ieee80211_ioctl.c 41 KB

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  1. /*
  2. * Copyright 2002-2005, Instant802 Networks, Inc.
  3. * Copyright 2005-2006, 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. */
  9. #include <linux/module.h>
  10. #include <linux/init.h>
  11. #include <linux/netdevice.h>
  12. #include <linux/types.h>
  13. #include <linux/slab.h>
  14. #include <linux/skbuff.h>
  15. #include <linux/etherdevice.h>
  16. #include <linux/if_arp.h>
  17. #include <linux/wireless.h>
  18. #include <net/iw_handler.h>
  19. #include <asm/uaccess.h>
  20. #include <net/mac80211.h>
  21. #include "ieee80211_i.h"
  22. #include "hostapd_ioctl.h"
  23. #include "ieee80211_rate.h"
  24. #include "wpa.h"
  25. #include "aes_ccm.h"
  26. #include "debugfs_key.h"
  27. static void ieee80211_set_hw_encryption(struct net_device *dev,
  28. struct sta_info *sta, u8 addr[ETH_ALEN],
  29. struct ieee80211_key *key)
  30. {
  31. struct ieee80211_key_conf *keyconf = NULL;
  32. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  33. /* default to sw encryption; this will be cleared by low-level
  34. * driver if the hw supports requested encryption */
  35. if (key)
  36. key->force_sw_encrypt = 1;
  37. if (key && local->ops->set_key &&
  38. (keyconf = ieee80211_key_data2conf(local, key))) {
  39. if (local->ops->set_key(local_to_hw(local), SET_KEY, addr,
  40. keyconf, sta ? sta->aid : 0)) {
  41. key->force_sw_encrypt = 1;
  42. key->hw_key_idx = HW_KEY_IDX_INVALID;
  43. } else {
  44. key->force_sw_encrypt =
  45. !!(keyconf->flags & IEEE80211_KEY_FORCE_SW_ENCRYPT);
  46. key->hw_key_idx =
  47. keyconf->hw_key_idx;
  48. }
  49. }
  50. kfree(keyconf);
  51. }
  52. static int ieee80211_set_encryption(struct net_device *dev, u8 *sta_addr,
  53. int idx, int alg, int set_tx_key,
  54. const u8 *_key, size_t key_len)
  55. {
  56. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  57. int ret = 0;
  58. struct sta_info *sta;
  59. struct ieee80211_key *key, *old_key;
  60. int try_hwaccel = 1;
  61. struct ieee80211_key_conf *keyconf;
  62. struct ieee80211_sub_if_data *sdata;
  63. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  64. if (is_broadcast_ether_addr(sta_addr)) {
  65. sta = NULL;
  66. if (idx >= NUM_DEFAULT_KEYS) {
  67. printk(KERN_DEBUG "%s: set_encrypt - invalid idx=%d\n",
  68. dev->name, idx);
  69. return -EINVAL;
  70. }
  71. key = sdata->keys[idx];
  72. /* TODO: consider adding hwaccel support for these; at least
  73. * Atheros key cache should be able to handle this since AP is
  74. * only transmitting frames with default keys. */
  75. /* FIX: hw key cache can be used when only one virtual
  76. * STA is associated with each AP. If more than one STA
  77. * is associated to the same AP, software encryption
  78. * must be used. This should be done automatically
  79. * based on configured station devices. For the time
  80. * being, this can be only set at compile time. */
  81. } else {
  82. set_tx_key = 0;
  83. if (idx != 0) {
  84. printk(KERN_DEBUG "%s: set_encrypt - non-zero idx for "
  85. "individual key\n", dev->name);
  86. return -EINVAL;
  87. }
  88. sta = sta_info_get(local, sta_addr);
  89. if (!sta) {
  90. #ifdef CONFIG_MAC80211_VERBOSE_DEBUG
  91. printk(KERN_DEBUG "%s: set_encrypt - unknown addr "
  92. MAC_FMT "\n",
  93. dev->name, MAC_ARG(sta_addr));
  94. #endif /* CONFIG_MAC80211_VERBOSE_DEBUG */
  95. return -ENOENT;
  96. }
  97. key = sta->key;
  98. }
  99. /* FIX:
  100. * Cannot configure default hwaccel keys with WEP algorithm, if
  101. * any of the virtual interfaces is using static WEP
  102. * configuration because hwaccel would otherwise try to decrypt
  103. * these frames.
  104. *
  105. * For now, just disable WEP hwaccel for broadcast when there is
  106. * possibility of conflict with default keys. This can maybe later be
  107. * optimized by using non-default keys (at least with Atheros ar521x).
  108. */
  109. if (!sta && alg == ALG_WEP && !local->default_wep_only &&
  110. sdata->type != IEEE80211_IF_TYPE_IBSS &&
  111. sdata->type != IEEE80211_IF_TYPE_AP) {
  112. try_hwaccel = 0;
  113. }
  114. if (local->hw.flags & IEEE80211_HW_DEVICE_HIDES_WEP) {
  115. /* Software encryption cannot be used with devices that hide
  116. * encryption from the host system, so always try to use
  117. * hardware acceleration with such devices. */
  118. try_hwaccel = 1;
  119. }
  120. if ((local->hw.flags & IEEE80211_HW_NO_TKIP_WMM_HWACCEL) &&
  121. alg == ALG_TKIP) {
  122. if (sta && (sta->flags & WLAN_STA_WME)) {
  123. /* Hardware does not support hwaccel with TKIP when using WMM.
