ieee80211_crypto_wep.c revision 1.3.6.2 1 1.3.6.2 skrll /*-
2 1.3.6.2 skrll * Copyright (c) 2002-2005 Sam Leffler, Errno Consulting
3 1.3.6.2 skrll * All rights reserved.
4 1.3.6.2 skrll *
5 1.3.6.2 skrll * Redistribution and use in source and binary forms, with or without
6 1.3.6.2 skrll * modification, are permitted provided that the following conditions
7 1.3.6.2 skrll * are met:
8 1.3.6.2 skrll * 1. Redistributions of source code must retain the above copyright
9 1.3.6.2 skrll * notice, this list of conditions and the following disclaimer.
10 1.3.6.2 skrll * 2. Redistributions in binary form must reproduce the above copyright
11 1.3.6.2 skrll * notice, this list of conditions and the following disclaimer in the
12 1.3.6.2 skrll * documentation and/or other materials provided with the distribution.
13 1.3.6.2 skrll * 3. The name of the author may not be used to endorse or promote products
14 1.3.6.2 skrll * derived from this software without specific prior written permission.
15 1.3.6.2 skrll *
16 1.3.6.2 skrll * Alternatively, this software may be distributed under the terms of the
17 1.3.6.2 skrll * GNU General Public License ("GPL") version 2 as published by the Free
18 1.3.6.2 skrll * Software Foundation.
19 1.3.6.2 skrll *
20 1.3.6.2 skrll * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
21 1.3.6.2 skrll * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
22 1.3.6.2 skrll * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
23 1.3.6.2 skrll * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
24 1.3.6.2 skrll * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
25 1.3.6.2 skrll * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
26 1.3.6.2 skrll * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
27 1.3.6.2 skrll * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
28 1.3.6.2 skrll * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
29 1.3.6.2 skrll * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30 1.3.6.2 skrll */
31 1.3.6.2 skrll
32 1.3.6.2 skrll #include <sys/cdefs.h>
33 1.3.6.2 skrll #ifdef __FreeBSD__
34 1.3.6.2 skrll __FBSDID("$FreeBSD: src/sys/net80211/ieee80211_crypto_wep.c,v 1.7 2005/06/10 16:11:24 sam Exp $");
35 1.3.6.2 skrll #endif
36 1.3.6.2 skrll #ifdef __NetBSD__
37 1.3.6.2 skrll __KERNEL_RCSID(0, "$NetBSD: ieee80211_crypto_wep.c,v 1.3.6.2 2005/11/10 14:10:51 skrll Exp $");
38 1.3.6.2 skrll #endif
39 1.3.6.2 skrll
40 1.3.6.2 skrll /*
41 1.3.6.2 skrll * IEEE 802.11 WEP crypto support.
42 1.3.6.2 skrll */
43 1.3.6.2 skrll #include <sys/param.h>
44 1.3.6.2 skrll #include <sys/systm.h>
45 1.3.6.2 skrll #include <sys/mbuf.h>
46 1.3.6.2 skrll #include <sys/malloc.h>
47 1.3.6.2 skrll #include <sys/kernel.h>
48 1.3.6.2 skrll #include <sys/endian.h>
49 1.3.6.2 skrll
50 1.3.6.2 skrll #include <sys/socket.h>
51 1.3.6.2 skrll
52 1.3.6.2 skrll #include <net/if.h>
53 1.3.6.2 skrll #include <net/if_media.h>
54 1.3.6.2 skrll
55 1.3.6.2 skrll #include <net80211/ieee80211_var.h>
56 1.3.6.2 skrll
57 1.3.6.2 skrll static void *wep_attach(struct ieee80211com *, struct ieee80211_key *);
58 1.3.6.2 skrll static void wep_detach(struct ieee80211_key *);
59 1.3.6.2 skrll static int wep_setkey(struct ieee80211_key *);
