ieee80211_crypto.c revision 1.18 1 1.18 maxv /* $NetBSD: ieee80211_crypto.c,v 1.18 2017/12/10 08:56:23 maxv Exp $ */
2 1.1 dyoung /*-
3 1.1 dyoung * Copyright (c) 2001 Atsushi Onoe
4 1.7 dyoung * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
5 1.1 dyoung * All rights reserved.
6 1.1 dyoung *
7 1.1 dyoung * Redistribution and use in source and binary forms, with or without
8 1.1 dyoung * modification, are permitted provided that the following conditions
9 1.1 dyoung * are met:
10 1.1 dyoung * 1. Redistributions of source code must retain the above copyright
11 1.1 dyoung * notice, this list of conditions and the following disclaimer.
12 1.1 dyoung * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 dyoung * notice, this list of conditions and the following disclaimer in the
14 1.1 dyoung * documentation and/or other materials provided with the distribution.
15 1.1 dyoung * 3. The name of the author may not be used to endorse or promote products
16 1.1 dyoung * derived from this software without specific prior written permission.
17 1.1 dyoung *
18 1.1 dyoung * Alternatively, this software may be distributed under the terms of the
19 1.1 dyoung * GNU General Public License ("GPL") version 2 as published by the Free
20 1.1 dyoung * Software Foundation.
21 1.1 dyoung *
22 1.1 dyoung * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 1.1 dyoung * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 1.1 dyoung * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 1.1 dyoung * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 1.1 dyoung * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 1.1 dyoung * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 1.1 dyoung * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 1.1 dyoung * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 1.1 dyoung * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 1.1 dyoung * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 1.1 dyoung */
33 1.1 dyoung
34 1.1 dyoung #include <sys/cdefs.h>
35 1.3 dyoung #ifdef __FreeBSD__
36 1.10 skrll __FBSDID("$FreeBSD: src/sys/net80211/ieee80211_crypto.c,v 1.12 2005/08/08 18:46:35 sam Exp $");
37 1.7 dyoung #endif
38 1.7 dyoung #ifdef __NetBSD__
39 1.18 maxv __KERNEL_RCSID(0, "$NetBSD: ieee80211_crypto.c,v 1.18 2017/12/10 08:56:23 maxv Exp $");
40 1.3 dyoung #endif
41 1.1 dyoung
42 1.17 pooka #ifdef _KERNEL_OPT
43 1.1 dyoung #include "opt_inet.h"
44 1.17 pooka #endif
45 1.1 dyoung
46 1.7 dyoung /*
47 1.7 dyoung * IEEE 802.11 generic crypto support.
48 1.7 dyoung */
49 1.1 dyoung #include <sys/param.h>
50 1.7 dyoung #include <sys/mbuf.h>
51 1.7 dyoung
52 1.1 dyoung #include <sys/socket.h>
53 1.1 dyoung #include <sys/sockio.h>
54 1.1 dyoung #include <sys/endian.h>
55 1.1 dyoung #include <sys/errno.h>
56 1.1 dyoung #include <sys/proc.h>
57 1.1 dyoung #include <sys/sysctl.h>
58 1.1 dyoung
59 1.1 dyoung #include <net/if.h>
60 1.1 dyoung #include <net/if_media.h>
61 1.1 dyoung #include <net/if_arp.h>
62 1.4 dyoung #include <net/if_ether.h>
63 1.1 dyoung #include <net/if_llc.h>
64 1.1 dyoung
65 1.7 dyoung #include <net80211/ieee80211_netbsd.h>
66 1.1 dyoung #include <net80211/ieee80211_var.h>
67 1.1 dyoung
68 1.7 dyoung /*
69 1.7 dyoung * Table of registered cipher modules.
70 1.7 dyoung */
71 1.7 dyoung static const struct ieee80211_cipher *ciphers[IEEE80211_CIPHER_MAX];
72 1.1 dyoung
73 1.1 dyoung #ifdef INET
74 1.7 dyoung #include <netinet/in.h>
75 1.4 dyoung #include <net/if_ether.h>
76 1.4 dyoung #endif
77 1.1 dyoung
78 1.7 dyoung static int _ieee80211_crypto_delkey(struct ieee80211com *,
79 1.7 dyoung struct ieee80211_key *);
80 1.7 dyoung
81 1.7 dyoung /*
82 1.7 dyoung * Default "null" key management routines.
