wpa.c 12 KB

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  1. /*
  2. * Copyright 2002-2004, Instant802 Networks, Inc.
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License version 2 as
  6. * published by the Free Software Foundation.
  7. */
  8. #include <linux/netdevice.h>
  9. #include <linux/types.h>
  10. #include <linux/slab.h>
  11. #include <linux/skbuff.h>
  12. #include <linux/compiler.h>
  13. #include <linux/ieee80211.h>
  14. #include <asm/unaligned.h>
  15. #include <net/mac80211.h>
  16. #include "ieee80211_i.h"
  17. #include "michael.h"
  18. #include "tkip.h"
  19. #include "aes_ccm.h"
  20. #include "wpa.h"
  21. ieee80211_tx_result
  22. ieee80211_tx_h_michael_mic_add(struct ieee80211_tx_data *tx)
  23. {
  24. u8 *data, *key, *mic, key_offset;
  25. size_t data_len;
  26. unsigned int hdrlen;
  27. struct ieee80211_hdr *hdr;
  28. struct sk_buff *skb = tx->skb;
  29. int authenticator;
  30. int wpa_test = 0;
  31. int tail;
  32. hdr = (struct ieee80211_hdr *)skb->data;
  33. if (!tx->key || tx->key->conf.alg != ALG_TKIP || skb->len < 24 ||
  34. !ieee80211_is_data_present(hdr->frame_control))
  35. return TX_CONTINUE;
  36. hdrlen = ieee80211_hdrlen(hdr->frame_control);
  37. if (skb->len < hdrlen)
  38. return TX_DROP;
  39. data = skb->data + hdrlen;
  40. data_len = skb->len - hdrlen;
  41. if ((tx->key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE) &&
  42. !(tx->flags & IEEE80211_TX_FRAGMENTED) &&
  43. !(tx->key->conf.flags & IEEE80211_KEY_FLAG_GENERATE_MMIC) &&
  44. !wpa_test) {
  45. /* hwaccel - with no need for preallocated room for MMIC */
  46. return TX_CONTINUE;
  47. }
  48. tail = MICHAEL_MIC_LEN;
  49. if (!(tx->key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE))
  50. tail += TKIP_ICV_LEN;
  51. if (WARN_ON(skb_tailroom(skb) < tail ||
  52. skb_headroom(skb) < TKIP_IV_LEN))
  53. return TX_DROP;
  54. #if 0
  55. authenticator = fc & IEEE80211_FCTL_FROMDS; /* FIX */
  56. #else
  57. authenticator = 1;
  58. #endif
  59. key_offset = authenticator ?
  60. NL80211_TKIP_DATA_OFFSET_TX_MIC_KEY :
  61. NL80211_TKIP_DATA_OFFSET_RX_MIC_KEY;
  62. key = &tx->key->conf.key[key_offset];
  63. mic = skb_put(skb, MICHAEL_MIC_LEN);
  64. michael_mic(key, hdr, data, data_len, mic);
  65. return TX_CONTINUE;
  66. }
  67. ieee80211_rx_result
  68. ieee80211_rx_h_michael_mic_verify(struct ieee80211_rx_data *rx)
  69. {
  70. u8 *data, *key = NULL, key_offset;
  71. size_t data_len;
  72. unsigned int hdrlen;
  73. struct ieee80211_hdr *hdr;
  74. u8 mic[MICHAEL_MIC_LEN];
  75. struct sk_buff *skb = rx->skb;
  76. int authenticator = 1, wpa_test = 0;
  77. /* No way to verify the MIC if the hardware stripped it */
  78. if (rx->status->flag & RX_FLAG_MMIC_STRIPPED)
  79. return RX_CONTINUE;
  80. hdr = (struct ieee80211_hdr *)skb->data;
  81. if (!rx->key || rx->key->conf.alg != ALG_TKIP ||
  82. !ieee80211_has_protected(hdr->frame_control) ||
  83. !ieee80211_is_data_present(hdr->frame_control))
  84. return RX_CONTINUE;
  85. hdrlen = ieee80211_hdrlen(hdr->frame_control);
  86. if (skb->len < hdrlen + MICHAEL_MIC_LEN)
  87. return RX_DROP_UNUSABLE;
  88. data = skb->data + hdrlen;
  89. data_len = skb->len - hdrlen - MICHAEL_MIC_LEN;
  90. #if 0
  91. authenticator = fc & IEEE80211_FCTL_TODS; /* FIX */
  92. #else
  93. authenticator = 1;
  94. #endif
  95. key_offset = authenticator ?