60 1.3.6.2 skrll static int wep_encap(struct ieee80211_key *, struct mbuf *, u_int8_t keyid);
61 1.3.6.2 skrll static int wep_decap(struct ieee80211_key *, struct mbuf *, int hdrlen);
62 1.3.6.2 skrll static int wep_enmic(struct ieee80211_key *, struct mbuf *, int);
63 1.3.6.2 skrll static int wep_demic(struct ieee80211_key *, struct mbuf *, int);
64 1.3.6.2 skrll
65 1.3.6.2 skrll const struct ieee80211_cipher ieee80211_cipher_wep = {
66 1.3.6.2 skrll .ic_name = "WEP",
67 1.3.6.2 skrll .ic_cipher = IEEE80211_CIPHER_WEP,
68 1.3.6.2 skrll .ic_header = IEEE80211_WEP_IVLEN + IEEE80211_WEP_KIDLEN,
69 1.3.6.2 skrll .ic_trailer = IEEE80211_WEP_CRCLEN,
70 1.3.6.2 skrll .ic_miclen = 0,
71 1.3.6.2 skrll .ic_attach = wep_attach,
72 1.3.6.2 skrll .ic_detach = wep_detach,
73 1.3.6.2 skrll .ic_setkey = wep_setkey,
74 1.3.6.2 skrll .ic_encap = wep_encap,
75 1.3.6.2 skrll .ic_decap = wep_decap,
76 1.3.6.2 skrll .ic_enmic = wep_enmic,
77 1.3.6.2 skrll .ic_demic = wep_demic,
78 1.3.6.2 skrll };
79 1.3.6.2 skrll
80 1.3.6.2 skrll #define wep ieee80211_cipher_wep
81 1.3.6.2 skrll
82 1.3.6.2 skrll static int wep_encrypt(struct ieee80211_key *, struct mbuf *, int hdrlen);
83 1.3.6.2 skrll static int wep_decrypt(struct ieee80211_key *, struct mbuf *, int hdrlen);
84 1.3.6.2 skrll
85 1.3.6.2 skrll struct wep_ctx {
86 1.3.6.2 skrll struct ieee80211com *wc_ic; /* for diagnostics */
87 1.3.6.2 skrll u_int32_t wc_iv; /* initial vector for crypto */
88 1.3.6.2 skrll };
89 1.3.6.2 skrll
90 1.3.6.2 skrll static void *
91 1.3.6.2 skrll wep_attach(struct ieee80211com *ic, struct ieee80211_key *k)
92 1.3.6.2 skrll {
93 1.3.6.2 skrll struct wep_ctx *ctx;
94 1.3.6.2 skrll
95 1.3.6.2 skrll MALLOC(ctx, struct wep_ctx *, sizeof(struct wep_ctx),
96 1.3.6.2 skrll M_DEVBUF, M_NOWAIT | M_ZERO);
97 1.3.6.2 skrll if (ctx == NULL) {
98 1.3.6.2 skrll ic->ic_stats.is_crypto_nomem++;
99 1.3.6.2 skrll return NULL;
100 1.3.6.2 skrll }
101 1.3.6.2 skrll
102 1.3.6.2 skrll ctx->wc_ic = ic;
103 1.3.6.2 skrll get_random_bytes(&ctx->wc_iv, sizeof(ctx->wc_iv));
104 1.3.6.2 skrll return ctx;
105 1.3.6.2 skrll }
106 1.3.6.2 skrll
107 1.3.6.2 skrll static void
108 1.3.6.2 skrll wep_detach(struct ieee80211_key *k)
109 1.3.6.2 skrll {
110 1.3.6.2 skrll struct wep_ctx *ctx = k->wk_private;
111 1.3.6.2 skrll
112 1.3.6.2 skrll FREE(ctx, M_DEVBUF);
113 1.3.6.2 skrll }
114 1.3.6.2 skrll
115 1.3.6.2 skrll static int
116 1.3.6.2 skrll wep_setkey(struct ieee80211_key *k)
117 1.3.6.2 skrll {
118 1.3.6.2 skrll return k->wk_keylen >= 40/NBBY;
119 1.3.6.2 skrll }
120 1.3.6.2 skrll
121 1.3.6.2 skrll /*
122 1.3.6.2 skrll * Add privacy headers appropriate for the specified key.
123 1.3.6.2 skrll */
124 1.3.6.2 skrll static int
125 1.3.6.2 skrll wep_encap(struct ieee80211_key *k, struct mbuf *m, u_int8_t keyid)
126 1.3.6.2 skrll {
127 1.3.6.2 skrll struct wep_ctx *ctx = k->wk_private;
128 1.3.6.2 skrll struct ieee80211com *ic = ctx->wc_ic;
129 1.3.6.2 skrll u_int32_t iv;
130 1.3.6.2 skrll u_int8_t *ivp;
131 1.3.6.2 skrll int hdrlen;
132 1.3.6.2 skrll
133 1.3.6.2 skrll hdrlen = ieee80211_hdrspace(ic, mtod(m, void *));
134 1.3.6.2 skrll
135 1.3.6.2 skrll /*
136 1.3.6.2 skrll * Copy down 802.11 header and add the IV + KeyID.