  124. */
  125. try_hwaccel = 0;
  126. }
  127. else if (sdata->type == IEEE80211_IF_TYPE_STA) {
  128. sta = sta_info_get(local, sdata->u.sta.bssid);
  129. if (sta) {
  130. if (sta->flags & WLAN_STA_WME) {
  131. try_hwaccel = 0;
  132. }
  133. sta_info_put(sta);
  134. sta = NULL;
  135. }
  136. }
  137. }
  138. if (alg == ALG_NONE) {
  139. keyconf = NULL;
  140. if (try_hwaccel && key &&
  141. key->hw_key_idx != HW_KEY_IDX_INVALID &&
  142. local->ops->set_key &&
  143. (keyconf = ieee80211_key_data2conf(local, key)) != NULL &&
  144. local->ops->set_key(local_to_hw(local), DISABLE_KEY,
  145. sta_addr, keyconf, sta ? sta->aid : 0)) {
  146. printk(KERN_DEBUG "%s: set_encrypt - low-level disable"
  147. " failed\n", dev->name);
  148. ret = -EINVAL;
  149. }
  150. kfree(keyconf);
  151. if (set_tx_key || sdata->default_key == key) {
  152. ieee80211_debugfs_key_remove_default(sdata);
  153. sdata->default_key = NULL;
  154. }
  155. ieee80211_debugfs_key_remove(key);
  156. if (sta)
  157. sta->key = NULL;
  158. else
  159. sdata->keys[idx] = NULL;
  160. ieee80211_key_free(key);
  161. key = NULL;
  162. } else {
  163. old_key = key;
  164. key = ieee80211_key_alloc(sta ? NULL : sdata, idx, key_len,
  165. GFP_KERNEL);
  166. if (!key) {
  167. ret = -ENOMEM;
  168. goto err_out;
  169. }
  170. /* default to sw encryption; low-level driver sets these if the
  171. * requested encryption is supported */
  172. key->hw_key_idx = HW_KEY_IDX_INVALID;
  173. key->force_sw_encrypt = 1;
  174. key->alg = alg;
  175. key->keyidx = idx;
  176. key->keylen = key_len;
  177. memcpy(key->key, _key, key_len);
  178. if (set_tx_key)
  179. key->default_tx_key = 1;
  180. if (alg == ALG_CCMP) {
  181. /* Initialize AES key state here as an optimization
  182. * so that it does not need to be initialized for every
  183. * packet. */
  184. key->u.ccmp.tfm = ieee80211_aes_key_setup_encrypt(
  185. key->key);
  186. if (!key->u.ccmp.tfm) {
  187. ret = -ENOMEM;
  188. goto err_free;
  189. }
  190. }
  191. if (set_tx_key || sdata->default_key == old_key) {
  192. ieee80211_debugfs_key_remove_default(sdata);
  193. sdata->default_key = NULL;
  194. }
  195. ieee80211_debugfs_key_remove(old_key);
  196. if (sta)
  197. sta->key = key;
  198. else
  199. sdata->keys[idx] = key;
  200. ieee80211_key_free(old_key);
  201. ieee80211_debugfs_key_add(local, key);
  202. if (sta)
  203. ieee80211_debugfs_key_sta_link(key, sta);
  204. if (try_hwaccel &&
  205. (alg == ALG_WEP || alg == ALG_TKIP || alg == ALG_CCMP))
  206. ieee80211_set_hw_encryption(dev, sta, sta_addr, key);
  207. }
  208. if (set_tx_key || (!sta && !sdata->default_key && key)) {
  209. sdata->default_key = key;
  210. if (key)
  211. ieee80211_debugfs_key_add_default(sdata);
  212. if (local->ops->set_key_idx &&
  213. local->ops->set_key_idx(local_to_hw(local), idx))
  214. printk(KERN_DEBUG "%s: failed to set TX key idx for "
  215. "low-level driver\n", dev->name);
  216. }
  217. if (sta)
  218. sta_info_put(sta);
  219. return 0;
  220. err_free:
  221. ieee80211_key_free(key);
  222. err_out:
  223. if (sta)
  224. sta_info_put(sta);
  225. return ret;
  226. }
  227. static int ieee80211_ioctl_siwgenie(struct net_device *dev,
  228. struct iw_request_info *info,
  229. struct iw_point *data, char *extra)
  230. {
  231. struct ieee80211_sub_if_data *sdata;
  232. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  233. if (local->user_space_mlme)
  234. return -EOPNOTSUPP;
  235. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  236. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  237. sdata->type == IEEE80211_IF_TYPE_IBSS) {
  238. int ret = ieee80211_sta_set_extra_ie(dev, extra, data->length);
  239. if (ret)
  240. return ret;
  241. sdata->u.sta.flags &= ~IEEE80211_STA_AUTO_BSSID_SEL;
  242. ieee80211_sta_req_auth(dev, &sdata->u.sta);
  243. return 0;
  244. }
  245. if (sdata->type == IEEE80211_IF_TYPE_AP) {
  246. kfree(sdata->u.ap.generic_elem);
  247. sdata->u.ap.generic_elem = kmalloc(data->length, GFP_KERNEL);
  248. if (!sdata->u.ap.generic_elem)
  249. return -ENOMEM;
  250. memcpy(sdata->u.ap.generic_elem, extra, data->length);
  251. sdata->u.ap.generic_elem_len = data->length;
  252. return ieee80211_if_config(dev);
  253. }
  254. return -EOPNOTSUPP;
  255. }
  256. static int ieee80211_ioctl_giwname(struct net_device *dev,
  257. struct iw_request_info *info,
  258. char *name, char *extra)
  259. {
  260. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  261. switch (local->hw.conf.phymode) {
  262. case MODE_IEEE80211A:
  263. strcpy(name, "IEEE 802.11a");
  264. break;
  265. case MODE_IEEE80211B:
  266. strcpy(name, "IEEE 802.11b");
  267. break;
  268. case MODE_IEEE80211G:
  269. strcpy(name, "IEEE 802.11g");
  270. break;
  271. case MODE_ATHEROS_TURBO:
  272. strcpy(name, "5GHz Turbo");
  273. break;
  274. default:
  275. strcpy(name, "IEEE 802.11");
  276. break;
  277. }
  278. return 0;
  279. }
  280. static int ieee80211_ioctl_giwrange(struct net_device *dev,
  281. struct iw_request_info *info,
  282. struct iw_point *data, char *extra)
  283. {
  284. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  285. struct iw_range *range = (struct iw_range *) extra;
  286. struct ieee80211_hw_mode *mode = NULL;
  287. int c = 0;
  288. data->length = sizeof(struct iw_range);
  289. memset(range, 0, sizeof(struct iw_range));
  290. range->we_version_compiled = WIRELESS_EXT;
  291. range->we_version_source = 21;
  292. range->retry_capa = IW_RETRY_LIMIT;
  293. range->retry_flags = IW_RETRY_LIMIT;
  294. range->min_retry = 0;
  295. range->max_retry = 255;
  296. range->min_rts = 0;
  297. range->max_rts = 2347;
  298. range->min_frag = 256;
  299. range->max_frag = 2346;
  300. range->encoding_size[0] = 5;
  301. range->encoding_size[1] = 13;
  302. range->num_encoding_sizes = 2;
  303. range->max_encoding_tokens = NUM_DEFAULT_KEYS;
  304. range->max_qual.qual = local->hw.max_signal;
  305. range->max_qual.level = local->hw.max_rssi;
  306. range->max_qual.noise = local->hw.max_noise;
  307. range->max_qual.updated = local->wstats_flags;
  308. range->avg_qual.qual = local->hw.max_signal/2;
  309. range->avg_qual.level = 0;
  310. range->avg_qual.noise = 0;