  96. NL80211_TKIP_DATA_OFFSET_RX_MIC_KEY :
  97. NL80211_TKIP_DATA_OFFSET_TX_MIC_KEY;
  98. key = &rx->key->conf.key[key_offset];
  99. michael_mic(key, hdr, data, data_len, mic);
  100. if (memcmp(mic, data + data_len, MICHAEL_MIC_LEN) != 0 || wpa_test) {
  101. if (!(rx->flags & IEEE80211_RX_RA_MATCH))
  102. return RX_DROP_UNUSABLE;
  103. mac80211_ev_michael_mic_failure(rx->sdata, rx->key->conf.keyidx,
  104. (void *) skb->data);
  105. return RX_DROP_UNUSABLE;
  106. }
  107. /* remove Michael MIC from payload */
  108. skb_trim(skb, skb->len - MICHAEL_MIC_LEN);
  109. /* update IV in key information to be able to detect replays */
  110. rx->key->u.tkip.rx[rx->queue].iv32 = rx->tkip_iv32;
  111. rx->key->u.tkip.rx[rx->queue].iv16 = rx->tkip_iv16;
  112. return RX_CONTINUE;
  113. }
  114. static int tkip_encrypt_skb(struct ieee80211_tx_data *tx, struct sk_buff *skb)
  115. {
  116. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
  117. struct ieee80211_key *key = tx->key;
  118. struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
  119. unsigned int hdrlen;
  120. int len, tail;
  121. u8 *pos;
  122. if ((tx->key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE) &&
  123. !(tx->key->conf.flags & IEEE80211_KEY_FLAG_GENERATE_IV)) {
  124. /* hwaccel - with no need for preallocated room for IV/ICV */
  125. info->control.hw_key = &tx->key->conf;
  126. return 0;
  127. }
  128. hdrlen = ieee80211_hdrlen(hdr->frame_control);
  129. len = skb->len - hdrlen;
  130. if (tx->key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE)
  131. tail = 0;
  132. else
  133. tail = TKIP_ICV_LEN;
  134. if (WARN_ON(skb_tailroom(skb) < tail ||
  135. skb_headroom(skb) < TKIP_IV_LEN))
  136. return -1;
  137. pos = skb_push(skb, TKIP_IV_LEN);
  138. memmove(pos, pos + TKIP_IV_LEN, hdrlen);
  139. pos += hdrlen;
  140. /* Increase IV for the frame */
  141. key->u.tkip.tx.iv16++;
  142. if (key->u.tkip.tx.iv16 == 0)
  143. key->u.tkip.tx.iv32++;
  144. if (tx->key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE) {
  145. /* hwaccel - with preallocated room for IV */
  146. ieee80211_tkip_add_iv(pos, key, key->u.tkip.tx.iv16);
  147. info->control.hw_key = &tx->key->conf;
  148. return 0;
  149. }
  150. /* Add room for ICV */
  151. skb_put(skb, TKIP_ICV_LEN);
  152. hdr = (struct ieee80211_hdr *) skb->data;
  153. ieee80211_tkip_encrypt_data(tx->local->wep_tx_tfm,
  154. key, pos, len, hdr->addr2);
  155. return 0;
  156. }
  157. ieee80211_tx_result
  158. ieee80211_crypto_tkip_encrypt(struct ieee80211_tx_data *tx)
  159. {
  160. struct sk_buff *skb = tx->skb;
  161. int i;
  162. ieee80211_tx_set_protected(tx);
  163. if (tkip_encrypt_skb(tx, skb) < 0)