137 1.3.6.2 skrll */
138 1.3.6.2 skrll M_PREPEND(m, wep.ic_header, M_NOWAIT);
139 1.3.6.2 skrll if (m == NULL)
140 1.3.6.2 skrll return 0;
141 1.3.6.2 skrll ivp = mtod(m, u_int8_t *);
142 1.3.6.2 skrll ovbcopy(ivp + wep.ic_header, ivp, hdrlen);
143 1.3.6.2 skrll ivp += hdrlen;
144 1.3.6.2 skrll
145 1.3.6.2 skrll /*
146 1.3.6.2 skrll * XXX
147 1.3.6.2 skrll * IV must not duplicate during the lifetime of the key.
148 1.3.6.2 skrll * But no mechanism to renew keys is defined in IEEE 802.11
149 1.3.6.2 skrll * for WEP. And the IV may be duplicated at other stations
150 1.3.6.2 skrll * because the session key itself is shared. So we use a
151 1.3.6.2 skrll * pseudo random IV for now, though it is not the right way.
152 1.3.6.2 skrll *
153 1.3.6.2 skrll * NB: Rather than use a strictly random IV we select a
154 1.3.6.2 skrll * random one to start and then increment the value for
155 1.3.6.2 skrll * each frame. This is an explicit tradeoff between
156 1.3.6.2 skrll * overhead and security. Given the basic insecurity of
157 1.3.6.2 skrll * WEP this seems worthwhile.
158 1.3.6.2 skrll */
159 1.3.6.2 skrll
160 1.3.6.2 skrll /*
161 1.3.6.2 skrll * Skip 'bad' IVs from Fluhrer/Mantin/Shamir:
162 1.3.6.2 skrll * (B, 255, N) with 3 <= B < 16 and 0 <= N <= 255
163 1.3.6.2 skrll */
164 1.3.6.2 skrll iv = ctx->wc_iv;
165 1.3.6.2 skrll if ((iv & 0xff00) == 0xff00) {
166 1.3.6.2 skrll int B = (iv & 0xff0000) >> 16;
167 1.3.6.2 skrll if (3 <= B && B < 16)
168 1.3.6.2 skrll iv += 0x0100;
169 1.3.6.2 skrll }
170 1.3.6.2 skrll ctx->wc_iv = iv + 1;
171 1.3.6.2 skrll
172 1.3.6.2 skrll /*
173 1.3.6.2 skrll * NB: Preserve byte order of IV for packet
174 1.3.6.2 skrll * sniffers; it doesn't matter otherwise.
175 1.3.6.2 skrll */
176 1.3.6.2 skrll #if _BYTE_ORDER == _BIG_ENDIAN
177 1.3.6.2 skrll ivp[0] = iv >> 0;
178 1.3.6.2 skrll ivp[1] = iv >> 8;
179 1.3.6.2 skrll ivp[2] = iv >> 16;
180 1.3.6.2 skrll #else
181 1.3.6.2 skrll ivp[2] = iv >> 0;
182 1.3.6.2 skrll ivp[1] = iv >> 8;
183 1.3.6.2 skrll ivp[0] = iv >> 16;
184 1.3.6.2 skrll #endif
185 1.3.6.2 skrll ivp[3] = keyid;
186 1.3.6.2 skrll
187 1.3.6.2 skrll /*
188 1.3.6.2 skrll * Finally, do software encrypt if neeed.
189 1.3.6.2 skrll */
190 1.3.6.2 skrll if ((k->wk_flags & IEEE80211_KEY_SWCRYPT) &&
191 1.3.6.2 skrll !wep_encrypt(k, m, hdrlen))
192 1.3.6.2 skrll return 0;
193 1.3.6.2 skrll
194 1.3.6.2 skrll return 1;
195 1.3.6.2 skrll }
196 1.3.6.2 skrll
197 1.3.6.2 skrll /*
198 1.3.6.2 skrll * Add MIC to the frame as needed.
199 1.3.6.2 skrll */
200 1.3.6.2 skrll static int
201 1.3.6.2 skrll wep_enmic(struct ieee80211_key *k, struct mbuf *m, int force)
202 1.3.6.2 skrll {
203 1.3.6.2 skrll
204 1.3.6.2 skrll return 1;
205 1.3.6.2 skrll }
206 1.3.6.2 skrll
207 1.3.6.2 skrll /*
208 1.3.6.2 skrll * Validate and strip privacy headers (and trailer) for a
209 1.3.6.2 skrll * received frame. If necessary, decrypt the frame using
210 1.3.6.2 skrll * the specified key.