83 1.7 dyoung */
84 1.7 dyoung static int
85 1.10 skrll null_key_alloc(struct ieee80211com *ic, const struct ieee80211_key *k,
86 1.10 skrll ieee80211_keyix *keyix, ieee80211_keyix *rxkeyix)
87 1.7 dyoung {
88 1.9 dyoung if (!(&ic->ic_nw_keys[0] <= k &&
89 1.9 dyoung k < &ic->ic_nw_keys[IEEE80211_WEP_NKID])) {
90 1.9 dyoung /*
91 1.9 dyoung * Not in the global key table, the driver should handle this
92 1.9 dyoung * by allocating a slot in the h/w key table/cache. In
93 1.9 dyoung * lieu of that return key slot 0 for any unicast key
94 1.9 dyoung * request. We disallow the request if this is a group key.
95 1.9 dyoung * This default policy does the right thing for legacy hardware
96 1.9 dyoung * with a 4 key table. It also handles devices that pass
97 1.9 dyoung * packets through untouched when marked with the WEP bit
98 1.9 dyoung * and key index 0.
99 1.9 dyoung */
100 1.10 skrll if (k->wk_flags & IEEE80211_KEY_GROUP)
101 1.10 skrll return 0;
102 1.10 skrll *keyix = 0; /* NB: use key index 0 for ucast key */
103 1.10 skrll } else {
104 1.10 skrll *keyix = k - ic->ic_nw_keys;
105 1.9 dyoung }
106 1.10 skrll *rxkeyix = IEEE80211_KEYIX_NONE; /* XXX maybe *keyix? */
107 1.10 skrll return 1;
108 1.7 dyoung }
109 1.7 dyoung static int
110 1.14 christos null_key_delete(struct ieee80211com *ic,
111 1.14 christos const struct ieee80211_key *k)
112 1.7 dyoung {
113 1.7 dyoung return 1;
114 1.7 dyoung }
115 1.7 dyoung static int
116 1.14 christos null_key_set(struct ieee80211com *ic,
117 1.14 christos const struct ieee80211_key *k,
118 1.14 christos const u_int8_t mac[IEEE80211_ADDR_LEN])
119 1.7 dyoung {
120 1.7 dyoung return 1;
121 1.7 dyoung }
122 1.14 christos static void null_key_update(struct ieee80211com *ic) {}
123 1.7 dyoung
124 1.7 dyoung /*
125 1.7 dyoung * Write-arounds for common operations.
126 1.7 dyoung */
127 1.7 dyoung static __inline void
128 1.7 dyoung cipher_detach(struct ieee80211_key *key)
129 1.7 dyoung {
130 1.7 dyoung key->wk_cipher->ic_detach(key);
131 1.7 dyoung }
132 1.7 dyoung
133 1.7 dyoung /*
134 1.7 dyoung * Wrappers for driver key management methods.
135 1.7 dyoung */
136 1.7 dyoung static __inline int
137 1.7 dyoung dev_key_alloc(struct ieee80211com *ic,
138 1.10 skrll const struct ieee80211_key *key,
139 1.10 skrll ieee80211_keyix *keyix, ieee80211_keyix *rxkeyix)
140 1.7 dyoung {
141 1.10 skrll return ic->ic_crypto.cs_key_alloc(ic, key, keyix, rxkeyix);
142 1.7 dyoung }
143 1.7 dyoung
144 1.7 dyoung static __inline int
145 1.7 dyoung dev_key_delete(struct ieee80211com *ic,
146 1.7 dyoung const struct ieee80211_key *key)
147 1.7 dyoung {
148 1.7 dyoung return ic->ic_crypto.cs_key_delete(ic, key);
149 1.7 dyoung }
150 1.1 dyoung
151 1.7 dyoung static __inline int
152 1.7 dyoung dev_key_set(struct ieee80211com *ic, const struct ieee80211_key *key,
153 1.7 dyoung const u_int8_t mac[IEEE80211_ADDR_LEN])
154 1.7 dyoung {
155 1.7 dyoung return ic->ic_crypto.cs_key_set(ic, key, mac);
156 1.7 dyoung }
157 1.1 dyoung
158 1.7 dyoung /*
159 1.7 dyoung * Setup crypto support.
