wext-core.c 29 KB

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  1. /*
  2. * This file implement the Wireless Extensions core API.
  3. *
  4. * Authors : Jean Tourrilhes - HPL - <jt@hpl.hp.com>
  5. * Copyright (c) 1997-2007 Jean Tourrilhes, All Rights Reserved.
  6. * Copyright 2009 Johannes Berg <johannes@sipsolutions.net>
  7. *
  8. * (As all part of the Linux kernel, this file is GPL)
  9. */
  10. #include <linux/kernel.h>
  11. #include <linux/netdevice.h>
  12. #include <linux/rtnetlink.h>
  13. #include <linux/slab.h>
  14. #include <linux/wireless.h>
  15. #include <linux/uaccess.h>
  16. #include <linux/export.h>
  17. #include <net/cfg80211.h>
  18. #include <net/iw_handler.h>
  19. #include <net/netlink.h>
  20. #include <net/wext.h>
  21. #include <net/net_namespace.h>
  22. typedef int (*wext_ioctl_func)(struct net_device *, struct iwreq *,
  23. unsigned int, struct iw_request_info *,
  24. iw_handler);
  25. /*
  26. * Meta-data about all the standard Wireless Extension request we
  27. * know about.
  28. */
  29. static const struct iw_ioctl_description standard_ioctl[] = {
  30. [IW_IOCTL_IDX(SIOCSIWCOMMIT)] = {
  31. .header_type = IW_HEADER_TYPE_NULL,
  32. },
  33. [IW_IOCTL_IDX(SIOCGIWNAME)] = {
  34. .header_type = IW_HEADER_TYPE_CHAR,
  35. .flags = IW_DESCR_FLAG_DUMP,
  36. },
  37. [IW_IOCTL_IDX(SIOCSIWNWID)] = {
  38. .header_type = IW_HEADER_TYPE_PARAM,
  39. .flags = IW_DESCR_FLAG_EVENT,
  40. },
  41. [IW_IOCTL_IDX(SIOCGIWNWID)] = {
  42. .header_type = IW_HEADER_TYPE_PARAM,
  43. .flags = IW_DESCR_FLAG_DUMP,
  44. },
  45. [IW_IOCTL_IDX(SIOCSIWFREQ)] = {
  46. .header_type = IW_HEADER_TYPE_FREQ,
  47. .flags = IW_DESCR_FLAG_EVENT,
  48. },
  49. [IW_IOCTL_IDX(SIOCGIWFREQ)] = {
  50. .header_type = IW_HEADER_TYPE_FREQ,
  51. .flags = IW_DESCR_FLAG_DUMP,
  52. },
  53. [IW_IOCTL_IDX(SIOCSIWMODE)] = {
  54. .header_type = IW_HEADER_TYPE_UINT,
  55. .flags = IW_DESCR_FLAG_EVENT,
  56. },
  57. [IW_IOCTL_IDX(SIOCGIWMODE)] = {
  58. .header_type = IW_HEADER_TYPE_UINT,
  59. .flags = IW_DESCR_FLAG_DUMP,
  60. },
  61. [IW_IOCTL_IDX(SIOCSIWSENS)] = {
  62. .header_type = IW_HEADER_TYPE_PARAM,
  63. },
  64. [IW_IOCTL_IDX(SIOCGIWSENS)] = {
  65. .header_type = IW_HEADER_TYPE_PARAM,
  66. },
  67. [IW_IOCTL_IDX(SIOCSIWRANGE)] = {
  68. .header_type = IW_HEADER_TYPE_NULL,
  69. },
  70. [IW_IOCTL_IDX(SIOCGIWRANGE)] = {
  71. .header_type = IW_HEADER_TYPE_POINT,
  72. .token_size = 1,
  73. .max_tokens = sizeof(struct iw_range),
  74. .flags = IW_DESCR_FLAG_DUMP,
  75. },
  76. [IW_IOCTL_IDX(SIOCSIWPRIV)] = {
  77. .header_type = IW_HEADER_TYPE_NULL,
  78. },
  79. [IW_IOCTL_IDX(SIOCGIWPRIV)] = { /* (handled directly by us) */
  80. .header_type = IW_HEADER_TYPE_POINT,
  81. .token_size = sizeof(struct iw_priv_args),
  82. .max_tokens = 16,
  83. .flags = IW_DESCR_FLAG_NOMAX,
  84. },
  85. [IW_IOCTL_IDX(SIOCSIWSTATS)] = {
  86. .header_type = IW_HEADER_TYPE_NULL,
  87. },
  88. [IW_IOCTL_IDX(SIOCGIWSTATS)] = { /* (handled directly by us) */
  89. .header_type = IW_HEADER_TYPE_POINT,
  90. .token_size = 1,
  91. .max_tokens = sizeof(struct iw_statistics),
  92. .flags = IW_DESCR_FLAG_DUMP,
  93. },
  94. [IW_IOCTL_IDX(SIOCSIWSPY)] = {
  95. .header_type = IW_HEADER_TYPE_POINT,
  96. .token_size = sizeof(struct sockaddr),
  97. .max_tokens = IW_MAX_SPY,
  98. },
  99. [IW_IOCTL_IDX(SIOCGIWSPY)] = {
  100. .header_type = IW_HEADER_TYPE_POINT,
  101. .token_size = sizeof(struct sockaddr) +
  102. sizeof(struct iw_quality),
  103. .max_tokens = IW_MAX_SPY,
  104. },
  105. [IW_IOCTL_IDX(SIOCSIWTHRSPY)] = {
  106. .header_type = IW_HEADER_TYPE_POINT,
  107. .token_size = sizeof(struct iw_thrspy),
  108. .min_tokens = 1,
  109. .max_tokens = 1,
  110. },
  111. [IW_IOCTL_IDX(SIOCGIWTHRSPY)] = {
  112. .header_type = IW_HEADER_TYPE_POINT,
