discard packet w/o error
2280 1.26 degroote * sp == NULL, error != 0 discard packet, report error
2281 1.26 degroote */
2282 1.26 degroote
2283 1.26 degroote if (sp == NULL) {
2284 1.26 degroote splx(s);
2285 1.26 degroote
2286 1.26 degroote if (error != 0) {
2287 1.26 degroote needipsec = 0;
2288 1.26 degroote } else {
2289 1.26 degroote /* No IPsec processing for this packet. */
2290 1.26 degroote needipsec = 0;
2291 1.26 degroote }
2292 1.26 degroote } else {
2293 1.26 degroote /* Loop detection, check if ipsec processing already done */
2294 1.26 degroote IPSEC_ASSERT(sp->req != NULL, ("ip6_output: no ipsec request"));
2295 1.26 degroote for (mtag = m_tag_first(m); mtag != NULL;
2296 1.26 degroote mtag = m_tag_next(m, mtag)) {
2297 1.26 degroote #ifdef MTAG_ABI_COMPAT
2298 1.26 degroote if (mtag->m_tag_cookie != MTAG_ABI_COMPAT)
2299 1.26 degroote continue;
2300 1.26 degroote #endif
2301 1.26 degroote if (mtag->m_tag_id != PACKET_TAG_IPSEC_OUT_DONE &&
2302 1.26 degroote mtag->m_tag_id != PACKET_TAG_IPSEC_OUT_CRYPTO_NEEDED)
2303 1.26 degroote continue;
2304 1.26 degroote /*
2305 1.26 degroote * Check if policy has an SA associated with it.
2306 1.26 degroote * This can happen when an SP has yet to acquire
2307 1.26 degroote * an SA; e.g. on first reference. If it occurs,
2308 1.26 degroote * then we let ipsec4_process_packet do its thing.
2309 1.26 degroote */
2310 1.26 degroote if (sp->req->sav == NULL)
2311 1.26 degroote break;
2312 1.26 degroote tdbi = (struct tdb_ident *)(mtag + 1);
2313 1.26 degroote if (tdbi->spi == sp->req->sav->spi &&
2314 1.26 degroote tdbi->proto == sp->req->sav->sah->saidx.proto &&
2315 1.26 degroote bcmp(&tdbi->dst, &sp->req->sav->sah->saidx.dst,
2316 1.26 degroote sizeof (union sockaddr_union)) == 0) {
2317 1.26 degroote /*
2318 1.26 degroote * No IPsec processing is needed, free
2319 1.26 degroote * reference to SP.
2320 1.26 degroote *
2321 1.26 degroote * NB: null pointer to avoid free at
2322 1.26 degroote * done: below.
2323 1.26 degroote */
2324 1.26 degroote KEY_FREESP(&sp), sp = NULL;
2325 1.26 degroote needipsec = 0;
2326 1.26 degroote splx(s);
2327 1.26 degroote goto skippolicycheck;
2328 1.26 degroote }
2329 1.26 degroote }
2330 1.26 degroote splx(s);
2331 1.26 degroote needipsec = 1;
2332 1.26 degroote }
2333 1.26 degroote skippolicycheck:;
2334 1.26 degroote
2335 1.26 degroote *errorp = error;
2336 1.26 degroote *needipsecp = needipsec;
2337 1.26 degroote return sp;
2338 1.26 degroote }
2339 1.26 degroote #endif
2340 1.26 degroote
2341 1.26 degroote
2342 1.26 degroote
2343 1.1 jonathan /* XXX this stuff doesn't belong here... */
2344 1.1 jonathan
2345 1.1 jonathan static struct xformsw* xforms = NULL;
2346 1.1 jonathan
2347 1.1 jonathan /*
2348 1.1 jonathan * Register a transform; typically at system startup.
2349 1.1 jonathan */
2350 1.1 jonathan void
2351 1.1 jonathan xform_register(struct xformsw* xsp)
2352 1.1 jonathan {
2353 1.1 jonathan xsp->xf_next = xforms;
2354 1.1 jonathan xforms = xsp;
2355 1.1 jonathan }
2356 1.1 jonathan
2357 1.1 jonathan /*
2358 1.1 jonathan * Initialize transform support in an sav.
2359 1.1 jonathan */
2360 1.1 jonathan int
2361 1.1 jonathan xform_init(struct secasvar *sav, int xftype)
2362 1.1 jonathan {
2363 1.1 jonathan struct xformsw *xsp;
2364 1.1 jonathan
2365 1.1 jonathan if (sav->tdb_xform != NULL) /* previously initialized */
2366 1.1 jonathan return 0;
2367 1.1 jonathan for (xsp = xforms; xsp; xsp = xsp->xf_next)
2368 1.1 jonathan if (xsp->xf_type == xftype)
2369 1.1 jonathan return (*xsp->xf_init)(sav, xsp);
2370 1.1 jonathan
2371 1.1 jonathan DPRINTF(("xform_init: no match for xform type %d\n", xftype));
2372 1.1 jonathan return EINVAL;
2373 1.1 jonathan }
2374 1.1 jonathan
2375 1.1 jonathan #ifdef __NetBSD__
2376 1.1 jonathan void
2377 1.1 jonathan ipsec_attach(void)
2378 1.1 jonathan {
2379 1.1 jonathan printf("initializing IPsec...");
2380 1.1 jonathan ah_attach();
2381 1.1 jonathan esp_attach();
2382 1.1 jonathan ipcomp_attach();
2383 1.1 jonathan ipe4_attach();
2384 1.12 jonathan #ifdef TCP_SIGNATURE
2385 1.12 jonathan tcpsignature_attach();
2386 1.12 jonathan #endif
2387 1.1 jonathan printf(" done\n");
2388 1.1 jonathan }
2389 1.1 jonathan #endif /* __NetBSD__ */
2390