160 1.7 dyoung */
161 1.1 dyoung void
162 1.7 dyoung ieee80211_crypto_attach(struct ieee80211com *ic)
163 1.1 dyoung {
164 1.7 dyoung struct ieee80211_crypto_state *cs = &ic->ic_crypto;
165 1.7 dyoung int i;
166 1.1 dyoung
167 1.7 dyoung /* NB: we assume everything is pre-zero'd */
168 1.7 dyoung cs->cs_def_txkey = IEEE80211_KEYIX_NONE;
169 1.10 skrll cs->cs_max_keyix = IEEE80211_WEP_NKID;
170 1.7 dyoung ciphers[IEEE80211_CIPHER_NONE] = &ieee80211_cipher_none;
171 1.7 dyoung for (i = 0; i < IEEE80211_WEP_NKID; i++)
172 1.7 dyoung ieee80211_crypto_resetkey(ic, &cs->cs_nw_keys[i],
173 1.7 dyoung IEEE80211_KEYIX_NONE);
174 1.1 dyoung /*
175 1.7 dyoung * Initialize the driver key support routines to noop entries.
176 1.7 dyoung * This is useful especially for the cipher test modules.
177 1.1 dyoung */
178 1.7 dyoung cs->cs_key_alloc = null_key_alloc;
179 1.7 dyoung cs->cs_key_set = null_key_set;
180 1.7 dyoung cs->cs_key_delete = null_key_delete;
181 1.7 dyoung cs->cs_key_update_begin = null_key_update;
182 1.7 dyoung cs->cs_key_update_end = null_key_update;
183 1.1 dyoung }
184 1.1 dyoung
185 1.7 dyoung /*
186 1.7 dyoung * Teardown crypto support.
187 1.7 dyoung */
188 1.1 dyoung void
189 1.7 dyoung ieee80211_crypto_detach(struct ieee80211com *ic)
190 1.1 dyoung {
191 1.7 dyoung ieee80211_crypto_delglobalkeys(ic);
192 1.7 dyoung }
193 1.1 dyoung
194 1.7 dyoung /*
195 1.7 dyoung * Register a crypto cipher module.
196 1.7 dyoung */
197 1.7 dyoung void
198 1.7 dyoung ieee80211_crypto_register(const struct ieee80211_cipher *cip)
199 1.7 dyoung {
200 1.7 dyoung if (cip->ic_cipher >= IEEE80211_CIPHER_MAX) {
201 1.7 dyoung printf("%s: cipher %s has an invalid cipher index %u\n",
202 1.7 dyoung __func__, cip->ic_name, cip->ic_cipher);
203 1.7 dyoung return;
204 1.7 dyoung }
205 1.7 dyoung if (ciphers[cip->ic_cipher] != NULL && ciphers[cip->ic_cipher] != cip) {
206 1.7 dyoung printf("%s: cipher %s registered with a different template\n",
207 1.7 dyoung __func__, cip->ic_name);
208 1.7 dyoung return;
209 1.1 dyoung }
210 1.7 dyoung ciphers[cip->ic_cipher] = cip;
211 1.1 dyoung }
212 1.1 dyoung
213 1.7 dyoung /*
214 1.7 dyoung * Unregister a crypto cipher module.
215 1.7 dyoung */
216 1.7 dyoung void
217 1.7 dyoung ieee80211_crypto_unregister(const struct ieee80211_cipher *cip)
218 1.1 dyoung {
219 1.7 dyoung if (cip->ic_cipher >= IEEE80211_CIPHER_MAX) {
220 1.7 dyoung printf("%s: cipher %s has an invalid cipher index %u\n",
221 1.7 dyoung __func__, cip->ic_name, cip->ic_cipher);
222 1.7 dyoung return;
223 1.1 dyoung }
224 1.7 dyoung if (ciphers[cip->ic_cipher] != NULL && ciphers[cip->ic_cipher] != cip) {
225 1.7 dyoung printf("%s: cipher %s registered with a different template\n",
226 1.7 dyoung __func__, cip->ic_name);
227 1.7 dyoung return;
228 1.5 dyoung }
229 1.7 dyoung /* NB: don't complain about not being registered */
230 1.7 dyoung /* XXX disallow if references */
231 1.7 dyoung ciphers[cip->ic_cipher] = NULL;
232 1.7 dyoung }
233 1.7 dyoung
234 1.7 dyoung int
235 1.7 dyoung ieee80211_crypto_available(u_int cipher)
236 1.7 dyoung {
237 1.7 dyoung return cipher < IEEE80211_CIPHER_MAX && ciphers[cipher] != NULL;
238 1.7 dyoung }
239 1.7 dyoung
240 1.7 dyoung /* XXX well-known names! */
241 1.7 dyoung static const char *cipher_modnames[] = {
242 1.7 dyoung "wlan_wep", /* IEEE80211_CIPHER_WEP */
243 1.7 dyoung "wlan_tkip", /* IEEE80211_CIPHER_TKIP */
244 1.7 dyoung "wlan_aes_ocb", /* IEEE80211_CIPHER_AES_OCB */
245 1.7 dyoung "wlan_ccmp", /* IEEE80211_CIPHER_AES_CCM */
246 1.7 dyoung "wlan_ckip", /* IEEE80211_CIPHER_CKIP */
247 1.7 dyoung };
248 1.7 dyoung
249 1.7 dyoung /*
250 1.7 dyoung * Establish a relationship between the specified key and cipher
251 1.7 dyoung * and, if necessary, allocate a hardware index from the driver.