  113. .token_size = sizeof(struct iw_thrspy),
  114. .min_tokens = 1,
  115. .max_tokens = 1,
  116. },
  117. [IW_IOCTL_IDX(SIOCSIWAP)] = {
  118. .header_type = IW_HEADER_TYPE_ADDR,
  119. },
  120. [IW_IOCTL_IDX(SIOCGIWAP)] = {
  121. .header_type = IW_HEADER_TYPE_ADDR,
  122. .flags = IW_DESCR_FLAG_DUMP,
  123. },
  124. [IW_IOCTL_IDX(SIOCSIWMLME)] = {
  125. .header_type = IW_HEADER_TYPE_POINT,
  126. .token_size = 1,
  127. .min_tokens = sizeof(struct iw_mlme),
  128. .max_tokens = sizeof(struct iw_mlme),
  129. },
  130. [IW_IOCTL_IDX(SIOCGIWAPLIST)] = {
  131. .header_type = IW_HEADER_TYPE_POINT,
  132. .token_size = sizeof(struct sockaddr) +
  133. sizeof(struct iw_quality),
  134. .max_tokens = IW_MAX_AP,
  135. .flags = IW_DESCR_FLAG_NOMAX,
  136. },
  137. [IW_IOCTL_IDX(SIOCSIWSCAN)] = {
  138. .header_type = IW_HEADER_TYPE_POINT,
  139. .token_size = 1,
  140. .min_tokens = 0,
  141. .max_tokens = sizeof(struct iw_scan_req),
  142. },
  143. [IW_IOCTL_IDX(SIOCGIWSCAN)] = {
  144. .header_type = IW_HEADER_TYPE_POINT,
  145. .token_size = 1,
  146. .max_tokens = IW_SCAN_MAX_DATA,
  147. .flags = IW_DESCR_FLAG_NOMAX,
  148. },
  149. [IW_IOCTL_IDX(SIOCSIWESSID)] = {
  150. .header_type = IW_HEADER_TYPE_POINT,
  151. .token_size = 1,
  152. .max_tokens = IW_ESSID_MAX_SIZE,
  153. .flags = IW_DESCR_FLAG_EVENT,
  154. },
  155. [IW_IOCTL_IDX(SIOCGIWESSID)] = {
  156. .header_type = IW_HEADER_TYPE_POINT,
  157. .token_size = 1,
  158. .max_tokens = IW_ESSID_MAX_SIZE,
  159. .flags = IW_DESCR_FLAG_DUMP,
  160. },
  161. [IW_IOCTL_IDX(SIOCSIWNICKN)] = {
  162. .header_type = IW_HEADER_TYPE_POINT,
  163. .token_size = 1,
  164. .max_tokens = IW_ESSID_MAX_SIZE,
  165. },
  166. [IW_IOCTL_IDX(SIOCGIWNICKN)] = {
  167. .header_type = IW_HEADER_TYPE_POINT,
  168. .token_size = 1,
  169. .max_tokens = IW_ESSID_MAX_SIZE,
  170. },
  171. [IW_IOCTL_IDX(SIOCSIWRATE)] = {
  172. .header_type = IW_HEADER_TYPE_PARAM,
  173. },
  174. [IW_IOCTL_IDX(SIOCGIWRATE)] = {
  175. .header_type = IW_HEADER_TYPE_PARAM,
  176. },
  177. [IW_IOCTL_IDX(SIOCSIWRTS)] = {
  178. .header_type = IW_HEADER_TYPE_PARAM,
  179. },
  180. [IW_IOCTL_IDX(SIOCGIWRTS)] = {
  181. .header_type = IW_HEADER_TYPE_PARAM,
  182. },
  183. [IW_IOCTL_IDX(SIOCSIWFRAG)] = {
  184. .header_type = IW_HEADER_TYPE_PARAM,
  185. },
  186. [IW_IOCTL_IDX(SIOCGIWFRAG)] = {
  187. .header_type = IW_HEADER_TYPE_PARAM,
  188. },
  189. [IW_IOCTL_IDX(SIOCSIWTXPOW)] = {
  190. .header_type = IW_HEADER_TYPE_PARAM,
  191. },
  192. [IW_IOCTL_IDX(SIOCGIWTXPOW)] = {
  193. .header_type = IW_HEADER_TYPE_PARAM,
  194. },
  195. [IW_IOCTL_IDX(SIOCSIWRETRY)] = {
  196. .header_type = IW_HEADER_TYPE_PARAM,
  197. },
  198. [IW_IOCTL_IDX(SIOCGIWRETRY)] = {
  199. .header_type = IW_HEADER_TYPE_PARAM,
  200. },
  201. [IW_IOCTL_IDX(SIOCSIWENCODE)] = {
  202. .header_type = IW_HEADER_TYPE_POINT,
  203. .token_size = 1,
  204. .max_tokens = IW_ENCODING_TOKEN_MAX,
  205. .flags = IW_DESCR_FLAG_EVENT | IW_DESCR_FLAG_RESTRICT,
  206. },
  207. [IW_IOCTL_IDX(SIOCGIWENCODE)] = {
  208. .header_type = IW_HEADER_TYPE_POINT,
  209. .token_size = 1,
  210. .max_tokens = IW_ENCODING_TOKEN_MAX,
  211. .flags = IW_DESCR_FLAG_DUMP | IW_DESCR_FLAG_RESTRICT,
  212. },
  213. [IW_IOCTL_IDX(SIOCSIWPOWER)] = {
  214. .header_type = IW_HEADER_TYPE_PARAM,
  215. },
  216. [IW_IOCTL_IDX(SIOCGIWPOWER)] = {
  217. .header_type = IW_HEADER_TYPE_PARAM,
  218. },
  219. [IW_IOCTL_IDX(SIOCSIWGENIE)] = {
  220. .header_type = IW_HEADER_TYPE_POINT,
  221. .token_size = 1,
  222. .max_tokens = IW_GENERIC_IE_MAX,
  223. },
  224. [IW_IOCTL_IDX(SIOCGIWGENIE)] = {
  225. .header_type = IW_HEADER_TYPE_POINT,
  226. .token_size = 1,
  227. .max_tokens = IW_GENERIC_IE_MAX,
  228. },
  229. [IW_IOCTL_IDX(SIOCSIWAUTH)] = {
  230. .header_type = IW_HEADER_TYPE_PARAM,
  231. },