211 1.3.6.2 skrll */
212 1.3.6.2 skrll static int
213 1.3.6.2 skrll wep_decap(struct ieee80211_key *k, struct mbuf *m, int hdrlen)
214 1.3.6.2 skrll {
215 1.3.6.2 skrll struct wep_ctx *ctx = k->wk_private;
216 1.3.6.2 skrll struct ieee80211_frame *wh;
217 1.3.6.2 skrll
218 1.3.6.2 skrll wh = mtod(m, struct ieee80211_frame *);
219 1.3.6.2 skrll
220 1.3.6.2 skrll /*
221 1.3.6.2 skrll * Check if the device handled the decrypt in hardware.
222 1.3.6.2 skrll * If so we just strip the header; otherwise we need to
223 1.3.6.2 skrll * handle the decrypt in software.
224 1.3.6.2 skrll */
225 1.3.6.2 skrll if ((k->wk_flags & IEEE80211_KEY_SWCRYPT) &&
226 1.3.6.2 skrll !wep_decrypt(k, m, hdrlen)) {
227 1.3.6.2 skrll IEEE80211_DPRINTF(ctx->wc_ic, IEEE80211_MSG_CRYPTO,
228 1.3.6.2 skrll "[%s] WEP ICV mismatch on decrypt\n",
229 1.3.6.2 skrll ether_sprintf(wh->i_addr2));
230 1.3.6.2 skrll ctx->wc_ic->ic_stats.is_rx_wepfail++;
231 1.3.6.2 skrll return 0;
232 1.3.6.2 skrll }
233 1.3.6.2 skrll
234 1.3.6.2 skrll /*
235 1.3.6.2 skrll * Copy up 802.11 header and strip crypto bits.
236 1.3.6.2 skrll */
237 1.3.6.2 skrll ovbcopy(mtod(m, void *), mtod(m, u_int8_t *) + wep.ic_header, hdrlen);
238 1.3.6.2 skrll m_adj(m, wep.ic_header);
239 1.3.6.2 skrll m_adj(m, -wep.ic_trailer);
240 1.3.6.2 skrll
241 1.3.6.2 skrll return 1;
242 1.3.6.2 skrll }
243 1.3.6.2 skrll
244 1.3.6.2 skrll /*
245 1.3.6.2 skrll * Verify and strip MIC from the frame.
246 1.3.6.2 skrll */
247 1.3.6.2 skrll static int
248 1.3.6.2 skrll wep_demic(struct ieee80211_key *k, struct mbuf *skb, int force)
249 1.3.6.2 skrll {
250 1.3.6.2 skrll return 1;
251 1.3.6.2 skrll }
252 1.3.6.2 skrll
253 1.3.6.2 skrll static const uint32_t crc32_table[256] = {
254 1.3.6.2 skrll 0x00000000L, 0x77073096L, 0xee0e612cL, 0x990951baL, 0x076dc419L,
255 1.3.6.2 skrll 0x706af48fL, 0xe963a535L, 0x9e6495a3L, 0x0edb8832L, 0x79dcb8a4L,
256 1.3.6.2 skrll 0xe0d5e91eL, 0x97d2d988L, 0x09b64c2bL, 0x7eb17cbdL, 0xe7b82d07L,
257 1.3.6.2 skrll 0x90bf1d91L, 0x1db71064L, 0x6ab020f2L, 0xf3b97148L, 0x84be41deL,
258 1.3.6.2 skrll 0x1adad47dL, 0x6ddde4ebL, 0xf4d4b551L, 0x83d385c7L, 0x136c9856L,
259 1.3.6.2 skrll 0x646ba8c0L, 0xfd62f97aL, 0x8a65c9ecL, 0x14015c4fL, 0x63066cd9L,
260 1.3.6.2 skrll 0xfa0f3d63L, 0x8d080df5L, 0x3b6e20c8L, 0x4c69105eL, 0xd56041e4L,
261 1.3.6.2 skrll 0xa2677172L, 0x3c03e4d1L, 0x4b04d447L, 0xd20d85fdL, 0xa50ab56bL,
262 1.3.6.2 skrll 0x35b5a8faL, 0x42b2986cL, 0xdbbbc9d6L, 0xacbcf940L, 0x32d86ce3L,
263 1.3.6.2 skrll 0x45df5c75L, 0xdcd60dcfL, 0xabd13d59L, 0x26d930acL, 0x51de003aL,
264 1.3.6.2 skrll 0xc8d75180L, 0xbfd06116L, 0x21b4f4b5L, 0x56b3c423L, 0xcfba9599L,
