key.c revision 1.30 1 1.30 christos /* $NetBSD: key.c,v 1.30 2006/11/16 01:33:49 christos Exp $ */
2 1.12 jonathan /* $FreeBSD: src/sys/netipsec/key.c,v 1.3.2.3 2004/02/14 22:23:23 bms Exp $ */
3 1.1 jonathan /* $KAME: key.c,v 1.191 2001/06/27 10:46:49 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 1.1 jonathan * notice, this list of conditions and the following disclaimer.
14 1.1 jonathan * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 jonathan * notice, this list of conditions and the following disclaimer in the
16 1.1 jonathan * 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 1.1 jonathan * may be used to endorse or promote products derived from this software
19 1.1 jonathan * 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 1.30 christos __KERNEL_RCSID(0, "$NetBSD: key.c,v 1.30 2006/11/16 01:33:49 christos Exp $");
36 1.1 jonathan
37 1.1 jonathan /*
38 1.1 jonathan * This code is referd to RFC 2367
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 1.6 scw #ifdef __NetBSD__
47 1.6 scw #include "opt_gateway.h"
48 1.6 scw #endif
49 1.1 jonathan
50 1.1 jonathan #include <sys/types.h>
51 1.1 jonathan #include <sys/param.h>
52 1.1 jonathan #include <sys/systm.h>
53 1.1 jonathan #include <sys/callout.h>
54 1.1 jonathan #include <sys/kernel.h>
55 1.1 jonathan #include <sys/mbuf.h>
56 1.1 jonathan #include <sys/domain.h>
57 1.1 jonathan #include <sys/protosw.h>
58 1.1 jonathan #include <sys/malloc.h>
59 1.1 jonathan #include <sys/socket.h>
60 1.1 jonathan #include <sys/socketvar.h>
61 1.1 jonathan #include <sys/sysctl.h>
62 1.1 jonathan #include <sys/errno.h>
63 1.1 jonathan #include <sys/proc.h>
64 1.1 jonathan #include <sys/queue.h>
65 1.1 jonathan #include <sys/syslog.h>
66 1.1 jonathan
67 1.1 jonathan #include <net/if.h>
68 1.1 jonathan #include <net/route.h>
69 1.1 jonathan #include <net/raw_cb.h>
70 1.1 jonathan
71 1.1 jonathan #include <netinet/in.h>
72 1.1 jonathan #include <netinet/in_systm.h>
73 1.1 jonathan #include <netinet/ip.h>
74 1.1 jonathan #include <netinet/in_var.h>
75 1.6 scw #ifdef INET
76 1.6 scw #include <netinet/ip_var.h>
77 1.6 scw #endif
78 1.1 jonathan
79 1.1 jonathan #ifdef INET6
80 1.1 jonathan #include <netinet/ip6.h>
81 1.1 jonathan #include <netinet6/in6_var.h>
82 1.1 jonathan #include <netinet6/ip6_var.h>
83 1.1 jonathan #endif /* INET6 */
84 1.1 jonathan
85 1.1 jonathan #ifdef INET
86 1.1 jonathan #include <netinet/in_pcb.h>
87 1.1 jonathan #endif
88 1.1 jonathan #ifdef INET6
89 1.1 jonathan #include <netinet6/in6_pcb.h>
90 1.1 jonathan #endif /* INET6 */
91 1.1 jonathan
92 1.1 jonathan #include <net/pfkeyv2.h>
93 1.1 jonathan #include <netipsec/keydb.h>
94 1.1 jonathan #include <netipsec/key.h>
95 1.1 jonathan #include <netipsec/keysock.h>
96 1.1 jonathan #include <netipsec/key_debug.h>
97 1.1 jonathan
98 1.1 jonathan #include <netipsec/ipsec.h>
99 1.1 jonathan #ifdef INET6
100 1.1 jonathan #include <netipsec/ipsec6.h>
101 1.1 jonathan #endif
102 1.1 jonathan
103 1.1 jonathan #include <netipsec/xform.h>
104 1.1 jonathan #include <netipsec/ipsec_osdep.h>
105 1.1 jonathan
106 1.1 jonathan #include <machine/stdarg.h>
107 1.1 jonathan
108 1.1 jonathan
109 1.1 jonathan #include <net/net_osdep.h>
110 1.1 jonathan
111 1.1 jonathan #define FULLMASK 0xff
112 1.1 jonathan #define _BITS(bytes) ((bytes) << 3)
113 1.1 jonathan
114 1.1 jonathan /*
115 1.1 jonathan * Note on SA reference counting:
116 1.1 jonathan * - SAs that are not in DEAD state will have (total external reference + 1)
117 1.1 jonathan * following value in reference count field. they cannot be freed and are
118 1.1 jonathan * referenced from SA header.
119 1.1 jonathan * - SAs that are in DEAD state will have (total external reference)
120 1.1 jonathan * in reference count field. they are ready to be freed. reference from
121 1.1 jonathan * SA header will be removed in key_delsav(), when the reference count
122 1.1 jonathan * field hits 0 (= no external reference other than from SA header.
123 1.1 jonathan */
124 1.1 jonathan
125 1.1 jonathan u_int32_t key_debug_level = 0;
126 1.1 jonathan static u_int key_spi_trycnt = 1000;
127 1.1 jonathan static u_int32_t key_spi_minval = 0x100;
128 1.1 jonathan static u_int32_t key_spi_maxval = 0x0fffffff; /* XXX */
129 1.1 jonathan static u_int32_t policy_id = 0;
130 1.1 jonathan static u_int key_int_random = 60; /*interval to initialize randseed,1(m)*/
131 1.1 jonathan static u_int key_larval_lifetime = 30; /* interval to expire acquiring, 30(s)*/
132 1.1 jonathan static int key_blockacq_count = 10; /* counter for blocking SADB_ACQUIRE.*/
133 1.1 jonathan static int key_blockacq_lifetime = 20; /* lifetime for blocking SADB_ACQUIRE.*/
134 1.17 jonathan static int key_prefered_oldsa = 0; /* prefered old sa rather than new sa.*/
135 1.1 jonathan
136 1.1 jonathan static u_int32_t acq_seq = 0;
137 1.1 jonathan static int key_tick_init_random = 0;
138 1.1 jonathan
139 1.1 jonathan static LIST_HEAD(_sptree, secpolicy) sptree[IPSEC_DIR_MAX]; /* SPD */
140 1.1 jonathan static LIST_HEAD(_sahtree, secashead) sahtree; /* SAD */
141 1.1 jonathan static LIST_HEAD(_regtree, secreg) regtree[SADB_SATYPE_MAX + 1];
142 1.1 jonathan /* registed list */
143 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
144 1.1 jonathan static LIST_HEAD(_acqtree, secacq) acqtree; /* acquiring list */
145 1.1 jonathan #endif
146 1.1 jonathan static LIST_HEAD(_spacqtree, secspacq) spacqtree; /* SP acquiring list */
147 1.1 jonathan
148 1.1 jonathan /* search order for SAs */
149 1.1 jonathan static u_int saorder_state_valid[] = {
150 1.1 jonathan SADB_SASTATE_DYING, SADB_SASTATE_MATURE,
151 1.1 jonathan /*
152 1.1 jonathan * This order is important because we must select the oldest SA
153 1.1 jonathan * for outbound processing. For inbound, This is not important.
154 1.1 jonathan */
155 1.1 jonathan };
156 1.1 jonathan static u_int saorder_state_alive[] = {
157 1.1 jonathan /* except DEAD */
158 1.1 jonathan SADB_SASTATE_MATURE, SADB_SASTATE_DYING, SADB_SASTATE_LARVAL
159 1.1 jonathan };
160 1.1 jonathan static u_int saorder_state_any[] = {
161 1.1 jonathan SADB_SASTATE_MATURE, SADB_SASTATE_DYING,
162 1.1 jonathan SADB_SASTATE_LARVAL, SADB_SASTATE_DEAD
163 1.1 jonathan };
164 1.1 jonathan
165 1.1 jonathan static const int minsize[] = {
166 1.1 jonathan sizeof(struct sadb_msg), /* SADB_EXT_RESERVED */
167 1.1 jonathan sizeof(struct sadb_sa), /* SADB_EXT_SA */
168 1.1 jonathan sizeof(struct sadb_lifetime), /* SADB_EXT_LIFETIME_CURRENT */
169 1.1 jonathan sizeof(struct sadb_lifetime), /* SADB_EXT_LIFETIME_HARD */
170 1.1 jonathan sizeof(struct sadb_lifetime), /* SADB_EXT_LIFETIME_SOFT */
171 1.1 jonathan sizeof(struct sadb_address), /* SADB_EXT_ADDRESS_SRC */
172 1.1 jonathan sizeof(struct sadb_address), /* SADB_EXT_ADDRESS_DST */
173 1.1 jonathan sizeof(struct sadb_address), /* SADB_EXT_ADDRESS_PROXY */
174 1.1 jonathan sizeof(struct sadb_key), /* SADB_EXT_KEY_AUTH */
175 1.1 jonathan sizeof(struct sadb_key), /* SADB_EXT_KEY_ENCRYPT */
176 1.1 jonathan sizeof(struct sadb_ident), /* SADB_EXT_IDENTITY_SRC */
177 1.1 jonathan sizeof(struct sadb_ident), /* SADB_EXT_IDENTITY_DST */
178 1.1 jonathan sizeof(struct sadb_sens), /* SADB_EXT_SENSITIVITY */
179 1.1 jonathan sizeof(struct sadb_prop), /* SADB_EXT_PROPOSAL */
180 1.1 jonathan sizeof(struct sadb_supported), /* SADB_EXT_SUPPORTED_AUTH */
181 1.1 jonathan sizeof(struct sadb_supported), /* SADB_EXT_SUPPORTED_ENCRYPT */
182 1.1 jonathan sizeof(struct sadb_spirange), /* SADB_EXT_SPIRANGE */
183 1.1 jonathan 0, /* SADB_X_EXT_KMPRIVATE */
184 1.1 jonathan sizeof(struct sadb_x_policy), /* SADB_X_EXT_POLICY */
185 1.1 jonathan sizeof(struct sadb_x_sa2), /* SADB_X_SA2 */
186 1.21 manu sizeof(struct sadb_x_nat_t_type), /* SADB_X_EXT_NAT_T_TYPE */
187 1.21 manu sizeof(struct sadb_x_nat_t_port), /* SADB_X_EXT_NAT_T_SPORT */
188 1.21 manu sizeof(struct sadb_x_nat_t_port), /* SADB_X_EXT_NAT_T_DPORT */
189 1.23 jonathan sizeof(struct sadb_address), /* SADB_X_EXT_NAT_T_OA */
190 1.21 manu sizeof(struct sadb_x_nat_t_frag), /* SADB_X_EXT_NAT_T_FRAG */
191 1.1 jonathan };
192 1.1 jonathan static const int maxsize[] = {
193 1.1 jonathan sizeof(struct sadb_msg), /* SADB_EXT_RESERVED */
194 1.1 jonathan sizeof(struct sadb_sa), /* SADB_EXT_SA */
195 1.1 jonathan sizeof(struct sadb_lifetime), /* SADB_EXT_LIFETIME_CURRENT */
196 1.1 jonathan sizeof(struct sadb_lifetime), /* SADB_EXT_LIFETIME_HARD */
197 1.1 jonathan sizeof(struct sadb_lifetime), /* SADB_EXT_LIFETIME_SOFT */
198 1.1 jonathan 0, /* SADB_EXT_ADDRESS_SRC */
199 1.1 jonathan 0, /* SADB_EXT_ADDRESS_DST */
200 1.1 jonathan 0, /* SADB_EXT_ADDRESS_PROXY */
201 1.1 jonathan 0, /* SADB_EXT_KEY_AUTH */
202 1.1 jonathan 0, /* SADB_EXT_KEY_ENCRYPT */
203 1.1 jonathan 0, /* SADB_EXT_IDENTITY_SRC */
204 1.1 jonathan 0, /* SADB_EXT_IDENTITY_DST */
205 1.1 jonathan 0, /* SADB_EXT_SENSITIVITY */
206 1.1 jonathan 0, /* SADB_EXT_PROPOSAL */
207 1.1 jonathan 0, /* SADB_EXT_SUPPORTED_AUTH */
208 1.1 jonathan 0, /* SADB_EXT_SUPPORTED_ENCRYPT */
209 1.1 jonathan sizeof(struct sadb_spirange), /* SADB_EXT_SPIRANGE */
210 1.1 jonathan 0, /* SADB_X_EXT_KMPRIVATE */
211 1.1 jonathan 0, /* SADB_X_EXT_POLICY */
212 1.1 jonathan sizeof(struct sadb_x_sa2), /* SADB_X_SA2 */
213 1.21 manu sizeof(struct sadb_x_nat_t_type), /* SADB_X_EXT_NAT_T_TYPE */
214 1.21 manu sizeof(struct sadb_x_nat_t_port), /* SADB_X_EXT_NAT_T_SPORT */
215 1.21 manu sizeof(struct sadb_x_nat_t_port), /* SADB_X_EXT_NAT_T_DPORT */
216 1.23 jonathan 0, /* SADB_X_EXT_NAT_T_OA */
217 1.21 manu sizeof(struct sadb_x_nat_t_frag), /* SADB_X_EXT_NAT_T_FRAG */
218 1.1 jonathan };
219 1.1 jonathan
220 1.1 jonathan static int ipsec_esp_keymin = 256;
221 1.1 jonathan static int ipsec_esp_auth = 0;
222 1.1 jonathan static int ipsec_ah_keymin = 128;
223 1.1 jonathan
224 1.1 jonathan #ifdef SYSCTL_DECL
225 1.1 jonathan SYSCTL_DECL(_net_key);
226 1.1 jonathan #endif
227 1.1 jonathan
228 1.1 jonathan #ifdef SYSCTL_INT
229 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_DEBUG_LEVEL, debug, CTLFLAG_RW, \
230 1.1 jonathan &key_debug_level, 0, "");
231 1.1 jonathan
232 1.1 jonathan /* max count of trial for the decision of spi value */
233 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_SPI_TRY, spi_trycnt, CTLFLAG_RW, \
234 1.1 jonathan &key_spi_trycnt, 0, "");
235 1.1 jonathan
236 1.1 jonathan /* minimum spi value to allocate automatically. */
237 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_SPI_MIN_VALUE, spi_minval, CTLFLAG_RW, \
238 1.1 jonathan &key_spi_minval, 0, "");
239 1.1 jonathan
240 1.1 jonathan /* maximun spi value to allocate automatically. */
241 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_SPI_MAX_VALUE, spi_maxval, CTLFLAG_RW, \
242 1.1 jonathan &key_spi_maxval, 0, "");
243 1.1 jonathan
244 1.1 jonathan /* interval to initialize randseed */
245 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_RANDOM_INT, int_random, CTLFLAG_RW, \
246 1.1 jonathan &key_int_random, 0, "");
247 1.1 jonathan
248 1.1 jonathan /* lifetime for larval SA */
249 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_LARVAL_LIFETIME, larval_lifetime, CTLFLAG_RW, \
250 1.1 jonathan &key_larval_lifetime, 0, "");
251 1.1 jonathan
252 1.1 jonathan /* counter for blocking to send SADB_ACQUIRE to IKEd */
253 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_BLOCKACQ_COUNT, blockacq_count, CTLFLAG_RW, \
254 1.1 jonathan &key_blockacq_count, 0, "");
255 1.1 jonathan
256 1.1 jonathan /* lifetime for blocking to send SADB_ACQUIRE to IKEd */
257 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_BLOCKACQ_LIFETIME, blockacq_lifetime, CTLFLAG_RW, \
258 1.1 jonathan &key_blockacq_lifetime, 0, "");
259 1.1 jonathan
260 1.1 jonathan /* ESP auth */
261 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_ESP_AUTH, esp_auth, CTLFLAG_RW, \
262 1.1 jonathan &ipsec_esp_auth, 0, "");
263 1.1 jonathan
264 1.1 jonathan /* minimum ESP key length */
265 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_ESP_KEYMIN, esp_keymin, CTLFLAG_RW, \
266 1.1 jonathan &ipsec_esp_keymin, 0, "");
267 1.1 jonathan
268 1.1 jonathan /* minimum AH key length */
269 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_AH_KEYMIN, ah_keymin, CTLFLAG_RW, \
270 1.1 jonathan &ipsec_ah_keymin, 0, "");
271 1.1 jonathan
272 1.1 jonathan /* perfered old SA rather than new SA */
273 1.1 jonathan SYSCTL_INT(_net_key, KEYCTL_PREFERED_OLDSA, prefered_oldsa, CTLFLAG_RW,\
274 1.1 jonathan &key_prefered_oldsa, 0, "");
275 1.3 tls #endif /* SYSCTL_INT */
276 1.1 jonathan
277 1.1 jonathan #ifndef LIST_FOREACH
278 1.1 jonathan #define LIST_FOREACH(elm, head, field) \
279 1.1 jonathan for (elm = LIST_FIRST(head); elm; elm = LIST_NEXT(elm, field))
280 1.1 jonathan #endif
281 1.1 jonathan #define __LIST_CHAINED(elm) \
282 1.1 jonathan (!((elm)->chain.le_next == NULL && (elm)->chain.le_prev == NULL))
283 1.1 jonathan #define LIST_INSERT_TAIL(head, elm, type, field) \
284 1.1 jonathan do {\
285 1.1 jonathan struct type *curelm = LIST_FIRST(head); \
286 1.1 jonathan if (curelm == NULL) {\
287 1.1 jonathan LIST_INSERT_HEAD(head, elm, field); \
288 1.1 jonathan } else { \
289 1.1 jonathan while (LIST_NEXT(curelm, field)) \
290 1.1 jonathan curelm = LIST_NEXT(curelm, field);\
291 1.1 jonathan LIST_INSERT_AFTER(curelm, elm, field);\
292 1.1 jonathan }\
293 1.1 jonathan } while (0)
294 1.1 jonathan
295 1.1 jonathan #define KEY_CHKSASTATE(head, sav, name) \
296 1.1 jonathan do { \
297 1.1 jonathan if ((head) != (sav)) { \
298 1.1 jonathan ipseclog((LOG_DEBUG, "%s: state mismatched (TREE=%d SA=%d)\n", \
299 1.1 jonathan (name), (head), (sav))); \
300 1.1 jonathan continue; \
301 1.1 jonathan } \
302 1.1 jonathan } while (0)
303 1.1 jonathan
304 1.1 jonathan #define KEY_CHKSPDIR(head, sp, name) \
305 1.1 jonathan do { \
306 1.1 jonathan if ((head) != (sp)) { \
307 1.1 jonathan ipseclog((LOG_DEBUG, "%s: direction mismatched (TREE=%d SP=%d), " \
308 1.1 jonathan "anyway continue.\n", \
309 1.1 jonathan (name), (head), (sp))); \
310 1.1 jonathan } \
311 1.1 jonathan } while (0)
312 1.1 jonathan
313 1.1 jonathan MALLOC_DEFINE(M_SECA, "key mgmt", "security associations, key management");
314 1.1 jonathan
315 1.1 jonathan #if 1
316 1.1 jonathan #define KMALLOC(p, t, n) \
317 1.1 jonathan ((p) = (t) malloc((unsigned long)(n), M_SECA, M_NOWAIT))
318 1.1 jonathan #define KFREE(p) \
319 1.1 jonathan free((caddr_t)(p), M_SECA)
320 1.1 jonathan #else
321 1.1 jonathan #define KMALLOC(p, t, n) \
322 1.1 jonathan do { \
323 1.1 jonathan ((p) = (t)malloc((unsigned long)(n), M_SECA, M_NOWAIT)); \
324 1.1 jonathan printf("%s %d: %p <- KMALLOC(%s, %d)\n", \
325 1.1 jonathan __FILE__, __LINE__, (p), #t, n); \
326 1.1 jonathan } while (0)
327 1.1 jonathan
328 1.1 jonathan #define KFREE(p) \
329 1.1 jonathan do { \
330 1.1 jonathan printf("%s %d: %p -> KFREE()\n", __FILE__, __LINE__, (p)); \
331 1.1 jonathan free((caddr_t)(p), M_SECA); \
332 1.1 jonathan } while (0)
333 1.1 jonathan #endif
334 1.1 jonathan
335 1.1 jonathan /*
336 1.1 jonathan * set parameters into secpolicyindex buffer.
337 1.1 jonathan * Must allocate secpolicyindex buffer passed to this function.
338 1.1 jonathan */
339 1.1 jonathan #define KEY_SETSECSPIDX(_dir, s, d, ps, pd, ulp, idx) \
340 1.1 jonathan do { \
341 1.1 jonathan bzero((idx), sizeof(struct secpolicyindex)); \
342 1.1 jonathan (idx)->dir = (_dir); \
343 1.1 jonathan (idx)->prefs = (ps); \
344 1.1 jonathan (idx)->prefd = (pd); \
345 1.1 jonathan (idx)->ul_proto = (ulp); \
346 1.1 jonathan bcopy((s), &(idx)->src, ((const struct sockaddr *)(s))->sa_len); \
347 1.1 jonathan bcopy((d), &(idx)->dst, ((const struct sockaddr *)(d))->sa_len); \
348 1.1 jonathan } while (0)
349 1.1 jonathan
350 1.1 jonathan /*
351 1.1 jonathan * set parameters into secasindex buffer.
352 1.1 jonathan * Must allocate secasindex buffer before calling this function.
353 1.1 jonathan */
354 1.1 jonathan #define KEY_SETSECASIDX(p, m, r, s, d, idx) \
355 1.1 jonathan do { \
356 1.1 jonathan bzero((idx), sizeof(struct secasindex)); \
357 1.1 jonathan (idx)->proto = (p); \
358 1.1 jonathan (idx)->mode = (m); \
359 1.1 jonathan (idx)->reqid = (r); \
360 1.1 jonathan bcopy((s), &(idx)->src, ((const struct sockaddr *)(s))->sa_len); \
361 1.1 jonathan bcopy((d), &(idx)->dst, ((const struct sockaddr *)(d))->sa_len); \
362 1.1 jonathan } while (0)
363 1.1 jonathan
364 1.1 jonathan /* key statistics */
365 1.1 jonathan struct _keystat {
366 1.1 jonathan u_long getspi_count; /* the avarage of count to try to get new SPI */
367 1.1 jonathan } keystat;
368 1.1 jonathan
369 1.1 jonathan struct sadb_msghdr {
370 1.1 jonathan struct sadb_msg *msg;
371 1.1 jonathan struct sadb_ext *ext[SADB_EXT_MAX + 1];
372 1.1 jonathan int extoff[SADB_EXT_MAX + 1];
373 1.1 jonathan int extlen[SADB_EXT_MAX + 1];
374 1.1 jonathan };
375 1.1 jonathan
376 1.1 jonathan static struct secasvar *key_allocsa_policy __P((const struct secasindex *));
377 1.1 jonathan static void key_freesp_so __P((struct secpolicy **));
378 1.1 jonathan static struct secasvar *key_do_allocsa_policy __P((struct secashead *, u_int));
379 1.1 jonathan static void key_delsp __P((struct secpolicy *));
380 1.1 jonathan static struct secpolicy *key_getsp __P((struct secpolicyindex *));
381 1.1 jonathan static struct secpolicy *key_getspbyid __P((u_int32_t));
382 1.1 jonathan static u_int32_t key_newreqid __P((void));
383 1.1 jonathan static struct mbuf *key_gather_mbuf __P((struct mbuf *,
384 1.1 jonathan const struct sadb_msghdr *, int, int, ...));
385 1.1 jonathan static int key_spdadd __P((struct socket *, struct mbuf *,
386 1.1 jonathan const struct sadb_msghdr *));
387 1.1 jonathan static u_int32_t key_getnewspid __P((void));
388 1.1 jonathan static int key_spddelete __P((struct socket *, struct mbuf *,
389 1.1 jonathan const struct sadb_msghdr *));
390 1.1 jonathan static int key_spddelete2 __P((struct socket *, struct mbuf *,
391 1.1 jonathan const struct sadb_msghdr *));
392 1.1 jonathan static int key_spdget __P((struct socket *, struct mbuf *,
393 1.1 jonathan const struct sadb_msghdr *));
394 1.1 jonathan static int key_spdflush __P((struct socket *, struct mbuf *,
395 1.1 jonathan const struct sadb_msghdr *));
396 1.1 jonathan static int key_spddump __P((struct socket *, struct mbuf *,
397 1.1 jonathan const struct sadb_msghdr *));
398 1.20 jonathan static struct mbuf * key_setspddump __P((int *errorp, pid_t));
399 1.20 jonathan static struct mbuf * key_setspddump_chain __P((int *errorp, int *lenp, pid_t pid));
400 1.1 jonathan static struct mbuf *key_setdumpsp __P((struct secpolicy *,
401 1.20 jonathan u_int8_t, u_int32_t, pid_t));
402 1.1 jonathan static u_int key_getspreqmsglen __P((struct secpolicy *));
403 1.1 jonathan static int key_spdexpire __P((struct secpolicy *));
404 1.1 jonathan static struct secashead *key_newsah __P((struct secasindex *));
405 1.1 jonathan static void key_delsah __P((struct secashead *));
406 1.1 jonathan static struct secasvar *key_newsav __P((struct mbuf *,
407 1.1 jonathan const struct sadb_msghdr *, struct secashead *, int *,
408 1.1 jonathan const char*, int));
409 1.1 jonathan #define KEY_NEWSAV(m, sadb, sah, e) \
410 1.1 jonathan key_newsav(m, sadb, sah, e, __FILE__, __LINE__)
411 1.1 jonathan static void key_delsav __P((struct secasvar *));
412 1.1 jonathan static struct secashead *key_getsah __P((struct secasindex *));
413 1.1 jonathan static struct secasvar *key_checkspidup __P((struct secasindex *, u_int32_t));
414 1.1 jonathan static struct secasvar *key_getsavbyspi __P((struct secashead *, u_int32_t));
415 1.1 jonathan static int key_setsaval __P((struct secasvar *, struct mbuf *,
416 1.1 jonathan const struct sadb_msghdr *));
417 1.1 jonathan static int key_mature __P((struct secasvar *));
418 1.1 jonathan static struct mbuf *key_setdumpsa __P((struct secasvar *, u_int8_t,
419 1.1 jonathan u_int8_t, u_int32_t, u_int32_t));
420 1.1 jonathan static struct mbuf *key_setsadbmsg __P((u_int8_t, u_int16_t, u_int8_t,
421 1.1 jonathan u_int32_t, pid_t, u_int16_t));
422 1.1 jonathan static struct mbuf *key_setsadbsa __P((struct secasvar *));
423 1.1 jonathan static struct mbuf *key_setsadbaddr __P((u_int16_t,
424 1.1 jonathan const struct sockaddr *, u_int8_t, u_int16_t));
425 1.1 jonathan #if 0
426 1.1 jonathan static struct mbuf *key_setsadbident __P((u_int16_t, u_int16_t, caddr_t,
427 1.1 jonathan int, u_int64_t));
428 1.1 jonathan #endif
429 1.1 jonathan static struct mbuf *key_setsadbxsa2 __P((u_int8_t, u_int32_t, u_int32_t));
430 1.1 jonathan static struct mbuf *key_setsadbxpolicy __P((u_int16_t, u_int8_t,
431 1.1 jonathan u_int32_t));
432 1.1 jonathan static void *key_newbuf __P((const void *, u_int));
433 1.1 jonathan #ifdef INET6
434 1.1 jonathan static int key_ismyaddr6 __P((struct sockaddr_in6 *));
435 1.1 jonathan #endif
436 1.1 jonathan
437 1.1 jonathan /* flags for key_cmpsaidx() */
438 1.1 jonathan #define CMP_HEAD 1 /* protocol, addresses. */
439 1.1 jonathan #define CMP_MODE_REQID 2 /* additionally HEAD, reqid, mode. */
440 1.1 jonathan #define CMP_REQID 3 /* additionally HEAD, reaid. */
441 1.1 jonathan #define CMP_EXACTLY 4 /* all elements. */
442 1.1 jonathan static int key_cmpsaidx
443 1.1 jonathan __P((const struct secasindex *, const struct secasindex *, int));
444 1.1 jonathan
445 1.1 jonathan static int key_sockaddrcmp __P((const struct sockaddr *, const struct sockaddr *, int));
446 1.1 jonathan static int key_bbcmp __P((const void *, const void *, u_int));
447 1.1 jonathan static void key_srandom __P((void));
448 1.1 jonathan static u_int16_t key_satype2proto __P((u_int8_t));
449 1.1 jonathan static u_int8_t key_proto2satype __P((u_int16_t));
450 1.1 jonathan
451 1.1 jonathan static int key_getspi __P((struct socket *, struct mbuf *,
452 1.1 jonathan const struct sadb_msghdr *));
453 1.1 jonathan static u_int32_t key_do_getnewspi __P((struct sadb_spirange *,
454 1.1 jonathan struct secasindex *));
455 1.1 jonathan static int key_update __P((struct socket *, struct mbuf *,
456 1.1 jonathan const struct sadb_msghdr *));
457 1.1 jonathan #ifdef IPSEC_DOSEQCHECK
458 1.1 jonathan static struct secasvar *key_getsavbyseq __P((struct secashead *, u_int32_t));
459 1.1 jonathan #endif
460 1.1 jonathan static int key_add __P((struct socket *, struct mbuf *,
461 1.1 jonathan const struct sadb_msghdr *));
462 1.1 jonathan static int key_setident __P((struct secashead *, struct mbuf *,
463 1.1 jonathan const struct sadb_msghdr *));
464 1.1 jonathan static struct mbuf *key_getmsgbuf_x1 __P((struct mbuf *,
465 1.1 jonathan const struct sadb_msghdr *));
466 1.1 jonathan static int key_delete __P((struct socket *, struct mbuf *,
467 1.1 jonathan const struct sadb_msghdr *));
468 1.1 jonathan static int key_get __P((struct socket *, struct mbuf *,
469 1.1 jonathan const struct sadb_msghdr *));
470 1.1 jonathan
471 1.1 jonathan static void key_getcomb_setlifetime __P((struct sadb_comb *));
472 1.1 jonathan static struct mbuf *key_getcomb_esp __P((void));
473 1.1 jonathan static struct mbuf *key_getcomb_ah __P((void));
474 1.1 jonathan static struct mbuf *key_getcomb_ipcomp __P((void));
475 1.1 jonathan static struct mbuf *key_getprop __P((const struct secasindex *));
476 1.1 jonathan
477 1.1 jonathan static int key_acquire __P((const struct secasindex *, struct secpolicy *));
478 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
479 1.1 jonathan static struct secacq *key_newacq __P((const struct secasindex *));
480 1.1 jonathan static struct secacq *key_getacq __P((const struct secasindex *));
481 1.1 jonathan static struct secacq *key_getacqbyseq __P((u_int32_t));
482 1.1 jonathan #endif
483 1.1 jonathan static struct secspacq *key_newspacq __P((struct secpolicyindex *));
484 1.1 jonathan static struct secspacq *key_getspacq __P((struct secpolicyindex *));
485 1.1 jonathan static int key_acquire2 __P((struct socket *, struct mbuf *,
486 1.1 jonathan const struct sadb_msghdr *));
487 1.1 jonathan static int key_register __P((struct socket *, struct mbuf *,
488 1.1 jonathan const struct sadb_msghdr *));
489 1.1 jonathan static int key_expire __P((struct secasvar *));
490 1.1 jonathan static int key_flush __P((struct socket *, struct mbuf *,
491 1.1 jonathan const struct sadb_msghdr *));
492 1.19 jonathan static struct mbuf *key_setdump_chain __P((u_int8_t req_satype, int *errorp,
493 1.20 jonathan int *lenp, pid_t pid));
494 1.1 jonathan static int key_dump __P((struct socket *, struct mbuf *,
495 1.1 jonathan const struct sadb_msghdr *));
496 1.1 jonathan static int key_promisc __P((struct socket *, struct mbuf *,
497 1.1 jonathan const struct sadb_msghdr *));
498 1.1 jonathan static int key_senderror __P((struct socket *, struct mbuf *, int));
499 1.1 jonathan static int key_validate_ext __P((const struct sadb_ext *, int));
500 1.1 jonathan static int key_align __P((struct mbuf *, struct sadb_msghdr *));
501 1.1 jonathan #if 0
502 1.1 jonathan static const char *key_getfqdn __P((void));
503 1.1 jonathan static const char *key_getuserfqdn __P((void));
504 1.1 jonathan #endif
505 1.1 jonathan static void key_sa_chgstate __P((struct secasvar *, u_int8_t));
506 1.27 perry static inline void key_sp_dead __P((struct secpolicy *));
507 1.18 jonathan static void key_sp_unlink __P((struct secpolicy *sp));
508 1.18 jonathan
509 1.1 jonathan static struct mbuf *key_alloc_mbuf __P((int));
510 1.1 jonathan struct callout key_timehandler_ch;
511 1.1 jonathan
512 1.1 jonathan #define SA_ADDREF(p) do { \
513 1.1 jonathan (p)->refcnt++; \
514 1.1 jonathan IPSEC_ASSERT((p)->refcnt != 0, \
515 1.1 jonathan ("SA refcnt overflow at %s:%u", __FILE__, __LINE__)); \
516 1.1 jonathan } while (0)
517 1.1 jonathan #define SA_DELREF(p) do { \
518 1.1 jonathan IPSEC_ASSERT((p)->refcnt > 0, \
519 1.1 jonathan ("SA refcnt underflow at %s:%u", __FILE__, __LINE__)); \
520 1.1 jonathan (p)->refcnt--; \
521 1.1 jonathan } while (0)
522 1.1 jonathan
523 1.1 jonathan #define SP_ADDREF(p) do { \
524 1.1 jonathan (p)->refcnt++; \
525 1.1 jonathan IPSEC_ASSERT((p)->refcnt != 0, \
526 1.1 jonathan ("SP refcnt overflow at %s:%u", __FILE__, __LINE__)); \
527 1.1 jonathan } while (0)
528 1.1 jonathan #define SP_DELREF(p) do { \
529 1.1 jonathan IPSEC_ASSERT((p)->refcnt > 0, \
530 1.1 jonathan ("SP refcnt underflow at %s:%u", __FILE__, __LINE__)); \
531 1.1 jonathan (p)->refcnt--; \
532 1.1 jonathan } while (0)
533 1.1 jonathan
534 1.18 jonathan
535 1.27 perry static inline void
536 1.18 jonathan key_sp_dead(struct secpolicy *sp)
537 1.18 jonathan {
538 1.18 jonathan
539 1.18 jonathan /* mark the SP dead */
540 1.18 jonathan sp->state = IPSEC_SPSTATE_DEAD;
541 1.18 jonathan }
542 1.18 jonathan
543 1.18 jonathan static void
544 1.18 jonathan key_sp_unlink(struct secpolicy *sp)
545 1.18 jonathan {
546 1.18 jonathan
547 1.18 jonathan /* remove from SP index */
548 1.18 jonathan if (__LIST_CHAINED(sp)) {
549 1.18 jonathan LIST_REMOVE(sp, chain);
550 1.18 jonathan /* Release refcount held just for being on chain */
551 1.18 jonathan KEY_FREESP(&sp);
552 1.18 jonathan }
553 1.18 jonathan }
554 1.18 jonathan
555 1.18 jonathan
556 1.1 jonathan /*
557 1.1 jonathan * Return 0 when there are known to be no SP's for the specified
558 1.1 jonathan * direction. Otherwise return 1. This is used by IPsec code
559 1.1 jonathan * to optimize performance.
560 1.1 jonathan */
561 1.1 jonathan int
562 1.1 jonathan key_havesp(u_int dir)
563 1.1 jonathan {
564 1.1 jonathan return (dir == IPSEC_DIR_INBOUND || dir == IPSEC_DIR_OUTBOUND ?
565 1.1 jonathan LIST_FIRST(&sptree[dir]) != NULL : 1);
566 1.1 jonathan }
567 1.1 jonathan
568 1.1 jonathan /* %%% IPsec policy management */
569 1.1 jonathan /*
570 1.1 jonathan * allocating a SP for OUTBOUND or INBOUND packet.
571 1.1 jonathan * Must call key_freesp() later.
572 1.1 jonathan * OUT: NULL: not found
573 1.1 jonathan * others: found and return the pointer.
574 1.1 jonathan */
575 1.1 jonathan struct secpolicy *
576 1.1 jonathan key_allocsp(struct secpolicyindex *spidx, u_int dir, const char* where, int tag)
577 1.1 jonathan {
578 1.1 jonathan struct secpolicy *sp;
579 1.1 jonathan int s;
580 1.1 jonathan
581 1.1 jonathan IPSEC_ASSERT(spidx != NULL, ("key_allocsp: null spidx"));
582 1.1 jonathan IPSEC_ASSERT(dir == IPSEC_DIR_INBOUND || dir == IPSEC_DIR_OUTBOUND,
583 1.1 jonathan ("key_allocsp: invalid direction %u", dir));
584 1.1 jonathan
585 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
586 1.1 jonathan printf("DP key_allocsp from %s:%u\n", where, tag));
587 1.1 jonathan
588 1.1 jonathan /* get a SP entry */
589 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
590 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
591 1.1 jonathan printf("*** objects\n");
592 1.1 jonathan kdebug_secpolicyindex(spidx));
593 1.1 jonathan
594 1.1 jonathan LIST_FOREACH(sp, &sptree[dir], chain) {
595 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
596 1.1 jonathan printf("*** in SPD\n");
597 1.1 jonathan kdebug_secpolicyindex(&sp->spidx));
598 1.1 jonathan
599 1.1 jonathan if (sp->state == IPSEC_SPSTATE_DEAD)
600 1.1 jonathan continue;
601 1.1 jonathan if (key_cmpspidx_withmask(&sp->spidx, spidx))
602 1.1 jonathan goto found;
603 1.1 jonathan }
604 1.1 jonathan sp = NULL;
605 1.1 jonathan found:
606 1.1 jonathan if (sp) {
607 1.1 jonathan /* sanity check */
608 1.1 jonathan KEY_CHKSPDIR(sp->spidx.dir, dir, "key_allocsp");
609 1.1 jonathan
610 1.1 jonathan /* found a SPD entry */
611 1.1 jonathan sp->lastused = time_second;
612 1.1 jonathan SP_ADDREF(sp);
613 1.1 jonathan }
614 1.1 jonathan splx(s);
615 1.1 jonathan
616 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
617 1.1 jonathan printf("DP key_allocsp return SP:%p (ID=%u) refcnt %u\n",
618 1.1 jonathan sp, sp ? sp->id : 0, sp ? sp->refcnt : 0));
619 1.1 jonathan return sp;
620 1.1 jonathan }
621 1.1 jonathan
622 1.1 jonathan /*
623 1.1 jonathan * allocating a SP for OUTBOUND or INBOUND packet.
624 1.1 jonathan * Must call key_freesp() later.
625 1.1 jonathan * OUT: NULL: not found
626 1.1 jonathan * others: found and return the pointer.
627 1.1 jonathan */
628 1.1 jonathan struct secpolicy *
629 1.1 jonathan key_allocsp2(u_int32_t spi,
630 1.1 jonathan union sockaddr_union *dst,
631 1.1 jonathan u_int8_t proto,
632 1.1 jonathan u_int dir,
633 1.1 jonathan const char* where, int tag)
634 1.1 jonathan {
635 1.1 jonathan struct secpolicy *sp;
636 1.1 jonathan int s;
637 1.1 jonathan
638 1.1 jonathan IPSEC_ASSERT(dst != NULL, ("key_allocsp2: null dst"));
639 1.1 jonathan IPSEC_ASSERT(dir == IPSEC_DIR_INBOUND || dir == IPSEC_DIR_OUTBOUND,
640 1.1 jonathan ("key_allocsp2: invalid direction %u", dir));
641 1.1 jonathan
642 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
643 1.1 jonathan printf("DP key_allocsp2 from %s:%u\n", where, tag));
644 1.1 jonathan
645 1.1 jonathan /* get a SP entry */
646 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
647 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
648 1.1 jonathan printf("*** objects\n");
649 1.1 jonathan printf("spi %u proto %u dir %u\n", spi, proto, dir);
650 1.1 jonathan kdebug_sockaddr(&dst->sa));
651 1.1 jonathan
652 1.1 jonathan LIST_FOREACH(sp, &sptree[dir], chain) {
653 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_DATA,
654 1.1 jonathan printf("*** in SPD\n");
655 1.1 jonathan kdebug_secpolicyindex(&sp->spidx));
656 1.1 jonathan
657 1.1 jonathan if (sp->state == IPSEC_SPSTATE_DEAD)
658 1.1 jonathan continue;
659 1.1 jonathan /* compare simple values, then dst address */
660 1.1 jonathan if (sp->spidx.ul_proto != proto)
661 1.1 jonathan continue;
662 1.1 jonathan /* NB: spi's must exist and match */
663 1.1 jonathan if (!sp->req || !sp->req->sav || sp->req->sav->spi != spi)
664 1.1 jonathan continue;
665 1.1 jonathan if (key_sockaddrcmp(&sp->spidx.dst.sa, &dst->sa, 1) == 0)
666 1.1 jonathan goto found;
667 1.1 jonathan }
668 1.1 jonathan sp = NULL;
669 1.1 jonathan found:
670 1.1 jonathan if (sp) {
671 1.1 jonathan /* sanity check */
672 1.1 jonathan KEY_CHKSPDIR(sp->spidx.dir, dir, "key_allocsp2");
673 1.1 jonathan
674 1.1 jonathan /* found a SPD entry */
675 1.1 jonathan sp->lastused = time_second;
676 1.1 jonathan SP_ADDREF(sp);
677 1.1 jonathan }
678 1.1 jonathan splx(s);
679 1.1 jonathan
680 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
681 1.1 jonathan printf("DP key_allocsp2 return SP:%p (ID=%u) refcnt %u\n",
682 1.1 jonathan sp, sp ? sp->id : 0, sp ? sp->refcnt : 0));
683 1.1 jonathan return sp;
684 1.1 jonathan }
685 1.1 jonathan
686 1.1 jonathan /*
687 1.1 jonathan * return a policy that matches this particular inbound packet.
688 1.1 jonathan * XXX slow
689 1.1 jonathan */
690 1.1 jonathan struct secpolicy *
691 1.1 jonathan key_gettunnel(const struct sockaddr *osrc,
692 1.1 jonathan const struct sockaddr *odst,
693 1.1 jonathan const struct sockaddr *isrc,
694 1.1 jonathan const struct sockaddr *idst,
695 1.1 jonathan const char* where, int tag)
696 1.1 jonathan {
697 1.1 jonathan struct secpolicy *sp;
698 1.1 jonathan const int dir = IPSEC_DIR_INBOUND;
699 1.1 jonathan int s;
700 1.1 jonathan struct ipsecrequest *r1, *r2, *p;
701 1.1 jonathan struct secpolicyindex spidx;
702 1.1 jonathan
703 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
704 1.1 jonathan printf("DP key_gettunnel from %s:%u\n", where, tag));
705 1.1 jonathan
706 1.1 jonathan if (isrc->sa_family != idst->sa_family) {
707 1.1 jonathan ipseclog((LOG_ERR, "protocol family mismatched %d != %d\n.",
708 1.1 jonathan isrc->sa_family, idst->sa_family));
709 1.1 jonathan sp = NULL;
710 1.1 jonathan goto done;
711 1.1 jonathan }
712 1.1 jonathan
713 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
714 1.1 jonathan LIST_FOREACH(sp, &sptree[dir], chain) {
715 1.1 jonathan if (sp->state == IPSEC_SPSTATE_DEAD)
716 1.1 jonathan continue;
717 1.1 jonathan
718 1.1 jonathan r1 = r2 = NULL;
719 1.1 jonathan for (p = sp->req; p; p = p->next) {
720 1.1 jonathan if (p->saidx.mode != IPSEC_MODE_TUNNEL)
721 1.1 jonathan continue;
722 1.1 jonathan
723 1.1 jonathan r1 = r2;
724 1.1 jonathan r2 = p;
725 1.1 jonathan
726 1.1 jonathan if (!r1) {
727 1.1 jonathan /* here we look at address matches only */
728 1.1 jonathan spidx = sp->spidx;
729 1.1 jonathan if (isrc->sa_len > sizeof(spidx.src) ||
730 1.1 jonathan idst->sa_len > sizeof(spidx.dst))
731 1.1 jonathan continue;
732 1.1 jonathan bcopy(isrc, &spidx.src, isrc->sa_len);
733 1.1 jonathan bcopy(idst, &spidx.dst, idst->sa_len);
734 1.1 jonathan if (!key_cmpspidx_withmask(&sp->spidx, &spidx))
735 1.1 jonathan continue;
736 1.1 jonathan } else {
737 1.1 jonathan if (key_sockaddrcmp(&r1->saidx.src.sa, isrc, 0) ||
738 1.1 jonathan key_sockaddrcmp(&r1->saidx.dst.sa, idst, 0))
739 1.1 jonathan continue;
740 1.1 jonathan }
741 1.1 jonathan
742 1.1 jonathan if (key_sockaddrcmp(&r2->saidx.src.sa, osrc, 0) ||
743 1.1 jonathan key_sockaddrcmp(&r2->saidx.dst.sa, odst, 0))
744 1.1 jonathan continue;
745 1.1 jonathan
746 1.1 jonathan goto found;
747 1.1 jonathan }
748 1.1 jonathan }
749 1.1 jonathan sp = NULL;
750 1.1 jonathan found:
751 1.1 jonathan if (sp) {
752 1.1 jonathan sp->lastused = time_second;
753 1.1 jonathan SP_ADDREF(sp);
754 1.1 jonathan }
755 1.1 jonathan splx(s);
756 1.1 jonathan done:
757 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
758 1.1 jonathan printf("DP key_gettunnel return SP:%p (ID=%u) refcnt %u\n",
759 1.1 jonathan sp, sp ? sp->id : 0, sp ? sp->refcnt : 0));
760 1.1 jonathan return sp;
761 1.1 jonathan }
762 1.1 jonathan
763 1.1 jonathan /*
764 1.1 jonathan * allocating an SA entry for an *OUTBOUND* packet.
765 1.1 jonathan * checking each request entries in SP, and acquire an SA if need.
766 1.1 jonathan * OUT: 0: there are valid requests.
767 1.1 jonathan * ENOENT: policy may be valid, but SA with REQUIRE is on acquiring.
768 1.1 jonathan */
769 1.1 jonathan int
770 1.1 jonathan key_checkrequest(struct ipsecrequest *isr, const struct secasindex *saidx)
771 1.1 jonathan {
772 1.1 jonathan u_int level;
773 1.1 jonathan int error;
774 1.1 jonathan
775 1.1 jonathan IPSEC_ASSERT(isr != NULL, ("key_checkrequest: null isr"));
776 1.1 jonathan IPSEC_ASSERT(saidx != NULL, ("key_checkrequest: null saidx"));
777 1.1 jonathan IPSEC_ASSERT(saidx->mode == IPSEC_MODE_TRANSPORT ||
778 1.1 jonathan saidx->mode == IPSEC_MODE_TUNNEL,
779 1.1 jonathan ("key_checkrequest: unexpected policy %u", saidx->mode));
780 1.1 jonathan
781 1.1 jonathan /* get current level */
782 1.1 jonathan level = ipsec_get_reqlevel(isr);
783 1.1 jonathan
784 1.1 jonathan /*
785 1.1 jonathan * XXX guard against protocol callbacks from the crypto
786 1.1 jonathan * thread as they reference ipsecrequest.sav which we
787 1.1 jonathan * temporarily null out below. Need to rethink how we
788 1.1 jonathan * handle bundled SA's in the callback thread.
789 1.1 jonathan */
790 1.1 jonathan IPSEC_SPLASSERT_SOFTNET("key_checkrequest");
791 1.1 jonathan #if 0
792 1.1 jonathan /*
793 1.1 jonathan * We do allocate new SA only if the state of SA in the holder is
794 1.1 jonathan * SADB_SASTATE_DEAD. The SA for outbound must be the oldest.
795 1.1 jonathan */
796 1.1 jonathan if (isr->sav != NULL) {
797 1.1 jonathan if (isr->sav->sah == NULL)
798 1.24 christos panic("key_checkrequest: sah is null");
799 1.1 jonathan if (isr->sav == (struct secasvar *)LIST_FIRST(
800 1.1 jonathan &isr->sav->sah->savtree[SADB_SASTATE_DEAD])) {
801 1.1 jonathan KEY_FREESAV(&isr->sav);
802 1.1 jonathan isr->sav = NULL;
803 1.1 jonathan }
804 1.1 jonathan }
805 1.1 jonathan #else
806 1.1 jonathan /*
807 1.1 jonathan * we free any SA stashed in the IPsec request because a different
808 1.1 jonathan * SA may be involved each time this request is checked, either
809 1.1 jonathan * because new SAs are being configured, or this request is
810 1.1 jonathan * associated with an unconnected datagram socket, or this request
811 1.1 jonathan * is associated with a system default policy.
812 1.1 jonathan *
813 1.1 jonathan * The operation may have negative impact to performance. We may
814 1.1 jonathan * want to check cached SA carefully, rather than picking new SA
815 1.1 jonathan * every time.
816 1.1 jonathan */
817 1.1 jonathan if (isr->sav != NULL) {
818 1.1 jonathan KEY_FREESAV(&isr->sav);
819 1.1 jonathan isr->sav = NULL;
820 1.1 jonathan }
821 1.1 jonathan #endif
822 1.1 jonathan
823 1.1 jonathan /*
824 1.1 jonathan * new SA allocation if no SA found.
825 1.1 jonathan * key_allocsa_policy should allocate the oldest SA available.
826 1.1 jonathan * See key_do_allocsa_policy(), and draft-jenkins-ipsec-rekeying-03.txt.
827 1.1 jonathan */
828 1.1 jonathan if (isr->sav == NULL)
829 1.1 jonathan isr->sav = key_allocsa_policy(saidx);
830 1.1 jonathan
831 1.1 jonathan /* When there is SA. */
832 1.1 jonathan if (isr->sav != NULL) {
833 1.1 jonathan if (isr->sav->state != SADB_SASTATE_MATURE &&
834 1.1 jonathan isr->sav->state != SADB_SASTATE_DYING)
835 1.1 jonathan return EINVAL;
836 1.1 jonathan return 0;
837 1.1 jonathan }
838 1.1 jonathan
839 1.1 jonathan /* there is no SA */
840 1.1 jonathan error = key_acquire(saidx, isr->sp);
841 1.1 jonathan if (error != 0) {
842 1.1 jonathan /* XXX What should I do ? */
843 1.1 jonathan ipseclog((LOG_DEBUG, "key_checkrequest: error %d returned "
844 1.1 jonathan "from key_acquire.\n", error));
845 1.1 jonathan return error;
846 1.1 jonathan }
847 1.1 jonathan
848 1.1 jonathan if (level != IPSEC_LEVEL_REQUIRE) {
849 1.1 jonathan /* XXX sigh, the interface to this routine is botched */
850 1.1 jonathan IPSEC_ASSERT(isr->sav == NULL, ("key_checkrequest: unexpected SA"));
851 1.1 jonathan return 0;
852 1.1 jonathan } else {
853 1.1 jonathan return ENOENT;
854 1.1 jonathan }
855 1.1 jonathan }
856 1.1 jonathan
857 1.1 jonathan /*
858 1.1 jonathan * allocating a SA for policy entry from SAD.
859 1.1 jonathan * NOTE: searching SAD of aliving state.
860 1.1 jonathan * OUT: NULL: not found.
861 1.1 jonathan * others: found and return the pointer.
862 1.1 jonathan */
863 1.1 jonathan static struct secasvar *
864 1.1 jonathan key_allocsa_policy(const struct secasindex *saidx)
865 1.1 jonathan {
866 1.1 jonathan struct secashead *sah;
867 1.1 jonathan struct secasvar *sav;
868 1.1 jonathan u_int stateidx, state;
869 1.1 jonathan
870 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
871 1.1 jonathan if (sah->state == SADB_SASTATE_DEAD)
872 1.1 jonathan continue;
873 1.1 jonathan if (key_cmpsaidx(&sah->saidx, saidx, CMP_MODE_REQID))
874 1.1 jonathan goto found;
875 1.1 jonathan }
876 1.1 jonathan
877 1.1 jonathan return NULL;
878 1.1 jonathan
879 1.1 jonathan found:
880 1.1 jonathan
881 1.1 jonathan /* search valid state */
882 1.1 jonathan for (stateidx = 0;
883 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_valid);
884 1.1 jonathan stateidx++) {
885 1.1 jonathan
886 1.1 jonathan state = saorder_state_valid[stateidx];
887 1.1 jonathan
888 1.1 jonathan sav = key_do_allocsa_policy(sah, state);
889 1.1 jonathan if (sav != NULL)
890 1.1 jonathan return sav;
891 1.1 jonathan }
892 1.1 jonathan
893 1.1 jonathan return NULL;
894 1.1 jonathan }
895 1.1 jonathan
896 1.1 jonathan /*
897 1.1 jonathan * searching SAD with direction, protocol, mode and state.
898 1.1 jonathan * called by key_allocsa_policy().
899 1.1 jonathan * OUT:
900 1.1 jonathan * NULL : not found
901 1.1 jonathan * others : found, pointer to a SA.
902 1.1 jonathan */
903 1.1 jonathan static struct secasvar *
904 1.1 jonathan key_do_allocsa_policy(struct secashead *sah, u_int state)
905 1.1 jonathan {
906 1.1 jonathan struct secasvar *sav, *nextsav, *candidate, *d;
907 1.1 jonathan
908 1.1 jonathan /* initilize */
909 1.1 jonathan candidate = NULL;
910 1.1 jonathan
911 1.1 jonathan for (sav = LIST_FIRST(&sah->savtree[state]);
912 1.1 jonathan sav != NULL;
913 1.1 jonathan sav = nextsav) {
914 1.1 jonathan
915 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
916 1.1 jonathan
917 1.1 jonathan /* sanity check */
918 1.1 jonathan KEY_CHKSASTATE(sav->state, state, "key_do_allocsa_policy");
919 1.1 jonathan
920 1.1 jonathan /* initialize */
921 1.1 jonathan if (candidate == NULL) {
922 1.1 jonathan candidate = sav;
923 1.1 jonathan continue;
924 1.1 jonathan }
925 1.1 jonathan
926 1.1 jonathan /* Which SA is the better ? */
927 1.1 jonathan
928 1.1 jonathan /* sanity check 2 */
929 1.1 jonathan if (candidate->lft_c == NULL || sav->lft_c == NULL)
930 1.1 jonathan panic("key_do_allocsa_policy: "
931 1.24 christos "lifetime_current is NULL");
932 1.1 jonathan
933 1.1 jonathan /* What the best method is to compare ? */
934 1.1 jonathan if (key_prefered_oldsa) {
935 1.1 jonathan if (candidate->lft_c->sadb_lifetime_addtime >
936 1.1 jonathan sav->lft_c->sadb_lifetime_addtime) {
937 1.1 jonathan candidate = sav;
938 1.1 jonathan }
939 1.1 jonathan continue;
940 1.1 jonathan /*NOTREACHED*/
941 1.1 jonathan }
942 1.1 jonathan
943 1.1 jonathan /* prefered new sa rather than old sa */
944 1.1 jonathan if (candidate->lft_c->sadb_lifetime_addtime <
945 1.1 jonathan sav->lft_c->sadb_lifetime_addtime) {
946 1.1 jonathan d = candidate;
947 1.1 jonathan candidate = sav;
948 1.1 jonathan } else
949 1.1 jonathan d = sav;
950 1.1 jonathan
951 1.1 jonathan /*
952 1.1 jonathan * prepared to delete the SA when there is more
953 1.1 jonathan * suitable candidate and the lifetime of the SA is not
954 1.1 jonathan * permanent.