  232. [IW_IOCTL_IDX(SIOCGIWAUTH)] = {
  233. .header_type = IW_HEADER_TYPE_PARAM,
  234. },
  235. [IW_IOCTL_IDX(SIOCSIWENCODEEXT)] = {
  236. .header_type = IW_HEADER_TYPE_POINT,
  237. .token_size = 1,
  238. .min_tokens = sizeof(struct iw_encode_ext),
  239. .max_tokens = sizeof(struct iw_encode_ext) +
  240. IW_ENCODING_TOKEN_MAX,
  241. },
  242. [IW_IOCTL_IDX(SIOCGIWENCODEEXT)] = {
  243. .header_type = IW_HEADER_TYPE_POINT,
  244. .token_size = 1,
  245. .min_tokens = sizeof(struct iw_encode_ext),
  246. .max_tokens = sizeof(struct iw_encode_ext) +
  247. IW_ENCODING_TOKEN_MAX,
  248. },
  249. [IW_IOCTL_IDX(SIOCSIWPMKSA)] = {
  250. .header_type = IW_HEADER_TYPE_POINT,
  251. .token_size = 1,
  252. .min_tokens = sizeof(struct iw_pmksa),
  253. .max_tokens = sizeof(struct iw_pmksa),
  254. },
  255. };
  256. static const unsigned int standard_ioctl_num = ARRAY_SIZE(standard_ioctl);
  257. /*
  258. * Meta-data about all the additional standard Wireless Extension events
  259. * we know about.
  260. */
  261. static const struct iw_ioctl_description standard_event[] = {
  262. [IW_EVENT_IDX(IWEVTXDROP)] = {
  263. .header_type = IW_HEADER_TYPE_ADDR,
  264. },
  265. [IW_EVENT_IDX(IWEVQUAL)] = {
  266. .header_type = IW_HEADER_TYPE_QUAL,
  267. },
  268. [IW_EVENT_IDX(IWEVCUSTOM)] = {
  269. .header_type = IW_HEADER_TYPE_POINT,
  270. .token_size = 1,
  271. .max_tokens = IW_CUSTOM_MAX,
  272. },
  273. [IW_EVENT_IDX(IWEVREGISTERED)] = {
  274. .header_type = IW_HEADER_TYPE_ADDR,
  275. },
  276. [IW_EVENT_IDX(IWEVEXPIRED)] = {
  277. .header_type = IW_HEADER_TYPE_ADDR,
  278. },
  279. [IW_EVENT_IDX(IWEVGENIE)] = {
  280. .header_type = IW_HEADER_TYPE_POINT,
  281. .token_size = 1,
  282. .max_tokens = IW_GENERIC_IE_MAX,
  283. },
  284. [IW_EVENT_IDX(IWEVMICHAELMICFAILURE)] = {
  285. .header_type = IW_HEADER_TYPE_POINT,
  286. .token_size = 1,
  287. .max_tokens = sizeof(struct iw_michaelmicfailure),
  288. },
  289. [IW_EVENT_IDX(IWEVASSOCREQIE)] = {
  290. .header_type = IW_HEADER_TYPE_POINT,
  291. .token_size = 1,
  292. .max_tokens = IW_GENERIC_IE_MAX,
  293. },
  294. [IW_EVENT_IDX(IWEVASSOCRESPIE)] = {
  295. .header_type = IW_HEADER_TYPE_POINT,
  296. .token_size = 1,
  297. .max_tokens = IW_GENERIC_IE_MAX,
  298. },
  299. [IW_EVENT_IDX(IWEVPMKIDCAND)] = {
  300. .header_type = IW_HEADER_TYPE_POINT,
  301. .token_size = 1,
  302. .max_tokens = sizeof(struct iw_pmkid_cand),
  303. },
  304. };
  305. static const unsigned int standard_event_num = ARRAY_SIZE(standard_event);
  306. /* Size (in bytes) of various events */
  307. static const int event_type_size[] = {
  308. IW_EV_LCP_LEN, /* IW_HEADER_TYPE_NULL */
  309. 0,
  310. IW_EV_CHAR_LEN, /* IW_HEADER_TYPE_CHAR */
  311. 0,
  312. IW_EV_UINT_LEN, /* IW_HEADER_TYPE_UINT */
  313. IW_EV_FREQ_LEN, /* IW_HEADER_TYPE_FREQ */
  314. IW_EV_ADDR_LEN, /* IW_HEADER_TYPE_ADDR */
  315. 0,
  316. IW_EV_POINT_LEN, /* Without variable payload */
  317. IW_EV_PARAM_LEN, /* IW_HEADER_TYPE_PARAM */
  318. IW_EV_QUAL_LEN, /* IW_HEADER_TYPE_QUAL */
  319. };
  320. #ifdef CONFIG_COMPAT
  321. static const int compat_event_type_size[] = {
  322. IW_EV_COMPAT_LCP_LEN, /* IW_HEADER_TYPE_NULL */
  323. 0,
  324. IW_EV_COMPAT_CHAR_LEN, /* IW_HEADER_TYPE_CHAR */
  325. 0,
  326. IW_EV_COMPAT_UINT_LEN, /* IW_HEADER_TYPE_UINT */
  327. IW_EV_COMPAT_FREQ_LEN, /* IW_HEADER_TYPE_FREQ */
  328. IW_EV_COMPAT_ADDR_LEN, /* IW_HEADER_TYPE_ADDR */
  329. 0,
  330. IW_EV_COMPAT_POINT_LEN, /* Without variable payload */
  331. IW_EV_COMPAT_PARAM_LEN, /* IW_HEADER_TYPE_PARAM */
  332. IW_EV_COMPAT_QUAL_LEN, /* IW_HEADER_TYPE_QUAL */
  333. };
  334. #endif
  335. /* IW event code */
  336. static int __net_init wext_pernet_init(struct net *net)
  337. {
  338. skb_queue_head_init(&net->wext_nlevents);
  339. return 0;
  340. }
