blob: 8a7dac742b71c00b2af071583315eae2991d6f88 [file] [log] [blame]
Jiri Bencf0706e82007-05-05 11:45:53 -07001/*
2 * Copyright 2002-2004, Instant802 Networks, Inc.
3 * Copyright 2005, Devicescape Software, Inc.
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 as
7 * published by the Free Software Foundation.
8 */
Jiri Bencf0706e82007-05-05 11:45:53 -07009#include <linux/kernel.h>
Harvey Harrison8c046c82008-05-02 13:47:45 -070010#include <linux/bitops.h>
Jiri Bencf0706e82007-05-05 11:45:53 -070011#include <linux/types.h>
12#include <linux/netdevice.h>
Harvey Harrison8c046c82008-05-02 13:47:45 -070013#include <asm/unaligned.h>
Jiri Bencf0706e82007-05-05 11:45:53 -070014
15#include <net/mac80211.h>
Johannes Berg2c8dccc2008-04-08 15:14:40 -040016#include "key.h"
Jiri Bencf0706e82007-05-05 11:45:53 -070017#include "tkip.h"
18#include "wep.h"
19
Jiri Bencf0706e82007-05-05 11:45:53 -070020#define PHASE1_LOOP_COUNT 8
21
Harvey Harrison8c046c82008-05-02 13:47:45 -070022/*
23 * 2-byte by 2-byte subset of the full AES S-box table; second part of this
24 * table is identical to first part but byte-swapped
25 */
Jiri Bencf0706e82007-05-05 11:45:53 -070026static const u16 tkip_sbox[256] =
27{
28 0xC6A5, 0xF884, 0xEE99, 0xF68D, 0xFF0D, 0xD6BD, 0xDEB1, 0x9154,
29 0x6050, 0x0203, 0xCEA9, 0x567D, 0xE719, 0xB562, 0x4DE6, 0xEC9A,
30 0x8F45, 0x1F9D, 0x8940, 0xFA87, 0xEF15, 0xB2EB, 0x8EC9, 0xFB0B,
31 0x41EC, 0xB367, 0x5FFD, 0x45EA, 0x23BF, 0x53F7, 0xE496, 0x9B5B,
32 0x75C2, 0xE11C, 0x3DAE, 0x4C6A, 0x6C5A, 0x7E41, 0xF502, 0x834F,
33 0x685C, 0x51F4, 0xD134, 0xF908, 0xE293, 0xAB73, 0x6253, 0x2A3F,
34 0x080C, 0x9552, 0x4665, 0x9D5E, 0x3028, 0x37A1, 0x0A0F, 0x2FB5,
35 0x0E09, 0x2436, 0x1B9B, 0xDF3D, 0xCD26, 0x4E69, 0x7FCD, 0xEA9F,
36 0x121B, 0x1D9E, 0x5874, 0x342E, 0x362D, 0xDCB2, 0xB4EE, 0x5BFB,
37 0xA4F6, 0x764D, 0xB761, 0x7DCE, 0x527B, 0xDD3E, 0x5E71, 0x1397,
38 0xA6F5, 0xB968, 0x0000, 0xC12C, 0x4060, 0xE31F, 0x79C8, 0xB6ED,
39 0xD4BE, 0x8D46, 0x67D9, 0x724B, 0x94DE, 0x98D4, 0xB0E8, 0x854A,
40 0xBB6B, 0xC52A, 0x4FE5, 0xED16, 0x86C5, 0x9AD7, 0x6655, 0x1194,
41 0x8ACF, 0xE910, 0x0406, 0xFE81, 0xA0F0, 0x7844, 0x25BA, 0x4BE3,
42 0xA2F3, 0x5DFE, 0x80C0, 0x058A, 0x3FAD, 0x21BC, 0x7048, 0xF104,
43 0x63DF, 0x77C1, 0xAF75, 0x4263, 0x2030, 0xE51A, 0xFD0E, 0xBF6D,
44 0x814C, 0x1814, 0x2635, 0xC32F, 0xBEE1, 0x35A2, 0x88CC, 0x2E39,
45 0x9357, 0x55F2, 0xFC82, 0x7A47, 0xC8AC, 0xBAE7, 0x322B, 0xE695,
46 0xC0A0, 0x1998, 0x9ED1, 0xA37F, 0x4466, 0x547E, 0x3BAB, 0x0B83,
47 0x8CCA, 0xC729, 0x6BD3, 0x283C, 0xA779, 0xBCE2, 0x161D, 0xAD76,
48 0xDB3B, 0x6456, 0x744E, 0x141E, 0x92DB, 0x0C0A, 0x486C, 0xB8E4,
49 0x9F5D, 0xBD6E, 0x43EF, 0xC4A6, 0x39A8, 0x31A4, 0xD337, 0xF28B,
50 0xD532, 0x8B43, 0x6E59, 0xDAB7, 0x018C, 0xB164, 0x9CD2, 0x49E0,
51 0xD8B4, 0xACFA, 0xF307, 0xCF25, 0xCAAF, 0xF48E, 0x47E9, 0x1018,