265 1.3.6.2 skrll 0xb8bda50fL, 0x2802b89eL, 0x5f058808L, 0xc60cd9b2L, 0xb10be924L,
266 1.3.6.2 skrll 0x2f6f7c87L, 0x58684c11L, 0xc1611dabL, 0xb6662d3dL, 0x76dc4190L,
267 1.3.6.2 skrll 0x01db7106L, 0x98d220bcL, 0xefd5102aL, 0x71b18589L, 0x06b6b51fL,
268 1.3.6.2 skrll 0x9fbfe4a5L, 0xe8b8d433L, 0x7807c9a2L, 0x0f00f934L, 0x9609a88eL,
269 1.3.6.2 skrll 0xe10e9818L, 0x7f6a0dbbL, 0x086d3d2dL, 0x91646c97L, 0xe6635c01L,
270 1.3.6.2 skrll 0x6b6b51f4L, 0x1c6c6162L, 0x856530d8L, 0xf262004eL, 0x6c0695edL,
271 1.3.6.2 skrll 0x1b01a57bL, 0x8208f4c1L, 0xf50fc457L, 0x65b0d9c6L, 0x12b7e950L,
272 1.3.6.2 skrll 0x8bbeb8eaL, 0xfcb9887cL, 0x62dd1ddfL, 0x15da2d49L, 0x8cd37cf3L,
273 1.3.6.2 skrll 0xfbd44c65L, 0x4db26158L, 0x3ab551ceL, 0xa3bc0074L, 0xd4bb30e2L,
274 1.3.6.2 skrll 0x4adfa541L, 0x3dd895d7L, 0xa4d1c46dL, 0xd3d6f4fbL, 0x4369e96aL,
275 1.3.6.2 skrll 0x346ed9fcL, 0xad678846L, 0xda60b8d0L, 0x44042d73L, 0x33031de5L,
276 1.3.6.2 skrll 0xaa0a4c5fL, 0xdd0d7cc9L, 0x5005713cL, 0x270241aaL, 0xbe0b1010L,
277 1.3.6.2 skrll 0xc90c2086L, 0x5768b525L, 0x206f85b3L, 0xb966d409L, 0xce61e49fL,
278 1.3.6.2 skrll 0x5edef90eL, 0x29d9c998L, 0xb0d09822L, 0xc7d7a8b4L, 0x59b33d17L,
279 1.3.6.2 skrll 0x2eb40d81L, 0xb7bd5c3bL, 0xc0ba6cadL, 0xedb88320L, 0x9abfb3b6L,
280 1.3.6.2 skrll 0x03b6e20cL, 0x74b1d29aL, 0xead54739L, 0x9dd277afL, 0x04db2615L,
281 1.3.6.2 skrll 0x73dc1683L, 0xe3630b12L, 0x94643b84L, 0x0d6d6a3eL, 0x7a6a5aa8L,
282 1.3.6.2 skrll 0xe40ecf0bL, 0x9309ff9dL, 0x0a00ae27L, 0x7d079eb1L, 0xf00f9344L,
283 1.3.6.2 skrll 0x8708a3d2L, 0x1e01f268L, 0x6906c2feL, 0xf762575dL, 0x806567cbL,
284 1.3.6.2 skrll 0x196c3671L, 0x6e6b06e7L, 0xfed41b76L, 0x89d32be0L, 0x10da7a5aL,
285 1.3.6.2 skrll 0x67dd4accL, 0xf9b9df6fL, 0x8ebeeff9L, 0x17b7be43L, 0x60b08ed5L,
286 1.3.6.2 skrll 0xd6d6a3e8L, 0xa1d1937eL, 0x38d8c2c4L, 0x4fdff252L, 0xd1bb67f1L,
287 1.3.6.2 skrll 0xa6bc5767L, 0x3fb506ddL, 0x48b2364bL, 0xd80d2bdaL, 0xaf0a1b4cL,
288 1.3.6.2 skrll 0x36034af6L, 0x41047a60L, 0xdf60efc3L, 0xa867df55L, 0x316e8eefL,
289 1.3.6.2 skrll 0x4669be79L, 0xcb61b38cL, 0xbc66831aL, 0x256fd2a0L, 0x5268e236L,
290 1.3.6.2 skrll 0xcc0c7795L, 0xbb0b4703L, 0x220216b9L, 0x5505262fL, 0xc5ba3bbeL,
291 1.3.6.2 skrll 0xb2bd0b28L, 0x2bb45a92L, 0x5cb36a04L, 0xc2d7ffa7L, 0xb5d0cf31L,
292 1.3.6.2 skrll 0x2cd99e8bL, 0x5bdeae1dL, 0x9b64c2b0L, 0xec63f226L, 0x756aa39cL,
293 1.3.6.2 skrll 0x026d930aL, 0x9c0906a9L, 0xeb0e363fL, 0x72076785L, 0x05005713L,
294 1.3.6.2 skrll 0x95bf4a82L, 0xe2b87a14L, 0x7bb12baeL, 0x0cb61b38L, 0x92d28e9bL,
295 1.3.6.2 skrll 0xe5d5be0dL, 0x7cdcefb7L, 0x0bdbdf21L, 0x86d3d2d4L, 0xf1d4e242L,