955 1.1 jonathan */
956 1.1 jonathan if (d->lft_c->sadb_lifetime_addtime != 0) {
957 1.1 jonathan struct mbuf *m, *result;
958 1.1 jonathan
959 1.1 jonathan key_sa_chgstate(d, SADB_SASTATE_DEAD);
960 1.1 jonathan
961 1.1 jonathan IPSEC_ASSERT(d->refcnt > 0,
962 1.1 jonathan ("key_do_allocsa_policy: bogus ref count"));
963 1.1 jonathan m = key_setsadbmsg(SADB_DELETE, 0,
964 1.1 jonathan d->sah->saidx.proto, 0, 0, d->refcnt - 1);
965 1.1 jonathan if (!m)
966 1.1 jonathan goto msgfail;
967 1.1 jonathan result = m;
968 1.1 jonathan
969 1.1 jonathan /* set sadb_address for saidx's. */
970 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_SRC,
971 1.1 jonathan &d->sah->saidx.src.sa,
972 1.1 jonathan d->sah->saidx.src.sa.sa_len << 3,
973 1.1 jonathan IPSEC_ULPROTO_ANY);
974 1.1 jonathan if (!m)
975 1.1 jonathan goto msgfail;
976 1.1 jonathan m_cat(result, m);
977 1.1 jonathan
978 1.1 jonathan /* set sadb_address for saidx's. */
979 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_DST,
980 1.1 jonathan &d->sah->saidx.src.sa,
981 1.1 jonathan d->sah->saidx.src.sa.sa_len << 3,
982 1.1 jonathan IPSEC_ULPROTO_ANY);
983 1.1 jonathan if (!m)
984 1.1 jonathan goto msgfail;
985 1.1 jonathan m_cat(result, m);
986 1.1 jonathan
987 1.1 jonathan /* create SA extension */
988 1.1 jonathan m = key_setsadbsa(d);
989 1.1 jonathan if (!m)
990 1.1 jonathan goto msgfail;
991 1.1 jonathan m_cat(result, m);
992 1.1 jonathan
993 1.1 jonathan if (result->m_len < sizeof(struct sadb_msg)) {
994 1.1 jonathan result = m_pullup(result,
995 1.1 jonathan sizeof(struct sadb_msg));
996 1.1 jonathan if (result == NULL)
997 1.1 jonathan goto msgfail;
998 1.1 jonathan }
999 1.1 jonathan
1000 1.1 jonathan result->m_pkthdr.len = 0;
1001 1.1 jonathan for (m = result; m; m = m->m_next)
1002 1.1 jonathan result->m_pkthdr.len += m->m_len;
1003 1.1 jonathan mtod(result, struct sadb_msg *)->sadb_msg_len =
1004 1.1 jonathan PFKEY_UNIT64(result->m_pkthdr.len);
1005 1.1 jonathan
1006 1.1 jonathan if (key_sendup_mbuf(NULL, result,
1007 1.1 jonathan KEY_SENDUP_REGISTERED))
1008 1.1 jonathan goto msgfail;
1009 1.1 jonathan msgfail:
1010 1.1 jonathan KEY_FREESAV(&d);
1011 1.1 jonathan }
1012 1.1 jonathan }
1013 1.1 jonathan
1014 1.1 jonathan if (candidate) {
1015 1.1 jonathan SA_ADDREF(candidate);
1016 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
1017 1.1 jonathan printf("DP allocsa_policy cause "
1018 1.1 jonathan "refcnt++:%d SA:%p\n",
1019 1.1 jonathan candidate->refcnt, candidate));
1020 1.1 jonathan }
1021 1.1 jonathan return candidate;
1022 1.1 jonathan }
1023 1.1 jonathan
1024 1.1 jonathan /*
1025 1.1 jonathan * allocating a usable SA entry for a *INBOUND* packet.
1026 1.1 jonathan * Must call key_freesav() later.
1027 1.1 jonathan * OUT: positive: pointer to a usable sav (i.e. MATURE or DYING state).
1028 1.7 wiz * NULL: not found, or error occurred.
1029 1.1 jonathan *
1030 1.1 jonathan * In the comparison, no source address is used--for RFC2401 conformance.
1031 1.1 jonathan * To quote, from section 4.1:
1032 1.1 jonathan * A security association is uniquely identified by a triple consisting
1033 1.1 jonathan * of a Security Parameter Index (SPI), an IP Destination Address, and a
1034 1.1 jonathan * security protocol (AH or ESP) identifier.
1035 1.1 jonathan * Note that, however, we do need to keep source address in IPsec SA.
1036 1.1 jonathan * IKE specification and PF_KEY specification do assume that we
1037 1.1 jonathan * keep source address in IPsec SA. We see a tricky situation here.
1038 1.1 jonathan */
1039 1.1 jonathan struct secasvar *
1040 1.1 jonathan key_allocsa(
1041 1.1 jonathan union sockaddr_union *dst,
1042 1.1 jonathan u_int proto,
1043 1.1 jonathan u_int32_t spi,
1044 1.1 jonathan const char* where, int tag)
1045 1.1 jonathan {
1046 1.1 jonathan struct secashead *sah;
1047 1.1 jonathan struct secasvar *sav;
1048 1.1 jonathan u_int stateidx, state;
1049 1.1 jonathan int s;
1050 1.1 jonathan
1051 1.1 jonathan IPSEC_ASSERT(dst != NULL, ("key_allocsa: null dst address"));
1052 1.1 jonathan
1053 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
1054 1.1 jonathan printf("DP key_allocsa from %s:%u\n", where, tag));
1055 1.1 jonathan
1056 1.1 jonathan /*
1057 1.1 jonathan * searching SAD.
1058 1.1 jonathan * XXX: to be checked internal IP header somewhere. Also when
1059 1.1 jonathan * IPsec tunnel packet is received. But ESP tunnel mode is
1060 1.1 jonathan * encrypted so we can't check internal IP header.
1061 1.1 jonathan */
1062 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
1063 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
1064 1.1 jonathan /* search valid state */
1065 1.1 jonathan for (stateidx = 0;
1066 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_valid);
1067 1.1 jonathan stateidx++) {
1068 1.1 jonathan state = saorder_state_valid[stateidx];
1069 1.1 jonathan LIST_FOREACH(sav, &sah->savtree[state], chain) {
1070 1.1 jonathan /* sanity check */
1071 1.1 jonathan KEY_CHKSASTATE(sav->state, state, "key_allocsav");
1072 1.1 jonathan /* do not return entries w/ unusable state */
1073 1.1 jonathan if (sav->state != SADB_SASTATE_MATURE &&
1074 1.1 jonathan sav->state != SADB_SASTATE_DYING)
1075 1.1 jonathan continue;
1076 1.1 jonathan if (proto != sav->sah->saidx.proto)
1077 1.1 jonathan continue;
1078 1.1 jonathan if (spi != sav->spi)
1079 1.1 jonathan continue;
1080 1.1 jonathan #if 0 /* don't check src */
1081 1.1 jonathan /* check src address */
1082 1.1 jonathan if (key_sockaddrcmp(&src->sa, &sav->sah->saidx.src.sa, 0) != 0)
1083 1.1 jonathan continue;
1084 1.1 jonathan #endif
1085 1.1 jonathan /* check dst address */
1086 1.1 jonathan if (key_sockaddrcmp(&dst->sa, &sav->sah->saidx.dst.sa, 0) != 0)
1087 1.1 jonathan continue;
1088 1.1 jonathan SA_ADDREF(sav);
1089 1.1 jonathan goto done;
1090 1.1 jonathan }
1091 1.1 jonathan }
1092 1.1 jonathan }
1093 1.1 jonathan sav = NULL;
1094 1.1 jonathan done:
1095 1.1 jonathan splx(s);
1096 1.1 jonathan
1097 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
1098 1.1 jonathan printf("DP key_allocsa return SA:%p; refcnt %u\n",
1099 1.1 jonathan sav, sav ? sav->refcnt : 0));
1100 1.1 jonathan return sav;
1101 1.1 jonathan }
1102 1.1 jonathan
1103 1.1 jonathan /*
1104 1.1 jonathan * Must be called after calling key_allocsp().
1105 1.1 jonathan * For both the packet without socket and key_freeso().
1106 1.1 jonathan */
1107 1.1 jonathan void
1108 1.1 jonathan _key_freesp(struct secpolicy **spp, const char* where, int tag)
1109 1.1 jonathan {
1110 1.1 jonathan struct secpolicy *sp = *spp;
1111 1.1 jonathan
1112 1.1 jonathan IPSEC_ASSERT(sp != NULL, ("key_freesp: null sp"));
1113 1.1 jonathan
1114 1.1 jonathan SP_DELREF(sp);
1115 1.1 jonathan
1116 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
1117 1.1 jonathan printf("DP key_freesp SP:%p (ID=%u) from %s:%u; refcnt now %u\n",
1118 1.1 jonathan sp, sp->id, where, tag, sp->refcnt));
1119 1.1 jonathan
1120 1.1 jonathan if (sp->refcnt == 0) {
1121 1.1 jonathan *spp = NULL;
1122 1.1 jonathan key_delsp(sp);
1123 1.1 jonathan }
1124 1.1 jonathan }
1125 1.1 jonathan
1126 1.1 jonathan /*
1127 1.1 jonathan * Must be called after calling key_allocsp().
1128 1.1 jonathan * For the packet with socket.
1129 1.1 jonathan */
1130 1.1 jonathan void
1131 1.1 jonathan key_freeso(struct socket *so)
1132 1.1 jonathan {
1133 1.1 jonathan /* sanity check */
1134 1.1 jonathan IPSEC_ASSERT(so != NULL, ("key_freeso: null so"));
1135 1.1 jonathan
1136 1.1 jonathan switch (so->so_proto->pr_domain->dom_family) {
1137 1.1 jonathan #ifdef INET
1138 1.1 jonathan case PF_INET:
1139 1.1 jonathan {
1140 1.1 jonathan struct inpcb *pcb = sotoinpcb(so);
1141 1.1 jonathan
1142 1.1 jonathan /* Does it have a PCB ? */
1143 1.1 jonathan if (pcb == NULL)
1144 1.1 jonathan return;
1145 1.1 jonathan key_freesp_so(&pcb->inp_sp->sp_in);
1146 1.1 jonathan key_freesp_so(&pcb->inp_sp->sp_out);
1147 1.1 jonathan }
1148 1.1 jonathan break;
1149 1.1 jonathan #endif
1150 1.1 jonathan #ifdef INET6
1151 1.1 jonathan case PF_INET6:
1152 1.1 jonathan {
1153 1.1 jonathan #ifdef HAVE_NRL_INPCB
1154 1.1 jonathan struct inpcb *pcb = sotoinpcb(so);
1155 1.1 jonathan
1156 1.1 jonathan /* Does it have a PCB ? */
1157 1.1 jonathan if (pcb == NULL)
1158 1.1 jonathan return;
1159 1.1 jonathan key_freesp_so(&pcb->inp_sp->sp_in);
1160 1.1 jonathan key_freesp_so(&pcb->inp_sp->sp_out);
1161 1.1 jonathan #else
1162 1.1 jonathan struct in6pcb *pcb = sotoin6pcb(so);
1163 1.1 jonathan
1164 1.1 jonathan /* Does it have a PCB ? */
1165 1.1 jonathan if (pcb == NULL)
1166 1.1 jonathan return;
1167 1.1 jonathan key_freesp_so(&pcb->in6p_sp->sp_in);
1168 1.1 jonathan key_freesp_so(&pcb->in6p_sp->sp_out);
1169 1.1 jonathan #endif
1170 1.1 jonathan }
1171 1.1 jonathan break;
1172 1.1 jonathan #endif /* INET6 */
1173 1.1 jonathan default:
1174 1.1 jonathan ipseclog((LOG_DEBUG, "key_freeso: unknown address family=%d.\n",
1175 1.1 jonathan so->so_proto->pr_domain->dom_family));
1176 1.1 jonathan return;
1177 1.1 jonathan }
1178 1.1 jonathan }
1179 1.1 jonathan
1180 1.1 jonathan static void
1181 1.1 jonathan key_freesp_so(struct secpolicy **sp)
1182 1.1 jonathan {
1183 1.1 jonathan IPSEC_ASSERT(sp != NULL && *sp != NULL, ("key_freesp_so: null sp"));
1184 1.1 jonathan
1185 1.1 jonathan if ((*sp)->policy == IPSEC_POLICY_ENTRUST ||
1186 1.1 jonathan (*sp)->policy == IPSEC_POLICY_BYPASS)
1187 1.1 jonathan return;
1188 1.1 jonathan
1189 1.1 jonathan IPSEC_ASSERT((*sp)->policy == IPSEC_POLICY_IPSEC,
1190 1.1 jonathan ("key_freesp_so: invalid policy %u", (*sp)->policy));
1191 1.1 jonathan KEY_FREESP(sp);
1192 1.1 jonathan }
1193 1.1 jonathan
1194 1.1 jonathan /*
1195 1.1 jonathan * Must be called after calling key_allocsa().
1196 1.1 jonathan * This function is called by key_freesp() to free some SA allocated
1197 1.1 jonathan * for a policy.
1198 1.1 jonathan */
1199 1.1 jonathan void
1200 1.1 jonathan key_freesav(struct secasvar **psav, const char* where, int tag)
1201 1.1 jonathan {
1202 1.1 jonathan struct secasvar *sav = *psav;
1203 1.1 jonathan
1204 1.1 jonathan IPSEC_ASSERT(sav != NULL, ("key_freesav: null sav"));
1205 1.1 jonathan
1206 1.1 jonathan SA_DELREF(sav);
1207 1.1 jonathan
1208 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
1209 1.1 jonathan printf("DP key_freesav SA:%p (SPI %lu) from %s:%u; refcnt now %u\n",
1210 1.1 jonathan sav, (u_long)ntohl(sav->spi),
1211 1.1 jonathan where, tag, sav->refcnt));
1212 1.1 jonathan
1213 1.1 jonathan if (sav->refcnt == 0) {
1214 1.1 jonathan *psav = NULL;
1215 1.1 jonathan key_delsav(sav);
1216 1.1 jonathan }
1217 1.1 jonathan }
1218 1.1 jonathan
1219 1.1 jonathan /* %%% SPD management */
1220 1.1 jonathan /*
1221 1.1 jonathan * free security policy entry.
1222 1.1 jonathan */
1223 1.1 jonathan static void
1224 1.1 jonathan key_delsp(struct secpolicy *sp)
1225 1.1 jonathan {
1226 1.1 jonathan int s;
1227 1.1 jonathan
1228 1.1 jonathan IPSEC_ASSERT(sp != NULL, ("key_delsp: null sp"));
1229 1.1 jonathan
1230 1.18 jonathan key_sp_dead(sp);
1231 1.1 jonathan
1232 1.1 jonathan IPSEC_ASSERT(sp->refcnt == 0,
1233 1.1 jonathan ("key_delsp: SP with references deleted (refcnt %u)",
1234 1.1 jonathan sp->refcnt));
1235 1.1 jonathan
1236 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
1237 1.1 jonathan
1238 1.1 jonathan {
1239 1.1 jonathan struct ipsecrequest *isr = sp->req, *nextisr;
1240 1.1 jonathan
1241 1.1 jonathan while (isr != NULL) {
1242 1.1 jonathan if (isr->sav != NULL) {
1243 1.1 jonathan KEY_FREESAV(&isr->sav);
1244 1.1 jonathan isr->sav = NULL;
1245 1.1 jonathan }
1246 1.1 jonathan
1247 1.1 jonathan nextisr = isr->next;
1248 1.1 jonathan KFREE(isr);
1249 1.1 jonathan isr = nextisr;
1250 1.1 jonathan }
1251 1.1 jonathan }
1252 1.1 jonathan
1253 1.1 jonathan KFREE(sp);
1254 1.1 jonathan
1255 1.1 jonathan splx(s);
1256 1.1 jonathan }
1257 1.1 jonathan
1258 1.1 jonathan /*
1259 1.1 jonathan * search SPD
1260 1.1 jonathan * OUT: NULL : not found
1261 1.1 jonathan * others : found, pointer to a SP.
1262 1.1 jonathan */
1263 1.1 jonathan static struct secpolicy *
1264 1.1 jonathan key_getsp(struct secpolicyindex *spidx)
1265 1.1 jonathan {
1266 1.1 jonathan struct secpolicy *sp;
1267 1.1 jonathan
1268 1.1 jonathan IPSEC_ASSERT(spidx != NULL, ("key_getsp: null spidx"));
1269 1.1 jonathan
1270 1.1 jonathan LIST_FOREACH(sp, &sptree[spidx->dir], chain) {
1271 1.1 jonathan if (sp->state == IPSEC_SPSTATE_DEAD)
1272 1.1 jonathan continue;
1273 1.1 jonathan if (key_cmpspidx_exactly(spidx, &sp->spidx)) {
1274 1.1 jonathan SP_ADDREF(sp);
1275 1.1 jonathan return sp;
1276 1.1 jonathan }
1277 1.1 jonathan }
1278 1.1 jonathan
1279 1.1 jonathan return NULL;
1280 1.1 jonathan }
1281 1.1 jonathan
1282 1.1 jonathan /*
1283 1.1 jonathan * get SP by index.
1284 1.1 jonathan * OUT: NULL : not found
1285 1.1 jonathan * others : found, pointer to a SP.
1286 1.1 jonathan */
1287 1.1 jonathan static struct secpolicy *
1288 1.1 jonathan key_getspbyid(u_int32_t id)
1289 1.1 jonathan {
1290 1.1 jonathan struct secpolicy *sp;
1291 1.1 jonathan
1292 1.1 jonathan LIST_FOREACH(sp, &sptree[IPSEC_DIR_INBOUND], chain) {
1293 1.1 jonathan if (sp->state == IPSEC_SPSTATE_DEAD)
1294 1.1 jonathan continue;
1295 1.1 jonathan if (sp->id == id) {
1296 1.1 jonathan SP_ADDREF(sp);
1297 1.1 jonathan return sp;
1298 1.1 jonathan }
1299 1.1 jonathan }
1300 1.1 jonathan
1301 1.1 jonathan LIST_FOREACH(sp, &sptree[IPSEC_DIR_OUTBOUND], chain) {
1302 1.1 jonathan if (sp->state == IPSEC_SPSTATE_DEAD)
1303 1.1 jonathan continue;
1304 1.1 jonathan if (sp->id == id) {
1305 1.1 jonathan SP_ADDREF(sp);
1306 1.1 jonathan return sp;
1307 1.1 jonathan }
1308 1.1 jonathan }
1309 1.1 jonathan
1310 1.1 jonathan return NULL;
1311 1.1 jonathan }
1312 1.1 jonathan
1313 1.1 jonathan struct secpolicy *
1314 1.1 jonathan key_newsp(const char* where, int tag)
1315 1.1 jonathan {
1316 1.1 jonathan struct secpolicy *newsp = NULL;
1317 1.1 jonathan
1318 1.1 jonathan newsp = (struct secpolicy *)
1319 1.1 jonathan malloc(sizeof(struct secpolicy), M_SECA, M_NOWAIT|M_ZERO);
1320 1.1 jonathan if (newsp) {
1321 1.1 jonathan newsp->refcnt = 1;
1322 1.1 jonathan newsp->req = NULL;
1323 1.1 jonathan }
1324 1.1 jonathan
1325 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
1326 1.1 jonathan printf("DP key_newsp from %s:%u return SP:%p\n",
1327 1.1 jonathan where, tag, newsp));
1328 1.1 jonathan return newsp;
1329 1.1 jonathan }
1330 1.1 jonathan
1331 1.1 jonathan /*
1332 1.1 jonathan * create secpolicy structure from sadb_x_policy structure.
1333 1.1 jonathan * NOTE: `state', `secpolicyindex' in secpolicy structure are not set,
1334 1.1 jonathan * so must be set properly later.
1335 1.1 jonathan */
1336 1.1 jonathan struct secpolicy *
1337 1.1 jonathan key_msg2sp(xpl0, len, error)
1338 1.1 jonathan struct sadb_x_policy *xpl0;
1339 1.1 jonathan size_t len;
1340 1.1 jonathan int *error;
1341 1.1 jonathan {
1342 1.1 jonathan struct secpolicy *newsp;
1343 1.1 jonathan
1344 1.1 jonathan /* sanity check */
1345 1.1 jonathan if (xpl0 == NULL)
1346 1.24 christos panic("key_msg2sp: NULL pointer was passed");
1347 1.1 jonathan if (len < sizeof(*xpl0))
1348 1.24 christos panic("key_msg2sp: invalid length");
1349 1.1 jonathan if (len != PFKEY_EXTLEN(xpl0)) {
1350 1.1 jonathan ipseclog((LOG_DEBUG, "key_msg2sp: Invalid msg length.\n"));
1351 1.1 jonathan *error = EINVAL;
1352 1.1 jonathan return NULL;
1353 1.1 jonathan }
1354 1.1 jonathan
1355 1.1 jonathan if ((newsp = KEY_NEWSP()) == NULL) {
1356 1.1 jonathan *error = ENOBUFS;
1357 1.1 jonathan return NULL;
1358 1.1 jonathan }
1359 1.1 jonathan
1360 1.1 jonathan newsp->spidx.dir = xpl0->sadb_x_policy_dir;
1361 1.1 jonathan newsp->policy = xpl0->sadb_x_policy_type;
1362 1.1 jonathan
1363 1.1 jonathan /* check policy */
1364 1.1 jonathan switch (xpl0->sadb_x_policy_type) {
1365 1.1 jonathan case IPSEC_POLICY_DISCARD:
1366 1.1 jonathan case IPSEC_POLICY_NONE:
1367 1.1 jonathan case IPSEC_POLICY_ENTRUST:
1368 1.1 jonathan case IPSEC_POLICY_BYPASS:
1369 1.1 jonathan newsp->req = NULL;
1370 1.1 jonathan break;
1371 1.1 jonathan
1372 1.1 jonathan case IPSEC_POLICY_IPSEC:
1373 1.1 jonathan {
1374 1.1 jonathan int tlen;
1375 1.1 jonathan struct sadb_x_ipsecrequest *xisr;
1376 1.1 jonathan struct ipsecrequest **p_isr = &newsp->req;
1377 1.1 jonathan
1378 1.1 jonathan /* validity check */
1379 1.1 jonathan if (PFKEY_EXTLEN(xpl0) < sizeof(*xpl0)) {
1380 1.1 jonathan ipseclog((LOG_DEBUG,
1381 1.1 jonathan "key_msg2sp: Invalid msg length.\n"));
1382 1.1 jonathan KEY_FREESP(&newsp);
1383 1.1 jonathan *error = EINVAL;
1384 1.1 jonathan return NULL;
1385 1.1 jonathan }
1386 1.1 jonathan
1387 1.1 jonathan tlen = PFKEY_EXTLEN(xpl0) - sizeof(*xpl0);
1388 1.1 jonathan xisr = (struct sadb_x_ipsecrequest *)(xpl0 + 1);
1389 1.1 jonathan
1390 1.1 jonathan while (tlen > 0) {
1391 1.1 jonathan /* length check */
1392 1.1 jonathan if (xisr->sadb_x_ipsecrequest_len < sizeof(*xisr)) {
1393 1.1 jonathan ipseclog((LOG_DEBUG, "key_msg2sp: "
1394 1.1 jonathan "invalid ipsecrequest length.\n"));
1395 1.1 jonathan KEY_FREESP(&newsp);
1396 1.1 jonathan *error = EINVAL;
1397 1.1 jonathan return NULL;
1398 1.1 jonathan }
1399 1.1 jonathan
1400 1.1 jonathan /* allocate request buffer */
1401 1.1 jonathan KMALLOC(*p_isr, struct ipsecrequest *, sizeof(**p_isr));
1402 1.1 jonathan if ((*p_isr) == NULL) {
1403 1.1 jonathan ipseclog((LOG_DEBUG,
1404 1.1 jonathan "key_msg2sp: No more memory.\n"));
1405 1.1 jonathan KEY_FREESP(&newsp);
1406 1.1 jonathan *error = ENOBUFS;
1407 1.1 jonathan return NULL;
1408 1.1 jonathan }
1409 1.1 jonathan bzero(*p_isr, sizeof(**p_isr));
1410 1.1 jonathan
1411 1.1 jonathan /* set values */
1412 1.1 jonathan (*p_isr)->next = NULL;
1413 1.1 jonathan
1414 1.1 jonathan switch (xisr->sadb_x_ipsecrequest_proto) {
1415 1.1 jonathan case IPPROTO_ESP:
1416 1.1 jonathan case IPPROTO_AH:
1417 1.1 jonathan case IPPROTO_IPCOMP:
1418 1.1 jonathan break;
1419 1.1 jonathan default:
1420 1.1 jonathan ipseclog((LOG_DEBUG,
1421 1.1 jonathan "key_msg2sp: invalid proto type=%u\n",
1422 1.1 jonathan xisr->sadb_x_ipsecrequest_proto));
1423 1.1 jonathan KEY_FREESP(&newsp);
1424 1.1 jonathan *error = EPROTONOSUPPORT;
1425 1.1 jonathan return NULL;
1426 1.1 jonathan }
1427 1.1 jonathan (*p_isr)->saidx.proto = xisr->sadb_x_ipsecrequest_proto;
1428 1.1 jonathan
1429 1.1 jonathan switch (xisr->sadb_x_ipsecrequest_mode) {
1430 1.1 jonathan case IPSEC_MODE_TRANSPORT:
1431 1.1 jonathan case IPSEC_MODE_TUNNEL:
1432 1.1 jonathan break;
1433 1.1 jonathan case IPSEC_MODE_ANY:
1434 1.1 jonathan default:
1435 1.1 jonathan ipseclog((LOG_DEBUG,
1436 1.1 jonathan "key_msg2sp: invalid mode=%u\n",
1437 1.1 jonathan xisr->sadb_x_ipsecrequest_mode));
1438 1.1 jonathan KEY_FREESP(&newsp);
1439 1.1 jonathan *error = EINVAL;
1440 1.1 jonathan return NULL;
1441 1.1 jonathan }
1442 1.1 jonathan (*p_isr)->saidx.mode = xisr->sadb_x_ipsecrequest_mode;
1443 1.1 jonathan
1444 1.1 jonathan switch (xisr->sadb_x_ipsecrequest_level) {
1445 1.1 jonathan case IPSEC_LEVEL_DEFAULT:
1446 1.1 jonathan case IPSEC_LEVEL_USE:
1447 1.1 jonathan case IPSEC_LEVEL_REQUIRE:
1448 1.1 jonathan break;
1449 1.1 jonathan case IPSEC_LEVEL_UNIQUE:
1450 1.1 jonathan /* validity check */
1451 1.1 jonathan /*
1452 1.1 jonathan * If range violation of reqid, kernel will
1453 1.1 jonathan * update it, don't refuse it.
1454 1.1 jonathan */
1455 1.1 jonathan if (xisr->sadb_x_ipsecrequest_reqid
1456 1.1 jonathan > IPSEC_MANUAL_REQID_MAX) {
1457 1.1 jonathan ipseclog((LOG_DEBUG,
1458 1.1 jonathan "key_msg2sp: reqid=%d range "
1459 1.1 jonathan "violation, updated by kernel.\n",
1460 1.1 jonathan xisr->sadb_x_ipsecrequest_reqid));
1461 1.1 jonathan xisr->sadb_x_ipsecrequest_reqid = 0;
1462 1.1 jonathan }
1463 1.1 jonathan
1464 1.1 jonathan /* allocate new reqid id if reqid is zero. */
1465 1.1 jonathan if (xisr->sadb_x_ipsecrequest_reqid == 0) {
1466 1.1 jonathan u_int32_t reqid;
1467 1.1 jonathan if ((reqid = key_newreqid()) == 0) {
1468 1.1 jonathan KEY_FREESP(&newsp);
1469 1.1 jonathan *error = ENOBUFS;
1470 1.1 jonathan return NULL;
1471 1.1 jonathan }
1472 1.1 jonathan (*p_isr)->saidx.reqid = reqid;
1473 1.1 jonathan xisr->sadb_x_ipsecrequest_reqid = reqid;
1474 1.1 jonathan } else {
1475 1.1 jonathan /* set it for manual keying. */
1476 1.1 jonathan (*p_isr)->saidx.reqid =
1477 1.1 jonathan xisr->sadb_x_ipsecrequest_reqid;
1478 1.1 jonathan }
1479 1.1 jonathan break;
1480 1.1 jonathan
1481 1.1 jonathan default:
1482 1.1 jonathan ipseclog((LOG_DEBUG, "key_msg2sp: invalid level=%u\n",
1483 1.1 jonathan xisr->sadb_x_ipsecrequest_level));
1484 1.1 jonathan KEY_FREESP(&newsp);
1485 1.1 jonathan *error = EINVAL;
1486 1.1 jonathan return NULL;
1487 1.1 jonathan }
1488 1.1 jonathan (*p_isr)->level = xisr->sadb_x_ipsecrequest_level;
1489 1.1 jonathan
1490 1.1 jonathan /* set IP addresses if there */
1491 1.1 jonathan if (xisr->sadb_x_ipsecrequest_len > sizeof(*xisr)) {
1492 1.1 jonathan struct sockaddr *paddr;
1493 1.1 jonathan
1494 1.1 jonathan paddr = (struct sockaddr *)(xisr + 1);
1495 1.1 jonathan
1496 1.1 jonathan /* validity check */
1497 1.1 jonathan if (paddr->sa_len
1498 1.1 jonathan > sizeof((*p_isr)->saidx.src)) {
1499 1.1 jonathan ipseclog((LOG_DEBUG, "key_msg2sp: invalid request "
1500 1.1 jonathan "address length.\n"));
1501 1.1 jonathan KEY_FREESP(&newsp);
1502 1.1 jonathan *error = EINVAL;
1503 1.1 jonathan return NULL;
1504 1.1 jonathan }
1505 1.1 jonathan bcopy(paddr, &(*p_isr)->saidx.src,
1506 1.1 jonathan paddr->sa_len);
1507 1.1 jonathan
1508 1.1 jonathan paddr = (struct sockaddr *)((caddr_t)paddr
1509 1.1 jonathan + paddr->sa_len);
1510 1.1 jonathan
1511 1.1 jonathan /* validity check */
1512 1.1 jonathan if (paddr->sa_len
1513 1.1 jonathan > sizeof((*p_isr)->saidx.dst)) {
1514 1.1 jonathan ipseclog((LOG_DEBUG, "key_msg2sp: invalid request "
1515 1.1 jonathan "address length.\n"));
1516 1.1 jonathan KEY_FREESP(&newsp);
1517 1.1 jonathan *error = EINVAL;
1518 1.1 jonathan return NULL;
1519 1.1 jonathan }
1520 1.1 jonathan bcopy(paddr, &(*p_isr)->saidx.dst,
1521 1.1 jonathan paddr->sa_len);
1522 1.1 jonathan }
1523 1.1 jonathan
1524 1.1 jonathan (*p_isr)->sav = NULL;
1525 1.1 jonathan (*p_isr)->sp = newsp;
1526 1.1 jonathan
1527 1.1 jonathan /* initialization for the next. */
1528 1.1 jonathan p_isr = &(*p_isr)->next;
1529 1.1 jonathan tlen -= xisr->sadb_x_ipsecrequest_len;
1530 1.1 jonathan
1531 1.1 jonathan /* validity check */
1532 1.1 jonathan if (tlen < 0) {
1533 1.1 jonathan ipseclog((LOG_DEBUG, "key_msg2sp: becoming tlen < 0.\n"));
1534 1.1 jonathan KEY_FREESP(&newsp);
1535 1.1 jonathan *error = EINVAL;
1536 1.1 jonathan return NULL;
1537 1.1 jonathan }
1538 1.1 jonathan
1539 1.1 jonathan xisr = (struct sadb_x_ipsecrequest *)((caddr_t)xisr
1540 1.1 jonathan + xisr->sadb_x_ipsecrequest_len);
1541 1.1 jonathan }
1542 1.1 jonathan }
1543 1.1 jonathan break;
1544 1.1 jonathan default:
1545 1.1 jonathan ipseclog((LOG_DEBUG, "key_msg2sp: invalid policy type.\n"));
1546 1.1 jonathan KEY_FREESP(&newsp);
1547 1.1 jonathan *error = EINVAL;
1548 1.1 jonathan return NULL;
1549 1.1 jonathan }
1550 1.1 jonathan
1551 1.1 jonathan *error = 0;
1552 1.1 jonathan return newsp;
1553 1.1 jonathan }
1554 1.1 jonathan
1555 1.1 jonathan static u_int32_t
1556 1.1 jonathan key_newreqid()
1557 1.1 jonathan {
1558 1.1 jonathan static u_int32_t auto_reqid = IPSEC_MANUAL_REQID_MAX + 1;
1559 1.1 jonathan
1560 1.1 jonathan auto_reqid = (auto_reqid == ~0
1561 1.1 jonathan ? IPSEC_MANUAL_REQID_MAX + 1 : auto_reqid + 1);
1562 1.1 jonathan
1563 1.1 jonathan /* XXX should be unique check */
1564 1.1 jonathan
1565 1.1 jonathan return auto_reqid;
1566 1.1 jonathan }
1567 1.1 jonathan
1568 1.1 jonathan /*
1569 1.1 jonathan * copy secpolicy struct to sadb_x_policy structure indicated.
1570 1.1 jonathan */
1571 1.1 jonathan struct mbuf *
1572 1.1 jonathan key_sp2msg(sp)
1573 1.1 jonathan struct secpolicy *sp;
1574 1.1 jonathan {
1575 1.1 jonathan struct sadb_x_policy *xpl;
1576 1.1 jonathan int tlen;
1577 1.1 jonathan caddr_t p;
1578 1.1 jonathan struct mbuf *m;
1579 1.1 jonathan
1580 1.1 jonathan /* sanity check. */
1581 1.1 jonathan if (sp == NULL)
1582 1.24 christos panic("key_sp2msg: NULL pointer was passed");
1583 1.1 jonathan
1584 1.1 jonathan tlen = key_getspreqmsglen(sp);
1585 1.1 jonathan
1586 1.1 jonathan m = key_alloc_mbuf(tlen);
1587 1.1 jonathan if (!m || m->m_next) { /*XXX*/
1588 1.1 jonathan if (m)
1589 1.1 jonathan m_freem(m);
1590 1.1 jonathan return NULL;
1591 1.1 jonathan }
1592 1.1 jonathan
1593 1.1 jonathan m->m_len = tlen;
1594 1.1 jonathan m->m_next = NULL;
1595 1.1 jonathan xpl = mtod(m, struct sadb_x_policy *);
1596 1.1 jonathan bzero(xpl, tlen);
1597 1.1 jonathan
1598 1.1 jonathan xpl->sadb_x_policy_len = PFKEY_UNIT64(tlen);
1599 1.1 jonathan xpl->sadb_x_policy_exttype = SADB_X_EXT_POLICY;
1600 1.1 jonathan xpl->sadb_x_policy_type = sp->policy;
1601 1.1 jonathan xpl->sadb_x_policy_dir = sp->spidx.dir;
1602 1.1 jonathan xpl->sadb_x_policy_id = sp->id;
1603 1.1 jonathan p = (caddr_t)xpl + sizeof(*xpl);
1604 1.1 jonathan
1605 1.1 jonathan /* if is the policy for ipsec ? */
1606 1.1 jonathan if (sp->policy == IPSEC_POLICY_IPSEC) {
1607 1.1 jonathan struct sadb_x_ipsecrequest *xisr;
1608 1.1 jonathan struct ipsecrequest *isr;
1609 1.1 jonathan
1610 1.1 jonathan for (isr = sp->req; isr != NULL; isr = isr->next) {
1611 1.1 jonathan
1612 1.1 jonathan xisr = (struct sadb_x_ipsecrequest *)p;
1613 1.1 jonathan
1614 1.1 jonathan xisr->sadb_x_ipsecrequest_proto = isr->saidx.proto;
1615 1.1 jonathan xisr->sadb_x_ipsecrequest_mode = isr->saidx.mode;
1616 1.1 jonathan xisr->sadb_x_ipsecrequest_level = isr->level;
1617 1.1 jonathan xisr->sadb_x_ipsecrequest_reqid = isr->saidx.reqid;
1618 1.1 jonathan
1619 1.1 jonathan p += sizeof(*xisr);
1620 1.1 jonathan bcopy(&isr->saidx.src, p, isr->saidx.src.sa.sa_len);
1621 1.1 jonathan p += isr->saidx.src.sa.sa_len;
1622 1.1 jonathan bcopy(&isr->saidx.dst, p, isr->saidx.dst.sa.sa_len);
1623 1.1 jonathan p += isr->saidx.src.sa.sa_len;
1624 1.1 jonathan
1625 1.1 jonathan xisr->sadb_x_ipsecrequest_len =
1626 1.1 jonathan PFKEY_ALIGN8(sizeof(*xisr)
1627 1.1 jonathan + isr->saidx.src.sa.sa_len
1628 1.1 jonathan + isr->saidx.dst.sa.sa_len);
1629 1.1 jonathan }
1630 1.1 jonathan }
1631 1.1 jonathan
1632 1.1 jonathan return m;
1633 1.1 jonathan }
1634 1.1 jonathan
1635 1.1 jonathan /* m will not be freed nor modified */
1636 1.1 jonathan static struct mbuf *
1637 1.1 jonathan key_gather_mbuf(struct mbuf *m, const struct sadb_msghdr *mhp,
1638 1.1 jonathan int ndeep, int nitem, ...)
1639 1.1 jonathan {
1640 1.1 jonathan va_list ap;
1641 1.1 jonathan int idx;
1642 1.1 jonathan int i;
1643 1.1 jonathan struct mbuf *result = NULL, *n;
1644 1.1 jonathan int len;
1645 1.1 jonathan
1646 1.1 jonathan if (m == NULL || mhp == NULL)
1647 1.1 jonathan panic("null pointer passed to key_gather");
1648 1.1 jonathan
1649 1.1 jonathan va_start(ap, nitem);
1650 1.1 jonathan for (i = 0; i < nitem; i++) {
1651 1.1 jonathan idx = va_arg(ap, int);
1652 1.1 jonathan if (idx < 0 || idx > SADB_EXT_MAX)
1653 1.1 jonathan goto fail;
1654 1.1 jonathan /* don't attempt to pull empty extension */
1655 1.1 jonathan if (idx == SADB_EXT_RESERVED && mhp->msg == NULL)
1656 1.1 jonathan continue;
1657 1.1 jonathan if (idx != SADB_EXT_RESERVED &&
1658 1.1 jonathan (mhp->ext[idx] == NULL || mhp->extlen[idx] == 0))
1659 1.1 jonathan continue;
1660 1.1 jonathan
1661 1.1 jonathan if (idx == SADB_EXT_RESERVED) {
1662 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_msg));
1663 1.1 jonathan #ifdef DIAGNOSTIC
1664 1.1 jonathan if (len > MHLEN)
1665 1.1 jonathan panic("assumption failed");
1666 1.1 jonathan #endif
1667 1.1 jonathan MGETHDR(n, M_DONTWAIT, MT_DATA);
1668 1.1 jonathan if (!n)
1669 1.1 jonathan goto fail;
1670 1.1 jonathan n->m_len = len;
1671 1.1 jonathan n->m_next = NULL;
1672 1.1 jonathan m_copydata(m, 0, sizeof(struct sadb_msg),
1673 1.1 jonathan mtod(n, caddr_t));
1674 1.1 jonathan } else if (i < ndeep) {
1675 1.1 jonathan len = mhp->extlen[idx];
1676 1.1 jonathan n = key_alloc_mbuf(len);
1677 1.1 jonathan if (!n || n->m_next) { /*XXX*/
1678 1.1 jonathan if (n)
1679 1.1 jonathan m_freem(n);
1680 1.1 jonathan goto fail;
1681 1.1 jonathan }
1682 1.1 jonathan m_copydata(m, mhp->extoff[idx], mhp->extlen[idx],
1683 1.1 jonathan mtod(n, caddr_t));
1684 1.1 jonathan } else {
1685 1.1 jonathan n = m_copym(m, mhp->extoff[idx], mhp->extlen[idx],
1686 1.1 jonathan M_DONTWAIT);
1687 1.1 jonathan }
1688 1.1 jonathan if (n == NULL)
1689 1.1 jonathan goto fail;
1690 1.1 jonathan
1691 1.1 jonathan if (result)
1692 1.1 jonathan m_cat(result, n);
1693 1.1 jonathan else
1694 1.1 jonathan result = n;
1695 1.1 jonathan }
1696 1.1 jonathan va_end(ap);
1697 1.1 jonathan
1698 1.1 jonathan if ((result->m_flags & M_PKTHDR) != 0) {
1699 1.1 jonathan result->m_pkthdr.len = 0;
1700 1.1 jonathan for (n = result; n; n = n->m_next)
1701 1.1 jonathan result->m_pkthdr.len += n->m_len;
1702 1.1 jonathan }
1703 1.1 jonathan
1704 1.1 jonathan return result;
1705 1.1 jonathan
1706 1.1 jonathan fail:
1707 1.8 thorpej va_end(ap);
1708 1.1 jonathan m_freem(result);
1709 1.1 jonathan return NULL;
1710 1.1 jonathan }
1711 1.1 jonathan
1712 1.1 jonathan /*
1713 1.1 jonathan * SADB_X_SPDADD, SADB_X_SPDSETIDX or SADB_X_SPDUPDATE processing
1714 1.1 jonathan * add an entry to SP database, when received
1715 1.1 jonathan * <base, address(SD), (lifetime(H),) policy>
1716 1.1 jonathan * from the user(?).
1717 1.1 jonathan * Adding to SP database,
1718 1.1 jonathan * and send
1719 1.1 jonathan * <base, address(SD), (lifetime(H),) policy>
1720 1.1 jonathan * to the socket which was send.
1721 1.1 jonathan *
1722 1.1 jonathan * SPDADD set a unique policy entry.
1723 1.1 jonathan * SPDSETIDX like SPDADD without a part of policy requests.
1724 1.1 jonathan * SPDUPDATE replace a unique policy entry.
1725 1.1 jonathan *
1726 1.1 jonathan * m will always be freed.
1727 1.1 jonathan */
1728 1.1 jonathan static int
1729 1.1 jonathan key_spdadd(so, m, mhp)
1730 1.1 jonathan struct socket *so;
1731 1.1 jonathan struct mbuf *m;
1732 1.1 jonathan const struct sadb_msghdr *mhp;
1733 1.1 jonathan {
1734 1.1 jonathan struct sadb_address *src0, *dst0;
1735 1.1 jonathan struct sadb_x_policy *xpl0, *xpl;
1736 1.1 jonathan struct sadb_lifetime *lft = NULL;
1737 1.1 jonathan struct secpolicyindex spidx;
1738 1.1 jonathan struct secpolicy *newsp;
1739 1.1 jonathan int error;
1740 1.1 jonathan
1741 1.1 jonathan /* sanity check */
1742 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
1743 1.24 christos panic("key_spdadd: NULL pointer is passed");
1744 1.1 jonathan
1745 1.1 jonathan if (mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
1746 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL ||
1747 1.1 jonathan mhp->ext[SADB_X_EXT_POLICY] == NULL) {
1748 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdadd: invalid message is passed.\n"));
1749 1.1 jonathan return key_senderror(so, m, EINVAL);
1750 1.1 jonathan }
1751 1.1 jonathan if (mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
1752 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address) ||
1753 1.1 jonathan mhp->extlen[SADB_X_EXT_POLICY] < sizeof(struct sadb_x_policy)) {
1754 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdadd: invalid message is passed.\n"));
1755 1.1 jonathan return key_senderror(so, m, EINVAL);
1756 1.1 jonathan }
1757 1.1 jonathan if (mhp->ext[SADB_EXT_LIFETIME_HARD] != NULL) {
1758 1.1 jonathan if (mhp->extlen[SADB_EXT_LIFETIME_HARD]
1759 1.1 jonathan < sizeof(struct sadb_lifetime)) {
1760 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdadd: invalid message is passed.\n"));
1761 1.1 jonathan return key_senderror(so, m, EINVAL);
1762 1.1 jonathan }
1763 1.1 jonathan lft = (struct sadb_lifetime *)mhp->ext[SADB_EXT_LIFETIME_HARD];
1764 1.1 jonathan }
1765 1.1 jonathan
1766 1.1 jonathan src0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_SRC];
1767 1.1 jonathan dst0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_DST];
1768 1.1 jonathan xpl0 = (struct sadb_x_policy *)mhp->ext[SADB_X_EXT_POLICY];
1769 1.1 jonathan
1770 1.14 jonathan #if defined(__NetBSD__) && defined(INET6)
1771 1.14 jonathan /*
1772 1.14 jonathan * On NetBSD, FAST_IPSEC and INET6 can be configured together,
1773 1.14 jonathan * but FAST_IPSEC does not protect IPv6 traffic.
1774 1.14 jonathan * Rather than silently leaking IPv6 traffic for which IPsec
1775 1.14 jonathan * is configured, forbid specifying IPsec for IPv6 traffic.
1776 1.14 jonathan *
1777 1.14 jonathan * (On FreeBSD, both FAST_IPSEC and INET6 gives a compile-time error.)
1778 1.14 jonathan */
1779 1.14 jonathan if (((const struct sockaddr *)(src0 + 1))->sa_family == AF_INET6 ||
1780 1.14 jonathan ((const struct sockaddr *)(dst0 + 1))->sa_family == AF_INET6) {
1781 1.14 jonathan static int v6_warned = 0;
1782 1.14 jonathan
1783 1.14 jonathan if (v6_warned == 0) {
1784 1.14 jonathan printf("key_spdadd: FAST_IPSEC does not support IPv6.");
1785 1.14 jonathan printf("Check syslog for more per-SPD warnings.\n");
1786 1.14 jonathan v6_warned++;
1787 1.14 jonathan }
1788 1.14 jonathan log(LOG_WARNING,
1789 1.14 jonathan "FAST_IPSEC does not support PF_INET6 SPDs. "
1790 1.14 jonathan "Request refused.\n");
1791 1.14 jonathan
1792 1.14 jonathan return EOPNOTSUPP; /* EPROTOTYPE? EAFNOSUPPORT? */
1793 1.14 jonathan }
1794 1.14 jonathan #endif /* __NetBSD__ && INET6 */
1795 1.14 jonathan
1796 1.1 jonathan /* make secindex */
1797 1.1 jonathan /* XXX boundary check against sa_len */
1798 1.1 jonathan KEY_SETSECSPIDX(xpl0->sadb_x_policy_dir,
1799 1.1 jonathan src0 + 1,
1800 1.1 jonathan dst0 + 1,
1801 1.1 jonathan src0->sadb_address_prefixlen,
1802 1.1 jonathan dst0->sadb_address_prefixlen,
1803 1.1 jonathan src0->sadb_address_proto,
1804 1.1 jonathan &spidx);
1805 1.1 jonathan
1806 1.1 jonathan /* checking the direciton. */
1807 1.1 jonathan switch (xpl0->sadb_x_policy_dir) {
1808 1.1 jonathan case IPSEC_DIR_INBOUND:
1809 1.1 jonathan case IPSEC_DIR_OUTBOUND:
1810 1.1 jonathan break;
1811 1.1 jonathan default:
1812 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdadd: Invalid SP direction.\n"));
1813 1.1 jonathan mhp->msg->sadb_msg_errno = EINVAL;
1814 1.1 jonathan return 0;
1815 1.1 jonathan }
1816 1.1 jonathan
1817 1.1 jonathan /* check policy */
1818 1.1 jonathan /* key_spdadd() accepts DISCARD, NONE and IPSEC. */
1819 1.1 jonathan if (xpl0->sadb_x_policy_type == IPSEC_POLICY_ENTRUST
1820 1.1 jonathan || xpl0->sadb_x_policy_type == IPSEC_POLICY_BYPASS) {
1821 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdadd: Invalid policy type.\n"));
1822 1.1 jonathan return key_senderror(so, m, EINVAL);
1823 1.1 jonathan }
1824 1.1 jonathan
1825 1.1 jonathan /* policy requests are mandatory when action is ipsec. */
1826 1.1 jonathan if (mhp->msg->sadb_msg_type != SADB_X_SPDSETIDX
1827 1.1 jonathan && xpl0->sadb_x_policy_type == IPSEC_POLICY_IPSEC
1828 1.1 jonathan && mhp->extlen[SADB_X_EXT_POLICY] <= sizeof(*xpl0)) {
1829 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdadd: some policy requests part required.\n"));
1830 1.1 jonathan return key_senderror(so, m, EINVAL);
1831 1.1 jonathan }
1832 1.1 jonathan
1833 1.1 jonathan /*
1834 1.1 jonathan * checking there is SP already or not.
1835 1.1 jonathan * SPDUPDATE doesn't depend on whether there is a SP or not.
1836 1.1 jonathan * If the type is either SPDADD or SPDSETIDX AND a SP is found,
1837 1.1 jonathan * then error.
1838 1.1 jonathan */
1839 1.1 jonathan newsp = key_getsp(&spidx);
1840 1.1 jonathan if (mhp->msg->sadb_msg_type == SADB_X_SPDUPDATE) {
1841 1.1 jonathan if (newsp) {
1842 1.18 jonathan key_sp_dead(newsp);
1843 1.18 jonathan key_sp_unlink(newsp); /* XXX jrs ordering */
1844 1.1 jonathan KEY_FREESP(&newsp);
1845 1.18 jonathan newsp = NULL;
1846 1.1 jonathan }
1847 1.1 jonathan } else {
1848 1.1 jonathan if (newsp != NULL) {
1849 1.1 jonathan KEY_FREESP(&newsp);
1850 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdadd: a SP entry exists already.\n"));
1851 1.1 jonathan return key_senderror(so, m, EEXIST);
1852 1.1 jonathan }
1853 1.1 jonathan }
1854 1.6 scw
1855 1.1 jonathan /* allocation new SP entry */
1856 1.1 jonathan if ((newsp = key_msg2sp(xpl0, PFKEY_EXTLEN(xpl0), &error)) == NULL) {
1857 1.1 jonathan return key_senderror(so, m, error);
1858 1.1 jonathan }
1859 1.1 jonathan
1860 1.1 jonathan if ((newsp->id = key_getnewspid()) == 0) {
1861 1.1 jonathan KFREE(newsp);
1862 1.1 jonathan return key_senderror(so, m, ENOBUFS);
1863 1.1 jonathan }
1864 1.1 jonathan
1865 1.1 jonathan /* XXX boundary check against sa_len */
1866 1.1 jonathan KEY_SETSECSPIDX(xpl0->sadb_x_policy_dir,
1867 1.1 jonathan src0 + 1,
1868 1.1 jonathan dst0 + 1,
1869 1.1 jonathan src0->sadb_address_prefixlen,
1870 1.1 jonathan dst0->sadb_address_prefixlen,
1871 1.1 jonathan src0->sadb_address_proto,
1872 1.1 jonathan &newsp->spidx);
1873 1.1 jonathan
1874 1.1 jonathan /* sanity check on addr pair */
1875 1.1 jonathan if (((struct sockaddr *)(src0 + 1))->sa_family !=
1876 1.1 jonathan ((struct sockaddr *)(dst0+ 1))->sa_family) {
1877 1.1 jonathan KFREE(newsp);
1878 1.1 jonathan return key_senderror(so, m, EINVAL);
1879 1.1 jonathan }
1880 1.1 jonathan if (((struct sockaddr *)(src0 + 1))->sa_len !=
1881 1.1 jonathan ((struct sockaddr *)(dst0+ 1))->sa_len) {
1882 1.1 jonathan KFREE(newsp);
1883 1.1 jonathan return key_senderror(so, m, EINVAL);
1884 1.1 jonathan }
1885 1.1 jonathan #if 1
1886 1.1 jonathan if (newsp->req && newsp->req->saidx.src.sa.sa_family) {
1887 1.1 jonathan struct sockaddr *sa;
1888 1.1 jonathan sa = (struct sockaddr *)(src0 + 1);
1889 1.1 jonathan if (sa->sa_family != newsp->req->saidx.src.sa.sa_family) {
1890 1.1 jonathan KFREE(newsp);
1891 1.1 jonathan return key_senderror(so, m, EINVAL);
1892 1.1 jonathan }
1893 1.1 jonathan }
1894 1.1 jonathan if (newsp->req && newsp->req->saidx.dst.sa.sa_family) {
1895 1.1 jonathan struct sockaddr *sa;
1896 1.1 jonathan sa = (struct sockaddr *)(dst0 + 1);
1897 1.1 jonathan if (sa->sa_family != newsp->req->saidx.dst.sa.sa_family) {
1898 1.1 jonathan KFREE(newsp);
1899 1.1 jonathan return key_senderror(so, m, EINVAL);
1900 1.1 jonathan }
1901 1.1 jonathan }
1902 1.1 jonathan #endif
1903 1.1 jonathan
1904 1.1 jonathan newsp->created = time_second;
1905 1.1 jonathan newsp->lastused = newsp->created;
1906 1.1 jonathan newsp->lifetime = lft ? lft->sadb_lifetime_addtime : 0;
1907 1.1 jonathan newsp->validtime = lft ? lft->sadb_lifetime_usetime : 0;
1908 1.1 jonathan
1909 1.1 jonathan newsp->refcnt = 1; /* do not reclaim until I say I do */
1910 1.1 jonathan newsp->state = IPSEC_SPSTATE_ALIVE;
1911 1.1 jonathan LIST_INSERT_TAIL(&sptree[newsp->spidx.dir], newsp, secpolicy, chain);
1912 1.1 jonathan
1913 1.1 jonathan /* delete the entry in spacqtree */
1914 1.1 jonathan if (mhp->msg->sadb_msg_type == SADB_X_SPDUPDATE) {
1915 1.1 jonathan struct secspacq *spacq;
1916 1.1 jonathan if ((spacq = key_getspacq(&spidx)) != NULL) {
1917 1.1 jonathan /* reset counter in order to deletion by timehandler. */
1918 1.1 jonathan spacq->created = time_second;
1919 1.1 jonathan spacq->count = 0;
1920 1.1 jonathan }
1921 1.1 jonathan }
1922 1.1 jonathan
1923 1.9 thorpej #if defined(__NetBSD__)
1924 1.9 thorpej /* Invalidate all cached SPD pointers in the PCBs. */
1925 1.9 thorpej ipsec_invalpcbcacheall();
1926 1.9 thorpej
1927 1.9 thorpej #if defined(GATEWAY)
1928 1.9 thorpej /* Invalidate the ipflow cache, as well. */
1929 1.9 thorpej ipflow_invalidate_all();
1930 1.9 thorpej #endif
1931 1.9 thorpej #endif /* __NetBSD__ */
1932 1.9 thorpej
1933 1.1 jonathan {
1934 1.1 jonathan struct mbuf *n, *mpolicy;
1935 1.1 jonathan struct sadb_msg *newmsg;
1936 1.1 jonathan int off;
1937 1.1 jonathan
1938 1.1 jonathan /* create new sadb_msg to reply. */
1939 1.1 jonathan if (lft) {
1940 1.1 jonathan n = key_gather_mbuf(m, mhp, 2, 5, SADB_EXT_RESERVED,
1941 1.1 jonathan SADB_X_EXT_POLICY, SADB_EXT_LIFETIME_HARD,
1942 1.1 jonathan SADB_EXT_ADDRESS_SRC, SADB_EXT_ADDRESS_DST);
1943 1.1 jonathan } else {
1944 1.1 jonathan n = key_gather_mbuf(m, mhp, 2, 4, SADB_EXT_RESERVED,
1945 1.1 jonathan SADB_X_EXT_POLICY,
1946 1.1 jonathan SADB_EXT_ADDRESS_SRC, SADB_EXT_ADDRESS_DST);
1947 1.1 jonathan }
1948 1.1 jonathan if (!n)
1949 1.1 jonathan return key_senderror(so, m, ENOBUFS);
1950 1.1 jonathan
1951 1.1 jonathan if (n->m_len < sizeof(*newmsg)) {
1952 1.1 jonathan n = m_pullup(n, sizeof(*newmsg));
1953 1.1 jonathan if (!n)
1954 1.1 jonathan return key_senderror(so, m, ENOBUFS);
1955 1.1 jonathan }
1956 1.1 jonathan newmsg = mtod(n, struct sadb_msg *);
1957 1.1 jonathan newmsg->sadb_msg_errno = 0;
1958 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(n->m_pkthdr.len);
1959 1.1 jonathan
1960 1.1 jonathan off = 0;
1961 1.1 jonathan mpolicy = m_pulldown(n, PFKEY_ALIGN8(sizeof(struct sadb_msg)),
1962 1.1 jonathan sizeof(*xpl), &off);
1963 1.1 jonathan if (mpolicy == NULL) {
1964 1.1 jonathan /* n is already freed */
1965 1.1 jonathan return key_senderror(so, m, ENOBUFS);
1966 1.1 jonathan }
1967 1.1 jonathan xpl = (struct sadb_x_policy *)(mtod(mpolicy, caddr_t) + off);
1968 1.1 jonathan if (xpl->sadb_x_policy_exttype != SADB_X_EXT_POLICY) {
1969 1.1 jonathan m_freem(n);
1970 1.1 jonathan return key_senderror(so, m, EINVAL);
1971 1.1 jonathan }
1972 1.1 jonathan xpl->sadb_x_policy_id = newsp->id;
1973 1.1 jonathan
1974 1.1 jonathan m_freem(m);
1975 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ALL);
1976 1.1 jonathan }
1977 1.1 jonathan }
1978 1.1 jonathan
1979 1.1 jonathan /*
1980 1.1 jonathan * get new policy id.