52 0x6FD5, 0xF088, 0x4A6F, 0x5C72, 0x3824, 0x57F1, 0x73C7, 0x9751,
53 0xCB23, 0xA17C, 0xE89C, 0x3E21, 0x96DD, 0x61DC, 0x0D86, 0x0F85,
54 0xE090, 0x7C42, 0x71C4, 0xCCAA, 0x90D8, 0x0605, 0xF701, 0x1C12,
55 0xC2A3, 0x6A5F, 0xAEF9, 0x69D0, 0x1791, 0x9958, 0x3A27, 0x27B9,
56 0xD938, 0xEB13, 0x2BB3, 0x2233, 0xD2BB, 0xA970, 0x0789, 0x33A7,
57 0x2DB6, 0x3C22, 0x1592, 0xC920, 0x8749, 0xAAFF, 0x5078, 0xA57A,
58 0x038F, 0x59F8, 0x0980, 0x1A17, 0x65DA, 0xD731, 0x84C6, 0xD0B8,
59 0x82C3, 0x29B0, 0x5A77, 0x1E11, 0x7BCB, 0xA8FC, 0x6DD6, 0x2C3A,
60};
61
Harvey Harrison8c046c82008-05-02 13:47:45 -070062static u16 tkipS(u16 val)
Jiri Bencf0706e82007-05-05 11:45:53 -070063{
Harvey Harrison8c046c82008-05-02 13:47:45 -070064 return tkip_sbox[val & 0xff] ^ swab16(tkip_sbox[val >> 8]);
Jiri Bencf0706e82007-05-05 11:45:53 -070065}
66
Harvey Harrisonc8012422008-06-11 14:22:00 -070067static u8 *write_tkip_iv(u8 *pos, u16 iv16)
68{
69 *pos++ = iv16 >> 8;
70 *pos++ = ((iv16 >> 8) | 0x20) & 0x7f;
71 *pos++ = iv16 & 0xFF;
72 return pos;
73}
74
Harvey Harrison8c046c82008-05-02 13:47:45 -070075/*
76 * P1K := Phase1(TA, TK, TSC)
Jiri Bencf0706e82007-05-05 11:45:53 -070077 * TA = transmitter address (48 bits)
78 * TK = dot11DefaultKeyValue or dot11KeyMappingValue (128 bits)
79 * TSC = TKIP sequence counter (48 bits, only 32 msb bits used)
80 * P1K: 80 bits
81 */
Harvey Harrison7c705372008-06-11 14:22:00 -070082static void tkip_mixing_phase1(const u8 *tk, struct tkip_ctx *ctx,
83 const u8 *ta, u32 tsc_IV32)
Jiri Bencf0706e82007-05-05 11:45:53 -070084{
85 int i, j;
Harvey Harrison82a57442008-05-14 16:26:19 -070086 u16 *p1k = ctx->p1k;
Jiri Bencf0706e82007-05-05 11:45:53 -070087
Harvey Harrison8c046c82008-05-02 13:47:45 -070088 p1k[0] = tsc_IV32 & 0xFFFF;
89 p1k[1] = tsc_IV32 >> 16;
90 p1k[2] = get_unaligned_le16(ta + 0);
91 p1k[3] = get_unaligned_le16(ta + 2);
92 p1k[4] = get_unaligned_le16(ta + 4);
Jiri Bencf0706e82007-05-05 11:45:53 -070093
94 for (i = 0; i < PHASE1_LOOP_COUNT; i++) {
95 j = 2 * (i & 1);
Harvey Harrison8c046c82008-05-02 13:47:45 -070096 p1k[0] += tkipS(p1k[4] ^ get_unaligned_le16(tk + 0 + j));
97 p1k[1] += tkipS(p1k[0] ^ get_unaligned_le16(tk + 4 + j));
98 p1k[2] += tkipS(p1k[1] ^ get_unaligned_le16(tk + 8 + j));
99 p1k[3] += tkipS(p1k[2] ^ get_unaligned_le16(tk + 12 + j));
100 p1k[4] += tkipS(p1k[3] ^ get_unaligned_le16(tk + 0 + j)) + i;
Jiri Bencf0706e82007-05-05 11:45:53 -0700101 }
Harvey Harrison82a57442008-05-14 16:26:19 -0700102 ctx->initialized = 1;
Jiri Bencf0706e82007-05-05 11:45:53 -0700103}
104
Harvey Harrison7c705372008-06-11 14:22:00 -0700105static void tkip_mixing_phase2(const u8 *tk, struct tkip_ctx *ctx,
Harvey Harrison3c838092008-05-14 16:26:20 -0700106 u16 tsc_IV16, u8 *rc4key)
Jiri Bencf0706e82007-05-05 11:45:53 -0700107{
108 u16 ppk[6];