  341. static void __net_exit wext_pernet_exit(struct net *net)
  342. {
  343. skb_queue_purge(&net->wext_nlevents);
  344. }
  345. static struct pernet_operations wext_pernet_ops = {
  346. .init = wext_pernet_init,
  347. .exit = wext_pernet_exit,
  348. };
  349. static int __init wireless_nlevent_init(void)
  350. {
  351. return register_pernet_subsys(&wext_pernet_ops);
  352. }
  353. subsys_initcall(wireless_nlevent_init);
  354. /* Process events generated by the wireless layer or the driver. */
  355. static void wireless_nlevent_process(struct work_struct *work)
  356. {
  357. struct sk_buff *skb;
  358. struct net *net;
  359. rtnl_lock();
  360. for_each_net(net) {
  361. while ((skb = skb_dequeue(&net->wext_nlevents)))
  362. rtnl_notify(skb, net, 0, RTNLGRP_LINK, NULL,
  363. GFP_KERNEL);
  364. }
  365. rtnl_unlock();
  366. }
  367. static DECLARE_WORK(wireless_nlevent_work, wireless_nlevent_process);
  368. static struct nlmsghdr *rtnetlink_ifinfo_prep(struct net_device *dev,
  369. struct sk_buff *skb)
  370. {
  371. struct ifinfomsg *r;
  372. struct nlmsghdr *nlh;
  373. nlh = nlmsg_put(skb, 0, 0, RTM_NEWLINK, sizeof(*r), 0);
  374. if (!nlh)
  375. return NULL;
  376. r = nlmsg_data(nlh);
  377. r->ifi_family = AF_UNSPEC;
  378. r->__ifi_pad = 0;
  379. r->ifi_type = dev->type;
  380. r->ifi_index = dev->ifindex;
  381. r->ifi_flags = dev_get_flags(dev);
  382. r->ifi_change = 0; /* Wireless changes don't affect those flags */
  383. if (nla_put_string(skb, IFLA_IFNAME, dev->name))
  384. goto nla_put_failure;
  385. return nlh;
  386. nla_put_failure:
  387. nlmsg_cancel(skb, nlh);
  388. return NULL;
  389. }
  390. /*
  391. * Main event dispatcher. Called from other parts and drivers.
  392. * Send the event on the appropriate channels.
  393. * May be called from interrupt context.
  394. */
  395. void wireless_send_event(struct net_device * dev,
  396. unsigned int cmd,
  397. union iwreq_data * wrqu,
  398. const char * extra)
  399. {
  400. const struct iw_ioctl_description * descr = NULL;
  401. int extra_len = 0;
  402. struct iw_event *event; /* Mallocated whole event */
  403. int event_len; /* Its size */
  404. int hdr_len; /* Size of the event header */
  405. int wrqu_off = 0; /* Offset in wrqu */
  406. /* Don't "optimise" the following variable, it will crash */
  407. unsigned int cmd_index; /* *MUST* be unsigned */
  408. struct sk_buff *skb;
  409. struct nlmsghdr *nlh;
  410. struct nlattr *nla;
  411. #ifdef CONFIG_COMPAT
  412. struct __compat_iw_event *compat_event;
  413. struct compat_iw_point compat_wrqu;
  414. struct sk_buff *compskb;
  415. #endif
  416. /*
  417. * Nothing in the kernel sends scan events with data, be safe.
  418. * This is necessary because we cannot fix up scan event data
  419. * for compat, due to being contained in 'extra', but normally
  420. * applications are required to retrieve the scan data anyway
  421. * and no data is included in the event, this codifies that
  422. * practice.
  423. */
  424. if (WARN_ON(cmd == SIOCGIWSCAN && extra))
  425. extra = NULL;
  426. /* Get the description of the Event */
  427. if (cmd <= SIOCIWLAST) {
  428. cmd_index = IW_IOCTL_IDX(cmd);
  429. if (cmd_index < standard_ioctl_num)
  430. descr = &(standard_ioctl[cmd_index]);
  431. } else {
  432. cmd_index = IW_EVENT_IDX(cmd);
  433. if (cmd_index < standard_event_num)
  434. descr = &(standard_event[cmd_index]);
  435. }
  436. /* Don't accept unknown events */
  437. if (descr == NULL) {
  438. /* Note : we don't return an error to the driver, because
  439. * the driver would not know what to do about it. It can't
  440. * return an error to the user, because the event is not
  441. * initiated by a user request.
  442. * The best the driver could do is to log an error message.
  443. * We will do it ourselves instead...