  164. return TX_DROP;
  165. if (tx->extra_frag) {
  166. for (i = 0; i < tx->num_extra_frag; i++) {
  167. if (tkip_encrypt_skb(tx, tx->extra_frag[i]))
  168. return TX_DROP;
  169. }
  170. }
  171. return TX_CONTINUE;
  172. }
  173. ieee80211_rx_result
  174. ieee80211_crypto_tkip_decrypt(struct ieee80211_rx_data *rx)
  175. {
  176. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) rx->skb->data;
  177. int hdrlen, res, hwaccel = 0, wpa_test = 0;
  178. struct ieee80211_key *key = rx->key;
  179. struct sk_buff *skb = rx->skb;
  180. hdrlen = ieee80211_hdrlen(hdr->frame_control);
  181. if (!ieee80211_is_data(hdr->frame_control))
  182. return RX_CONTINUE;
  183. if (!rx->sta || skb->len - hdrlen < 12)
  184. return RX_DROP_UNUSABLE;
  185. if (rx->status->flag & RX_FLAG_DECRYPTED) {
  186. if (rx->status->flag & RX_FLAG_IV_STRIPPED) {
  187. /*
  188. * Hardware took care of all processing, including
  189. * replay protection, and stripped the ICV/IV so
  190. * we cannot do any checks here.
  191. */
  192. return RX_CONTINUE;
  193. }
  194. /* let TKIP code verify IV, but skip decryption */
  195. hwaccel = 1;
  196. }
  197. res = ieee80211_tkip_decrypt_data(rx->local->wep_rx_tfm,
  198. key, skb->data + hdrlen,
  199. skb->len - hdrlen, rx->sta->sta.addr,
  200. hdr->addr1, hwaccel, rx->queue,
  201. &rx->tkip_iv32,
  202. &rx->tkip_iv16);
  203. if (res != TKIP_DECRYPT_OK || wpa_test)
  204. return RX_DROP_UNUSABLE;
  205. /* Trim ICV */
  206. skb_trim(skb, skb->len - TKIP_ICV_LEN);
  207. /* Remove IV */
  208. memmove(skb->data + TKIP_IV_LEN, skb->data, hdrlen);
  209. skb_pull(skb, TKIP_IV_LEN);
  210. return RX_CONTINUE;
  211. }
  212. static void ccmp_special_blocks(struct sk_buff *skb, u8 *pn, u8 *scratch,
  213. int encrypted)
  214. {
  215. __le16 mask_fc;
  216. int a4_included;
  217. u8 qos_tid;
  218. u8 *b_0, *aad;
  219. u16 data_len, len_a;
  220. unsigned int hdrlen;
  221. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
  222. b_0 = scratch + 3 * AES_BLOCK_LEN;
  223. aad = scratch + 4 * AES_BLOCK_LEN;
  224. /*
  225. * Mask FC: zero subtype b4 b5 b6
  226. * Retry, PwrMgt, MoreData; set Protected
  227. */
  228. mask_fc = hdr->frame_control;
  229. mask_fc &= ~cpu_to_le16(0x0070 | IEEE80211_FCTL_RETRY |
  230. IEEE80211_FCTL_PM | IEEE80211_FCTL_MOREDATA);
  231. mask_fc |= cpu_to_le16(IEEE80211_FCTL_PROTECTED);
  232. hdrlen = ieee80211_hdrlen(hdr->frame_control);
  233. len_a = hdrlen - 2;
  234. a4_included = ieee80211_has_a4(hdr->frame_control);
  235. if (ieee80211_is_data_qos(hdr->frame_control))
  236. qos_tid = *ieee80211_get_qos_ctl(hdr) & IEEE80211_QOS_CTL_TID_MASK;
  237. else