1981 1.1 jonathan * OUT:
1982 1.1 jonathan * 0: failure.
1983 1.1 jonathan * others: success.
1984 1.1 jonathan */
1985 1.1 jonathan static u_int32_t
1986 1.1 jonathan key_getnewspid()
1987 1.1 jonathan {
1988 1.1 jonathan u_int32_t newid = 0;
1989 1.1 jonathan int count = key_spi_trycnt; /* XXX */
1990 1.1 jonathan struct secpolicy *sp;
1991 1.1 jonathan
1992 1.1 jonathan /* when requesting to allocate spi ranged */
1993 1.1 jonathan while (count--) {
1994 1.1 jonathan newid = (policy_id = (policy_id == ~0 ? 1 : policy_id + 1));
1995 1.1 jonathan
1996 1.1 jonathan if ((sp = key_getspbyid(newid)) == NULL)
1997 1.1 jonathan break;
1998 1.1 jonathan
1999 1.1 jonathan KEY_FREESP(&sp);
2000 1.1 jonathan }
2001 1.1 jonathan
2002 1.1 jonathan if (count == 0 || newid == 0) {
2003 1.1 jonathan ipseclog((LOG_DEBUG, "key_getnewspid: to allocate policy id is failed.\n"));
2004 1.1 jonathan return 0;
2005 1.1 jonathan }
2006 1.1 jonathan
2007 1.1 jonathan return newid;
2008 1.1 jonathan }
2009 1.1 jonathan
2010 1.1 jonathan /*
2011 1.1 jonathan * SADB_SPDDELETE processing
2012 1.1 jonathan * receive
2013 1.1 jonathan * <base, address(SD), policy(*)>
2014 1.1 jonathan * from the user(?), and set SADB_SASTATE_DEAD,
2015 1.1 jonathan * and send,
2016 1.1 jonathan * <base, address(SD), policy(*)>
2017 1.1 jonathan * to the ikmpd.
2018 1.1 jonathan * policy(*) including direction of policy.
2019 1.1 jonathan *
2020 1.1 jonathan * m will always be freed.
2021 1.1 jonathan */
2022 1.1 jonathan static int
2023 1.1 jonathan key_spddelete(so, m, mhp)
2024 1.1 jonathan struct socket *so;
2025 1.1 jonathan struct mbuf *m;
2026 1.1 jonathan const struct sadb_msghdr *mhp;
2027 1.1 jonathan {
2028 1.1 jonathan struct sadb_address *src0, *dst0;
2029 1.1 jonathan struct sadb_x_policy *xpl0;
2030 1.1 jonathan struct secpolicyindex spidx;
2031 1.1 jonathan struct secpolicy *sp;
2032 1.1 jonathan
2033 1.1 jonathan /* sanity check */
2034 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
2035 1.24 christos panic("key_spddelete: NULL pointer is passed");
2036 1.1 jonathan
2037 1.1 jonathan if (mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
2038 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL ||
2039 1.1 jonathan mhp->ext[SADB_X_EXT_POLICY] == NULL) {
2040 1.1 jonathan ipseclog((LOG_DEBUG, "key_spddelete: invalid message is passed.\n"));
2041 1.1 jonathan return key_senderror(so, m, EINVAL);
2042 1.1 jonathan }
2043 1.1 jonathan if (mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
2044 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address) ||
2045 1.1 jonathan mhp->extlen[SADB_X_EXT_POLICY] < sizeof(struct sadb_x_policy)) {
2046 1.1 jonathan ipseclog((LOG_DEBUG, "key_spddelete: invalid message is passed.\n"));
2047 1.1 jonathan return key_senderror(so, m, EINVAL);
2048 1.1 jonathan }
2049 1.1 jonathan
2050 1.1 jonathan src0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_SRC];
2051 1.1 jonathan dst0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_DST];
2052 1.1 jonathan xpl0 = (struct sadb_x_policy *)mhp->ext[SADB_X_EXT_POLICY];
2053 1.1 jonathan
2054 1.1 jonathan /* make secindex */
2055 1.1 jonathan /* XXX boundary check against sa_len */
2056 1.1 jonathan KEY_SETSECSPIDX(xpl0->sadb_x_policy_dir,
2057 1.1 jonathan src0 + 1,
2058 1.1 jonathan dst0 + 1,
2059 1.1 jonathan src0->sadb_address_prefixlen,
2060 1.1 jonathan dst0->sadb_address_prefixlen,
2061 1.1 jonathan src0->sadb_address_proto,
2062 1.1 jonathan &spidx);
2063 1.1 jonathan
2064 1.1 jonathan /* checking the direciton. */
2065 1.1 jonathan switch (xpl0->sadb_x_policy_dir) {
2066 1.1 jonathan case IPSEC_DIR_INBOUND:
2067 1.1 jonathan case IPSEC_DIR_OUTBOUND:
2068 1.1 jonathan break;
2069 1.1 jonathan default:
2070 1.1 jonathan ipseclog((LOG_DEBUG, "key_spddelete: Invalid SP direction.\n"));
2071 1.1 jonathan return key_senderror(so, m, EINVAL);
2072 1.1 jonathan }
2073 1.1 jonathan
2074 1.1 jonathan /* Is there SP in SPD ? */
2075 1.1 jonathan if ((sp = key_getsp(&spidx)) == NULL) {
2076 1.1 jonathan ipseclog((LOG_DEBUG, "key_spddelete: no SP found.\n"));
2077 1.1 jonathan return key_senderror(so, m, EINVAL);
2078 1.1 jonathan }
2079 1.1 jonathan
2080 1.1 jonathan /* save policy id to buffer to be returned. */
2081 1.1 jonathan xpl0->sadb_x_policy_id = sp->id;
2082 1.1 jonathan
2083 1.18 jonathan key_sp_dead(sp);
2084 1.18 jonathan key_sp_unlink(sp); /* XXX jrs ordering */
2085 1.18 jonathan KEY_FREESP(&sp); /* ref gained by key_getspbyid */
2086 1.1 jonathan
2087 1.9 thorpej #if defined(__NetBSD__)
2088 1.9 thorpej /* Invalidate all cached SPD pointers in the PCBs. */
2089 1.9 thorpej ipsec_invalpcbcacheall();
2090 1.9 thorpej
2091 1.9 thorpej /* We're deleting policy; no need to invalidate the ipflow cache. */
2092 1.9 thorpej #endif /* __NetBSD__ */
2093 1.9 thorpej
2094 1.1 jonathan {
2095 1.1 jonathan struct mbuf *n;
2096 1.1 jonathan struct sadb_msg *newmsg;
2097 1.1 jonathan
2098 1.1 jonathan /* create new sadb_msg to reply. */
2099 1.1 jonathan n = key_gather_mbuf(m, mhp, 1, 4, SADB_EXT_RESERVED,
2100 1.1 jonathan SADB_X_EXT_POLICY, SADB_EXT_ADDRESS_SRC, SADB_EXT_ADDRESS_DST);
2101 1.1 jonathan if (!n)
2102 1.1 jonathan return key_senderror(so, m, ENOBUFS);
2103 1.1 jonathan
2104 1.1 jonathan newmsg = mtod(n, struct sadb_msg *);
2105 1.1 jonathan newmsg->sadb_msg_errno = 0;
2106 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(n->m_pkthdr.len);
2107 1.1 jonathan
2108 1.1 jonathan m_freem(m);
2109 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ALL);
2110 1.1 jonathan }
2111 1.1 jonathan }
2112 1.1 jonathan
2113 1.1 jonathan /*
2114 1.1 jonathan * SADB_SPDDELETE2 processing
2115 1.1 jonathan * receive
2116 1.1 jonathan * <base, policy(*)>
2117 1.1 jonathan * from the user(?), and set SADB_SASTATE_DEAD,
2118 1.1 jonathan * and send,
2119 1.1 jonathan * <base, policy(*)>
2120 1.1 jonathan * to the ikmpd.
2121 1.1 jonathan * policy(*) including direction of policy.
2122 1.1 jonathan *
2123 1.1 jonathan * m will always be freed.
2124 1.1 jonathan */
2125 1.1 jonathan static int
2126 1.1 jonathan key_spddelete2(so, m, mhp)
2127 1.1 jonathan struct socket *so;
2128 1.1 jonathan struct mbuf *m;
2129 1.1 jonathan const struct sadb_msghdr *mhp;
2130 1.1 jonathan {
2131 1.1 jonathan u_int32_t id;
2132 1.1 jonathan struct secpolicy *sp;
2133 1.1 jonathan
2134 1.1 jonathan /* sanity check */
2135 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
2136 1.24 christos panic("key_spddelete2: NULL pointer is passed");
2137 1.1 jonathan
2138 1.1 jonathan if (mhp->ext[SADB_X_EXT_POLICY] == NULL ||
2139 1.1 jonathan mhp->extlen[SADB_X_EXT_POLICY] < sizeof(struct sadb_x_policy)) {
2140 1.1 jonathan ipseclog((LOG_DEBUG, "key_spddelete2: invalid message is passed.\n"));
2141 1.1 jonathan key_senderror(so, m, EINVAL);
2142 1.1 jonathan return 0;
2143 1.1 jonathan }
2144 1.1 jonathan
2145 1.1 jonathan id = ((struct sadb_x_policy *)mhp->ext[SADB_X_EXT_POLICY])->sadb_x_policy_id;
2146 1.1 jonathan
2147 1.1 jonathan /* Is there SP in SPD ? */
2148 1.1 jonathan if ((sp = key_getspbyid(id)) == NULL) {
2149 1.1 jonathan ipseclog((LOG_DEBUG, "key_spddelete2: no SP found id:%u.\n", id));
2150 1.1 jonathan key_senderror(so, m, EINVAL);
2151 1.1 jonathan }
2152 1.1 jonathan
2153 1.18 jonathan key_sp_dead(sp);
2154 1.18 jonathan key_sp_unlink(sp); /* XXX jrs ordering */
2155 1.18 jonathan KEY_FREESP(&sp); /* ref gained by key_getsp */
2156 1.18 jonathan sp = NULL;
2157 1.1 jonathan
2158 1.9 thorpej #if defined(__NetBSD__)
2159 1.9 thorpej /* Invalidate all cached SPD pointers in the PCBs. */
2160 1.9 thorpej ipsec_invalpcbcacheall();
2161 1.9 thorpej
2162 1.9 thorpej /* We're deleting policy; no need to invalidate the ipflow cache. */
2163 1.9 thorpej #endif /* __NetBSD__ */
2164 1.9 thorpej
2165 1.1 jonathan {
2166 1.1 jonathan struct mbuf *n, *nn;
2167 1.1 jonathan struct sadb_msg *newmsg;
2168 1.1 jonathan int off, len;
2169 1.1 jonathan
2170 1.1 jonathan /* create new sadb_msg to reply. */
2171 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_msg));
2172 1.1 jonathan
2173 1.1 jonathan if (len > MCLBYTES)
2174 1.1 jonathan return key_senderror(so, m, ENOBUFS);
2175 1.1 jonathan MGETHDR(n, M_DONTWAIT, MT_DATA);
2176 1.1 jonathan if (n && len > MHLEN) {
2177 1.1 jonathan MCLGET(n, M_DONTWAIT);
2178 1.1 jonathan if ((n->m_flags & M_EXT) == 0) {
2179 1.1 jonathan m_freem(n);
2180 1.1 jonathan n = NULL;
2181 1.1 jonathan }
2182 1.1 jonathan }
2183 1.1 jonathan if (!n)
2184 1.1 jonathan return key_senderror(so, m, ENOBUFS);
2185 1.1 jonathan
2186 1.1 jonathan n->m_len = len;
2187 1.1 jonathan n->m_next = NULL;
2188 1.1 jonathan off = 0;
2189 1.1 jonathan
2190 1.1 jonathan m_copydata(m, 0, sizeof(struct sadb_msg), mtod(n, caddr_t) + off);
2191 1.1 jonathan off += PFKEY_ALIGN8(sizeof(struct sadb_msg));
2192 1.1 jonathan
2193 1.1 jonathan #ifdef DIAGNOSTIC
2194 1.1 jonathan if (off != len)
2195 1.1 jonathan panic("length inconsistency in key_spddelete2");
2196 1.1 jonathan #endif
2197 1.1 jonathan
2198 1.1 jonathan n->m_next = m_copym(m, mhp->extoff[SADB_X_EXT_POLICY],
2199 1.1 jonathan mhp->extlen[SADB_X_EXT_POLICY], M_DONTWAIT);
2200 1.1 jonathan if (!n->m_next) {
2201 1.1 jonathan m_freem(n);
2202 1.1 jonathan return key_senderror(so, m, ENOBUFS);
2203 1.1 jonathan }
2204 1.1 jonathan
2205 1.1 jonathan n->m_pkthdr.len = 0;
2206 1.1 jonathan for (nn = n; nn; nn = nn->m_next)
2207 1.1 jonathan n->m_pkthdr.len += nn->m_len;
2208 1.1 jonathan
2209 1.1 jonathan newmsg = mtod(n, struct sadb_msg *);
2210 1.1 jonathan newmsg->sadb_msg_errno = 0;
2211 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(n->m_pkthdr.len);
2212 1.1 jonathan
2213 1.1 jonathan m_freem(m);
2214 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ALL);
2215 1.1 jonathan }
2216 1.1 jonathan }
2217 1.1 jonathan
2218 1.1 jonathan /*
2219 1.1 jonathan * SADB_X_GET processing
2220 1.1 jonathan * receive
2221 1.1 jonathan * <base, policy(*)>
2222 1.1 jonathan * from the user(?),
2223 1.1 jonathan * and send,
2224 1.1 jonathan * <base, address(SD), policy>
2225 1.1 jonathan * to the ikmpd.
2226 1.1 jonathan * policy(*) including direction of policy.
2227 1.1 jonathan *
2228 1.1 jonathan * m will always be freed.
2229 1.1 jonathan */
2230 1.1 jonathan static int
2231 1.1 jonathan key_spdget(so, m, mhp)
2232 1.1 jonathan struct socket *so;
2233 1.1 jonathan struct mbuf *m;
2234 1.1 jonathan const struct sadb_msghdr *mhp;
2235 1.1 jonathan {
2236 1.1 jonathan u_int32_t id;
2237 1.1 jonathan struct secpolicy *sp;
2238 1.1 jonathan struct mbuf *n;
2239 1.1 jonathan
2240 1.1 jonathan /* sanity check */
2241 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
2242 1.24 christos panic("key_spdget: NULL pointer is passed");
2243 1.1 jonathan
2244 1.1 jonathan if (mhp->ext[SADB_X_EXT_POLICY] == NULL ||
2245 1.1 jonathan mhp->extlen[SADB_X_EXT_POLICY] < sizeof(struct sadb_x_policy)) {
2246 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdget: invalid message is passed.\n"));
2247 1.1 jonathan return key_senderror(so, m, EINVAL);
2248 1.1 jonathan }
2249 1.1 jonathan
2250 1.1 jonathan id = ((struct sadb_x_policy *)mhp->ext[SADB_X_EXT_POLICY])->sadb_x_policy_id;
2251 1.1 jonathan
2252 1.1 jonathan /* Is there SP in SPD ? */
2253 1.1 jonathan if ((sp = key_getspbyid(id)) == NULL) {
2254 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdget: no SP found id:%u.\n", id));
2255 1.1 jonathan return key_senderror(so, m, ENOENT);
2256 1.1 jonathan }
2257 1.1 jonathan
2258 1.1 jonathan n = key_setdumpsp(sp, SADB_X_SPDGET, 0, mhp->msg->sadb_msg_pid);
2259 1.1 jonathan if (n != NULL) {
2260 1.1 jonathan m_freem(m);
2261 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ONE);
2262 1.1 jonathan } else
2263 1.1 jonathan return key_senderror(so, m, ENOBUFS);
2264 1.1 jonathan }
2265 1.1 jonathan
2266 1.1 jonathan /*
2267 1.1 jonathan * SADB_X_SPDACQUIRE processing.
2268 1.1 jonathan * Acquire policy and SA(s) for a *OUTBOUND* packet.
2269 1.1 jonathan * send
2270 1.1 jonathan * <base, policy(*)>
2271 1.1 jonathan * to KMD, and expect to receive
2272 1.7 wiz * <base> with SADB_X_SPDACQUIRE if error occurred,
2273 1.1 jonathan * or
2274 1.1 jonathan * <base, policy>
2275 1.1 jonathan * with SADB_X_SPDUPDATE from KMD by PF_KEY.
2276 1.1 jonathan * policy(*) is without policy requests.
2277 1.1 jonathan *
2278 1.1 jonathan * 0 : succeed
2279 1.1 jonathan * others: error number
2280 1.1 jonathan */
2281 1.1 jonathan int
2282 1.1 jonathan key_spdacquire(sp)
2283 1.1 jonathan struct secpolicy *sp;
2284 1.1 jonathan {
2285 1.1 jonathan struct mbuf *result = NULL, *m;
2286 1.1 jonathan struct secspacq *newspacq;
2287 1.1 jonathan int error;
2288 1.1 jonathan
2289 1.1 jonathan /* sanity check */
2290 1.1 jonathan if (sp == NULL)
2291 1.24 christos panic("key_spdacquire: NULL pointer is passed");
2292 1.1 jonathan if (sp->req != NULL)
2293 1.24 christos panic("key_spdacquire: called but there is request");
2294 1.1 jonathan if (sp->policy != IPSEC_POLICY_IPSEC)
2295 1.24 christos panic("key_spdacquire: policy mismathed. IPsec is expected");
2296 1.1 jonathan
2297 1.1 jonathan /* Get an entry to check whether sent message or not. */
2298 1.1 jonathan if ((newspacq = key_getspacq(&sp->spidx)) != NULL) {
2299 1.1 jonathan if (key_blockacq_count < newspacq->count) {
2300 1.1 jonathan /* reset counter and do send message. */
2301 1.1 jonathan newspacq->count = 0;
2302 1.1 jonathan } else {
2303 1.1 jonathan /* increment counter and do nothing. */
2304 1.1 jonathan newspacq->count++;
2305 1.1 jonathan return 0;
2306 1.1 jonathan }
2307 1.1 jonathan } else {
2308 1.1 jonathan /* make new entry for blocking to send SADB_ACQUIRE. */
2309 1.1 jonathan if ((newspacq = key_newspacq(&sp->spidx)) == NULL)
2310 1.1 jonathan return ENOBUFS;
2311 1.1 jonathan
2312 1.1 jonathan /* add to acqtree */
2313 1.1 jonathan LIST_INSERT_HEAD(&spacqtree, newspacq, chain);
2314 1.1 jonathan }
2315 1.1 jonathan
2316 1.1 jonathan /* create new sadb_msg to reply. */
2317 1.1 jonathan m = key_setsadbmsg(SADB_X_SPDACQUIRE, 0, 0, 0, 0, 0);
2318 1.1 jonathan if (!m) {
2319 1.1 jonathan error = ENOBUFS;
2320 1.1 jonathan goto fail;
2321 1.1 jonathan }
2322 1.1 jonathan result = m;
2323 1.1 jonathan
2324 1.1 jonathan result->m_pkthdr.len = 0;
2325 1.1 jonathan for (m = result; m; m = m->m_next)
2326 1.1 jonathan result->m_pkthdr.len += m->m_len;
2327 1.1 jonathan
2328 1.1 jonathan mtod(result, struct sadb_msg *)->sadb_msg_len =
2329 1.1 jonathan PFKEY_UNIT64(result->m_pkthdr.len);
2330 1.1 jonathan
2331 1.1 jonathan return key_sendup_mbuf(NULL, m, KEY_SENDUP_REGISTERED);
2332 1.1 jonathan
2333 1.1 jonathan fail:
2334 1.1 jonathan if (result)
2335 1.1 jonathan m_freem(result);
2336 1.1 jonathan return error;
2337 1.1 jonathan }
2338 1.1 jonathan
2339 1.1 jonathan /*
2340 1.1 jonathan * SADB_SPDFLUSH processing
2341 1.1 jonathan * receive
2342 1.1 jonathan * <base>
2343 1.1 jonathan * from the user, and free all entries in secpctree.
2344 1.1 jonathan * and send,
2345 1.1 jonathan * <base>
2346 1.1 jonathan * to the user.
2347 1.1 jonathan * NOTE: what to do is only marking SADB_SASTATE_DEAD.
2348 1.1 jonathan *
2349 1.1 jonathan * m will always be freed.
2350 1.1 jonathan */
2351 1.1 jonathan static int
2352 1.1 jonathan key_spdflush(so, m, mhp)
2353 1.1 jonathan struct socket *so;
2354 1.1 jonathan struct mbuf *m;
2355 1.1 jonathan const struct sadb_msghdr *mhp;
2356 1.1 jonathan {
2357 1.1 jonathan struct sadb_msg *newmsg;
2358 1.1 jonathan struct secpolicy *sp;
2359 1.1 jonathan u_int dir;
2360 1.1 jonathan
2361 1.1 jonathan /* sanity check */
2362 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
2363 1.24 christos panic("key_spdflush: NULL pointer is passed");
2364 1.1 jonathan
2365 1.1 jonathan if (m->m_len != PFKEY_ALIGN8(sizeof(struct sadb_msg)))
2366 1.1 jonathan return key_senderror(so, m, EINVAL);
2367 1.1 jonathan
2368 1.1 jonathan for (dir = 0; dir < IPSEC_DIR_MAX; dir++) {
2369 1.18 jonathan struct secpolicy * nextsp;
2370 1.18 jonathan for (sp = LIST_FIRST(&sptree[dir]);
2371 1.18 jonathan sp != NULL;
2372 1.18 jonathan sp = nextsp) {
2373 1.18 jonathan
2374 1.18 jonathan nextsp = LIST_NEXT(sp, chain);
2375 1.18 jonathan if (sp->state == IPSEC_SPSTATE_DEAD)
2376 1.18 jonathan continue;
2377 1.18 jonathan key_sp_dead(sp);
2378 1.18 jonathan key_sp_unlink(sp);
2379 1.18 jonathan /* 'sp' dead; continue transfers to 'sp = nextsp' */
2380 1.18 jonathan continue;
2381 1.1 jonathan }
2382 1.1 jonathan }
2383 1.1 jonathan
2384 1.9 thorpej #if defined(__NetBSD__)
2385 1.9 thorpej /* Invalidate all cached SPD pointers in the PCBs. */
2386 1.9 thorpej ipsec_invalpcbcacheall();
2387 1.9 thorpej
2388 1.9 thorpej /* We're deleting policy; no need to invalidate the ipflow cache. */
2389 1.9 thorpej #endif /* __NetBSD__ */
2390 1.9 thorpej
2391 1.1 jonathan if (sizeof(struct sadb_msg) > m->m_len + M_TRAILINGSPACE(m)) {
2392 1.1 jonathan ipseclog((LOG_DEBUG, "key_spdflush: No more memory.\n"));
2393 1.1 jonathan return key_senderror(so, m, ENOBUFS);
2394 1.1 jonathan }
2395 1.1 jonathan
2396 1.1 jonathan if (m->m_next)
2397 1.1 jonathan m_freem(m->m_next);
2398 1.1 jonathan m->m_next = NULL;
2399 1.1 jonathan m->m_pkthdr.len = m->m_len = PFKEY_ALIGN8(sizeof(struct sadb_msg));
2400 1.1 jonathan newmsg = mtod(m, struct sadb_msg *);
2401 1.1 jonathan newmsg->sadb_msg_errno = 0;
2402 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(m->m_pkthdr.len);
2403 1.1 jonathan
2404 1.1 jonathan return key_sendup_mbuf(so, m, KEY_SENDUP_ALL);
2405 1.1 jonathan }
2406 1.1 jonathan
2407 1.29 christos static struct sockaddr key_src = {
2408 1.29 christos .sa_len = 2,
2409 1.29 christos .sa_family = PF_KEY,
2410 1.29 christos };
2411 1.19 jonathan
2412 1.19 jonathan static struct mbuf *
2413 1.20 jonathan key_setspddump_chain(int *errorp, int *lenp, pid_t pid)
2414 1.19 jonathan {
2415 1.19 jonathan struct secpolicy *sp;
2416 1.19 jonathan int cnt;
2417 1.19 jonathan u_int dir;
2418 1.19 jonathan struct mbuf *m, *n, *prev;
2419 1.19 jonathan int totlen;
2420 1.19 jonathan
2421 1.19 jonathan *lenp = 0;
2422 1.19 jonathan
2423 1.19 jonathan /* search SPD entry and get buffer size. */
2424 1.19 jonathan cnt = 0;
2425 1.19 jonathan for (dir = 0; dir < IPSEC_DIR_MAX; dir++) {
2426 1.19 jonathan LIST_FOREACH(sp, &sptree[dir], chain) {
2427 1.19 jonathan cnt++;
2428 1.19 jonathan }
2429 1.19 jonathan }
2430 1.19 jonathan
2431 1.19 jonathan if (cnt == 0) {
2432 1.19 jonathan *errorp = ENOENT;
2433 1.19 jonathan return (NULL);
2434 1.19 jonathan }
2435 1.19 jonathan
2436 1.19 jonathan m = NULL;
2437 1.19 jonathan prev = m;
2438 1.19 jonathan totlen = 0;
2439 1.19 jonathan for (dir = 0; dir < IPSEC_DIR_MAX; dir++) {
2440 1.19 jonathan LIST_FOREACH(sp, &sptree[dir], chain) {
2441 1.19 jonathan --cnt;
2442 1.20 jonathan n = key_setdumpsp(sp, SADB_X_SPDDUMP, cnt, pid);
2443 1.19 jonathan
2444 1.19 jonathan if (!n) {
2445 1.19 jonathan *errorp = ENOBUFS;
2446 1.19 jonathan if (m) m_freem(m);
2447 1.19 jonathan return (NULL);
2448 1.19 jonathan }
2449 1.19 jonathan
2450 1.19 jonathan totlen += n->m_pkthdr.len;
2451 1.19 jonathan if (!m) {
2452 1.19 jonathan m = n;
2453 1.19 jonathan } else {
2454 1.19 jonathan prev->m_nextpkt = n;
2455 1.19 jonathan }
2456 1.19 jonathan prev = n;
2457 1.19 jonathan }
2458 1.19 jonathan }
2459 1.19 jonathan
2460 1.19 jonathan *lenp = totlen;
2461 1.19 jonathan *errorp = 0;
2462 1.19 jonathan return (m);
2463 1.19 jonathan }
2464 1.19 jonathan
2465 1.1 jonathan /*
2466 1.1 jonathan * SADB_SPDDUMP processing
2467 1.1 jonathan * receive
2468 1.1 jonathan * <base>
2469 1.1 jonathan * from the user, and dump all SP leaves
2470 1.1 jonathan * and send,
2471 1.1 jonathan * <base> .....
2472 1.1 jonathan * to the ikmpd.
2473 1.1 jonathan *
2474 1.1 jonathan * m will always be freed.
2475 1.1 jonathan */
2476 1.1 jonathan static int
2477 1.19 jonathan key_spddump(so, m0, mhp)
2478 1.1 jonathan struct socket *so;
2479 1.19 jonathan struct mbuf *m0;
2480 1.1 jonathan const struct sadb_msghdr *mhp;
2481 1.1 jonathan {
2482 1.1 jonathan struct mbuf *n;
2483 1.19 jonathan int error, len;
2484 1.19 jonathan int ok, s;
2485 1.20 jonathan pid_t pid;
2486 1.1 jonathan
2487 1.1 jonathan /* sanity check */
2488 1.19 jonathan if (so == NULL || m0 == NULL || mhp == NULL || mhp->msg == NULL)
2489 1.24 christos panic("key_spddump: NULL pointer is passed");
2490 1.1 jonathan
2491 1.19 jonathan
2492 1.20 jonathan pid = mhp->msg->sadb_msg_pid;
2493 1.19 jonathan /*
2494 1.19 jonathan * If the requestor has insufficient socket-buffer space
2495 1.19 jonathan * for the entire chain, nobody gets any response to the DUMP.
2496 1.19 jonathan * XXX For now, only the requestor ever gets anything.
2497 1.19 jonathan * Moreover, if the requestor has any space at all, they receive
2498 1.19 jonathan * the entire chain, otherwise the request is refused with ENOBUFS.
2499 1.19 jonathan */
2500 1.19 jonathan if (sbspace(&so->so_rcv) <= 0) {
2501 1.19 jonathan return key_senderror(so, m0, ENOBUFS);
2502 1.19 jonathan }
2503 1.19 jonathan
2504 1.19 jonathan s = splsoftnet();
2505 1.20 jonathan n = key_setspddump_chain(&error, &len, pid);
2506 1.19 jonathan splx(s);
2507 1.19 jonathan
2508 1.19 jonathan if (n == NULL) {
2509 1.19 jonathan return key_senderror(so, m0, ENOENT);
2510 1.1 jonathan }
2511 1.19 jonathan pfkeystat.in_total++;
2512 1.19 jonathan pfkeystat.in_bytes += len;
2513 1.1 jonathan
2514 1.19 jonathan /*
2515 1.19 jonathan * PF_KEY DUMP responses are no longer broadcast to all PF_KEY sockets.
2516 1.19 jonathan * The requestor receives either the entire chain, or an
2517 1.19 jonathan * error message with ENOBUFS.
2518 1.19 jonathan */
2519 1.1 jonathan
2520 1.19 jonathan /*
2521 1.19 jonathan * sbappendchainwith record takes the chain of entries, one
2522 1.19 jonathan * packet-record per SPD entry, prepends the key_src sockaddr
2523 1.19 jonathan * to each packet-record, links the sockaddr mbufs into a new
2524 1.19 jonathan * list of records, then appends the entire resulting
2525 1.19 jonathan * list to the requesting socket.
2526 1.19 jonathan */
2527 1.19 jonathan ok = sbappendaddrchain(&so->so_rcv, (struct sockaddr *)&key_src,
2528 1.19 jonathan n, SB_PRIO_ONESHOT_OVERFLOW);
2529 1.1 jonathan
2530 1.19 jonathan if (!ok) {
2531 1.19 jonathan pfkeystat.in_nomem++;
2532 1.19 jonathan m_freem(n);
2533 1.19 jonathan return key_senderror(so, m0, ENOBUFS);
2534 1.1 jonathan }
2535 1.1 jonathan
2536 1.19 jonathan m_freem(m0);
2537 1.19 jonathan return error;
2538 1.1 jonathan }
2539 1.1 jonathan
2540 1.1 jonathan static struct mbuf *
2541 1.1 jonathan key_setdumpsp(sp, type, seq, pid)
2542 1.1 jonathan struct secpolicy *sp;
2543 1.1 jonathan u_int8_t type;
2544 1.20 jonathan u_int32_t seq;
2545 1.20 jonathan pid_t pid;
2546 1.1 jonathan {
2547 1.1 jonathan struct mbuf *result = NULL, *m;
2548 1.1 jonathan
2549 1.1 jonathan m = key_setsadbmsg(type, 0, SADB_SATYPE_UNSPEC, seq, pid, sp->refcnt);
2550 1.1 jonathan if (!m)
2551 1.1 jonathan goto fail;
2552 1.1 jonathan result = m;
2553 1.1 jonathan
2554 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_SRC,
2555 1.1 jonathan &sp->spidx.src.sa, sp->spidx.prefs,
2556 1.1 jonathan sp->spidx.ul_proto);
2557 1.1 jonathan if (!m)
2558 1.1 jonathan goto fail;
2559 1.1 jonathan m_cat(result, m);
2560 1.1 jonathan
2561 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_DST,
2562 1.1 jonathan &sp->spidx.dst.sa, sp->spidx.prefd,
2563 1.1 jonathan sp->spidx.ul_proto);
2564 1.1 jonathan if (!m)
2565 1.1 jonathan goto fail;
2566 1.1 jonathan m_cat(result, m);
2567 1.1 jonathan
2568 1.1 jonathan m = key_sp2msg(sp);
2569 1.1 jonathan if (!m)
2570 1.1 jonathan goto fail;
2571 1.1 jonathan m_cat(result, m);
2572 1.1 jonathan
2573 1.1 jonathan if ((result->m_flags & M_PKTHDR) == 0)
2574 1.1 jonathan goto fail;
2575 1.1 jonathan
2576 1.1 jonathan if (result->m_len < sizeof(struct sadb_msg)) {
2577 1.1 jonathan result = m_pullup(result, sizeof(struct sadb_msg));
2578 1.1 jonathan if (result == NULL)
2579 1.1 jonathan goto fail;
2580 1.1 jonathan }
2581 1.1 jonathan
2582 1.1 jonathan result->m_pkthdr.len = 0;
2583 1.1 jonathan for (m = result; m; m = m->m_next)
2584 1.1 jonathan result->m_pkthdr.len += m->m_len;
2585 1.1 jonathan
2586 1.1 jonathan mtod(result, struct sadb_msg *)->sadb_msg_len =
2587 1.1 jonathan PFKEY_UNIT64(result->m_pkthdr.len);
2588 1.1 jonathan
2589 1.1 jonathan return result;
2590 1.1 jonathan
2591 1.1 jonathan fail:
2592 1.1 jonathan m_freem(result);
2593 1.1 jonathan return NULL;
2594 1.1 jonathan }
2595 1.1 jonathan
2596 1.1 jonathan /*
2597 1.1 jonathan * get PFKEY message length for security policy and request.
2598 1.1 jonathan */
2599 1.1 jonathan static u_int
2600 1.1 jonathan key_getspreqmsglen(sp)
2601 1.1 jonathan struct secpolicy *sp;
2602 1.1 jonathan {
2603 1.1 jonathan u_int tlen;
2604 1.1 jonathan
2605 1.1 jonathan tlen = sizeof(struct sadb_x_policy);
2606 1.1 jonathan
2607 1.1 jonathan /* if is the policy for ipsec ? */
2608 1.1 jonathan if (sp->policy != IPSEC_POLICY_IPSEC)
2609 1.1 jonathan return tlen;
2610 1.1 jonathan
2611 1.1 jonathan /* get length of ipsec requests */
2612 1.1 jonathan {
2613 1.1 jonathan struct ipsecrequest *isr;
2614 1.1 jonathan int len;
2615 1.1 jonathan
2616 1.1 jonathan for (isr = sp->req; isr != NULL; isr = isr->next) {
2617 1.1 jonathan len = sizeof(struct sadb_x_ipsecrequest)
2618 1.1 jonathan + isr->saidx.src.sa.sa_len
2619 1.1 jonathan + isr->saidx.dst.sa.sa_len;
2620 1.1 jonathan
2621 1.1 jonathan tlen += PFKEY_ALIGN8(len);
2622 1.1 jonathan }
2623 1.1 jonathan }
2624 1.1 jonathan
2625 1.1 jonathan return tlen;
2626 1.1 jonathan }
2627 1.1 jonathan
2628 1.1 jonathan /*
2629 1.1 jonathan * SADB_SPDEXPIRE processing
2630 1.1 jonathan * send
2631 1.1 jonathan * <base, address(SD), lifetime(CH), policy>
2632 1.1 jonathan * to KMD by PF_KEY.
2633 1.1 jonathan *
2634 1.1 jonathan * OUT: 0 : succeed
2635 1.1 jonathan * others : error number
2636 1.1 jonathan */
2637 1.1 jonathan static int
2638 1.1 jonathan key_spdexpire(sp)
2639 1.1 jonathan struct secpolicy *sp;
2640 1.1 jonathan {
2641 1.1 jonathan int s;
2642 1.1 jonathan struct mbuf *result = NULL, *m;
2643 1.1 jonathan int len;
2644 1.1 jonathan int error = -1;
2645 1.1 jonathan struct sadb_lifetime *lt;
2646 1.1 jonathan
2647 1.1 jonathan /* XXX: Why do we lock ? */
2648 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
2649 1.1 jonathan
2650 1.1 jonathan /* sanity check */
2651 1.1 jonathan if (sp == NULL)
2652 1.24 christos panic("key_spdexpire: NULL pointer is passed");
2653 1.1 jonathan
2654 1.1 jonathan /* set msg header */
2655 1.1 jonathan m = key_setsadbmsg(SADB_X_SPDEXPIRE, 0, 0, 0, 0, 0);
2656 1.1 jonathan if (!m) {
2657 1.1 jonathan error = ENOBUFS;
2658 1.1 jonathan goto fail;
2659 1.1 jonathan }
2660 1.1 jonathan result = m;
2661 1.1 jonathan
2662 1.1 jonathan /* create lifetime extension (current and hard) */
2663 1.1 jonathan len = PFKEY_ALIGN8(sizeof(*lt)) * 2;
2664 1.1 jonathan m = key_alloc_mbuf(len);
2665 1.1 jonathan if (!m || m->m_next) { /*XXX*/
2666 1.1 jonathan if (m)
2667 1.1 jonathan m_freem(m);
2668 1.1 jonathan error = ENOBUFS;
2669 1.1 jonathan goto fail;
2670 1.1 jonathan }
2671 1.1 jonathan bzero(mtod(m, caddr_t), len);
2672 1.1 jonathan lt = mtod(m, struct sadb_lifetime *);
2673 1.1 jonathan lt->sadb_lifetime_len = PFKEY_UNIT64(sizeof(struct sadb_lifetime));
2674 1.1 jonathan lt->sadb_lifetime_exttype = SADB_EXT_LIFETIME_CURRENT;
2675 1.1 jonathan lt->sadb_lifetime_allocations = 0;
2676 1.1 jonathan lt->sadb_lifetime_bytes = 0;
2677 1.1 jonathan lt->sadb_lifetime_addtime = sp->created;
2678 1.1 jonathan lt->sadb_lifetime_usetime = sp->lastused;
2679 1.1 jonathan lt = (struct sadb_lifetime *)(mtod(m, caddr_t) + len / 2);
2680 1.1 jonathan lt->sadb_lifetime_len = PFKEY_UNIT64(sizeof(struct sadb_lifetime));
2681 1.1 jonathan lt->sadb_lifetime_exttype = SADB_EXT_LIFETIME_HARD;
2682 1.1 jonathan lt->sadb_lifetime_allocations = 0;
2683 1.1 jonathan lt->sadb_lifetime_bytes = 0;
2684 1.1 jonathan lt->sadb_lifetime_addtime = sp->lifetime;
2685 1.1 jonathan lt->sadb_lifetime_usetime = sp->validtime;
2686 1.1 jonathan m_cat(result, m);
2687 1.1 jonathan
2688 1.1 jonathan /* set sadb_address for source */
2689 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_SRC,
2690 1.1 jonathan &sp->spidx.src.sa,
2691 1.1 jonathan sp->spidx.prefs, sp->spidx.ul_proto);
2692 1.1 jonathan if (!m) {
2693 1.1 jonathan error = ENOBUFS;
2694 1.1 jonathan goto fail;
2695 1.1 jonathan }
2696 1.1 jonathan m_cat(result, m);
2697 1.1 jonathan
2698 1.1 jonathan /* set sadb_address for destination */
2699 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_DST,
2700 1.1 jonathan &sp->spidx.dst.sa,
2701 1.1 jonathan sp->spidx.prefd, sp->spidx.ul_proto);
2702 1.1 jonathan if (!m) {
2703 1.1 jonathan error = ENOBUFS;
2704 1.1 jonathan goto fail;
2705 1.1 jonathan }
2706 1.1 jonathan m_cat(result, m);
2707 1.1 jonathan
2708 1.1 jonathan /* set secpolicy */
2709 1.1 jonathan m = key_sp2msg(sp);
2710 1.1 jonathan if (!m) {
2711 1.1 jonathan error = ENOBUFS;
2712 1.1 jonathan goto fail;
2713 1.1 jonathan }
2714 1.1 jonathan m_cat(result, m);
2715 1.1 jonathan
2716 1.1 jonathan if ((result->m_flags & M_PKTHDR) == 0) {
2717 1.1 jonathan error = EINVAL;
2718 1.1 jonathan goto fail;
2719 1.1 jonathan }
2720 1.1 jonathan
2721 1.1 jonathan if (result->m_len < sizeof(struct sadb_msg)) {
2722 1.1 jonathan result = m_pullup(result, sizeof(struct sadb_msg));
2723 1.1 jonathan if (result == NULL) {
2724 1.1 jonathan error = ENOBUFS;
2725 1.1 jonathan goto fail;
2726 1.1 jonathan }
2727 1.1 jonathan }
2728 1.1 jonathan
2729 1.1 jonathan result->m_pkthdr.len = 0;
2730 1.1 jonathan for (m = result; m; m = m->m_next)
2731 1.1 jonathan result->m_pkthdr.len += m->m_len;
2732 1.1 jonathan
2733 1.1 jonathan mtod(result, struct sadb_msg *)->sadb_msg_len =
2734 1.1 jonathan PFKEY_UNIT64(result->m_pkthdr.len);
2735 1.1 jonathan
2736 1.1 jonathan return key_sendup_mbuf(NULL, result, KEY_SENDUP_REGISTERED);
2737 1.1 jonathan
2738 1.1 jonathan fail:
2739 1.1 jonathan if (result)
2740 1.1 jonathan m_freem(result);
2741 1.1 jonathan splx(s);
2742 1.1 jonathan return error;
2743 1.1 jonathan }
2744 1.1 jonathan
2745 1.1 jonathan /* %%% SAD management */
2746 1.1 jonathan /*
2747 1.1 jonathan * allocating a memory for new SA head, and copy from the values of mhp.
2748 1.1 jonathan * OUT: NULL : failure due to the lack of memory.
2749 1.1 jonathan * others : pointer to new SA head.
2750 1.1 jonathan */
2751 1.1 jonathan static struct secashead *
2752 1.1 jonathan key_newsah(saidx)
2753 1.1 jonathan struct secasindex *saidx;
2754 1.1 jonathan {
2755 1.1 jonathan struct secashead *newsah;
2756 1.1 jonathan
2757 1.1 jonathan IPSEC_ASSERT(saidx != NULL, ("key_newsaidx: null saidx"));
2758 1.1 jonathan
2759 1.1 jonathan newsah = (struct secashead *)
2760 1.1 jonathan malloc(sizeof(struct secashead), M_SECA, M_NOWAIT|M_ZERO);
2761 1.1 jonathan if (newsah != NULL) {
2762 1.1 jonathan int i;
2763 1.1 jonathan for (i = 0; i < sizeof(newsah->savtree)/sizeof(newsah->savtree[0]); i++)
2764 1.1 jonathan LIST_INIT(&newsah->savtree[i]);
2765 1.1 jonathan newsah->saidx = *saidx;
2766 1.1 jonathan
2767 1.1 jonathan /* add to saidxtree */
2768 1.1 jonathan newsah->state = SADB_SASTATE_MATURE;
2769 1.1 jonathan LIST_INSERT_HEAD(&sahtree, newsah, chain);
2770 1.1 jonathan }
2771 1.1 jonathan return(newsah);
2772 1.1 jonathan }
2773 1.1 jonathan
2774 1.1 jonathan /*
2775 1.1 jonathan * delete SA index and all SA registerd.
2776 1.1 jonathan */
2777 1.1 jonathan static void
2778 1.1 jonathan key_delsah(sah)
2779 1.1 jonathan struct secashead *sah;
2780 1.1 jonathan {
2781 1.1 jonathan struct secasvar *sav, *nextsav;
2782 1.1 jonathan u_int stateidx, state;
2783 1.1 jonathan int s;
2784 1.1 jonathan int zombie = 0;
2785 1.1 jonathan
2786 1.1 jonathan /* sanity check */
2787 1.1 jonathan if (sah == NULL)
2788 1.24 christos panic("key_delsah: NULL pointer is passed");
2789 1.1 jonathan
2790 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
2791 1.1 jonathan
2792 1.1 jonathan /* searching all SA registerd in the secindex. */
2793 1.1 jonathan for (stateidx = 0;
2794 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_any);
2795 1.1 jonathan stateidx++) {
2796 1.1 jonathan
2797 1.1 jonathan state = saorder_state_any[stateidx];
2798 1.1 jonathan for (sav = (struct secasvar *)LIST_FIRST(&sah->savtree[state]);
2799 1.1 jonathan sav != NULL;
2800 1.1 jonathan sav = nextsav) {
2801 1.1 jonathan
2802 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
2803 1.1 jonathan
2804 1.1 jonathan if (sav->refcnt == 0) {
2805 1.1 jonathan /* sanity check */
2806 1.1 jonathan KEY_CHKSASTATE(state, sav->state, "key_delsah");
2807 1.1 jonathan KEY_FREESAV(&sav);
2808 1.1 jonathan } else {
2809 1.1 jonathan /* give up to delete this sa */
2810 1.1 jonathan zombie++;
2811 1.1 jonathan }
2812 1.1 jonathan }
2813 1.1 jonathan }
2814 1.1 jonathan
2815 1.1 jonathan /* don't delete sah only if there are savs. */
2816 1.1 jonathan if (zombie) {
2817 1.1 jonathan splx(s);
2818 1.1 jonathan return;
2819 1.1 jonathan }
2820 1.1 jonathan
2821 1.1 jonathan if (sah->sa_route.ro_rt) {
2822 1.1 jonathan RTFREE(sah->sa_route.ro_rt);
2823 1.1 jonathan sah->sa_route.ro_rt = (struct rtentry *)NULL;
2824 1.1 jonathan }
2825 1.1 jonathan
2826 1.1 jonathan /* remove from tree of SA index */
2827 1.1 jonathan if (__LIST_CHAINED(sah))
2828 1.1 jonathan LIST_REMOVE(sah, chain);
2829 1.1 jonathan
2830 1.1 jonathan KFREE(sah);
2831 1.1 jonathan
2832 1.1 jonathan splx(s);
2833 1.1 jonathan return;
2834 1.1 jonathan }
2835 1.1 jonathan
2836 1.1 jonathan /*
2837 1.1 jonathan * allocating a new SA with LARVAL state. key_add() and key_getspi() call,
2838 1.1 jonathan * and copy the values of mhp into new buffer.
2839 1.1 jonathan * When SAD message type is GETSPI:
2840 1.1 jonathan * to set sequence number from acq_seq++,
2841 1.1 jonathan * to set zero to SPI.
2842 1.1 jonathan * not to call key_setsava().
2843 1.1 jonathan * OUT: NULL : fail
2844 1.1 jonathan * others : pointer to new secasvar.
2845 1.1 jonathan *
2846 1.1 jonathan * does not modify mbuf. does not free mbuf on error.
2847 1.1 jonathan */
2848 1.1 jonathan static struct secasvar *
2849 1.1 jonathan key_newsav(m, mhp, sah, errp, where, tag)
2850 1.1 jonathan struct mbuf *m;
2851 1.1 jonathan const struct sadb_msghdr *mhp;
2852 1.1 jonathan struct secashead *sah;
2853 1.1 jonathan int *errp;
2854 1.1 jonathan const char* where;
2855 1.1 jonathan int tag;
2856 1.1 jonathan {
2857 1.1 jonathan struct secasvar *newsav;
2858 1.1 jonathan const struct sadb_sa *xsa;
2859 1.1 jonathan
2860 1.1 jonathan /* sanity check */
2861 1.1 jonathan if (m == NULL || mhp == NULL || mhp->msg == NULL || sah == NULL)
2862 1.24 christos panic("key_newsa: NULL pointer is passed");
2863 1.1 jonathan
2864 1.1 jonathan KMALLOC(newsav, struct secasvar *, sizeof(struct secasvar));
2865 1.1 jonathan if (newsav == NULL) {
2866 1.1 jonathan ipseclog((LOG_DEBUG, "key_newsa: No more memory.\n"));
2867 1.1 jonathan *errp = ENOBUFS;
2868 1.1 jonathan goto done;
2869 1.1 jonathan }
2870 1.1 jonathan bzero((caddr_t)newsav, sizeof(struct secasvar));
2871 1.1 jonathan
2872 1.1 jonathan switch (mhp->msg->sadb_msg_type) {
2873 1.1 jonathan case SADB_GETSPI:
2874 1.1 jonathan newsav->spi = 0;
2875 1.1 jonathan
2876 1.1 jonathan #ifdef IPSEC_DOSEQCHECK
2877 1.1 jonathan /* sync sequence number */
2878 1.1 jonathan if (mhp->msg->sadb_msg_seq == 0)
2879 1.1 jonathan newsav->seq =
2880 1.1 jonathan (acq_seq = (acq_seq == ~0 ? 1 : ++acq_seq));
2881 1.1 jonathan else
2882 1.1 jonathan #endif
2883 1.1 jonathan newsav->seq = mhp->msg->sadb_msg_seq;
2884 1.1 jonathan break;
2885 1.1 jonathan
2886 1.1 jonathan case SADB_ADD:
2887 1.1 jonathan /* sanity check */
2888 1.1 jonathan if (mhp->ext[SADB_EXT_SA] == NULL) {
2889 1.1 jonathan KFREE(newsav), newsav = NULL;
2890 1.1 jonathan ipseclog((LOG_DEBUG, "key_newsa: invalid message is passed.\n"));
2891 1.1 jonathan *errp = EINVAL;
2892 1.1 jonathan goto done;
2893 1.1 jonathan }
2894 1.1 jonathan xsa = (const struct sadb_sa *)mhp->ext[SADB_EXT_SA];
2895 1.1 jonathan newsav->spi = xsa->sadb_sa_spi;
2896 1.1 jonathan newsav->seq = mhp->msg->sadb_msg_seq;
2897 1.1 jonathan break;
2898 1.1 jonathan default:
2899 1.1 jonathan KFREE(newsav), newsav = NULL;
2900 1.1 jonathan *errp = EINVAL;
2901 1.1 jonathan goto done;
2902 1.1 jonathan }
2903 1.1 jonathan
2904 1.1 jonathan /* copy sav values */
2905 1.1 jonathan if (mhp->msg->sadb_msg_type != SADB_GETSPI) {
2906 1.1 jonathan *errp = key_setsaval(newsav, m, mhp);
2907 1.1 jonathan if (*errp) {
2908 1.1 jonathan KFREE(newsav), newsav = NULL;
2909 1.1 jonathan goto done;
2910 1.1 jonathan }
2911 1.1 jonathan }
2912 1.1 jonathan
2913 1.1 jonathan /* reset created */
2914 1.1 jonathan newsav->created = time_second;
2915 1.1 jonathan newsav->pid = mhp->msg->sadb_msg_pid;
2916 1.1 jonathan
2917 1.1 jonathan /* add to satree */
2918 1.1 jonathan newsav->sah = sah;
2919 1.1 jonathan newsav->refcnt = 1;
2920 1.1 jonathan newsav->state = SADB_SASTATE_LARVAL;
2921 1.1 jonathan LIST_INSERT_TAIL(&sah->savtree[SADB_SASTATE_LARVAL], newsav,
2922 1.1 jonathan secasvar, chain);
2923 1.1 jonathan done:
2924 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
2925 1.1 jonathan printf("DP key_newsav from %s:%u return SP:%p\n",
2926 1.1 jonathan where, tag, newsav));
2927 1.1 jonathan
2928 1.1 jonathan return newsav;
2929 1.1 jonathan }
2930 1.1 jonathan
2931 1.1 jonathan /*
2932 1.1 jonathan * free() SA variable entry.
2933 1.1 jonathan */
2934 1.1 jonathan static void
2935 1.1 jonathan key_delsav(sav)
2936 1.1 jonathan struct secasvar *sav;
2937 1.1 jonathan {
2938 1.1 jonathan IPSEC_ASSERT(sav != NULL, ("key_delsav: null sav"));
2939 1.1 jonathan IPSEC_ASSERT(sav->refcnt == 0,
2940 1.1 jonathan ("key_delsav: reference count %u > 0", sav->refcnt));
2941 1.1 jonathan
2942 1.1 jonathan /* remove from SA header */
2943 1.1 jonathan if (__LIST_CHAINED(sav))
2944 1.1 jonathan LIST_REMOVE(sav, chain);
2945 1.1 jonathan
2946 1.1 jonathan /*
2947 1.1 jonathan * Cleanup xform state. Note that zeroize'ing causes the
2948 1.1 jonathan * keys to be cleared; otherwise we must do it ourself.