  444. */
  445. netdev_err(dev, "(WE) : Invalid/Unknown Wireless Event (0x%04X)\n",
  446. cmd);
  447. return;
  448. }
  449. /* Check extra parameters and set extra_len */
  450. if (descr->header_type == IW_HEADER_TYPE_POINT) {
  451. /* Check if number of token fits within bounds */
  452. if (wrqu->data.length > descr->max_tokens) {
  453. netdev_err(dev, "(WE) : Wireless Event (cmd=0x%04X) too big (%d)\n",
  454. cmd, wrqu->data.length);
  455. return;
  456. }
  457. if (wrqu->data.length < descr->min_tokens) {
  458. netdev_err(dev, "(WE) : Wireless Event (cmd=0x%04X) too small (%d)\n",
  459. cmd, wrqu->data.length);
  460. return;
  461. }
  462. /* Calculate extra_len - extra is NULL for restricted events */
  463. if (extra != NULL)
  464. extra_len = wrqu->data.length * descr->token_size;
  465. /* Always at an offset in wrqu */
  466. wrqu_off = IW_EV_POINT_OFF;
  467. }
  468. /* Total length of the event */
  469. hdr_len = event_type_size[descr->header_type];
  470. event_len = hdr_len + extra_len;
  471. /*
  472. * The problem for 64/32 bit.
  473. *
  474. * On 64-bit, a regular event is laid out as follows:
  475. * | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
  476. * | event.len | event.cmd | p a d d i n g |
  477. * | wrqu data ... (with the correct size) |
  478. *
  479. * This padding exists because we manipulate event->u,
  480. * and 'event' is not packed.
  481. *
  482. * An iw_point event is laid out like this instead:
  483. * | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
  484. * | event.len | event.cmd | p a d d i n g |
  485. * | iwpnt.len | iwpnt.flg | p a d d i n g |
  486. * | extra data ...
  487. *
  488. * The second padding exists because struct iw_point is extended,
  489. * but this depends on the platform...
  490. *
  491. * On 32-bit, all the padding shouldn't be there.
  492. */
  493. skb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_ATOMIC);
  494. if (!skb)
  495. return;
  496. /* Send via the RtNetlink event channel */
  497. nlh = rtnetlink_ifinfo_prep(dev, skb);
  498. if (WARN_ON(!nlh)) {
  499. kfree_skb(skb);
  500. return;
  501. }
  502. /* Add the wireless events in the netlink packet */
  503. nla = nla_reserve(skb, IFLA_WIRELESS, event_len);
  504. if (!nla) {
  505. kfree_skb(skb);
  506. return;
  507. }
  508. event = nla_data(nla);
  509. /* Fill event - first clear to avoid data leaking */
  510. memset(event, 0, hdr_len);
  511. event->len = event_len;
  512. event->cmd = cmd;
  513. memcpy(&event->u, ((char *) wrqu) + wrqu_off, hdr_len - IW_EV_LCP_LEN);
  514. if (extra_len)
  515. memcpy(((char *) event) + hdr_len, extra, extra_len);
  516. nlmsg_end(skb, nlh);
  517. #ifdef CONFIG_COMPAT
  518. hdr_len = compat_event_type_size[descr->header_type];
  519. event_len = hdr_len + extra_len;
  520. compskb = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_ATOMIC);
  521. if (!compskb) {
  522. kfree_skb(skb);
  523. return;
  524. }
  525. /* Send via the RtNetlink event channel */
  526. nlh = rtnetlink_ifinfo_prep(dev, compskb);
  527. if (WARN_ON(!nlh)) {
  528. kfree_skb(skb);
  529. kfree_skb(compskb);
  530. return;
  531. }
  532. /* Add the wireless events in the netlink packet */
  533. nla = nla_reserve(compskb, IFLA_WIRELESS, event_len);
  534. if (!nla) {
  535. kfree_skb(skb);
  536. kfree_skb(compskb);
  537. return;
  538. }
  539. compat_event = nla_data(nla);
  540. compat_event->len = event_len;
  541. compat_event->cmd = cmd;
  542. if (descr->header_type == IW_HEADER_TYPE_POINT) {
  543. compat_wrqu.length = wrqu->data.length;
  544. compat_wrqu.flags = wrqu->data.flags;
  545. memcpy(&compat_event->pointer,
  546. ((char *) &compat_wrqu) + IW_EV_COMPAT_POINT_OFF,
  547. hdr_len - IW_EV_COMPAT_LCP_LEN);
  548. if (extra_len)
  549. memcpy(((char *) compat_event) + hdr_len,
  550. extra, extra_len);
  551. } else {
  552. /* extra_len must be zero, so no if (extra) needed */
  553. memcpy(&compat_event->pointer, wrqu,
  554. hdr_len - IW_EV_COMPAT_LCP_LEN);
  555. }
  556. nlmsg_end(compskb, nlh);
  557. skb_shinfo(skb)->frag_list = compskb;
  558. #endif
  559. skb_queue_tail(&dev_net(dev)->wext_nlevents, skb);
  560. schedule_work(&wireless_nlevent_work);
  561. }
  562. EXPORT_SYMBOL(wireless_send_event);
  563. /* IW handlers */
  564. struct iw_statistics *get_wireless_stats(struct net_device *dev)
  565. {
  566. #ifdef CONFIG_WIRELESS_EXT
  567. if ((dev->wireless_handlers != NULL) &&
  568. (dev->wireless_handlers->get_wireless_stats != NULL))
  569. return dev->wireless_handlers->get_wireless_stats(dev);
  570. #endif
  571. #ifdef CONFIG_CFG80211_WEXT
  572. if (dev->ieee80211_ptr &&
  573. dev->ieee80211_ptr->wiphy &&
  574. dev->ieee80211_ptr->wiphy->wext &&
  575. dev->ieee80211_ptr->wiphy->wext->get_wireless_stats)
  576. return dev->ieee80211_ptr->wiphy->wext->get_wireless_stats(dev);
  577. #endif
  578. /* not found */
  579. return NULL;
  580. }
  581. static int iw_handler_get_iwstats(struct net_device * dev,