296 1.3.6.2 skrll 0x68ddb3f8L, 0x1fda836eL, 0x81be16cdL, 0xf6b9265bL, 0x6fb077e1L,
297 1.3.6.2 skrll 0x18b74777L, 0x88085ae6L, 0xff0f6a70L, 0x66063bcaL, 0x11010b5cL,
298 1.3.6.2 skrll 0x8f659effL, 0xf862ae69L, 0x616bffd3L, 0x166ccf45L, 0xa00ae278L,
299 1.3.6.2 skrll 0xd70dd2eeL, 0x4e048354L, 0x3903b3c2L, 0xa7672661L, 0xd06016f7L,
300 1.3.6.2 skrll 0x4969474dL, 0x3e6e77dbL, 0xaed16a4aL, 0xd9d65adcL, 0x40df0b66L,
301 1.3.6.2 skrll 0x37d83bf0L, 0xa9bcae53L, 0xdebb9ec5L, 0x47b2cf7fL, 0x30b5ffe9L,
302 1.3.6.2 skrll 0xbdbdf21cL, 0xcabac28aL, 0x53b39330L, 0x24b4a3a6L, 0xbad03605L,
303 1.3.6.2 skrll 0xcdd70693L, 0x54de5729L, 0x23d967bfL, 0xb3667a2eL, 0xc4614ab8L,
304 1.3.6.2 skrll 0x5d681b02L, 0x2a6f2b94L, 0xb40bbe37L, 0xc30c8ea1L, 0x5a05df1bL,
305 1.3.6.2 skrll 0x2d02ef8dL
306 1.3.6.2 skrll };
307 1.3.6.2 skrll
308 1.3.6.2 skrll static int
309 1.3.6.2 skrll wep_encrypt(struct ieee80211_key *key, struct mbuf *m0, int hdrlen)
310 1.3.6.2 skrll {
311 1.3.6.2 skrll #define S_SWAP(a,b) do { uint8_t t = S[a]; S[a] = S[b]; S[b] = t; } while(0)
312 1.3.6.2 skrll struct wep_ctx *ctx = key->wk_private;
313 1.3.6.2 skrll struct mbuf *m = m0;
314 1.3.6.2 skrll u_int8_t rc4key[IEEE80211_WEP_IVLEN + IEEE80211_KEYBUF_SIZE];
315 1.3.6.2 skrll uint8_t icv[IEEE80211_WEP_CRCLEN];
316 1.3.6.2 skrll uint32_t i, j, k, crc;
317 1.3.6.2 skrll size_t buflen, data_len;
318 1.3.6.2 skrll uint8_t S[256];
319 1.3.6.2 skrll uint8_t *pos;
320 1.3.6.2 skrll u_int off, keylen;
321 1.3.6.2 skrll
322 1.3.6.2 skrll ctx->wc_ic->ic_stats.is_crypto_wep++;
323 1.3.6.2 skrll
324 1.3.6.2 skrll /* NB: this assumes the header was pulled up */
325 1.3.6.2 skrll memcpy(rc4key, mtod(m, u_int8_t *) + hdrlen, IEEE80211_WEP_IVLEN);
326 1.3.6.2 skrll memcpy(rc4key + IEEE80211_WEP_IVLEN, key->wk_key, key->wk_keylen);
327 1.3.6.2 skrll
328 1.3.6.2 skrll /* Setup RC4 state */
329 1.3.6.2 skrll for (i = 0; i < 256; i++)
330 1.3.6.2 skrll S[i] = i;
331 1.3.6.2 skrll j = 0;
332 1.3.6.2 skrll keylen = key->wk_keylen + IEEE80211_WEP_IVLEN;
333 1.3.6.2 skrll for (i = 0; i < 256; i++) {
334 1.3.6.2 skrll j = (j + S[i] + rc4key[i % keylen]) & 0xff;
335 1.3.6.2 skrll S_SWAP(i, j);
336 1.3.6.2 skrll }
337 1.3.6.2 skrll
338 1.3.6.2 skrll off = hdrlen + wep.ic_header;
339 1.3.6.2 skrll data_len = m->m_pkthdr.len - off;
340 1.3.6.2 skrll
341 1.3.6.2 skrll /* Compute CRC32 over unencrypted data and apply RC4 to data */
342 1.3.6.2 skrll crc = ~0;
343 1.3.6.2 skrll i = j = 0;
344 1.3.6.2 skrll pos = mtod(m, uint8_t *) + off;
345 1.3.6.2 skrll buflen = m->m_len - off;
346 1.3.6.2 skrll for (;;) {
347 1.3.6.2 skrll if (buflen > data_len)
348 1.3.6.2 skrll buflen = data_len;