2949 1.1 jonathan */
2950 1.1 jonathan if (sav->tdb_xform != NULL) {
2951 1.1 jonathan sav->tdb_xform->xf_zeroize(sav);
2952 1.1 jonathan sav->tdb_xform = NULL;
2953 1.1 jonathan } else {
2954 1.1 jonathan if (sav->key_auth != NULL)
2955 1.1 jonathan bzero(_KEYBUF(sav->key_auth), _KEYLEN(sav->key_auth));
2956 1.1 jonathan if (sav->key_enc != NULL)
2957 1.1 jonathan bzero(_KEYBUF(sav->key_enc), _KEYLEN(sav->key_enc));
2958 1.1 jonathan }
2959 1.1 jonathan if (sav->key_auth != NULL) {
2960 1.1 jonathan KFREE(sav->key_auth);
2961 1.1 jonathan sav->key_auth = NULL;
2962 1.1 jonathan }
2963 1.1 jonathan if (sav->key_enc != NULL) {
2964 1.1 jonathan KFREE(sav->key_enc);
2965 1.1 jonathan sav->key_enc = NULL;
2966 1.1 jonathan }
2967 1.1 jonathan if (sav->sched) {
2968 1.1 jonathan bzero(sav->sched, sav->schedlen);
2969 1.1 jonathan KFREE(sav->sched);
2970 1.1 jonathan sav->sched = NULL;
2971 1.1 jonathan }
2972 1.1 jonathan if (sav->replay != NULL) {
2973 1.1 jonathan KFREE(sav->replay);
2974 1.1 jonathan sav->replay = NULL;
2975 1.1 jonathan }
2976 1.1 jonathan if (sav->lft_c != NULL) {
2977 1.1 jonathan KFREE(sav->lft_c);
2978 1.1 jonathan sav->lft_c = NULL;
2979 1.1 jonathan }
2980 1.1 jonathan if (sav->lft_h != NULL) {
2981 1.1 jonathan KFREE(sav->lft_h);
2982 1.1 jonathan sav->lft_h = NULL;
2983 1.1 jonathan }
2984 1.1 jonathan if (sav->lft_s != NULL) {
2985 1.1 jonathan KFREE(sav->lft_s);
2986 1.1 jonathan sav->lft_s = NULL;
2987 1.1 jonathan }
2988 1.1 jonathan if (sav->iv != NULL) {
2989 1.1 jonathan KFREE(sav->iv);
2990 1.1 jonathan sav->iv = NULL;
2991 1.1 jonathan }
2992 1.1 jonathan
2993 1.1 jonathan KFREE(sav);
2994 1.1 jonathan
2995 1.1 jonathan return;
2996 1.1 jonathan }
2997 1.1 jonathan
2998 1.1 jonathan /*
2999 1.1 jonathan * search SAD.
3000 1.1 jonathan * OUT:
3001 1.1 jonathan * NULL : not found
3002 1.1 jonathan * others : found, pointer to a SA.
3003 1.1 jonathan */
3004 1.1 jonathan static struct secashead *
3005 1.1 jonathan key_getsah(saidx)
3006 1.1 jonathan struct secasindex *saidx;
3007 1.1 jonathan {
3008 1.1 jonathan struct secashead *sah;
3009 1.1 jonathan
3010 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
3011 1.1 jonathan if (sah->state == SADB_SASTATE_DEAD)
3012 1.1 jonathan continue;
3013 1.1 jonathan if (key_cmpsaidx(&sah->saidx, saidx, CMP_REQID))
3014 1.1 jonathan return sah;
3015 1.1 jonathan }
3016 1.1 jonathan
3017 1.1 jonathan return NULL;
3018 1.1 jonathan }
3019 1.1 jonathan
3020 1.1 jonathan /*
3021 1.1 jonathan * check not to be duplicated SPI.
3022 1.1 jonathan * NOTE: this function is too slow due to searching all SAD.
3023 1.1 jonathan * OUT:
3024 1.1 jonathan * NULL : not found
3025 1.1 jonathan * others : found, pointer to a SA.
3026 1.1 jonathan */
3027 1.1 jonathan static struct secasvar *
3028 1.1 jonathan key_checkspidup(saidx, spi)
3029 1.1 jonathan struct secasindex *saidx;
3030 1.1 jonathan u_int32_t spi;
3031 1.1 jonathan {
3032 1.1 jonathan struct secashead *sah;
3033 1.1 jonathan struct secasvar *sav;
3034 1.1 jonathan
3035 1.1 jonathan /* check address family */
3036 1.1 jonathan if (saidx->src.sa.sa_family != saidx->dst.sa.sa_family) {
3037 1.1 jonathan ipseclog((LOG_DEBUG, "key_checkspidup: address family mismatched.\n"));
3038 1.1 jonathan return NULL;
3039 1.1 jonathan }
3040 1.1 jonathan
3041 1.1 jonathan /* check all SAD */
3042 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
3043 1.1 jonathan if (!key_ismyaddr((struct sockaddr *)&sah->saidx.dst))
3044 1.1 jonathan continue;
3045 1.1 jonathan sav = key_getsavbyspi(sah, spi);
3046 1.1 jonathan if (sav != NULL)
3047 1.1 jonathan return sav;
3048 1.1 jonathan }
3049 1.1 jonathan
3050 1.1 jonathan return NULL;
3051 1.1 jonathan }
3052 1.1 jonathan
3053 1.1 jonathan /*
3054 1.1 jonathan * search SAD litmited alive SA, protocol, SPI.
3055 1.1 jonathan * OUT:
3056 1.1 jonathan * NULL : not found
3057 1.1 jonathan * others : found, pointer to a SA.
3058 1.1 jonathan */
3059 1.1 jonathan static struct secasvar *
3060 1.1 jonathan key_getsavbyspi(sah, spi)
3061 1.1 jonathan struct secashead *sah;
3062 1.1 jonathan u_int32_t spi;
3063 1.1 jonathan {
3064 1.1 jonathan struct secasvar *sav;
3065 1.1 jonathan u_int stateidx, state;
3066 1.1 jonathan
3067 1.1 jonathan /* search all status */
3068 1.1 jonathan for (stateidx = 0;
3069 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_alive);
3070 1.1 jonathan stateidx++) {
3071 1.1 jonathan
3072 1.1 jonathan state = saorder_state_alive[stateidx];
3073 1.1 jonathan LIST_FOREACH(sav, &sah->savtree[state], chain) {
3074 1.1 jonathan
3075 1.1 jonathan /* sanity check */
3076 1.1 jonathan if (sav->state != state) {
3077 1.1 jonathan ipseclog((LOG_DEBUG, "key_getsavbyspi: "
3078 1.1 jonathan "invalid sav->state (queue: %d SA: %d)\n",
3079 1.1 jonathan state, sav->state));
3080 1.1 jonathan continue;
3081 1.1 jonathan }
3082 1.1 jonathan
3083 1.1 jonathan if (sav->spi == spi)
3084 1.1 jonathan return sav;
3085 1.1 jonathan }
3086 1.1 jonathan }
3087 1.1 jonathan
3088 1.1 jonathan return NULL;
3089 1.1 jonathan }
3090 1.1 jonathan
3091 1.1 jonathan /*
3092 1.1 jonathan * copy SA values from PF_KEY message except *SPI, SEQ, PID, STATE and TYPE*.
3093 1.1 jonathan * You must update these if need.
3094 1.1 jonathan * OUT: 0: success.
3095 1.1 jonathan * !0: failure.
3096 1.1 jonathan *
3097 1.1 jonathan * does not modify mbuf. does not free mbuf on error.
3098 1.1 jonathan */
3099 1.1 jonathan static int
3100 1.1 jonathan key_setsaval(sav, m, mhp)
3101 1.1 jonathan struct secasvar *sav;
3102 1.1 jonathan struct mbuf *m;
3103 1.1 jonathan const struct sadb_msghdr *mhp;
3104 1.1 jonathan {
3105 1.1 jonathan int error = 0;
3106 1.1 jonathan
3107 1.1 jonathan /* sanity check */
3108 1.1 jonathan if (m == NULL || mhp == NULL || mhp->msg == NULL)
3109 1.24 christos panic("key_setsaval: NULL pointer is passed");
3110 1.1 jonathan
3111 1.1 jonathan /* initialization */
3112 1.1 jonathan sav->replay = NULL;
3113 1.1 jonathan sav->key_auth = NULL;
3114 1.1 jonathan sav->key_enc = NULL;
3115 1.1 jonathan sav->sched = NULL;
3116 1.1 jonathan sav->schedlen = 0;
3117 1.1 jonathan sav->iv = NULL;
3118 1.1 jonathan sav->lft_c = NULL;
3119 1.1 jonathan sav->lft_h = NULL;
3120 1.1 jonathan sav->lft_s = NULL;
3121 1.1 jonathan sav->tdb_xform = NULL; /* transform */
3122 1.1 jonathan sav->tdb_encalgxform = NULL; /* encoding algorithm */
3123 1.1 jonathan sav->tdb_authalgxform = NULL; /* authentication algorithm */
3124 1.1 jonathan sav->tdb_compalgxform = NULL; /* compression algorithm */
3125 1.1 jonathan
3126 1.1 jonathan /* SA */
3127 1.1 jonathan if (mhp->ext[SADB_EXT_SA] != NULL) {
3128 1.1 jonathan const struct sadb_sa *sa0;
3129 1.1 jonathan
3130 1.1 jonathan sa0 = (const struct sadb_sa *)mhp->ext[SADB_EXT_SA];
3131 1.1 jonathan if (mhp->extlen[SADB_EXT_SA] < sizeof(*sa0)) {
3132 1.1 jonathan error = EINVAL;
3133 1.1 jonathan goto fail;
3134 1.1 jonathan }
3135 1.1 jonathan
3136 1.1 jonathan sav->alg_auth = sa0->sadb_sa_auth;
3137 1.1 jonathan sav->alg_enc = sa0->sadb_sa_encrypt;
3138 1.1 jonathan sav->flags = sa0->sadb_sa_flags;
3139 1.1 jonathan
3140 1.1 jonathan /* replay window */
3141 1.1 jonathan if ((sa0->sadb_sa_flags & SADB_X_EXT_OLD) == 0) {
3142 1.1 jonathan sav->replay = (struct secreplay *)
3143 1.1 jonathan malloc(sizeof(struct secreplay)+sa0->sadb_sa_replay, M_SECA, M_NOWAIT|M_ZERO);
3144 1.1 jonathan if (sav->replay == NULL) {
3145 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsaval: No more memory.\n"));
3146 1.1 jonathan error = ENOBUFS;
3147 1.1 jonathan goto fail;
3148 1.1 jonathan }
3149 1.1 jonathan if (sa0->sadb_sa_replay != 0)
3150 1.1 jonathan sav->replay->bitmap = (caddr_t)(sav->replay+1);
3151 1.1 jonathan sav->replay->wsize = sa0->sadb_sa_replay;
3152 1.1 jonathan }
3153 1.1 jonathan }
3154 1.1 jonathan
3155 1.1 jonathan /* Authentication keys */
3156 1.1 jonathan if (mhp->ext[SADB_EXT_KEY_AUTH] != NULL) {
3157 1.1 jonathan const struct sadb_key *key0;
3158 1.1 jonathan int len;
3159 1.1 jonathan
3160 1.1 jonathan key0 = (const struct sadb_key *)mhp->ext[SADB_EXT_KEY_AUTH];
3161 1.1 jonathan len = mhp->extlen[SADB_EXT_KEY_AUTH];
3162 1.1 jonathan
3163 1.1 jonathan error = 0;
3164 1.1 jonathan if (len < sizeof(*key0)) {
3165 1.1 jonathan error = EINVAL;
3166 1.1 jonathan goto fail;
3167 1.1 jonathan }
3168 1.1 jonathan switch (mhp->msg->sadb_msg_satype) {
3169 1.1 jonathan case SADB_SATYPE_AH:
3170 1.1 jonathan case SADB_SATYPE_ESP:
3171 1.12 jonathan case SADB_X_SATYPE_TCPSIGNATURE:
3172 1.1 jonathan if (len == PFKEY_ALIGN8(sizeof(struct sadb_key)) &&
3173 1.1 jonathan sav->alg_auth != SADB_X_AALG_NULL)
3174 1.1 jonathan error = EINVAL;
3175 1.1 jonathan break;
3176 1.1 jonathan case SADB_X_SATYPE_IPCOMP:
3177 1.1 jonathan default:
3178 1.1 jonathan error = EINVAL;
3179 1.1 jonathan break;
3180 1.1 jonathan }
3181 1.1 jonathan if (error) {
3182 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsaval: invalid key_auth values.\n"));
3183 1.1 jonathan goto fail;
3184 1.1 jonathan }
3185 1.1 jonathan
3186 1.1 jonathan sav->key_auth = (struct sadb_key *)key_newbuf(key0, len);
3187 1.1 jonathan if (sav->key_auth == NULL) {
3188 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsaval: No more memory.\n"));
3189 1.1 jonathan error = ENOBUFS;
3190 1.1 jonathan goto fail;
3191 1.1 jonathan }
3192 1.1 jonathan }
3193 1.1 jonathan
3194 1.1 jonathan /* Encryption key */
3195 1.1 jonathan if (mhp->ext[SADB_EXT_KEY_ENCRYPT] != NULL) {
3196 1.1 jonathan const struct sadb_key *key0;
3197 1.1 jonathan int len;
3198 1.1 jonathan
3199 1.1 jonathan key0 = (const struct sadb_key *)mhp->ext[SADB_EXT_KEY_ENCRYPT];
3200 1.1 jonathan len = mhp->extlen[SADB_EXT_KEY_ENCRYPT];
3201 1.1 jonathan
3202 1.1 jonathan error = 0;
3203 1.1 jonathan if (len < sizeof(*key0)) {
3204 1.1 jonathan error = EINVAL;
3205 1.1 jonathan goto fail;
3206 1.1 jonathan }
3207 1.1 jonathan switch (mhp->msg->sadb_msg_satype) {
3208 1.1 jonathan case SADB_SATYPE_ESP:
3209 1.1 jonathan if (len == PFKEY_ALIGN8(sizeof(struct sadb_key)) &&
3210 1.1 jonathan sav->alg_enc != SADB_EALG_NULL) {
3211 1.1 jonathan error = EINVAL;
3212 1.1 jonathan break;
3213 1.1 jonathan }
3214 1.1 jonathan sav->key_enc = (struct sadb_key *)key_newbuf(key0, len);
3215 1.1 jonathan if (sav->key_enc == NULL) {
3216 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsaval: No more memory.\n"));
3217 1.1 jonathan error = ENOBUFS;
3218 1.1 jonathan goto fail;
3219 1.1 jonathan }
3220 1.1 jonathan break;
3221 1.1 jonathan case SADB_X_SATYPE_IPCOMP:
3222 1.1 jonathan if (len != PFKEY_ALIGN8(sizeof(struct sadb_key)))
3223 1.1 jonathan error = EINVAL;
3224 1.1 jonathan sav->key_enc = NULL; /*just in case*/
3225 1.1 jonathan break;
3226 1.1 jonathan case SADB_SATYPE_AH:
3227 1.12 jonathan case SADB_X_SATYPE_TCPSIGNATURE:
3228 1.1 jonathan default:
3229 1.1 jonathan error = EINVAL;
3230 1.1 jonathan break;
3231 1.1 jonathan }
3232 1.1 jonathan if (error) {
3233 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsatval: invalid key_enc value.\n"));
3234 1.1 jonathan goto fail;
3235 1.1 jonathan }
3236 1.1 jonathan }
3237 1.1 jonathan
3238 1.1 jonathan /* set iv */
3239 1.1 jonathan sav->ivlen = 0;
3240 1.1 jonathan
3241 1.1 jonathan switch (mhp->msg->sadb_msg_satype) {
3242 1.1 jonathan case SADB_SATYPE_AH:
3243 1.1 jonathan error = xform_init(sav, XF_AH);
3244 1.1 jonathan break;
3245 1.1 jonathan case SADB_SATYPE_ESP:
3246 1.1 jonathan error = xform_init(sav, XF_ESP);
3247 1.1 jonathan break;
3248 1.1 jonathan case SADB_X_SATYPE_IPCOMP:
3249 1.1 jonathan error = xform_init(sav, XF_IPCOMP);
3250 1.1 jonathan break;
3251 1.12 jonathan case SADB_X_SATYPE_TCPSIGNATURE:
3252 1.12 jonathan error = xform_init(sav, XF_TCPSIGNATURE);
3253 1.12 jonathan break;
3254 1.1 jonathan }
3255 1.1 jonathan if (error) {
3256 1.1 jonathan ipseclog((LOG_DEBUG,
3257 1.1 jonathan "key_setsaval: unable to initialize SA type %u.\n",
3258 1.1 jonathan mhp->msg->sadb_msg_satype));
3259 1.1 jonathan goto fail;
3260 1.1 jonathan }
3261 1.1 jonathan
3262 1.1 jonathan /* reset created */
3263 1.1 jonathan sav->created = time_second;
3264 1.1 jonathan
3265 1.1 jonathan /* make lifetime for CURRENT */
3266 1.1 jonathan KMALLOC(sav->lft_c, struct sadb_lifetime *,
3267 1.1 jonathan sizeof(struct sadb_lifetime));
3268 1.1 jonathan if (sav->lft_c == NULL) {
3269 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsaval: No more memory.\n"));
3270 1.1 jonathan error = ENOBUFS;
3271 1.1 jonathan goto fail;
3272 1.1 jonathan }
3273 1.1 jonathan
3274 1.1 jonathan sav->lft_c->sadb_lifetime_len =
3275 1.1 jonathan PFKEY_UNIT64(sizeof(struct sadb_lifetime));
3276 1.1 jonathan sav->lft_c->sadb_lifetime_exttype = SADB_EXT_LIFETIME_CURRENT;
3277 1.1 jonathan sav->lft_c->sadb_lifetime_allocations = 0;
3278 1.1 jonathan sav->lft_c->sadb_lifetime_bytes = 0;
3279 1.1 jonathan sav->lft_c->sadb_lifetime_addtime = time_second;
3280 1.1 jonathan sav->lft_c->sadb_lifetime_usetime = 0;
3281 1.1 jonathan
3282 1.1 jonathan /* lifetimes for HARD and SOFT */
3283 1.1 jonathan {
3284 1.1 jonathan const struct sadb_lifetime *lft0;
3285 1.1 jonathan
3286 1.1 jonathan lft0 = (struct sadb_lifetime *)mhp->ext[SADB_EXT_LIFETIME_HARD];
3287 1.1 jonathan if (lft0 != NULL) {
3288 1.1 jonathan if (mhp->extlen[SADB_EXT_LIFETIME_HARD] < sizeof(*lft0)) {
3289 1.1 jonathan error = EINVAL;
3290 1.1 jonathan goto fail;
3291 1.1 jonathan }
3292 1.1 jonathan sav->lft_h = (struct sadb_lifetime *)key_newbuf(lft0,
3293 1.1 jonathan sizeof(*lft0));
3294 1.1 jonathan if (sav->lft_h == NULL) {
3295 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsaval: No more memory.\n"));
3296 1.1 jonathan error = ENOBUFS;
3297 1.1 jonathan goto fail;
3298 1.1 jonathan }
3299 1.1 jonathan /* to be initialize ? */
3300 1.1 jonathan }
3301 1.1 jonathan
3302 1.1 jonathan lft0 = (struct sadb_lifetime *)mhp->ext[SADB_EXT_LIFETIME_SOFT];
3303 1.1 jonathan if (lft0 != NULL) {
3304 1.1 jonathan if (mhp->extlen[SADB_EXT_LIFETIME_SOFT] < sizeof(*lft0)) {
3305 1.1 jonathan error = EINVAL;
3306 1.1 jonathan goto fail;
3307 1.1 jonathan }
3308 1.1 jonathan sav->lft_s = (struct sadb_lifetime *)key_newbuf(lft0,
3309 1.1 jonathan sizeof(*lft0));
3310 1.1 jonathan if (sav->lft_s == NULL) {
3311 1.1 jonathan ipseclog((LOG_DEBUG, "key_setsaval: No more memory.\n"));
3312 1.1 jonathan error = ENOBUFS;
3313 1.1 jonathan goto fail;
3314 1.1 jonathan }
3315 1.1 jonathan /* to be initialize ? */
3316 1.1 jonathan }
3317 1.1 jonathan }
3318 1.1 jonathan
3319 1.1 jonathan return 0;
3320 1.1 jonathan
3321 1.1 jonathan fail:
3322 1.1 jonathan /* initialization */
3323 1.1 jonathan if (sav->replay != NULL) {
3324 1.1 jonathan KFREE(sav->replay);
3325 1.1 jonathan sav->replay = NULL;
3326 1.1 jonathan }
3327 1.1 jonathan if (sav->key_auth != NULL) {
3328 1.1 jonathan KFREE(sav->key_auth);
3329 1.1 jonathan sav->key_auth = NULL;
3330 1.1 jonathan }
3331 1.1 jonathan if (sav->key_enc != NULL) {
3332 1.1 jonathan KFREE(sav->key_enc);
3333 1.1 jonathan sav->key_enc = NULL;
3334 1.1 jonathan }
3335 1.1 jonathan if (sav->sched) {
3336 1.1 jonathan KFREE(sav->sched);
3337 1.1 jonathan sav->sched = NULL;
3338 1.1 jonathan }
3339 1.1 jonathan if (sav->iv != NULL) {
3340 1.1 jonathan KFREE(sav->iv);
3341 1.1 jonathan sav->iv = NULL;
3342 1.1 jonathan }
3343 1.1 jonathan if (sav->lft_c != NULL) {
3344 1.1 jonathan KFREE(sav->lft_c);
3345 1.1 jonathan sav->lft_c = NULL;
3346 1.1 jonathan }
3347 1.1 jonathan if (sav->lft_h != NULL) {
3348 1.1 jonathan KFREE(sav->lft_h);
3349 1.1 jonathan sav->lft_h = NULL;
3350 1.1 jonathan }
3351 1.1 jonathan if (sav->lft_s != NULL) {
3352 1.1 jonathan KFREE(sav->lft_s);
3353 1.1 jonathan sav->lft_s = NULL;
3354 1.1 jonathan }
3355 1.1 jonathan
3356 1.1 jonathan return error;
3357 1.1 jonathan }
3358 1.1 jonathan
3359 1.1 jonathan /*
3360 1.1 jonathan * validation with a secasvar entry, and set SADB_SATYPE_MATURE.
3361 1.1 jonathan * OUT: 0: valid
3362 1.1 jonathan * other: errno
3363 1.1 jonathan */
3364 1.1 jonathan static int
3365 1.1 jonathan key_mature(sav)
3366 1.1 jonathan struct secasvar *sav;
3367 1.1 jonathan {
3368 1.1 jonathan int error;
3369 1.1 jonathan
3370 1.1 jonathan /* check SPI value */
3371 1.1 jonathan switch (sav->sah->saidx.proto) {
3372 1.1 jonathan case IPPROTO_ESP:
3373 1.1 jonathan case IPPROTO_AH:
3374 1.29 christos if (ntohl(sav->spi) <= 255) {
3375 1.1 jonathan ipseclog((LOG_DEBUG,
3376 1.1 jonathan "key_mature: illegal range of SPI %u.\n",
3377 1.1 jonathan (u_int32_t)ntohl(sav->spi)));
3378 1.1 jonathan return EINVAL;
3379 1.1 jonathan }
3380 1.1 jonathan break;
3381 1.1 jonathan }
3382 1.1 jonathan
3383 1.1 jonathan /* check satype */
3384 1.1 jonathan switch (sav->sah->saidx.proto) {
3385 1.1 jonathan case IPPROTO_ESP:
3386 1.1 jonathan /* check flags */
3387 1.1 jonathan if ((sav->flags & (SADB_X_EXT_OLD|SADB_X_EXT_DERIV)) ==
3388 1.1 jonathan (SADB_X_EXT_OLD|SADB_X_EXT_DERIV)) {
3389 1.1 jonathan ipseclog((LOG_DEBUG, "key_mature: "
3390 1.1 jonathan "invalid flag (derived) given to old-esp.\n"));
3391 1.1 jonathan return EINVAL;
3392 1.1 jonathan }
3393 1.1 jonathan error = xform_init(sav, XF_ESP);
3394 1.1 jonathan break;
3395 1.1 jonathan case IPPROTO_AH:
3396 1.1 jonathan /* check flags */
3397 1.1 jonathan if (sav->flags & SADB_X_EXT_DERIV) {
3398 1.1 jonathan ipseclog((LOG_DEBUG, "key_mature: "
3399 1.1 jonathan "invalid flag (derived) given to AH SA.\n"));
3400 1.1 jonathan return EINVAL;
3401 1.1 jonathan }
3402 1.1 jonathan if (sav->alg_enc != SADB_EALG_NONE) {
3403 1.1 jonathan ipseclog((LOG_DEBUG, "key_mature: "
3404 1.1 jonathan "protocol and algorithm mismated.\n"));
3405 1.1 jonathan return(EINVAL);
3406 1.1 jonathan }
3407 1.1 jonathan error = xform_init(sav, XF_AH);
3408 1.1 jonathan break;
3409 1.1 jonathan case IPPROTO_IPCOMP:
3410 1.1 jonathan if (sav->alg_auth != SADB_AALG_NONE) {
3411 1.1 jonathan ipseclog((LOG_DEBUG, "key_mature: "
3412 1.1 jonathan "protocol and algorithm mismated.\n"));
3413 1.1 jonathan return(EINVAL);
3414 1.1 jonathan }
3415 1.1 jonathan if ((sav->flags & SADB_X_EXT_RAWCPI) == 0
3416 1.1 jonathan && ntohl(sav->spi) >= 0x10000) {
3417 1.1 jonathan ipseclog((LOG_DEBUG, "key_mature: invalid cpi for IPComp.\n"));
3418 1.1 jonathan return(EINVAL);
3419 1.1 jonathan }
3420 1.1 jonathan error = xform_init(sav, XF_IPCOMP);
3421 1.1 jonathan break;
3422 1.12 jonathan case IPPROTO_TCP:
3423 1.12 jonathan if (sav->alg_enc != SADB_EALG_NONE) {
3424 1.12 jonathan ipseclog((LOG_DEBUG, "%s: protocol and algorithm "
3425 1.12 jonathan "mismated.\n", __func__));
3426 1.12 jonathan return(EINVAL);
3427 1.12 jonathan }
3428 1.12 jonathan error = xform_init(sav, XF_TCPSIGNATURE);
3429 1.12 jonathan break;
3430 1.1 jonathan default:
3431 1.1 jonathan ipseclog((LOG_DEBUG, "key_mature: Invalid satype.\n"));
3432 1.1 jonathan error = EPROTONOSUPPORT;
3433 1.1 jonathan break;
3434 1.1 jonathan }
3435 1.1 jonathan if (error == 0)
3436 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_MATURE);
3437 1.1 jonathan return (error);
3438 1.1 jonathan }
3439 1.1 jonathan
3440 1.1 jonathan /*
3441 1.1 jonathan * subroutine for SADB_GET and SADB_DUMP.
3442 1.1 jonathan */
3443 1.1 jonathan static struct mbuf *
3444 1.1 jonathan key_setdumpsa(sav, type, satype, seq, pid)
3445 1.1 jonathan struct secasvar *sav;
3446 1.1 jonathan u_int8_t type, satype;
3447 1.1 jonathan u_int32_t seq, pid;
3448 1.1 jonathan {
3449 1.1 jonathan struct mbuf *result = NULL, *tres = NULL, *m;
3450 1.1 jonathan int l = 0;
3451 1.1 jonathan int i;
3452 1.1 jonathan void *p;
3453 1.1 jonathan int dumporder[] = {
3454 1.1 jonathan SADB_EXT_SA, SADB_X_EXT_SA2,
3455 1.1 jonathan SADB_EXT_LIFETIME_HARD, SADB_EXT_LIFETIME_SOFT,
3456 1.1 jonathan SADB_EXT_LIFETIME_CURRENT, SADB_EXT_ADDRESS_SRC,
3457 1.1 jonathan SADB_EXT_ADDRESS_DST, SADB_EXT_ADDRESS_PROXY, SADB_EXT_KEY_AUTH,
3458 1.1 jonathan SADB_EXT_KEY_ENCRYPT, SADB_EXT_IDENTITY_SRC,
3459 1.1 jonathan SADB_EXT_IDENTITY_DST, SADB_EXT_SENSITIVITY,
3460 1.1 jonathan };
3461 1.1 jonathan
3462 1.1 jonathan m = key_setsadbmsg(type, 0, satype, seq, pid, sav->refcnt);
3463 1.1 jonathan if (m == NULL)
3464 1.1 jonathan goto fail;
3465 1.1 jonathan result = m;
3466 1.1 jonathan
3467 1.1 jonathan for (i = sizeof(dumporder)/sizeof(dumporder[0]) - 1; i >= 0; i--) {
3468 1.1 jonathan m = NULL;
3469 1.1 jonathan p = NULL;
3470 1.1 jonathan switch (dumporder[i]) {
3471 1.1 jonathan case SADB_EXT_SA:
3472 1.1 jonathan m = key_setsadbsa(sav);
3473 1.1 jonathan if (!m)
3474 1.1 jonathan goto fail;
3475 1.1 jonathan break;
3476 1.1 jonathan
3477 1.1 jonathan case SADB_X_EXT_SA2:
3478 1.1 jonathan m = key_setsadbxsa2(sav->sah->saidx.mode,
3479 1.1 jonathan sav->replay ? sav->replay->count : 0,
3480 1.1 jonathan sav->sah->saidx.reqid);
3481 1.1 jonathan if (!m)
3482 1.1 jonathan goto fail;
3483 1.1 jonathan break;
3484 1.1 jonathan
3485 1.1 jonathan case SADB_EXT_ADDRESS_SRC:
3486 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_SRC,
3487 1.1 jonathan &sav->sah->saidx.src.sa,
3488 1.1 jonathan FULLMASK, IPSEC_ULPROTO_ANY);
3489 1.1 jonathan if (!m)
3490 1.1 jonathan goto fail;
3491 1.1 jonathan break;
3492 1.1 jonathan
3493 1.1 jonathan case SADB_EXT_ADDRESS_DST:
3494 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_DST,
3495 1.1 jonathan &sav->sah->saidx.dst.sa,
3496 1.1 jonathan FULLMASK, IPSEC_ULPROTO_ANY);
3497 1.1 jonathan if (!m)
3498 1.1 jonathan goto fail;
3499 1.1 jonathan break;
3500 1.1 jonathan
3501 1.1 jonathan case SADB_EXT_KEY_AUTH:
3502 1.1 jonathan if (!sav->key_auth)
3503 1.1 jonathan continue;
3504 1.1 jonathan l = PFKEY_UNUNIT64(sav->key_auth->sadb_key_len);
3505 1.1 jonathan p = sav->key_auth;
3506 1.1 jonathan break;
3507 1.1 jonathan
3508 1.1 jonathan case SADB_EXT_KEY_ENCRYPT:
3509 1.1 jonathan if (!sav->key_enc)
3510 1.1 jonathan continue;
3511 1.1 jonathan l = PFKEY_UNUNIT64(sav->key_enc->sadb_key_len);
3512 1.1 jonathan p = sav->key_enc;
3513 1.1 jonathan break;
3514 1.1 jonathan
3515 1.1 jonathan case SADB_EXT_LIFETIME_CURRENT:
3516 1.1 jonathan if (!sav->lft_c)
3517 1.1 jonathan continue;
3518 1.1 jonathan l = PFKEY_UNUNIT64(((struct sadb_ext *)sav->lft_c)->sadb_ext_len);
3519 1.1 jonathan p = sav->lft_c;
3520 1.1 jonathan break;
3521 1.1 jonathan
3522 1.1 jonathan case SADB_EXT_LIFETIME_HARD:
3523 1.1 jonathan if (!sav->lft_h)
3524 1.1 jonathan continue;
3525 1.1 jonathan l = PFKEY_UNUNIT64(((struct sadb_ext *)sav->lft_h)->sadb_ext_len);
3526 1.1 jonathan p = sav->lft_h;
3527 1.1 jonathan break;
3528 1.1 jonathan
3529 1.1 jonathan case SADB_EXT_LIFETIME_SOFT:
3530 1.1 jonathan if (!sav->lft_s)
3531 1.1 jonathan continue;
3532 1.1 jonathan l = PFKEY_UNUNIT64(((struct sadb_ext *)sav->lft_s)->sadb_ext_len);
3533 1.1 jonathan p = sav->lft_s;
3534 1.1 jonathan break;
3535 1.1 jonathan
3536 1.1 jonathan case SADB_EXT_ADDRESS_PROXY:
3537 1.1 jonathan case SADB_EXT_IDENTITY_SRC:
3538 1.1 jonathan case SADB_EXT_IDENTITY_DST:
3539 1.1 jonathan /* XXX: should we brought from SPD ? */
3540 1.1 jonathan case SADB_EXT_SENSITIVITY:
3541 1.1 jonathan default:
3542 1.1 jonathan continue;
3543 1.1 jonathan }
3544 1.1 jonathan
3545 1.1 jonathan if ((!m && !p) || (m && p))
3546 1.1 jonathan goto fail;
3547 1.1 jonathan if (p && tres) {
3548 1.1 jonathan M_PREPEND(tres, l, M_DONTWAIT);
3549 1.1 jonathan if (!tres)
3550 1.1 jonathan goto fail;
3551 1.1 jonathan bcopy(p, mtod(tres, caddr_t), l);
3552 1.1 jonathan continue;
3553 1.1 jonathan }
3554 1.1 jonathan if (p) {
3555 1.1 jonathan m = key_alloc_mbuf(l);
3556 1.1 jonathan if (!m)
3557 1.1 jonathan goto fail;
3558 1.1 jonathan m_copyback(m, 0, l, p);
3559 1.1 jonathan }
3560 1.1 jonathan
3561 1.1 jonathan if (tres)
3562 1.1 jonathan m_cat(m, tres);
3563 1.1 jonathan tres = m;
3564 1.1 jonathan }
3565 1.1 jonathan
3566 1.1 jonathan m_cat(result, tres);
3567 1.1 jonathan
3568 1.1 jonathan if (result->m_len < sizeof(struct sadb_msg)) {
3569 1.1 jonathan result = m_pullup(result, sizeof(struct sadb_msg));
3570 1.1 jonathan if (result == NULL)
3571 1.1 jonathan goto fail;
3572 1.1 jonathan }
3573 1.1 jonathan
3574 1.1 jonathan result->m_pkthdr.len = 0;
3575 1.1 jonathan for (m = result; m; m = m->m_next)
3576 1.1 jonathan result->m_pkthdr.len += m->m_len;
3577 1.1 jonathan
3578 1.1 jonathan mtod(result, struct sadb_msg *)->sadb_msg_len =
3579 1.1 jonathan PFKEY_UNIT64(result->m_pkthdr.len);
3580 1.1 jonathan
3581 1.1 jonathan return result;
3582 1.1 jonathan
3583 1.1 jonathan fail:
3584 1.1 jonathan m_freem(result);
3585 1.1 jonathan m_freem(tres);
3586 1.1 jonathan return NULL;
3587 1.1 jonathan }
3588 1.1 jonathan
3589 1.1 jonathan /*
3590 1.1 jonathan * set data into sadb_msg.
3591 1.1 jonathan */
3592 1.1 jonathan static struct mbuf *
3593 1.1 jonathan key_setsadbmsg(type, tlen, satype, seq, pid, reserved)
3594 1.1 jonathan u_int8_t type, satype;
3595 1.1 jonathan u_int16_t tlen;
3596 1.1 jonathan u_int32_t seq;
3597 1.1 jonathan pid_t pid;
3598 1.1 jonathan u_int16_t reserved;
3599 1.1 jonathan {
3600 1.1 jonathan struct mbuf *m;
3601 1.1 jonathan struct sadb_msg *p;
3602 1.1 jonathan int len;
3603 1.1 jonathan
3604 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_msg));
3605 1.1 jonathan if (len > MCLBYTES)
3606 1.1 jonathan return NULL;
3607 1.1 jonathan MGETHDR(m, M_DONTWAIT, MT_DATA);
3608 1.1 jonathan if (m && len > MHLEN) {
3609 1.1 jonathan MCLGET(m, M_DONTWAIT);
3610 1.1 jonathan if ((m->m_flags & M_EXT) == 0) {
3611 1.1 jonathan m_freem(m);
3612 1.1 jonathan m = NULL;
3613 1.1 jonathan }
3614 1.1 jonathan }
3615 1.1 jonathan if (!m)
3616 1.1 jonathan return NULL;
3617 1.1 jonathan m->m_pkthdr.len = m->m_len = len;
3618 1.1 jonathan m->m_next = NULL;
3619 1.1 jonathan
3620 1.1 jonathan p = mtod(m, struct sadb_msg *);
3621 1.1 jonathan
3622 1.1 jonathan bzero(p, len);
3623 1.1 jonathan p->sadb_msg_version = PF_KEY_V2;
3624 1.1 jonathan p->sadb_msg_type = type;
3625 1.1 jonathan p->sadb_msg_errno = 0;
3626 1.1 jonathan p->sadb_msg_satype = satype;
3627 1.1 jonathan p->sadb_msg_len = PFKEY_UNIT64(tlen);
3628 1.1 jonathan p->sadb_msg_reserved = reserved;
3629 1.1 jonathan p->sadb_msg_seq = seq;
3630 1.1 jonathan p->sadb_msg_pid = (u_int32_t)pid;
3631 1.1 jonathan
3632 1.1 jonathan return m;
3633 1.1 jonathan }
3634 1.1 jonathan
3635 1.1 jonathan /*
3636 1.1 jonathan * copy secasvar data into sadb_address.
3637 1.1 jonathan */
3638 1.1 jonathan static struct mbuf *
3639 1.1 jonathan key_setsadbsa(sav)
3640 1.1 jonathan struct secasvar *sav;
3641 1.1 jonathan {
3642 1.1 jonathan struct mbuf *m;
3643 1.1 jonathan struct sadb_sa *p;
3644 1.1 jonathan int len;
3645 1.1 jonathan
3646 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_sa));
3647 1.1 jonathan m = key_alloc_mbuf(len);
3648 1.1 jonathan if (!m || m->m_next) { /*XXX*/
3649 1.1 jonathan if (m)
3650 1.1 jonathan m_freem(m);
3651 1.1 jonathan return NULL;
3652 1.1 jonathan }
3653 1.1 jonathan
3654 1.1 jonathan p = mtod(m, struct sadb_sa *);
3655 1.1 jonathan
3656 1.1 jonathan bzero(p, len);
3657 1.1 jonathan p->sadb_sa_len = PFKEY_UNIT64(len);
3658 1.1 jonathan p->sadb_sa_exttype = SADB_EXT_SA;
3659 1.1 jonathan p->sadb_sa_spi = sav->spi;
3660 1.1 jonathan p->sadb_sa_replay = (sav->replay != NULL ? sav->replay->wsize : 0);
3661 1.1 jonathan p->sadb_sa_state = sav->state;
3662 1.1 jonathan p->sadb_sa_auth = sav->alg_auth;
3663 1.1 jonathan p->sadb_sa_encrypt = sav->alg_enc;
3664 1.1 jonathan p->sadb_sa_flags = sav->flags;
3665 1.1 jonathan
3666 1.1 jonathan return m;
3667 1.1 jonathan }
3668 1.1 jonathan
3669 1.1 jonathan /*
3670 1.1 jonathan * set data into sadb_address.
3671 1.1 jonathan */
3672 1.1 jonathan static struct mbuf *
3673 1.1 jonathan key_setsadbaddr(exttype, saddr, prefixlen, ul_proto)
3674 1.1 jonathan u_int16_t exttype;
3675 1.1 jonathan const struct sockaddr *saddr;
3676 1.1 jonathan u_int8_t prefixlen;
3677 1.1 jonathan u_int16_t ul_proto;
3678 1.1 jonathan {
3679 1.1 jonathan struct mbuf *m;
3680 1.1 jonathan struct sadb_address *p;
3681 1.1 jonathan size_t len;
3682 1.1 jonathan
3683 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_address)) +
3684 1.1 jonathan PFKEY_ALIGN8(saddr->sa_len);
3685 1.1 jonathan m = key_alloc_mbuf(len);
3686 1.1 jonathan if (!m || m->m_next) { /*XXX*/
3687 1.1 jonathan if (m)
3688 1.1 jonathan m_freem(m);
3689 1.1 jonathan return NULL;
3690 1.1 jonathan }
3691 1.1 jonathan
3692 1.1 jonathan p = mtod(m, struct sadb_address *);
3693 1.1 jonathan
3694 1.1 jonathan bzero(p, len);
3695 1.1 jonathan p->sadb_address_len = PFKEY_UNIT64(len);
3696 1.1 jonathan p->sadb_address_exttype = exttype;
3697 1.1 jonathan p->sadb_address_proto = ul_proto;
3698 1.1 jonathan if (prefixlen == FULLMASK) {
3699 1.1 jonathan switch (saddr->sa_family) {
3700 1.1 jonathan case AF_INET:
3701 1.1 jonathan prefixlen = sizeof(struct in_addr) << 3;
3702 1.1 jonathan break;
3703 1.1 jonathan case AF_INET6:
3704 1.1 jonathan prefixlen = sizeof(struct in6_addr) << 3;
3705 1.1 jonathan break;
3706 1.1 jonathan default:
3707 1.1 jonathan ; /*XXX*/
3708 1.1 jonathan }
3709 1.1 jonathan }
3710 1.1 jonathan p->sadb_address_prefixlen = prefixlen;
3711 1.1 jonathan p->sadb_address_reserved = 0;
3712 1.1 jonathan
3713 1.1 jonathan bcopy(saddr,
3714 1.1 jonathan mtod(m, caddr_t) + PFKEY_ALIGN8(sizeof(struct sadb_address)),
3715 1.1 jonathan saddr->sa_len);
3716 1.1 jonathan
3717 1.1 jonathan return m;
3718 1.1 jonathan }
3719 1.1 jonathan
3720 1.1 jonathan #if 0
3721 1.1 jonathan /*
3722 1.1 jonathan * set data into sadb_ident.
3723 1.1 jonathan */
3724 1.1 jonathan static struct mbuf *
3725 1.1 jonathan key_setsadbident(exttype, idtype, string, stringlen, id)
3726 1.1 jonathan u_int16_t exttype, idtype;
3727 1.1 jonathan caddr_t string;
3728 1.1 jonathan int stringlen;
3729 1.1 jonathan u_int64_t id;
3730 1.1 jonathan {
3731 1.1 jonathan struct mbuf *m;
3732 1.1 jonathan struct sadb_ident *p;
3733 1.1 jonathan size_t len;
3734 1.1 jonathan
3735 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_ident)) + PFKEY_ALIGN8(stringlen);
3736 1.1 jonathan m = key_alloc_mbuf(len);
3737 1.1 jonathan if (!m || m->m_next) { /*XXX*/
3738 1.1 jonathan if (m)
3739 1.1 jonathan m_freem(m);
3740 1.1 jonathan return NULL;
3741 1.1 jonathan }
3742 1.1 jonathan
3743 1.1 jonathan p = mtod(m, struct sadb_ident *);
3744 1.1 jonathan
3745 1.1 jonathan bzero(p, len);
3746 1.1 jonathan p->sadb_ident_len = PFKEY_UNIT64(len);
3747 1.1 jonathan p->sadb_ident_exttype = exttype;
3748 1.1 jonathan p->sadb_ident_type = idtype;
3749 1.1 jonathan p->sadb_ident_reserved = 0;
3750 1.1 jonathan p->sadb_ident_id = id;
3751 1.1 jonathan
3752 1.1 jonathan bcopy(string,
3753 1.1 jonathan mtod(m, caddr_t) + PFKEY_ALIGN8(sizeof(struct sadb_ident)),
3754 1.1 jonathan stringlen);
3755 1.1 jonathan
3756 1.1 jonathan return m;
3757 1.1 jonathan }
3758 1.1 jonathan #endif
3759 1.1 jonathan
3760 1.1 jonathan /*
3761 1.1 jonathan * set data into sadb_x_sa2.
3762 1.1 jonathan */
3763 1.1 jonathan static struct mbuf *
3764 1.1 jonathan key_setsadbxsa2(mode, seq, reqid)
3765 1.1 jonathan u_int8_t mode;
3766 1.1 jonathan u_int32_t seq, reqid;
3767 1.1 jonathan {
3768 1.1 jonathan struct mbuf *m;
3769 1.1 jonathan struct sadb_x_sa2 *p;
3770 1.1 jonathan size_t len;
3771 1.1 jonathan
3772 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_x_sa2));
3773 1.1 jonathan m = key_alloc_mbuf(len);
3774 1.1 jonathan if (!m || m->m_next) { /*XXX*/
3775 1.1 jonathan if (m)
3776 1.1 jonathan m_freem(m);
3777 1.1 jonathan return NULL;
3778 1.1 jonathan }
3779 1.1 jonathan
3780 1.1 jonathan p = mtod(m, struct sadb_x_sa2 *);
3781 1.1 jonathan
3782 1.1 jonathan bzero(p, len);
3783 1.1 jonathan p->sadb_x_sa2_len = PFKEY_UNIT64(len);
3784 1.1 jonathan p->sadb_x_sa2_exttype = SADB_X_EXT_SA2;
3785 1.1 jonathan p->sadb_x_sa2_mode = mode;
3786 1.1 jonathan p->sadb_x_sa2_reserved1 = 0;
3787 1.1 jonathan p->sadb_x_sa2_reserved2 = 0;
3788 1.1 jonathan p->sadb_x_sa2_sequence = seq;
3789 1.1 jonathan p->sadb_x_sa2_reqid = reqid;
3790 1.1 jonathan
3791 1.1 jonathan return m;
3792 1.1 jonathan }
3793 1.1 jonathan
3794 1.1 jonathan /*
3795 1.1 jonathan * set data into sadb_x_policy
3796 1.1 jonathan */
3797 1.1 jonathan static struct mbuf *
3798 1.1 jonathan key_setsadbxpolicy(type, dir, id)
3799 1.1 jonathan u_int16_t type;
3800 1.1 jonathan u_int8_t dir;
3801 1.1 jonathan u_int32_t id;
3802 1.1 jonathan {
3803 1.1 jonathan struct mbuf *m;
3804 1.1 jonathan struct sadb_x_policy *p;
3805 1.1 jonathan size_t len;
3806 1.1 jonathan
3807 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_x_policy));
3808 1.1 jonathan m = key_alloc_mbuf(len);
3809 1.1 jonathan if (!m || m->m_next) { /*XXX*/
3810 1.1 jonathan if (m)
3811 1.1 jonathan m_freem(m);
3812 1.1 jonathan return NULL;
3813 1.1 jonathan }
3814 1.1 jonathan
3815 1.1 jonathan p = mtod(m, struct sadb_x_policy *);
3816 1.1 jonathan
3817 1.1 jonathan bzero(p, len);
3818 1.1 jonathan p->sadb_x_policy_len = PFKEY_UNIT64(len);
3819 1.1 jonathan p->sadb_x_policy_exttype = SADB_X_EXT_POLICY;
3820 1.1 jonathan p->sadb_x_policy_type = type;
3821 1.1 jonathan p->sadb_x_policy_dir = dir;
3822 1.1 jonathan p->sadb_x_policy_id = id;
3823 1.1 jonathan
3824 1.1 jonathan return m;
3825 1.1 jonathan }
3826 1.1 jonathan
3827 1.1 jonathan /* %%% utilities */
3828 1.1 jonathan /*
3829 1.1 jonathan * copy a buffer into the new buffer allocated.
3830 1.1 jonathan */
3831 1.1 jonathan static void *
3832 1.1 jonathan key_newbuf(src, len)
3833 1.1 jonathan const void *src;
3834 1.1 jonathan u_int len;
3835 1.1 jonathan {
3836 1.1 jonathan caddr_t new;
3837 1.1 jonathan
3838 1.1 jonathan KMALLOC(new, caddr_t, len);
3839 1.1 jonathan if (new == NULL) {
3840 1.1 jonathan ipseclog((LOG_DEBUG, "key_newbuf: No more memory.\n"));
3841 1.1 jonathan return NULL;
3842 1.1 jonathan }
3843 1.1 jonathan bcopy(src, new, len);
3844 1.1 jonathan
3845 1.1 jonathan return new;
3846 1.1 jonathan }
3847 1.1 jonathan
3848 1.1 jonathan /* compare my own address
3849 1.1 jonathan * OUT: 1: true, i.e. my address.
3850 1.1 jonathan * 0: false
3851 1.1 jonathan */
3852 1.1 jonathan int
3853 1.1 jonathan key_ismyaddr(sa)
3854 1.1 jonathan struct sockaddr *sa;
3855 1.1 jonathan {
3856 1.1 jonathan #ifdef INET
3857 1.1 jonathan struct sockaddr_in *sin;
3858 1.1 jonathan struct in_ifaddr *ia;
3859 1.1 jonathan #endif
3860 1.1 jonathan
3861 1.1 jonathan /* sanity check */
3862 1.1 jonathan if (sa == NULL)
3863 1.24 christos panic("key_ismyaddr: NULL pointer is passed");
3864 1.1 jonathan
3865 1.1 jonathan switch (sa->sa_family) {
3866 1.1 jonathan #ifdef INET
3867 1.1 jonathan case AF_INET:
3868 1.1 jonathan sin = (struct sockaddr_in *)sa;
3869 1.1 jonathan for (ia = in_ifaddrhead.tqh_first; ia;
3870 1.1 jonathan ia = ia->ia_link.tqe_next)
3871 1.1 jonathan {
3872 1.1 jonathan if (sin->sin_family == ia->ia_addr.sin_family &&
3873 1.1 jonathan sin->sin_len == ia->ia_addr.sin_len &&
3874 1.1 jonathan sin->sin_addr.s_addr == ia->ia_addr.sin_addr.s_addr)
3875 1.1 jonathan {
3876 1.1 jonathan return 1;
3877 1.1 jonathan }
3878 1.1 jonathan }
3879 1.1 jonathan break;
3880 1.1 jonathan #endif
3881 1.1 jonathan #ifdef INET6
3882 1.1 jonathan case AF_INET6:
3883 1.1 jonathan return key_ismyaddr6((struct sockaddr_in6 *)sa);
3884 1.1 jonathan #endif
3885 1.1 jonathan }
3886 1.1 jonathan
3887 1.1 jonathan return 0;
3888 1.1 jonathan }
3889 1.1 jonathan
3890 1.1 jonathan #ifdef INET6
3891 1.1 jonathan /*
3892 1.1 jonathan * compare my own address for IPv6.
3893 1.1 jonathan * 1: ours
3894 1.1 jonathan * 0: other
3895 1.1 jonathan * NOTE: derived ip6_input() in KAME. This is necessary to modify more.
3896 1.1 jonathan */
3897 1.1 jonathan #include <netinet6/in6_var.h>
3898 1.1 jonathan
3899 1.1 jonathan static int
3900 1.1 jonathan key_ismyaddr6(sin6)
3901 1.1 jonathan struct sockaddr_in6 *sin6;
3902 1.1 jonathan {
3903 1.1 jonathan struct in6_ifaddr *ia;
3904 1.1 jonathan struct in6_multi *in6m;
3905 1.1 jonathan
3906 1.1 jonathan for (ia = in6_ifaddr; ia; ia = ia->ia_next) {
3907 1.1 jonathan if (key_sockaddrcmp((struct sockaddr *)&sin6,
3908 1.1 jonathan (struct sockaddr *)&ia->ia_addr, 0) == 0)
3909 1.1 jonathan return 1;
3910 1.1 jonathan
3911 1.1 jonathan /*
3912 1.1 jonathan * XXX Multicast
3913 1.1 jonathan * XXX why do we care about multlicast here while we don't care
3914 1.1 jonathan * about IPv4 multicast??
3915 1.1 jonathan * XXX scope
3916 1.1 jonathan */
3917 1.1 jonathan in6m = NULL;
3918 1.10 jonathan #ifdef __FreeBSD__
3919 1.1 jonathan IN6_LOOKUP_MULTI(sin6->sin6_addr, ia->ia_ifp, in6m);
3920 1.10 jonathan #else
3921 1.10 jonathan for ((in6m) = ia->ia6_multiaddrs.lh_first;
3922 1.10 jonathan (in6m) != NULL &&
3923 1.10 jonathan !IN6_ARE_ADDR_EQUAL(&(in6m)->in6m_addr, &sin6->sin6_addr);
3924 1.10 jonathan (in6m) = in6m->in6m_entry.le_next)
3925 1.10 jonathan continue;
3926 1.10 jonathan #endif
3927 1.1 jonathan if (in6m)
3928 1.1 jonathan return 1;
3929 1.1 jonathan }
3930 1.1 jonathan
3931 1.1 jonathan /* loopback, just for safety */
3932 1.1 jonathan if (IN6_IS_ADDR_LOOPBACK(&sin6->sin6_addr))
3933 1.1 jonathan return 1;
3934 1.1 jonathan
3935 1.1 jonathan return 0;
3936 1.1 jonathan }
3937 1.1 jonathan #endif /*INET6*/
3938 1.1 jonathan
3939 1.1 jonathan /*
3940 1.1 jonathan * compare two secasindex structure.
3941 1.1 jonathan * flag can specify to compare 2 saidxes.
3942 1.1 jonathan * compare two secasindex structure without both mode and reqid.
3943 1.1 jonathan * don't compare port.
3944 1.22 perry * IN:
3945 1.1 jonathan * saidx0: source, it can be in SAD.
3946 1.1 jonathan * saidx1: object.
3947 1.22 perry * OUT:
3948 1.1 jonathan * 1 : equal
3949 1.1 jonathan * 0 : not equal
3950 1.1 jonathan */
3951 1.1 jonathan static int
3952 1.1 jonathan key_cmpsaidx(
3953 1.1 jonathan const struct secasindex *saidx0,
3954 1.1 jonathan const struct secasindex *saidx1,
3955 1.1 jonathan int flag)
3956 1.1 jonathan {
3957 1.1 jonathan /* sanity */
3958 1.1 jonathan if (saidx0 == NULL && saidx1 == NULL)
3959 1.1 jonathan return 1;
3960 1.1 jonathan
3961 1.1 jonathan if (saidx0 == NULL || saidx1 == NULL)
3962 1.1 jonathan return 0;
3963 1.1 jonathan
3964 1.1 jonathan if (saidx0->proto != saidx1->proto)
3965 1.1 jonathan return 0;
3966 1.1 jonathan
3967 1.1 jonathan if (flag == CMP_EXACTLY) {
3968 1.1 jonathan if (saidx0->mode != saidx1->mode)
3969 1.1 jonathan return 0;
3970 1.1 jonathan if (saidx0->reqid != saidx1->reqid)
3971 1.1 jonathan return 0;
3972 1.1 jonathan if (bcmp(&saidx0->src, &saidx1->src, saidx0->src.sa.sa_len) != 0 ||
3973 1.1 jonathan bcmp(&saidx0->dst, &saidx1->dst, saidx0->dst.sa.sa_len) != 0)
3974 1.1 jonathan return 0;
3975 1.1 jonathan } else {
3976 1.1 jonathan
3977 1.1 jonathan /* CMP_MODE_REQID, CMP_REQID, CMP_HEAD */
3978 1.1 jonathan if (flag == CMP_MODE_REQID
3979 1.1 jonathan ||flag == CMP_REQID) {
3980 1.1 jonathan /*
3981 1.1 jonathan * If reqid of SPD is non-zero, unique SA is required.