252 1.7 dyoung * Note that when a fixed key index is required it must be specified
253 1.7 dyoung * and we blindly assign it w/o consulting the driver (XXX).
254 1.7 dyoung *
255 1.7 dyoung * This must be the first call applied to a key; all the other key
256 1.7 dyoung * routines assume wk_cipher is setup.
257 1.7 dyoung *
258 1.7 dyoung * Locking must be handled by the caller using:
259 1.7 dyoung * ieee80211_key_update_begin(ic);
260 1.7 dyoung * ieee80211_key_update_end(ic);
261 1.7 dyoung */
262 1.7 dyoung int
263 1.7 dyoung ieee80211_crypto_newkey(struct ieee80211com *ic,
264 1.7 dyoung int cipher, int flags, struct ieee80211_key *key)
265 1.7 dyoung {
266 1.7 dyoung #define N(a) (sizeof(a) / sizeof(a[0]))
267 1.7 dyoung const struct ieee80211_cipher *cip;
268 1.10 skrll ieee80211_keyix keyix, rxkeyix;
269 1.7 dyoung void *keyctx;
270 1.7 dyoung int oflags;
271 1.7 dyoung
272 1.7 dyoung /*
273 1.7 dyoung * Validate cipher and set reference to cipher routines.
274 1.7 dyoung */
275 1.7 dyoung if (cipher >= IEEE80211_CIPHER_MAX) {
276 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
277 1.7 dyoung "%s: invalid cipher %u\n", __func__, cipher);
278 1.7 dyoung ic->ic_stats.is_crypto_badcipher++;
279 1.7 dyoung return 0;
280 1.1 dyoung }
281 1.7 dyoung cip = ciphers[cipher];
282 1.7 dyoung if (cip == NULL) {
283 1.1 dyoung /*
284 1.7 dyoung * Auto-load cipher module if we have a well-known name
285 1.7 dyoung * for it. It might be better to use string names rather
286 1.7 dyoung * than numbers and craft a module name based on the cipher
287 1.7 dyoung * name; e.g. wlan_cipher_<cipher-name>.
288 1.1 dyoung */
289 1.7 dyoung if (cipher < N(cipher_modnames)) {
290 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
291 1.7 dyoung "%s: unregistered cipher %u, load module %s\n",
292 1.7 dyoung __func__, cipher, cipher_modnames[cipher]);
293 1.7 dyoung ieee80211_load_module(cipher_modnames[cipher]);
294 1.7 dyoung /*
295 1.7 dyoung * If cipher module loaded it should immediately
296 1.7 dyoung * call ieee80211_crypto_register which will fill
297 1.7 dyoung * in the entry in the ciphers array.
298 1.7 dyoung */
299 1.7 dyoung cip = ciphers[cipher];
300 1.1 dyoung }
301 1.7 dyoung if (cip == NULL) {
302 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
303 1.7 dyoung "%s: unable to load cipher %u, module %s\n",
304 1.7 dyoung __func__, cipher,
305 1.7 dyoung cipher < N(cipher_modnames) ?
306 1.7 dyoung cipher_modnames[cipher] : "<unknown>");
307 1.7 dyoung ic->ic_stats.is_crypto_nocipher++;
308 1.7 dyoung return 0;
309 1.1 dyoung }
310 1.7 dyoung }
311 1.7 dyoung
312 1.7 dyoung oflags = key->wk_flags;
313 1.7 dyoung flags &= IEEE80211_KEY_COMMON;
314 1.7 dyoung /*
315 1.7 dyoung * If the hardware does not support the cipher then
316 1.7 dyoung * fallback to a host-based implementation.