  582. struct iw_request_info * info,
  583. union iwreq_data * wrqu,
  584. char * extra)
  585. {
  586. /* Get stats from the driver */
  587. struct iw_statistics *stats;
  588. stats = get_wireless_stats(dev);
  589. if (stats) {
  590. /* Copy statistics to extra */
  591. memcpy(extra, stats, sizeof(struct iw_statistics));
  592. wrqu->data.length = sizeof(struct iw_statistics);
  593. /* Check if we need to clear the updated flag */
  594. if (wrqu->data.flags != 0)
  595. stats->qual.updated &= ~IW_QUAL_ALL_UPDATED;
  596. return 0;
  597. } else
  598. return -EOPNOTSUPP;
  599. }
  600. static iw_handler get_handler(struct net_device *dev, unsigned int cmd)
  601. {
  602. /* Don't "optimise" the following variable, it will crash */
  603. unsigned int index; /* *MUST* be unsigned */
  604. const struct iw_handler_def *handlers = NULL;
  605. #ifdef CONFIG_CFG80211_WEXT
  606. if (dev->ieee80211_ptr && dev->ieee80211_ptr->wiphy)
  607. handlers = dev->ieee80211_ptr->wiphy->wext;
  608. #endif
  609. #ifdef CONFIG_WIRELESS_EXT
  610. if (dev->wireless_handlers)
  611. handlers = dev->wireless_handlers;
  612. #endif
  613. if (!handlers)
  614. return NULL;
  615. /* Try as a standard command */
  616. index = IW_IOCTL_IDX(cmd);
  617. if (index < handlers->num_standard)
  618. return handlers->standard[index];
  619. #ifdef CONFIG_WEXT_PRIV
  620. /* Try as a private command */
  621. index = cmd - SIOCIWFIRSTPRIV;
  622. if (index < handlers->num_private)
  623. return handlers->private[index];
  624. #endif
  625. /* Not found */
  626. return NULL;
  627. }
  628. static int ioctl_standard_iw_point(struct iw_point *iwp, unsigned int cmd,
  629. const struct iw_ioctl_description *descr,
  630. iw_handler handler, struct net_device *dev,
  631. struct iw_request_info *info)
  632. {
  633. int err, extra_size, user_length = 0, essid_compat = 0;
  634. char *extra;
  635. /* Calculate space needed by arguments. Always allocate
  636. * for max space.
  637. */
  638. extra_size = descr->max_tokens * descr->token_size;
  639. /* Check need for ESSID compatibility for WE < 21 */
  640. switch (cmd) {
  641. case SIOCSIWESSID:
  642. case SIOCGIWESSID:
  643. case SIOCSIWNICKN:
  644. case SIOCGIWNICKN:
  645. if (iwp->length == descr->max_tokens + 1)
  646. essid_compat = 1;
  647. else if (IW_IS_SET(cmd) && (iwp->length != 0)) {
  648. char essid[IW_ESSID_MAX_SIZE + 1];
  649. unsigned int len;
  650. len = iwp->length * descr->token_size;
  651. if (len > IW_ESSID_MAX_SIZE)
  652. return -EFAULT;
  653. err = copy_from_user(essid, iwp->pointer, len);
  654. if (err)
  655. return -EFAULT;
  656. if (essid[iwp->length - 1] == '\0')
  657. essid_compat = 1;
  658. }
  659. break;
  660. default:
  661. break;
  662. }
  663. iwp->length -= essid_compat;
  664. /* Check what user space is giving us */
  665. if (IW_IS_SET(cmd)) {
  666. /* Check NULL pointer */
  667. if (!iwp->pointer && iwp->length != 0)
  668. return -EFAULT;
  669. /* Check if number of token fits within bounds */
  670. if (iwp->length > descr->max_tokens)
  671. return -E2BIG;
  672. if (iwp->length < descr->min_tokens)
  673. return -EINVAL;
  674. } else {
  675. /* Check NULL pointer */
  676. if (!iwp->pointer)
  677. return -EFAULT;
  678. /* Save user space buffer size for checking */
  679. user_length = iwp->length;
  680. /* Don't check if user_length > max to allow forward
  681. * compatibility. The test user_length < min is
  682. * implied by the test at the end.
  683. */
  684. /* Support for very large requests */
  685. if ((descr->flags & IW_DESCR_FLAG_NOMAX) &&
  686. (user_length > descr->max_tokens)) {
  687. /* Allow userspace to GET more than max so
  688. * we can support any size GET requests.
  689. * There is still a limit : -ENOMEM.
  690. */
  691. extra_size = user_length * descr->token_size;
  692. /* Note : user_length is originally a __u16,
  693. * and token_size is controlled by us,
  694. * so extra_size won't get negative and
  695. * won't overflow...
  696. */
  697. }
  698. }
  699. /* kzalloc() ensures NULL-termination for essid_compat. */
  700. extra = kzalloc(extra_size, GFP_KERNEL);
  701. if (!extra)
  702. return -ENOMEM;
  703. /* If it is a SET, get all the extra data in here */
  704. if (IW_IS_SET(cmd) && (iwp->length != 0)) {
  705. if (copy_from_user(extra, iwp->pointer,
  706. iwp->length *
  707. descr->token_size)) {
  708. err = -EFAULT;
  709. goto out;
  710. }
  711. if (cmd == SIOCSIWENCODEEXT) {
  712. struct iw_encode_ext *ee = (void *) extra;
  713. if (iwp->length < sizeof(*ee) + ee->key_len) {
  714. err = -EFAULT;
  715. goto out;
  716. }
  717. }
  718. }
  719. if (IW_IS_GET(cmd) && !(descr->flags & IW_DESCR_FLAG_NOMAX)) {
  720. /*
  721. * If this is a GET, but not NOMAX, it means that the extra
  722. * data is not bounded by userspace, but by max_tokens. Thus
  723. * set the length to max_tokens. This matches the extra data
  724. * allocation.