3982 1.1 jonathan * The result must be of same reqid in this case.
3983 1.1 jonathan */
3984 1.1 jonathan if (saidx1->reqid != 0 && saidx0->reqid != saidx1->reqid)
3985 1.1 jonathan return 0;
3986 1.1 jonathan }
3987 1.1 jonathan
3988 1.1 jonathan if (flag == CMP_MODE_REQID) {
3989 1.1 jonathan if (saidx0->mode != IPSEC_MODE_ANY
3990 1.1 jonathan && saidx0->mode != saidx1->mode)
3991 1.1 jonathan return 0;
3992 1.1 jonathan }
3993 1.1 jonathan
3994 1.1 jonathan if (key_sockaddrcmp(&saidx0->src.sa, &saidx1->src.sa, 0) != 0) {
3995 1.1 jonathan return 0;
3996 1.1 jonathan }
3997 1.1 jonathan if (key_sockaddrcmp(&saidx0->dst.sa, &saidx1->dst.sa, 0) != 0) {
3998 1.1 jonathan return 0;
3999 1.1 jonathan }
4000 1.1 jonathan }
4001 1.1 jonathan
4002 1.1 jonathan return 1;
4003 1.1 jonathan }
4004 1.1 jonathan
4005 1.1 jonathan /*
4006 1.1 jonathan * compare two secindex structure exactly.
4007 1.1 jonathan * IN:
4008 1.1 jonathan * spidx0: source, it is often in SPD.
4009 1.1 jonathan * spidx1: object, it is often from PFKEY message.
4010 1.1 jonathan * OUT:
4011 1.1 jonathan * 1 : equal
4012 1.1 jonathan * 0 : not equal
4013 1.1 jonathan */
4014 1.9 thorpej int
4015 1.1 jonathan key_cmpspidx_exactly(
4016 1.1 jonathan struct secpolicyindex *spidx0,
4017 1.1 jonathan struct secpolicyindex *spidx1)
4018 1.1 jonathan {
4019 1.1 jonathan /* sanity */
4020 1.1 jonathan if (spidx0 == NULL && spidx1 == NULL)
4021 1.1 jonathan return 1;
4022 1.1 jonathan
4023 1.1 jonathan if (spidx0 == NULL || spidx1 == NULL)
4024 1.1 jonathan return 0;
4025 1.1 jonathan
4026 1.1 jonathan if (spidx0->prefs != spidx1->prefs
4027 1.1 jonathan || spidx0->prefd != spidx1->prefd
4028 1.1 jonathan || spidx0->ul_proto != spidx1->ul_proto)
4029 1.1 jonathan return 0;
4030 1.1 jonathan
4031 1.1 jonathan return key_sockaddrcmp(&spidx0->src.sa, &spidx1->src.sa, 1) == 0 &&
4032 1.1 jonathan key_sockaddrcmp(&spidx0->dst.sa, &spidx1->dst.sa, 1) == 0;
4033 1.1 jonathan }
4034 1.1 jonathan
4035 1.1 jonathan /*
4036 1.1 jonathan * compare two secindex structure with mask.
4037 1.1 jonathan * IN:
4038 1.1 jonathan * spidx0: source, it is often in SPD.
4039 1.1 jonathan * spidx1: object, it is often from IP header.
4040 1.1 jonathan * OUT:
4041 1.1 jonathan * 1 : equal
4042 1.1 jonathan * 0 : not equal
4043 1.1 jonathan */
4044 1.9 thorpej int
4045 1.1 jonathan key_cmpspidx_withmask(
4046 1.1 jonathan struct secpolicyindex *spidx0,
4047 1.1 jonathan struct secpolicyindex *spidx1)
4048 1.1 jonathan {
4049 1.1 jonathan /* sanity */
4050 1.1 jonathan if (spidx0 == NULL && spidx1 == NULL)
4051 1.1 jonathan return 1;
4052 1.1 jonathan
4053 1.1 jonathan if (spidx0 == NULL || spidx1 == NULL)
4054 1.1 jonathan return 0;
4055 1.1 jonathan
4056 1.1 jonathan if (spidx0->src.sa.sa_family != spidx1->src.sa.sa_family ||
4057 1.1 jonathan spidx0->dst.sa.sa_family != spidx1->dst.sa.sa_family ||
4058 1.1 jonathan spidx0->src.sa.sa_len != spidx1->src.sa.sa_len ||
4059 1.1 jonathan spidx0->dst.sa.sa_len != spidx1->dst.sa.sa_len)
4060 1.1 jonathan return 0;
4061 1.1 jonathan
4062 1.1 jonathan /* if spidx.ul_proto == IPSEC_ULPROTO_ANY, ignore. */
4063 1.1 jonathan if (spidx0->ul_proto != (u_int16_t)IPSEC_ULPROTO_ANY
4064 1.1 jonathan && spidx0->ul_proto != spidx1->ul_proto)
4065 1.1 jonathan return 0;
4066 1.1 jonathan
4067 1.1 jonathan switch (spidx0->src.sa.sa_family) {
4068 1.1 jonathan case AF_INET:
4069 1.1 jonathan if (spidx0->src.sin.sin_port != IPSEC_PORT_ANY
4070 1.1 jonathan && spidx0->src.sin.sin_port != spidx1->src.sin.sin_port)
4071 1.1 jonathan return 0;
4072 1.1 jonathan if (!key_bbcmp(&spidx0->src.sin.sin_addr,
4073 1.1 jonathan &spidx1->src.sin.sin_addr, spidx0->prefs))
4074 1.1 jonathan return 0;
4075 1.1 jonathan break;
4076 1.1 jonathan case AF_INET6:
4077 1.1 jonathan if (spidx0->src.sin6.sin6_port != IPSEC_PORT_ANY
4078 1.1 jonathan && spidx0->src.sin6.sin6_port != spidx1->src.sin6.sin6_port)
4079 1.1 jonathan return 0;
4080 1.1 jonathan /*
4081 1.1 jonathan * scope_id check. if sin6_scope_id is 0, we regard it
4082 1.22 perry * as a wildcard scope, which matches any scope zone ID.
4083 1.1 jonathan */
4084 1.1 jonathan if (spidx0->src.sin6.sin6_scope_id &&
4085 1.1 jonathan spidx1->src.sin6.sin6_scope_id &&
4086 1.1 jonathan spidx0->src.sin6.sin6_scope_id != spidx1->src.sin6.sin6_scope_id)
4087 1.1 jonathan return 0;
4088 1.1 jonathan if (!key_bbcmp(&spidx0->src.sin6.sin6_addr,
4089 1.1 jonathan &spidx1->src.sin6.sin6_addr, spidx0->prefs))
4090 1.1 jonathan return 0;
4091 1.1 jonathan break;
4092 1.1 jonathan default:
4093 1.1 jonathan /* XXX */
4094 1.1 jonathan if (bcmp(&spidx0->src, &spidx1->src, spidx0->src.sa.sa_len) != 0)
4095 1.1 jonathan return 0;
4096 1.1 jonathan break;
4097 1.1 jonathan }
4098 1.1 jonathan
4099 1.1 jonathan switch (spidx0->dst.sa.sa_family) {
4100 1.1 jonathan case AF_INET:
4101 1.1 jonathan if (spidx0->dst.sin.sin_port != IPSEC_PORT_ANY
4102 1.1 jonathan && spidx0->dst.sin.sin_port != spidx1->dst.sin.sin_port)
4103 1.1 jonathan return 0;
4104 1.1 jonathan if (!key_bbcmp(&spidx0->dst.sin.sin_addr,
4105 1.1 jonathan &spidx1->dst.sin.sin_addr, spidx0->prefd))
4106 1.1 jonathan return 0;
4107 1.1 jonathan break;
4108 1.1 jonathan case AF_INET6:
4109 1.1 jonathan if (spidx0->dst.sin6.sin6_port != IPSEC_PORT_ANY
4110 1.1 jonathan && spidx0->dst.sin6.sin6_port != spidx1->dst.sin6.sin6_port)
4111 1.1 jonathan return 0;
4112 1.1 jonathan /*
4113 1.1 jonathan * scope_id check. if sin6_scope_id is 0, we regard it
4114 1.22 perry * as a wildcard scope, which matches any scope zone ID.
4115 1.1 jonathan */
4116 1.1 jonathan if (spidx0->src.sin6.sin6_scope_id &&
4117 1.1 jonathan spidx1->src.sin6.sin6_scope_id &&
4118 1.1 jonathan spidx0->dst.sin6.sin6_scope_id != spidx1->dst.sin6.sin6_scope_id)
4119 1.1 jonathan return 0;
4120 1.1 jonathan if (!key_bbcmp(&spidx0->dst.sin6.sin6_addr,
4121 1.1 jonathan &spidx1->dst.sin6.sin6_addr, spidx0->prefd))
4122 1.1 jonathan return 0;
4123 1.1 jonathan break;
4124 1.1 jonathan default:
4125 1.1 jonathan /* XXX */
4126 1.1 jonathan if (bcmp(&spidx0->dst, &spidx1->dst, spidx0->dst.sa.sa_len) != 0)
4127 1.1 jonathan return 0;
4128 1.1 jonathan break;
4129 1.1 jonathan }
4130 1.1 jonathan
4131 1.1 jonathan /* XXX Do we check other field ? e.g. flowinfo */
4132 1.1 jonathan
4133 1.1 jonathan return 1;
4134 1.1 jonathan }
4135 1.1 jonathan
4136 1.1 jonathan /* returns 0 on match */
4137 1.1 jonathan static int
4138 1.1 jonathan key_sockaddrcmp(
4139 1.1 jonathan const struct sockaddr *sa1,
4140 1.1 jonathan const struct sockaddr *sa2,
4141 1.1 jonathan int port)
4142 1.1 jonathan {
4143 1.1 jonathan #ifdef satosin
4144 1.1 jonathan #undef satosin
4145 1.1 jonathan #endif
4146 1.1 jonathan #define satosin(s) ((const struct sockaddr_in *)s)
4147 1.1 jonathan #ifdef satosin6
4148 1.1 jonathan #undef satosin6
4149 1.1 jonathan #endif
4150 1.1 jonathan #define satosin6(s) ((const struct sockaddr_in6 *)s)
4151 1.1 jonathan if (sa1->sa_family != sa2->sa_family || sa1->sa_len != sa2->sa_len)
4152 1.1 jonathan return 1;
4153 1.1 jonathan
4154 1.1 jonathan switch (sa1->sa_family) {
4155 1.1 jonathan case AF_INET:
4156 1.1 jonathan if (sa1->sa_len != sizeof(struct sockaddr_in))
4157 1.1 jonathan return 1;
4158 1.1 jonathan if (satosin(sa1)->sin_addr.s_addr !=
4159 1.1 jonathan satosin(sa2)->sin_addr.s_addr) {
4160 1.1 jonathan return 1;
4161 1.1 jonathan }
4162 1.1 jonathan if (port && satosin(sa1)->sin_port != satosin(sa2)->sin_port)
4163 1.1 jonathan return 1;
4164 1.1 jonathan break;
4165 1.1 jonathan case AF_INET6:
4166 1.1 jonathan if (sa1->sa_len != sizeof(struct sockaddr_in6))
4167 1.1 jonathan return 1; /*EINVAL*/
4168 1.1 jonathan if (satosin6(sa1)->sin6_scope_id !=
4169 1.1 jonathan satosin6(sa2)->sin6_scope_id) {
4170 1.1 jonathan return 1;
4171 1.1 jonathan }
4172 1.1 jonathan if (!IN6_ARE_ADDR_EQUAL(&satosin6(sa1)->sin6_addr,
4173 1.1 jonathan &satosin6(sa2)->sin6_addr)) {
4174 1.1 jonathan return 1;
4175 1.1 jonathan }
4176 1.1 jonathan if (port &&
4177 1.1 jonathan satosin6(sa1)->sin6_port != satosin6(sa2)->sin6_port) {
4178 1.1 jonathan return 1;
4179 1.1 jonathan }
4180 1.1 jonathan default:
4181 1.1 jonathan if (bcmp(sa1, sa2, sa1->sa_len) != 0)
4182 1.1 jonathan return 1;
4183 1.1 jonathan break;
4184 1.1 jonathan }
4185 1.1 jonathan
4186 1.1 jonathan return 0;
4187 1.1 jonathan #undef satosin
4188 1.1 jonathan #undef satosin6
4189 1.1 jonathan }
4190 1.1 jonathan
4191 1.1 jonathan /*
4192 1.1 jonathan * compare two buffers with mask.
4193 1.1 jonathan * IN:
4194 1.1 jonathan * addr1: source
4195 1.1 jonathan * addr2: object
4196 1.1 jonathan * bits: Number of bits to compare
4197 1.1 jonathan * OUT:
4198 1.1 jonathan * 1 : equal
4199 1.1 jonathan * 0 : not equal
4200 1.1 jonathan */
4201 1.1 jonathan static int
4202 1.1 jonathan key_bbcmp(const void *a1, const void *a2, u_int bits)
4203 1.1 jonathan {
4204 1.1 jonathan const unsigned char *p1 = a1;
4205 1.1 jonathan const unsigned char *p2 = a2;
4206 1.1 jonathan
4207 1.1 jonathan /* XXX: This could be considerably faster if we compare a word
4208 1.1 jonathan * at a time, but it is complicated on LSB Endian machines */
4209 1.1 jonathan
4210 1.1 jonathan /* Handle null pointers */
4211 1.1 jonathan if (p1 == NULL || p2 == NULL)
4212 1.1 jonathan return (p1 == p2);
4213 1.1 jonathan
4214 1.1 jonathan while (bits >= 8) {
4215 1.1 jonathan if (*p1++ != *p2++)
4216 1.1 jonathan return 0;
4217 1.1 jonathan bits -= 8;
4218 1.1 jonathan }
4219 1.1 jonathan
4220 1.1 jonathan if (bits > 0) {
4221 1.1 jonathan u_int8_t mask = ~((1<<(8-bits))-1);
4222 1.1 jonathan if ((*p1 & mask) != (*p2 & mask))
4223 1.1 jonathan return 0;
4224 1.1 jonathan }
4225 1.1 jonathan return 1; /* Match! */
4226 1.1 jonathan }
4227 1.1 jonathan
4228 1.1 jonathan /*
4229 1.1 jonathan * time handler.
4230 1.1 jonathan * scanning SPD and SAD to check status for each entries,
4231 1.1 jonathan * and do to remove or to expire.
4232 1.1 jonathan * XXX: year 2038 problem may remain.
4233 1.1 jonathan */
4234 1.1 jonathan void
4235 1.30 christos key_timehandler(void* arg)
4236 1.1 jonathan {
4237 1.1 jonathan u_int dir;
4238 1.1 jonathan int s;
4239 1.1 jonathan time_t now = time_second;
4240 1.1 jonathan
4241 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
4242 1.1 jonathan
4243 1.1 jonathan /* SPD */
4244 1.1 jonathan {
4245 1.1 jonathan struct secpolicy *sp, *nextsp;
4246 1.1 jonathan
4247 1.1 jonathan for (dir = 0; dir < IPSEC_DIR_MAX; dir++) {
4248 1.1 jonathan for (sp = LIST_FIRST(&sptree[dir]);
4249 1.1 jonathan sp != NULL;
4250 1.1 jonathan sp = nextsp) {
4251 1.1 jonathan
4252 1.1 jonathan nextsp = LIST_NEXT(sp, chain);
4253 1.1 jonathan
4254 1.1 jonathan if (sp->state == IPSEC_SPSTATE_DEAD) {
4255 1.18 jonathan key_sp_unlink(sp); /*XXX*/
4256 1.18 jonathan
4257 1.18 jonathan /* 'sp' dead; continue transfers to
4258 1.18 jonathan * 'sp = nextsp'
4259 1.18 jonathan */
4260 1.1 jonathan continue;
4261 1.1 jonathan }
4262 1.1 jonathan
4263 1.1 jonathan if (sp->lifetime == 0 && sp->validtime == 0)
4264 1.1 jonathan continue;
4265 1.1 jonathan
4266 1.1 jonathan /* the deletion will occur next time */
4267 1.1 jonathan if ((sp->lifetime && now - sp->created > sp->lifetime)
4268 1.1 jonathan || (sp->validtime && now - sp->lastused > sp->validtime)) {
4269 1.18 jonathan key_sp_dead(sp);
4270 1.1 jonathan key_spdexpire(sp);
4271 1.1 jonathan continue;
4272 1.1 jonathan }
4273 1.1 jonathan }
4274 1.1 jonathan }
4275 1.1 jonathan }
4276 1.1 jonathan
4277 1.1 jonathan /* SAD */
4278 1.1 jonathan {
4279 1.1 jonathan struct secashead *sah, *nextsah;
4280 1.1 jonathan struct secasvar *sav, *nextsav;
4281 1.1 jonathan
4282 1.1 jonathan for (sah = LIST_FIRST(&sahtree);
4283 1.1 jonathan sah != NULL;
4284 1.1 jonathan sah = nextsah) {
4285 1.1 jonathan
4286 1.1 jonathan nextsah = LIST_NEXT(sah, chain);
4287 1.1 jonathan
4288 1.1 jonathan /* if sah has been dead, then delete it and process next sah. */
4289 1.1 jonathan if (sah->state == SADB_SASTATE_DEAD) {
4290 1.1 jonathan key_delsah(sah);
4291 1.1 jonathan continue;
4292 1.1 jonathan }
4293 1.1 jonathan
4294 1.1 jonathan /* if LARVAL entry doesn't become MATURE, delete it. */
4295 1.1 jonathan for (sav = LIST_FIRST(&sah->savtree[SADB_SASTATE_LARVAL]);
4296 1.1 jonathan sav != NULL;
4297 1.1 jonathan sav = nextsav) {
4298 1.1 jonathan
4299 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
4300 1.1 jonathan
4301 1.1 jonathan if (now - sav->created > key_larval_lifetime) {
4302 1.1 jonathan KEY_FREESAV(&sav);
4303 1.1 jonathan }
4304 1.1 jonathan }
4305 1.1 jonathan
4306 1.1 jonathan /*
4307 1.1 jonathan * check MATURE entry to start to send expire message
4308 1.1 jonathan * whether or not.
4309 1.1 jonathan */
4310 1.1 jonathan for (sav = LIST_FIRST(&sah->savtree[SADB_SASTATE_MATURE]);
4311 1.1 jonathan sav != NULL;
4312 1.1 jonathan sav = nextsav) {
4313 1.1 jonathan
4314 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
4315 1.1 jonathan
4316 1.1 jonathan /* we don't need to check. */
4317 1.1 jonathan if (sav->lft_s == NULL)
4318 1.1 jonathan continue;
4319 1.1 jonathan
4320 1.1 jonathan /* sanity check */
4321 1.1 jonathan if (sav->lft_c == NULL) {
4322 1.1 jonathan ipseclog((LOG_DEBUG,"key_timehandler: "
4323 1.1 jonathan "There is no CURRENT time, why?\n"));
4324 1.1 jonathan continue;
4325 1.1 jonathan }
4326 1.1 jonathan
4327 1.1 jonathan /* check SOFT lifetime */
4328 1.1 jonathan if (sav->lft_s->sadb_lifetime_addtime != 0
4329 1.1 jonathan && now - sav->created > sav->lft_s->sadb_lifetime_addtime) {
4330 1.1 jonathan /*
4331 1.1 jonathan * check SA to be used whether or not.
4332 1.1 jonathan * when SA hasn't been used, delete it.
4333 1.1 jonathan */
4334 1.1 jonathan if (sav->lft_c->sadb_lifetime_usetime == 0) {
4335 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DEAD);
4336 1.1 jonathan KEY_FREESAV(&sav);
4337 1.1 jonathan } else {
4338 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DYING);
4339 1.1 jonathan /*
4340 1.1 jonathan * XXX If we keep to send expire
4341 1.1 jonathan * message in the status of
4342 1.1 jonathan * DYING. Do remove below code.
4343 1.1 jonathan */
4344 1.1 jonathan key_expire(sav);
4345 1.1 jonathan }
4346 1.1 jonathan }
4347 1.1 jonathan /* check SOFT lifetime by bytes */
4348 1.1 jonathan /*
4349 1.1 jonathan * XXX I don't know the way to delete this SA
4350 1.1 jonathan * when new SA is installed. Caution when it's
4351 1.1 jonathan * installed too big lifetime by time.
4352 1.1 jonathan */
4353 1.1 jonathan else if (sav->lft_s->sadb_lifetime_bytes != 0
4354 1.1 jonathan && sav->lft_s->sadb_lifetime_bytes < sav->lft_c->sadb_lifetime_bytes) {
4355 1.1 jonathan
4356 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DYING);
4357 1.1 jonathan /*
4358 1.1 jonathan * XXX If we keep to send expire
4359 1.1 jonathan * message in the status of
4360 1.1 jonathan * DYING. Do remove below code.
4361 1.1 jonathan */
4362 1.1 jonathan key_expire(sav);
4363 1.1 jonathan }
4364 1.1 jonathan }
4365 1.1 jonathan
4366 1.1 jonathan /* check DYING entry to change status to DEAD. */
4367 1.1 jonathan for (sav = LIST_FIRST(&sah->savtree[SADB_SASTATE_DYING]);
4368 1.1 jonathan sav != NULL;
4369 1.1 jonathan sav = nextsav) {
4370 1.1 jonathan
4371 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
4372 1.1 jonathan
4373 1.1 jonathan /* we don't need to check. */
4374 1.1 jonathan if (sav->lft_h == NULL)
4375 1.1 jonathan continue;
4376 1.1 jonathan
4377 1.1 jonathan /* sanity check */
4378 1.1 jonathan if (sav->lft_c == NULL) {
4379 1.1 jonathan ipseclog((LOG_DEBUG, "key_timehandler: "
4380 1.1 jonathan "There is no CURRENT time, why?\n"));
4381 1.1 jonathan continue;
4382 1.1 jonathan }
4383 1.1 jonathan
4384 1.1 jonathan if (sav->lft_h->sadb_lifetime_addtime != 0
4385 1.1 jonathan && now - sav->created > sav->lft_h->sadb_lifetime_addtime) {
4386 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DEAD);
4387 1.1 jonathan KEY_FREESAV(&sav);
4388 1.1 jonathan }
4389 1.1 jonathan #if 0 /* XXX Should we keep to send expire message until HARD lifetime ? */
4390 1.1 jonathan else if (sav->lft_s != NULL
4391 1.1 jonathan && sav->lft_s->sadb_lifetime_addtime != 0
4392 1.1 jonathan && now - sav->created > sav->lft_s->sadb_lifetime_addtime) {
4393 1.1 jonathan /*
4394 1.1 jonathan * XXX: should be checked to be
4395 1.1 jonathan * installed the valid SA.
4396 1.1 jonathan */
4397 1.1 jonathan
4398 1.1 jonathan /*
4399 1.1 jonathan * If there is no SA then sending
4400 1.1 jonathan * expire message.
4401 1.1 jonathan */
4402 1.1 jonathan key_expire(sav);
4403 1.1 jonathan }
4404 1.1 jonathan #endif
4405 1.1 jonathan /* check HARD lifetime by bytes */
4406 1.1 jonathan else if (sav->lft_h->sadb_lifetime_bytes != 0
4407 1.1 jonathan && sav->lft_h->sadb_lifetime_bytes < sav->lft_c->sadb_lifetime_bytes) {
4408 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DEAD);
4409 1.1 jonathan KEY_FREESAV(&sav);
4410 1.1 jonathan }
4411 1.1 jonathan }
4412 1.1 jonathan
4413 1.1 jonathan /* delete entry in DEAD */
4414 1.1 jonathan for (sav = LIST_FIRST(&sah->savtree[SADB_SASTATE_DEAD]);
4415 1.1 jonathan sav != NULL;
4416 1.1 jonathan sav = nextsav) {
4417 1.1 jonathan
4418 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
4419 1.1 jonathan
4420 1.1 jonathan /* sanity check */
4421 1.1 jonathan if (sav->state != SADB_SASTATE_DEAD) {
4422 1.1 jonathan ipseclog((LOG_DEBUG, "key_timehandler: "
4423 1.1 jonathan "invalid sav->state "
4424 1.1 jonathan "(queue: %d SA: %d): "
4425 1.1 jonathan "kill it anyway\n",
4426 1.1 jonathan SADB_SASTATE_DEAD, sav->state));
4427 1.1 jonathan }
4428 1.1 jonathan
4429 1.1 jonathan /*
4430 1.1 jonathan * do not call key_freesav() here.
4431 1.1 jonathan * sav should already be freed, and sav->refcnt
4432 1.1 jonathan * shows other references to sav
4433 1.1 jonathan * (such as from SPD).
4434 1.1 jonathan */
4435 1.1 jonathan }
4436 1.1 jonathan }
4437 1.1 jonathan }
4438 1.1 jonathan
4439 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
4440 1.1 jonathan /* ACQ tree */
4441 1.1 jonathan {
4442 1.1 jonathan struct secacq *acq, *nextacq;
4443 1.1 jonathan
4444 1.1 jonathan for (acq = LIST_FIRST(&acqtree);
4445 1.1 jonathan acq != NULL;
4446 1.1 jonathan acq = nextacq) {
4447 1.1 jonathan
4448 1.1 jonathan nextacq = LIST_NEXT(acq, chain);
4449 1.1 jonathan
4450 1.1 jonathan if (now - acq->created > key_blockacq_lifetime
4451 1.1 jonathan && __LIST_CHAINED(acq)) {
4452 1.1 jonathan LIST_REMOVE(acq, chain);
4453 1.1 jonathan KFREE(acq);
4454 1.1 jonathan }
4455 1.1 jonathan }
4456 1.1 jonathan }
4457 1.1 jonathan #endif
4458 1.1 jonathan
4459 1.1 jonathan /* SP ACQ tree */
4460 1.1 jonathan {
4461 1.1 jonathan struct secspacq *acq, *nextacq;
4462 1.1 jonathan
4463 1.1 jonathan for (acq = LIST_FIRST(&spacqtree);
4464 1.1 jonathan acq != NULL;
4465 1.1 jonathan acq = nextacq) {
4466 1.1 jonathan
4467 1.1 jonathan nextacq = LIST_NEXT(acq, chain);
4468 1.1 jonathan
4469 1.1 jonathan if (now - acq->created > key_blockacq_lifetime
4470 1.1 jonathan && __LIST_CHAINED(acq)) {
4471 1.1 jonathan LIST_REMOVE(acq, chain);
4472 1.1 jonathan KFREE(acq);
4473 1.1 jonathan }
4474 1.1 jonathan }
4475 1.1 jonathan }
4476 1.1 jonathan
4477 1.1 jonathan /* initialize random seed */
4478 1.1 jonathan if (key_tick_init_random++ > key_int_random) {
4479 1.1 jonathan key_tick_init_random = 0;
4480 1.1 jonathan key_srandom();
4481 1.1 jonathan }
4482 1.1 jonathan
4483 1.1 jonathan #ifndef IPSEC_DEBUG2
4484 1.1 jonathan /* do exchange to tick time !! */
4485 1.1 jonathan callout_reset(&key_timehandler_ch, hz, key_timehandler, (void *)0);
4486 1.1 jonathan #endif /* IPSEC_DEBUG2 */
4487 1.1 jonathan
4488 1.1 jonathan splx(s);
4489 1.1 jonathan return;
4490 1.1 jonathan }
4491 1.1 jonathan
4492 1.1 jonathan #ifdef __NetBSD__
4493 1.29 christos void srandom(int);
4494 1.30 christos void srandom(int arg) {return;}
4495 1.1 jonathan #endif
4496 1.1 jonathan
4497 1.1 jonathan /*
4498 1.1 jonathan * to initialize a seed for random()
4499 1.1 jonathan */
4500 1.1 jonathan static void
4501 1.1 jonathan key_srandom()
4502 1.1 jonathan {
4503 1.1 jonathan srandom(time_second);
4504 1.1 jonathan }
4505 1.1 jonathan
4506 1.1 jonathan u_long
4507 1.1 jonathan key_random()
4508 1.1 jonathan {
4509 1.1 jonathan u_long value;
4510 1.1 jonathan
4511 1.1 jonathan key_randomfill(&value, sizeof(value));
4512 1.1 jonathan return value;
4513 1.1 jonathan }
4514 1.1 jonathan
4515 1.1 jonathan void
4516 1.1 jonathan key_randomfill(p, l)
4517 1.1 jonathan void *p;
4518 1.1 jonathan size_t l;
4519 1.1 jonathan {
4520 1.1 jonathan size_t n;
4521 1.1 jonathan u_long v;
4522 1.1 jonathan static int warn = 1;
4523 1.1 jonathan
4524 1.1 jonathan n = 0;
4525 1.1 jonathan n = (size_t)read_random(p, (u_int)l);
4526 1.1 jonathan /* last resort */
4527 1.1 jonathan while (n < l) {
4528 1.1 jonathan v = random();
4529 1.1 jonathan bcopy(&v, (u_int8_t *)p + n,
4530 1.1 jonathan l - n < sizeof(v) ? l - n : sizeof(v));
4531 1.1 jonathan n += sizeof(v);
4532 1.1 jonathan
4533 1.1 jonathan if (warn) {
4534 1.1 jonathan printf("WARNING: pseudo-random number generator "
4535 1.1 jonathan "used for IPsec processing\n");
4536 1.1 jonathan warn = 0;
4537 1.1 jonathan }
4538 1.1 jonathan }
4539 1.1 jonathan }
4540 1.1 jonathan
4541 1.1 jonathan /*
4542 1.1 jonathan * map SADB_SATYPE_* to IPPROTO_*.
4543 1.1 jonathan * if satype == SADB_SATYPE then satype is mapped to ~0.
4544 1.1 jonathan * OUT:
4545 1.1 jonathan * 0: invalid satype.
4546 1.1 jonathan */
4547 1.1 jonathan static u_int16_t
4548 1.1 jonathan key_satype2proto(satype)
4549 1.1 jonathan u_int8_t satype;
4550 1.1 jonathan {
4551 1.1 jonathan switch (satype) {
4552 1.1 jonathan case SADB_SATYPE_UNSPEC:
4553 1.1 jonathan return IPSEC_PROTO_ANY;
4554 1.1 jonathan case SADB_SATYPE_AH:
4555 1.1 jonathan return IPPROTO_AH;
4556 1.1 jonathan case SADB_SATYPE_ESP:
4557 1.1 jonathan return IPPROTO_ESP;
4558 1.1 jonathan case SADB_X_SATYPE_IPCOMP:
4559 1.1 jonathan return IPPROTO_IPCOMP;
4560 1.12 jonathan case SADB_X_SATYPE_TCPSIGNATURE:
4561 1.12 jonathan return IPPROTO_TCP;
4562 1.1 jonathan default:
4563 1.1 jonathan return 0;
4564 1.1 jonathan }
4565 1.1 jonathan /* NOTREACHED */
4566 1.1 jonathan }
4567 1.1 jonathan
4568 1.1 jonathan /*
4569 1.1 jonathan * map IPPROTO_* to SADB_SATYPE_*
4570 1.1 jonathan * OUT:
4571 1.1 jonathan * 0: invalid protocol type.
4572 1.1 jonathan */
4573 1.1 jonathan static u_int8_t
4574 1.1 jonathan key_proto2satype(proto)
4575 1.1 jonathan u_int16_t proto;
4576 1.1 jonathan {
4577 1.1 jonathan switch (proto) {
4578 1.1 jonathan case IPPROTO_AH:
4579 1.1 jonathan return SADB_SATYPE_AH;
4580 1.1 jonathan case IPPROTO_ESP:
4581 1.1 jonathan return SADB_SATYPE_ESP;
4582 1.1 jonathan case IPPROTO_IPCOMP:
4583 1.1 jonathan return SADB_X_SATYPE_IPCOMP;
4584 1.12 jonathan case IPPROTO_TCP:
4585 1.12 jonathan return SADB_X_SATYPE_TCPSIGNATURE;
4586 1.1 jonathan default:
4587 1.1 jonathan return 0;
4588 1.1 jonathan }
4589 1.1 jonathan /* NOTREACHED */
4590 1.1 jonathan }
4591 1.1 jonathan
4592 1.1 jonathan /* %%% PF_KEY */
4593 1.1 jonathan /*
4594 1.1 jonathan * SADB_GETSPI processing is to receive
4595 1.1 jonathan * <base, (SA2), src address, dst address, (SPI range)>
4596 1.1 jonathan * from the IKMPd, to assign a unique spi value, to hang on the INBOUND
4597 1.1 jonathan * tree with the status of LARVAL, and send
4598 1.1 jonathan * <base, SA(*), address(SD)>
4599 1.1 jonathan * to the IKMPd.
4600 1.1 jonathan *
4601 1.1 jonathan * IN: mhp: pointer to the pointer to each header.
4602 1.1 jonathan * OUT: NULL if fail.
4603 1.1 jonathan * other if success, return pointer to the message to send.
4604 1.1 jonathan */
4605 1.1 jonathan static int
4606 1.1 jonathan key_getspi(so, m, mhp)
4607 1.1 jonathan struct socket *so;
4608 1.1 jonathan struct mbuf *m;
4609 1.1 jonathan const struct sadb_msghdr *mhp;
4610 1.1 jonathan {
4611 1.1 jonathan struct sadb_address *src0, *dst0;
4612 1.1 jonathan struct secasindex saidx;
4613 1.1 jonathan struct secashead *newsah;
4614 1.1 jonathan struct secasvar *newsav;
4615 1.1 jonathan u_int8_t proto;
4616 1.1 jonathan u_int32_t spi;
4617 1.1 jonathan u_int8_t mode;
4618 1.1 jonathan u_int32_t reqid;
4619 1.1 jonathan int error;
4620 1.1 jonathan
4621 1.1 jonathan /* sanity check */
4622 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
4623 1.24 christos panic("key_getspi: NULL pointer is passed");
4624 1.1 jonathan
4625 1.1 jonathan if (mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
4626 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL) {
4627 1.1 jonathan ipseclog((LOG_DEBUG, "key_getspi: invalid message is passed.\n"));
4628 1.1 jonathan return key_senderror(so, m, EINVAL);
4629 1.1 jonathan }
4630 1.1 jonathan if (mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
4631 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address)) {
4632 1.1 jonathan ipseclog((LOG_DEBUG, "key_getspi: invalid message is passed.\n"));
4633 1.1 jonathan return key_senderror(so, m, EINVAL);
4634 1.1 jonathan }
4635 1.1 jonathan if (mhp->ext[SADB_X_EXT_SA2] != NULL) {
4636 1.1 jonathan mode = ((struct sadb_x_sa2 *)mhp->ext[SADB_X_EXT_SA2])->sadb_x_sa2_mode;
4637 1.1 jonathan reqid = ((struct sadb_x_sa2 *)mhp->ext[SADB_X_EXT_SA2])->sadb_x_sa2_reqid;
4638 1.1 jonathan } else {
4639 1.1 jonathan mode = IPSEC_MODE_ANY;
4640 1.1 jonathan reqid = 0;
4641 1.1 jonathan }
4642 1.1 jonathan
4643 1.1 jonathan src0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_SRC]);
4644 1.1 jonathan dst0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_DST]);
4645 1.1 jonathan
4646 1.1 jonathan /* map satype to proto */
4647 1.1 jonathan if ((proto = key_satype2proto(mhp->msg->sadb_msg_satype)) == 0) {
4648 1.1 jonathan ipseclog((LOG_DEBUG, "key_getspi: invalid satype is passed.\n"));
4649 1.1 jonathan return key_senderror(so, m, EINVAL);
4650 1.1 jonathan }
4651 1.1 jonathan
4652 1.1 jonathan /* make sure if port number is zero. */
4653 1.1 jonathan switch (((struct sockaddr *)(src0 + 1))->sa_family) {
4654 1.1 jonathan case AF_INET:
4655 1.1 jonathan if (((struct sockaddr *)(src0 + 1))->sa_len !=
4656 1.1 jonathan sizeof(struct sockaddr_in))
4657 1.1 jonathan return key_senderror(so, m, EINVAL);
4658 1.1 jonathan ((struct sockaddr_in *)(src0 + 1))->sin_port = 0;
4659 1.1 jonathan break;
4660 1.1 jonathan case AF_INET6:
4661 1.1 jonathan if (((struct sockaddr *)(src0 + 1))->sa_len !=
4662 1.1 jonathan sizeof(struct sockaddr_in6))
4663 1.1 jonathan return key_senderror(so, m, EINVAL);
4664 1.1 jonathan ((struct sockaddr_in6 *)(src0 + 1))->sin6_port = 0;
4665 1.1 jonathan break;
4666 1.1 jonathan default:
4667 1.1 jonathan ; /*???*/
4668 1.1 jonathan }
4669 1.1 jonathan switch (((struct sockaddr *)(dst0 + 1))->sa_family) {
4670 1.1 jonathan case AF_INET:
4671 1.1 jonathan if (((struct sockaddr *)(dst0 + 1))->sa_len !=
4672 1.1 jonathan sizeof(struct sockaddr_in))
4673 1.1 jonathan return key_senderror(so, m, EINVAL);
4674 1.1 jonathan ((struct sockaddr_in *)(dst0 + 1))->sin_port = 0;
4675 1.1 jonathan break;
4676 1.1 jonathan case AF_INET6:
4677 1.1 jonathan if (((struct sockaddr *)(dst0 + 1))->sa_len !=
4678 1.1 jonathan sizeof(struct sockaddr_in6))
4679 1.1 jonathan return key_senderror(so, m, EINVAL);
4680 1.1 jonathan ((struct sockaddr_in6 *)(dst0 + 1))->sin6_port = 0;
4681 1.1 jonathan break;
4682 1.1 jonathan default:
4683 1.1 jonathan ; /*???*/
4684 1.1 jonathan }
4685 1.1 jonathan
4686 1.1 jonathan /* XXX boundary check against sa_len */
4687 1.1 jonathan KEY_SETSECASIDX(proto, mode, reqid, src0 + 1, dst0 + 1, &saidx);
4688 1.1 jonathan
4689 1.1 jonathan /* SPI allocation */
4690 1.1 jonathan spi = key_do_getnewspi((struct sadb_spirange *)mhp->ext[SADB_EXT_SPIRANGE],
4691 1.1 jonathan &saidx);
4692 1.1 jonathan if (spi == 0)
4693 1.1 jonathan return key_senderror(so, m, EINVAL);
4694 1.1 jonathan
4695 1.1 jonathan /* get a SA index */
4696 1.1 jonathan if ((newsah = key_getsah(&saidx)) == NULL) {
4697 1.1 jonathan /* create a new SA index */
4698 1.1 jonathan if ((newsah = key_newsah(&saidx)) == NULL) {
4699 1.1 jonathan ipseclog((LOG_DEBUG, "key_getspi: No more memory.\n"));
4700 1.1 jonathan return key_senderror(so, m, ENOBUFS);
4701 1.1 jonathan }
4702 1.1 jonathan }
4703 1.1 jonathan
4704 1.1 jonathan /* get a new SA */
4705 1.1 jonathan /* XXX rewrite */
4706 1.1 jonathan newsav = KEY_NEWSAV(m, mhp, newsah, &error);
4707 1.1 jonathan if (newsav == NULL) {
4708 1.1 jonathan /* XXX don't free new SA index allocated in above. */
4709 1.1 jonathan return key_senderror(so, m, error);
4710 1.1 jonathan }
4711 1.1 jonathan
4712 1.1 jonathan /* set spi */
4713 1.1 jonathan newsav->spi = htonl(spi);
4714 1.1 jonathan
4715 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
4716 1.1 jonathan /* delete the entry in acqtree */
4717 1.1 jonathan if (mhp->msg->sadb_msg_seq != 0) {
4718 1.1 jonathan struct secacq *acq;
4719 1.1 jonathan if ((acq = key_getacqbyseq(mhp->msg->sadb_msg_seq)) != NULL) {
4720 1.1 jonathan /* reset counter in order to deletion by timehandler. */
4721 1.1 jonathan acq->created = time_second;
4722 1.1 jonathan acq->count = 0;
4723 1.1 jonathan }
4724 1.1 jonathan }
4725 1.1 jonathan #endif
4726 1.1 jonathan
4727 1.1 jonathan {
4728 1.1 jonathan struct mbuf *n, *nn;
4729 1.1 jonathan struct sadb_sa *m_sa;
4730 1.1 jonathan struct sadb_msg *newmsg;
4731 1.1 jonathan int off, len;
4732 1.1 jonathan
4733 1.1 jonathan /* create new sadb_msg to reply. */
4734 1.1 jonathan len = PFKEY_ALIGN8(sizeof(struct sadb_msg)) +
4735 1.1 jonathan PFKEY_ALIGN8(sizeof(struct sadb_sa));
4736 1.1 jonathan if (len > MCLBYTES)
4737 1.1 jonathan return key_senderror(so, m, ENOBUFS);
4738 1.1 jonathan
4739 1.1 jonathan MGETHDR(n, M_DONTWAIT, MT_DATA);
4740 1.1 jonathan if (len > MHLEN) {
4741 1.1 jonathan MCLGET(n, M_DONTWAIT);
4742 1.1 jonathan if ((n->m_flags & M_EXT) == 0) {
4743 1.1 jonathan m_freem(n);
4744 1.1 jonathan n = NULL;
4745 1.1 jonathan }
4746 1.1 jonathan }
4747 1.1 jonathan if (!n)
4748 1.1 jonathan return key_senderror(so, m, ENOBUFS);
4749 1.1 jonathan
4750 1.1 jonathan n->m_len = len;
4751 1.1 jonathan n->m_next = NULL;
4752 1.1 jonathan off = 0;
4753 1.1 jonathan
4754 1.1 jonathan m_copydata(m, 0, sizeof(struct sadb_msg), mtod(n, caddr_t) + off);
4755 1.1 jonathan off += PFKEY_ALIGN8(sizeof(struct sadb_msg));
4756 1.1 jonathan
4757 1.1 jonathan m_sa = (struct sadb_sa *)(mtod(n, caddr_t) + off);
4758 1.1 jonathan m_sa->sadb_sa_len = PFKEY_UNIT64(sizeof(struct sadb_sa));
4759 1.1 jonathan m_sa->sadb_sa_exttype = SADB_EXT_SA;
4760 1.1 jonathan m_sa->sadb_sa_spi = htonl(spi);
4761 1.1 jonathan off += PFKEY_ALIGN8(sizeof(struct sadb_sa));
4762 1.1 jonathan
4763 1.1 jonathan #ifdef DIAGNOSTIC
4764 1.1 jonathan if (off != len)
4765 1.1 jonathan panic("length inconsistency in key_getspi");
4766 1.1 jonathan #endif
4767 1.1 jonathan
4768 1.1 jonathan n->m_next = key_gather_mbuf(m, mhp, 0, 2, SADB_EXT_ADDRESS_SRC,
4769 1.1 jonathan SADB_EXT_ADDRESS_DST);
4770 1.1 jonathan if (!n->m_next) {
4771 1.1 jonathan m_freem(n);
4772 1.1 jonathan return key_senderror(so, m, ENOBUFS);
4773 1.1 jonathan }
4774 1.1 jonathan
4775 1.1 jonathan if (n->m_len < sizeof(struct sadb_msg)) {
4776 1.1 jonathan n = m_pullup(n, sizeof(struct sadb_msg));
4777 1.1 jonathan if (n == NULL)
4778 1.1 jonathan return key_sendup_mbuf(so, m, KEY_SENDUP_ONE);
4779 1.1 jonathan }
4780 1.1 jonathan
4781 1.1 jonathan n->m_pkthdr.len = 0;
4782 1.1 jonathan for (nn = n; nn; nn = nn->m_next)
4783 1.1 jonathan n->m_pkthdr.len += nn->m_len;
4784 1.1 jonathan
4785 1.1 jonathan newmsg = mtod(n, struct sadb_msg *);
4786 1.1 jonathan newmsg->sadb_msg_seq = newsav->seq;
4787 1.1 jonathan newmsg->sadb_msg_errno = 0;
4788 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(n->m_pkthdr.len);
4789 1.1 jonathan
4790 1.1 jonathan m_freem(m);
4791 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ONE);
4792 1.1 jonathan }
4793 1.1 jonathan }
4794 1.1 jonathan
4795 1.1 jonathan /*
4796 1.1 jonathan * allocating new SPI
4797 1.1 jonathan * called by key_getspi().
4798 1.1 jonathan * OUT:
4799 1.1 jonathan * 0: failure.
4800 1.1 jonathan * others: success.
4801 1.1 jonathan */
4802 1.1 jonathan static u_int32_t
4803 1.1 jonathan key_do_getnewspi(spirange, saidx)
4804 1.1 jonathan struct sadb_spirange *spirange;
4805 1.1 jonathan struct secasindex *saidx;
4806 1.1 jonathan {
4807 1.1 jonathan u_int32_t newspi;
4808 1.25 christos u_int32_t spmin, spmax;
4809 1.1 jonathan int count = key_spi_trycnt;
4810 1.1 jonathan
4811 1.1 jonathan /* set spi range to allocate */
4812 1.1 jonathan if (spirange != NULL) {
4813 1.25 christos spmin = spirange->sadb_spirange_min;
4814 1.25 christos spmax = spirange->sadb_spirange_max;
4815 1.1 jonathan } else {
4816 1.25 christos spmin = key_spi_minval;
4817 1.25 christos spmax = key_spi_maxval;
4818 1.1 jonathan }
4819 1.1 jonathan /* IPCOMP needs 2-byte SPI */
4820 1.1 jonathan if (saidx->proto == IPPROTO_IPCOMP) {
4821 1.1 jonathan u_int32_t t;
4822 1.25 christos if (spmin >= 0x10000)
4823 1.25 christos spmin = 0xffff;
4824 1.25 christos if (spmax >= 0x10000)
4825 1.25 christos spmax = 0xffff;
4826 1.25 christos if (spmin > spmax) {
4827 1.25 christos t = spmin; spmin = spmax; spmax = t;
4828 1.1 jonathan }
4829 1.1 jonathan }
4830 1.1 jonathan
4831 1.25 christos if (spmin == spmax) {
4832 1.25 christos if (key_checkspidup(saidx, spmin) != NULL) {
4833 1.25 christos ipseclog((LOG_DEBUG, "key_do_getnewspi: SPI %u exists already.\n", spmin));
4834 1.1 jonathan return 0;
4835 1.1 jonathan }
4836 1.1 jonathan
4837 1.1 jonathan count--; /* taking one cost. */
4838 1.25 christos newspi = spmin;
4839 1.1 jonathan
4840 1.1 jonathan } else {
4841 1.1 jonathan
4842 1.1 jonathan /* init SPI */
4843 1.1 jonathan newspi = 0;
4844 1.1 jonathan
4845 1.1 jonathan /* when requesting to allocate spi ranged */
4846 1.1 jonathan while (count--) {
4847 1.1 jonathan /* generate pseudo-random SPI value ranged. */
4848 1.25 christos newspi = spmin + (key_random() % (spmax - spmin + 1));
4849 1.1 jonathan
4850 1.1 jonathan if (key_checkspidup(saidx, newspi) == NULL)
4851 1.1 jonathan break;
4852 1.1 jonathan }
4853 1.1 jonathan
4854 1.1 jonathan if (count == 0 || newspi == 0) {
4855 1.1 jonathan ipseclog((LOG_DEBUG, "key_do_getnewspi: to allocate spi is failed.\n"));
4856 1.1 jonathan return 0;
4857 1.1 jonathan }
4858 1.1 jonathan }
4859 1.1 jonathan
4860 1.1 jonathan /* statistics */
4861 1.1 jonathan keystat.getspi_count =
4862 1.1 jonathan (keystat.getspi_count + key_spi_trycnt - count) / 2;
4863 1.1 jonathan
4864 1.1 jonathan return newspi;
4865 1.1 jonathan }
4866 1.1 jonathan
4867 1.1 jonathan /*
4868 1.1 jonathan * SADB_UPDATE processing
4869 1.1 jonathan * receive
4870 1.1 jonathan * <base, SA, (SA2), (lifetime(HSC),) address(SD), (address(P),)
4871 1.1 jonathan * key(AE), (identity(SD),) (sensitivity)>
4872 1.1 jonathan * from the ikmpd, and update a secasvar entry whose status is SADB_SASTATE_LARVAL.
4873 1.1 jonathan * and send
4874 1.1 jonathan * <base, SA, (SA2), (lifetime(HSC),) address(SD), (address(P),)
4875 1.1 jonathan * (identity(SD),) (sensitivity)>
4876 1.1 jonathan * to the ikmpd.
4877 1.1 jonathan *
4878 1.1 jonathan * m will always be freed.
4879 1.1 jonathan */
4880 1.1 jonathan static int
4881 1.1 jonathan key_update(so, m, mhp)
4882 1.1 jonathan struct socket *so;
4883 1.1 jonathan struct mbuf *m;
4884 1.1 jonathan const struct sadb_msghdr *mhp;
4885 1.1 jonathan {
4886 1.1 jonathan struct sadb_sa *sa0;
4887 1.1 jonathan struct sadb_address *src0, *dst0;
4888 1.1 jonathan struct secasindex saidx;
4889 1.1 jonathan struct secashead *sah;
4890 1.1 jonathan struct secasvar *sav;
4891 1.1 jonathan u_int16_t proto;
4892 1.1 jonathan u_int8_t mode;
4893 1.1 jonathan u_int32_t reqid;
4894 1.1 jonathan int error;
4895 1.1 jonathan
4896 1.1 jonathan /* sanity check */
4897 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
4898 1.24 christos panic("key_update: NULL pointer is passed");
4899 1.1 jonathan
4900 1.1 jonathan /* map satype to proto */
4901 1.1 jonathan if ((proto = key_satype2proto(mhp->msg->sadb_msg_satype)) == 0) {
4902 1.1 jonathan ipseclog((LOG_DEBUG, "key_update: invalid satype is passed.\n"));
4903 1.1 jonathan return key_senderror(so, m, EINVAL);
4904 1.1 jonathan }
4905 1.1 jonathan
4906 1.1 jonathan if (mhp->ext[SADB_EXT_SA] == NULL ||
4907 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
4908 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL ||
4909 1.1 jonathan (mhp->msg->sadb_msg_satype == SADB_SATYPE_ESP &&
4910 1.1 jonathan mhp->ext[SADB_EXT_KEY_ENCRYPT] == NULL) ||
4911 1.1 jonathan (mhp->msg->sadb_msg_satype == SADB_SATYPE_AH &&
4912 1.1 jonathan mhp->ext[SADB_EXT_KEY_AUTH] == NULL) ||
4913 1.1 jonathan (mhp->ext[SADB_EXT_LIFETIME_HARD] != NULL &&
4914 1.1 jonathan mhp->ext[SADB_EXT_LIFETIME_SOFT] == NULL) ||
4915 1.1 jonathan (mhp->ext[SADB_EXT_LIFETIME_HARD] == NULL &&
4916 1.1 jonathan mhp->ext[SADB_EXT_LIFETIME_SOFT] != NULL)) {
4917 1.1 jonathan ipseclog((LOG_DEBUG, "key_update: invalid message is passed.\n"));
4918 1.1 jonathan return key_senderror(so, m, EINVAL);
4919 1.1 jonathan }
4920 1.1 jonathan if (mhp->extlen[SADB_EXT_SA] < sizeof(struct sadb_sa) ||
4921 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
4922 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address)) {
4923 1.1 jonathan ipseclog((LOG_DEBUG, "key_update: invalid message is passed.\n"));
4924 1.1 jonathan return key_senderror(so, m, EINVAL);
4925 1.1 jonathan }
4926 1.1 jonathan if (mhp->ext[SADB_X_EXT_SA2] != NULL) {
4927 1.1 jonathan mode = ((struct sadb_x_sa2 *)mhp->ext[SADB_X_EXT_SA2])->sadb_x_sa2_mode;
4928 1.1 jonathan reqid = ((struct sadb_x_sa2 *)mhp->ext[SADB_X_EXT_SA2])->sadb_x_sa2_reqid;
4929 1.1 jonathan } else {
4930 1.1 jonathan mode = IPSEC_MODE_ANY;
4931 1.1 jonathan reqid = 0;
4932 1.1 jonathan }
4933 1.1 jonathan /* XXX boundary checking for other extensions */
4934 1.1 jonathan
4935 1.1 jonathan sa0 = (struct sadb_sa *)mhp->ext[SADB_EXT_SA];
4936 1.1 jonathan src0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_SRC]);
4937 1.1 jonathan dst0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_DST]);
4938 1.1 jonathan
4939 1.1 jonathan /* XXX boundary check against sa_len */
4940 1.1 jonathan KEY_SETSECASIDX(proto, mode, reqid, src0 + 1, dst0 + 1, &saidx);
4941 1.1 jonathan
4942 1.1 jonathan /* get a SA header */
4943 1.1 jonathan if ((sah = key_getsah(&saidx)) == NULL) {
4944 1.1 jonathan ipseclog((LOG_DEBUG, "key_update: no SA index found.\n"));
4945 1.1 jonathan return key_senderror(so, m, ENOENT);
4946 1.1 jonathan }
4947 1.1 jonathan
4948 1.1 jonathan /* set spidx if there */
4949 1.1 jonathan /* XXX rewrite */
4950 1.1 jonathan error = key_setident(sah, m, mhp);
4951 1.1 jonathan if (error)
4952 1.1 jonathan return key_senderror(so, m, error);
4953 1.1 jonathan
4954 1.1 jonathan /* find a SA with sequence number. */
4955 1.1 jonathan #ifdef IPSEC_DOSEQCHECK
4956 1.1 jonathan if (mhp->msg->sadb_msg_seq != 0
4957 1.1 jonathan && (sav = key_getsavbyseq(sah, mhp->msg->sadb_msg_seq)) == NULL) {
4958 1.1 jonathan ipseclog((LOG_DEBUG,
4959 1.1 jonathan "key_update: no larval SA with sequence %u exists.\n",
4960 1.1 jonathan mhp->msg->sadb_msg_seq));
4961 1.1 jonathan return key_senderror(so, m, ENOENT);
4962 1.1 jonathan }
4963 1.1 jonathan #else
4964 1.1 jonathan if ((sav = key_getsavbyspi(sah, sa0->sadb_sa_spi)) == NULL) {
4965 1.1 jonathan ipseclog((LOG_DEBUG,
4966 1.1 jonathan "key_update: no such a SA found (spi:%u)\n",
4967 1.1 jonathan (u_int32_t)ntohl(sa0->sadb_sa_spi)));
4968 1.1 jonathan return key_senderror(so, m, EINVAL);
4969 1.1 jonathan }
4970 1.1 jonathan #endif
4971 1.1 jonathan
4972 1.1 jonathan /* validity check */
4973 1.1 jonathan if (sav->sah->saidx.proto != proto) {
4974 1.1 jonathan ipseclog((LOG_DEBUG,
4975 1.1 jonathan "key_update: protocol mismatched (DB=%u param=%u)\n",
4976 1.1 jonathan sav->sah->saidx.proto, proto));
4977 1.1 jonathan return key_senderror(so, m, EINVAL);
4978 1.1 jonathan }
4979 1.1 jonathan #ifdef IPSEC_DOSEQCHECK
4980 1.1 jonathan if (sav->spi != sa0->sadb_sa_spi) {
4981 1.1 jonathan ipseclog((LOG_DEBUG,
4982 1.1 jonathan "key_update: SPI mismatched (DB:%u param:%u)\n",
4983 1.1 jonathan (u_int32_t)ntohl(sav->spi),
4984 1.1 jonathan (u_int32_t)ntohl(sa0->sadb_sa_spi)));
4985 1.1 jonathan return key_senderror(so, m, EINVAL);
4986 1.1 jonathan }
4987 1.1 jonathan #endif
4988 1.1 jonathan if (sav->pid != mhp->msg->sadb_msg_pid) {
4989 1.1 jonathan ipseclog((LOG_DEBUG,
4990 1.1 jonathan "key_update: pid mismatched (DB:%u param:%u)\n",
4991 1.1 jonathan sav->pid, mhp->msg->sadb_msg_pid));
4992 1.1 jonathan return key_senderror(so, m, EINVAL);
4993 1.1 jonathan }
4994 1.1 jonathan
4995 1.1 jonathan /* copy sav values */
4996 1.1 jonathan error = key_setsaval(sav, m, mhp);
4997 1.1 jonathan if (error) {
4998 1.1 jonathan KEY_FREESAV(&sav);
4999 1.1 jonathan return key_senderror(so, m, error);
5000 1.1 jonathan }
5001 1.1 jonathan
5002 1.1 jonathan /* check SA values to be mature. */
5003 1.1 jonathan if ((mhp->msg->sadb_msg_errno = key_mature(sav)) != 0) {
5004 1.1 jonathan KEY_FREESAV(&sav);
5005 1.1 jonathan return key_senderror(so, m, 0);
5006 1.1 jonathan }
5007 1.1 jonathan
5008 1.1 jonathan {
5009 1.1 jonathan struct mbuf *n;
5010 1.1 jonathan
5011 1.1 jonathan /* set msg buf from mhp */
5012 1.1 jonathan n = key_getmsgbuf_x1(m, mhp);
5013 1.1 jonathan if (n == NULL) {
5014 1.1 jonathan ipseclog((LOG_DEBUG, "key_update: No more memory.\n"));
5015 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5016 1.1 jonathan }
5017 1.1 jonathan
5018 1.1 jonathan m_freem(m);
5019 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ALL);
5020 1.1 jonathan }
5021 1.1 jonathan }
5022 1.1 jonathan
5023 1.1 jonathan /*
5024 1.1 jonathan * search SAD with sequence for a SA which state is SADB_SASTATE_LARVAL.