  311. range->avg_qual.updated = local->wstats_flags;
  312. range->enc_capa = IW_ENC_CAPA_WPA | IW_ENC_CAPA_WPA2 |
  313. IW_ENC_CAPA_CIPHER_TKIP | IW_ENC_CAPA_CIPHER_CCMP;
  314. list_for_each_entry(mode, &local->modes_list, list) {
  315. int i = 0;
  316. if (!(local->enabled_modes & (1 << mode->mode)) ||
  317. (local->hw_modes & local->enabled_modes &
  318. (1 << MODE_IEEE80211G) && mode->mode == MODE_IEEE80211B))
  319. continue;
  320. while (i < mode->num_channels && c < IW_MAX_FREQUENCIES) {
  321. struct ieee80211_channel *chan = &mode->channels[i];
  322. if (chan->flag & IEEE80211_CHAN_W_SCAN) {
  323. range->freq[c].i = chan->chan;
  324. range->freq[c].m = chan->freq * 100000;
  325. range->freq[c].e = 1;
  326. c++;
  327. }
  328. i++;
  329. }
  330. }
  331. range->num_channels = c;
  332. range->num_frequency = c;
  333. IW_EVENT_CAPA_SET_KERNEL(range->event_capa);
  334. IW_EVENT_CAPA_SET(range->event_capa, SIOCGIWTHRSPY);
  335. IW_EVENT_CAPA_SET(range->event_capa, SIOCGIWAP);
  336. IW_EVENT_CAPA_SET(range->event_capa, SIOCGIWSCAN);
  337. return 0;
  338. }
  339. static int ieee80211_ioctl_siwmode(struct net_device *dev,
  340. struct iw_request_info *info,
  341. __u32 *mode, char *extra)
  342. {
  343. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  344. int type;
  345. if (sdata->type == IEEE80211_IF_TYPE_VLAN)
  346. return -EOPNOTSUPP;
  347. switch (*mode) {
  348. case IW_MODE_INFRA:
  349. type = IEEE80211_IF_TYPE_STA;
  350. break;
  351. case IW_MODE_ADHOC:
  352. type = IEEE80211_IF_TYPE_IBSS;
  353. break;
  354. case IW_MODE_MONITOR:
  355. type = IEEE80211_IF_TYPE_MNTR;
  356. break;
  357. default:
  358. return -EINVAL;
  359. }
  360. if (type == sdata->type)
  361. return 0;
  362. if (netif_running(dev))
  363. return -EBUSY;
  364. ieee80211_if_reinit(dev);
  365. ieee80211_if_set_type(dev, type);
  366. return 0;
  367. }
  368. static int ieee80211_ioctl_giwmode(struct net_device *dev,
  369. struct iw_request_info *info,
  370. __u32 *mode, char *extra)
  371. {
  372. struct ieee80211_sub_if_data *sdata;
  373. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  374. switch (sdata->type) {
  375. case IEEE80211_IF_TYPE_AP:
  376. *mode = IW_MODE_MASTER;
  377. break;
  378. case IEEE80211_IF_TYPE_STA:
  379. *mode = IW_MODE_INFRA;
  380. break;
  381. case IEEE80211_IF_TYPE_IBSS:
  382. *mode = IW_MODE_ADHOC;
  383. break;
  384. case IEEE80211_IF_TYPE_MNTR:
  385. *mode = IW_MODE_MONITOR;
  386. break;
  387. case IEEE80211_IF_TYPE_WDS:
  388. *mode = IW_MODE_REPEAT;
  389. break;
  390. case IEEE80211_IF_TYPE_VLAN:
  391. *mode = IW_MODE_SECOND; /* FIXME */
  392. break;
  393. default:
  394. *mode = IW_MODE_AUTO;
  395. break;
  396. }
  397. return 0;
  398. }
  399. int ieee80211_set_channel(struct ieee80211_local *local, int channel, int freq)
  400. {
  401. struct ieee80211_hw_mode *mode;
  402. int c, set = 0;
  403. int ret = -EINVAL;
  404. list_for_each_entry(mode, &local->modes_list, list) {
  405. if (!(local->enabled_modes & (1 << mode->mode)))
  406. continue;
  407. for (c = 0; c < mode->num_channels; c++) {
  408. struct ieee80211_channel *chan = &mode->channels[c];
  409. if (chan->flag & IEEE80211_CHAN_W_SCAN &&
  410. ((chan->chan == channel) || (chan->freq == freq))) {
  411. /* Use next_mode as the mode preference to
  412. * resolve non-unique channel numbers. */
  413. if (set && mode->mode != local->next_mode)
  414. continue;
  415. local->oper_channel = chan;
  416. local->oper_hw_mode = mode;
  417. set++;
  418. }
  419. }
  420. }
  421. if (set) {
  422. if (local->sta_scanning)
  423. ret = 0;
  424. else
  425. ret = ieee80211_hw_config(local);
  426. rate_control_clear(local);
  427. }
  428. return ret;
  429. }
  430. static int ieee80211_ioctl_siwfreq(struct net_device *dev,
  431. struct iw_request_info *info,
  432. struct iw_freq *freq, char *extra)
  433. {
  434. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  435. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  436. if (sdata->type == IEEE80211_IF_TYPE_STA)
  437. sdata->u.sta.flags &= ~IEEE80211_STA_AUTO_CHANNEL_SEL;
  438. /* freq->e == 0: freq->m = channel; otherwise freq = m * 10^e */
  439. if (freq->e == 0) {
  440. if (freq->m < 0) {
  441. if (sdata->type == IEEE80211_IF_TYPE_STA)
  442. sdata->u.sta.flags |=
  443. IEEE80211_STA_AUTO_CHANNEL_SEL;
  444. return 0;
  445. } else
  446. return ieee80211_set_channel(local, freq->m, -1);
  447. } else {
  448. int i, div = 1000000;
  449. for (i = 0; i < freq->e; i++)
  450. div /= 10;
  451. if (div > 0)
  452. return ieee80211_set_channel(local, -1, freq->m / div);
  453. else
  454. return -EINVAL;
  455. }
  456. }
  457. static int ieee80211_ioctl_giwfreq(struct net_device *dev,
  458. struct iw_request_info *info,
  459. struct iw_freq *freq, char *extra)
  460. {
  461. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  462. /* TODO: in station mode (Managed/Ad-hoc) might need to poll low-level
  463. * driver for the current channel with firmware-based management */
  464. freq->m = local->hw.conf.freq;
  465. freq->e = 6;
  466. return 0;
  467. }
  468. static int ieee80211_ioctl_siwessid(struct net_device *dev,
  469. struct iw_request_info *info,
  470. struct iw_point *data, char *ssid)
  471. {
  472. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  473. struct ieee80211_sub_if_data *sdata;
  474. size_t len = data->length;
  475. /* iwconfig uses nul termination in SSID.. */
  476. if (len > 0 && ssid[len - 1] == '\0')
  477. len--;
  478. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  479. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  480. sdata->type == IEEE80211_IF_TYPE_IBSS) {
  481. int ret;
  482. if (local->user_space_mlme) {
  483. if (len > IEEE80211_MAX_SSID_LEN)
  484. return -EINVAL;
  485. memcpy(sdata->u.sta.ssid, ssid, len);
  486. sdata->u.sta.ssid_len = len;
  487. return 0;
  488. }
  489. if (data->flags)
  490. sdata->u.sta.flags &= ~IEEE80211_STA_AUTO_SSID_SEL;
  491. else
  492. sdata->u.sta.flags |= IEEE80211_STA_AUTO_SSID_SEL;
  493. ret = ieee80211_sta_set_ssid(dev, ssid, len);
  494. if (ret)
  495. return ret;
  496. ieee80211_sta_req_auth(dev, &sdata->u.sta);
  497. return 0;
  498. }