317 1.7 dyoung */
318 1.7 dyoung if ((ic->ic_caps & (1<<cipher)) == 0) {
319 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
320 1.7 dyoung "%s: no h/w support for cipher %s, falling back to s/w\n",
321 1.7 dyoung __func__, cip->ic_name);
322 1.7 dyoung flags |= IEEE80211_KEY_SWCRYPT;
323 1.7 dyoung }
324 1.7 dyoung /*
325 1.7 dyoung * Hardware TKIP with software MIC is an important
326 1.7 dyoung * combination; we handle it by flagging each key,
327 1.7 dyoung * the cipher modules honor it.
328 1.7 dyoung */
329 1.7 dyoung if (cipher == IEEE80211_CIPHER_TKIP &&
330 1.7 dyoung (ic->ic_caps & IEEE80211_C_TKIPMIC) == 0) {
331 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
332 1.7 dyoung "%s: no h/w support for TKIP MIC, falling back to s/w\n",
333 1.7 dyoung __func__);
334 1.7 dyoung flags |= IEEE80211_KEY_SWMIC;
335 1.7 dyoung }
336 1.7 dyoung
337 1.7 dyoung /*
338 1.7 dyoung * Bind cipher to key instance. Note we do this
339 1.7 dyoung * after checking the device capabilities so the
340 1.7 dyoung * cipher module can optimize space usage based on
341 1.7 dyoung * whether or not it needs to do the cipher work.
342 1.7 dyoung */
343 1.7 dyoung if (key->wk_cipher != cip || key->wk_flags != flags) {
344 1.7 dyoung again:
345 1.7 dyoung /*
346 1.7 dyoung * Fillin the flags so cipher modules can see s/w
347 1.7 dyoung * crypto requirements and potentially allocate
348 1.7 dyoung * different state and/or attach different method
349 1.7 dyoung * pointers.
350 1.7 dyoung *
351 1.7 dyoung * XXX this is not right when s/w crypto fallback
352 1.7 dyoung * fails and we try to restore previous state.
353 1.7 dyoung */
354 1.7 dyoung key->wk_flags = flags;
355 1.7 dyoung keyctx = cip->ic_attach(ic, key);
356 1.7 dyoung if (keyctx == NULL) {
357 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
358 1.7 dyoung "%s: unable to attach cipher %s\n",
359 1.7 dyoung __func__, cip->ic_name);
360 1.7 dyoung key->wk_flags = oflags; /* restore old flags */
361 1.7 dyoung ic->ic_stats.is_crypto_attachfail++;
362 1.7 dyoung return 0;
363 1.1 dyoung }
364 1.7 dyoung cipher_detach(key);
365 1.7 dyoung key->wk_cipher = cip; /* XXX refcnt? */
366 1.7 dyoung key->wk_private = keyctx;
367 1.7 dyoung }
368 1.7 dyoung /*
369 1.7 dyoung * Commit to requested usage so driver can see the flags.
370 1.7 dyoung */
371 1.7 dyoung key->wk_flags = flags;
372 1.7 dyoung
373 1.7 dyoung /*
374 1.7 dyoung * Ask the driver for a key index if we don't have one.
375 1.7 dyoung * Note that entries in the global key table always have
376 1.7 dyoung * an index; this means it's safe to call this routine
377 1.7 dyoung * for these entries just to setup the reference to the
378 1.7 dyoung * cipher template. Note also that when using software
379 1.7 dyoung * crypto we also call the driver to give us a key index.
380 1.7 dyoung */
381 1.7 dyoung if (key->wk_keyix == IEEE80211_KEYIX_NONE) {
382 1.10 skrll if (!dev_key_alloc(ic, key, &keyix, &rxkeyix)) {
383 1.7 dyoung /*
384 1.7 dyoung * Driver has no room; fallback to doing crypto
385 1.7 dyoung * in the host. We change the flags and start the
386 1.7 dyoung * procedure over. If we get back here then there's
387 1.7 dyoung * no hope and we bail. Note that this can leave
388 1.7 dyoung * the key in a inconsistent state if the caller
389 1.7 dyoung * continues to use it.
