[BLUETOOTH]: Introduce skb->data accessor methods for hci_{acl,event,sco}_hdr
[linux-2.6-block.git] / net / ieee80211 / ieee80211_crypt_wep.c
CommitLineData
b453872c
JG
1/*
2 * Host AP crypt: host-based WEP encryption implementation for Host AP driver
3 *
4 * Copyright (c) 2002-2004, Jouni Malinen <jkmaline@cc.hut.fi>
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 as
8 * published by the Free Software Foundation. See README and COPYING for
9 * more details.
10 */
11
f12cc209 12#include <linux/err.h>
b453872c
JG
13#include <linux/module.h>
14#include <linux/init.h>
15#include <linux/slab.h>
16#include <linux/random.h>
17#include <linux/skbuff.h>
d7fe0f24 18#include <linux/mm.h>
b453872c
JG
19#include <asm/string.h>
20
21#include <net/ieee80211.h>
22
b453872c
JG
23#include <linux/crypto.h>
24#include <asm/scatterlist.h>
25#include <linux/crc32.h>
26
27MODULE_AUTHOR("Jouni Malinen");
28MODULE_DESCRIPTION("Host AP crypt: WEP");
29MODULE_LICENSE("GPL");
30
b453872c
JG
31struct prism2_wep_data {
32 u32 iv;
33#define WEP_KEY_LEN 13
34 u8 key[WEP_KEY_LEN + 1];
35 u8 key_len;
36 u8 key_idx;
28eb177d
JG
37 struct crypto_blkcipher *tx_tfm;
38 struct crypto_blkcipher *rx_tfm;
b453872c
JG
39};
40
6eb6edf0 41static void *prism2_wep_init(int keyidx)
b453872c
JG
42{
43 struct prism2_wep_data *priv;
44
0da974f4 45 priv = kzalloc(sizeof(*priv), GFP_ATOMIC);
b453872c
JG
46 if (priv == NULL)
47 goto fail;
b453872c
JG
48 priv->key_idx = keyidx;
49
28eb177d
JG
50 priv->tx_tfm = crypto_alloc_blkcipher("ecb(arc4)", 0, CRYPTO_ALG_ASYNC);
51 if (IS_ERR(priv->tx_tfm)) {
b453872c
JG
52 printk(KERN_DEBUG "ieee80211_crypt_wep: could not allocate "
53 "crypto API arc4\n");
18379879 54 priv->tx_tfm = NULL;
b453872c
JG
55 goto fail;
56 }
57
28eb177d
JG
58 priv->rx_tfm = crypto_alloc_blkcipher("ecb(arc4)", 0, CRYPTO_ALG_ASYNC);
59 if (IS_ERR(priv->rx_tfm)) {
5a656949
ZY
60 printk(KERN_DEBUG "ieee80211_crypt_wep: could not allocate "
61 "crypto API arc4\n");
18379879 62 priv->rx_tfm = NULL;
5a656949
ZY
63 goto fail;
64 }
b453872c
JG
65 /* start WEP IV from a random value */
66 get_random_bytes(&priv->iv, 4);
67
68 return priv;
69
0edd5b44 70 fail:
b453872c 71 if (priv) {
5a656949 72 if (priv->tx_tfm)
28eb177d 73 crypto_free_blkcipher(priv->tx_tfm);
5a656949 74 if (priv->rx_tfm)
28eb177d 75 crypto_free_blkcipher(priv->rx_tfm);
b453872c
JG
76 kfree(priv);
77 }
78 return NULL;
79}
80
b453872c
JG
81static void prism2_wep_deinit(void *priv)
82{
83 struct prism2_wep_data *_priv = priv;
5a656949
ZY
84 if (_priv) {
85 if (_priv->tx_tfm)
28eb177d 86 crypto_free_blkcipher(_priv->tx_tfm);
5a656949 87 if (_priv->rx_tfm)
28eb177d 88 crypto_free_blkcipher(_priv->rx_tfm);
5a656949 89 }
b453872c
JG
90 kfree(priv);
91}
92
a4bf26f3 93/* Add WEP IV/key info to a frame that has at least 4 bytes of headroom */
9184d934
ZY
94static int prism2_wep_build_iv(struct sk_buff *skb, int hdr_len,
95 u8 *key, int keylen, void *priv)
b453872c
JG
96{
97 struct prism2_wep_data *wep = priv;
a4bf26f3
JB