  499. if (sdata->type == IEEE80211_IF_TYPE_AP) {
  500. memcpy(sdata->u.ap.ssid, ssid, len);
  501. memset(sdata->u.ap.ssid + len, 0,
  502. IEEE80211_MAX_SSID_LEN - len);
  503. sdata->u.ap.ssid_len = len;
  504. return ieee80211_if_config(dev);
  505. }
  506. return -EOPNOTSUPP;
  507. }
  508. static int ieee80211_ioctl_giwessid(struct net_device *dev,
  509. struct iw_request_info *info,
  510. struct iw_point *data, char *ssid)
  511. {
  512. size_t len;
  513. struct ieee80211_sub_if_data *sdata;
  514. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  515. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  516. sdata->type == IEEE80211_IF_TYPE_IBSS) {
  517. int res = ieee80211_sta_get_ssid(dev, ssid, &len);
  518. if (res == 0) {
  519. data->length = len;
  520. data->flags = 1;
  521. } else
  522. data->flags = 0;
  523. return res;
  524. }
  525. if (sdata->type == IEEE80211_IF_TYPE_AP) {
  526. len = sdata->u.ap.ssid_len;
  527. if (len > IW_ESSID_MAX_SIZE)
  528. len = IW_ESSID_MAX_SIZE;
  529. memcpy(ssid, sdata->u.ap.ssid, len);
  530. data->length = len;
  531. data->flags = 1;
  532. return 0;
  533. }
  534. return -EOPNOTSUPP;
  535. }
  536. static int ieee80211_ioctl_siwap(struct net_device *dev,
  537. struct iw_request_info *info,
  538. struct sockaddr *ap_addr, char *extra)
  539. {
  540. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  541. struct ieee80211_sub_if_data *sdata;
  542. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  543. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  544. sdata->type == IEEE80211_IF_TYPE_IBSS) {
  545. int ret;
  546. if (local->user_space_mlme) {
  547. memcpy(sdata->u.sta.bssid, (u8 *) &ap_addr->sa_data,
  548. ETH_ALEN);
  549. return 0;
  550. }
  551. if (is_zero_ether_addr((u8 *) &ap_addr->sa_data))
  552. sdata->u.sta.flags |= IEEE80211_STA_AUTO_BSSID_SEL |
  553. IEEE80211_STA_AUTO_CHANNEL_SEL;
  554. else if (is_broadcast_ether_addr((u8 *) &ap_addr->sa_data))
  555. sdata->u.sta.flags |= IEEE80211_STA_AUTO_BSSID_SEL;
  556. else
  557. sdata->u.sta.flags &= ~IEEE80211_STA_AUTO_BSSID_SEL;
  558. ret = ieee80211_sta_set_bssid(dev, (u8 *) &ap_addr->sa_data);
  559. if (ret)
  560. return ret;
  561. ieee80211_sta_req_auth(dev, &sdata->u.sta);
  562. return 0;
  563. } else if (sdata->type == IEEE80211_IF_TYPE_WDS) {
  564. if (memcmp(sdata->u.wds.remote_addr, (u8 *) &ap_addr->sa_data,
  565. ETH_ALEN) == 0)
  566. return 0;
  567. return ieee80211_if_update_wds(dev, (u8 *) &ap_addr->sa_data);
  568. }
  569. return -EOPNOTSUPP;
  570. }
  571. static int ieee80211_ioctl_giwap(struct net_device *dev,
  572. struct iw_request_info *info,
  573. struct sockaddr *ap_addr, char *extra)
  574. {
  575. struct ieee80211_sub_if_data *sdata;
  576. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  577. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  578. sdata->type == IEEE80211_IF_TYPE_IBSS) {
  579. ap_addr->sa_family = ARPHRD_ETHER;
  580. memcpy(&ap_addr->sa_data, sdata->u.sta.bssid, ETH_ALEN);
  581. return 0;
  582. } else if (sdata->type == IEEE80211_IF_TYPE_WDS) {
  583. ap_addr->sa_family = ARPHRD_ETHER;
  584. memcpy(&ap_addr->sa_data, sdata->u.wds.remote_addr, ETH_ALEN);
  585. return 0;
  586. }
  587. return -EOPNOTSUPP;
  588. }
  589. static int ieee80211_ioctl_siwscan(struct net_device *dev,
  590. struct iw_request_info *info,
  591. struct iw_point *data, char *extra)
  592. {
  593. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  594. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  595. u8 *ssid = NULL;
  596. size_t ssid_len = 0;
  597. if (!netif_running(dev))
  598. return -ENETDOWN;
  599. switch (sdata->type) {
  600. case IEEE80211_IF_TYPE_STA:
  601. case IEEE80211_IF_TYPE_IBSS:
  602. if (local->scan_flags & IEEE80211_SCAN_MATCH_SSID) {
  603. ssid = sdata->u.sta.ssid;
  604. ssid_len = sdata->u.sta.ssid_len;
  605. }
  606. break;
  607. case IEEE80211_IF_TYPE_AP:
  608. if (local->scan_flags & IEEE80211_SCAN_MATCH_SSID) {
  609. ssid = sdata->u.ap.ssid;
  610. ssid_len = sdata->u.ap.ssid_len;
  611. }
  612. break;
  613. default:
  614. return -EOPNOTSUPP;
  615. }
  616. return ieee80211_sta_req_scan(dev, ssid, ssid_len);
  617. }
  618. static int ieee80211_ioctl_giwscan(struct net_device *dev,
  619. struct iw_request_info *info,
  620. struct iw_point *data, char *extra)
  621. {
  622. int res;
  623. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  624. if (local->sta_scanning)
  625. return -EAGAIN;
  626. res = ieee80211_sta_scan_results(dev, extra, data->length);
  627. if (res >= 0) {
  628. data->length = res;
  629. return 0;
  630. }
  631. data->length = 0;
  632. return res;
  633. }
  634. static int ieee80211_ioctl_siwrate(struct net_device *dev,
  635. struct iw_request_info *info,
  636. struct iw_param *rate, char *extra)
  637. {
  638. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  639. struct ieee80211_hw_mode *mode;
  640. int i;
  641. u32 target_rate = rate->value / 100000;
  642. struct ieee80211_sub_if_data *sdata;
  643. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  644. if (!sdata->bss)
  645. return -ENODEV;
  646. mode = local->oper_hw_mode;
  647. /* target_rate = -1, rate->fixed = 0 means auto only, so use all rates
  648. * target_rate = X, rate->fixed = 1 means only rate X
  649. * target_rate = X, rate->fixed = 0 means all rates <= X */
  650. sdata->bss->max_ratectrl_rateidx = -1;
  651. sdata->bss->force_unicast_rateidx = -1;
  652. if (rate->value < 0)
  653. return 0;
  654. for (i=0; i< mode->num_rates; i++) {
  655. struct ieee80211_rate *rates = &mode->rates[i];
  656. int this_rate = rates->rate;
  657. if (mode->mode == MODE_ATHEROS_TURBO ||
  658. mode->mode == MODE_ATHEROS_TURBOG)
  659. this_rate *= 2;
  660. if (target_rate == this_rate) {
  661. sdata->bss->max_ratectrl_rateidx = i;
  662. if (rate->fixed)
  663. sdata->bss->force_unicast_rateidx = i;
  664. break;
  665. }
  666. }
  667. return 0;
  668. }
  669. static int ieee80211_ioctl_giwrate(struct net_device *dev,
  670. struct iw_request_info *info,
  671. struct iw_param *rate, char *extra)
  672. {
  673. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  674. struct sta_info *sta;
  675. struct ieee80211_sub_if_data *sdata;