390 1.7 dyoung */
391 1.7 dyoung if ((key->wk_flags & IEEE80211_KEY_SWCRYPT) == 0) {
392 1.7 dyoung ic->ic_stats.is_crypto_swfallback++;
393 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
394 1.7 dyoung "%s: no h/w resources for cipher %s, "
395 1.7 dyoung "falling back to s/w\n", __func__,
396 1.7 dyoung cip->ic_name);
397 1.7 dyoung oflags = key->wk_flags;
398 1.7 dyoung flags |= IEEE80211_KEY_SWCRYPT;
399 1.7 dyoung if (cipher == IEEE80211_CIPHER_TKIP)
400 1.7 dyoung flags |= IEEE80211_KEY_SWMIC;
401 1.7 dyoung goto again;
402 1.5 dyoung }
403 1.7 dyoung ic->ic_stats.is_crypto_keyfail++;
404 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
405 1.7 dyoung "%s: unable to setup cipher %s\n",
406 1.7 dyoung __func__, cip->ic_name);
407 1.7 dyoung return 0;
408 1.1 dyoung }
409 1.10 skrll key->wk_keyix = keyix;
410 1.10 skrll key->wk_rxkeyix = rxkeyix;
411 1.7 dyoung }
412 1.7 dyoung return 1;
413 1.7 dyoung #undef N
414 1.7 dyoung }
415 1.7 dyoung
416 1.7 dyoung /*
417 1.7 dyoung * Remove the key (no locking, for internal use).
418 1.7 dyoung */
419 1.7 dyoung static int
420 1.7 dyoung _ieee80211_crypto_delkey(struct ieee80211com *ic, struct ieee80211_key *key)
421 1.7 dyoung {
422 1.10 skrll ieee80211_keyix keyix;
423 1.7 dyoung
424 1.7 dyoung IASSERT(key->wk_cipher != NULL, ("No cipher!"));
425 1.7 dyoung
426 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
427 1.7 dyoung "%s: %s keyix %u flags 0x%x rsc %ju tsc %ju len %u\n",
428 1.7 dyoung __func__, key->wk_cipher->ic_name,
429 1.7 dyoung key->wk_keyix, key->wk_flags,
430 1.7 dyoung key->wk_keyrsc, key->wk_keytsc, key->wk_keylen);
431 1.7 dyoung
432 1.7 dyoung keyix = key->wk_keyix;
433 1.7 dyoung if (keyix != IEEE80211_KEYIX_NONE) {
434 1.7 dyoung /*
435 1.7 dyoung * Remove hardware entry.
436 1.7 dyoung */
437 1.7 dyoung /* XXX key cache */
438 1.7 dyoung if (!dev_key_delete(ic, key)) {
439 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
440 1.7 dyoung "%s: driver did not delete key index %u\n",
441 1.7 dyoung __func__, keyix);
442 1.7 dyoung ic->ic_stats.is_crypto_delkey++;
443 1.7 dyoung /* XXX recovery? */
444 1.1 dyoung }
445 1.1 dyoung }
446 1.7 dyoung cipher_detach(key);
447 1.7 dyoung memset(key, 0, sizeof(*key));
448 1.7 dyoung ieee80211_crypto_resetkey(ic, key, IEEE80211_KEYIX_NONE);
449 1.7 dyoung return 1;
450 1.7 dyoung }
451 1.7 dyoung
452 1.7 dyoung /*
453 1.7 dyoung * Remove the specified key.
454 1.7 dyoung */
455 1.7 dyoung int
456 1.7 dyoung ieee80211_crypto_delkey(struct ieee80211com *ic, struct ieee80211_key *key)
457 1.7 dyoung {
458 1.7 dyoung int status;
459 1.1 dyoung
460 1.7 dyoung ieee80211_key_update_begin(ic);
461 1.7 dyoung status = _ieee80211_crypto_delkey(ic, key);
462 1.7 dyoung ieee80211_key_update_end(ic);
463 1.7 dyoung return status;
464 1.1 dyoung }
465 1.1 dyoung
466 1.1 dyoung /*
467 1.7 dyoung * Clear the global key table.
468 1.1 dyoung */
469 1.7 dyoung void
470 1.7 dyoung ieee80211_crypto_delglobalkeys(struct ieee80211com *ic)
471 1.7 dyoung {
472 1.7 dyoung int i;
473 1.7 dyoung
474 1.7 dyoung ieee80211_key_update_begin(ic);
475 1.7 dyoung for (i = 0; i < IEEE80211_WEP_NKID; i++)
476 1.7 dyoung (void) _ieee80211_crypto_delkey(ic, &ic->ic_nw_keys[i]);
477 1.7 dyoung ieee80211_key_update_end(ic);
478 1.7 dyoung }
479 1.7 dyoung
480 1.7 dyoung /*
481 1.7 dyoung * Set the contents of the specified key.