98 u32 klen, len;
99 u8 *pos;
64265651 100
a4bf26f3 101 if (skb_headroom(skb) < 4 || skb->len < hdr_len)
b453872c
JG
102 return -1;
103
104 len = skb->len - hdr_len;
105 pos = skb_push(skb, 4);
106 memmove(pos, pos + 4, hdr_len);
107 pos += hdr_len;
108
109 klen = 3 + wep->key_len;
110
111 wep->iv++;
112
113 /* Fluhrer, Mantin, and Shamir have reported weaknesses in the key
114 * scheduling algorithm of RC4. At least IVs (KeyByte + 3, 0xff, N)
115 * can be used to speedup attacks, so avoid using them. */
116 if ((wep->iv & 0xff00) == 0xff00) {
117 u8 B = (wep->iv >> 16) & 0xff;
118 if (B >= 3 && B < klen)
119 wep->iv += 0x0100;
120 }
121
122 /* Prepend 24-bit IV to RC4 key and TX frame */
a4bf26f3
JB
123 *pos++ = (wep->iv >> 16) & 0xff;
124 *pos++ = (wep->iv >> 8) & 0xff;
125 *pos++ = wep->iv & 0xff;
b453872c
JG
126 *pos++ = wep->key_idx << 6;
127
a4bf26f3
JB
128 return 0;
129}
130
131/* Perform WEP encryption on given skb that has at least 4 bytes of headroom
132 * for IV and 4 bytes of tailroom for ICV. Both IV and ICV will be transmitted,
133 * so the payload length increases with 8 bytes.
134 *
135 * WEP frame payload: IV + TX key idx, RC4(data), ICV = RC4(CRC32(data))
136 */
137static int prism2_wep_encrypt(struct sk_buff *skb, int hdr_len, void *priv)
138{
139 struct prism2_wep_data *wep = priv;
28eb177d 140 struct blkcipher_desc desc = { .tfm = wep->tx_tfm };
a4bf26f3
JB
141 u32 crc, klen, len;
142 u8 *pos, *icv;
143 struct scatterlist sg;
144 u8 key[WEP_KEY_LEN + 3];
145
146 /* other checks are in prism2_wep_build_iv */
147 if (skb_tailroom(skb) < 4)
148 return -1;
64265651 149
a4bf26f3 150 /* add the IV to the frame */
9184d934 151 if (prism2_wep_build_iv(skb, hdr_len, NULL, 0, priv))
a4bf26f3 152 return -1;
64265651 153
a4bf26f3
JB
154 /* Copy the IV into the first 3 bytes of the key */
155 memcpy(key, skb->data + hdr_len, 3);
156
b453872c
JG
157 /* Copy rest of the WEP key (the secret part) */
158 memcpy(key + 3, wep->key, wep->key_len);
64265651 159
a4bf26f3
JB
160 len = skb->len - hdr_len - 4;
161 pos = skb->data + hdr_len + 4;
162 klen = 3 + wep->key_len;
b453872c 163
a4bf26f3 164 /* Append little-endian CRC32 over only the data and encrypt it to produce ICV */
b453872c
JG
165 crc = ~crc32_le(~0, pos, len);
166 icv = skb_put(skb, 4);
167 icv[0] = crc;
168 icv[1] = crc >> 8;
169 icv[2] = crc >> 16;
170 icv[3] = crc >> 24;
171
28eb177d 172 crypto_blkcipher_setkey(wep->tx_tfm, key, klen);
b453872c
JG
173 sg.page = virt_to_page(pos);
174 sg.offset = offset_in_page(pos);
175 sg.length = len + 4;
f12cc209 176 return crypto_blkcipher_encrypt(&desc, &sg, &sg, len + 4);
b453872c
JG
177}
178
b453872c
JG
179/* Perform WEP decryption on given buffer. Buffer includes whole WEP part of
180 * the frame: IV (4 bytes), encrypted payload (including SNAP header),
181 * ICV (4 bytes). len includes both IV and ICV.
182 *
183 * Returns 0 if frame was decrypted successfully and ICV was correct and -1 on
184 * failure. If frame is OK, IV and ICV will be removed.