  676. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  677. if (sdata->type == IEEE80211_IF_TYPE_STA)
  678. sta = sta_info_get(local, sdata->u.sta.bssid);
  679. else
  680. return -EOPNOTSUPP;
  681. if (!sta)
  682. return -ENODEV;
  683. if (sta->txrate < local->oper_hw_mode->num_rates)
  684. rate->value = local->oper_hw_mode->rates[sta->txrate].rate * 100000;
  685. else
  686. rate->value = 0;
  687. sta_info_put(sta);
  688. return 0;
  689. }
  690. static int ieee80211_ioctl_giwtxpower(struct net_device *dev,
  691. struct iw_request_info *info,
  692. union iwreq_data *data, char *extra)
  693. {
  694. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  695. data->txpower.fixed = 1;
  696. data->txpower.disabled = !(local->hw.conf.radio_enabled);
  697. data->txpower.value = local->hw.conf.power_level;
  698. data->txpower.flags = IW_TXPOW_DBM;
  699. return 0;
  700. }
  701. static int ieee80211_ioctl_siwrts(struct net_device *dev,
  702. struct iw_request_info *info,
  703. struct iw_param *rts, char *extra)
  704. {
  705. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  706. if (rts->disabled)
  707. local->rts_threshold = IEEE80211_MAX_RTS_THRESHOLD;
  708. else if (rts->value < 0 || rts->value > IEEE80211_MAX_RTS_THRESHOLD)
  709. return -EINVAL;
  710. else
  711. local->rts_threshold = rts->value;
  712. /* If the wlan card performs RTS/CTS in hardware/firmware,
  713. * configure it here */
  714. if (local->ops->set_rts_threshold)
  715. local->ops->set_rts_threshold(local_to_hw(local),
  716. local->rts_threshold);
  717. return 0;
  718. }
  719. static int ieee80211_ioctl_giwrts(struct net_device *dev,
  720. struct iw_request_info *info,
  721. struct iw_param *rts, char *extra)
  722. {
  723. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  724. rts->value = local->rts_threshold;
  725. rts->disabled = (rts->value >= IEEE80211_MAX_RTS_THRESHOLD);
  726. rts->fixed = 1;
  727. return 0;
  728. }
  729. static int ieee80211_ioctl_siwfrag(struct net_device *dev,
  730. struct iw_request_info *info,
  731. struct iw_param *frag, char *extra)
  732. {
  733. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  734. if (frag->disabled)
  735. local->fragmentation_threshold = IEEE80211_MAX_FRAG_THRESHOLD;
  736. else if (frag->value < 256 ||
  737. frag->value > IEEE80211_MAX_FRAG_THRESHOLD)
  738. return -EINVAL;
  739. else {
  740. /* Fragment length must be even, so strip LSB. */
  741. local->fragmentation_threshold = frag->value & ~0x1;
  742. }
  743. /* If the wlan card performs fragmentation in hardware/firmware,
  744. * configure it here */
  745. if (local->ops->set_frag_threshold)
  746. local->ops->set_frag_threshold(
  747. local_to_hw(local),
  748. local->fragmentation_threshold);
  749. return 0;
  750. }
  751. static int ieee80211_ioctl_giwfrag(struct net_device *dev,
  752. struct iw_request_info *info,
  753. struct iw_param *frag, char *extra)
  754. {
  755. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  756. frag->value = local->fragmentation_threshold;
  757. frag->disabled = (frag->value >= IEEE80211_MAX_RTS_THRESHOLD);
  758. frag->fixed = 1;
  759. return 0;
  760. }
  761. static int ieee80211_ioctl_siwretry(struct net_device *dev,
  762. struct iw_request_info *info,
  763. struct iw_param *retry, char *extra)
  764. {
  765. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  766. if (retry->disabled ||
  767. (retry->flags & IW_RETRY_TYPE) != IW_RETRY_LIMIT)
  768. return -EINVAL;
  769. if (retry->flags & IW_RETRY_MAX)
  770. local->long_retry_limit = retry->value;
  771. else if (retry->flags & IW_RETRY_MIN)
  772. local->short_retry_limit = retry->value;
  773. else {
  774. local->long_retry_limit = retry->value;
  775. local->short_retry_limit = retry->value;
  776. }
  777. if (local->ops->set_retry_limit) {
  778. return local->ops->set_retry_limit(
  779. local_to_hw(local),
  780. local->short_retry_limit,
  781. local->long_retry_limit);
  782. }
  783. return 0;
  784. }
  785. static int ieee80211_ioctl_giwretry(struct net_device *dev,
  786. struct iw_request_info *info,
  787. struct iw_param *retry, char *extra)
  788. {
  789. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  790. retry->disabled = 0;
  791. if (retry->flags == 0 || retry->flags & IW_RETRY_MIN) {
  792. /* first return min value, iwconfig will ask max value
  793. * later if needed */
  794. retry->flags |= IW_RETRY_LIMIT;
  795. retry->value = local->short_retry_limit;
  796. if (local->long_retry_limit != local->short_retry_limit)
  797. retry->flags |= IW_RETRY_MIN;
  798. return 0;
  799. }
  800. if (retry->flags & IW_RETRY_MAX) {
  801. retry->flags = IW_RETRY_LIMIT | IW_RETRY_MAX;
  802. retry->value = local->long_retry_limit;
  803. }
  804. return 0;
  805. }
  806. static void ieee80211_key_enable_hwaccel(struct ieee80211_local *local,
  807. struct ieee80211_key *key)
  808. {
  809. struct ieee80211_key_conf *keyconf;
  810. u8 addr[ETH_ALEN];
  811. if (!key || key->alg != ALG_WEP || !key->force_sw_encrypt ||
  812. (local->hw.flags & IEEE80211_HW_DEVICE_HIDES_WEP))
  813. return;
  814. memset(addr, 0xff, ETH_ALEN);
  815. keyconf = ieee80211_key_data2conf(local, key);
  816. if (keyconf && local->ops->set_key &&
  817. local->ops->set_key(local_to_hw(local),
  818. SET_KEY, addr, keyconf, 0) == 0) {
  819. key->force_sw_encrypt =
  820. !!(keyconf->flags & IEEE80211_KEY_FORCE_SW_ENCRYPT);
  821. key->hw_key_idx = keyconf->hw_key_idx;
  822. }
  823. kfree(keyconf);
  824. }
  825. static void ieee80211_key_disable_hwaccel(struct ieee80211_local *local,
  826. struct ieee80211_key *key)
  827. {
  828. struct ieee80211_key_conf *keyconf;
  829. u8 addr[ETH_ALEN];
  830. if (!key || key->alg != ALG_WEP || key->force_sw_encrypt ||
  831. (local->hw.flags & IEEE80211_HW_DEVICE_HIDES_WEP))
  832. return;
  833. memset(addr, 0xff, ETH_ALEN);
  834. keyconf = ieee80211_key_data2conf(local, key);
  835. if (keyconf && local->ops->set_key)
  836. local->ops->set_key(local_to_hw(local), DISABLE_KEY,
  837. addr, keyconf, 0);
  838. kfree(keyconf);
  839. key->force_sw_encrypt = 1;
  840. }
  841. static int ieee80211_ioctl_default_wep_only(struct ieee80211_local *local,
  842. int value)
  843. {