482 1.7 dyoung *
483 1.7 dyoung * Locking must be handled by the caller using:
484 1.7 dyoung * ieee80211_key_update_begin(ic);
485 1.7 dyoung * ieee80211_key_update_end(ic);
486 1.7 dyoung */
487 1.7 dyoung int
488 1.7 dyoung ieee80211_crypto_setkey(struct ieee80211com *ic, struct ieee80211_key *key,
489 1.7 dyoung const u_int8_t macaddr[IEEE80211_ADDR_LEN])
490 1.7 dyoung {
491 1.7 dyoung const struct ieee80211_cipher *cip = key->wk_cipher;
492 1.7 dyoung
493 1.7 dyoung IASSERT(cip != NULL, ("No cipher!"));
494 1.7 dyoung
495 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
496 1.7 dyoung "%s: %s keyix %u flags 0x%x mac %s rsc %ju tsc %ju len %u\n",
497 1.7 dyoung __func__, cip->ic_name, key->wk_keyix,
498 1.7 dyoung key->wk_flags, ether_sprintf(macaddr),
499 1.7 dyoung key->wk_keyrsc, key->wk_keytsc, key->wk_keylen);
500 1.7 dyoung
501 1.7 dyoung /*
502 1.7 dyoung * Give cipher a chance to validate key contents.
503 1.7 dyoung * XXX should happen before modifying state.
504 1.7 dyoung */
505 1.7 dyoung if (!cip->ic_setkey(key)) {
506 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
507 1.7 dyoung "%s: cipher %s rejected key index %u len %u flags 0x%x\n",
508 1.7 dyoung __func__, cip->ic_name, key->wk_keyix,
509 1.7 dyoung key->wk_keylen, key->wk_flags);
510 1.7 dyoung ic->ic_stats.is_crypto_setkey_cipher++;
511 1.7 dyoung return 0;
512 1.7 dyoung }
513 1.7 dyoung if (key->wk_keyix == IEEE80211_KEYIX_NONE) {
514 1.7 dyoung /* XXX nothing allocated, should not happen */
515 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
516 1.7 dyoung "%s: no key index; should not happen!\n", __func__);
517 1.7 dyoung ic->ic_stats.is_crypto_setkey_nokey++;
518 1.7 dyoung return 0;
519 1.7 dyoung }
520 1.7 dyoung return dev_key_set(ic, key, macaddr);
521 1.7 dyoung }
522 1.1 dyoung
523 1.7 dyoung /*
524 1.7 dyoung * Add privacy headers appropriate for the specified key.
525 1.7 dyoung */
526 1.7 dyoung struct ieee80211_key *
527 1.7 dyoung ieee80211_crypto_encap(struct ieee80211com *ic,
528 1.7 dyoung struct ieee80211_node *ni, struct mbuf *m)
529 1.7 dyoung {
530 1.7 dyoung struct ieee80211_key *k;
531 1.7 dyoung struct ieee80211_frame *wh;
532 1.7 dyoung const struct ieee80211_cipher *cip;
533 1.7 dyoung u_int8_t keyid;
534 1.1 dyoung
535 1.7 dyoung /*
536 1.7 dyoung * Multicast traffic always uses the multicast key.
537 1.7 dyoung * Otherwise if a unicast key is set we use that and
538 1.7 dyoung * it is always key index 0. When no unicast key is
539 1.7 dyoung * set we fall back to the default transmit key.
540 1.7 dyoung */
541 1.7 dyoung wh = mtod(m, struct ieee80211_frame *);
542 1.7 dyoung if (IEEE80211_IS_MULTICAST(wh->i_addr1) ||
543 1.7 dyoung ni->ni_ucastkey.wk_cipher == &ieee80211_cipher_none) {
544 1.7 dyoung if (ic->ic_def_txkey == IEEE80211_KEYIX_NONE) {
545 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
546 1.7 dyoung "[%s] no default transmit key (%s) deftxkey %u\n",
547 1.7 dyoung ether_sprintf(wh->i_addr1), __func__,
548 1.7 dyoung ic->ic_def_txkey);
549 1.7 dyoung ic->ic_stats.is_tx_nodefkey++;
550 1.10 skrll return NULL;
551 1.1 dyoung }
552 1.7 dyoung keyid = ic->ic_def_txkey;
553 1.7 dyoung k = &ic->ic_nw_keys[ic->ic_def_txkey];
554 1.7 dyoung } else {
555 1.7 dyoung keyid = 0;
556 1.7 dyoung k = &ni->ni_ucastkey;
557 1.1 dyoung }
558 1.7 dyoung cip = k->wk_cipher;
559 1.10 skrll return (cip->ic_encap(k, m, keyid<<6) ? k : NULL);
560 1.1 dyoung }
561 1.1 dyoung
562 1.1 dyoung /*
563 1.7 dyoung * Validate and strip privacy headers (and trailer) for a
564 1.7 dyoung * received frame that has the WEP/Privacy bit set.