Harvey Harrison3c838092008-05-14 16:26:20 -0700109 const u16 *p1k = ctx->p1k;
Jiri Bencf0706e82007-05-05 11:45:53 -0700110 int i;
111
112 ppk[0] = p1k[0];
113 ppk[1] = p1k[1];
114 ppk[2] = p1k[2];
115 ppk[3] = p1k[3];
116 ppk[4] = p1k[4];
117 ppk[5] = p1k[4] + tsc_IV16;
118
Harvey Harrison8c046c82008-05-02 13:47:45 -0700119 ppk[0] += tkipS(ppk[5] ^ get_unaligned_le16(tk + 0));
120 ppk[1] += tkipS(ppk[0] ^ get_unaligned_le16(tk + 2));
121 ppk[2] += tkipS(ppk[1] ^ get_unaligned_le16(tk + 4));
122 ppk[3] += tkipS(ppk[2] ^ get_unaligned_le16(tk + 6));
123 ppk[4] += tkipS(ppk[3] ^ get_unaligned_le16(tk + 8));
124 ppk[5] += tkipS(ppk[4] ^ get_unaligned_le16(tk + 10));
125 ppk[0] += ror16(ppk[5] ^ get_unaligned_le16(tk + 12), 1);
126 ppk[1] += ror16(ppk[0] ^ get_unaligned_le16(tk + 14), 1);
127 ppk[2] += ror16(ppk[1], 1);
128 ppk[3] += ror16(ppk[2], 1);
129 ppk[4] += ror16(ppk[3], 1);
130 ppk[5] += ror16(ppk[4], 1);
Jiri Bencf0706e82007-05-05 11:45:53 -0700131
Harvey Harrisonc8012422008-06-11 14:22:00 -0700132 rc4key = write_tkip_iv(rc4key, tsc_IV16);
133 *rc4key++ = ((ppk[5] ^ get_unaligned_le16(tk)) >> 1) & 0xFF;
Jiri Bencf0706e82007-05-05 11:45:53 -0700134
Harvey Harrison8c046c82008-05-02 13:47:45 -0700135 for (i = 0; i < 6; i++)
136 put_unaligned_le16(ppk[i], rc4key + 2 * i);
Jiri Bencf0706e82007-05-05 11:45:53 -0700137}
138
Jiri Bencf0706e82007-05-05 11:45:53 -0700139/* Add TKIP IV and Ext. IV at @pos. @iv0, @iv1, and @iv2 are the first octets
140 * of the IV. Returns pointer to the octet following IVs (i.e., beginning of
141 * the packet payload). */
Harvey Harrisonc8012422008-06-11 14:22:00 -0700142u8 *ieee80211_tkip_add_iv(u8 *pos, struct ieee80211_key *key, u16 iv16)
Jiri Bencf0706e82007-05-05 11:45:53 -0700143{
Harvey Harrisonc8012422008-06-11 14:22:00 -0700144 pos = write_tkip_iv(pos, iv16);
Johannes Berg8f20fc22007-08-28 17:01:54 -0400145 *pos++ = (key->conf.keyidx << 6) | (1 << 5) /* Ext IV */;
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700146 put_unaligned_le32(key->u.tkip.tx.iv32, pos);
Harvey Harrison8c046c82008-05-02 13:47:45 -0700147 return pos + 4;
Jiri Bencf0706e82007-05-05 11:45:53 -0700148}
149
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200150void ieee80211_get_tkip_key(struct ieee80211_key_conf *keyconf,
151 struct sk_buff *skb, enum ieee80211_tkip_key_type type,
152 u8 *outkey)
153{
154 struct ieee80211_key *key = (struct ieee80211_key *)
155 container_of(keyconf, struct ieee80211_key, conf);
156 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
157 u8 *data = (u8 *) hdr;
158 u16 fc = le16_to_cpu(hdr->frame_control);
159 int hdr_len = ieee80211_get_hdrlen(fc);
Harvey Harrison7c705372008-06-11 14:22:00 -0700160 u8 *tk = &key->conf.key[ALG_TKIP_TEMP_ENCR_KEY];
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200161 u8 *ta = hdr->addr2;