  844. int i;
  845. struct ieee80211_sub_if_data *sdata;
  846. local->default_wep_only = value;
  847. read_lock(&local->sub_if_lock);
  848. list_for_each_entry(sdata, &local->sub_if_list, list)
  849. for (i = 0; i < NUM_DEFAULT_KEYS; i++)
  850. if (value)
  851. ieee80211_key_enable_hwaccel(local,
  852. sdata->keys[i]);
  853. else
  854. ieee80211_key_disable_hwaccel(local,
  855. sdata->keys[i]);
  856. read_unlock(&local->sub_if_lock);
  857. return 0;
  858. }
  859. void ieee80211_update_default_wep_only(struct ieee80211_local *local)
  860. {
  861. int i = 0;
  862. struct ieee80211_sub_if_data *sdata;
  863. read_lock(&local->sub_if_lock);
  864. list_for_each_entry(sdata, &local->sub_if_list, list) {
  865. if (sdata->dev == local->mdev)
  866. continue;
  867. /* If there is an AP interface then depend on userspace to
  868. set default_wep_only correctly. */
  869. if (sdata->type == IEEE80211_IF_TYPE_AP) {
  870. read_unlock(&local->sub_if_lock);
  871. return;
  872. }
  873. i++;
  874. }
  875. read_unlock(&local->sub_if_lock);
  876. if (i <= 1)
  877. ieee80211_ioctl_default_wep_only(local, 1);
  878. else
  879. ieee80211_ioctl_default_wep_only(local, 0);
  880. }
  881. static int ieee80211_ioctl_prism2_param(struct net_device *dev,
  882. struct iw_request_info *info,
  883. void *wrqu, char *extra)
  884. {
  885. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  886. struct ieee80211_sub_if_data *sdata;
  887. int *i = (int *) extra;
  888. int param = *i;
  889. int value = *(i + 1);
  890. int ret = 0;
  891. if (!capable(CAP_NET_ADMIN))
  892. return -EPERM;
  893. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  894. switch (param) {
  895. case PRISM2_PARAM_IEEE_802_1X:
  896. if (local->ops->set_ieee8021x)
  897. ret = local->ops->set_ieee8021x(local_to_hw(local),
  898. value);
  899. if (ret)
  900. printk(KERN_DEBUG "%s: failed to set IEEE 802.1X (%d) "
  901. "for low-level driver\n", dev->name, value);
  902. else
  903. sdata->ieee802_1x = value;
  904. break;
  905. case PRISM2_PARAM_CTS_PROTECT_ERP_FRAMES:
  906. if (sdata->type == IEEE80211_IF_TYPE_AP) {
  907. if (value)
  908. sdata->flags |= IEEE80211_SDATA_USE_PROTECTION;
  909. else
  910. sdata->flags &= ~IEEE80211_SDATA_USE_PROTECTION;
  911. ieee80211_erp_info_change_notify(dev,
  912. IEEE80211_ERP_CHANGE_PROTECTION);
  913. } else {
  914. ret = -ENOENT;
  915. }
  916. break;
  917. case PRISM2_PARAM_PREAMBLE:
  918. if (sdata->type != IEEE80211_IF_TYPE_AP) {
  919. if (value)
  920. sdata->flags |= IEEE80211_SDATA_SHORT_PREAMBLE;
  921. else
  922. sdata->flags &= ~IEEE80211_SDATA_SHORT_PREAMBLE;
  923. ieee80211_erp_info_change_notify(dev,
  924. IEEE80211_ERP_CHANGE_PREAMBLE);
  925. } else {
  926. ret = -ENOENT;
  927. }
  928. break;
  929. case PRISM2_PARAM_SHORT_SLOT_TIME:
  930. if (value)
  931. local->hw.conf.flags |= IEEE80211_CONF_SHORT_SLOT_TIME;
  932. else
  933. local->hw.conf.flags &= ~IEEE80211_CONF_SHORT_SLOT_TIME;
  934. if (ieee80211_hw_config(local))
  935. ret = -EINVAL;
  936. break;
  937. case PRISM2_PARAM_NEXT_MODE:
  938. local->next_mode = value;
  939. break;
  940. case PRISM2_PARAM_KEY_TX_RX_THRESHOLD:
  941. local->key_tx_rx_threshold = value;
  942. break;
  943. case PRISM2_PARAM_WIFI_WME_NOACK_TEST:
  944. local->wifi_wme_noack_test = value;
  945. break;
  946. case PRISM2_PARAM_SCAN_FLAGS:
  947. local->scan_flags = value;
  948. break;
  949. case PRISM2_PARAM_MIXED_CELL:
  950. if (sdata->type != IEEE80211_IF_TYPE_STA &&
  951. sdata->type != IEEE80211_IF_TYPE_IBSS)
  952. ret = -EINVAL;
  953. else {
  954. if (value)
  955. sdata->u.sta.flags |= IEEE80211_STA_MIXED_CELL;
  956. else
  957. sdata->u.sta.flags &= ~IEEE80211_STA_MIXED_CELL;
  958. }
  959. break;
  960. case PRISM2_PARAM_HW_MODES:
  961. local->enabled_modes = value;
  962. break;
  963. case PRISM2_PARAM_CREATE_IBSS:
  964. if (sdata->type != IEEE80211_IF_TYPE_IBSS)
  965. ret = -EINVAL;
  966. else {
  967. if (value)
  968. sdata->u.sta.flags |= IEEE80211_STA_CREATE_IBSS;
  969. else
  970. sdata->u.sta.flags &= ~IEEE80211_STA_CREATE_IBSS;
  971. }
  972. break;
  973. case PRISM2_PARAM_WMM_ENABLED:
  974. if (sdata->type != IEEE80211_IF_TYPE_STA &&
  975. sdata->type != IEEE80211_IF_TYPE_IBSS)
  976. ret = -EINVAL;
  977. else {
  978. if (value)
  979. sdata->u.sta.flags |= IEEE80211_STA_WMM_ENABLED;
  980. else
  981. sdata->u.sta.flags &= ~IEEE80211_STA_WMM_ENABLED;
  982. }
  983. break;
  984. default:
  985. ret = -EOPNOTSUPP;
  986. break;
  987. }
  988. return ret;
  989. }
  990. static int ieee80211_ioctl_get_prism2_param(struct net_device *dev,
  991. struct iw_request_info *info,
  992. void *wrqu, char *extra)
  993. {
  994. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  995. struct ieee80211_sub_if_data *sdata;
  996. int *param = (int *) extra;
  997. int ret = 0;
  998. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  999. switch (*param) {
  1000. case PRISM2_PARAM_IEEE_802_1X:
  1001. *param = sdata->ieee802_1x;
  1002. break;
  1003. case PRISM2_PARAM_CTS_PROTECT_ERP_FRAMES:
  1004. *param = !!(sdata->flags & IEEE80211_SDATA_USE_PROTECTION);
  1005. break;
  1006. case PRISM2_PARAM_PREAMBLE:
  1007. *param = !!(sdata->flags & IEEE80211_SDATA_SHORT_PREAMBLE);
  1008. break;
  1009. case PRISM2_PARAM_SHORT_SLOT_TIME:
  1010. *param = !!(local->hw.conf.flags & IEEE80211_CONF_SHORT_SLOT_TIME);
  1011. break;
  1012. case PRISM2_PARAM_NEXT_MODE:
  1013. *param = local->next_mode;
  1014. break;
  1015. case PRISM2_PARAM_KEY_TX_RX_THRESHOLD:
  1016. *param = local->key_tx_rx_threshold;
  1017. break;
  1018. case PRISM2_PARAM_WIFI_WME_NOACK_TEST:
  1019. *param = local->wifi_wme_noack_test;
  1020. break;
  1021. case PRISM2_PARAM_SCAN_FLAGS:
  1022. *param = local->scan_flags;
  1023. break;
  1024. case PRISM2_PARAM_HW_MODES:
  1025. *param = local->enabled_modes;
  1026. break;
  1027. case PRISM2_PARAM_CREATE_IBSS:
  1028. if (sdata->type != IEEE80211_IF_TYPE_IBSS)
  1029. ret = -EINVAL;
  1030. else
  1031. *param = !!(sdata->u.sta.flags &
  1032. IEEE80211_STA_CREATE_IBSS);
  1033. break;
  1034. case PRISM2_PARAM_MIXED_CELL:
  1035. if (sdata->type != IEEE80211_IF_TYPE_STA &&
  1036. sdata->type != IEEE80211_IF_TYPE_IBSS)