185 */
186static int prism2_wep_decrypt(struct sk_buff *skb, int hdr_len, void *priv)
187{
188 struct prism2_wep_data *wep = priv;
28eb177d 189 struct blkcipher_desc desc = { .tfm = wep->rx_tfm };
b453872c
JG
190 u32 crc, klen, plen;
191 u8 key[WEP_KEY_LEN + 3];
192 u8 keyidx, *pos, icv[4];
193 struct scatterlist sg;
194
195 if (skb->len < hdr_len + 8)
196 return -1;
197
198 pos = skb->data + hdr_len;
199 key[0] = *pos++;
200 key[1] = *pos++;
201 key[2] = *pos++;
202 keyidx = *pos++ >> 6;
203 if (keyidx != wep->key_idx)
204 return -1;
205
206 klen = 3 + wep->key_len;
207
208 /* Copy rest of the WEP key (the secret part) */
209 memcpy(key + 3, wep->key, wep->key_len);
210
211 /* Apply RC4 to data and compute CRC32 over decrypted data */
212 plen = skb->len - hdr_len - 8;
213
28eb177d 214 crypto_blkcipher_setkey(wep->rx_tfm, key, klen);
b453872c
JG
215 sg.page = virt_to_page(pos);
216 sg.offset = offset_in_page(pos);
217 sg.length = plen + 4;
f12cc209
HX
218 if (crypto_blkcipher_decrypt(&desc, &sg, &sg, plen + 4))
219 return -7;
b453872c
JG
220
221 crc = ~crc32_le(~0, pos, plen);
222 icv[0] = crc;
223 icv[1] = crc >> 8;
224 icv[2] = crc >> 16;
225 icv[3] = crc >> 24;
226 if (memcmp(icv, pos + plen, 4) != 0) {
227 /* ICV mismatch - drop frame */
228 return -2;
229 }
230
231 /* Remove IV and ICV */
232 memmove(skb->data + 4, skb->data, hdr_len);
233 skb_pull(skb, 4);
234 skb_trim(skb, skb->len - 4);
235
236 return 0;
237}
238
0edd5b44 239static int prism2_wep_set_key(void *key, int len, u8 * seq, void *priv)
b453872c
JG
240{
241 struct prism2_wep_data *wep = priv;
242
243 if (len < 0 || len > WEP_KEY_LEN)
244 return -1;
245
246 memcpy(wep->key, key, len);
247 wep->key_len = len;
248
249 return 0;
250}
251
0edd5b44 252static int prism2_wep_get_key(void *key, int len, u8 * seq, void *priv)
b453872c
JG
253{
254 struct prism2_wep_data *wep = priv;
255
256 if (len < wep->key_len)
257 return -1;
258
259 memcpy(key, wep->key, wep->key_len);
260
261 return wep->key_len;
262}
263
0edd5b44 264static char *prism2_wep_print_stats(char *p, void *priv)
b453872c
JG
265{
266 struct prism2_wep_data *wep = priv;
0edd5b44 267 p += sprintf(p, "key[%d] alg=WEP len=%d\n", wep->key_idx, wep->key_len);
b453872c
JG
268 return p;
269}
270
b453872c 271static struct ieee80211_crypto_ops ieee80211_crypt_wep = {
74079fdc
JK
272 .name = "WEP",
273 .init = prism2_wep_init,
274 .deinit = prism2_wep_deinit,
a4bf26f3 275 .build_iv = prism2_wep_build_iv,
74079fdc
JK
276 .encrypt_mpdu = prism2_wep_encrypt,
277 .decrypt_mpdu = prism2_wep_decrypt,
278 .encrypt_msdu = NULL,
279 .decrypt_msdu = NULL,
280 .set_key = prism2_wep_set_key,
281 .get_key = prism2_wep_get_key,
282 .print_stats = prism2_wep_print_stats,
1264fc04
JK
283 .extra_mpdu_prefix_len = 4, /* IV */
284 .extra_mpdu_postfix_len = 4, /* ICV */
74079fdc 285 .owner = THIS_MODULE,
b453872c
JG
286};
287
b453872c
JG
288static int __init ieee80211_crypto_wep_init(void)
289{
290 return ieee80211_register_crypto_ops(&ieee80211_crypt_wep);
291}
292
b453872c
JG
293static void __exit ieee80211_crypto_wep_exit(void)
294{
295 ieee80211_unregister_crypto_ops(&ieee80211_crypt_wep);
296}
297
b453872c
JG
298module_init(ieee80211_crypto_wep_init);
299module_exit(ieee80211_crypto_wep_exit);