349 1.3.6.2 skrll data_len -= buflen;
350 1.3.6.2 skrll for (k = 0; k < buflen; k++) {
351 1.3.6.2 skrll crc = crc32_table[(crc ^ *pos) & 0xff] ^ (crc >> 8);
352 1.3.6.2 skrll i = (i + 1) & 0xff;
353 1.3.6.2 skrll j = (j + S[i]) & 0xff;
354 1.3.6.2 skrll S_SWAP(i, j);
355 1.3.6.2 skrll *pos++ ^= S[(S[i] + S[j]) & 0xff];
356 1.3.6.2 skrll }
357 1.3.6.2 skrll if (m->m_next == NULL) {
358 1.3.6.2 skrll if (data_len != 0) { /* out of data */
359 1.3.6.2 skrll IEEE80211_DPRINTF(ctx->wc_ic,
360 1.3.6.2 skrll IEEE80211_MSG_CRYPTO,
361 1.3.6.2 skrll "[%s] out of data for WEP (data_len %zu)\n",
362 1.3.6.2 skrll ether_sprintf(mtod(m0,
363 1.3.6.2 skrll struct ieee80211_frame *)->i_addr2),
364 1.3.6.2 skrll data_len);
365 1.3.6.2 skrll return 0;
366 1.3.6.2 skrll }
367 1.3.6.2 skrll break;
368 1.3.6.2 skrll }
369 1.3.6.2 skrll m = m->m_next;
370 1.3.6.2 skrll pos = mtod(m, uint8_t *);
371 1.3.6.2 skrll buflen = m->m_len;
372 1.3.6.2 skrll }
373 1.3.6.2 skrll crc = ~crc;
374 1.3.6.2 skrll
375 1.3.6.2 skrll /* Append little-endian CRC32 and encrypt it to produce ICV */
376 1.3.6.2 skrll icv[0] = crc;
377 1.3.6.2 skrll icv[1] = crc >> 8;
378 1.3.6.2 skrll icv[2] = crc >> 16;
379 1.3.6.2 skrll icv[3] = crc >> 24;
380 1.3.6.2 skrll for (k = 0; k < IEEE80211_WEP_CRCLEN; k++) {
381 1.3.6.2 skrll i = (i + 1) & 0xff;
382 1.3.6.2 skrll j = (j + S[i]) & 0xff;
383 1.3.6.2 skrll S_SWAP(i, j);
384 1.3.6.2 skrll icv[k] ^= S[(S[i] + S[j]) & 0xff];
385 1.3.6.2 skrll }
386 1.3.6.2 skrll return m_append(m0, IEEE80211_WEP_CRCLEN, icv);
387 1.3.6.2 skrll #undef S_SWAP
388 1.3.6.2 skrll }
389 1.3.6.2 skrll
390 1.3.6.2 skrll static int
391 1.3.6.2 skrll wep_decrypt(struct ieee80211_key *key, struct mbuf *m0, int hdrlen)
392 1.3.6.2 skrll {
393 1.3.6.2 skrll #define S_SWAP(a,b) do { uint8_t t = S[a]; S[a] = S[b]; S[b] = t; } while(0)
394 1.3.6.2 skrll struct wep_ctx *ctx = key->wk_private;
395 1.3.6.2 skrll struct mbuf *m = m0;
396 1.3.6.2 skrll u_int8_t rc4key[IEEE80211_WEP_IVLEN + IEEE80211_KEYBUF_SIZE];
397 1.3.6.2 skrll uint8_t icv[IEEE80211_WEP_CRCLEN];
398 1.3.6.2 skrll uint32_t i, j, k, crc;
399 1.3.6.2 skrll size_t buflen, data_len;
400 1.3.6.2 skrll uint8_t S[256];
401 1.3.6.2 skrll uint8_t *pos;
402 1.3.6.2 skrll u_int off, keylen;
403 1.3.6.2 skrll
404 1.3.6.2 skrll ctx->wc_ic->ic_stats.is_crypto_wep++;
405 1.3.6.2 skrll
406 1.3.6.2 skrll /* NB: this assumes the header was pulled up */
407 1.3.6.2 skrll memcpy(rc4key, mtod(m, u_int8_t *) + hdrlen, IEEE80211_WEP_IVLEN);
408 1.3.6.2 skrll memcpy(rc4key + IEEE80211_WEP_IVLEN, key->wk_key, key->wk_keylen);
409 1.3.6.2 skrll