  1037. ret = -EINVAL;
  1038. else
  1039. *param = !!(sdata->u.sta.flags &
  1040. IEEE80211_STA_MIXED_CELL);
  1041. break;
  1042. case PRISM2_PARAM_WMM_ENABLED:
  1043. if (sdata->type != IEEE80211_IF_TYPE_STA &&
  1044. sdata->type != IEEE80211_IF_TYPE_IBSS)
  1045. ret = -EINVAL;
  1046. else
  1047. *param = !!(sdata->u.sta.flags &
  1048. IEEE80211_STA_WMM_ENABLED);
  1049. break;
  1050. default:
  1051. ret = -EOPNOTSUPP;
  1052. break;
  1053. }
  1054. return ret;
  1055. }
  1056. static int ieee80211_ioctl_siwmlme(struct net_device *dev,
  1057. struct iw_request_info *info,
  1058. struct iw_point *data, char *extra)
  1059. {
  1060. struct ieee80211_sub_if_data *sdata;
  1061. struct iw_mlme *mlme = (struct iw_mlme *) extra;
  1062. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  1063. if (sdata->type != IEEE80211_IF_TYPE_STA &&
  1064. sdata->type != IEEE80211_IF_TYPE_IBSS)
  1065. return -EINVAL;
  1066. switch (mlme->cmd) {
  1067. case IW_MLME_DEAUTH:
  1068. /* TODO: mlme->addr.sa_data */
  1069. return ieee80211_sta_deauthenticate(dev, mlme->reason_code);
  1070. case IW_MLME_DISASSOC:
  1071. /* TODO: mlme->addr.sa_data */
  1072. return ieee80211_sta_disassociate(dev, mlme->reason_code);
  1073. default:
  1074. return -EOPNOTSUPP;
  1075. }
  1076. }
  1077. static int ieee80211_ioctl_siwencode(struct net_device *dev,
  1078. struct iw_request_info *info,
  1079. struct iw_point *erq, char *keybuf)
  1080. {
  1081. struct ieee80211_sub_if_data *sdata;
  1082. int idx, i, alg = ALG_WEP;
  1083. u8 bcaddr[ETH_ALEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
  1084. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  1085. idx = erq->flags & IW_ENCODE_INDEX;
  1086. if (idx == 0) {
  1087. if (sdata->default_key)
  1088. for (i = 0; i < NUM_DEFAULT_KEYS; i++) {
  1089. if (sdata->default_key == sdata->keys[i]) {
  1090. idx = i;
  1091. break;
  1092. }
  1093. }
  1094. } else if (idx < 1 || idx > 4)
  1095. return -EINVAL;
  1096. else
  1097. idx--;
  1098. if (erq->flags & IW_ENCODE_DISABLED)
  1099. alg = ALG_NONE;
  1100. else if (erq->length == 0) {
  1101. /* No key data - just set the default TX key index */
  1102. if (sdata->default_key != sdata->keys[idx]) {
  1103. ieee80211_debugfs_key_remove_default(sdata);
  1104. sdata->default_key = sdata->keys[idx];
  1105. if (sdata->default_key)
  1106. ieee80211_debugfs_key_add_default(sdata);
  1107. }
  1108. return 0;
  1109. }
  1110. return ieee80211_set_encryption(
  1111. dev, bcaddr,
  1112. idx, alg,
  1113. !sdata->default_key,
  1114. keybuf, erq->length);
  1115. }
  1116. static int ieee80211_ioctl_giwencode(struct net_device *dev,
  1117. struct iw_request_info *info,
  1118. struct iw_point *erq, char *key)
  1119. {
  1120. struct ieee80211_sub_if_data *sdata;
  1121. int idx, i;
  1122. sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  1123. idx = erq->flags & IW_ENCODE_INDEX;
  1124. if (idx < 1 || idx > 4) {
  1125. idx = -1;
  1126. if (!sdata->default_key)
  1127. idx = 0;
  1128. else for (i = 0; i < NUM_DEFAULT_KEYS; i++) {
  1129. if (sdata->default_key == sdata->keys[i]) {
  1130. idx = i;
  1131. break;
  1132. }
  1133. }
  1134. if (idx < 0)
  1135. return -EINVAL;
  1136. } else
  1137. idx--;
  1138. erq->flags = idx + 1;
  1139. if (!sdata->keys[idx]) {
  1140. erq->length = 0;
  1141. erq->flags |= IW_ENCODE_DISABLED;
  1142. return 0;
  1143. }
  1144. memcpy(key, sdata->keys[idx]->key,
  1145. min((int)erq->length, sdata->keys[idx]->keylen));
  1146. erq->length = sdata->keys[idx]->keylen;
  1147. erq->flags |= IW_ENCODE_ENABLED;
  1148. return 0;
  1149. }
  1150. static int ieee80211_ioctl_siwauth(struct net_device *dev,
  1151. struct iw_request_info *info,
  1152. struct iw_param *data, char *extra)
  1153. {
  1154. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  1155. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  1156. int ret = 0;
  1157. switch (data->flags & IW_AUTH_INDEX) {
  1158. case IW_AUTH_WPA_VERSION:
  1159. case IW_AUTH_CIPHER_PAIRWISE:
  1160. case IW_AUTH_CIPHER_GROUP:
  1161. case IW_AUTH_WPA_ENABLED:
  1162. case IW_AUTH_RX_UNENCRYPTED_EAPOL:
  1163. break;
  1164. case IW_AUTH_KEY_MGMT:
  1165. if (sdata->type != IEEE80211_IF_TYPE_STA)
  1166. ret = -EINVAL;
  1167. else {
  1168. /*
  1169. * Key management was set by wpa_supplicant,
  1170. * we only need this to associate to a network
  1171. * that has privacy enabled regardless of not
  1172. * having a key.
  1173. */
  1174. sdata->u.sta.key_management_enabled = !!data->value;
  1175. }
  1176. break;
  1177. case IW_AUTH_80211_AUTH_ALG:
  1178. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  1179. sdata->type == IEEE80211_IF_TYPE_IBSS)
  1180. sdata->u.sta.auth_algs = data->value;
  1181. else
  1182. ret = -EOPNOTSUPP;
  1183. break;
  1184. case IW_AUTH_PRIVACY_INVOKED:
  1185. if (local->ops->set_privacy_invoked)
  1186. ret = local->ops->set_privacy_invoked(
  1187. local_to_hw(local), data->value);
  1188. break;
  1189. default:
  1190. ret = -EOPNOTSUPP;
  1191. break;
  1192. }
  1193. return ret;
  1194. }
  1195. /* Get wireless statistics. Called by /proc/net/wireless and by SIOCGIWSTATS */
  1196. static struct iw_statistics *ieee80211_get_wireless_stats(struct net_device *dev)
  1197. {
  1198. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  1199. struct iw_statistics *wstats = &local->wstats;
  1200. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  1201. struct sta_info *sta = NULL;
  1202. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  1203. sdata->type == IEEE80211_IF_TYPE_IBSS)
  1204. sta = sta_info_get(local, sdata->u.sta.bssid);
  1205. if (!sta) {
  1206. wstats->discard.fragment = 0;
  1207. wstats->discard.misc = 0;
  1208. wstats->qual.qual = 0;
  1209. wstats->qual.level = 0;
  1210. wstats->qual.noise = 0;
  1211. wstats->qual.updated = IW_QUAL_ALL_INVALID;
  1212. } else {
  1213. wstats->qual.level = sta->last_rssi;
  1214. wstats->qual.qual = sta->last_signal;
  1215. wstats->qual.noise = sta->last_noise;
  1216. wstats->qual.updated = local->wstats_flags;
  1217. sta_info_put(sta);
  1218. }
  1219. return wstats;
  1220. }
  1221. static int ieee80211_ioctl_giwauth(struct net_device *dev,