  725. * The driver should fill it with the number of tokens it
  726. * provided, and it may check iwp->length rather than having
  727. * knowledge of max_tokens. If the driver doesn't change the
  728. * iwp->length, this ioctl just copies back max_token tokens
  729. * filled with zeroes. Hopefully the driver isn't claiming
  730. * them to be valid data.
  731. */
  732. iwp->length = descr->max_tokens;
  733. }
  734. err = handler(dev, info, (union iwreq_data *) iwp, extra);
  735. iwp->length += essid_compat;
  736. /* If we have something to return to the user */
  737. if (!err && IW_IS_GET(cmd)) {
  738. /* Check if there is enough buffer up there */
  739. if (user_length < iwp->length) {
  740. err = -E2BIG;
  741. goto out;
  742. }
  743. if (copy_to_user(iwp->pointer, extra,
  744. iwp->length *
  745. descr->token_size)) {
  746. err = -EFAULT;
  747. goto out;
  748. }
  749. }
  750. /* Generate an event to notify listeners of the change */
  751. if ((descr->flags & IW_DESCR_FLAG_EVENT) &&
  752. ((err == 0) || (err == -EIWCOMMIT))) {
  753. union iwreq_data *data = (union iwreq_data *) iwp;
  754. if (descr->flags & IW_DESCR_FLAG_RESTRICT)
  755. /* If the event is restricted, don't
  756. * export the payload.
  757. */
  758. wireless_send_event(dev, cmd, data, NULL);
  759. else
  760. wireless_send_event(dev, cmd, data, extra);
  761. }
  762. out:
  763. kfree(extra);
  764. return err;
  765. }
  766. /*
  767. * Call the commit handler in the driver
  768. * (if exist and if conditions are right)
  769. *
  770. * Note : our current commit strategy is currently pretty dumb,
  771. * but we will be able to improve on that...
  772. * The goal is to try to agreagate as many changes as possible
  773. * before doing the commit. Drivers that will define a commit handler
  774. * are usually those that need a reset after changing parameters, so
  775. * we want to minimise the number of reset.
  776. * A cool idea is to use a timer : at each "set" command, we re-set the
  777. * timer, when the timer eventually fires, we call the driver.
  778. * Hopefully, more on that later.
  779. *
  780. * Also, I'm waiting to see how many people will complain about the
  781. * netif_running(dev) test. I'm open on that one...
  782. * Hopefully, the driver will remember to do a commit in "open()" ;-)
  783. */
  784. int call_commit_handler(struct net_device *dev)
  785. {
  786. #ifdef CONFIG_WIRELESS_EXT
  787. if ((netif_running(dev)) &&
  788. (dev->wireless_handlers->standard[0] != NULL))
  789. /* Call the commit handler on the driver */
  790. return dev->wireless_handlers->standard[0](dev, NULL,
  791. NULL, NULL);
  792. else
  793. return 0; /* Command completed successfully */
  794. #else
  795. /* cfg80211 has no commit */
  796. return 0;
  797. #endif
  798. }
  799. /*
  800. * Main IOCTl dispatcher.
  801. * Check the type of IOCTL and call the appropriate wrapper...
  802. */
  803. static int wireless_process_ioctl(struct net *net, struct ifreq *ifr,
  804. unsigned int cmd,
  805. struct iw_request_info *info,
  806. wext_ioctl_func standard,
  807. wext_ioctl_func private)
  808. {
  809. struct iwreq *iwr = (struct iwreq *) ifr;
  810. struct net_device *dev;
  811. iw_handler handler;
  812. /* Permissions are already checked in dev_ioctl() before calling us.
  813. * The copy_to/from_user() of ifr is also dealt with in there */
  814. /* Make sure the device exist */
  815. if ((dev = __dev_get_by_name(net, ifr->ifr_name)) == NULL)
  816. return -ENODEV;
  817. /* A bunch of special cases, then the generic case...
  818. * Note that 'cmd' is already filtered in dev_ioctl() with
  819. * (cmd >= SIOCIWFIRST && cmd <= SIOCIWLAST) */
  820. if (cmd == SIOCGIWSTATS)
  821. return standard(dev, iwr, cmd, info,
  822. &iw_handler_get_iwstats);
  823. #ifdef CONFIG_WEXT_PRIV
  824. if (cmd == SIOCGIWPRIV && dev->wireless_handlers)
  825. return standard(dev, iwr, cmd, info,
  826. iw_handler_get_private);
  827. #endif
  828. /* Basic check */
  829. if (!netif_device_present(dev))
  830. return -ENODEV;
  831. /* New driver API : try to find the handler */
  832. handler = get_handler(dev, cmd);
  833. if (handler) {
  834. /* Standard and private are not the same */
  835. if (cmd < SIOCIWFIRSTPRIV)
  836. return standard(dev, iwr, cmd, info, handler);
  837. else if (private)
  838. return private(dev, iwr, cmd, info, handler);
  839. }
  840. /* Old driver API : call driver ioctl handler */
  841. if (dev->netdev_ops->ndo_do_ioctl)
  842. return dev->netdev_ops->ndo_do_ioctl(dev, ifr, cmd);
  843. return -EOPNOTSUPP;
  844. }
  845. /* If command is `set a parameter', or `get the encoding parameters',
  846. * check if the user has the right to do it.