5025 1.1 jonathan * only called by key_update().
5026 1.1 jonathan * OUT:
5027 1.1 jonathan * NULL : not found
5028 1.1 jonathan * others : found, pointer to a SA.
5029 1.1 jonathan */
5030 1.1 jonathan #ifdef IPSEC_DOSEQCHECK
5031 1.1 jonathan static struct secasvar *
5032 1.1 jonathan key_getsavbyseq(sah, seq)
5033 1.1 jonathan struct secashead *sah;
5034 1.1 jonathan u_int32_t seq;
5035 1.1 jonathan {
5036 1.1 jonathan struct secasvar *sav;
5037 1.1 jonathan u_int state;
5038 1.1 jonathan
5039 1.1 jonathan state = SADB_SASTATE_LARVAL;
5040 1.1 jonathan
5041 1.1 jonathan /* search SAD with sequence number ? */
5042 1.1 jonathan LIST_FOREACH(sav, &sah->savtree[state], chain) {
5043 1.1 jonathan
5044 1.1 jonathan KEY_CHKSASTATE(state, sav->state, "key_getsabyseq");
5045 1.1 jonathan
5046 1.1 jonathan if (sav->seq == seq) {
5047 1.1 jonathan SA_ADDREF(sav);
5048 1.1 jonathan KEYDEBUG(KEYDEBUG_IPSEC_STAMP,
5049 1.1 jonathan printf("DP key_getsavbyseq cause "
5050 1.1 jonathan "refcnt++:%d SA:%p\n",
5051 1.1 jonathan sav->refcnt, sav));
5052 1.1 jonathan return sav;
5053 1.1 jonathan }
5054 1.1 jonathan }
5055 1.1 jonathan
5056 1.1 jonathan return NULL;
5057 1.1 jonathan }
5058 1.1 jonathan #endif
5059 1.1 jonathan
5060 1.1 jonathan /*
5061 1.1 jonathan * SADB_ADD processing
5062 1.1 jonathan * add an entry to SA database, when received
5063 1.1 jonathan * <base, SA, (SA2), (lifetime(HSC),) address(SD), (address(P),)
5064 1.1 jonathan * key(AE), (identity(SD),) (sensitivity)>
5065 1.1 jonathan * from the ikmpd,
5066 1.1 jonathan * and send
5067 1.1 jonathan * <base, SA, (SA2), (lifetime(HSC),) address(SD), (address(P),)
5068 1.1 jonathan * (identity(SD),) (sensitivity)>
5069 1.1 jonathan * to the ikmpd.
5070 1.1 jonathan *
5071 1.1 jonathan * IGNORE identity and sensitivity messages.
5072 1.1 jonathan *
5073 1.1 jonathan * m will always be freed.
5074 1.1 jonathan */
5075 1.1 jonathan static int
5076 1.1 jonathan key_add(so, m, mhp)
5077 1.1 jonathan struct socket *so;
5078 1.1 jonathan struct mbuf *m;
5079 1.1 jonathan const struct sadb_msghdr *mhp;
5080 1.1 jonathan {
5081 1.1 jonathan struct sadb_sa *sa0;
5082 1.1 jonathan struct sadb_address *src0, *dst0;
5083 1.1 jonathan struct secasindex saidx;
5084 1.1 jonathan struct secashead *newsah;
5085 1.1 jonathan struct secasvar *newsav;
5086 1.1 jonathan u_int16_t proto;
5087 1.1 jonathan u_int8_t mode;
5088 1.1 jonathan u_int32_t reqid;
5089 1.1 jonathan int error;
5090 1.1 jonathan
5091 1.1 jonathan /* sanity check */
5092 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
5093 1.24 christos panic("key_add: NULL pointer is passed");
5094 1.1 jonathan
5095 1.1 jonathan /* map satype to proto */
5096 1.1 jonathan if ((proto = key_satype2proto(mhp->msg->sadb_msg_satype)) == 0) {
5097 1.1 jonathan ipseclog((LOG_DEBUG, "key_add: invalid satype is passed.\n"));
5098 1.1 jonathan return key_senderror(so, m, EINVAL);
5099 1.1 jonathan }
5100 1.1 jonathan
5101 1.1 jonathan if (mhp->ext[SADB_EXT_SA] == NULL ||
5102 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
5103 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL ||
5104 1.1 jonathan (mhp->msg->sadb_msg_satype == SADB_SATYPE_ESP &&
5105 1.1 jonathan mhp->ext[SADB_EXT_KEY_ENCRYPT] == NULL) ||
5106 1.1 jonathan (mhp->msg->sadb_msg_satype == SADB_SATYPE_AH &&
5107 1.1 jonathan mhp->ext[SADB_EXT_KEY_AUTH] == NULL) ||
5108 1.1 jonathan (mhp->ext[SADB_EXT_LIFETIME_HARD] != NULL &&
5109 1.1 jonathan mhp->ext[SADB_EXT_LIFETIME_SOFT] == NULL) ||
5110 1.1 jonathan (mhp->ext[SADB_EXT_LIFETIME_HARD] == NULL &&
5111 1.1 jonathan mhp->ext[SADB_EXT_LIFETIME_SOFT] != NULL)) {
5112 1.1 jonathan ipseclog((LOG_DEBUG, "key_add: invalid message is passed.\n"));
5113 1.1 jonathan return key_senderror(so, m, EINVAL);
5114 1.1 jonathan }
5115 1.1 jonathan if (mhp->extlen[SADB_EXT_SA] < sizeof(struct sadb_sa) ||
5116 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
5117 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address)) {
5118 1.1 jonathan /* XXX need more */
5119 1.1 jonathan ipseclog((LOG_DEBUG, "key_add: invalid message is passed.\n"));
5120 1.1 jonathan return key_senderror(so, m, EINVAL);
5121 1.1 jonathan }
5122 1.1 jonathan if (mhp->ext[SADB_X_EXT_SA2] != NULL) {
5123 1.1 jonathan mode = ((struct sadb_x_sa2 *)mhp->ext[SADB_X_EXT_SA2])->sadb_x_sa2_mode;
5124 1.1 jonathan reqid = ((struct sadb_x_sa2 *)mhp->ext[SADB_X_EXT_SA2])->sadb_x_sa2_reqid;
5125 1.1 jonathan } else {
5126 1.1 jonathan mode = IPSEC_MODE_ANY;
5127 1.1 jonathan reqid = 0;
5128 1.1 jonathan }
5129 1.1 jonathan
5130 1.1 jonathan sa0 = (struct sadb_sa *)mhp->ext[SADB_EXT_SA];
5131 1.1 jonathan src0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_SRC];
5132 1.1 jonathan dst0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_DST];
5133 1.1 jonathan
5134 1.1 jonathan /* XXX boundary check against sa_len */
5135 1.1 jonathan KEY_SETSECASIDX(proto, mode, reqid, src0 + 1, dst0 + 1, &saidx);
5136 1.1 jonathan
5137 1.1 jonathan /* get a SA header */
5138 1.1 jonathan if ((newsah = key_getsah(&saidx)) == NULL) {
5139 1.1 jonathan /* create a new SA header */
5140 1.1 jonathan if ((newsah = key_newsah(&saidx)) == NULL) {
5141 1.1 jonathan ipseclog((LOG_DEBUG, "key_add: No more memory.\n"));
5142 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5143 1.1 jonathan }
5144 1.1 jonathan }
5145 1.1 jonathan
5146 1.1 jonathan /* set spidx if there */
5147 1.1 jonathan /* XXX rewrite */
5148 1.1 jonathan error = key_setident(newsah, m, mhp);
5149 1.1 jonathan if (error) {
5150 1.1 jonathan return key_senderror(so, m, error);
5151 1.1 jonathan }
5152 1.1 jonathan
5153 1.1 jonathan /* create new SA entry. */
5154 1.1 jonathan /* We can create new SA only if SPI is differenct. */
5155 1.1 jonathan if (key_getsavbyspi(newsah, sa0->sadb_sa_spi)) {
5156 1.1 jonathan ipseclog((LOG_DEBUG, "key_add: SA already exists.\n"));
5157 1.1 jonathan return key_senderror(so, m, EEXIST);
5158 1.1 jonathan }
5159 1.1 jonathan newsav = KEY_NEWSAV(m, mhp, newsah, &error);
5160 1.1 jonathan if (newsav == NULL) {
5161 1.1 jonathan return key_senderror(so, m, error);
5162 1.1 jonathan }
5163 1.1 jonathan
5164 1.1 jonathan /* check SA values to be mature. */
5165 1.1 jonathan if ((error = key_mature(newsav)) != 0) {
5166 1.1 jonathan KEY_FREESAV(&newsav);
5167 1.1 jonathan return key_senderror(so, m, error);
5168 1.1 jonathan }
5169 1.1 jonathan
5170 1.1 jonathan /*
5171 1.1 jonathan * don't call key_freesav() here, as we would like to keep the SA
5172 1.1 jonathan * in the database on success.
5173 1.1 jonathan */
5174 1.1 jonathan
5175 1.1 jonathan {
5176 1.1 jonathan struct mbuf *n;
5177 1.1 jonathan
5178 1.1 jonathan /* set msg buf from mhp */
5179 1.1 jonathan n = key_getmsgbuf_x1(m, mhp);
5180 1.1 jonathan if (n == NULL) {
5181 1.1 jonathan ipseclog((LOG_DEBUG, "key_update: No more memory.\n"));
5182 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5183 1.1 jonathan }
5184 1.1 jonathan
5185 1.1 jonathan m_freem(m);
5186 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ALL);
5187 1.1 jonathan }
5188 1.1 jonathan }
5189 1.1 jonathan
5190 1.1 jonathan /* m is retained */
5191 1.1 jonathan static int
5192 1.1 jonathan key_setident(sah, m, mhp)
5193 1.1 jonathan struct secashead *sah;
5194 1.1 jonathan struct mbuf *m;
5195 1.1 jonathan const struct sadb_msghdr *mhp;
5196 1.1 jonathan {
5197 1.1 jonathan const struct sadb_ident *idsrc, *iddst;
5198 1.1 jonathan int idsrclen, iddstlen;
5199 1.1 jonathan
5200 1.1 jonathan /* sanity check */
5201 1.1 jonathan if (sah == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
5202 1.24 christos panic("key_setident: NULL pointer is passed");
5203 1.1 jonathan
5204 1.1 jonathan /* don't make buffer if not there */
5205 1.1 jonathan if (mhp->ext[SADB_EXT_IDENTITY_SRC] == NULL &&
5206 1.1 jonathan mhp->ext[SADB_EXT_IDENTITY_DST] == NULL) {
5207 1.1 jonathan sah->idents = NULL;
5208 1.1 jonathan sah->identd = NULL;
5209 1.1 jonathan return 0;
5210 1.1 jonathan }
5211 1.22 perry
5212 1.1 jonathan if (mhp->ext[SADB_EXT_IDENTITY_SRC] == NULL ||
5213 1.1 jonathan mhp->ext[SADB_EXT_IDENTITY_DST] == NULL) {
5214 1.1 jonathan ipseclog((LOG_DEBUG, "key_setident: invalid identity.\n"));
5215 1.1 jonathan return EINVAL;
5216 1.1 jonathan }
5217 1.1 jonathan
5218 1.1 jonathan idsrc = (const struct sadb_ident *)mhp->ext[SADB_EXT_IDENTITY_SRC];
5219 1.1 jonathan iddst = (const struct sadb_ident *)mhp->ext[SADB_EXT_IDENTITY_DST];
5220 1.1 jonathan idsrclen = mhp->extlen[SADB_EXT_IDENTITY_SRC];
5221 1.1 jonathan iddstlen = mhp->extlen[SADB_EXT_IDENTITY_DST];
5222 1.1 jonathan
5223 1.1 jonathan /* validity check */
5224 1.1 jonathan if (idsrc->sadb_ident_type != iddst->sadb_ident_type) {
5225 1.1 jonathan ipseclog((LOG_DEBUG, "key_setident: ident type mismatch.\n"));
5226 1.1 jonathan return EINVAL;
5227 1.1 jonathan }
5228 1.1 jonathan
5229 1.1 jonathan switch (idsrc->sadb_ident_type) {
5230 1.1 jonathan case SADB_IDENTTYPE_PREFIX:
5231 1.1 jonathan case SADB_IDENTTYPE_FQDN:
5232 1.1 jonathan case SADB_IDENTTYPE_USERFQDN:
5233 1.1 jonathan default:
5234 1.1 jonathan /* XXX do nothing */
5235 1.1 jonathan sah->idents = NULL;
5236 1.1 jonathan sah->identd = NULL;
5237 1.1 jonathan return 0;
5238 1.1 jonathan }
5239 1.1 jonathan
5240 1.1 jonathan /* make structure */
5241 1.1 jonathan KMALLOC(sah->idents, struct sadb_ident *, idsrclen);
5242 1.1 jonathan if (sah->idents == NULL) {
5243 1.1 jonathan ipseclog((LOG_DEBUG, "key_setident: No more memory.\n"));
5244 1.1 jonathan return ENOBUFS;
5245 1.1 jonathan }
5246 1.1 jonathan KMALLOC(sah->identd, struct sadb_ident *, iddstlen);
5247 1.1 jonathan if (sah->identd == NULL) {
5248 1.1 jonathan KFREE(sah->idents);
5249 1.1 jonathan sah->idents = NULL;
5250 1.1 jonathan ipseclog((LOG_DEBUG, "key_setident: No more memory.\n"));
5251 1.1 jonathan return ENOBUFS;
5252 1.1 jonathan }
5253 1.1 jonathan bcopy(idsrc, sah->idents, idsrclen);
5254 1.1 jonathan bcopy(iddst, sah->identd, iddstlen);
5255 1.1 jonathan
5256 1.1 jonathan return 0;
5257 1.1 jonathan }
5258 1.1 jonathan
5259 1.1 jonathan /*
5260 1.1 jonathan * m will not be freed on return.
5261 1.22 perry * it is caller's responsibility to free the result.
5262 1.1 jonathan */
5263 1.1 jonathan static struct mbuf *
5264 1.1 jonathan key_getmsgbuf_x1(m, mhp)
5265 1.1 jonathan struct mbuf *m;
5266 1.1 jonathan const struct sadb_msghdr *mhp;
5267 1.1 jonathan {
5268 1.1 jonathan struct mbuf *n;
5269 1.1 jonathan
5270 1.1 jonathan /* sanity check */
5271 1.1 jonathan if (m == NULL || mhp == NULL || mhp->msg == NULL)
5272 1.24 christos panic("key_getmsgbuf_x1: NULL pointer is passed");
5273 1.1 jonathan
5274 1.1 jonathan /* create new sadb_msg to reply. */
5275 1.1 jonathan n = key_gather_mbuf(m, mhp, 1, 9, SADB_EXT_RESERVED,
5276 1.1 jonathan SADB_EXT_SA, SADB_X_EXT_SA2,
5277 1.1 jonathan SADB_EXT_ADDRESS_SRC, SADB_EXT_ADDRESS_DST,
5278 1.1 jonathan SADB_EXT_LIFETIME_HARD, SADB_EXT_LIFETIME_SOFT,
5279 1.1 jonathan SADB_EXT_IDENTITY_SRC, SADB_EXT_IDENTITY_DST);
5280 1.1 jonathan if (!n)
5281 1.1 jonathan return NULL;
5282 1.1 jonathan
5283 1.1 jonathan if (n->m_len < sizeof(struct sadb_msg)) {
5284 1.1 jonathan n = m_pullup(n, sizeof(struct sadb_msg));
5285 1.1 jonathan if (n == NULL)
5286 1.1 jonathan return NULL;
5287 1.1 jonathan }
5288 1.1 jonathan mtod(n, struct sadb_msg *)->sadb_msg_errno = 0;
5289 1.1 jonathan mtod(n, struct sadb_msg *)->sadb_msg_len =
5290 1.1 jonathan PFKEY_UNIT64(n->m_pkthdr.len);
5291 1.1 jonathan
5292 1.1 jonathan return n;
5293 1.1 jonathan }
5294 1.1 jonathan
5295 1.1 jonathan static int key_delete_all __P((struct socket *, struct mbuf *,
5296 1.1 jonathan const struct sadb_msghdr *, u_int16_t));
5297 1.1 jonathan
5298 1.1 jonathan /*
5299 1.1 jonathan * SADB_DELETE processing
5300 1.1 jonathan * receive
5301 1.1 jonathan * <base, SA(*), address(SD)>
5302 1.1 jonathan * from the ikmpd, and set SADB_SASTATE_DEAD,
5303 1.1 jonathan * and send,
5304 1.1 jonathan * <base, SA(*), address(SD)>
5305 1.1 jonathan * to the ikmpd.
5306 1.1 jonathan *
5307 1.1 jonathan * m will always be freed.
5308 1.1 jonathan */
5309 1.1 jonathan static int
5310 1.1 jonathan key_delete(so, m, mhp)
5311 1.1 jonathan struct socket *so;
5312 1.1 jonathan struct mbuf *m;
5313 1.1 jonathan const struct sadb_msghdr *mhp;
5314 1.1 jonathan {
5315 1.1 jonathan struct sadb_sa *sa0;
5316 1.1 jonathan struct sadb_address *src0, *dst0;
5317 1.1 jonathan struct secasindex saidx;
5318 1.1 jonathan struct secashead *sah;
5319 1.1 jonathan struct secasvar *sav = NULL;
5320 1.1 jonathan u_int16_t proto;
5321 1.1 jonathan
5322 1.1 jonathan /* sanity check */
5323 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
5324 1.24 christos panic("key_delete: NULL pointer is passed");
5325 1.1 jonathan
5326 1.1 jonathan /* map satype to proto */
5327 1.1 jonathan if ((proto = key_satype2proto(mhp->msg->sadb_msg_satype)) == 0) {
5328 1.1 jonathan ipseclog((LOG_DEBUG, "key_delete: invalid satype is passed.\n"));
5329 1.1 jonathan return key_senderror(so, m, EINVAL);
5330 1.1 jonathan }
5331 1.1 jonathan
5332 1.1 jonathan if (mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
5333 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL) {
5334 1.1 jonathan ipseclog((LOG_DEBUG, "key_delete: invalid message is passed.\n"));
5335 1.1 jonathan return key_senderror(so, m, EINVAL);
5336 1.1 jonathan }
5337 1.1 jonathan
5338 1.1 jonathan if (mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
5339 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address)) {
5340 1.1 jonathan ipseclog((LOG_DEBUG, "key_delete: invalid message is passed.\n"));
5341 1.1 jonathan return key_senderror(so, m, EINVAL);
5342 1.1 jonathan }
5343 1.1 jonathan
5344 1.1 jonathan if (mhp->ext[SADB_EXT_SA] == NULL) {
5345 1.1 jonathan /*
5346 1.1 jonathan * Caller wants us to delete all non-LARVAL SAs
5347 1.1 jonathan * that match the src/dst. This is used during
5348 1.1 jonathan * IKE INITIAL-CONTACT.
5349 1.1 jonathan */
5350 1.1 jonathan ipseclog((LOG_DEBUG, "key_delete: doing delete all.\n"));
5351 1.1 jonathan return key_delete_all(so, m, mhp, proto);
5352 1.1 jonathan } else if (mhp->extlen[SADB_EXT_SA] < sizeof(struct sadb_sa)) {
5353 1.1 jonathan ipseclog((LOG_DEBUG, "key_delete: invalid message is passed.\n"));
5354 1.1 jonathan return key_senderror(so, m, EINVAL);
5355 1.1 jonathan }
5356 1.1 jonathan
5357 1.1 jonathan sa0 = (struct sadb_sa *)mhp->ext[SADB_EXT_SA];
5358 1.1 jonathan src0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_SRC]);
5359 1.1 jonathan dst0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_DST]);
5360 1.1 jonathan
5361 1.1 jonathan /* XXX boundary check against sa_len */
5362 1.1 jonathan KEY_SETSECASIDX(proto, IPSEC_MODE_ANY, 0, src0 + 1, dst0 + 1, &saidx);
5363 1.1 jonathan
5364 1.1 jonathan /* get a SA header */
5365 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
5366 1.1 jonathan if (sah->state == SADB_SASTATE_DEAD)
5367 1.1 jonathan continue;
5368 1.1 jonathan if (key_cmpsaidx(&sah->saidx, &saidx, CMP_HEAD) == 0)
5369 1.1 jonathan continue;
5370 1.1 jonathan
5371 1.1 jonathan /* get a SA with SPI. */
5372 1.1 jonathan sav = key_getsavbyspi(sah, sa0->sadb_sa_spi);
5373 1.1 jonathan if (sav)
5374 1.1 jonathan break;
5375 1.1 jonathan }
5376 1.1 jonathan if (sah == NULL) {
5377 1.1 jonathan ipseclog((LOG_DEBUG, "key_delete: no SA found.\n"));
5378 1.1 jonathan return key_senderror(so, m, ENOENT);
5379 1.1 jonathan }
5380 1.1 jonathan
5381 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DEAD);
5382 1.1 jonathan KEY_FREESAV(&sav);
5383 1.1 jonathan
5384 1.1 jonathan {
5385 1.1 jonathan struct mbuf *n;
5386 1.1 jonathan struct sadb_msg *newmsg;
5387 1.1 jonathan
5388 1.1 jonathan /* create new sadb_msg to reply. */
5389 1.1 jonathan n = key_gather_mbuf(m, mhp, 1, 4, SADB_EXT_RESERVED,
5390 1.1 jonathan SADB_EXT_SA, SADB_EXT_ADDRESS_SRC, SADB_EXT_ADDRESS_DST);
5391 1.1 jonathan if (!n)
5392 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5393 1.1 jonathan
5394 1.1 jonathan if (n->m_len < sizeof(struct sadb_msg)) {
5395 1.1 jonathan n = m_pullup(n, sizeof(struct sadb_msg));
5396 1.1 jonathan if (n == NULL)
5397 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5398 1.1 jonathan }
5399 1.1 jonathan newmsg = mtod(n, struct sadb_msg *);
5400 1.1 jonathan newmsg->sadb_msg_errno = 0;
5401 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(n->m_pkthdr.len);
5402 1.1 jonathan
5403 1.1 jonathan m_freem(m);
5404 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ALL);
5405 1.1 jonathan }
5406 1.1 jonathan }
5407 1.1 jonathan
5408 1.1 jonathan /*
5409 1.1 jonathan * delete all SAs for src/dst. Called from key_delete().
5410 1.1 jonathan */
5411 1.1 jonathan static int
5412 1.1 jonathan key_delete_all(so, m, mhp, proto)
5413 1.1 jonathan struct socket *so;
5414 1.1 jonathan struct mbuf *m;
5415 1.1 jonathan const struct sadb_msghdr *mhp;
5416 1.1 jonathan u_int16_t proto;
5417 1.1 jonathan {
5418 1.1 jonathan struct sadb_address *src0, *dst0;
5419 1.1 jonathan struct secasindex saidx;
5420 1.1 jonathan struct secashead *sah;
5421 1.1 jonathan struct secasvar *sav, *nextsav;
5422 1.1 jonathan u_int stateidx, state;
5423 1.1 jonathan
5424 1.1 jonathan src0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_SRC]);
5425 1.1 jonathan dst0 = (struct sadb_address *)(mhp->ext[SADB_EXT_ADDRESS_DST]);
5426 1.1 jonathan
5427 1.1 jonathan /* XXX boundary check against sa_len */
5428 1.1 jonathan KEY_SETSECASIDX(proto, IPSEC_MODE_ANY, 0, src0 + 1, dst0 + 1, &saidx);
5429 1.1 jonathan
5430 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
5431 1.1 jonathan if (sah->state == SADB_SASTATE_DEAD)
5432 1.1 jonathan continue;
5433 1.1 jonathan if (key_cmpsaidx(&sah->saidx, &saidx, CMP_HEAD) == 0)
5434 1.1 jonathan continue;
5435 1.1 jonathan
5436 1.1 jonathan /* Delete all non-LARVAL SAs. */
5437 1.1 jonathan for (stateidx = 0;
5438 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_alive);
5439 1.1 jonathan stateidx++) {
5440 1.1 jonathan state = saorder_state_alive[stateidx];
5441 1.1 jonathan if (state == SADB_SASTATE_LARVAL)
5442 1.1 jonathan continue;
5443 1.1 jonathan for (sav = LIST_FIRST(&sah->savtree[state]);
5444 1.1 jonathan sav != NULL; sav = nextsav) {
5445 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
5446 1.1 jonathan /* sanity check */
5447 1.1 jonathan if (sav->state != state) {
5448 1.1 jonathan ipseclog((LOG_DEBUG, "key_delete_all: "
5449 1.1 jonathan "invalid sav->state "
5450 1.1 jonathan "(queue: %d SA: %d)\n",
5451 1.1 jonathan state, sav->state));
5452 1.1 jonathan continue;
5453 1.1 jonathan }
5454 1.22 perry
5455 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DEAD);
5456 1.1 jonathan KEY_FREESAV(&sav);
5457 1.1 jonathan }
5458 1.1 jonathan }
5459 1.1 jonathan }
5460 1.1 jonathan {
5461 1.1 jonathan struct mbuf *n;
5462 1.1 jonathan struct sadb_msg *newmsg;
5463 1.1 jonathan
5464 1.1 jonathan /* create new sadb_msg to reply. */
5465 1.1 jonathan n = key_gather_mbuf(m, mhp, 1, 3, SADB_EXT_RESERVED,
5466 1.1 jonathan SADB_EXT_ADDRESS_SRC, SADB_EXT_ADDRESS_DST);
5467 1.1 jonathan if (!n)
5468 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5469 1.1 jonathan
5470 1.1 jonathan if (n->m_len < sizeof(struct sadb_msg)) {
5471 1.1 jonathan n = m_pullup(n, sizeof(struct sadb_msg));
5472 1.1 jonathan if (n == NULL)
5473 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5474 1.1 jonathan }
5475 1.1 jonathan newmsg = mtod(n, struct sadb_msg *);
5476 1.1 jonathan newmsg->sadb_msg_errno = 0;
5477 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(n->m_pkthdr.len);
5478 1.1 jonathan
5479 1.1 jonathan m_freem(m);
5480 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ALL);
5481 1.1 jonathan }
5482 1.1 jonathan }
5483 1.1 jonathan
5484 1.1 jonathan /*
5485 1.1 jonathan * SADB_GET processing
5486 1.1 jonathan * receive
5487 1.1 jonathan * <base, SA(*), address(SD)>
5488 1.1 jonathan * from the ikmpd, and get a SP and a SA to respond,
5489 1.1 jonathan * and send,
5490 1.1 jonathan * <base, SA, (lifetime(HSC),) address(SD), (address(P),) key(AE),
5491 1.1 jonathan * (identity(SD),) (sensitivity)>
5492 1.1 jonathan * to the ikmpd.
5493 1.1 jonathan *
5494 1.1 jonathan * m will always be freed.
5495 1.1 jonathan */
5496 1.1 jonathan static int
5497 1.1 jonathan key_get(so, m, mhp)
5498 1.1 jonathan struct socket *so;
5499 1.1 jonathan struct mbuf *m;
5500 1.1 jonathan const struct sadb_msghdr *mhp;
5501 1.1 jonathan {
5502 1.1 jonathan struct sadb_sa *sa0;
5503 1.1 jonathan struct sadb_address *src0, *dst0;
5504 1.1 jonathan struct secasindex saidx;
5505 1.1 jonathan struct secashead *sah;
5506 1.1 jonathan struct secasvar *sav = NULL;
5507 1.1 jonathan u_int16_t proto;
5508 1.1 jonathan
5509 1.1 jonathan /* sanity check */
5510 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
5511 1.24 christos panic("key_get: NULL pointer is passed");
5512 1.1 jonathan
5513 1.1 jonathan /* map satype to proto */
5514 1.1 jonathan if ((proto = key_satype2proto(mhp->msg->sadb_msg_satype)) == 0) {
5515 1.1 jonathan ipseclog((LOG_DEBUG, "key_get: invalid satype is passed.\n"));
5516 1.1 jonathan return key_senderror(so, m, EINVAL);
5517 1.1 jonathan }
5518 1.1 jonathan
5519 1.1 jonathan if (mhp->ext[SADB_EXT_SA] == NULL ||
5520 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
5521 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL) {
5522 1.1 jonathan ipseclog((LOG_DEBUG, "key_get: invalid message is passed.\n"));
5523 1.1 jonathan return key_senderror(so, m, EINVAL);
5524 1.1 jonathan }
5525 1.1 jonathan if (mhp->extlen[SADB_EXT_SA] < sizeof(struct sadb_sa) ||
5526 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
5527 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address)) {
5528 1.1 jonathan ipseclog((LOG_DEBUG, "key_get: invalid message is passed.\n"));
5529 1.1 jonathan return key_senderror(so, m, EINVAL);
5530 1.1 jonathan }
5531 1.1 jonathan
5532 1.1 jonathan sa0 = (struct sadb_sa *)mhp->ext[SADB_EXT_SA];
5533 1.1 jonathan src0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_SRC];
5534 1.1 jonathan dst0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_DST];
5535 1.1 jonathan
5536 1.1 jonathan /* XXX boundary check against sa_len */
5537 1.1 jonathan KEY_SETSECASIDX(proto, IPSEC_MODE_ANY, 0, src0 + 1, dst0 + 1, &saidx);
5538 1.1 jonathan
5539 1.1 jonathan /* get a SA header */
5540 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
5541 1.1 jonathan if (sah->state == SADB_SASTATE_DEAD)
5542 1.1 jonathan continue;
5543 1.1 jonathan if (key_cmpsaidx(&sah->saidx, &saidx, CMP_HEAD) == 0)
5544 1.1 jonathan continue;
5545 1.1 jonathan
5546 1.1 jonathan /* get a SA with SPI. */
5547 1.1 jonathan sav = key_getsavbyspi(sah, sa0->sadb_sa_spi);
5548 1.1 jonathan if (sav)
5549 1.1 jonathan break;
5550 1.1 jonathan }
5551 1.1 jonathan if (sah == NULL) {
5552 1.1 jonathan ipseclog((LOG_DEBUG, "key_get: no SA found.\n"));
5553 1.1 jonathan return key_senderror(so, m, ENOENT);
5554 1.1 jonathan }
5555 1.1 jonathan
5556 1.1 jonathan {
5557 1.1 jonathan struct mbuf *n;
5558 1.1 jonathan u_int8_t satype;
5559 1.1 jonathan
5560 1.1 jonathan /* map proto to satype */
5561 1.1 jonathan if ((satype = key_proto2satype(sah->saidx.proto)) == 0) {
5562 1.1 jonathan ipseclog((LOG_DEBUG, "key_get: there was invalid proto in SAD.\n"));
5563 1.1 jonathan return key_senderror(so, m, EINVAL);
5564 1.1 jonathan }
5565 1.1 jonathan
5566 1.1 jonathan /* create new sadb_msg to reply. */
5567 1.1 jonathan n = key_setdumpsa(sav, SADB_GET, satype, mhp->msg->sadb_msg_seq,
5568 1.1 jonathan mhp->msg->sadb_msg_pid);
5569 1.1 jonathan if (!n)
5570 1.1 jonathan return key_senderror(so, m, ENOBUFS);
5571 1.1 jonathan
5572 1.1 jonathan m_freem(m);
5573 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_ONE);
5574 1.1 jonathan }
5575 1.1 jonathan }
5576 1.1 jonathan
5577 1.1 jonathan /* XXX make it sysctl-configurable? */
5578 1.1 jonathan static void
5579 1.1 jonathan key_getcomb_setlifetime(comb)
5580 1.1 jonathan struct sadb_comb *comb;
5581 1.1 jonathan {
5582 1.1 jonathan
5583 1.1 jonathan comb->sadb_comb_soft_allocations = 1;
5584 1.1 jonathan comb->sadb_comb_hard_allocations = 1;
5585 1.1 jonathan comb->sadb_comb_soft_bytes = 0;
5586 1.1 jonathan comb->sadb_comb_hard_bytes = 0;
5587 1.1 jonathan comb->sadb_comb_hard_addtime = 86400; /* 1 day */
5588 1.1 jonathan comb->sadb_comb_soft_addtime = comb->sadb_comb_soft_addtime * 80 / 100;
5589 1.1 jonathan comb->sadb_comb_soft_usetime = 28800; /* 8 hours */
5590 1.1 jonathan comb->sadb_comb_hard_usetime = comb->sadb_comb_hard_usetime * 80 / 100;
5591 1.1 jonathan }
5592 1.1 jonathan
5593 1.1 jonathan /*
5594 1.1 jonathan * XXX reorder combinations by preference
5595 1.1 jonathan * XXX no idea if the user wants ESP authentication or not
5596 1.1 jonathan */
5597 1.1 jonathan static struct mbuf *
5598 1.1 jonathan key_getcomb_esp()
5599 1.1 jonathan {
5600 1.1 jonathan struct sadb_comb *comb;
5601 1.1 jonathan struct enc_xform *algo;
5602 1.1 jonathan struct mbuf *result = NULL, *m, *n;
5603 1.1 jonathan int encmin;
5604 1.1 jonathan int i, off, o;
5605 1.1 jonathan int totlen;
5606 1.1 jonathan const int l = PFKEY_ALIGN8(sizeof(struct sadb_comb));
5607 1.1 jonathan
5608 1.1 jonathan m = NULL;
5609 1.1 jonathan for (i = 1; i <= SADB_EALG_MAX; i++) {
5610 1.1 jonathan algo = esp_algorithm_lookup(i);
5611 1.1 jonathan if (algo == NULL)
5612 1.1 jonathan continue;
5613 1.1 jonathan
5614 1.1 jonathan /* discard algorithms with key size smaller than system min */
5615 1.1 jonathan if (_BITS(algo->maxkey) < ipsec_esp_keymin)
5616 1.1 jonathan continue;
5617 1.1 jonathan if (_BITS(algo->minkey) < ipsec_esp_keymin)
5618 1.1 jonathan encmin = ipsec_esp_keymin;
5619 1.1 jonathan else
5620 1.1 jonathan encmin = _BITS(algo->minkey);
5621 1.1 jonathan
5622 1.1 jonathan if (ipsec_esp_auth)
5623 1.1 jonathan m = key_getcomb_ah();
5624 1.1 jonathan else {
5625 1.1 jonathan IPSEC_ASSERT(l <= MLEN,
5626 1.1 jonathan ("key_getcomb_esp: l=%u > MLEN=%lu",
5627 1.1 jonathan l, (u_long) MLEN));
5628 1.1 jonathan MGET(m, M_DONTWAIT, MT_DATA);
5629 1.1 jonathan if (m) {
5630 1.1 jonathan M_ALIGN(m, l);
5631 1.1 jonathan m->m_len = l;
5632 1.1 jonathan m->m_next = NULL;
5633 1.1 jonathan bzero(mtod(m, caddr_t), m->m_len);
5634 1.1 jonathan }
5635 1.1 jonathan }
5636 1.1 jonathan if (!m)
5637 1.1 jonathan goto fail;
5638 1.1 jonathan
5639 1.1 jonathan totlen = 0;
5640 1.1 jonathan for (n = m; n; n = n->m_next)
5641 1.1 jonathan totlen += n->m_len;
5642 1.1 jonathan IPSEC_ASSERT((totlen % l) == 0,
5643 1.1 jonathan ("key_getcomb_esp: totlen=%u, l=%u", totlen, l));
5644 1.1 jonathan
5645 1.1 jonathan for (off = 0; off < totlen; off += l) {
5646 1.1 jonathan n = m_pulldown(m, off, l, &o);
5647 1.1 jonathan if (!n) {
5648 1.1 jonathan /* m is already freed */
5649 1.1 jonathan goto fail;
5650 1.1 jonathan }
5651 1.1 jonathan comb = (struct sadb_comb *)(mtod(n, caddr_t) + o);
5652 1.1 jonathan bzero(comb, sizeof(*comb));
5653 1.1 jonathan key_getcomb_setlifetime(comb);
5654 1.1 jonathan comb->sadb_comb_encrypt = i;
5655 1.1 jonathan comb->sadb_comb_encrypt_minbits = encmin;
5656 1.1 jonathan comb->sadb_comb_encrypt_maxbits = _BITS(algo->maxkey);
5657 1.1 jonathan }
5658 1.1 jonathan
5659 1.1 jonathan if (!result)
5660 1.1 jonathan result = m;
5661 1.1 jonathan else
5662 1.1 jonathan m_cat(result, m);
5663 1.1 jonathan }
5664 1.1 jonathan
5665 1.1 jonathan return result;
5666 1.1 jonathan
5667 1.1 jonathan fail:
5668 1.1 jonathan if (result)
5669 1.1 jonathan m_freem(result);
5670 1.1 jonathan return NULL;
5671 1.1 jonathan }
5672 1.1 jonathan
5673 1.1 jonathan static void
5674 1.1 jonathan key_getsizes_ah(
5675 1.1 jonathan const struct auth_hash *ah,
5676 1.1 jonathan int alg,
5677 1.25 christos u_int16_t* ksmin,
5678 1.25 christos u_int16_t* ksmax)
5679 1.1 jonathan {
5680 1.25 christos *ksmin = *ksmax = ah->keysize;
5681 1.1 jonathan if (ah->keysize == 0) {
5682 1.1 jonathan /*
5683 1.1 jonathan * Transform takes arbitrary key size but algorithm
5684 1.1 jonathan * key size is restricted. Enforce this here.
5685 1.1 jonathan */
5686 1.1 jonathan switch (alg) {
5687 1.25 christos case SADB_X_AALG_MD5: *ksmin = *ksmax = 16; break;
5688 1.25 christos case SADB_X_AALG_SHA: *ksmin = *ksmax = 20; break;
5689 1.25 christos case SADB_X_AALG_NULL: *ksmin = 1; *ksmax = 256; break;
5690 1.1 jonathan default:
5691 1.1 jonathan DPRINTF(("key_getsizes_ah: unknown AH algorithm %u\n",
5692 1.1 jonathan alg));
5693 1.1 jonathan break;
5694 1.1 jonathan }
5695 1.1 jonathan }
5696 1.1 jonathan }
5697 1.1 jonathan
5698 1.1 jonathan /*
5699 1.1 jonathan * XXX reorder combinations by preference
5700 1.1 jonathan */
5701 1.1 jonathan static struct mbuf *
5702 1.1 jonathan key_getcomb_ah()
5703 1.1 jonathan {
5704 1.1 jonathan struct sadb_comb *comb;
5705 1.1 jonathan struct auth_hash *algo;
5706 1.1 jonathan struct mbuf *m;
5707 1.1 jonathan u_int16_t minkeysize, maxkeysize;
5708 1.1 jonathan int i;
5709 1.1 jonathan const int l = PFKEY_ALIGN8(sizeof(struct sadb_comb));
5710 1.1 jonathan
5711 1.1 jonathan m = NULL;
5712 1.1 jonathan for (i = 1; i <= SADB_AALG_MAX; i++) {
5713 1.1 jonathan #if 1
5714 1.1 jonathan /* we prefer HMAC algorithms, not old algorithms */
5715 1.1 jonathan if (i != SADB_AALG_SHA1HMAC && i != SADB_AALG_MD5HMAC)
5716 1.1 jonathan continue;
5717 1.1 jonathan #endif
5718 1.1 jonathan algo = ah_algorithm_lookup(i);
5719 1.1 jonathan if (!algo)
5720 1.1 jonathan continue;
5721 1.1 jonathan key_getsizes_ah(algo, i, &minkeysize, &maxkeysize);
5722 1.1 jonathan /* discard algorithms with key size smaller than system min */
5723 1.1 jonathan if (_BITS(minkeysize) < ipsec_ah_keymin)
5724 1.1 jonathan continue;
5725 1.1 jonathan
5726 1.1 jonathan if (!m) {
5727 1.1 jonathan IPSEC_ASSERT(l <= MLEN,
5728 1.1 jonathan ("key_getcomb_ah: l=%u > MLEN=%lu",
5729 1.1 jonathan l, (u_long) MLEN));
5730 1.1 jonathan MGET(m, M_DONTWAIT, MT_DATA);
5731 1.1 jonathan if (m) {
5732 1.1 jonathan M_ALIGN(m, l);
5733 1.1 jonathan m->m_len = l;
5734 1.1 jonathan m->m_next = NULL;
5735 1.1 jonathan }
5736 1.1 jonathan } else
5737 1.1 jonathan M_PREPEND(m, l, M_DONTWAIT);
5738 1.1 jonathan if (!m)
5739 1.1 jonathan return NULL;
5740 1.1 jonathan
5741 1.1 jonathan comb = mtod(m, struct sadb_comb *);
5742 1.1 jonathan bzero(comb, sizeof(*comb));
5743 1.1 jonathan key_getcomb_setlifetime(comb);
5744 1.1 jonathan comb->sadb_comb_auth = i;
5745 1.1 jonathan comb->sadb_comb_auth_minbits = _BITS(minkeysize);
5746 1.1 jonathan comb->sadb_comb_auth_maxbits = _BITS(maxkeysize);
5747 1.1 jonathan }
5748 1.1 jonathan
5749 1.1 jonathan return m;
5750 1.1 jonathan }
5751 1.1 jonathan
5752 1.1 jonathan /*
5753 1.1 jonathan * not really an official behavior. discussed in pf_key (at) inner.net in Sep2000.
5754 1.1 jonathan * XXX reorder combinations by preference
5755 1.1 jonathan */
5756 1.1 jonathan static struct mbuf *
5757 1.1 jonathan key_getcomb_ipcomp()
5758 1.1 jonathan {
5759 1.1 jonathan struct sadb_comb *comb;
5760 1.1 jonathan struct comp_algo *algo;
5761 1.1 jonathan struct mbuf *m;
5762 1.1 jonathan int i;
5763 1.1 jonathan const int l = PFKEY_ALIGN8(sizeof(struct sadb_comb));
5764 1.1 jonathan
5765 1.1 jonathan m = NULL;
5766 1.1 jonathan for (i = 1; i <= SADB_X_CALG_MAX; i++) {
5767 1.1 jonathan algo = ipcomp_algorithm_lookup(i);
5768 1.1 jonathan if (!algo)
5769 1.1 jonathan continue;
5770 1.1 jonathan
5771 1.1 jonathan if (!m) {
5772 1.1 jonathan IPSEC_ASSERT(l <= MLEN,
5773 1.1 jonathan ("key_getcomb_ipcomp: l=%u > MLEN=%lu",
5774 1.1 jonathan l, (u_long) MLEN));
5775 1.1 jonathan MGET(m, M_DONTWAIT, MT_DATA);
5776 1.1 jonathan if (m) {
5777 1.1 jonathan M_ALIGN(m, l);
5778 1.1 jonathan m->m_len = l;
5779 1.1 jonathan m->m_next = NULL;
5780 1.1 jonathan }
5781 1.1 jonathan } else
5782 1.1 jonathan M_PREPEND(m, l, M_DONTWAIT);
5783 1.1 jonathan if (!m)
5784 1.1 jonathan return NULL;
5785 1.1 jonathan
5786 1.1 jonathan comb = mtod(m, struct sadb_comb *);
5787 1.1 jonathan bzero(comb, sizeof(*comb));
5788 1.1 jonathan key_getcomb_setlifetime(comb);
5789 1.1 jonathan comb->sadb_comb_encrypt = i;
5790 1.1 jonathan /* what should we set into sadb_comb_*_{min,max}bits? */
5791 1.1 jonathan }
5792 1.1 jonathan
5793 1.1 jonathan return m;
5794 1.1 jonathan }
5795 1.1 jonathan
5796 1.1 jonathan /*
5797 1.1 jonathan * XXX no way to pass mode (transport/tunnel) to userland
5798 1.1 jonathan * XXX replay checking?
5799 1.1 jonathan * XXX sysctl interface to ipsec_{ah,esp}_keymin
5800 1.1 jonathan */
5801 1.1 jonathan static struct mbuf *
5802 1.1 jonathan key_getprop(saidx)
5803 1.1 jonathan const struct secasindex *saidx;
5804 1.1 jonathan {
5805 1.1 jonathan struct sadb_prop *prop;
5806 1.1 jonathan struct mbuf *m, *n;
5807 1.1 jonathan const int l = PFKEY_ALIGN8(sizeof(struct sadb_prop));
5808 1.1 jonathan int totlen;
5809 1.1 jonathan
5810 1.1 jonathan switch (saidx->proto) {
5811 1.1 jonathan case IPPROTO_ESP:
5812 1.1 jonathan m = key_getcomb_esp();
5813 1.1 jonathan break;
5814 1.1 jonathan case IPPROTO_AH:
5815 1.1 jonathan m = key_getcomb_ah();
5816 1.1 jonathan break;
5817 1.1 jonathan case IPPROTO_IPCOMP:
5818 1.1 jonathan m = key_getcomb_ipcomp();
5819 1.1 jonathan break;
5820 1.1 jonathan default:
5821 1.1 jonathan return NULL;
5822 1.1 jonathan }
5823 1.1 jonathan
5824 1.1 jonathan if (!m)
5825 1.1 jonathan return NULL;
5826 1.1 jonathan M_PREPEND(m, l, M_DONTWAIT);
5827 1.1 jonathan if (!m)
5828 1.1 jonathan return NULL;
5829 1.1 jonathan
5830 1.1 jonathan totlen = 0;
5831 1.1 jonathan for (n = m; n; n = n->m_next)
5832 1.1 jonathan totlen += n->m_len;
5833 1.1 jonathan
5834 1.1 jonathan prop = mtod(m, struct sadb_prop *);
5835 1.1 jonathan bzero(prop, sizeof(*prop));
5836 1.1 jonathan prop->sadb_prop_len = PFKEY_UNIT64(totlen);
5837 1.1 jonathan prop->sadb_prop_exttype = SADB_EXT_PROPOSAL;
5838 1.1 jonathan prop->sadb_prop_replay = 32; /* XXX */
5839 1.1 jonathan
5840 1.1 jonathan return m;
5841 1.1 jonathan }
5842 1.1 jonathan
5843 1.1 jonathan /*
5844 1.1 jonathan * SADB_ACQUIRE processing called by key_checkrequest() and key_acquire2().
5845 1.1 jonathan * send
5846 1.1 jonathan * <base, SA, address(SD), (address(P)), x_policy,
5847 1.1 jonathan * (identity(SD),) (sensitivity,) proposal>
5848 1.1 jonathan * to KMD, and expect to receive
5849 1.7 wiz * <base> with SADB_ACQUIRE if error occurred,
5850 1.1 jonathan * or
5851 1.1 jonathan * <base, src address, dst address, (SPI range)> with SADB_GETSPI
5852 1.1 jonathan * from KMD by PF_KEY.
5853 1.1 jonathan *
5854 1.1 jonathan * XXX x_policy is outside of RFC2367 (KAME extension).
5855 1.1 jonathan * XXX sensitivity is not supported.
5856 1.1 jonathan * XXX for ipcomp, RFC2367 does not define how to fill in proposal.
5857 1.1 jonathan * see comment for key_getcomb_ipcomp().
5858 1.1 jonathan *
5859 1.1 jonathan * OUT:
5860 1.1 jonathan * 0 : succeed
5861 1.1 jonathan * others: error number
5862 1.1 jonathan */
5863 1.1 jonathan static int
5864 1.1 jonathan key_acquire(const struct secasindex *saidx, struct secpolicy *sp)
5865 1.1 jonathan {
5866 1.1 jonathan struct mbuf *result = NULL, *m;
5867 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
5868 1.1 jonathan struct secacq *newacq;
5869 1.1 jonathan #endif
5870 1.1 jonathan u_int8_t satype;
5871 1.1 jonathan int error = -1;
5872 1.1 jonathan u_int32_t seq;
5873 1.1 jonathan
5874 1.1 jonathan /* sanity check */
5875 1.1 jonathan IPSEC_ASSERT(saidx != NULL, ("key_acquire: null saidx"));
5876 1.1 jonathan satype = key_proto2satype(saidx->proto);
5877 1.1 jonathan IPSEC_ASSERT(satype != 0,
5878 1.1 jonathan ("key_acquire: null satype, protocol %u", saidx->proto));
5879 1.1 jonathan
5880 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
5881 1.1 jonathan /*
5882 1.1 jonathan * We never do anything about acquirng SA. There is anather
5883 1.1 jonathan * solution that kernel blocks to send SADB_ACQUIRE message until
5884 1.1 jonathan * getting something message from IKEd. In later case, to be
5885 1.1 jonathan * managed with ACQUIRING list.
5886 1.1 jonathan */
5887 1.1 jonathan /* Get an entry to check whether sending message or not. */
5888 1.1 jonathan if ((newacq = key_getacq(saidx)) != NULL) {
5889 1.1 jonathan if (key_blockacq_count < newacq->count) {
5890 1.1 jonathan /* reset counter and do send message. */
5891 1.1 jonathan newacq->count = 0;
5892 1.1 jonathan } else {
5893 1.1 jonathan /* increment counter and do nothing. */
5894 1.1 jonathan newacq->count++;
5895 1.1 jonathan return 0;
5896 1.1 jonathan }
5897 1.1 jonathan } else {
5898 1.1 jonathan /* make new entry for blocking to send SADB_ACQUIRE. */
5899 1.1 jonathan if ((newacq = key_newacq(saidx)) == NULL)
5900 1.1 jonathan return ENOBUFS;
5901 1.1 jonathan
5902 1.1 jonathan /* add to acqtree */
5903 1.1 jonathan LIST_INSERT_HEAD(&acqtree, newacq, chain);
5904 1.1 jonathan }
5905 1.1 jonathan #endif
5906 1.1 jonathan
5907 1.1 jonathan
5908 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
5909 1.1 jonathan seq = newacq->seq;
5910 1.1 jonathan #else
5911 1.1 jonathan seq = (acq_seq = (acq_seq == ~0 ? 1 : ++acq_seq));
5912 1.1 jonathan #endif
5913 1.1 jonathan m = key_setsadbmsg(SADB_ACQUIRE, 0, satype, seq, 0, 0);
5914 1.1 jonathan if (!m) {
5915 1.1 jonathan error = ENOBUFS;
5916 1.1 jonathan goto fail;
5917 1.1 jonathan }
5918 1.1 jonathan result = m;
5919 1.1 jonathan
5920 1.1 jonathan /* set sadb_address for saidx's. */
5921 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_SRC,
5922 1.1 jonathan &saidx->src.sa, FULLMASK, IPSEC_ULPROTO_ANY);
5923 1.1 jonathan if (!m) {
5924 1.1 jonathan error = ENOBUFS;
5925 1.1 jonathan goto fail;
5926 1.1 jonathan }
5927 1.1 jonathan m_cat(result, m);
5928 1.1 jonathan
5929 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_DST,
5930 1.1 jonathan &saidx->dst.sa, FULLMASK, IPSEC_ULPROTO_ANY);
5931 1.1 jonathan if (!m) {
5932 1.1 jonathan error = ENOBUFS;
5933 1.1 jonathan goto fail;
5934 1.1 jonathan }
5935 1.1 jonathan m_cat(result, m);
5936 1.1 jonathan
5937 1.1 jonathan /* XXX proxy address (optional) */
5938 1.1 jonathan
5939 1.1 jonathan /* set sadb_x_policy */
5940 1.1 jonathan if (sp) {
5941 1.1 jonathan m = key_setsadbxpolicy(sp->policy, sp->spidx.dir, sp->id);
5942 1.1 jonathan if (!m) {
5943 1.1 jonathan error = ENOBUFS;
5944 1.1 jonathan goto fail;
5945 1.1 jonathan }
5946 1.1 jonathan m_cat(result, m);
5947 1.1 jonathan }
5948 1.1 jonathan
5949 1.1 jonathan /* XXX identity (optional) */
5950 1.1 jonathan #if 0
5951 1.1 jonathan if (idexttype && fqdn) {
5952 1.1 jonathan /* create identity extension (FQDN) */
5953 1.1 jonathan struct sadb_ident *id;
5954 1.1 jonathan int fqdnlen;
5955 1.1 jonathan
5956 1.1 jonathan fqdnlen = strlen(fqdn) + 1; /* +1 for terminating-NUL */
5957 1.1 jonathan id = (struct sadb_ident *)p;
5958 1.1 jonathan bzero(id, sizeof(*id) + PFKEY_ALIGN8(fqdnlen));
5959 1.1 jonathan id->sadb_ident_len = PFKEY_UNIT64(sizeof(*id) + PFKEY_ALIGN8(fqdnlen));
5960 1.1 jonathan id->sadb_ident_exttype = idexttype;
5961 1.1 jonathan id->sadb_ident_type = SADB_IDENTTYPE_FQDN;
5962 1.1 jonathan bcopy(fqdn, id + 1, fqdnlen);
5963 1.1 jonathan p += sizeof(struct sadb_ident) + PFKEY_ALIGN8(fqdnlen);
5964 1.1 jonathan }
5965 1.1 jonathan
5966 1.1 jonathan if (idexttype) {
5967 1.1 jonathan /* create identity extension (USERFQDN) */
5968 1.1 jonathan struct sadb_ident *id;
5969 1.1 jonathan int userfqdnlen;
5970 1.1 jonathan
5971 1.1 jonathan if (userfqdn) {
5972 1.1 jonathan /* +1 for terminating-NUL */
5973 1.1 jonathan userfqdnlen = strlen(userfqdn) + 1;
5974 1.1 jonathan } else
5975 1.1 jonathan userfqdnlen = 0;
5976 1.1 jonathan id = (struct sadb_ident *)p;
5977 1.1 jonathan bzero(id, sizeof(*id) + PFKEY_ALIGN8(userfqdnlen));
5978 1.1 jonathan id->sadb_ident_len = PFKEY_UNIT64(sizeof(*id) + PFKEY_ALIGN8(userfqdnlen));
5979 1.1 jonathan id->sadb_ident_exttype = idexttype;
5980 1.1 jonathan id->sadb_ident_type = SADB_IDENTTYPE_USERFQDN;
5981 1.1 jonathan /* XXX is it correct? */
5982 1.28 ad if (curlwp)
5983 1.28 ad id->sadb_ident_id = kauth_cred_getuid(curlwp->l_cred);
5984 1.1 jonathan if (userfqdn && userfqdnlen)
5985 1.1 jonathan bcopy(userfqdn, id + 1, userfqdnlen);
5986 1.1 jonathan p += sizeof(struct sadb_ident) + PFKEY_ALIGN8(userfqdnlen);
5987 1.1 jonathan }
5988 1.1 jonathan #endif
5989 1.1 jonathan
5990 1.1 jonathan /* XXX sensitivity (optional) */
5991 1.1 jonathan
5992 1.1 jonathan /* create proposal/combination extension */
5993 1.1 jonathan m = key_getprop(saidx);
5994 1.1 jonathan #if 0
5995 1.1 jonathan /*
5996 1.1 jonathan * spec conformant: always attach proposal/combination extension,
5997 1.1 jonathan * the problem is that we have no way to attach it for ipcomp,
5998 1.1 jonathan * due to the way sadb_comb is declared in RFC2367.