162 u16 iv16;
163 u32 iv32;
164
Harvey Harrison8c046c82008-05-02 13:47:45 -0700165 iv16 = data[hdr_len + 2] | (data[hdr_len] << 8);
166 iv32 = get_unaligned_le32(data + hdr_len + 4);
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200167
168#ifdef CONFIG_TKIP_DEBUG
169 printk(KERN_DEBUG "TKIP encrypt: iv16 = 0x%04x, iv32 = 0x%08x\n",
170 iv16, iv32);
171
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700172 if (iv32 != key->u.tkip.tx.iv32) {
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200173 printk(KERN_DEBUG "skb: iv32 = 0x%08x key: iv32 = 0x%08x\n",
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700174 iv32, key->u.tkip.tx.iv32);
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200175 printk(KERN_DEBUG "Wrap around of iv16 in the middle of a "
176 "fragmented packet\n");
177 }
178#endif /* CONFIG_TKIP_DEBUG */
179
180 /* Update the p1k only when the iv16 in the packet wraps around, this
181 * might occur after the wrap around of iv16 in the key in case of
182 * fragmented packets. */
Harvey Harrison82a57442008-05-14 16:26:19 -0700183 if (iv16 == 0 || !key->u.tkip.tx.initialized)
Harvey Harrison7c705372008-06-11 14:22:00 -0700184 tkip_mixing_phase1(tk, &key->u.tkip.tx, ta, iv32);
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200185
186 if (type == IEEE80211_TKIP_P1_KEY) {
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700187 memcpy(outkey, key->u.tkip.tx.p1k, sizeof(u16) * 5);
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200188 return;
189 }
190
Harvey Harrison7c705372008-06-11 14:22:00 -0700191 tkip_mixing_phase2(tk, &key->u.tkip.tx, iv16, outkey);
Emmanuel Grumbach5d2cdcd2008-03-20 15:06:41 +0200192}
193EXPORT_SYMBOL(ieee80211_get_tkip_key);
194
Jiri Bencf0706e82007-05-05 11:45:53 -0700195/* Encrypt packet payload with TKIP using @key. @pos is a pointer to the
196 * beginning of the buffer containing payload. This payload must include
197 * headroom of eight octets for IV and Ext. IV and taildroom of four octets
198 * for ICV. @payload_len is the length of payload (_not_ including extra
199 * headroom and tailroom). @ta is the transmitter addresses. */
200void ieee80211_tkip_encrypt_data(struct crypto_blkcipher *tfm,
201 struct ieee80211_key *key,
202 u8 *pos, size_t payload_len, u8 *ta)
203{
204 u8 rc4key[16];
Harvey Harrison7c705372008-06-11 14:22:00 -0700205 struct tkip_ctx *ctx = &key->u.tkip.tx;
206 const u8 *tk = &key->conf.key[ALG_TKIP_TEMP_ENCR_KEY];
Jiri Bencf0706e82007-05-05 11:45:53 -0700207
Harvey Harrison7c705372008-06-11 14:22:00 -0700208 /* Calculate per-packet key */
209 if (ctx->iv16 == 0 || !ctx->initialized)
210 tkip_mixing_phase1(tk, ctx, ta, ctx->iv32);
211
212 tkip_mixing_phase2(tk, ctx, ctx->iv16, rc4key);
213
