wext-compat.c 11 KB

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  1. /*
  2. * cfg80211 - wext compat code
  3. *
  4. * This is temporary code until all wireless functionality is migrated
  5. * into cfg80211, when that happens all the exports here go away and
  6. * we directly assign the wireless handlers of wireless interfaces.
  7. *
  8. * Copyright 2008 Johannes Berg <johannes@sipsolutions.net>
  9. */
  10. #include <linux/wireless.h>
  11. #include <linux/nl80211.h>
  12. #include <linux/if_arp.h>
  13. #include <net/iw_handler.h>
  14. #include <net/cfg80211.h>
  15. #include "core.h"
  16. int cfg80211_wext_giwname(struct net_device *dev,
  17. struct iw_request_info *info,
  18. char *name, char *extra)
  19. {
  20. struct wireless_dev *wdev = dev->ieee80211_ptr;
  21. struct ieee80211_supported_band *sband;
  22. bool is_ht = false, is_a = false, is_b = false, is_g = false;
  23. if (!wdev)
  24. return -EOPNOTSUPP;
  25. sband = wdev->wiphy->bands[IEEE80211_BAND_5GHZ];
  26. if (sband) {
  27. is_a = true;
  28. is_ht |= sband->ht_cap.ht_supported;
  29. }
  30. sband = wdev->wiphy->bands[IEEE80211_BAND_2GHZ];
  31. if (sband) {
  32. int i;
  33. /* Check for mandatory rates */
  34. for (i = 0; i < sband->n_bitrates; i++) {
  35. if (sband->bitrates[i].bitrate == 10)
  36. is_b = true;
  37. if (sband->bitrates[i].bitrate == 60)
  38. is_g = true;
  39. }
  40. is_ht |= sband->ht_cap.ht_supported;
  41. }
  42. strcpy(name, "IEEE 802.11");
  43. if (is_a)
  44. strcat(name, "a");
  45. if (is_b)
  46. strcat(name, "b");
  47. if (is_g)
  48. strcat(name, "g");
  49. if (is_ht)
  50. strcat(name, "n");
  51. return 0;
  52. }
  53. EXPORT_SYMBOL_GPL(cfg80211_wext_giwname);
  54. int cfg80211_wext_siwmode(struct net_device *dev, struct iw_request_info *info,
  55. u32 *mode, char *extra)
  56. {
  57. struct wireless_dev *wdev = dev->ieee80211_ptr;
  58. struct cfg80211_registered_device *rdev;
  59. struct vif_params vifparams;
  60. enum nl80211_iftype type;
  61. int ret;
  62. if (!wdev)
  63. return -EOPNOTSUPP;
  64. rdev = wiphy_to_dev(wdev->wiphy);
  65. if (!rdev->ops->change_virtual_intf)
  66. return -EOPNOTSUPP;
  67. /* don't support changing VLANs, you just re-create them */
  68. if (wdev->iftype == NL80211_IFTYPE_AP_VLAN)
  69. return -EOPNOTSUPP;
  70. switch (*mode) {
  71. case IW_MODE_INFRA:
  72. type = NL80211_IFTYPE_STATION;
  73. break;
  74. case IW_MODE_ADHOC:
  75. type = NL80211_IFTYPE_ADHOC;
  76. break;
  77. case IW_MODE_REPEAT:
  78. type = NL80211_IFTYPE_WDS;
  79. break;
  80. case IW_MODE_MONITOR:
  81. type = NL80211_IFTYPE_MONITOR;
  82. break;
  83. default:
  84. return -EINVAL;
  85. }
  86. if (type == wdev->iftype)
  87. return 0;
  88. memset(&vifparams, 0, sizeof(vifparams));
  89. ret = rdev->ops->change_virtual_intf(wdev->wiphy, dev->ifindex, type,
  90. NULL, &vifparams);
  91. WARN_ON(!ret && wdev->iftype != type);
  92. return ret;
  93. }
  94. EXPORT_SYMBOL_GPL(cfg80211_wext_siwmode);
  95. int cfg80211_wext_giwmode(struct net_device *dev, struct iw_request_info *info,
  96. u32 *mode, char *extra)
  97. {
  98. struct wireless_dev *wdev = dev->ieee80211_ptr;
  99. if (!wdev)
  100. return -EOPNOTSUPP;
  101. switch (wdev->iftype) {
  102. case NL80211_IFTYPE_AP:
  103. *mode = IW_MODE_MASTER;
  104. break;
  105. case NL80211_IFTYPE_STATION:
  106. *mode = IW_MODE_INFRA;
  107. break;
  108. case NL80211_IFTYPE_ADHOC:
  109. *mode = IW_MODE_ADHOC;
  110. break;
  111. case NL80211_IFTYPE_MONITOR:
  112. *mode = IW_MODE_MONITOR;
  113. break;
  114. case NL80211_IFTYPE_WDS:
  115. *mode = IW_MODE_REPEAT;
  116. break;
  117. case NL80211_IFTYPE_AP_VLAN:
  118. *mode = IW_MODE_SECOND; /* FIXME */
  119. break;
  120. default:
  121. *mode = IW_MODE_AUTO;
  122. break;
  123. }
  124. return 0;
  125. }
  126. EXPORT_SYMBOL_GPL(cfg80211_wext_giwmode);
  127. int cfg80211_wext_giwrange(struct net_device *dev,
  128. struct iw_request_info *info,
  129. struct iw_point *data, char *extra)
  130. {
  131. struct wireless_dev *wdev = dev->ieee80211_ptr;
  132. struct iw_range *range = (struct iw_range *) extra;
  133. enum ieee80211_band band;
  134. int c = 0;
  135. if (!wdev)
  136. return -EOPNOTSUPP;
  137. data->length = sizeof(struct iw_range);
  138. memset(range, 0, sizeof(struct iw_range));
  139. range->we_version_compiled = WIRELESS_EXT;
  140. range->we_version_source = 21;
  141. range->retry_capa = IW_RETRY_LIMIT;
  142. range->retry_flags = IW_RETRY_LIMIT;
  143. range->min_retry = 0;
  144. range->max_retry = 255;
  145. range->min_rts = 0;
  146. range->max_rts = 2347;
  147. range->min_frag = 256;
  148. range->max_frag = 2346;
  149. range->encoding_size[0] = 5;
  150. range->encoding_size[1] = 13;
  151. range->num_encoding_sizes = 2;
  152. range->max_encoding_tokens = 4;
  153. range->max_qual.updated = IW_QUAL_NOISE_INVALID;
  154. switch (wdev->wiphy->signal_type) {
  155. case CFG80211_SIGNAL_TYPE_NONE:
  156. break;
  157. case CFG80211_SIGNAL_TYPE_MBM:
  158. range->max_qual.level = -110;
  159. range->max_qual.qual = 70;
  160. range->avg_qual.qual = 35;
  161. range->max_qual.updated |= IW_QUAL_DBM;
  162. range->max_qual.updated |= IW_QUAL_QUAL_UPDATED;
  163. range->max_qual.updated |= IW_QUAL_LEVEL_UPDATED;
  164. break;
  165. case CFG80211_SIGNAL_TYPE_UNSPEC:
  166. range->max_qual.level = 100;
  167. range->max_qual.qual = 100;
  168. range->avg_qual.qual = 50;
  169. range->max_qual.updated |= IW_QUAL_QUAL_UPDATED;
  170. range->max_qual.updated |= IW_QUAL_LEVEL_UPDATED;
  171. break;
  172. }
  173. range->avg_qual.level = range->max_qual.level / 2;
  174. range->avg_qual.noise = range->max_qual.noise / 2;
  175. range->avg_qual.updated = range->max_qual.updated;
  176. range->enc_capa = IW_ENC_CAPA_WPA | IW_ENC_CAPA_WPA2 |
  177. IW_ENC_CAPA_CIPHER_TKIP | IW_ENC_CAPA_CIPHER_CCMP;
  178. for (band = 0; band < IEEE80211_NUM_BANDS; band ++) {
  179. int i;
  180. struct ieee80211_supported_band *sband;
  181. sband = wdev->wiphy->bands[band];
  182. if (!sband)
  183. continue;
  184. for (i = 0; i < sband->n_channels && c < IW_MAX_FREQUENCIES; i++) {
  185. struct ieee80211_channel *chan = &sband->channels[i];
  186. if (!(chan->flags & IEEE80211_CHAN_DISABLED)) {
  187. range->freq[c].i =
  188. ieee80211_frequency_to_channel(
  189. chan->center_freq);
  190. range->freq[c].m = chan->center_freq;
  191. range->freq[c].e = 6;
  192. c++;
  193. }
  194. }
  195. }
  196. range->num_channels = c;
  197. range->num_frequency = c;
  198. IW_EVENT_CAPA_SET_KERNEL(range->event_capa);
  199. IW_EVENT_CAPA_SET(range->event_capa, SIOCGIWAP);
  200. IW_EVENT_CAPA_SET(range->event_capa, SIOCGIWSCAN);
  201. range->scan_capa |= IW_SCAN_CAPA_ESSID;
  202. return 0;
  203. }
  204. EXPORT_SYMBOL_GPL(cfg80211_wext_giwrange);
  205. int cfg80211_wext_siwmlme(struct net_device *dev,