  1222. struct iw_request_info *info,
  1223. struct iw_param *data, char *extra)
  1224. {
  1225. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  1226. int ret = 0;
  1227. switch (data->flags & IW_AUTH_INDEX) {
  1228. case IW_AUTH_80211_AUTH_ALG:
  1229. if (sdata->type == IEEE80211_IF_TYPE_STA ||
  1230. sdata->type == IEEE80211_IF_TYPE_IBSS)
  1231. data->value = sdata->u.sta.auth_algs;
  1232. else
  1233. ret = -EOPNOTSUPP;
  1234. break;
  1235. default:
  1236. ret = -EOPNOTSUPP;
  1237. break;
  1238. }
  1239. return ret;
  1240. }
  1241. static int ieee80211_ioctl_siwencodeext(struct net_device *dev,
  1242. struct iw_request_info *info,
  1243. struct iw_point *erq, char *extra)
  1244. {
  1245. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  1246. struct iw_encode_ext *ext = (struct iw_encode_ext *) extra;
  1247. int alg, idx, i;
  1248. switch (ext->alg) {
  1249. case IW_ENCODE_ALG_NONE:
  1250. alg = ALG_NONE;
  1251. break;
  1252. case IW_ENCODE_ALG_WEP:
  1253. alg = ALG_WEP;
  1254. break;
  1255. case IW_ENCODE_ALG_TKIP:
  1256. alg = ALG_TKIP;
  1257. break;
  1258. case IW_ENCODE_ALG_CCMP:
  1259. alg = ALG_CCMP;
  1260. break;
  1261. default:
  1262. return -EOPNOTSUPP;
  1263. }
  1264. if (erq->flags & IW_ENCODE_DISABLED)
  1265. alg = ALG_NONE;
  1266. idx = erq->flags & IW_ENCODE_INDEX;
  1267. if (idx < 1 || idx > 4) {
  1268. idx = -1;
  1269. if (!sdata->default_key)
  1270. idx = 0;
  1271. else for (i = 0; i < NUM_DEFAULT_KEYS; i++) {
  1272. if (sdata->default_key == sdata->keys[i]) {
  1273. idx = i;
  1274. break;
  1275. }
  1276. }
  1277. if (idx < 0)
  1278. return -EINVAL;
  1279. } else
  1280. idx--;
  1281. return ieee80211_set_encryption(dev, ext->addr.sa_data, idx, alg,
  1282. ext->ext_flags &
  1283. IW_ENCODE_EXT_SET_TX_KEY,
  1284. ext->key, ext->key_len);
  1285. }
  1286. static const struct iw_priv_args ieee80211_ioctl_priv[] = {
  1287. { PRISM2_IOCTL_PRISM2_PARAM,
  1288. IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 2, 0, "param" },
  1289. { PRISM2_IOCTL_GET_PRISM2_PARAM,
  1290. IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1,
  1291. IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, "get_param" },
  1292. };
  1293. /* Structures to export the Wireless Handlers */
  1294. static const iw_handler ieee80211_handler[] =
  1295. {
  1296. (iw_handler) NULL, /* SIOCSIWCOMMIT */
  1297. (iw_handler) ieee80211_ioctl_giwname, /* SIOCGIWNAME */
  1298. (iw_handler) NULL, /* SIOCSIWNWID */
  1299. (iw_handler) NULL, /* SIOCGIWNWID */
  1300. (iw_handler) ieee80211_ioctl_siwfreq, /* SIOCSIWFREQ */
  1301. (iw_handler) ieee80211_ioctl_giwfreq, /* SIOCGIWFREQ */
  1302. (iw_handler) ieee80211_ioctl_siwmode, /* SIOCSIWMODE */
  1303. (iw_handler) ieee80211_ioctl_giwmode, /* SIOCGIWMODE */
  1304. (iw_handler) NULL, /* SIOCSIWSENS */
  1305. (iw_handler) NULL, /* SIOCGIWSENS */
  1306. (iw_handler) NULL /* not used */, /* SIOCSIWRANGE */
  1307. (iw_handler) ieee80211_ioctl_giwrange, /* SIOCGIWRANGE */
  1308. (iw_handler) NULL /* not used */, /* SIOCSIWPRIV */
  1309. (iw_handler) NULL /* kernel code */, /* SIOCGIWPRIV */
  1310. (iw_handler) NULL /* not used */, /* SIOCSIWSTATS */
  1311. (iw_handler) NULL /* kernel code */, /* SIOCGIWSTATS */
  1312. iw_handler_set_spy, /* SIOCSIWSPY */
  1313. iw_handler_get_spy, /* SIOCGIWSPY */
  1314. iw_handler_set_thrspy, /* SIOCSIWTHRSPY */
  1315. iw_handler_get_thrspy, /* SIOCGIWTHRSPY */
  1316. (iw_handler) ieee80211_ioctl_siwap, /* SIOCSIWAP */
  1317. (iw_handler) ieee80211_ioctl_giwap, /* SIOCGIWAP */
  1318. (iw_handler) ieee80211_ioctl_siwmlme, /* SIOCSIWMLME */
  1319. (iw_handler) NULL, /* SIOCGIWAPLIST */
  1320. (iw_handler) ieee80211_ioctl_siwscan, /* SIOCSIWSCAN */
  1321. (iw_handler) ieee80211_ioctl_giwscan, /* SIOCGIWSCAN */
  1322. (iw_handler) ieee80211_ioctl_siwessid, /* SIOCSIWESSID */
  1323. (iw_handler) ieee80211_ioctl_giwessid, /* SIOCGIWESSID */
  1324. (iw_handler) NULL, /* SIOCSIWNICKN */
  1325. (iw_handler) NULL, /* SIOCGIWNICKN */
  1326. (iw_handler) NULL, /* -- hole -- */
  1327. (iw_handler) NULL, /* -- hole -- */
  1328. (iw_handler) ieee80211_ioctl_siwrate, /* SIOCSIWRATE */
  1329. (iw_handler) ieee80211_ioctl_giwrate, /* SIOCGIWRATE */
  1330. (iw_handler) ieee80211_ioctl_siwrts, /* SIOCSIWRTS */
  1331. (iw_handler) ieee80211_ioctl_giwrts, /* SIOCGIWRTS */
  1332. (iw_handler) ieee80211_ioctl_siwfrag, /* SIOCSIWFRAG */
  1333. (iw_handler) ieee80211_ioctl_giwfrag, /* SIOCGIWFRAG */
  1334. (iw_handler) NULL, /* SIOCSIWTXPOW */
  1335. (iw_handler) ieee80211_ioctl_giwtxpower, /* SIOCGIWTXPOW */
  1336. (iw_handler) ieee80211_ioctl_siwretry, /* SIOCSIWRETRY */
  1337. (iw_handler) ieee80211_ioctl_giwretry, /* SIOCGIWRETRY */
  1338. (iw_handler) ieee80211_ioctl_siwencode, /* SIOCSIWENCODE */
  1339. (iw_handler) ieee80211_ioctl_giwencode, /* SIOCGIWENCODE */
  1340. (iw_handler) NULL, /* SIOCSIWPOWER */
  1341. (iw_handler) NULL, /* SIOCGIWPOWER */
  1342. (iw_handler) NULL, /* -- hole -- */
  1343. (iw_handler) NULL, /* -- hole -- */
  1344. (iw_handler) ieee80211_ioctl_siwgenie, /* SIOCSIWGENIE */
  1345. (iw_handler) NULL, /* SIOCGIWGENIE */
  1346. (iw_handler) ieee80211_ioctl_siwauth, /* SIOCSIWAUTH */
  1347. (iw_handler) ieee80211_ioctl_giwauth, /* SIOCGIWAUTH */
  1348. (iw_handler) ieee80211_ioctl_siwencodeext, /* SIOCSIWENCODEEXT */
  1349. (iw_handler) NULL, /* SIOCGIWENCODEEXT */
  1350. (iw_handler) NULL, /* SIOCSIWPMKSA */
  1351. (iw_handler) NULL, /* -- hole -- */
  1352. };
  1353. static const iw_handler ieee80211_private_handler[] =
  1354. { /* SIOCIWFIRSTPRIV + */
  1355. (iw_handler) ieee80211_ioctl_prism2_param, /* 0 */
  1356. (iw_handler) ieee80211_ioctl_get_prism2_param, /* 1 */
  1357. };
  1358. const struct iw_handler_def ieee80211_iw_handler_def =
  1359. {
  1360. .num_standard = ARRAY_SIZE(ieee80211_handler),
  1361. .num_private = ARRAY_SIZE(ieee80211_private_handler),
  1362. .num_private_args = ARRAY_SIZE(ieee80211_ioctl_priv),
  1363. .standard = (iw_handler *) ieee80211_handler,
  1364. .private = (iw_handler *) ieee80211_private_handler,
  1365. .private_args = (struct iw_priv_args *) ieee80211_ioctl_priv,
  1366. .get_wireless_stats = ieee80211_get_wireless_stats,
  1367. };