410 1.3.6.2 skrll /* Setup RC4 state */
411 1.3.6.2 skrll for (i = 0; i < 256; i++)
412 1.3.6.2 skrll S[i] = i;
413 1.3.6.2 skrll j = 0;
414 1.3.6.2 skrll keylen = key->wk_keylen + IEEE80211_WEP_IVLEN;
415 1.3.6.2 skrll for (i = 0; i < 256; i++) {
416 1.3.6.2 skrll j = (j + S[i] + rc4key[i % keylen]) & 0xff;
417 1.3.6.2 skrll S_SWAP(i, j);
418 1.3.6.2 skrll }
419 1.3.6.2 skrll
420 1.3.6.2 skrll off = hdrlen + wep.ic_header;
421 1.3.6.2 skrll data_len = m->m_pkthdr.len - (off + wep.ic_trailer),
422 1.3.6.2 skrll
423 1.3.6.2 skrll /* Compute CRC32 over unencrypted data and apply RC4 to data */
424 1.3.6.2 skrll crc = ~0;
425 1.3.6.2 skrll i = j = 0;
426 1.3.6.2 skrll pos = mtod(m, uint8_t *) + off;
427 1.3.6.2 skrll buflen = m->m_len - off;
428 1.3.6.2 skrll for (;;) {
429 1.3.6.2 skrll if (buflen > data_len)
430 1.3.6.2 skrll buflen = data_len;
431 1.3.6.2 skrll data_len -= buflen;
432 1.3.6.2 skrll for (k = 0; k < buflen; k++) {
433 1.3.6.2 skrll i = (i + 1) & 0xff;
434 1.3.6.2 skrll j = (j + S[i]) & 0xff;
435 1.3.6.2 skrll S_SWAP(i, j);
436 1.3.6.2 skrll *pos ^= S[(S[i] + S[j]) & 0xff];
437 1.3.6.2 skrll crc = crc32_table[(crc ^ *pos) & 0xff] ^ (crc >> 8);
438 1.3.6.2 skrll pos++;
439 1.3.6.2 skrll }
440 1.3.6.2 skrll m = m->m_next;
441 1.3.6.2 skrll if (m == NULL) {
442 1.3.6.2 skrll if (data_len != 0) { /* out of data */
443 1.3.6.2 skrll IEEE80211_DPRINTF(ctx->wc_ic,
444 1.3.6.2 skrll IEEE80211_MSG_CRYPTO,
445 1.3.6.2 skrll "[%s] out of data for WEP (data_len %zu)\n",
446 1.3.6.2 skrll ether_sprintf(mtod(m0,
447 1.3.6.2 skrll struct ieee80211_frame *)->i_addr2),
448 1.3.6.2 skrll data_len);
449 1.3.6.2 skrll return 0;
450 1.3.6.2 skrll }
451 1.3.6.2 skrll break;
452 1.3.6.2 skrll }
453 1.3.6.2 skrll pos = mtod(m, uint8_t *);
454 1.3.6.2 skrll buflen = m->m_len;
455 1.3.6.2 skrll }
456 1.3.6.2 skrll crc = ~crc;
457 1.3.6.2 skrll
458 1.3.6.2 skrll /* Encrypt little-endian CRC32 and verify that it matches with
459 1.3.6.2 skrll * received ICV */
460 1.3.6.2 skrll icv[0] = crc;
461 1.3.6.2 skrll icv[1] = crc >> 8;
462 1.3.6.2 skrll icv[2] = crc >> 16;
463 1.3.6.2 skrll icv[3] = crc >> 24;
464 1.3.6.2 skrll for (k = 0; k < IEEE80211_WEP_CRCLEN; k++) {
465 1.3.6.2 skrll i = (i + 1) & 0xff;
466 1.3.6.2 skrll j = (j + S[i]) & 0xff;
467 1.3.6.2 skrll S_SWAP(i, j);
468 1.3.6.2 skrll /* XXX assumes ICV is contiguous in mbuf */
469 1.3.6.2 skrll if ((icv[k] ^ S[(S[i] + S[j]) & 0xff]) != *pos++) {
470 1.3.6.2 skrll /* ICV mismatch - drop frame */
471 1.3.6.2 skrll return 0;
472 1.3.6.2 skrll }
473 1.3.6.2 skrll }
474 1.3.6.2 skrll return 1;
475 1.3.6.2 skrll #undef S_SWAP
476 1.3.6.2 skrll }
477