Harvey Harrisonc8012422008-06-11 14:22:00 -0700214 pos = ieee80211_tkip_add_iv(pos, key, key->u.tkip.tx.iv16);
Jiri Bencf0706e82007-05-05 11:45:53 -0700215 ieee80211_wep_encrypt_data(tfm, rc4key, 16, pos, payload_len);
216}
217
Jiri Bencf0706e82007-05-05 11:45:53 -0700218/* Decrypt packet payload with TKIP using @key. @pos is a pointer to the
219 * beginning of the buffer containing IEEE 802.11 header payload, i.e.,
220 * including IV, Ext. IV, real data, Michael MIC, ICV. @payload_len is the
221 * length of payload, including IV, Ext. IV, MIC, ICV. */
222int ieee80211_tkip_decrypt_data(struct crypto_blkcipher *tfm,
223 struct ieee80211_key *key,
224 u8 *payload, size_t payload_len, u8 *ta,
Emmanuel Grumbach9ae4fda2008-03-20 15:06:42 +0200225 u8 *ra, int only_iv, int queue,
Johannes Berg50741ae2007-09-26 15:19:45 +0200226 u32 *out_iv32, u16 *out_iv16)
Jiri Bencf0706e82007-05-05 11:45:53 -0700227{
228 u32 iv32;
229 u32 iv16;
230 u8 rc4key[16], keyid, *pos = payload;
231 int res;
Harvey Harrison7c705372008-06-11 14:22:00 -0700232 const u8 *tk = &key->conf.key[ALG_TKIP_TEMP_ENCR_KEY];
Jiri Bencf0706e82007-05-05 11:45:53 -0700233
234 if (payload_len < 12)
235 return -1;
236
237 iv16 = (pos[0] << 8) | pos[2];
238 keyid = pos[3];
Harvey Harrison8c046c82008-05-02 13:47:45 -0700239 iv32 = get_unaligned_le32(pos + 4);
Jiri Bencf0706e82007-05-05 11:45:53 -0700240 pos += 8;
241#ifdef CONFIG_TKIP_DEBUG
242 {
243 int i;
244 printk(KERN_DEBUG "TKIP decrypt: data(len=%zd)", payload_len);
245 for (i = 0; i < payload_len; i++)
246 printk(" %02x", payload[i]);
247 printk("\n");
248 printk(KERN_DEBUG "TKIP decrypt: iv16=%04x iv32=%08x\n",
249 iv16, iv32);
250 }
251#endif /* CONFIG_TKIP_DEBUG */
252
253 if (!(keyid & (1 << 5)))
254 return TKIP_DECRYPT_NO_EXT_IV;
255
Johannes Berg8f20fc22007-08-28 17:01:54 -0400256 if ((keyid >> 6) != key->conf.keyidx)
Jiri Bencf0706e82007-05-05 11:45:53 -0700257 return TKIP_DECRYPT_INVALID_KEYIDX;
258
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700259 if (key->u.tkip.rx[queue].initialized &&
260 (iv32 < key->u.tkip.rx[queue].iv32 ||
261 (iv32 == key->u.tkip.rx[queue].iv32 &&
262 iv16 <= key->u.tkip.rx[queue].iv16))) {
Jiri Bencf0706e82007-05-05 11:45:53 -0700263#ifdef CONFIG_TKIP_DEBUG
Joe Perches0795af52007-10-03 17:59:30 -0700264 DECLARE_MAC_BUF(mac);
Jiri Bencf0706e82007-05-05 11:45:53 -0700265 printk(KERN_DEBUG "TKIP replay detected for RX frame from "
Joe Perches0795af52007-10-03 17:59:30 -0700266 "%s (RX IV (%04x,%02x) <= prev. IV (%04x,%02x)\n",
267 print_mac(mac, ta),
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700268 iv32, iv16, key->u.tkip.rx[queue].iv32,
269 key->u.tkip.rx[queue].iv16);
Jiri Bencf0706e82007-05-05 11:45:53 -0700270#endif /* CONFIG_TKIP_DEBUG */
271 return TKIP_DECRYPT_REPLAY;
272 }
273
274 if (only_iv) {
275 res = TKIP_DECRYPT_OK;