  847. */
  848. static int wext_permission_check(unsigned int cmd)
  849. {
  850. if ((IW_IS_SET(cmd) || cmd == SIOCGIWENCODE ||
  851. cmd == SIOCGIWENCODEEXT) &&
  852. !capable(CAP_NET_ADMIN))
  853. return -EPERM;
  854. return 0;
  855. }
  856. /* entry point from dev ioctl */
  857. static int wext_ioctl_dispatch(struct net *net, struct ifreq *ifr,
  858. unsigned int cmd, struct iw_request_info *info,
  859. wext_ioctl_func standard,
  860. wext_ioctl_func private)
  861. {
  862. int ret = wext_permission_check(cmd);
  863. if (ret)
  864. return ret;
  865. dev_load(net, ifr->ifr_name);
  866. rtnl_lock();
  867. ret = wireless_process_ioctl(net, ifr, cmd, info, standard, private);
  868. rtnl_unlock();
  869. return ret;
  870. }
  871. /*
  872. * Wrapper to call a standard Wireless Extension handler.
  873. * We do various checks and also take care of moving data between
  874. * user space and kernel space.
  875. */
  876. static int ioctl_standard_call(struct net_device * dev,
  877. struct iwreq *iwr,
  878. unsigned int cmd,
  879. struct iw_request_info *info,
  880. iw_handler handler)
  881. {
  882. const struct iw_ioctl_description * descr;
  883. int ret = -EINVAL;
  884. /* Get the description of the IOCTL */
  885. if (IW_IOCTL_IDX(cmd) >= standard_ioctl_num)
  886. return -EOPNOTSUPP;
  887. descr = &(standard_ioctl[IW_IOCTL_IDX(cmd)]);
  888. /* Check if we have a pointer to user space data or not */
  889. if (descr->header_type != IW_HEADER_TYPE_POINT) {
  890. /* No extra arguments. Trivial to handle */
  891. ret = handler(dev, info, &(iwr->u), NULL);
  892. /* Generate an event to notify listeners of the change */
  893. if ((descr->flags & IW_DESCR_FLAG_EVENT) &&
  894. ((ret == 0) || (ret == -EIWCOMMIT)))
  895. wireless_send_event(dev, cmd, &(iwr->u), NULL);
  896. } else {
  897. ret = ioctl_standard_iw_point(&iwr->u.data, cmd, descr,
  898. handler, dev, info);
  899. }
  900. /* Call commit handler if needed and defined */
  901. if (ret == -EIWCOMMIT)
  902. ret = call_commit_handler(dev);
  903. /* Here, we will generate the appropriate event if needed */
  904. return ret;
  905. }
  906. int wext_handle_ioctl(struct net *net, struct ifreq *ifr, unsigned int cmd,
  907. void __user *arg)
  908. {
  909. struct iw_request_info info = { .cmd = cmd, .flags = 0 };
  910. int ret;
  911. ret = wext_ioctl_dispatch(net, ifr, cmd, &info,
  912. ioctl_standard_call,
  913. ioctl_private_call);
  914. if (ret >= 0 &&
  915. IW_IS_GET(cmd) &&
  916. copy_to_user(arg, ifr, sizeof(struct iwreq)))
  917. return -EFAULT;
  918. return ret;
  919. }
  920. #ifdef CONFIG_COMPAT
  921. static int compat_standard_call(struct net_device *dev,
  922. struct iwreq *iwr,
  923. unsigned int cmd,
  924. struct iw_request_info *info,
  925. iw_handler handler)
  926. {
  927. const struct iw_ioctl_description *descr;
  928. struct compat_iw_point *iwp_compat;
  929. struct iw_point iwp;
  930. int err;
  931. descr = standard_ioctl + IW_IOCTL_IDX(cmd);
  932. if (descr->header_type != IW_HEADER_TYPE_POINT)
  933. return ioctl_standard_call(dev, iwr, cmd, info, handler);
  934. iwp_compat = (struct compat_iw_point *) &iwr->u.data;
  935. iwp.pointer = compat_ptr(iwp_compat->pointer);
  936. iwp.length = iwp_compat->length;
  937. iwp.flags = iwp_compat->flags;
  938. err = ioctl_standard_iw_point(&iwp, cmd, descr, handler, dev, info);
  939. iwp_compat->pointer = ptr_to_compat(iwp.pointer);
  940. iwp_compat->length = iwp.length;
  941. iwp_compat->flags = iwp.flags;
  942. return err;
  943. }
  944. int compat_wext_handle_ioctl(struct net *net, unsigned int cmd,
  945. unsigned long arg)
  946. {
  947. void __user *argp = (void __user *)arg;
  948. struct iw_request_info info;
  949. struct iwreq iwr;
  950. char *colon;
  951. int ret;
  952. if (copy_from_user(&iwr, argp, sizeof(struct iwreq)))
  953. return -EFAULT;
  954. iwr.ifr_name[IFNAMSIZ-1] = 0;
  955. colon = strchr(iwr.ifr_name, ':');
  956. if (colon)
  957. *colon = 0;
  958. info.cmd = cmd;
  959. info.flags = IW_REQUEST_FLAG_COMPAT;
  960. ret = wext_ioctl_dispatch(net, (struct ifreq *) &iwr, cmd, &info,
  961. compat_standard_call,
  962. compat_private_call);
  963. if (ret >= 0 &&
  964. IW_IS_GET(cmd) &&
  965. copy_to_user(argp, &iwr, sizeof(struct iwreq)))
  966. return -EFAULT;
  967. return ret;
  968. }
  969. #endif