5999 1.1 jonathan */
6000 1.1 jonathan if (!m) {
6001 1.1 jonathan error = ENOBUFS;
6002 1.1 jonathan goto fail;
6003 1.1 jonathan }
6004 1.1 jonathan m_cat(result, m);
6005 1.1 jonathan #else
6006 1.1 jonathan /*
6007 1.1 jonathan * outside of spec; make proposal/combination extension optional.
6008 1.1 jonathan */
6009 1.1 jonathan if (m)
6010 1.1 jonathan m_cat(result, m);
6011 1.1 jonathan #endif
6012 1.1 jonathan
6013 1.1 jonathan if ((result->m_flags & M_PKTHDR) == 0) {
6014 1.1 jonathan error = EINVAL;
6015 1.1 jonathan goto fail;
6016 1.1 jonathan }
6017 1.1 jonathan
6018 1.1 jonathan if (result->m_len < sizeof(struct sadb_msg)) {
6019 1.1 jonathan result = m_pullup(result, sizeof(struct sadb_msg));
6020 1.1 jonathan if (result == NULL) {
6021 1.1 jonathan error = ENOBUFS;
6022 1.1 jonathan goto fail;
6023 1.1 jonathan }
6024 1.1 jonathan }
6025 1.1 jonathan
6026 1.1 jonathan result->m_pkthdr.len = 0;
6027 1.1 jonathan for (m = result; m; m = m->m_next)
6028 1.1 jonathan result->m_pkthdr.len += m->m_len;
6029 1.1 jonathan
6030 1.1 jonathan mtod(result, struct sadb_msg *)->sadb_msg_len =
6031 1.1 jonathan PFKEY_UNIT64(result->m_pkthdr.len);
6032 1.1 jonathan
6033 1.1 jonathan return key_sendup_mbuf(NULL, result, KEY_SENDUP_REGISTERED);
6034 1.1 jonathan
6035 1.1 jonathan fail:
6036 1.1 jonathan if (result)
6037 1.1 jonathan m_freem(result);
6038 1.1 jonathan return error;
6039 1.1 jonathan }
6040 1.1 jonathan
6041 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
6042 1.1 jonathan static struct secacq *
6043 1.1 jonathan key_newacq(const struct secasindex *saidx)
6044 1.1 jonathan {
6045 1.1 jonathan struct secacq *newacq;
6046 1.1 jonathan
6047 1.1 jonathan /* get new entry */
6048 1.1 jonathan KMALLOC(newacq, struct secacq *, sizeof(struct secacq));
6049 1.1 jonathan if (newacq == NULL) {
6050 1.1 jonathan ipseclog((LOG_DEBUG, "key_newacq: No more memory.\n"));
6051 1.1 jonathan return NULL;
6052 1.1 jonathan }
6053 1.1 jonathan bzero(newacq, sizeof(*newacq));
6054 1.1 jonathan
6055 1.1 jonathan /* copy secindex */
6056 1.1 jonathan bcopy(saidx, &newacq->saidx, sizeof(newacq->saidx));
6057 1.1 jonathan newacq->seq = (acq_seq == ~0 ? 1 : ++acq_seq);
6058 1.1 jonathan newacq->created = time_second;
6059 1.1 jonathan newacq->count = 0;
6060 1.1 jonathan
6061 1.1 jonathan return newacq;
6062 1.1 jonathan }
6063 1.1 jonathan
6064 1.1 jonathan static struct secacq *
6065 1.1 jonathan key_getacq(const struct secasindex *saidx)
6066 1.1 jonathan {
6067 1.1 jonathan struct secacq *acq;
6068 1.1 jonathan
6069 1.1 jonathan LIST_FOREACH(acq, &acqtree, chain) {
6070 1.1 jonathan if (key_cmpsaidx(saidx, &acq->saidx, CMP_EXACTLY))
6071 1.1 jonathan return acq;
6072 1.1 jonathan }
6073 1.1 jonathan
6074 1.1 jonathan return NULL;
6075 1.1 jonathan }
6076 1.1 jonathan
6077 1.1 jonathan static struct secacq *
6078 1.1 jonathan key_getacqbyseq(seq)
6079 1.1 jonathan u_int32_t seq;
6080 1.1 jonathan {
6081 1.1 jonathan struct secacq *acq;
6082 1.1 jonathan
6083 1.1 jonathan LIST_FOREACH(acq, &acqtree, chain) {
6084 1.1 jonathan if (acq->seq == seq)
6085 1.1 jonathan return acq;
6086 1.1 jonathan }
6087 1.1 jonathan
6088 1.1 jonathan return NULL;
6089 1.1 jonathan }
6090 1.1 jonathan #endif
6091 1.1 jonathan
6092 1.1 jonathan static struct secspacq *
6093 1.1 jonathan key_newspacq(spidx)
6094 1.1 jonathan struct secpolicyindex *spidx;
6095 1.1 jonathan {
6096 1.1 jonathan struct secspacq *acq;
6097 1.1 jonathan
6098 1.1 jonathan /* get new entry */
6099 1.1 jonathan KMALLOC(acq, struct secspacq *, sizeof(struct secspacq));
6100 1.1 jonathan if (acq == NULL) {
6101 1.1 jonathan ipseclog((LOG_DEBUG, "key_newspacq: No more memory.\n"));
6102 1.1 jonathan return NULL;
6103 1.1 jonathan }
6104 1.1 jonathan bzero(acq, sizeof(*acq));
6105 1.1 jonathan
6106 1.1 jonathan /* copy secindex */
6107 1.1 jonathan bcopy(spidx, &acq->spidx, sizeof(acq->spidx));
6108 1.1 jonathan acq->created = time_second;
6109 1.1 jonathan acq->count = 0;
6110 1.1 jonathan
6111 1.1 jonathan return acq;
6112 1.1 jonathan }
6113 1.1 jonathan
6114 1.1 jonathan static struct secspacq *
6115 1.1 jonathan key_getspacq(spidx)
6116 1.1 jonathan struct secpolicyindex *spidx;
6117 1.1 jonathan {
6118 1.1 jonathan struct secspacq *acq;
6119 1.1 jonathan
6120 1.1 jonathan LIST_FOREACH(acq, &spacqtree, chain) {
6121 1.1 jonathan if (key_cmpspidx_exactly(spidx, &acq->spidx))
6122 1.1 jonathan return acq;
6123 1.1 jonathan }
6124 1.1 jonathan
6125 1.1 jonathan return NULL;
6126 1.1 jonathan }
6127 1.1 jonathan
6128 1.1 jonathan /*
6129 1.1 jonathan * SADB_ACQUIRE processing,
6130 1.1 jonathan * in first situation, is receiving
6131 1.1 jonathan * <base>
6132 1.1 jonathan * from the ikmpd, and clear sequence of its secasvar entry.
6133 1.1 jonathan *
6134 1.1 jonathan * In second situation, is receiving
6135 1.1 jonathan * <base, address(SD), (address(P),) (identity(SD),) (sensitivity,) proposal>
6136 1.1 jonathan * from a user land process, and return
6137 1.1 jonathan * <base, address(SD), (address(P),) (identity(SD),) (sensitivity,) proposal>
6138 1.1 jonathan * to the socket.
6139 1.1 jonathan *
6140 1.1 jonathan * m will always be freed.
6141 1.1 jonathan */
6142 1.1 jonathan static int
6143 1.1 jonathan key_acquire2(so, m, mhp)
6144 1.1 jonathan struct socket *so;
6145 1.1 jonathan struct mbuf *m;
6146 1.1 jonathan const struct sadb_msghdr *mhp;
6147 1.1 jonathan {
6148 1.1 jonathan const struct sadb_address *src0, *dst0;
6149 1.1 jonathan struct secasindex saidx;
6150 1.1 jonathan struct secashead *sah;
6151 1.1 jonathan u_int16_t proto;
6152 1.1 jonathan int error;
6153 1.1 jonathan
6154 1.1 jonathan /* sanity check */
6155 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
6156 1.24 christos panic("key_acquire2: NULL pointer is passed");
6157 1.1 jonathan
6158 1.1 jonathan /*
6159 1.1 jonathan * Error message from KMd.
6160 1.7 wiz * We assume that if error was occurred in IKEd, the length of PFKEY
6161 1.1 jonathan * message is equal to the size of sadb_msg structure.
6162 1.7 wiz * We do not raise error even if error occurred in this function.
6163 1.1 jonathan */
6164 1.1 jonathan if (mhp->msg->sadb_msg_len == PFKEY_UNIT64(sizeof(struct sadb_msg))) {
6165 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
6166 1.1 jonathan struct secacq *acq;
6167 1.1 jonathan
6168 1.1 jonathan /* check sequence number */
6169 1.1 jonathan if (mhp->msg->sadb_msg_seq == 0) {
6170 1.1 jonathan ipseclog((LOG_DEBUG, "key_acquire2: must specify sequence number.\n"));
6171 1.1 jonathan m_freem(m);
6172 1.1 jonathan return 0;
6173 1.1 jonathan }
6174 1.1 jonathan
6175 1.1 jonathan if ((acq = key_getacqbyseq(mhp->msg->sadb_msg_seq)) == NULL) {
6176 1.1 jonathan /*
6177 1.1 jonathan * the specified larval SA is already gone, or we got
6178 1.1 jonathan * a bogus sequence number. we can silently ignore it.
6179 1.1 jonathan */
6180 1.1 jonathan m_freem(m);
6181 1.1 jonathan return 0;
6182 1.1 jonathan }
6183 1.1 jonathan
6184 1.1 jonathan /* reset acq counter in order to deletion by timehander. */
6185 1.1 jonathan acq->created = time_second;
6186 1.1 jonathan acq->count = 0;
6187 1.1 jonathan #endif
6188 1.1 jonathan m_freem(m);
6189 1.1 jonathan return 0;
6190 1.1 jonathan }
6191 1.1 jonathan
6192 1.1 jonathan /*
6193 1.1 jonathan * This message is from user land.
6194 1.1 jonathan */
6195 1.1 jonathan
6196 1.1 jonathan /* map satype to proto */
6197 1.1 jonathan if ((proto = key_satype2proto(mhp->msg->sadb_msg_satype)) == 0) {
6198 1.1 jonathan ipseclog((LOG_DEBUG, "key_acquire2: invalid satype is passed.\n"));
6199 1.1 jonathan return key_senderror(so, m, EINVAL);
6200 1.1 jonathan }
6201 1.1 jonathan
6202 1.1 jonathan if (mhp->ext[SADB_EXT_ADDRESS_SRC] == NULL ||
6203 1.1 jonathan mhp->ext[SADB_EXT_ADDRESS_DST] == NULL ||
6204 1.1 jonathan mhp->ext[SADB_EXT_PROPOSAL] == NULL) {
6205 1.1 jonathan /* error */
6206 1.1 jonathan ipseclog((LOG_DEBUG, "key_acquire2: invalid message is passed.\n"));
6207 1.1 jonathan return key_senderror(so, m, EINVAL);
6208 1.1 jonathan }
6209 1.1 jonathan if (mhp->extlen[SADB_EXT_ADDRESS_SRC] < sizeof(struct sadb_address) ||
6210 1.1 jonathan mhp->extlen[SADB_EXT_ADDRESS_DST] < sizeof(struct sadb_address) ||
6211 1.1 jonathan mhp->extlen[SADB_EXT_PROPOSAL] < sizeof(struct sadb_prop)) {
6212 1.1 jonathan /* error */
6213 1.1 jonathan ipseclog((LOG_DEBUG, "key_acquire2: invalid message is passed.\n"));
6214 1.1 jonathan return key_senderror(so, m, EINVAL);
6215 1.1 jonathan }
6216 1.1 jonathan
6217 1.1 jonathan src0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_SRC];
6218 1.1 jonathan dst0 = (struct sadb_address *)mhp->ext[SADB_EXT_ADDRESS_DST];
6219 1.1 jonathan
6220 1.1 jonathan /* XXX boundary check against sa_len */
6221 1.1 jonathan KEY_SETSECASIDX(proto, IPSEC_MODE_ANY, 0, src0 + 1, dst0 + 1, &saidx);
6222 1.1 jonathan
6223 1.1 jonathan /* get a SA index */
6224 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
6225 1.1 jonathan if (sah->state == SADB_SASTATE_DEAD)
6226 1.1 jonathan continue;
6227 1.1 jonathan if (key_cmpsaidx(&sah->saidx, &saidx, CMP_MODE_REQID))
6228 1.1 jonathan break;
6229 1.1 jonathan }
6230 1.1 jonathan if (sah != NULL) {
6231 1.1 jonathan ipseclog((LOG_DEBUG, "key_acquire2: a SA exists already.\n"));
6232 1.1 jonathan return key_senderror(so, m, EEXIST);
6233 1.1 jonathan }
6234 1.1 jonathan
6235 1.1 jonathan error = key_acquire(&saidx, NULL);
6236 1.1 jonathan if (error != 0) {
6237 1.1 jonathan ipseclog((LOG_DEBUG, "key_acquire2: error %d returned "
6238 1.1 jonathan "from key_acquire.\n", mhp->msg->sadb_msg_errno));
6239 1.1 jonathan return key_senderror(so, m, error);
6240 1.1 jonathan }
6241 1.1 jonathan
6242 1.1 jonathan return key_sendup_mbuf(so, m, KEY_SENDUP_REGISTERED);
6243 1.1 jonathan }
6244 1.1 jonathan
6245 1.1 jonathan /*
6246 1.1 jonathan * SADB_REGISTER processing.
6247 1.1 jonathan * If SATYPE_UNSPEC has been passed as satype, only return sabd_supported.
6248 1.1 jonathan * receive
6249 1.1 jonathan * <base>
6250 1.1 jonathan * from the ikmpd, and register a socket to send PF_KEY messages,
6251 1.1 jonathan * and send
6252 1.1 jonathan * <base, supported>
6253 1.1 jonathan * to KMD by PF_KEY.
6254 1.1 jonathan * If socket is detached, must free from regnode.
6255 1.1 jonathan *
6256 1.1 jonathan * m will always be freed.
6257 1.1 jonathan */
6258 1.1 jonathan static int
6259 1.1 jonathan key_register(so, m, mhp)
6260 1.1 jonathan struct socket *so;
6261 1.1 jonathan struct mbuf *m;
6262 1.1 jonathan const struct sadb_msghdr *mhp;
6263 1.1 jonathan {
6264 1.1 jonathan struct secreg *reg, *newreg = 0;
6265 1.1 jonathan
6266 1.1 jonathan /* sanity check */
6267 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
6268 1.24 christos panic("key_register: NULL pointer is passed");
6269 1.1 jonathan
6270 1.1 jonathan /* check for invalid register message */
6271 1.1 jonathan if (mhp->msg->sadb_msg_satype >= sizeof(regtree)/sizeof(regtree[0]))
6272 1.1 jonathan return key_senderror(so, m, EINVAL);
6273 1.1 jonathan
6274 1.1 jonathan /* When SATYPE_UNSPEC is specified, only return sabd_supported. */
6275 1.1 jonathan if (mhp->msg->sadb_msg_satype == SADB_SATYPE_UNSPEC)
6276 1.1 jonathan goto setmsg;
6277 1.1 jonathan
6278 1.1 jonathan /* check whether existing or not */
6279 1.1 jonathan LIST_FOREACH(reg, ®tree[mhp->msg->sadb_msg_satype], chain) {
6280 1.1 jonathan if (reg->so == so) {
6281 1.1 jonathan ipseclog((LOG_DEBUG, "key_register: socket exists already.\n"));
6282 1.1 jonathan return key_senderror(so, m, EEXIST);
6283 1.1 jonathan }
6284 1.1 jonathan }
6285 1.1 jonathan
6286 1.1 jonathan /* create regnode */
6287 1.1 jonathan KMALLOC(newreg, struct secreg *, sizeof(*newreg));
6288 1.1 jonathan if (newreg == NULL) {
6289 1.1 jonathan ipseclog((LOG_DEBUG, "key_register: No more memory.\n"));
6290 1.1 jonathan return key_senderror(so, m, ENOBUFS);
6291 1.1 jonathan }
6292 1.1 jonathan bzero((caddr_t)newreg, sizeof(*newreg));
6293 1.1 jonathan
6294 1.1 jonathan newreg->so = so;
6295 1.1 jonathan ((struct keycb *)sotorawcb(so))->kp_registered++;
6296 1.1 jonathan
6297 1.1 jonathan /* add regnode to regtree. */
6298 1.1 jonathan LIST_INSERT_HEAD(®tree[mhp->msg->sadb_msg_satype], newreg, chain);
6299 1.1 jonathan
6300 1.1 jonathan setmsg:
6301 1.1 jonathan {
6302 1.1 jonathan struct mbuf *n;
6303 1.1 jonathan struct sadb_msg *newmsg;
6304 1.1 jonathan struct sadb_supported *sup;
6305 1.1 jonathan u_int len, alen, elen;
6306 1.1 jonathan int off;
6307 1.1 jonathan int i;
6308 1.1 jonathan struct sadb_alg *alg;
6309 1.1 jonathan
6310 1.1 jonathan /* create new sadb_msg to reply. */
6311 1.1 jonathan alen = 0;
6312 1.1 jonathan for (i = 1; i <= SADB_AALG_MAX; i++) {
6313 1.1 jonathan if (ah_algorithm_lookup(i))
6314 1.1 jonathan alen += sizeof(struct sadb_alg);
6315 1.1 jonathan }
6316 1.1 jonathan if (alen)
6317 1.1 jonathan alen += sizeof(struct sadb_supported);
6318 1.1 jonathan elen = 0;
6319 1.1 jonathan for (i = 1; i <= SADB_EALG_MAX; i++) {
6320 1.1 jonathan if (esp_algorithm_lookup(i))
6321 1.1 jonathan elen += sizeof(struct sadb_alg);
6322 1.1 jonathan }
6323 1.1 jonathan if (elen)
6324 1.1 jonathan elen += sizeof(struct sadb_supported);
6325 1.1 jonathan
6326 1.1 jonathan len = sizeof(struct sadb_msg) + alen + elen;
6327 1.1 jonathan
6328 1.1 jonathan if (len > MCLBYTES)
6329 1.1 jonathan return key_senderror(so, m, ENOBUFS);
6330 1.1 jonathan
6331 1.1 jonathan MGETHDR(n, M_DONTWAIT, MT_DATA);
6332 1.1 jonathan if (len > MHLEN) {
6333 1.1 jonathan MCLGET(n, M_DONTWAIT);
6334 1.1 jonathan if ((n->m_flags & M_EXT) == 0) {
6335 1.1 jonathan m_freem(n);
6336 1.1 jonathan n = NULL;
6337 1.1 jonathan }
6338 1.1 jonathan }
6339 1.1 jonathan if (!n)
6340 1.1 jonathan return key_senderror(so, m, ENOBUFS);
6341 1.1 jonathan
6342 1.1 jonathan n->m_pkthdr.len = n->m_len = len;
6343 1.1 jonathan n->m_next = NULL;
6344 1.1 jonathan off = 0;
6345 1.1 jonathan
6346 1.1 jonathan m_copydata(m, 0, sizeof(struct sadb_msg), mtod(n, caddr_t) + off);
6347 1.1 jonathan newmsg = mtod(n, struct sadb_msg *);
6348 1.1 jonathan newmsg->sadb_msg_errno = 0;
6349 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(len);
6350 1.1 jonathan off += PFKEY_ALIGN8(sizeof(struct sadb_msg));
6351 1.1 jonathan
6352 1.1 jonathan /* for authentication algorithm */
6353 1.1 jonathan if (alen) {
6354 1.1 jonathan sup = (struct sadb_supported *)(mtod(n, caddr_t) + off);
6355 1.1 jonathan sup->sadb_supported_len = PFKEY_UNIT64(alen);
6356 1.1 jonathan sup->sadb_supported_exttype = SADB_EXT_SUPPORTED_AUTH;
6357 1.1 jonathan off += PFKEY_ALIGN8(sizeof(*sup));
6358 1.1 jonathan
6359 1.1 jonathan for (i = 1; i <= SADB_AALG_MAX; i++) {
6360 1.1 jonathan struct auth_hash *aalgo;
6361 1.1 jonathan u_int16_t minkeysize, maxkeysize;
6362 1.1 jonathan
6363 1.1 jonathan aalgo = ah_algorithm_lookup(i);
6364 1.1 jonathan if (!aalgo)
6365 1.1 jonathan continue;
6366 1.1 jonathan alg = (struct sadb_alg *)(mtod(n, caddr_t) + off);
6367 1.1 jonathan alg->sadb_alg_id = i;
6368 1.1 jonathan alg->sadb_alg_ivlen = 0;
6369 1.1 jonathan key_getsizes_ah(aalgo, i, &minkeysize, &maxkeysize);
6370 1.1 jonathan alg->sadb_alg_minbits = _BITS(minkeysize);
6371 1.1 jonathan alg->sadb_alg_maxbits = _BITS(maxkeysize);
6372 1.1 jonathan off += PFKEY_ALIGN8(sizeof(*alg));
6373 1.1 jonathan }
6374 1.1 jonathan }
6375 1.1 jonathan
6376 1.1 jonathan /* for encryption algorithm */
6377 1.1 jonathan if (elen) {
6378 1.1 jonathan sup = (struct sadb_supported *)(mtod(n, caddr_t) + off);
6379 1.1 jonathan sup->sadb_supported_len = PFKEY_UNIT64(elen);
6380 1.1 jonathan sup->sadb_supported_exttype = SADB_EXT_SUPPORTED_ENCRYPT;
6381 1.1 jonathan off += PFKEY_ALIGN8(sizeof(*sup));
6382 1.1 jonathan
6383 1.1 jonathan for (i = 1; i <= SADB_EALG_MAX; i++) {
6384 1.1 jonathan struct enc_xform *ealgo;
6385 1.1 jonathan
6386 1.1 jonathan ealgo = esp_algorithm_lookup(i);
6387 1.1 jonathan if (!ealgo)
6388 1.1 jonathan continue;
6389 1.1 jonathan alg = (struct sadb_alg *)(mtod(n, caddr_t) + off);
6390 1.1 jonathan alg->sadb_alg_id = i;
6391 1.1 jonathan alg->sadb_alg_ivlen = ealgo->blocksize;
6392 1.1 jonathan alg->sadb_alg_minbits = _BITS(ealgo->minkey);
6393 1.1 jonathan alg->sadb_alg_maxbits = _BITS(ealgo->maxkey);
6394 1.1 jonathan off += PFKEY_ALIGN8(sizeof(struct sadb_alg));
6395 1.1 jonathan }
6396 1.1 jonathan }
6397 1.1 jonathan
6398 1.24 christos #ifdef DIAGNOSTIC
6399 1.1 jonathan if (off != len)
6400 1.1 jonathan panic("length assumption failed in key_register");
6401 1.1 jonathan #endif
6402 1.1 jonathan
6403 1.1 jonathan m_freem(m);
6404 1.1 jonathan return key_sendup_mbuf(so, n, KEY_SENDUP_REGISTERED);
6405 1.1 jonathan }
6406 1.1 jonathan }
6407 1.1 jonathan
6408 1.1 jonathan /*
6409 1.1 jonathan * free secreg entry registered.
6410 1.1 jonathan * XXX: I want to do free a socket marked done SADB_RESIGER to socket.
6411 1.1 jonathan */
6412 1.1 jonathan void
6413 1.1 jonathan key_freereg(so)
6414 1.1 jonathan struct socket *so;
6415 1.1 jonathan {
6416 1.1 jonathan struct secreg *reg;
6417 1.1 jonathan int i;
6418 1.1 jonathan
6419 1.1 jonathan /* sanity check */
6420 1.1 jonathan if (so == NULL)
6421 1.24 christos panic("key_freereg: NULL pointer is passed");
6422 1.1 jonathan
6423 1.1 jonathan /*
6424 1.1 jonathan * check whether existing or not.
6425 1.1 jonathan * check all type of SA, because there is a potential that
6426 1.1 jonathan * one socket is registered to multiple type of SA.
6427 1.1 jonathan */
6428 1.1 jonathan for (i = 0; i <= SADB_SATYPE_MAX; i++) {
6429 1.1 jonathan LIST_FOREACH(reg, ®tree[i], chain) {
6430 1.1 jonathan if (reg->so == so
6431 1.1 jonathan && __LIST_CHAINED(reg)) {
6432 1.1 jonathan LIST_REMOVE(reg, chain);
6433 1.1 jonathan KFREE(reg);
6434 1.1 jonathan break;
6435 1.1 jonathan }
6436 1.1 jonathan }
6437 1.1 jonathan }
6438 1.22 perry
6439 1.1 jonathan return;
6440 1.1 jonathan }
6441 1.1 jonathan
6442 1.1 jonathan /*
6443 1.1 jonathan * SADB_EXPIRE processing
6444 1.1 jonathan * send
6445 1.1 jonathan * <base, SA, SA2, lifetime(C and one of HS), address(SD)>
6446 1.1 jonathan * to KMD by PF_KEY.
6447 1.1 jonathan * NOTE: We send only soft lifetime extension.
6448 1.1 jonathan *
6449 1.1 jonathan * OUT: 0 : succeed
6450 1.1 jonathan * others : error number
6451 1.1 jonathan */
6452 1.1 jonathan static int
6453 1.1 jonathan key_expire(sav)
6454 1.1 jonathan struct secasvar *sav;
6455 1.1 jonathan {
6456 1.1 jonathan int s;
6457 1.1 jonathan int satype;
6458 1.1 jonathan struct mbuf *result = NULL, *m;
6459 1.1 jonathan int len;
6460 1.1 jonathan int error = -1;
6461 1.1 jonathan struct sadb_lifetime *lt;
6462 1.1 jonathan
6463 1.1 jonathan /* XXX: Why do we lock ? */
6464 1.1 jonathan s = splsoftnet(); /*called from softclock()*/
6465 1.1 jonathan
6466 1.1 jonathan /* sanity check */
6467 1.1 jonathan if (sav == NULL)
6468 1.24 christos panic("key_expire: NULL pointer is passed");
6469 1.1 jonathan if (sav->sah == NULL)
6470 1.24 christos panic("key_expire: Why was SA index in SA NULL");
6471 1.1 jonathan if ((satype = key_proto2satype(sav->sah->saidx.proto)) == 0)
6472 1.24 christos panic("key_expire: invalid proto is passed");
6473 1.1 jonathan
6474 1.1 jonathan /* set msg header */
6475 1.1 jonathan m = key_setsadbmsg(SADB_EXPIRE, 0, satype, sav->seq, 0, sav->refcnt);
6476 1.1 jonathan if (!m) {
6477 1.1 jonathan error = ENOBUFS;
6478 1.1 jonathan goto fail;
6479 1.1 jonathan }
6480 1.1 jonathan result = m;
6481 1.1 jonathan
6482 1.1 jonathan /* create SA extension */
6483 1.1 jonathan m = key_setsadbsa(sav);
6484 1.1 jonathan if (!m) {
6485 1.1 jonathan error = ENOBUFS;
6486 1.1 jonathan goto fail;
6487 1.1 jonathan }
6488 1.1 jonathan m_cat(result, m);
6489 1.1 jonathan
6490 1.1 jonathan /* create SA extension */
6491 1.1 jonathan m = key_setsadbxsa2(sav->sah->saidx.mode,
6492 1.1 jonathan sav->replay ? sav->replay->count : 0,
6493 1.1 jonathan sav->sah->saidx.reqid);
6494 1.1 jonathan if (!m) {
6495 1.1 jonathan error = ENOBUFS;
6496 1.1 jonathan goto fail;
6497 1.1 jonathan }
6498 1.1 jonathan m_cat(result, m);
6499 1.1 jonathan
6500 1.1 jonathan /* create lifetime extension (current and soft) */
6501 1.1 jonathan len = PFKEY_ALIGN8(sizeof(*lt)) * 2;
6502 1.1 jonathan m = key_alloc_mbuf(len);
6503 1.1 jonathan if (!m || m->m_next) { /*XXX*/
6504 1.1 jonathan if (m)
6505 1.1 jonathan m_freem(m);
6506 1.1 jonathan error = ENOBUFS;
6507 1.1 jonathan goto fail;
6508 1.1 jonathan }
6509 1.1 jonathan bzero(mtod(m, caddr_t), len);
6510 1.1 jonathan lt = mtod(m, struct sadb_lifetime *);
6511 1.1 jonathan lt->sadb_lifetime_len = PFKEY_UNIT64(sizeof(struct sadb_lifetime));
6512 1.1 jonathan lt->sadb_lifetime_exttype = SADB_EXT_LIFETIME_CURRENT;
6513 1.1 jonathan lt->sadb_lifetime_allocations = sav->lft_c->sadb_lifetime_allocations;
6514 1.1 jonathan lt->sadb_lifetime_bytes = sav->lft_c->sadb_lifetime_bytes;
6515 1.1 jonathan lt->sadb_lifetime_addtime = sav->lft_c->sadb_lifetime_addtime;
6516 1.1 jonathan lt->sadb_lifetime_usetime = sav->lft_c->sadb_lifetime_usetime;
6517 1.1 jonathan lt = (struct sadb_lifetime *)(mtod(m, caddr_t) + len / 2);
6518 1.1 jonathan bcopy(sav->lft_s, lt, sizeof(*lt));
6519 1.1 jonathan m_cat(result, m);
6520 1.1 jonathan
6521 1.1 jonathan /* set sadb_address for source */
6522 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_SRC,
6523 1.1 jonathan &sav->sah->saidx.src.sa,
6524 1.1 jonathan FULLMASK, IPSEC_ULPROTO_ANY);
6525 1.1 jonathan if (!m) {
6526 1.1 jonathan error = ENOBUFS;
6527 1.1 jonathan goto fail;
6528 1.1 jonathan }
6529 1.1 jonathan m_cat(result, m);
6530 1.1 jonathan
6531 1.1 jonathan /* set sadb_address for destination */
6532 1.1 jonathan m = key_setsadbaddr(SADB_EXT_ADDRESS_DST,
6533 1.1 jonathan &sav->sah->saidx.dst.sa,
6534 1.1 jonathan FULLMASK, IPSEC_ULPROTO_ANY);
6535 1.1 jonathan if (!m) {
6536 1.1 jonathan error = ENOBUFS;
6537 1.1 jonathan goto fail;
6538 1.1 jonathan }
6539 1.1 jonathan m_cat(result, m);
6540 1.1 jonathan
6541 1.1 jonathan if ((result->m_flags & M_PKTHDR) == 0) {
6542 1.1 jonathan error = EINVAL;
6543 1.1 jonathan goto fail;
6544 1.1 jonathan }
6545 1.1 jonathan
6546 1.1 jonathan if (result->m_len < sizeof(struct sadb_msg)) {
6547 1.1 jonathan result = m_pullup(result, sizeof(struct sadb_msg));
6548 1.1 jonathan if (result == NULL) {
6549 1.1 jonathan error = ENOBUFS;
6550 1.1 jonathan goto fail;
6551 1.1 jonathan }
6552 1.1 jonathan }
6553 1.1 jonathan
6554 1.1 jonathan result->m_pkthdr.len = 0;
6555 1.1 jonathan for (m = result; m; m = m->m_next)
6556 1.1 jonathan result->m_pkthdr.len += m->m_len;
6557 1.1 jonathan
6558 1.1 jonathan mtod(result, struct sadb_msg *)->sadb_msg_len =
6559 1.1 jonathan PFKEY_UNIT64(result->m_pkthdr.len);
6560 1.1 jonathan
6561 1.1 jonathan splx(s);
6562 1.1 jonathan return key_sendup_mbuf(NULL, result, KEY_SENDUP_REGISTERED);
6563 1.1 jonathan
6564 1.1 jonathan fail:
6565 1.1 jonathan if (result)
6566 1.1 jonathan m_freem(result);
6567 1.1 jonathan splx(s);
6568 1.1 jonathan return error;
6569 1.1 jonathan }
6570 1.1 jonathan
6571 1.1 jonathan /*
6572 1.1 jonathan * SADB_FLUSH processing
6573 1.1 jonathan * receive
6574 1.1 jonathan * <base>
6575 1.1 jonathan * from the ikmpd, and free all entries in secastree.
6576 1.1 jonathan * and send,
6577 1.1 jonathan * <base>
6578 1.1 jonathan * to the ikmpd.
6579 1.1 jonathan * NOTE: to do is only marking SADB_SASTATE_DEAD.
6580 1.1 jonathan *
6581 1.1 jonathan * m will always be freed.
6582 1.1 jonathan */
6583 1.1 jonathan static int
6584 1.1 jonathan key_flush(so, m, mhp)
6585 1.1 jonathan struct socket *so;
6586 1.1 jonathan struct mbuf *m;
6587 1.1 jonathan const struct sadb_msghdr *mhp;
6588 1.1 jonathan {
6589 1.1 jonathan struct sadb_msg *newmsg;
6590 1.1 jonathan struct secashead *sah, *nextsah;
6591 1.1 jonathan struct secasvar *sav, *nextsav;
6592 1.1 jonathan u_int16_t proto;
6593 1.1 jonathan u_int8_t state;
6594 1.1 jonathan u_int stateidx;
6595 1.1 jonathan
6596 1.1 jonathan /* sanity check */
6597 1.1 jonathan if (so == NULL || mhp == NULL || mhp->msg == NULL)
6598 1.24 christos panic("key_flush: NULL pointer is passed");
6599 1.1 jonathan
6600 1.1 jonathan /* map satype to proto */
6601 1.1 jonathan if ((proto = key_satype2proto(mhp->msg->sadb_msg_satype)) == 0) {
6602 1.1 jonathan ipseclog((LOG_DEBUG, "key_flush: invalid satype is passed.\n"));
6603 1.1 jonathan return key_senderror(so, m, EINVAL);
6604 1.1 jonathan }
6605 1.1 jonathan
6606 1.1 jonathan /* no SATYPE specified, i.e. flushing all SA. */
6607 1.1 jonathan for (sah = LIST_FIRST(&sahtree);
6608 1.1 jonathan sah != NULL;
6609 1.1 jonathan sah = nextsah) {
6610 1.1 jonathan nextsah = LIST_NEXT(sah, chain);
6611 1.1 jonathan
6612 1.1 jonathan if (mhp->msg->sadb_msg_satype != SADB_SATYPE_UNSPEC
6613 1.1 jonathan && proto != sah->saidx.proto)
6614 1.1 jonathan continue;
6615 1.1 jonathan
6616 1.1 jonathan for (stateidx = 0;
6617 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_alive);
6618 1.1 jonathan stateidx++) {
6619 1.1 jonathan state = saorder_state_any[stateidx];
6620 1.1 jonathan for (sav = LIST_FIRST(&sah->savtree[state]);
6621 1.1 jonathan sav != NULL;
6622 1.1 jonathan sav = nextsav) {
6623 1.1 jonathan
6624 1.1 jonathan nextsav = LIST_NEXT(sav, chain);
6625 1.1 jonathan
6626 1.1 jonathan key_sa_chgstate(sav, SADB_SASTATE_DEAD);
6627 1.1 jonathan KEY_FREESAV(&sav);
6628 1.1 jonathan }
6629 1.1 jonathan }
6630 1.1 jonathan
6631 1.1 jonathan sah->state = SADB_SASTATE_DEAD;
6632 1.1 jonathan }
6633 1.1 jonathan
6634 1.1 jonathan if (m->m_len < sizeof(struct sadb_msg) ||
6635 1.1 jonathan sizeof(struct sadb_msg) > m->m_len + M_TRAILINGSPACE(m)) {
6636 1.1 jonathan ipseclog((LOG_DEBUG, "key_flush: No more memory.\n"));
6637 1.1 jonathan return key_senderror(so, m, ENOBUFS);
6638 1.1 jonathan }
6639 1.1 jonathan
6640 1.1 jonathan if (m->m_next)
6641 1.1 jonathan m_freem(m->m_next);
6642 1.1 jonathan m->m_next = NULL;
6643 1.1 jonathan m->m_pkthdr.len = m->m_len = sizeof(struct sadb_msg);
6644 1.1 jonathan newmsg = mtod(m, struct sadb_msg *);
6645 1.1 jonathan newmsg->sadb_msg_errno = 0;
6646 1.1 jonathan newmsg->sadb_msg_len = PFKEY_UNIT64(m->m_pkthdr.len);
6647 1.1 jonathan
6648 1.1 jonathan return key_sendup_mbuf(so, m, KEY_SENDUP_ALL);
6649 1.1 jonathan }
6650 1.1 jonathan
6651 1.19 jonathan
6652 1.19 jonathan static struct mbuf *
6653 1.20 jonathan key_setdump_chain(u_int8_t req_satype, int *errorp, int *lenp, pid_t pid)
6654 1.1 jonathan {
6655 1.1 jonathan struct secashead *sah;
6656 1.1 jonathan struct secasvar *sav;
6657 1.1 jonathan u_int16_t proto;
6658 1.1 jonathan u_int stateidx;
6659 1.1 jonathan u_int8_t satype;
6660 1.1 jonathan u_int8_t state;
6661 1.1 jonathan int cnt;
6662 1.19 jonathan struct mbuf *m, *n, *prev;
6663 1.19 jonathan int totlen;
6664 1.1 jonathan
6665 1.19 jonathan *lenp = 0;
6666 1.1 jonathan
6667 1.1 jonathan /* map satype to proto */
6668 1.19 jonathan if ((proto = key_satype2proto(req_satype)) == 0) {
6669 1.19 jonathan *errorp = EINVAL;
6670 1.19 jonathan return (NULL);
6671 1.1 jonathan }
6672 1.1 jonathan
6673 1.19 jonathan /* count sav entries to be sent to userland. */
6674 1.1 jonathan cnt = 0;
6675 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
6676 1.19 jonathan if (req_satype != SADB_SATYPE_UNSPEC &&
6677 1.19 jonathan proto != sah->saidx.proto)
6678 1.1 jonathan continue;
6679 1.1 jonathan
6680 1.1 jonathan for (stateidx = 0;
6681 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_any);
6682 1.1 jonathan stateidx++) {
6683 1.1 jonathan state = saorder_state_any[stateidx];
6684 1.1 jonathan LIST_FOREACH(sav, &sah->savtree[state], chain) {
6685 1.1 jonathan cnt++;
6686 1.1 jonathan }
6687 1.1 jonathan }
6688 1.1 jonathan }
6689 1.1 jonathan
6690 1.19 jonathan if (cnt == 0) {
6691 1.19 jonathan *errorp = ENOENT;
6692 1.19 jonathan return (NULL);
6693 1.19 jonathan }
6694 1.1 jonathan
6695 1.1 jonathan /* send this to the userland, one at a time. */
6696 1.19 jonathan m = NULL;
6697 1.19 jonathan prev = m;
6698 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
6699 1.19 jonathan if (req_satype != SADB_SATYPE_UNSPEC &&
6700 1.19 jonathan proto != sah->saidx.proto)
6701 1.1 jonathan continue;
6702 1.1 jonathan
6703 1.1 jonathan /* map proto to satype */
6704 1.1 jonathan if ((satype = key_proto2satype(sah->saidx.proto)) == 0) {
6705 1.19 jonathan m_freem(m);
6706 1.19 jonathan *errorp = EINVAL;
6707 1.19 jonathan return (NULL);
6708 1.1 jonathan }
6709 1.1 jonathan
6710 1.1 jonathan for (stateidx = 0;
6711 1.1 jonathan stateidx < _ARRAYLEN(saorder_state_any);
6712 1.1 jonathan stateidx++) {
6713 1.1 jonathan state = saorder_state_any[stateidx];
6714 1.1 jonathan LIST_FOREACH(sav, &sah->savtree[state], chain) {
6715 1.1 jonathan n = key_setdumpsa(sav, SADB_DUMP, satype,
6716 1.20 jonathan --cnt, pid);
6717 1.19 jonathan if (!n) {
6718 1.19 jonathan m_freem(m);
6719 1.19 jonathan *errorp = ENOBUFS;
6720 1.19 jonathan return (NULL);
6721 1.19 jonathan }
6722 1.1 jonathan
6723 1.19 jonathan totlen += n->m_pkthdr.len;
6724 1.19 jonathan if (!m)
6725 1.19 jonathan m = n;
6726 1.19 jonathan else
6727 1.19 jonathan prev->m_nextpkt = n;
6728 1.19 jonathan prev = n;
6729 1.1 jonathan }
6730 1.1 jonathan }
6731 1.1 jonathan }
6732 1.1 jonathan
6733 1.19 jonathan if (!m) {
6734 1.19 jonathan *errorp = EINVAL;
6735 1.19 jonathan return (NULL);
6736 1.19 jonathan }
6737 1.19 jonathan
6738 1.19 jonathan if ((m->m_flags & M_PKTHDR) != 0) {
6739 1.19 jonathan m->m_pkthdr.len = 0;
6740 1.19 jonathan for (n = m; n; n = n->m_next)
6741 1.19 jonathan m->m_pkthdr.len += n->m_len;
6742 1.19 jonathan }
6743 1.19 jonathan
6744 1.19 jonathan *errorp = 0;
6745 1.19 jonathan return (m);
6746 1.19 jonathan }
6747 1.19 jonathan
6748 1.19 jonathan /*
6749 1.19 jonathan * SADB_DUMP processing
6750 1.19 jonathan * dump all entries including status of DEAD in SAD.
6751 1.19 jonathan * receive
6752 1.19 jonathan * <base>
6753 1.19 jonathan * from the ikmpd, and dump all secasvar leaves
6754 1.19 jonathan * and send,
6755 1.19 jonathan * <base> .....
6756 1.19 jonathan * to the ikmpd.
6757 1.19 jonathan *
6758 1.19 jonathan * m will always be freed.
6759 1.19 jonathan */
6760 1.19 jonathan static int
6761 1.19 jonathan key_dump(so, m0, mhp)
6762 1.19 jonathan struct socket *so;
6763 1.19 jonathan struct mbuf *m0;
6764 1.19 jonathan const struct sadb_msghdr *mhp;
6765 1.19 jonathan {
6766 1.19 jonathan u_int16_t proto;
6767 1.19 jonathan u_int8_t satype;
6768 1.19 jonathan struct mbuf *n;
6769 1.19 jonathan int s;
6770 1.19 jonathan int error, len, ok;
6771 1.19 jonathan
6772 1.19 jonathan /* sanity check */
6773 1.19 jonathan if (so == NULL || m0 == NULL || mhp == NULL || mhp->msg == NULL)
6774 1.24 christos panic("key_dump: NULL pointer is passed");
6775 1.19 jonathan
6776 1.19 jonathan /* map satype to proto */
6777 1.19 jonathan satype = mhp->msg->sadb_msg_satype;
6778 1.19 jonathan if ((proto = key_satype2proto(satype)) == 0) {
6779 1.19 jonathan ipseclog((LOG_DEBUG, "key_dump: invalid satype is passed.\n"));
6780 1.19 jonathan return key_senderror(so, m0, EINVAL);
6781 1.19 jonathan }
6782 1.19 jonathan
6783 1.19 jonathan /*
6784 1.19 jonathan * If the requestor has insufficient socket-buffer space
6785 1.19 jonathan * for the entire chain, nobody gets any response to the DUMP.
6786 1.19 jonathan * XXX For now, only the requestor ever gets anything.
6787 1.19 jonathan * Moreover, if the requestor has any space at all, they receive
6788 1.19 jonathan * the entire chain, otherwise the request is refused with ENOBUFS.
6789 1.19 jonathan */
6790 1.19 jonathan if (sbspace(&so->so_rcv) <= 0) {
6791 1.19 jonathan return key_senderror(so, m0, ENOBUFS);
6792 1.19 jonathan }
6793 1.19 jonathan
6794 1.19 jonathan s = splsoftnet();
6795 1.20 jonathan n = key_setdump_chain(satype, &error, &len, mhp->msg->sadb_msg_pid);
6796 1.19 jonathan splx(s);
6797 1.19 jonathan
6798 1.19 jonathan if (n == NULL) {
6799 1.19 jonathan return key_senderror(so, m0, ENOENT);
6800 1.19 jonathan }
6801 1.19 jonathan pfkeystat.in_total++;
6802 1.19 jonathan pfkeystat.in_bytes += len;
6803 1.19 jonathan
6804 1.19 jonathan /*
6805 1.19 jonathan * PF_KEY DUMP responses are no longer broadcast to all PF_KEY sockets.
6806 1.19 jonathan * The requestor receives either the entire chain, or an
6807 1.19 jonathan * error message with ENOBUFS.
6808 1.19 jonathan *
6809 1.19 jonathan * sbappendaddrchain() takes the chain of entries, one
6810 1.19 jonathan * packet-record per SPD entry, prepends the key_src sockaddr
6811 1.19 jonathan * to each packet-record, links the sockaddr mbufs into a new
6812 1.19 jonathan * list of records, then appends the entire resulting
6813 1.19 jonathan * list to the requesting socket.
6814 1.19 jonathan */
6815 1.19 jonathan ok = sbappendaddrchain(&so->so_rcv, (struct sockaddr *)&key_src,
6816 1.19 jonathan n, SB_PRIO_ONESHOT_OVERFLOW);
6817 1.19 jonathan
6818 1.19 jonathan if (!ok) {
6819 1.19 jonathan pfkeystat.in_nomem++;
6820 1.19 jonathan m_freem(n);
6821 1.19 jonathan return key_senderror(so, m0, ENOBUFS);
6822 1.19 jonathan }
6823 1.19 jonathan
6824 1.19 jonathan m_freem(m0);
6825 1.1 jonathan return 0;
6826 1.1 jonathan }
6827 1.1 jonathan
6828 1.1 jonathan /*
6829 1.1 jonathan * SADB_X_PROMISC processing
6830 1.1 jonathan *
6831 1.1 jonathan * m will always be freed.
6832 1.1 jonathan */
6833 1.1 jonathan static int
6834 1.1 jonathan key_promisc(so, m, mhp)
6835 1.1 jonathan struct socket *so;
6836 1.1 jonathan struct mbuf *m;
6837 1.1 jonathan const struct sadb_msghdr *mhp;
6838 1.1 jonathan {
6839 1.1 jonathan int olen;
6840 1.1 jonathan
6841 1.1 jonathan /* sanity check */
6842 1.1 jonathan if (so == NULL || m == NULL || mhp == NULL || mhp->msg == NULL)
6843 1.24 christos panic("key_promisc: NULL pointer is passed");
6844 1.1 jonathan
6845 1.1 jonathan olen = PFKEY_UNUNIT64(mhp->msg->sadb_msg_len);
6846 1.1 jonathan
6847 1.1 jonathan if (olen < sizeof(struct sadb_msg)) {
6848 1.1 jonathan #if 1
6849 1.1 jonathan return key_senderror(so, m, EINVAL);
6850 1.1 jonathan #else
6851 1.1 jonathan m_freem(m);
6852 1.1 jonathan return 0;
6853 1.1 jonathan #endif
6854 1.1 jonathan } else if (olen == sizeof(struct sadb_msg)) {
6855 1.1 jonathan /* enable/disable promisc mode */
6856 1.1 jonathan struct keycb *kp;
6857 1.1 jonathan
6858 1.1 jonathan if ((kp = (struct keycb *)sotorawcb(so)) == NULL)
6859 1.1 jonathan return key_senderror(so, m, EINVAL);
6860 1.1 jonathan mhp->msg->sadb_msg_errno = 0;
6861 1.1 jonathan switch (mhp->msg->sadb_msg_satype) {
6862 1.1 jonathan case 0:
6863 1.1 jonathan case 1:
6864 1.1 jonathan kp->kp_promisc = mhp->msg->sadb_msg_satype;
6865 1.1 jonathan break;
6866 1.1 jonathan default:
6867 1.1 jonathan return key_senderror(so, m, EINVAL);
6868 1.1 jonathan }
6869 1.1 jonathan
6870 1.1 jonathan /* send the original message back to everyone */
6871 1.1 jonathan mhp->msg->sadb_msg_errno = 0;
6872 1.1 jonathan return key_sendup_mbuf(so, m, KEY_SENDUP_ALL);
6873 1.1 jonathan } else {
6874 1.1 jonathan /* send packet as is */
6875 1.1 jonathan
6876 1.1 jonathan m_adj(m, PFKEY_ALIGN8(sizeof(struct sadb_msg)));
6877 1.1 jonathan
6878 1.1 jonathan /* TODO: if sadb_msg_seq is specified, send to specific pid */
6879 1.1 jonathan return key_sendup_mbuf(so, m, KEY_SENDUP_ALL);
6880 1.1 jonathan }
6881 1.1 jonathan }
6882 1.1 jonathan
6883 1.1 jonathan static int (*key_typesw[]) __P((struct socket *, struct mbuf *,
6884 1.1 jonathan const struct sadb_msghdr *)) = {
6885 1.1 jonathan NULL, /* SADB_RESERVED */
6886 1.1 jonathan key_getspi, /* SADB_GETSPI */
6887 1.1 jonathan key_update, /* SADB_UPDATE */
6888 1.1 jonathan key_add, /* SADB_ADD */
6889 1.1 jonathan key_delete, /* SADB_DELETE */
6890 1.1 jonathan key_get, /* SADB_GET */
6891 1.1 jonathan key_acquire2, /* SADB_ACQUIRE */
6892 1.1 jonathan key_register, /* SADB_REGISTER */
6893 1.1 jonathan NULL, /* SADB_EXPIRE */
6894 1.1 jonathan key_flush, /* SADB_FLUSH */
6895 1.1 jonathan key_dump, /* SADB_DUMP */
6896 1.1 jonathan key_promisc, /* SADB_X_PROMISC */
6897 1.1 jonathan NULL, /* SADB_X_PCHANGE */
6898 1.1 jonathan key_spdadd, /* SADB_X_SPDUPDATE */
6899 1.1 jonathan key_spdadd, /* SADB_X_SPDADD */
6900 1.1 jonathan key_spddelete, /* SADB_X_SPDDELETE */
6901 1.1 jonathan key_spdget, /* SADB_X_SPDGET */
6902 1.1 jonathan NULL, /* SADB_X_SPDACQUIRE */
6903 1.1 jonathan key_spddump, /* SADB_X_SPDDUMP */
6904 1.1 jonathan key_spdflush, /* SADB_X_SPDFLUSH */
6905 1.1 jonathan key_spdadd, /* SADB_X_SPDSETIDX */
6906 1.1 jonathan NULL, /* SADB_X_SPDEXPIRE */
6907 1.1 jonathan key_spddelete2, /* SADB_X_SPDDELETE2 */
6908 1.21 manu NULL, /* SADB_X_NAT_T_NEW_MAPPING */
6909 1.1 jonathan };
6910 1.1 jonathan
6911 1.1 jonathan /*
6912 1.1 jonathan * parse sadb_msg buffer to process PFKEYv2,
6913 1.1 jonathan * and create a data to response if needed.
6914 1.1 jonathan * I think to be dealed with mbuf directly.
6915 1.1 jonathan * IN:
6916 1.1 jonathan * msgp : pointer to pointer to a received buffer pulluped.
6917 1.1 jonathan * This is rewrited to response.
6918 1.1 jonathan * so : pointer to socket.
6919 1.1 jonathan * OUT:
6920 1.1 jonathan * length for buffer to send to user process.