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700276 key->u.tkip.rx[queue].initialized = 1;
Jiri Bencf0706e82007-05-05 11:45:53 -0700277 goto done;
278 }
279
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700280 if (!key->u.tkip.rx[queue].initialized ||
281 key->u.tkip.rx[queue].iv32 != iv32) {
Jiri Bencf0706e82007-05-05 11:45:53 -0700282 /* IV16 wrapped around - perform TKIP phase 1 */
Harvey Harrison7c705372008-06-11 14:22:00 -0700283 tkip_mixing_phase1(tk, &key->u.tkip.rx[queue], ta, iv32);
Jiri Bencf0706e82007-05-05 11:45:53 -0700284#ifdef CONFIG_TKIP_DEBUG
285 {
286 int i;
Joe Perches0795af52007-10-03 17:59:30 -0700287 DECLARE_MAC_BUF(mac);
288 printk(KERN_DEBUG "TKIP decrypt: Phase1 TA=%s"
289 " TK=", print_mac(mac, ta));
Jiri Bencf0706e82007-05-05 11:45:53 -0700290 for (i = 0; i < 16; i++)
291 printk("%02x ",
Johannes Berg8f20fc22007-08-28 17:01:54 -0400292 key->conf.key[
293 ALG_TKIP_TEMP_ENCR_KEY + i]);
Jiri Bencf0706e82007-05-05 11:45:53 -0700294 printk("\n");
295 printk(KERN_DEBUG "TKIP decrypt: P1K=");
296 for (i = 0; i < 5; i++)
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700297 printk("%04x ", key->u.tkip.rx[queue].p1k[i]);
Jiri Bencf0706e82007-05-05 11:45:53 -0700298 printk("\n");
299 }
300#endif /* CONFIG_TKIP_DEBUG */
Emmanuel Grumbach9ae4fda2008-03-20 15:06:42 +0200301 if (key->local->ops->update_tkip_key &&
302 key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE) {
303 u8 bcast[ETH_ALEN] =
304 {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
305 u8 *sta_addr = key->sta->addr;
306
307 if (is_multicast_ether_addr(ra))
308 sta_addr = bcast;
309
310 key->local->ops->update_tkip_key(
311 local_to_hw(key->local), &key->conf,
Harvey Harrisonb0f76b32008-05-14 16:26:19 -0700312 sta_addr, iv32, key->u.tkip.rx[queue].p1k);
Emmanuel Grumbach9ae4fda2008-03-20 15:06:42 +0200313 }
Jiri Bencf0706e82007-05-05 11:45:53 -0700314 }
315
Harvey Harrison7c705372008-06-11 14:22:00 -0700316 tkip_mixing_phase2(tk, &key->u.tkip.rx[queue], iv16, rc4key);
Jiri Bencf0706e82007-05-05 11:45:53 -0700317#ifdef CONFIG_TKIP_DEBUG
318 {
319 int i;
320 printk(KERN_DEBUG "TKIP decrypt: Phase2 rc4key=");
321 for (i = 0; i < 16; i++)
322 printk("%02x ", rc4key[i]);
323 printk("\n");
324 }
325#endif /* CONFIG_TKIP_DEBUG */
326
327 res = ieee80211_wep_decrypt_data(tfm, rc4key, 16, pos, payload_len - 12);
328 done:
329 if (res == TKIP_DECRYPT_OK) {
Johannes Berg50741ae2007-09-26 15:19:45 +0200330 /*
331 * Record previously received IV, will be copied into the
332 * key information after MIC verification. It is possible
333 * that we don't catch replays of fragments but that's ok
334 * because the Michael MIC verication will then fail.
335 */
336 *out_iv32 = iv32;
337 *out_iv16 = iv16;
Jiri Bencf0706e82007-05-05 11:45:53 -0700338 }
339
340 return res;
341}