  238. qos_tid = 0;
  239. data_len = skb->len - hdrlen - CCMP_HDR_LEN;
  240. if (encrypted)
  241. data_len -= CCMP_MIC_LEN;
  242. /* First block, b_0 */
  243. b_0[0] = 0x59; /* flags: Adata: 1, M: 011, L: 001 */
  244. /* Nonce: QoS Priority | A2 | PN */
  245. b_0[1] = qos_tid;
  246. memcpy(&b_0[2], hdr->addr2, ETH_ALEN);
  247. memcpy(&b_0[8], pn, CCMP_PN_LEN);
  248. /* l(m) */
  249. put_unaligned_be16(data_len, &b_0[14]);
  250. /* AAD (extra authenticate-only data) / masked 802.11 header
  251. * FC | A1 | A2 | A3 | SC | [A4] | [QC] */
  252. put_unaligned_be16(len_a, &aad[0]);
  253. put_unaligned(mask_fc, (__le16 *)&aad[2]);
  254. memcpy(&aad[4], &hdr->addr1, 3 * ETH_ALEN);
  255. /* Mask Seq#, leave Frag# */
  256. aad[22] = *((u8 *) &hdr->seq_ctrl) & 0x0f;
  257. aad[23] = 0;
  258. if (a4_included) {
  259. memcpy(&aad[24], hdr->addr4, ETH_ALEN);
  260. aad[30] = qos_tid;
  261. aad[31] = 0;
  262. } else {
  263. memset(&aad[24], 0, ETH_ALEN + IEEE80211_QOS_CTL_LEN);
  264. aad[24] = qos_tid;
  265. }
  266. }
  267. static inline void ccmp_pn2hdr(u8 *hdr, u8 *pn, int key_id)
  268. {
  269. hdr[0] = pn[5];
  270. hdr[1] = pn[4];
  271. hdr[2] = 0;
  272. hdr[3] = 0x20 | (key_id << 6);
  273. hdr[4] = pn[3];
  274. hdr[5] = pn[2];
  275. hdr[6] = pn[1];
  276. hdr[7] = pn[0];
  277. }
  278. static inline void ccmp_hdr2pn(u8 *pn, u8 *hdr)
  279. {
  280. pn[0] = hdr[7];
  281. pn[1] = hdr[6];
  282. pn[2] = hdr[5];
  283. pn[3] = hdr[4];
  284. pn[4] = hdr[1];
  285. pn[5] = hdr[0];
  286. }
  287. static int ccmp_encrypt_skb(struct ieee80211_tx_data *tx, struct sk_buff *skb)
  288. {
  289. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data;
  290. struct ieee80211_key *key = tx->key;
  291. struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
  292. int hdrlen, len, tail;
  293. u8 *pos, *pn;
  294. int i;
  295. if ((tx->key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE) &&
  296. !(tx->key->conf.flags & IEEE80211_KEY_FLAG_GENERATE_IV)) {
  297. /* hwaccel - with no need for preallocated room for CCMP
  298. * header or MIC fields */
  299. info->control.hw_key = &tx->key->conf;
  300. return 0;
  301. }
  302. hdrlen = ieee80211_hdrlen(hdr->frame_control);
  303. len = skb->len - hdrlen;
  304. if (key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE)
  305. tail = 0;
  306. else
  307. tail = CCMP_MIC_LEN;
  308. if (WARN_ON(skb_tailroom(skb) < tail ||
  309. skb_headroom(skb) < CCMP_HDR_LEN))
  310. return -1;
  311. pos = skb_push(skb, CCMP_HDR_LEN);
  312. memmove(pos, pos + CCMP_HDR_LEN, hdrlen);
  313. hdr = (struct ieee80211_hdr *) pos;
  314. pos += hdrlen;
  315. /* PN = PN + 1 */
  316. pn = key->u.ccmp.tx_pn;