  206. struct iw_request_info *info,
  207. struct iw_point *data, char *extra)
  208. {
  209. struct wireless_dev *wdev = dev->ieee80211_ptr;
  210. struct iw_mlme *mlme = (struct iw_mlme *)extra;
  211. struct cfg80211_registered_device *rdev;
  212. union {
  213. struct cfg80211_disassoc_request disassoc;
  214. struct cfg80211_deauth_request deauth;
  215. } cmd;
  216. if (!wdev)
  217. return -EOPNOTSUPP;
  218. rdev = wiphy_to_dev(wdev->wiphy);
  219. if (wdev->iftype != NL80211_IFTYPE_STATION)
  220. return -EINVAL;
  221. if (mlme->addr.sa_family != ARPHRD_ETHER)
  222. return -EINVAL;
  223. memset(&cmd, 0, sizeof(cmd));
  224. switch (mlme->cmd) {
  225. case IW_MLME_DEAUTH:
  226. if (!rdev->ops->deauth)
  227. return -EOPNOTSUPP;
  228. cmd.deauth.peer_addr = mlme->addr.sa_data;
  229. cmd.deauth.reason_code = mlme->reason_code;
  230. return rdev->ops->deauth(wdev->wiphy, dev, &cmd.deauth);
  231. case IW_MLME_DISASSOC:
  232. if (!rdev->ops->disassoc)
  233. return -EOPNOTSUPP;
  234. cmd.disassoc.peer_addr = mlme->addr.sa_data;
  235. cmd.disassoc.reason_code = mlme->reason_code;
  236. return rdev->ops->disassoc(wdev->wiphy, dev, &cmd.disassoc);
  237. default:
  238. return -EOPNOTSUPP;
  239. }
  240. }
  241. EXPORT_SYMBOL_GPL(cfg80211_wext_siwmlme);
  242. /**
  243. * cfg80211_wext_freq - get wext frequency for non-"auto"
  244. * @wiphy: the wiphy
  245. * @freq: the wext freq encoding
  246. *
  247. * Returns a channel, %NULL for auto, or an ERR_PTR for errors!
  248. */
  249. struct ieee80211_channel *cfg80211_wext_freq(struct wiphy *wiphy,
  250. struct iw_freq *freq)
  251. {
  252. struct ieee80211_channel *chan;
  253. int f;
  254. /*
  255. * Parse frequency - return NULL for auto and
  256. * -EINVAL for impossible things.
  257. */
  258. if (freq->e == 0) {
  259. if (freq->m < 0)
  260. return NULL;
  261. f = ieee80211_channel_to_frequency(freq->m);
  262. } else {
  263. int i, div = 1000000;
  264. for (i = 0; i < freq->e; i++)
  265. div /= 10;
  266. if (div <= 0)
  267. return ERR_PTR(-EINVAL);
  268. f = freq->m / div;
  269. }
  270. /*
  271. * Look up channel struct and return -EINVAL when
  272. * it cannot be found.
  273. */
  274. chan = ieee80211_get_channel(wiphy, f);
  275. if (!chan)
  276. return ERR_PTR(-EINVAL);
  277. return chan;
  278. }
  279. EXPORT_SYMBOL_GPL(cfg80211_wext_freq);
  280. int cfg80211_wext_siwrts(struct net_device *dev,
  281. struct iw_request_info *info,
  282. struct iw_param *rts, char *extra)
  283. {
  284. struct wireless_dev *wdev = dev->ieee80211_ptr;
  285. struct cfg80211_registered_device *rdev = wiphy_to_dev(wdev->wiphy);
  286. u32 orts = wdev->wiphy->rts_threshold;
  287. int err;
  288. if (rts->disabled || !rts->fixed)
  289. wdev->wiphy->rts_threshold = (u32) -1;
  290. else if (rts->value < 0)
  291. return -EINVAL;
  292. else
  293. wdev->wiphy->rts_threshold = rts->value;
  294. err = rdev->ops->set_wiphy_params(wdev->wiphy,
  295. WIPHY_PARAM_RTS_THRESHOLD);
  296. if (err)
  297. wdev->wiphy->rts_threshold = orts;
  298. return err;
  299. }
  300. EXPORT_SYMBOL_GPL(cfg80211_wext_siwrts);
  301. int cfg80211_wext_giwrts(struct net_device *dev,
  302. struct iw_request_info *info,
  303. struct iw_param *rts, char *extra)
  304. {
  305. struct wireless_dev *wdev = dev->ieee80211_ptr;
  306. rts->value = wdev->wiphy->rts_threshold;
  307. rts->disabled = rts->value == (u32) -1;
  308. rts->fixed = 1;