6921 1.1 jonathan */
6922 1.1 jonathan int
6923 1.1 jonathan key_parse(m, so)
6924 1.1 jonathan struct mbuf *m;
6925 1.1 jonathan struct socket *so;
6926 1.1 jonathan {
6927 1.1 jonathan struct sadb_msg *msg;
6928 1.1 jonathan struct sadb_msghdr mh;
6929 1.1 jonathan u_int orglen;
6930 1.1 jonathan int error;
6931 1.1 jonathan int target;
6932 1.1 jonathan
6933 1.1 jonathan /* sanity check */
6934 1.1 jonathan if (m == NULL || so == NULL)
6935 1.24 christos panic("key_parse: NULL pointer is passed");
6936 1.1 jonathan
6937 1.1 jonathan #if 0 /*kdebug_sadb assumes msg in linear buffer*/
6938 1.1 jonathan KEYDEBUG(KEYDEBUG_KEY_DUMP,
6939 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: passed sadb_msg\n"));
6940 1.1 jonathan kdebug_sadb(msg));
6941 1.1 jonathan #endif
6942 1.1 jonathan
6943 1.1 jonathan if (m->m_len < sizeof(struct sadb_msg)) {
6944 1.1 jonathan m = m_pullup(m, sizeof(struct sadb_msg));
6945 1.1 jonathan if (!m)
6946 1.1 jonathan return ENOBUFS;
6947 1.1 jonathan }
6948 1.1 jonathan msg = mtod(m, struct sadb_msg *);
6949 1.1 jonathan orglen = PFKEY_UNUNIT64(msg->sadb_msg_len);
6950 1.1 jonathan target = KEY_SENDUP_ONE;
6951 1.1 jonathan
6952 1.1 jonathan if ((m->m_flags & M_PKTHDR) == 0 ||
6953 1.1 jonathan m->m_pkthdr.len != m->m_pkthdr.len) {
6954 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: invalid message length.\n"));
6955 1.1 jonathan pfkeystat.out_invlen++;
6956 1.1 jonathan error = EINVAL;
6957 1.1 jonathan goto senderror;
6958 1.1 jonathan }
6959 1.1 jonathan
6960 1.1 jonathan if (msg->sadb_msg_version != PF_KEY_V2) {
6961 1.1 jonathan ipseclog((LOG_DEBUG,
6962 1.1 jonathan "key_parse: PF_KEY version %u is mismatched.\n",
6963 1.1 jonathan msg->sadb_msg_version));
6964 1.1 jonathan pfkeystat.out_invver++;
6965 1.1 jonathan error = EINVAL;
6966 1.1 jonathan goto senderror;
6967 1.1 jonathan }
6968 1.1 jonathan
6969 1.1 jonathan if (msg->sadb_msg_type > SADB_MAX) {
6970 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: invalid type %u is passed.\n",
6971 1.1 jonathan msg->sadb_msg_type));
6972 1.1 jonathan pfkeystat.out_invmsgtype++;
6973 1.1 jonathan error = EINVAL;
6974 1.1 jonathan goto senderror;
6975 1.1 jonathan }
6976 1.1 jonathan
6977 1.1 jonathan /* for old-fashioned code - should be nuked */
6978 1.1 jonathan if (m->m_pkthdr.len > MCLBYTES) {
6979 1.1 jonathan m_freem(m);
6980 1.1 jonathan return ENOBUFS;
6981 1.1 jonathan }
6982 1.1 jonathan if (m->m_next) {
6983 1.1 jonathan struct mbuf *n;
6984 1.1 jonathan
6985 1.1 jonathan MGETHDR(n, M_DONTWAIT, MT_DATA);
6986 1.1 jonathan if (n && m->m_pkthdr.len > MHLEN) {
6987 1.1 jonathan MCLGET(n, M_DONTWAIT);
6988 1.1 jonathan if ((n->m_flags & M_EXT) == 0) {
6989 1.1 jonathan m_free(n);
6990 1.1 jonathan n = NULL;
6991 1.1 jonathan }
6992 1.1 jonathan }
6993 1.1 jonathan if (!n) {
6994 1.1 jonathan m_freem(m);
6995 1.1 jonathan return ENOBUFS;
6996 1.1 jonathan }
6997 1.1 jonathan m_copydata(m, 0, m->m_pkthdr.len, mtod(n, caddr_t));
6998 1.1 jonathan n->m_pkthdr.len = n->m_len = m->m_pkthdr.len;
6999 1.1 jonathan n->m_next = NULL;
7000 1.1 jonathan m_freem(m);
7001 1.1 jonathan m = n;
7002 1.1 jonathan }
7003 1.1 jonathan
7004 1.1 jonathan /* align the mbuf chain so that extensions are in contiguous region. */
7005 1.1 jonathan error = key_align(m, &mh);
7006 1.1 jonathan if (error)
7007 1.1 jonathan return error;
7008 1.1 jonathan
7009 1.1 jonathan if (m->m_next) { /*XXX*/
7010 1.1 jonathan m_freem(m);
7011 1.1 jonathan return ENOBUFS;
7012 1.1 jonathan }
7013 1.1 jonathan
7014 1.1 jonathan msg = mh.msg;
7015 1.1 jonathan
7016 1.1 jonathan /* check SA type */
7017 1.1 jonathan switch (msg->sadb_msg_satype) {
7018 1.1 jonathan case SADB_SATYPE_UNSPEC:
7019 1.1 jonathan switch (msg->sadb_msg_type) {
7020 1.1 jonathan case SADB_GETSPI:
7021 1.1 jonathan case SADB_UPDATE:
7022 1.1 jonathan case SADB_ADD:
7023 1.1 jonathan case SADB_DELETE:
7024 1.1 jonathan case SADB_GET:
7025 1.1 jonathan case SADB_ACQUIRE:
7026 1.1 jonathan case SADB_EXPIRE:
7027 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: must specify satype "
7028 1.1 jonathan "when msg type=%u.\n", msg->sadb_msg_type));
7029 1.1 jonathan pfkeystat.out_invsatype++;
7030 1.1 jonathan error = EINVAL;
7031 1.1 jonathan goto senderror;
7032 1.1 jonathan }
7033 1.1 jonathan break;
7034 1.1 jonathan case SADB_SATYPE_AH:
7035 1.1 jonathan case SADB_SATYPE_ESP:
7036 1.1 jonathan case SADB_X_SATYPE_IPCOMP:
7037 1.12 jonathan case SADB_X_SATYPE_TCPSIGNATURE:
7038 1.1 jonathan switch (msg->sadb_msg_type) {
7039 1.1 jonathan case SADB_X_SPDADD:
7040 1.1 jonathan case SADB_X_SPDDELETE:
7041 1.1 jonathan case SADB_X_SPDGET:
7042 1.1 jonathan case SADB_X_SPDDUMP:
7043 1.1 jonathan case SADB_X_SPDFLUSH:
7044 1.1 jonathan case SADB_X_SPDSETIDX:
7045 1.1 jonathan case SADB_X_SPDUPDATE:
7046 1.1 jonathan case SADB_X_SPDDELETE2:
7047 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: illegal satype=%u\n",
7048 1.1 jonathan msg->sadb_msg_type));
7049 1.1 jonathan pfkeystat.out_invsatype++;
7050 1.1 jonathan error = EINVAL;
7051 1.1 jonathan goto senderror;
7052 1.1 jonathan }
7053 1.1 jonathan break;
7054 1.1 jonathan case SADB_SATYPE_RSVP:
7055 1.1 jonathan case SADB_SATYPE_OSPFV2:
7056 1.1 jonathan case SADB_SATYPE_RIPV2:
7057 1.1 jonathan case SADB_SATYPE_MIP:
7058 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: type %u isn't supported.\n",
7059 1.1 jonathan msg->sadb_msg_satype));
7060 1.1 jonathan pfkeystat.out_invsatype++;
7061 1.1 jonathan error = EOPNOTSUPP;
7062 1.1 jonathan goto senderror;
7063 1.1 jonathan case 1: /* XXX: What does it do? */
7064 1.1 jonathan if (msg->sadb_msg_type == SADB_X_PROMISC)
7065 1.1 jonathan break;
7066 1.1 jonathan /*FALLTHROUGH*/
7067 1.1 jonathan default:
7068 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: invalid type %u is passed.\n",
7069 1.1 jonathan msg->sadb_msg_satype));
7070 1.1 jonathan pfkeystat.out_invsatype++;
7071 1.1 jonathan error = EINVAL;
7072 1.1 jonathan goto senderror;
7073 1.1 jonathan }
7074 1.1 jonathan
7075 1.1 jonathan /* check field of upper layer protocol and address family */
7076 1.1 jonathan if (mh.ext[SADB_EXT_ADDRESS_SRC] != NULL
7077 1.1 jonathan && mh.ext[SADB_EXT_ADDRESS_DST] != NULL) {
7078 1.1 jonathan struct sadb_address *src0, *dst0;
7079 1.1 jonathan u_int plen;
7080 1.1 jonathan
7081 1.1 jonathan src0 = (struct sadb_address *)(mh.ext[SADB_EXT_ADDRESS_SRC]);
7082 1.1 jonathan dst0 = (struct sadb_address *)(mh.ext[SADB_EXT_ADDRESS_DST]);
7083 1.1 jonathan
7084 1.1 jonathan /* check upper layer protocol */
7085 1.1 jonathan if (src0->sadb_address_proto != dst0->sadb_address_proto) {
7086 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: upper layer protocol mismatched.\n"));
7087 1.1 jonathan pfkeystat.out_invaddr++;
7088 1.1 jonathan error = EINVAL;
7089 1.1 jonathan goto senderror;
7090 1.1 jonathan }
7091 1.1 jonathan
7092 1.1 jonathan /* check family */
7093 1.1 jonathan if (PFKEY_ADDR_SADDR(src0)->sa_family !=
7094 1.1 jonathan PFKEY_ADDR_SADDR(dst0)->sa_family) {
7095 1.1 jonathan ipseclog((LOG_DEBUG, "key_parse: address family mismatched.\n"));
7096 1.1 jonathan pfkeystat.out_invaddr++;
7097 1.1 jonathan error = EINVAL;
7098 1.1 jonathan goto senderror;
7099 1.1 jonathan }
7100 1.1 jonathan if (PFKEY_ADDR_SADDR(src0)->sa_len !=
7101 1.1 jonathan PFKEY_ADDR_SADDR(dst0)->sa_len) {
7102 1.1 jonathan ipseclog((LOG_DEBUG,
7103 1.1 jonathan "key_parse: address struct size mismatched.\n"));
7104 1.1 jonathan pfkeystat.out_invaddr++;
7105 1.1 jonathan error = EINVAL;
7106 1.1 jonathan goto senderror;
7107 1.1 jonathan }
7108 1.1 jonathan
7109 1.1 jonathan switch (PFKEY_ADDR_SADDR(src0)->sa_family) {
7110 1.1 jonathan case AF_INET:
7111 1.1 jonathan if (PFKEY_ADDR_SADDR(src0)->sa_len !=
7112 1.1 jonathan sizeof(struct sockaddr_in)) {
7113 1.1 jonathan pfkeystat.out_invaddr++;
7114 1.1 jonathan error = EINVAL;
7115 1.1 jonathan goto senderror;
7116 1.1 jonathan }
7117 1.1 jonathan break;
7118 1.1 jonathan case AF_INET6:
7119 1.1 jonathan if (PFKEY_ADDR_SADDR(src0)->sa_len !=
7120 1.1 jonathan sizeof(struct sockaddr_in6)) {
7121 1.1 jonathan pfkeystat.out_invaddr++;
7122 1.1 jonathan error = EINVAL;
7123 1.1 jonathan goto senderror;
7124 1.1 jonathan }
7125 1.1 jonathan break;
7126 1.1 jonathan default:
7127 1.1 jonathan ipseclog((LOG_DEBUG,
7128 1.1 jonathan "key_parse: unsupported address family.\n"));
7129 1.1 jonathan pfkeystat.out_invaddr++;
7130 1.1 jonathan error = EAFNOSUPPORT;
7131 1.1 jonathan goto senderror;
7132 1.1 jonathan }
7133 1.1 jonathan
7134 1.1 jonathan switch (PFKEY_ADDR_SADDR(src0)->sa_family) {
7135 1.1 jonathan case AF_INET:
7136 1.1 jonathan plen = sizeof(struct in_addr) << 3;
7137 1.1 jonathan break;
7138 1.1 jonathan case AF_INET6:
7139 1.1 jonathan plen = sizeof(struct in6_addr) << 3;
7140 1.1 jonathan break;
7141 1.1 jonathan default:
7142 1.1 jonathan plen = 0; /*fool gcc*/
7143 1.1 jonathan break;
7144 1.1 jonathan }
7145 1.1 jonathan
7146 1.1 jonathan /* check max prefix length */
7147 1.1 jonathan if (src0->sadb_address_prefixlen > plen ||
7148 1.1 jonathan dst0->sadb_address_prefixlen > plen) {
7149 1.1 jonathan ipseclog((LOG_DEBUG,
7150 1.1 jonathan "key_parse: illegal prefixlen.\n"));
7151 1.1 jonathan pfkeystat.out_invaddr++;
7152 1.1 jonathan error = EINVAL;
7153 1.1 jonathan goto senderror;
7154 1.1 jonathan }
7155 1.1 jonathan
7156 1.1 jonathan /*
7157 1.1 jonathan * prefixlen == 0 is valid because there can be a case when
7158 1.1 jonathan * all addresses are matched.
7159 1.1 jonathan */
7160 1.1 jonathan }
7161 1.1 jonathan
7162 1.1 jonathan if (msg->sadb_msg_type >= sizeof(key_typesw)/sizeof(key_typesw[0]) ||
7163 1.1 jonathan key_typesw[msg->sadb_msg_type] == NULL) {
7164 1.1 jonathan pfkeystat.out_invmsgtype++;
7165 1.1 jonathan error = EINVAL;
7166 1.1 jonathan goto senderror;
7167 1.1 jonathan }
7168 1.1 jonathan
7169 1.1 jonathan return (*key_typesw[msg->sadb_msg_type])(so, m, &mh);
7170 1.1 jonathan
7171 1.1 jonathan senderror:
7172 1.1 jonathan msg->sadb_msg_errno = error;
7173 1.1 jonathan return key_sendup_mbuf(so, m, target);
7174 1.1 jonathan }
7175 1.1 jonathan
7176 1.1 jonathan static int
7177 1.1 jonathan key_senderror(so, m, code)
7178 1.1 jonathan struct socket *so;
7179 1.1 jonathan struct mbuf *m;
7180 1.1 jonathan int code;
7181 1.1 jonathan {
7182 1.1 jonathan struct sadb_msg *msg;
7183 1.1 jonathan
7184 1.1 jonathan if (m->m_len < sizeof(struct sadb_msg))
7185 1.1 jonathan panic("invalid mbuf passed to key_senderror");
7186 1.1 jonathan
7187 1.1 jonathan msg = mtod(m, struct sadb_msg *);
7188 1.1 jonathan msg->sadb_msg_errno = code;
7189 1.1 jonathan return key_sendup_mbuf(so, m, KEY_SENDUP_ONE);
7190 1.1 jonathan }
7191 1.1 jonathan
7192 1.1 jonathan /*
7193 1.1 jonathan * set the pointer to each header into message buffer.
7194 1.1 jonathan * m will be freed on error.
7195 1.1 jonathan * XXX larger-than-MCLBYTES extension?
7196 1.1 jonathan */
7197 1.1 jonathan static int
7198 1.1 jonathan key_align(m, mhp)
7199 1.1 jonathan struct mbuf *m;
7200 1.1 jonathan struct sadb_msghdr *mhp;
7201 1.1 jonathan {
7202 1.1 jonathan struct mbuf *n;
7203 1.1 jonathan struct sadb_ext *ext;
7204 1.1 jonathan size_t off, end;
7205 1.1 jonathan int extlen;
7206 1.1 jonathan int toff;
7207 1.1 jonathan
7208 1.1 jonathan /* sanity check */
7209 1.1 jonathan if (m == NULL || mhp == NULL)
7210 1.24 christos panic("key_align: NULL pointer is passed");
7211 1.1 jonathan if (m->m_len < sizeof(struct sadb_msg))
7212 1.1 jonathan panic("invalid mbuf passed to key_align");
7213 1.1 jonathan
7214 1.1 jonathan /* initialize */
7215 1.1 jonathan bzero(mhp, sizeof(*mhp));
7216 1.1 jonathan
7217 1.1 jonathan mhp->msg = mtod(m, struct sadb_msg *);
7218 1.1 jonathan mhp->ext[0] = (struct sadb_ext *)mhp->msg; /*XXX backward compat */
7219 1.1 jonathan
7220 1.1 jonathan end = PFKEY_UNUNIT64(mhp->msg->sadb_msg_len);
7221 1.1 jonathan extlen = end; /*just in case extlen is not updated*/
7222 1.1 jonathan for (off = sizeof(struct sadb_msg); off < end; off += extlen) {
7223 1.1 jonathan n = m_pulldown(m, off, sizeof(struct sadb_ext), &toff);
7224 1.1 jonathan if (!n) {
7225 1.1 jonathan /* m is already freed */
7226 1.1 jonathan return ENOBUFS;
7227 1.1 jonathan }
7228 1.1 jonathan ext = (struct sadb_ext *)(mtod(n, caddr_t) + toff);
7229 1.1 jonathan
7230 1.1 jonathan /* set pointer */
7231 1.1 jonathan switch (ext->sadb_ext_type) {
7232 1.1 jonathan case SADB_EXT_SA:
7233 1.1 jonathan case SADB_EXT_ADDRESS_SRC:
7234 1.1 jonathan case SADB_EXT_ADDRESS_DST:
7235 1.1 jonathan case SADB_EXT_ADDRESS_PROXY:
7236 1.1 jonathan case SADB_EXT_LIFETIME_CURRENT:
7237 1.1 jonathan case SADB_EXT_LIFETIME_HARD:
7238 1.1 jonathan case SADB_EXT_LIFETIME_SOFT:
7239 1.1 jonathan case SADB_EXT_KEY_AUTH:
7240 1.1 jonathan case SADB_EXT_KEY_ENCRYPT:
7241 1.1 jonathan case SADB_EXT_IDENTITY_SRC:
7242 1.1 jonathan case SADB_EXT_IDENTITY_DST:
7243 1.1 jonathan case SADB_EXT_SENSITIVITY:
7244 1.1 jonathan case SADB_EXT_PROPOSAL:
7245 1.1 jonathan case SADB_EXT_SUPPORTED_AUTH:
7246 1.1 jonathan case SADB_EXT_SUPPORTED_ENCRYPT:
7247 1.1 jonathan case SADB_EXT_SPIRANGE:
7248 1.1 jonathan case SADB_X_EXT_POLICY:
7249 1.1 jonathan case SADB_X_EXT_SA2:
7250 1.1 jonathan /* duplicate check */
7251 1.1 jonathan /*
7252 1.1 jonathan * XXX Are there duplication payloads of either
7253 1.1 jonathan * KEY_AUTH or KEY_ENCRYPT ?
7254 1.1 jonathan */
7255 1.1 jonathan if (mhp->ext[ext->sadb_ext_type] != NULL) {
7256 1.1 jonathan ipseclog((LOG_DEBUG,
7257 1.1 jonathan "key_align: duplicate ext_type %u "
7258 1.1 jonathan "is passed.\n", ext->sadb_ext_type));
7259 1.1 jonathan m_freem(m);
7260 1.1 jonathan pfkeystat.out_dupext++;
7261 1.1 jonathan return EINVAL;
7262 1.1 jonathan }
7263 1.1 jonathan break;
7264 1.1 jonathan default:
7265 1.1 jonathan ipseclog((LOG_DEBUG,
7266 1.1 jonathan "key_align: invalid ext_type %u is passed.\n",
7267 1.1 jonathan ext->sadb_ext_type));
7268 1.1 jonathan m_freem(m);
7269 1.1 jonathan pfkeystat.out_invexttype++;
7270 1.1 jonathan return EINVAL;
7271 1.1 jonathan }
7272 1.1 jonathan
7273 1.1 jonathan extlen = PFKEY_UNUNIT64(ext->sadb_ext_len);
7274 1.1 jonathan
7275 1.1 jonathan if (key_validate_ext(ext, extlen)) {
7276 1.1 jonathan m_freem(m);
7277 1.1 jonathan pfkeystat.out_invlen++;
7278 1.1 jonathan return EINVAL;
7279 1.1 jonathan }
7280 1.1 jonathan
7281 1.1 jonathan n = m_pulldown(m, off, extlen, &toff);
7282 1.1 jonathan if (!n) {
7283 1.1 jonathan /* m is already freed */
7284 1.1 jonathan return ENOBUFS;
7285 1.1 jonathan }
7286 1.1 jonathan ext = (struct sadb_ext *)(mtod(n, caddr_t) + toff);
7287 1.1 jonathan
7288 1.1 jonathan mhp->ext[ext->sadb_ext_type] = ext;
7289 1.1 jonathan mhp->extoff[ext->sadb_ext_type] = off;
7290 1.1 jonathan mhp->extlen[ext->sadb_ext_type] = extlen;
7291 1.1 jonathan }
7292 1.1 jonathan
7293 1.1 jonathan if (off != end) {
7294 1.1 jonathan m_freem(m);
7295 1.1 jonathan pfkeystat.out_invlen++;
7296 1.1 jonathan return EINVAL;
7297 1.1 jonathan }
7298 1.1 jonathan
7299 1.1 jonathan return 0;
7300 1.1 jonathan }
7301 1.1 jonathan
7302 1.1 jonathan static int
7303 1.1 jonathan key_validate_ext(ext, len)
7304 1.1 jonathan const struct sadb_ext *ext;
7305 1.1 jonathan int len;
7306 1.1 jonathan {
7307 1.1 jonathan const struct sockaddr *sa;
7308 1.1 jonathan enum { NONE, ADDR } checktype = NONE;
7309 1.1 jonathan int baselen = 0;
7310 1.1 jonathan const int sal = offsetof(struct sockaddr, sa_len) + sizeof(sa->sa_len);
7311 1.1 jonathan
7312 1.1 jonathan if (len != PFKEY_UNUNIT64(ext->sadb_ext_len))
7313 1.1 jonathan return EINVAL;
7314 1.1 jonathan
7315 1.1 jonathan /* if it does not match minimum/maximum length, bail */
7316 1.1 jonathan if (ext->sadb_ext_type >= sizeof(minsize) / sizeof(minsize[0]) ||
7317 1.1 jonathan ext->sadb_ext_type >= sizeof(maxsize) / sizeof(maxsize[0]))
7318 1.1 jonathan return EINVAL;
7319 1.1 jonathan if (!minsize[ext->sadb_ext_type] || len < minsize[ext->sadb_ext_type])
7320 1.1 jonathan return EINVAL;
7321 1.1 jonathan if (maxsize[ext->sadb_ext_type] && len > maxsize[ext->sadb_ext_type])
7322 1.1 jonathan return EINVAL;
7323 1.1 jonathan
7324 1.1 jonathan /* more checks based on sadb_ext_type XXX need more */
7325 1.1 jonathan switch (ext->sadb_ext_type) {
7326 1.1 jonathan case SADB_EXT_ADDRESS_SRC:
7327 1.1 jonathan case SADB_EXT_ADDRESS_DST:
7328 1.1 jonathan case SADB_EXT_ADDRESS_PROXY:
7329 1.1 jonathan baselen = PFKEY_ALIGN8(sizeof(struct sadb_address));
7330 1.1 jonathan checktype = ADDR;
7331 1.1 jonathan break;
7332 1.1 jonathan case SADB_EXT_IDENTITY_SRC:
7333 1.1 jonathan case SADB_EXT_IDENTITY_DST:
7334 1.1 jonathan if (((const struct sadb_ident *)ext)->sadb_ident_type ==
7335 1.1 jonathan SADB_X_IDENTTYPE_ADDR) {
7336 1.1 jonathan baselen = PFKEY_ALIGN8(sizeof(struct sadb_ident));
7337 1.1 jonathan checktype = ADDR;
7338 1.1 jonathan } else
7339 1.1 jonathan checktype = NONE;
7340 1.1 jonathan break;
7341 1.1 jonathan default:
7342 1.1 jonathan checktype = NONE;
7343 1.1 jonathan break;
7344 1.1 jonathan }
7345 1.1 jonathan
7346 1.1 jonathan switch (checktype) {
7347 1.1 jonathan case NONE:
7348 1.1 jonathan break;
7349 1.1 jonathan case ADDR:
7350 1.1 jonathan sa = (const struct sockaddr *)(((const u_int8_t*)ext)+baselen);
7351 1.1 jonathan if (len < baselen + sal)
7352 1.1 jonathan return EINVAL;
7353 1.1 jonathan if (baselen + PFKEY_ALIGN8(sa->sa_len) != len)
7354 1.1 jonathan return EINVAL;
7355 1.1 jonathan break;
7356 1.1 jonathan }
7357 1.1 jonathan
7358 1.1 jonathan return 0;
7359 1.1 jonathan }
7360 1.1 jonathan
7361 1.1 jonathan void
7362 1.1 jonathan key_init()
7363 1.1 jonathan {
7364 1.1 jonathan int i;
7365 1.1 jonathan
7366 1.1 jonathan callout_init(&key_timehandler_ch);
7367 1.1 jonathan
7368 1.1 jonathan for (i = 0; i < IPSEC_DIR_MAX; i++) {
7369 1.1 jonathan LIST_INIT(&sptree[i]);
7370 1.1 jonathan }
7371 1.1 jonathan
7372 1.1 jonathan LIST_INIT(&sahtree);
7373 1.1 jonathan
7374 1.1 jonathan for (i = 0; i <= SADB_SATYPE_MAX; i++) {
7375 1.1 jonathan LIST_INIT(®tree[i]);
7376 1.1 jonathan }
7377 1.1 jonathan
7378 1.1 jonathan #ifndef IPSEC_NONBLOCK_ACQUIRE
7379 1.1 jonathan LIST_INIT(&acqtree);
7380 1.1 jonathan #endif
7381 1.1 jonathan LIST_INIT(&spacqtree);
7382 1.1 jonathan
7383 1.1 jonathan /* system default */
7384 1.1 jonathan ip4_def_policy.policy = IPSEC_POLICY_NONE;
7385 1.1 jonathan ip4_def_policy.refcnt++; /*never reclaim this*/
7386 1.1 jonathan
7387 1.1 jonathan
7388 1.1 jonathan #ifndef IPSEC_DEBUG2
7389 1.1 jonathan callout_reset(&key_timehandler_ch, hz, key_timehandler, (void *)0);
7390 1.1 jonathan #endif /*IPSEC_DEBUG2*/
7391 1.1 jonathan
7392 1.1 jonathan /* initialize key statistics */
7393 1.1 jonathan keystat.getspi_count = 1;
7394 1.1 jonathan
7395 1.1 jonathan printf("IPsec: Initialized Security Association Processing.\n");
7396 1.1 jonathan
7397 1.1 jonathan return;
7398 1.1 jonathan }
7399 1.1 jonathan
7400 1.1 jonathan /*
7401 1.1 jonathan * XXX: maybe This function is called after INBOUND IPsec processing.
7402 1.1 jonathan *
7403 1.1 jonathan * Special check for tunnel-mode packets.
7404 1.1 jonathan * We must make some checks for consistency between inner and outer IP header.
7405 1.1 jonathan *
7406 1.1 jonathan * xxx more checks to be provided
7407 1.1 jonathan */
7408 1.1 jonathan int
7409 1.29 christos key_checktunnelsanity(
7410 1.29 christos struct secasvar *sav,
7411 1.30 christos u_int family,
7412 1.30 christos caddr_t src,
7413 1.30 christos caddr_t dst
7414 1.29 christos )
7415 1.1 jonathan {
7416 1.1 jonathan /* sanity check */
7417 1.1 jonathan if (sav->sah == NULL)
7418 1.1 jonathan panic("sav->sah == NULL at key_checktunnelsanity");
7419 1.1 jonathan
7420 1.1 jonathan /* XXX: check inner IP header */
7421 1.1 jonathan
7422 1.1 jonathan return 1;
7423 1.1 jonathan }
7424 1.1 jonathan
7425 1.1 jonathan #if 0
7426 1.1 jonathan #define hostnamelen strlen(hostname)
7427 1.1 jonathan
7428 1.1 jonathan /*
7429 1.1 jonathan * Get FQDN for the host.
7430 1.1 jonathan * If the administrator configured hostname (by hostname(1)) without
7431 1.1 jonathan * domain name, returns nothing.
7432 1.1 jonathan */
7433 1.1 jonathan static const char *
7434 1.1 jonathan key_getfqdn()
7435 1.1 jonathan {
7436 1.1 jonathan int i;
7437 1.1 jonathan int hasdot;
7438 1.1 jonathan static char fqdn[MAXHOSTNAMELEN + 1];
7439 1.1 jonathan
7440 1.1 jonathan if (!hostnamelen)
7441 1.1 jonathan return NULL;
7442 1.1 jonathan
7443 1.1 jonathan /* check if it comes with domain name. */
7444 1.1 jonathan hasdot = 0;
7445 1.1 jonathan for (i = 0; i < hostnamelen; i++) {
7446 1.1 jonathan if (hostname[i] == '.')
7447 1.1 jonathan hasdot++;
7448 1.1 jonathan }
7449 1.1 jonathan if (!hasdot)
7450 1.1 jonathan return NULL;
7451 1.1 jonathan
7452 1.1 jonathan /* NOTE: hostname may not be NUL-terminated. */
7453 1.1 jonathan bzero(fqdn, sizeof(fqdn));
7454 1.1 jonathan bcopy(hostname, fqdn, hostnamelen);
7455 1.1 jonathan fqdn[hostnamelen] = '\0';
7456 1.1 jonathan return fqdn;
7457 1.1 jonathan }
7458 1.1 jonathan
7459 1.1 jonathan /*
7460 1.1 jonathan * get username@FQDN for the host/user.
7461 1.1 jonathan */
7462 1.1 jonathan static const char *
7463 1.1 jonathan key_getuserfqdn()
7464 1.1 jonathan {
7465 1.1 jonathan const char *host;
7466 1.1 jonathan static char userfqdn[MAXHOSTNAMELEN + MAXLOGNAME + 2];
7467 1.1 jonathan struct proc *p = curproc;
7468 1.1 jonathan char *q;
7469 1.1 jonathan
7470 1.1 jonathan if (!p || !p->p_pgrp || !p->p_pgrp->pg_session)
7471 1.1 jonathan return NULL;
7472 1.1 jonathan if (!(host = key_getfqdn()))
7473 1.1 jonathan return NULL;
7474 1.1 jonathan
7475 1.1 jonathan /* NOTE: s_login may not be-NUL terminated. */
7476 1.1 jonathan bzero(userfqdn, sizeof(userfqdn));
7477 1.1 jonathan bcopy(p->p_pgrp->pg_session->s_login, userfqdn, MAXLOGNAME);
7478 1.1 jonathan userfqdn[MAXLOGNAME] = '\0'; /* safeguard */
7479 1.1 jonathan q = userfqdn + strlen(userfqdn);
7480 1.1 jonathan *q++ = '@';
7481 1.1 jonathan bcopy(host, q, strlen(host));
7482 1.1 jonathan q += strlen(host);
7483 1.1 jonathan *q++ = '\0';
7484 1.1 jonathan
7485 1.1 jonathan return userfqdn;
7486 1.1 jonathan }
7487 1.1 jonathan #endif
7488 1.1 jonathan
7489 1.1 jonathan /* record data transfer on SA, and update timestamps */
7490 1.1 jonathan void
7491 1.1 jonathan key_sa_recordxfer(sav, m)
7492 1.1 jonathan struct secasvar *sav;
7493 1.1 jonathan struct mbuf *m;
7494 1.1 jonathan {
7495 1.1 jonathan IPSEC_ASSERT(sav != NULL, ("key_sa_recordxfer: Null secasvar"));
7496 1.1 jonathan IPSEC_ASSERT(m != NULL, ("key_sa_recordxfer: Null mbuf"));
7497 1.1 jonathan if (!sav->lft_c)
7498 1.1 jonathan return;
7499 1.1 jonathan
7500 1.1 jonathan /*
7501 1.1 jonathan * XXX Currently, there is a difference of bytes size
7502 1.1 jonathan * between inbound and outbound processing.
7503 1.1 jonathan */
7504 1.1 jonathan sav->lft_c->sadb_lifetime_bytes += m->m_pkthdr.len;
7505 1.1 jonathan /* to check bytes lifetime is done in key_timehandler(). */
7506 1.1 jonathan
7507 1.1 jonathan /*
7508 1.1 jonathan * We use the number of packets as the unit of
7509 1.1 jonathan * sadb_lifetime_allocations. We increment the variable
7510 1.1 jonathan * whenever {esp,ah}_{in,out}put is called.
7511 1.1 jonathan */
7512 1.1 jonathan sav->lft_c->sadb_lifetime_allocations++;
7513 1.1 jonathan /* XXX check for expires? */
7514 1.1 jonathan
7515 1.1 jonathan /*
7516 1.1 jonathan * NOTE: We record CURRENT sadb_lifetime_usetime by using wall clock,
7517 1.1 jonathan * in seconds. HARD and SOFT lifetime are measured by the time
7518 1.1 jonathan * difference (again in seconds) from sadb_lifetime_usetime.
7519 1.1 jonathan *
7520 1.1 jonathan * usetime
7521 1.1 jonathan * v expire expire
7522 1.1 jonathan * -----+-----+--------+---> t
7523 1.1 jonathan * <--------------> HARD
7524 1.1 jonathan * <-----> SOFT
7525 1.1 jonathan */
7526 1.1 jonathan sav->lft_c->sadb_lifetime_usetime = time_second;
7527 1.1 jonathan /* XXX check for expires? */
7528 1.1 jonathan
7529 1.1 jonathan return;
7530 1.1 jonathan }
7531 1.1 jonathan
7532 1.1 jonathan /* dumb version */
7533 1.1 jonathan void
7534 1.1 jonathan key_sa_routechange(dst)
7535 1.1 jonathan struct sockaddr *dst;
7536 1.1 jonathan {
7537 1.1 jonathan struct secashead *sah;
7538 1.1 jonathan struct route *ro;
7539 1.1 jonathan
7540 1.1 jonathan LIST_FOREACH(sah, &sahtree, chain) {
7541 1.1 jonathan ro = &sah->sa_route;
7542 1.1 jonathan if (ro->ro_rt && dst->sa_len == ro->ro_dst.sa_len
7543 1.1 jonathan && bcmp(dst, &ro->ro_dst, dst->sa_len) == 0) {
7544 1.1 jonathan RTFREE(ro->ro_rt);
7545 1.1 jonathan ro->ro_rt = (struct rtentry *)NULL;
7546 1.1 jonathan }
7547 1.1 jonathan }
7548 1.1 jonathan
7549 1.1 jonathan return;
7550 1.1 jonathan }
7551 1.1 jonathan
7552 1.1 jonathan static void
7553 1.1 jonathan key_sa_chgstate(sav, state)
7554 1.1 jonathan struct secasvar *sav;
7555 1.1 jonathan u_int8_t state;
7556 1.1 jonathan {
7557 1.1 jonathan if (sav == NULL)
7558 1.1 jonathan panic("key_sa_chgstate called with sav == NULL");
7559 1.1 jonathan
7560 1.1 jonathan if (sav->state == state)
7561 1.1 jonathan return;
7562 1.1 jonathan
7563 1.1 jonathan if (__LIST_CHAINED(sav))
7564 1.1 jonathan LIST_REMOVE(sav, chain);
7565 1.1 jonathan
7566 1.1 jonathan sav->state = state;
7567 1.1 jonathan LIST_INSERT_HEAD(&sav->sah->savtree[state], sav, chain);
7568 1.1 jonathan }
7569 1.1 jonathan
7570 1.1 jonathan void
7571 1.1 jonathan key_sa_stir_iv(sav)
7572 1.1 jonathan struct secasvar *sav;
7573 1.1 jonathan {
7574 1.1 jonathan
7575 1.1 jonathan if (!sav->iv)
7576 1.1 jonathan panic("key_sa_stir_iv called with sav == NULL");
7577 1.1 jonathan key_randomfill(sav->iv, sav->ivlen);
7578 1.1 jonathan }
7579 1.1 jonathan
7580 1.1 jonathan /* XXX too much? */
7581 1.1 jonathan static struct mbuf *
7582 1.1 jonathan key_alloc_mbuf(l)
7583 1.1 jonathan int l;
7584 1.1 jonathan {
7585 1.1 jonathan struct mbuf *m = NULL, *n;
7586 1.1 jonathan int len, t;
7587 1.1 jonathan
7588 1.1 jonathan len = l;
7589 1.1 jonathan while (len > 0) {
7590 1.1 jonathan MGET(n, M_DONTWAIT, MT_DATA);
7591 1.1 jonathan if (n && len > MLEN)
7592 1.1 jonathan MCLGET(n, M_DONTWAIT);
7593 1.1 jonathan if (!n) {
7594 1.1 jonathan m_freem(m);
7595 1.1 jonathan return NULL;
7596 1.1 jonathan }
7597 1.1 jonathan
7598 1.1 jonathan n->m_next = NULL;
7599 1.1 jonathan n->m_len = 0;
7600 1.1 jonathan n->m_len = M_TRAILINGSPACE(n);
7601 1.1 jonathan /* use the bottom of mbuf, hoping we can prepend afterwards */
7602 1.1 jonathan if (n->m_len > len) {
7603 1.1 jonathan t = (n->m_len - len) & ~(sizeof(long) - 1);
7604 1.1 jonathan n->m_data += t;
7605 1.1 jonathan n->m_len = len;
7606 1.1 jonathan }
7607 1.1 jonathan
7608 1.1 jonathan len -= n->m_len;
7609 1.1 jonathan
7610 1.1 jonathan if (m)
7611 1.1 jonathan m_cat(m, n);
7612 1.1 jonathan else
7613 1.1 jonathan m = n;
7614 1.1 jonathan }
7615 1.1 jonathan
7616 1.1 jonathan return m;
7617 1.1 jonathan }
7618 1.1 jonathan
7619 1.5 scw static struct mbuf *
7620 1.20 jonathan key_setdump(u_int8_t req_satype, int *errorp, uint32_t pid)
7621 1.5 scw {
7622 1.5 scw struct secashead *sah;
7623 1.5 scw struct secasvar *sav;
7624 1.5 scw u_int16_t proto;
7625 1.5 scw u_int stateidx;
7626 1.5 scw u_int8_t satype;
7627 1.5 scw u_int8_t state;
7628 1.5 scw int cnt;
7629 1.5 scw struct mbuf *m, *n;
7630 1.5 scw
7631 1.5 scw /* map satype to proto */
7632 1.5 scw if ((proto = key_satype2proto(req_satype)) == 0) {
7633 1.5 scw *errorp = EINVAL;
7634 1.5 scw return (NULL);
7635 1.5 scw }
7636 1.5 scw
7637 1.5 scw /* count sav entries to be sent to the userland. */
7638 1.5 scw cnt = 0;
7639 1.5 scw LIST_FOREACH(sah, &sahtree, chain) {
7640 1.5 scw if (req_satype != SADB_SATYPE_UNSPEC &&
7641 1.5 scw proto != sah->saidx.proto)
7642 1.5 scw continue;
7643 1.5 scw
7644 1.5 scw for (stateidx = 0;
7645 1.5 scw stateidx < _ARRAYLEN(saorder_state_any);
7646 1.5 scw stateidx++) {
7647 1.5 scw state = saorder_state_any[stateidx];
7648 1.5 scw LIST_FOREACH(sav, &sah->savtree[state], chain) {
7649 1.5 scw cnt++;
7650 1.5 scw }
7651 1.5 scw }
7652 1.5 scw }
7653 1.5 scw
7654 1.5 scw if (cnt == 0) {
7655 1.5 scw *errorp = ENOENT;
7656 1.5 scw return (NULL);
7657 1.5 scw }
7658 1.5 scw
7659 1.5 scw /* send this to the userland, one at a time. */
7660 1.5 scw m = NULL;
7661 1.5 scw LIST_FOREACH(sah, &sahtree, chain) {
7662 1.5 scw if (req_satype != SADB_SATYPE_UNSPEC &&
7663 1.5 scw proto != sah->saidx.proto)
7664 1.5 scw continue;
7665 1.5 scw
7666 1.5 scw /* map proto to satype */
7667 1.5 scw if ((satype = key_proto2satype(sah->saidx.proto)) == 0) {
7668 1.5 scw m_freem(m);
7669 1.5 scw *errorp = EINVAL;
7670 1.5 scw return (NULL);
7671 1.5 scw }
7672 1.5 scw
7673 1.5 scw for (stateidx = 0;
7674 1.5 scw stateidx < _ARRAYLEN(saorder_state_any);
7675 1.5 scw stateidx++) {
7676 1.5 scw state = saorder_state_any[stateidx];
7677 1.5 scw LIST_FOREACH(sav, &sah->savtree[state], chain) {
7678 1.5 scw n = key_setdumpsa(sav, SADB_DUMP, satype,
7679 1.20 jonathan --cnt, pid);
7680 1.5 scw if (!n) {
7681 1.5 scw m_freem(m);
7682 1.5 scw *errorp = ENOBUFS;
7683 1.5 scw return (NULL);
7684 1.5 scw }
7685 1.5 scw
7686 1.5 scw if (!m)
7687 1.5 scw m = n;
7688 1.5 scw else
7689 1.5 scw m_cat(m, n);
7690 1.5 scw }
7691 1.5 scw }
7692 1.5 scw }
7693 1.5 scw
7694 1.5 scw if (!m) {
7695 1.5 scw *errorp = EINVAL;
7696 1.5 scw return (NULL);
7697 1.5 scw }
7698 1.5 scw
7699 1.5 scw if ((m->m_flags & M_PKTHDR) != 0) {
7700 1.5 scw m->m_pkthdr.len = 0;
7701 1.5 scw for (n = m; n; n = n->m_next)
7702 1.5 scw m->m_pkthdr.len += n->m_len;
7703 1.5 scw }
7704 1.5 scw
7705 1.5 scw *errorp = 0;
7706 1.5 scw return (m);
7707 1.5 scw }
7708 1.5 scw
7709 1.5 scw static struct mbuf *
7710 1.20 jonathan key_setspddump(int *errorp, pid_t pid)
7711 1.5 scw {
7712 1.5 scw struct secpolicy *sp;
7713 1.5 scw int cnt;
7714 1.5 scw u_int dir;
7715 1.5 scw struct mbuf *m, *n;
7716 1.5 scw
7717 1.5 scw /* search SPD entry and get buffer size. */
7718 1.5 scw cnt = 0;
7719 1.5 scw for (dir = 0; dir < IPSEC_DIR_MAX; dir++) {
7720 1.5 scw LIST_FOREACH(sp, &sptree[dir], chain) {
7721 1.5 scw cnt++;
7722 1.5 scw }
7723 1.5 scw }
7724 1.5 scw
7725 1.5 scw if (cnt == 0) {
7726 1.5 scw *errorp = ENOENT;
7727 1.5 scw return (NULL);
7728 1.5 scw }
7729 1.5 scw
7730 1.5 scw m = NULL;
7731 1.5 scw for (dir = 0; dir < IPSEC_DIR_MAX; dir++) {
7732 1.5 scw LIST_FOREACH(sp, &sptree[dir], chain) {
7733 1.5 scw --cnt;
7734 1.20 jonathan n = key_setdumpsp(sp, SADB_X_SPDDUMP, cnt, pid);
7735 1.5 scw
7736 1.5 scw if (!n) {
7737 1.5 scw *errorp = ENOBUFS;
7738 1.5 scw m_freem(m);
7739 1.5 scw return (NULL);
7740 1.5 scw }
7741 1.5 scw if (!m)
7742 1.5 scw m = n;
7743 1.5 scw else {
7744 1.5 scw m->m_pkthdr.len += n->m_pkthdr.len;
7745 1.5 scw m_cat(m, n);
7746 1.5 scw }
7747 1.5 scw }
7748 1.5 scw }
7749 1.5 scw
7750 1.5 scw *errorp = 0;
7751 1.5 scw return (m);
7752 1.5 scw }
7753 1.5 scw
7754 1.5 scw static int
7755 1.5 scw sysctl_net_key_dumpsa(SYSCTLFN_ARGS)
7756 1.5 scw {
7757 1.5 scw struct mbuf *m, *n;
7758 1.5 scw int err2 = 0;
7759 1.5 scw char *p, *ep;
7760 1.5 scw size_t len;
7761 1.5 scw int s, error;
7762 1.5 scw
7763 1.5 scw if (newp)
7764 1.5 scw return (EPERM);
7765 1.5 scw if (namelen != 1)
7766 1.5 scw return (EINVAL);
7767 1.5 scw
7768 1.5 scw s = splsoftnet();
7769 1.20 jonathan m = key_setdump(name[0], &error, l->l_proc->p_pid);
7770 1.5 scw splx(s);
7771 1.5 scw if (!m)
7772 1.5 scw return (error);
7773 1.5 scw if (!oldp)
7774 1.5 scw *oldlenp = m->m_pkthdr.len;
7775 1.5 scw else {
7776 1.5 scw p = oldp;
7777 1.5 scw if (*oldlenp < m->m_pkthdr.len) {
7778 1.5 scw err2 = ENOMEM;
7779 1.5 scw ep = p + *oldlenp;
7780 1.5 scw } else {
7781 1.5 scw *oldlenp = m->m_pkthdr.len;
7782 1.5 scw ep = p + m->m_pkthdr.len;
7783 1.5 scw }
7784 1.5 scw for (n = m; n; n = n->m_next) {
7785 1.5 scw len = (ep - p < n->m_len) ?
7786 1.5 scw ep - p : n->m_len;
7787 1.5 scw error = copyout(mtod(n, const void *), p, len);
7788 1.5 scw p += len;
7789 1.5 scw if (error)
7790 1.5 scw break;
7791 1.5 scw }
7792 1.5 scw if (error == 0)
7793 1.5 scw error = err2;
7794 1.5 scw }
7795 1.5 scw m_freem(m);
7796 1.5 scw
7797 1.5 scw return (error);
7798 1.5 scw }
7799 1.5 scw
7800 1.5 scw static int
7801 1.5 scw sysctl_net_key_dumpsp(SYSCTLFN_ARGS)
7802 1.5 scw {
7803 1.5 scw struct mbuf *m, *n;
7804 1.5 scw int err2 = 0;
7805 1.5 scw char *p, *ep;
7806 1.5 scw size_t len;
7807 1.5 scw int s, error;
7808 1.5 scw
7809 1.5 scw if (newp)
7810 1.5 scw return (EPERM);
7811 1.5 scw if (namelen != 0)
7812 1.5 scw return (EINVAL);
7813 1.5 scw
7814 1.5 scw s = splsoftnet();
7815 1.20 jonathan m = key_setspddump(&error, l->l_proc->p_pid);
7816 1.5 scw splx(s);
7817 1.5 scw if (!m)
7818 1.5 scw return (error);
7819 1.5 scw if (!oldp)
7820 1.5 scw *oldlenp = m->m_pkthdr.len;
7821 1.5 scw else {
7822 1.5 scw p = oldp;
7823 1.5 scw if (*oldlenp < m->m_pkthdr.len) {
7824 1.5 scw err2 = ENOMEM;
7825 1.5 scw ep = p + *oldlenp;
7826 1.5 scw } else {
7827 1.5 scw *oldlenp = m->m_pkthdr.len;
7828 1.5 scw ep = p + m->m_pkthdr.len;
7829 1.5 scw }
7830 1.5 scw for (n = m; n; n = n->m_next) {
7831 1.5 scw len = (ep - p < n->m_len) ?
7832 1.5 scw ep - p : n->m_len;
7833 1.5 scw error = copyout(mtod(n, const void *), p, len);
7834 1.5 scw p += len;
7835 1.5 scw if (error)
7836 1.5 scw break;
7837 1.5 scw }
7838 1.5 scw if (error == 0)
7839 1.5 scw error = err2;
7840 1.5 scw }
7841 1.5 scw m_freem(m);
7842 1.5 scw
7843 1.5 scw return (error);
7844 1.5 scw }
7845 1.5 scw
7846 1.15 jonathan /*
7847 1.15 jonathan * Create sysctl tree for native FAST_IPSEC key knobs, originally
7848 1.15 jonathan * under name "net.keyv2" * with MIB number { CTL_NET, PF_KEY_V2. }.
7849 1.15 jonathan * However, sysctl(8) never checked for nodes under { CTL_NET, PF_KEY_V2 };
7850 1.15 jonathan * and in any case the part of our sysctl namespace used for dumping the
7851 1.15 jonathan * SPD and SA database *HAS* to be compatible with the KAME sysctl
7852 1.15 jonathan * namespace, for API reasons.
7853 1.15 jonathan *
7854 1.15 jonathan * Pending a consensus on the right way to fix this, add a level of
7855 1.15 jonathan * indirection in how we number the `native' FAST_IPSEC key nodes;
7856 1.15 jonathan * and (as requested by Andrew Brown) move registration of the
7857 1.15 jonathan * KAME-compatible names to a separate function.
7858 1.15 jonathan */
7859 1.15 jonathan #if 0
7860 1.15 jonathan # define FAST_IPSEC_PFKEY PF_KEY_V2
7861 1.15 jonathan # define FAST_IPSEC_PFKEY_NAME "keyv2"
7862 1.15 jonathan #else
7863 1.15 jonathan # define FAST_IPSEC_PFKEY PF_KEY
7864 1.15 jonathan # define FAST_IPSEC_PFKEY_NAME "key"
7865 1.15 jonathan #endif
7866 1.15 jonathan
7867 1.4 atatat SYSCTL_SETUP(sysctl_net_keyv2_setup, "sysctl net.keyv2 subtree setup")
7868 1.4 atatat {
7869 1.4 atatat
7870 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7871 1.11 atatat CTLFLAG_PERMANENT,
7872 1.4 atatat CTLTYPE_NODE, "net", NULL,
7873 1.4 atatat NULL, 0, NULL, 0,
7874 1.4 atatat CTL_NET, CTL_EOL);
7875 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7876 1.11 atatat CTLFLAG_PERMANENT,
7877 1.15 jonathan CTLTYPE_NODE, FAST_IPSEC_PFKEY_NAME, NULL,
7878 1.4 atatat NULL, 0, NULL, 0,
7879 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, CTL_EOL);
7880 1.4 atatat
7881 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7882 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7883 1.4 atatat CTLTYPE_INT, "debug", NULL,
7884 1.4 atatat NULL, 0, &key_debug_level, 0,
7885 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_DEBUG_LEVEL, CTL_EOL);
7886 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7887 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7888 1.4 atatat CTLTYPE_INT, "spi_try", NULL,
7889 1.4 atatat NULL, 0, &key_spi_trycnt, 0,
7890 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_SPI_TRY, CTL_EOL);
7891 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7892 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7893 1.4 atatat CTLTYPE_INT, "spi_min_value", NULL,
7894 1.4 atatat NULL, 0, &key_spi_minval, 0,
7895 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_SPI_MIN_VALUE, CTL_EOL);
7896 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7897 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7898 1.4 atatat CTLTYPE_INT, "spi_max_value", NULL,
7899 1.4 atatat NULL, 0, &key_spi_maxval, 0,
7900 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_SPI_MAX_VALUE, CTL_EOL);
7901 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7902 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7903 1.4 atatat CTLTYPE_INT, "random_int", NULL,
7904 1.4 atatat NULL, 0, &key_int_random, 0,
7905 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_RANDOM_INT, CTL_EOL);
7906 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7907 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7908 1.4 atatat CTLTYPE_INT, "larval_lifetime", NULL,
7909 1.4 atatat NULL, 0, &key_larval_lifetime, 0,
7910 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_LARVAL_LIFETIME, CTL_EOL);
7911 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7912 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7913 1.4 atatat CTLTYPE_INT, "blockacq_count", NULL,
7914 1.4 atatat NULL, 0, &key_blockacq_count, 0,
7915 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_BLOCKACQ_COUNT, CTL_EOL);
7916 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7917 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7918 1.4 atatat CTLTYPE_INT, "blockacq_lifetime", NULL,
7919 1.4 atatat NULL, 0, &key_blockacq_lifetime, 0,
7920 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_BLOCKACQ_LIFETIME, CTL_EOL);
7921 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7922 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7923 1.4 atatat CTLTYPE_INT, "esp_keymin", NULL,
7924 1.4 atatat NULL, 0, &ipsec_esp_keymin, 0,
7925 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_ESP_KEYMIN, CTL_EOL);
7926 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7927 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7928 1.16 atatat CTLTYPE_INT, "prefered_oldsa", NULL,
7929 1.16 atatat NULL, 0, &key_prefered_oldsa, 0,
7930 1.16 atatat CTL_NET, PF_KEY, KEYCTL_PREFERED_OLDSA, CTL_EOL);
7931 1.16 atatat sysctl_createv(clog, 0, NULL, NULL,
7932 1.16 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7933 1.4 atatat CTLTYPE_INT, "esp_auth", NULL,
7934 1.4 atatat NULL, 0, &ipsec_esp_auth, 0,
7935 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_ESP_AUTH, CTL_EOL);
7936 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7937 1.11 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
7938 1.4 atatat CTLTYPE_INT, "ah_keymin", NULL,
7939 1.4 atatat NULL, 0, &ipsec_ah_keymin, 0,
7940 1.15 jonathan CTL_NET, FAST_IPSEC_PFKEY, KEYCTL_AH_KEYMIN, CTL_EOL);
7941 1.15 jonathan }
7942 1.15 jonathan
7943 1.15 jonathan /*
7944 1.15 jonathan * Register sysctl names used by setkey(8). For historical reasons,
7945 1.15 jonathan * and to share a single API, these names appear under { CTL_NET, PF_KEY }
7946 1.15 jonathan * for both FAST_IPSEC and KAME IPSEC.
7947 1.15 jonathan */
7948 1.15 jonathan SYSCTL_SETUP(sysctl_net_key_compat_setup, "sysctl net.key subtree setup for FAST_IPSEC")
7949 1.15 jonathan {
7950 1.15 jonathan
7951 1.15 jonathan /* Make sure net.key exists before we register nodes underneath it. */
7952 1.15 jonathan sysctl_createv(clog, 0, NULL, NULL,
7953 1.15 jonathan CTLFLAG_PERMANENT,
7954 1.15 jonathan CTLTYPE_NODE, "net", NULL,
7955 1.15 jonathan NULL, 0, NULL, 0,
7956 1.15 jonathan CTL_NET, CTL_EOL);
7957 1.15 jonathan sysctl_createv(clog, 0, NULL, NULL,
7958 1.15 jonathan CTLFLAG_PERMANENT,
7959 1.15 jonathan CTLTYPE_NODE, "key", NULL,
7960 1.15 jonathan NULL, 0, NULL, 0,
7961 1.15 jonathan CTL_NET, PF_KEY, CTL_EOL);
7962 1.15 jonathan
7963 1.15 jonathan /* Register the net.key.dump{sa,sp} nodes used by setkey(8). */
7964 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7965 1.11 atatat CTLFLAG_PERMANENT,
7966 1.5 scw CTLTYPE_STRUCT, "dumpsa", NULL,
7967 1.5 scw sysctl_net_key_dumpsa, 0, NULL, 0,
7968 1.5 scw CTL_NET, PF_KEY, KEYCTL_DUMPSA, CTL_EOL);
7969 1.11 atatat sysctl_createv(clog, 0, NULL, NULL,
7970 1.11 atatat CTLFLAG_PERMANENT,
7971 1.5 scw CTLTYPE_STRUCT, "dumpsp", NULL,
7972 1.5 scw sysctl_net_key_dumpsp, 0, NULL, 0,
7973 1.5 scw CTL_NET, PF_KEY, KEYCTL_DUMPSP, CTL_EOL);
7974 1.1 jonathan }
7975