565 1.1 dyoung */
566 1.7 dyoung struct ieee80211_key *
567 1.7 dyoung ieee80211_crypto_decap(struct ieee80211com *ic,
568 1.18 maxv struct ieee80211_node *ni, struct mbuf **mp, int hdrlen)
569 1.7 dyoung {
570 1.7 dyoung #define IEEE80211_WEP_HDRLEN (IEEE80211_WEP_IVLEN + IEEE80211_WEP_KIDLEN)
571 1.7 dyoung #define IEEE80211_WEP_MINLEN \
572 1.10 skrll (sizeof(struct ieee80211_frame) + \
573 1.7 dyoung IEEE80211_WEP_HDRLEN + IEEE80211_WEP_CRCLEN)
574 1.7 dyoung struct ieee80211_key *k;
575 1.7 dyoung struct ieee80211_frame *wh;
576 1.7 dyoung const struct ieee80211_cipher *cip;
577 1.18 maxv struct mbuf *m = *mp;
578 1.7 dyoung u_int8_t keyid;
579 1.7 dyoung
580 1.7 dyoung /* NB: this minimum size data frame could be bigger */
581 1.7 dyoung if (m->m_pkthdr.len < IEEE80211_WEP_MINLEN) {
582 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_ANY,
583 1.7 dyoung "%s: WEP data frame too short, len %u\n",
584 1.7 dyoung __func__, m->m_pkthdr.len);
585 1.7 dyoung ic->ic_stats.is_rx_tooshort++; /* XXX need unique stat? */
586 1.7 dyoung return NULL;
587 1.7 dyoung }
588 1.7 dyoung
589 1.7 dyoung /*
590 1.7 dyoung * Locate the key. If unicast and there is no unicast
591 1.7 dyoung * key then we fall back to the key id in the header.
592 1.7 dyoung * This assumes unicast keys are only configured when
593 1.7 dyoung * the key id in the header is meaningless (typically 0).
594 1.7 dyoung */
595 1.7 dyoung wh = mtod(m, struct ieee80211_frame *);
596 1.11 dyoung m_copydata(m, hdrlen + IEEE80211_WEP_IVLEN, sizeof(keyid), &keyid);
597 1.7 dyoung if (IEEE80211_IS_MULTICAST(wh->i_addr1) ||
598 1.7 dyoung ni->ni_ucastkey.wk_cipher == &ieee80211_cipher_none)
599 1.7 dyoung k = &ic->ic_nw_keys[keyid >> 6];
600 1.7 dyoung else
601 1.7 dyoung k = &ni->ni_ucastkey;
602 1.1 dyoung
603 1.7 dyoung /*
604 1.7 dyoung * Insure crypto header is contiguous for all decap work.
605 1.7 dyoung */
606 1.7 dyoung cip = k->wk_cipher;
607 1.7 dyoung if (m->m_len < hdrlen + cip->ic_header &&
608 1.7 dyoung (m = m_pullup(m, hdrlen + cip->ic_header)) == NULL) {
609 1.18 maxv *mp = NULL;
610 1.7 dyoung IEEE80211_DPRINTF(ic, IEEE80211_MSG_CRYPTO,
611 1.7 dyoung "[%s] unable to pullup %s header\n",
612 1.7 dyoung ether_sprintf(wh->i_addr2), cip->ic_name);
613 1.7 dyoung ic->ic_stats.is_rx_wepfail++; /* XXX */
614 1.12 dyoung return NULL;
615 1.7 dyoung }
616 1.1 dyoung
617 1.9 dyoung return (cip->ic_decap(k, m, hdrlen) ? k : NULL);
618 1.7 dyoung #undef IEEE80211_WEP_MINLEN
619 1.7 dyoung #undef IEEE80211_WEP_HDRLEN
620 1.1 dyoung }
621