  317. for (i = CCMP_PN_LEN - 1; i >= 0; i--) {
  318. pn[i]++;
  319. if (pn[i])
  320. break;
  321. }
  322. ccmp_pn2hdr(pos, pn, key->conf.keyidx);
  323. if (key->flags & KEY_FLAG_UPLOADED_TO_HARDWARE) {
  324. /* hwaccel - with preallocated room for CCMP header */
  325. info->control.hw_key = &tx->key->conf;
  326. return 0;
  327. }
  328. pos += CCMP_HDR_LEN;
  329. ccmp_special_blocks(skb, pn, key->u.ccmp.tx_crypto_buf, 0);
  330. ieee80211_aes_ccm_encrypt(key->u.ccmp.tfm, key->u.ccmp.tx_crypto_buf, pos, len,
  331. pos, skb_put(skb, CCMP_MIC_LEN));
  332. return 0;
  333. }
  334. ieee80211_tx_result
  335. ieee80211_crypto_ccmp_encrypt(struct ieee80211_tx_data *tx)
  336. {
  337. struct sk_buff *skb = tx->skb;
  338. int i;
  339. ieee80211_tx_set_protected(tx);
  340. if (ccmp_encrypt_skb(tx, skb) < 0)
  341. return TX_DROP;
  342. if (tx->extra_frag) {
  343. for (i = 0; i < tx->num_extra_frag; i++) {
  344. if (ccmp_encrypt_skb(tx, tx->extra_frag[i]))
  345. return TX_DROP;
  346. }
  347. }
  348. return TX_CONTINUE;
  349. }
  350. ieee80211_rx_result
  351. ieee80211_crypto_ccmp_decrypt(struct ieee80211_rx_data *rx)
  352. {
  353. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)rx->skb->data;
  354. int hdrlen;
  355. struct ieee80211_key *key = rx->key;
  356. struct sk_buff *skb = rx->skb;
  357. u8 pn[CCMP_PN_LEN];
  358. int data_len;
  359. hdrlen = ieee80211_hdrlen(hdr->frame_control);
  360. if (!ieee80211_is_data(hdr->frame_control))
  361. return RX_CONTINUE;
  362. data_len = skb->len - hdrlen - CCMP_HDR_LEN - CCMP_MIC_LEN;
  363. if (!rx->sta || data_len < 0)
  364. return RX_DROP_UNUSABLE;
  365. if ((rx->status->flag & RX_FLAG_DECRYPTED) &&
  366. (rx->status->flag & RX_FLAG_IV_STRIPPED))
  367. return RX_CONTINUE;
  368. ccmp_hdr2pn(pn, skb->data + hdrlen);
  369. if (memcmp(pn, key->u.ccmp.rx_pn[rx->queue], CCMP_PN_LEN) <= 0) {
  370. key->u.ccmp.replays++;
  371. return RX_DROP_UNUSABLE;
  372. }
  373. if (!(rx->status->flag & RX_FLAG_DECRYPTED)) {
  374. /* hardware didn't decrypt/verify MIC */
  375. ccmp_special_blocks(skb, pn, key->u.ccmp.rx_crypto_buf, 1);
  376. if (ieee80211_aes_ccm_decrypt(
  377. key->u.ccmp.tfm, key->u.ccmp.rx_crypto_buf,
  378. skb->data + hdrlen + CCMP_HDR_LEN, data_len,
  379. skb->data + skb->len - CCMP_MIC_LEN,
  380. skb->data + hdrlen + CCMP_HDR_LEN))
  381. return RX_DROP_UNUSABLE;
  382. }
  383. memcpy(key->u.ccmp.rx_pn[rx->queue], pn, CCMP_PN_LEN);
  384. /* Remove CCMP header and MIC */
  385. skb_trim(skb, skb->len - CCMP_MIC_LEN);
  386. memmove(skb->data + CCMP_HDR_LEN, skb->data, hdrlen);
  387. skb_pull(skb, CCMP_HDR_LEN);
  388. return RX_CONTINUE;
  389. }