  309. return 0;
  310. }
  311. EXPORT_SYMBOL_GPL(cfg80211_wext_giwrts);
  312. int cfg80211_wext_siwfrag(struct net_device *dev,
  313. struct iw_request_info *info,
  314. struct iw_param *frag, char *extra)
  315. {
  316. struct wireless_dev *wdev = dev->ieee80211_ptr;
  317. struct cfg80211_registered_device *rdev = wiphy_to_dev(wdev->wiphy);
  318. u32 ofrag = wdev->wiphy->frag_threshold;
  319. int err;
  320. if (frag->disabled || !frag->fixed)
  321. wdev->wiphy->frag_threshold = (u32) -1;
  322. else if (frag->value < 256)
  323. return -EINVAL;
  324. else {
  325. /* Fragment length must be even, so strip LSB. */
  326. wdev->wiphy->frag_threshold = frag->value & ~0x1;
  327. }
  328. err = rdev->ops->set_wiphy_params(wdev->wiphy,
  329. WIPHY_PARAM_FRAG_THRESHOLD);
  330. if (err)
  331. wdev->wiphy->frag_threshold = ofrag;
  332. return err;
  333. }
  334. EXPORT_SYMBOL_GPL(cfg80211_wext_siwfrag);
  335. int cfg80211_wext_giwfrag(struct net_device *dev,
  336. struct iw_request_info *info,
  337. struct iw_param *frag, char *extra)
  338. {
  339. struct wireless_dev *wdev = dev->ieee80211_ptr;
  340. frag->value = wdev->wiphy->frag_threshold;
  341. frag->disabled = frag->value == (u32) -1;
  342. frag->fixed = 1;
  343. return 0;
  344. }
  345. EXPORT_SYMBOL_GPL(cfg80211_wext_giwfrag);
  346. int cfg80211_wext_siwretry(struct net_device *dev,
  347. struct iw_request_info *info,
  348. struct iw_param *retry, char *extra)
  349. {
  350. struct wireless_dev *wdev = dev->ieee80211_ptr;
  351. struct cfg80211_registered_device *rdev = wiphy_to_dev(wdev->wiphy);
  352. u32 changed = 0;
  353. u8 olong = wdev->wiphy->retry_long;
  354. u8 oshort = wdev->wiphy->retry_short;
  355. int err;
  356. if (retry->disabled ||
  357. (retry->flags & IW_RETRY_TYPE) != IW_RETRY_LIMIT)
  358. return -EINVAL;
  359. if (retry->flags & IW_RETRY_LONG) {
  360. wdev->wiphy->retry_long = retry->value;
  361. changed |= WIPHY_PARAM_RETRY_LONG;
  362. } else if (retry->flags & IW_RETRY_SHORT) {
  363. wdev->wiphy->retry_short = retry->value;
  364. changed |= WIPHY_PARAM_RETRY_SHORT;
  365. } else {
  366. wdev->wiphy->retry_short = retry->value;
  367. wdev->wiphy->retry_long = retry->value;
  368. changed |= WIPHY_PARAM_RETRY_LONG;
  369. changed |= WIPHY_PARAM_RETRY_SHORT;
  370. }
  371. if (!changed)
  372. return 0;
  373. err = rdev->ops->set_wiphy_params(wdev->wiphy, changed);
  374. if (err) {
  375. wdev->wiphy->retry_short = oshort;
  376. wdev->wiphy->retry_long = olong;
  377. }
  378. return err;
  379. }
  380. EXPORT_SYMBOL_GPL(cfg80211_wext_siwretry);
  381. int cfg80211_wext_giwretry(struct net_device *dev,
  382. struct iw_request_info *info,
  383. struct iw_param *retry, char *extra)
  384. {
  385. struct wireless_dev *wdev = dev->ieee80211_ptr;
  386. retry->disabled = 0;
  387. if (retry->flags == 0 || (retry->flags & IW_RETRY_SHORT)) {
  388. /*
  389. * First return short value, iwconfig will ask long value
  390. * later if needed
  391. */
  392. retry->flags |= IW_RETRY_LIMIT;
  393. retry->value = wdev->wiphy->retry_short;
  394. if (wdev->wiphy->retry_long != wdev->wiphy->retry_short)
  395. retry->flags |= IW_RETRY_LONG;
  396. return 0;
  397. }
  398. if (retry->flags & IW_RETRY_LONG) {
  399. retry->flags = IW_RETRY_LIMIT | IW_RETRY_LONG;
  400. retry->value = wdev->wiphy->retry_long;
  401. }
  402. return 0;
  403. }
  404. EXPORT_SYMBOL_GPL(cfg80211_wext_giwretry);